1
target-arm queue; this one has a fair scattering of more
1
arm queue; dunno if this will be the last before softfreeze
2
miscellaneous things in it which I've sent out this week.
2
or not, but anyway probably the last large one. New orangepi-pc
3
I've shoved those in as well as it seemed the least-effort
3
board model is the big item here.
4
way of getting them into master; a few of them are dependencies
5
on arm-related patches I have brewing.
6
4
7
thanks
5
thanks
8
-- PMM
6
-- PMM
9
7
8
The following changes since commit 67d9ef7d541c3d21a25796c51c26da096a433565:
10
9
11
The following changes since commit 2702c2d3eb74e3908c0c5dbf3a71c8987595a86e:
10
Merge remote-tracking branch 'remotes/pmaydell/tags/pull-docs-20200312' into staging (2020-03-12 15:20:52 +0000)
12
13
Merge remote-tracking branch 'remotes/stsquad/tags/pull-travis-updates-140618-1' into staging (2018-06-15 12:49:36 +0100)
14
11
15
are available in the Git repository at:
12
are available in the Git repository at:
16
13
17
git://git.linaro.org/people/pmaydell/qemu-arm.git tags/pull-target-arm-20180615
14
https://git.linaro.org/people/pmaydell/qemu-arm.git tags/pull-target-arm-20200312
18
15
19
for you to fetch changes up to 14120108f87b3f9e1beacdf0a6096e464e62bb65:
16
for you to fetch changes up to aca53be34ac3e7cac5f39396a51a338860a5a837:
20
17
21
target/arm: Allow ARMv6-M Thumb2 instructions (2018-06-15 15:23:34 +0100)
18
target/arm: kvm: Inject events at the last stage of sync (2020-03-12 16:31:10 +0000)
22
19
23
----------------------------------------------------------------
20
----------------------------------------------------------------
24
target-arm and miscellaneous queue:
21
target-arm queue:
25
* fix KVM state save/restore for GICv3 priority registers for high IRQ numbers
22
* Fix various bugs that might result in an assert() due to
26
* hw/arm/mps2-tz: Put ethernet controller behind PPC
23
incorrect hflags for M-profile CPUs
27
* hw/sh/sh7750: Convert away from old_mmio
24
* Fix Aspeed SMC Controller user-mode select handling
28
* hw/m68k/mcf5206: Convert away from old_mmio
25
* Report correct (with-tag) address in fault address register
29
* hw/block/pflash_cfi02: Convert away from old_mmio
26
when TBI is enabled
30
* hw/watchdog/wdt_i6300esb: Convert away from old_mmio
27
* cubieboard: make sure SOC object isn't leaked
31
* hw/input/pckbd: Convert away from old_mmio
28
* fsl-imx25: Wire up eSDHC controllers
32
* hw/char/parallel: Convert away from old_mmio
29
* fsl-imx25: Wire up USB controllers
33
* armv7m: refactor to get rid of armv7m_init() function
30
* New board model: orangepi-pc (OrangePi PC)
34
* arm: Don't crash if user tries to use a Cortex-M CPU without an NVIC
31
* ARM/KVM: if user doesn't select GIC version and the
35
* hw/core/or-irq: Support more than 16 inputs to an OR gate
32
host kernel can only provide GICv3, use that, rather
36
* cpu-defs.h: Document CPUIOTLBEntry 'addr' field
33
than defaulting to "fail because GICv2 isn't possible"
37
* cputlb: Pass cpu_transaction_failed() the correct physaddr
34
* kvm: Only do KVM_SET_VCPU_EVENTS at the last stage of sync
38
* CODING_STYLE: Define our preferred form for multiline comments
39
* Add and use new stn_*_p() and ldn_*_p() memory access functions
40
* target/arm: More parts of the upcoming SVE support
41
* aspeed_scu: Implement RNG register
42
* m25p80: add support for two bytes WRSR for Macronix chips
43
* exec.c: Handle IOMMUs being in the path of TCG CPU memory accesses
44
* target/arm: Allow ARMv6-M Thumb2 instructions
45
35
46
----------------------------------------------------------------
36
----------------------------------------------------------------
47
Cédric Le Goater (1):
37
Beata Michalska (1):
48
m25p80: add support for two bytes WRSR for Macronix chips
38
target/arm: kvm: Inject events at the last stage of sync
49
39
50
Joel Stanley (1):
40
Cédric Le Goater (2):
51
aspeed_scu: Implement RNG register
41
aspeed/smc: Add some tracing
42
aspeed/smc: Fix User mode select/unselect scheme
52
43
53
Julia Suvorova (1):
44
Eric Auger (6):
54
target/arm: Allow ARMv6-M Thumb2 instructions
45
hw/arm/virt: Document 'max' value in gic-version property description
46
hw/arm/virt: Introduce VirtGICType enum type
47
hw/arm/virt: Introduce finalize_gic_version()
48
target/arm/kvm: Let kvm_arm_vgic_probe() return a bitmap
49
hw/arm/virt: kvm: Restructure finalize_gic_version()
50
hw/arm/virt: kvm: allow gicv3 by default if v2 cannot work
55
51
56
Peter Maydell (21):
52
Guenter Roeck (2):
57
hw/arm/mps2-tz: Put ethernet controller behind PPC
53
hw/arm/fsl-imx25: Wire up eSDHC controllers
58
hw/sh/sh7750: Convert away from old_mmio
54
hw/arm/fsl-imx25: Wire up USB controllers
59
hw/m68k/mcf5206: Convert away from old_mmio
60
hw/block/pflash_cfi02: Convert away from old_mmio
61
hw/watchdog/wdt_i6300esb: Convert away from old_mmio
62
hw/input/pckbd: Convert away from old_mmio
63
hw/char/parallel: Convert away from old_mmio
64
stellaris: Stop using armv7m_init()
65
hw/arm/armv7m: Remove unused armv7m_init() function
66
arm: Don't crash if user tries to use a Cortex-M CPU without an NVIC
67
hw/core/or-irq: Support more than 16 inputs to an OR gate
68
cpu-defs.h: Document CPUIOTLBEntry 'addr' field
69
cputlb: Pass cpu_transaction_failed() the correct physaddr
70
CODING_STYLE: Define our preferred form for multiline comments
71
bswap: Add new stn_*_p() and ldn_*_p() memory access functions
72
exec.c: Don't accidentally sign-extend 4-byte loads in subpage_read()
73
exec.c: Use stn_p() and ldn_p() instead of explicit switches
74
iommu: Add IOMMU index concept to IOMMU API
75
iommu: Add IOMMU index argument to notifier APIs
76
iommu: Add IOMMU index argument to translate method
77
exec.c: Handle IOMMUs in address_space_translate_for_iotlb()
78
55
79
Richard Henderson (18):
56
Igor Mammedov (1):
80
target/arm: Extend vec_reg_offset to larger sizes
57
hw/arm/cubieboard: make sure SOC object isn't leaked
81
target/arm: Implement SVE Permute - Unpredicated Group
82
target/arm: Implement SVE Permute - Predicates Group
83
target/arm: Implement SVE Permute - Interleaving Group
84
target/arm: Implement SVE compress active elements
85
target/arm: Implement SVE conditionally broadcast/extract element
86
target/arm: Implement SVE copy to vector (predicated)
87
target/arm: Implement SVE reverse within elements
88
target/arm: Implement SVE vector splice (predicated)
89
target/arm: Implement SVE Select Vectors Group
90
target/arm: Implement SVE Integer Compare - Vectors Group
91
target/arm: Implement SVE Integer Compare - Immediate Group
92
target/arm: Implement SVE Partition Break Group
93
target/arm: Implement SVE Predicate Count Group
94
target/arm: Implement SVE Integer Compare - Scalars Group
95
target/arm: Implement FDUP/DUP
96
target/arm: Implement SVE Integer Wide Immediate - Unpredicated Group
97
target/arm: Implement SVE Floating Point Arithmetic - Unpredicated Group
98
58
99
Shannon Zhao (1):
59
Niek Linnenbank (13):
100
arm_gicv3_kvm: kvm_dist_get/put_priority: skip the registers banked by GICR_IPRIORITYR
60
hw/arm: add Allwinner H3 System-on-Chip
61
hw/arm: add Xunlong Orange Pi PC machine
62
hw/arm/allwinner-h3: add Clock Control Unit
63
hw/arm/allwinner-h3: add USB host controller
64
hw/arm/allwinner-h3: add System Control module
65
hw/arm/allwinner: add CPU Configuration module
66
hw/arm/allwinner: add Security Identifier device
67
hw/arm/allwinner: add SD/MMC host controller
68
hw/arm/allwinner-h3: add EMAC ethernet device
69
hw/arm/allwinner-h3: add Boot ROM support
70
hw/arm/allwinner-h3: add SDRAM controller device
71
hw/arm/allwinner: add RTC device support
72
docs: add Orange Pi PC document
101
73
102
include/exec/cpu-all.h | 4 +
74
Peter Maydell (4):
103
include/exec/cpu-defs.h | 9 +
75
hw/intc/armv7m_nvic: Rebuild hflags on reset
104
include/exec/exec-all.h | 16 +-
76
target/arm: Update hflags in trans_CPS_v7m()
105
include/exec/memory.h | 65 +-
77
target/arm: Recalculate hflags correctly after writes to CONTROL
106
include/hw/arm/arm.h | 8 +-
78
target/arm: Fix some comment typos
107
include/hw/or-irq.h | 5 +-
108
include/qemu/bswap.h | 52 ++
109
include/qom/cpu.h | 3 +
110
target/arm/helper-sve.h | 294 +++++++++
111
target/arm/helper.h | 19 +
112
target/arm/translate-a64.h | 26 +-
113
accel/tcg/cputlb.c | 59 +-
114
exec.c | 263 ++++----
115
hw/alpha/typhoon.c | 3 +-
116
hw/arm/armv7m.c | 28 +-
117
hw/arm/mps2-tz.c | 32 +-
118
hw/arm/smmuv3.c | 2 +-
119
hw/arm/stellaris.c | 12 +-
120
hw/block/m25p80.c | 1 +
121
hw/block/pflash_cfi02.c | 97 +--
122
hw/char/parallel.c | 50 +-
123
hw/core/or-irq.c | 39 +-
124
hw/dma/rc4030.c | 2 +-
125
hw/i386/amd_iommu.c | 2 +-
126
hw/i386/intel_iommu.c | 8 +-
127
hw/input/pckbd.c | 14 +-
128
hw/intc/arm_gicv3_kvm.c | 18 +-
129
hw/intc/armv7m_nvic.c | 6 +-
130
hw/m68k/mcf5206.c | 48 +-
131
hw/misc/aspeed_scu.c | 20 +
132
hw/ppc/spapr_iommu.c | 5 +-
133
hw/s390x/s390-pci-bus.c | 2 +-
134
hw/s390x/s390-pci-inst.c | 4 +-
135
hw/sh4/sh7750.c | 44 +-
136
hw/sparc/sun4m_iommu.c | 3 +-
137
hw/sparc64/sun4u_iommu.c | 2 +-
138
hw/vfio/common.c | 6 +-
139
hw/virtio/vhost.c | 7 +-
140
hw/watchdog/wdt_i6300esb.c | 48 +-
141
memory.c | 33 +-
142
target/arm/cpu.c | 18 +
143
target/arm/sve_helper.c | 1250 +++++++++++++++++++++++++++++++++++++
144
target/arm/translate-sve.c | 1458 +++++++++++++++++++++++++++++++++++++++++++
145
target/arm/translate.c | 43 +-
146
target/arm/vec_helper.c | 69 ++
147
CODING_STYLE | 17 +
148
docs/devel/loads-stores.rst | 15 +
149
target/arm/sve.decode | 248 ++++++++
150
48 files changed, 4114 insertions(+), 363 deletions(-)
151
79
80
Philippe Mathieu-Daudé (5):
81
tests/boot_linux_console: Add a quick test for the OrangePi PC board
82
tests/boot_linux_console: Add initrd test for the Orange Pi PC board
83
tests/boot_linux_console: Add a SD card test for the OrangePi PC board
84
tests/boot_linux_console: Add a SLOW test booting Ubuntu on OrangePi PC
85
tests/boot_linux_console: Test booting NetBSD via U-Boot on OrangePi PC
86
87
Richard Henderson (2):
88
target/arm: Check addresses for disabled regimes
89
target/arm: Disable clean_data_tbi for system mode
90
91
Makefile.objs | 1 +
92
hw/arm/Makefile.objs | 1 +
93
hw/misc/Makefile.objs | 5 +
94
hw/net/Makefile.objs | 1 +
95
hw/rtc/Makefile.objs | 1 +
96
hw/sd/Makefile.objs | 1 +
97
hw/usb/hcd-ehci.h | 1 +
98
include/hw/arm/allwinner-a10.h | 4 +
99
include/hw/arm/allwinner-h3.h | 161 ++++++
100
include/hw/arm/fsl-imx25.h | 18 +
101
include/hw/arm/virt.h | 12 +-
102
include/hw/misc/allwinner-cpucfg.h | 52 ++
103
include/hw/misc/allwinner-h3-ccu.h | 66 +++
104
include/hw/misc/allwinner-h3-dramc.h | 106 ++++
105
include/hw/misc/allwinner-h3-sysctrl.h | 67 +++
106
include/hw/misc/allwinner-sid.h | 60 +++
107
include/hw/net/allwinner-sun8i-emac.h | 99 ++++
108
include/hw/rtc/allwinner-rtc.h | 134 +++++
109
include/hw/sd/allwinner-sdhost.h | 135 +++++
110
target/arm/helper.h | 1 +
111
target/arm/kvm_arm.h | 3 +
112
hw/arm/allwinner-a10.c | 19 +
113
hw/arm/allwinner-h3.c | 465 ++++++++++++++++++
114
hw/arm/cubieboard.c | 18 +
115
hw/arm/fsl-imx25.c | 56 +++
116
hw/arm/imx25_pdk.c | 16 +
117
hw/arm/orangepi.c | 130 +++++
118
hw/arm/virt.c | 145 ++++--
119
hw/intc/armv7m_nvic.c | 6 +
120
hw/misc/allwinner-cpucfg.c | 282 +++++++++++
121
hw/misc/allwinner-h3-ccu.c | 242 +++++++++
122
hw/misc/allwinner-h3-dramc.c | 358 ++++++++++++++
123
hw/misc/allwinner-h3-sysctrl.c | 140 ++++++
124
hw/misc/allwinner-sid.c | 168 +++++++
125
hw/net/allwinner-sun8i-emac.c | 871 +++++++++++++++++++++++++++++++++
126
hw/rtc/allwinner-rtc.c | 411 ++++++++++++++++
127
hw/sd/allwinner-sdhost.c | 854 ++++++++++++++++++++++++++++++++
128
hw/ssi/aspeed_smc.c | 56 ++-
129
hw/usb/hcd-ehci-sysbus.c | 17 +
130
target/arm/helper.c | 49 +-
131
target/arm/kvm.c | 14 +-
132
target/arm/kvm32.c | 15 +-
133
target/arm/kvm64.c | 15 +-
134
target/arm/translate-a64.c | 11 +
135
target/arm/translate.c | 14 +-
136
MAINTAINERS | 9 +
137
default-configs/arm-softmmu.mak | 1 +
138
docs/system/arm/orangepi.rst | 253 ++++++++++
139
docs/system/target-arm.rst | 2 +
140
hw/arm/Kconfig | 12 +
141
hw/misc/trace-events | 19 +
142
hw/net/Kconfig | 3 +
143
hw/net/trace-events | 10 +
144
hw/rtc/trace-events | 4 +
145
hw/sd/trace-events | 7 +
146
hw/ssi/trace-events | 10 +
147
tests/acceptance/boot_linux_console.py | 230 +++++++++
148
57 files changed, 5787 insertions(+), 74 deletions(-)
149
create mode 100644 include/hw/arm/allwinner-h3.h
150
create mode 100644 include/hw/misc/allwinner-cpucfg.h
151
create mode 100644 include/hw/misc/allwinner-h3-ccu.h
152
create mode 100644 include/hw/misc/allwinner-h3-dramc.h
153
create mode 100644 include/hw/misc/allwinner-h3-sysctrl.h
154
create mode 100644 include/hw/misc/allwinner-sid.h
155
create mode 100644 include/hw/net/allwinner-sun8i-emac.h
156
create mode 100644 include/hw/rtc/allwinner-rtc.h
157
create mode 100644 include/hw/sd/allwinner-sdhost.h
158
create mode 100644 hw/arm/allwinner-h3.c
159
create mode 100644 hw/arm/orangepi.c
160
create mode 100644 hw/misc/allwinner-cpucfg.c
161
create mode 100644 hw/misc/allwinner-h3-ccu.c
162
create mode 100644 hw/misc/allwinner-h3-dramc.c
163
create mode 100644 hw/misc/allwinner-h3-sysctrl.c
164
create mode 100644 hw/misc/allwinner-sid.c
165
create mode 100644 hw/net/allwinner-sun8i-emac.c
166
create mode 100644 hw/rtc/allwinner-rtc.c
167
create mode 100644 hw/sd/allwinner-sdhost.c
168
create mode 100644 docs/system/arm/orangepi.rst
169
create mode 100644 hw/ssi/trace-events
170
diff view generated by jsdifflib
1
Currently we don't support board configurations that put an IOMMU
1
Some of an M-profile CPU's cached hflags state depends on state that's
2
in the path of the CPU's memory transactions, and instead just
2
in our NVIC object. We already do an hflags rebuild when the NVIC
3
assert() if the memory region fonud in address_space_translate_for_iotlb()
3
registers are written, but we also need to do this on NVIC reset,
4
is an IOMMUMemoryRegion.
4
because there's no guarantee that this will happen before the
5
CPU reset.
5
6
6
Remove this limitation by having the function handle IOMMUs.
7
This fixes an assertion due to mismatched hflags which happens if
7
This is mostly straightforward, but we must make sure we have
8
the CPU is reset from inside a HardFault handler.
8
a notifier registered for every IOMMU that a transaction has
9
passed through, so that we can flush the TLB appropriately
10
when any of the IOMMUs change their mappings.
11
9
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
11
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
14
Message-id: 20180604152941.20374-5-peter.maydell@linaro.org
12
Message-id: 20200303174950.3298-2-peter.maydell@linaro.org
15
---
13
---
16
include/exec/exec-all.h | 3 +-
14
hw/intc/armv7m_nvic.c | 6 ++++++
17
include/qom/cpu.h | 3 +
15
1 file changed, 6 insertions(+)
18
accel/tcg/cputlb.c | 3 +-
19
exec.c | 135 +++++++++++++++++++++++++++++++++++++++-
20
4 files changed, 140 insertions(+), 4 deletions(-)
21
16
22
diff --git a/include/exec/exec-all.h b/include/exec/exec-all.h
17
diff --git a/hw/intc/armv7m_nvic.c b/hw/intc/armv7m_nvic.c
23
index XXXXXXX..XXXXXXX 100644
18
index XXXXXXX..XXXXXXX 100644
24
--- a/include/exec/exec-all.h
19
--- a/hw/intc/armv7m_nvic.c
25
+++ b/include/exec/exec-all.h
20
+++ b/hw/intc/armv7m_nvic.c
26
@@ -XXX,XX +XXX,XX @@ void tb_flush_jmp_cache(CPUState *cpu, target_ulong addr);
21
@@ -XXX,XX +XXX,XX @@ static void armv7m_nvic_reset(DeviceState *dev)
27
22
s->itns[i] = true;
28
MemoryRegionSection *
23
}
29
address_space_translate_for_iotlb(CPUState *cpu, int asidx, hwaddr addr,
30
- hwaddr *xlat, hwaddr *plen);
31
+ hwaddr *xlat, hwaddr *plen,
32
+ MemTxAttrs attrs, int *prot);
33
hwaddr memory_region_section_get_iotlb(CPUState *cpu,
34
MemoryRegionSection *section,
35
target_ulong vaddr,
36
diff --git a/include/qom/cpu.h b/include/qom/cpu.h
37
index XXXXXXX..XXXXXXX 100644
38
--- a/include/qom/cpu.h
39
+++ b/include/qom/cpu.h
40
@@ -XXX,XX +XXX,XX @@ struct CPUState {
41
uint16_t pending_tlb_flush;
42
43
int hvf_fd;
44
+
45
+ /* track IOMMUs whose translations we've cached in the TCG TLB */
46
+ GArray *iommu_notifiers;
47
};
48
49
QTAILQ_HEAD(CPUTailQ, CPUState);
50
diff --git a/accel/tcg/cputlb.c b/accel/tcg/cputlb.c
51
index XXXXXXX..XXXXXXX 100644
52
--- a/accel/tcg/cputlb.c
53
+++ b/accel/tcg/cputlb.c
54
@@ -XXX,XX +XXX,XX @@ void tlb_set_page_with_attrs(CPUState *cpu, target_ulong vaddr,
55
}
56
57
sz = size;
58
- section = address_space_translate_for_iotlb(cpu, asidx, paddr, &xlat, &sz);
59
+ section = address_space_translate_for_iotlb(cpu, asidx, paddr, &xlat, &sz,
60
+ attrs, &prot);
61
assert(sz >= TARGET_PAGE_SIZE);
62
63
tlb_debug("vaddr=" TARGET_FMT_lx " paddr=0x" TARGET_FMT_plx
64
diff --git a/exec.c b/exec.c
65
index XXXXXXX..XXXXXXX 100644
66
--- a/exec.c
67
+++ b/exec.c
68
@@ -XXX,XX +XXX,XX @@ MemoryRegion *flatview_translate(FlatView *fv, hwaddr addr, hwaddr *xlat,
69
return mr;
70
}
71
72
+typedef struct TCGIOMMUNotifier {
73
+ IOMMUNotifier n;
74
+ MemoryRegion *mr;
75
+ CPUState *cpu;
76
+ int iommu_idx;
77
+ bool active;
78
+} TCGIOMMUNotifier;
79
+
80
+static void tcg_iommu_unmap_notify(IOMMUNotifier *n, IOMMUTLBEntry *iotlb)
81
+{
82
+ TCGIOMMUNotifier *notifier = container_of(n, TCGIOMMUNotifier, n);
83
+
84
+ if (!notifier->active) {
85
+ return;
86
+ }
87
+ tlb_flush(notifier->cpu);
88
+ notifier->active = false;
89
+ /* We leave the notifier struct on the list to avoid reallocating it later.
90
+ * Generally the number of IOMMUs a CPU deals with will be small.
91
+ * In any case we can't unregister the iommu notifier from a notify
92
+ * callback.
93
+ */
94
+}
95
+
96
+static void tcg_register_iommu_notifier(CPUState *cpu,
97
+ IOMMUMemoryRegion *iommu_mr,
98
+ int iommu_idx)
99
+{
100
+ /* Make sure this CPU has an IOMMU notifier registered for this
101
+ * IOMMU/IOMMU index combination, so that we can flush its TLB
102
+ * when the IOMMU tells us the mappings we've cached have changed.
103
+ */
104
+ MemoryRegion *mr = MEMORY_REGION(iommu_mr);
105
+ TCGIOMMUNotifier *notifier;
106
+ int i;
107
+
108
+ for (i = 0; i < cpu->iommu_notifiers->len; i++) {
109
+ notifier = &g_array_index(cpu->iommu_notifiers, TCGIOMMUNotifier, i);
110
+ if (notifier->mr == mr && notifier->iommu_idx == iommu_idx) {
111
+ break;
112
+ }
113
+ }
114
+ if (i == cpu->iommu_notifiers->len) {
115
+ /* Not found, add a new entry at the end of the array */
116
+ cpu->iommu_notifiers = g_array_set_size(cpu->iommu_notifiers, i + 1);
117
+ notifier = &g_array_index(cpu->iommu_notifiers, TCGIOMMUNotifier, i);
118
+
119
+ notifier->mr = mr;
120
+ notifier->iommu_idx = iommu_idx;
121
+ notifier->cpu = cpu;
122
+ /* Rather than trying to register interest in the specific part
123
+ * of the iommu's address space that we've accessed and then
124
+ * expand it later as subsequent accesses touch more of it, we
125
+ * just register interest in the whole thing, on the assumption
126
+ * that iommu reconfiguration will be rare.
127
+ */
128
+ iommu_notifier_init(&notifier->n,
129
+ tcg_iommu_unmap_notify,
130
+ IOMMU_NOTIFIER_UNMAP,
131
+ 0,
132
+ HWADDR_MAX,
133
+ iommu_idx);
134
+ memory_region_register_iommu_notifier(notifier->mr, &notifier->n);
135
+ }
136
+
137
+ if (!notifier->active) {
138
+ notifier->active = true;
139
+ }
140
+}
141
+
142
+static void tcg_iommu_free_notifier_list(CPUState *cpu)
143
+{
144
+ /* Destroy the CPU's notifier list */
145
+ int i;
146
+ TCGIOMMUNotifier *notifier;
147
+
148
+ for (i = 0; i < cpu->iommu_notifiers->len; i++) {
149
+ notifier = &g_array_index(cpu->iommu_notifiers, TCGIOMMUNotifier, i);
150
+ memory_region_unregister_iommu_notifier(notifier->mr, &notifier->n);
151
+ }
152
+ g_array_free(cpu->iommu_notifiers, true);
153
+}
154
+
155
/* Called from RCU critical section */
156
MemoryRegionSection *
157
address_space_translate_for_iotlb(CPUState *cpu, int asidx, hwaddr addr,
158
- hwaddr *xlat, hwaddr *plen)
159
+ hwaddr *xlat, hwaddr *plen,
160
+ MemTxAttrs attrs, int *prot)
161
{
162
MemoryRegionSection *section;
163
+ IOMMUMemoryRegion *iommu_mr;
164
+ IOMMUMemoryRegionClass *imrc;
165
+ IOMMUTLBEntry iotlb;
166
+ int iommu_idx;
167
AddressSpaceDispatch *d = atomic_rcu_read(&cpu->cpu_ases[asidx].memory_dispatch);
168
169
- section = address_space_translate_internal(d, addr, xlat, plen, false);
170
+ for (;;) {
171
+ section = address_space_translate_internal(d, addr, &addr, plen, false);
172
+
173
+ iommu_mr = memory_region_get_iommu(section->mr);
174
+ if (!iommu_mr) {
175
+ break;
176
+ }
177
+
178
+ imrc = memory_region_get_iommu_class_nocheck(iommu_mr);
179
+
180
+ iommu_idx = imrc->attrs_to_index(iommu_mr, attrs);
181
+ tcg_register_iommu_notifier(cpu, iommu_mr, iommu_idx);
182
+ /* We need all the permissions, so pass IOMMU_NONE so the IOMMU
183
+ * doesn't short-cut its translation table walk.
184
+ */
185
+ iotlb = imrc->translate(iommu_mr, addr, IOMMU_NONE, iommu_idx);
186
+ addr = ((iotlb.translated_addr & ~iotlb.addr_mask)
187
+ | (addr & iotlb.addr_mask));
188
+ /* Update the caller's prot bits to remove permissions the IOMMU
189
+ * is giving us a failure response for. If we get down to no
190
+ * permissions left at all we can give up now.
191
+ */
192
+ if (!(iotlb.perm & IOMMU_RO)) {
193
+ *prot &= ~(PAGE_READ | PAGE_EXEC);
194
+ }
195
+ if (!(iotlb.perm & IOMMU_WO)) {
196
+ *prot &= ~PAGE_WRITE;
197
+ }
198
+
199
+ if (!*prot) {
200
+ goto translate_fail;
201
+ }
202
+
203
+ d = flatview_to_dispatch(address_space_to_flatview(iotlb.target_as));
204
+ }
205
206
assert(!memory_region_is_iommu(section->mr));
207
+ *xlat = addr;
208
return section;
209
+
210
+translate_fail:
211
+ return &d->map.sections[PHYS_SECTION_UNASSIGNED];
212
}
213
#endif
214
215
@@ -XXX,XX +XXX,XX @@ void cpu_exec_unrealizefn(CPUState *cpu)
216
if (qdev_get_vmsd(DEVICE(cpu)) == NULL) {
217
vmstate_unregister(NULL, &vmstate_cpu_common, cpu);
218
}
219
+#ifndef CONFIG_USER_ONLY
220
+ tcg_iommu_free_notifier_list(cpu);
221
+#endif
222
}
223
224
Property cpu_common_props[] = {
225
@@ -XXX,XX +XXX,XX @@ void cpu_exec_realizefn(CPUState *cpu, Error **errp)
226
if (cc->vmsd != NULL) {
227
vmstate_register(NULL, cpu->cpu_index, cc->vmsd, cpu);
228
}
24
}
229
+
25
+
230
+ cpu->iommu_notifiers = g_array_new(false, true, sizeof(TCGIOMMUNotifier));
26
+ /*
231
#endif
27
+ * We updated state that affects the CPU's MMUidx and thus its hflags;
28
+ * and we can't guarantee that we run before the CPU reset function.
29
+ */
30
+ arm_rebuild_hflags(&s->cpu->env);
232
}
31
}
233
32
33
static void nvic_systick_trigger(void *opaque, int n, int level)
234
--
34
--
235
2.17.1
35
2.20.1
236
36
237
37
diff view generated by jsdifflib
1
From: Julia Suvorova <jusual@mail.ru>
1
For M-profile CPUs, the FAULTMASK value affects the CPU's MMU index
2
(it changes the NegPri bit). We update the hflags after calls
3
to the v7m_msr helper in trans_MSR_v7m() but forgot to do so
4
in trans_CPS_v7m().
2
5
3
ARMv6-M supports 6 Thumb2 instructions. This patch checks for these
4
instructions and allows their execution.
5
Like Thumb2 cores, ARMv6-M always interprets BL instruction as 32-bit.
6
7
This patch is required for future Cortex-M0 support.
8
9
Signed-off-by: Julia Suvorova <jusual@mail.ru>
10
Reviewed-by: Stefan Hajnoczi <stefanha@redhat.com>
11
Message-id: 20180612204632.28780-1-jusual@mail.ru
12
[PMM: move armv6m_insn[] and armv6m_mask[] closer to
13
point of use, and mark 'const'. Check for M-and-not-v7
14
rather than M-and-6.]
15
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
16
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20200303174950.3298-3-peter.maydell@linaro.org
17
---
9
---
18
target/arm/translate.c | 43 +++++++++++++++++++++++++++++++++++++-----
10
target/arm/translate.c | 5 ++++-
19
1 file changed, 38 insertions(+), 5 deletions(-)
11
1 file changed, 4 insertions(+), 1 deletion(-)
20
12
21
diff --git a/target/arm/translate.c b/target/arm/translate.c
13
diff --git a/target/arm/translate.c b/target/arm/translate.c
22
index XXXXXXX..XXXXXXX 100644
14
index XXXXXXX..XXXXXXX 100644
23
--- a/target/arm/translate.c
15
--- a/target/arm/translate.c
24
+++ b/target/arm/translate.c
16
+++ b/target/arm/translate.c
25
@@ -XXX,XX +XXX,XX @@ static bool thumb_insn_is_16bit(DisasContext *s, uint32_t insn)
17
@@ -XXX,XX +XXX,XX @@ static bool trans_CPS(DisasContext *s, arg_CPS *a)
26
* end up actually treating this as two 16-bit insns, though,
18
27
* if it's half of a bl/blx pair that might span a page boundary.
19
static bool trans_CPS_v7m(DisasContext *s, arg_CPS_v7m *a)
28
*/
20
{
29
- if (arm_dc_feature(s, ARM_FEATURE_THUMB2)) {
21
- TCGv_i32 tmp, addr;
30
+ if (arm_dc_feature(s, ARM_FEATURE_THUMB2) ||
22
+ TCGv_i32 tmp, addr, el;
31
+ arm_dc_feature(s, ARM_FEATURE_M)) {
23
32
/* Thumb2 cores (including all M profile ones) always treat
24
if (!arm_dc_feature(s, ARM_FEATURE_M)) {
33
* 32-bit insns as 32-bit.
25
return false;
34
*/
26
@@ -XXX,XX +XXX,XX @@ static bool trans_CPS_v7m(DisasContext *s, arg_CPS_v7m *a)
35
@@ -XXX,XX +XXX,XX @@ static void disas_thumb2_insn(DisasContext *s, uint32_t insn)
27
gen_helper_v7m_msr(cpu_env, addr, tmp);
36
int conds;
28
tcg_temp_free_i32(addr);
37
int logic_cc;
38
39
- /* The only 32 bit insn that's allowed for Thumb1 is the combined
40
- * BL/BLX prefix and suffix.
41
+ /*
42
+ * ARMv6-M supports a limited subset of Thumb2 instructions.
43
+ * Other Thumb1 architectures allow only 32-bit
44
+ * combined BL/BLX prefix and suffix.
45
*/
46
- if ((insn & 0xf800e800) != 0xf000e800) {
47
+ if (arm_dc_feature(s, ARM_FEATURE_M) &&
48
+ !arm_dc_feature(s, ARM_FEATURE_V7)) {
49
+ int i;
50
+ bool found = false;
51
+ const uint32_t armv6m_insn[] = {0xf3808000 /* msr */,
52
+ 0xf3b08040 /* dsb */,
53
+ 0xf3b08050 /* dmb */,
54
+ 0xf3b08060 /* isb */,
55
+ 0xf3e08000 /* mrs */,
56
+ 0xf000d000 /* bl */};
57
+ const uint32_t armv6m_mask[] = {0xffe0d000,
58
+ 0xfff0d0f0,
59
+ 0xfff0d0f0,
60
+ 0xfff0d0f0,
61
+ 0xffe0d000,
62
+ 0xf800d000};
63
+
64
+ for (i = 0; i < ARRAY_SIZE(armv6m_insn); i++) {
65
+ if ((insn & armv6m_mask[i]) == armv6m_insn[i]) {
66
+ found = true;
67
+ break;
68
+ }
69
+ }
70
+ if (!found) {
71
+ goto illegal_op;
72
+ }
73
+ } else if ((insn & 0xf800e800) != 0xf000e800) {
74
ARCH(6T2);
75
}
29
}
76
30
+ el = tcg_const_i32(s->current_el);
77
@@ -XXX,XX +XXX,XX @@ static void disas_thumb2_insn(DisasContext *s, uint32_t insn)
31
+ gen_helper_rebuild_hflags_m32(cpu_env, el);
78
}
32
+ tcg_temp_free_i32(el);
79
break;
33
tcg_temp_free_i32(tmp);
80
case 3: /* Special control operations. */
34
gen_lookup_tb(s);
81
- ARCH(7);
35
return true;
82
+ if (!arm_dc_feature(s, ARM_FEATURE_V7) &&
83
+ !(arm_dc_feature(s, ARM_FEATURE_V6) &&
84
+ arm_dc_feature(s, ARM_FEATURE_M))) {
85
+ goto illegal_op;
86
+ }
87
op = (insn >> 4) & 0xf;
88
switch (op) {
89
case 2: /* clrex */
90
--
36
--
91
2.17.1
37
2.20.1
92
38
93
39
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
A write to the CONTROL register can change our current EL (by
2
writing to the nPRIV bit). That means that we can't assume
3
that s->current_el is still valid in trans_MSR_v7m() when
4
we try to rebuild the hflags.
2
5
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
Add a new helper rebuild_hflags_m32_newel() which, like the
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
7
existing rebuild_hflags_a32_newel(), recalculates the current
5
Message-id: 20180613015641.5667-19-richard.henderson@linaro.org
8
EL from scratch, and use it in trans_MSR_v7m().
9
10
This fixes an assertion about an hflags mismatch when the
11
guest changes privilege by writing to CONTROL.
12
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
15
Message-id: 20200303174950.3298-4-peter.maydell@linaro.org
7
---
16
---
8
target/arm/helper-sve.h | 14 ++++++++
17
target/arm/helper.h | 1 +
9
target/arm/helper.h | 19 +++++++++++
18
target/arm/helper.c | 12 ++++++++++++
10
target/arm/translate-sve.c | 42 +++++++++++++++++++++++
19
target/arm/translate.c | 7 +++----
11
target/arm/vec_helper.c | 69 ++++++++++++++++++++++++++++++++++++++
20
3 files changed, 16 insertions(+), 4 deletions(-)
12
target/arm/sve.decode | 10 ++++++
13
5 files changed, 154 insertions(+)
14
21
15
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
16
index XXXXXXX..XXXXXXX 100644
17
--- a/target/arm/helper-sve.h
18
+++ b/target/arm/helper-sve.h
19
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_4(sve_umini_b, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
20
DEF_HELPER_FLAGS_4(sve_umini_h, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
21
DEF_HELPER_FLAGS_4(sve_umini_s, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
22
DEF_HELPER_FLAGS_4(sve_umini_d, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
23
+
24
+DEF_HELPER_FLAGS_5(gvec_recps_h, TCG_CALL_NO_RWG,
25
+ void, ptr, ptr, ptr, ptr, i32)
26
+DEF_HELPER_FLAGS_5(gvec_recps_s, TCG_CALL_NO_RWG,
27
+ void, ptr, ptr, ptr, ptr, i32)
28
+DEF_HELPER_FLAGS_5(gvec_recps_d, TCG_CALL_NO_RWG,
29
+ void, ptr, ptr, ptr, ptr, i32)
30
+
31
+DEF_HELPER_FLAGS_5(gvec_rsqrts_h, TCG_CALL_NO_RWG,
32
+ void, ptr, ptr, ptr, ptr, i32)
33
+DEF_HELPER_FLAGS_5(gvec_rsqrts_s, TCG_CALL_NO_RWG,
34
+ void, ptr, ptr, ptr, ptr, i32)
35
+DEF_HELPER_FLAGS_5(gvec_rsqrts_d, TCG_CALL_NO_RWG,
36
+ void, ptr, ptr, ptr, ptr, i32)
37
diff --git a/target/arm/helper.h b/target/arm/helper.h
22
diff --git a/target/arm/helper.h b/target/arm/helper.h
38
index XXXXXXX..XXXXXXX 100644
23
index XXXXXXX..XXXXXXX 100644
39
--- a/target/arm/helper.h
24
--- a/target/arm/helper.h
40
+++ b/target/arm/helper.h
25
+++ b/target/arm/helper.h
41
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_5(gvec_fcmlas_idx, TCG_CALL_NO_RWG,
26
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_4(msr_banked, void, env, i32, i32, i32)
42
DEF_HELPER_FLAGS_5(gvec_fcmlad, TCG_CALL_NO_RWG,
27
DEF_HELPER_2(get_user_reg, i32, env, i32)
43
void, ptr, ptr, ptr, ptr, i32)
28
DEF_HELPER_3(set_user_reg, void, env, i32, i32)
44
29
45
+DEF_HELPER_FLAGS_5(gvec_fadd_h, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
30
+DEF_HELPER_FLAGS_1(rebuild_hflags_m32_newel, TCG_CALL_NO_RWG, void, env)
46
+DEF_HELPER_FLAGS_5(gvec_fadd_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
31
DEF_HELPER_FLAGS_2(rebuild_hflags_m32, TCG_CALL_NO_RWG, void, env, int)
47
+DEF_HELPER_FLAGS_5(gvec_fadd_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
32
DEF_HELPER_FLAGS_1(rebuild_hflags_a32_newel, TCG_CALL_NO_RWG, void, env)
48
+
33
DEF_HELPER_FLAGS_2(rebuild_hflags_a32, TCG_CALL_NO_RWG, void, env, int)
49
+DEF_HELPER_FLAGS_5(gvec_fsub_h, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
34
diff --git a/target/arm/helper.c b/target/arm/helper.c
50
+DEF_HELPER_FLAGS_5(gvec_fsub_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
51
+DEF_HELPER_FLAGS_5(gvec_fsub_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
52
+
53
+DEF_HELPER_FLAGS_5(gvec_fmul_h, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
54
+DEF_HELPER_FLAGS_5(gvec_fmul_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
55
+DEF_HELPER_FLAGS_5(gvec_fmul_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
56
+
57
+DEF_HELPER_FLAGS_5(gvec_ftsmul_h, TCG_CALL_NO_RWG,
58
+ void, ptr, ptr, ptr, ptr, i32)
59
+DEF_HELPER_FLAGS_5(gvec_ftsmul_s, TCG_CALL_NO_RWG,
60
+ void, ptr, ptr, ptr, ptr, i32)
61
+DEF_HELPER_FLAGS_5(gvec_ftsmul_d, TCG_CALL_NO_RWG,
62
+ void, ptr, ptr, ptr, ptr, i32)
63
+
64
#ifdef TARGET_AARCH64
65
#include "helper-a64.h"
66
#include "helper-sve.h"
67
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
68
index XXXXXXX..XXXXXXX 100644
35
index XXXXXXX..XXXXXXX 100644
69
--- a/target/arm/translate-sve.c
36
--- a/target/arm/helper.c
70
+++ b/target/arm/translate-sve.c
37
+++ b/target/arm/helper.c
71
@@ -XXX,XX +XXX,XX @@ DO_ZZI(UMIN, umin)
38
@@ -XXX,XX +XXX,XX @@ void arm_rebuild_hflags(CPUARMState *env)
72
39
env->hflags = rebuild_hflags_internal(env);
73
#undef DO_ZZI
40
}
74
41
75
+/*
42
+/*
76
+ *** SVE Floating Point Arithmetic - Unpredicated Group
43
+ * If we have triggered a EL state change we can't rely on the
44
+ * translator having passed it to us, we need to recompute.
77
+ */
45
+ */
78
+
46
+void HELPER(rebuild_hflags_m32_newel)(CPUARMState *env)
79
+static bool do_zzz_fp(DisasContext *s, arg_rrr_esz *a,
80
+ gen_helper_gvec_3_ptr *fn)
81
+{
47
+{
82
+ if (fn == NULL) {
48
+ int el = arm_current_el(env);
83
+ return false;
49
+ int fp_el = fp_exception_el(env, el);
84
+ }
50
+ ARMMMUIdx mmu_idx = arm_mmu_idx_el(env, el);
85
+ if (sve_access_check(s)) {
51
+ env->hflags = rebuild_hflags_m32(env, fp_el, mmu_idx);
86
+ unsigned vsz = vec_full_reg_size(s);
87
+ TCGv_ptr status = get_fpstatus_ptr(a->esz == MO_16);
88
+ tcg_gen_gvec_3_ptr(vec_full_reg_offset(s, a->rd),
89
+ vec_full_reg_offset(s, a->rn),
90
+ vec_full_reg_offset(s, a->rm),
91
+ status, vsz, vsz, 0, fn);
92
+ tcg_temp_free_ptr(status);
93
+ }
94
+ return true;
95
+}
52
+}
96
+
53
+
97
+
54
void HELPER(rebuild_hflags_m32)(CPUARMState *env, int el)
98
+#define DO_FP3(NAME, name) \
55
{
99
+static bool trans_##NAME(DisasContext *s, arg_rrr_esz *a, uint32_t insn) \
56
int fp_el = fp_exception_el(env, el);
100
+{ \
57
diff --git a/target/arm/translate.c b/target/arm/translate.c
101
+ static gen_helper_gvec_3_ptr * const fns[4] = { \
102
+ NULL, gen_helper_gvec_##name##_h, \
103
+ gen_helper_gvec_##name##_s, gen_helper_gvec_##name##_d \
104
+ }; \
105
+ return do_zzz_fp(s, a, fns[a->esz]); \
106
+}
107
+
108
+DO_FP3(FADD_zzz, fadd)
109
+DO_FP3(FSUB_zzz, fsub)
110
+DO_FP3(FMUL_zzz, fmul)
111
+DO_FP3(FTSMUL, ftsmul)
112
+DO_FP3(FRECPS, recps)
113
+DO_FP3(FRSQRTS, rsqrts)
114
+
115
+#undef DO_FP3
116
+
117
/*
118
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
119
*/
120
diff --git a/target/arm/vec_helper.c b/target/arm/vec_helper.c
121
index XXXXXXX..XXXXXXX 100644
58
index XXXXXXX..XXXXXXX 100644
122
--- a/target/arm/vec_helper.c
59
--- a/target/arm/translate.c
123
+++ b/target/arm/vec_helper.c
60
+++ b/target/arm/translate.c
124
@@ -XXX,XX +XXX,XX @@ void HELPER(gvec_fcmlad)(void *vd, void *vn, void *vm,
61
@@ -XXX,XX +XXX,XX @@ static bool trans_MRS_v7m(DisasContext *s, arg_MRS_v7m *a)
125
}
62
126
clear_tail(d, opr_sz, simd_maxsz(desc));
63
static bool trans_MSR_v7m(DisasContext *s, arg_MSR_v7m *a)
64
{
65
- TCGv_i32 addr, reg, el;
66
+ TCGv_i32 addr, reg;
67
68
if (!arm_dc_feature(s, ARM_FEATURE_M)) {
69
return false;
70
@@ -XXX,XX +XXX,XX @@ static bool trans_MSR_v7m(DisasContext *s, arg_MSR_v7m *a)
71
gen_helper_v7m_msr(cpu_env, addr, reg);
72
tcg_temp_free_i32(addr);
73
tcg_temp_free_i32(reg);
74
- el = tcg_const_i32(s->current_el);
75
- gen_helper_rebuild_hflags_m32(cpu_env, el);
76
- tcg_temp_free_i32(el);
77
+ /* If we wrote to CONTROL, the EL might have changed */
78
+ gen_helper_rebuild_hflags_m32_newel(cpu_env);
79
gen_lookup_tb(s);
80
return true;
127
}
81
}
128
+
129
+/* Floating-point trigonometric starting value.
130
+ * See the ARM ARM pseudocode function FPTrigSMul.
131
+ */
132
+static float16 float16_ftsmul(float16 op1, uint16_t op2, float_status *stat)
133
+{
134
+ float16 result = float16_mul(op1, op1, stat);
135
+ if (!float16_is_any_nan(result)) {
136
+ result = float16_set_sign(result, op2 & 1);
137
+ }
138
+ return result;
139
+}
140
+
141
+static float32 float32_ftsmul(float32 op1, uint32_t op2, float_status *stat)
142
+{
143
+ float32 result = float32_mul(op1, op1, stat);
144
+ if (!float32_is_any_nan(result)) {
145
+ result = float32_set_sign(result, op2 & 1);
146
+ }
147
+ return result;
148
+}
149
+
150
+static float64 float64_ftsmul(float64 op1, uint64_t op2, float_status *stat)
151
+{
152
+ float64 result = float64_mul(op1, op1, stat);
153
+ if (!float64_is_any_nan(result)) {
154
+ result = float64_set_sign(result, op2 & 1);
155
+ }
156
+ return result;
157
+}
158
+
159
+#define DO_3OP(NAME, FUNC, TYPE) \
160
+void HELPER(NAME)(void *vd, void *vn, void *vm, void *stat, uint32_t desc) \
161
+{ \
162
+ intptr_t i, oprsz = simd_oprsz(desc); \
163
+ TYPE *d = vd, *n = vn, *m = vm; \
164
+ for (i = 0; i < oprsz / sizeof(TYPE); i++) { \
165
+ d[i] = FUNC(n[i], m[i], stat); \
166
+ } \
167
+}
168
+
169
+DO_3OP(gvec_fadd_h, float16_add, float16)
170
+DO_3OP(gvec_fadd_s, float32_add, float32)
171
+DO_3OP(gvec_fadd_d, float64_add, float64)
172
+
173
+DO_3OP(gvec_fsub_h, float16_sub, float16)
174
+DO_3OP(gvec_fsub_s, float32_sub, float32)
175
+DO_3OP(gvec_fsub_d, float64_sub, float64)
176
+
177
+DO_3OP(gvec_fmul_h, float16_mul, float16)
178
+DO_3OP(gvec_fmul_s, float32_mul, float32)
179
+DO_3OP(gvec_fmul_d, float64_mul, float64)
180
+
181
+DO_3OP(gvec_ftsmul_h, float16_ftsmul, float16)
182
+DO_3OP(gvec_ftsmul_s, float32_ftsmul, float32)
183
+DO_3OP(gvec_ftsmul_d, float64_ftsmul, float64)
184
+
185
+#ifdef TARGET_AARCH64
186
+
187
+DO_3OP(gvec_recps_h, helper_recpsf_f16, float16)
188
+DO_3OP(gvec_recps_s, helper_recpsf_f32, float32)
189
+DO_3OP(gvec_recps_d, helper_recpsf_f64, float64)
190
+
191
+DO_3OP(gvec_rsqrts_h, helper_rsqrtsf_f16, float16)
192
+DO_3OP(gvec_rsqrts_s, helper_rsqrtsf_f32, float32)
193
+DO_3OP(gvec_rsqrts_d, helper_rsqrtsf_f64, float64)
194
+
195
+#endif
196
+#undef DO_3OP
197
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
198
index XXXXXXX..XXXXXXX 100644
199
--- a/target/arm/sve.decode
200
+++ b/target/arm/sve.decode
201
@@ -XXX,XX +XXX,XX @@ UMIN_zzi 00100101 .. 101 011 110 ........ ..... @rdn_i8u
202
# SVE integer multiply immediate (unpredicated)
203
MUL_zzi 00100101 .. 110 000 110 ........ ..... @rdn_i8s
204
205
+### SVE Floating Point Arithmetic - Unpredicated Group
206
+
207
+# SVE floating-point arithmetic (unpredicated)
208
+FADD_zzz 01100101 .. 0 ..... 000 000 ..... ..... @rd_rn_rm
209
+FSUB_zzz 01100101 .. 0 ..... 000 001 ..... ..... @rd_rn_rm
210
+FMUL_zzz 01100101 .. 0 ..... 000 010 ..... ..... @rd_rn_rm
211
+FTSMUL 01100101 .. 0 ..... 000 011 ..... ..... @rd_rn_rm
212
+FRECPS 01100101 .. 0 ..... 000 110 ..... ..... @rd_rn_rm
213
+FRSQRTS 01100101 .. 0 ..... 000 111 ..... ..... @rd_rn_rm
214
+
215
### SVE Memory - 32-bit Gather and Unsized Contiguous Group
216
217
# SVE load predicate register
218
--
82
--
219
2.17.1
83
2.20.1
220
84
221
85
diff view generated by jsdifflib
1
Add an IOMMU index argument to the translate method of
1
Fix a couple of comment typos.
2
IOMMUs. Since all of our current IOMMU implementations
3
support only a single IOMMU index, this has no effect
4
on the behaviour.
5
2
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
3
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
4
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
5
Message-id: 20200303174950.3298-5-peter.maydell@linaro.org
9
Message-id: 20180604152941.20374-4-peter.maydell@linaro.org
10
---
6
---
11
include/exec/memory.h | 3 ++-
7
target/arm/helper.c | 2 +-
12
exec.c | 11 +++++++++--
8
target/arm/translate.c | 2 +-
13
hw/alpha/typhoon.c | 3 ++-
9
2 files changed, 2 insertions(+), 2 deletions(-)
14
hw/arm/smmuv3.c | 2 +-
15
hw/dma/rc4030.c | 2 +-
16
hw/i386/amd_iommu.c | 2 +-
17
hw/i386/intel_iommu.c | 2 +-
18
hw/ppc/spapr_iommu.c | 3 ++-
19
hw/s390x/s390-pci-bus.c | 2 +-
20
hw/sparc/sun4m_iommu.c | 3 ++-
21
hw/sparc64/sun4u_iommu.c | 2 +-
22
memory.c | 2 +-
23
12 files changed, 24 insertions(+), 13 deletions(-)
24
10
25
diff --git a/include/exec/memory.h b/include/exec/memory.h
11
diff --git a/target/arm/helper.c b/target/arm/helper.c
26
index XXXXXXX..XXXXXXX 100644
12
index XXXXXXX..XXXXXXX 100644
27
--- a/include/exec/memory.h
13
--- a/target/arm/helper.c
28
+++ b/include/exec/memory.h
14
+++ b/target/arm/helper.c
29
@@ -XXX,XX +XXX,XX @@ typedef struct IOMMUMemoryRegionClass {
15
@@ -XXX,XX +XXX,XX @@ void HELPER(rebuild_hflags_m32)(CPUARMState *env, int el)
30
* @iommu: the IOMMUMemoryRegion
16
31
* @hwaddr: address to be translated within the memory region
17
/*
32
* @flag: requested access permissions
18
* If we have triggered a EL state change we can't rely on the
33
+ * @iommu_idx: IOMMU index for the translation
19
- * translator having passed it too us, we need to recompute.
34
*/
20
+ * translator having passed it to us, we need to recompute.
35
IOMMUTLBEntry (*translate)(IOMMUMemoryRegion *iommu, hwaddr addr,
21
*/
36
- IOMMUAccessFlags flag);
22
void HELPER(rebuild_hflags_a32_newel)(CPUARMState *env)
37
+ IOMMUAccessFlags flag, int iommu_idx);
23
{
38
/* Returns minimum supported page size in bytes.
24
diff --git a/target/arm/translate.c b/target/arm/translate.c
39
* If this method is not provided then the minimum is assumed to
40
* be TARGET_PAGE_SIZE.
41
diff --git a/exec.c b/exec.c
42
index XXXXXXX..XXXXXXX 100644
25
index XXXXXXX..XXXXXXX 100644
43
--- a/exec.c
26
--- a/target/arm/translate.c
44
+++ b/exec.c
27
+++ b/target/arm/translate.c
45
@@ -XXX,XX +XXX,XX @@ static MemoryRegionSection address_space_translate_iommu(IOMMUMemoryRegion *iomm
28
@@ -XXX,XX +XXX,XX @@ static int disas_coproc_insn(DisasContext *s, uint32_t insn)
46
do {
29
47
hwaddr addr = *xlat;
30
if (!isread && !(ri->type & ARM_CP_SUPPRESS_TB_END)) {
48
IOMMUMemoryRegionClass *imrc = memory_region_get_iommu_class_nocheck(iommu_mr);
31
/*
49
- IOMMUTLBEntry iotlb = imrc->translate(iommu_mr, addr, is_write ?
32
- * A write to any coprocessor regiser that ends a TB
50
- IOMMU_WO : IOMMU_RO);
33
+ * A write to any coprocessor register that ends a TB
51
+ int iommu_idx = 0;
34
* must rebuild the hflags for the next TB.
52
+ IOMMUTLBEntry iotlb;
35
*/
53
+
36
TCGv_i32 tcg_el = tcg_const_i32(s->current_el);
54
+ if (imrc->attrs_to_index) {
55
+ iommu_idx = imrc->attrs_to_index(iommu_mr, attrs);
56
+ }
57
+
58
+ iotlb = imrc->translate(iommu_mr, addr, is_write ?
59
+ IOMMU_WO : IOMMU_RO, iommu_idx);
60
61
if (!(iotlb.perm & (1 << is_write))) {
62
goto unassigned;
63
diff --git a/hw/alpha/typhoon.c b/hw/alpha/typhoon.c
64
index XXXXXXX..XXXXXXX 100644
65
--- a/hw/alpha/typhoon.c
66
+++ b/hw/alpha/typhoon.c
67
@@ -XXX,XX +XXX,XX @@ static bool window_translate(TyphoonWindow *win, hwaddr addr,
68
Pchip and generate a machine check interrupt. */
69
static IOMMUTLBEntry typhoon_translate_iommu(IOMMUMemoryRegion *iommu,
70
hwaddr addr,
71
- IOMMUAccessFlags flag)
72
+ IOMMUAccessFlags flag,
73
+ int iommu_idx)
74
{
75
TyphoonPchip *pchip = container_of(iommu, TyphoonPchip, iommu);
76
IOMMUTLBEntry ret;
77
diff --git a/hw/arm/smmuv3.c b/hw/arm/smmuv3.c
78
index XXXXXXX..XXXXXXX 100644
79
--- a/hw/arm/smmuv3.c
80
+++ b/hw/arm/smmuv3.c
81
@@ -XXX,XX +XXX,XX @@ static int smmuv3_decode_config(IOMMUMemoryRegion *mr, SMMUTransCfg *cfg,
82
}
83
84
static IOMMUTLBEntry smmuv3_translate(IOMMUMemoryRegion *mr, hwaddr addr,
85
- IOMMUAccessFlags flag)
86
+ IOMMUAccessFlags flag, int iommu_idx)
87
{
88
SMMUDevice *sdev = container_of(mr, SMMUDevice, iommu);
89
SMMUv3State *s = sdev->smmu;
90
diff --git a/hw/dma/rc4030.c b/hw/dma/rc4030.c
91
index XXXXXXX..XXXXXXX 100644
92
--- a/hw/dma/rc4030.c
93
+++ b/hw/dma/rc4030.c
94
@@ -XXX,XX +XXX,XX @@ static const MemoryRegionOps jazzio_ops = {
95
};
96
97
static IOMMUTLBEntry rc4030_dma_translate(IOMMUMemoryRegion *iommu, hwaddr addr,
98
- IOMMUAccessFlags flag)
99
+ IOMMUAccessFlags flag, int iommu_idx)
100
{
101
rc4030State *s = container_of(iommu, rc4030State, dma_mr);
102
IOMMUTLBEntry ret = {
103
diff --git a/hw/i386/amd_iommu.c b/hw/i386/amd_iommu.c
104
index XXXXXXX..XXXXXXX 100644
105
--- a/hw/i386/amd_iommu.c
106
+++ b/hw/i386/amd_iommu.c
107
@@ -XXX,XX +XXX,XX @@ static inline bool amdvi_is_interrupt_addr(hwaddr addr)
108
}
109
110
static IOMMUTLBEntry amdvi_translate(IOMMUMemoryRegion *iommu, hwaddr addr,
111
- IOMMUAccessFlags flag)
112
+ IOMMUAccessFlags flag, int iommu_idx)
113
{
114
AMDVIAddressSpace *as = container_of(iommu, AMDVIAddressSpace, iommu);
115
AMDVIState *s = as->iommu_state;
116
diff --git a/hw/i386/intel_iommu.c b/hw/i386/intel_iommu.c
117
index XXXXXXX..XXXXXXX 100644
118
--- a/hw/i386/intel_iommu.c
119
+++ b/hw/i386/intel_iommu.c
120
@@ -XXX,XX +XXX,XX @@ static void vtd_mem_write(void *opaque, hwaddr addr,
121
}
122
123
static IOMMUTLBEntry vtd_iommu_translate(IOMMUMemoryRegion *iommu, hwaddr addr,
124
- IOMMUAccessFlags flag)
125
+ IOMMUAccessFlags flag, int iommu_idx)
126
{
127
VTDAddressSpace *vtd_as = container_of(iommu, VTDAddressSpace, iommu);
128
IntelIOMMUState *s = vtd_as->iommu_state;
129
diff --git a/hw/ppc/spapr_iommu.c b/hw/ppc/spapr_iommu.c
130
index XXXXXXX..XXXXXXX 100644
131
--- a/hw/ppc/spapr_iommu.c
132
+++ b/hw/ppc/spapr_iommu.c
133
@@ -XXX,XX +XXX,XX @@ static void spapr_tce_free_table(uint64_t *table, int fd, uint32_t nb_table)
134
/* Called from RCU critical section */
135
static IOMMUTLBEntry spapr_tce_translate_iommu(IOMMUMemoryRegion *iommu,
136
hwaddr addr,
137
- IOMMUAccessFlags flag)
138
+ IOMMUAccessFlags flag,
139
+ int iommu_idx)
140
{
141
sPAPRTCETable *tcet = container_of(iommu, sPAPRTCETable, iommu);
142
uint64_t tce;
143
diff --git a/hw/s390x/s390-pci-bus.c b/hw/s390x/s390-pci-bus.c
144
index XXXXXXX..XXXXXXX 100644
145
--- a/hw/s390x/s390-pci-bus.c
146
+++ b/hw/s390x/s390-pci-bus.c
147
@@ -XXX,XX +XXX,XX @@ uint16_t s390_guest_io_table_walk(uint64_t g_iota, hwaddr addr,
148
}
149
150
static IOMMUTLBEntry s390_translate_iommu(IOMMUMemoryRegion *mr, hwaddr addr,
151
- IOMMUAccessFlags flag)
152
+ IOMMUAccessFlags flag, int iommu_idx)
153
{
154
S390PCIIOMMU *iommu = container_of(mr, S390PCIIOMMU, iommu_mr);
155
S390IOTLBEntry *entry;
156
diff --git a/hw/sparc/sun4m_iommu.c b/hw/sparc/sun4m_iommu.c
157
index XXXXXXX..XXXXXXX 100644
158
--- a/hw/sparc/sun4m_iommu.c
159
+++ b/hw/sparc/sun4m_iommu.c
160
@@ -XXX,XX +XXX,XX @@ static void iommu_bad_addr(IOMMUState *s, hwaddr addr,
161
/* Called from RCU critical section */
162
static IOMMUTLBEntry sun4m_translate_iommu(IOMMUMemoryRegion *iommu,
163
hwaddr addr,
164
- IOMMUAccessFlags flags)
165
+ IOMMUAccessFlags flags,
166
+ int iommu_idx)
167
{
168
IOMMUState *is = container_of(iommu, IOMMUState, iommu);
169
hwaddr page, pa;
170
diff --git a/hw/sparc64/sun4u_iommu.c b/hw/sparc64/sun4u_iommu.c
171
index XXXXXXX..XXXXXXX 100644
172
--- a/hw/sparc64/sun4u_iommu.c
173
+++ b/hw/sparc64/sun4u_iommu.c
174
@@ -XXX,XX +XXX,XX @@
175
/* Called from RCU critical section */
176
static IOMMUTLBEntry sun4u_translate_iommu(IOMMUMemoryRegion *iommu,
177
hwaddr addr,
178
- IOMMUAccessFlags flag)
179
+ IOMMUAccessFlags flag, int iommu_idx)
180
{
181
IOMMUState *is = container_of(iommu, IOMMUState, iommu);
182
hwaddr baseaddr, offset;
183
diff --git a/memory.c b/memory.c
184
index XXXXXXX..XXXXXXX 100644
185
--- a/memory.c
186
+++ b/memory.c
187
@@ -XXX,XX +XXX,XX @@ void memory_region_iommu_replay(IOMMUMemoryRegion *iommu_mr, IOMMUNotifier *n)
188
granularity = memory_region_iommu_get_min_page_size(iommu_mr);
189
190
for (addr = 0; addr < memory_region_size(mr); addr += granularity) {
191
- iotlb = imrc->translate(iommu_mr, addr, IOMMU_NONE);
192
+ iotlb = imrc->translate(iommu_mr, addr, IOMMU_NONE, n->iommu_idx);
193
if (iotlb.perm != IOMMU_NONE) {
194
n->notify(n, &iotlb);
195
}
196
--
37
--
197
2.17.1
38
2.20.1
198
39
199
40
diff view generated by jsdifflib
1
From: Cédric Le Goater <clg@kaod.org>
1
From: Cédric Le Goater <clg@kaod.org>
2
2
3
On Macronix chips, two bytes can written to the WRSR. First byte will
4
configure the status register and the second the configuration
5
register. It is important to save the configuration value as it
6
contains the dummy cycle setting when using dual or quad IO mode.
7
8
Signed-off-by: Cédric Le Goater <clg@kaod.org>
3
Signed-off-by: Cédric Le Goater <clg@kaod.org>
9
Acked-by: Alistair Francis <alistair.francis@wdc.com>
4
Reviewed-by: Andrew Jeffery <andrew@aj.id.au>
5
Reviewed-by: Joel Stanley <joel@jms.id.au>
6
Reviewed-by: Philippe Mathieu-Daudé <philmd@redhat.com>
7
Message-id: 20200206112645.21275-2-clg@kaod.org
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
---
9
---
12
hw/block/m25p80.c | 1 +
10
Makefile.objs | 1 +
13
1 file changed, 1 insertion(+)
11
hw/ssi/aspeed_smc.c | 17 +++++++++++++++++
12
hw/ssi/trace-events | 9 +++++++++
13
3 files changed, 27 insertions(+)
14
create mode 100644 hw/ssi/trace-events
14
15
15
diff --git a/hw/block/m25p80.c b/hw/block/m25p80.c
16
diff --git a/Makefile.objs b/Makefile.objs
16
index XXXXXXX..XXXXXXX 100644
17
index XXXXXXX..XXXXXXX 100644
17
--- a/hw/block/m25p80.c
18
--- a/Makefile.objs
18
+++ b/hw/block/m25p80.c
19
+++ b/Makefile.objs
19
@@ -XXX,XX +XXX,XX @@ static void complete_collecting_data(Flash *s)
20
@@ -XXX,XX +XXX,XX @@ trace-events-subdirs += hw/scsi
20
case MAN_MACRONIX:
21
trace-events-subdirs += hw/sd
21
s->quad_enable = extract32(s->data[0], 6, 1);
22
trace-events-subdirs += hw/sparc
22
if (s->len > 1) {
23
trace-events-subdirs += hw/sparc64
23
+ s->volatile_cfg = s->data[1];
24
+trace-events-subdirs += hw/ssi
24
s->four_bytes_address_mode = extract32(s->data[1], 5, 1);
25
trace-events-subdirs += hw/timer
25
}
26
trace-events-subdirs += hw/tpm
26
break;
27
trace-events-subdirs += hw/usb
28
diff --git a/hw/ssi/aspeed_smc.c b/hw/ssi/aspeed_smc.c
29
index XXXXXXX..XXXXXXX 100644
30
--- a/hw/ssi/aspeed_smc.c
31
+++ b/hw/ssi/aspeed_smc.c
32
@@ -XXX,XX +XXX,XX @@
33
#include "qapi/error.h"
34
#include "exec/address-spaces.h"
35
#include "qemu/units.h"
36
+#include "trace.h"
37
38
#include "hw/irq.h"
39
#include "hw/qdev-properties.h"
40
@@ -XXX,XX +XXX,XX @@ static void aspeed_smc_flash_set_segment(AspeedSMCState *s, int cs,
41
42
s->ctrl->reg_to_segment(s, new, &seg);
43
44
+ trace_aspeed_smc_flash_set_segment(cs, new, seg.addr, seg.addr + seg.size);
45
+
46
/* The start address of CS0 is read-only */
47
if (cs == 0 && seg.addr != s->ctrl->flash_window_base) {
48
qemu_log_mask(LOG_GUEST_ERROR,
49
@@ -XXX,XX +XXX,XX @@ static uint64_t aspeed_smc_flash_read(void *opaque, hwaddr addr, unsigned size)
50
__func__, aspeed_smc_flash_mode(fl));
51
}
52
53
+ trace_aspeed_smc_flash_read(fl->id, addr, size, ret,
54
+ aspeed_smc_flash_mode(fl));
55
return ret;
56
}
57
58
@@ -XXX,XX +XXX,XX @@ static bool aspeed_smc_do_snoop(AspeedSMCFlash *fl, uint64_t data,
59
AspeedSMCState *s = fl->controller;
60
uint8_t addr_width = aspeed_smc_flash_is_4byte(fl) ? 4 : 3;
61
62
+ trace_aspeed_smc_do_snoop(fl->id, s->snoop_index, s->snoop_dummies,
63
+ (uint8_t) data & 0xff);
64
+
65
if (s->snoop_index == SNOOP_OFF) {
66
return false; /* Do nothing */
67
68
@@ -XXX,XX +XXX,XX @@ static void aspeed_smc_flash_write(void *opaque, hwaddr addr, uint64_t data,
69
AspeedSMCState *s = fl->controller;
70
int i;
71
72
+ trace_aspeed_smc_flash_write(fl->id, addr, size, data,
73
+ aspeed_smc_flash_mode(fl));
74
+
75
if (!aspeed_smc_is_writable(fl)) {
76
qemu_log_mask(LOG_GUEST_ERROR, "%s: flash is not writable at 0x%"
77
HWADDR_PRIx "\n", __func__, addr);
78
@@ -XXX,XX +XXX,XX @@ static uint64_t aspeed_smc_read(void *opaque, hwaddr addr, unsigned int size)
79
(s->ctrl->has_dma && addr == R_DMA_CHECKSUM) ||
80
(addr >= R_SEG_ADDR0 && addr < R_SEG_ADDR0 + s->ctrl->max_slaves) ||
81
(addr >= s->r_ctrl0 && addr < s->r_ctrl0 + s->ctrl->max_slaves)) {
82
+
83
+ trace_aspeed_smc_read(addr, size, s->regs[addr]);
84
+
85
return s->regs[addr];
86
} else {
87
qemu_log_mask(LOG_UNIMP, "%s: not implemented: 0x%" HWADDR_PRIx "\n",
88
@@ -XXX,XX +XXX,XX @@ static void aspeed_smc_dma_checksum(AspeedSMCState *s)
89
__func__, s->regs[R_DMA_FLASH_ADDR]);
90
return;
91
}
92
+ trace_aspeed_smc_dma_checksum(s->regs[R_DMA_FLASH_ADDR], data);
93
94
/*
95
* When the DMA is on-going, the DMA registers are updated
96
@@ -XXX,XX +XXX,XX @@ static void aspeed_smc_write(void *opaque, hwaddr addr, uint64_t data,
97
98
addr >>= 2;
99
100
+ trace_aspeed_smc_write(addr, size, data);
101
+
102
if (addr == s->r_conf ||
103
(addr >= s->r_timings &&
104
addr < s->r_timings + s->ctrl->nregs_timings) ||
105
diff --git a/hw/ssi/trace-events b/hw/ssi/trace-events
106
new file mode 100644
107
index XXXXXXX..XXXXXXX
108
--- /dev/null
109
+++ b/hw/ssi/trace-events
110
@@ -XXX,XX +XXX,XX @@
111
+# aspeed_smc.c
112
+
113
+aspeed_smc_flash_set_segment(int cs, uint64_t reg, uint64_t start, uint64_t end) "CS%d segreg=0x%"PRIx64" [ 0x%"PRIx64" - 0x%"PRIx64" ]"
114
+aspeed_smc_flash_read(int cs, uint64_t addr, uint32_t size, uint64_t data, int mode) "CS%d @0x%" PRIx64 " size %u: 0x%" PRIx64" mode:%d"
115
+aspeed_smc_do_snoop(int cs, int index, int dummies, int data) "CS%d index:0x%x dummies:%d data:0x%x"
116
+aspeed_smc_flash_write(int cs, uint64_t addr, uint32_t size, uint64_t data, int mode) "CS%d @0x%" PRIx64 " size %u: 0x%" PRIx64" mode:%d"
117
+aspeed_smc_read(uint64_t addr, uint32_t size, uint64_t data) "@0x%" PRIx64 " size %u: 0x%" PRIx64
118
+aspeed_smc_dma_checksum(uint32_t addr, uint32_t data) "0x%08x: 0x%08x"
119
+aspeed_smc_write(uint64_t addr, uint32_t size, uint64_t data) "@0x%" PRIx64 " size %u: 0x%" PRIx64
27
--
120
--
28
2.17.1
121
2.20.1
29
122
30
123
diff view generated by jsdifflib
1
Convert the parallel device away from using the old_mmio field
1
From: Cédric Le Goater <clg@kaod.org>
2
of MemoryRegionOps. This change only affects the memory-mapped
3
variant, which is used by the MIPS Jazz boards 'magnum' and 'pica61'.
4
2
3
The Aspeed SMC Controller can operate in different modes : Read, Fast
4
Read, Write and User modes. When the User mode is configured, it
5
selects automatically the SPI slave device until the CE_STOP_ACTIVE
6
bit is set to 1. When any other modes are configured the device is
7
unselected. The HW logic handles the chip select automatically when
8
the flash is accessed through its AHB window.
9
10
When configuring the CEx Control Register, the User mode logic to
11
select and unselect the slave is incorrect and data corruption can be
12
seen on machines using two chips, witherspoon and romulus.
13
14
Rework the handler setting the CEx Control Register to fix this issue.
15
16
Fixes: 7c1c69bca43c ("ast2400: add SMC controllers (FMC and SPI)")
17
Signed-off-by: Cédric Le Goater <clg@kaod.org>
18
Reviewed-by: Andrew Jeffery <andrew@aj.id.au>
19
Message-id: 20200206112645.21275-3-clg@kaod.org
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
20
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
7
Message-id: 20180601141223.26630-7-peter.maydell@linaro.org
8
---
21
---
9
hw/char/parallel.c | 50 ++++++++++------------------------------------
22
hw/ssi/aspeed_smc.c | 39 +++++++++++++++++++++++----------------
10
1 file changed, 11 insertions(+), 39 deletions(-)
23
hw/ssi/trace-events | 1 +
24
2 files changed, 24 insertions(+), 16 deletions(-)
11
25
12
diff --git a/hw/char/parallel.c b/hw/char/parallel.c
26
diff --git a/hw/ssi/aspeed_smc.c b/hw/ssi/aspeed_smc.c
13
index XXXXXXX..XXXXXXX 100644
27
index XXXXXXX..XXXXXXX 100644
14
--- a/hw/char/parallel.c
28
--- a/hw/ssi/aspeed_smc.c
15
+++ b/hw/char/parallel.c
29
+++ b/hw/ssi/aspeed_smc.c
16
@@ -XXX,XX +XXX,XX @@ static void parallel_isa_realizefn(DeviceState *dev, Error **errp)
30
@@ -XXX,XX +XXX,XX @@ static inline int aspeed_smc_flash_is_4byte(const AspeedSMCFlash *fl)
31
}
17
}
32
}
18
33
19
/* Memory mapped interface */
34
-static inline bool aspeed_smc_is_ce_stop_active(const AspeedSMCFlash *fl)
20
-static uint32_t parallel_mm_readb (void *opaque, hwaddr addr)
35
+static void aspeed_smc_flash_do_select(AspeedSMCFlash *fl, bool unselect)
21
+static uint64_t parallel_mm_readfn(void *opaque, hwaddr addr, unsigned size)
22
{
36
{
23
ParallelState *s = opaque;
37
- const AspeedSMCState *s = fl->controller;
24
38
+ AspeedSMCState *s = fl->controller;
25
- return parallel_ioport_read_sw(s, addr >> s->it_shift) & 0xFF;
39
26
+ return parallel_ioport_read_sw(s, addr >> s->it_shift) &
40
- return s->regs[s->r_ctrl0 + fl->id] & CTRL_CE_STOP_ACTIVE;
27
+ MAKE_64BIT_MASK(0, size * 8);
41
+ trace_aspeed_smc_flash_select(fl->id, unselect ? "un" : "");
42
+
43
+ qemu_set_irq(s->cs_lines[fl->id], unselect);
28
}
44
}
29
45
30
-static void parallel_mm_writeb (void *opaque,
46
static void aspeed_smc_flash_select(AspeedSMCFlash *fl)
31
- hwaddr addr, uint32_t value)
32
+static void parallel_mm_writefn(void *opaque, hwaddr addr,
33
+ uint64_t value, unsigned size)
34
{
47
{
35
ParallelState *s = opaque;
48
- AspeedSMCState *s = fl->controller;
36
37
- parallel_ioport_write_sw(s, addr >> s->it_shift, value & 0xFF);
38
-}
39
-
49
-
40
-static uint32_t parallel_mm_readw (void *opaque, hwaddr addr)
50
- s->regs[s->r_ctrl0 + fl->id] &= ~CTRL_CE_STOP_ACTIVE;
41
-{
51
- qemu_set_irq(s->cs_lines[fl->id], aspeed_smc_is_ce_stop_active(fl));
42
- ParallelState *s = opaque;
52
+ aspeed_smc_flash_do_select(fl, false);
53
}
54
55
static void aspeed_smc_flash_unselect(AspeedSMCFlash *fl)
56
{
57
- AspeedSMCState *s = fl->controller;
43
-
58
-
44
- return parallel_ioport_read_sw(s, addr >> s->it_shift) & 0xFFFF;
59
- s->regs[s->r_ctrl0 + fl->id] |= CTRL_CE_STOP_ACTIVE;
45
-}
60
- qemu_set_irq(s->cs_lines[fl->id], aspeed_smc_is_ce_stop_active(fl));
46
-
61
+ aspeed_smc_flash_do_select(fl, true);
47
-static void parallel_mm_writew (void *opaque,
48
- hwaddr addr, uint32_t value)
49
-{
50
- ParallelState *s = opaque;
51
-
52
- parallel_ioport_write_sw(s, addr >> s->it_shift, value & 0xFFFF);
53
-}
54
-
55
-static uint32_t parallel_mm_readl (void *opaque, hwaddr addr)
56
-{
57
- ParallelState *s = opaque;
58
-
59
- return parallel_ioport_read_sw(s, addr >> s->it_shift);
60
-}
61
-
62
-static void parallel_mm_writel (void *opaque,
63
- hwaddr addr, uint32_t value)
64
-{
65
- ParallelState *s = opaque;
66
-
67
- parallel_ioport_write_sw(s, addr >> s->it_shift, value);
68
+ parallel_ioport_write_sw(s, addr >> s->it_shift,
69
+ value & MAKE_64BIT_MASK(0, size * 8));
70
}
62
}
71
63
72
static const MemoryRegionOps parallel_mm_ops = {
64
static uint32_t aspeed_smc_check_segment_addr(const AspeedSMCFlash *fl,
73
- .old_mmio = {
65
@@ -XXX,XX +XXX,XX @@ static const MemoryRegionOps aspeed_smc_flash_ops = {
74
- .read = { parallel_mm_readb, parallel_mm_readw, parallel_mm_readl },
66
},
75
- .write = { parallel_mm_writeb, parallel_mm_writew, parallel_mm_writel },
76
- },
77
+ .read = parallel_mm_readfn,
78
+ .write = parallel_mm_writefn,
79
+ .valid.min_access_size = 1,
80
+ .valid.max_access_size = 4,
81
.endianness = DEVICE_NATIVE_ENDIAN,
82
};
67
};
83
68
69
-static void aspeed_smc_flash_update_cs(AspeedSMCFlash *fl)
70
+static void aspeed_smc_flash_update_ctrl(AspeedSMCFlash *fl, uint32_t value)
71
{
72
AspeedSMCState *s = fl->controller;
73
+ bool unselect;
74
75
- s->snoop_index = aspeed_smc_is_ce_stop_active(fl) ? SNOOP_OFF : SNOOP_START;
76
+ /* User mode selects the CS, other modes unselect */
77
+ unselect = (value & CTRL_CMD_MODE_MASK) != CTRL_USERMODE;
78
79
- qemu_set_irq(s->cs_lines[fl->id], aspeed_smc_is_ce_stop_active(fl));
80
+ /* A change of CTRL_CE_STOP_ACTIVE from 0 to 1, unselects the CS */
81
+ if (!(s->regs[s->r_ctrl0 + fl->id] & CTRL_CE_STOP_ACTIVE) &&
82
+ value & CTRL_CE_STOP_ACTIVE) {
83
+ unselect = true;
84
+ }
85
+
86
+ s->regs[s->r_ctrl0 + fl->id] = value;
87
+
88
+ s->snoop_index = unselect ? SNOOP_OFF : SNOOP_START;
89
+
90
+ aspeed_smc_flash_do_select(fl, unselect);
91
}
92
93
static void aspeed_smc_reset(DeviceState *d)
94
@@ -XXX,XX +XXX,XX @@ static void aspeed_smc_write(void *opaque, hwaddr addr, uint64_t data,
95
s->regs[addr] = value;
96
} else if (addr >= s->r_ctrl0 && addr < s->r_ctrl0 + s->num_cs) {
97
int cs = addr - s->r_ctrl0;
98
- s->regs[addr] = value;
99
- aspeed_smc_flash_update_cs(&s->flashes[cs]);
100
+ aspeed_smc_flash_update_ctrl(&s->flashes[cs], value);
101
} else if (addr >= R_SEG_ADDR0 &&
102
addr < R_SEG_ADDR0 + s->ctrl->max_slaves) {
103
int cs = addr - R_SEG_ADDR0;
104
diff --git a/hw/ssi/trace-events b/hw/ssi/trace-events
105
index XXXXXXX..XXXXXXX 100644
106
--- a/hw/ssi/trace-events
107
+++ b/hw/ssi/trace-events
108
@@ -XXX,XX +XXX,XX @@ aspeed_smc_flash_write(int cs, uint64_t addr, uint32_t size, uint64_t data, int
109
aspeed_smc_read(uint64_t addr, uint32_t size, uint64_t data) "@0x%" PRIx64 " size %u: 0x%" PRIx64
110
aspeed_smc_dma_checksum(uint32_t addr, uint32_t data) "0x%08x: 0x%08x"
111
aspeed_smc_write(uint64_t addr, uint32_t size, uint64_t data) "@0x%" PRIx64 " size %u: 0x%" PRIx64
112
+aspeed_smc_flash_select(int cs, const char *prefix) "CS%d %sselect"
84
--
113
--
85
2.17.1
114
2.20.1
86
115
87
116
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
We fail to validate the upper bits of a virtual address on a
4
translation disabled regime, as per AArch64.TranslateAddressS1Off.
5
6
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
7
Message-id: 20200308012946.16303-2-richard.henderson@linaro.org
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
8
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
5
Message-id: 20180613015641.5667-4-richard.henderson@linaro.org
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
10
---
8
target/arm/helper-sve.h | 6 +
11
target/arm/helper.c | 35 ++++++++++++++++++++++++++++++++++-
9
target/arm/sve_helper.c | 290 +++++++++++++++++++++++++++++++++++++
12
1 file changed, 34 insertions(+), 1 deletion(-)
10
target/arm/translate-sve.c | 120 +++++++++++++++
11
target/arm/sve.decode | 18 +++
12
4 files changed, 434 insertions(+)
13
13
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
14
diff --git a/target/arm/helper.c b/target/arm/helper.c
15
index XXXXXXX..XXXXXXX 100644
15
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
16
--- a/target/arm/helper.c
17
+++ b/target/arm/helper-sve.h
17
+++ b/target/arm/helper.c
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_3(sve_uunpk_h, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
18
@@ -XXX,XX +XXX,XX @@ bool get_phys_addr(CPUARMState *env, target_ulong address,
19
DEF_HELPER_FLAGS_3(sve_uunpk_s, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
19
/* Definitely a real MMU, not an MPU */
20
DEF_HELPER_FLAGS_3(sve_uunpk_d, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
20
21
21
if (regime_translation_disabled(env, mmu_idx)) {
22
+DEF_HELPER_FLAGS_4(sve_zip_p, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
22
- /* MMU disabled. */
23
+DEF_HELPER_FLAGS_4(sve_uzp_p, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
23
+ /*
24
+DEF_HELPER_FLAGS_4(sve_trn_p, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
24
+ * MMU disabled. S1 addresses within aa64 translation regimes are
25
+DEF_HELPER_FLAGS_3(sve_rev_p, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
25
+ * still checked for bounds -- see AArch64.TranslateAddressS1Off.
26
+DEF_HELPER_FLAGS_3(sve_punpk_p, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
26
+ */
27
+ if (mmu_idx != ARMMMUIdx_Stage2) {
28
+ int r_el = regime_el(env, mmu_idx);
29
+ if (arm_el_is_aa64(env, r_el)) {
30
+ int pamax = arm_pamax(env_archcpu(env));
31
+ uint64_t tcr = env->cp15.tcr_el[r_el].raw_tcr;
32
+ int addrtop, tbi;
27
+
33
+
28
DEF_HELPER_FLAGS_5(sve_and_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
34
+ tbi = aa64_va_parameter_tbi(tcr, mmu_idx);
29
DEF_HELPER_FLAGS_5(sve_bic_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
35
+ if (access_type == MMU_INST_FETCH) {
30
DEF_HELPER_FLAGS_5(sve_eor_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
36
+ tbi &= ~aa64_va_parameter_tbid(tcr, mmu_idx);
31
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
37
+ }
32
index XXXXXXX..XXXXXXX 100644
38
+ tbi = (tbi >> extract64(address, 55, 1)) & 1;
33
--- a/target/arm/sve_helper.c
39
+ addrtop = (tbi ? 55 : 63);
34
+++ b/target/arm/sve_helper.c
35
@@ -XXX,XX +XXX,XX @@ DO_UNPK(sve_uunpk_s, uint32_t, uint16_t, H4, H2)
36
DO_UNPK(sve_uunpk_d, uint64_t, uint32_t, , H4)
37
38
#undef DO_UNPK
39
+
40
+
40
+/* Mask of bits included in the even numbered predicates of width esz.
41
+ if (extract64(address, pamax, addrtop - pamax + 1) != 0) {
41
+ * We also use this for expand_bits/compress_bits, and so extend the
42
+ fi->type = ARMFault_AddressSize;
42
+ * same pattern out to 16-bit units.
43
+ fi->level = 0;
43
+ */
44
+ fi->stage2 = false;
44
+static const uint64_t even_bit_esz_masks[5] = {
45
+ return 1;
45
+ 0x5555555555555555ull,
46
+ }
46
+ 0x3333333333333333ull,
47
+ 0x0f0f0f0f0f0f0f0full,
48
+ 0x00ff00ff00ff00ffull,
49
+ 0x0000ffff0000ffffull,
50
+};
51
+
47
+
52
+/* Zero-extend units of 2**N bits to units of 2**(N+1) bits.
48
+ /*
53
+ * For N==0, this corresponds to the operation that in qemu/bitops.h
49
+ * When TBI is disabled, we've just validated that all of the
54
+ * we call half_shuffle64; this algorithm is from Hacker's Delight,
50
+ * bits above PAMax are zero, so logically we only need to
55
+ * section 7-2 Shuffling Bits.
51
+ * clear the top byte for TBI. But it's clearer to follow
56
+ */
52
+ * the pseudocode set of addrdesc.paddress.
57
+static uint64_t expand_bits(uint64_t x, int n)
53
+ */
58
+{
54
+ address = extract64(address, 0, 52);
59
+ int i;
60
+
61
+ x &= 0xffffffffu;
62
+ for (i = 4; i >= n; i--) {
63
+ int sh = 1 << i;
64
+ x = ((x << sh) | x) & even_bit_esz_masks[i];
65
+ }
66
+ return x;
67
+}
68
+
69
+/* Compress units of 2**(N+1) bits to units of 2**N bits.
70
+ * For N==0, this corresponds to the operation that in qemu/bitops.h
71
+ * we call half_unshuffle64; this algorithm is from Hacker's Delight,
72
+ * section 7-2 Shuffling Bits, where it is called an inverse half shuffle.
73
+ */
74
+static uint64_t compress_bits(uint64_t x, int n)
75
+{
76
+ int i;
77
+
78
+ for (i = n; i <= 4; i++) {
79
+ int sh = 1 << i;
80
+ x &= even_bit_esz_masks[i];
81
+ x = (x >> sh) | x;
82
+ }
83
+ return x & 0xffffffffu;
84
+}
85
+
86
+void HELPER(sve_zip_p)(void *vd, void *vn, void *vm, uint32_t pred_desc)
87
+{
88
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
89
+ int esz = extract32(pred_desc, SIMD_DATA_SHIFT, 2);
90
+ intptr_t high = extract32(pred_desc, SIMD_DATA_SHIFT + 2, 1);
91
+ uint64_t *d = vd;
92
+ intptr_t i;
93
+
94
+ if (oprsz <= 8) {
95
+ uint64_t nn = *(uint64_t *)vn;
96
+ uint64_t mm = *(uint64_t *)vm;
97
+ int half = 4 * oprsz;
98
+
99
+ nn = extract64(nn, high * half, half);
100
+ mm = extract64(mm, high * half, half);
101
+ nn = expand_bits(nn, esz);
102
+ mm = expand_bits(mm, esz);
103
+ d[0] = nn + (mm << (1 << esz));
104
+ } else {
105
+ ARMPredicateReg tmp_n, tmp_m;
106
+
107
+ /* We produce output faster than we consume input.
108
+ Therefore we must be mindful of possible overlap. */
109
+ if ((vn - vd) < (uintptr_t)oprsz) {
110
+ vn = memcpy(&tmp_n, vn, oprsz);
111
+ }
112
+ if ((vm - vd) < (uintptr_t)oprsz) {
113
+ vm = memcpy(&tmp_m, vm, oprsz);
114
+ }
115
+ if (high) {
116
+ high = oprsz >> 1;
117
+ }
118
+
119
+ if ((high & 3) == 0) {
120
+ uint32_t *n = vn, *m = vm;
121
+ high >>= 2;
122
+
123
+ for (i = 0; i < DIV_ROUND_UP(oprsz, 8); i++) {
124
+ uint64_t nn = n[H4(high + i)];
125
+ uint64_t mm = m[H4(high + i)];
126
+
127
+ nn = expand_bits(nn, esz);
128
+ mm = expand_bits(mm, esz);
129
+ d[i] = nn + (mm << (1 << esz));
130
+ }
131
+ } else {
132
+ uint8_t *n = vn, *m = vm;
133
+ uint16_t *d16 = vd;
134
+
135
+ for (i = 0; i < oprsz / 2; i++) {
136
+ uint16_t nn = n[H1(high + i)];
137
+ uint16_t mm = m[H1(high + i)];
138
+
139
+ nn = expand_bits(nn, esz);
140
+ mm = expand_bits(mm, esz);
141
+ d16[H2(i)] = nn + (mm << (1 << esz));
142
+ }
55
+ }
143
+ }
56
+ }
144
+ }
57
*phys_ptr = address;
145
+}
58
*prot = PAGE_READ | PAGE_WRITE | PAGE_EXEC;
146
+
59
*page_size = TARGET_PAGE_SIZE;
147
+void HELPER(sve_uzp_p)(void *vd, void *vn, void *vm, uint32_t pred_desc)
148
+{
149
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
150
+ int esz = extract32(pred_desc, SIMD_DATA_SHIFT, 2);
151
+ int odd = extract32(pred_desc, SIMD_DATA_SHIFT + 2, 1) << esz;
152
+ uint64_t *d = vd, *n = vn, *m = vm;
153
+ uint64_t l, h;
154
+ intptr_t i;
155
+
156
+ if (oprsz <= 8) {
157
+ l = compress_bits(n[0] >> odd, esz);
158
+ h = compress_bits(m[0] >> odd, esz);
159
+ d[0] = extract64(l + (h << (4 * oprsz)), 0, 8 * oprsz);
160
+ } else {
161
+ ARMPredicateReg tmp_m;
162
+ intptr_t oprsz_16 = oprsz / 16;
163
+
164
+ if ((vm - vd) < (uintptr_t)oprsz) {
165
+ m = memcpy(&tmp_m, vm, oprsz);
166
+ }
167
+
168
+ for (i = 0; i < oprsz_16; i++) {
169
+ l = n[2 * i + 0];
170
+ h = n[2 * i + 1];
171
+ l = compress_bits(l >> odd, esz);
172
+ h = compress_bits(h >> odd, esz);
173
+ d[i] = l + (h << 32);
174
+ }
175
+
176
+ /* For VL which is not a power of 2, the results from M do not
177
+ align nicely with the uint64_t for D. Put the aligned results
178
+ from M into TMP_M and then copy it into place afterward. */
179
+ if (oprsz & 15) {
180
+ d[i] = compress_bits(n[2 * i] >> odd, esz);
181
+
182
+ for (i = 0; i < oprsz_16; i++) {
183
+ l = m[2 * i + 0];
184
+ h = m[2 * i + 1];
185
+ l = compress_bits(l >> odd, esz);
186
+ h = compress_bits(h >> odd, esz);
187
+ tmp_m.p[i] = l + (h << 32);
188
+ }
189
+ tmp_m.p[i] = compress_bits(m[2 * i] >> odd, esz);
190
+
191
+ swap_memmove(vd + oprsz / 2, &tmp_m, oprsz / 2);
192
+ } else {
193
+ for (i = 0; i < oprsz_16; i++) {
194
+ l = m[2 * i + 0];
195
+ h = m[2 * i + 1];
196
+ l = compress_bits(l >> odd, esz);
197
+ h = compress_bits(h >> odd, esz);
198
+ d[oprsz_16 + i] = l + (h << 32);
199
+ }
200
+ }
201
+ }
202
+}
203
+
204
+void HELPER(sve_trn_p)(void *vd, void *vn, void *vm, uint32_t pred_desc)
205
+{
206
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
207
+ uintptr_t esz = extract32(pred_desc, SIMD_DATA_SHIFT, 2);
208
+ bool odd = extract32(pred_desc, SIMD_DATA_SHIFT + 2, 1);
209
+ uint64_t *d = vd, *n = vn, *m = vm;
210
+ uint64_t mask;
211
+ int shr, shl;
212
+ intptr_t i;
213
+
214
+ shl = 1 << esz;
215
+ shr = 0;
216
+ mask = even_bit_esz_masks[esz];
217
+ if (odd) {
218
+ mask <<= shl;
219
+ shr = shl;
220
+ shl = 0;
221
+ }
222
+
223
+ for (i = 0; i < DIV_ROUND_UP(oprsz, 8); i++) {
224
+ uint64_t nn = (n[i] & mask) >> shr;
225
+ uint64_t mm = (m[i] & mask) << shl;
226
+ d[i] = nn + mm;
227
+ }
228
+}
229
+
230
+/* Reverse units of 2**N bits. */
231
+static uint64_t reverse_bits_64(uint64_t x, int n)
232
+{
233
+ int i, sh;
234
+
235
+ x = bswap64(x);
236
+ for (i = 2, sh = 4; i >= n; i--, sh >>= 1) {
237
+ uint64_t mask = even_bit_esz_masks[i];
238
+ x = ((x & mask) << sh) | ((x >> sh) & mask);
239
+ }
240
+ return x;
241
+}
242
+
243
+static uint8_t reverse_bits_8(uint8_t x, int n)
244
+{
245
+ static const uint8_t mask[3] = { 0x55, 0x33, 0x0f };
246
+ int i, sh;
247
+
248
+ for (i = 2, sh = 4; i >= n; i--, sh >>= 1) {
249
+ x = ((x & mask[i]) << sh) | ((x >> sh) & mask[i]);
250
+ }
251
+ return x;
252
+}
253
+
254
+void HELPER(sve_rev_p)(void *vd, void *vn, uint32_t pred_desc)
255
+{
256
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
257
+ int esz = extract32(pred_desc, SIMD_DATA_SHIFT, 2);
258
+ intptr_t i, oprsz_2 = oprsz / 2;
259
+
260
+ if (oprsz <= 8) {
261
+ uint64_t l = *(uint64_t *)vn;
262
+ l = reverse_bits_64(l << (64 - 8 * oprsz), esz);
263
+ *(uint64_t *)vd = l;
264
+ } else if ((oprsz & 15) == 0) {
265
+ for (i = 0; i < oprsz_2; i += 8) {
266
+ intptr_t ih = oprsz - 8 - i;
267
+ uint64_t l = reverse_bits_64(*(uint64_t *)(vn + i), esz);
268
+ uint64_t h = reverse_bits_64(*(uint64_t *)(vn + ih), esz);
269
+ *(uint64_t *)(vd + i) = h;
270
+ *(uint64_t *)(vd + ih) = l;
271
+ }
272
+ } else {
273
+ for (i = 0; i < oprsz_2; i += 1) {
274
+ intptr_t il = H1(i);
275
+ intptr_t ih = H1(oprsz - 1 - i);
276
+ uint8_t l = reverse_bits_8(*(uint8_t *)(vn + il), esz);
277
+ uint8_t h = reverse_bits_8(*(uint8_t *)(vn + ih), esz);
278
+ *(uint8_t *)(vd + il) = h;
279
+ *(uint8_t *)(vd + ih) = l;
280
+ }
281
+ }
282
+}
283
+
284
+void HELPER(sve_punpk_p)(void *vd, void *vn, uint32_t pred_desc)
285
+{
286
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
287
+ intptr_t high = extract32(pred_desc, SIMD_DATA_SHIFT + 2, 1);
288
+ uint64_t *d = vd;
289
+ intptr_t i;
290
+
291
+ if (oprsz <= 8) {
292
+ uint64_t nn = *(uint64_t *)vn;
293
+ int half = 4 * oprsz;
294
+
295
+ nn = extract64(nn, high * half, half);
296
+ nn = expand_bits(nn, 0);
297
+ d[0] = nn;
298
+ } else {
299
+ ARMPredicateReg tmp_n;
300
+
301
+ /* We produce output faster than we consume input.
302
+ Therefore we must be mindful of possible overlap. */
303
+ if ((vn - vd) < (uintptr_t)oprsz) {
304
+ vn = memcpy(&tmp_n, vn, oprsz);
305
+ }
306
+ if (high) {
307
+ high = oprsz >> 1;
308
+ }
309
+
310
+ if ((high & 3) == 0) {
311
+ uint32_t *n = vn;
312
+ high >>= 2;
313
+
314
+ for (i = 0; i < DIV_ROUND_UP(oprsz, 8); i++) {
315
+ uint64_t nn = n[H4(high + i)];
316
+ d[i] = expand_bits(nn, 0);
317
+ }
318
+ } else {
319
+ uint16_t *d16 = vd;
320
+ uint8_t *n = vn;
321
+
322
+ for (i = 0; i < oprsz / 2; i++) {
323
+ uint16_t nn = n[H1(high + i)];
324
+ d16[H2(i)] = expand_bits(nn, 0);
325
+ }
326
+ }
327
+ }
328
+}
329
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
330
index XXXXXXX..XXXXXXX 100644
331
--- a/target/arm/translate-sve.c
332
+++ b/target/arm/translate-sve.c
333
@@ -XXX,XX +XXX,XX @@ static bool trans_UNPK(DisasContext *s, arg_UNPK *a, uint32_t insn)
334
return true;
335
}
336
337
+/*
338
+ *** SVE Permute - Predicates Group
339
+ */
340
+
341
+static bool do_perm_pred3(DisasContext *s, arg_rrr_esz *a, bool high_odd,
342
+ gen_helper_gvec_3 *fn)
343
+{
344
+ if (!sve_access_check(s)) {
345
+ return true;
346
+ }
347
+
348
+ unsigned vsz = pred_full_reg_size(s);
349
+
350
+ /* Predicate sizes may be smaller and cannot use simd_desc.
351
+ We cannot round up, as we do elsewhere, because we need
352
+ the exact size for ZIP2 and REV. We retain the style for
353
+ the other helpers for consistency. */
354
+ TCGv_ptr t_d = tcg_temp_new_ptr();
355
+ TCGv_ptr t_n = tcg_temp_new_ptr();
356
+ TCGv_ptr t_m = tcg_temp_new_ptr();
357
+ TCGv_i32 t_desc;
358
+ int desc;
359
+
360
+ desc = vsz - 2;
361
+ desc = deposit32(desc, SIMD_DATA_SHIFT, 2, a->esz);
362
+ desc = deposit32(desc, SIMD_DATA_SHIFT + 2, 2, high_odd);
363
+
364
+ tcg_gen_addi_ptr(t_d, cpu_env, pred_full_reg_offset(s, a->rd));
365
+ tcg_gen_addi_ptr(t_n, cpu_env, pred_full_reg_offset(s, a->rn));
366
+ tcg_gen_addi_ptr(t_m, cpu_env, pred_full_reg_offset(s, a->rm));
367
+ t_desc = tcg_const_i32(desc);
368
+
369
+ fn(t_d, t_n, t_m, t_desc);
370
+
371
+ tcg_temp_free_ptr(t_d);
372
+ tcg_temp_free_ptr(t_n);
373
+ tcg_temp_free_ptr(t_m);
374
+ tcg_temp_free_i32(t_desc);
375
+ return true;
376
+}
377
+
378
+static bool do_perm_pred2(DisasContext *s, arg_rr_esz *a, bool high_odd,
379
+ gen_helper_gvec_2 *fn)
380
+{
381
+ if (!sve_access_check(s)) {
382
+ return true;
383
+ }
384
+
385
+ unsigned vsz = pred_full_reg_size(s);
386
+ TCGv_ptr t_d = tcg_temp_new_ptr();
387
+ TCGv_ptr t_n = tcg_temp_new_ptr();
388
+ TCGv_i32 t_desc;
389
+ int desc;
390
+
391
+ tcg_gen_addi_ptr(t_d, cpu_env, pred_full_reg_offset(s, a->rd));
392
+ tcg_gen_addi_ptr(t_n, cpu_env, pred_full_reg_offset(s, a->rn));
393
+
394
+ /* Predicate sizes may be smaller and cannot use simd_desc.
395
+ We cannot round up, as we do elsewhere, because we need
396
+ the exact size for ZIP2 and REV. We retain the style for
397
+ the other helpers for consistency. */
398
+
399
+ desc = vsz - 2;
400
+ desc = deposit32(desc, SIMD_DATA_SHIFT, 2, a->esz);
401
+ desc = deposit32(desc, SIMD_DATA_SHIFT + 2, 2, high_odd);
402
+ t_desc = tcg_const_i32(desc);
403
+
404
+ fn(t_d, t_n, t_desc);
405
+
406
+ tcg_temp_free_i32(t_desc);
407
+ tcg_temp_free_ptr(t_d);
408
+ tcg_temp_free_ptr(t_n);
409
+ return true;
410
+}
411
+
412
+static bool trans_ZIP1_p(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
413
+{
414
+ return do_perm_pred3(s, a, 0, gen_helper_sve_zip_p);
415
+}
416
+
417
+static bool trans_ZIP2_p(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
418
+{
419
+ return do_perm_pred3(s, a, 1, gen_helper_sve_zip_p);
420
+}
421
+
422
+static bool trans_UZP1_p(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
423
+{
424
+ return do_perm_pred3(s, a, 0, gen_helper_sve_uzp_p);
425
+}
426
+
427
+static bool trans_UZP2_p(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
428
+{
429
+ return do_perm_pred3(s, a, 1, gen_helper_sve_uzp_p);
430
+}
431
+
432
+static bool trans_TRN1_p(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
433
+{
434
+ return do_perm_pred3(s, a, 0, gen_helper_sve_trn_p);
435
+}
436
+
437
+static bool trans_TRN2_p(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
438
+{
439
+ return do_perm_pred3(s, a, 1, gen_helper_sve_trn_p);
440
+}
441
+
442
+static bool trans_REV_p(DisasContext *s, arg_rr_esz *a, uint32_t insn)
443
+{
444
+ return do_perm_pred2(s, a, 0, gen_helper_sve_rev_p);
445
+}
446
+
447
+static bool trans_PUNPKLO(DisasContext *s, arg_PUNPKLO *a, uint32_t insn)
448
+{
449
+ return do_perm_pred2(s, a, 0, gen_helper_sve_punpk_p);
450
+}
451
+
452
+static bool trans_PUNPKHI(DisasContext *s, arg_PUNPKHI *a, uint32_t insn)
453
+{
454
+ return do_perm_pred2(s, a, 1, gen_helper_sve_punpk_p);
455
+}
456
+
457
/*
458
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
459
*/
460
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
461
index XXXXXXX..XXXXXXX 100644
462
--- a/target/arm/sve.decode
463
+++ b/target/arm/sve.decode
464
@@ -XXX,XX +XXX,XX @@
465
466
# Three operand, vector element size
467
@rd_rn_rm ........ esz:2 . rm:5 ... ... rn:5 rd:5 &rrr_esz
468
+@pd_pn_pm ........ esz:2 .. rm:4 ....... rn:4 . rd:4 &rrr_esz
469
@rdn_rm ........ esz:2 ...... ...... rm:5 rd:5 \
470
&rrr_esz rn=%reg_movprfx
471
472
@@ -XXX,XX +XXX,XX @@ TBL 00000101 .. 1 ..... 001100 ..... ..... @rd_rn_rm
473
# SVE unpack vector elements
474
UNPK 00000101 esz:2 1100 u:1 h:1 001110 rn:5 rd:5
475
476
+### SVE Permute - Predicates Group
477
+
478
+# SVE permute predicate elements
479
+ZIP1_p 00000101 .. 10 .... 010 000 0 .... 0 .... @pd_pn_pm
480
+ZIP2_p 00000101 .. 10 .... 010 001 0 .... 0 .... @pd_pn_pm
481
+UZP1_p 00000101 .. 10 .... 010 010 0 .... 0 .... @pd_pn_pm
482
+UZP2_p 00000101 .. 10 .... 010 011 0 .... 0 .... @pd_pn_pm
483
+TRN1_p 00000101 .. 10 .... 010 100 0 .... 0 .... @pd_pn_pm
484
+TRN2_p 00000101 .. 10 .... 010 101 0 .... 0 .... @pd_pn_pm
485
+
486
+# SVE reverse predicate elements
487
+REV_p 00000101 .. 11 0100 010 000 0 .... 0 .... @pd_pn
488
+
489
+# SVE unpack predicate elements
490
+PUNPKLO 00000101 00 11 0000 010 000 0 .... 0 .... @pd_pn_e0
491
+PUNPKHI 00000101 00 11 0001 010 000 0 .... 0 .... @pd_pn_e0
492
+
493
### SVE Predicate Logical Operations Group
494
495
# SVE predicate logical operations
496
--
60
--
497
2.17.1
61
2.20.1
498
62
499
63
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
We must include the tag in the FAR_ELx register when raising
4
an addressing exception. Which means that we should not clear
5
out the tag during translation.
6
7
We cannot at present comply with this for user mode, so we
8
retain the clean_data_tbi function for the moment, though it
9
no longer does what it says on the tin for system mode. This
10
function is to be replaced with MTE, so don't worry about the
11
slight misnaming.
12
13
Buglink: https://bugs.launchpad.net/qemu/+bug/1867072
14
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
15
Message-id: 20200308012946.16303-3-richard.henderson@linaro.org
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
16
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
5
Message-id: 20180613015641.5667-18-richard.henderson@linaro.org
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
17
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
18
---
8
target/arm/helper-sve.h | 25 +++++++
19
target/arm/translate-a64.c | 11 +++++++++++
9
target/arm/sve_helper.c | 41 +++++++++++
20
1 file changed, 11 insertions(+)
10
target/arm/translate-sve.c | 144 +++++++++++++++++++++++++++++++++++++
11
target/arm/sve.decode | 26 +++++++
12
4 files changed, 236 insertions(+)
13
21
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
22
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
15
index XXXXXXX..XXXXXXX 100644
23
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
24
--- a/target/arm/translate-a64.c
17
+++ b/target/arm/helper-sve.h
25
+++ b/target/arm/translate-a64.c
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_4(sve_brkns, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
26
@@ -XXX,XX +XXX,XX @@ static void gen_a64_set_pc(DisasContext *s, TCGv_i64 src)
19
DEF_HELPER_FLAGS_3(sve_cntp, TCG_CALL_NO_RWG, i64, ptr, ptr, i32)
27
static TCGv_i64 clean_data_tbi(DisasContext *s, TCGv_i64 addr)
20
28
{
21
DEF_HELPER_FLAGS_3(sve_while, TCG_CALL_NO_RWG, i32, ptr, i32, i32)
29
TCGv_i64 clean = new_tmp_a64(s);
22
+
30
+ /*
23
+DEF_HELPER_FLAGS_4(sve_subri_b, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
31
+ * In order to get the correct value in the FAR_ELx register,
24
+DEF_HELPER_FLAGS_4(sve_subri_h, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
32
+ * we must present the memory subsystem with the "dirty" address
25
+DEF_HELPER_FLAGS_4(sve_subri_s, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
33
+ * including the TBI. In system mode we can make this work via
26
+DEF_HELPER_FLAGS_4(sve_subri_d, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
34
+ * the TLB, dropping the TBI during translation. But for user-only
27
+
35
+ * mode we don't have that option, and must remove the top byte now.
28
+DEF_HELPER_FLAGS_4(sve_smaxi_b, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
36
+ */
29
+DEF_HELPER_FLAGS_4(sve_smaxi_h, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
37
+#ifdef CONFIG_USER_ONLY
30
+DEF_HELPER_FLAGS_4(sve_smaxi_s, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
38
gen_top_byte_ignore(s, clean, addr, s->tbid);
31
+DEF_HELPER_FLAGS_4(sve_smaxi_d, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
39
+#else
32
+
40
+ tcg_gen_mov_i64(clean, addr);
33
+DEF_HELPER_FLAGS_4(sve_smini_b, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
41
+#endif
34
+DEF_HELPER_FLAGS_4(sve_smini_h, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
42
return clean;
35
+DEF_HELPER_FLAGS_4(sve_smini_s, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
36
+DEF_HELPER_FLAGS_4(sve_smini_d, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
37
+
38
+DEF_HELPER_FLAGS_4(sve_umaxi_b, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
39
+DEF_HELPER_FLAGS_4(sve_umaxi_h, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
40
+DEF_HELPER_FLAGS_4(sve_umaxi_s, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
41
+DEF_HELPER_FLAGS_4(sve_umaxi_d, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
42
+
43
+DEF_HELPER_FLAGS_4(sve_umini_b, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
44
+DEF_HELPER_FLAGS_4(sve_umini_h, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
45
+DEF_HELPER_FLAGS_4(sve_umini_s, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
46
+DEF_HELPER_FLAGS_4(sve_umini_d, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
47
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
48
index XXXXXXX..XXXXXXX 100644
49
--- a/target/arm/sve_helper.c
50
+++ b/target/arm/sve_helper.c
51
@@ -XXX,XX +XXX,XX @@ DO_VPZ_D(sve_uminv_d, uint64_t, uint64_t, -1, DO_MIN)
52
#undef DO_VPZ
53
#undef DO_VPZ_D
54
55
+/* Two vector operand, one scalar operand, unpredicated. */
56
+#define DO_ZZI(NAME, TYPE, OP) \
57
+void HELPER(NAME)(void *vd, void *vn, uint64_t s64, uint32_t desc) \
58
+{ \
59
+ intptr_t i, opr_sz = simd_oprsz(desc) / sizeof(TYPE); \
60
+ TYPE s = s64, *d = vd, *n = vn; \
61
+ for (i = 0; i < opr_sz; ++i) { \
62
+ d[i] = OP(n[i], s); \
63
+ } \
64
+}
65
+
66
+#define DO_SUBR(X, Y) (Y - X)
67
+
68
+DO_ZZI(sve_subri_b, uint8_t, DO_SUBR)
69
+DO_ZZI(sve_subri_h, uint16_t, DO_SUBR)
70
+DO_ZZI(sve_subri_s, uint32_t, DO_SUBR)
71
+DO_ZZI(sve_subri_d, uint64_t, DO_SUBR)
72
+
73
+DO_ZZI(sve_smaxi_b, int8_t, DO_MAX)
74
+DO_ZZI(sve_smaxi_h, int16_t, DO_MAX)
75
+DO_ZZI(sve_smaxi_s, int32_t, DO_MAX)
76
+DO_ZZI(sve_smaxi_d, int64_t, DO_MAX)
77
+
78
+DO_ZZI(sve_smini_b, int8_t, DO_MIN)
79
+DO_ZZI(sve_smini_h, int16_t, DO_MIN)
80
+DO_ZZI(sve_smini_s, int32_t, DO_MIN)
81
+DO_ZZI(sve_smini_d, int64_t, DO_MIN)
82
+
83
+DO_ZZI(sve_umaxi_b, uint8_t, DO_MAX)
84
+DO_ZZI(sve_umaxi_h, uint16_t, DO_MAX)
85
+DO_ZZI(sve_umaxi_s, uint32_t, DO_MAX)
86
+DO_ZZI(sve_umaxi_d, uint64_t, DO_MAX)
87
+
88
+DO_ZZI(sve_umini_b, uint8_t, DO_MIN)
89
+DO_ZZI(sve_umini_h, uint16_t, DO_MIN)
90
+DO_ZZI(sve_umini_s, uint32_t, DO_MIN)
91
+DO_ZZI(sve_umini_d, uint64_t, DO_MIN)
92
+
93
+#undef DO_ZZI
94
+
95
#undef DO_AND
96
#undef DO_ORR
97
#undef DO_EOR
98
@@ -XXX,XX +XXX,XX @@ DO_VPZ_D(sve_uminv_d, uint64_t, uint64_t, -1, DO_MIN)
99
#undef DO_ASR
100
#undef DO_LSR
101
#undef DO_LSL
102
+#undef DO_SUBR
103
104
/* Similar to the ARM LastActiveElement pseudocode function, except the
105
result is multiplied by the element size. This includes the not found
106
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
107
index XXXXXXX..XXXXXXX 100644
108
--- a/target/arm/translate-sve.c
109
+++ b/target/arm/translate-sve.c
110
@@ -XXX,XX +XXX,XX @@ static inline int expand_imm_sh8s(int x)
111
return (int8_t)x << (x & 0x100 ? 8 : 0);
112
}
43
}
113
44
114
+static inline int expand_imm_sh8u(int x)
115
+{
116
+ return (uint8_t)x << (x & 0x100 ? 8 : 0);
117
+}
118
+
119
/*
120
* Include the generated decoder.
121
*/
122
@@ -XXX,XX +XXX,XX @@ static bool trans_DUP_i(DisasContext *s, arg_DUP_i *a, uint32_t insn)
123
return true;
124
}
125
126
+static bool trans_ADD_zzi(DisasContext *s, arg_rri_esz *a, uint32_t insn)
127
+{
128
+ if (a->esz == 0 && extract32(insn, 13, 1)) {
129
+ return false;
130
+ }
131
+ if (sve_access_check(s)) {
132
+ unsigned vsz = vec_full_reg_size(s);
133
+ tcg_gen_gvec_addi(a->esz, vec_full_reg_offset(s, a->rd),
134
+ vec_full_reg_offset(s, a->rn), a->imm, vsz, vsz);
135
+ }
136
+ return true;
137
+}
138
+
139
+static bool trans_SUB_zzi(DisasContext *s, arg_rri_esz *a, uint32_t insn)
140
+{
141
+ a->imm = -a->imm;
142
+ return trans_ADD_zzi(s, a, insn);
143
+}
144
+
145
+static bool trans_SUBR_zzi(DisasContext *s, arg_rri_esz *a, uint32_t insn)
146
+{
147
+ static const GVecGen2s op[4] = {
148
+ { .fni8 = tcg_gen_vec_sub8_i64,
149
+ .fniv = tcg_gen_sub_vec,
150
+ .fno = gen_helper_sve_subri_b,
151
+ .opc = INDEX_op_sub_vec,
152
+ .vece = MO_8,
153
+ .scalar_first = true },
154
+ { .fni8 = tcg_gen_vec_sub16_i64,
155
+ .fniv = tcg_gen_sub_vec,
156
+ .fno = gen_helper_sve_subri_h,
157
+ .opc = INDEX_op_sub_vec,
158
+ .vece = MO_16,
159
+ .scalar_first = true },
160
+ { .fni4 = tcg_gen_sub_i32,
161
+ .fniv = tcg_gen_sub_vec,
162
+ .fno = gen_helper_sve_subri_s,
163
+ .opc = INDEX_op_sub_vec,
164
+ .vece = MO_32,
165
+ .scalar_first = true },
166
+ { .fni8 = tcg_gen_sub_i64,
167
+ .fniv = tcg_gen_sub_vec,
168
+ .fno = gen_helper_sve_subri_d,
169
+ .opc = INDEX_op_sub_vec,
170
+ .prefer_i64 = TCG_TARGET_REG_BITS == 64,
171
+ .vece = MO_64,
172
+ .scalar_first = true }
173
+ };
174
+
175
+ if (a->esz == 0 && extract32(insn, 13, 1)) {
176
+ return false;
177
+ }
178
+ if (sve_access_check(s)) {
179
+ unsigned vsz = vec_full_reg_size(s);
180
+ TCGv_i64 c = tcg_const_i64(a->imm);
181
+ tcg_gen_gvec_2s(vec_full_reg_offset(s, a->rd),
182
+ vec_full_reg_offset(s, a->rn),
183
+ vsz, vsz, c, &op[a->esz]);
184
+ tcg_temp_free_i64(c);
185
+ }
186
+ return true;
187
+}
188
+
189
+static bool trans_MUL_zzi(DisasContext *s, arg_rri_esz *a, uint32_t insn)
190
+{
191
+ if (sve_access_check(s)) {
192
+ unsigned vsz = vec_full_reg_size(s);
193
+ tcg_gen_gvec_muli(a->esz, vec_full_reg_offset(s, a->rd),
194
+ vec_full_reg_offset(s, a->rn), a->imm, vsz, vsz);
195
+ }
196
+ return true;
197
+}
198
+
199
+static bool do_zzi_sat(DisasContext *s, arg_rri_esz *a, uint32_t insn,
200
+ bool u, bool d)
201
+{
202
+ if (a->esz == 0 && extract32(insn, 13, 1)) {
203
+ return false;
204
+ }
205
+ if (sve_access_check(s)) {
206
+ TCGv_i64 val = tcg_const_i64(a->imm);
207
+ do_sat_addsub_vec(s, a->esz, a->rd, a->rn, val, u, d);
208
+ tcg_temp_free_i64(val);
209
+ }
210
+ return true;
211
+}
212
+
213
+static bool trans_SQADD_zzi(DisasContext *s, arg_rri_esz *a, uint32_t insn)
214
+{
215
+ return do_zzi_sat(s, a, insn, false, false);
216
+}
217
+
218
+static bool trans_UQADD_zzi(DisasContext *s, arg_rri_esz *a, uint32_t insn)
219
+{
220
+ return do_zzi_sat(s, a, insn, true, false);
221
+}
222
+
223
+static bool trans_SQSUB_zzi(DisasContext *s, arg_rri_esz *a, uint32_t insn)
224
+{
225
+ return do_zzi_sat(s, a, insn, false, true);
226
+}
227
+
228
+static bool trans_UQSUB_zzi(DisasContext *s, arg_rri_esz *a, uint32_t insn)
229
+{
230
+ return do_zzi_sat(s, a, insn, true, true);
231
+}
232
+
233
+static bool do_zzi_ool(DisasContext *s, arg_rri_esz *a, gen_helper_gvec_2i *fn)
234
+{
235
+ if (sve_access_check(s)) {
236
+ unsigned vsz = vec_full_reg_size(s);
237
+ TCGv_i64 c = tcg_const_i64(a->imm);
238
+
239
+ tcg_gen_gvec_2i_ool(vec_full_reg_offset(s, a->rd),
240
+ vec_full_reg_offset(s, a->rn),
241
+ c, vsz, vsz, 0, fn);
242
+ tcg_temp_free_i64(c);
243
+ }
244
+ return true;
245
+}
246
+
247
+#define DO_ZZI(NAME, name) \
248
+static bool trans_##NAME##_zzi(DisasContext *s, arg_rri_esz *a, \
249
+ uint32_t insn) \
250
+{ \
251
+ static gen_helper_gvec_2i * const fns[4] = { \
252
+ gen_helper_sve_##name##i_b, gen_helper_sve_##name##i_h, \
253
+ gen_helper_sve_##name##i_s, gen_helper_sve_##name##i_d, \
254
+ }; \
255
+ return do_zzi_ool(s, a, fns[a->esz]); \
256
+}
257
+
258
+DO_ZZI(SMAX, smax)
259
+DO_ZZI(UMAX, umax)
260
+DO_ZZI(SMIN, smin)
261
+DO_ZZI(UMIN, umin)
262
+
263
+#undef DO_ZZI
264
+
265
/*
266
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
267
*/
268
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
269
index XXXXXXX..XXXXXXX 100644
270
--- a/target/arm/sve.decode
271
+++ b/target/arm/sve.decode
272
@@ -XXX,XX +XXX,XX @@
273
274
# Signed 8-bit immediate, optionally shifted left by 8.
275
%sh8_i8s 5:9 !function=expand_imm_sh8s
276
+# Unsigned 8-bit immediate, optionally shifted left by 8.
277
+%sh8_i8u 5:9 !function=expand_imm_sh8u
278
279
# Either a copy of rd (at bit 0), or a different source
280
# as propagated via the MOVPRFX instruction.
281
@@ -XXX,XX +XXX,XX @@
282
@pd_pn_pm ........ esz:2 .. rm:4 ....... rn:4 . rd:4 &rrr_esz
283
@rdn_rm ........ esz:2 ...... ...... rm:5 rd:5 \
284
&rrr_esz rn=%reg_movprfx
285
+@rdn_sh_i8u ........ esz:2 ...... ...... ..... rd:5 \
286
+ &rri_esz rn=%reg_movprfx imm=%sh8_i8u
287
+@rdn_i8u ........ esz:2 ...... ... imm:8 rd:5 \
288
+ &rri_esz rn=%reg_movprfx
289
+@rdn_i8s ........ esz:2 ...... ... imm:s8 rd:5 \
290
+ &rri_esz rn=%reg_movprfx
291
292
# Three operand with "memory" size, aka immediate left shift
293
@rd_rn_msz_rm ........ ... rm:5 .... imm:2 rn:5 rd:5 &rrri
294
@@ -XXX,XX +XXX,XX @@ FDUP 00100101 esz:2 111 00 1110 imm:8 rd:5
295
# SVE broadcast integer immediate (unpredicated)
296
DUP_i 00100101 esz:2 111 00 011 . ........ rd:5 imm=%sh8_i8s
297
298
+# SVE integer add/subtract immediate (unpredicated)
299
+ADD_zzi 00100101 .. 100 000 11 . ........ ..... @rdn_sh_i8u
300
+SUB_zzi 00100101 .. 100 001 11 . ........ ..... @rdn_sh_i8u
301
+SUBR_zzi 00100101 .. 100 011 11 . ........ ..... @rdn_sh_i8u
302
+SQADD_zzi 00100101 .. 100 100 11 . ........ ..... @rdn_sh_i8u
303
+UQADD_zzi 00100101 .. 100 101 11 . ........ ..... @rdn_sh_i8u
304
+SQSUB_zzi 00100101 .. 100 110 11 . ........ ..... @rdn_sh_i8u
305
+UQSUB_zzi 00100101 .. 100 111 11 . ........ ..... @rdn_sh_i8u
306
+
307
+# SVE integer min/max immediate (unpredicated)
308
+SMAX_zzi 00100101 .. 101 000 110 ........ ..... @rdn_i8s
309
+UMAX_zzi 00100101 .. 101 001 110 ........ ..... @rdn_i8u
310
+SMIN_zzi 00100101 .. 101 010 110 ........ ..... @rdn_i8s
311
+UMIN_zzi 00100101 .. 101 011 110 ........ ..... @rdn_i8u
312
+
313
+# SVE integer multiply immediate (unpredicated)
314
+MUL_zzi 00100101 .. 110 000 110 ........ ..... @rdn_i8s
315
+
316
### SVE Memory - 32-bit Gather and Unsized Contiguous Group
317
318
# SVE load predicate register
319
--
45
--
320
2.17.1
46
2.20.1
321
47
322
48
diff view generated by jsdifflib
1
The ethernet controller in the AN505 MPC FPGA image is behind
1
From: Igor Mammedov <imammedo@redhat.com>
2
the same AHB Peripheral Protection Controller that handles
3
the graphics and GPIOs. (In the documentation this is clear
4
in the block diagram but the ethernet controller was omitted
5
from the table listing devices connected to the PPC.)
6
The ethernet sits behind AHB PPCEXP0 interface 5. We had
7
incorrectly claimed that this was a "gpio4", but there are
8
only 4 GPIOs in this image.
9
2
10
Correct the QEMU model to match the hardware.
3
SOC object returned by object_new() is leaked in current code.
4
Set SOC parent explicitly to board and then unref to SOC object
5
to make sure that refererence returned by object_new() is taken
6
care of.
11
7
12
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
8
The SOC object will be kept alive by its parent (machine) and
9
will be automatically freed when MachineState is destroyed.
10
11
Signed-off-by: Igor Mammedov <imammedo@redhat.com>
12
Reported-by: Andrew Jones <drjones@redhat.com>
13
Tested-by: Niek Linnenbank <nieklinnenbank@gmail.com>
14
Message-id: 20200303091254.22373-1-imammedo@redhat.com
15
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
16
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Message-id: 20180515171446.10834-1-peter.maydell@linaro.org
15
---
17
---
16
hw/arm/mps2-tz.c | 32 +++++++++++++++++++++++---------
18
hw/arm/cubieboard.c | 3 +++
17
1 file changed, 23 insertions(+), 9 deletions(-)
19
1 file changed, 3 insertions(+)
18
20
19
diff --git a/hw/arm/mps2-tz.c b/hw/arm/mps2-tz.c
21
diff --git a/hw/arm/cubieboard.c b/hw/arm/cubieboard.c
20
index XXXXXXX..XXXXXXX 100644
22
index XXXXXXX..XXXXXXX 100644
21
--- a/hw/arm/mps2-tz.c
23
--- a/hw/arm/cubieboard.c
22
+++ b/hw/arm/mps2-tz.c
24
+++ b/hw/arm/cubieboard.c
23
@@ -XXX,XX +XXX,XX @@ typedef struct {
25
@@ -XXX,XX +XXX,XX @@ static void cubieboard_init(MachineState *machine)
24
UnimplementedDeviceState spi[5];
25
UnimplementedDeviceState i2c[4];
26
UnimplementedDeviceState i2s_audio;
27
- UnimplementedDeviceState gpio[5];
28
+ UnimplementedDeviceState gpio[4];
29
UnimplementedDeviceState dma[4];
30
UnimplementedDeviceState gfx;
31
CMSDKAPBUART uart[5];
32
SplitIRQ sec_resp_splitter;
33
qemu_or_irq uart_irq_orgate;
34
+ DeviceState *lan9118;
35
} MPS2TZMachineState;
36
37
#define TYPE_MPS2TZ_MACHINE "mps2tz"
38
@@ -XXX,XX +XXX,XX @@ static MemoryRegion *make_fpgaio(MPS2TZMachineState *mms, void *opaque,
39
return sysbus_mmio_get_region(SYS_BUS_DEVICE(fpgaio), 0);
40
}
41
42
+static MemoryRegion *make_eth_dev(MPS2TZMachineState *mms, void *opaque,
43
+ const char *name, hwaddr size)
44
+{
45
+ SysBusDevice *s;
46
+ DeviceState *iotkitdev = DEVICE(&mms->iotkit);
47
+ NICInfo *nd = &nd_table[0];
48
+
49
+ /* In hardware this is a LAN9220; the LAN9118 is software compatible
50
+ * except that it doesn't support the checksum-offload feature.
51
+ */
52
+ qemu_check_nic_model(nd, "lan9118");
53
+ mms->lan9118 = qdev_create(NULL, "lan9118");
54
+ qdev_set_nic_properties(mms->lan9118, nd);
55
+ qdev_init_nofail(mms->lan9118);
56
+
57
+ s = SYS_BUS_DEVICE(mms->lan9118);
58
+ sysbus_connect_irq(s, 0, qdev_get_gpio_in_named(iotkitdev, "EXP_IRQ", 16));
59
+ return sysbus_mmio_get_region(s, 0);
60
+}
61
+
62
static void mps2tz_common_init(MachineState *machine)
63
{
64
MPS2TZMachineState *mms = MPS2TZ_MACHINE(machine);
65
@@ -XXX,XX +XXX,XX @@ static void mps2tz_common_init(MachineState *machine)
66
{ "gpio1", make_unimp_dev, &mms->gpio[1], 0x40101000, 0x1000 },
67
{ "gpio2", make_unimp_dev, &mms->gpio[2], 0x40102000, 0x1000 },
68
{ "gpio3", make_unimp_dev, &mms->gpio[3], 0x40103000, 0x1000 },
69
- { "gpio4", make_unimp_dev, &mms->gpio[4], 0x40104000, 0x1000 },
70
+ { "eth", make_eth_dev, NULL, 0x42000000, 0x100000 },
71
},
72
}, {
73
.name = "ahb_ppcexp1",
74
@@ -XXX,XX +XXX,XX @@ static void mps2tz_common_init(MachineState *machine)
75
"cfg_sec_resp", 0));
76
}
26
}
77
27
78
- /* In hardware this is a LAN9220; the LAN9118 is software compatible
28
a10 = AW_A10(object_new(TYPE_AW_A10));
79
- * except that it doesn't support the checksum-offload feature.
29
+ object_property_add_child(OBJECT(machine), "soc", OBJECT(a10),
80
- * The ethernet controller is not behind a PPC.
30
+ &error_abort);
81
- */
31
+ object_unref(OBJECT(a10));
82
- lan9118_init(&nd_table[0], 0x42000000,
32
83
- qdev_get_gpio_in_named(iotkitdev, "EXP_IRQ", 16));
33
object_property_set_int(OBJECT(&a10->emac), 1, "phy-addr", &err);
84
-
34
if (err != NULL) {
85
create_unimplemented_device("FPGA NS PC", 0x48007000, 0x1000);
86
87
armv7m_load_kernel(ARM_CPU(first_cpu), machine->kernel_filename, 0x400000);
88
--
35
--
89
2.17.1
36
2.20.1
90
37
91
38
diff view generated by jsdifflib
1
There's a common pattern in QEMU where a function needs to perform
1
From: Guenter Roeck <linux@roeck-us.net>
2
a data load or store of an N byte integer in a particular endianness.
3
At the moment this is handled by doing a switch() on the size and
4
calling the appropriate ld*_p or st*_p function for each size.
5
2
6
Provide a new family of functions ldn_*_p() and stn_*_p() which
3
Wire up eSDHC controllers in fsl-imx25. For imx25-pdk, connect drives
7
take the size as an argument and do the switch() themselves.
4
provided on the command line to available eSDHC controllers.
8
5
6
This patch enables booting the imx25-pdk emulation from SD card.
7
8
Signed-off-by: Guenter Roeck <linux@roeck-us.net>
9
Message-id: 20200310215146.19688-2-linux@roeck-us.net
10
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
11
[PMM: made commit subject consistent with other patch]
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
11
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
12
Message-id: 20180611171007.4165-2-peter.maydell@linaro.org
13
---
13
---
14
include/exec/cpu-all.h | 4 +++
14
include/hw/arm/fsl-imx25.h | 9 +++++++++
15
include/qemu/bswap.h | 52 +++++++++++++++++++++++++++++++++++++
15
hw/arm/fsl-imx25.c | 32 ++++++++++++++++++++++++++++++++
16
docs/devel/loads-stores.rst | 15 +++++++++++
16
hw/arm/imx25_pdk.c | 16 ++++++++++++++++
17
3 files changed, 71 insertions(+)
17
3 files changed, 57 insertions(+)
18
18
19
diff --git a/include/exec/cpu-all.h b/include/exec/cpu-all.h
19
diff --git a/include/hw/arm/fsl-imx25.h b/include/hw/arm/fsl-imx25.h
20
index XXXXXXX..XXXXXXX 100644
20
index XXXXXXX..XXXXXXX 100644
21
--- a/include/exec/cpu-all.h
21
--- a/include/hw/arm/fsl-imx25.h
22
+++ b/include/exec/cpu-all.h
22
+++ b/include/hw/arm/fsl-imx25.h
23
@@ -XXX,XX +XXX,XX @@ static inline void tswap64s(uint64_t *s)
23
@@ -XXX,XX +XXX,XX @@
24
#define stq_p(p, v) stq_be_p(p, v)
24
#include "hw/misc/imx_rngc.h"
25
#define stfl_p(p, v) stfl_be_p(p, v)
25
#include "hw/i2c/imx_i2c.h"
26
#define stfq_p(p, v) stfq_be_p(p, v)
26
#include "hw/gpio/imx_gpio.h"
27
+#define ldn_p(p, sz) ldn_be_p(p, sz)
27
+#include "hw/sd/sdhci.h"
28
+#define stn_p(p, sz, v) stn_be_p(p, sz, v)
28
#include "exec/memory.h"
29
#else
29
#include "target/arm/cpu.h"
30
#define lduw_p(p) lduw_le_p(p)
30
31
#define ldsw_p(p) ldsw_le_p(p)
31
@@ -XXX,XX +XXX,XX @@
32
@@ -XXX,XX +XXX,XX @@ static inline void tswap64s(uint64_t *s)
32
#define FSL_IMX25_NUM_EPITS 2
33
#define stq_p(p, v) stq_le_p(p, v)
33
#define FSL_IMX25_NUM_I2CS 3
34
#define stfl_p(p, v) stfl_le_p(p, v)
34
#define FSL_IMX25_NUM_GPIOS 4
35
#define stfq_p(p, v) stfq_le_p(p, v)
35
+#define FSL_IMX25_NUM_ESDHCS 2
36
+#define ldn_p(p, sz) ldn_le_p(p, sz)
36
37
+#define stn_p(p, sz, v) stn_le_p(p, sz, v)
37
typedef struct FslIMX25State {
38
#endif
38
/*< private >*/
39
39
@@ -XXX,XX +XXX,XX @@ typedef struct FslIMX25State {
40
/* MMU memory access macros */
40
IMXRNGCState rngc;
41
diff --git a/include/qemu/bswap.h b/include/qemu/bswap.h
41
IMXI2CState i2c[FSL_IMX25_NUM_I2CS];
42
IMXGPIOState gpio[FSL_IMX25_NUM_GPIOS];
43
+ SDHCIState esdhc[FSL_IMX25_NUM_ESDHCS];
44
MemoryRegion rom[2];
45
MemoryRegion iram;
46
MemoryRegion iram_alias;
47
@@ -XXX,XX +XXX,XX @@ typedef struct FslIMX25State {
48
#define FSL_IMX25_GPIO3_SIZE 0x4000
49
#define FSL_IMX25_RNGC_ADDR 0x53FB0000
50
#define FSL_IMX25_RNGC_SIZE 0x4000
51
+#define FSL_IMX25_ESDHC1_ADDR 0x53FB4000
52
+#define FSL_IMX25_ESDHC1_SIZE 0x4000
53
+#define FSL_IMX25_ESDHC2_ADDR 0x53FB8000
54
+#define FSL_IMX25_ESDHC2_SIZE 0x4000
55
#define FSL_IMX25_GPIO1_ADDR 0x53FCC000
56
#define FSL_IMX25_GPIO1_SIZE 0x4000
57
#define FSL_IMX25_GPIO2_ADDR 0x53FD0000
58
@@ -XXX,XX +XXX,XX @@ typedef struct FslIMX25State {
59
#define FSL_IMX25_GPIO2_IRQ 51
60
#define FSL_IMX25_GPIO3_IRQ 16
61
#define FSL_IMX25_GPIO4_IRQ 23
62
+#define FSL_IMX25_ESDHC1_IRQ 9
63
+#define FSL_IMX25_ESDHC2_IRQ 8
64
65
#endif /* FSL_IMX25_H */
66
diff --git a/hw/arm/fsl-imx25.c b/hw/arm/fsl-imx25.c
42
index XXXXXXX..XXXXXXX 100644
67
index XXXXXXX..XXXXXXX 100644
43
--- a/include/qemu/bswap.h
68
--- a/hw/arm/fsl-imx25.c
44
+++ b/include/qemu/bswap.h
69
+++ b/hw/arm/fsl-imx25.c
45
@@ -XXX,XX +XXX,XX @@ typedef union {
70
@@ -XXX,XX +XXX,XX @@
46
* For accessors that take a guest address rather than a
71
#include "hw/qdev-properties.h"
47
* host address, see the cpu_{ld,st}_* accessors defined in
72
#include "chardev/char.h"
48
* cpu_ldst.h.
73
49
+ *
74
+#define IMX25_ESDHC_CAPABILITIES 0x07e20000
50
+ * For cases where the size to be used is not fixed at compile time,
75
+
51
+ * there are
76
static void fsl_imx25_init(Object *obj)
52
+ * stn{endian}_p(ptr, sz, val)
77
{
53
+ * which stores @val to @ptr as an @endian-order number @sz bytes in size
78
FslIMX25State *s = FSL_IMX25(obj);
54
+ * and
79
@@ -XXX,XX +XXX,XX @@ static void fsl_imx25_init(Object *obj)
55
+ * ldn{endian}_p(ptr, sz)
80
sysbus_init_child_obj(obj, "gpio[*]", &s->gpio[i], sizeof(s->gpio[i]),
56
+ * which loads @sz bytes from @ptr as an unsigned @endian-order number
81
TYPE_IMX_GPIO);
57
+ * and returns it in a uint64_t.
82
}
58
*/
83
+
59
84
+ for (i = 0; i < FSL_IMX25_NUM_ESDHCS; i++) {
60
static inline int ldub_p(const void *ptr)
85
+ sysbus_init_child_obj(obj, "sdhc[*]", &s->esdhc[i], sizeof(s->esdhc[i]),
61
@@ -XXX,XX +XXX,XX @@ static inline unsigned long leul_to_cpu(unsigned long v)
86
+ TYPE_IMX_USDHC);
62
#endif
87
+ }
63
}
88
}
64
89
65
+/* Store v to p as a sz byte value in host order */
90
static void fsl_imx25_realize(DeviceState *dev, Error **errp)
66
+#define DO_STN_LDN_P(END) \
91
@@ -XXX,XX +XXX,XX @@ static void fsl_imx25_realize(DeviceState *dev, Error **errp)
67
+ static inline void stn_## END ## _p(void *ptr, int sz, uint64_t v) \
92
gpio_table[i].irq));
68
+ { \
93
}
69
+ switch (sz) { \
94
70
+ case 1: \
95
+ /* Initialize all SDHC */
71
+ stb_p(ptr, v); \
96
+ for (i = 0; i < FSL_IMX25_NUM_ESDHCS; i++) {
72
+ break; \
97
+ static const struct {
73
+ case 2: \
98
+ hwaddr addr;
74
+ stw_ ## END ## _p(ptr, v); \
99
+ unsigned int irq;
75
+ break; \
100
+ } esdhc_table[FSL_IMX25_NUM_ESDHCS] = {
76
+ case 4: \
101
+ { FSL_IMX25_ESDHC1_ADDR, FSL_IMX25_ESDHC1_IRQ },
77
+ stl_ ## END ## _p(ptr, v); \
102
+ { FSL_IMX25_ESDHC2_ADDR, FSL_IMX25_ESDHC2_IRQ },
78
+ break; \
103
+ };
79
+ case 8: \
104
+
80
+ stq_ ## END ## _p(ptr, v); \
105
+ object_property_set_uint(OBJECT(&s->esdhc[i]), 2, "sd-spec-version",
81
+ break; \
106
+ &err);
82
+ default: \
107
+ object_property_set_uint(OBJECT(&s->esdhc[i]), IMX25_ESDHC_CAPABILITIES,
83
+ g_assert_not_reached(); \
108
+ "capareg", &err);
84
+ } \
109
+ object_property_set_bool(OBJECT(&s->esdhc[i]), true, "realized", &err);
85
+ } \
110
+ if (err) {
86
+ static inline uint64_t ldn_## END ## _p(const void *ptr, int sz) \
111
+ error_propagate(errp, err);
87
+ { \
112
+ return;
88
+ switch (sz) { \
113
+ }
89
+ case 1: \
114
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->esdhc[i]), 0, esdhc_table[i].addr);
90
+ return ldub_p(ptr); \
115
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->esdhc[i]), 0,
91
+ case 2: \
116
+ qdev_get_gpio_in(DEVICE(&s->avic),
92
+ return lduw_ ## END ## _p(ptr); \
117
+ esdhc_table[i].irq));
93
+ case 4: \
94
+ return (uint32_t)ldl_ ## END ## _p(ptr); \
95
+ case 8: \
96
+ return ldq_ ## END ## _p(ptr); \
97
+ default: \
98
+ g_assert_not_reached(); \
99
+ } \
100
+ }
118
+ }
101
+
119
+
102
+DO_STN_LDN_P(he)
120
/* initialize 2 x 16 KB ROM */
103
+DO_STN_LDN_P(le)
121
memory_region_init_rom(&s->rom[0], NULL,
104
+DO_STN_LDN_P(be)
122
"imx25.rom0", FSL_IMX25_ROM0_SIZE, &err);
123
diff --git a/hw/arm/imx25_pdk.c b/hw/arm/imx25_pdk.c
124
index XXXXXXX..XXXXXXX 100644
125
--- a/hw/arm/imx25_pdk.c
126
+++ b/hw/arm/imx25_pdk.c
127
@@ -XXX,XX +XXX,XX @@
128
#include "qemu/osdep.h"
129
#include "qapi/error.h"
130
#include "cpu.h"
131
+#include "hw/qdev-properties.h"
132
#include "hw/arm/fsl-imx25.h"
133
#include "hw/boards.h"
134
#include "qemu/error-report.h"
135
@@ -XXX,XX +XXX,XX @@ static void imx25_pdk_init(MachineState *machine)
136
imx25_pdk_binfo.board_id = 1771,
137
imx25_pdk_binfo.nb_cpus = 1;
138
139
+ for (i = 0; i < FSL_IMX25_NUM_ESDHCS; i++) {
140
+ BusState *bus;
141
+ DeviceState *carddev;
142
+ DriveInfo *di;
143
+ BlockBackend *blk;
105
+
144
+
106
+#undef DO_STN_LDN_P
145
+ di = drive_get_next(IF_SD);
146
+ blk = di ? blk_by_legacy_dinfo(di) : NULL;
147
+ bus = qdev_get_child_bus(DEVICE(&s->soc.esdhc[i]), "sd-bus");
148
+ carddev = qdev_create(bus, TYPE_SD_CARD);
149
+ qdev_prop_set_drive(carddev, "drive", blk, &error_fatal);
150
+ object_property_set_bool(OBJECT(carddev), true,
151
+ "realized", &error_fatal);
152
+ }
107
+
153
+
108
#undef le_bswap
154
/*
109
#undef be_bswap
155
* We test explicitly for qtest here as it is not done (yet?) in
110
#undef le_bswaps
156
* arm_load_kernel(). Without this the "make check" command would
111
diff --git a/docs/devel/loads-stores.rst b/docs/devel/loads-stores.rst
112
index XXXXXXX..XXXXXXX 100644
113
--- a/docs/devel/loads-stores.rst
114
+++ b/docs/devel/loads-stores.rst
115
@@ -XXX,XX +XXX,XX @@ The ``_{endian}`` infix is omitted for target-endian accesses.
116
The target endian accessors are only available to source
117
files which are built per-target.
118
119
+There are also functions which take the size as an argument:
120
+
121
+load: ``ldn{endian}_p(ptr, sz)``
122
+
123
+which performs an unsigned load of ``sz`` bytes from ``ptr``
124
+as an ``{endian}`` order value and returns it in a uint64_t.
125
+
126
+store: ``stn{endian}_p(ptr, sz, val)``
127
+
128
+which stores ``val`` to ``ptr`` as an ``{endian}`` order value
129
+of size ``sz`` bytes.
130
+
131
+
132
Regexes for git grep
133
- ``\<ldf\?[us]\?[bwlq]\(_[hbl]e\)\?_p\>``
134
- ``\<stf\?[bwlq]\(_[hbl]e\)\?_p\>``
135
+ - ``\<ldn_\([hbl]e\)?_p\>``
136
+ - ``\<stn_\([hbl]e\)?_p\>``
137
138
``cpu_{ld,st}_*``
139
~~~~~~~~~~~~~~~~~
140
--
157
--
141
2.17.1
158
2.20.1
142
159
143
160
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Guenter Roeck <linux@roeck-us.net>
2
2
3
i.MX25 supports two USB controllers. Let's wire them up.
4
5
With this patch, imx25-pdk can boot from both USB ports.
6
7
Signed-off-by: Guenter Roeck <linux@roeck-us.net>
8
Message-id: 20200310215146.19688-3-linux@roeck-us.net
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
5
Message-id: 20180613015641.5667-14-richard.henderson@linaro.org
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
11
---
8
target/arm/helper-sve.h | 18 +++
12
include/hw/arm/fsl-imx25.h | 9 +++++++++
9
target/arm/sve_helper.c | 248 +++++++++++++++++++++++++++++++++++++
13
hw/arm/fsl-imx25.c | 24 ++++++++++++++++++++++++
10
target/arm/translate-sve.c | 106 ++++++++++++++++
14
2 files changed, 33 insertions(+)
11
target/arm/sve.decode | 19 +++
12
4 files changed, 391 insertions(+)
13
15
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
16
diff --git a/include/hw/arm/fsl-imx25.h b/include/hw/arm/fsl-imx25.h
15
index XXXXXXX..XXXXXXX 100644
17
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
18
--- a/include/hw/arm/fsl-imx25.h
17
+++ b/target/arm/helper-sve.h
19
+++ b/include/hw/arm/fsl-imx25.h
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_5(sve_orn_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
20
@@ -XXX,XX +XXX,XX @@
19
DEF_HELPER_FLAGS_5(sve_nor_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
21
#include "hw/i2c/imx_i2c.h"
20
DEF_HELPER_FLAGS_5(sve_nand_pppp, TCG_CALL_NO_RWG,
22
#include "hw/gpio/imx_gpio.h"
21
void, ptr, ptr, ptr, ptr, i32)
23
#include "hw/sd/sdhci.h"
24
+#include "hw/usb/chipidea.h"
25
#include "exec/memory.h"
26
#include "target/arm/cpu.h"
27
28
@@ -XXX,XX +XXX,XX @@
29
#define FSL_IMX25_NUM_I2CS 3
30
#define FSL_IMX25_NUM_GPIOS 4
31
#define FSL_IMX25_NUM_ESDHCS 2
32
+#define FSL_IMX25_NUM_USBS 2
33
34
typedef struct FslIMX25State {
35
/*< private >*/
36
@@ -XXX,XX +XXX,XX @@ typedef struct FslIMX25State {
37
IMXI2CState i2c[FSL_IMX25_NUM_I2CS];
38
IMXGPIOState gpio[FSL_IMX25_NUM_GPIOS];
39
SDHCIState esdhc[FSL_IMX25_NUM_ESDHCS];
40
+ ChipideaState usb[FSL_IMX25_NUM_USBS];
41
MemoryRegion rom[2];
42
MemoryRegion iram;
43
MemoryRegion iram_alias;
44
@@ -XXX,XX +XXX,XX @@ typedef struct FslIMX25State {
45
#define FSL_IMX25_GPIO1_SIZE 0x4000
46
#define FSL_IMX25_GPIO2_ADDR 0x53FD0000
47
#define FSL_IMX25_GPIO2_SIZE 0x4000
48
+#define FSL_IMX25_USB1_ADDR 0x53FF4000
49
+#define FSL_IMX25_USB1_SIZE 0x0200
50
+#define FSL_IMX25_USB2_ADDR 0x53FF4400
51
+#define FSL_IMX25_USB2_SIZE 0x0200
52
#define FSL_IMX25_AVIC_ADDR 0x68000000
53
#define FSL_IMX25_AVIC_SIZE 0x4000
54
#define FSL_IMX25_IRAM_ADDR 0x78000000
55
@@ -XXX,XX +XXX,XX @@ typedef struct FslIMX25State {
56
#define FSL_IMX25_GPIO4_IRQ 23
57
#define FSL_IMX25_ESDHC1_IRQ 9
58
#define FSL_IMX25_ESDHC2_IRQ 8
59
+#define FSL_IMX25_USB1_IRQ 37
60
+#define FSL_IMX25_USB2_IRQ 35
61
62
#endif /* FSL_IMX25_H */
63
diff --git a/hw/arm/fsl-imx25.c b/hw/arm/fsl-imx25.c
64
index XXXXXXX..XXXXXXX 100644
65
--- a/hw/arm/fsl-imx25.c
66
+++ b/hw/arm/fsl-imx25.c
67
@@ -XXX,XX +XXX,XX @@ static void fsl_imx25_init(Object *obj)
68
sysbus_init_child_obj(obj, "sdhc[*]", &s->esdhc[i], sizeof(s->esdhc[i]),
69
TYPE_IMX_USDHC);
70
}
22
+
71
+
23
+DEF_HELPER_FLAGS_5(sve_brkpa, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
72
+ for (i = 0; i < FSL_IMX25_NUM_USBS; i++) {
24
+DEF_HELPER_FLAGS_5(sve_brkpb, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
73
+ sysbus_init_child_obj(obj, "usb[*]", &s->usb[i], sizeof(s->usb[i]),
25
+DEF_HELPER_FLAGS_5(sve_brkpas, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, ptr, i32)
74
+ TYPE_CHIPIDEA);
26
+DEF_HELPER_FLAGS_5(sve_brkpbs, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, ptr, i32)
27
+
28
+DEF_HELPER_FLAGS_4(sve_brka_z, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
29
+DEF_HELPER_FLAGS_4(sve_brkb_z, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
30
+DEF_HELPER_FLAGS_4(sve_brka_m, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
31
+DEF_HELPER_FLAGS_4(sve_brkb_m, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
32
+
33
+DEF_HELPER_FLAGS_4(sve_brkas_z, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
34
+DEF_HELPER_FLAGS_4(sve_brkbs_z, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
35
+DEF_HELPER_FLAGS_4(sve_brkas_m, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
36
+DEF_HELPER_FLAGS_4(sve_brkbs_m, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
37
+
38
+DEF_HELPER_FLAGS_4(sve_brkn, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
39
+DEF_HELPER_FLAGS_4(sve_brkns, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
40
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
41
index XXXXXXX..XXXXXXX 100644
42
--- a/target/arm/sve_helper.c
43
+++ b/target/arm/sve_helper.c
44
@@ -XXX,XX +XXX,XX @@ DO_CMP_PPZI_D(sve_cmpls_ppzi_d, uint64_t, <=)
45
#undef DO_CMP_PPZI_S
46
#undef DO_CMP_PPZI_D
47
#undef DO_CMP_PPZI
48
+
49
+/* Similar to the ARM LastActive pseudocode function. */
50
+static bool last_active_pred(void *vd, void *vg, intptr_t oprsz)
51
+{
52
+ intptr_t i;
53
+
54
+ for (i = QEMU_ALIGN_UP(oprsz, 8) - 8; i >= 0; i -= 8) {
55
+ uint64_t pg = *(uint64_t *)(vg + i);
56
+ if (pg) {
57
+ return (pow2floor(pg) & *(uint64_t *)(vd + i)) != 0;
58
+ }
59
+ }
60
+ return 0;
61
+}
62
+
63
+/* Compute a mask into RETB that is true for all G, up to and including
64
+ * (if after) or excluding (if !after) the first G & N.
65
+ * Return true if BRK found.
66
+ */
67
+static bool compute_brk(uint64_t *retb, uint64_t n, uint64_t g,
68
+ bool brk, bool after)
69
+{
70
+ uint64_t b;
71
+
72
+ if (brk) {
73
+ b = 0;
74
+ } else if ((g & n) == 0) {
75
+ /* For all G, no N are set; break not found. */
76
+ b = g;
77
+ } else {
78
+ /* Break somewhere in N. Locate it. */
79
+ b = g & n; /* guard true, pred true */
80
+ b = b & -b; /* first such */
81
+ if (after) {
82
+ b = b | (b - 1); /* break after same */
83
+ } else {
84
+ b = b - 1; /* break before same */
85
+ }
86
+ brk = true;
87
+ }
75
+ }
88
+
76
+
89
+ *retb = b;
77
}
90
+ return brk;
78
91
+}
79
static void fsl_imx25_realize(DeviceState *dev, Error **errp)
80
@@ -XXX,XX +XXX,XX @@ static void fsl_imx25_realize(DeviceState *dev, Error **errp)
81
esdhc_table[i].irq));
82
}
83
84
+ /* USB */
85
+ for (i = 0; i < FSL_IMX25_NUM_USBS; i++) {
86
+ static const struct {
87
+ hwaddr addr;
88
+ unsigned int irq;
89
+ } usb_table[FSL_IMX25_NUM_USBS] = {
90
+ { FSL_IMX25_USB1_ADDR, FSL_IMX25_USB1_IRQ },
91
+ { FSL_IMX25_USB2_ADDR, FSL_IMX25_USB2_IRQ },
92
+ };
92
+
93
+
93
+/* Compute a zeroing BRK. */
94
+ object_property_set_bool(OBJECT(&s->usb[i]), true, "realized",
94
+static void compute_brk_z(uint64_t *d, uint64_t *n, uint64_t *g,
95
+ &error_abort);
95
+ intptr_t oprsz, bool after)
96
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->usb[i]), 0, usb_table[i].addr);
96
+{
97
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->usb[i]), 0,
97
+ bool brk = false;
98
+ qdev_get_gpio_in(DEVICE(&s->avic),
98
+ intptr_t i;
99
+ usb_table[i].irq));
99
+
100
+ for (i = 0; i < DIV_ROUND_UP(oprsz, 8); ++i) {
101
+ uint64_t this_b, this_g = g[i];
102
+
103
+ brk = compute_brk(&this_b, n[i], this_g, brk, after);
104
+ d[i] = this_b & this_g;
105
+ }
106
+}
107
+
108
+/* Likewise, but also compute flags. */
109
+static uint32_t compute_brks_z(uint64_t *d, uint64_t *n, uint64_t *g,
110
+ intptr_t oprsz, bool after)
111
+{
112
+ uint32_t flags = PREDTEST_INIT;
113
+ bool brk = false;
114
+ intptr_t i;
115
+
116
+ for (i = 0; i < DIV_ROUND_UP(oprsz, 8); ++i) {
117
+ uint64_t this_b, this_d, this_g = g[i];
118
+
119
+ brk = compute_brk(&this_b, n[i], this_g, brk, after);
120
+ d[i] = this_d = this_b & this_g;
121
+ flags = iter_predtest_fwd(this_d, this_g, flags);
122
+ }
123
+ return flags;
124
+}
125
+
126
+/* Compute a merging BRK. */
127
+static void compute_brk_m(uint64_t *d, uint64_t *n, uint64_t *g,
128
+ intptr_t oprsz, bool after)
129
+{
130
+ bool brk = false;
131
+ intptr_t i;
132
+
133
+ for (i = 0; i < DIV_ROUND_UP(oprsz, 8); ++i) {
134
+ uint64_t this_b, this_g = g[i];
135
+
136
+ brk = compute_brk(&this_b, n[i], this_g, brk, after);
137
+ d[i] = (this_b & this_g) | (d[i] & ~this_g);
138
+ }
139
+}
140
+
141
+/* Likewise, but also compute flags. */
142
+static uint32_t compute_brks_m(uint64_t *d, uint64_t *n, uint64_t *g,
143
+ intptr_t oprsz, bool after)
144
+{
145
+ uint32_t flags = PREDTEST_INIT;
146
+ bool brk = false;
147
+ intptr_t i;
148
+
149
+ for (i = 0; i < oprsz / 8; ++i) {
150
+ uint64_t this_b, this_d = d[i], this_g = g[i];
151
+
152
+ brk = compute_brk(&this_b, n[i], this_g, brk, after);
153
+ d[i] = this_d = (this_b & this_g) | (this_d & ~this_g);
154
+ flags = iter_predtest_fwd(this_d, this_g, flags);
155
+ }
156
+ return flags;
157
+}
158
+
159
+static uint32_t do_zero(ARMPredicateReg *d, intptr_t oprsz)
160
+{
161
+ /* It is quicker to zero the whole predicate than loop on OPRSZ.
162
+ * The compiler should turn this into 4 64-bit integer stores.
163
+ */
164
+ memset(d, 0, sizeof(ARMPredicateReg));
165
+ return PREDTEST_INIT;
166
+}
167
+
168
+void HELPER(sve_brkpa)(void *vd, void *vn, void *vm, void *vg,
169
+ uint32_t pred_desc)
170
+{
171
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
172
+ if (last_active_pred(vn, vg, oprsz)) {
173
+ compute_brk_z(vd, vm, vg, oprsz, true);
174
+ } else {
175
+ do_zero(vd, oprsz);
176
+ }
177
+}
178
+
179
+uint32_t HELPER(sve_brkpas)(void *vd, void *vn, void *vm, void *vg,
180
+ uint32_t pred_desc)
181
+{
182
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
183
+ if (last_active_pred(vn, vg, oprsz)) {
184
+ return compute_brks_z(vd, vm, vg, oprsz, true);
185
+ } else {
186
+ return do_zero(vd, oprsz);
187
+ }
188
+}
189
+
190
+void HELPER(sve_brkpb)(void *vd, void *vn, void *vm, void *vg,
191
+ uint32_t pred_desc)
192
+{
193
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
194
+ if (last_active_pred(vn, vg, oprsz)) {
195
+ compute_brk_z(vd, vm, vg, oprsz, false);
196
+ } else {
197
+ do_zero(vd, oprsz);
198
+ }
199
+}
200
+
201
+uint32_t HELPER(sve_brkpbs)(void *vd, void *vn, void *vm, void *vg,
202
+ uint32_t pred_desc)
203
+{
204
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
205
+ if (last_active_pred(vn, vg, oprsz)) {
206
+ return compute_brks_z(vd, vm, vg, oprsz, false);
207
+ } else {
208
+ return do_zero(vd, oprsz);
209
+ }
210
+}
211
+
212
+void HELPER(sve_brka_z)(void *vd, void *vn, void *vg, uint32_t pred_desc)
213
+{
214
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
215
+ compute_brk_z(vd, vn, vg, oprsz, true);
216
+}
217
+
218
+uint32_t HELPER(sve_brkas_z)(void *vd, void *vn, void *vg, uint32_t pred_desc)
219
+{
220
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
221
+ return compute_brks_z(vd, vn, vg, oprsz, true);
222
+}
223
+
224
+void HELPER(sve_brkb_z)(void *vd, void *vn, void *vg, uint32_t pred_desc)
225
+{
226
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
227
+ compute_brk_z(vd, vn, vg, oprsz, false);
228
+}
229
+
230
+uint32_t HELPER(sve_brkbs_z)(void *vd, void *vn, void *vg, uint32_t pred_desc)
231
+{
232
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
233
+ return compute_brks_z(vd, vn, vg, oprsz, false);
234
+}
235
+
236
+void HELPER(sve_brka_m)(void *vd, void *vn, void *vg, uint32_t pred_desc)
237
+{
238
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
239
+ compute_brk_m(vd, vn, vg, oprsz, true);
240
+}
241
+
242
+uint32_t HELPER(sve_brkas_m)(void *vd, void *vn, void *vg, uint32_t pred_desc)
243
+{
244
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
245
+ return compute_brks_m(vd, vn, vg, oprsz, true);
246
+}
247
+
248
+void HELPER(sve_brkb_m)(void *vd, void *vn, void *vg, uint32_t pred_desc)
249
+{
250
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
251
+ compute_brk_m(vd, vn, vg, oprsz, false);
252
+}
253
+
254
+uint32_t HELPER(sve_brkbs_m)(void *vd, void *vn, void *vg, uint32_t pred_desc)
255
+{
256
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
257
+ return compute_brks_m(vd, vn, vg, oprsz, false);
258
+}
259
+
260
+void HELPER(sve_brkn)(void *vd, void *vn, void *vg, uint32_t pred_desc)
261
+{
262
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
263
+
264
+ if (!last_active_pred(vn, vg, oprsz)) {
265
+ do_zero(vd, oprsz);
266
+ }
267
+}
268
+
269
+/* As if PredTest(Ones(PL), D, esz). */
270
+static uint32_t predtest_ones(ARMPredicateReg *d, intptr_t oprsz,
271
+ uint64_t esz_mask)
272
+{
273
+ uint32_t flags = PREDTEST_INIT;
274
+ intptr_t i;
275
+
276
+ for (i = 0; i < oprsz / 8; i++) {
277
+ flags = iter_predtest_fwd(d->p[i], esz_mask, flags);
278
+ }
279
+ if (oprsz & 7) {
280
+ uint64_t mask = ~(-1ULL << (8 * (oprsz & 7)));
281
+ flags = iter_predtest_fwd(d->p[i], esz_mask & mask, flags);
282
+ }
283
+ return flags;
284
+}
285
+
286
+uint32_t HELPER(sve_brkns)(void *vd, void *vn, void *vg, uint32_t pred_desc)
287
+{
288
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
289
+
290
+ if (last_active_pred(vn, vg, oprsz)) {
291
+ return predtest_ones(vd, oprsz, -1);
292
+ } else {
293
+ return do_zero(vd, oprsz);
294
+ }
295
+}
296
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
297
index XXXXXXX..XXXXXXX 100644
298
--- a/target/arm/translate-sve.c
299
+++ b/target/arm/translate-sve.c
300
@@ -XXX,XX +XXX,XX @@ DO_PPZI(CMPLS, cmpls)
301
302
#undef DO_PPZI
303
304
+/*
305
+ *** SVE Partition Break Group
306
+ */
307
+
308
+static bool do_brk3(DisasContext *s, arg_rprr_s *a,
309
+ gen_helper_gvec_4 *fn, gen_helper_gvec_flags_4 *fn_s)
310
+{
311
+ if (!sve_access_check(s)) {
312
+ return true;
313
+ }
100
+ }
314
+
101
+
315
+ unsigned vsz = pred_full_reg_size(s);
102
/* initialize 2 x 16 KB ROM */
316
+
103
memory_region_init_rom(&s->rom[0], NULL,
317
+ /* Predicate sizes may be smaller and cannot use simd_desc. */
104
"imx25.rom0", FSL_IMX25_ROM0_SIZE, &err);
318
+ TCGv_ptr d = tcg_temp_new_ptr();
319
+ TCGv_ptr n = tcg_temp_new_ptr();
320
+ TCGv_ptr m = tcg_temp_new_ptr();
321
+ TCGv_ptr g = tcg_temp_new_ptr();
322
+ TCGv_i32 t = tcg_const_i32(vsz - 2);
323
+
324
+ tcg_gen_addi_ptr(d, cpu_env, pred_full_reg_offset(s, a->rd));
325
+ tcg_gen_addi_ptr(n, cpu_env, pred_full_reg_offset(s, a->rn));
326
+ tcg_gen_addi_ptr(m, cpu_env, pred_full_reg_offset(s, a->rm));
327
+ tcg_gen_addi_ptr(g, cpu_env, pred_full_reg_offset(s, a->pg));
328
+
329
+ if (a->s) {
330
+ fn_s(t, d, n, m, g, t);
331
+ do_pred_flags(t);
332
+ } else {
333
+ fn(d, n, m, g, t);
334
+ }
335
+ tcg_temp_free_ptr(d);
336
+ tcg_temp_free_ptr(n);
337
+ tcg_temp_free_ptr(m);
338
+ tcg_temp_free_ptr(g);
339
+ tcg_temp_free_i32(t);
340
+ return true;
341
+}
342
+
343
+static bool do_brk2(DisasContext *s, arg_rpr_s *a,
344
+ gen_helper_gvec_3 *fn, gen_helper_gvec_flags_3 *fn_s)
345
+{
346
+ if (!sve_access_check(s)) {
347
+ return true;
348
+ }
349
+
350
+ unsigned vsz = pred_full_reg_size(s);
351
+
352
+ /* Predicate sizes may be smaller and cannot use simd_desc. */
353
+ TCGv_ptr d = tcg_temp_new_ptr();
354
+ TCGv_ptr n = tcg_temp_new_ptr();
355
+ TCGv_ptr g = tcg_temp_new_ptr();
356
+ TCGv_i32 t = tcg_const_i32(vsz - 2);
357
+
358
+ tcg_gen_addi_ptr(d, cpu_env, pred_full_reg_offset(s, a->rd));
359
+ tcg_gen_addi_ptr(n, cpu_env, pred_full_reg_offset(s, a->rn));
360
+ tcg_gen_addi_ptr(g, cpu_env, pred_full_reg_offset(s, a->pg));
361
+
362
+ if (a->s) {
363
+ fn_s(t, d, n, g, t);
364
+ do_pred_flags(t);
365
+ } else {
366
+ fn(d, n, g, t);
367
+ }
368
+ tcg_temp_free_ptr(d);
369
+ tcg_temp_free_ptr(n);
370
+ tcg_temp_free_ptr(g);
371
+ tcg_temp_free_i32(t);
372
+ return true;
373
+}
374
+
375
+static bool trans_BRKPA(DisasContext *s, arg_rprr_s *a, uint32_t insn)
376
+{
377
+ return do_brk3(s, a, gen_helper_sve_brkpa, gen_helper_sve_brkpas);
378
+}
379
+
380
+static bool trans_BRKPB(DisasContext *s, arg_rprr_s *a, uint32_t insn)
381
+{
382
+ return do_brk3(s, a, gen_helper_sve_brkpb, gen_helper_sve_brkpbs);
383
+}
384
+
385
+static bool trans_BRKA_m(DisasContext *s, arg_rpr_s *a, uint32_t insn)
386
+{
387
+ return do_brk2(s, a, gen_helper_sve_brka_m, gen_helper_sve_brkas_m);
388
+}
389
+
390
+static bool trans_BRKB_m(DisasContext *s, arg_rpr_s *a, uint32_t insn)
391
+{
392
+ return do_brk2(s, a, gen_helper_sve_brkb_m, gen_helper_sve_brkbs_m);
393
+}
394
+
395
+static bool trans_BRKA_z(DisasContext *s, arg_rpr_s *a, uint32_t insn)
396
+{
397
+ return do_brk2(s, a, gen_helper_sve_brka_z, gen_helper_sve_brkas_z);
398
+}
399
+
400
+static bool trans_BRKB_z(DisasContext *s, arg_rpr_s *a, uint32_t insn)
401
+{
402
+ return do_brk2(s, a, gen_helper_sve_brkb_z, gen_helper_sve_brkbs_z);
403
+}
404
+
405
+static bool trans_BRKN(DisasContext *s, arg_rpr_s *a, uint32_t insn)
406
+{
407
+ return do_brk2(s, a, gen_helper_sve_brkn, gen_helper_sve_brkns);
408
+}
409
+
410
/*
411
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
412
*/
413
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
414
index XXXXXXX..XXXXXXX 100644
415
--- a/target/arm/sve.decode
416
+++ b/target/arm/sve.decode
417
@@ -XXX,XX +XXX,XX @@
418
&rri_esz rd rn imm esz
419
&rrr_esz rd rn rm esz
420
&rpr_esz rd pg rn esz
421
+&rpr_s rd pg rn s
422
&rprr_s rd pg rn rm s
423
&rprr_esz rd pg rn rm esz
424
&rprrr_esz rd pg rn rm ra esz
425
@@ -XXX,XX +XXX,XX @@
426
@pd_pn ........ esz:2 .. .... ....... rn:4 . rd:4 &rr_esz
427
@rd_rn ........ esz:2 ...... ...... rn:5 rd:5 &rr_esz
428
429
+# Two operand with governing predicate, flags setting
430
+@pd_pg_pn_s ........ . s:1 ...... .. pg:4 . rn:4 . rd:4 &rpr_s
431
+
432
# Three operand with unused vector element size
433
@rd_rn_rm_e0 ........ ... rm:5 ... ... rn:5 rd:5 &rrr_esz esz=0
434
435
@@ -XXX,XX +XXX,XX @@ PFIRST 00100101 01 011 000 11000 00 .... 0 .... @pd_pn_e0
436
# SVE predicate next active
437
PNEXT 00100101 .. 011 001 11000 10 .... 0 .... @pd_pn
438
439
+### SVE Partition Break Group
440
+
441
+# SVE propagate break from previous partition
442
+BRKPA 00100101 0. 00 .... 11 .... 0 .... 0 .... @pd_pg_pn_pm_s
443
+BRKPB 00100101 0. 00 .... 11 .... 0 .... 1 .... @pd_pg_pn_pm_s
444
+
445
+# SVE partition break condition
446
+BRKA_z 00100101 0. 01000001 .... 0 .... 0 .... @pd_pg_pn_s
447
+BRKB_z 00100101 1. 01000001 .... 0 .... 0 .... @pd_pg_pn_s
448
+BRKA_m 00100101 0. 01000001 .... 0 .... 1 .... @pd_pg_pn_s
449
+BRKB_m 00100101 1. 01000001 .... 0 .... 1 .... @pd_pg_pn_s
450
+
451
+# SVE propagate break to next partition
452
+BRKN 00100101 0. 01100001 .... 0 .... 0 .... @pd_pg_pn_s
453
+
454
### SVE Memory - 32-bit Gather and Unsized Contiguous Group
455
456
# SVE load predicate register
457
--
105
--
458
2.17.1
106
2.20.1
459
107
460
108
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
The Allwinner H3 is a System on Chip containing four ARM Cortex A7
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
processor cores. Features and specifications include DDR2/DDR3 memory,
5
Message-id: 20180613015641.5667-15-richard.henderson@linaro.org
5
SD/MMC storage cards, 10/100/1000Mbit Ethernet, USB 2.0, HDMI and
6
various I/O modules. This commit adds support for the Allwinner H3
7
System on Chip.
8
9
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
10
Reviewed-by: Philippe Mathieu-Daudé <philmd@redhat.com>
11
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
12
Tested-by: Philippe Mathieu-Daudé <philmd@redhat.com>
13
Message-id: 20200311221854.30370-2-nieklinnenbank@gmail.com
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
15
---
8
target/arm/helper-sve.h | 2 +
16
hw/arm/Makefile.objs | 1 +
9
target/arm/sve_helper.c | 14 ++++
17
include/hw/arm/allwinner-h3.h | 106 +++++++++++
10
target/arm/translate-sve.c | 133 +++++++++++++++++++++++++++++++++++++
18
hw/arm/allwinner-h3.c | 327 ++++++++++++++++++++++++++++++++
11
target/arm/sve.decode | 27 ++++++++
19
MAINTAINERS | 7 +
12
4 files changed, 176 insertions(+)
20
default-configs/arm-softmmu.mak | 1 +
21
hw/arm/Kconfig | 8 +
22
6 files changed, 450 insertions(+)
23
create mode 100644 include/hw/arm/allwinner-h3.h
24
create mode 100644 hw/arm/allwinner-h3.c
13
25
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
26
diff --git a/hw/arm/Makefile.objs b/hw/arm/Makefile.objs
15
index XXXXXXX..XXXXXXX 100644
27
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
28
--- a/hw/arm/Makefile.objs
17
+++ b/target/arm/helper-sve.h
29
+++ b/hw/arm/Makefile.objs
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_4(sve_brkbs_m, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
30
@@ -XXX,XX +XXX,XX @@ obj-$(CONFIG_DIGIC) += digic.o
19
31
obj-$(CONFIG_OMAP) += omap1.o omap2.o
20
DEF_HELPER_FLAGS_4(sve_brkn, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
32
obj-$(CONFIG_STRONGARM) += strongarm.o
21
DEF_HELPER_FLAGS_4(sve_brkns, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
33
obj-$(CONFIG_ALLWINNER_A10) += allwinner-a10.o cubieboard.o
22
+
34
+obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3.o
23
+DEF_HELPER_FLAGS_3(sve_cntp, TCG_CALL_NO_RWG, i64, ptr, ptr, i32)
35
obj-$(CONFIG_RASPI) += bcm2835_peripherals.o bcm2836.o raspi.o
24
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
36
obj-$(CONFIG_STM32F205_SOC) += stm32f205_soc.o
25
index XXXXXXX..XXXXXXX 100644
37
obj-$(CONFIG_STM32F405_SOC) += stm32f405_soc.o
26
--- a/target/arm/sve_helper.c
38
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
27
+++ b/target/arm/sve_helper.c
39
new file mode 100644
28
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(sve_brkns)(void *vd, void *vn, void *vg, uint32_t pred_desc)
40
index XXXXXXX..XXXXXXX
29
return do_zero(vd, oprsz);
41
--- /dev/null
30
}
42
+++ b/include/hw/arm/allwinner-h3.h
31
}
43
@@ -XXX,XX +XXX,XX @@
32
+
44
+/*
33
+uint64_t HELPER(sve_cntp)(void *vn, void *vg, uint32_t pred_desc)
45
+ * Allwinner H3 System on Chip emulation
46
+ *
47
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
48
+ *
49
+ * This program is free software: you can redistribute it and/or modify
50
+ * it under the terms of the GNU General Public License as published by
51
+ * the Free Software Foundation, either version 2 of the License, or
52
+ * (at your option) any later version.
53
+ *
54
+ * This program is distributed in the hope that it will be useful,
55
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
56
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
57
+ * GNU General Public License for more details.
58
+ *
59
+ * You should have received a copy of the GNU General Public License
60
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
61
+ */
62
+
63
+/*
64
+ * The Allwinner H3 is a System on Chip containing four ARM Cortex A7
65
+ * processor cores. Features and specifications include DDR2/DDR3 memory,
66
+ * SD/MMC storage cards, 10/100/1000Mbit Ethernet, USB 2.0, HDMI and
67
+ * various I/O modules.
68
+ *
69
+ * This implementation is based on the following datasheet:
70
+ *
71
+ * https://linux-sunxi.org/File:Allwinner_H3_Datasheet_V1.2.pdf
72
+ *
73
+ * The latest datasheet and more info can be found on the Linux Sunxi wiki:
74
+ *
75
+ * https://linux-sunxi.org/H3
76
+ */
77
+
78
+#ifndef HW_ARM_ALLWINNER_H3_H
79
+#define HW_ARM_ALLWINNER_H3_H
80
+
81
+#include "qom/object.h"
82
+#include "hw/arm/boot.h"
83
+#include "hw/timer/allwinner-a10-pit.h"
84
+#include "hw/intc/arm_gic.h"
85
+#include "target/arm/cpu.h"
86
+
87
+/**
88
+ * Allwinner H3 device list
89
+ *
90
+ * This enumeration is can be used refer to a particular device in the
91
+ * Allwinner H3 SoC. For example, the physical memory base address for
92
+ * each device can be found in the AwH3State object in the memmap member
93
+ * using the device enum value as index.
94
+ *
95
+ * @see AwH3State
96
+ */
97
+enum {
98
+ AW_H3_SRAM_A1,
99
+ AW_H3_SRAM_A2,
100
+ AW_H3_SRAM_C,
101
+ AW_H3_PIT,
102
+ AW_H3_UART0,
103
+ AW_H3_UART1,
104
+ AW_H3_UART2,
105
+ AW_H3_UART3,
106
+ AW_H3_GIC_DIST,
107
+ AW_H3_GIC_CPU,
108
+ AW_H3_GIC_HYP,
109
+ AW_H3_GIC_VCPU,
110
+ AW_H3_SDRAM
111
+};
112
+
113
+/** Total number of CPU cores in the H3 SoC */
114
+#define AW_H3_NUM_CPUS (4)
115
+
116
+/**
117
+ * Allwinner H3 object model
118
+ * @{
119
+ */
120
+
121
+/** Object type for the Allwinner H3 SoC */
122
+#define TYPE_AW_H3 "allwinner-h3"
123
+
124
+/** Convert input object to Allwinner H3 state object */
125
+#define AW_H3(obj) OBJECT_CHECK(AwH3State, (obj), TYPE_AW_H3)
126
+
127
+/** @} */
128
+
129
+/**
130
+ * Allwinner H3 object
131
+ *
132
+ * This struct contains the state of all the devices
133
+ * which are currently emulated by the H3 SoC code.
134
+ */
135
+typedef struct AwH3State {
136
+ /*< private >*/
137
+ DeviceState parent_obj;
138
+ /*< public >*/
139
+
140
+ ARMCPU cpus[AW_H3_NUM_CPUS];
141
+ const hwaddr *memmap;
142
+ AwA10PITState timer;
143
+ GICState gic;
144
+ MemoryRegion sram_a1;
145
+ MemoryRegion sram_a2;
146
+ MemoryRegion sram_c;
147
+} AwH3State;
148
+
149
+#endif /* HW_ARM_ALLWINNER_H3_H */
150
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
151
new file mode 100644
152
index XXXXXXX..XXXXXXX
153
--- /dev/null
154
+++ b/hw/arm/allwinner-h3.c
155
@@ -XXX,XX +XXX,XX @@
156
+/*
157
+ * Allwinner H3 System on Chip emulation
158
+ *
159
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
160
+ *
161
+ * This program is free software: you can redistribute it and/or modify
162
+ * it under the terms of the GNU General Public License as published by
163
+ * the Free Software Foundation, either version 2 of the License, or
164
+ * (at your option) any later version.
165
+ *
166
+ * This program is distributed in the hope that it will be useful,
167
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
168
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
169
+ * GNU General Public License for more details.
170
+ *
171
+ * You should have received a copy of the GNU General Public License
172
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
173
+ */
174
+
175
+#include "qemu/osdep.h"
176
+#include "exec/address-spaces.h"
177
+#include "qapi/error.h"
178
+#include "qemu/error-report.h"
179
+#include "qemu/module.h"
180
+#include "qemu/units.h"
181
+#include "hw/qdev-core.h"
182
+#include "cpu.h"
183
+#include "hw/sysbus.h"
184
+#include "hw/char/serial.h"
185
+#include "hw/misc/unimp.h"
186
+#include "sysemu/sysemu.h"
187
+#include "hw/arm/allwinner-h3.h"
188
+
189
+/* Memory map */
190
+const hwaddr allwinner_h3_memmap[] = {
191
+ [AW_H3_SRAM_A1] = 0x00000000,
192
+ [AW_H3_SRAM_A2] = 0x00044000,
193
+ [AW_H3_SRAM_C] = 0x00010000,
194
+ [AW_H3_PIT] = 0x01c20c00,
195
+ [AW_H3_UART0] = 0x01c28000,
196
+ [AW_H3_UART1] = 0x01c28400,
197
+ [AW_H3_UART2] = 0x01c28800,
198
+ [AW_H3_UART3] = 0x01c28c00,
199
+ [AW_H3_GIC_DIST] = 0x01c81000,
200
+ [AW_H3_GIC_CPU] = 0x01c82000,
201
+ [AW_H3_GIC_HYP] = 0x01c84000,
202
+ [AW_H3_GIC_VCPU] = 0x01c86000,
203
+ [AW_H3_SDRAM] = 0x40000000
204
+};
205
+
206
+/* List of unimplemented devices */
207
+struct AwH3Unimplemented {
208
+ const char *device_name;
209
+ hwaddr base;
210
+ hwaddr size;
211
+} unimplemented[] = {
212
+ { "d-engine", 0x01000000, 4 * MiB },
213
+ { "d-inter", 0x01400000, 128 * KiB },
214
+ { "syscon", 0x01c00000, 4 * KiB },
215
+ { "dma", 0x01c02000, 4 * KiB },
216
+ { "nfdc", 0x01c03000, 4 * KiB },
217
+ { "ts", 0x01c06000, 4 * KiB },
218
+ { "keymem", 0x01c0b000, 4 * KiB },
219
+ { "lcd0", 0x01c0c000, 4 * KiB },
220
+ { "lcd1", 0x01c0d000, 4 * KiB },
221
+ { "ve", 0x01c0e000, 4 * KiB },
222
+ { "mmc0", 0x01c0f000, 4 * KiB },
223
+ { "mmc1", 0x01c10000, 4 * KiB },
224
+ { "mmc2", 0x01c11000, 4 * KiB },
225
+ { "sid", 0x01c14000, 1 * KiB },
226
+ { "crypto", 0x01c15000, 4 * KiB },
227
+ { "msgbox", 0x01c17000, 4 * KiB },
228
+ { "spinlock", 0x01c18000, 4 * KiB },
229
+ { "usb0-otg", 0x01c19000, 4 * KiB },
230
+ { "usb0-phy", 0x01c1a000, 4 * KiB },
231
+ { "usb1-phy", 0x01c1b000, 4 * KiB },
232
+ { "usb2-phy", 0x01c1c000, 4 * KiB },
233
+ { "usb3-phy", 0x01c1d000, 4 * KiB },
234
+ { "smc", 0x01c1e000, 4 * KiB },
235
+ { "ccu", 0x01c20000, 1 * KiB },
236
+ { "pio", 0x01c20800, 1 * KiB },
237
+ { "owa", 0x01c21000, 1 * KiB },
238
+ { "pwm", 0x01c21400, 1 * KiB },
239
+ { "keyadc", 0x01c21800, 1 * KiB },
240
+ { "pcm0", 0x01c22000, 1 * KiB },
241
+ { "pcm1", 0x01c22400, 1 * KiB },
242
+ { "pcm2", 0x01c22800, 1 * KiB },
243
+ { "audio", 0x01c22c00, 2 * KiB },
244
+ { "smta", 0x01c23400, 1 * KiB },
245
+ { "ths", 0x01c25000, 1 * KiB },
246
+ { "uart0", 0x01c28000, 1 * KiB },
247
+ { "uart1", 0x01c28400, 1 * KiB },
248
+ { "uart2", 0x01c28800, 1 * KiB },
249
+ { "uart3", 0x01c28c00, 1 * KiB },
250
+ { "twi0", 0x01c2ac00, 1 * KiB },
251
+ { "twi1", 0x01c2b000, 1 * KiB },
252
+ { "twi2", 0x01c2b400, 1 * KiB },
253
+ { "scr", 0x01c2c400, 1 * KiB },
254
+ { "emac", 0x01c30000, 64 * KiB },
255
+ { "gpu", 0x01c40000, 64 * KiB },
256
+ { "hstmr", 0x01c60000, 4 * KiB },
257
+ { "dramcom", 0x01c62000, 4 * KiB },
258
+ { "dramctl0", 0x01c63000, 4 * KiB },
259
+ { "dramphy0", 0x01c65000, 4 * KiB },
260
+ { "spi0", 0x01c68000, 4 * KiB },
261
+ { "spi1", 0x01c69000, 4 * KiB },
262
+ { "csi", 0x01cb0000, 320 * KiB },
263
+ { "tve", 0x01e00000, 64 * KiB },
264
+ { "hdmi", 0x01ee0000, 128 * KiB },
265
+ { "rtc", 0x01f00000, 1 * KiB },
266
+ { "r_timer", 0x01f00800, 1 * KiB },
267
+ { "r_intc", 0x01f00c00, 1 * KiB },
268
+ { "r_wdog", 0x01f01000, 1 * KiB },
269
+ { "r_prcm", 0x01f01400, 1 * KiB },
270
+ { "r_twd", 0x01f01800, 1 * KiB },
271
+ { "r_cpucfg", 0x01f01c00, 1 * KiB },
272
+ { "r_cir-rx", 0x01f02000, 1 * KiB },
273
+ { "r_twi", 0x01f02400, 1 * KiB },
274
+ { "r_uart", 0x01f02800, 1 * KiB },
275
+ { "r_pio", 0x01f02c00, 1 * KiB },
276
+ { "r_pwm", 0x01f03800, 1 * KiB },
277
+ { "core-dbg", 0x3f500000, 128 * KiB },
278
+ { "tsgen-ro", 0x3f506000, 4 * KiB },
279
+ { "tsgen-ctl", 0x3f507000, 4 * KiB },
280
+ { "ddr-mem", 0x40000000, 2 * GiB },
281
+ { "n-brom", 0xffff0000, 32 * KiB },
282
+ { "s-brom", 0xffff0000, 64 * KiB }
283
+};
284
+
285
+/* Per Processor Interrupts */
286
+enum {
287
+ AW_H3_GIC_PPI_MAINT = 9,
288
+ AW_H3_GIC_PPI_HYPTIMER = 10,
289
+ AW_H3_GIC_PPI_VIRTTIMER = 11,
290
+ AW_H3_GIC_PPI_SECTIMER = 13,
291
+ AW_H3_GIC_PPI_PHYSTIMER = 14
292
+};
293
+
294
+/* Shared Processor Interrupts */
295
+enum {
296
+ AW_H3_GIC_SPI_UART0 = 0,
297
+ AW_H3_GIC_SPI_UART1 = 1,
298
+ AW_H3_GIC_SPI_UART2 = 2,
299
+ AW_H3_GIC_SPI_UART3 = 3,
300
+ AW_H3_GIC_SPI_TIMER0 = 18,
301
+ AW_H3_GIC_SPI_TIMER1 = 19,
302
+};
303
+
304
+/* Allwinner H3 general constants */
305
+enum {
306
+ AW_H3_GIC_NUM_SPI = 128
307
+};
308
+
309
+static void allwinner_h3_init(Object *obj)
34
+{
310
+{
35
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
311
+ AwH3State *s = AW_H3(obj);
36
+ intptr_t esz = extract32(pred_desc, SIMD_DATA_SHIFT, 2);
312
+
37
+ uint64_t *n = vn, *g = vg, sum = 0, mask = pred_esz_masks[esz];
313
+ s->memmap = allwinner_h3_memmap;
38
+ intptr_t i;
314
+
39
+
315
+ for (int i = 0; i < AW_H3_NUM_CPUS; i++) {
40
+ for (i = 0; i < DIV_ROUND_UP(oprsz, 8); ++i) {
316
+ object_initialize_child(obj, "cpu[*]", &s->cpus[i], sizeof(s->cpus[i]),
41
+ uint64_t t = n[i] & g[i] & mask;
317
+ ARM_CPU_TYPE_NAME("cortex-a7"),
42
+ sum += ctpop64(t);
318
+ &error_abort, NULL);
43
+ }
319
+ }
44
+ return sum;
320
+
321
+ sysbus_init_child_obj(obj, "gic", &s->gic, sizeof(s->gic),
322
+ TYPE_ARM_GIC);
323
+
324
+ sysbus_init_child_obj(obj, "timer", &s->timer, sizeof(s->timer),
325
+ TYPE_AW_A10_PIT);
326
+ object_property_add_alias(obj, "clk0-freq", OBJECT(&s->timer),
327
+ "clk0-freq", &error_abort);
328
+ object_property_add_alias(obj, "clk1-freq", OBJECT(&s->timer),
329
+ "clk1-freq", &error_abort);
45
+}
330
+}
46
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
331
+
47
index XXXXXXX..XXXXXXX 100644
332
+static void allwinner_h3_realize(DeviceState *dev, Error **errp)
48
--- a/target/arm/translate-sve.c
49
+++ b/target/arm/translate-sve.c
50
@@ -XXX,XX +XXX,XX @@
51
#include "translate-a64.h"
52
53
54
+typedef void GVecGen2sFn(unsigned, uint32_t, uint32_t,
55
+ TCGv_i64, uint32_t, uint32_t);
56
+
57
typedef void gen_helper_gvec_flags_3(TCGv_i32, TCGv_ptr, TCGv_ptr,
58
TCGv_ptr, TCGv_i32);
59
typedef void gen_helper_gvec_flags_4(TCGv_i32, TCGv_ptr, TCGv_ptr,
60
@@ -XXX,XX +XXX,XX @@ static bool trans_BRKN(DisasContext *s, arg_rpr_s *a, uint32_t insn)
61
return do_brk2(s, a, gen_helper_sve_brkn, gen_helper_sve_brkns);
62
}
63
64
+/*
65
+ *** SVE Predicate Count Group
66
+ */
67
+
68
+static void do_cntp(DisasContext *s, TCGv_i64 val, int esz, int pn, int pg)
69
+{
333
+{
70
+ unsigned psz = pred_full_reg_size(s);
334
+ AwH3State *s = AW_H3(dev);
71
+
335
+ unsigned i;
72
+ if (psz <= 8) {
336
+
73
+ uint64_t psz_mask;
337
+ /* CPUs */
74
+
338
+ for (i = 0; i < AW_H3_NUM_CPUS; i++) {
75
+ tcg_gen_ld_i64(val, cpu_env, pred_full_reg_offset(s, pn));
339
+
76
+ if (pn != pg) {
340
+ /* Provide Power State Coordination Interface */
77
+ TCGv_i64 g = tcg_temp_new_i64();
341
+ qdev_prop_set_int32(DEVICE(&s->cpus[i]), "psci-conduit",
78
+ tcg_gen_ld_i64(g, cpu_env, pred_full_reg_offset(s, pg));
342
+ QEMU_PSCI_CONDUIT_HVC);
79
+ tcg_gen_and_i64(val, val, g);
343
+
80
+ tcg_temp_free_i64(g);
344
+ /* Disable secondary CPUs */
345
+ qdev_prop_set_bit(DEVICE(&s->cpus[i]), "start-powered-off",
346
+ i > 0);
347
+
348
+ /* All exception levels required */
349
+ qdev_prop_set_bit(DEVICE(&s->cpus[i]), "has_el3", true);
350
+ qdev_prop_set_bit(DEVICE(&s->cpus[i]), "has_el2", true);
351
+
352
+ /* Mark realized */
353
+ qdev_init_nofail(DEVICE(&s->cpus[i]));
354
+ }
355
+
356
+ /* Generic Interrupt Controller */
357
+ qdev_prop_set_uint32(DEVICE(&s->gic), "num-irq", AW_H3_GIC_NUM_SPI +
358
+ GIC_INTERNAL);
359
+ qdev_prop_set_uint32(DEVICE(&s->gic), "revision", 2);
360
+ qdev_prop_set_uint32(DEVICE(&s->gic), "num-cpu", AW_H3_NUM_CPUS);
361
+ qdev_prop_set_bit(DEVICE(&s->gic), "has-security-extensions", false);
362
+ qdev_prop_set_bit(DEVICE(&s->gic), "has-virtualization-extensions", true);
363
+ qdev_init_nofail(DEVICE(&s->gic));
364
+
365
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->gic), 0, s->memmap[AW_H3_GIC_DIST]);
366
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->gic), 1, s->memmap[AW_H3_GIC_CPU]);
367
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->gic), 2, s->memmap[AW_H3_GIC_HYP]);
368
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->gic), 3, s->memmap[AW_H3_GIC_VCPU]);
369
+
370
+ /*
371
+ * Wire the outputs from each CPU's generic timer and the GICv3
372
+ * maintenance interrupt signal to the appropriate GIC PPI inputs,
373
+ * and the GIC's IRQ/FIQ/VIRQ/VFIQ interrupt outputs to the CPU's inputs.
374
+ */
375
+ for (i = 0; i < AW_H3_NUM_CPUS; i++) {
376
+ DeviceState *cpudev = DEVICE(&s->cpus[i]);
377
+ int ppibase = AW_H3_GIC_NUM_SPI + i * GIC_INTERNAL + GIC_NR_SGIS;
378
+ int irq;
379
+ /*
380
+ * Mapping from the output timer irq lines from the CPU to the
381
+ * GIC PPI inputs used for this board.
382
+ */
383
+ const int timer_irq[] = {
384
+ [GTIMER_PHYS] = AW_H3_GIC_PPI_PHYSTIMER,
385
+ [GTIMER_VIRT] = AW_H3_GIC_PPI_VIRTTIMER,
386
+ [GTIMER_HYP] = AW_H3_GIC_PPI_HYPTIMER,
387
+ [GTIMER_SEC] = AW_H3_GIC_PPI_SECTIMER,
388
+ };
389
+
390
+ /* Connect CPU timer outputs to GIC PPI inputs */
391
+ for (irq = 0; irq < ARRAY_SIZE(timer_irq); irq++) {
392
+ qdev_connect_gpio_out(cpudev, irq,
393
+ qdev_get_gpio_in(DEVICE(&s->gic),
394
+ ppibase + timer_irq[irq]));
81
+ }
395
+ }
82
+
396
+
83
+ /* Reduce the pred_esz_masks value simply to reduce the
397
+ /* Connect GIC outputs to CPU interrupt inputs */
84
+ * size of the code generated here.
398
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->gic), i,
85
+ */
399
+ qdev_get_gpio_in(cpudev, ARM_CPU_IRQ));
86
+ psz_mask = MAKE_64BIT_MASK(0, psz * 8);
400
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->gic), i + AW_H3_NUM_CPUS,
87
+ tcg_gen_andi_i64(val, val, pred_esz_masks[esz] & psz_mask);
401
+ qdev_get_gpio_in(cpudev, ARM_CPU_FIQ));
88
+
402
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->gic), i + (2 * AW_H3_NUM_CPUS),
89
+ tcg_gen_ctpop_i64(val, val);
403
+ qdev_get_gpio_in(cpudev, ARM_CPU_VIRQ));
90
+ } else {
404
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->gic), i + (3 * AW_H3_NUM_CPUS),
91
+ TCGv_ptr t_pn = tcg_temp_new_ptr();
405
+ qdev_get_gpio_in(cpudev, ARM_CPU_VFIQ));
92
+ TCGv_ptr t_pg = tcg_temp_new_ptr();
406
+
93
+ unsigned desc;
407
+ /* GIC maintenance signal */
94
+ TCGv_i32 t_desc;
408
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->gic), i + (4 * AW_H3_NUM_CPUS),
95
+
409
+ qdev_get_gpio_in(DEVICE(&s->gic),
96
+ desc = psz - 2;
410
+ ppibase + AW_H3_GIC_PPI_MAINT));
97
+ desc = deposit32(desc, SIMD_DATA_SHIFT, 2, esz);
411
+ }
98
+
412
+
99
+ tcg_gen_addi_ptr(t_pn, cpu_env, pred_full_reg_offset(s, pn));
413
+ /* Timer */
100
+ tcg_gen_addi_ptr(t_pg, cpu_env, pred_full_reg_offset(s, pg));
414
+ qdev_init_nofail(DEVICE(&s->timer));
101
+ t_desc = tcg_const_i32(desc);
415
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->timer), 0, s->memmap[AW_H3_PIT]);
102
+
416
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->timer), 0,
103
+ gen_helper_sve_cntp(val, t_pn, t_pg, t_desc);
417
+ qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_TIMER0));
104
+ tcg_temp_free_ptr(t_pn);
418
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->timer), 1,
105
+ tcg_temp_free_ptr(t_pg);
419
+ qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_TIMER1));
106
+ tcg_temp_free_i32(t_desc);
420
+
421
+ /* SRAM */
422
+ memory_region_init_ram(&s->sram_a1, OBJECT(dev), "sram A1",
423
+ 64 * KiB, &error_abort);
424
+ memory_region_init_ram(&s->sram_a2, OBJECT(dev), "sram A2",
425
+ 32 * KiB, &error_abort);
426
+ memory_region_init_ram(&s->sram_c, OBJECT(dev), "sram C",
427
+ 44 * KiB, &error_abort);
428
+ memory_region_add_subregion(get_system_memory(), s->memmap[AW_H3_SRAM_A1],
429
+ &s->sram_a1);
430
+ memory_region_add_subregion(get_system_memory(), s->memmap[AW_H3_SRAM_A2],
431
+ &s->sram_a2);
432
+ memory_region_add_subregion(get_system_memory(), s->memmap[AW_H3_SRAM_C],
433
+ &s->sram_c);
434
+
435
+ /* UART0. For future clocktree API: All UARTS are connected to APB2_CLK. */
436
+ serial_mm_init(get_system_memory(), s->memmap[AW_H3_UART0], 2,
437
+ qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_UART0),
438
+ 115200, serial_hd(0), DEVICE_NATIVE_ENDIAN);
439
+ /* UART1 */
440
+ serial_mm_init(get_system_memory(), s->memmap[AW_H3_UART1], 2,
441
+ qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_UART1),
442
+ 115200, serial_hd(1), DEVICE_NATIVE_ENDIAN);
443
+ /* UART2 */
444
+ serial_mm_init(get_system_memory(), s->memmap[AW_H3_UART2], 2,
445
+ qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_UART2),
446
+ 115200, serial_hd(2), DEVICE_NATIVE_ENDIAN);
447
+ /* UART3 */
448
+ serial_mm_init(get_system_memory(), s->memmap[AW_H3_UART3], 2,
449
+ qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_UART3),
450
+ 115200, serial_hd(3), DEVICE_NATIVE_ENDIAN);
451
+
452
+ /* Unimplemented devices */
453
+ for (i = 0; i < ARRAY_SIZE(unimplemented); i++) {
454
+ create_unimplemented_device(unimplemented[i].device_name,
455
+ unimplemented[i].base,
456
+ unimplemented[i].size);
107
+ }
457
+ }
108
+}
458
+}
109
+
459
+
110
+static bool trans_CNTP(DisasContext *s, arg_CNTP *a, uint32_t insn)
460
+static void allwinner_h3_class_init(ObjectClass *oc, void *data)
111
+{
461
+{
112
+ if (sve_access_check(s)) {
462
+ DeviceClass *dc = DEVICE_CLASS(oc);
113
+ do_cntp(s, cpu_reg(s, a->rd), a->esz, a->rn, a->pg);
463
+
114
+ }
464
+ dc->realize = allwinner_h3_realize;
115
+ return true;
465
+ /* Reason: uses serial_hd() in realize function */
466
+ dc->user_creatable = false;
116
+}
467
+}
117
+
468
+
118
+static bool trans_INCDECP_r(DisasContext *s, arg_incdec_pred *a,
469
+static const TypeInfo allwinner_h3_type_info = {
119
+ uint32_t insn)
470
+ .name = TYPE_AW_H3,
471
+ .parent = TYPE_DEVICE,
472
+ .instance_size = sizeof(AwH3State),
473
+ .instance_init = allwinner_h3_init,
474
+ .class_init = allwinner_h3_class_init,
475
+};
476
+
477
+static void allwinner_h3_register_types(void)
120
+{
478
+{
121
+ if (sve_access_check(s)) {
479
+ type_register_static(&allwinner_h3_type_info);
122
+ TCGv_i64 reg = cpu_reg(s, a->rd);
123
+ TCGv_i64 val = tcg_temp_new_i64();
124
+
125
+ do_cntp(s, val, a->esz, a->pg, a->pg);
126
+ if (a->d) {
127
+ tcg_gen_sub_i64(reg, reg, val);
128
+ } else {
129
+ tcg_gen_add_i64(reg, reg, val);
130
+ }
131
+ tcg_temp_free_i64(val);
132
+ }
133
+ return true;
134
+}
480
+}
135
+
481
+
136
+static bool trans_INCDECP_z(DisasContext *s, arg_incdec2_pred *a,
482
+type_init(allwinner_h3_register_types)
137
+ uint32_t insn)
483
diff --git a/MAINTAINERS b/MAINTAINERS
138
+{
139
+ if (a->esz == 0) {
140
+ return false;
141
+ }
142
+ if (sve_access_check(s)) {
143
+ unsigned vsz = vec_full_reg_size(s);
144
+ TCGv_i64 val = tcg_temp_new_i64();
145
+ GVecGen2sFn *gvec_fn = a->d ? tcg_gen_gvec_subs : tcg_gen_gvec_adds;
146
+
147
+ do_cntp(s, val, a->esz, a->pg, a->pg);
148
+ gvec_fn(a->esz, vec_full_reg_offset(s, a->rd),
149
+ vec_full_reg_offset(s, a->rn), val, vsz, vsz);
150
+ }
151
+ return true;
152
+}
153
+
154
+static bool trans_SINCDECP_r_32(DisasContext *s, arg_incdec_pred *a,
155
+ uint32_t insn)
156
+{
157
+ if (sve_access_check(s)) {
158
+ TCGv_i64 reg = cpu_reg(s, a->rd);
159
+ TCGv_i64 val = tcg_temp_new_i64();
160
+
161
+ do_cntp(s, val, a->esz, a->pg, a->pg);
162
+ do_sat_addsub_32(reg, val, a->u, a->d);
163
+ }
164
+ return true;
165
+}
166
+
167
+static bool trans_SINCDECP_r_64(DisasContext *s, arg_incdec_pred *a,
168
+ uint32_t insn)
169
+{
170
+ if (sve_access_check(s)) {
171
+ TCGv_i64 reg = cpu_reg(s, a->rd);
172
+ TCGv_i64 val = tcg_temp_new_i64();
173
+
174
+ do_cntp(s, val, a->esz, a->pg, a->pg);
175
+ do_sat_addsub_64(reg, val, a->u, a->d);
176
+ }
177
+ return true;
178
+}
179
+
180
+static bool trans_SINCDECP_z(DisasContext *s, arg_incdec2_pred *a,
181
+ uint32_t insn)
182
+{
183
+ if (a->esz == 0) {
184
+ return false;
185
+ }
186
+ if (sve_access_check(s)) {
187
+ TCGv_i64 val = tcg_temp_new_i64();
188
+ do_cntp(s, val, a->esz, a->pg, a->pg);
189
+ do_sat_addsub_vec(s, a->esz, a->rd, a->rn, val, a->u, a->d);
190
+ }
191
+ return true;
192
+}
193
+
194
/*
195
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
196
*/
197
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
198
index XXXXXXX..XXXXXXX 100644
484
index XXXXXXX..XXXXXXX 100644
199
--- a/target/arm/sve.decode
485
--- a/MAINTAINERS
200
+++ b/target/arm/sve.decode
486
+++ b/MAINTAINERS
201
@@ -XXX,XX +XXX,XX @@
487
@@ -XXX,XX +XXX,XX @@ F: hw/*/allwinner*
202
&ptrue rd esz pat s
488
F: include/hw/*/allwinner*
203
&incdec_cnt rd pat esz imm d u
489
F: hw/arm/cubieboard.c
204
&incdec2_cnt rd rn pat esz imm d u
490
205
+&incdec_pred rd pg esz d u
491
+Allwinner-h3
206
+&incdec2_pred rd rn pg esz d u
492
+M: Niek Linnenbank <nieklinnenbank@gmail.com>
207
493
+L: qemu-arm@nongnu.org
208
###########################################################################
494
+S: Maintained
209
# Named instruction formats. These are generally used to
495
+F: hw/*/allwinner-h3*
210
@@ -XXX,XX +XXX,XX @@
496
+F: include/hw/*/allwinner-h3*
211
497
+
212
# One register operand, with governing predicate, vector element size
498
ARM PrimeCell and CMSDK devices
213
@rd_pg_rn ........ esz:2 ... ... ... pg:3 rn:5 rd:5 &rpr_esz
499
M: Peter Maydell <peter.maydell@linaro.org>
214
+@rd_pg4_pn ........ esz:2 ... ... .. pg:4 . rn:4 rd:5 &rpr_esz
500
L: qemu-arm@nongnu.org
215
501
diff --git a/default-configs/arm-softmmu.mak b/default-configs/arm-softmmu.mak
216
# Two register operands with a 6-bit signed immediate.
502
index XXXXXXX..XXXXXXX 100644
217
@rd_rn_i6 ........ ... rn:5 ..... imm:s6 rd:5 &rri
503
--- a/default-configs/arm-softmmu.mak
218
@@ -XXX,XX +XXX,XX @@
504
+++ b/default-configs/arm-softmmu.mak
219
@incdec2_cnt ........ esz:2 .. .... ...... pat:5 rd:5 \
505
@@ -XXX,XX +XXX,XX @@ CONFIG_FSL_IMX25=y
220
&incdec2_cnt imm=%imm4_16_p1 rn=%reg_movprfx
506
CONFIG_FSL_IMX7=y
221
507
CONFIG_FSL_IMX6UL=y
222
+# One register, predicate.
508
CONFIG_SEMIHOSTING=y
223
+# User must fill in U and D.
509
+CONFIG_ALLWINNER_H3=y
224
+@incdec_pred ........ esz:2 .... .. ..... .. pg:4 rd:5 &incdec_pred
510
diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig
225
+@incdec2_pred ........ esz:2 .... .. ..... .. pg:4 rd:5 \
511
index XXXXXXX..XXXXXXX 100644
226
+ &incdec2_pred rn=%reg_movprfx
512
--- a/hw/arm/Kconfig
227
+
513
+++ b/hw/arm/Kconfig
228
###########################################################################
514
@@ -XXX,XX +XXX,XX @@ config ALLWINNER_A10
229
# Instruction patterns. Grouped according to the SVE encodingindex.xhtml.
515
select SERIAL
230
516
select UNIMP
231
@@ -XXX,XX +XXX,XX @@ BRKB_m 00100101 1. 01000001 .... 0 .... 1 .... @pd_pg_pn_s
517
232
# SVE propagate break to next partition
518
+config ALLWINNER_H3
233
BRKN 00100101 0. 01100001 .... 0 .... 0 .... @pd_pg_pn_s
519
+ bool
234
520
+ select ALLWINNER_A10_PIT
235
+### SVE Predicate Count Group
521
+ select SERIAL
236
+
522
+ select ARM_TIMER
237
+# SVE predicate count
523
+ select ARM_GIC
238
+CNTP 00100101 .. 100 000 10 .... 0 .... ..... @rd_pg4_pn
524
+ select UNIMP
239
+
525
+
240
+# SVE inc/dec register by predicate count
526
config RASPI
241
+INCDECP_r 00100101 .. 10110 d:1 10001 00 .... ..... @incdec_pred u=1
527
bool
242
+
528
select FRAMEBUFFER
243
+# SVE inc/dec vector by predicate count
244
+INCDECP_z 00100101 .. 10110 d:1 10000 00 .... ..... @incdec2_pred u=1
245
+
246
+# SVE saturating inc/dec register by predicate count
247
+SINCDECP_r_32 00100101 .. 1010 d:1 u:1 10001 00 .... ..... @incdec_pred
248
+SINCDECP_r_64 00100101 .. 1010 d:1 u:1 10001 10 .... ..... @incdec_pred
249
+
250
+# SVE saturating inc/dec vector by predicate count
251
+SINCDECP_z 00100101 .. 1010 d:1 u:1 10000 00 .... ..... @incdec2_pred
252
+
253
### SVE Memory - 32-bit Gather and Unsized Contiguous Group
254
255
# SVE load predicate register
256
--
529
--
257
2.17.1
530
2.20.1
258
531
259
532
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
2
3
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
3
The Xunlong Orange Pi PC is an Allwinner H3 System on Chip
4
Message-id: 20180613015641.5667-16-richard.henderson@linaro.org
4
based embedded computer with mainline support in both U-Boot
5
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
5
and Linux. The board comes with a Quad Core Cortex A7 @ 1.3GHz,
6
1GiB RAM, 100Mbit ethernet, USB, SD/MMC, USB, HDMI and
7
various other I/O. This commit add support for the Xunlong
8
Orange Pi PC machine.
9
10
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
11
Tested-by: KONRAD Frederic <frederic.konrad@adacore.com>
12
Tested-by: Philippe Mathieu-Daudé <philmd@redhat.com>
13
Reviewed-by: Philippe Mathieu-Daudé <philmd@redhat.com>
14
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
15
Acked-by: Igor Mammedov <imammedo@redhat.com>
16
Message-id: 20200311221854.30370-3-nieklinnenbank@gmail.com
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
17
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
18
---
8
target/arm/helper-sve.h | 2 +
19
hw/arm/Makefile.objs | 2 +-
9
target/arm/sve_helper.c | 31 ++++++++++++
20
hw/arm/orangepi.c | 92 ++++++++++++++++++++++++++++++++++++++++++++
10
target/arm/translate-sve.c | 99 ++++++++++++++++++++++++++++++++++++++
21
MAINTAINERS | 1 +
11
target/arm/sve.decode | 8 +++
22
3 files changed, 94 insertions(+), 1 deletion(-)
12
4 files changed, 140 insertions(+)
23
create mode 100644 hw/arm/orangepi.c
13
24
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
25
diff --git a/hw/arm/Makefile.objs b/hw/arm/Makefile.objs
15
index XXXXXXX..XXXXXXX 100644
26
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
27
--- a/hw/arm/Makefile.objs
17
+++ b/target/arm/helper-sve.h
28
+++ b/hw/arm/Makefile.objs
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_4(sve_brkn, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
29
@@ -XXX,XX +XXX,XX @@ obj-$(CONFIG_DIGIC) += digic.o
19
DEF_HELPER_FLAGS_4(sve_brkns, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
30
obj-$(CONFIG_OMAP) += omap1.o omap2.o
20
31
obj-$(CONFIG_STRONGARM) += strongarm.o
21
DEF_HELPER_FLAGS_3(sve_cntp, TCG_CALL_NO_RWG, i64, ptr, ptr, i32)
32
obj-$(CONFIG_ALLWINNER_A10) += allwinner-a10.o cubieboard.o
33
-obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3.o
34
+obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3.o orangepi.o
35
obj-$(CONFIG_RASPI) += bcm2835_peripherals.o bcm2836.o raspi.o
36
obj-$(CONFIG_STM32F205_SOC) += stm32f205_soc.o
37
obj-$(CONFIG_STM32F405_SOC) += stm32f405_soc.o
38
diff --git a/hw/arm/orangepi.c b/hw/arm/orangepi.c
39
new file mode 100644
40
index XXXXXXX..XXXXXXX
41
--- /dev/null
42
+++ b/hw/arm/orangepi.c
43
@@ -XXX,XX +XXX,XX @@
44
+/*
45
+ * Orange Pi emulation
46
+ *
47
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
48
+ *
49
+ * This program is free software: you can redistribute it and/or modify
50
+ * it under the terms of the GNU General Public License as published by
51
+ * the Free Software Foundation, either version 2 of the License, or
52
+ * (at your option) any later version.
53
+ *
54
+ * This program is distributed in the hope that it will be useful,
55
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
56
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
57
+ * GNU General Public License for more details.
58
+ *
59
+ * You should have received a copy of the GNU General Public License
60
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
61
+ */
22
+
62
+
23
+DEF_HELPER_FLAGS_3(sve_while, TCG_CALL_NO_RWG, i32, ptr, i32, i32)
63
+#include "qemu/osdep.h"
24
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
64
+#include "qemu/units.h"
25
index XXXXXXX..XXXXXXX 100644
65
+#include "exec/address-spaces.h"
26
--- a/target/arm/sve_helper.c
66
+#include "qapi/error.h"
27
+++ b/target/arm/sve_helper.c
67
+#include "cpu.h"
28
@@ -XXX,XX +XXX,XX @@ uint64_t HELPER(sve_cntp)(void *vn, void *vg, uint32_t pred_desc)
68
+#include "hw/sysbus.h"
29
}
69
+#include "hw/boards.h"
30
return sum;
70
+#include "hw/qdev-properties.h"
31
}
71
+#include "hw/arm/allwinner-h3.h"
72
+#include "sysemu/sysemu.h"
32
+
73
+
33
+uint32_t HELPER(sve_while)(void *vd, uint32_t count, uint32_t pred_desc)
74
+static struct arm_boot_info orangepi_binfo = {
75
+ .nb_cpus = AW_H3_NUM_CPUS,
76
+};
77
+
78
+static void orangepi_init(MachineState *machine)
34
+{
79
+{
35
+ uintptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
80
+ AwH3State *h3;
36
+ intptr_t esz = extract32(pred_desc, SIMD_DATA_SHIFT, 2);
37
+ uint64_t esz_mask = pred_esz_masks[esz];
38
+ ARMPredicateReg *d = vd;
39
+ uint32_t flags;
40
+ intptr_t i;
41
+
81
+
42
+ /* Begin with a zero predicate register. */
82
+ /* BIOS is not supported by this board */
43
+ flags = do_zero(d, oprsz);
83
+ if (bios_name) {
44
+ if (count == 0) {
84
+ error_report("BIOS not supported for this machine");
45
+ return flags;
85
+ exit(1);
46
+ }
86
+ }
47
+
87
+
48
+ /* Scale from predicate element count to bits. */
88
+ /* This board has fixed size RAM */
49
+ count <<= esz;
89
+ if (machine->ram_size != 1 * GiB) {
50
+ /* Bound to the bits in the predicate. */
90
+ error_report("This machine can only be used with 1GiB of RAM");
51
+ count = MIN(count, oprsz * 8);
91
+ exit(1);
52
+
53
+ /* Set all of the requested bits. */
54
+ for (i = 0; i < count / 64; ++i) {
55
+ d->p[i] = esz_mask;
56
+ }
57
+ if (count & 63) {
58
+ d->p[i] = MAKE_64BIT_MASK(0, count & 63) & esz_mask;
59
+ }
92
+ }
60
+
93
+
61
+ return predtest_ones(d, oprsz, esz_mask);
94
+ /* Only allow Cortex-A7 for this board */
62
+}
95
+ if (strcmp(machine->cpu_type, ARM_CPU_TYPE_NAME("cortex-a7")) != 0) {
63
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
96
+ error_report("This board can only be used with cortex-a7 CPU");
64
index XXXXXXX..XXXXXXX 100644
97
+ exit(1);
65
--- a/target/arm/translate-sve.c
66
+++ b/target/arm/translate-sve.c
67
@@ -XXX,XX +XXX,XX @@ static bool trans_SINCDECP_z(DisasContext *s, arg_incdec2_pred *a,
68
return true;
69
}
70
71
+/*
72
+ *** SVE Integer Compare Scalars Group
73
+ */
74
+
75
+static bool trans_CTERM(DisasContext *s, arg_CTERM *a, uint32_t insn)
76
+{
77
+ if (!sve_access_check(s)) {
78
+ return true;
79
+ }
98
+ }
80
+
99
+
81
+ TCGCond cond = (a->ne ? TCG_COND_NE : TCG_COND_EQ);
100
+ h3 = AW_H3(object_new(TYPE_AW_H3));
82
+ TCGv_i64 rn = read_cpu_reg(s, a->rn, a->sf);
101
+ object_property_add_child(OBJECT(machine), "soc", OBJECT(h3),
83
+ TCGv_i64 rm = read_cpu_reg(s, a->rm, a->sf);
102
+ &error_abort);
84
+ TCGv_i64 cmp = tcg_temp_new_i64();
103
+ object_unref(OBJECT(h3));
85
+
104
+
86
+ tcg_gen_setcond_i64(cond, cmp, rn, rm);
105
+ /* Setup timer properties */
87
+ tcg_gen_extrl_i64_i32(cpu_NF, cmp);
106
+ object_property_set_int(OBJECT(h3), 32768, "clk0-freq",
88
+ tcg_temp_free_i64(cmp);
107
+ &error_abort);
108
+ object_property_set_int(OBJECT(h3), 24 * 1000 * 1000, "clk1-freq",
109
+ &error_abort);
89
+
110
+
90
+ /* VF = !NF & !CF. */
111
+ /* Mark H3 object realized */
91
+ tcg_gen_xori_i32(cpu_VF, cpu_NF, 1);
112
+ object_property_set_bool(OBJECT(h3), true, "realized", &error_abort);
92
+ tcg_gen_andc_i32(cpu_VF, cpu_VF, cpu_CF);
93
+
113
+
94
+ /* Both NF and VF actually look at bit 31. */
114
+ /* SDRAM */
95
+ tcg_gen_neg_i32(cpu_NF, cpu_NF);
115
+ memory_region_add_subregion(get_system_memory(), h3->memmap[AW_H3_SDRAM],
96
+ tcg_gen_neg_i32(cpu_VF, cpu_VF);
116
+ machine->ram);
97
+ return true;
117
+
118
+ orangepi_binfo.loader_start = h3->memmap[AW_H3_SDRAM];
119
+ orangepi_binfo.ram_size = machine->ram_size;
120
+ arm_load_kernel(ARM_CPU(first_cpu), machine, &orangepi_binfo);
98
+}
121
+}
99
+
122
+
100
+static bool trans_WHILE(DisasContext *s, arg_WHILE *a, uint32_t insn)
123
+static void orangepi_machine_init(MachineClass *mc)
101
+{
124
+{
102
+ if (!sve_access_check(s)) {
125
+ mc->desc = "Orange Pi PC";
103
+ return true;
126
+ mc->init = orangepi_init;
104
+ }
127
+ mc->min_cpus = AW_H3_NUM_CPUS;
105
+
128
+ mc->max_cpus = AW_H3_NUM_CPUS;
106
+ TCGv_i64 op0 = read_cpu_reg(s, a->rn, 1);
129
+ mc->default_cpus = AW_H3_NUM_CPUS;
107
+ TCGv_i64 op1 = read_cpu_reg(s, a->rm, 1);
130
+ mc->default_cpu_type = ARM_CPU_TYPE_NAME("cortex-a7");
108
+ TCGv_i64 t0 = tcg_temp_new_i64();
131
+ mc->default_ram_size = 1 * GiB;
109
+ TCGv_i64 t1 = tcg_temp_new_i64();
132
+ mc->default_ram_id = "orangepi.ram";
110
+ TCGv_i32 t2, t3;
111
+ TCGv_ptr ptr;
112
+ unsigned desc, vsz = vec_full_reg_size(s);
113
+ TCGCond cond;
114
+
115
+ if (!a->sf) {
116
+ if (a->u) {
117
+ tcg_gen_ext32u_i64(op0, op0);
118
+ tcg_gen_ext32u_i64(op1, op1);
119
+ } else {
120
+ tcg_gen_ext32s_i64(op0, op0);
121
+ tcg_gen_ext32s_i64(op1, op1);
122
+ }
123
+ }
124
+
125
+ /* For the helper, compress the different conditions into a computation
126
+ * of how many iterations for which the condition is true.
127
+ *
128
+ * This is slightly complicated by 0 <= UINT64_MAX, which is nominally
129
+ * 2**64 iterations, overflowing to 0. Of course, predicate registers
130
+ * aren't that large, so any value >= predicate size is sufficient.
131
+ */
132
+ tcg_gen_sub_i64(t0, op1, op0);
133
+
134
+ /* t0 = MIN(op1 - op0, vsz). */
135
+ tcg_gen_movi_i64(t1, vsz);
136
+ tcg_gen_umin_i64(t0, t0, t1);
137
+ if (a->eq) {
138
+ /* Equality means one more iteration. */
139
+ tcg_gen_addi_i64(t0, t0, 1);
140
+ }
141
+
142
+ /* t0 = (condition true ? t0 : 0). */
143
+ cond = (a->u
144
+ ? (a->eq ? TCG_COND_LEU : TCG_COND_LTU)
145
+ : (a->eq ? TCG_COND_LE : TCG_COND_LT));
146
+ tcg_gen_movi_i64(t1, 0);
147
+ tcg_gen_movcond_i64(cond, t0, op0, op1, t0, t1);
148
+
149
+ t2 = tcg_temp_new_i32();
150
+ tcg_gen_extrl_i64_i32(t2, t0);
151
+ tcg_temp_free_i64(t0);
152
+ tcg_temp_free_i64(t1);
153
+
154
+ desc = (vsz / 8) - 2;
155
+ desc = deposit32(desc, SIMD_DATA_SHIFT, 2, a->esz);
156
+ t3 = tcg_const_i32(desc);
157
+
158
+ ptr = tcg_temp_new_ptr();
159
+ tcg_gen_addi_ptr(ptr, cpu_env, pred_full_reg_offset(s, a->rd));
160
+
161
+ gen_helper_sve_while(t2, ptr, t2, t3);
162
+ do_pred_flags(t2);
163
+
164
+ tcg_temp_free_ptr(ptr);
165
+ tcg_temp_free_i32(t2);
166
+ tcg_temp_free_i32(t3);
167
+ return true;
168
+}
133
+}
169
+
134
+
170
/*
135
+DEFINE_MACHINE("orangepi-pc", orangepi_machine_init)
171
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
136
diff --git a/MAINTAINERS b/MAINTAINERS
172
*/
173
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
174
index XXXXXXX..XXXXXXX 100644
137
index XXXXXXX..XXXXXXX 100644
175
--- a/target/arm/sve.decode
138
--- a/MAINTAINERS
176
+++ b/target/arm/sve.decode
139
+++ b/MAINTAINERS
177
@@ -XXX,XX +XXX,XX @@ SINCDECP_r_64 00100101 .. 1010 d:1 u:1 10001 10 .... ..... @incdec_pred
140
@@ -XXX,XX +XXX,XX @@ L: qemu-arm@nongnu.org
178
# SVE saturating inc/dec vector by predicate count
141
S: Maintained
179
SINCDECP_z 00100101 .. 1010 d:1 u:1 10000 00 .... ..... @incdec2_pred
142
F: hw/*/allwinner-h3*
180
143
F: include/hw/*/allwinner-h3*
181
+### SVE Integer Compare - Scalars Group
144
+F: hw/arm/orangepi.c
182
+
145
183
+# SVE conditionally terminate scalars
146
ARM PrimeCell and CMSDK devices
184
+CTERM 00100101 1 sf:1 1 rm:5 001000 rn:5 ne:1 0000
147
M: Peter Maydell <peter.maydell@linaro.org>
185
+
186
+# SVE integer compare scalar count and limit
187
+WHILE 00100101 esz:2 1 rm:5 000 sf:1 u:1 1 rn:5 eq:1 rd:4
188
+
189
### SVE Memory - 32-bit Gather and Unsized Contiguous Group
190
191
# SVE load predicate register
192
--
148
--
193
2.17.1
149
2.20.1
194
150
195
151
diff view generated by jsdifflib
1
If an IOMMU supports mappings that care about the memory
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
transaction attributes, then it no longer has a unique
3
address -> output mapping, but more than one. We can
4
represent these using an IOMMU index, analogous to TCG's
5
mmu indexes.
6
2
3
The Clock Control Unit is responsible for clock signal generation,
4
configuration and distribution in the Allwinner H3 System on Chip.
5
This commit adds support for the Clock Control Unit which emulates
6
a simple read/write register interface.
7
8
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
9
Reviewed-by: Philippe Mathieu-Daudé <philmd@redhat.com>
10
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
11
Tested-by: Philippe Mathieu-Daudé <philmd@redhat.com>
12
Message-id: 20200311221854.30370-4-nieklinnenbank@gmail.com
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
9
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
10
Message-id: 20180604152941.20374-2-peter.maydell@linaro.org
11
---
14
---
12
include/exec/memory.h | 55 +++++++++++++++++++++++++++++++++++++++++++
15
hw/misc/Makefile.objs | 1 +
13
memory.c | 23 ++++++++++++++++++
16
include/hw/arm/allwinner-h3.h | 3 +
14
2 files changed, 78 insertions(+)
17
include/hw/misc/allwinner-h3-ccu.h | 66 ++++++++
18
hw/arm/allwinner-h3.c | 9 +-
19
hw/misc/allwinner-h3-ccu.c | 242 +++++++++++++++++++++++++++++
20
5 files changed, 320 insertions(+), 1 deletion(-)
21
create mode 100644 include/hw/misc/allwinner-h3-ccu.h
22
create mode 100644 hw/misc/allwinner-h3-ccu.c
15
23
16
diff --git a/include/exec/memory.h b/include/exec/memory.h
24
diff --git a/hw/misc/Makefile.objs b/hw/misc/Makefile.objs
17
index XXXXXXX..XXXXXXX 100644
25
index XXXXXXX..XXXXXXX 100644
18
--- a/include/exec/memory.h
26
--- a/hw/misc/Makefile.objs
19
+++ b/include/exec/memory.h
27
+++ b/hw/misc/Makefile.objs
20
@@ -XXX,XX +XXX,XX @@ enum IOMMUMemoryRegionAttr {
28
@@ -XXX,XX +XXX,XX @@ common-obj-$(CONFIG_MACIO) += macio/
21
* to report whenever mappings are changed, by calling
29
22
* memory_region_notify_iommu() (or, if necessary, by calling
30
common-obj-$(CONFIG_IVSHMEM_DEVICE) += ivshmem.o
23
* memory_region_notify_one() for each registered notifier).
31
24
+ *
32
+common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3-ccu.o
25
+ * Conceptually an IOMMU provides a mapping from input address
33
common-obj-$(CONFIG_REALVIEW) += arm_sysctl.o
26
+ * to an output TLB entry. If the IOMMU is aware of memory transaction
34
common-obj-$(CONFIG_NSERIES) += cbus.o
27
+ * attributes and the output TLB entry depends on the transaction
35
common-obj-$(CONFIG_ECCMEMCTL) += eccmemctl.o
28
+ * attributes, we represent this using IOMMU indexes. Each index
36
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
29
+ * selects a particular translation table that the IOMMU has:
37
index XXXXXXX..XXXXXXX 100644
30
+ * @attrs_to_index returns the IOMMU index for a set of transaction attributes
38
--- a/include/hw/arm/allwinner-h3.h
31
+ * @translate takes an input address and an IOMMU index
39
+++ b/include/hw/arm/allwinner-h3.h
32
+ * and the mapping returned can only depend on the input address and the
40
@@ -XXX,XX +XXX,XX @@
33
+ * IOMMU index.
41
#include "hw/arm/boot.h"
34
+ *
42
#include "hw/timer/allwinner-a10-pit.h"
35
+ * Most IOMMUs don't care about the transaction attributes and support
43
#include "hw/intc/arm_gic.h"
36
+ * only a single IOMMU index. A more complex IOMMU might have one index
44
+#include "hw/misc/allwinner-h3-ccu.h"
37
+ * for secure transactions and one for non-secure transactions.
45
#include "target/arm/cpu.h"
38
*/
46
39
typedef struct IOMMUMemoryRegionClass {
47
/**
40
/* private */
48
@@ -XXX,XX +XXX,XX @@ enum {
41
@@ -XXX,XX +XXX,XX @@ typedef struct IOMMUMemoryRegionClass {
49
AW_H3_SRAM_A1,
42
*/
50
AW_H3_SRAM_A2,
43
int (*get_attr)(IOMMUMemoryRegion *iommu, enum IOMMUMemoryRegionAttr attr,
51
AW_H3_SRAM_C,
44
void *data);
52
+ AW_H3_CCU,
45
+
53
AW_H3_PIT,
46
+ /* Return the IOMMU index to use for a given set of transaction attributes.
54
AW_H3_UART0,
47
+ *
55
AW_H3_UART1,
48
+ * Optional method: if an IOMMU only supports a single IOMMU index then
56
@@ -XXX,XX +XXX,XX @@ typedef struct AwH3State {
49
+ * the default implementation of memory_region_iommu_attrs_to_index()
57
ARMCPU cpus[AW_H3_NUM_CPUS];
50
+ * will return 0.
58
const hwaddr *memmap;
51
+ *
59
AwA10PITState timer;
52
+ * The indexes supported by an IOMMU must be contiguous, starting at 0.
60
+ AwH3ClockCtlState ccu;
53
+ *
61
GICState gic;
54
+ * @iommu: the IOMMUMemoryRegion
62
MemoryRegion sram_a1;
55
+ * @attrs: memory transaction attributes
63
MemoryRegion sram_a2;
56
+ */
64
diff --git a/include/hw/misc/allwinner-h3-ccu.h b/include/hw/misc/allwinner-h3-ccu.h
57
+ int (*attrs_to_index)(IOMMUMemoryRegion *iommu, MemTxAttrs attrs);
65
new file mode 100644
58
+
66
index XXXXXXX..XXXXXXX
59
+ /* Return the number of IOMMU indexes this IOMMU supports.
67
--- /dev/null
60
+ *
68
+++ b/include/hw/misc/allwinner-h3-ccu.h
61
+ * Optional method: if this method is not provided, then
69
@@ -XXX,XX +XXX,XX @@
62
+ * memory_region_iommu_num_indexes() will return 1, indicating that
70
+/*
63
+ * only a single IOMMU index is supported.
71
+ * Allwinner H3 Clock Control Unit emulation
64
+ *
72
+ *
65
+ * @iommu: the IOMMUMemoryRegion
73
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
66
+ */
74
+ *
67
+ int (*num_indexes)(IOMMUMemoryRegion *iommu);
75
+ * This program is free software: you can redistribute it and/or modify
68
} IOMMUMemoryRegionClass;
76
+ * it under the terms of the GNU General Public License as published by
69
77
+ * the Free Software Foundation, either version 2 of the License, or
70
typedef struct CoalescedMemoryRange CoalescedMemoryRange;
78
+ * (at your option) any later version.
71
@@ -XXX,XX +XXX,XX @@ int memory_region_iommu_get_attr(IOMMUMemoryRegion *iommu_mr,
79
+ *
72
enum IOMMUMemoryRegionAttr attr,
80
+ * This program is distributed in the hope that it will be useful,
73
void *data);
81
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
74
82
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
83
+ * GNU General Public License for more details.
84
+ *
85
+ * You should have received a copy of the GNU General Public License
86
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
87
+ */
88
+
89
+#ifndef HW_MISC_ALLWINNER_H3_CCU_H
90
+#define HW_MISC_ALLWINNER_H3_CCU_H
91
+
92
+#include "qom/object.h"
93
+#include "hw/sysbus.h"
94
+
75
+/**
95
+/**
76
+ * memory_region_iommu_attrs_to_index: return the IOMMU index to
96
+ * @name Constants
77
+ * use for translations with the given memory transaction attributes.
97
+ * @{
78
+ *
79
+ * @iommu_mr: the memory region
80
+ * @attrs: the memory transaction attributes
81
+ */
98
+ */
82
+int memory_region_iommu_attrs_to_index(IOMMUMemoryRegion *iommu_mr,
99
+
83
+ MemTxAttrs attrs);
100
+/** Size of register I/O address space used by CCU device */
101
+#define AW_H3_CCU_IOSIZE (0x400)
102
+
103
+/** Total number of known registers */
104
+#define AW_H3_CCU_REGS_NUM (AW_H3_CCU_IOSIZE / sizeof(uint32_t))
105
+
106
+/** @} */
84
+
107
+
85
+/**
108
+/**
86
+ * memory_region_iommu_num_indexes: return the total number of IOMMU
109
+ * @name Object model
87
+ * indexes that this IOMMU supports.
110
+ * @{
88
+ *
89
+ * @iommu_mr: the memory region
90
+ */
111
+ */
91
+int memory_region_iommu_num_indexes(IOMMUMemoryRegion *iommu_mr);
112
+
92
+
113
+#define TYPE_AW_H3_CCU "allwinner-h3-ccu"
93
/**
114
+#define AW_H3_CCU(obj) \
94
* memory_region_name: get a memory region's name
115
+ OBJECT_CHECK(AwH3ClockCtlState, (obj), TYPE_AW_H3_CCU)
95
*
116
+
96
diff --git a/memory.c b/memory.c
117
+/** @} */
118
+
119
+/**
120
+ * Allwinner H3 CCU object instance state.
121
+ */
122
+typedef struct AwH3ClockCtlState {
123
+ /*< private >*/
124
+ SysBusDevice parent_obj;
125
+ /*< public >*/
126
+
127
+ /** Maps I/O registers in physical memory */
128
+ MemoryRegion iomem;
129
+
130
+ /** Array of hardware registers */
131
+ uint32_t regs[AW_H3_CCU_REGS_NUM];
132
+
133
+} AwH3ClockCtlState;
134
+
135
+#endif /* HW_MISC_ALLWINNER_H3_CCU_H */
136
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
97
index XXXXXXX..XXXXXXX 100644
137
index XXXXXXX..XXXXXXX 100644
98
--- a/memory.c
138
--- a/hw/arm/allwinner-h3.c
99
+++ b/memory.c
139
+++ b/hw/arm/allwinner-h3.c
100
@@ -XXX,XX +XXX,XX @@ int memory_region_iommu_get_attr(IOMMUMemoryRegion *iommu_mr,
140
@@ -XXX,XX +XXX,XX @@ const hwaddr allwinner_h3_memmap[] = {
101
return imrc->get_attr(iommu_mr, attr, data);
141
[AW_H3_SRAM_A1] = 0x00000000,
142
[AW_H3_SRAM_A2] = 0x00044000,
143
[AW_H3_SRAM_C] = 0x00010000,
144
+ [AW_H3_CCU] = 0x01c20000,
145
[AW_H3_PIT] = 0x01c20c00,
146
[AW_H3_UART0] = 0x01c28000,
147
[AW_H3_UART1] = 0x01c28400,
148
@@ -XXX,XX +XXX,XX @@ struct AwH3Unimplemented {
149
{ "usb2-phy", 0x01c1c000, 4 * KiB },
150
{ "usb3-phy", 0x01c1d000, 4 * KiB },
151
{ "smc", 0x01c1e000, 4 * KiB },
152
- { "ccu", 0x01c20000, 1 * KiB },
153
{ "pio", 0x01c20800, 1 * KiB },
154
{ "owa", 0x01c21000, 1 * KiB },
155
{ "pwm", 0x01c21400, 1 * KiB },
156
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_init(Object *obj)
157
"clk0-freq", &error_abort);
158
object_property_add_alias(obj, "clk1-freq", OBJECT(&s->timer),
159
"clk1-freq", &error_abort);
160
+
161
+ sysbus_init_child_obj(obj, "ccu", &s->ccu, sizeof(s->ccu),
162
+ TYPE_AW_H3_CCU);
102
}
163
}
103
164
104
+int memory_region_iommu_attrs_to_index(IOMMUMemoryRegion *iommu_mr,
165
static void allwinner_h3_realize(DeviceState *dev, Error **errp)
105
+ MemTxAttrs attrs)
166
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_realize(DeviceState *dev, Error **errp)
106
+{
167
memory_region_add_subregion(get_system_memory(), s->memmap[AW_H3_SRAM_C],
107
+ IOMMUMemoryRegionClass *imrc = IOMMU_MEMORY_REGION_GET_CLASS(iommu_mr);
168
&s->sram_c);
108
+
169
109
+ if (!imrc->attrs_to_index) {
170
+ /* Clock Control Unit */
171
+ qdev_init_nofail(DEVICE(&s->ccu));
172
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->ccu), 0, s->memmap[AW_H3_CCU]);
173
+
174
/* UART0. For future clocktree API: All UARTS are connected to APB2_CLK. */
175
serial_mm_init(get_system_memory(), s->memmap[AW_H3_UART0], 2,
176
qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_UART0),
177
diff --git a/hw/misc/allwinner-h3-ccu.c b/hw/misc/allwinner-h3-ccu.c
178
new file mode 100644
179
index XXXXXXX..XXXXXXX
180
--- /dev/null
181
+++ b/hw/misc/allwinner-h3-ccu.c
182
@@ -XXX,XX +XXX,XX @@
183
+/*
184
+ * Allwinner H3 Clock Control Unit emulation
185
+ *
186
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
187
+ *
188
+ * This program is free software: you can redistribute it and/or modify
189
+ * it under the terms of the GNU General Public License as published by
190
+ * the Free Software Foundation, either version 2 of the License, or
191
+ * (at your option) any later version.
192
+ *
193
+ * This program is distributed in the hope that it will be useful,
194
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
195
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
196
+ * GNU General Public License for more details.
197
+ *
198
+ * You should have received a copy of the GNU General Public License
199
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
200
+ */
201
+
202
+#include "qemu/osdep.h"
203
+#include "qemu/units.h"
204
+#include "hw/sysbus.h"
205
+#include "migration/vmstate.h"
206
+#include "qemu/log.h"
207
+#include "qemu/module.h"
208
+#include "hw/misc/allwinner-h3-ccu.h"
209
+
210
+/* CCU register offsets */
211
+enum {
212
+ REG_PLL_CPUX = 0x0000, /* PLL CPUX Control */
213
+ REG_PLL_AUDIO = 0x0008, /* PLL Audio Control */
214
+ REG_PLL_VIDEO = 0x0010, /* PLL Video Control */
215
+ REG_PLL_VE = 0x0018, /* PLL VE Control */
216
+ REG_PLL_DDR = 0x0020, /* PLL DDR Control */
217
+ REG_PLL_PERIPH0 = 0x0028, /* PLL Peripherals 0 Control */
218
+ REG_PLL_GPU = 0x0038, /* PLL GPU Control */
219
+ REG_PLL_PERIPH1 = 0x0044, /* PLL Peripherals 1 Control */
220
+ REG_PLL_DE = 0x0048, /* PLL Display Engine Control */
221
+ REG_CPUX_AXI = 0x0050, /* CPUX/AXI Configuration */
222
+ REG_APB1 = 0x0054, /* ARM Peripheral Bus 1 Config */
223
+ REG_APB2 = 0x0058, /* ARM Peripheral Bus 2 Config */
224
+ REG_DRAM_CFG = 0x00F4, /* DRAM Configuration */
225
+ REG_MBUS = 0x00FC, /* MBUS Reset */
226
+ REG_PLL_TIME0 = 0x0200, /* PLL Stable Time 0 */
227
+ REG_PLL_TIME1 = 0x0204, /* PLL Stable Time 1 */
228
+ REG_PLL_CPUX_BIAS = 0x0220, /* PLL CPUX Bias */
229
+ REG_PLL_AUDIO_BIAS = 0x0224, /* PLL Audio Bias */
230
+ REG_PLL_VIDEO_BIAS = 0x0228, /* PLL Video Bias */
231
+ REG_PLL_VE_BIAS = 0x022C, /* PLL VE Bias */
232
+ REG_PLL_DDR_BIAS = 0x0230, /* PLL DDR Bias */
233
+ REG_PLL_PERIPH0_BIAS = 0x0234, /* PLL Peripherals 0 Bias */
234
+ REG_PLL_GPU_BIAS = 0x023C, /* PLL GPU Bias */
235
+ REG_PLL_PERIPH1_BIAS = 0x0244, /* PLL Peripherals 1 Bias */
236
+ REG_PLL_DE_BIAS = 0x0248, /* PLL Display Engine Bias */
237
+ REG_PLL_CPUX_TUNING = 0x0250, /* PLL CPUX Tuning */
238
+ REG_PLL_DDR_TUNING = 0x0260, /* PLL DDR Tuning */
239
+};
240
+
241
+#define REG_INDEX(offset) (offset / sizeof(uint32_t))
242
+
243
+/* CCU register flags */
244
+enum {
245
+ REG_DRAM_CFG_UPDATE = (1 << 16),
246
+};
247
+
248
+enum {
249
+ REG_PLL_ENABLE = (1 << 31),
250
+ REG_PLL_LOCK = (1 << 28),
251
+};
252
+
253
+
254
+/* CCU register reset values */
255
+enum {
256
+ REG_PLL_CPUX_RST = 0x00001000,
257
+ REG_PLL_AUDIO_RST = 0x00035514,
258
+ REG_PLL_VIDEO_RST = 0x03006207,
259
+ REG_PLL_VE_RST = 0x03006207,
260
+ REG_PLL_DDR_RST = 0x00001000,
261
+ REG_PLL_PERIPH0_RST = 0x00041811,
262
+ REG_PLL_GPU_RST = 0x03006207,
263
+ REG_PLL_PERIPH1_RST = 0x00041811,
264
+ REG_PLL_DE_RST = 0x03006207,
265
+ REG_CPUX_AXI_RST = 0x00010000,
266
+ REG_APB1_RST = 0x00001010,
267
+ REG_APB2_RST = 0x01000000,
268
+ REG_DRAM_CFG_RST = 0x00000000,
269
+ REG_MBUS_RST = 0x80000000,
270
+ REG_PLL_TIME0_RST = 0x000000FF,
271
+ REG_PLL_TIME1_RST = 0x000000FF,
272
+ REG_PLL_CPUX_BIAS_RST = 0x08100200,
273
+ REG_PLL_AUDIO_BIAS_RST = 0x10100000,
274
+ REG_PLL_VIDEO_BIAS_RST = 0x10100000,
275
+ REG_PLL_VE_BIAS_RST = 0x10100000,
276
+ REG_PLL_DDR_BIAS_RST = 0x81104000,
277
+ REG_PLL_PERIPH0_BIAS_RST = 0x10100010,
278
+ REG_PLL_GPU_BIAS_RST = 0x10100000,
279
+ REG_PLL_PERIPH1_BIAS_RST = 0x10100010,
280
+ REG_PLL_DE_BIAS_RST = 0x10100000,
281
+ REG_PLL_CPUX_TUNING_RST = 0x0A101000,
282
+ REG_PLL_DDR_TUNING_RST = 0x14880000,
283
+};
284
+
285
+static uint64_t allwinner_h3_ccu_read(void *opaque, hwaddr offset,
286
+ unsigned size)
287
+{
288
+ const AwH3ClockCtlState *s = AW_H3_CCU(opaque);
289
+ const uint32_t idx = REG_INDEX(offset);
290
+
291
+ switch (offset) {
292
+ case 0x308 ... AW_H3_CCU_IOSIZE:
293
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
294
+ __func__, (uint32_t)offset);
110
+ return 0;
295
+ return 0;
111
+ }
296
+ }
112
+
297
+
113
+ return imrc->attrs_to_index(iommu_mr, attrs);
298
+ return s->regs[idx];
114
+}
299
+}
115
+
300
+
116
+int memory_region_iommu_num_indexes(IOMMUMemoryRegion *iommu_mr)
301
+static void allwinner_h3_ccu_write(void *opaque, hwaddr offset,
117
+{
302
+ uint64_t val, unsigned size)
118
+ IOMMUMemoryRegionClass *imrc = IOMMU_MEMORY_REGION_GET_CLASS(iommu_mr);
303
+{
119
+
304
+ AwH3ClockCtlState *s = AW_H3_CCU(opaque);
120
+ if (!imrc->num_indexes) {
305
+ const uint32_t idx = REG_INDEX(offset);
121
+ return 1;
306
+
307
+ switch (offset) {
308
+ case REG_DRAM_CFG: /* DRAM Configuration */
309
+ val &= ~REG_DRAM_CFG_UPDATE;
310
+ break;
311
+ case REG_PLL_CPUX: /* PLL CPUX Control */
312
+ case REG_PLL_AUDIO: /* PLL Audio Control */
313
+ case REG_PLL_VIDEO: /* PLL Video Control */
314
+ case REG_PLL_VE: /* PLL VE Control */
315
+ case REG_PLL_DDR: /* PLL DDR Control */
316
+ case REG_PLL_PERIPH0: /* PLL Peripherals 0 Control */
317
+ case REG_PLL_GPU: /* PLL GPU Control */
318
+ case REG_PLL_PERIPH1: /* PLL Peripherals 1 Control */
319
+ case REG_PLL_DE: /* PLL Display Engine Control */
320
+ if (val & REG_PLL_ENABLE) {
321
+ val |= REG_PLL_LOCK;
322
+ }
323
+ break;
324
+ case 0x308 ... AW_H3_CCU_IOSIZE:
325
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
326
+ __func__, (uint32_t)offset);
327
+ break;
328
+ default:
329
+ qemu_log_mask(LOG_UNIMP, "%s: unimplemented write offset 0x%04x\n",
330
+ __func__, (uint32_t)offset);
331
+ break;
122
+ }
332
+ }
123
+
333
+
124
+ return imrc->num_indexes(iommu_mr);
334
+ s->regs[idx] = (uint32_t) val;
125
+}
335
+}
126
+
336
+
127
void memory_region_set_log(MemoryRegion *mr, bool log, unsigned client)
337
+static const MemoryRegionOps allwinner_h3_ccu_ops = {
128
{
338
+ .read = allwinner_h3_ccu_read,
129
uint8_t mask = 1 << client;
339
+ .write = allwinner_h3_ccu_write,
340
+ .endianness = DEVICE_NATIVE_ENDIAN,
341
+ .valid = {
342
+ .min_access_size = 4,
343
+ .max_access_size = 4,
344
+ },
345
+ .impl.min_access_size = 4,
346
+};
347
+
348
+static void allwinner_h3_ccu_reset(DeviceState *dev)
349
+{
350
+ AwH3ClockCtlState *s = AW_H3_CCU(dev);
351
+
352
+ /* Set default values for registers */
353
+ s->regs[REG_INDEX(REG_PLL_CPUX)] = REG_PLL_CPUX_RST;
354
+ s->regs[REG_INDEX(REG_PLL_AUDIO)] = REG_PLL_AUDIO_RST;
355
+ s->regs[REG_INDEX(REG_PLL_VIDEO)] = REG_PLL_VIDEO_RST;
356
+ s->regs[REG_INDEX(REG_PLL_VE)] = REG_PLL_VE_RST;
357
+ s->regs[REG_INDEX(REG_PLL_DDR)] = REG_PLL_DDR_RST;
358
+ s->regs[REG_INDEX(REG_PLL_PERIPH0)] = REG_PLL_PERIPH0_RST;
359
+ s->regs[REG_INDEX(REG_PLL_GPU)] = REG_PLL_GPU_RST;
360
+ s->regs[REG_INDEX(REG_PLL_PERIPH1)] = REG_PLL_PERIPH1_RST;
361
+ s->regs[REG_INDEX(REG_PLL_DE)] = REG_PLL_DE_RST;
362
+ s->regs[REG_INDEX(REG_CPUX_AXI)] = REG_CPUX_AXI_RST;
363
+ s->regs[REG_INDEX(REG_APB1)] = REG_APB1_RST;
364
+ s->regs[REG_INDEX(REG_APB2)] = REG_APB2_RST;
365
+ s->regs[REG_INDEX(REG_DRAM_CFG)] = REG_DRAM_CFG_RST;
366
+ s->regs[REG_INDEX(REG_MBUS)] = REG_MBUS_RST;
367
+ s->regs[REG_INDEX(REG_PLL_TIME0)] = REG_PLL_TIME0_RST;
368
+ s->regs[REG_INDEX(REG_PLL_TIME1)] = REG_PLL_TIME1_RST;
369
+ s->regs[REG_INDEX(REG_PLL_CPUX_BIAS)] = REG_PLL_CPUX_BIAS_RST;
370
+ s->regs[REG_INDEX(REG_PLL_AUDIO_BIAS)] = REG_PLL_AUDIO_BIAS_RST;
371
+ s->regs[REG_INDEX(REG_PLL_VIDEO_BIAS)] = REG_PLL_VIDEO_BIAS_RST;
372
+ s->regs[REG_INDEX(REG_PLL_VE_BIAS)] = REG_PLL_VE_BIAS_RST;
373
+ s->regs[REG_INDEX(REG_PLL_DDR_BIAS)] = REG_PLL_DDR_BIAS_RST;
374
+ s->regs[REG_INDEX(REG_PLL_PERIPH0_BIAS)] = REG_PLL_PERIPH0_BIAS_RST;
375
+ s->regs[REG_INDEX(REG_PLL_GPU_BIAS)] = REG_PLL_GPU_BIAS_RST;
376
+ s->regs[REG_INDEX(REG_PLL_PERIPH1_BIAS)] = REG_PLL_PERIPH1_BIAS_RST;
377
+ s->regs[REG_INDEX(REG_PLL_DE_BIAS)] = REG_PLL_DE_BIAS_RST;
378
+ s->regs[REG_INDEX(REG_PLL_CPUX_TUNING)] = REG_PLL_CPUX_TUNING_RST;
379
+ s->regs[REG_INDEX(REG_PLL_DDR_TUNING)] = REG_PLL_DDR_TUNING_RST;
380
+}
381
+
382
+static void allwinner_h3_ccu_init(Object *obj)
383
+{
384
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
385
+ AwH3ClockCtlState *s = AW_H3_CCU(obj);
386
+
387
+ /* Memory mapping */
388
+ memory_region_init_io(&s->iomem, OBJECT(s), &allwinner_h3_ccu_ops, s,
389
+ TYPE_AW_H3_CCU, AW_H3_CCU_IOSIZE);
390
+ sysbus_init_mmio(sbd, &s->iomem);
391
+}
392
+
393
+static const VMStateDescription allwinner_h3_ccu_vmstate = {
394
+ .name = "allwinner-h3-ccu",
395
+ .version_id = 1,
396
+ .minimum_version_id = 1,
397
+ .fields = (VMStateField[]) {
398
+ VMSTATE_UINT32_ARRAY(regs, AwH3ClockCtlState, AW_H3_CCU_REGS_NUM),
399
+ VMSTATE_END_OF_LIST()
400
+ }
401
+};
402
+
403
+static void allwinner_h3_ccu_class_init(ObjectClass *klass, void *data)
404
+{
405
+ DeviceClass *dc = DEVICE_CLASS(klass);
406
+
407
+ dc->reset = allwinner_h3_ccu_reset;
408
+ dc->vmsd = &allwinner_h3_ccu_vmstate;
409
+}
410
+
411
+static const TypeInfo allwinner_h3_ccu_info = {
412
+ .name = TYPE_AW_H3_CCU,
413
+ .parent = TYPE_SYS_BUS_DEVICE,
414
+ .instance_init = allwinner_h3_ccu_init,
415
+ .instance_size = sizeof(AwH3ClockCtlState),
416
+ .class_init = allwinner_h3_ccu_class_init,
417
+};
418
+
419
+static void allwinner_h3_ccu_register(void)
420
+{
421
+ type_register_static(&allwinner_h3_ccu_info);
422
+}
423
+
424
+type_init(allwinner_h3_ccu_register)
130
--
425
--
131
2.17.1
426
2.20.1
132
427
133
428
diff view generated by jsdifflib
1
For the IoTKit MPC support, we need to wire together the
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
interrupt outputs of 17 MPCs; this exceeds the current
3
value of MAX_OR_LINES. Increase MAX_OR_LINES to 32 (which
4
should be enough for anyone).
5
2
6
The tricky part is retaining the migration compatibility for
3
The Allwinner H3 System on Chip contains multiple USB 2.0 bus
7
existing OR gates; we add a subsection which is only used
4
connections which provide software access using the Enhanced
8
for larger OR gates, and define it such that we can freely
5
Host Controller Interface (EHCI) and Open Host Controller
9
increase MAX_OR_LINES in future (or even move to a dynamically
6
Interface (OHCI) interfaces. This commit adds support for
10
allocated levels[] array without an upper size limit) without
7
both interfaces in the Allwinner H3 System on Chip.
11
breaking compatibility.
12
8
9
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
10
Reviewed-by: Gerd Hoffmann <kraxel@redhat.com>
11
Reviewed-by: Philippe Mathieu-Daudé <philmd@redhat.com>
12
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
13
Tested-by: Philippe Mathieu-Daudé <philmd@redhat.com>
14
Message-id: 20200311221854.30370-5-nieklinnenbank@gmail.com
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
15
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
15
Message-id: 20180604152941.20374-10-peter.maydell@linaro.org
16
---
16
---
17
include/hw/or-irq.h | 5 ++++-
17
hw/usb/hcd-ehci.h | 1 +
18
hw/core/or-irq.c | 39 +++++++++++++++++++++++++++++++++++++--
18
include/hw/arm/allwinner-h3.h | 8 +++++++
19
2 files changed, 41 insertions(+), 3 deletions(-)
19
hw/arm/allwinner-h3.c | 44 +++++++++++++++++++++++++++++++++++
20
hw/usb/hcd-ehci-sysbus.c | 17 ++++++++++++++
21
hw/arm/Kconfig | 2 ++
22
5 files changed, 72 insertions(+)
20
23
21
diff --git a/include/hw/or-irq.h b/include/hw/or-irq.h
24
diff --git a/hw/usb/hcd-ehci.h b/hw/usb/hcd-ehci.h
22
index XXXXXXX..XXXXXXX 100644
25
index XXXXXXX..XXXXXXX 100644
23
--- a/include/hw/or-irq.h
26
--- a/hw/usb/hcd-ehci.h
24
+++ b/include/hw/or-irq.h
27
+++ b/hw/usb/hcd-ehci.h
28
@@ -XXX,XX +XXX,XX @@ typedef struct EHCIPCIState {
29
#define TYPE_SYS_BUS_EHCI "sysbus-ehci-usb"
30
#define TYPE_PLATFORM_EHCI "platform-ehci-usb"
31
#define TYPE_EXYNOS4210_EHCI "exynos4210-ehci-usb"
32
+#define TYPE_AW_H3_EHCI "aw-h3-ehci-usb"
33
#define TYPE_TEGRA2_EHCI "tegra2-ehci-usb"
34
#define TYPE_PPC4xx_EHCI "ppc4xx-ehci-usb"
35
#define TYPE_FUSBH200_EHCI "fusbh200-ehci-usb"
36
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
37
index XXXXXXX..XXXXXXX 100644
38
--- a/include/hw/arm/allwinner-h3.h
39
+++ b/include/hw/arm/allwinner-h3.h
40
@@ -XXX,XX +XXX,XX @@ enum {
41
AW_H3_SRAM_A1,
42
AW_H3_SRAM_A2,
43
AW_H3_SRAM_C,
44
+ AW_H3_EHCI0,
45
+ AW_H3_OHCI0,
46
+ AW_H3_EHCI1,
47
+ AW_H3_OHCI1,
48
+ AW_H3_EHCI2,
49
+ AW_H3_OHCI2,
50
+ AW_H3_EHCI3,
51
+ AW_H3_OHCI3,
52
AW_H3_CCU,
53
AW_H3_PIT,
54
AW_H3_UART0,
55
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
56
index XXXXXXX..XXXXXXX 100644
57
--- a/hw/arm/allwinner-h3.c
58
+++ b/hw/arm/allwinner-h3.c
25
@@ -XXX,XX +XXX,XX @@
59
@@ -XXX,XX +XXX,XX @@
26
60
#include "hw/sysbus.h"
27
#define TYPE_OR_IRQ "or-irq"
61
#include "hw/char/serial.h"
28
62
#include "hw/misc/unimp.h"
29
-#define MAX_OR_LINES 16
63
+#include "hw/usb/hcd-ehci.h"
30
+/* This can safely be increased if necessary without breaking
64
#include "sysemu/sysemu.h"
31
+ * migration compatibility (as long as it remains greater than 15).
65
#include "hw/arm/allwinner-h3.h"
32
+ */
66
33
+#define MAX_OR_LINES 32
67
@@ -XXX,XX +XXX,XX @@ const hwaddr allwinner_h3_memmap[] = {
34
68
[AW_H3_SRAM_A1] = 0x00000000,
35
typedef struct OrIRQState qemu_or_irq;
69
[AW_H3_SRAM_A2] = 0x00044000,
36
70
[AW_H3_SRAM_C] = 0x00010000,
37
diff --git a/hw/core/or-irq.c b/hw/core/or-irq.c
71
+ [AW_H3_EHCI0] = 0x01c1a000,
72
+ [AW_H3_OHCI0] = 0x01c1a400,
73
+ [AW_H3_EHCI1] = 0x01c1b000,
74
+ [AW_H3_OHCI1] = 0x01c1b400,
75
+ [AW_H3_EHCI2] = 0x01c1c000,
76
+ [AW_H3_OHCI2] = 0x01c1c400,
77
+ [AW_H3_EHCI3] = 0x01c1d000,
78
+ [AW_H3_OHCI3] = 0x01c1d400,
79
[AW_H3_CCU] = 0x01c20000,
80
[AW_H3_PIT] = 0x01c20c00,
81
[AW_H3_UART0] = 0x01c28000,
82
@@ -XXX,XX +XXX,XX @@ enum {
83
AW_H3_GIC_SPI_UART3 = 3,
84
AW_H3_GIC_SPI_TIMER0 = 18,
85
AW_H3_GIC_SPI_TIMER1 = 19,
86
+ AW_H3_GIC_SPI_EHCI0 = 72,
87
+ AW_H3_GIC_SPI_OHCI0 = 73,
88
+ AW_H3_GIC_SPI_EHCI1 = 74,
89
+ AW_H3_GIC_SPI_OHCI1 = 75,
90
+ AW_H3_GIC_SPI_EHCI2 = 76,
91
+ AW_H3_GIC_SPI_OHCI2 = 77,
92
+ AW_H3_GIC_SPI_EHCI3 = 78,
93
+ AW_H3_GIC_SPI_OHCI3 = 79,
94
};
95
96
/* Allwinner H3 general constants */
97
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_realize(DeviceState *dev, Error **errp)
98
qdev_init_nofail(DEVICE(&s->ccu));
99
sysbus_mmio_map(SYS_BUS_DEVICE(&s->ccu), 0, s->memmap[AW_H3_CCU]);
100
101
+ /* Universal Serial Bus */
102
+ sysbus_create_simple(TYPE_AW_H3_EHCI, s->memmap[AW_H3_EHCI0],
103
+ qdev_get_gpio_in(DEVICE(&s->gic),
104
+ AW_H3_GIC_SPI_EHCI0));
105
+ sysbus_create_simple(TYPE_AW_H3_EHCI, s->memmap[AW_H3_EHCI1],
106
+ qdev_get_gpio_in(DEVICE(&s->gic),
107
+ AW_H3_GIC_SPI_EHCI1));
108
+ sysbus_create_simple(TYPE_AW_H3_EHCI, s->memmap[AW_H3_EHCI2],
109
+ qdev_get_gpio_in(DEVICE(&s->gic),
110
+ AW_H3_GIC_SPI_EHCI2));
111
+ sysbus_create_simple(TYPE_AW_H3_EHCI, s->memmap[AW_H3_EHCI3],
112
+ qdev_get_gpio_in(DEVICE(&s->gic),
113
+ AW_H3_GIC_SPI_EHCI3));
114
+
115
+ sysbus_create_simple("sysbus-ohci", s->memmap[AW_H3_OHCI0],
116
+ qdev_get_gpio_in(DEVICE(&s->gic),
117
+ AW_H3_GIC_SPI_OHCI0));
118
+ sysbus_create_simple("sysbus-ohci", s->memmap[AW_H3_OHCI1],
119
+ qdev_get_gpio_in(DEVICE(&s->gic),
120
+ AW_H3_GIC_SPI_OHCI1));
121
+ sysbus_create_simple("sysbus-ohci", s->memmap[AW_H3_OHCI2],
122
+ qdev_get_gpio_in(DEVICE(&s->gic),
123
+ AW_H3_GIC_SPI_OHCI2));
124
+ sysbus_create_simple("sysbus-ohci", s->memmap[AW_H3_OHCI3],
125
+ qdev_get_gpio_in(DEVICE(&s->gic),
126
+ AW_H3_GIC_SPI_OHCI3));
127
+
128
/* UART0. For future clocktree API: All UARTS are connected to APB2_CLK. */
129
serial_mm_init(get_system_memory(), s->memmap[AW_H3_UART0], 2,
130
qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_UART0),
131
diff --git a/hw/usb/hcd-ehci-sysbus.c b/hw/usb/hcd-ehci-sysbus.c
38
index XXXXXXX..XXXXXXX 100644
132
index XXXXXXX..XXXXXXX 100644
39
--- a/hw/core/or-irq.c
133
--- a/hw/usb/hcd-ehci-sysbus.c
40
+++ b/hw/core/or-irq.c
134
+++ b/hw/usb/hcd-ehci-sysbus.c
41
@@ -XXX,XX +XXX,XX @@ static void or_irq_init(Object *obj)
135
@@ -XXX,XX +XXX,XX @@ static const TypeInfo ehci_exynos4210_type_info = {
42
qdev_init_gpio_out(DEVICE(obj), &s->out_irq, 1);
136
.class_init = ehci_exynos4210_class_init,
43
}
137
};
44
138
45
+/* The original version of this device had a fixed 16 entries in its
139
+static void ehci_aw_h3_class_init(ObjectClass *oc, void *data)
46
+ * VMState array; devices with more inputs than this need to
140
+{
47
+ * migrate the extra lines via a subsection.
141
+ SysBusEHCIClass *sec = SYS_BUS_EHCI_CLASS(oc);
48
+ * The subsection migrates as much of the levels[] array as is needed
142
+ DeviceClass *dc = DEVICE_CLASS(oc);
49
+ * (including repeating the first 16 elements), to avoid the awkwardness
50
+ * of splitting it in two to meet the requirements of VMSTATE_VARRAY_UINT16.
51
+ */
52
+#define OLD_MAX_OR_LINES 16
53
+#if MAX_OR_LINES < OLD_MAX_OR_LINES
54
+#error MAX_OR_LINES must be at least 16 for migration compatibility
55
+#endif
56
+
143
+
57
+static bool vmstate_extras_needed(void *opaque)
144
+ sec->capsbase = 0x0;
58
+{
145
+ sec->opregbase = 0x10;
59
+ qemu_or_irq *s = OR_IRQ(opaque);
146
+ set_bit(DEVICE_CATEGORY_USB, dc->categories);
60
+
61
+ return s->num_lines >= OLD_MAX_OR_LINES;
62
+}
147
+}
63
+
148
+
64
+static const VMStateDescription vmstate_or_irq_extras = {
149
+static const TypeInfo ehci_aw_h3_type_info = {
65
+ .name = "or-irq-extras",
150
+ .name = TYPE_AW_H3_EHCI,
66
+ .version_id = 1,
151
+ .parent = TYPE_SYS_BUS_EHCI,
67
+ .minimum_version_id = 1,
152
+ .class_init = ehci_aw_h3_class_init,
68
+ .needed = vmstate_extras_needed,
69
+ .fields = (VMStateField[]) {
70
+ VMSTATE_VARRAY_UINT16_UNSAFE(levels, qemu_or_irq, num_lines, 0,
71
+ vmstate_info_bool, bool),
72
+ VMSTATE_END_OF_LIST(),
73
+ },
74
+};
153
+};
75
+
154
+
76
static const VMStateDescription vmstate_or_irq = {
155
static void ehci_tegra2_class_init(ObjectClass *oc, void *data)
77
.name = TYPE_OR_IRQ,
156
{
78
.version_id = 1,
157
SysBusEHCIClass *sec = SYS_BUS_EHCI_CLASS(oc);
79
.minimum_version_id = 1,
158
@@ -XXX,XX +XXX,XX @@ static void ehci_sysbus_register_types(void)
80
.fields = (VMStateField[]) {
159
type_register_static(&ehci_type_info);
81
- VMSTATE_BOOL_ARRAY(levels, qemu_or_irq, MAX_OR_LINES),
160
type_register_static(&ehci_platform_type_info);
82
+ VMSTATE_BOOL_SUB_ARRAY(levels, qemu_or_irq, 0, OLD_MAX_OR_LINES),
161
type_register_static(&ehci_exynos4210_type_info);
83
VMSTATE_END_OF_LIST(),
162
+ type_register_static(&ehci_aw_h3_type_info);
84
- }
163
type_register_static(&ehci_tegra2_type_info);
85
+ },
164
type_register_static(&ehci_ppc4xx_type_info);
86
+ .subsections = (const VMStateDescription*[]) {
165
type_register_static(&ehci_fusbh200_type_info);
87
+ &vmstate_or_irq_extras,
166
diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig
88
+ NULL
167
index XXXXXXX..XXXXXXX 100644
89
+ },
168
--- a/hw/arm/Kconfig
90
};
169
+++ b/hw/arm/Kconfig
91
170
@@ -XXX,XX +XXX,XX @@ config ALLWINNER_H3
92
static Property or_irq_properties[] = {
171
select ARM_TIMER
172
select ARM_GIC
173
select UNIMP
174
+ select USB_OHCI
175
+ select USB_EHCI_SYSBUS
176
177
config RASPI
178
bool
93
--
179
--
94
2.17.1
180
2.20.1
95
181
96
182
diff view generated by jsdifflib
1
Convert the wdt_i6300esb device away from using the old_mmio field
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
of MemoryRegionOps.
2
3
3
The Allwinner H3 System on Chip has an System Control
4
module that provides system wide generic controls and
5
device information. This commit adds support for the
6
Allwinner H3 System Control module.
7
8
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
9
Reviewed-by: Philippe Mathieu-Daudé <philmd@redhat.com>
10
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
11
Tested-by: Philippe Mathieu-Daudé <philmd@redhat.com>
12
Message-id: 20200311221854.30370-6-nieklinnenbank@gmail.com
4
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
5
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
6
Message-id: 20180601141223.26630-5-peter.maydell@linaro.org
7
---
14
---
8
hw/watchdog/wdt_i6300esb.c | 48 ++++++++++++++++++++++++++++----------
15
hw/misc/Makefile.objs | 1 +
9
1 file changed, 36 insertions(+), 12 deletions(-)
16
include/hw/arm/allwinner-h3.h | 3 +
10
17
include/hw/misc/allwinner-h3-sysctrl.h | 67 ++++++++++++
11
diff --git a/hw/watchdog/wdt_i6300esb.c b/hw/watchdog/wdt_i6300esb.c
18
hw/arm/allwinner-h3.c | 9 +-
19
hw/misc/allwinner-h3-sysctrl.c | 140 +++++++++++++++++++++++++
20
5 files changed, 219 insertions(+), 1 deletion(-)
21
create mode 100644 include/hw/misc/allwinner-h3-sysctrl.h
22
create mode 100644 hw/misc/allwinner-h3-sysctrl.c
23
24
diff --git a/hw/misc/Makefile.objs b/hw/misc/Makefile.objs
12
index XXXXXXX..XXXXXXX 100644
25
index XXXXXXX..XXXXXXX 100644
13
--- a/hw/watchdog/wdt_i6300esb.c
26
--- a/hw/misc/Makefile.objs
14
+++ b/hw/watchdog/wdt_i6300esb.c
27
+++ b/hw/misc/Makefile.objs
15
@@ -XXX,XX +XXX,XX @@ static void i6300esb_mem_writel(void *vp, hwaddr addr, uint32_t val)
28
@@ -XXX,XX +XXX,XX @@ common-obj-$(CONFIG_MACIO) += macio/
16
}
29
common-obj-$(CONFIG_IVSHMEM_DEVICE) += ivshmem.o
30
31
common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3-ccu.o
32
+common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3-sysctrl.o
33
common-obj-$(CONFIG_REALVIEW) += arm_sysctl.o
34
common-obj-$(CONFIG_NSERIES) += cbus.o
35
common-obj-$(CONFIG_ECCMEMCTL) += eccmemctl.o
36
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
37
index XXXXXXX..XXXXXXX 100644
38
--- a/include/hw/arm/allwinner-h3.h
39
+++ b/include/hw/arm/allwinner-h3.h
40
@@ -XXX,XX +XXX,XX @@
41
#include "hw/timer/allwinner-a10-pit.h"
42
#include "hw/intc/arm_gic.h"
43
#include "hw/misc/allwinner-h3-ccu.h"
44
+#include "hw/misc/allwinner-h3-sysctrl.h"
45
#include "target/arm/cpu.h"
46
47
/**
48
@@ -XXX,XX +XXX,XX @@ enum {
49
AW_H3_SRAM_A1,
50
AW_H3_SRAM_A2,
51
AW_H3_SRAM_C,
52
+ AW_H3_SYSCTRL,
53
AW_H3_EHCI0,
54
AW_H3_OHCI0,
55
AW_H3_EHCI1,
56
@@ -XXX,XX +XXX,XX @@ typedef struct AwH3State {
57
const hwaddr *memmap;
58
AwA10PITState timer;
59
AwH3ClockCtlState ccu;
60
+ AwH3SysCtrlState sysctrl;
61
GICState gic;
62
MemoryRegion sram_a1;
63
MemoryRegion sram_a2;
64
diff --git a/include/hw/misc/allwinner-h3-sysctrl.h b/include/hw/misc/allwinner-h3-sysctrl.h
65
new file mode 100644
66
index XXXXXXX..XXXXXXX
67
--- /dev/null
68
+++ b/include/hw/misc/allwinner-h3-sysctrl.h
69
@@ -XXX,XX +XXX,XX @@
70
+/*
71
+ * Allwinner H3 System Control emulation
72
+ *
73
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
74
+ *
75
+ * This program is free software: you can redistribute it and/or modify
76
+ * it under the terms of the GNU General Public License as published by
77
+ * the Free Software Foundation, either version 2 of the License, or
78
+ * (at your option) any later version.
79
+ *
80
+ * This program is distributed in the hope that it will be useful,
81
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
82
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
83
+ * GNU General Public License for more details.
84
+ *
85
+ * You should have received a copy of the GNU General Public License
86
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
87
+ */
88
+
89
+#ifndef HW_MISC_ALLWINNER_H3_SYSCTRL_H
90
+#define HW_MISC_ALLWINNER_H3_SYSCTRL_H
91
+
92
+#include "qom/object.h"
93
+#include "hw/sysbus.h"
94
+
95
+/**
96
+ * @name Constants
97
+ * @{
98
+ */
99
+
100
+/** Highest register address used by System Control device */
101
+#define AW_H3_SYSCTRL_REGS_MAXADDR (0x30)
102
+
103
+/** Total number of known registers */
104
+#define AW_H3_SYSCTRL_REGS_NUM ((AW_H3_SYSCTRL_REGS_MAXADDR / \
105
+ sizeof(uint32_t)) + 1)
106
+
107
+/** @} */
108
+
109
+/**
110
+ * @name Object model
111
+ * @{
112
+ */
113
+
114
+#define TYPE_AW_H3_SYSCTRL "allwinner-h3-sysctrl"
115
+#define AW_H3_SYSCTRL(obj) \
116
+ OBJECT_CHECK(AwH3SysCtrlState, (obj), TYPE_AW_H3_SYSCTRL)
117
+
118
+/** @} */
119
+
120
+/**
121
+ * Allwinner H3 System Control object instance state
122
+ */
123
+typedef struct AwH3SysCtrlState {
124
+ /*< private >*/
125
+ SysBusDevice parent_obj;
126
+ /*< public >*/
127
+
128
+ /** Maps I/O registers in physical memory */
129
+ MemoryRegion iomem;
130
+
131
+ /** Array of hardware registers */
132
+ uint32_t regs[AW_H3_SYSCTRL_REGS_NUM];
133
+
134
+} AwH3SysCtrlState;
135
+
136
+#endif /* HW_MISC_ALLWINNER_H3_SYSCTRL_H */
137
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
138
index XXXXXXX..XXXXXXX 100644
139
--- a/hw/arm/allwinner-h3.c
140
+++ b/hw/arm/allwinner-h3.c
141
@@ -XXX,XX +XXX,XX @@ const hwaddr allwinner_h3_memmap[] = {
142
[AW_H3_SRAM_A1] = 0x00000000,
143
[AW_H3_SRAM_A2] = 0x00044000,
144
[AW_H3_SRAM_C] = 0x00010000,
145
+ [AW_H3_SYSCTRL] = 0x01c00000,
146
[AW_H3_EHCI0] = 0x01c1a000,
147
[AW_H3_OHCI0] = 0x01c1a400,
148
[AW_H3_EHCI1] = 0x01c1b000,
149
@@ -XXX,XX +XXX,XX @@ struct AwH3Unimplemented {
150
} unimplemented[] = {
151
{ "d-engine", 0x01000000, 4 * MiB },
152
{ "d-inter", 0x01400000, 128 * KiB },
153
- { "syscon", 0x01c00000, 4 * KiB },
154
{ "dma", 0x01c02000, 4 * KiB },
155
{ "nfdc", 0x01c03000, 4 * KiB },
156
{ "ts", 0x01c06000, 4 * KiB },
157
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_init(Object *obj)
158
159
sysbus_init_child_obj(obj, "ccu", &s->ccu, sizeof(s->ccu),
160
TYPE_AW_H3_CCU);
161
+
162
+ sysbus_init_child_obj(obj, "sysctrl", &s->sysctrl, sizeof(s->sysctrl),
163
+ TYPE_AW_H3_SYSCTRL);
17
}
164
}
18
165
19
+static uint64_t i6300esb_mem_readfn(void *opaque, hwaddr addr, unsigned size)
166
static void allwinner_h3_realize(DeviceState *dev, Error **errp)
20
+{
167
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_realize(DeviceState *dev, Error **errp)
21
+ switch (size) {
168
qdev_init_nofail(DEVICE(&s->ccu));
22
+ case 1:
169
sysbus_mmio_map(SYS_BUS_DEVICE(&s->ccu), 0, s->memmap[AW_H3_CCU]);
23
+ return i6300esb_mem_readb(opaque, addr);
170
24
+ case 2:
171
+ /* System Control */
25
+ return i6300esb_mem_readw(opaque, addr);
172
+ qdev_init_nofail(DEVICE(&s->sysctrl));
26
+ case 4:
173
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->sysctrl), 0, s->memmap[AW_H3_SYSCTRL]);
27
+ return i6300esb_mem_readl(opaque, addr);
174
+
28
+ default:
175
/* Universal Serial Bus */
29
+ g_assert_not_reached();
176
sysbus_create_simple(TYPE_AW_H3_EHCI, s->memmap[AW_H3_EHCI0],
177
qdev_get_gpio_in(DEVICE(&s->gic),
178
diff --git a/hw/misc/allwinner-h3-sysctrl.c b/hw/misc/allwinner-h3-sysctrl.c
179
new file mode 100644
180
index XXXXXXX..XXXXXXX
181
--- /dev/null
182
+++ b/hw/misc/allwinner-h3-sysctrl.c
183
@@ -XXX,XX +XXX,XX @@
184
+/*
185
+ * Allwinner H3 System Control emulation
186
+ *
187
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
188
+ *
189
+ * This program is free software: you can redistribute it and/or modify
190
+ * it under the terms of the GNU General Public License as published by
191
+ * the Free Software Foundation, either version 2 of the License, or
192
+ * (at your option) any later version.
193
+ *
194
+ * This program is distributed in the hope that it will be useful,
195
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
196
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
197
+ * GNU General Public License for more details.
198
+ *
199
+ * You should have received a copy of the GNU General Public License
200
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
201
+ */
202
+
203
+#include "qemu/osdep.h"
204
+#include "qemu/units.h"
205
+#include "hw/sysbus.h"
206
+#include "migration/vmstate.h"
207
+#include "qemu/log.h"
208
+#include "qemu/module.h"
209
+#include "hw/misc/allwinner-h3-sysctrl.h"
210
+
211
+/* System Control register offsets */
212
+enum {
213
+ REG_VER = 0x24, /* Version */
214
+ REG_EMAC_PHY_CLK = 0x30, /* EMAC PHY Clock */
215
+};
216
+
217
+#define REG_INDEX(offset) (offset / sizeof(uint32_t))
218
+
219
+/* System Control register reset values */
220
+enum {
221
+ REG_VER_RST = 0x0,
222
+ REG_EMAC_PHY_CLK_RST = 0x58000,
223
+};
224
+
225
+static uint64_t allwinner_h3_sysctrl_read(void *opaque, hwaddr offset,
226
+ unsigned size)
227
+{
228
+ const AwH3SysCtrlState *s = AW_H3_SYSCTRL(opaque);
229
+ const uint32_t idx = REG_INDEX(offset);
230
+
231
+ if (idx >= AW_H3_SYSCTRL_REGS_NUM) {
232
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
233
+ __func__, (uint32_t)offset);
234
+ return 0;
30
+ }
235
+ }
31
+}
236
+
32
+
237
+ return s->regs[idx];
33
+static void i6300esb_mem_writefn(void *opaque, hwaddr addr,
238
+}
34
+ uint64_t value, unsigned size)
239
+
35
+{
240
+static void allwinner_h3_sysctrl_write(void *opaque, hwaddr offset,
36
+ switch (size) {
241
+ uint64_t val, unsigned size)
37
+ case 1:
242
+{
38
+ i6300esb_mem_writeb(opaque, addr, value);
243
+ AwH3SysCtrlState *s = AW_H3_SYSCTRL(opaque);
39
+ break;
244
+ const uint32_t idx = REG_INDEX(offset);
40
+ case 2:
245
+
41
+ i6300esb_mem_writew(opaque, addr, value);
246
+ if (idx >= AW_H3_SYSCTRL_REGS_NUM) {
42
+ break;
247
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
43
+ case 4:
248
+ __func__, (uint32_t)offset);
44
+ i6300esb_mem_writel(opaque, addr, value);
249
+ return;
250
+ }
251
+
252
+ switch (offset) {
253
+ case REG_VER: /* Version */
45
+ break;
254
+ break;
46
+ default:
255
+ default:
47
+ g_assert_not_reached();
256
+ s->regs[idx] = (uint32_t) val;
257
+ break;
48
+ }
258
+ }
49
+}
259
+}
50
+
260
+
51
static const MemoryRegionOps i6300esb_ops = {
261
+static const MemoryRegionOps allwinner_h3_sysctrl_ops = {
52
- .old_mmio = {
262
+ .read = allwinner_h3_sysctrl_read,
53
- .read = {
263
+ .write = allwinner_h3_sysctrl_write,
54
- i6300esb_mem_readb,
264
+ .endianness = DEVICE_NATIVE_ENDIAN,
55
- i6300esb_mem_readw,
265
+ .valid = {
56
- i6300esb_mem_readl,
266
+ .min_access_size = 4,
57
- },
267
+ .max_access_size = 4,
58
- .write = {
268
+ },
59
- i6300esb_mem_writeb,
269
+ .impl.min_access_size = 4,
60
- i6300esb_mem_writew,
270
+};
61
- i6300esb_mem_writel,
271
+
62
- },
272
+static void allwinner_h3_sysctrl_reset(DeviceState *dev)
63
- },
273
+{
64
+ .read = i6300esb_mem_readfn,
274
+ AwH3SysCtrlState *s = AW_H3_SYSCTRL(dev);
65
+ .write = i6300esb_mem_writefn,
275
+
66
+ .valid.min_access_size = 1,
276
+ /* Set default values for registers */
67
+ .valid.max_access_size = 4,
277
+ s->regs[REG_INDEX(REG_VER)] = REG_VER_RST;
68
.endianness = DEVICE_LITTLE_ENDIAN,
278
+ s->regs[REG_INDEX(REG_EMAC_PHY_CLK)] = REG_EMAC_PHY_CLK_RST;
69
};
279
+}
70
280
+
281
+static void allwinner_h3_sysctrl_init(Object *obj)
282
+{
283
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
284
+ AwH3SysCtrlState *s = AW_H3_SYSCTRL(obj);
285
+
286
+ /* Memory mapping */
287
+ memory_region_init_io(&s->iomem, OBJECT(s), &allwinner_h3_sysctrl_ops, s,
288
+ TYPE_AW_H3_SYSCTRL, 4 * KiB);
289
+ sysbus_init_mmio(sbd, &s->iomem);
290
+}
291
+
292
+static const VMStateDescription allwinner_h3_sysctrl_vmstate = {
293
+ .name = "allwinner-h3-sysctrl",
294
+ .version_id = 1,
295
+ .minimum_version_id = 1,
296
+ .fields = (VMStateField[]) {
297
+ VMSTATE_UINT32_ARRAY(regs, AwH3SysCtrlState, AW_H3_SYSCTRL_REGS_NUM),
298
+ VMSTATE_END_OF_LIST()
299
+ }
300
+};
301
+
302
+static void allwinner_h3_sysctrl_class_init(ObjectClass *klass, void *data)
303
+{
304
+ DeviceClass *dc = DEVICE_CLASS(klass);
305
+
306
+ dc->reset = allwinner_h3_sysctrl_reset;
307
+ dc->vmsd = &allwinner_h3_sysctrl_vmstate;
308
+}
309
+
310
+static const TypeInfo allwinner_h3_sysctrl_info = {
311
+ .name = TYPE_AW_H3_SYSCTRL,
312
+ .parent = TYPE_SYS_BUS_DEVICE,
313
+ .instance_init = allwinner_h3_sysctrl_init,
314
+ .instance_size = sizeof(AwH3SysCtrlState),
315
+ .class_init = allwinner_h3_sysctrl_class_init,
316
+};
317
+
318
+static void allwinner_h3_sysctrl_register(void)
319
+{
320
+ type_register_static(&allwinner_h3_sysctrl_info);
321
+}
322
+
323
+type_init(allwinner_h3_sysctrl_register)
71
--
324
--
72
2.17.1
325
2.20.1
73
326
74
327
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
Various Allwinner System on Chip designs contain multiple processors
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
that can be configured and reset using the generic CPU Configuration
5
Message-id: 20180613015641.5667-3-richard.henderson@linaro.org
5
module interface. This commit adds support for the Allwinner CPU
6
configuration interface which emulates the following features:
7
8
* CPU reset
9
* CPU status
10
11
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
12
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
13
Message-id: 20200311221854.30370-7-nieklinnenbank@gmail.com
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
15
---
8
target/arm/helper-sve.h | 23 +++++++
16
hw/misc/Makefile.objs | 1 +
9
target/arm/sve_helper.c | 114 +++++++++++++++++++++++++++++++
17
include/hw/arm/allwinner-h3.h | 3 +
10
target/arm/translate-sve.c | 133 +++++++++++++++++++++++++++++++++++++
18
include/hw/misc/allwinner-cpucfg.h | 52 ++++++
11
target/arm/sve.decode | 27 ++++++++
19
hw/arm/allwinner-h3.c | 9 +-
12
4 files changed, 297 insertions(+)
20
hw/misc/allwinner-cpucfg.c | 282 +++++++++++++++++++++++++++++
13
21
hw/misc/trace-events | 5 +
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
22
6 files changed, 351 insertions(+), 1 deletion(-)
23
create mode 100644 include/hw/misc/allwinner-cpucfg.h
24
create mode 100644 hw/misc/allwinner-cpucfg.c
25
26
diff --git a/hw/misc/Makefile.objs b/hw/misc/Makefile.objs
15
index XXXXXXX..XXXXXXX 100644
27
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
28
--- a/hw/misc/Makefile.objs
17
+++ b/target/arm/helper-sve.h
29
+++ b/hw/misc/Makefile.objs
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_4(sve_cpy_z_d, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
30
@@ -XXX,XX +XXX,XX @@ common-obj-$(CONFIG_MACIO) += macio/
19
31
common-obj-$(CONFIG_IVSHMEM_DEVICE) += ivshmem.o
20
DEF_HELPER_FLAGS_4(sve_ext, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
32
21
33
common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3-ccu.o
22
+DEF_HELPER_FLAGS_4(sve_insr_b, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
34
+obj-$(CONFIG_ALLWINNER_H3) += allwinner-cpucfg.o
23
+DEF_HELPER_FLAGS_4(sve_insr_h, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
35
common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3-sysctrl.o
24
+DEF_HELPER_FLAGS_4(sve_insr_s, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
36
common-obj-$(CONFIG_REALVIEW) += arm_sysctl.o
25
+DEF_HELPER_FLAGS_4(sve_insr_d, TCG_CALL_NO_RWG, void, ptr, ptr, i64, i32)
37
common-obj-$(CONFIG_NSERIES) += cbus.o
26
+
38
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
27
+DEF_HELPER_FLAGS_3(sve_rev_b, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
28
+DEF_HELPER_FLAGS_3(sve_rev_h, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
29
+DEF_HELPER_FLAGS_3(sve_rev_s, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
30
+DEF_HELPER_FLAGS_3(sve_rev_d, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
31
+
32
+DEF_HELPER_FLAGS_4(sve_tbl_b, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
33
+DEF_HELPER_FLAGS_4(sve_tbl_h, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
34
+DEF_HELPER_FLAGS_4(sve_tbl_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
35
+DEF_HELPER_FLAGS_4(sve_tbl_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
36
+
37
+DEF_HELPER_FLAGS_3(sve_sunpk_h, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
38
+DEF_HELPER_FLAGS_3(sve_sunpk_s, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
39
+DEF_HELPER_FLAGS_3(sve_sunpk_d, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
40
+
41
+DEF_HELPER_FLAGS_3(sve_uunpk_h, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
42
+DEF_HELPER_FLAGS_3(sve_uunpk_s, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
43
+DEF_HELPER_FLAGS_3(sve_uunpk_d, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
44
+
45
DEF_HELPER_FLAGS_5(sve_and_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
46
DEF_HELPER_FLAGS_5(sve_bic_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
47
DEF_HELPER_FLAGS_5(sve_eor_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
48
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
49
index XXXXXXX..XXXXXXX 100644
39
index XXXXXXX..XXXXXXX 100644
50
--- a/target/arm/sve_helper.c
40
--- a/include/hw/arm/allwinner-h3.h
51
+++ b/target/arm/sve_helper.c
41
+++ b/include/hw/arm/allwinner-h3.h
52
@@ -XXX,XX +XXX,XX @@ void HELPER(sve_ext)(void *vd, void *vn, void *vm, uint32_t desc)
42
@@ -XXX,XX +XXX,XX @@
53
memcpy(vd + n_siz, &tmp, n_ofs);
43
#include "hw/timer/allwinner-a10-pit.h"
54
}
44
#include "hw/intc/arm_gic.h"
45
#include "hw/misc/allwinner-h3-ccu.h"
46
+#include "hw/misc/allwinner-cpucfg.h"
47
#include "hw/misc/allwinner-h3-sysctrl.h"
48
#include "target/arm/cpu.h"
49
50
@@ -XXX,XX +XXX,XX @@ enum {
51
AW_H3_GIC_CPU,
52
AW_H3_GIC_HYP,
53
AW_H3_GIC_VCPU,
54
+ AW_H3_CPUCFG,
55
AW_H3_SDRAM
56
};
57
58
@@ -XXX,XX +XXX,XX @@ typedef struct AwH3State {
59
const hwaddr *memmap;
60
AwA10PITState timer;
61
AwH3ClockCtlState ccu;
62
+ AwCpuCfgState cpucfg;
63
AwH3SysCtrlState sysctrl;
64
GICState gic;
65
MemoryRegion sram_a1;
66
diff --git a/include/hw/misc/allwinner-cpucfg.h b/include/hw/misc/allwinner-cpucfg.h
67
new file mode 100644
68
index XXXXXXX..XXXXXXX
69
--- /dev/null
70
+++ b/include/hw/misc/allwinner-cpucfg.h
71
@@ -XXX,XX +XXX,XX @@
72
+/*
73
+ * Allwinner CPU Configuration Module emulation
74
+ *
75
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
76
+ *
77
+ * This program is free software: you can redistribute it and/or modify
78
+ * it under the terms of the GNU General Public License as published by
79
+ * the Free Software Foundation, either version 2 of the License, or
80
+ * (at your option) any later version.
81
+ *
82
+ * This program is distributed in the hope that it will be useful,
83
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
84
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
85
+ * GNU General Public License for more details.
86
+ *
87
+ * You should have received a copy of the GNU General Public License
88
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
89
+ */
90
+
91
+#ifndef HW_MISC_ALLWINNER_CPUCFG_H
92
+#define HW_MISC_ALLWINNER_CPUCFG_H
93
+
94
+#include "qom/object.h"
95
+#include "hw/sysbus.h"
96
+
97
+/**
98
+ * Object model
99
+ * @{
100
+ */
101
+
102
+#define TYPE_AW_CPUCFG "allwinner-cpucfg"
103
+#define AW_CPUCFG(obj) \
104
+ OBJECT_CHECK(AwCpuCfgState, (obj), TYPE_AW_CPUCFG)
105
+
106
+/** @} */
107
+
108
+/**
109
+ * Allwinner CPU Configuration Module instance state
110
+ */
111
+typedef struct AwCpuCfgState {
112
+ /*< private >*/
113
+ SysBusDevice parent_obj;
114
+ /*< public >*/
115
+
116
+ MemoryRegion iomem;
117
+ uint32_t gen_ctrl;
118
+ uint32_t super_standby;
119
+ uint32_t entry_addr;
120
+
121
+} AwCpuCfgState;
122
+
123
+#endif /* HW_MISC_ALLWINNER_CPUCFG_H */
124
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
125
index XXXXXXX..XXXXXXX 100644
126
--- a/hw/arm/allwinner-h3.c
127
+++ b/hw/arm/allwinner-h3.c
128
@@ -XXX,XX +XXX,XX @@ const hwaddr allwinner_h3_memmap[] = {
129
[AW_H3_GIC_CPU] = 0x01c82000,
130
[AW_H3_GIC_HYP] = 0x01c84000,
131
[AW_H3_GIC_VCPU] = 0x01c86000,
132
+ [AW_H3_CPUCFG] = 0x01f01c00,
133
[AW_H3_SDRAM] = 0x40000000
134
};
135
136
@@ -XXX,XX +XXX,XX @@ struct AwH3Unimplemented {
137
{ "r_wdog", 0x01f01000, 1 * KiB },
138
{ "r_prcm", 0x01f01400, 1 * KiB },
139
{ "r_twd", 0x01f01800, 1 * KiB },
140
- { "r_cpucfg", 0x01f01c00, 1 * KiB },
141
{ "r_cir-rx", 0x01f02000, 1 * KiB },
142
{ "r_twi", 0x01f02400, 1 * KiB },
143
{ "r_uart", 0x01f02800, 1 * KiB },
144
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_init(Object *obj)
145
146
sysbus_init_child_obj(obj, "sysctrl", &s->sysctrl, sizeof(s->sysctrl),
147
TYPE_AW_H3_SYSCTRL);
148
+
149
+ sysbus_init_child_obj(obj, "cpucfg", &s->cpucfg, sizeof(s->cpucfg),
150
+ TYPE_AW_CPUCFG);
55
}
151
}
56
+
152
57
+#define DO_INSR(NAME, TYPE, H) \
153
static void allwinner_h3_realize(DeviceState *dev, Error **errp)
58
+void HELPER(NAME)(void *vd, void *vn, uint64_t val, uint32_t desc) \
154
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_realize(DeviceState *dev, Error **errp)
59
+{ \
155
qdev_init_nofail(DEVICE(&s->sysctrl));
60
+ intptr_t opr_sz = simd_oprsz(desc); \
156
sysbus_mmio_map(SYS_BUS_DEVICE(&s->sysctrl), 0, s->memmap[AW_H3_SYSCTRL]);
61
+ swap_memmove(vd + sizeof(TYPE), vn, opr_sz - sizeof(TYPE)); \
157
62
+ *(TYPE *)(vd + H(0)) = val; \
158
+ /* CPU Configuration */
63
+}
159
+ qdev_init_nofail(DEVICE(&s->cpucfg));
64
+
160
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->cpucfg), 0, s->memmap[AW_H3_CPUCFG]);
65
+DO_INSR(sve_insr_b, uint8_t, H1)
161
+
66
+DO_INSR(sve_insr_h, uint16_t, H1_2)
162
/* Universal Serial Bus */
67
+DO_INSR(sve_insr_s, uint32_t, H1_4)
163
sysbus_create_simple(TYPE_AW_H3_EHCI, s->memmap[AW_H3_EHCI0],
68
+DO_INSR(sve_insr_d, uint64_t, )
164
qdev_get_gpio_in(DEVICE(&s->gic),
69
+
165
diff --git a/hw/misc/allwinner-cpucfg.c b/hw/misc/allwinner-cpucfg.c
70
+#undef DO_INSR
166
new file mode 100644
71
+
167
index XXXXXXX..XXXXXXX
72
+void HELPER(sve_rev_b)(void *vd, void *vn, uint32_t desc)
168
--- /dev/null
73
+{
169
+++ b/hw/misc/allwinner-cpucfg.c
74
+ intptr_t i, j, opr_sz = simd_oprsz(desc);
170
@@ -XXX,XX +XXX,XX @@
75
+ for (i = 0, j = opr_sz - 8; i < opr_sz / 2; i += 8, j -= 8) {
171
+/*
76
+ uint64_t f = *(uint64_t *)(vn + i);
172
+ * Allwinner CPU Configuration Module emulation
77
+ uint64_t b = *(uint64_t *)(vn + j);
173
+ *
78
+ *(uint64_t *)(vd + i) = bswap64(b);
174
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
79
+ *(uint64_t *)(vd + j) = bswap64(f);
175
+ *
176
+ * This program is free software: you can redistribute it and/or modify
177
+ * it under the terms of the GNU General Public License as published by
178
+ * the Free Software Foundation, either version 2 of the License, or
179
+ * (at your option) any later version.
180
+ *
181
+ * This program is distributed in the hope that it will be useful,
182
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
183
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
184
+ * GNU General Public License for more details.
185
+ *
186
+ * You should have received a copy of the GNU General Public License
187
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
188
+ */
189
+
190
+#include "qemu/osdep.h"
191
+#include "qemu/units.h"
192
+#include "hw/sysbus.h"
193
+#include "migration/vmstate.h"
194
+#include "qemu/log.h"
195
+#include "qemu/module.h"
196
+#include "qemu/error-report.h"
197
+#include "qemu/timer.h"
198
+#include "hw/core/cpu.h"
199
+#include "target/arm/arm-powerctl.h"
200
+#include "target/arm/cpu.h"
201
+#include "hw/misc/allwinner-cpucfg.h"
202
+#include "trace.h"
203
+
204
+/* CPUCFG register offsets */
205
+enum {
206
+ REG_CPUS_RST_CTRL = 0x0000, /* CPUs Reset Control */
207
+ REG_CPU0_RST_CTRL = 0x0040, /* CPU#0 Reset Control */
208
+ REG_CPU0_CTRL = 0x0044, /* CPU#0 Control */
209
+ REG_CPU0_STATUS = 0x0048, /* CPU#0 Status */
210
+ REG_CPU1_RST_CTRL = 0x0080, /* CPU#1 Reset Control */
211
+ REG_CPU1_CTRL = 0x0084, /* CPU#1 Control */
212
+ REG_CPU1_STATUS = 0x0088, /* CPU#1 Status */
213
+ REG_CPU2_RST_CTRL = 0x00C0, /* CPU#2 Reset Control */
214
+ REG_CPU2_CTRL = 0x00C4, /* CPU#2 Control */
215
+ REG_CPU2_STATUS = 0x00C8, /* CPU#2 Status */
216
+ REG_CPU3_RST_CTRL = 0x0100, /* CPU#3 Reset Control */
217
+ REG_CPU3_CTRL = 0x0104, /* CPU#3 Control */
218
+ REG_CPU3_STATUS = 0x0108, /* CPU#3 Status */
219
+ REG_CPU_SYS_RST = 0x0140, /* CPU System Reset */
220
+ REG_CLK_GATING = 0x0144, /* CPU Clock Gating */
221
+ REG_GEN_CTRL = 0x0184, /* General Control */
222
+ REG_SUPER_STANDBY = 0x01A0, /* Super Standby Flag */
223
+ REG_ENTRY_ADDR = 0x01A4, /* Reset Entry Address */
224
+ REG_DBG_EXTERN = 0x01E4, /* Debug External */
225
+ REG_CNT64_CTRL = 0x0280, /* 64-bit Counter Control */
226
+ REG_CNT64_LOW = 0x0284, /* 64-bit Counter Low */
227
+ REG_CNT64_HIGH = 0x0288, /* 64-bit Counter High */
228
+};
229
+
230
+/* CPUCFG register flags */
231
+enum {
232
+ CPUX_RESET_RELEASED = ((1 << 1) | (1 << 0)),
233
+ CPUX_STATUS_SMP = (1 << 0),
234
+ CPU_SYS_RESET_RELEASED = (1 << 0),
235
+ CLK_GATING_ENABLE = ((1 << 8) | 0xF),
236
+};
237
+
238
+/* CPUCFG register reset values */
239
+enum {
240
+ REG_CLK_GATING_RST = 0x0000010F,
241
+ REG_GEN_CTRL_RST = 0x00000020,
242
+ REG_SUPER_STANDBY_RST = 0x0,
243
+ REG_CNT64_CTRL_RST = 0x0,
244
+};
245
+
246
+/* CPUCFG constants */
247
+enum {
248
+ CPU_EXCEPTION_LEVEL_ON_RESET = 3, /* EL3 */
249
+};
250
+
251
+static void allwinner_cpucfg_cpu_reset(AwCpuCfgState *s, uint8_t cpu_id)
252
+{
253
+ int ret;
254
+
255
+ trace_allwinner_cpucfg_cpu_reset(cpu_id, s->entry_addr);
256
+
257
+ ARMCPU *target_cpu = ARM_CPU(arm_get_cpu_by_id(cpu_id));
258
+ if (!target_cpu) {
259
+ /*
260
+ * Called with a bogus value for cpu_id. Guest error will
261
+ * already have been logged, we can simply return here.
262
+ */
263
+ return;
80
+ }
264
+ }
81
+}
265
+ bool target_aa64 = arm_feature(&target_cpu->env, ARM_FEATURE_AARCH64);
82
+
266
+
83
+static inline uint64_t hswap64(uint64_t h)
267
+ ret = arm_set_cpu_on(cpu_id, s->entry_addr, 0,
84
+{
268
+ CPU_EXCEPTION_LEVEL_ON_RESET, target_aa64);
85
+ uint64_t m = 0x0000ffff0000ffffull;
269
+ if (ret != QEMU_ARM_POWERCTL_RET_SUCCESS) {
86
+ h = rol64(h, 32);
270
+ error_report("%s: failed to bring up CPU %d: err %d",
87
+ return ((h & m) << 16) | ((h >> 16) & m);
271
+ __func__, cpu_id, ret);
88
+}
272
+ return;
89
+
90
+void HELPER(sve_rev_h)(void *vd, void *vn, uint32_t desc)
91
+{
92
+ intptr_t i, j, opr_sz = simd_oprsz(desc);
93
+ for (i = 0, j = opr_sz - 8; i < opr_sz / 2; i += 8, j -= 8) {
94
+ uint64_t f = *(uint64_t *)(vn + i);
95
+ uint64_t b = *(uint64_t *)(vn + j);
96
+ *(uint64_t *)(vd + i) = hswap64(b);
97
+ *(uint64_t *)(vd + j) = hswap64(f);
98
+ }
273
+ }
99
+}
274
+}
100
+
275
+
101
+void HELPER(sve_rev_s)(void *vd, void *vn, uint32_t desc)
276
+static uint64_t allwinner_cpucfg_read(void *opaque, hwaddr offset,
102
+{
277
+ unsigned size)
103
+ intptr_t i, j, opr_sz = simd_oprsz(desc);
278
+{
104
+ for (i = 0, j = opr_sz - 8; i < opr_sz / 2; i += 8, j -= 8) {
279
+ const AwCpuCfgState *s = AW_CPUCFG(opaque);
105
+ uint64_t f = *(uint64_t *)(vn + i);
280
+ uint64_t val = 0;
106
+ uint64_t b = *(uint64_t *)(vn + j);
281
+
107
+ *(uint64_t *)(vd + i) = rol64(b, 32);
282
+ switch (offset) {
108
+ *(uint64_t *)(vd + j) = rol64(f, 32);
283
+ case REG_CPUS_RST_CTRL: /* CPUs Reset Control */
284
+ case REG_CPU_SYS_RST: /* CPU System Reset */
285
+ val = CPU_SYS_RESET_RELEASED;
286
+ break;
287
+ case REG_CPU0_RST_CTRL: /* CPU#0 Reset Control */
288
+ case REG_CPU1_RST_CTRL: /* CPU#1 Reset Control */
289
+ case REG_CPU2_RST_CTRL: /* CPU#2 Reset Control */
290
+ case REG_CPU3_RST_CTRL: /* CPU#3 Reset Control */
291
+ val = CPUX_RESET_RELEASED;
292
+ break;
293
+ case REG_CPU0_CTRL: /* CPU#0 Control */
294
+ case REG_CPU1_CTRL: /* CPU#1 Control */
295
+ case REG_CPU2_CTRL: /* CPU#2 Control */
296
+ case REG_CPU3_CTRL: /* CPU#3 Control */
297
+ val = 0;
298
+ break;
299
+ case REG_CPU0_STATUS: /* CPU#0 Status */
300
+ case REG_CPU1_STATUS: /* CPU#1 Status */
301
+ case REG_CPU2_STATUS: /* CPU#2 Status */
302
+ case REG_CPU3_STATUS: /* CPU#3 Status */
303
+ val = CPUX_STATUS_SMP;
304
+ break;
305
+ case REG_CLK_GATING: /* CPU Clock Gating */
306
+ val = CLK_GATING_ENABLE;
307
+ break;
308
+ case REG_GEN_CTRL: /* General Control */
309
+ val = s->gen_ctrl;
310
+ break;
311
+ case REG_SUPER_STANDBY: /* Super Standby Flag */
312
+ val = s->super_standby;
313
+ break;
314
+ case REG_ENTRY_ADDR: /* Reset Entry Address */
315
+ val = s->entry_addr;
316
+ break;
317
+ case REG_DBG_EXTERN: /* Debug External */
318
+ case REG_CNT64_CTRL: /* 64-bit Counter Control */
319
+ case REG_CNT64_LOW: /* 64-bit Counter Low */
320
+ case REG_CNT64_HIGH: /* 64-bit Counter High */
321
+ qemu_log_mask(LOG_UNIMP, "%s: unimplemented register at 0x%04x\n",
322
+ __func__, (uint32_t)offset);
323
+ break;
324
+ default:
325
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
326
+ __func__, (uint32_t)offset);
327
+ break;
109
+ }
328
+ }
110
+}
329
+
111
+
330
+ trace_allwinner_cpucfg_read(offset, val, size);
112
+void HELPER(sve_rev_d)(void *vd, void *vn, uint32_t desc)
331
+
113
+{
332
+ return val;
114
+ intptr_t i, j, opr_sz = simd_oprsz(desc);
333
+}
115
+ for (i = 0, j = opr_sz - 8; i < opr_sz / 2; i += 8, j -= 8) {
334
+
116
+ uint64_t f = *(uint64_t *)(vn + i);
335
+static void allwinner_cpucfg_write(void *opaque, hwaddr offset,
117
+ uint64_t b = *(uint64_t *)(vn + j);
336
+ uint64_t val, unsigned size)
118
+ *(uint64_t *)(vd + i) = b;
337
+{
119
+ *(uint64_t *)(vd + j) = f;
338
+ AwCpuCfgState *s = AW_CPUCFG(opaque);
339
+
340
+ trace_allwinner_cpucfg_write(offset, val, size);
341
+
342
+ switch (offset) {
343
+ case REG_CPUS_RST_CTRL: /* CPUs Reset Control */
344
+ case REG_CPU_SYS_RST: /* CPU System Reset */
345
+ break;
346
+ case REG_CPU0_RST_CTRL: /* CPU#0 Reset Control */
347
+ case REG_CPU1_RST_CTRL: /* CPU#1 Reset Control */
348
+ case REG_CPU2_RST_CTRL: /* CPU#2 Reset Control */
349
+ case REG_CPU3_RST_CTRL: /* CPU#3 Reset Control */
350
+ if (val) {
351
+ allwinner_cpucfg_cpu_reset(s, (offset - REG_CPU0_RST_CTRL) >> 6);
352
+ }
353
+ break;
354
+ case REG_CPU0_CTRL: /* CPU#0 Control */
355
+ case REG_CPU1_CTRL: /* CPU#1 Control */
356
+ case REG_CPU2_CTRL: /* CPU#2 Control */
357
+ case REG_CPU3_CTRL: /* CPU#3 Control */
358
+ case REG_CPU0_STATUS: /* CPU#0 Status */
359
+ case REG_CPU1_STATUS: /* CPU#1 Status */
360
+ case REG_CPU2_STATUS: /* CPU#2 Status */
361
+ case REG_CPU3_STATUS: /* CPU#3 Status */
362
+ case REG_CLK_GATING: /* CPU Clock Gating */
363
+ break;
364
+ case REG_GEN_CTRL: /* General Control */
365
+ s->gen_ctrl = val;
366
+ break;
367
+ case REG_SUPER_STANDBY: /* Super Standby Flag */
368
+ s->super_standby = val;
369
+ break;
370
+ case REG_ENTRY_ADDR: /* Reset Entry Address */
371
+ s->entry_addr = val;
372
+ break;
373
+ case REG_DBG_EXTERN: /* Debug External */
374
+ case REG_CNT64_CTRL: /* 64-bit Counter Control */
375
+ case REG_CNT64_LOW: /* 64-bit Counter Low */
376
+ case REG_CNT64_HIGH: /* 64-bit Counter High */
377
+ qemu_log_mask(LOG_UNIMP, "%s: unimplemented register at 0x%04x\n",
378
+ __func__, (uint32_t)offset);
379
+ break;
380
+ default:
381
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
382
+ __func__, (uint32_t)offset);
383
+ break;
120
+ }
384
+ }
121
+}
385
+}
122
+
386
+
123
+#define DO_TBL(NAME, TYPE, H) \
387
+static const MemoryRegionOps allwinner_cpucfg_ops = {
124
+void HELPER(NAME)(void *vd, void *vn, void *vm, uint32_t desc) \
388
+ .read = allwinner_cpucfg_read,
125
+{ \
389
+ .write = allwinner_cpucfg_write,
126
+ intptr_t i, opr_sz = simd_oprsz(desc); \
390
+ .endianness = DEVICE_NATIVE_ENDIAN,
127
+ uintptr_t elem = opr_sz / sizeof(TYPE); \
391
+ .valid = {
128
+ TYPE *d = vd, *n = vn, *m = vm; \
392
+ .min_access_size = 4,
129
+ ARMVectorReg tmp; \
393
+ .max_access_size = 4,
130
+ if (unlikely(vd == vn)) { \
394
+ },
131
+ n = memcpy(&tmp, vn, opr_sz); \
395
+ .impl.min_access_size = 4,
132
+ } \
396
+};
133
+ for (i = 0; i < elem; i++) { \
397
+
134
+ TYPE j = m[H(i)]; \
398
+static void allwinner_cpucfg_reset(DeviceState *dev)
135
+ d[H(i)] = j < elem ? n[H(j)] : 0; \
399
+{
136
+ } \
400
+ AwCpuCfgState *s = AW_CPUCFG(dev);
137
+}
401
+
138
+
402
+ /* Set default values for registers */
139
+DO_TBL(sve_tbl_b, uint8_t, H1)
403
+ s->gen_ctrl = REG_GEN_CTRL_RST;
140
+DO_TBL(sve_tbl_h, uint16_t, H2)
404
+ s->super_standby = REG_SUPER_STANDBY_RST;
141
+DO_TBL(sve_tbl_s, uint32_t, H4)
405
+ s->entry_addr = 0;
142
+DO_TBL(sve_tbl_d, uint64_t, )
406
+}
143
+
407
+
144
+#undef TBL
408
+static void allwinner_cpucfg_init(Object *obj)
145
+
409
+{
146
+#define DO_UNPK(NAME, TYPED, TYPES, HD, HS) \
410
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
147
+void HELPER(NAME)(void *vd, void *vn, uint32_t desc) \
411
+ AwCpuCfgState *s = AW_CPUCFG(obj);
148
+{ \
412
+
149
+ intptr_t i, opr_sz = simd_oprsz(desc); \
413
+ /* Memory mapping */
150
+ TYPED *d = vd; \
414
+ memory_region_init_io(&s->iomem, OBJECT(s), &allwinner_cpucfg_ops, s,
151
+ TYPES *n = vn; \
415
+ TYPE_AW_CPUCFG, 1 * KiB);
152
+ ARMVectorReg tmp; \
416
+ sysbus_init_mmio(sbd, &s->iomem);
153
+ if (unlikely(vn - vd < opr_sz)) { \
417
+}
154
+ n = memcpy(&tmp, n, opr_sz / 2); \
418
+
155
+ } \
419
+static const VMStateDescription allwinner_cpucfg_vmstate = {
156
+ for (i = 0; i < opr_sz / sizeof(TYPED); i++) { \
420
+ .name = "allwinner-cpucfg",
157
+ d[HD(i)] = n[HS(i)]; \
421
+ .version_id = 1,
158
+ } \
422
+ .minimum_version_id = 1,
159
+}
423
+ .fields = (VMStateField[]) {
160
+
424
+ VMSTATE_UINT32(gen_ctrl, AwCpuCfgState),
161
+DO_UNPK(sve_sunpk_h, int16_t, int8_t, H2, H1)
425
+ VMSTATE_UINT32(super_standby, AwCpuCfgState),
162
+DO_UNPK(sve_sunpk_s, int32_t, int16_t, H4, H2)
426
+ VMSTATE_UINT32(entry_addr, AwCpuCfgState),
163
+DO_UNPK(sve_sunpk_d, int64_t, int32_t, , H4)
427
+ VMSTATE_END_OF_LIST()
164
+
428
+ }
165
+DO_UNPK(sve_uunpk_h, uint16_t, uint8_t, H2, H1)
429
+};
166
+DO_UNPK(sve_uunpk_s, uint32_t, uint16_t, H4, H2)
430
+
167
+DO_UNPK(sve_uunpk_d, uint64_t, uint32_t, , H4)
431
+static void allwinner_cpucfg_class_init(ObjectClass *klass, void *data)
168
+
432
+{
169
+#undef DO_UNPK
433
+ DeviceClass *dc = DEVICE_CLASS(klass);
170
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
434
+
435
+ dc->reset = allwinner_cpucfg_reset;
436
+ dc->vmsd = &allwinner_cpucfg_vmstate;
437
+}
438
+
439
+static const TypeInfo allwinner_cpucfg_info = {
440
+ .name = TYPE_AW_CPUCFG,
441
+ .parent = TYPE_SYS_BUS_DEVICE,
442
+ .instance_init = allwinner_cpucfg_init,
443
+ .instance_size = sizeof(AwCpuCfgState),
444
+ .class_init = allwinner_cpucfg_class_init,
445
+};
446
+
447
+static void allwinner_cpucfg_register(void)
448
+{
449
+ type_register_static(&allwinner_cpucfg_info);
450
+}
451
+
452
+type_init(allwinner_cpucfg_register)
453
diff --git a/hw/misc/trace-events b/hw/misc/trace-events
171
index XXXXXXX..XXXXXXX 100644
454
index XXXXXXX..XXXXXXX 100644
172
--- a/target/arm/translate-sve.c
455
--- a/hw/misc/trace-events
173
+++ b/target/arm/translate-sve.c
456
+++ b/hw/misc/trace-events
174
@@ -XXX,XX +XXX,XX @@ static bool trans_EXT(DisasContext *s, arg_EXT *a, uint32_t insn)
175
return true;
176
}
177
178
+/*
179
+ *** SVE Permute - Unpredicated Group
180
+ */
181
+
182
+static bool trans_DUP_s(DisasContext *s, arg_DUP_s *a, uint32_t insn)
183
+{
184
+ if (sve_access_check(s)) {
185
+ unsigned vsz = vec_full_reg_size(s);
186
+ tcg_gen_gvec_dup_i64(a->esz, vec_full_reg_offset(s, a->rd),
187
+ vsz, vsz, cpu_reg_sp(s, a->rn));
188
+ }
189
+ return true;
190
+}
191
+
192
+static bool trans_DUP_x(DisasContext *s, arg_DUP_x *a, uint32_t insn)
193
+{
194
+ if ((a->imm & 0x1f) == 0) {
195
+ return false;
196
+ }
197
+ if (sve_access_check(s)) {
198
+ unsigned vsz = vec_full_reg_size(s);
199
+ unsigned dofs = vec_full_reg_offset(s, a->rd);
200
+ unsigned esz, index;
201
+
202
+ esz = ctz32(a->imm);
203
+ index = a->imm >> (esz + 1);
204
+
205
+ if ((index << esz) < vsz) {
206
+ unsigned nofs = vec_reg_offset(s, a->rn, index, esz);
207
+ tcg_gen_gvec_dup_mem(esz, dofs, nofs, vsz, vsz);
208
+ } else {
209
+ tcg_gen_gvec_dup64i(dofs, vsz, vsz, 0);
210
+ }
211
+ }
212
+ return true;
213
+}
214
+
215
+static void do_insr_i64(DisasContext *s, arg_rrr_esz *a, TCGv_i64 val)
216
+{
217
+ typedef void gen_insr(TCGv_ptr, TCGv_ptr, TCGv_i64, TCGv_i32);
218
+ static gen_insr * const fns[4] = {
219
+ gen_helper_sve_insr_b, gen_helper_sve_insr_h,
220
+ gen_helper_sve_insr_s, gen_helper_sve_insr_d,
221
+ };
222
+ unsigned vsz = vec_full_reg_size(s);
223
+ TCGv_i32 desc = tcg_const_i32(simd_desc(vsz, vsz, 0));
224
+ TCGv_ptr t_zd = tcg_temp_new_ptr();
225
+ TCGv_ptr t_zn = tcg_temp_new_ptr();
226
+
227
+ tcg_gen_addi_ptr(t_zd, cpu_env, vec_full_reg_offset(s, a->rd));
228
+ tcg_gen_addi_ptr(t_zn, cpu_env, vec_full_reg_offset(s, a->rn));
229
+
230
+ fns[a->esz](t_zd, t_zn, val, desc);
231
+
232
+ tcg_temp_free_ptr(t_zd);
233
+ tcg_temp_free_ptr(t_zn);
234
+ tcg_temp_free_i32(desc);
235
+}
236
+
237
+static bool trans_INSR_f(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
238
+{
239
+ if (sve_access_check(s)) {
240
+ TCGv_i64 t = tcg_temp_new_i64();
241
+ tcg_gen_ld_i64(t, cpu_env, vec_reg_offset(s, a->rm, 0, MO_64));
242
+ do_insr_i64(s, a, t);
243
+ tcg_temp_free_i64(t);
244
+ }
245
+ return true;
246
+}
247
+
248
+static bool trans_INSR_r(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
249
+{
250
+ if (sve_access_check(s)) {
251
+ do_insr_i64(s, a, cpu_reg(s, a->rm));
252
+ }
253
+ return true;
254
+}
255
+
256
+static bool trans_REV_v(DisasContext *s, arg_rr_esz *a, uint32_t insn)
257
+{
258
+ static gen_helper_gvec_2 * const fns[4] = {
259
+ gen_helper_sve_rev_b, gen_helper_sve_rev_h,
260
+ gen_helper_sve_rev_s, gen_helper_sve_rev_d
261
+ };
262
+
263
+ if (sve_access_check(s)) {
264
+ unsigned vsz = vec_full_reg_size(s);
265
+ tcg_gen_gvec_2_ool(vec_full_reg_offset(s, a->rd),
266
+ vec_full_reg_offset(s, a->rn),
267
+ vsz, vsz, 0, fns[a->esz]);
268
+ }
269
+ return true;
270
+}
271
+
272
+static bool trans_TBL(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
273
+{
274
+ static gen_helper_gvec_3 * const fns[4] = {
275
+ gen_helper_sve_tbl_b, gen_helper_sve_tbl_h,
276
+ gen_helper_sve_tbl_s, gen_helper_sve_tbl_d
277
+ };
278
+
279
+ if (sve_access_check(s)) {
280
+ unsigned vsz = vec_full_reg_size(s);
281
+ tcg_gen_gvec_3_ool(vec_full_reg_offset(s, a->rd),
282
+ vec_full_reg_offset(s, a->rn),
283
+ vec_full_reg_offset(s, a->rm),
284
+ vsz, vsz, 0, fns[a->esz]);
285
+ }
286
+ return true;
287
+}
288
+
289
+static bool trans_UNPK(DisasContext *s, arg_UNPK *a, uint32_t insn)
290
+{
291
+ static gen_helper_gvec_2 * const fns[4][2] = {
292
+ { NULL, NULL },
293
+ { gen_helper_sve_sunpk_h, gen_helper_sve_uunpk_h },
294
+ { gen_helper_sve_sunpk_s, gen_helper_sve_uunpk_s },
295
+ { gen_helper_sve_sunpk_d, gen_helper_sve_uunpk_d },
296
+ };
297
+
298
+ if (a->esz == 0) {
299
+ return false;
300
+ }
301
+ if (sve_access_check(s)) {
302
+ unsigned vsz = vec_full_reg_size(s);
303
+ tcg_gen_gvec_2_ool(vec_full_reg_offset(s, a->rd),
304
+ vec_full_reg_offset(s, a->rn)
305
+ + (a->h ? vsz / 2 : 0),
306
+ vsz, vsz, 0, fns[a->esz][a->u]);
307
+ }
308
+ return true;
309
+}
310
+
311
/*
312
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
313
*/
314
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
315
index XXXXXXX..XXXXXXX 100644
316
--- a/target/arm/sve.decode
317
+++ b/target/arm/sve.decode
318
@@ -XXX,XX +XXX,XX @@
457
@@ -XXX,XX +XXX,XX @@
319
458
# See docs/devel/tracing.txt for syntax documentation.
320
%imm4_16_p1 16:4 !function=plus1
459
321
%imm6_22_5 22:1 5:5
460
+# allwinner-cpucfg.c
322
+%imm7_22_16 22:2 16:5
461
+allwinner_cpucfg_cpu_reset(uint8_t cpu_id, uint32_t reset_addr) "id %u, reset_addr 0x%" PRIu32
323
%imm8_16_10 16:5 10:3
462
+allwinner_cpucfg_read(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
324
%imm9_16_10 16:s6 10:3
463
+allwinner_cpucfg_write(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
325
464
+
326
@@ -XXX,XX +XXX,XX @@
465
# eccmemctl.c
327
466
ecc_mem_writel_mer(uint32_t val) "Write memory enable 0x%08x"
328
# Three operand, vector element size
467
ecc_mem_writel_mdr(uint32_t val) "Write memory delay 0x%08x"
329
@rd_rn_rm ........ esz:2 . rm:5 ... ... rn:5 rd:5 &rrr_esz
330
+@rdn_rm ........ esz:2 ...... ...... rm:5 rd:5 \
331
+ &rrr_esz rn=%reg_movprfx
332
333
# Three operand with "memory" size, aka immediate left shift
334
@rd_rn_msz_rm ........ ... rm:5 .... imm:2 rn:5 rd:5 &rrri
335
@@ -XXX,XX +XXX,XX @@ CPY_z_i 00000101 .. 01 .... 00 . ........ ..... @rdn_pg4 imm=%sh8_i8s
336
EXT 00000101 001 ..... 000 ... rm:5 rd:5 \
337
&rrri rn=%reg_movprfx imm=%imm8_16_10
338
339
+### SVE Permute - Unpredicated Group
340
+
341
+# SVE broadcast general register
342
+DUP_s 00000101 .. 1 00000 001110 ..... ..... @rd_rn
343
+
344
+# SVE broadcast indexed element
345
+DUP_x 00000101 .. 1 ..... 001000 rn:5 rd:5 \
346
+ &rri imm=%imm7_22_16
347
+
348
+# SVE insert SIMD&FP scalar register
349
+INSR_f 00000101 .. 1 10100 001110 ..... ..... @rdn_rm
350
+
351
+# SVE insert general register
352
+INSR_r 00000101 .. 1 00100 001110 ..... ..... @rdn_rm
353
+
354
+# SVE reverse vector elements
355
+REV_v 00000101 .. 1 11000 001110 ..... ..... @rd_rn
356
+
357
+# SVE vector table lookup
358
+TBL 00000101 .. 1 ..... 001100 ..... ..... @rd_rn_rm
359
+
360
+# SVE unpack vector elements
361
+UNPK 00000101 esz:2 1100 u:1 h:1 001110 rn:5 rd:5
362
+
363
### SVE Predicate Logical Operations Group
364
365
# SVE predicate logical operations
366
--
468
--
367
2.17.1
469
2.20.1
368
470
369
471
diff view generated by jsdifflib
1
Convert the mcf5206 device away from using the old_mmio field
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
of MemoryRegionOps. This device is used by the an5206 board.
2
3
3
The Security Identifier device found in various Allwinner System on Chip
4
designs gives applications a per-board unique identifier. This commit
5
adds support for the Allwinner Security Identifier using a 128-bit
6
UUID value as input.
7
8
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
9
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
10
Message-id: 20200311221854.30370-8-nieklinnenbank@gmail.com
4
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
5
Acked-by: Thomas Huth <huth@tuxfamily.org>
6
Message-id: 20180601141223.26630-3-peter.maydell@linaro.org
7
---
12
---
8
hw/m68k/mcf5206.c | 48 +++++++++++++++++++++++++++++++++++------------
13
hw/misc/Makefile.objs | 1 +
9
1 file changed, 36 insertions(+), 12 deletions(-)
14
include/hw/arm/allwinner-h3.h | 3 +
10
15
include/hw/misc/allwinner-sid.h | 60 ++++++++++++
11
diff --git a/hw/m68k/mcf5206.c b/hw/m68k/mcf5206.c
16
hw/arm/allwinner-h3.c | 11 ++-
12
index XXXXXXX..XXXXXXX 100644
17
hw/arm/orangepi.c | 8 ++
13
--- a/hw/m68k/mcf5206.c
18
hw/misc/allwinner-sid.c | 168 ++++++++++++++++++++++++++++++++
14
+++ b/hw/m68k/mcf5206.c
19
hw/misc/trace-events | 4 +
15
@@ -XXX,XX +XXX,XX @@ static void m5206_mbar_writel(void *opaque, hwaddr offset,
20
7 files changed, 254 insertions(+), 1 deletion(-)
16
m5206_mbar_write(s, offset, value, 4);
21
create mode 100644 include/hw/misc/allwinner-sid.h
22
create mode 100644 hw/misc/allwinner-sid.c
23
24
diff --git a/hw/misc/Makefile.objs b/hw/misc/Makefile.objs
25
index XXXXXXX..XXXXXXX 100644
26
--- a/hw/misc/Makefile.objs
27
+++ b/hw/misc/Makefile.objs
28
@@ -XXX,XX +XXX,XX @@ common-obj-$(CONFIG_IVSHMEM_DEVICE) += ivshmem.o
29
common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3-ccu.o
30
obj-$(CONFIG_ALLWINNER_H3) += allwinner-cpucfg.o
31
common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3-sysctrl.o
32
+common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-sid.o
33
common-obj-$(CONFIG_REALVIEW) += arm_sysctl.o
34
common-obj-$(CONFIG_NSERIES) += cbus.o
35
common-obj-$(CONFIG_ECCMEMCTL) += eccmemctl.o
36
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
37
index XXXXXXX..XXXXXXX 100644
38
--- a/include/hw/arm/allwinner-h3.h
39
+++ b/include/hw/arm/allwinner-h3.h
40
@@ -XXX,XX +XXX,XX @@
41
#include "hw/misc/allwinner-h3-ccu.h"
42
#include "hw/misc/allwinner-cpucfg.h"
43
#include "hw/misc/allwinner-h3-sysctrl.h"
44
+#include "hw/misc/allwinner-sid.h"
45
#include "target/arm/cpu.h"
46
47
/**
48
@@ -XXX,XX +XXX,XX @@ enum {
49
AW_H3_SRAM_A2,
50
AW_H3_SRAM_C,
51
AW_H3_SYSCTRL,
52
+ AW_H3_SID,
53
AW_H3_EHCI0,
54
AW_H3_OHCI0,
55
AW_H3_EHCI1,
56
@@ -XXX,XX +XXX,XX @@ typedef struct AwH3State {
57
AwH3ClockCtlState ccu;
58
AwCpuCfgState cpucfg;
59
AwH3SysCtrlState sysctrl;
60
+ AwSidState sid;
61
GICState gic;
62
MemoryRegion sram_a1;
63
MemoryRegion sram_a2;
64
diff --git a/include/hw/misc/allwinner-sid.h b/include/hw/misc/allwinner-sid.h
65
new file mode 100644
66
index XXXXXXX..XXXXXXX
67
--- /dev/null
68
+++ b/include/hw/misc/allwinner-sid.h
69
@@ -XXX,XX +XXX,XX @@
70
+/*
71
+ * Allwinner Security ID emulation
72
+ *
73
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
74
+ *
75
+ * This program is free software: you can redistribute it and/or modify
76
+ * it under the terms of the GNU General Public License as published by
77
+ * the Free Software Foundation, either version 2 of the License, or
78
+ * (at your option) any later version.
79
+ *
80
+ * This program is distributed in the hope that it will be useful,
81
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
82
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
83
+ * GNU General Public License for more details.
84
+ *
85
+ * You should have received a copy of the GNU General Public License
86
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
87
+ */
88
+
89
+#ifndef HW_MISC_ALLWINNER_SID_H
90
+#define HW_MISC_ALLWINNER_SID_H
91
+
92
+#include "qom/object.h"
93
+#include "hw/sysbus.h"
94
+#include "qemu/uuid.h"
95
+
96
+/**
97
+ * Object model
98
+ * @{
99
+ */
100
+
101
+#define TYPE_AW_SID "allwinner-sid"
102
+#define AW_SID(obj) \
103
+ OBJECT_CHECK(AwSidState, (obj), TYPE_AW_SID)
104
+
105
+/** @} */
106
+
107
+/**
108
+ * Allwinner Security ID object instance state
109
+ */
110
+typedef struct AwSidState {
111
+ /*< private >*/
112
+ SysBusDevice parent_obj;
113
+ /*< public >*/
114
+
115
+ /** Maps I/O registers in physical memory */
116
+ MemoryRegion iomem;
117
+
118
+ /** Control register defines how and what to read */
119
+ uint32_t control;
120
+
121
+ /** RdKey register contains the data retrieved by the device */
122
+ uint32_t rdkey;
123
+
124
+ /** Stores the emulated device identifier */
125
+ QemuUUID identifier;
126
+
127
+} AwSidState;
128
+
129
+#endif /* HW_MISC_ALLWINNER_SID_H */
130
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
131
index XXXXXXX..XXXXXXX 100644
132
--- a/hw/arm/allwinner-h3.c
133
+++ b/hw/arm/allwinner-h3.c
134
@@ -XXX,XX +XXX,XX @@ const hwaddr allwinner_h3_memmap[] = {
135
[AW_H3_SRAM_A2] = 0x00044000,
136
[AW_H3_SRAM_C] = 0x00010000,
137
[AW_H3_SYSCTRL] = 0x01c00000,
138
+ [AW_H3_SID] = 0x01c14000,
139
[AW_H3_EHCI0] = 0x01c1a000,
140
[AW_H3_OHCI0] = 0x01c1a400,
141
[AW_H3_EHCI1] = 0x01c1b000,
142
@@ -XXX,XX +XXX,XX @@ struct AwH3Unimplemented {
143
{ "mmc0", 0x01c0f000, 4 * KiB },
144
{ "mmc1", 0x01c10000, 4 * KiB },
145
{ "mmc2", 0x01c11000, 4 * KiB },
146
- { "sid", 0x01c14000, 1 * KiB },
147
{ "crypto", 0x01c15000, 4 * KiB },
148
{ "msgbox", 0x01c17000, 4 * KiB },
149
{ "spinlock", 0x01c18000, 4 * KiB },
150
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_init(Object *obj)
151
152
sysbus_init_child_obj(obj, "cpucfg", &s->cpucfg, sizeof(s->cpucfg),
153
TYPE_AW_CPUCFG);
154
+
155
+ sysbus_init_child_obj(obj, "sid", &s->sid, sizeof(s->sid),
156
+ TYPE_AW_SID);
157
+ object_property_add_alias(obj, "identifier", OBJECT(&s->sid),
158
+ "identifier", &error_abort);
17
}
159
}
18
160
19
+static uint64_t m5206_mbar_readfn(void *opaque, hwaddr addr, unsigned size)
161
static void allwinner_h3_realize(DeviceState *dev, Error **errp)
20
+{
162
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_realize(DeviceState *dev, Error **errp)
21
+ switch (size) {
163
qdev_init_nofail(DEVICE(&s->cpucfg));
22
+ case 1:
164
sysbus_mmio_map(SYS_BUS_DEVICE(&s->cpucfg), 0, s->memmap[AW_H3_CPUCFG]);
23
+ return m5206_mbar_readb(opaque, addr);
165
24
+ case 2:
166
+ /* Security Identifier */
25
+ return m5206_mbar_readw(opaque, addr);
167
+ qdev_init_nofail(DEVICE(&s->sid));
26
+ case 4:
168
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->sid), 0, s->memmap[AW_H3_SID]);
27
+ return m5206_mbar_readl(opaque, addr);
169
+
170
/* Universal Serial Bus */
171
sysbus_create_simple(TYPE_AW_H3_EHCI, s->memmap[AW_H3_EHCI0],
172
qdev_get_gpio_in(DEVICE(&s->gic),
173
diff --git a/hw/arm/orangepi.c b/hw/arm/orangepi.c
174
index XXXXXXX..XXXXXXX 100644
175
--- a/hw/arm/orangepi.c
176
+++ b/hw/arm/orangepi.c
177
@@ -XXX,XX +XXX,XX @@ static void orangepi_init(MachineState *machine)
178
object_property_set_int(OBJECT(h3), 24 * 1000 * 1000, "clk1-freq",
179
&error_abort);
180
181
+ /* Setup SID properties. Currently using a default fixed SID identifier. */
182
+ if (qemu_uuid_is_null(&h3->sid.identifier)) {
183
+ qdev_prop_set_string(DEVICE(h3), "identifier",
184
+ "02c00081-1111-2222-3333-000044556677");
185
+ } else if (ldl_be_p(&h3->sid.identifier.data[0]) != 0x02c00081) {
186
+ warn_report("Security Identifier value does not include H3 prefix");
187
+ }
188
+
189
/* Mark H3 object realized */
190
object_property_set_bool(OBJECT(h3), true, "realized", &error_abort);
191
192
diff --git a/hw/misc/allwinner-sid.c b/hw/misc/allwinner-sid.c
193
new file mode 100644
194
index XXXXXXX..XXXXXXX
195
--- /dev/null
196
+++ b/hw/misc/allwinner-sid.c
197
@@ -XXX,XX +XXX,XX @@
198
+/*
199
+ * Allwinner Security ID emulation
200
+ *
201
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
202
+ *
203
+ * This program is free software: you can redistribute it and/or modify
204
+ * it under the terms of the GNU General Public License as published by
205
+ * the Free Software Foundation, either version 2 of the License, or
206
+ * (at your option) any later version.
207
+ *
208
+ * This program is distributed in the hope that it will be useful,
209
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
210
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
211
+ * GNU General Public License for more details.
212
+ *
213
+ * You should have received a copy of the GNU General Public License
214
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
215
+ */
216
+
217
+#include "qemu/osdep.h"
218
+#include "qemu/units.h"
219
+#include "hw/sysbus.h"
220
+#include "migration/vmstate.h"
221
+#include "qemu/log.h"
222
+#include "qemu/module.h"
223
+#include "qemu/guest-random.h"
224
+#include "qapi/error.h"
225
+#include "hw/qdev-properties.h"
226
+#include "hw/misc/allwinner-sid.h"
227
+#include "trace.h"
228
+
229
+/* SID register offsets */
230
+enum {
231
+ REG_PRCTL = 0x40, /* Control */
232
+ REG_RDKEY = 0x60, /* Read Key */
233
+};
234
+
235
+/* SID register flags */
236
+enum {
237
+ REG_PRCTL_WRITE = 0x0002, /* Unknown write flag */
238
+ REG_PRCTL_OP_LOCK = 0xAC00, /* Lock operation */
239
+};
240
+
241
+static uint64_t allwinner_sid_read(void *opaque, hwaddr offset,
242
+ unsigned size)
243
+{
244
+ const AwSidState *s = AW_SID(opaque);
245
+ uint64_t val = 0;
246
+
247
+ switch (offset) {
248
+ case REG_PRCTL: /* Control */
249
+ val = s->control;
250
+ break;
251
+ case REG_RDKEY: /* Read Key */
252
+ val = s->rdkey;
253
+ break;
28
+ default:
254
+ default:
29
+ g_assert_not_reached();
255
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
256
+ __func__, (uint32_t)offset);
257
+ return 0;
30
+ }
258
+ }
31
+}
259
+
32
+
260
+ trace_allwinner_sid_read(offset, val, size);
33
+static void m5206_mbar_writefn(void *opaque, hwaddr addr,
261
+
34
+ uint64_t value, unsigned size)
262
+ return val;
35
+{
263
+}
36
+ switch (size) {
264
+
37
+ case 1:
265
+static void allwinner_sid_write(void *opaque, hwaddr offset,
38
+ m5206_mbar_writeb(opaque, addr, value);
266
+ uint64_t val, unsigned size)
39
+ break;
267
+{
40
+ case 2:
268
+ AwSidState *s = AW_SID(opaque);
41
+ m5206_mbar_writew(opaque, addr, value);
269
+
42
+ break;
270
+ trace_allwinner_sid_write(offset, val, size);
43
+ case 4:
271
+
44
+ m5206_mbar_writel(opaque, addr, value);
272
+ switch (offset) {
273
+ case REG_PRCTL: /* Control */
274
+ s->control = val;
275
+
276
+ if ((s->control & REG_PRCTL_OP_LOCK) &&
277
+ (s->control & REG_PRCTL_WRITE)) {
278
+ uint32_t id = s->control >> 16;
279
+
280
+ if (id <= sizeof(QemuUUID) - sizeof(s->rdkey)) {
281
+ s->rdkey = ldl_be_p(&s->identifier.data[id]);
282
+ }
283
+ }
284
+ s->control &= ~REG_PRCTL_WRITE;
285
+ break;
286
+ case REG_RDKEY: /* Read Key */
45
+ break;
287
+ break;
46
+ default:
288
+ default:
47
+ g_assert_not_reached();
289
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
290
+ __func__, (uint32_t)offset);
291
+ break;
48
+ }
292
+ }
49
+}
293
+}
50
+
294
+
51
static const MemoryRegionOps m5206_mbar_ops = {
295
+static const MemoryRegionOps allwinner_sid_ops = {
52
- .old_mmio = {
296
+ .read = allwinner_sid_read,
53
- .read = {
297
+ .write = allwinner_sid_write,
54
- m5206_mbar_readb,
298
+ .endianness = DEVICE_NATIVE_ENDIAN,
55
- m5206_mbar_readw,
299
+ .valid = {
56
- m5206_mbar_readl,
300
+ .min_access_size = 4,
57
- },
301
+ .max_access_size = 4,
58
- .write = {
302
+ },
59
- m5206_mbar_writeb,
303
+ .impl.min_access_size = 4,
60
- m5206_mbar_writew,
304
+};
61
- m5206_mbar_writel,
305
+
62
- },
306
+static void allwinner_sid_reset(DeviceState *dev)
63
- },
307
+{
64
+ .read = m5206_mbar_readfn,
308
+ AwSidState *s = AW_SID(dev);
65
+ .write = m5206_mbar_writefn,
309
+
66
+ .valid.min_access_size = 1,
310
+ /* Set default values for registers */
67
+ .valid.max_access_size = 4,
311
+ s->control = 0;
68
.endianness = DEVICE_NATIVE_ENDIAN,
312
+ s->rdkey = 0;
69
};
313
+}
70
314
+
315
+static void allwinner_sid_init(Object *obj)
316
+{
317
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
318
+ AwSidState *s = AW_SID(obj);
319
+
320
+ /* Memory mapping */
321
+ memory_region_init_io(&s->iomem, OBJECT(s), &allwinner_sid_ops, s,
322
+ TYPE_AW_SID, 1 * KiB);
323
+ sysbus_init_mmio(sbd, &s->iomem);
324
+}
325
+
326
+static Property allwinner_sid_properties[] = {
327
+ DEFINE_PROP_UUID_NODEFAULT("identifier", AwSidState, identifier),
328
+ DEFINE_PROP_END_OF_LIST()
329
+};
330
+
331
+static const VMStateDescription allwinner_sid_vmstate = {
332
+ .name = "allwinner-sid",
333
+ .version_id = 1,
334
+ .minimum_version_id = 1,
335
+ .fields = (VMStateField[]) {
336
+ VMSTATE_UINT32(control, AwSidState),
337
+ VMSTATE_UINT32(rdkey, AwSidState),
338
+ VMSTATE_UINT8_ARRAY_V(identifier.data, AwSidState, sizeof(QemuUUID), 1),
339
+ VMSTATE_END_OF_LIST()
340
+ }
341
+};
342
+
343
+static void allwinner_sid_class_init(ObjectClass *klass, void *data)
344
+{
345
+ DeviceClass *dc = DEVICE_CLASS(klass);
346
+
347
+ dc->reset = allwinner_sid_reset;
348
+ dc->vmsd = &allwinner_sid_vmstate;
349
+ device_class_set_props(dc, allwinner_sid_properties);
350
+}
351
+
352
+static const TypeInfo allwinner_sid_info = {
353
+ .name = TYPE_AW_SID,
354
+ .parent = TYPE_SYS_BUS_DEVICE,
355
+ .instance_init = allwinner_sid_init,
356
+ .instance_size = sizeof(AwSidState),
357
+ .class_init = allwinner_sid_class_init,
358
+};
359
+
360
+static void allwinner_sid_register(void)
361
+{
362
+ type_register_static(&allwinner_sid_info);
363
+}
364
+
365
+type_init(allwinner_sid_register)
366
diff --git a/hw/misc/trace-events b/hw/misc/trace-events
367
index XXXXXXX..XXXXXXX 100644
368
--- a/hw/misc/trace-events
369
+++ b/hw/misc/trace-events
370
@@ -XXX,XX +XXX,XX @@ allwinner_cpucfg_cpu_reset(uint8_t cpu_id, uint32_t reset_addr) "id %u, reset_ad
371
allwinner_cpucfg_read(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
372
allwinner_cpucfg_write(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
373
374
+# allwinner-sid.c
375
+allwinner_sid_read(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
376
+allwinner_sid_write(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
377
+
378
# eccmemctl.c
379
ecc_mem_writel_mer(uint32_t val) "Write memory enable 0x%08x"
380
ecc_mem_writel_mdr(uint32_t val) "Write memory delay 0x%08x"
71
--
381
--
72
2.17.1
382
2.20.1
73
383
74
384
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
The Allwinner System on Chip families sun4i and above contain
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
an integrated storage controller for Secure Digital (SD) and
5
Message-id: 20180613015641.5667-5-richard.henderson@linaro.org
5
Multi Media Card (MMC) interfaces. This commit adds support
6
for the Allwinner SD/MMC storage controller with the following
7
emulated features:
8
9
* DMA transfers
10
* Direct FIFO I/O
11
* Short/Long format command responses
12
* Auto-Stop command (CMD12)
13
* Insert & remove card detection
14
15
The following boards are extended with the SD host controller:
16
17
* Cubieboard (hw/arm/cubieboard.c)
18
* Orange Pi PC (hw/arm/orangepi.c)
19
20
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
21
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
22
Tested-by: Philippe Mathieu-Daudé <philmd@redhat.com>
23
Message-id: 20200311221854.30370-9-nieklinnenbank@gmail.com
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
24
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
25
---
8
target/arm/helper-sve.h | 15 ++++++++
26
hw/sd/Makefile.objs | 1 +
9
target/arm/sve_helper.c | 72 ++++++++++++++++++++++++++++++++++++
27
include/hw/arm/allwinner-a10.h | 2 +
10
target/arm/translate-sve.c | 75 ++++++++++++++++++++++++++++++++++++++
28
include/hw/arm/allwinner-h3.h | 3 +
11
target/arm/sve.decode | 10 +++++
29
include/hw/sd/allwinner-sdhost.h | 135 +++++
12
4 files changed, 172 insertions(+)
30
hw/arm/allwinner-a10.c | 11 +
31
hw/arm/allwinner-h3.c | 15 +-
32
hw/arm/cubieboard.c | 15 +
33
hw/arm/orangepi.c | 16 +
34
hw/sd/allwinner-sdhost.c | 854 +++++++++++++++++++++++++++++++
35
hw/arm/Kconfig | 1 +
36
hw/sd/trace-events | 7 +
37
11 files changed, 1059 insertions(+), 1 deletion(-)
38
create mode 100644 include/hw/sd/allwinner-sdhost.h
39
create mode 100644 hw/sd/allwinner-sdhost.c
13
40
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
41
diff --git a/hw/sd/Makefile.objs b/hw/sd/Makefile.objs
15
index XXXXXXX..XXXXXXX 100644
42
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
43
--- a/hw/sd/Makefile.objs
17
+++ b/target/arm/helper-sve.h
44
+++ b/hw/sd/Makefile.objs
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_4(sve_trn_p, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
45
@@ -XXX,XX +XXX,XX @@ common-obj-$(CONFIG_SD) += sd.o core.o sdmmc-internal.o
19
DEF_HELPER_FLAGS_3(sve_rev_p, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
46
common-obj-$(CONFIG_SDHCI) += sdhci.o
20
DEF_HELPER_FLAGS_3(sve_punpk_p, TCG_CALL_NO_RWG, void, ptr, ptr, i32)
47
common-obj-$(CONFIG_SDHCI_PCI) += sdhci-pci.o
21
48
22
+DEF_HELPER_FLAGS_4(sve_zip_b, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
49
+common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-sdhost.o
23
+DEF_HELPER_FLAGS_4(sve_zip_h, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
50
common-obj-$(CONFIG_MILKYMIST) += milkymist-memcard.o
24
+DEF_HELPER_FLAGS_4(sve_zip_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
51
common-obj-$(CONFIG_OMAP) += omap_mmc.o
25
+DEF_HELPER_FLAGS_4(sve_zip_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
52
common-obj-$(CONFIG_PXA2XX) += pxa2xx_mmci.o
26
+
53
diff --git a/include/hw/arm/allwinner-a10.h b/include/hw/arm/allwinner-a10.h
27
+DEF_HELPER_FLAGS_4(sve_uzp_b, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
28
+DEF_HELPER_FLAGS_4(sve_uzp_h, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
29
+DEF_HELPER_FLAGS_4(sve_uzp_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
30
+DEF_HELPER_FLAGS_4(sve_uzp_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
31
+
32
+DEF_HELPER_FLAGS_4(sve_trn_b, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
33
+DEF_HELPER_FLAGS_4(sve_trn_h, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
34
+DEF_HELPER_FLAGS_4(sve_trn_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
35
+DEF_HELPER_FLAGS_4(sve_trn_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
36
+
37
DEF_HELPER_FLAGS_5(sve_and_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
38
DEF_HELPER_FLAGS_5(sve_bic_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
39
DEF_HELPER_FLAGS_5(sve_eor_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
40
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
41
index XXXXXXX..XXXXXXX 100644
54
index XXXXXXX..XXXXXXX 100644
42
--- a/target/arm/sve_helper.c
55
--- a/include/hw/arm/allwinner-a10.h
43
+++ b/target/arm/sve_helper.c
56
+++ b/include/hw/arm/allwinner-a10.h
44
@@ -XXX,XX +XXX,XX @@ void HELPER(sve_punpk_p)(void *vd, void *vn, uint32_t pred_desc)
57
@@ -XXX,XX +XXX,XX @@
58
#include "hw/timer/allwinner-a10-pit.h"
59
#include "hw/intc/allwinner-a10-pic.h"
60
#include "hw/net/allwinner_emac.h"
61
+#include "hw/sd/allwinner-sdhost.h"
62
#include "hw/ide/ahci.h"
63
#include "hw/usb/hcd-ohci.h"
64
#include "hw/usb/hcd-ehci.h"
65
@@ -XXX,XX +XXX,XX @@ typedef struct AwA10State {
66
AwA10PICState intc;
67
AwEmacState emac;
68
AllwinnerAHCIState sata;
69
+ AwSdHostState mmc0;
70
MemoryRegion sram_a;
71
EHCISysBusState ehci[AW_A10_NUM_USB];
72
OHCISysBusState ohci[AW_A10_NUM_USB];
73
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
74
index XXXXXXX..XXXXXXX 100644
75
--- a/include/hw/arm/allwinner-h3.h
76
+++ b/include/hw/arm/allwinner-h3.h
77
@@ -XXX,XX +XXX,XX @@
78
#include "hw/misc/allwinner-cpucfg.h"
79
#include "hw/misc/allwinner-h3-sysctrl.h"
80
#include "hw/misc/allwinner-sid.h"
81
+#include "hw/sd/allwinner-sdhost.h"
82
#include "target/arm/cpu.h"
83
84
/**
85
@@ -XXX,XX +XXX,XX @@ enum {
86
AW_H3_SRAM_A2,
87
AW_H3_SRAM_C,
88
AW_H3_SYSCTRL,
89
+ AW_H3_MMC0,
90
AW_H3_SID,
91
AW_H3_EHCI0,
92
AW_H3_OHCI0,
93
@@ -XXX,XX +XXX,XX @@ typedef struct AwH3State {
94
AwCpuCfgState cpucfg;
95
AwH3SysCtrlState sysctrl;
96
AwSidState sid;
97
+ AwSdHostState mmc0;
98
GICState gic;
99
MemoryRegion sram_a1;
100
MemoryRegion sram_a2;
101
diff --git a/include/hw/sd/allwinner-sdhost.h b/include/hw/sd/allwinner-sdhost.h
102
new file mode 100644
103
index XXXXXXX..XXXXXXX
104
--- /dev/null
105
+++ b/include/hw/sd/allwinner-sdhost.h
106
@@ -XXX,XX +XXX,XX @@
107
+/*
108
+ * Allwinner (sun4i and above) SD Host Controller emulation
109
+ *
110
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
111
+ *
112
+ * This program is free software: you can redistribute it and/or modify
113
+ * it under the terms of the GNU General Public License as published by
114
+ * the Free Software Foundation, either version 2 of the License, or
115
+ * (at your option) any later version.
116
+ *
117
+ * This program is distributed in the hope that it will be useful,
118
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
119
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
120
+ * GNU General Public License for more details.
121
+ *
122
+ * You should have received a copy of the GNU General Public License
123
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
124
+ */
125
+
126
+#ifndef HW_SD_ALLWINNER_SDHOST_H
127
+#define HW_SD_ALLWINNER_SDHOST_H
128
+
129
+#include "qom/object.h"
130
+#include "hw/sysbus.h"
131
+#include "hw/sd/sd.h"
132
+
133
+/**
134
+ * Object model types
135
+ * @{
136
+ */
137
+
138
+/** Generic Allwinner SD Host Controller (abstract) */
139
+#define TYPE_AW_SDHOST "allwinner-sdhost"
140
+
141
+/** Allwinner sun4i family (A10, A12) */
142
+#define TYPE_AW_SDHOST_SUN4I TYPE_AW_SDHOST "-sun4i"
143
+
144
+/** Allwinner sun5i family and newer (A13, H2+, H3, etc) */
145
+#define TYPE_AW_SDHOST_SUN5I TYPE_AW_SDHOST "-sun5i"
146
+
147
+/** @} */
148
+
149
+/**
150
+ * Object model macros
151
+ * @{
152
+ */
153
+
154
+#define AW_SDHOST(obj) \
155
+ OBJECT_CHECK(AwSdHostState, (obj), TYPE_AW_SDHOST)
156
+#define AW_SDHOST_CLASS(klass) \
157
+ OBJECT_CLASS_CHECK(AwSdHostClass, (klass), TYPE_AW_SDHOST)
158
+#define AW_SDHOST_GET_CLASS(obj) \
159
+ OBJECT_GET_CLASS(AwSdHostClass, (obj), TYPE_AW_SDHOST)
160
+
161
+/** @} */
162
+
163
+/**
164
+ * Allwinner SD Host Controller object instance state.
165
+ */
166
+typedef struct AwSdHostState {
167
+ /*< private >*/
168
+ SysBusDevice busdev;
169
+ /*< public >*/
170
+
171
+ /** Secure Digital (SD) bus, which connects to SD card (if present) */
172
+ SDBus sdbus;
173
+
174
+ /** Maps I/O registers in physical memory */
175
+ MemoryRegion iomem;
176
+
177
+ /** Interrupt output signal to notify CPU */
178
+ qemu_irq irq;
179
+
180
+ /** Number of bytes left in current DMA transfer */
181
+ uint32_t transfer_cnt;
182
+
183
+ /**
184
+ * @name Hardware Registers
185
+ * @{
186
+ */
187
+
188
+ uint32_t global_ctl; /**< Global Control */
189
+ uint32_t clock_ctl; /**< Clock Control */
190
+ uint32_t timeout; /**< Timeout */
191
+ uint32_t bus_width; /**< Bus Width */
192
+ uint32_t block_size; /**< Block Size */
193
+ uint32_t byte_count; /**< Byte Count */
194
+
195
+ uint32_t command; /**< Command */
196
+ uint32_t command_arg; /**< Command Argument */
197
+ uint32_t response[4]; /**< Command Response */
198
+
199
+ uint32_t irq_mask; /**< Interrupt Mask */
200
+ uint32_t irq_status; /**< Raw Interrupt Status */
201
+ uint32_t status; /**< Status */
202
+
203
+ uint32_t fifo_wlevel; /**< FIFO Water Level */
204
+ uint32_t fifo_func_sel; /**< FIFO Function Select */
205
+ uint32_t debug_enable; /**< Debug Enable */
206
+ uint32_t auto12_arg; /**< Auto Command 12 Argument */
207
+ uint32_t newtiming_set; /**< SD New Timing Set */
208
+ uint32_t newtiming_debug; /**< SD New Timing Debug */
209
+ uint32_t hardware_rst; /**< Hardware Reset */
210
+ uint32_t dmac; /**< Internal DMA Controller Control */
211
+ uint32_t desc_base; /**< Descriptor List Base Address */
212
+ uint32_t dmac_status; /**< Internal DMA Controller Status */
213
+ uint32_t dmac_irq; /**< Internal DMA Controller IRQ Enable */
214
+ uint32_t card_threshold; /**< Card Threshold Control */
215
+ uint32_t startbit_detect; /**< eMMC DDR Start Bit Detection Control */
216
+ uint32_t response_crc; /**< Response CRC */
217
+ uint32_t data_crc[8]; /**< Data CRC */
218
+ uint32_t status_crc; /**< Status CRC */
219
+
220
+ /** @} */
221
+
222
+} AwSdHostState;
223
+
224
+/**
225
+ * Allwinner SD Host Controller class-level struct.
226
+ *
227
+ * This struct is filled by each sunxi device specific code
228
+ * such that the generic code can use this struct to support
229
+ * all devices.
230
+ */
231
+typedef struct AwSdHostClass {
232
+ /*< private >*/
233
+ SysBusDeviceClass parent_class;
234
+ /*< public >*/
235
+
236
+ /** Maximum buffer size in bytes per DMA descriptor */
237
+ size_t max_desc_size;
238
+
239
+} AwSdHostClass;
240
+
241
+#endif /* HW_SD_ALLWINNER_SDHOST_H */
242
diff --git a/hw/arm/allwinner-a10.c b/hw/arm/allwinner-a10.c
243
index XXXXXXX..XXXXXXX 100644
244
--- a/hw/arm/allwinner-a10.c
245
+++ b/hw/arm/allwinner-a10.c
246
@@ -XXX,XX +XXX,XX @@
247
#include "hw/boards.h"
248
#include "hw/usb/hcd-ohci.h"
249
250
+#define AW_A10_MMC0_BASE 0x01c0f000
251
#define AW_A10_PIC_REG_BASE 0x01c20400
252
#define AW_A10_PIT_REG_BASE 0x01c20c00
253
#define AW_A10_UART0_REG_BASE 0x01c28000
254
@@ -XXX,XX +XXX,XX @@ static void aw_a10_init(Object *obj)
255
sizeof(s->ohci[i]), TYPE_SYSBUS_OHCI);
45
}
256
}
46
}
257
}
258
+
259
+ sysbus_init_child_obj(obj, "mmc0", &s->mmc0, sizeof(s->mmc0),
260
+ TYPE_AW_SDHOST_SUN4I);
47
}
261
}
48
+
262
49
+#define DO_ZIP(NAME, TYPE, H) \
263
static void aw_a10_realize(DeviceState *dev, Error **errp)
50
+void HELPER(NAME)(void *vd, void *vn, void *vm, uint32_t desc) \
264
@@ -XXX,XX +XXX,XX @@ static void aw_a10_realize(DeviceState *dev, Error **errp)
51
+{ \
265
qdev_get_gpio_in(dev, 64 + i));
52
+ intptr_t oprsz = simd_oprsz(desc); \
266
}
53
+ intptr_t i, oprsz_2 = oprsz / 2; \
267
}
54
+ ARMVectorReg tmp_n, tmp_m; \
268
+
55
+ /* We produce output faster than we consume input. \
269
+ /* SD/MMC */
56
+ Therefore we must be mindful of possible overlap. */ \
270
+ qdev_init_nofail(DEVICE(&s->mmc0));
57
+ if (unlikely((vn - vd) < (uintptr_t)oprsz)) { \
271
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->mmc0), 0, AW_A10_MMC0_BASE);
58
+ vn = memcpy(&tmp_n, vn, oprsz_2); \
272
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->mmc0), 0, qdev_get_gpio_in(dev, 32));
59
+ } \
273
+ object_property_add_alias(OBJECT(s), "sd-bus", OBJECT(&s->mmc0),
60
+ if (unlikely((vm - vd) < (uintptr_t)oprsz)) { \
274
+ "sd-bus", &error_abort);
61
+ vm = memcpy(&tmp_m, vm, oprsz_2); \
275
}
62
+ } \
276
63
+ for (i = 0; i < oprsz_2; i += sizeof(TYPE)) { \
277
static void aw_a10_class_init(ObjectClass *oc, void *data)
64
+ *(TYPE *)(vd + H(2 * i + 0)) = *(TYPE *)(vn + H(i)); \
278
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
65
+ *(TYPE *)(vd + H(2 * i + sizeof(TYPE))) = *(TYPE *)(vm + H(i)); \
66
+ } \
67
+}
68
+
69
+DO_ZIP(sve_zip_b, uint8_t, H1)
70
+DO_ZIP(sve_zip_h, uint16_t, H1_2)
71
+DO_ZIP(sve_zip_s, uint32_t, H1_4)
72
+DO_ZIP(sve_zip_d, uint64_t, )
73
+
74
+#define DO_UZP(NAME, TYPE, H) \
75
+void HELPER(NAME)(void *vd, void *vn, void *vm, uint32_t desc) \
76
+{ \
77
+ intptr_t oprsz = simd_oprsz(desc); \
78
+ intptr_t oprsz_2 = oprsz / 2; \
79
+ intptr_t odd_ofs = simd_data(desc); \
80
+ intptr_t i; \
81
+ ARMVectorReg tmp_m; \
82
+ if (unlikely((vm - vd) < (uintptr_t)oprsz)) { \
83
+ vm = memcpy(&tmp_m, vm, oprsz); \
84
+ } \
85
+ for (i = 0; i < oprsz_2; i += sizeof(TYPE)) { \
86
+ *(TYPE *)(vd + H(i)) = *(TYPE *)(vn + H(2 * i + odd_ofs)); \
87
+ } \
88
+ for (i = 0; i < oprsz_2; i += sizeof(TYPE)) { \
89
+ *(TYPE *)(vd + H(oprsz_2 + i)) = *(TYPE *)(vm + H(2 * i + odd_ofs)); \
90
+ } \
91
+}
92
+
93
+DO_UZP(sve_uzp_b, uint8_t, H1)
94
+DO_UZP(sve_uzp_h, uint16_t, H1_2)
95
+DO_UZP(sve_uzp_s, uint32_t, H1_4)
96
+DO_UZP(sve_uzp_d, uint64_t, )
97
+
98
+#define DO_TRN(NAME, TYPE, H) \
99
+void HELPER(NAME)(void *vd, void *vn, void *vm, uint32_t desc) \
100
+{ \
101
+ intptr_t oprsz = simd_oprsz(desc); \
102
+ intptr_t odd_ofs = simd_data(desc); \
103
+ intptr_t i; \
104
+ for (i = 0; i < oprsz; i += 2 * sizeof(TYPE)) { \
105
+ TYPE ae = *(TYPE *)(vn + H(i + odd_ofs)); \
106
+ TYPE be = *(TYPE *)(vm + H(i + odd_ofs)); \
107
+ *(TYPE *)(vd + H(i + 0)) = ae; \
108
+ *(TYPE *)(vd + H(i + sizeof(TYPE))) = be; \
109
+ } \
110
+}
111
+
112
+DO_TRN(sve_trn_b, uint8_t, H1)
113
+DO_TRN(sve_trn_h, uint16_t, H1_2)
114
+DO_TRN(sve_trn_s, uint32_t, H1_4)
115
+DO_TRN(sve_trn_d, uint64_t, )
116
+
117
+#undef DO_ZIP
118
+#undef DO_UZP
119
+#undef DO_TRN
120
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
121
index XXXXXXX..XXXXXXX 100644
279
index XXXXXXX..XXXXXXX 100644
122
--- a/target/arm/translate-sve.c
280
--- a/hw/arm/allwinner-h3.c
123
+++ b/target/arm/translate-sve.c
281
+++ b/hw/arm/allwinner-h3.c
124
@@ -XXX,XX +XXX,XX @@ static bool trans_PUNPKHI(DisasContext *s, arg_PUNPKHI *a, uint32_t insn)
282
@@ -XXX,XX +XXX,XX @@ const hwaddr allwinner_h3_memmap[] = {
125
return do_perm_pred2(s, a, 1, gen_helper_sve_punpk_p);
283
[AW_H3_SRAM_A2] = 0x00044000,
284
[AW_H3_SRAM_C] = 0x00010000,
285
[AW_H3_SYSCTRL] = 0x01c00000,
286
+ [AW_H3_MMC0] = 0x01c0f000,
287
[AW_H3_SID] = 0x01c14000,
288
[AW_H3_EHCI0] = 0x01c1a000,
289
[AW_H3_OHCI0] = 0x01c1a400,
290
@@ -XXX,XX +XXX,XX @@ struct AwH3Unimplemented {
291
{ "lcd0", 0x01c0c000, 4 * KiB },
292
{ "lcd1", 0x01c0d000, 4 * KiB },
293
{ "ve", 0x01c0e000, 4 * KiB },
294
- { "mmc0", 0x01c0f000, 4 * KiB },
295
{ "mmc1", 0x01c10000, 4 * KiB },
296
{ "mmc2", 0x01c11000, 4 * KiB },
297
{ "crypto", 0x01c15000, 4 * KiB },
298
@@ -XXX,XX +XXX,XX @@ enum {
299
AW_H3_GIC_SPI_UART3 = 3,
300
AW_H3_GIC_SPI_TIMER0 = 18,
301
AW_H3_GIC_SPI_TIMER1 = 19,
302
+ AW_H3_GIC_SPI_MMC0 = 60,
303
AW_H3_GIC_SPI_EHCI0 = 72,
304
AW_H3_GIC_SPI_OHCI0 = 73,
305
AW_H3_GIC_SPI_EHCI1 = 74,
306
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_init(Object *obj)
307
TYPE_AW_SID);
308
object_property_add_alias(obj, "identifier", OBJECT(&s->sid),
309
"identifier", &error_abort);
310
+
311
+ sysbus_init_child_obj(obj, "mmc0", &s->mmc0, sizeof(s->mmc0),
312
+ TYPE_AW_SDHOST_SUN5I);
126
}
313
}
127
314
315
static void allwinner_h3_realize(DeviceState *dev, Error **errp)
316
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_realize(DeviceState *dev, Error **errp)
317
qdev_init_nofail(DEVICE(&s->sid));
318
sysbus_mmio_map(SYS_BUS_DEVICE(&s->sid), 0, s->memmap[AW_H3_SID]);
319
320
+ /* SD/MMC */
321
+ qdev_init_nofail(DEVICE(&s->mmc0));
322
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->mmc0), 0, s->memmap[AW_H3_MMC0]);
323
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->mmc0), 0,
324
+ qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_MMC0));
325
+
326
+ object_property_add_alias(OBJECT(s), "sd-bus", OBJECT(&s->mmc0),
327
+ "sd-bus", &error_abort);
328
+
329
/* Universal Serial Bus */
330
sysbus_create_simple(TYPE_AW_H3_EHCI, s->memmap[AW_H3_EHCI0],
331
qdev_get_gpio_in(DEVICE(&s->gic),
332
diff --git a/hw/arm/cubieboard.c b/hw/arm/cubieboard.c
333
index XXXXXXX..XXXXXXX 100644
334
--- a/hw/arm/cubieboard.c
335
+++ b/hw/arm/cubieboard.c
336
@@ -XXX,XX +XXX,XX @@
337
#include "sysemu/sysemu.h"
338
#include "hw/sysbus.h"
339
#include "hw/boards.h"
340
+#include "hw/qdev-properties.h"
341
#include "hw/arm/allwinner-a10.h"
342
343
static struct arm_boot_info cubieboard_binfo = {
344
@@ -XXX,XX +XXX,XX @@ static void cubieboard_init(MachineState *machine)
345
{
346
AwA10State *a10;
347
Error *err = NULL;
348
+ DriveInfo *di;
349
+ BlockBackend *blk;
350
+ BusState *bus;
351
+ DeviceState *carddev;
352
353
/* BIOS is not supported by this board */
354
if (bios_name) {
355
@@ -XXX,XX +XXX,XX @@ static void cubieboard_init(MachineState *machine)
356
exit(1);
357
}
358
359
+ /* Retrieve SD bus */
360
+ di = drive_get_next(IF_SD);
361
+ blk = di ? blk_by_legacy_dinfo(di) : NULL;
362
+ bus = qdev_get_child_bus(DEVICE(a10), "sd-bus");
363
+
364
+ /* Plug in SD card */
365
+ carddev = qdev_create(bus, TYPE_SD_CARD);
366
+ qdev_prop_set_drive(carddev, "drive", blk, &error_fatal);
367
+ object_property_set_bool(OBJECT(carddev), true, "realized", &error_fatal);
368
+
369
memory_region_add_subregion(get_system_memory(), AW_A10_SDRAM_BASE,
370
machine->ram);
371
372
diff --git a/hw/arm/orangepi.c b/hw/arm/orangepi.c
373
index XXXXXXX..XXXXXXX 100644
374
--- a/hw/arm/orangepi.c
375
+++ b/hw/arm/orangepi.c
376
@@ -XXX,XX +XXX,XX @@ static struct arm_boot_info orangepi_binfo = {
377
static void orangepi_init(MachineState *machine)
378
{
379
AwH3State *h3;
380
+ DriveInfo *di;
381
+ BlockBackend *blk;
382
+ BusState *bus;
383
+ DeviceState *carddev;
384
385
/* BIOS is not supported by this board */
386
if (bios_name) {
387
@@ -XXX,XX +XXX,XX @@ static void orangepi_init(MachineState *machine)
388
/* Mark H3 object realized */
389
object_property_set_bool(OBJECT(h3), true, "realized", &error_abort);
390
391
+ /* Retrieve SD bus */
392
+ di = drive_get_next(IF_SD);
393
+ blk = di ? blk_by_legacy_dinfo(di) : NULL;
394
+ bus = qdev_get_child_bus(DEVICE(h3), "sd-bus");
395
+
396
+ /* Plug in SD card */
397
+ carddev = qdev_create(bus, TYPE_SD_CARD);
398
+ qdev_prop_set_drive(carddev, "drive", blk, &error_fatal);
399
+ object_property_set_bool(OBJECT(carddev), true, "realized", &error_fatal);
400
+
401
/* SDRAM */
402
memory_region_add_subregion(get_system_memory(), h3->memmap[AW_H3_SDRAM],
403
machine->ram);
404
@@ -XXX,XX +XXX,XX @@ static void orangepi_machine_init(MachineClass *mc)
405
{
406
mc->desc = "Orange Pi PC";
407
mc->init = orangepi_init;
408
+ mc->block_default_type = IF_SD;
409
+ mc->units_per_default_bus = 1;
410
mc->min_cpus = AW_H3_NUM_CPUS;
411
mc->max_cpus = AW_H3_NUM_CPUS;
412
mc->default_cpus = AW_H3_NUM_CPUS;
413
diff --git a/hw/sd/allwinner-sdhost.c b/hw/sd/allwinner-sdhost.c
414
new file mode 100644
415
index XXXXXXX..XXXXXXX
416
--- /dev/null
417
+++ b/hw/sd/allwinner-sdhost.c
418
@@ -XXX,XX +XXX,XX @@
128
+/*
419
+/*
129
+ *** SVE Permute - Interleaving Group
420
+ * Allwinner (sun4i and above) SD Host Controller emulation
421
+ *
422
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
423
+ *
424
+ * This program is free software: you can redistribute it and/or modify
425
+ * it under the terms of the GNU General Public License as published by
426
+ * the Free Software Foundation, either version 2 of the License, or
427
+ * (at your option) any later version.
428
+ *
429
+ * This program is distributed in the hope that it will be useful,
430
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
431
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
432
+ * GNU General Public License for more details.
433
+ *
434
+ * You should have received a copy of the GNU General Public License
435
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
130
+ */
436
+ */
131
+
437
+
132
+static bool do_zip(DisasContext *s, arg_rrr_esz *a, bool high)
438
+#include "qemu/osdep.h"
133
+{
439
+#include "qemu/log.h"
134
+ static gen_helper_gvec_3 * const fns[4] = {
440
+#include "qemu/module.h"
135
+ gen_helper_sve_zip_b, gen_helper_sve_zip_h,
441
+#include "qemu/units.h"
136
+ gen_helper_sve_zip_s, gen_helper_sve_zip_d,
442
+#include "sysemu/blockdev.h"
137
+ };
443
+#include "hw/irq.h"
138
+
444
+#include "hw/sd/allwinner-sdhost.h"
139
+ if (sve_access_check(s)) {
445
+#include "migration/vmstate.h"
140
+ unsigned vsz = vec_full_reg_size(s);
446
+#include "trace.h"
141
+ unsigned high_ofs = high ? vsz / 2 : 0;
447
+
142
+ tcg_gen_gvec_3_ool(vec_full_reg_offset(s, a->rd),
448
+#define TYPE_AW_SDHOST_BUS "allwinner-sdhost-bus"
143
+ vec_full_reg_offset(s, a->rn) + high_ofs,
449
+#define AW_SDHOST_BUS(obj) \
144
+ vec_full_reg_offset(s, a->rm) + high_ofs,
450
+ OBJECT_CHECK(SDBus, (obj), TYPE_AW_SDHOST_BUS)
145
+ vsz, vsz, 0, fns[a->esz]);
451
+
146
+ }
452
+/* SD Host register offsets */
147
+ return true;
453
+enum {
148
+}
454
+ REG_SD_GCTL = 0x00, /* Global Control */
149
+
455
+ REG_SD_CKCR = 0x04, /* Clock Control */
150
+static bool do_zzz_data_ool(DisasContext *s, arg_rrr_esz *a, int data,
456
+ REG_SD_TMOR = 0x08, /* Timeout */
151
+ gen_helper_gvec_3 *fn)
457
+ REG_SD_BWDR = 0x0C, /* Bus Width */
152
+{
458
+ REG_SD_BKSR = 0x10, /* Block Size */
153
+ if (sve_access_check(s)) {
459
+ REG_SD_BYCR = 0x14, /* Byte Count */
154
+ unsigned vsz = vec_full_reg_size(s);
460
+ REG_SD_CMDR = 0x18, /* Command */
155
+ tcg_gen_gvec_3_ool(vec_full_reg_offset(s, a->rd),
461
+ REG_SD_CAGR = 0x1C, /* Command Argument */
156
+ vec_full_reg_offset(s, a->rn),
462
+ REG_SD_RESP0 = 0x20, /* Response Zero */
157
+ vec_full_reg_offset(s, a->rm),
463
+ REG_SD_RESP1 = 0x24, /* Response One */
158
+ vsz, vsz, data, fn);
464
+ REG_SD_RESP2 = 0x28, /* Response Two */
159
+ }
465
+ REG_SD_RESP3 = 0x2C, /* Response Three */
160
+ return true;
466
+ REG_SD_IMKR = 0x30, /* Interrupt Mask */
161
+}
467
+ REG_SD_MISR = 0x34, /* Masked Interrupt Status */
162
+
468
+ REG_SD_RISR = 0x38, /* Raw Interrupt Status */
163
+static bool trans_ZIP1_z(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
469
+ REG_SD_STAR = 0x3C, /* Status */
164
+{
470
+ REG_SD_FWLR = 0x40, /* FIFO Water Level */
165
+ return do_zip(s, a, false);
471
+ REG_SD_FUNS = 0x44, /* FIFO Function Select */
166
+}
472
+ REG_SD_DBGC = 0x50, /* Debug Enable */
167
+
473
+ REG_SD_A12A = 0x58, /* Auto command 12 argument */
168
+static bool trans_ZIP2_z(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
474
+ REG_SD_NTSR = 0x5C, /* SD NewTiming Set */
169
+{
475
+ REG_SD_SDBG = 0x60, /* SD newTiming Set Debug */
170
+ return do_zip(s, a, true);
476
+ REG_SD_HWRST = 0x78, /* Hardware Reset Register */
171
+}
477
+ REG_SD_DMAC = 0x80, /* Internal DMA Controller Control */
172
+
478
+ REG_SD_DLBA = 0x84, /* Descriptor List Base Address */
173
+static gen_helper_gvec_3 * const uzp_fns[4] = {
479
+ REG_SD_IDST = 0x88, /* Internal DMA Controller Status */
174
+ gen_helper_sve_uzp_b, gen_helper_sve_uzp_h,
480
+ REG_SD_IDIE = 0x8C, /* Internal DMA Controller IRQ Enable */
175
+ gen_helper_sve_uzp_s, gen_helper_sve_uzp_d,
481
+ REG_SD_THLDC = 0x100, /* Card Threshold Control */
482
+ REG_SD_DSBD = 0x10C, /* eMMC DDR Start Bit Detection Control */
483
+ REG_SD_RES_CRC = 0x110, /* Response CRC from card/eMMC */
484
+ REG_SD_DATA7_CRC = 0x114, /* CRC Data 7 from card/eMMC */
485
+ REG_SD_DATA6_CRC = 0x118, /* CRC Data 6 from card/eMMC */
486
+ REG_SD_DATA5_CRC = 0x11C, /* CRC Data 5 from card/eMMC */
487
+ REG_SD_DATA4_CRC = 0x120, /* CRC Data 4 from card/eMMC */
488
+ REG_SD_DATA3_CRC = 0x124, /* CRC Data 3 from card/eMMC */
489
+ REG_SD_DATA2_CRC = 0x128, /* CRC Data 2 from card/eMMC */
490
+ REG_SD_DATA1_CRC = 0x12C, /* CRC Data 1 from card/eMMC */
491
+ REG_SD_DATA0_CRC = 0x130, /* CRC Data 0 from card/eMMC */
492
+ REG_SD_CRC_STA = 0x134, /* CRC status from card/eMMC during write */
493
+ REG_SD_FIFO = 0x200, /* Read/Write FIFO */
176
+};
494
+};
177
+
495
+
178
+static bool trans_UZP1_z(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
496
+/* SD Host register flags */
179
+{
497
+enum {
180
+ return do_zzz_data_ool(s, a, 0, uzp_fns[a->esz]);
498
+ SD_GCTL_FIFO_AC_MOD = (1 << 31),
181
+}
499
+ SD_GCTL_DDR_MOD_SEL = (1 << 10),
182
+
500
+ SD_GCTL_CD_DBC_ENB = (1 << 8),
183
+static bool trans_UZP2_z(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
501
+ SD_GCTL_DMA_ENB = (1 << 5),
184
+{
502
+ SD_GCTL_INT_ENB = (1 << 4),
185
+ return do_zzz_data_ool(s, a, 1 << a->esz, uzp_fns[a->esz]);
503
+ SD_GCTL_DMA_RST = (1 << 2),
186
+}
504
+ SD_GCTL_FIFO_RST = (1 << 1),
187
+
505
+ SD_GCTL_SOFT_RST = (1 << 0),
188
+static gen_helper_gvec_3 * const trn_fns[4] = {
189
+ gen_helper_sve_trn_b, gen_helper_sve_trn_h,
190
+ gen_helper_sve_trn_s, gen_helper_sve_trn_d,
191
+};
506
+};
192
+
507
+
193
+static bool trans_TRN1_z(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
508
+enum {
194
+{
509
+ SD_CMDR_LOAD = (1 << 31),
195
+ return do_zzz_data_ool(s, a, 0, trn_fns[a->esz]);
510
+ SD_CMDR_CLKCHANGE = (1 << 21),
196
+}
511
+ SD_CMDR_WRITE = (1 << 10),
197
+
512
+ SD_CMDR_AUTOSTOP = (1 << 12),
198
+static bool trans_TRN2_z(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
513
+ SD_CMDR_DATA = (1 << 9),
199
+{
514
+ SD_CMDR_RESPONSE_LONG = (1 << 7),
200
+ return do_zzz_data_ool(s, a, 1 << a->esz, trn_fns[a->esz]);
515
+ SD_CMDR_RESPONSE = (1 << 6),
201
+}
516
+ SD_CMDR_CMDID_MASK = (0x3f),
202
+
517
+};
203
/*
518
+
204
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
519
+enum {
205
*/
520
+ SD_RISR_CARD_REMOVE = (1 << 31),
206
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
521
+ SD_RISR_CARD_INSERT = (1 << 30),
522
+ SD_RISR_SDIO_INTR = (1 << 16),
523
+ SD_RISR_AUTOCMD_DONE = (1 << 14),
524
+ SD_RISR_DATA_COMPLETE = (1 << 3),
525
+ SD_RISR_CMD_COMPLETE = (1 << 2),
526
+ SD_RISR_NO_RESPONSE = (1 << 1),
527
+};
528
+
529
+enum {
530
+ SD_STAR_CARD_PRESENT = (1 << 8),
531
+};
532
+
533
+enum {
534
+ SD_IDST_INT_SUMMARY = (1 << 8),
535
+ SD_IDST_RECEIVE_IRQ = (1 << 1),
536
+ SD_IDST_TRANSMIT_IRQ = (1 << 0),
537
+ SD_IDST_IRQ_MASK = (1 << 1) | (1 << 0) | (1 << 8),
538
+ SD_IDST_WR_MASK = (0x3ff),
539
+};
540
+
541
+/* SD Host register reset values */
542
+enum {
543
+ REG_SD_GCTL_RST = 0x00000300,
544
+ REG_SD_CKCR_RST = 0x0,
545
+ REG_SD_TMOR_RST = 0xFFFFFF40,
546
+ REG_SD_BWDR_RST = 0x0,
547
+ REG_SD_BKSR_RST = 0x00000200,
548
+ REG_SD_BYCR_RST = 0x00000200,
549
+ REG_SD_CMDR_RST = 0x0,
550
+ REG_SD_CAGR_RST = 0x0,
551
+ REG_SD_RESP_RST = 0x0,
552
+ REG_SD_IMKR_RST = 0x0,
553
+ REG_SD_MISR_RST = 0x0,
554
+ REG_SD_RISR_RST = 0x0,
555
+ REG_SD_STAR_RST = 0x00000100,
556
+ REG_SD_FWLR_RST = 0x000F0000,
557
+ REG_SD_FUNS_RST = 0x0,
558
+ REG_SD_DBGC_RST = 0x0,
559
+ REG_SD_A12A_RST = 0x0000FFFF,
560
+ REG_SD_NTSR_RST = 0x00000001,
561
+ REG_SD_SDBG_RST = 0x0,
562
+ REG_SD_HWRST_RST = 0x00000001,
563
+ REG_SD_DMAC_RST = 0x0,
564
+ REG_SD_DLBA_RST = 0x0,
565
+ REG_SD_IDST_RST = 0x0,
566
+ REG_SD_IDIE_RST = 0x0,
567
+ REG_SD_THLDC_RST = 0x0,
568
+ REG_SD_DSBD_RST = 0x0,
569
+ REG_SD_RES_CRC_RST = 0x0,
570
+ REG_SD_DATA_CRC_RST = 0x0,
571
+ REG_SD_CRC_STA_RST = 0x0,
572
+ REG_SD_FIFO_RST = 0x0,
573
+};
574
+
575
+/* Data transfer descriptor for DMA */
576
+typedef struct TransferDescriptor {
577
+ uint32_t status; /* Status flags */
578
+ uint32_t size; /* Data buffer size */
579
+ uint32_t addr; /* Data buffer address */
580
+ uint32_t next; /* Physical address of next descriptor */
581
+} TransferDescriptor;
582
+
583
+/* Data transfer descriptor flags */
584
+enum {
585
+ DESC_STATUS_HOLD = (1 << 31), /* Set when descriptor is in use by DMA */
586
+ DESC_STATUS_ERROR = (1 << 30), /* Set when DMA transfer error occurred */
587
+ DESC_STATUS_CHAIN = (1 << 4), /* Indicates chained descriptor. */
588
+ DESC_STATUS_FIRST = (1 << 3), /* Set on the first descriptor */
589
+ DESC_STATUS_LAST = (1 << 2), /* Set on the last descriptor */
590
+ DESC_STATUS_NOIRQ = (1 << 1), /* Skip raising interrupt after transfer */
591
+ DESC_SIZE_MASK = (0xfffffffc)
592
+};
593
+
594
+static void allwinner_sdhost_update_irq(AwSdHostState *s)
595
+{
596
+ uint32_t irq;
597
+
598
+ if (s->global_ctl & SD_GCTL_INT_ENB) {
599
+ irq = s->irq_status & s->irq_mask;
600
+ } else {
601
+ irq = 0;
602
+ }
603
+
604
+ trace_allwinner_sdhost_update_irq(irq);
605
+ qemu_set_irq(s->irq, irq);
606
+}
607
+
608
+static void allwinner_sdhost_update_transfer_cnt(AwSdHostState *s,
609
+ uint32_t bytes)
610
+{
611
+ if (s->transfer_cnt > bytes) {
612
+ s->transfer_cnt -= bytes;
613
+ } else {
614
+ s->transfer_cnt = 0;
615
+ }
616
+
617
+ if (!s->transfer_cnt) {
618
+ s->irq_status |= SD_RISR_DATA_COMPLETE;
619
+ }
620
+}
621
+
622
+static void allwinner_sdhost_set_inserted(DeviceState *dev, bool inserted)
623
+{
624
+ AwSdHostState *s = AW_SDHOST(dev);
625
+
626
+ trace_allwinner_sdhost_set_inserted(inserted);
627
+
628
+ if (inserted) {
629
+ s->irq_status |= SD_RISR_CARD_INSERT;
630
+ s->irq_status &= ~SD_RISR_CARD_REMOVE;
631
+ s->status |= SD_STAR_CARD_PRESENT;
632
+ } else {
633
+ s->irq_status &= ~SD_RISR_CARD_INSERT;
634
+ s->irq_status |= SD_RISR_CARD_REMOVE;
635
+ s->status &= ~SD_STAR_CARD_PRESENT;
636
+ }
637
+
638
+ allwinner_sdhost_update_irq(s);
639
+}
640
+
641
+static void allwinner_sdhost_send_command(AwSdHostState *s)
642
+{
643
+ SDRequest request;
644
+ uint8_t resp[16];
645
+ int rlen;
646
+
647
+ /* Auto clear load flag */
648
+ s->command &= ~SD_CMDR_LOAD;
649
+
650
+ /* Clock change does not actually interact with the SD bus */
651
+ if (!(s->command & SD_CMDR_CLKCHANGE)) {
652
+
653
+ /* Prepare request */
654
+ request.cmd = s->command & SD_CMDR_CMDID_MASK;
655
+ request.arg = s->command_arg;
656
+
657
+ /* Send request to SD bus */
658
+ rlen = sdbus_do_command(&s->sdbus, &request, resp);
659
+ if (rlen < 0) {
660
+ goto error;
661
+ }
662
+
663
+ /* If the command has a response, store it in the response registers */
664
+ if ((s->command & SD_CMDR_RESPONSE)) {
665
+ if (rlen == 4 && !(s->command & SD_CMDR_RESPONSE_LONG)) {
666
+ s->response[0] = ldl_be_p(&resp[0]);
667
+ s->response[1] = s->response[2] = s->response[3] = 0;
668
+
669
+ } else if (rlen == 16 && (s->command & SD_CMDR_RESPONSE_LONG)) {
670
+ s->response[0] = ldl_be_p(&resp[12]);
671
+ s->response[1] = ldl_be_p(&resp[8]);
672
+ s->response[2] = ldl_be_p(&resp[4]);
673
+ s->response[3] = ldl_be_p(&resp[0]);
674
+ } else {
675
+ goto error;
676
+ }
677
+ }
678
+ }
679
+
680
+ /* Set interrupt status bits */
681
+ s->irq_status |= SD_RISR_CMD_COMPLETE;
682
+ return;
683
+
684
+error:
685
+ s->irq_status |= SD_RISR_NO_RESPONSE;
686
+}
687
+
688
+static void allwinner_sdhost_auto_stop(AwSdHostState *s)
689
+{
690
+ /*
691
+ * The stop command (CMD12) ensures the SD bus
692
+ * returns to the transfer state.
693
+ */
694
+ if ((s->command & SD_CMDR_AUTOSTOP) && (s->transfer_cnt == 0)) {
695
+ /* First save current command registers */
696
+ uint32_t saved_cmd = s->command;
697
+ uint32_t saved_arg = s->command_arg;
698
+
699
+ /* Prepare stop command (CMD12) */
700
+ s->command &= ~SD_CMDR_CMDID_MASK;
701
+ s->command |= 12; /* CMD12 */
702
+ s->command_arg = 0;
703
+
704
+ /* Put the command on SD bus */
705
+ allwinner_sdhost_send_command(s);
706
+
707
+ /* Restore command values */
708
+ s->command = saved_cmd;
709
+ s->command_arg = saved_arg;
710
+
711
+ /* Set IRQ status bit for automatic stop done */
712
+ s->irq_status |= SD_RISR_AUTOCMD_DONE;
713
+ }
714
+}
715
+
716
+static uint32_t allwinner_sdhost_process_desc(AwSdHostState *s,
717
+ hwaddr desc_addr,
718
+ TransferDescriptor *desc,
719
+ bool is_write, uint32_t max_bytes)
720
+{
721
+ AwSdHostClass *klass = AW_SDHOST_GET_CLASS(s);
722
+ uint32_t num_done = 0;
723
+ uint32_t num_bytes = max_bytes;
724
+ uint8_t buf[1024];
725
+
726
+ /* Read descriptor */
727
+ cpu_physical_memory_read(desc_addr, desc, sizeof(*desc));
728
+ if (desc->size == 0) {
729
+ desc->size = klass->max_desc_size;
730
+ } else if (desc->size > klass->max_desc_size) {
731
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: DMA descriptor buffer size "
732
+ " is out-of-bounds: %" PRIu32 " > %zu",
733
+ __func__, desc->size, klass->max_desc_size);
734
+ desc->size = klass->max_desc_size;
735
+ }
736
+ if (desc->size < num_bytes) {
737
+ num_bytes = desc->size;
738
+ }
739
+
740
+ trace_allwinner_sdhost_process_desc(desc_addr, desc->size,
741
+ is_write, max_bytes);
742
+
743
+ while (num_done < num_bytes) {
744
+ /* Try to completely fill the local buffer */
745
+ uint32_t buf_bytes = num_bytes - num_done;
746
+ if (buf_bytes > sizeof(buf)) {
747
+ buf_bytes = sizeof(buf);
748
+ }
749
+
750
+ /* Write to SD bus */
751
+ if (is_write) {
752
+ cpu_physical_memory_read((desc->addr & DESC_SIZE_MASK) + num_done,
753
+ buf, buf_bytes);
754
+
755
+ for (uint32_t i = 0; i < buf_bytes; i++) {
756
+ sdbus_write_data(&s->sdbus, buf[i]);
757
+ }
758
+
759
+ /* Read from SD bus */
760
+ } else {
761
+ for (uint32_t i = 0; i < buf_bytes; i++) {
762
+ buf[i] = sdbus_read_data(&s->sdbus);
763
+ }
764
+ cpu_physical_memory_write((desc->addr & DESC_SIZE_MASK) + num_done,
765
+ buf, buf_bytes);
766
+ }
767
+ num_done += buf_bytes;
768
+ }
769
+
770
+ /* Clear hold flag and flush descriptor */
771
+ desc->status &= ~DESC_STATUS_HOLD;
772
+ cpu_physical_memory_write(desc_addr, desc, sizeof(*desc));
773
+
774
+ return num_done;
775
+}
776
+
777
+static void allwinner_sdhost_dma(AwSdHostState *s)
778
+{
779
+ TransferDescriptor desc;
780
+ hwaddr desc_addr = s->desc_base;
781
+ bool is_write = (s->command & SD_CMDR_WRITE);
782
+ uint32_t bytes_done = 0;
783
+
784
+ /* Check if DMA can be performed */
785
+ if (s->byte_count == 0 || s->block_size == 0 ||
786
+ !(s->global_ctl & SD_GCTL_DMA_ENB)) {
787
+ return;
788
+ }
789
+
790
+ /*
791
+ * For read operations, data must be available on the SD bus
792
+ * If not, it is an error and we should not act at all
793
+ */
794
+ if (!is_write && !sdbus_data_ready(&s->sdbus)) {
795
+ return;
796
+ }
797
+
798
+ /* Process the DMA descriptors until all data is copied */
799
+ while (s->byte_count > 0) {
800
+ bytes_done = allwinner_sdhost_process_desc(s, desc_addr, &desc,
801
+ is_write, s->byte_count);
802
+ allwinner_sdhost_update_transfer_cnt(s, bytes_done);
803
+
804
+ if (bytes_done <= s->byte_count) {
805
+ s->byte_count -= bytes_done;
806
+ } else {
807
+ s->byte_count = 0;
808
+ }
809
+
810
+ if (desc.status & DESC_STATUS_LAST) {
811
+ break;
812
+ } else {
813
+ desc_addr = desc.next;
814
+ }
815
+ }
816
+
817
+ /* Raise IRQ to signal DMA is completed */
818
+ s->irq_status |= SD_RISR_DATA_COMPLETE | SD_RISR_SDIO_INTR;
819
+
820
+ /* Update DMAC bits */
821
+ s->dmac_status |= SD_IDST_INT_SUMMARY;
822
+
823
+ if (is_write) {
824
+ s->dmac_status |= SD_IDST_TRANSMIT_IRQ;
825
+ } else {
826
+ s->dmac_status |= SD_IDST_RECEIVE_IRQ;
827
+ }
828
+}
829
+
830
+static uint64_t allwinner_sdhost_read(void *opaque, hwaddr offset,
831
+ unsigned size)
832
+{
833
+ AwSdHostState *s = AW_SDHOST(opaque);
834
+ uint32_t res = 0;
835
+
836
+ switch (offset) {
837
+ case REG_SD_GCTL: /* Global Control */
838
+ res = s->global_ctl;
839
+ break;
840
+ case REG_SD_CKCR: /* Clock Control */
841
+ res = s->clock_ctl;
842
+ break;
843
+ case REG_SD_TMOR: /* Timeout */
844
+ res = s->timeout;
845
+ break;
846
+ case REG_SD_BWDR: /* Bus Width */
847
+ res = s->bus_width;
848
+ break;
849
+ case REG_SD_BKSR: /* Block Size */
850
+ res = s->block_size;
851
+ break;
852
+ case REG_SD_BYCR: /* Byte Count */
853
+ res = s->byte_count;
854
+ break;
855
+ case REG_SD_CMDR: /* Command */
856
+ res = s->command;
857
+ break;
858
+ case REG_SD_CAGR: /* Command Argument */
859
+ res = s->command_arg;
860
+ break;
861
+ case REG_SD_RESP0: /* Response Zero */
862
+ res = s->response[0];
863
+ break;
864
+ case REG_SD_RESP1: /* Response One */
865
+ res = s->response[1];
866
+ break;
867
+ case REG_SD_RESP2: /* Response Two */
868
+ res = s->response[2];
869
+ break;
870
+ case REG_SD_RESP3: /* Response Three */
871
+ res = s->response[3];
872
+ break;
873
+ case REG_SD_IMKR: /* Interrupt Mask */
874
+ res = s->irq_mask;
875
+ break;
876
+ case REG_SD_MISR: /* Masked Interrupt Status */
877
+ res = s->irq_status & s->irq_mask;
878
+ break;
879
+ case REG_SD_RISR: /* Raw Interrupt Status */
880
+ res = s->irq_status;
881
+ break;
882
+ case REG_SD_STAR: /* Status */
883
+ res = s->status;
884
+ break;
885
+ case REG_SD_FWLR: /* FIFO Water Level */
886
+ res = s->fifo_wlevel;
887
+ break;
888
+ case REG_SD_FUNS: /* FIFO Function Select */
889
+ res = s->fifo_func_sel;
890
+ break;
891
+ case REG_SD_DBGC: /* Debug Enable */
892
+ res = s->debug_enable;
893
+ break;
894
+ case REG_SD_A12A: /* Auto command 12 argument */
895
+ res = s->auto12_arg;
896
+ break;
897
+ case REG_SD_NTSR: /* SD NewTiming Set */
898
+ res = s->newtiming_set;
899
+ break;
900
+ case REG_SD_SDBG: /* SD newTiming Set Debug */
901
+ res = s->newtiming_debug;
902
+ break;
903
+ case REG_SD_HWRST: /* Hardware Reset Register */
904
+ res = s->hardware_rst;
905
+ break;
906
+ case REG_SD_DMAC: /* Internal DMA Controller Control */
907
+ res = s->dmac;
908
+ break;
909
+ case REG_SD_DLBA: /* Descriptor List Base Address */
910
+ res = s->desc_base;
911
+ break;
912
+ case REG_SD_IDST: /* Internal DMA Controller Status */
913
+ res = s->dmac_status;
914
+ break;
915
+ case REG_SD_IDIE: /* Internal DMA Controller Interrupt Enable */
916
+ res = s->dmac_irq;
917
+ break;
918
+ case REG_SD_THLDC: /* Card Threshold Control */
919
+ res = s->card_threshold;
920
+ break;
921
+ case REG_SD_DSBD: /* eMMC DDR Start Bit Detection Control */
922
+ res = s->startbit_detect;
923
+ break;
924
+ case REG_SD_RES_CRC: /* Response CRC from card/eMMC */
925
+ res = s->response_crc;
926
+ break;
927
+ case REG_SD_DATA7_CRC: /* CRC Data 7 from card/eMMC */
928
+ case REG_SD_DATA6_CRC: /* CRC Data 6 from card/eMMC */
929
+ case REG_SD_DATA5_CRC: /* CRC Data 5 from card/eMMC */
930
+ case REG_SD_DATA4_CRC: /* CRC Data 4 from card/eMMC */
931
+ case REG_SD_DATA3_CRC: /* CRC Data 3 from card/eMMC */
932
+ case REG_SD_DATA2_CRC: /* CRC Data 2 from card/eMMC */
933
+ case REG_SD_DATA1_CRC: /* CRC Data 1 from card/eMMC */
934
+ case REG_SD_DATA0_CRC: /* CRC Data 0 from card/eMMC */
935
+ res = s->data_crc[((offset - REG_SD_DATA7_CRC) / sizeof(uint32_t))];
936
+ break;
937
+ case REG_SD_CRC_STA: /* CRC status from card/eMMC in write operation */
938
+ res = s->status_crc;
939
+ break;
940
+ case REG_SD_FIFO: /* Read/Write FIFO */
941
+ if (sdbus_data_ready(&s->sdbus)) {
942
+ res = sdbus_read_data(&s->sdbus);
943
+ res |= sdbus_read_data(&s->sdbus) << 8;
944
+ res |= sdbus_read_data(&s->sdbus) << 16;
945
+ res |= sdbus_read_data(&s->sdbus) << 24;
946
+ allwinner_sdhost_update_transfer_cnt(s, sizeof(uint32_t));
947
+ allwinner_sdhost_auto_stop(s);
948
+ allwinner_sdhost_update_irq(s);
949
+ } else {
950
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: no data ready on SD bus\n",
951
+ __func__);
952
+ }
953
+ break;
954
+ default:
955
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset %"
956
+ HWADDR_PRIx"\n", __func__, offset);
957
+ res = 0;
958
+ break;
959
+ }
960
+
961
+ trace_allwinner_sdhost_read(offset, res, size);
962
+ return res;
963
+}
964
+
965
+static void allwinner_sdhost_write(void *opaque, hwaddr offset,
966
+ uint64_t value, unsigned size)
967
+{
968
+ AwSdHostState *s = AW_SDHOST(opaque);
969
+
970
+ trace_allwinner_sdhost_write(offset, value, size);
971
+
972
+ switch (offset) {
973
+ case REG_SD_GCTL: /* Global Control */
974
+ s->global_ctl = value;
975
+ s->global_ctl &= ~(SD_GCTL_DMA_RST | SD_GCTL_FIFO_RST |
976
+ SD_GCTL_SOFT_RST);
977
+ allwinner_sdhost_update_irq(s);
978
+ break;
979
+ case REG_SD_CKCR: /* Clock Control */
980
+ s->clock_ctl = value;
981
+ break;
982
+ case REG_SD_TMOR: /* Timeout */
983
+ s->timeout = value;
984
+ break;
985
+ case REG_SD_BWDR: /* Bus Width */
986
+ s->bus_width = value;
987
+ break;
988
+ case REG_SD_BKSR: /* Block Size */
989
+ s->block_size = value;
990
+ break;
991
+ case REG_SD_BYCR: /* Byte Count */
992
+ s->byte_count = value;
993
+ s->transfer_cnt = value;
994
+ break;
995
+ case REG_SD_CMDR: /* Command */
996
+ s->command = value;
997
+ if (value & SD_CMDR_LOAD) {
998
+ allwinner_sdhost_send_command(s);
999
+ allwinner_sdhost_dma(s);
1000
+ allwinner_sdhost_auto_stop(s);
1001
+ }
1002
+ allwinner_sdhost_update_irq(s);
1003
+ break;
1004
+ case REG_SD_CAGR: /* Command Argument */
1005
+ s->command_arg = value;
1006
+ break;
1007
+ case REG_SD_RESP0: /* Response Zero */
1008
+ s->response[0] = value;
1009
+ break;
1010
+ case REG_SD_RESP1: /* Response One */
1011
+ s->response[1] = value;
1012
+ break;
1013
+ case REG_SD_RESP2: /* Response Two */
1014
+ s->response[2] = value;
1015
+ break;
1016
+ case REG_SD_RESP3: /* Response Three */
1017
+ s->response[3] = value;
1018
+ break;
1019
+ case REG_SD_IMKR: /* Interrupt Mask */
1020
+ s->irq_mask = value;
1021
+ allwinner_sdhost_update_irq(s);
1022
+ break;
1023
+ case REG_SD_MISR: /* Masked Interrupt Status */
1024
+ case REG_SD_RISR: /* Raw Interrupt Status */
1025
+ s->irq_status &= ~value;
1026
+ allwinner_sdhost_update_irq(s);
1027
+ break;
1028
+ case REG_SD_STAR: /* Status */
1029
+ s->status &= ~value;
1030
+ allwinner_sdhost_update_irq(s);
1031
+ break;
1032
+ case REG_SD_FWLR: /* FIFO Water Level */
1033
+ s->fifo_wlevel = value;
1034
+ break;
1035
+ case REG_SD_FUNS: /* FIFO Function Select */
1036
+ s->fifo_func_sel = value;
1037
+ break;
1038
+ case REG_SD_DBGC: /* Debug Enable */
1039
+ s->debug_enable = value;
1040
+ break;
1041
+ case REG_SD_A12A: /* Auto command 12 argument */
1042
+ s->auto12_arg = value;
1043
+ break;
1044
+ case REG_SD_NTSR: /* SD NewTiming Set */
1045
+ s->newtiming_set = value;
1046
+ break;
1047
+ case REG_SD_SDBG: /* SD newTiming Set Debug */
1048
+ s->newtiming_debug = value;
1049
+ break;
1050
+ case REG_SD_HWRST: /* Hardware Reset Register */
1051
+ s->hardware_rst = value;
1052
+ break;
1053
+ case REG_SD_DMAC: /* Internal DMA Controller Control */
1054
+ s->dmac = value;
1055
+ allwinner_sdhost_update_irq(s);
1056
+ break;
1057
+ case REG_SD_DLBA: /* Descriptor List Base Address */
1058
+ s->desc_base = value;
1059
+ break;
1060
+ case REG_SD_IDST: /* Internal DMA Controller Status */
1061
+ s->dmac_status &= (~SD_IDST_WR_MASK) | (~value & SD_IDST_WR_MASK);
1062
+ allwinner_sdhost_update_irq(s);
1063
+ break;
1064
+ case REG_SD_IDIE: /* Internal DMA Controller Interrupt Enable */
1065
+ s->dmac_irq = value;
1066
+ allwinner_sdhost_update_irq(s);
1067
+ break;
1068
+ case REG_SD_THLDC: /* Card Threshold Control */
1069
+ s->card_threshold = value;
1070
+ break;
1071
+ case REG_SD_DSBD: /* eMMC DDR Start Bit Detection Control */
1072
+ s->startbit_detect = value;
1073
+ break;
1074
+ case REG_SD_FIFO: /* Read/Write FIFO */
1075
+ sdbus_write_data(&s->sdbus, value & 0xff);
1076
+ sdbus_write_data(&s->sdbus, (value >> 8) & 0xff);
1077
+ sdbus_write_data(&s->sdbus, (value >> 16) & 0xff);
1078
+ sdbus_write_data(&s->sdbus, (value >> 24) & 0xff);
1079
+ allwinner_sdhost_update_transfer_cnt(s, sizeof(uint32_t));
1080
+ allwinner_sdhost_auto_stop(s);
1081
+ allwinner_sdhost_update_irq(s);
1082
+ break;
1083
+ case REG_SD_RES_CRC: /* Response CRC from card/eMMC */
1084
+ case REG_SD_DATA7_CRC: /* CRC Data 7 from card/eMMC */
1085
+ case REG_SD_DATA6_CRC: /* CRC Data 6 from card/eMMC */
1086
+ case REG_SD_DATA5_CRC: /* CRC Data 5 from card/eMMC */
1087
+ case REG_SD_DATA4_CRC: /* CRC Data 4 from card/eMMC */
1088
+ case REG_SD_DATA3_CRC: /* CRC Data 3 from card/eMMC */
1089
+ case REG_SD_DATA2_CRC: /* CRC Data 2 from card/eMMC */
1090
+ case REG_SD_DATA1_CRC: /* CRC Data 1 from card/eMMC */
1091
+ case REG_SD_DATA0_CRC: /* CRC Data 0 from card/eMMC */
1092
+ case REG_SD_CRC_STA: /* CRC status from card/eMMC in write operation */
1093
+ break;
1094
+ default:
1095
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset %"
1096
+ HWADDR_PRIx"\n", __func__, offset);
1097
+ break;
1098
+ }
1099
+}
1100
+
1101
+static const MemoryRegionOps allwinner_sdhost_ops = {
1102
+ .read = allwinner_sdhost_read,
1103
+ .write = allwinner_sdhost_write,
1104
+ .endianness = DEVICE_NATIVE_ENDIAN,
1105
+ .valid = {
1106
+ .min_access_size = 4,
1107
+ .max_access_size = 4,
1108
+ },
1109
+ .impl.min_access_size = 4,
1110
+};
1111
+
1112
+static const VMStateDescription vmstate_allwinner_sdhost = {
1113
+ .name = "allwinner-sdhost",
1114
+ .version_id = 1,
1115
+ .minimum_version_id = 1,
1116
+ .fields = (VMStateField[]) {
1117
+ VMSTATE_UINT32(global_ctl, AwSdHostState),
1118
+ VMSTATE_UINT32(clock_ctl, AwSdHostState),
1119
+ VMSTATE_UINT32(timeout, AwSdHostState),
1120
+ VMSTATE_UINT32(bus_width, AwSdHostState),
1121
+ VMSTATE_UINT32(block_size, AwSdHostState),
1122
+ VMSTATE_UINT32(byte_count, AwSdHostState),
1123
+ VMSTATE_UINT32(transfer_cnt, AwSdHostState),
1124
+ VMSTATE_UINT32(command, AwSdHostState),
1125
+ VMSTATE_UINT32(command_arg, AwSdHostState),
1126
+ VMSTATE_UINT32_ARRAY(response, AwSdHostState, 4),
1127
+ VMSTATE_UINT32(irq_mask, AwSdHostState),
1128
+ VMSTATE_UINT32(irq_status, AwSdHostState),
1129
+ VMSTATE_UINT32(status, AwSdHostState),
1130
+ VMSTATE_UINT32(fifo_wlevel, AwSdHostState),
1131
+ VMSTATE_UINT32(fifo_func_sel, AwSdHostState),
1132
+ VMSTATE_UINT32(debug_enable, AwSdHostState),
1133
+ VMSTATE_UINT32(auto12_arg, AwSdHostState),
1134
+ VMSTATE_UINT32(newtiming_set, AwSdHostState),
1135
+ VMSTATE_UINT32(newtiming_debug, AwSdHostState),
1136
+ VMSTATE_UINT32(hardware_rst, AwSdHostState),
1137
+ VMSTATE_UINT32(dmac, AwSdHostState),
1138
+ VMSTATE_UINT32(desc_base, AwSdHostState),
1139
+ VMSTATE_UINT32(dmac_status, AwSdHostState),
1140
+ VMSTATE_UINT32(dmac_irq, AwSdHostState),
1141
+ VMSTATE_UINT32(card_threshold, AwSdHostState),
1142
+ VMSTATE_UINT32(startbit_detect, AwSdHostState),
1143
+ VMSTATE_UINT32(response_crc, AwSdHostState),
1144
+ VMSTATE_UINT32_ARRAY(data_crc, AwSdHostState, 8),
1145
+ VMSTATE_UINT32(status_crc, AwSdHostState),
1146
+ VMSTATE_END_OF_LIST()
1147
+ }
1148
+};
1149
+
1150
+static void allwinner_sdhost_init(Object *obj)
1151
+{
1152
+ AwSdHostState *s = AW_SDHOST(obj);
1153
+
1154
+ qbus_create_inplace(&s->sdbus, sizeof(s->sdbus),
1155
+ TYPE_AW_SDHOST_BUS, DEVICE(s), "sd-bus");
1156
+
1157
+ memory_region_init_io(&s->iomem, obj, &allwinner_sdhost_ops, s,
1158
+ TYPE_AW_SDHOST, 4 * KiB);
1159
+ sysbus_init_mmio(SYS_BUS_DEVICE(s), &s->iomem);
1160
+ sysbus_init_irq(SYS_BUS_DEVICE(s), &s->irq);
1161
+}
1162
+
1163
+static void allwinner_sdhost_reset(DeviceState *dev)
1164
+{
1165
+ AwSdHostState *s = AW_SDHOST(dev);
1166
+
1167
+ s->global_ctl = REG_SD_GCTL_RST;
1168
+ s->clock_ctl = REG_SD_CKCR_RST;
1169
+ s->timeout = REG_SD_TMOR_RST;
1170
+ s->bus_width = REG_SD_BWDR_RST;
1171
+ s->block_size = REG_SD_BKSR_RST;
1172
+ s->byte_count = REG_SD_BYCR_RST;
1173
+ s->transfer_cnt = 0;
1174
+
1175
+ s->command = REG_SD_CMDR_RST;
1176
+ s->command_arg = REG_SD_CAGR_RST;
1177
+
1178
+ for (int i = 0; i < ARRAY_SIZE(s->response); i++) {
1179
+ s->response[i] = REG_SD_RESP_RST;
1180
+ }
1181
+
1182
+ s->irq_mask = REG_SD_IMKR_RST;
1183
+ s->irq_status = REG_SD_RISR_RST;
1184
+ s->status = REG_SD_STAR_RST;
1185
+
1186
+ s->fifo_wlevel = REG_SD_FWLR_RST;
1187
+ s->fifo_func_sel = REG_SD_FUNS_RST;
1188
+ s->debug_enable = REG_SD_DBGC_RST;
1189
+ s->auto12_arg = REG_SD_A12A_RST;
1190
+ s->newtiming_set = REG_SD_NTSR_RST;
1191
+ s->newtiming_debug = REG_SD_SDBG_RST;
1192
+ s->hardware_rst = REG_SD_HWRST_RST;
1193
+ s->dmac = REG_SD_DMAC_RST;
1194
+ s->desc_base = REG_SD_DLBA_RST;
1195
+ s->dmac_status = REG_SD_IDST_RST;
1196
+ s->dmac_irq = REG_SD_IDIE_RST;
1197
+ s->card_threshold = REG_SD_THLDC_RST;
1198
+ s->startbit_detect = REG_SD_DSBD_RST;
1199
+ s->response_crc = REG_SD_RES_CRC_RST;
1200
+
1201
+ for (int i = 0; i < ARRAY_SIZE(s->data_crc); i++) {
1202
+ s->data_crc[i] = REG_SD_DATA_CRC_RST;
1203
+ }
1204
+
1205
+ s->status_crc = REG_SD_CRC_STA_RST;
1206
+}
1207
+
1208
+static void allwinner_sdhost_bus_class_init(ObjectClass *klass, void *data)
1209
+{
1210
+ SDBusClass *sbc = SD_BUS_CLASS(klass);
1211
+
1212
+ sbc->set_inserted = allwinner_sdhost_set_inserted;
1213
+}
1214
+
1215
+static void allwinner_sdhost_class_init(ObjectClass *klass, void *data)
1216
+{
1217
+ DeviceClass *dc = DEVICE_CLASS(klass);
1218
+
1219
+ dc->reset = allwinner_sdhost_reset;
1220
+ dc->vmsd = &vmstate_allwinner_sdhost;
1221
+}
1222
+
1223
+static void allwinner_sdhost_sun4i_class_init(ObjectClass *klass, void *data)
1224
+{
1225
+ AwSdHostClass *sc = AW_SDHOST_CLASS(klass);
1226
+ sc->max_desc_size = 8 * KiB;
1227
+}
1228
+
1229
+static void allwinner_sdhost_sun5i_class_init(ObjectClass *klass, void *data)
1230
+{
1231
+ AwSdHostClass *sc = AW_SDHOST_CLASS(klass);
1232
+ sc->max_desc_size = 64 * KiB;
1233
+}
1234
+
1235
+static TypeInfo allwinner_sdhost_info = {
1236
+ .name = TYPE_AW_SDHOST,
1237
+ .parent = TYPE_SYS_BUS_DEVICE,
1238
+ .instance_init = allwinner_sdhost_init,
1239
+ .instance_size = sizeof(AwSdHostState),
1240
+ .class_init = allwinner_sdhost_class_init,
1241
+ .class_size = sizeof(AwSdHostClass),
1242
+ .abstract = true,
1243
+};
1244
+
1245
+static const TypeInfo allwinner_sdhost_sun4i_info = {
1246
+ .name = TYPE_AW_SDHOST_SUN4I,
1247
+ .parent = TYPE_AW_SDHOST,
1248
+ .class_init = allwinner_sdhost_sun4i_class_init,
1249
+};
1250
+
1251
+static const TypeInfo allwinner_sdhost_sun5i_info = {
1252
+ .name = TYPE_AW_SDHOST_SUN5I,
1253
+ .parent = TYPE_AW_SDHOST,
1254
+ .class_init = allwinner_sdhost_sun5i_class_init,
1255
+};
1256
+
1257
+static const TypeInfo allwinner_sdhost_bus_info = {
1258
+ .name = TYPE_AW_SDHOST_BUS,
1259
+ .parent = TYPE_SD_BUS,
1260
+ .instance_size = sizeof(SDBus),
1261
+ .class_init = allwinner_sdhost_bus_class_init,
1262
+};
1263
+
1264
+static void allwinner_sdhost_register_types(void)
1265
+{
1266
+ type_register_static(&allwinner_sdhost_info);
1267
+ type_register_static(&allwinner_sdhost_sun4i_info);
1268
+ type_register_static(&allwinner_sdhost_sun5i_info);
1269
+ type_register_static(&allwinner_sdhost_bus_info);
1270
+}
1271
+
1272
+type_init(allwinner_sdhost_register_types)
1273
diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig
207
index XXXXXXX..XXXXXXX 100644
1274
index XXXXXXX..XXXXXXX 100644
208
--- a/target/arm/sve.decode
1275
--- a/hw/arm/Kconfig
209
+++ b/target/arm/sve.decode
1276
+++ b/hw/arm/Kconfig
210
@@ -XXX,XX +XXX,XX @@ REV_p 00000101 .. 11 0100 010 000 0 .... 0 .... @pd_pn
1277
@@ -XXX,XX +XXX,XX @@ config ALLWINNER_H3
211
PUNPKLO 00000101 00 11 0000 010 000 0 .... 0 .... @pd_pn_e0
1278
select UNIMP
212
PUNPKHI 00000101 00 11 0001 010 000 0 .... 0 .... @pd_pn_e0
1279
select USB_OHCI
213
1280
select USB_EHCI_SYSBUS
214
+### SVE Permute - Interleaving Group
1281
+ select SD
215
+
1282
216
+# SVE permute vector elements
1283
config RASPI
217
+ZIP1_z 00000101 .. 1 ..... 011 000 ..... ..... @rd_rn_rm
1284
bool
218
+ZIP2_z 00000101 .. 1 ..... 011 001 ..... ..... @rd_rn_rm
1285
diff --git a/hw/sd/trace-events b/hw/sd/trace-events
219
+UZP1_z 00000101 .. 1 ..... 011 010 ..... ..... @rd_rn_rm
1286
index XXXXXXX..XXXXXXX 100644
220
+UZP2_z 00000101 .. 1 ..... 011 011 ..... ..... @rd_rn_rm
1287
--- a/hw/sd/trace-events
221
+TRN1_z 00000101 .. 1 ..... 011 100 ..... ..... @rd_rn_rm
1288
+++ b/hw/sd/trace-events
222
+TRN2_z 00000101 .. 1 ..... 011 101 ..... ..... @rd_rn_rm
1289
@@ -XXX,XX +XXX,XX @@
223
+
1290
# See docs/devel/tracing.txt for syntax documentation.
224
### SVE Predicate Logical Operations Group
1291
225
1292
+# allwinner-sdhost.c
226
# SVE predicate logical operations
1293
+allwinner_sdhost_set_inserted(bool inserted) "inserted %u"
1294
+allwinner_sdhost_process_desc(uint64_t desc_addr, uint32_t desc_size, bool is_write, uint32_t max_bytes) "desc_addr 0x%" PRIx64 " desc_size %" PRIu32 " is_write %u max_bytes %" PRIu32
1295
+allwinner_sdhost_read(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
1296
+allwinner_sdhost_write(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
1297
+allwinner_sdhost_update_irq(uint32_t irq) "IRQ bits 0x%" PRIx32
1298
+
1299
# bcm2835_sdhost.c
1300
bcm2835_sdhost_read(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
1301
bcm2835_sdhost_write(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
227
--
1302
--
228
2.17.1
1303
2.20.1
229
1304
230
1305
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
The Allwinner Sun8i System on Chip family includes an Ethernet MAC (EMAC)
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
which provides 10M/100M/1000M Ethernet connectivity. This commit
5
Message-id: 20180613015641.5667-6-richard.henderson@linaro.org
5
adds support for the Allwinner EMAC from the Sun8i family (H2+, H3, A33, etc),
6
including emulation for the following functionality:
7
8
* DMA transfers
9
* MII interface
10
* Transmit CRC calculation
11
12
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
13
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
14
Message-id: 20200311221854.30370-10-nieklinnenbank@gmail.com
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
15
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
16
---
8
target/arm/helper-sve.h | 3 +++
17
hw/net/Makefile.objs | 1 +
9
target/arm/sve_helper.c | 34 ++++++++++++++++++++++++++++++++++
18
include/hw/arm/allwinner-h3.h | 3 +
10
target/arm/translate-sve.c | 12 ++++++++++++
19
include/hw/net/allwinner-sun8i-emac.h | 99 +++
11
target/arm/sve.decode | 6 ++++++
20
hw/arm/allwinner-h3.c | 16 +-
12
4 files changed, 55 insertions(+)
21
hw/arm/orangepi.c | 3 +
22
hw/net/allwinner-sun8i-emac.c | 871 ++++++++++++++++++++++++++
23
hw/arm/Kconfig | 1 +
24
hw/net/Kconfig | 3 +
25
hw/net/trace-events | 10 +
26
9 files changed, 1006 insertions(+), 1 deletion(-)
27
create mode 100644 include/hw/net/allwinner-sun8i-emac.h
28
create mode 100644 hw/net/allwinner-sun8i-emac.c
13
29
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
30
diff --git a/hw/net/Makefile.objs b/hw/net/Makefile.objs
15
index XXXXXXX..XXXXXXX 100644
31
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
32
--- a/hw/net/Makefile.objs
17
+++ b/target/arm/helper-sve.h
33
+++ b/hw/net/Makefile.objs
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_4(sve_trn_h, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
34
@@ -XXX,XX +XXX,XX @@ common-obj-$(CONFIG_XGMAC) += xgmac.o
19
DEF_HELPER_FLAGS_4(sve_trn_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
35
common-obj-$(CONFIG_MIPSNET) += mipsnet.o
20
DEF_HELPER_FLAGS_4(sve_trn_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
36
common-obj-$(CONFIG_XILINX_AXI) += xilinx_axienet.o
21
37
common-obj-$(CONFIG_ALLWINNER_EMAC) += allwinner_emac.o
22
+DEF_HELPER_FLAGS_4(sve_compact_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
38
+common-obj-$(CONFIG_ALLWINNER_SUN8I_EMAC) += allwinner-sun8i-emac.o
23
+DEF_HELPER_FLAGS_4(sve_compact_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
39
common-obj-$(CONFIG_IMX_FEC) += imx_fec.o
24
+
40
25
DEF_HELPER_FLAGS_5(sve_and_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
41
common-obj-$(CONFIG_CADENCE) += cadence_gem.o
26
DEF_HELPER_FLAGS_5(sve_bic_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
42
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
27
DEF_HELPER_FLAGS_5(sve_eor_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
28
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
29
index XXXXXXX..XXXXXXX 100644
43
index XXXXXXX..XXXXXXX 100644
30
--- a/target/arm/sve_helper.c
44
--- a/include/hw/arm/allwinner-h3.h
31
+++ b/target/arm/sve_helper.c
45
+++ b/include/hw/arm/allwinner-h3.h
32
@@ -XXX,XX +XXX,XX @@ DO_TRN(sve_trn_d, uint64_t, )
46
@@ -XXX,XX +XXX,XX @@
33
#undef DO_ZIP
47
#include "hw/misc/allwinner-h3-sysctrl.h"
34
#undef DO_UZP
48
#include "hw/misc/allwinner-sid.h"
35
#undef DO_TRN
49
#include "hw/sd/allwinner-sdhost.h"
36
+
50
+#include "hw/net/allwinner-sun8i-emac.h"
37
+void HELPER(sve_compact_s)(void *vd, void *vn, void *vg, uint32_t desc)
51
#include "target/arm/cpu.h"
38
+{
52
39
+ intptr_t i, j, opr_sz = simd_oprsz(desc) / 4;
53
/**
40
+ uint32_t *d = vd, *n = vn;
54
@@ -XXX,XX +XXX,XX @@ enum {
41
+ uint8_t *pg = vg;
55
AW_H3_UART1,
42
+
56
AW_H3_UART2,
43
+ for (i = j = 0; i < opr_sz; i++) {
57
AW_H3_UART3,
44
+ if (pg[H1(i / 2)] & (i & 1 ? 0x10 : 0x01)) {
58
+ AW_H3_EMAC,
45
+ d[H4(j)] = n[H4(i)];
59
AW_H3_GIC_DIST,
46
+ j++;
60
AW_H3_GIC_CPU,
47
+ }
61
AW_H3_GIC_HYP,
48
+ }
62
@@ -XXX,XX +XXX,XX @@ typedef struct AwH3State {
49
+ for (; j < opr_sz; j++) {
63
AwH3SysCtrlState sysctrl;
50
+ d[H4(j)] = 0;
64
AwSidState sid;
51
+ }
65
AwSdHostState mmc0;
52
+}
66
+ AwSun8iEmacState emac;
53
+
67
GICState gic;
54
+void HELPER(sve_compact_d)(void *vd, void *vn, void *vg, uint32_t desc)
68
MemoryRegion sram_a1;
55
+{
69
MemoryRegion sram_a2;
56
+ intptr_t i, j, opr_sz = simd_oprsz(desc) / 8;
70
diff --git a/include/hw/net/allwinner-sun8i-emac.h b/include/hw/net/allwinner-sun8i-emac.h
57
+ uint64_t *d = vd, *n = vn;
71
new file mode 100644
58
+ uint8_t *pg = vg;
72
index XXXXXXX..XXXXXXX
59
+
73
--- /dev/null
60
+ for (i = j = 0; i < opr_sz; i++) {
74
+++ b/include/hw/net/allwinner-sun8i-emac.h
61
+ if (pg[H1(i)] & 1) {
75
@@ -XXX,XX +XXX,XX @@
62
+ d[j] = n[i];
76
+/*
63
+ j++;
77
+ * Allwinner Sun8i Ethernet MAC emulation
64
+ }
78
+ *
65
+ }
79
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
66
+ for (; j < opr_sz; j++) {
80
+ *
67
+ d[j] = 0;
81
+ * This program is free software: you can redistribute it and/or modify
68
+ }
82
+ * it under the terms of the GNU General Public License as published by
69
+}
83
+ * the Free Software Foundation, either version 2 of the License, or
70
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
84
+ * (at your option) any later version.
85
+ *
86
+ * This program is distributed in the hope that it will be useful,
87
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
88
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
89
+ * GNU General Public License for more details.
90
+ *
91
+ * You should have received a copy of the GNU General Public License
92
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
93
+ */
94
+
95
+#ifndef HW_NET_ALLWINNER_SUN8I_EMAC_H
96
+#define HW_NET_ALLWINNER_SUN8I_EMAC_H
97
+
98
+#include "qom/object.h"
99
+#include "net/net.h"
100
+#include "hw/sysbus.h"
101
+
102
+/**
103
+ * Object model
104
+ * @{
105
+ */
106
+
107
+#define TYPE_AW_SUN8I_EMAC "allwinner-sun8i-emac"
108
+#define AW_SUN8I_EMAC(obj) \
109
+ OBJECT_CHECK(AwSun8iEmacState, (obj), TYPE_AW_SUN8I_EMAC)
110
+
111
+/** @} */
112
+
113
+/**
114
+ * Allwinner Sun8i EMAC object instance state
115
+ */
116
+typedef struct AwSun8iEmacState {
117
+ /*< private >*/
118
+ SysBusDevice parent_obj;
119
+ /*< public >*/
120
+
121
+ /** Maps I/O registers in physical memory */
122
+ MemoryRegion iomem;
123
+
124
+ /** Interrupt output signal to notify CPU */
125
+ qemu_irq irq;
126
+
127
+ /** Generic Network Interface Controller (NIC) for networking API */
128
+ NICState *nic;
129
+
130
+ /** Generic Network Interface Controller (NIC) configuration */
131
+ NICConf conf;
132
+
133
+ /**
134
+ * @name Media Independent Interface (MII)
135
+ * @{
136
+ */
137
+
138
+ uint8_t mii_phy_addr; /**< PHY address */
139
+ uint32_t mii_cr; /**< Control */
140
+ uint32_t mii_st; /**< Status */
141
+ uint32_t mii_adv; /**< Advertised Abilities */
142
+
143
+ /** @} */
144
+
145
+ /**
146
+ * @name Hardware Registers
147
+ * @{
148
+ */
149
+
150
+ uint32_t basic_ctl0; /**< Basic Control 0 */
151
+ uint32_t basic_ctl1; /**< Basic Control 1 */
152
+ uint32_t int_en; /**< Interrupt Enable */
153
+ uint32_t int_sta; /**< Interrupt Status */
154
+ uint32_t frm_flt; /**< Receive Frame Filter */
155
+
156
+ uint32_t rx_ctl0; /**< Receive Control 0 */
157
+ uint32_t rx_ctl1; /**< Receive Control 1 */
158
+ uint32_t rx_desc_head; /**< Receive Descriptor List Address */
159
+ uint32_t rx_desc_curr; /**< Current Receive Descriptor Address */
160
+
161
+ uint32_t tx_ctl0; /**< Transmit Control 0 */
162
+ uint32_t tx_ctl1; /**< Transmit Control 1 */
163
+ uint32_t tx_desc_head; /**< Transmit Descriptor List Address */
164
+ uint32_t tx_desc_curr; /**< Current Transmit Descriptor Address */
165
+ uint32_t tx_flowctl; /**< Transmit Flow Control */
166
+
167
+ uint32_t mii_cmd; /**< Management Interface Command */
168
+ uint32_t mii_data; /**< Management Interface Data */
169
+
170
+ /** @} */
171
+
172
+} AwSun8iEmacState;
173
+
174
+#endif /* HW_NET_ALLWINNER_SUN8I_H */
175
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
71
index XXXXXXX..XXXXXXX 100644
176
index XXXXXXX..XXXXXXX 100644
72
--- a/target/arm/translate-sve.c
177
--- a/hw/arm/allwinner-h3.c
73
+++ b/target/arm/translate-sve.c
178
+++ b/hw/arm/allwinner-h3.c
74
@@ -XXX,XX +XXX,XX @@ static bool trans_TRN2_z(DisasContext *s, arg_rrr_esz *a, uint32_t insn)
179
@@ -XXX,XX +XXX,XX @@ const hwaddr allwinner_h3_memmap[] = {
75
return do_zzz_data_ool(s, a, 1 << a->esz, trn_fns[a->esz]);
180
[AW_H3_UART1] = 0x01c28400,
181
[AW_H3_UART2] = 0x01c28800,
182
[AW_H3_UART3] = 0x01c28c00,
183
+ [AW_H3_EMAC] = 0x01c30000,
184
[AW_H3_GIC_DIST] = 0x01c81000,
185
[AW_H3_GIC_CPU] = 0x01c82000,
186
[AW_H3_GIC_HYP] = 0x01c84000,
187
@@ -XXX,XX +XXX,XX @@ struct AwH3Unimplemented {
188
{ "twi1", 0x01c2b000, 1 * KiB },
189
{ "twi2", 0x01c2b400, 1 * KiB },
190
{ "scr", 0x01c2c400, 1 * KiB },
191
- { "emac", 0x01c30000, 64 * KiB },
192
{ "gpu", 0x01c40000, 64 * KiB },
193
{ "hstmr", 0x01c60000, 4 * KiB },
194
{ "dramcom", 0x01c62000, 4 * KiB },
195
@@ -XXX,XX +XXX,XX @@ enum {
196
AW_H3_GIC_SPI_OHCI2 = 77,
197
AW_H3_GIC_SPI_EHCI3 = 78,
198
AW_H3_GIC_SPI_OHCI3 = 79,
199
+ AW_H3_GIC_SPI_EMAC = 82
200
};
201
202
/* Allwinner H3 general constants */
203
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_init(Object *obj)
204
205
sysbus_init_child_obj(obj, "mmc0", &s->mmc0, sizeof(s->mmc0),
206
TYPE_AW_SDHOST_SUN5I);
207
+
208
+ sysbus_init_child_obj(obj, "emac", &s->emac, sizeof(s->emac),
209
+ TYPE_AW_SUN8I_EMAC);
76
}
210
}
77
211
212
static void allwinner_h3_realize(DeviceState *dev, Error **errp)
213
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_realize(DeviceState *dev, Error **errp)
214
object_property_add_alias(OBJECT(s), "sd-bus", OBJECT(&s->mmc0),
215
"sd-bus", &error_abort);
216
217
+ /* EMAC */
218
+ if (nd_table[0].used) {
219
+ qemu_check_nic_model(&nd_table[0], TYPE_AW_SUN8I_EMAC);
220
+ qdev_set_nic_properties(DEVICE(&s->emac), &nd_table[0]);
221
+ }
222
+ qdev_init_nofail(DEVICE(&s->emac));
223
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->emac), 0, s->memmap[AW_H3_EMAC]);
224
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->emac), 0,
225
+ qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_EMAC));
226
+
227
/* Universal Serial Bus */
228
sysbus_create_simple(TYPE_AW_H3_EHCI, s->memmap[AW_H3_EHCI0],
229
qdev_get_gpio_in(DEVICE(&s->gic),
230
diff --git a/hw/arm/orangepi.c b/hw/arm/orangepi.c
231
index XXXXXXX..XXXXXXX 100644
232
--- a/hw/arm/orangepi.c
233
+++ b/hw/arm/orangepi.c
234
@@ -XXX,XX +XXX,XX @@ static void orangepi_init(MachineState *machine)
235
warn_report("Security Identifier value does not include H3 prefix");
236
}
237
238
+ /* Setup EMAC properties */
239
+ object_property_set_int(OBJECT(&h3->emac), 1, "phy-addr", &error_abort);
240
+
241
/* Mark H3 object realized */
242
object_property_set_bool(OBJECT(h3), true, "realized", &error_abort);
243
244
diff --git a/hw/net/allwinner-sun8i-emac.c b/hw/net/allwinner-sun8i-emac.c
245
new file mode 100644
246
index XXXXXXX..XXXXXXX
247
--- /dev/null
248
+++ b/hw/net/allwinner-sun8i-emac.c
249
@@ -XXX,XX +XXX,XX @@
78
+/*
250
+/*
79
+ *** SVE Permute Vector - Predicated Group
251
+ * Allwinner Sun8i Ethernet MAC emulation
252
+ *
253
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
254
+ *
255
+ * This program is free software: you can redistribute it and/or modify
256
+ * it under the terms of the GNU General Public License as published by
257
+ * the Free Software Foundation, either version 2 of the License, or
258
+ * (at your option) any later version.
259
+ *
260
+ * This program is distributed in the hope that it will be useful,
261
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
262
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
263
+ * GNU General Public License for more details.
264
+ *
265
+ * You should have received a copy of the GNU General Public License
266
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
80
+ */
267
+ */
81
+
268
+
82
+static bool trans_COMPACT(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
269
+#include "qemu/osdep.h"
83
+{
270
+#include "qemu/units.h"
84
+ static gen_helper_gvec_3 * const fns[4] = {
271
+#include "hw/sysbus.h"
85
+ NULL, NULL, gen_helper_sve_compact_s, gen_helper_sve_compact_d
272
+#include "migration/vmstate.h"
86
+ };
273
+#include "net/net.h"
87
+ return do_zpz_ool(s, a, fns[a->esz]);
274
+#include "hw/irq.h"
88
+}
275
+#include "hw/qdev-properties.h"
89
+
276
+#include "qemu/log.h"
90
/*
277
+#include "trace.h"
91
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
278
+#include "net/checksum.h"
92
*/
279
+#include "qemu/module.h"
93
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
280
+#include "exec/cpu-common.h"
281
+#include "hw/net/allwinner-sun8i-emac.h"
282
+
283
+/* EMAC register offsets */
284
+enum {
285
+ REG_BASIC_CTL_0 = 0x0000, /* Basic Control 0 */
286
+ REG_BASIC_CTL_1 = 0x0004, /* Basic Control 1 */
287
+ REG_INT_STA = 0x0008, /* Interrupt Status */
288
+ REG_INT_EN = 0x000C, /* Interrupt Enable */
289
+ REG_TX_CTL_0 = 0x0010, /* Transmit Control 0 */
290
+ REG_TX_CTL_1 = 0x0014, /* Transmit Control 1 */
291
+ REG_TX_FLOW_CTL = 0x001C, /* Transmit Flow Control */
292
+ REG_TX_DMA_DESC_LIST = 0x0020, /* Transmit Descriptor List Address */
293
+ REG_RX_CTL_0 = 0x0024, /* Receive Control 0 */
294
+ REG_RX_CTL_1 = 0x0028, /* Receive Control 1 */
295
+ REG_RX_DMA_DESC_LIST = 0x0034, /* Receive Descriptor List Address */
296
+ REG_FRM_FLT = 0x0038, /* Receive Frame Filter */
297
+ REG_RX_HASH_0 = 0x0040, /* Receive Hash Table 0 */
298
+ REG_RX_HASH_1 = 0x0044, /* Receive Hash Table 1 */
299
+ REG_MII_CMD = 0x0048, /* Management Interface Command */
300
+ REG_MII_DATA = 0x004C, /* Management Interface Data */
301
+ REG_ADDR_HIGH = 0x0050, /* MAC Address High */
302
+ REG_ADDR_LOW = 0x0054, /* MAC Address Low */
303
+ REG_TX_DMA_STA = 0x00B0, /* Transmit DMA Status */
304
+ REG_TX_CUR_DESC = 0x00B4, /* Transmit Current Descriptor */
305
+ REG_TX_CUR_BUF = 0x00B8, /* Transmit Current Buffer */
306
+ REG_RX_DMA_STA = 0x00C0, /* Receive DMA Status */
307
+ REG_RX_CUR_DESC = 0x00C4, /* Receive Current Descriptor */
308
+ REG_RX_CUR_BUF = 0x00C8, /* Receive Current Buffer */
309
+ REG_RGMII_STA = 0x00D0, /* RGMII Status */
310
+};
311
+
312
+/* EMAC register flags */
313
+enum {
314
+ BASIC_CTL0_100Mbps = (0b11 << 2),
315
+ BASIC_CTL0_FD = (1 << 0),
316
+ BASIC_CTL1_SOFTRST = (1 << 0),
317
+};
318
+
319
+enum {
320
+ INT_STA_RGMII_LINK = (1 << 16),
321
+ INT_STA_RX_EARLY = (1 << 13),
322
+ INT_STA_RX_OVERFLOW = (1 << 12),
323
+ INT_STA_RX_TIMEOUT = (1 << 11),
324
+ INT_STA_RX_DMA_STOP = (1 << 10),
325
+ INT_STA_RX_BUF_UA = (1 << 9),
326
+ INT_STA_RX = (1 << 8),
327
+ INT_STA_TX_EARLY = (1 << 5),
328
+ INT_STA_TX_UNDERFLOW = (1 << 4),
329
+ INT_STA_TX_TIMEOUT = (1 << 3),
330
+ INT_STA_TX_BUF_UA = (1 << 2),
331
+ INT_STA_TX_DMA_STOP = (1 << 1),
332
+ INT_STA_TX = (1 << 0),
333
+};
334
+
335
+enum {
336
+ INT_EN_RX_EARLY = (1 << 13),
337
+ INT_EN_RX_OVERFLOW = (1 << 12),
338
+ INT_EN_RX_TIMEOUT = (1 << 11),
339
+ INT_EN_RX_DMA_STOP = (1 << 10),
340
+ INT_EN_RX_BUF_UA = (1 << 9),
341
+ INT_EN_RX = (1 << 8),
342
+ INT_EN_TX_EARLY = (1 << 5),
343
+ INT_EN_TX_UNDERFLOW = (1 << 4),
344
+ INT_EN_TX_TIMEOUT = (1 << 3),
345
+ INT_EN_TX_BUF_UA = (1 << 2),
346
+ INT_EN_TX_DMA_STOP = (1 << 1),
347
+ INT_EN_TX = (1 << 0),
348
+};
349
+
350
+enum {
351
+ TX_CTL0_TX_EN = (1 << 31),
352
+ TX_CTL1_TX_DMA_START = (1 << 31),
353
+ TX_CTL1_TX_DMA_EN = (1 << 30),
354
+ TX_CTL1_TX_FLUSH = (1 << 0),
355
+};
356
+
357
+enum {
358
+ RX_CTL0_RX_EN = (1 << 31),
359
+ RX_CTL0_STRIP_FCS = (1 << 28),
360
+ RX_CTL0_CRC_IPV4 = (1 << 27),
361
+};
362
+
363
+enum {
364
+ RX_CTL1_RX_DMA_START = (1 << 31),
365
+ RX_CTL1_RX_DMA_EN = (1 << 30),
366
+ RX_CTL1_RX_MD = (1 << 1),
367
+};
368
+
369
+enum {
370
+ RX_FRM_FLT_DIS_ADDR = (1 << 31),
371
+};
372
+
373
+enum {
374
+ MII_CMD_PHY_ADDR_SHIFT = (12),
375
+ MII_CMD_PHY_ADDR_MASK = (0xf000),
376
+ MII_CMD_PHY_REG_SHIFT = (4),
377
+ MII_CMD_PHY_REG_MASK = (0xf0),
378
+ MII_CMD_PHY_RW = (1 << 1),
379
+ MII_CMD_PHY_BUSY = (1 << 0),
380
+};
381
+
382
+enum {
383
+ TX_DMA_STA_STOP = (0b000),
384
+ TX_DMA_STA_RUN_FETCH = (0b001),
385
+ TX_DMA_STA_WAIT_STA = (0b010),
386
+};
387
+
388
+enum {
389
+ RX_DMA_STA_STOP = (0b000),
390
+ RX_DMA_STA_RUN_FETCH = (0b001),
391
+ RX_DMA_STA_WAIT_FRM = (0b011),
392
+};
393
+
394
+/* EMAC register reset values */
395
+enum {
396
+ REG_BASIC_CTL_1_RST = 0x08000000,
397
+};
398
+
399
+/* EMAC constants */
400
+enum {
401
+ AW_SUN8I_EMAC_MIN_PKT_SZ = 64
402
+};
403
+
404
+/* Transmit/receive frame descriptor */
405
+typedef struct FrameDescriptor {
406
+ uint32_t status;
407
+ uint32_t status2;
408
+ uint32_t addr;
409
+ uint32_t next;
410
+} FrameDescriptor;
411
+
412
+/* Frame descriptor flags */
413
+enum {
414
+ DESC_STATUS_CTL = (1 << 31),
415
+ DESC_STATUS2_BUF_SIZE_MASK = (0x7ff),
416
+};
417
+
418
+/* Transmit frame descriptor flags */
419
+enum {
420
+ TX_DESC_STATUS_LENGTH_ERR = (1 << 14),
421
+ TX_DESC_STATUS2_FIRST_DESC = (1 << 29),
422
+ TX_DESC_STATUS2_LAST_DESC = (1 << 30),
423
+ TX_DESC_STATUS2_CHECKSUM_MASK = (0x3 << 27),
424
+};
425
+
426
+/* Receive frame descriptor flags */
427
+enum {
428
+ RX_DESC_STATUS_FIRST_DESC = (1 << 9),
429
+ RX_DESC_STATUS_LAST_DESC = (1 << 8),
430
+ RX_DESC_STATUS_FRM_LEN_MASK = (0x3fff0000),
431
+ RX_DESC_STATUS_FRM_LEN_SHIFT = (16),
432
+ RX_DESC_STATUS_NO_BUF = (1 << 14),
433
+ RX_DESC_STATUS_HEADER_ERR = (1 << 7),
434
+ RX_DESC_STATUS_LENGTH_ERR = (1 << 4),
435
+ RX_DESC_STATUS_CRC_ERR = (1 << 1),
436
+ RX_DESC_STATUS_PAYLOAD_ERR = (1 << 0),
437
+ RX_DESC_STATUS2_RX_INT_CTL = (1 << 31),
438
+};
439
+
440
+/* MII register offsets */
441
+enum {
442
+ MII_REG_CR = (0x0), /* Control */
443
+ MII_REG_ST = (0x1), /* Status */
444
+ MII_REG_ID_HIGH = (0x2), /* Identifier High */
445
+ MII_REG_ID_LOW = (0x3), /* Identifier Low */
446
+ MII_REG_ADV = (0x4), /* Advertised abilities */
447
+ MII_REG_LPA = (0x5), /* Link partner abilities */
448
+};
449
+
450
+/* MII register flags */
451
+enum {
452
+ MII_REG_CR_RESET = (1 << 15),
453
+ MII_REG_CR_POWERDOWN = (1 << 11),
454
+ MII_REG_CR_10Mbit = (0),
455
+ MII_REG_CR_100Mbit = (1 << 13),
456
+ MII_REG_CR_1000Mbit = (1 << 6),
457
+ MII_REG_CR_AUTO_NEG = (1 << 12),
458
+ MII_REG_CR_AUTO_NEG_RESTART = (1 << 9),
459
+ MII_REG_CR_FULLDUPLEX = (1 << 8),
460
+};
461
+
462
+enum {
463
+ MII_REG_ST_100BASE_T4 = (1 << 15),
464
+ MII_REG_ST_100BASE_X_FD = (1 << 14),
465
+ MII_REG_ST_100BASE_X_HD = (1 << 13),
466
+ MII_REG_ST_10_FD = (1 << 12),
467
+ MII_REG_ST_10_HD = (1 << 11),
468
+ MII_REG_ST_100BASE_T2_FD = (1 << 10),
469
+ MII_REG_ST_100BASE_T2_HD = (1 << 9),
470
+ MII_REG_ST_AUTONEG_COMPLETE = (1 << 5),
471
+ MII_REG_ST_AUTONEG_AVAIL = (1 << 3),
472
+ MII_REG_ST_LINK_UP = (1 << 2),
473
+};
474
+
475
+enum {
476
+ MII_REG_LPA_10_HD = (1 << 5),
477
+ MII_REG_LPA_10_FD = (1 << 6),
478
+ MII_REG_LPA_100_HD = (1 << 7),
479
+ MII_REG_LPA_100_FD = (1 << 8),
480
+ MII_REG_LPA_PAUSE = (1 << 10),
481
+ MII_REG_LPA_ASYMPAUSE = (1 << 11),
482
+};
483
+
484
+/* MII constants */
485
+enum {
486
+ MII_PHY_ID_HIGH = 0x0044,
487
+ MII_PHY_ID_LOW = 0x1400,
488
+};
489
+
490
+static void allwinner_sun8i_emac_mii_set_link(AwSun8iEmacState *s,
491
+ bool link_active)
492
+{
493
+ if (link_active) {
494
+ s->mii_st |= MII_REG_ST_LINK_UP;
495
+ } else {
496
+ s->mii_st &= ~MII_REG_ST_LINK_UP;
497
+ }
498
+}
499
+
500
+static void allwinner_sun8i_emac_mii_reset(AwSun8iEmacState *s,
501
+ bool link_active)
502
+{
503
+ s->mii_cr = MII_REG_CR_100Mbit | MII_REG_CR_AUTO_NEG |
504
+ MII_REG_CR_FULLDUPLEX;
505
+ s->mii_st = MII_REG_ST_100BASE_T4 | MII_REG_ST_100BASE_X_FD |
506
+ MII_REG_ST_100BASE_X_HD | MII_REG_ST_10_FD | MII_REG_ST_10_HD |
507
+ MII_REG_ST_100BASE_T2_FD | MII_REG_ST_100BASE_T2_HD |
508
+ MII_REG_ST_AUTONEG_COMPLETE | MII_REG_ST_AUTONEG_AVAIL;
509
+ s->mii_adv = 0;
510
+
511
+ allwinner_sun8i_emac_mii_set_link(s, link_active);
512
+}
513
+
514
+static void allwinner_sun8i_emac_mii_cmd(AwSun8iEmacState *s)
515
+{
516
+ uint8_t addr, reg;
517
+
518
+ addr = (s->mii_cmd & MII_CMD_PHY_ADDR_MASK) >> MII_CMD_PHY_ADDR_SHIFT;
519
+ reg = (s->mii_cmd & MII_CMD_PHY_REG_MASK) >> MII_CMD_PHY_REG_SHIFT;
520
+
521
+ if (addr != s->mii_phy_addr) {
522
+ return;
523
+ }
524
+
525
+ /* Read or write a PHY register? */
526
+ if (s->mii_cmd & MII_CMD_PHY_RW) {
527
+ trace_allwinner_sun8i_emac_mii_write_reg(reg, s->mii_data);
528
+
529
+ switch (reg) {
530
+ case MII_REG_CR:
531
+ if (s->mii_data & MII_REG_CR_RESET) {
532
+ allwinner_sun8i_emac_mii_reset(s, s->mii_st &
533
+ MII_REG_ST_LINK_UP);
534
+ } else {
535
+ s->mii_cr = s->mii_data & ~(MII_REG_CR_RESET |
536
+ MII_REG_CR_AUTO_NEG_RESTART);
537
+ }
538
+ break;
539
+ case MII_REG_ADV:
540
+ s->mii_adv = s->mii_data;
541
+ break;
542
+ case MII_REG_ID_HIGH:
543
+ case MII_REG_ID_LOW:
544
+ case MII_REG_LPA:
545
+ break;
546
+ default:
547
+ qemu_log_mask(LOG_UNIMP, "allwinner-h3-emac: write access to "
548
+ "unknown MII register 0x%x\n", reg);
549
+ break;
550
+ }
551
+ } else {
552
+ switch (reg) {
553
+ case MII_REG_CR:
554
+ s->mii_data = s->mii_cr;
555
+ break;
556
+ case MII_REG_ST:
557
+ s->mii_data = s->mii_st;
558
+ break;
559
+ case MII_REG_ID_HIGH:
560
+ s->mii_data = MII_PHY_ID_HIGH;
561
+ break;
562
+ case MII_REG_ID_LOW:
563
+ s->mii_data = MII_PHY_ID_LOW;
564
+ break;
565
+ case MII_REG_ADV:
566
+ s->mii_data = s->mii_adv;
567
+ break;
568
+ case MII_REG_LPA:
569
+ s->mii_data = MII_REG_LPA_10_HD | MII_REG_LPA_10_FD |
570
+ MII_REG_LPA_100_HD | MII_REG_LPA_100_FD |
571
+ MII_REG_LPA_PAUSE | MII_REG_LPA_ASYMPAUSE;
572
+ break;
573
+ default:
574
+ qemu_log_mask(LOG_UNIMP, "allwinner-h3-emac: read access to "
575
+ "unknown MII register 0x%x\n", reg);
576
+ s->mii_data = 0;
577
+ break;
578
+ }
579
+
580
+ trace_allwinner_sun8i_emac_mii_read_reg(reg, s->mii_data);
581
+ }
582
+}
583
+
584
+static void allwinner_sun8i_emac_update_irq(AwSun8iEmacState *s)
585
+{
586
+ qemu_set_irq(s->irq, (s->int_sta & s->int_en) != 0);
587
+}
588
+
589
+static uint32_t allwinner_sun8i_emac_next_desc(FrameDescriptor *desc,
590
+ size_t min_size)
591
+{
592
+ uint32_t paddr = desc->next;
593
+
594
+ cpu_physical_memory_read(paddr, desc, sizeof(*desc));
595
+
596
+ if ((desc->status & DESC_STATUS_CTL) &&
597
+ (desc->status2 & DESC_STATUS2_BUF_SIZE_MASK) >= min_size) {
598
+ return paddr;
599
+ } else {
600
+ return 0;
601
+ }
602
+}
603
+
604
+static uint32_t allwinner_sun8i_emac_get_desc(FrameDescriptor *desc,
605
+ uint32_t start_addr,
606
+ size_t min_size)
607
+{
608
+ uint32_t desc_addr = start_addr;
609
+
610
+ /* Note that the list is a cycle. Last entry points back to the head. */
611
+ while (desc_addr != 0) {
612
+ cpu_physical_memory_read(desc_addr, desc, sizeof(*desc));
613
+
614
+ if ((desc->status & DESC_STATUS_CTL) &&
615
+ (desc->status2 & DESC_STATUS2_BUF_SIZE_MASK) >= min_size) {
616
+ return desc_addr;
617
+ } else if (desc->next == start_addr) {
618
+ break;
619
+ } else {
620
+ desc_addr = desc->next;
621
+ }
622
+ }
623
+
624
+ return 0;
625
+}
626
+
627
+static uint32_t allwinner_sun8i_emac_rx_desc(AwSun8iEmacState *s,
628
+ FrameDescriptor *desc,
629
+ size_t min_size)
630
+{
631
+ return allwinner_sun8i_emac_get_desc(desc, s->rx_desc_curr, min_size);
632
+}
633
+
634
+static uint32_t allwinner_sun8i_emac_tx_desc(AwSun8iEmacState *s,
635
+ FrameDescriptor *desc,
636
+ size_t min_size)
637
+{
638
+ return allwinner_sun8i_emac_get_desc(desc, s->tx_desc_head, min_size);
639
+}
640
+
641
+static void allwinner_sun8i_emac_flush_desc(FrameDescriptor *desc,
642
+ uint32_t phys_addr)
643
+{
644
+ cpu_physical_memory_write(phys_addr, desc, sizeof(*desc));
645
+}
646
+
647
+static int allwinner_sun8i_emac_can_receive(NetClientState *nc)
648
+{
649
+ AwSun8iEmacState *s = qemu_get_nic_opaque(nc);
650
+ FrameDescriptor desc;
651
+
652
+ return (s->rx_ctl0 & RX_CTL0_RX_EN) &&
653
+ (allwinner_sun8i_emac_rx_desc(s, &desc, 0) != 0);
654
+}
655
+
656
+static ssize_t allwinner_sun8i_emac_receive(NetClientState *nc,
657
+ const uint8_t *buf,
658
+ size_t size)
659
+{
660
+ AwSun8iEmacState *s = qemu_get_nic_opaque(nc);
661
+ FrameDescriptor desc;
662
+ size_t bytes_left = size;
663
+ size_t desc_bytes = 0;
664
+ size_t pad_fcs_size = 4;
665
+ size_t padding = 0;
666
+
667
+ if (!(s->rx_ctl0 & RX_CTL0_RX_EN)) {
668
+ return -1;
669
+ }
670
+
671
+ s->rx_desc_curr = allwinner_sun8i_emac_rx_desc(s, &desc,
672
+ AW_SUN8I_EMAC_MIN_PKT_SZ);
673
+ if (!s->rx_desc_curr) {
674
+ s->int_sta |= INT_STA_RX_BUF_UA;
675
+ }
676
+
677
+ /* Keep filling RX descriptors until the whole frame is written */
678
+ while (s->rx_desc_curr && bytes_left > 0) {
679
+ desc.status &= ~DESC_STATUS_CTL;
680
+ desc.status &= ~RX_DESC_STATUS_FRM_LEN_MASK;
681
+
682
+ if (bytes_left == size) {
683
+ desc.status |= RX_DESC_STATUS_FIRST_DESC;
684
+ }
685
+
686
+ if ((desc.status2 & DESC_STATUS2_BUF_SIZE_MASK) <
687
+ (bytes_left + pad_fcs_size)) {
688
+ desc_bytes = desc.status2 & DESC_STATUS2_BUF_SIZE_MASK;
689
+ desc.status |= desc_bytes << RX_DESC_STATUS_FRM_LEN_SHIFT;
690
+ } else {
691
+ padding = pad_fcs_size;
692
+ if (bytes_left < AW_SUN8I_EMAC_MIN_PKT_SZ) {
693
+ padding += (AW_SUN8I_EMAC_MIN_PKT_SZ - bytes_left);
694
+ }
695
+
696
+ desc_bytes = (bytes_left);
697
+ desc.status |= RX_DESC_STATUS_LAST_DESC;
698
+ desc.status |= (bytes_left + padding)
699
+ << RX_DESC_STATUS_FRM_LEN_SHIFT;
700
+ }
701
+
702
+ cpu_physical_memory_write(desc.addr, buf, desc_bytes);
703
+ allwinner_sun8i_emac_flush_desc(&desc, s->rx_desc_curr);
704
+ trace_allwinner_sun8i_emac_receive(s->rx_desc_curr, desc.addr,
705
+ desc_bytes);
706
+
707
+ /* Check if frame needs to raise the receive interrupt */
708
+ if (!(desc.status2 & RX_DESC_STATUS2_RX_INT_CTL)) {
709
+ s->int_sta |= INT_STA_RX;
710
+ }
711
+
712
+ /* Increment variables */
713
+ buf += desc_bytes;
714
+ bytes_left -= desc_bytes;
715
+
716
+ /* Move to the next descriptor */
717
+ s->rx_desc_curr = allwinner_sun8i_emac_next_desc(&desc, 64);
718
+ if (!s->rx_desc_curr) {
719
+ /* Not enough buffer space available */
720
+ s->int_sta |= INT_STA_RX_BUF_UA;
721
+ s->rx_desc_curr = s->rx_desc_head;
722
+ break;
723
+ }
724
+ }
725
+
726
+ /* Report receive DMA is finished */
727
+ s->rx_ctl1 &= ~RX_CTL1_RX_DMA_START;
728
+ allwinner_sun8i_emac_update_irq(s);
729
+
730
+ return size;
731
+}
732
+
733
+static void allwinner_sun8i_emac_transmit(AwSun8iEmacState *s)
734
+{
735
+ NetClientState *nc = qemu_get_queue(s->nic);
736
+ FrameDescriptor desc;
737
+ size_t bytes = 0;
738
+ size_t packet_bytes = 0;
739
+ size_t transmitted = 0;
740
+ static uint8_t packet_buf[2048];
741
+
742
+ s->tx_desc_curr = allwinner_sun8i_emac_tx_desc(s, &desc, 0);
743
+
744
+ /* Read all transmit descriptors */
745
+ while (s->tx_desc_curr != 0) {
746
+
747
+ /* Read from physical memory into packet buffer */
748
+ bytes = desc.status2 & DESC_STATUS2_BUF_SIZE_MASK;
749
+ if (bytes + packet_bytes > sizeof(packet_buf)) {
750
+ desc.status |= TX_DESC_STATUS_LENGTH_ERR;
751
+ break;
752
+ }
753
+ cpu_physical_memory_read(desc.addr, packet_buf + packet_bytes, bytes);
754
+ packet_bytes += bytes;
755
+ desc.status &= ~DESC_STATUS_CTL;
756
+ allwinner_sun8i_emac_flush_desc(&desc, s->tx_desc_curr);
757
+
758
+ /* After the last descriptor, send the packet */
759
+ if (desc.status2 & TX_DESC_STATUS2_LAST_DESC) {
760
+ if (desc.status2 & TX_DESC_STATUS2_CHECKSUM_MASK) {
761
+ net_checksum_calculate(packet_buf, packet_bytes);
762
+ }
763
+
764
+ qemu_send_packet(nc, packet_buf, packet_bytes);
765
+ trace_allwinner_sun8i_emac_transmit(s->tx_desc_curr, desc.addr,
766
+ bytes);
767
+
768
+ packet_bytes = 0;
769
+ transmitted++;
770
+ }
771
+ s->tx_desc_curr = allwinner_sun8i_emac_next_desc(&desc, 0);
772
+ }
773
+
774
+ /* Raise transmit completed interrupt */
775
+ if (transmitted > 0) {
776
+ s->int_sta |= INT_STA_TX;
777
+ s->tx_ctl1 &= ~TX_CTL1_TX_DMA_START;
778
+ allwinner_sun8i_emac_update_irq(s);
779
+ }
780
+}
781
+
782
+static void allwinner_sun8i_emac_reset(DeviceState *dev)
783
+{
784
+ AwSun8iEmacState *s = AW_SUN8I_EMAC(dev);
785
+ NetClientState *nc = qemu_get_queue(s->nic);
786
+
787
+ trace_allwinner_sun8i_emac_reset();
788
+
789
+ s->mii_cmd = 0;
790
+ s->mii_data = 0;
791
+ s->basic_ctl0 = 0;
792
+ s->basic_ctl1 = REG_BASIC_CTL_1_RST;
793
+ s->int_en = 0;
794
+ s->int_sta = 0;
795
+ s->frm_flt = 0;
796
+ s->rx_ctl0 = 0;
797
+ s->rx_ctl1 = RX_CTL1_RX_MD;
798
+ s->rx_desc_head = 0;
799
+ s->rx_desc_curr = 0;
800
+ s->tx_ctl0 = 0;
801
+ s->tx_ctl1 = 0;
802
+ s->tx_desc_head = 0;
803
+ s->tx_desc_curr = 0;
804
+ s->tx_flowctl = 0;
805
+
806
+ allwinner_sun8i_emac_mii_reset(s, !nc->link_down);
807
+}
808
+
809
+static uint64_t allwinner_sun8i_emac_read(void *opaque, hwaddr offset,
810
+ unsigned size)
811
+{
812
+ AwSun8iEmacState *s = AW_SUN8I_EMAC(opaque);
813
+ uint64_t value = 0;
814
+ FrameDescriptor desc;
815
+
816
+ switch (offset) {
817
+ case REG_BASIC_CTL_0: /* Basic Control 0 */
818
+ value = s->basic_ctl0;
819
+ break;
820
+ case REG_BASIC_CTL_1: /* Basic Control 1 */
821
+ value = s->basic_ctl1;
822
+ break;
823
+ case REG_INT_STA: /* Interrupt Status */
824
+ value = s->int_sta;
825
+ break;
826
+ case REG_INT_EN: /* Interupt Enable */
827
+ value = s->int_en;
828
+ break;
829
+ case REG_TX_CTL_0: /* Transmit Control 0 */
830
+ value = s->tx_ctl0;
831
+ break;
832
+ case REG_TX_CTL_1: /* Transmit Control 1 */
833
+ value = s->tx_ctl1;
834
+ break;
835
+ case REG_TX_FLOW_CTL: /* Transmit Flow Control */
836
+ value = s->tx_flowctl;
837
+ break;
838
+ case REG_TX_DMA_DESC_LIST: /* Transmit Descriptor List Address */
839
+ value = s->tx_desc_head;
840
+ break;
841
+ case REG_RX_CTL_0: /* Receive Control 0 */
842
+ value = s->rx_ctl0;
843
+ break;
844
+ case REG_RX_CTL_1: /* Receive Control 1 */
845
+ value = s->rx_ctl1;
846
+ break;
847
+ case REG_RX_DMA_DESC_LIST: /* Receive Descriptor List Address */
848
+ value = s->rx_desc_head;
849
+ break;
850
+ case REG_FRM_FLT: /* Receive Frame Filter */
851
+ value = s->frm_flt;
852
+ break;
853
+ case REG_RX_HASH_0: /* Receive Hash Table 0 */
854
+ case REG_RX_HASH_1: /* Receive Hash Table 1 */
855
+ break;
856
+ case REG_MII_CMD: /* Management Interface Command */
857
+ value = s->mii_cmd;
858
+ break;
859
+ case REG_MII_DATA: /* Management Interface Data */
860
+ value = s->mii_data;
861
+ break;
862
+ case REG_ADDR_HIGH: /* MAC Address High */
863
+ value = *(((uint32_t *) (s->conf.macaddr.a)) + 1);
864
+ break;
865
+ case REG_ADDR_LOW: /* MAC Address Low */
866
+ value = *(uint32_t *) (s->conf.macaddr.a);
867
+ break;
868
+ case REG_TX_DMA_STA: /* Transmit DMA Status */
869
+ break;
870
+ case REG_TX_CUR_DESC: /* Transmit Current Descriptor */
871
+ value = s->tx_desc_curr;
872
+ break;
873
+ case REG_TX_CUR_BUF: /* Transmit Current Buffer */
874
+ if (s->tx_desc_curr != 0) {
875
+ cpu_physical_memory_read(s->tx_desc_curr, &desc, sizeof(desc));
876
+ value = desc.addr;
877
+ } else {
878
+ value = 0;
879
+ }
880
+ break;
881
+ case REG_RX_DMA_STA: /* Receive DMA Status */
882
+ break;
883
+ case REG_RX_CUR_DESC: /* Receive Current Descriptor */
884
+ value = s->rx_desc_curr;
885
+ break;
886
+ case REG_RX_CUR_BUF: /* Receive Current Buffer */
887
+ if (s->rx_desc_curr != 0) {
888
+ cpu_physical_memory_read(s->rx_desc_curr, &desc, sizeof(desc));
889
+ value = desc.addr;
890
+ } else {
891
+ value = 0;
892
+ }
893
+ break;
894
+ case REG_RGMII_STA: /* RGMII Status */
895
+ break;
896
+ default:
897
+ qemu_log_mask(LOG_UNIMP, "allwinner-h3-emac: read access to unknown "
898
+ "EMAC register 0x" TARGET_FMT_plx "\n",
899
+ offset);
900
+ }
901
+
902
+ trace_allwinner_sun8i_emac_read(offset, value);
903
+ return value;
904
+}
905
+
906
+static void allwinner_sun8i_emac_write(void *opaque, hwaddr offset,
907
+ uint64_t value, unsigned size)
908
+{
909
+ AwSun8iEmacState *s = AW_SUN8I_EMAC(opaque);
910
+ NetClientState *nc = qemu_get_queue(s->nic);
911
+
912
+ trace_allwinner_sun8i_emac_write(offset, value);
913
+
914
+ switch (offset) {
915
+ case REG_BASIC_CTL_0: /* Basic Control 0 */
916
+ s->basic_ctl0 = value;
917
+ break;
918
+ case REG_BASIC_CTL_1: /* Basic Control 1 */
919
+ if (value & BASIC_CTL1_SOFTRST) {
920
+ allwinner_sun8i_emac_reset(DEVICE(s));
921
+ value &= ~BASIC_CTL1_SOFTRST;
922
+ }
923
+ s->basic_ctl1 = value;
924
+ if (allwinner_sun8i_emac_can_receive(nc)) {
925
+ qemu_flush_queued_packets(nc);
926
+ }
927
+ break;
928
+ case REG_INT_STA: /* Interrupt Status */
929
+ s->int_sta &= ~value;
930
+ allwinner_sun8i_emac_update_irq(s);
931
+ break;
932
+ case REG_INT_EN: /* Interrupt Enable */
933
+ s->int_en = value;
934
+ allwinner_sun8i_emac_update_irq(s);
935
+ break;
936
+ case REG_TX_CTL_0: /* Transmit Control 0 */
937
+ s->tx_ctl0 = value;
938
+ break;
939
+ case REG_TX_CTL_1: /* Transmit Control 1 */
940
+ s->tx_ctl1 = value;
941
+ if (value & TX_CTL1_TX_DMA_EN) {
942
+ allwinner_sun8i_emac_transmit(s);
943
+ }
944
+ break;
945
+ case REG_TX_FLOW_CTL: /* Transmit Flow Control */
946
+ s->tx_flowctl = value;
947
+ break;
948
+ case REG_TX_DMA_DESC_LIST: /* Transmit Descriptor List Address */
949
+ s->tx_desc_head = value;
950
+ s->tx_desc_curr = value;
951
+ break;
952
+ case REG_RX_CTL_0: /* Receive Control 0 */
953
+ s->rx_ctl0 = value;
954
+ break;
955
+ case REG_RX_CTL_1: /* Receive Control 1 */
956
+ s->rx_ctl1 = value | RX_CTL1_RX_MD;
957
+ if ((value & RX_CTL1_RX_DMA_EN) &&
958
+ allwinner_sun8i_emac_can_receive(nc)) {
959
+ qemu_flush_queued_packets(nc);
960
+ }
961
+ break;
962
+ case REG_RX_DMA_DESC_LIST: /* Receive Descriptor List Address */
963
+ s->rx_desc_head = value;
964
+ s->rx_desc_curr = value;
965
+ break;
966
+ case REG_FRM_FLT: /* Receive Frame Filter */
967
+ s->frm_flt = value;
968
+ break;
969
+ case REG_RX_HASH_0: /* Receive Hash Table 0 */
970
+ case REG_RX_HASH_1: /* Receive Hash Table 1 */
971
+ break;
972
+ case REG_MII_CMD: /* Management Interface Command */
973
+ s->mii_cmd = value & ~MII_CMD_PHY_BUSY;
974
+ allwinner_sun8i_emac_mii_cmd(s);
975
+ break;
976
+ case REG_MII_DATA: /* Management Interface Data */
977
+ s->mii_data = value;
978
+ break;
979
+ case REG_ADDR_HIGH: /* MAC Address High */
980
+ s->conf.macaddr.a[4] = (value & 0xff);
981
+ s->conf.macaddr.a[5] = (value & 0xff00) >> 8;
982
+ break;
983
+ case REG_ADDR_LOW: /* MAC Address Low */
984
+ s->conf.macaddr.a[0] = (value & 0xff);
985
+ s->conf.macaddr.a[1] = (value & 0xff00) >> 8;
986
+ s->conf.macaddr.a[2] = (value & 0xff0000) >> 16;
987
+ s->conf.macaddr.a[3] = (value & 0xff000000) >> 24;
988
+ break;
989
+ case REG_TX_DMA_STA: /* Transmit DMA Status */
990
+ case REG_TX_CUR_DESC: /* Transmit Current Descriptor */
991
+ case REG_TX_CUR_BUF: /* Transmit Current Buffer */
992
+ case REG_RX_DMA_STA: /* Receive DMA Status */
993
+ case REG_RX_CUR_DESC: /* Receive Current Descriptor */
994
+ case REG_RX_CUR_BUF: /* Receive Current Buffer */
995
+ case REG_RGMII_STA: /* RGMII Status */
996
+ break;
997
+ default:
998
+ qemu_log_mask(LOG_UNIMP, "allwinner-h3-emac: write access to unknown "
999
+ "EMAC register 0x" TARGET_FMT_plx "\n",
1000
+ offset);
1001
+ }
1002
+}
1003
+
1004
+static void allwinner_sun8i_emac_set_link(NetClientState *nc)
1005
+{
1006
+ AwSun8iEmacState *s = qemu_get_nic_opaque(nc);
1007
+
1008
+ trace_allwinner_sun8i_emac_set_link(!nc->link_down);
1009
+ allwinner_sun8i_emac_mii_set_link(s, !nc->link_down);
1010
+}
1011
+
1012
+static const MemoryRegionOps allwinner_sun8i_emac_mem_ops = {
1013
+ .read = allwinner_sun8i_emac_read,
1014
+ .write = allwinner_sun8i_emac_write,
1015
+ .endianness = DEVICE_NATIVE_ENDIAN,
1016
+ .valid = {
1017
+ .min_access_size = 4,
1018
+ .max_access_size = 4,
1019
+ },
1020
+ .impl.min_access_size = 4,
1021
+};
1022
+
1023
+static NetClientInfo net_allwinner_sun8i_emac_info = {
1024
+ .type = NET_CLIENT_DRIVER_NIC,
1025
+ .size = sizeof(NICState),
1026
+ .can_receive = allwinner_sun8i_emac_can_receive,
1027
+ .receive = allwinner_sun8i_emac_receive,
1028
+ .link_status_changed = allwinner_sun8i_emac_set_link,
1029
+};
1030
+
1031
+static void allwinner_sun8i_emac_init(Object *obj)
1032
+{
1033
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
1034
+ AwSun8iEmacState *s = AW_SUN8I_EMAC(obj);
1035
+
1036
+ memory_region_init_io(&s->iomem, OBJECT(s), &allwinner_sun8i_emac_mem_ops,
1037
+ s, TYPE_AW_SUN8I_EMAC, 64 * KiB);
1038
+ sysbus_init_mmio(sbd, &s->iomem);
1039
+ sysbus_init_irq(sbd, &s->irq);
1040
+}
1041
+
1042
+static void allwinner_sun8i_emac_realize(DeviceState *dev, Error **errp)
1043
+{
1044
+ AwSun8iEmacState *s = AW_SUN8I_EMAC(dev);
1045
+
1046
+ qemu_macaddr_default_if_unset(&s->conf.macaddr);
1047
+ s->nic = qemu_new_nic(&net_allwinner_sun8i_emac_info, &s->conf,
1048
+ object_get_typename(OBJECT(dev)), dev->id, s);
1049
+ qemu_format_nic_info_str(qemu_get_queue(s->nic), s->conf.macaddr.a);
1050
+}
1051
+
1052
+static Property allwinner_sun8i_emac_properties[] = {
1053
+ DEFINE_NIC_PROPERTIES(AwSun8iEmacState, conf),
1054
+ DEFINE_PROP_UINT8("phy-addr", AwSun8iEmacState, mii_phy_addr, 0),
1055
+ DEFINE_PROP_END_OF_LIST(),
1056
+};
1057
+
1058
+static int allwinner_sun8i_emac_post_load(void *opaque, int version_id)
1059
+{
1060
+ AwSun8iEmacState *s = opaque;
1061
+
1062
+ allwinner_sun8i_emac_set_link(qemu_get_queue(s->nic));
1063
+
1064
+ return 0;
1065
+}
1066
+
1067
+static const VMStateDescription vmstate_aw_emac = {
1068
+ .name = "allwinner-sun8i-emac",
1069
+ .version_id = 1,
1070
+ .minimum_version_id = 1,
1071
+ .post_load = allwinner_sun8i_emac_post_load,
1072
+ .fields = (VMStateField[]) {
1073
+ VMSTATE_UINT8(mii_phy_addr, AwSun8iEmacState),
1074
+ VMSTATE_UINT32(mii_cmd, AwSun8iEmacState),
1075
+ VMSTATE_UINT32(mii_data, AwSun8iEmacState),
1076
+ VMSTATE_UINT32(mii_cr, AwSun8iEmacState),
1077
+ VMSTATE_UINT32(mii_st, AwSun8iEmacState),
1078
+ VMSTATE_UINT32(mii_adv, AwSun8iEmacState),
1079
+ VMSTATE_UINT32(basic_ctl0, AwSun8iEmacState),
1080
+ VMSTATE_UINT32(basic_ctl1, AwSun8iEmacState),
1081
+ VMSTATE_UINT32(int_en, AwSun8iEmacState),
1082
+ VMSTATE_UINT32(int_sta, AwSun8iEmacState),
1083
+ VMSTATE_UINT32(frm_flt, AwSun8iEmacState),
1084
+ VMSTATE_UINT32(rx_ctl0, AwSun8iEmacState),
1085
+ VMSTATE_UINT32(rx_ctl1, AwSun8iEmacState),
1086
+ VMSTATE_UINT32(rx_desc_head, AwSun8iEmacState),
1087
+ VMSTATE_UINT32(rx_desc_curr, AwSun8iEmacState),
1088
+ VMSTATE_UINT32(tx_ctl0, AwSun8iEmacState),
1089
+ VMSTATE_UINT32(tx_ctl1, AwSun8iEmacState),
1090
+ VMSTATE_UINT32(tx_desc_head, AwSun8iEmacState),
1091
+ VMSTATE_UINT32(tx_desc_curr, AwSun8iEmacState),
1092
+ VMSTATE_UINT32(tx_flowctl, AwSun8iEmacState),
1093
+ VMSTATE_END_OF_LIST()
1094
+ }
1095
+};
1096
+
1097
+static void allwinner_sun8i_emac_class_init(ObjectClass *klass, void *data)
1098
+{
1099
+ DeviceClass *dc = DEVICE_CLASS(klass);
1100
+
1101
+ dc->realize = allwinner_sun8i_emac_realize;
1102
+ dc->reset = allwinner_sun8i_emac_reset;
1103
+ dc->vmsd = &vmstate_aw_emac;
1104
+ device_class_set_props(dc, allwinner_sun8i_emac_properties);
1105
+}
1106
+
1107
+static const TypeInfo allwinner_sun8i_emac_info = {
1108
+ .name = TYPE_AW_SUN8I_EMAC,
1109
+ .parent = TYPE_SYS_BUS_DEVICE,
1110
+ .instance_size = sizeof(AwSun8iEmacState),
1111
+ .instance_init = allwinner_sun8i_emac_init,
1112
+ .class_init = allwinner_sun8i_emac_class_init,
1113
+};
1114
+
1115
+static void allwinner_sun8i_emac_register_types(void)
1116
+{
1117
+ type_register_static(&allwinner_sun8i_emac_info);
1118
+}
1119
+
1120
+type_init(allwinner_sun8i_emac_register_types)
1121
diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig
94
index XXXXXXX..XXXXXXX 100644
1122
index XXXXXXX..XXXXXXX 100644
95
--- a/target/arm/sve.decode
1123
--- a/hw/arm/Kconfig
96
+++ b/target/arm/sve.decode
1124
+++ b/hw/arm/Kconfig
97
@@ -XXX,XX +XXX,XX @@ UZP2_z 00000101 .. 1 ..... 011 011 ..... ..... @rd_rn_rm
1125
@@ -XXX,XX +XXX,XX @@ config ALLWINNER_A10
98
TRN1_z 00000101 .. 1 ..... 011 100 ..... ..... @rd_rn_rm
1126
config ALLWINNER_H3
99
TRN2_z 00000101 .. 1 ..... 011 101 ..... ..... @rd_rn_rm
1127
bool
100
1128
select ALLWINNER_A10_PIT
101
+### SVE Permute - Predicated Group
1129
+ select ALLWINNER_SUN8I_EMAC
102
+
1130
select SERIAL
103
+# SVE compress active elements
1131
select ARM_TIMER
104
+# Note esz >= 2
1132
select ARM_GIC
105
+COMPACT 00000101 .. 100001 100 ... ..... ..... @rd_pg_rn
1133
diff --git a/hw/net/Kconfig b/hw/net/Kconfig
106
+
1134
index XXXXXXX..XXXXXXX 100644
107
### SVE Predicate Logical Operations Group
1135
--- a/hw/net/Kconfig
108
1136
+++ b/hw/net/Kconfig
109
# SVE predicate logical operations
1137
@@ -XXX,XX +XXX,XX @@ config MIPSNET
1138
config ALLWINNER_EMAC
1139
bool
1140
1141
+config ALLWINNER_SUN8I_EMAC
1142
+ bool
1143
+
1144
config IMX_FEC
1145
bool
1146
1147
diff --git a/hw/net/trace-events b/hw/net/trace-events
1148
index XXXXXXX..XXXXXXX 100644
1149
--- a/hw/net/trace-events
1150
+++ b/hw/net/trace-events
1151
@@ -XXX,XX +XXX,XX @@
1152
# See docs/devel/tracing.txt for syntax documentation.
1153
1154
+# allwinner-sun8i-emac.c
1155
+allwinner_sun8i_emac_mii_write_reg(uint32_t reg, uint32_t value) "MII write: reg=0x%" PRIx32 " value=0x%" PRIx32
1156
+allwinner_sun8i_emac_mii_read_reg(uint32_t reg, uint32_t value) "MII read: reg=0x%" PRIx32 " value=0x%" PRIx32
1157
+allwinner_sun8i_emac_receive(uint32_t desc, uint32_t paddr, uint32_t bytes) "RX packet: desc=0x%" PRIx32 " paddr=0x%" PRIx32 " bytes=%" PRIu32
1158
+allwinner_sun8i_emac_transmit(uint32_t desc, uint32_t paddr, uint32_t bytes) "TX packet: desc=0x%" PRIx32 " paddr=0x%" PRIx32 " bytes=%" PRIu32
1159
+allwinner_sun8i_emac_reset(void) "HW reset"
1160
+allwinner_sun8i_emac_set_link(bool active) "Set link: active=%u"
1161
+allwinner_sun8i_emac_read(uint64_t offset, uint64_t val) "MMIO read: offset=0x%" PRIx64 " value=0x%" PRIx64
1162
+allwinner_sun8i_emac_write(uint64_t offset, uint64_t val) "MMIO write: offset=0x%" PRIx64 " value=0x%" PRIx64
1163
+
1164
# etraxfs_eth.c
1165
mdio_phy_read(int regnum, uint16_t value) "read phy_reg:%d value:0x%04x"
1166
mdio_phy_write(int regnum, uint16_t value) "write phy_reg:%d value:0x%04x"
110
--
1167
--
111
2.17.1
1168
2.20.1
112
1169
113
1170
diff view generated by jsdifflib
1
From: Joel Stanley <joel@jms.id.au>
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
2
3
The ASPEED SoCs contain a single register that returns random data when
3
A real Allwinner H3 SoC contains a Boot ROM which is the
4
read. This models that register so that guests can use it.
4
first code that runs right after the SoC is powered on.
5
The Boot ROM is responsible for loading user code (e.g. a bootloader)
6
from any of the supported external devices and writing the downloaded
7
code to internal SRAM. After loading the SoC begins executing the code
8
written to SRAM.
5
9
6
The random number data register has a corresponding control register,
10
This commits adds emulation of the Boot ROM firmware setup functionality
7
however it returns data regardless of the state of the enabled bit, so
11
by loading user code from SD card in the A1 SRAM. While the A1 SRAM is
8
the model follows this behaviour.
12
64KiB, we limit the size to 32KiB because the real H3 Boot ROM also rejects
13
sizes larger than 32KiB. For reference, this behaviour is documented
14
by the Linux Sunxi project wiki at:
9
15
10
When the qcrypto call fails we exit as the guest uses the random number
16
https://linux-sunxi.org/BROM#U-Boot_SPL_limitations
11
device to feed it's entropy pool, which is used for cryptographic
12
purposes.
13
17
14
Reviewed-by: Cédric Le Goater <clg@kaod.org>
18
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
15
Signed-off-by: Joel Stanley <joel@jms.id.au>
19
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
16
Message-id: 20180613114836.9265-1-joel@jms.id.au
20
Message-id: 20200311221854.30370-11-nieklinnenbank@gmail.com
17
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
21
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
18
---
22
---
19
hw/misc/aspeed_scu.c | 20 ++++++++++++++++++++
23
include/hw/arm/allwinner-h3.h | 21 +++++++++++++++++++++
20
1 file changed, 20 insertions(+)
24
hw/arm/allwinner-h3.c | 17 +++++++++++++++++
25
hw/arm/orangepi.c | 5 +++++
26
3 files changed, 43 insertions(+)
21
27
22
diff --git a/hw/misc/aspeed_scu.c b/hw/misc/aspeed_scu.c
28
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
23
index XXXXXXX..XXXXXXX 100644
29
index XXXXXXX..XXXXXXX 100644
24
--- a/hw/misc/aspeed_scu.c
30
--- a/include/hw/arm/allwinner-h3.h
25
+++ b/hw/misc/aspeed_scu.c
31
+++ b/include/hw/arm/allwinner-h3.h
26
@@ -XXX,XX +XXX,XX @@
32
@@ -XXX,XX +XXX,XX @@
27
#include "qapi/visitor.h"
33
#include "hw/sd/allwinner-sdhost.h"
28
#include "qemu/bitops.h"
34
#include "hw/net/allwinner-sun8i-emac.h"
29
#include "qemu/log.h"
35
#include "target/arm/cpu.h"
30
+#include "crypto/random.h"
36
+#include "sysemu/block-backend.h"
31
#include "trace.h"
37
32
38
/**
33
#define TO_REG(offset) ((offset) >> 2)
39
* Allwinner H3 device list
34
@@ -XXX,XX +XXX,XX @@ static const uint32_t ast2500_a1_resets[ASPEED_SCU_NR_REGS] = {
40
@@ -XXX,XX +XXX,XX @@ typedef struct AwH3State {
35
[BMC_DEV_ID] = 0x00002402U
41
MemoryRegion sram_c;
42
} AwH3State;
43
44
+/**
45
+ * Emulate Boot ROM firmware setup functionality.
46
+ *
47
+ * A real Allwinner H3 SoC contains a Boot ROM
48
+ * which is the first code that runs right after
49
+ * the SoC is powered on. The Boot ROM is responsible
50
+ * for loading user code (e.g. a bootloader) from any
51
+ * of the supported external devices and writing the
52
+ * downloaded code to internal SRAM. After loading the SoC
53
+ * begins executing the code written to SRAM.
54
+ *
55
+ * This function emulates the Boot ROM by copying 32 KiB
56
+ * of data from the given block device and writes it to
57
+ * the start of the first internal SRAM memory.
58
+ *
59
+ * @s: Allwinner H3 state object pointer
60
+ * @blk: Block backend device object pointer
61
+ */
62
+void allwinner_h3_bootrom_setup(AwH3State *s, BlockBackend *blk);
63
+
64
#endif /* HW_ARM_ALLWINNER_H3_H */
65
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
66
index XXXXXXX..XXXXXXX 100644
67
--- a/hw/arm/allwinner-h3.c
68
+++ b/hw/arm/allwinner-h3.c
69
@@ -XXX,XX +XXX,XX @@
70
#include "hw/char/serial.h"
71
#include "hw/misc/unimp.h"
72
#include "hw/usb/hcd-ehci.h"
73
+#include "hw/loader.h"
74
#include "sysemu/sysemu.h"
75
#include "hw/arm/allwinner-h3.h"
76
77
@@ -XXX,XX +XXX,XX @@ enum {
78
AW_H3_GIC_NUM_SPI = 128
36
};
79
};
37
80
38
+static uint32_t aspeed_scu_get_random(void)
81
+void allwinner_h3_bootrom_setup(AwH3State *s, BlockBackend *blk)
39
+{
82
+{
40
+ Error *err = NULL;
83
+ const int64_t rom_size = 32 * KiB;
41
+ uint32_t num;
84
+ g_autofree uint8_t *buffer = g_new0(uint8_t, rom_size);
42
+
85
+
43
+ if (qcrypto_random_bytes((uint8_t *)&num, sizeof(num), &err)) {
86
+ if (blk_pread(blk, 8 * KiB, buffer, rom_size) < 0) {
44
+ error_report_err(err);
87
+ error_setg(&error_fatal, "%s: failed to read BlockBackend data",
45
+ exit(1);
88
+ __func__);
89
+ return;
46
+ }
90
+ }
47
+
91
+
48
+ return num;
92
+ rom_add_blob("allwinner-h3.bootrom", buffer, rom_size,
93
+ rom_size, s->memmap[AW_H3_SRAM_A1],
94
+ NULL, NULL, NULL, NULL, false);
49
+}
95
+}
50
+
96
+
51
static uint64_t aspeed_scu_read(void *opaque, hwaddr offset, unsigned size)
97
static void allwinner_h3_init(Object *obj)
52
{
98
{
53
AspeedSCUState *s = ASPEED_SCU(opaque);
99
AwH3State *s = AW_H3(obj);
54
@@ -XXX,XX +XXX,XX @@ static uint64_t aspeed_scu_read(void *opaque, hwaddr offset, unsigned size)
100
diff --git a/hw/arm/orangepi.c b/hw/arm/orangepi.c
55
}
101
index XXXXXXX..XXXXXXX 100644
56
102
--- a/hw/arm/orangepi.c
57
switch (reg) {
103
+++ b/hw/arm/orangepi.c
58
+ case RNG_DATA:
104
@@ -XXX,XX +XXX,XX @@ static void orangepi_init(MachineState *machine)
59
+ /* On hardware, RNG_DATA works regardless of
105
memory_region_add_subregion(get_system_memory(), h3->memmap[AW_H3_SDRAM],
60
+ * the state of the enable bit in RNG_CTRL
106
machine->ram);
61
+ */
107
62
+ s->regs[RNG_DATA] = aspeed_scu_get_random();
108
+ /* Load target kernel or start using BootROM */
63
+ break;
109
+ if (!machine->kernel_filename && blk_is_available(blk)) {
64
case WAKEUP_EN:
110
+ /* Use Boot ROM to copy data from SD card to SRAM */
65
qemu_log_mask(LOG_GUEST_ERROR,
111
+ allwinner_h3_bootrom_setup(h3, blk);
66
"%s: Read of write-only offset 0x%" HWADDR_PRIx "\n",
112
+ }
113
orangepi_binfo.loader_start = h3->memmap[AW_H3_SDRAM];
114
orangepi_binfo.ram_size = machine->ram_size;
115
arm_load_kernel(ARM_CPU(first_cpu), machine, &orangepi_binfo);
67
--
116
--
68
2.17.1
117
2.20.1
69
118
70
119
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
In the Allwinner H3 SoC the SDRAM controller is responsible
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
for interfacing with the external Synchronous Dynamic Random
5
Message-id: 20180613015641.5667-17-richard.henderson@linaro.org
5
Access Memory (SDRAM). Types of memory that the SDRAM controller
6
supports are DDR2/DDR3 and capacities of up to 2GiB. This commit
7
adds emulation support of the Allwinner H3 SDRAM controller.
8
9
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
10
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
11
Message-id: 20200311221854.30370-12-nieklinnenbank@gmail.com
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
13
---
8
target/arm/translate-sve.c | 37 +++++++++++++++++++++++++++++++++++++
14
hw/misc/Makefile.objs | 1 +
9
target/arm/sve.decode | 8 ++++++++
15
include/hw/arm/allwinner-h3.h | 5 +
10
2 files changed, 45 insertions(+)
16
include/hw/misc/allwinner-h3-dramc.h | 106 ++++++++
17
hw/arm/allwinner-h3.c | 19 +-
18
hw/arm/orangepi.c | 6 +
19
hw/misc/allwinner-h3-dramc.c | 358 +++++++++++++++++++++++++++
20
hw/misc/trace-events | 10 +
21
7 files changed, 502 insertions(+), 3 deletions(-)
22
create mode 100644 include/hw/misc/allwinner-h3-dramc.h
23
create mode 100644 hw/misc/allwinner-h3-dramc.c
11
24
12
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
25
diff --git a/hw/misc/Makefile.objs b/hw/misc/Makefile.objs
13
index XXXXXXX..XXXXXXX 100644
26
index XXXXXXX..XXXXXXX 100644
14
--- a/target/arm/translate-sve.c
27
--- a/hw/misc/Makefile.objs
15
+++ b/target/arm/translate-sve.c
28
+++ b/hw/misc/Makefile.objs
16
@@ -XXX,XX +XXX,XX @@ static bool trans_WHILE(DisasContext *s, arg_WHILE *a, uint32_t insn)
29
@@ -XXX,XX +XXX,XX @@ common-obj-$(CONFIG_IVSHMEM_DEVICE) += ivshmem.o
17
return true;
30
31
common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3-ccu.o
32
obj-$(CONFIG_ALLWINNER_H3) += allwinner-cpucfg.o
33
+common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3-dramc.o
34
common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-h3-sysctrl.o
35
common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-sid.o
36
common-obj-$(CONFIG_REALVIEW) += arm_sysctl.o
37
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
38
index XXXXXXX..XXXXXXX 100644
39
--- a/include/hw/arm/allwinner-h3.h
40
+++ b/include/hw/arm/allwinner-h3.h
41
@@ -XXX,XX +XXX,XX @@
42
#include "hw/intc/arm_gic.h"
43
#include "hw/misc/allwinner-h3-ccu.h"
44
#include "hw/misc/allwinner-cpucfg.h"
45
+#include "hw/misc/allwinner-h3-dramc.h"
46
#include "hw/misc/allwinner-h3-sysctrl.h"
47
#include "hw/misc/allwinner-sid.h"
48
#include "hw/sd/allwinner-sdhost.h"
49
@@ -XXX,XX +XXX,XX @@ enum {
50
AW_H3_UART2,
51
AW_H3_UART3,
52
AW_H3_EMAC,
53
+ AW_H3_DRAMCOM,
54
+ AW_H3_DRAMCTL,
55
+ AW_H3_DRAMPHY,
56
AW_H3_GIC_DIST,
57
AW_H3_GIC_CPU,
58
AW_H3_GIC_HYP,
59
@@ -XXX,XX +XXX,XX @@ typedef struct AwH3State {
60
AwA10PITState timer;
61
AwH3ClockCtlState ccu;
62
AwCpuCfgState cpucfg;
63
+ AwH3DramCtlState dramc;
64
AwH3SysCtrlState sysctrl;
65
AwSidState sid;
66
AwSdHostState mmc0;
67
diff --git a/include/hw/misc/allwinner-h3-dramc.h b/include/hw/misc/allwinner-h3-dramc.h
68
new file mode 100644
69
index XXXXXXX..XXXXXXX
70
--- /dev/null
71
+++ b/include/hw/misc/allwinner-h3-dramc.h
72
@@ -XXX,XX +XXX,XX @@
73
+/*
74
+ * Allwinner H3 SDRAM Controller emulation
75
+ *
76
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
77
+ *
78
+ * This program is free software: you can redistribute it and/or modify
79
+ * it under the terms of the GNU General Public License as published by
80
+ * the Free Software Foundation, either version 2 of the License, or
81
+ * (at your option) any later version.
82
+ *
83
+ * This program is distributed in the hope that it will be useful,
84
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
85
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
86
+ * GNU General Public License for more details.
87
+ *
88
+ * You should have received a copy of the GNU General Public License
89
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
90
+ */
91
+
92
+#ifndef HW_MISC_ALLWINNER_H3_DRAMC_H
93
+#define HW_MISC_ALLWINNER_H3_DRAMC_H
94
+
95
+#include "qom/object.h"
96
+#include "hw/sysbus.h"
97
+#include "exec/hwaddr.h"
98
+
99
+/**
100
+ * Constants
101
+ * @{
102
+ */
103
+
104
+/** Highest register address used by DRAMCOM module */
105
+#define AW_H3_DRAMCOM_REGS_MAXADDR (0x804)
106
+
107
+/** Total number of known DRAMCOM registers */
108
+#define AW_H3_DRAMCOM_REGS_NUM (AW_H3_DRAMCOM_REGS_MAXADDR / \
109
+ sizeof(uint32_t))
110
+
111
+/** Highest register address used by DRAMCTL module */
112
+#define AW_H3_DRAMCTL_REGS_MAXADDR (0x88c)
113
+
114
+/** Total number of known DRAMCTL registers */
115
+#define AW_H3_DRAMCTL_REGS_NUM (AW_H3_DRAMCTL_REGS_MAXADDR / \
116
+ sizeof(uint32_t))
117
+
118
+/** Highest register address used by DRAMPHY module */
119
+#define AW_H3_DRAMPHY_REGS_MAXADDR (0x4)
120
+
121
+/** Total number of known DRAMPHY registers */
122
+#define AW_H3_DRAMPHY_REGS_NUM (AW_H3_DRAMPHY_REGS_MAXADDR / \
123
+ sizeof(uint32_t))
124
+
125
+/** @} */
126
+
127
+/**
128
+ * Object model
129
+ * @{
130
+ */
131
+
132
+#define TYPE_AW_H3_DRAMC "allwinner-h3-dramc"
133
+#define AW_H3_DRAMC(obj) \
134
+ OBJECT_CHECK(AwH3DramCtlState, (obj), TYPE_AW_H3_DRAMC)
135
+
136
+/** @} */
137
+
138
+/**
139
+ * Allwinner H3 SDRAM Controller object instance state.
140
+ */
141
+typedef struct AwH3DramCtlState {
142
+ /*< private >*/
143
+ SysBusDevice parent_obj;
144
+ /*< public >*/
145
+
146
+ /** Physical base address for start of RAM */
147
+ hwaddr ram_addr;
148
+
149
+ /** Total RAM size in megabytes */
150
+ uint32_t ram_size;
151
+
152
+ /**
153
+ * @name Memory Regions
154
+ * @{
155
+ */
156
+
157
+ MemoryRegion row_mirror; /**< Simulates rows for RAM size detection */
158
+ MemoryRegion row_mirror_alias; /**< Alias of the row which is mirrored */
159
+ MemoryRegion dramcom_iomem; /**< DRAMCOM module I/O registers */
160
+ MemoryRegion dramctl_iomem; /**< DRAMCTL module I/O registers */
161
+ MemoryRegion dramphy_iomem; /**< DRAMPHY module I/O registers */
162
+
163
+ /** @} */
164
+
165
+ /**
166
+ * @name Hardware Registers
167
+ * @{
168
+ */
169
+
170
+ uint32_t dramcom[AW_H3_DRAMCOM_REGS_NUM]; /**< Array of DRAMCOM registers */
171
+ uint32_t dramctl[AW_H3_DRAMCTL_REGS_NUM]; /**< Array of DRAMCTL registers */
172
+ uint32_t dramphy[AW_H3_DRAMPHY_REGS_NUM] ;/**< Array of DRAMPHY registers */
173
+
174
+ /** @} */
175
+
176
+} AwH3DramCtlState;
177
+
178
+#endif /* HW_MISC_ALLWINNER_H3_DRAMC_H */
179
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
180
index XXXXXXX..XXXXXXX 100644
181
--- a/hw/arm/allwinner-h3.c
182
+++ b/hw/arm/allwinner-h3.c
183
@@ -XXX,XX +XXX,XX @@ const hwaddr allwinner_h3_memmap[] = {
184
[AW_H3_UART2] = 0x01c28800,
185
[AW_H3_UART3] = 0x01c28c00,
186
[AW_H3_EMAC] = 0x01c30000,
187
+ [AW_H3_DRAMCOM] = 0x01c62000,
188
+ [AW_H3_DRAMCTL] = 0x01c63000,
189
+ [AW_H3_DRAMPHY] = 0x01c65000,
190
[AW_H3_GIC_DIST] = 0x01c81000,
191
[AW_H3_GIC_CPU] = 0x01c82000,
192
[AW_H3_GIC_HYP] = 0x01c84000,
193
@@ -XXX,XX +XXX,XX @@ struct AwH3Unimplemented {
194
{ "scr", 0x01c2c400, 1 * KiB },
195
{ "gpu", 0x01c40000, 64 * KiB },
196
{ "hstmr", 0x01c60000, 4 * KiB },
197
- { "dramcom", 0x01c62000, 4 * KiB },
198
- { "dramctl0", 0x01c63000, 4 * KiB },
199
- { "dramphy0", 0x01c65000, 4 * KiB },
200
{ "spi0", 0x01c68000, 4 * KiB },
201
{ "spi1", 0x01c69000, 4 * KiB },
202
{ "csi", 0x01cb0000, 320 * KiB },
203
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_init(Object *obj)
204
205
sysbus_init_child_obj(obj, "emac", &s->emac, sizeof(s->emac),
206
TYPE_AW_SUN8I_EMAC);
207
+
208
+ sysbus_init_child_obj(obj, "dramc", &s->dramc, sizeof(s->dramc),
209
+ TYPE_AW_H3_DRAMC);
210
+ object_property_add_alias(obj, "ram-addr", OBJECT(&s->dramc),
211
+ "ram-addr", &error_abort);
212
+ object_property_add_alias(obj, "ram-size", OBJECT(&s->dramc),
213
+ "ram-size", &error_abort);
18
}
214
}
19
215
216
static void allwinner_h3_realize(DeviceState *dev, Error **errp)
217
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_realize(DeviceState *dev, Error **errp)
218
qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_UART3),
219
115200, serial_hd(3), DEVICE_NATIVE_ENDIAN);
220
221
+ /* DRAMC */
222
+ qdev_init_nofail(DEVICE(&s->dramc));
223
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->dramc), 0, s->memmap[AW_H3_DRAMCOM]);
224
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->dramc), 1, s->memmap[AW_H3_DRAMCTL]);
225
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->dramc), 2, s->memmap[AW_H3_DRAMPHY]);
226
+
227
/* Unimplemented devices */
228
for (i = 0; i < ARRAY_SIZE(unimplemented); i++) {
229
create_unimplemented_device(unimplemented[i].device_name,
230
diff --git a/hw/arm/orangepi.c b/hw/arm/orangepi.c
231
index XXXXXXX..XXXXXXX 100644
232
--- a/hw/arm/orangepi.c
233
+++ b/hw/arm/orangepi.c
234
@@ -XXX,XX +XXX,XX @@ static void orangepi_init(MachineState *machine)
235
/* Setup EMAC properties */
236
object_property_set_int(OBJECT(&h3->emac), 1, "phy-addr", &error_abort);
237
238
+ /* DRAMC */
239
+ object_property_set_uint(OBJECT(h3), h3->memmap[AW_H3_SDRAM],
240
+ "ram-addr", &error_abort);
241
+ object_property_set_int(OBJECT(h3), machine->ram_size / MiB, "ram-size",
242
+ &error_abort);
243
+
244
/* Mark H3 object realized */
245
object_property_set_bool(OBJECT(h3), true, "realized", &error_abort);
246
247
diff --git a/hw/misc/allwinner-h3-dramc.c b/hw/misc/allwinner-h3-dramc.c
248
new file mode 100644
249
index XXXXXXX..XXXXXXX
250
--- /dev/null
251
+++ b/hw/misc/allwinner-h3-dramc.c
252
@@ -XXX,XX +XXX,XX @@
20
+/*
253
+/*
21
+ *** SVE Integer Wide Immediate - Unpredicated Group
254
+ * Allwinner H3 SDRAM Controller emulation
255
+ *
256
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
257
+ *
258
+ * This program is free software: you can redistribute it and/or modify
259
+ * it under the terms of the GNU General Public License as published by
260
+ * the Free Software Foundation, either version 2 of the License, or
261
+ * (at your option) any later version.
262
+ *
263
+ * This program is distributed in the hope that it will be useful,
264
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
265
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
266
+ * GNU General Public License for more details.
267
+ *
268
+ * You should have received a copy of the GNU General Public License
269
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
22
+ */
270
+ */
23
+
271
+
24
+static bool trans_FDUP(DisasContext *s, arg_FDUP *a, uint32_t insn)
272
+#include "qemu/osdep.h"
25
+{
273
+#include "qemu/units.h"
26
+ if (a->esz == 0) {
274
+#include "qemu/error-report.h"
27
+ return false;
275
+#include "hw/sysbus.h"
28
+ }
276
+#include "migration/vmstate.h"
29
+ if (sve_access_check(s)) {
277
+#include "qemu/log.h"
30
+ unsigned vsz = vec_full_reg_size(s);
278
+#include "qemu/module.h"
31
+ int dofs = vec_full_reg_offset(s, a->rd);
279
+#include "exec/address-spaces.h"
32
+ uint64_t imm;
280
+#include "hw/qdev-properties.h"
33
+
281
+#include "qapi/error.h"
34
+ /* Decode the VFP immediate. */
282
+#include "hw/misc/allwinner-h3-dramc.h"
35
+ imm = vfp_expand_imm(a->esz, a->imm);
283
+#include "trace.h"
36
+ imm = dup_const(a->esz, imm);
284
+
37
+
285
+#define REG_INDEX(offset) (offset / sizeof(uint32_t))
38
+ tcg_gen_gvec_dup64i(dofs, vsz, vsz, imm);
286
+
39
+ }
287
+/* DRAMCOM register offsets */
40
+ return true;
288
+enum {
41
+}
289
+ REG_DRAMCOM_CR = 0x0000, /* Control Register */
42
+
290
+};
43
+static bool trans_DUP_i(DisasContext *s, arg_DUP_i *a, uint32_t insn)
291
+
44
+{
292
+/* DRAMCTL register offsets */
45
+ if (a->esz == 0 && extract32(insn, 13, 1)) {
293
+enum {
46
+ return false;
294
+ REG_DRAMCTL_PIR = 0x0000, /* PHY Initialization Register */
47
+ }
295
+ REG_DRAMCTL_PGSR = 0x0010, /* PHY General Status Register */
48
+ if (sve_access_check(s)) {
296
+ REG_DRAMCTL_STATR = 0x0018, /* Status Register */
49
+ unsigned vsz = vec_full_reg_size(s);
297
+};
50
+ int dofs = vec_full_reg_offset(s, a->rd);
298
+
51
+
299
+/* DRAMCTL register flags */
52
+ tcg_gen_gvec_dup64i(dofs, vsz, vsz, dup_const(a->esz, a->imm));
300
+enum {
53
+ }
301
+ REG_DRAMCTL_PGSR_INITDONE = (1 << 0),
54
+ return true;
302
+};
55
+}
303
+
56
+
304
+enum {
57
/*
305
+ REG_DRAMCTL_STATR_ACTIVE = (1 << 0),
58
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
306
+};
59
*/
307
+
60
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
308
+static void allwinner_h3_dramc_map_rows(AwH3DramCtlState *s, uint8_t row_bits,
309
+ uint8_t bank_bits, uint16_t page_size)
310
+{
311
+ /*
312
+ * This function simulates row addressing behavior when bootloader
313
+ * software attempts to detect the amount of available SDRAM. In U-Boot
314
+ * the controller is configured with the widest row addressing available.
315
+ * Then a pattern is written to RAM at an offset on the row boundary size.
316
+ * If the value read back equals the value read back from the
317
+ * start of RAM, the bootloader knows the amount of row bits.
318
+ *
319
+ * This function inserts a mirrored memory region when the configured row
320
+ * bits are not matching the actual emulated memory, to simulate the
321
+ * same behavior on hardware as expected by the bootloader.
322
+ */
323
+ uint8_t row_bits_actual = 0;
324
+
325
+ /* Calculate the actual row bits using the ram_size property */
326
+ for (uint8_t i = 8; i < 12; i++) {
327
+ if (1 << i == s->ram_size) {
328
+ row_bits_actual = i + 3;
329
+ break;
330
+ }
331
+ }
332
+
333
+ if (s->ram_size == (1 << (row_bits - 3))) {
334
+ /* When row bits is the expected value, remove the mirror */
335
+ memory_region_set_enabled(&s->row_mirror_alias, false);
336
+ trace_allwinner_h3_dramc_rowmirror_disable();
337
+
338
+ } else if (row_bits_actual) {
339
+ /* Row bits not matching ram_size, install the rows mirror */
340
+ hwaddr row_mirror = s->ram_addr + ((1 << (row_bits_actual +
341
+ bank_bits)) * page_size);
342
+
343
+ memory_region_set_enabled(&s->row_mirror_alias, true);
344
+ memory_region_set_address(&s->row_mirror_alias, row_mirror);
345
+
346
+ trace_allwinner_h3_dramc_rowmirror_enable(row_mirror);
347
+ }
348
+}
349
+
350
+static uint64_t allwinner_h3_dramcom_read(void *opaque, hwaddr offset,
351
+ unsigned size)
352
+{
353
+ const AwH3DramCtlState *s = AW_H3_DRAMC(opaque);
354
+ const uint32_t idx = REG_INDEX(offset);
355
+
356
+ if (idx >= AW_H3_DRAMCOM_REGS_NUM) {
357
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
358
+ __func__, (uint32_t)offset);
359
+ return 0;
360
+ }
361
+
362
+ trace_allwinner_h3_dramcom_read(offset, s->dramcom[idx], size);
363
+
364
+ return s->dramcom[idx];
365
+}
366
+
367
+static void allwinner_h3_dramcom_write(void *opaque, hwaddr offset,
368
+ uint64_t val, unsigned size)
369
+{
370
+ AwH3DramCtlState *s = AW_H3_DRAMC(opaque);
371
+ const uint32_t idx = REG_INDEX(offset);
372
+
373
+ trace_allwinner_h3_dramcom_write(offset, val, size);
374
+
375
+ if (idx >= AW_H3_DRAMCOM_REGS_NUM) {
376
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
377
+ __func__, (uint32_t)offset);
378
+ return;
379
+ }
380
+
381
+ switch (offset) {
382
+ case REG_DRAMCOM_CR: /* Control Register */
383
+ allwinner_h3_dramc_map_rows(s, ((val >> 4) & 0xf) + 1,
384
+ ((val >> 2) & 0x1) + 2,
385
+ 1 << (((val >> 8) & 0xf) + 3));
386
+ break;
387
+ default:
388
+ break;
389
+ };
390
+
391
+ s->dramcom[idx] = (uint32_t) val;
392
+}
393
+
394
+static uint64_t allwinner_h3_dramctl_read(void *opaque, hwaddr offset,
395
+ unsigned size)
396
+{
397
+ const AwH3DramCtlState *s = AW_H3_DRAMC(opaque);
398
+ const uint32_t idx = REG_INDEX(offset);
399
+
400
+ if (idx >= AW_H3_DRAMCTL_REGS_NUM) {
401
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
402
+ __func__, (uint32_t)offset);
403
+ return 0;
404
+ }
405
+
406
+ trace_allwinner_h3_dramctl_read(offset, s->dramctl[idx], size);
407
+
408
+ return s->dramctl[idx];
409
+}
410
+
411
+static void allwinner_h3_dramctl_write(void *opaque, hwaddr offset,
412
+ uint64_t val, unsigned size)
413
+{
414
+ AwH3DramCtlState *s = AW_H3_DRAMC(opaque);
415
+ const uint32_t idx = REG_INDEX(offset);
416
+
417
+ trace_allwinner_h3_dramctl_write(offset, val, size);
418
+
419
+ if (idx >= AW_H3_DRAMCTL_REGS_NUM) {
420
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
421
+ __func__, (uint32_t)offset);
422
+ return;
423
+ }
424
+
425
+ switch (offset) {
426
+ case REG_DRAMCTL_PIR: /* PHY Initialization Register */
427
+ s->dramctl[REG_INDEX(REG_DRAMCTL_PGSR)] |= REG_DRAMCTL_PGSR_INITDONE;
428
+ s->dramctl[REG_INDEX(REG_DRAMCTL_STATR)] |= REG_DRAMCTL_STATR_ACTIVE;
429
+ break;
430
+ default:
431
+ break;
432
+ }
433
+
434
+ s->dramctl[idx] = (uint32_t) val;
435
+}
436
+
437
+static uint64_t allwinner_h3_dramphy_read(void *opaque, hwaddr offset,
438
+ unsigned size)
439
+{
440
+ const AwH3DramCtlState *s = AW_H3_DRAMC(opaque);
441
+ const uint32_t idx = REG_INDEX(offset);
442
+
443
+ if (idx >= AW_H3_DRAMPHY_REGS_NUM) {
444
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
445
+ __func__, (uint32_t)offset);
446
+ return 0;
447
+ }
448
+
449
+ trace_allwinner_h3_dramphy_read(offset, s->dramphy[idx], size);
450
+
451
+ return s->dramphy[idx];
452
+}
453
+
454
+static void allwinner_h3_dramphy_write(void *opaque, hwaddr offset,
455
+ uint64_t val, unsigned size)
456
+{
457
+ AwH3DramCtlState *s = AW_H3_DRAMC(opaque);
458
+ const uint32_t idx = REG_INDEX(offset);
459
+
460
+ trace_allwinner_h3_dramphy_write(offset, val, size);
461
+
462
+ if (idx >= AW_H3_DRAMPHY_REGS_NUM) {
463
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
464
+ __func__, (uint32_t)offset);
465
+ return;
466
+ }
467
+
468
+ s->dramphy[idx] = (uint32_t) val;
469
+}
470
+
471
+static const MemoryRegionOps allwinner_h3_dramcom_ops = {
472
+ .read = allwinner_h3_dramcom_read,
473
+ .write = allwinner_h3_dramcom_write,
474
+ .endianness = DEVICE_NATIVE_ENDIAN,
475
+ .valid = {
476
+ .min_access_size = 4,
477
+ .max_access_size = 4,
478
+ },
479
+ .impl.min_access_size = 4,
480
+};
481
+
482
+static const MemoryRegionOps allwinner_h3_dramctl_ops = {
483
+ .read = allwinner_h3_dramctl_read,
484
+ .write = allwinner_h3_dramctl_write,
485
+ .endianness = DEVICE_NATIVE_ENDIAN,
486
+ .valid = {
487
+ .min_access_size = 4,
488
+ .max_access_size = 4,
489
+ },
490
+ .impl.min_access_size = 4,
491
+};
492
+
493
+static const MemoryRegionOps allwinner_h3_dramphy_ops = {
494
+ .read = allwinner_h3_dramphy_read,
495
+ .write = allwinner_h3_dramphy_write,
496
+ .endianness = DEVICE_NATIVE_ENDIAN,
497
+ .valid = {
498
+ .min_access_size = 4,
499
+ .max_access_size = 4,
500
+ },
501
+ .impl.min_access_size = 4,
502
+};
503
+
504
+static void allwinner_h3_dramc_reset(DeviceState *dev)
505
+{
506
+ AwH3DramCtlState *s = AW_H3_DRAMC(dev);
507
+
508
+ /* Set default values for registers */
509
+ memset(&s->dramcom, 0, sizeof(s->dramcom));
510
+ memset(&s->dramctl, 0, sizeof(s->dramctl));
511
+ memset(&s->dramphy, 0, sizeof(s->dramphy));
512
+}
513
+
514
+static void allwinner_h3_dramc_realize(DeviceState *dev, Error **errp)
515
+{
516
+ AwH3DramCtlState *s = AW_H3_DRAMC(dev);
517
+
518
+ /* Only power of 2 RAM sizes from 256MiB up to 2048MiB are supported */
519
+ for (uint8_t i = 8; i < 13; i++) {
520
+ if (1 << i == s->ram_size) {
521
+ break;
522
+ } else if (i == 12) {
523
+ error_report("%s: ram-size %u MiB is not supported",
524
+ __func__, s->ram_size);
525
+ exit(1);
526
+ }
527
+ }
528
+
529
+ /* Setup row mirror mappings */
530
+ memory_region_init_ram(&s->row_mirror, OBJECT(s),
531
+ "allwinner-h3-dramc.row-mirror",
532
+ 4 * KiB, &error_abort);
533
+ memory_region_add_subregion_overlap(get_system_memory(), s->ram_addr,
534
+ &s->row_mirror, 10);
535
+
536
+ memory_region_init_alias(&s->row_mirror_alias, OBJECT(s),
537
+ "allwinner-h3-dramc.row-mirror-alias",
538
+ &s->row_mirror, 0, 4 * KiB);
539
+ memory_region_add_subregion_overlap(get_system_memory(),
540
+ s->ram_addr + 1 * MiB,
541
+ &s->row_mirror_alias, 10);
542
+ memory_region_set_enabled(&s->row_mirror_alias, false);
543
+}
544
+
545
+static void allwinner_h3_dramc_init(Object *obj)
546
+{
547
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
548
+ AwH3DramCtlState *s = AW_H3_DRAMC(obj);
549
+
550
+ /* DRAMCOM registers */
551
+ memory_region_init_io(&s->dramcom_iomem, OBJECT(s),
552
+ &allwinner_h3_dramcom_ops, s,
553
+ TYPE_AW_H3_DRAMC, 4 * KiB);
554
+ sysbus_init_mmio(sbd, &s->dramcom_iomem);
555
+
556
+ /* DRAMCTL registers */
557
+ memory_region_init_io(&s->dramctl_iomem, OBJECT(s),
558
+ &allwinner_h3_dramctl_ops, s,
559
+ TYPE_AW_H3_DRAMC, 4 * KiB);
560
+ sysbus_init_mmio(sbd, &s->dramctl_iomem);
561
+
562
+ /* DRAMPHY registers */
563
+ memory_region_init_io(&s->dramphy_iomem, OBJECT(s),
564
+ &allwinner_h3_dramphy_ops, s,
565
+ TYPE_AW_H3_DRAMC, 4 * KiB);
566
+ sysbus_init_mmio(sbd, &s->dramphy_iomem);
567
+}
568
+
569
+static Property allwinner_h3_dramc_properties[] = {
570
+ DEFINE_PROP_UINT64("ram-addr", AwH3DramCtlState, ram_addr, 0x0),
571
+ DEFINE_PROP_UINT32("ram-size", AwH3DramCtlState, ram_size, 256 * MiB),
572
+ DEFINE_PROP_END_OF_LIST()
573
+};
574
+
575
+static const VMStateDescription allwinner_h3_dramc_vmstate = {
576
+ .name = "allwinner-h3-dramc",
577
+ .version_id = 1,
578
+ .minimum_version_id = 1,
579
+ .fields = (VMStateField[]) {
580
+ VMSTATE_UINT32_ARRAY(dramcom, AwH3DramCtlState, AW_H3_DRAMCOM_REGS_NUM),
581
+ VMSTATE_UINT32_ARRAY(dramctl, AwH3DramCtlState, AW_H3_DRAMCTL_REGS_NUM),
582
+ VMSTATE_UINT32_ARRAY(dramphy, AwH3DramCtlState, AW_H3_DRAMPHY_REGS_NUM),
583
+ VMSTATE_END_OF_LIST()
584
+ }
585
+};
586
+
587
+static void allwinner_h3_dramc_class_init(ObjectClass *klass, void *data)
588
+{
589
+ DeviceClass *dc = DEVICE_CLASS(klass);
590
+
591
+ dc->reset = allwinner_h3_dramc_reset;
592
+ dc->vmsd = &allwinner_h3_dramc_vmstate;
593
+ dc->realize = allwinner_h3_dramc_realize;
594
+ device_class_set_props(dc, allwinner_h3_dramc_properties);
595
+}
596
+
597
+static const TypeInfo allwinner_h3_dramc_info = {
598
+ .name = TYPE_AW_H3_DRAMC,
599
+ .parent = TYPE_SYS_BUS_DEVICE,
600
+ .instance_init = allwinner_h3_dramc_init,
601
+ .instance_size = sizeof(AwH3DramCtlState),
602
+ .class_init = allwinner_h3_dramc_class_init,
603
+};
604
+
605
+static void allwinner_h3_dramc_register(void)
606
+{
607
+ type_register_static(&allwinner_h3_dramc_info);
608
+}
609
+
610
+type_init(allwinner_h3_dramc_register)
611
diff --git a/hw/misc/trace-events b/hw/misc/trace-events
61
index XXXXXXX..XXXXXXX 100644
612
index XXXXXXX..XXXXXXX 100644
62
--- a/target/arm/sve.decode
613
--- a/hw/misc/trace-events
63
+++ b/target/arm/sve.decode
614
+++ b/hw/misc/trace-events
64
@@ -XXX,XX +XXX,XX @@ CTERM 00100101 1 sf:1 1 rm:5 001000 rn:5 ne:1 0000
615
@@ -XXX,XX +XXX,XX @@ allwinner_cpucfg_cpu_reset(uint8_t cpu_id, uint32_t reset_addr) "id %u, reset_ad
65
# SVE integer compare scalar count and limit
616
allwinner_cpucfg_read(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
66
WHILE 00100101 esz:2 1 rm:5 000 sf:1 u:1 1 rn:5 eq:1 rd:4
617
allwinner_cpucfg_write(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
67
618
68
+### SVE Integer Wide Immediate - Unpredicated Group
619
+# allwinner-h3-dramc.c
69
+
620
+allwinner_h3_dramc_rowmirror_disable(void) "Disable row mirror"
70
+# SVE broadcast floating-point immediate (unpredicated)
621
+allwinner_h3_dramc_rowmirror_enable(uint64_t addr) "Enable row mirror: addr 0x%" PRIx64
71
+FDUP 00100101 esz:2 111 00 1110 imm:8 rd:5
622
+allwinner_h3_dramcom_read(uint64_t offset, uint64_t data, unsigned size) "Read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
72
+
623
+allwinner_h3_dramcom_write(uint64_t offset, uint64_t data, unsigned size) "Write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
73
+# SVE broadcast integer immediate (unpredicated)
624
+allwinner_h3_dramctl_read(uint64_t offset, uint64_t data, unsigned size) "Read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
74
+DUP_i 00100101 esz:2 111 00 011 . ........ rd:5 imm=%sh8_i8s
625
+allwinner_h3_dramctl_write(uint64_t offset, uint64_t data, unsigned size) "Write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
75
+
626
+allwinner_h3_dramphy_read(uint64_t offset, uint64_t data, unsigned size) "Read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
76
### SVE Memory - 32-bit Gather and Unsized Contiguous Group
627
+allwinner_h3_dramphy_write(uint64_t offset, uint64_t data, unsigned size) "write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
77
628
+
78
# SVE load predicate register
629
# allwinner-sid.c
630
allwinner_sid_read(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
631
allwinner_sid_write(uint64_t offset, uint64_t data, unsigned size) "offset 0x%" PRIx64 " data 0x%" PRIx64 " size %" PRIu32
79
--
632
--
80
2.17.1
633
2.20.1
81
634
82
635
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
Allwinner System-on-Chips usually contain a Real Time Clock (RTC)
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
for non-volatile system date and time keeping. This commit adds a generic
5
Message-id: 20180613015641.5667-9-richard.henderson@linaro.org
5
Allwinner RTC device that supports the RTC devices found in Allwinner SoC
6
family sun4i (A10), sun7i (A20) and sun6i and newer (A31, H2+, H3, etc).
7
The following RTC functionality and features are implemented:
8
9
* Year-Month-Day read/write
10
* Hour-Minute-Second read/write
11
* General Purpose storage
12
13
The following boards are extended with the RTC device:
14
15
* Cubieboard (hw/arm/cubieboard.c)
16
* Orange Pi PC (hw/arm/orangepi.c)
17
18
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
19
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
20
Message-id: 20200311221854.30370-13-nieklinnenbank@gmail.com
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
21
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
22
---
8
target/arm/helper-sve.h | 14 +++++++++++++
23
hw/rtc/Makefile.objs | 1 +
9
target/arm/sve_helper.c | 41 +++++++++++++++++++++++++++++++-------
24
include/hw/arm/allwinner-a10.h | 2 +
10
target/arm/translate-sve.c | 38 +++++++++++++++++++++++++++++++++++
25
include/hw/arm/allwinner-h3.h | 3 +
11
target/arm/sve.decode | 7 +++++++
26
include/hw/rtc/allwinner-rtc.h | 134 +++++++++++
12
4 files changed, 93 insertions(+), 7 deletions(-)
27
hw/arm/allwinner-a10.c | 8 +
28
hw/arm/allwinner-h3.c | 9 +-
29
hw/rtc/allwinner-rtc.c | 411 +++++++++++++++++++++++++++++++++
30
hw/rtc/trace-events | 4 +
31
8 files changed, 571 insertions(+), 1 deletion(-)
32
create mode 100644 include/hw/rtc/allwinner-rtc.h
33
create mode 100644 hw/rtc/allwinner-rtc.c
13
34
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
35
diff --git a/hw/rtc/Makefile.objs b/hw/rtc/Makefile.objs
15
index XXXXXXX..XXXXXXX 100644
36
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
37
--- a/hw/rtc/Makefile.objs
17
+++ b/target/arm/helper-sve.h
38
+++ b/hw/rtc/Makefile.objs
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_4(sve_compact_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
39
@@ -XXX,XX +XXX,XX @@ obj-$(CONFIG_MC146818RTC) += mc146818rtc.o
19
40
common-obj-$(CONFIG_SUN4V_RTC) += sun4v-rtc.o
20
DEF_HELPER_FLAGS_2(sve_last_active_element, TCG_CALL_NO_RWG, s32, ptr, i32)
41
common-obj-$(CONFIG_ASPEED_SOC) += aspeed_rtc.o
21
42
common-obj-$(CONFIG_GOLDFISH_RTC) += goldfish_rtc.o
22
+DEF_HELPER_FLAGS_4(sve_revb_h, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
43
+common-obj-$(CONFIG_ALLWINNER_H3) += allwinner-rtc.o
23
+DEF_HELPER_FLAGS_4(sve_revb_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
44
diff --git a/include/hw/arm/allwinner-a10.h b/include/hw/arm/allwinner-a10.h
24
+DEF_HELPER_FLAGS_4(sve_revb_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
25
+
26
+DEF_HELPER_FLAGS_4(sve_revh_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
27
+DEF_HELPER_FLAGS_4(sve_revh_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
28
+
29
+DEF_HELPER_FLAGS_4(sve_revw_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
30
+
31
+DEF_HELPER_FLAGS_4(sve_rbit_b, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
32
+DEF_HELPER_FLAGS_4(sve_rbit_h, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
33
+DEF_HELPER_FLAGS_4(sve_rbit_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
34
+DEF_HELPER_FLAGS_4(sve_rbit_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
35
+
36
DEF_HELPER_FLAGS_5(sve_and_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
37
DEF_HELPER_FLAGS_5(sve_bic_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
38
DEF_HELPER_FLAGS_5(sve_eor_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
39
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
40
index XXXXXXX..XXXXXXX 100644
45
index XXXXXXX..XXXXXXX 100644
41
--- a/target/arm/sve_helper.c
46
--- a/include/hw/arm/allwinner-a10.h
42
+++ b/target/arm/sve_helper.c
47
+++ b/include/hw/arm/allwinner-a10.h
43
@@ -XXX,XX +XXX,XX @@ static inline uint64_t expand_pred_s(uint8_t byte)
48
@@ -XXX,XX +XXX,XX @@
44
return word[byte & 0x11];
49
#include "hw/ide/ahci.h"
50
#include "hw/usb/hcd-ohci.h"
51
#include "hw/usb/hcd-ehci.h"
52
+#include "hw/rtc/allwinner-rtc.h"
53
54
#include "target/arm/cpu.h"
55
56
@@ -XXX,XX +XXX,XX @@ typedef struct AwA10State {
57
AwEmacState emac;
58
AllwinnerAHCIState sata;
59
AwSdHostState mmc0;
60
+ AwRtcState rtc;
61
MemoryRegion sram_a;
62
EHCISysBusState ehci[AW_A10_NUM_USB];
63
OHCISysBusState ohci[AW_A10_NUM_USB];
64
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
65
index XXXXXXX..XXXXXXX 100644
66
--- a/include/hw/arm/allwinner-h3.h
67
+++ b/include/hw/arm/allwinner-h3.h
68
@@ -XXX,XX +XXX,XX @@
69
#include "hw/misc/allwinner-sid.h"
70
#include "hw/sd/allwinner-sdhost.h"
71
#include "hw/net/allwinner-sun8i-emac.h"
72
+#include "hw/rtc/allwinner-rtc.h"
73
#include "target/arm/cpu.h"
74
#include "sysemu/block-backend.h"
75
76
@@ -XXX,XX +XXX,XX @@ enum {
77
AW_H3_GIC_CPU,
78
AW_H3_GIC_HYP,
79
AW_H3_GIC_VCPU,
80
+ AW_H3_RTC,
81
AW_H3_CPUCFG,
82
AW_H3_SDRAM
83
};
84
@@ -XXX,XX +XXX,XX @@ typedef struct AwH3State {
85
AwSidState sid;
86
AwSdHostState mmc0;
87
AwSun8iEmacState emac;
88
+ AwRtcState rtc;
89
GICState gic;
90
MemoryRegion sram_a1;
91
MemoryRegion sram_a2;
92
diff --git a/include/hw/rtc/allwinner-rtc.h b/include/hw/rtc/allwinner-rtc.h
93
new file mode 100644
94
index XXXXXXX..XXXXXXX
95
--- /dev/null
96
+++ b/include/hw/rtc/allwinner-rtc.h
97
@@ -XXX,XX +XXX,XX @@
98
+/*
99
+ * Allwinner Real Time Clock emulation
100
+ *
101
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
102
+ *
103
+ * This program is free software: you can redistribute it and/or modify
104
+ * it under the terms of the GNU General Public License as published by
105
+ * the Free Software Foundation, either version 2 of the License, or
106
+ * (at your option) any later version.
107
+ *
108
+ * This program is distributed in the hope that it will be useful,
109
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
110
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
111
+ * GNU General Public License for more details.
112
+ *
113
+ * You should have received a copy of the GNU General Public License
114
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
115
+ */
116
+
117
+#ifndef HW_MISC_ALLWINNER_RTC_H
118
+#define HW_MISC_ALLWINNER_RTC_H
119
+
120
+#include "qom/object.h"
121
+#include "hw/sysbus.h"
122
+
123
+/**
124
+ * Constants
125
+ * @{
126
+ */
127
+
128
+/** Highest register address used by RTC device */
129
+#define AW_RTC_REGS_MAXADDR (0x200)
130
+
131
+/** Total number of known registers */
132
+#define AW_RTC_REGS_NUM (AW_RTC_REGS_MAXADDR / sizeof(uint32_t))
133
+
134
+/** @} */
135
+
136
+/**
137
+ * Object model types
138
+ * @{
139
+ */
140
+
141
+/** Generic Allwinner RTC device (abstract) */
142
+#define TYPE_AW_RTC "allwinner-rtc"
143
+
144
+/** Allwinner RTC sun4i family (A10, A12) */
145
+#define TYPE_AW_RTC_SUN4I TYPE_AW_RTC "-sun4i"
146
+
147
+/** Allwinner RTC sun6i family and newer (A31, H2+, H3, etc) */
148
+#define TYPE_AW_RTC_SUN6I TYPE_AW_RTC "-sun6i"
149
+
150
+/** Allwinner RTC sun7i family (A20) */
151
+#define TYPE_AW_RTC_SUN7I TYPE_AW_RTC "-sun7i"
152
+
153
+/** @} */
154
+
155
+/**
156
+ * Object model macros
157
+ * @{
158
+ */
159
+
160
+#define AW_RTC(obj) \
161
+ OBJECT_CHECK(AwRtcState, (obj), TYPE_AW_RTC)
162
+#define AW_RTC_CLASS(klass) \
163
+ OBJECT_CLASS_CHECK(AwRtcClass, (klass), TYPE_AW_RTC)
164
+#define AW_RTC_GET_CLASS(obj) \
165
+ OBJECT_GET_CLASS(AwRtcClass, (obj), TYPE_AW_RTC)
166
+
167
+/** @} */
168
+
169
+/**
170
+ * Allwinner RTC per-object instance state.
171
+ */
172
+typedef struct AwRtcState {
173
+ /*< private >*/
174
+ SysBusDevice parent_obj;
175
+ /*< public >*/
176
+
177
+ /**
178
+ * Actual year represented by the device when year counter is zero
179
+ *
180
+ * Can be overridden by the user using the corresponding 'base-year'
181
+ * property. The base year used by the target OS driver can vary, for
182
+ * example the Linux driver for sun6i uses 1970 while NetBSD uses 2000.
183
+ */
184
+ int base_year;
185
+
186
+ /** Maps I/O registers in physical memory */
187
+ MemoryRegion iomem;
188
+
189
+ /** Array of hardware registers */
190
+ uint32_t regs[AW_RTC_REGS_NUM];
191
+
192
+} AwRtcState;
193
+
194
+/**
195
+ * Allwinner RTC class-level struct.
196
+ *
197
+ * This struct is filled by each sunxi device specific code
198
+ * such that the generic code can use this struct to support
199
+ * all devices.
200
+ */
201
+typedef struct AwRtcClass {
202
+ /*< private >*/
203
+ SysBusDeviceClass parent_class;
204
+ /*< public >*/
205
+
206
+ /** Defines device specific register map */
207
+ const uint8_t *regmap;
208
+
209
+ /** Size of the regmap in bytes */
210
+ size_t regmap_size;
211
+
212
+ /**
213
+ * Read device specific register
214
+ *
215
+ * @offset: register offset to read
216
+ * @return true if register read successful, false otherwise
217
+ */
218
+ bool (*read)(AwRtcState *s, uint32_t offset);
219
+
220
+ /**
221
+ * Write device specific register
222
+ *
223
+ * @offset: register offset to write
224
+ * @data: value to set in register
225
+ * @return true if register write successful, false otherwise
226
+ */
227
+ bool (*write)(AwRtcState *s, uint32_t offset, uint32_t data);
228
+
229
+} AwRtcClass;
230
+
231
+#endif /* HW_MISC_ALLWINNER_RTC_H */
232
diff --git a/hw/arm/allwinner-a10.c b/hw/arm/allwinner-a10.c
233
index XXXXXXX..XXXXXXX 100644
234
--- a/hw/arm/allwinner-a10.c
235
+++ b/hw/arm/allwinner-a10.c
236
@@ -XXX,XX +XXX,XX @@
237
#define AW_A10_EHCI_BASE 0x01c14000
238
#define AW_A10_OHCI_BASE 0x01c14400
239
#define AW_A10_SATA_BASE 0x01c18000
240
+#define AW_A10_RTC_BASE 0x01c20d00
241
242
static void aw_a10_init(Object *obj)
243
{
244
@@ -XXX,XX +XXX,XX @@ static void aw_a10_init(Object *obj)
245
246
sysbus_init_child_obj(obj, "mmc0", &s->mmc0, sizeof(s->mmc0),
247
TYPE_AW_SDHOST_SUN4I);
248
+
249
+ sysbus_init_child_obj(obj, "rtc", &s->rtc, sizeof(s->rtc),
250
+ TYPE_AW_RTC_SUN4I);
45
}
251
}
46
252
47
+/* Swap 16-bit words within a 32-bit word. */
253
static void aw_a10_realize(DeviceState *dev, Error **errp)
48
+static inline uint32_t hswap32(uint32_t h)
254
@@ -XXX,XX +XXX,XX @@ static void aw_a10_realize(DeviceState *dev, Error **errp)
49
+{
255
sysbus_connect_irq(SYS_BUS_DEVICE(&s->mmc0), 0, qdev_get_gpio_in(dev, 32));
50
+ return rol32(h, 16);
256
object_property_add_alias(OBJECT(s), "sd-bus", OBJECT(&s->mmc0),
51
+}
257
"sd-bus", &error_abort);
52
+
258
+
53
+/* Swap 16-bit words within a 64-bit word. */
259
+ /* RTC */
54
+static inline uint64_t hswap64(uint64_t h)
260
+ qdev_init_nofail(DEVICE(&s->rtc));
55
+{
261
+ sysbus_mmio_map_overlap(SYS_BUS_DEVICE(&s->rtc), 0, AW_A10_RTC_BASE, 10);
56
+ uint64_t m = 0x0000ffff0000ffffull;
57
+ h = rol64(h, 32);
58
+ return ((h & m) << 16) | ((h >> 16) & m);
59
+}
60
+
61
+/* Swap 32-bit words within a 64-bit word. */
62
+static inline uint64_t wswap64(uint64_t h)
63
+{
64
+ return rol64(h, 32);
65
+}
66
+
67
#define LOGICAL_PPPP(NAME, FUNC) \
68
void HELPER(NAME)(void *vd, void *vn, void *vm, void *vg, uint32_t desc) \
69
{ \
70
@@ -XXX,XX +XXX,XX @@ DO_ZPZ(sve_neg_h, uint16_t, H1_2, DO_NEG)
71
DO_ZPZ(sve_neg_s, uint32_t, H1_4, DO_NEG)
72
DO_ZPZ_D(sve_neg_d, uint64_t, DO_NEG)
73
74
+DO_ZPZ(sve_revb_h, uint16_t, H1_2, bswap16)
75
+DO_ZPZ(sve_revb_s, uint32_t, H1_4, bswap32)
76
+DO_ZPZ_D(sve_revb_d, uint64_t, bswap64)
77
+
78
+DO_ZPZ(sve_revh_s, uint32_t, H1_4, hswap32)
79
+DO_ZPZ_D(sve_revh_d, uint64_t, hswap64)
80
+
81
+DO_ZPZ_D(sve_revw_d, uint64_t, wswap64)
82
+
83
+DO_ZPZ(sve_rbit_b, uint8_t, H1, revbit8)
84
+DO_ZPZ(sve_rbit_h, uint16_t, H1_2, revbit16)
85
+DO_ZPZ(sve_rbit_s, uint32_t, H1_4, revbit32)
86
+DO_ZPZ_D(sve_rbit_d, uint64_t, revbit64)
87
+
88
/* Three-operand expander, unpredicated, in which the third operand is "wide".
89
*/
90
#define DO_ZZW(NAME, TYPE, TYPEW, H, OP) \
91
@@ -XXX,XX +XXX,XX @@ void HELPER(sve_rev_b)(void *vd, void *vn, uint32_t desc)
92
}
93
}
262
}
94
263
95
-static inline uint64_t hswap64(uint64_t h)
264
static void aw_a10_class_init(ObjectClass *oc, void *data)
96
-{
265
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
97
- uint64_t m = 0x0000ffff0000ffffull;
98
- h = rol64(h, 32);
99
- return ((h & m) << 16) | ((h >> 16) & m);
100
-}
101
-
102
void HELPER(sve_rev_h)(void *vd, void *vn, uint32_t desc)
103
{
104
intptr_t i, j, opr_sz = simd_oprsz(desc);
105
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
106
index XXXXXXX..XXXXXXX 100644
266
index XXXXXXX..XXXXXXX 100644
107
--- a/target/arm/translate-sve.c
267
--- a/hw/arm/allwinner-h3.c
108
+++ b/target/arm/translate-sve.c
268
+++ b/hw/arm/allwinner-h3.c
109
@@ -XXX,XX +XXX,XX @@ static bool trans_CPY_m_v(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
269
@@ -XXX,XX +XXX,XX @@ const hwaddr allwinner_h3_memmap[] = {
110
return true;
270
[AW_H3_GIC_CPU] = 0x01c82000,
271
[AW_H3_GIC_HYP] = 0x01c84000,
272
[AW_H3_GIC_VCPU] = 0x01c86000,
273
+ [AW_H3_RTC] = 0x01f00000,
274
[AW_H3_CPUCFG] = 0x01f01c00,
275
[AW_H3_SDRAM] = 0x40000000
276
};
277
@@ -XXX,XX +XXX,XX @@ struct AwH3Unimplemented {
278
{ "csi", 0x01cb0000, 320 * KiB },
279
{ "tve", 0x01e00000, 64 * KiB },
280
{ "hdmi", 0x01ee0000, 128 * KiB },
281
- { "rtc", 0x01f00000, 1 * KiB },
282
{ "r_timer", 0x01f00800, 1 * KiB },
283
{ "r_intc", 0x01f00c00, 1 * KiB },
284
{ "r_wdog", 0x01f01000, 1 * KiB },
285
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_init(Object *obj)
286
"ram-addr", &error_abort);
287
object_property_add_alias(obj, "ram-size", OBJECT(&s->dramc),
288
"ram-size", &error_abort);
289
+
290
+ sysbus_init_child_obj(obj, "rtc", &s->rtc, sizeof(s->rtc),
291
+ TYPE_AW_RTC_SUN6I);
111
}
292
}
112
293
113
+static bool trans_REVB(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
294
static void allwinner_h3_realize(DeviceState *dev, Error **errp)
114
+{
295
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_realize(DeviceState *dev, Error **errp)
115
+ static gen_helper_gvec_3 * const fns[4] = {
296
sysbus_mmio_map(SYS_BUS_DEVICE(&s->dramc), 1, s->memmap[AW_H3_DRAMCTL]);
116
+ NULL,
297
sysbus_mmio_map(SYS_BUS_DEVICE(&s->dramc), 2, s->memmap[AW_H3_DRAMPHY]);
117
+ gen_helper_sve_revb_h,
298
118
+ gen_helper_sve_revb_s,
299
+ /* RTC */
119
+ gen_helper_sve_revb_d,
300
+ qdev_init_nofail(DEVICE(&s->rtc));
120
+ };
301
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->rtc), 0, s->memmap[AW_H3_RTC]);
121
+ return do_zpz_ool(s, a, fns[a->esz]);
302
+
122
+}
303
/* Unimplemented devices */
123
+
304
for (i = 0; i < ARRAY_SIZE(unimplemented); i++) {
124
+static bool trans_REVH(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
305
create_unimplemented_device(unimplemented[i].device_name,
125
+{
306
diff --git a/hw/rtc/allwinner-rtc.c b/hw/rtc/allwinner-rtc.c
126
+ static gen_helper_gvec_3 * const fns[4] = {
307
new file mode 100644
127
+ NULL,
308
index XXXXXXX..XXXXXXX
128
+ NULL,
309
--- /dev/null
129
+ gen_helper_sve_revh_s,
310
+++ b/hw/rtc/allwinner-rtc.c
130
+ gen_helper_sve_revh_d,
311
@@ -XXX,XX +XXX,XX @@
131
+ };
312
+/*
132
+ return do_zpz_ool(s, a, fns[a->esz]);
313
+ * Allwinner Real Time Clock emulation
133
+}
314
+ *
134
+
315
+ * Copyright (C) 2019 Niek Linnenbank <nieklinnenbank@gmail.com>
135
+static bool trans_REVW(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
316
+ *
136
+{
317
+ * This program is free software: you can redistribute it and/or modify
137
+ return do_zpz_ool(s, a, a->esz == 3 ? gen_helper_sve_revw_d : NULL);
318
+ * it under the terms of the GNU General Public License as published by
138
+}
319
+ * the Free Software Foundation, either version 2 of the License, or
139
+
320
+ * (at your option) any later version.
140
+static bool trans_RBIT(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
321
+ *
141
+{
322
+ * This program is distributed in the hope that it will be useful,
142
+ static gen_helper_gvec_3 * const fns[4] = {
323
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
143
+ gen_helper_sve_rbit_b,
324
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
144
+ gen_helper_sve_rbit_h,
325
+ * GNU General Public License for more details.
145
+ gen_helper_sve_rbit_s,
326
+ *
146
+ gen_helper_sve_rbit_d,
327
+ * You should have received a copy of the GNU General Public License
147
+ };
328
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
148
+ return do_zpz_ool(s, a, fns[a->esz]);
329
+ */
149
+}
330
+
150
+
331
+#include "qemu/osdep.h"
151
/*
332
+#include "qemu/units.h"
152
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
333
+#include "hw/sysbus.h"
153
*/
334
+#include "migration/vmstate.h"
154
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
335
+#include "qemu/log.h"
336
+#include "qemu/module.h"
337
+#include "qemu-common.h"
338
+#include "hw/qdev-properties.h"
339
+#include "hw/rtc/allwinner-rtc.h"
340
+#include "trace.h"
341
+
342
+/* RTC registers */
343
+enum {
344
+ REG_LOSC = 1, /* Low Oscillator Control */
345
+ REG_YYMMDD, /* RTC Year-Month-Day */
346
+ REG_HHMMSS, /* RTC Hour-Minute-Second */
347
+ REG_ALARM1_WKHHMMSS, /* Alarm1 Week Hour-Minute-Second */
348
+ REG_ALARM1_EN, /* Alarm1 Enable */
349
+ REG_ALARM1_IRQ_EN, /* Alarm1 IRQ Enable */
350
+ REG_ALARM1_IRQ_STA, /* Alarm1 IRQ Status */
351
+ REG_GP0, /* General Purpose Register 0 */
352
+ REG_GP1, /* General Purpose Register 1 */
353
+ REG_GP2, /* General Purpose Register 2 */
354
+ REG_GP3, /* General Purpose Register 3 */
355
+
356
+ /* sun4i registers */
357
+ REG_ALARM1_DDHHMMSS, /* Alarm1 Day Hour-Minute-Second */
358
+ REG_CPUCFG, /* CPU Configuration Register */
359
+
360
+ /* sun6i registers */
361
+ REG_LOSC_AUTOSTA, /* LOSC Auto Switch Status */
362
+ REG_INT_OSC_PRE, /* Internal OSC Clock Prescaler */
363
+ REG_ALARM0_COUNTER, /* Alarm0 Counter */
364
+ REG_ALARM0_CUR_VLU, /* Alarm0 Counter Current Value */
365
+ REG_ALARM0_ENABLE, /* Alarm0 Enable */
366
+ REG_ALARM0_IRQ_EN, /* Alarm0 IRQ Enable */
367
+ REG_ALARM0_IRQ_STA, /* Alarm0 IRQ Status */
368
+ REG_ALARM_CONFIG, /* Alarm Config */
369
+ REG_LOSC_OUT_GATING, /* LOSC Output Gating Register */
370
+ REG_GP4, /* General Purpose Register 4 */
371
+ REG_GP5, /* General Purpose Register 5 */
372
+ REG_GP6, /* General Purpose Register 6 */
373
+ REG_GP7, /* General Purpose Register 7 */
374
+ REG_RTC_DBG, /* RTC Debug Register */
375
+ REG_GPL_HOLD_OUT, /* GPL Hold Output Register */
376
+ REG_VDD_RTC, /* VDD RTC Regulate Register */
377
+ REG_IC_CHARA, /* IC Characteristics Register */
378
+};
379
+
380
+/* RTC register flags */
381
+enum {
382
+ REG_LOSC_YMD = (1 << 7),
383
+ REG_LOSC_HMS = (1 << 8),
384
+};
385
+
386
+/* RTC sun4i register map (offset to name) */
387
+const uint8_t allwinner_rtc_sun4i_regmap[] = {
388
+ [0x0000] = REG_LOSC,
389
+ [0x0004] = REG_YYMMDD,
390
+ [0x0008] = REG_HHMMSS,
391
+ [0x000C] = REG_ALARM1_DDHHMMSS,
392
+ [0x0010] = REG_ALARM1_WKHHMMSS,
393
+ [0x0014] = REG_ALARM1_EN,
394
+ [0x0018] = REG_ALARM1_IRQ_EN,
395
+ [0x001C] = REG_ALARM1_IRQ_STA,
396
+ [0x0020] = REG_GP0,
397
+ [0x0024] = REG_GP1,
398
+ [0x0028] = REG_GP2,
399
+ [0x002C] = REG_GP3,
400
+ [0x003C] = REG_CPUCFG,
401
+};
402
+
403
+/* RTC sun6i register map (offset to name) */
404
+const uint8_t allwinner_rtc_sun6i_regmap[] = {
405
+ [0x0000] = REG_LOSC,
406
+ [0x0004] = REG_LOSC_AUTOSTA,
407
+ [0x0008] = REG_INT_OSC_PRE,
408
+ [0x0010] = REG_YYMMDD,
409
+ [0x0014] = REG_HHMMSS,
410
+ [0x0020] = REG_ALARM0_COUNTER,
411
+ [0x0024] = REG_ALARM0_CUR_VLU,
412
+ [0x0028] = REG_ALARM0_ENABLE,
413
+ [0x002C] = REG_ALARM0_IRQ_EN,
414
+ [0x0030] = REG_ALARM0_IRQ_STA,
415
+ [0x0040] = REG_ALARM1_WKHHMMSS,
416
+ [0x0044] = REG_ALARM1_EN,
417
+ [0x0048] = REG_ALARM1_IRQ_EN,
418
+ [0x004C] = REG_ALARM1_IRQ_STA,
419
+ [0x0050] = REG_ALARM_CONFIG,
420
+ [0x0060] = REG_LOSC_OUT_GATING,
421
+ [0x0100] = REG_GP0,
422
+ [0x0104] = REG_GP1,
423
+ [0x0108] = REG_GP2,
424
+ [0x010C] = REG_GP3,
425
+ [0x0110] = REG_GP4,
426
+ [0x0114] = REG_GP5,
427
+ [0x0118] = REG_GP6,
428
+ [0x011C] = REG_GP7,
429
+ [0x0170] = REG_RTC_DBG,
430
+ [0x0180] = REG_GPL_HOLD_OUT,
431
+ [0x0190] = REG_VDD_RTC,
432
+ [0x01F0] = REG_IC_CHARA,
433
+};
434
+
435
+static bool allwinner_rtc_sun4i_read(AwRtcState *s, uint32_t offset)
436
+{
437
+ /* no sun4i specific registers currently implemented */
438
+ return false;
439
+}
440
+
441
+static bool allwinner_rtc_sun4i_write(AwRtcState *s, uint32_t offset,
442
+ uint32_t data)
443
+{
444
+ /* no sun4i specific registers currently implemented */
445
+ return false;
446
+}
447
+
448
+static bool allwinner_rtc_sun6i_read(AwRtcState *s, uint32_t offset)
449
+{
450
+ const AwRtcClass *c = AW_RTC_GET_CLASS(s);
451
+
452
+ switch (c->regmap[offset]) {
453
+ case REG_GP4: /* General Purpose Register 4 */
454
+ case REG_GP5: /* General Purpose Register 5 */
455
+ case REG_GP6: /* General Purpose Register 6 */
456
+ case REG_GP7: /* General Purpose Register 7 */
457
+ return true;
458
+ default:
459
+ break;
460
+ }
461
+ return false;
462
+}
463
+
464
+static bool allwinner_rtc_sun6i_write(AwRtcState *s, uint32_t offset,
465
+ uint32_t data)
466
+{
467
+ const AwRtcClass *c = AW_RTC_GET_CLASS(s);
468
+
469
+ switch (c->regmap[offset]) {
470
+ case REG_GP4: /* General Purpose Register 4 */
471
+ case REG_GP5: /* General Purpose Register 5 */
472
+ case REG_GP6: /* General Purpose Register 6 */
473
+ case REG_GP7: /* General Purpose Register 7 */
474
+ return true;
475
+ default:
476
+ break;
477
+ }
478
+ return false;
479
+}
480
+
481
+static uint64_t allwinner_rtc_read(void *opaque, hwaddr offset,
482
+ unsigned size)
483
+{
484
+ AwRtcState *s = AW_RTC(opaque);
485
+ const AwRtcClass *c = AW_RTC_GET_CLASS(s);
486
+ uint64_t val = 0;
487
+
488
+ if (offset >= c->regmap_size) {
489
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
490
+ __func__, (uint32_t)offset);
491
+ return 0;
492
+ }
493
+
494
+ if (!c->regmap[offset]) {
495
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: invalid register 0x%04x\n",
496
+ __func__, (uint32_t)offset);
497
+ return 0;
498
+ }
499
+
500
+ switch (c->regmap[offset]) {
501
+ case REG_LOSC: /* Low Oscillator Control */
502
+ val = s->regs[REG_LOSC];
503
+ s->regs[REG_LOSC] &= ~(REG_LOSC_YMD | REG_LOSC_HMS);
504
+ break;
505
+ case REG_YYMMDD: /* RTC Year-Month-Day */
506
+ case REG_HHMMSS: /* RTC Hour-Minute-Second */
507
+ case REG_GP0: /* General Purpose Register 0 */
508
+ case REG_GP1: /* General Purpose Register 1 */
509
+ case REG_GP2: /* General Purpose Register 2 */
510
+ case REG_GP3: /* General Purpose Register 3 */
511
+ val = s->regs[c->regmap[offset]];
512
+ break;
513
+ default:
514
+ if (!c->read(s, offset)) {
515
+ qemu_log_mask(LOG_UNIMP, "%s: unimplemented register 0x%04x\n",
516
+ __func__, (uint32_t)offset);
517
+ }
518
+ val = s->regs[c->regmap[offset]];
519
+ break;
520
+ }
521
+
522
+ trace_allwinner_rtc_read(offset, val);
523
+ return val;
524
+}
525
+
526
+static void allwinner_rtc_write(void *opaque, hwaddr offset,
527
+ uint64_t val, unsigned size)
528
+{
529
+ AwRtcState *s = AW_RTC(opaque);
530
+ const AwRtcClass *c = AW_RTC_GET_CLASS(s);
531
+
532
+ if (offset >= c->regmap_size) {
533
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: out-of-bounds offset 0x%04x\n",
534
+ __func__, (uint32_t)offset);
535
+ return;
536
+ }
537
+
538
+ if (!c->regmap[offset]) {
539
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: invalid register 0x%04x\n",
540
+ __func__, (uint32_t)offset);
541
+ return;
542
+ }
543
+
544
+ trace_allwinner_rtc_write(offset, val);
545
+
546
+ switch (c->regmap[offset]) {
547
+ case REG_YYMMDD: /* RTC Year-Month-Day */
548
+ s->regs[REG_YYMMDD] = val;
549
+ s->regs[REG_LOSC] |= REG_LOSC_YMD;
550
+ break;
551
+ case REG_HHMMSS: /* RTC Hour-Minute-Second */
552
+ s->regs[REG_HHMMSS] = val;
553
+ s->regs[REG_LOSC] |= REG_LOSC_HMS;
554
+ break;
555
+ case REG_GP0: /* General Purpose Register 0 */
556
+ case REG_GP1: /* General Purpose Register 1 */
557
+ case REG_GP2: /* General Purpose Register 2 */
558
+ case REG_GP3: /* General Purpose Register 3 */
559
+ s->regs[c->regmap[offset]] = val;
560
+ break;
561
+ default:
562
+ if (!c->write(s, offset, val)) {
563
+ qemu_log_mask(LOG_UNIMP, "%s: unimplemented register 0x%04x\n",
564
+ __func__, (uint32_t)offset);
565
+ }
566
+ break;
567
+ }
568
+}
569
+
570
+static const MemoryRegionOps allwinner_rtc_ops = {
571
+ .read = allwinner_rtc_read,
572
+ .write = allwinner_rtc_write,
573
+ .endianness = DEVICE_NATIVE_ENDIAN,
574
+ .valid = {
575
+ .min_access_size = 4,
576
+ .max_access_size = 4,
577
+ },
578
+ .impl.min_access_size = 4,
579
+};
580
+
581
+static void allwinner_rtc_reset(DeviceState *dev)
582
+{
583
+ AwRtcState *s = AW_RTC(dev);
584
+ struct tm now;
585
+
586
+ /* Clear registers */
587
+ memset(s->regs, 0, sizeof(s->regs));
588
+
589
+ /* Get current datetime */
590
+ qemu_get_timedate(&now, 0);
591
+
592
+ /* Set RTC with current datetime */
593
+ if (s->base_year > 1900) {
594
+ s->regs[REG_YYMMDD] = ((now.tm_year + 1900 - s->base_year) << 16) |
595
+ ((now.tm_mon + 1) << 8) |
596
+ now.tm_mday;
597
+ s->regs[REG_HHMMSS] = (((now.tm_wday + 6) % 7) << 29) |
598
+ (now.tm_hour << 16) |
599
+ (now.tm_min << 8) |
600
+ now.tm_sec;
601
+ }
602
+}
603
+
604
+static void allwinner_rtc_init(Object *obj)
605
+{
606
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
607
+ AwRtcState *s = AW_RTC(obj);
608
+
609
+ /* Memory mapping */
610
+ memory_region_init_io(&s->iomem, OBJECT(s), &allwinner_rtc_ops, s,
611
+ TYPE_AW_RTC, 1 * KiB);
612
+ sysbus_init_mmio(sbd, &s->iomem);
613
+}
614
+
615
+static const VMStateDescription allwinner_rtc_vmstate = {
616
+ .name = "allwinner-rtc",
617
+ .version_id = 1,
618
+ .minimum_version_id = 1,
619
+ .fields = (VMStateField[]) {
620
+ VMSTATE_UINT32_ARRAY(regs, AwRtcState, AW_RTC_REGS_NUM),
621
+ VMSTATE_END_OF_LIST()
622
+ }
623
+};
624
+
625
+static Property allwinner_rtc_properties[] = {
626
+ DEFINE_PROP_INT32("base-year", AwRtcState, base_year, 0),
627
+ DEFINE_PROP_END_OF_LIST(),
628
+};
629
+
630
+static void allwinner_rtc_class_init(ObjectClass *klass, void *data)
631
+{
632
+ DeviceClass *dc = DEVICE_CLASS(klass);
633
+
634
+ dc->reset = allwinner_rtc_reset;
635
+ dc->vmsd = &allwinner_rtc_vmstate;
636
+ device_class_set_props(dc, allwinner_rtc_properties);
637
+}
638
+
639
+static void allwinner_rtc_sun4i_init(Object *obj)
640
+{
641
+ AwRtcState *s = AW_RTC(obj);
642
+ s->base_year = 2010;
643
+}
644
+
645
+static void allwinner_rtc_sun4i_class_init(ObjectClass *klass, void *data)
646
+{
647
+ AwRtcClass *arc = AW_RTC_CLASS(klass);
648
+
649
+ arc->regmap = allwinner_rtc_sun4i_regmap;
650
+ arc->regmap_size = sizeof(allwinner_rtc_sun4i_regmap);
651
+ arc->read = allwinner_rtc_sun4i_read;
652
+ arc->write = allwinner_rtc_sun4i_write;
653
+}
654
+
655
+static void allwinner_rtc_sun6i_init(Object *obj)
656
+{
657
+ AwRtcState *s = AW_RTC(obj);
658
+ s->base_year = 1970;
659
+}
660
+
661
+static void allwinner_rtc_sun6i_class_init(ObjectClass *klass, void *data)
662
+{
663
+ AwRtcClass *arc = AW_RTC_CLASS(klass);
664
+
665
+ arc->regmap = allwinner_rtc_sun6i_regmap;
666
+ arc->regmap_size = sizeof(allwinner_rtc_sun6i_regmap);
667
+ arc->read = allwinner_rtc_sun6i_read;
668
+ arc->write = allwinner_rtc_sun6i_write;
669
+}
670
+
671
+static void allwinner_rtc_sun7i_init(Object *obj)
672
+{
673
+ AwRtcState *s = AW_RTC(obj);
674
+ s->base_year = 1970;
675
+}
676
+
677
+static void allwinner_rtc_sun7i_class_init(ObjectClass *klass, void *data)
678
+{
679
+ AwRtcClass *arc = AW_RTC_CLASS(klass);
680
+ allwinner_rtc_sun4i_class_init(klass, arc);
681
+}
682
+
683
+static const TypeInfo allwinner_rtc_info = {
684
+ .name = TYPE_AW_RTC,
685
+ .parent = TYPE_SYS_BUS_DEVICE,
686
+ .instance_init = allwinner_rtc_init,
687
+ .instance_size = sizeof(AwRtcState),
688
+ .class_init = allwinner_rtc_class_init,
689
+ .class_size = sizeof(AwRtcClass),
690
+ .abstract = true,
691
+};
692
+
693
+static const TypeInfo allwinner_rtc_sun4i_info = {
694
+ .name = TYPE_AW_RTC_SUN4I,
695
+ .parent = TYPE_AW_RTC,
696
+ .class_init = allwinner_rtc_sun4i_class_init,
697
+ .instance_init = allwinner_rtc_sun4i_init,
698
+};
699
+
700
+static const TypeInfo allwinner_rtc_sun6i_info = {
701
+ .name = TYPE_AW_RTC_SUN6I,
702
+ .parent = TYPE_AW_RTC,
703
+ .class_init = allwinner_rtc_sun6i_class_init,
704
+ .instance_init = allwinner_rtc_sun6i_init,
705
+};
706
+
707
+static const TypeInfo allwinner_rtc_sun7i_info = {
708
+ .name = TYPE_AW_RTC_SUN7I,
709
+ .parent = TYPE_AW_RTC,
710
+ .class_init = allwinner_rtc_sun7i_class_init,
711
+ .instance_init = allwinner_rtc_sun7i_init,
712
+};
713
+
714
+static void allwinner_rtc_register(void)
715
+{
716
+ type_register_static(&allwinner_rtc_info);
717
+ type_register_static(&allwinner_rtc_sun4i_info);
718
+ type_register_static(&allwinner_rtc_sun6i_info);
719
+ type_register_static(&allwinner_rtc_sun7i_info);
720
+}
721
+
722
+type_init(allwinner_rtc_register)
723
diff --git a/hw/rtc/trace-events b/hw/rtc/trace-events
155
index XXXXXXX..XXXXXXX 100644
724
index XXXXXXX..XXXXXXX 100644
156
--- a/target/arm/sve.decode
725
--- a/hw/rtc/trace-events
157
+++ b/target/arm/sve.decode
726
+++ b/hw/rtc/trace-events
158
@@ -XXX,XX +XXX,XX @@ CPY_m_v 00000101 .. 100000 100 ... ..... ..... @rd_pg_rn
727
@@ -XXX,XX +XXX,XX @@
159
# SVE copy element from general register to vector (predicated)
728
# See docs/devel/tracing.txt for syntax documentation.
160
CPY_m_r 00000101 .. 101000 101 ... ..... ..... @rd_pg_rn
729
161
730
+# allwinner-rtc.c
162
+# SVE reverse within elements
731
+allwinner_rtc_read(uint64_t addr, uint64_t value) "addr 0x%" PRIx64 " value 0x%" PRIx64
163
+# Note esz >= operation size
732
+allwinner_rtc_write(uint64_t addr, uint64_t value) "addr 0x%" PRIx64 " value 0x%" PRIx64
164
+REVB 00000101 .. 1001 00 100 ... ..... ..... @rd_pg_rn
733
+
165
+REVH 00000101 .. 1001 01 100 ... ..... ..... @rd_pg_rn
734
# sun4v-rtc.c
166
+REVW 00000101 .. 1001 10 100 ... ..... ..... @rd_pg_rn
735
sun4v_rtc_read(uint64_t addr, uint64_t value) "read: addr 0x%" PRIx64 " value 0x%" PRIx64
167
+RBIT 00000101 .. 1001 11 100 ... ..... ..... @rd_pg_rn
736
sun4v_rtc_write(uint64_t addr, uint64_t value) "write: addr 0x%" PRIx64 " value 0x%" PRIx64
168
+
169
### SVE Predicate Logical Operations Group
170
171
# SVE predicate logical operations
172
--
737
--
173
2.17.1
738
2.20.1
174
739
175
740
diff view generated by jsdifflib
1
In subpage_read() we perform a load of the data into a local buffer
1
From: Philippe Mathieu-Daudé <f4bug@amsat.org>
2
which we then access using ldub_p(), lduw_p(), ldl_p() or ldq_p()
3
depending on its size, storing the result into the uint64_t *data.
4
Since ldl_p() returns an 'int', this means that for the 4-byte
5
case we will sign-extend the data, whereas for 1 and 2 byte
6
reads we zero-extend it.
7
2
8
This ought not to matter since the caller will likely ignore values in
3
This test boots a Linux kernel on a OrangePi PC board and verify
9
the high bytes of the data, but add a cast so that we're consistent.
4
the serial output is working.
10
5
6
The kernel image and DeviceTree blob are built by the Armbian
7
project (based on Debian):
8
https://www.armbian.com/orange-pi-pc/
9
10
If ARM is a target being built, "make check-acceptance" will
11
automatically include this test by the use of the "arch:arm" tags.
12
13
Alternatively, this test can be run using:
14
15
$ make check-venv
16
$ ./tests/venv/bin/avocado --show=console,app run -t machine:orangepi-pc tests/acceptance/boot_linux_console.py
17
JOB ID : 2e4d15eceb13c33672af406f08171e6e9de1414a
18
JOB LOG : ~/job-results/job-2019-12-17T05.46-2e4d15e/job.log
19
(1/1) tests/acceptance/boot_linux_console.py:BootLinuxConsole.test_arm_orangepi:
20
console: Uncompressing Linux... done, booting the kernel.
21
console: Booting Linux on physical CPU 0x0
22
console: Linux version 4.20.7-sunxi (root@armbian.com) (gcc version 7.2.1 20171011 (Linaro GCC 7.2-2017.11)) #5.75 SMP Fri Feb 8 09:02:10 CET 2019
23
console: CPU: ARMv7 Processor [410fc075] revision 5 (ARMv7), cr=50c5387d
24
console: CPU: div instructions available: patching division code
25
console: CPU: PIPT / VIPT nonaliasing data cache, VIPT aliasing instruction cache
26
console: OF: fdt: Machine model: Xunlong Orange Pi PC
27
console: Memory policy: Data cache writealloc
28
console: OF: reserved mem: failed to allocate memory for node 'cma@4a000000'
29
console: cma: Failed to reserve 128 MiB
30
console: psci: probing for conduit method from DT.
31
console: psci: PSCIv0.2 detected in firmware.
32
console: psci: Using standard PSCI v0.2 function IDs
33
console: psci: Trusted OS migration not required
34
console: random: get_random_bytes called from start_kernel+0x8d/0x3c2 with crng_init=0
35
console: percpu: Embedded 18 pages/cpu @(ptrval) s41228 r8192 d24308 u73728
36
console: Built 1 zonelists, mobility grouping on. Total pages: 32480
37
console: Kernel command line: printk.time=0 console=ttyS0,115200
38
PASS (8.59 s)
39
JOB TIME : 8.81 s
40
41
Signed-off-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
42
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
43
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
44
Tested-by: Alex Bennée <alex.bennee@linaro.org>
45
Message-id: 20200311221854.30370-14-nieklinnenbank@gmail.com
46
[NL: rename in commit message Raspbian to Armbian, remove vm.set_machine()]
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
47
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
13
Message-id: 20180611171007.4165-3-peter.maydell@linaro.org
14
---
48
---
15
exec.c | 2 +-
49
tests/acceptance/boot_linux_console.py | 25 +++++++++++++++++++++++++
16
1 file changed, 1 insertion(+), 1 deletion(-)
50
1 file changed, 25 insertions(+)
17
51
18
diff --git a/exec.c b/exec.c
52
diff --git a/tests/acceptance/boot_linux_console.py b/tests/acceptance/boot_linux_console.py
19
index XXXXXXX..XXXXXXX 100644
53
index XXXXXXX..XXXXXXX 100644
20
--- a/exec.c
54
--- a/tests/acceptance/boot_linux_console.py
21
+++ b/exec.c
55
+++ b/tests/acceptance/boot_linux_console.py
22
@@ -XXX,XX +XXX,XX @@ static MemTxResult subpage_read(void *opaque, hwaddr addr, uint64_t *data,
56
@@ -XXX,XX +XXX,XX @@ class BootLinuxConsole(Test):
23
*data = lduw_p(buf);
57
exec_command_and_wait_for_pattern(self, 'reboot',
24
return MEMTX_OK;
58
'reboot: Restarting system')
25
case 4:
59
26
- *data = ldl_p(buf);
60
+ def test_arm_orangepi(self):
27
+ *data = (uint32_t)ldl_p(buf);
61
+ """
28
return MEMTX_OK;
62
+ :avocado: tags=arch:arm
29
case 8:
63
+ :avocado: tags=machine:orangepi-pc
30
*data = ldq_p(buf);
64
+ """
65
+ deb_url = ('https://apt.armbian.com/pool/main/l/'
66
+ 'linux-4.20.7-sunxi/linux-image-dev-sunxi_5.75_armhf.deb')
67
+ deb_hash = '1334c29c44d984ffa05ed10de8c3361f33d78315'
68
+ deb_path = self.fetch_asset(deb_url, asset_hash=deb_hash)
69
+ kernel_path = self.extract_from_deb(deb_path,
70
+ '/boot/vmlinuz-4.20.7-sunxi')
71
+ dtb_path = '/usr/lib/linux-image-dev-sunxi/sun8i-h3-orangepi-pc.dtb'
72
+ dtb_path = self.extract_from_deb(deb_path, dtb_path)
73
+
74
+ self.vm.set_console()
75
+ kernel_command_line = (self.KERNEL_COMMON_COMMAND_LINE +
76
+ 'console=ttyS0,115200n8 '
77
+ 'earlycon=uart,mmio32,0x1c28000')
78
+ self.vm.add_args('-kernel', kernel_path,
79
+ '-dtb', dtb_path,
80
+ '-append', kernel_command_line)
81
+ self.vm.launch()
82
+ console_pattern = 'Kernel command line: %s' % kernel_command_line
83
+ self.wait_for_console_pattern(console_pattern)
84
+
85
def test_s390x_s390_ccw_virtio(self):
86
"""
87
:avocado: tags=arch:s390x
31
--
88
--
32
2.17.1
89
2.20.1
33
90
34
91
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Philippe Mathieu-Daudé <f4bug@amsat.org>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
This test boots a Linux kernel on a OrangePi PC board and verify
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
the serial output is working.
5
Message-id: 20180613015641.5667-13-richard.henderson@linaro.org
5
6
The kernel image and DeviceTree blob are built by the Armbian
7
project (based on Debian):
8
https://www.armbian.com/orange-pi-pc/
9
10
The cpio image used comes from the linux-build-test project:
11
https://github.com/groeck/linux-build-test
12
13
If ARM is a target being built, "make check-acceptance" will
14
automatically include this test by the use of the "arch:arm" tags.
15
16
Alternatively, this test can be run using:
17
18
$ avocado --show=console run -t machine:orangepi-pc tests/acceptance/boot_linux_console.py
19
console: Uncompressing Linux... done, booting the kernel.
20
console: Booting Linux on physical CPU 0x0
21
console: Linux version 4.20.7-sunxi (root@armbian.com) (gcc version 7.2.1 20171011 (Linaro GCC 7.2-2017.11)) #5.75 SMP Fri Feb 8 09:02:10 CET 2019
22
console: CPU: ARMv7 Processor [410fc075] revision 5 (ARMv7), cr=50c5387d
23
console: CPU: div instructions available: patching division code
24
console: CPU: PIPT / VIPT nonaliasing data cache, VIPT aliasing instruction cache
25
console: OF: fdt: Machine model: Xunlong Orange Pi PC
26
[...]
27
console: Trying to unpack rootfs image as initramfs...
28
console: Freeing initrd memory: 3256K
29
console: Freeing unused kernel memory: 1024K
30
console: Run /init as init process
31
console: mount: mounting devtmpfs on /dev failed: Device or resource busy
32
console: Starting logging: OK
33
console: Initializing random number generator... random: dd: uninitialized urandom read (512 bytes read)
34
console: done.
35
console: Starting network: OK
36
console: Found console ttyS0
37
console: Linux version 4.20.7-sunxi (root@armbian.com) (gcc version 7.2.1 20171011 (Linaro GCC 7.2-2017.11)) #5.75 SMP Fri Feb 8 09:02:10 CET 2019
38
console: Boot successful.
39
console: cat /proc/cpuinfo
40
console: / # cat /proc/cpuinfo
41
console: processor : 0
42
console: model name : ARMv7 Processor rev 5 (v7l)
43
console: BogoMIPS : 125.00
44
console: Features : half thumb fastmult vfp edsp neon vfpv3 tls vfpv4 idiva idivt vfpd32 lpae evtstrm
45
console: CPU implementer : 0x41
46
console: CPU architecture: 7
47
console: CPU variant : 0x0
48
console: CPU part : 0xc07
49
console: CPU revision : 5
50
[...]
51
console: processor : 3
52
console: model name : ARMv7 Processor rev 5 (v7l)
53
console: BogoMIPS : 125.00
54
console: Features : half thumb fastmult vfp edsp neon vfpv3 tls vfpv4 idiva idivt vfpd32 lpae evtstrm
55
console: CPU implementer : 0x41
56
console: CPU architecture: 7
57
console: CPU variant : 0x0
58
console: CPU part : 0xc07
59
console: CPU revision : 5
60
console: Hardware : Allwinner sun8i Family
61
console: Revision : 0000
62
console: Serial : 0000000000000000
63
console: cat /proc/iomem
64
console: / # cat /proc/iomem
65
console: 01000000-010fffff : clock@1000000
66
console: 01c00000-01c00fff : system-control@1c00000
67
console: 01c02000-01c02fff : dma-controller@1c02000
68
[...]
69
console: reboot
70
console: / # reboot
71
console: / # Found console ttyS0
72
console: Stopping network: OK
73
console: hrtimer: interrupt took 21852064 ns
74
console: Saving random seed... random: dd: uninitialized urandom read (512 bytes read)
75
console: done.
76
console: Stopping logging: OK
77
console: umount: devtmpfs busy - remounted read-only
78
console: umount: can't unmount /: Invalid argument
79
console: The system is going down NOW!
80
console: Sent SIGTERM to all processes
81
console: Sent SIGKILL to all processes
82
console: Requesting system reboot
83
console: reboot: Restarting system
84
PASS (48.32 s)
85
JOB TIME : 49.16 s
86
87
Signed-off-by: Philippe Mathieu-Daudé <philmd@redhat.com>
88
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
89
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
90
Tested-by: Alex Bennée <alex.bennee@linaro.org>
91
Message-id: 20200311221854.30370-15-nieklinnenbank@gmail.com
92
[NL: rename in commit message Raspbian to Armbian, remove vm.set_machine()]
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
93
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
94
---
8
target/arm/helper-sve.h | 44 +++++++++++++++++++
95
tests/acceptance/boot_linux_console.py | 40 ++++++++++++++++++++++++++
9
target/arm/sve_helper.c | 88 ++++++++++++++++++++++++++++++++++++++
96
1 file changed, 40 insertions(+)
10
target/arm/translate-sve.c | 66 ++++++++++++++++++++++++++++
11
target/arm/sve.decode | 23 ++++++++++
12
4 files changed, 221 insertions(+)
13
97
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
98
diff --git a/tests/acceptance/boot_linux_console.py b/tests/acceptance/boot_linux_console.py
15
index XXXXXXX..XXXXXXX 100644
99
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
100
--- a/tests/acceptance/boot_linux_console.py
17
+++ b/target/arm/helper-sve.h
101
+++ b/tests/acceptance/boot_linux_console.py
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_5(sve_cmplo_ppzw_s, TCG_CALL_NO_RWG,
102
@@ -XXX,XX +XXX,XX @@ class BootLinuxConsole(Test):
19
DEF_HELPER_FLAGS_5(sve_cmpls_ppzw_s, TCG_CALL_NO_RWG,
103
console_pattern = 'Kernel command line: %s' % kernel_command_line
20
i32, ptr, ptr, ptr, ptr, i32)
104
self.wait_for_console_pattern(console_pattern)
21
105
22
+DEF_HELPER_FLAGS_4(sve_cmpeq_ppzi_b, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
106
+ def test_arm_orangepi_initrd(self):
23
+DEF_HELPER_FLAGS_4(sve_cmpne_ppzi_b, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
107
+ """
24
+DEF_HELPER_FLAGS_4(sve_cmpgt_ppzi_b, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
108
+ :avocado: tags=arch:arm
25
+DEF_HELPER_FLAGS_4(sve_cmpge_ppzi_b, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
109
+ :avocado: tags=machine:orangepi-pc
26
+DEF_HELPER_FLAGS_4(sve_cmplt_ppzi_b, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
110
+ """
27
+DEF_HELPER_FLAGS_4(sve_cmple_ppzi_b, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
111
+ deb_url = ('https://apt.armbian.com/pool/main/l/'
28
+DEF_HELPER_FLAGS_4(sve_cmphs_ppzi_b, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
112
+ 'linux-4.20.7-sunxi/linux-image-dev-sunxi_5.75_armhf.deb')
29
+DEF_HELPER_FLAGS_4(sve_cmphi_ppzi_b, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
113
+ deb_hash = '1334c29c44d984ffa05ed10de8c3361f33d78315'
30
+DEF_HELPER_FLAGS_4(sve_cmplo_ppzi_b, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
114
+ deb_path = self.fetch_asset(deb_url, asset_hash=deb_hash)
31
+DEF_HELPER_FLAGS_4(sve_cmpls_ppzi_b, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
115
+ kernel_path = self.extract_from_deb(deb_path,
116
+ '/boot/vmlinuz-4.20.7-sunxi')
117
+ dtb_path = '/usr/lib/linux-image-dev-sunxi/sun8i-h3-orangepi-pc.dtb'
118
+ dtb_path = self.extract_from_deb(deb_path, dtb_path)
119
+ initrd_url = ('https://github.com/groeck/linux-build-test/raw/'
120
+ '2eb0a73b5d5a28df3170c546ddaaa9757e1e0848/rootfs/'
121
+ 'arm/rootfs-armv7a.cpio.gz')
122
+ initrd_hash = '604b2e45cdf35045846b8bbfbf2129b1891bdc9c'
123
+ initrd_path_gz = self.fetch_asset(initrd_url, asset_hash=initrd_hash)
124
+ initrd_path = os.path.join(self.workdir, 'rootfs.cpio')
125
+ archive.gzip_uncompress(initrd_path_gz, initrd_path)
32
+
126
+
33
+DEF_HELPER_FLAGS_4(sve_cmpeq_ppzi_h, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
127
+ self.vm.set_console()
34
+DEF_HELPER_FLAGS_4(sve_cmpne_ppzi_h, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
128
+ kernel_command_line = (self.KERNEL_COMMON_COMMAND_LINE +
35
+DEF_HELPER_FLAGS_4(sve_cmpgt_ppzi_h, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
129
+ 'console=ttyS0,115200 '
36
+DEF_HELPER_FLAGS_4(sve_cmpge_ppzi_h, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
130
+ 'panic=-1 noreboot')
37
+DEF_HELPER_FLAGS_4(sve_cmplt_ppzi_h, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
131
+ self.vm.add_args('-kernel', kernel_path,
38
+DEF_HELPER_FLAGS_4(sve_cmple_ppzi_h, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
132
+ '-dtb', dtb_path,
39
+DEF_HELPER_FLAGS_4(sve_cmphs_ppzi_h, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
133
+ '-initrd', initrd_path,
40
+DEF_HELPER_FLAGS_4(sve_cmphi_ppzi_h, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
134
+ '-append', kernel_command_line,
41
+DEF_HELPER_FLAGS_4(sve_cmplo_ppzi_h, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
135
+ '-no-reboot')
42
+DEF_HELPER_FLAGS_4(sve_cmpls_ppzi_h, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
136
+ self.vm.launch()
137
+ self.wait_for_console_pattern('Boot successful.')
43
+
138
+
44
+DEF_HELPER_FLAGS_4(sve_cmpeq_ppzi_s, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
139
+ exec_command_and_wait_for_pattern(self, 'cat /proc/cpuinfo',
45
+DEF_HELPER_FLAGS_4(sve_cmpne_ppzi_s, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
140
+ 'Allwinner sun8i Family')
46
+DEF_HELPER_FLAGS_4(sve_cmpgt_ppzi_s, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
141
+ exec_command_and_wait_for_pattern(self, 'cat /proc/iomem',
47
+DEF_HELPER_FLAGS_4(sve_cmpge_ppzi_s, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
142
+ 'system-control@1c00000')
48
+DEF_HELPER_FLAGS_4(sve_cmplt_ppzi_s, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
143
+ exec_command_and_wait_for_pattern(self, 'reboot',
49
+DEF_HELPER_FLAGS_4(sve_cmple_ppzi_s, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
144
+ 'reboot: Restarting system')
50
+DEF_HELPER_FLAGS_4(sve_cmphs_ppzi_s, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
51
+DEF_HELPER_FLAGS_4(sve_cmphi_ppzi_s, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
52
+DEF_HELPER_FLAGS_4(sve_cmplo_ppzi_s, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
53
+DEF_HELPER_FLAGS_4(sve_cmpls_ppzi_s, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
54
+
145
+
55
+DEF_HELPER_FLAGS_4(sve_cmpeq_ppzi_d, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
146
def test_s390x_s390_ccw_virtio(self):
56
+DEF_HELPER_FLAGS_4(sve_cmpne_ppzi_d, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
147
"""
57
+DEF_HELPER_FLAGS_4(sve_cmpgt_ppzi_d, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
148
:avocado: tags=arch:s390x
58
+DEF_HELPER_FLAGS_4(sve_cmpge_ppzi_d, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
59
+DEF_HELPER_FLAGS_4(sve_cmplt_ppzi_d, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
60
+DEF_HELPER_FLAGS_4(sve_cmple_ppzi_d, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
61
+DEF_HELPER_FLAGS_4(sve_cmphs_ppzi_d, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
62
+DEF_HELPER_FLAGS_4(sve_cmphi_ppzi_d, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
63
+DEF_HELPER_FLAGS_4(sve_cmplo_ppzi_d, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
64
+DEF_HELPER_FLAGS_4(sve_cmpls_ppzi_d, TCG_CALL_NO_RWG, i32, ptr, ptr, ptr, i32)
65
+
66
DEF_HELPER_FLAGS_5(sve_and_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
67
DEF_HELPER_FLAGS_5(sve_bic_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
68
DEF_HELPER_FLAGS_5(sve_eor_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
69
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
70
index XXXXXXX..XXXXXXX 100644
71
--- a/target/arm/sve_helper.c
72
+++ b/target/arm/sve_helper.c
73
@@ -XXX,XX +XXX,XX @@ DO_CMP_PPZW_S(sve_cmpls_ppzw_s, uint32_t, uint64_t, <=)
74
#undef DO_CMP_PPZW_H
75
#undef DO_CMP_PPZW_S
76
#undef DO_CMP_PPZW
77
+
78
+/* Similar, but the second source is immediate. */
79
+#define DO_CMP_PPZI(NAME, TYPE, OP, H, MASK) \
80
+uint32_t HELPER(NAME)(void *vd, void *vn, void *vg, uint32_t desc) \
81
+{ \
82
+ intptr_t opr_sz = simd_oprsz(desc); \
83
+ uint32_t flags = PREDTEST_INIT; \
84
+ TYPE mm = simd_data(desc); \
85
+ intptr_t i = opr_sz; \
86
+ do { \
87
+ uint64_t out = 0, pg; \
88
+ do { \
89
+ i -= sizeof(TYPE), out <<= sizeof(TYPE); \
90
+ TYPE nn = *(TYPE *)(vn + H(i)); \
91
+ out |= nn OP mm; \
92
+ } while (i & 63); \
93
+ pg = *(uint64_t *)(vg + (i >> 3)) & MASK; \
94
+ out &= pg; \
95
+ *(uint64_t *)(vd + (i >> 3)) = out; \
96
+ flags = iter_predtest_bwd(out, pg, flags); \
97
+ } while (i > 0); \
98
+ return flags; \
99
+}
100
+
101
+#define DO_CMP_PPZI_B(NAME, TYPE, OP) \
102
+ DO_CMP_PPZI(NAME, TYPE, OP, H1, 0xffffffffffffffffull)
103
+#define DO_CMP_PPZI_H(NAME, TYPE, OP) \
104
+ DO_CMP_PPZI(NAME, TYPE, OP, H1_2, 0x5555555555555555ull)
105
+#define DO_CMP_PPZI_S(NAME, TYPE, OP) \
106
+ DO_CMP_PPZI(NAME, TYPE, OP, H1_4, 0x1111111111111111ull)
107
+#define DO_CMP_PPZI_D(NAME, TYPE, OP) \
108
+ DO_CMP_PPZI(NAME, TYPE, OP, , 0x0101010101010101ull)
109
+
110
+DO_CMP_PPZI_B(sve_cmpeq_ppzi_b, uint8_t, ==)
111
+DO_CMP_PPZI_H(sve_cmpeq_ppzi_h, uint16_t, ==)
112
+DO_CMP_PPZI_S(sve_cmpeq_ppzi_s, uint32_t, ==)
113
+DO_CMP_PPZI_D(sve_cmpeq_ppzi_d, uint64_t, ==)
114
+
115
+DO_CMP_PPZI_B(sve_cmpne_ppzi_b, uint8_t, !=)
116
+DO_CMP_PPZI_H(sve_cmpne_ppzi_h, uint16_t, !=)
117
+DO_CMP_PPZI_S(sve_cmpne_ppzi_s, uint32_t, !=)
118
+DO_CMP_PPZI_D(sve_cmpne_ppzi_d, uint64_t, !=)
119
+
120
+DO_CMP_PPZI_B(sve_cmpgt_ppzi_b, int8_t, >)
121
+DO_CMP_PPZI_H(sve_cmpgt_ppzi_h, int16_t, >)
122
+DO_CMP_PPZI_S(sve_cmpgt_ppzi_s, int32_t, >)
123
+DO_CMP_PPZI_D(sve_cmpgt_ppzi_d, int64_t, >)
124
+
125
+DO_CMP_PPZI_B(sve_cmpge_ppzi_b, int8_t, >=)
126
+DO_CMP_PPZI_H(sve_cmpge_ppzi_h, int16_t, >=)
127
+DO_CMP_PPZI_S(sve_cmpge_ppzi_s, int32_t, >=)
128
+DO_CMP_PPZI_D(sve_cmpge_ppzi_d, int64_t, >=)
129
+
130
+DO_CMP_PPZI_B(sve_cmphi_ppzi_b, uint8_t, >)
131
+DO_CMP_PPZI_H(sve_cmphi_ppzi_h, uint16_t, >)
132
+DO_CMP_PPZI_S(sve_cmphi_ppzi_s, uint32_t, >)
133
+DO_CMP_PPZI_D(sve_cmphi_ppzi_d, uint64_t, >)
134
+
135
+DO_CMP_PPZI_B(sve_cmphs_ppzi_b, uint8_t, >=)
136
+DO_CMP_PPZI_H(sve_cmphs_ppzi_h, uint16_t, >=)
137
+DO_CMP_PPZI_S(sve_cmphs_ppzi_s, uint32_t, >=)
138
+DO_CMP_PPZI_D(sve_cmphs_ppzi_d, uint64_t, >=)
139
+
140
+DO_CMP_PPZI_B(sve_cmplt_ppzi_b, int8_t, <)
141
+DO_CMP_PPZI_H(sve_cmplt_ppzi_h, int16_t, <)
142
+DO_CMP_PPZI_S(sve_cmplt_ppzi_s, int32_t, <)
143
+DO_CMP_PPZI_D(sve_cmplt_ppzi_d, int64_t, <)
144
+
145
+DO_CMP_PPZI_B(sve_cmple_ppzi_b, int8_t, <=)
146
+DO_CMP_PPZI_H(sve_cmple_ppzi_h, int16_t, <=)
147
+DO_CMP_PPZI_S(sve_cmple_ppzi_s, int32_t, <=)
148
+DO_CMP_PPZI_D(sve_cmple_ppzi_d, int64_t, <=)
149
+
150
+DO_CMP_PPZI_B(sve_cmplo_ppzi_b, uint8_t, <)
151
+DO_CMP_PPZI_H(sve_cmplo_ppzi_h, uint16_t, <)
152
+DO_CMP_PPZI_S(sve_cmplo_ppzi_s, uint32_t, <)
153
+DO_CMP_PPZI_D(sve_cmplo_ppzi_d, uint64_t, <)
154
+
155
+DO_CMP_PPZI_B(sve_cmpls_ppzi_b, uint8_t, <=)
156
+DO_CMP_PPZI_H(sve_cmpls_ppzi_h, uint16_t, <=)
157
+DO_CMP_PPZI_S(sve_cmpls_ppzi_s, uint32_t, <=)
158
+DO_CMP_PPZI_D(sve_cmpls_ppzi_d, uint64_t, <=)
159
+
160
+#undef DO_CMP_PPZI_B
161
+#undef DO_CMP_PPZI_H
162
+#undef DO_CMP_PPZI_S
163
+#undef DO_CMP_PPZI_D
164
+#undef DO_CMP_PPZI
165
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
166
index XXXXXXX..XXXXXXX 100644
167
--- a/target/arm/translate-sve.c
168
+++ b/target/arm/translate-sve.c
169
@@ -XXX,XX +XXX,XX @@
170
#include "translate-a64.h"
171
172
173
+typedef void gen_helper_gvec_flags_3(TCGv_i32, TCGv_ptr, TCGv_ptr,
174
+ TCGv_ptr, TCGv_i32);
175
typedef void gen_helper_gvec_flags_4(TCGv_i32, TCGv_ptr, TCGv_ptr,
176
TCGv_ptr, TCGv_ptr, TCGv_i32);
177
178
@@ -XXX,XX +XXX,XX @@ DO_PPZW(CMPLS, cmpls)
179
180
#undef DO_PPZW
181
182
+/*
183
+ *** SVE Integer Compare - Immediate Groups
184
+ */
185
+
186
+static bool do_ppzi_flags(DisasContext *s, arg_rpri_esz *a,
187
+ gen_helper_gvec_flags_3 *gen_fn)
188
+{
189
+ TCGv_ptr pd, zn, pg;
190
+ unsigned vsz;
191
+ TCGv_i32 t;
192
+
193
+ if (gen_fn == NULL) {
194
+ return false;
195
+ }
196
+ if (!sve_access_check(s)) {
197
+ return true;
198
+ }
199
+
200
+ vsz = vec_full_reg_size(s);
201
+ t = tcg_const_i32(simd_desc(vsz, vsz, a->imm));
202
+ pd = tcg_temp_new_ptr();
203
+ zn = tcg_temp_new_ptr();
204
+ pg = tcg_temp_new_ptr();
205
+
206
+ tcg_gen_addi_ptr(pd, cpu_env, pred_full_reg_offset(s, a->rd));
207
+ tcg_gen_addi_ptr(zn, cpu_env, vec_full_reg_offset(s, a->rn));
208
+ tcg_gen_addi_ptr(pg, cpu_env, pred_full_reg_offset(s, a->pg));
209
+
210
+ gen_fn(t, pd, zn, pg, t);
211
+
212
+ tcg_temp_free_ptr(pd);
213
+ tcg_temp_free_ptr(zn);
214
+ tcg_temp_free_ptr(pg);
215
+
216
+ do_pred_flags(t);
217
+
218
+ tcg_temp_free_i32(t);
219
+ return true;
220
+}
221
+
222
+#define DO_PPZI(NAME, name) \
223
+static bool trans_##NAME##_ppzi(DisasContext *s, arg_rpri_esz *a, \
224
+ uint32_t insn) \
225
+{ \
226
+ static gen_helper_gvec_flags_3 * const fns[4] = { \
227
+ gen_helper_sve_##name##_ppzi_b, gen_helper_sve_##name##_ppzi_h, \
228
+ gen_helper_sve_##name##_ppzi_s, gen_helper_sve_##name##_ppzi_d, \
229
+ }; \
230
+ return do_ppzi_flags(s, a, fns[a->esz]); \
231
+}
232
+
233
+DO_PPZI(CMPEQ, cmpeq)
234
+DO_PPZI(CMPNE, cmpne)
235
+DO_PPZI(CMPGT, cmpgt)
236
+DO_PPZI(CMPGE, cmpge)
237
+DO_PPZI(CMPHI, cmphi)
238
+DO_PPZI(CMPHS, cmphs)
239
+DO_PPZI(CMPLT, cmplt)
240
+DO_PPZI(CMPLE, cmple)
241
+DO_PPZI(CMPLO, cmplo)
242
+DO_PPZI(CMPLS, cmpls)
243
+
244
+#undef DO_PPZI
245
+
246
/*
247
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
248
*/
249
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
250
index XXXXXXX..XXXXXXX 100644
251
--- a/target/arm/sve.decode
252
+++ b/target/arm/sve.decode
253
@@ -XXX,XX +XXX,XX @@
254
@rdn_dbm ........ .. .... dbm:13 rd:5 \
255
&rr_dbm rn=%reg_movprfx
256
257
+# Predicate output, vector and immediate input,
258
+# controlling predicate, element size.
259
+@pd_pg_rn_i7 ........ esz:2 . imm:7 . pg:3 rn:5 . rd:4 &rpri_esz
260
+@pd_pg_rn_i5 ........ esz:2 . imm:s5 ... pg:3 rn:5 . rd:4 &rpri_esz
261
+
262
# Basic Load/Store with 9-bit immediate offset
263
@pd_rn_i9 ........ ........ ...... rn:5 . rd:4 \
264
&rri imm=%imm9_16_10
265
@@ -XXX,XX +XXX,XX @@ CMPHI_ppzw 00100100 .. 0 ..... 110 ... ..... 1 .... @pd_pg_rn_rm
266
CMPLO_ppzw 00100100 .. 0 ..... 111 ... ..... 0 .... @pd_pg_rn_rm
267
CMPLS_ppzw 00100100 .. 0 ..... 111 ... ..... 1 .... @pd_pg_rn_rm
268
269
+### SVE Integer Compare - Unsigned Immediate Group
270
+
271
+# SVE integer compare with unsigned immediate
272
+CMPHS_ppzi 00100100 .. 1 ....... 0 ... ..... 0 .... @pd_pg_rn_i7
273
+CMPHI_ppzi 00100100 .. 1 ....... 0 ... ..... 1 .... @pd_pg_rn_i7
274
+CMPLO_ppzi 00100100 .. 1 ....... 1 ... ..... 0 .... @pd_pg_rn_i7
275
+CMPLS_ppzi 00100100 .. 1 ....... 1 ... ..... 1 .... @pd_pg_rn_i7
276
+
277
+### SVE Integer Compare - Signed Immediate Group
278
+
279
+# SVE integer compare with signed immediate
280
+CMPGE_ppzi 00100101 .. 0 ..... 000 ... ..... 0 .... @pd_pg_rn_i5
281
+CMPGT_ppzi 00100101 .. 0 ..... 000 ... ..... 1 .... @pd_pg_rn_i5
282
+CMPLT_ppzi 00100101 .. 0 ..... 001 ... ..... 0 .... @pd_pg_rn_i5
283
+CMPLE_ppzi 00100101 .. 0 ..... 001 ... ..... 1 .... @pd_pg_rn_i5
284
+CMPEQ_ppzi 00100101 .. 0 ..... 100 ... ..... 0 .... @pd_pg_rn_i5
285
+CMPNE_ppzi 00100101 .. 0 ..... 100 ... ..... 1 .... @pd_pg_rn_i5
286
+
287
### SVE Predicate Logical Operations Group
288
289
# SVE predicate logical operations
290
--
149
--
291
2.17.1
150
2.20.1
292
151
293
152
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Philippe Mathieu-Daudé <f4bug@amsat.org>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
The kernel image and DeviceTree blob are built by the Armbian
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
project (based on Debian):
5
Message-id: 20180613015641.5667-12-richard.henderson@linaro.org
5
https://www.armbian.com/orange-pi-pc/
6
7
The SD image is from the kernelci.org project:
8
https://kernelci.org/faq/#the-code
9
10
If ARM is a target being built, "make check-acceptance" will
11
automatically include this test by the use of the "arch:arm" tags.
12
13
Alternatively, this test can be run using:
14
15
$ avocado --show=console run -t machine:orangepi-pc tests/acceptance/boot_linux_console.py
16
console: Uncompressing Linux... done, booting the kernel.
17
console: Booting Linux on physical CPU 0x0
18
console: Linux version 4.20.7-sunxi (root@armbian.com) (gcc version 7.2.1 20171011 (Linaro GCC 7.2-2017.11)) #5.75 SMP Fri Feb 8 09:02:10 CET 2019
19
console: CPU: ARMv7 Processor [410fc075] revision 5 (ARMv7), cr=50c5387d
20
[...]
21
console: sunxi-wdt 1c20ca0.watchdog: Watchdog enabled (timeout=16 sec, nowayout=0)
22
console: sunxi-mmc 1c0f000.mmc: Linked as a consumer to regulator.2
23
console: sunxi-mmc 1c0f000.mmc: Got CD GPIO
24
console: ledtrig-cpu: registered to indicate activity on CPUs
25
console: hidraw: raw HID events driver (C) Jiri Kosina
26
console: usbcore: registered new interface driver usbhid
27
console: usbhid: USB HID core driver
28
console: Initializing XFRM netlink socket
29
console: sunxi-mmc 1c0f000.mmc: initialized, max. request size: 16384 KB
30
console: NET: Registered protocol family 10
31
console: mmc0: host does not support reading read-only switch, assuming write-enable
32
console: mmc0: Problem switching card into high-speed mode!
33
console: mmc0: new SD card at address 4567
34
console: mmcblk0: mmc0:4567 QEMU! 60.0 MiB
35
[...]
36
console: EXT4-fs (mmcblk0): mounting ext2 file system using the ext4 subsystem
37
console: EXT4-fs (mmcblk0): mounted filesystem without journal. Opts: (null)
38
console: VFS: Mounted root (ext2 filesystem) on device 179:0.
39
console: Run /sbin/init as init process
40
console: EXT4-fs (mmcblk0): re-mounted. Opts: block_validity,barrier,user_xattr,acl
41
console: Starting syslogd: OK
42
console: Starting klogd: OK
43
console: Populating /dev using udev: udevd[203]: starting version 3.2.7
44
console: /bin/sh: can't access tty; job control turned off
45
console: cat /proc/partitions
46
console: / # cat /proc/partitions
47
console: major minor #blocks name
48
console: 1 0 4096 ram0
49
console: 1 1 4096 ram1
50
console: 1 2 4096 ram2
51
console: 1 3 4096 ram3
52
console: 179 0 61440 mmcblk0
53
console: reboot
54
console: / # reboot
55
console: umount: devtmpfs busy - remounted read-only
56
console: EXT4-fs (mmcblk0): re-mounted. Opts: (null)
57
console: The system is going down NOW!
58
console: Sent SIGTERM to all processes
59
console: Sent SIGKILL to all processes
60
console: Requesting system reboot
61
console: reboot: Restarting system
62
JOB TIME : 68.64 s
63
64
Signed-off-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
65
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
66
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
67
Tested-by: Alex Bennée <alex.bennee@linaro.org>
68
Message-id: 20200311221854.30370-16-nieklinnenbank@gmail.com
69
[NL: rename in commit message Raspbian to Armbian, remove vm.set_machine()]
70
[NL: extend test with ethernet device checks]
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
71
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
72
---
8
target/arm/helper-sve.h | 115 +++++++++++++++++++++++
73
tests/acceptance/boot_linux_console.py | 47 ++++++++++++++++++++++++++
9
target/arm/sve_helper.c | 187 +++++++++++++++++++++++++++++++++++++
74
1 file changed, 47 insertions(+)
10
target/arm/translate-sve.c | 91 ++++++++++++++++++
11
target/arm/sve.decode | 24 +++++
12
4 files changed, 417 insertions(+)
13
75
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
76
diff --git a/tests/acceptance/boot_linux_console.py b/tests/acceptance/boot_linux_console.py
15
index XXXXXXX..XXXXXXX 100644
77
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
78
--- a/tests/acceptance/boot_linux_console.py
17
+++ b/target/arm/helper-sve.h
79
+++ b/tests/acceptance/boot_linux_console.py
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_4(sve_rbit_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
80
@@ -XXX,XX +XXX,XX @@ class BootLinuxConsole(Test):
19
81
exec_command_and_wait_for_pattern(self, 'reboot',
20
DEF_HELPER_FLAGS_5(sve_splice, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
82
'reboot: Restarting system')
21
83
22
+DEF_HELPER_FLAGS_5(sve_cmpeq_ppzz_b, TCG_CALL_NO_RWG,
84
+ def test_arm_orangepi_sd(self):
23
+ i32, ptr, ptr, ptr, ptr, i32)
85
+ """
24
+DEF_HELPER_FLAGS_5(sve_cmpne_ppzz_b, TCG_CALL_NO_RWG,
86
+ :avocado: tags=arch:arm
25
+ i32, ptr, ptr, ptr, ptr, i32)
87
+ :avocado: tags=machine:orangepi-pc
26
+DEF_HELPER_FLAGS_5(sve_cmpge_ppzz_b, TCG_CALL_NO_RWG,
88
+ """
27
+ i32, ptr, ptr, ptr, ptr, i32)
89
+ deb_url = ('https://apt.armbian.com/pool/main/l/'
28
+DEF_HELPER_FLAGS_5(sve_cmpgt_ppzz_b, TCG_CALL_NO_RWG,
90
+ 'linux-4.20.7-sunxi/linux-image-dev-sunxi_5.75_armhf.deb')
29
+ i32, ptr, ptr, ptr, ptr, i32)
91
+ deb_hash = '1334c29c44d984ffa05ed10de8c3361f33d78315'
30
+DEF_HELPER_FLAGS_5(sve_cmphi_ppzz_b, TCG_CALL_NO_RWG,
92
+ deb_path = self.fetch_asset(deb_url, asset_hash=deb_hash)
31
+ i32, ptr, ptr, ptr, ptr, i32)
93
+ kernel_path = self.extract_from_deb(deb_path,
32
+DEF_HELPER_FLAGS_5(sve_cmphs_ppzz_b, TCG_CALL_NO_RWG,
94
+ '/boot/vmlinuz-4.20.7-sunxi')
33
+ i32, ptr, ptr, ptr, ptr, i32)
95
+ dtb_path = '/usr/lib/linux-image-dev-sunxi/sun8i-h3-orangepi-pc.dtb'
96
+ dtb_path = self.extract_from_deb(deb_path, dtb_path)
97
+ rootfs_url = ('http://storage.kernelci.org/images/rootfs/buildroot/'
98
+ 'kci-2019.02/armel/base/rootfs.ext2.xz')
99
+ rootfs_hash = '692510cb625efda31640d1de0a8d60e26040f061'
100
+ rootfs_path_xz = self.fetch_asset(rootfs_url, asset_hash=rootfs_hash)
101
+ rootfs_path = os.path.join(self.workdir, 'rootfs.cpio')
102
+ archive.lzma_uncompress(rootfs_path_xz, rootfs_path)
34
+
103
+
35
+DEF_HELPER_FLAGS_5(sve_cmpeq_ppzz_h, TCG_CALL_NO_RWG,
104
+ self.vm.set_console()
36
+ i32, ptr, ptr, ptr, ptr, i32)
105
+ kernel_command_line = (self.KERNEL_COMMON_COMMAND_LINE +
37
+DEF_HELPER_FLAGS_5(sve_cmpne_ppzz_h, TCG_CALL_NO_RWG,
106
+ 'console=ttyS0,115200 '
38
+ i32, ptr, ptr, ptr, ptr, i32)
107
+ 'root=/dev/mmcblk0 rootwait rw '
39
+DEF_HELPER_FLAGS_5(sve_cmpge_ppzz_h, TCG_CALL_NO_RWG,
108
+ 'panic=-1 noreboot')
40
+ i32, ptr, ptr, ptr, ptr, i32)
109
+ self.vm.add_args('-kernel', kernel_path,
41
+DEF_HELPER_FLAGS_5(sve_cmpgt_ppzz_h, TCG_CALL_NO_RWG,
110
+ '-dtb', dtb_path,
42
+ i32, ptr, ptr, ptr, ptr, i32)
111
+ '-drive', 'file=' + rootfs_path + ',if=sd,format=raw',
43
+DEF_HELPER_FLAGS_5(sve_cmphi_ppzz_h, TCG_CALL_NO_RWG,
112
+ '-append', kernel_command_line,
44
+ i32, ptr, ptr, ptr, ptr, i32)
113
+ '-no-reboot')
45
+DEF_HELPER_FLAGS_5(sve_cmphs_ppzz_h, TCG_CALL_NO_RWG,
114
+ self.vm.launch()
46
+ i32, ptr, ptr, ptr, ptr, i32)
115
+ shell_ready = "/bin/sh: can't access tty; job control turned off"
116
+ self.wait_for_console_pattern(shell_ready)
47
+
117
+
48
+DEF_HELPER_FLAGS_5(sve_cmpeq_ppzz_s, TCG_CALL_NO_RWG,
118
+ exec_command_and_wait_for_pattern(self, 'cat /proc/cpuinfo',
49
+ i32, ptr, ptr, ptr, ptr, i32)
119
+ 'Allwinner sun8i Family')
50
+DEF_HELPER_FLAGS_5(sve_cmpne_ppzz_s, TCG_CALL_NO_RWG,
120
+ exec_command_and_wait_for_pattern(self, 'cat /proc/partitions',
51
+ i32, ptr, ptr, ptr, ptr, i32)
121
+ 'mmcblk0')
52
+DEF_HELPER_FLAGS_5(sve_cmpge_ppzz_s, TCG_CALL_NO_RWG,
122
+ exec_command_and_wait_for_pattern(self, 'ifconfig eth0 up',
53
+ i32, ptr, ptr, ptr, ptr, i32)
123
+ 'eth0: Link is Up')
54
+DEF_HELPER_FLAGS_5(sve_cmpgt_ppzz_s, TCG_CALL_NO_RWG,
124
+ exec_command_and_wait_for_pattern(self, 'udhcpc eth0',
55
+ i32, ptr, ptr, ptr, ptr, i32)
125
+ 'udhcpc: lease of 10.0.2.15 obtained')
56
+DEF_HELPER_FLAGS_5(sve_cmphi_ppzz_s, TCG_CALL_NO_RWG,
126
+ exec_command_and_wait_for_pattern(self, 'ping -c 3 10.0.2.2',
57
+ i32, ptr, ptr, ptr, ptr, i32)
127
+ '3 packets transmitted, 3 packets received, 0% packet loss')
58
+DEF_HELPER_FLAGS_5(sve_cmphs_ppzz_s, TCG_CALL_NO_RWG,
128
+ exec_command_and_wait_for_pattern(self, 'reboot',
59
+ i32, ptr, ptr, ptr, ptr, i32)
129
+ 'reboot: Restarting system')
60
+
130
+
61
+DEF_HELPER_FLAGS_5(sve_cmpeq_ppzz_d, TCG_CALL_NO_RWG,
131
def test_s390x_s390_ccw_virtio(self):
62
+ i32, ptr, ptr, ptr, ptr, i32)
132
"""
63
+DEF_HELPER_FLAGS_5(sve_cmpne_ppzz_d, TCG_CALL_NO_RWG,
133
:avocado: tags=arch:s390x
64
+ i32, ptr, ptr, ptr, ptr, i32)
65
+DEF_HELPER_FLAGS_5(sve_cmpge_ppzz_d, TCG_CALL_NO_RWG,
66
+ i32, ptr, ptr, ptr, ptr, i32)
67
+DEF_HELPER_FLAGS_5(sve_cmpgt_ppzz_d, TCG_CALL_NO_RWG,
68
+ i32, ptr, ptr, ptr, ptr, i32)
69
+DEF_HELPER_FLAGS_5(sve_cmphi_ppzz_d, TCG_CALL_NO_RWG,
70
+ i32, ptr, ptr, ptr, ptr, i32)
71
+DEF_HELPER_FLAGS_5(sve_cmphs_ppzz_d, TCG_CALL_NO_RWG,
72
+ i32, ptr, ptr, ptr, ptr, i32)
73
+
74
+DEF_HELPER_FLAGS_5(sve_cmpeq_ppzw_b, TCG_CALL_NO_RWG,
75
+ i32, ptr, ptr, ptr, ptr, i32)
76
+DEF_HELPER_FLAGS_5(sve_cmpne_ppzw_b, TCG_CALL_NO_RWG,
77
+ i32, ptr, ptr, ptr, ptr, i32)
78
+DEF_HELPER_FLAGS_5(sve_cmpge_ppzw_b, TCG_CALL_NO_RWG,
79
+ i32, ptr, ptr, ptr, ptr, i32)
80
+DEF_HELPER_FLAGS_5(sve_cmpgt_ppzw_b, TCG_CALL_NO_RWG,
81
+ i32, ptr, ptr, ptr, ptr, i32)
82
+DEF_HELPER_FLAGS_5(sve_cmphi_ppzw_b, TCG_CALL_NO_RWG,
83
+ i32, ptr, ptr, ptr, ptr, i32)
84
+DEF_HELPER_FLAGS_5(sve_cmphs_ppzw_b, TCG_CALL_NO_RWG,
85
+ i32, ptr, ptr, ptr, ptr, i32)
86
+DEF_HELPER_FLAGS_5(sve_cmple_ppzw_b, TCG_CALL_NO_RWG,
87
+ i32, ptr, ptr, ptr, ptr, i32)
88
+DEF_HELPER_FLAGS_5(sve_cmplt_ppzw_b, TCG_CALL_NO_RWG,
89
+ i32, ptr, ptr, ptr, ptr, i32)
90
+DEF_HELPER_FLAGS_5(sve_cmplo_ppzw_b, TCG_CALL_NO_RWG,
91
+ i32, ptr, ptr, ptr, ptr, i32)
92
+DEF_HELPER_FLAGS_5(sve_cmpls_ppzw_b, TCG_CALL_NO_RWG,
93
+ i32, ptr, ptr, ptr, ptr, i32)
94
+
95
+DEF_HELPER_FLAGS_5(sve_cmpeq_ppzw_h, TCG_CALL_NO_RWG,
96
+ i32, ptr, ptr, ptr, ptr, i32)
97
+DEF_HELPER_FLAGS_5(sve_cmpne_ppzw_h, TCG_CALL_NO_RWG,
98
+ i32, ptr, ptr, ptr, ptr, i32)
99
+DEF_HELPER_FLAGS_5(sve_cmpge_ppzw_h, TCG_CALL_NO_RWG,
100
+ i32, ptr, ptr, ptr, ptr, i32)
101
+DEF_HELPER_FLAGS_5(sve_cmpgt_ppzw_h, TCG_CALL_NO_RWG,
102
+ i32, ptr, ptr, ptr, ptr, i32)
103
+DEF_HELPER_FLAGS_5(sve_cmphi_ppzw_h, TCG_CALL_NO_RWG,
104
+ i32, ptr, ptr, ptr, ptr, i32)
105
+DEF_HELPER_FLAGS_5(sve_cmphs_ppzw_h, TCG_CALL_NO_RWG,
106
+ i32, ptr, ptr, ptr, ptr, i32)
107
+DEF_HELPER_FLAGS_5(sve_cmple_ppzw_h, TCG_CALL_NO_RWG,
108
+ i32, ptr, ptr, ptr, ptr, i32)
109
+DEF_HELPER_FLAGS_5(sve_cmplt_ppzw_h, TCG_CALL_NO_RWG,
110
+ i32, ptr, ptr, ptr, ptr, i32)
111
+DEF_HELPER_FLAGS_5(sve_cmplo_ppzw_h, TCG_CALL_NO_RWG,
112
+ i32, ptr, ptr, ptr, ptr, i32)
113
+DEF_HELPER_FLAGS_5(sve_cmpls_ppzw_h, TCG_CALL_NO_RWG,
114
+ i32, ptr, ptr, ptr, ptr, i32)
115
+
116
+DEF_HELPER_FLAGS_5(sve_cmpeq_ppzw_s, TCG_CALL_NO_RWG,
117
+ i32, ptr, ptr, ptr, ptr, i32)
118
+DEF_HELPER_FLAGS_5(sve_cmpne_ppzw_s, TCG_CALL_NO_RWG,
119
+ i32, ptr, ptr, ptr, ptr, i32)
120
+DEF_HELPER_FLAGS_5(sve_cmpge_ppzw_s, TCG_CALL_NO_RWG,
121
+ i32, ptr, ptr, ptr, ptr, i32)
122
+DEF_HELPER_FLAGS_5(sve_cmpgt_ppzw_s, TCG_CALL_NO_RWG,
123
+ i32, ptr, ptr, ptr, ptr, i32)
124
+DEF_HELPER_FLAGS_5(sve_cmphi_ppzw_s, TCG_CALL_NO_RWG,
125
+ i32, ptr, ptr, ptr, ptr, i32)
126
+DEF_HELPER_FLAGS_5(sve_cmphs_ppzw_s, TCG_CALL_NO_RWG,
127
+ i32, ptr, ptr, ptr, ptr, i32)
128
+DEF_HELPER_FLAGS_5(sve_cmple_ppzw_s, TCG_CALL_NO_RWG,
129
+ i32, ptr, ptr, ptr, ptr, i32)
130
+DEF_HELPER_FLAGS_5(sve_cmplt_ppzw_s, TCG_CALL_NO_RWG,
131
+ i32, ptr, ptr, ptr, ptr, i32)
132
+DEF_HELPER_FLAGS_5(sve_cmplo_ppzw_s, TCG_CALL_NO_RWG,
133
+ i32, ptr, ptr, ptr, ptr, i32)
134
+DEF_HELPER_FLAGS_5(sve_cmpls_ppzw_s, TCG_CALL_NO_RWG,
135
+ i32, ptr, ptr, ptr, ptr, i32)
136
+
137
DEF_HELPER_FLAGS_5(sve_and_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
138
DEF_HELPER_FLAGS_5(sve_bic_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
139
DEF_HELPER_FLAGS_5(sve_eor_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
140
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
141
index XXXXXXX..XXXXXXX 100644
142
--- a/target/arm/sve_helper.c
143
+++ b/target/arm/sve_helper.c
144
@@ -XXX,XX +XXX,XX @@ static uint32_t iter_predtest_fwd(uint64_t d, uint64_t g, uint32_t flags)
145
return flags;
146
}
147
148
+/* This is an iterative function, called for each Pd and Pg word
149
+ * moving backward.
150
+ */
151
+static uint32_t iter_predtest_bwd(uint64_t d, uint64_t g, uint32_t flags)
152
+{
153
+ if (likely(g)) {
154
+ /* Compute C from first (i.e last) !(D & G).
155
+ Use bit 2 to signal first G bit seen. */
156
+ if (!(flags & 4)) {
157
+ flags += 4 - 1; /* add bit 2, subtract C from PREDTEST_INIT */
158
+ flags |= (d & pow2floor(g)) == 0;
159
+ }
160
+
161
+ /* Accumulate Z from each D & G. */
162
+ flags |= ((d & g) != 0) << 1;
163
+
164
+ /* Compute N from last (i.e first) D & G. Replace previous. */
165
+ flags = deposit32(flags, 31, 1, (d & (g & -g)) != 0);
166
+ }
167
+ return flags;
168
+}
169
+
170
/* The same for a single word predicate. */
171
uint32_t HELPER(sve_predtest1)(uint64_t d, uint64_t g)
172
{
173
@@ -XXX,XX +XXX,XX @@ void HELPER(sve_sel_zpzz_d)(void *vd, void *vn, void *vm,
174
d[i] = (pg[H1(i)] & 1 ? nn : mm);
175
}
176
}
177
+
178
+/* Two operand comparison controlled by a predicate.
179
+ * ??? It is very tempting to want to be able to expand this inline
180
+ * with x86 instructions, e.g.
181
+ *
182
+ * vcmpeqw zm, zn, %ymm0
183
+ * vpmovmskb %ymm0, %eax
184
+ * and $0x5555, %eax
185
+ * and pg, %eax
186
+ *
187
+ * or even aarch64, e.g.
188
+ *
189
+ * // mask = 4000 1000 0400 0100 0040 0010 0004 0001
190
+ * cmeq v0.8h, zn, zm
191
+ * and v0.8h, v0.8h, mask
192
+ * addv h0, v0.8h
193
+ * and v0.8b, pg
194
+ *
195
+ * However, coming up with an abstraction that allows vector inputs and
196
+ * a scalar output, and also handles the byte-ordering of sub-uint64_t
197
+ * scalar outputs, is tricky.
198
+ */
199
+#define DO_CMP_PPZZ(NAME, TYPE, OP, H, MASK) \
200
+uint32_t HELPER(NAME)(void *vd, void *vn, void *vm, void *vg, uint32_t desc) \
201
+{ \
202
+ intptr_t opr_sz = simd_oprsz(desc); \
203
+ uint32_t flags = PREDTEST_INIT; \
204
+ intptr_t i = opr_sz; \
205
+ do { \
206
+ uint64_t out = 0, pg; \
207
+ do { \
208
+ i -= sizeof(TYPE), out <<= sizeof(TYPE); \
209
+ TYPE nn = *(TYPE *)(vn + H(i)); \
210
+ TYPE mm = *(TYPE *)(vm + H(i)); \
211
+ out |= nn OP mm; \
212
+ } while (i & 63); \
213
+ pg = *(uint64_t *)(vg + (i >> 3)) & MASK; \
214
+ out &= pg; \
215
+ *(uint64_t *)(vd + (i >> 3)) = out; \
216
+ flags = iter_predtest_bwd(out, pg, flags); \
217
+ } while (i > 0); \
218
+ return flags; \
219
+}
220
+
221
+#define DO_CMP_PPZZ_B(NAME, TYPE, OP) \
222
+ DO_CMP_PPZZ(NAME, TYPE, OP, H1, 0xffffffffffffffffull)
223
+#define DO_CMP_PPZZ_H(NAME, TYPE, OP) \
224
+ DO_CMP_PPZZ(NAME, TYPE, OP, H1_2, 0x5555555555555555ull)
225
+#define DO_CMP_PPZZ_S(NAME, TYPE, OP) \
226
+ DO_CMP_PPZZ(NAME, TYPE, OP, H1_4, 0x1111111111111111ull)
227
+#define DO_CMP_PPZZ_D(NAME, TYPE, OP) \
228
+ DO_CMP_PPZZ(NAME, TYPE, OP, , 0x0101010101010101ull)
229
+
230
+DO_CMP_PPZZ_B(sve_cmpeq_ppzz_b, uint8_t, ==)
231
+DO_CMP_PPZZ_H(sve_cmpeq_ppzz_h, uint16_t, ==)
232
+DO_CMP_PPZZ_S(sve_cmpeq_ppzz_s, uint32_t, ==)
233
+DO_CMP_PPZZ_D(sve_cmpeq_ppzz_d, uint64_t, ==)
234
+
235
+DO_CMP_PPZZ_B(sve_cmpne_ppzz_b, uint8_t, !=)
236
+DO_CMP_PPZZ_H(sve_cmpne_ppzz_h, uint16_t, !=)
237
+DO_CMP_PPZZ_S(sve_cmpne_ppzz_s, uint32_t, !=)
238
+DO_CMP_PPZZ_D(sve_cmpne_ppzz_d, uint64_t, !=)
239
+
240
+DO_CMP_PPZZ_B(sve_cmpgt_ppzz_b, int8_t, >)
241
+DO_CMP_PPZZ_H(sve_cmpgt_ppzz_h, int16_t, >)
242
+DO_CMP_PPZZ_S(sve_cmpgt_ppzz_s, int32_t, >)
243
+DO_CMP_PPZZ_D(sve_cmpgt_ppzz_d, int64_t, >)
244
+
245
+DO_CMP_PPZZ_B(sve_cmpge_ppzz_b, int8_t, >=)
246
+DO_CMP_PPZZ_H(sve_cmpge_ppzz_h, int16_t, >=)
247
+DO_CMP_PPZZ_S(sve_cmpge_ppzz_s, int32_t, >=)
248
+DO_CMP_PPZZ_D(sve_cmpge_ppzz_d, int64_t, >=)
249
+
250
+DO_CMP_PPZZ_B(sve_cmphi_ppzz_b, uint8_t, >)
251
+DO_CMP_PPZZ_H(sve_cmphi_ppzz_h, uint16_t, >)
252
+DO_CMP_PPZZ_S(sve_cmphi_ppzz_s, uint32_t, >)
253
+DO_CMP_PPZZ_D(sve_cmphi_ppzz_d, uint64_t, >)
254
+
255
+DO_CMP_PPZZ_B(sve_cmphs_ppzz_b, uint8_t, >=)
256
+DO_CMP_PPZZ_H(sve_cmphs_ppzz_h, uint16_t, >=)
257
+DO_CMP_PPZZ_S(sve_cmphs_ppzz_s, uint32_t, >=)
258
+DO_CMP_PPZZ_D(sve_cmphs_ppzz_d, uint64_t, >=)
259
+
260
+#undef DO_CMP_PPZZ_B
261
+#undef DO_CMP_PPZZ_H
262
+#undef DO_CMP_PPZZ_S
263
+#undef DO_CMP_PPZZ_D
264
+#undef DO_CMP_PPZZ
265
+
266
+/* Similar, but the second source is "wide". */
267
+#define DO_CMP_PPZW(NAME, TYPE, TYPEW, OP, H, MASK) \
268
+uint32_t HELPER(NAME)(void *vd, void *vn, void *vm, void *vg, uint32_t desc) \
269
+{ \
270
+ intptr_t opr_sz = simd_oprsz(desc); \
271
+ uint32_t flags = PREDTEST_INIT; \
272
+ intptr_t i = opr_sz; \
273
+ do { \
274
+ uint64_t out = 0, pg; \
275
+ do { \
276
+ TYPEW mm = *(TYPEW *)(vm + i - 8); \
277
+ do { \
278
+ i -= sizeof(TYPE), out <<= sizeof(TYPE); \
279
+ TYPE nn = *(TYPE *)(vn + H(i)); \
280
+ out |= nn OP mm; \
281
+ } while (i & 7); \
282
+ } while (i & 63); \
283
+ pg = *(uint64_t *)(vg + (i >> 3)) & MASK; \
284
+ out &= pg; \
285
+ *(uint64_t *)(vd + (i >> 3)) = out; \
286
+ flags = iter_predtest_bwd(out, pg, flags); \
287
+ } while (i > 0); \
288
+ return flags; \
289
+}
290
+
291
+#define DO_CMP_PPZW_B(NAME, TYPE, TYPEW, OP) \
292
+ DO_CMP_PPZW(NAME, TYPE, TYPEW, OP, H1, 0xffffffffffffffffull)
293
+#define DO_CMP_PPZW_H(NAME, TYPE, TYPEW, OP) \
294
+ DO_CMP_PPZW(NAME, TYPE, TYPEW, OP, H1_2, 0x5555555555555555ull)
295
+#define DO_CMP_PPZW_S(NAME, TYPE, TYPEW, OP) \
296
+ DO_CMP_PPZW(NAME, TYPE, TYPEW, OP, H1_4, 0x1111111111111111ull)
297
+
298
+DO_CMP_PPZW_B(sve_cmpeq_ppzw_b, uint8_t, uint64_t, ==)
299
+DO_CMP_PPZW_H(sve_cmpeq_ppzw_h, uint16_t, uint64_t, ==)
300
+DO_CMP_PPZW_S(sve_cmpeq_ppzw_s, uint32_t, uint64_t, ==)
301
+
302
+DO_CMP_PPZW_B(sve_cmpne_ppzw_b, uint8_t, uint64_t, !=)
303
+DO_CMP_PPZW_H(sve_cmpne_ppzw_h, uint16_t, uint64_t, !=)
304
+DO_CMP_PPZW_S(sve_cmpne_ppzw_s, uint32_t, uint64_t, !=)
305
+
306
+DO_CMP_PPZW_B(sve_cmpgt_ppzw_b, int8_t, int64_t, >)
307
+DO_CMP_PPZW_H(sve_cmpgt_ppzw_h, int16_t, int64_t, >)
308
+DO_CMP_PPZW_S(sve_cmpgt_ppzw_s, int32_t, int64_t, >)
309
+
310
+DO_CMP_PPZW_B(sve_cmpge_ppzw_b, int8_t, int64_t, >=)
311
+DO_CMP_PPZW_H(sve_cmpge_ppzw_h, int16_t, int64_t, >=)
312
+DO_CMP_PPZW_S(sve_cmpge_ppzw_s, int32_t, int64_t, >=)
313
+
314
+DO_CMP_PPZW_B(sve_cmphi_ppzw_b, uint8_t, uint64_t, >)
315
+DO_CMP_PPZW_H(sve_cmphi_ppzw_h, uint16_t, uint64_t, >)
316
+DO_CMP_PPZW_S(sve_cmphi_ppzw_s, uint32_t, uint64_t, >)
317
+
318
+DO_CMP_PPZW_B(sve_cmphs_ppzw_b, uint8_t, uint64_t, >=)
319
+DO_CMP_PPZW_H(sve_cmphs_ppzw_h, uint16_t, uint64_t, >=)
320
+DO_CMP_PPZW_S(sve_cmphs_ppzw_s, uint32_t, uint64_t, >=)
321
+
322
+DO_CMP_PPZW_B(sve_cmplt_ppzw_b, int8_t, int64_t, <)
323
+DO_CMP_PPZW_H(sve_cmplt_ppzw_h, int16_t, int64_t, <)
324
+DO_CMP_PPZW_S(sve_cmplt_ppzw_s, int32_t, int64_t, <)
325
+
326
+DO_CMP_PPZW_B(sve_cmple_ppzw_b, int8_t, int64_t, <=)
327
+DO_CMP_PPZW_H(sve_cmple_ppzw_h, int16_t, int64_t, <=)
328
+DO_CMP_PPZW_S(sve_cmple_ppzw_s, int32_t, int64_t, <=)
329
+
330
+DO_CMP_PPZW_B(sve_cmplo_ppzw_b, uint8_t, uint64_t, <)
331
+DO_CMP_PPZW_H(sve_cmplo_ppzw_h, uint16_t, uint64_t, <)
332
+DO_CMP_PPZW_S(sve_cmplo_ppzw_s, uint32_t, uint64_t, <)
333
+
334
+DO_CMP_PPZW_B(sve_cmpls_ppzw_b, uint8_t, uint64_t, <=)
335
+DO_CMP_PPZW_H(sve_cmpls_ppzw_h, uint16_t, uint64_t, <=)
336
+DO_CMP_PPZW_S(sve_cmpls_ppzw_s, uint32_t, uint64_t, <=)
337
+
338
+#undef DO_CMP_PPZW_B
339
+#undef DO_CMP_PPZW_H
340
+#undef DO_CMP_PPZW_S
341
+#undef DO_CMP_PPZW
342
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
343
index XXXXXXX..XXXXXXX 100644
344
--- a/target/arm/translate-sve.c
345
+++ b/target/arm/translate-sve.c
346
@@ -XXX,XX +XXX,XX @@
347
#include "trace-tcg.h"
348
#include "translate-a64.h"
349
350
+
351
+typedef void gen_helper_gvec_flags_4(TCGv_i32, TCGv_ptr, TCGv_ptr,
352
+ TCGv_ptr, TCGv_ptr, TCGv_i32);
353
+
354
/*
355
* Helpers for extracting complex instruction fields.
356
*/
357
@@ -XXX,XX +XXX,XX @@ static bool trans_SPLICE(DisasContext *s, arg_rprr_esz *a, uint32_t insn)
358
return true;
359
}
360
361
+/*
362
+ *** SVE Integer Compare - Vectors Group
363
+ */
364
+
365
+static bool do_ppzz_flags(DisasContext *s, arg_rprr_esz *a,
366
+ gen_helper_gvec_flags_4 *gen_fn)
367
+{
368
+ TCGv_ptr pd, zn, zm, pg;
369
+ unsigned vsz;
370
+ TCGv_i32 t;
371
+
372
+ if (gen_fn == NULL) {
373
+ return false;
374
+ }
375
+ if (!sve_access_check(s)) {
376
+ return true;
377
+ }
378
+
379
+ vsz = vec_full_reg_size(s);
380
+ t = tcg_const_i32(simd_desc(vsz, vsz, 0));
381
+ pd = tcg_temp_new_ptr();
382
+ zn = tcg_temp_new_ptr();
383
+ zm = tcg_temp_new_ptr();
384
+ pg = tcg_temp_new_ptr();
385
+
386
+ tcg_gen_addi_ptr(pd, cpu_env, pred_full_reg_offset(s, a->rd));
387
+ tcg_gen_addi_ptr(zn, cpu_env, vec_full_reg_offset(s, a->rn));
388
+ tcg_gen_addi_ptr(zm, cpu_env, vec_full_reg_offset(s, a->rm));
389
+ tcg_gen_addi_ptr(pg, cpu_env, pred_full_reg_offset(s, a->pg));
390
+
391
+ gen_fn(t, pd, zn, zm, pg, t);
392
+
393
+ tcg_temp_free_ptr(pd);
394
+ tcg_temp_free_ptr(zn);
395
+ tcg_temp_free_ptr(zm);
396
+ tcg_temp_free_ptr(pg);
397
+
398
+ do_pred_flags(t);
399
+
400
+ tcg_temp_free_i32(t);
401
+ return true;
402
+}
403
+
404
+#define DO_PPZZ(NAME, name) \
405
+static bool trans_##NAME##_ppzz(DisasContext *s, arg_rprr_esz *a, \
406
+ uint32_t insn) \
407
+{ \
408
+ static gen_helper_gvec_flags_4 * const fns[4] = { \
409
+ gen_helper_sve_##name##_ppzz_b, gen_helper_sve_##name##_ppzz_h, \
410
+ gen_helper_sve_##name##_ppzz_s, gen_helper_sve_##name##_ppzz_d, \
411
+ }; \
412
+ return do_ppzz_flags(s, a, fns[a->esz]); \
413
+}
414
+
415
+DO_PPZZ(CMPEQ, cmpeq)
416
+DO_PPZZ(CMPNE, cmpne)
417
+DO_PPZZ(CMPGT, cmpgt)
418
+DO_PPZZ(CMPGE, cmpge)
419
+DO_PPZZ(CMPHI, cmphi)
420
+DO_PPZZ(CMPHS, cmphs)
421
+
422
+#undef DO_PPZZ
423
+
424
+#define DO_PPZW(NAME, name) \
425
+static bool trans_##NAME##_ppzw(DisasContext *s, arg_rprr_esz *a, \
426
+ uint32_t insn) \
427
+{ \
428
+ static gen_helper_gvec_flags_4 * const fns[4] = { \
429
+ gen_helper_sve_##name##_ppzw_b, gen_helper_sve_##name##_ppzw_h, \
430
+ gen_helper_sve_##name##_ppzw_s, NULL \
431
+ }; \
432
+ return do_ppzz_flags(s, a, fns[a->esz]); \
433
+}
434
+
435
+DO_PPZW(CMPEQ, cmpeq)
436
+DO_PPZW(CMPNE, cmpne)
437
+DO_PPZW(CMPGT, cmpgt)
438
+DO_PPZW(CMPGE, cmpge)
439
+DO_PPZW(CMPHI, cmphi)
440
+DO_PPZW(CMPHS, cmphs)
441
+DO_PPZW(CMPLT, cmplt)
442
+DO_PPZW(CMPLE, cmple)
443
+DO_PPZW(CMPLO, cmplo)
444
+DO_PPZW(CMPLS, cmpls)
445
+
446
+#undef DO_PPZW
447
+
448
/*
449
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
450
*/
451
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
452
index XXXXXXX..XXXXXXX 100644
453
--- a/target/arm/sve.decode
454
+++ b/target/arm/sve.decode
455
@@ -XXX,XX +XXX,XX @@
456
@rdm_pg_rn ........ esz:2 ... ... ... pg:3 rn:5 rd:5 \
457
&rprr_esz rm=%reg_movprfx
458
@rd_pg4_rn_rm ........ esz:2 . rm:5 .. pg:4 rn:5 rd:5 &rprr_esz
459
+@pd_pg_rn_rm ........ esz:2 . rm:5 ... pg:3 rn:5 . rd:4 &rprr_esz
460
461
# Three register operand, with governing predicate, vector element size
462
@rda_pg_rn_rm ........ esz:2 . rm:5 ... pg:3 rn:5 rd:5 \
463
@@ -XXX,XX +XXX,XX @@ SPLICE 00000101 .. 101 100 100 ... ..... ..... @rdn_pg_rm
464
# SVE select vector elements (predicated)
465
SEL_zpzz 00000101 .. 1 ..... 11 .... ..... ..... @rd_pg4_rn_rm
466
467
+### SVE Integer Compare - Vectors Group
468
+
469
+# SVE integer compare_vectors
470
+CMPHS_ppzz 00100100 .. 0 ..... 000 ... ..... 0 .... @pd_pg_rn_rm
471
+CMPHI_ppzz 00100100 .. 0 ..... 000 ... ..... 1 .... @pd_pg_rn_rm
472
+CMPGE_ppzz 00100100 .. 0 ..... 100 ... ..... 0 .... @pd_pg_rn_rm
473
+CMPGT_ppzz 00100100 .. 0 ..... 100 ... ..... 1 .... @pd_pg_rn_rm
474
+CMPEQ_ppzz 00100100 .. 0 ..... 101 ... ..... 0 .... @pd_pg_rn_rm
475
+CMPNE_ppzz 00100100 .. 0 ..... 101 ... ..... 1 .... @pd_pg_rn_rm
476
+
477
+# SVE integer compare with wide elements
478
+# Note these require esz != 3.
479
+CMPEQ_ppzw 00100100 .. 0 ..... 001 ... ..... 0 .... @pd_pg_rn_rm
480
+CMPNE_ppzw 00100100 .. 0 ..... 001 ... ..... 1 .... @pd_pg_rn_rm
481
+CMPGE_ppzw 00100100 .. 0 ..... 010 ... ..... 0 .... @pd_pg_rn_rm
482
+CMPGT_ppzw 00100100 .. 0 ..... 010 ... ..... 1 .... @pd_pg_rn_rm
483
+CMPLT_ppzw 00100100 .. 0 ..... 011 ... ..... 0 .... @pd_pg_rn_rm
484
+CMPLE_ppzw 00100100 .. 0 ..... 011 ... ..... 1 .... @pd_pg_rn_rm
485
+CMPHS_ppzw 00100100 .. 0 ..... 110 ... ..... 0 .... @pd_pg_rn_rm
486
+CMPHI_ppzw 00100100 .. 0 ..... 110 ... ..... 1 .... @pd_pg_rn_rm
487
+CMPLO_ppzw 00100100 .. 0 ..... 111 ... ..... 0 .... @pd_pg_rn_rm
488
+CMPLS_ppzw 00100100 .. 0 ..... 111 ... ..... 1 .... @pd_pg_rn_rm
489
+
490
### SVE Predicate Logical Operations Group
491
492
# SVE predicate logical operations
493
--
134
--
494
2.17.1
135
2.20.1
495
136
496
137
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Philippe Mathieu-Daudé <f4bug@amsat.org>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
This test boots Ubuntu Bionic on a OrangePi PC board.
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
5
Message-id: 20180613015641.5667-11-richard.henderson@linaro.org
5
As it requires 1GB of storage, and is slow, this test is disabled
6
on automatic CI testing.
7
8
It is useful for workstation testing. Currently Avocado timeouts too
9
quickly, so we can't run userland commands.
10
11
The kernel image and DeviceTree blob are built by the Armbian
12
project (based on Debian):
13
https://www.armbian.com/orange-pi-pc/
14
15
The Ubuntu image is downloaded from:
16
https://dl.armbian.com/orangepipc/Bionic_current
17
18
This test can be run using:
19
20
$ AVOCADO_ALLOW_LARGE_STORAGE=yes \
21
avocado --show=app,console run -t machine:orangepi-pc \
22
tests/acceptance/boot_linux_console.py
23
console: U-Boot SPL 2019.04-armbian (Nov 18 2019 - 23:08:35 +0100)
24
console: DRAM: 1024 MiB
25
console: Failed to set core voltage! Can't set CPU frequency
26
console: Trying to boot from MMC1
27
console: U-Boot 2019.04-armbian (Nov 18 2019 - 23:08:35 +0100) Allwinner Technology
28
console: CPU: Allwinner H3 (SUN8I 0000)
29
console: Model: Xunlong Orange Pi PC
30
console: DRAM: 1 GiB
31
console: MMC: mmc@1c0f000: 0
32
[...]
33
console: Uncompressing Linux... done, booting the kernel.
34
console: Booting Linux on physical CPU 0x0
35
console: Linux version 5.3.9-sunxi (root@builder) (gcc version 8.3.0 (GNU Toolchain for the A-profile Architecture 8.3-2019.03 (arm-rel-8.36))) #19.11.3 SMP Mon Nov 18 18:49:43 CET 2019
36
console: CPU: ARMv7 Processor [410fc075] revision 5 (ARMv7), cr=50c5387d
37
console: CPU: div instructions available: patching division code
38
console: CPU: PIPT / VIPT nonaliasing data cache, VIPT aliasing instruction cache
39
console: OF: fdt: Machine model: Xunlong Orange Pi PC
40
[...]
41
console: EXT4-fs (mmcblk0p1): mounted filesystem with writeback data mode. Opts: (null)
42
console: done.
43
console: Begin: Running /scripts/local-bottom ... done.
44
console: Begin: Running /scripts/init-bottom ... done.
45
console: systemd[1]: systemd 237 running in system mode. (...)
46
console: systemd[1]: Detected architecture arm.
47
console: Welcome to Ubuntu 18.04.3 LTS!
48
console: systemd[1]: Set hostname to <orangepipc>.
49
50
Signed-off-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
51
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
52
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
53
Tested-by: Alex Bennée <alex.bennee@linaro.org>
54
Message-id: 20200311221854.30370-17-nieklinnenbank@gmail.com
55
[NL: rename in commit message Raspbian to Armbian, remove vm.set_machine()]
56
[NL: changed test to boot from SD card via BootROM, added check for 7z]
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
57
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
58
---
8
target/arm/helper-sve.h | 9 +++++++
59
tests/acceptance/boot_linux_console.py | 48 ++++++++++++++++++++++++++
9
target/arm/sve_helper.c | 55 ++++++++++++++++++++++++++++++++++++++
60
1 file changed, 48 insertions(+)
10
target/arm/translate-sve.c | 2 ++
11
target/arm/sve.decode | 6 +++++
12
4 files changed, 72 insertions(+)
13
61
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
62
diff --git a/tests/acceptance/boot_linux_console.py b/tests/acceptance/boot_linux_console.py
15
index XXXXXXX..XXXXXXX 100644
63
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
64
--- a/tests/acceptance/boot_linux_console.py
17
+++ b/target/arm/helper-sve.h
65
+++ b/tests/acceptance/boot_linux_console.py
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_5(sve_lsl_zpzz_s, TCG_CALL_NO_RWG,
66
@@ -XXX,XX +XXX,XX @@ from avocado_qemu import exec_command_and_wait_for_pattern
19
DEF_HELPER_FLAGS_5(sve_lsl_zpzz_d, TCG_CALL_NO_RWG,
67
from avocado_qemu import wait_for_console_pattern
20
void, ptr, ptr, ptr, ptr, i32)
68
from avocado.utils import process
21
69
from avocado.utils import archive
22
+DEF_HELPER_FLAGS_5(sve_sel_zpzz_b, TCG_CALL_NO_RWG,
70
+from avocado.utils.path import find_command, CmdNotFoundError
23
+ void, ptr, ptr, ptr, ptr, i32)
71
24
+DEF_HELPER_FLAGS_5(sve_sel_zpzz_h, TCG_CALL_NO_RWG,
72
+P7ZIP_AVAILABLE = True
25
+ void, ptr, ptr, ptr, ptr, i32)
73
+try:
26
+DEF_HELPER_FLAGS_5(sve_sel_zpzz_s, TCG_CALL_NO_RWG,
74
+ find_command('7z')
27
+ void, ptr, ptr, ptr, ptr, i32)
75
+except CmdNotFoundError:
28
+DEF_HELPER_FLAGS_5(sve_sel_zpzz_d, TCG_CALL_NO_RWG,
76
+ P7ZIP_AVAILABLE = False
29
+ void, ptr, ptr, ptr, ptr, i32)
77
78
class BootLinuxConsole(Test):
79
"""
80
@@ -XXX,XX +XXX,XX @@ class BootLinuxConsole(Test):
81
exec_command_and_wait_for_pattern(self, 'reboot',
82
'reboot: Restarting system')
83
84
+ @skipUnless(os.getenv('AVOCADO_ALLOW_LARGE_STORAGE'), 'storage limited')
85
+ @skipUnless(P7ZIP_AVAILABLE, '7z not installed')
86
+ def test_arm_orangepi_bionic(self):
87
+ """
88
+ :avocado: tags=arch:arm
89
+ :avocado: tags=machine:orangepi-pc
90
+ """
30
+
91
+
31
DEF_HELPER_FLAGS_5(sve_asr_zpzw_b, TCG_CALL_NO_RWG,
92
+ # This test download a 196MB compressed image and expand it to 932MB...
32
void, ptr, ptr, ptr, ptr, i32)
93
+ image_url = ('https://dl.armbian.com/orangepipc/archive/'
33
DEF_HELPER_FLAGS_5(sve_asr_zpzw_h, TCG_CALL_NO_RWG,
94
+ 'Armbian_19.11.3_Orangepipc_bionic_current_5.3.9.7z')
34
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
95
+ image_hash = '196a8ffb72b0123d92cea4a070894813d305c71e'
35
index XXXXXXX..XXXXXXX 100644
96
+ image_path_7z = self.fetch_asset(image_url, asset_hash=image_hash)
36
--- a/target/arm/sve_helper.c
97
+ image_name = 'Armbian_19.11.3_Orangepipc_bionic_current_5.3.9.img'
37
+++ b/target/arm/sve_helper.c
98
+ image_path = os.path.join(self.workdir, image_name)
38
@@ -XXX,XX +XXX,XX @@ void HELPER(sve_splice)(void *vd, void *vn, void *vm, void *vg, uint32_t desc)
99
+ process.run("7z e -o%s %s" % (self.workdir, image_path_7z))
39
}
40
swap_memmove(vd + len, vm, opr_sz * 8 - len);
41
}
42
+
100
+
43
+void HELPER(sve_sel_zpzz_b)(void *vd, void *vn, void *vm,
101
+ self.vm.set_console()
44
+ void *vg, uint32_t desc)
102
+ self.vm.add_args('-drive', 'file=' + image_path + ',if=sd,format=raw',
45
+{
103
+ '-nic', 'user',
46
+ intptr_t i, opr_sz = simd_oprsz(desc) / 8;
104
+ '-no-reboot')
47
+ uint64_t *d = vd, *n = vn, *m = vm;
105
+ self.vm.launch()
48
+ uint8_t *pg = vg;
49
+
106
+
50
+ for (i = 0; i < opr_sz; i += 1) {
107
+ kernel_command_line = (self.KERNEL_COMMON_COMMAND_LINE +
51
+ uint64_t nn = n[i], mm = m[i];
108
+ 'console=ttyS0,115200 '
52
+ uint64_t pp = expand_pred_b(pg[H1(i)]);
109
+ 'loglevel=7 '
53
+ d[i] = (nn & pp) | (mm & ~pp);
110
+ 'nosmp '
54
+ }
111
+ 'systemd.default_timeout_start_sec=9000 '
55
+}
112
+ 'systemd.mask=armbian-zram-config.service '
113
+ 'systemd.mask=armbian-ramlog.service')
56
+
114
+
57
+void HELPER(sve_sel_zpzz_h)(void *vd, void *vn, void *vm,
115
+ self.wait_for_console_pattern('U-Boot SPL')
58
+ void *vg, uint32_t desc)
116
+ self.wait_for_console_pattern('Autoboot in ')
59
+{
117
+ exec_command_and_wait_for_pattern(self, ' ', '=>')
60
+ intptr_t i, opr_sz = simd_oprsz(desc) / 8;
118
+ exec_command_and_wait_for_pattern(self, "setenv extraargs '" +
61
+ uint64_t *d = vd, *n = vn, *m = vm;
119
+ kernel_command_line + "'", '=>')
62
+ uint8_t *pg = vg;
120
+ exec_command_and_wait_for_pattern(self, 'boot', 'Starting kernel ...');
63
+
121
+
64
+ for (i = 0; i < opr_sz; i += 1) {
122
+ self.wait_for_console_pattern('systemd[1]: Set hostname ' +
65
+ uint64_t nn = n[i], mm = m[i];
123
+ 'to <orangepipc>')
66
+ uint64_t pp = expand_pred_h(pg[H1(i)]);
124
+ self.wait_for_console_pattern('Starting Load Kernel Modules...')
67
+ d[i] = (nn & pp) | (mm & ~pp);
68
+ }
69
+}
70
+
125
+
71
+void HELPER(sve_sel_zpzz_s)(void *vd, void *vn, void *vm,
126
def test_s390x_s390_ccw_virtio(self):
72
+ void *vg, uint32_t desc)
127
"""
73
+{
128
:avocado: tags=arch:s390x
74
+ intptr_t i, opr_sz = simd_oprsz(desc) / 8;
75
+ uint64_t *d = vd, *n = vn, *m = vm;
76
+ uint8_t *pg = vg;
77
+
78
+ for (i = 0; i < opr_sz; i += 1) {
79
+ uint64_t nn = n[i], mm = m[i];
80
+ uint64_t pp = expand_pred_s(pg[H1(i)]);
81
+ d[i] = (nn & pp) | (mm & ~pp);
82
+ }
83
+}
84
+
85
+void HELPER(sve_sel_zpzz_d)(void *vd, void *vn, void *vm,
86
+ void *vg, uint32_t desc)
87
+{
88
+ intptr_t i, opr_sz = simd_oprsz(desc) / 8;
89
+ uint64_t *d = vd, *n = vn, *m = vm;
90
+ uint8_t *pg = vg;
91
+
92
+ for (i = 0; i < opr_sz; i += 1) {
93
+ uint64_t nn = n[i], mm = m[i];
94
+ d[i] = (pg[H1(i)] & 1 ? nn : mm);
95
+ }
96
+}
97
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
98
index XXXXXXX..XXXXXXX 100644
99
--- a/target/arm/translate-sve.c
100
+++ b/target/arm/translate-sve.c
101
@@ -XXX,XX +XXX,XX @@ static bool trans_UDIV_zpzz(DisasContext *s, arg_rprr_esz *a, uint32_t insn)
102
return do_zpzz_ool(s, a, fns[a->esz]);
103
}
104
105
+DO_ZPZZ(SEL, sel)
106
+
107
#undef DO_ZPZZ
108
109
/*
110
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
111
index XXXXXXX..XXXXXXX 100644
112
--- a/target/arm/sve.decode
113
+++ b/target/arm/sve.decode
114
@@ -XXX,XX +XXX,XX @@
115
&rprr_esz rn=%reg_movprfx
116
@rdm_pg_rn ........ esz:2 ... ... ... pg:3 rn:5 rd:5 \
117
&rprr_esz rm=%reg_movprfx
118
+@rd_pg4_rn_rm ........ esz:2 . rm:5 .. pg:4 rn:5 rd:5 &rprr_esz
119
120
# Three register operand, with governing predicate, vector element size
121
@rda_pg_rn_rm ........ esz:2 . rm:5 ... pg:3 rn:5 rd:5 \
122
@@ -XXX,XX +XXX,XX @@ RBIT 00000101 .. 1001 11 100 ... ..... ..... @rd_pg_rn
123
# SVE vector splice (predicated)
124
SPLICE 00000101 .. 101 100 100 ... ..... ..... @rdn_pg_rm
125
126
+### SVE Select Vectors Group
127
+
128
+# SVE select vector elements (predicated)
129
+SEL_zpzz 00000101 .. 1 ..... 11 .... ..... ..... @rd_pg4_rn_rm
130
+
131
### SVE Predicate Logical Operations Group
132
133
# SVE predicate logical operations
134
--
129
--
135
2.17.1
130
2.20.1
136
131
137
132
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Philippe Mathieu-Daudé <f4bug@amsat.org>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
This test boots U-Boot then NetBSD (stored on a SD card) on
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
a OrangePi PC board.
5
Message-id: 20180613015641.5667-10-richard.henderson@linaro.org
5
6
As it requires ~1.3GB of storage, it is disabled by default.
7
8
U-Boot is built by the Debian project [1], and the SD card image
9
is provided by the NetBSD organization [2].
10
11
Once the compressed SD card image is downloaded (304MB) and
12
extracted, this test is fast:
13
14
$ AVOCADO_ALLOW_LARGE_STORAGE=yes \
15
avocado --show=app,console run -t machine:orangepi-pc \
16
tests/acceptance/boot_linux_console.py
17
console: U-Boot SPL 2020.01+dfsg-1 (Jan 08 2020 - 08:19:44 +0000)
18
console: DRAM: 1024 MiB
19
console: U-Boot 2020.01+dfsg-1 (Jan 08 2020 - 08:19:44 +0000) Allwinner Technology
20
console: CPU: Allwinner H3 (SUN8I 0000)
21
console: scanning bus usb@1c1b000 for devices... 1 USB Device(s) found
22
console: scanning bus usb@1c1d000 for devices... 1 USB Device(s) found
23
console: scanning usb for storage devices... 0 Storage Device(s) found
24
console: Hit any key to stop autoboot: 0
25
console: => setenv bootargs root=ld0a
26
console: => setenv kernel netbsd-GENERIC.ub
27
console: => setenv fdtfile dtb/sun8i-h3-orangepi-pc.dtb
28
console: => boot
29
console: ## Booting kernel from Legacy Image at 42000000 ...
30
console: Image Name: NetBSD/earmv7hf 9.0_RC1
31
console: Image Type: ARM Linux Kernel Image (no loading done) (uncompressed)
32
console: XIP Kernel Image (no loading done)
33
console: Loading Device Tree to 49ff6000, end 49fffe01 ... OK
34
console: Starting kernel ...
35
console: [ 1.0000000] NetBSD/evbarm (fdt) booting ...
36
console: [ 1.0000000] NetBSD 9.0 (GENERIC) #0: Fri Feb 14 00:06:28 UTC 2020
37
console: [ 1.0000000] mkrepro@mkrepro.NetBSD.org:/usr/src/sys/arch/evbarm/compile/GENERIC
38
console: [ 1.0000000] total memory = 1024 MB
39
console: [ 1.0000000] avail memory = 1003 MB
40
console: [ 1.0000000] armfdt0 (root)
41
console: [ 1.0000000] simplebus0 at armfdt0: Xunlong Orange Pi PC
42
console: [ 1.0000000] cpu0 at cpus0: Cortex-A7 r0p5 (Cortex V7A core)
43
console: [ 1.0000000] cpu0: DC enabled IC enabled WB enabled LABT branch prediction enabled
44
console: [ 1.0000000] cpu0: 32KB/64B 2-way L1 VIPT Instruction cache
45
console: [ 1.0000000] cpu0: 32KB/64B 2-way write-back-locking-C L1 PIPT Data cache
46
console: [ 1.0000000] cpu0: 2304KB/64B 16-way write-through L2 PIPT Unified cache
47
console: [ 1.0000000] vfp0 at cpu0: NEON MPE (VFP 3.0+), rounding, NaN propagation, denormals
48
...
49
console: [ 2.3812082] sdmmc0: SD card status: 4-bit, C0
50
console: [ 2.3812082] ld0 at sdmmc0: <0xaa:0x5859:QEMU!:0x01:0xdeadbeef:0x062>
51
console: [ 2.4012856] ld0: 1226 MB, 622 cyl, 64 head, 63 sec, 512 bytes/sect x 2511872 sectors
52
console: [ 2.5321222] ld0: 4-bit width, High-Speed/SDR25, 50.000 MHz
53
console: [ 3.1068718] WARNING: 4 errors while detecting hardware; check system log.
54
console: [ 3.1179868] boot device: ld0
55
console: [ 3.1470623] root on ld0a dumps on ld0b
56
console: [ 3.2464436] root file system type: ffs
57
console: [ 3.2897123] kern.module.path=/stand/evbarm/9.0/modules
58
console: Mon Feb 17 20:33:35 UTC 2020
59
console: Starting root file system check:
60
PASS (35.96 s)
61
RESULTS : PASS 1 | ERROR 0 | FAIL 0 | SKIP 0 | WARN 0 | INTERRUPT 0 | CANCEL 0
62
JOB TIME : 36.09 s
63
64
Note, this test only took ~65 seconds to run on Travis-CI, see: [3].
65
66
This test is based on a description from Niek Linnenbank from [4].
67
68
[1] https://wiki.debian.org/InstallingDebianOn/Allwinner#Creating_a_bootable_SD_Card_with_u-boot
69
[2] https://wiki.netbsd.org/ports/evbarm/allwinner/
70
[3] https://travis-ci.org/philmd/qemu/jobs/638823612#L3778
71
[4] https://www.mail-archive.com/qemu-devel@nongnu.org/msg669347.html
72
73
Signed-off-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
74
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
75
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
76
Tested-by: Alex Bennée <alex.bennee@linaro.org>
77
Message-id: 20200311221854.30370-18-nieklinnenbank@gmail.com
78
[NL: changed test to use NetBSD 9.0 final release and -global allwinner-rtc.base-year]
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
79
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
80
---
8
target/arm/helper-sve.h | 2 ++
81
tests/acceptance/boot_linux_console.py | 70 ++++++++++++++++++++++++++
9
target/arm/sve_helper.c | 37 +++++++++++++++++++++++++++++++++++++
82
1 file changed, 70 insertions(+)
10
target/arm/translate-sve.c | 13 +++++++++++++
11
target/arm/sve.decode | 3 +++
12
4 files changed, 55 insertions(+)
13
83
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
84
diff --git a/tests/acceptance/boot_linux_console.py b/tests/acceptance/boot_linux_console.py
15
index XXXXXXX..XXXXXXX 100644
85
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
86
--- a/tests/acceptance/boot_linux_console.py
17
+++ b/target/arm/helper-sve.h
87
+++ b/tests/acceptance/boot_linux_console.py
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_4(sve_rbit_h, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
88
@@ -XXX,XX +XXX,XX @@ import shutil
19
DEF_HELPER_FLAGS_4(sve_rbit_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
89
from avocado import skipUnless
20
DEF_HELPER_FLAGS_4(sve_rbit_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
90
from avocado_qemu import Test
21
91
from avocado_qemu import exec_command_and_wait_for_pattern
22
+DEF_HELPER_FLAGS_5(sve_splice, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
92
+from avocado_qemu import interrupt_interactive_console_until_pattern
93
from avocado_qemu import wait_for_console_pattern
94
from avocado.utils import process
95
from avocado.utils import archive
96
@@ -XXX,XX +XXX,XX @@ class BootLinuxConsole(Test):
97
'to <orangepipc>')
98
self.wait_for_console_pattern('Starting Load Kernel Modules...')
99
100
+ @skipUnless(os.getenv('AVOCADO_ALLOW_LARGE_STORAGE'), 'storage limited')
101
+ def test_arm_orangepi_uboot_netbsd9(self):
102
+ """
103
+ :avocado: tags=arch:arm
104
+ :avocado: tags=machine:orangepi-pc
105
+ """
106
+ # This test download a 304MB compressed image and expand it to 1.3GB...
107
+ deb_url = ('http://snapshot.debian.org/archive/debian/'
108
+ '20200108T145233Z/pool/main/u/u-boot/'
109
+ 'u-boot-sunxi_2020.01%2Bdfsg-1_armhf.deb')
110
+ deb_hash = 'f67f404a80753ca3d1258f13e38f2b060e13db99'
111
+ deb_path = self.fetch_asset(deb_url, asset_hash=deb_hash)
112
+ # We use the common OrangePi PC 'plus' build of U-Boot for our secondary
113
+ # program loader (SPL). We will then set the path to the more specific
114
+ # OrangePi "PC" device tree blob with 'setenv fdtfile' in U-Boot prompt,
115
+ # before to boot NetBSD.
116
+ uboot_path = '/usr/lib/u-boot/orangepi_plus/u-boot-sunxi-with-spl.bin'
117
+ uboot_path = self.extract_from_deb(deb_path, uboot_path)
118
+ image_url = ('https://cdn.netbsd.org/pub/NetBSD/NetBSD-9.0/'
119
+ 'evbarm-earmv7hf/binary/gzimg/armv7.img.gz')
120
+ image_hash = '2babb29d36d8360adcb39c09e31060945259917a'
121
+ image_path_gz = self.fetch_asset(image_url, asset_hash=image_hash)
122
+ image_path = os.path.join(self.workdir, 'armv7.img')
123
+ image_drive_args = 'if=sd,format=raw,snapshot=on,file=' + image_path
124
+ archive.gzip_uncompress(image_path_gz, image_path)
23
+
125
+
24
DEF_HELPER_FLAGS_5(sve_and_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
126
+ # dd if=u-boot-sunxi-with-spl.bin of=armv7.img bs=1K seek=8 conv=notrunc
25
DEF_HELPER_FLAGS_5(sve_bic_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
127
+ with open(uboot_path, 'rb') as f_in:
26
DEF_HELPER_FLAGS_5(sve_eor_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
128
+ with open(image_path, 'r+b') as f_out:
27
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
129
+ f_out.seek(8 * 1024)
28
index XXXXXXX..XXXXXXX 100644
130
+ shutil.copyfileobj(f_in, f_out)
29
--- a/target/arm/sve_helper.c
30
+++ b/target/arm/sve_helper.c
31
@@ -XXX,XX +XXX,XX @@ int32_t HELPER(sve_last_active_element)(void *vg, uint32_t pred_desc)
32
33
return last_active_element(vg, DIV_ROUND_UP(oprsz, 8), esz);
34
}
35
+
131
+
36
+void HELPER(sve_splice)(void *vd, void *vn, void *vm, void *vg, uint32_t desc)
132
+ # Extend image, to avoid that NetBSD thinks the partition
37
+{
133
+ # inside the image is larger than device size itself
38
+ intptr_t opr_sz = simd_oprsz(desc) / 8;
134
+ f_out.seek(0, 2)
39
+ int esz = simd_data(desc);
135
+ f_out.seek(64 * 1024 * 1024, 1)
40
+ uint64_t pg, first_g, last_g, len, mask = pred_esz_masks[esz];
136
+ f_out.write(bytearray([0x00]))
41
+ intptr_t i, first_i, last_i;
42
+ ARMVectorReg tmp;
43
+
137
+
44
+ first_i = last_i = 0;
138
+ self.vm.set_console()
45
+ first_g = last_g = 0;
139
+ self.vm.add_args('-nic', 'user',
140
+ '-drive', image_drive_args,
141
+ '-global', 'allwinner-rtc.base-year=2000',
142
+ '-no-reboot')
143
+ self.vm.launch()
144
+ wait_for_console_pattern(self, 'U-Boot 2020.01+dfsg-1')
145
+ interrupt_interactive_console_until_pattern(self,
146
+ 'Hit any key to stop autoboot:',
147
+ 'switch to partitions #0, OK')
46
+
148
+
47
+ /* Find the extent of the active elements within VG. */
149
+ exec_command_and_wait_for_pattern(self, '', '=>')
48
+ for (i = QEMU_ALIGN_UP(opr_sz, 8) - 8; i >= 0; i -= 8) {
150
+ cmd = 'setenv bootargs root=ld0a'
49
+ pg = *(uint64_t *)(vg + i) & mask;
151
+ exec_command_and_wait_for_pattern(self, cmd, '=>')
50
+ if (pg) {
152
+ cmd = 'setenv kernel netbsd-GENERIC.ub'
51
+ if (last_g == 0) {
153
+ exec_command_and_wait_for_pattern(self, cmd, '=>')
52
+ last_g = pg;
154
+ cmd = 'setenv fdtfile dtb/sun8i-h3-orangepi-pc.dtb'
53
+ last_i = i;
155
+ exec_command_and_wait_for_pattern(self, cmd, '=>')
54
+ }
156
+ cmd = ("setenv bootcmd 'fatload mmc 0:1 ${kernel_addr_r} ${kernel}; "
55
+ first_g = pg;
157
+ "fatload mmc 0:1 ${fdt_addr_r} ${fdtfile}; "
56
+ first_i = i;
158
+ "fdt addr ${fdt_addr_r}; "
57
+ }
159
+ "bootm ${kernel_addr_r} - ${fdt_addr_r}'")
58
+ }
160
+ exec_command_and_wait_for_pattern(self, cmd, '=>')
59
+
161
+
60
+ len = 0;
162
+ exec_command_and_wait_for_pattern(self, 'boot',
61
+ if (first_g != 0) {
163
+ 'Booting kernel from Legacy Image')
62
+ first_i = first_i * 8 + ctz64(first_g);
164
+ wait_for_console_pattern(self, 'Starting kernel ...')
63
+ last_i = last_i * 8 + 63 - clz64(last_g);
165
+ wait_for_console_pattern(self, 'NetBSD 9.0 (GENERIC)')
64
+ len = last_i - first_i + (1 << esz);
166
+ # Wait for user-space
65
+ if (vd == vm) {
167
+ wait_for_console_pattern(self, 'Starting root file system check')
66
+ vm = memcpy(&tmp, vm, opr_sz * 8);
67
+ }
68
+ swap_memmove(vd, vn + first_i, len);
69
+ }
70
+ swap_memmove(vd + len, vm, opr_sz * 8 - len);
71
+}
72
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
73
index XXXXXXX..XXXXXXX 100644
74
--- a/target/arm/translate-sve.c
75
+++ b/target/arm/translate-sve.c
76
@@ -XXX,XX +XXX,XX @@ static bool trans_RBIT(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
77
return do_zpz_ool(s, a, fns[a->esz]);
78
}
79
80
+static bool trans_SPLICE(DisasContext *s, arg_rprr_esz *a, uint32_t insn)
81
+{
82
+ if (sve_access_check(s)) {
83
+ unsigned vsz = vec_full_reg_size(s);
84
+ tcg_gen_gvec_4_ool(vec_full_reg_offset(s, a->rd),
85
+ vec_full_reg_offset(s, a->rn),
86
+ vec_full_reg_offset(s, a->rm),
87
+ pred_full_reg_offset(s, a->pg),
88
+ vsz, vsz, a->esz, gen_helper_sve_splice);
89
+ }
90
+ return true;
91
+}
92
+
168
+
93
/*
169
def test_s390x_s390_ccw_virtio(self):
94
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
170
"""
95
*/
171
:avocado: tags=arch:s390x
96
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
97
index XXXXXXX..XXXXXXX 100644
98
--- a/target/arm/sve.decode
99
+++ b/target/arm/sve.decode
100
@@ -XXX,XX +XXX,XX @@ REVH 00000101 .. 1001 01 100 ... ..... ..... @rd_pg_rn
101
REVW 00000101 .. 1001 10 100 ... ..... ..... @rd_pg_rn
102
RBIT 00000101 .. 1001 11 100 ... ..... ..... @rd_pg_rn
103
104
+# SVE vector splice (predicated)
105
+SPLICE 00000101 .. 101 100 100 ... ..... ..... @rdn_pg_rm
106
+
107
### SVE Predicate Logical Operations Group
108
109
# SVE predicate logical operations
110
--
172
--
111
2.17.1
173
2.20.1
112
174
113
175
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Niek Linnenbank <nieklinnenbank@gmail.com>
2
2
3
Rearrange the arithmetic so that we are agnostic about the total size
3
The Xunlong Orange Pi PC machine is a functional ARM machine
4
of the vector and the size of the element. This will allow us to index
4
based on the Allwinner H3 System-on-Chip. It supports mainline
5
up to the 32nd byte and with 16-byte elements.
5
Linux, U-Boot, NetBSD and is covered by acceptance tests.
6
6
7
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
This commit adds a documentation text file with a description
8
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
8
of the machine and instructions for the user.
9
Message-id: 20180613015641.5667-2-richard.henderson@linaro.org
9
10
Signed-off-by: Niek Linnenbank <nieklinnenbank@gmail.com>
11
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
12
Message-id: 20200311221854.30370-19-nieklinnenbank@gmail.com
13
[PMM: moved file into docs/system/arm to match the reorg
14
of the arm target part of the docs; tweaked heading to
15
match other boards]
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
16
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
---
17
---
12
target/arm/translate-a64.h | 26 +++++++++++++++++---------
18
MAINTAINERS | 1 +
13
1 file changed, 17 insertions(+), 9 deletions(-)
19
docs/system/arm/orangepi.rst | 253 +++++++++++++++++++++++++++++++++++
14
20
docs/system/target-arm.rst | 2 +
15
diff --git a/target/arm/translate-a64.h b/target/arm/translate-a64.h
21
3 files changed, 256 insertions(+)
22
create mode 100644 docs/system/arm/orangepi.rst
23
24
diff --git a/MAINTAINERS b/MAINTAINERS
16
index XXXXXXX..XXXXXXX 100644
25
index XXXXXXX..XXXXXXX 100644
17
--- a/target/arm/translate-a64.h
26
--- a/MAINTAINERS
18
+++ b/target/arm/translate-a64.h
27
+++ b/MAINTAINERS
19
@@ -XXX,XX +XXX,XX @@ static inline void assert_fp_access_checked(DisasContext *s)
28
@@ -XXX,XX +XXX,XX @@ S: Maintained
20
static inline int vec_reg_offset(DisasContext *s, int regno,
29
F: hw/*/allwinner-h3*
21
int element, TCGMemOp size)
30
F: include/hw/*/allwinner-h3*
22
{
31
F: hw/arm/orangepi.c
23
- int offs = 0;
32
+F: docs/system/orangepi.rst
24
+ int element_size = 1 << size;
33
25
+ int offs = element * element_size;
34
ARM PrimeCell and CMSDK devices
26
#ifdef HOST_WORDS_BIGENDIAN
35
M: Peter Maydell <peter.maydell@linaro.org>
27
/* This is complicated slightly because vfp.zregs[n].d[0] is
36
diff --git a/docs/system/arm/orangepi.rst b/docs/system/arm/orangepi.rst
28
- * still the low half and vfp.zregs[n].d[1] the high half
37
new file mode 100644
29
- * of the 128 bit vector, even on big endian systems.
38
index XXXXXXX..XXXXXXX
30
- * Calculate the offset assuming a fully bigendian 128 bits,
39
--- /dev/null
31
- * then XOR to account for the order of the two 64 bit halves.
40
+++ b/docs/system/arm/orangepi.rst
32
+ * still the lowest and vfp.zregs[n].d[15] the highest of the
41
@@ -XXX,XX +XXX,XX @@
33
+ * 256 byte vector, even on big endian systems.
42
+Orange Pi PC (``orangepi-pc``)
34
+ *
43
+^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
35
+ * Calculate the offset assuming fully little-endian,
44
+
36
+ * then XOR to account for the order of the 8-byte units.
45
+The Xunlong Orange Pi PC is an Allwinner H3 System on Chip
37
+ *
46
+based embedded computer with mainline support in both U-Boot
38
+ * For 16 byte elements, the two 8 byte halves will not form a
47
+and Linux. The board comes with a Quad Core Cortex-A7 @ 1.3GHz,
39
+ * host int128 if the host is bigendian, since they're in the
48
+1GiB RAM, 100Mbit ethernet, USB, SD/MMC, USB, HDMI and
40
+ * wrong order. However the only 16 byte operation we have is
49
+various other I/O.
41
+ * a move, so we can ignore this for the moment. More complicated
50
+
42
+ * operations will have to special case loading and storing from
51
+Supported devices
43
+ * the zregs array.
52
+"""""""""""""""""
44
*/
53
+
45
- offs += (16 - ((element + 1) * (1 << size)));
54
+The Orange Pi PC machine supports the following devices:
46
- offs ^= 8;
55
+
47
-#else
56
+ * SMP (Quad Core Cortex-A7)
48
- offs += element * (1 << size);
57
+ * Generic Interrupt Controller configuration
49
+ if (element_size < 8) {
58
+ * SRAM mappings
50
+ offs ^= 8 - element_size;
59
+ * SDRAM controller
51
+ }
60
+ * Real Time Clock
52
#endif
61
+ * Timer device (re-used from Allwinner A10)
53
offs += offsetof(CPUARMState, vfp.zregs[regno]);
62
+ * UART
54
assert_fp_access_checked(s);
63
+ * SD/MMC storage controller
64
+ * EMAC ethernet
65
+ * USB 2.0 interfaces
66
+ * Clock Control Unit
67
+ * System Control module
68
+ * Security Identifier device
69
+
70
+Limitations
71
+"""""""""""
72
+
73
+Currently, Orange Pi PC does *not* support the following features:
74
+
75
+- Graphical output via HDMI, GPU and/or the Display Engine
76
+- Audio output
77
+- Hardware Watchdog
78
+
79
+Also see the 'unimplemented' array in the Allwinner H3 SoC module
80
+for a complete list of unimplemented I/O devices: ``./hw/arm/allwinner-h3.c``
81
+
82
+Boot options
83
+""""""""""""
84
+
85
+The Orange Pi PC machine can start using the standard -kernel functionality
86
+for loading a Linux kernel or ELF executable. Additionally, the Orange Pi PC
87
+machine can also emulate the BootROM which is present on an actual Allwinner H3
88
+based SoC, which loads the bootloader from a SD card, specified via the -sd argument
89
+to qemu-system-arm.
90
+
91
+Machine-specific options
92
+""""""""""""""""""""""""
93
+
94
+The following machine-specific options are supported:
95
+
96
+- allwinner-rtc.base-year=YYYY
97
+
98
+ The Allwinner RTC device is automatically created by the Orange Pi PC machine
99
+ and uses a default base year value which can be overridden using the 'base-year' property.
100
+ The base year is the actual represented year when the RTC year value is zero.
101
+ This option can be used in case the target operating system driver uses a different
102
+ base year value. The minimum value for the base year is 1900.
103
+
104
+- allwinner-sid.identifier=abcd1122-a000-b000-c000-12345678ffff
105
+
106
+ The Security Identifier value can be read by the guest.
107
+ For example, U-Boot uses it to determine a unique MAC address.
108
+
109
+The above machine-specific options can be specified in qemu-system-arm
110
+via the '-global' argument, for example:
111
+
112
+.. code-block:: bash
113
+
114
+ $ qemu-system-arm -M orangepi-pc -sd mycard.img \
115
+ -global allwinner-rtc.base-year=2000
116
+
117
+Running mainline Linux
118
+""""""""""""""""""""""
119
+
120
+Mainline Linux kernels from 4.19 up to latest master are known to work.
121
+To build a Linux mainline kernel that can be booted by the Orange Pi PC machine,
122
+simply configure the kernel using the sunxi_defconfig configuration:
123
+
124
+.. code-block:: bash
125
+
126
+ $ ARCH=arm CROSS_COMPILE=arm-linux-gnueabi- make mrproper
127
+ $ ARCH=arm CROSS_COMPILE=arm-linux-gnueabi- make sunxi_defconfig
128
+
129
+To be able to use USB storage, you need to manually enable the corresponding
130
+configuration item. Start the kconfig configuration tool:
131
+
132
+.. code-block:: bash
133
+
134
+ $ ARCH=arm CROSS_COMPILE=arm-linux-gnueabi- make menuconfig
135
+
136
+Navigate to the following item, enable it and save your configuration:
137
+
138
+ Device Drivers > USB support > USB Mass Storage support
139
+
140
+Build the Linux kernel with:
141
+
142
+.. code-block:: bash
143
+
144
+ $ ARCH=arm CROSS_COMPILE=arm-linux-gnueabi- make
145
+
146
+To boot the newly build linux kernel in QEMU with the Orange Pi PC machine, use:
147
+
148
+.. code-block:: bash
149
+
150
+ $ qemu-system-arm -M orangepi-pc -nic user -nographic \
151
+ -kernel /path/to/linux/arch/arm/boot/zImage \
152
+ -append 'console=ttyS0,115200' \
153
+ -dtb /path/to/linux/arch/arm/boot/dts/sun8i-h3-orangepi-pc.dtb
154
+
155
+Orange Pi PC images
156
+"""""""""""""""""""
157
+
158
+Note that the mainline kernel does not have a root filesystem. You may provide it
159
+with an official Orange Pi PC image from the official website:
160
+
161
+ http://www.orangepi.org/downloadresources/
162
+
163
+Another possibility is to run an Armbian image for Orange Pi PC which
164
+can be downloaded from:
165
+
166
+ https://www.armbian.com/orange-pi-pc/
167
+
168
+Alternatively, you can also choose to build you own image with buildroot
169
+using the orangepi_pc_defconfig. Also see https://buildroot.org for more information.
170
+
171
+You can choose to attach the selected image either as an SD card or as USB mass storage.
172
+For example, to boot using the Orange Pi PC Debian image on SD card, simply add the -sd
173
+argument and provide the proper root= kernel parameter:
174
+
175
+.. code-block:: bash
176
+
177
+ $ qemu-system-arm -M orangepi-pc -nic user -nographic \
178
+ -kernel /path/to/linux/arch/arm/boot/zImage \
179
+ -append 'console=ttyS0,115200 root=/dev/mmcblk0p2' \
180
+ -dtb /path/to/linux/arch/arm/boot/dts/sun8i-h3-orangepi-pc.dtb \
181
+ -sd OrangePi_pc_debian_stretch_server_linux5.3.5_v1.0.img
182
+
183
+To attach the image as an USB mass storage device to the machine,
184
+simply append to the command:
185
+
186
+.. code-block:: bash
187
+
188
+ -drive if=none,id=stick,file=myimage.img \
189
+ -device usb-storage,bus=usb-bus.0,drive=stick
190
+
191
+Instead of providing a custom Linux kernel via the -kernel command you may also
192
+choose to let the Orange Pi PC machine load the bootloader from SD card, just like
193
+a real board would do using the BootROM. Simply pass the selected image via the -sd
194
+argument and remove the -kernel, -append, -dbt and -initrd arguments:
195
+
196
+.. code-block:: bash
197
+
198
+ $ qemu-system-arm -M orangepi-pc -nic user -nographic \
199
+ -sd Armbian_19.11.3_Orangepipc_buster_current_5.3.9.img
200
+
201
+Note that both the official Orange Pi PC images and Armbian images start
202
+a lot of userland programs via systemd. Depending on the host hardware and OS,
203
+they may be slow to emulate, especially due to emulating the 4 cores.
204
+To help reduce the performance slow down due to emulating the 4 cores, you can
205
+give the following kernel parameters via U-Boot (or via -append):
206
+
207
+.. code-block:: bash
208
+
209
+ => setenv extraargs 'systemd.default_timeout_start_sec=9000 loglevel=7 nosmp console=ttyS0,115200'
210
+
211
+Running U-Boot
212
+""""""""""""""
213
+
214
+U-Boot mainline can be build and configured using the orangepi_pc_defconfig
215
+using similar commands as describe above for Linux. Note that it is recommended
216
+for development/testing to select the following configuration setting in U-Boot:
217
+
218
+ Device Tree Control > Provider for DTB for DT Control > Embedded DTB
219
+
220
+To start U-Boot using the Orange Pi PC machine, provide the
221
+u-boot binary to the -kernel argument:
222
+
223
+.. code-block:: bash
224
+
225
+ $ qemu-system-arm -M orangepi-pc -nic user -nographic \
226
+ -kernel /path/to/uboot/u-boot -sd disk.img
227
+
228
+Use the following U-boot commands to load and boot a Linux kernel from SD card:
229
+
230
+.. code-block:: bash
231
+
232
+ => setenv bootargs console=ttyS0,115200
233
+ => ext2load mmc 0 0x42000000 zImage
234
+ => ext2load mmc 0 0x43000000 sun8i-h3-orangepi-pc.dtb
235
+ => bootz 0x42000000 - 0x43000000
236
+
237
+Running NetBSD
238
+""""""""""""""
239
+
240
+The NetBSD operating system also includes support for Allwinner H3 based boards,
241
+including the Orange Pi PC. NetBSD 9.0 is known to work best for the Orange Pi PC
242
+board and provides a fully working system with serial console, networking and storage.
243
+For the Orange Pi PC machine, get the 'evbarm-earmv7hf' based image from:
244
+
245
+ https://cdn.netbsd.org/pub/NetBSD/NetBSD-9.0/evbarm-earmv7hf/binary/gzimg/armv7.img.gz
246
+
247
+The image requires manually installing U-Boot in the image. Build U-Boot with
248
+the orangepi_pc_defconfig configuration as described in the previous section.
249
+Next, unzip the NetBSD image and write the U-Boot binary including SPL using:
250
+
251
+.. code-block:: bash
252
+
253
+ $ gunzip armv7.img.gz
254
+ $ dd if=/path/to/u-boot-sunxi-with-spl.bin of=armv7.img bs=1024 seek=8 conv=notrunc
255
+
256
+Finally, before starting the machine the SD image must be extended such
257
+that the NetBSD kernel will not conclude the NetBSD partition is larger than
258
+the emulated SD card:
259
+
260
+.. code-block:: bash
261
+
262
+ $ dd if=/dev/zero bs=1M count=64 >> armv7.img
263
+
264
+Start the machine using the following command:
265
+
266
+.. code-block:: bash
267
+
268
+ $ qemu-system-arm -M orangepi-pc -nic user -nographic \
269
+ -sd armv7.img -global allwinner-rtc.base-year=2000
270
+
271
+At the U-Boot stage, interrupt the automatic boot process by pressing a key
272
+and set the following environment variables before booting:
273
+
274
+.. code-block:: bash
275
+
276
+ => setenv bootargs root=ld0a
277
+ => setenv kernel netbsd-GENERIC.ub
278
+ => setenv fdtfile dtb/sun8i-h3-orangepi-pc.dtb
279
+ => setenv bootcmd 'fatload mmc 0:1 ${kernel_addr_r} ${kernel}; fatload mmc 0:1 ${fdt_addr_r} ${fdtfile}; fdt addr ${fdt_addr_r}; bootm ${kernel_addr_r} - ${fdt_addr_r}'
280
+
281
+Optionally you may save the environment variables to SD card with 'saveenv'.
282
+To continue booting simply give the 'boot' command and NetBSD boots.
283
+
284
+Orange Pi PC acceptance tests
285
+"""""""""""""""""""""""""""""
286
+
287
+The Orange Pi PC machine has several acceptance tests included.
288
+To run the whole set of tests, build QEMU from source and simply
289
+provide the following command:
290
+
291
+.. code-block:: bash
292
+
293
+ $ AVOCADO_ALLOW_LARGE_STORAGE=yes avocado --show=app,console run \
294
+ -t machine:orangepi-pc tests/acceptance/boot_linux_console.py
295
diff --git a/docs/system/target-arm.rst b/docs/system/target-arm.rst
296
index XXXXXXX..XXXXXXX 100644
297
--- a/docs/system/target-arm.rst
298
+++ b/docs/system/target-arm.rst
299
@@ -XXX,XX +XXX,XX @@ undocumented; you can get a complete list by running
300
``qemu-system-aarch64 --machine help``.
301
302
.. toctree::
303
+ :maxdepth: 1
304
305
arm/integratorcp
306
arm/versatile
307
@@ -XXX,XX +XXX,XX @@ undocumented; you can get a complete list by running
308
arm/stellaris
309
arm/musicpal
310
arm/sx1
311
+ arm/orangepi
312
313
Arm CPU features
314
================
55
--
315
--
56
2.17.1
316
2.20.1
57
317
58
318
diff view generated by jsdifflib
1
The 'addr' field in the CPUIOTLBEntry struct has a rather non-obvious
1
From: Eric Auger <eric.auger@redhat.com>
2
use; add a comment documenting it (reverse-engineered from what
3
the code that sets it is doing).
4
2
3
Mention 'max' value in the gic-version property description.
4
5
Signed-off-by: Eric Auger <eric.auger@redhat.com>
6
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
7
Reviewed-by: Andrew Jones <drjones@redhat.com>
8
Message-id: 20200311131618.7187-2-eric.auger@redhat.com
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Paolo Bonzini <pbonzini@redhat.com>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20180611125633.32755-2-peter.maydell@linaro.org
9
---
10
---
10
include/exec/cpu-defs.h | 9 +++++++++
11
hw/arm/virt.c | 3 ++-
11
accel/tcg/cputlb.c | 12 ++++++++++++
12
1 file changed, 2 insertions(+), 1 deletion(-)
12
2 files changed, 21 insertions(+)
13
13
14
diff --git a/include/exec/cpu-defs.h b/include/exec/cpu-defs.h
14
diff --git a/hw/arm/virt.c b/hw/arm/virt.c
15
index XXXXXXX..XXXXXXX 100644
15
index XXXXXXX..XXXXXXX 100644
16
--- a/include/exec/cpu-defs.h
16
--- a/hw/arm/virt.c
17
+++ b/include/exec/cpu-defs.h
17
+++ b/hw/arm/virt.c
18
@@ -XXX,XX +XXX,XX @@ QEMU_BUILD_BUG_ON(sizeof(CPUTLBEntry) != (1 << CPU_TLB_ENTRY_BITS));
18
@@ -XXX,XX +XXX,XX @@ static void virt_instance_init(Object *obj)
19
* structs into one.)
19
virt_set_gic_version, NULL);
20
*/
20
object_property_set_description(obj, "gic-version",
21
typedef struct CPUIOTLBEntry {
21
"Set GIC version. "
22
+ /*
22
- "Valid values are 2, 3 and host", NULL);
23
+ * @addr contains:
23
+ "Valid values are 2, 3, host and max",
24
+ * - in the lower TARGET_PAGE_BITS, a physical section number
24
+ NULL);
25
+ * - with the lower TARGET_PAGE_BITS masked off, an offset which
25
26
+ * must be added to the virtual address to obtain:
26
vms->highmem_ecam = !vmc->no_highmem_ecam;
27
+ * + the ram_addr_t of the target RAM (if the physical section
28
+ * number is PHYS_SECTION_NOTDIRTY or PHYS_SECTION_ROM)
29
+ * + the offset within the target MemoryRegion (otherwise)
30
+ */
31
hwaddr addr;
32
MemTxAttrs attrs;
33
} CPUIOTLBEntry;
34
diff --git a/accel/tcg/cputlb.c b/accel/tcg/cputlb.c
35
index XXXXXXX..XXXXXXX 100644
36
--- a/accel/tcg/cputlb.c
37
+++ b/accel/tcg/cputlb.c
38
@@ -XXX,XX +XXX,XX @@ void tlb_set_page_with_attrs(CPUState *cpu, target_ulong vaddr,
39
env->iotlb_v[mmu_idx][vidx] = env->iotlb[mmu_idx][index];
40
41
/* refill the tlb */
42
+ /*
43
+ * At this point iotlb contains a physical section number in the lower
44
+ * TARGET_PAGE_BITS, and either
45
+ * + the ram_addr_t of the page base of the target RAM (if NOTDIRTY or ROM)
46
+ * + the offset within section->mr of the page base (otherwise)
47
+ * We subtract the vaddr (which is page aligned and thus won't
48
+ * disturb the low bits) to give an offset which can be added to the
49
+ * (non-page-aligned) vaddr of the eventual memory access to get
50
+ * the MemoryRegion offset for the access. Note that the vaddr we
51
+ * subtract here is that of the page base, and not the same as the
52
+ * vaddr we add back in io_readx()/io_writex()/get_page_addr_code().
53
+ */
54
env->iotlb[mmu_idx][index].addr = iotlb - vaddr;
55
env->iotlb[mmu_idx][index].attrs = attrs;
56
27
57
--
28
--
58
2.17.1
29
2.20.1
59
30
60
31
diff view generated by jsdifflib
1
The API for cpu_transaction_failed() says that it takes the physical
1
From: Eric Auger <eric.auger@redhat.com>
2
address for the failed transaction. However we were actually passing
3
it the offset within the target MemoryRegion. We don't currently
4
have any target CPU implementations of this hook that require the
5
physical address; fix this bug so we don't get confused if we ever
6
do add one.
7
2
8
Suggested-by: Paolo Bonzini <pbonzini@redhat.com>
3
We plan to introduce yet another value for the gic version (nosel).
4
As we already use exotic values such as 0 and -1, let's introduce
5
a dedicated enum type and let vms->gic_version take this
6
type.
7
8
Signed-off-by: Eric Auger <eric.auger@redhat.com>
9
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
10
Reviewed-by: Philippe Mathieu-Daudé <philmd@redhat.com>
11
Reviewed-by: Andrew Jones <drjones@redhat.com>
12
Message-id: 20200311131618.7187-3-eric.auger@redhat.com
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Reviewed-by: Paolo Bonzini <pbonzini@redhat.com>
11
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
12
Message-id: 20180611125633.32755-3-peter.maydell@linaro.org
13
---
14
---
14
include/exec/exec-all.h | 13 ++++++++++--
15
include/hw/arm/virt.h | 11 +++++++++--
15
accel/tcg/cputlb.c | 44 +++++++++++++++++++++++++++++------------
16
hw/arm/virt.c | 30 +++++++++++++++---------------
16
exec.c | 5 +++--
17
2 files changed, 24 insertions(+), 17 deletions(-)
17
3 files changed, 45 insertions(+), 17 deletions(-)
18
18
19
diff --git a/include/exec/exec-all.h b/include/exec/exec-all.h
19
diff --git a/include/hw/arm/virt.h b/include/hw/arm/virt.h
20
index XXXXXXX..XXXXXXX 100644
20
index XXXXXXX..XXXXXXX 100644
21
--- a/include/exec/exec-all.h
21
--- a/include/hw/arm/virt.h
22
+++ b/include/exec/exec-all.h
22
+++ b/include/hw/arm/virt.h
23
@@ -XXX,XX +XXX,XX @@ void tb_lock_reset(void);
23
@@ -XXX,XX +XXX,XX @@ typedef enum VirtIOMMUType {
24
24
VIRT_IOMMU_VIRTIO,
25
#if !defined(CONFIG_USER_ONLY)
25
} VirtIOMMUType;
26
26
27
-struct MemoryRegion *iotlb_to_region(CPUState *cpu,
27
+typedef enum VirtGICType {
28
- hwaddr index, MemTxAttrs attrs);
28
+ VIRT_GIC_VERSION_MAX,
29
+/**
29
+ VIRT_GIC_VERSION_HOST,
30
+ * iotlb_to_section:
30
+ VIRT_GIC_VERSION_2,
31
+ * @cpu: CPU performing the access
31
+ VIRT_GIC_VERSION_3,
32
+ * @index: TCG CPU IOTLB entry
32
+} VirtGICType;
33
+ *
33
+
34
+ * Given a TCG CPU IOTLB entry, return the MemoryRegionSection that
34
typedef struct MemMapEntry {
35
+ * it refers to. @index will have been initially created and returned
35
hwaddr base;
36
+ * by memory_region_section_get_iotlb().
36
hwaddr size;
37
+ */
37
@@ -XXX,XX +XXX,XX @@ typedef struct {
38
+struct MemoryRegionSection *iotlb_to_section(CPUState *cpu,
38
bool highmem_ecam;
39
+ hwaddr index, MemTxAttrs attrs);
39
bool its;
40
40
bool virt;
41
void tlb_fill(CPUState *cpu, target_ulong addr, int size,
41
- int32_t gic_version;
42
MMUAccessType access_type, int mmu_idx, uintptr_t retaddr);
42
+ VirtGICType gic_version;
43
diff --git a/accel/tcg/cputlb.c b/accel/tcg/cputlb.c
43
VirtIOMMUType iommu;
44
uint16_t virtio_iommu_bdf;
45
struct arm_boot_info bootinfo;
46
@@ -XXX,XX +XXX,XX @@ static inline int virt_gicv3_redist_region_count(VirtMachineState *vms)
47
uint32_t redist0_capacity =
48
vms->memmap[VIRT_GIC_REDIST].size / GICV3_REDIST_SIZE;
49
50
- assert(vms->gic_version == 3);
51
+ assert(vms->gic_version == VIRT_GIC_VERSION_3);
52
53
return vms->smp_cpus > redist0_capacity ? 2 : 1;
54
}
55
diff --git a/hw/arm/virt.c b/hw/arm/virt.c
44
index XXXXXXX..XXXXXXX 100644
56
index XXXXXXX..XXXXXXX 100644
45
--- a/accel/tcg/cputlb.c
57
--- a/hw/arm/virt.c
46
+++ b/accel/tcg/cputlb.c
58
+++ b/hw/arm/virt.c
47
@@ -XXX,XX +XXX,XX @@ static uint64_t io_readx(CPUArchState *env, CPUIOTLBEntry *iotlbentry,
59
@@ -XXX,XX +XXX,XX @@ static void fdt_add_timer_nodes(const VirtMachineState *vms)
48
target_ulong addr, uintptr_t retaddr, int size)
60
irqflags = GIC_FDT_IRQ_FLAGS_EDGE_LO_HI;
49
{
50
CPUState *cpu = ENV_GET_CPU(env);
51
- hwaddr physaddr = iotlbentry->addr;
52
- MemoryRegion *mr = iotlb_to_region(cpu, physaddr, iotlbentry->attrs);
53
+ hwaddr mr_offset;
54
+ MemoryRegionSection *section;
55
+ MemoryRegion *mr;
56
uint64_t val;
57
bool locked = false;
58
MemTxResult r;
59
60
- physaddr = (physaddr & TARGET_PAGE_MASK) + addr;
61
+ section = iotlb_to_section(cpu, iotlbentry->addr, iotlbentry->attrs);
62
+ mr = section->mr;
63
+ mr_offset = (iotlbentry->addr & TARGET_PAGE_MASK) + addr;
64
cpu->mem_io_pc = retaddr;
65
if (mr != &io_mem_rom && mr != &io_mem_notdirty && !cpu->can_do_io) {
66
cpu_io_recompile(cpu, retaddr);
67
@@ -XXX,XX +XXX,XX @@ static uint64_t io_readx(CPUArchState *env, CPUIOTLBEntry *iotlbentry,
68
qemu_mutex_lock_iothread();
69
locked = true;
70
}
61
}
71
- r = memory_region_dispatch_read(mr, physaddr,
62
72
+ r = memory_region_dispatch_read(mr, mr_offset,
63
- if (vms->gic_version == 2) {
73
&val, size, iotlbentry->attrs);
64
+ if (vms->gic_version == VIRT_GIC_VERSION_2) {
74
if (r != MEMTX_OK) {
65
irqflags = deposit32(irqflags, GIC_FDT_IRQ_PPI_CPU_START,
75
+ hwaddr physaddr = mr_offset +
66
GIC_FDT_IRQ_PPI_CPU_WIDTH,
76
+ section->offset_within_address_space -
67
(1 << vms->smp_cpus) - 1);
77
+ section->offset_within_region;
68
@@ -XXX,XX +XXX,XX @@ static void fdt_add_gic_node(VirtMachineState *vms)
78
+
69
qemu_fdt_setprop_cell(vms->fdt, nodename, "#address-cells", 0x2);
79
cpu_transaction_failed(cpu, physaddr, addr, size, MMU_DATA_LOAD,
70
qemu_fdt_setprop_cell(vms->fdt, nodename, "#size-cells", 0x2);
80
mmu_idx, iotlbentry->attrs, r, retaddr);
71
qemu_fdt_setprop(vms->fdt, nodename, "ranges", NULL, 0);
81
}
72
- if (vms->gic_version == 3) {
82
@@ -XXX,XX +XXX,XX @@ static void io_writex(CPUArchState *env, CPUIOTLBEntry *iotlbentry,
73
+ if (vms->gic_version == VIRT_GIC_VERSION_3) {
83
uintptr_t retaddr, int size)
74
int nb_redist_regions = virt_gicv3_redist_region_count(vms);
84
{
75
85
CPUState *cpu = ENV_GET_CPU(env);
76
qemu_fdt_setprop_string(vms->fdt, nodename, "compatible",
86
- hwaddr physaddr = iotlbentry->addr;
77
@@ -XXX,XX +XXX,XX @@ static void fdt_add_pmu_nodes(const VirtMachineState *vms)
87
- MemoryRegion *mr = iotlb_to_region(cpu, physaddr, iotlbentry->attrs);
88
+ hwaddr mr_offset;
89
+ MemoryRegionSection *section;
90
+ MemoryRegion *mr;
91
bool locked = false;
92
MemTxResult r;
93
94
- physaddr = (physaddr & TARGET_PAGE_MASK) + addr;
95
+ section = iotlb_to_section(cpu, iotlbentry->addr, iotlbentry->attrs);
96
+ mr = section->mr;
97
+ mr_offset = (iotlbentry->addr & TARGET_PAGE_MASK) + addr;
98
if (mr != &io_mem_rom && mr != &io_mem_notdirty && !cpu->can_do_io) {
99
cpu_io_recompile(cpu, retaddr);
100
}
101
@@ -XXX,XX +XXX,XX @@ static void io_writex(CPUArchState *env, CPUIOTLBEntry *iotlbentry,
102
qemu_mutex_lock_iothread();
103
locked = true;
104
}
105
- r = memory_region_dispatch_write(mr, physaddr,
106
+ r = memory_region_dispatch_write(mr, mr_offset,
107
val, size, iotlbentry->attrs);
108
if (r != MEMTX_OK) {
109
+ hwaddr physaddr = mr_offset +
110
+ section->offset_within_address_space -
111
+ section->offset_within_region;
112
+
113
cpu_transaction_failed(cpu, physaddr, addr, size, MMU_DATA_STORE,
114
mmu_idx, iotlbentry->attrs, r, retaddr);
115
}
116
@@ -XXX,XX +XXX,XX @@ static bool victim_tlb_hit(CPUArchState *env, size_t mmu_idx, size_t index,
117
*/
118
tb_page_addr_t get_page_addr_code(CPUArchState *env, target_ulong addr)
119
{
120
- int mmu_idx, index, pd;
121
+ int mmu_idx, index;
122
void *p;
123
MemoryRegion *mr;
124
+ MemoryRegionSection *section;
125
CPUState *cpu = ENV_GET_CPU(env);
126
CPUIOTLBEntry *iotlbentry;
127
- hwaddr physaddr;
128
+ hwaddr physaddr, mr_offset;
129
130
index = (addr >> TARGET_PAGE_BITS) & (CPU_TLB_SIZE - 1);
131
mmu_idx = cpu_mmu_index(env, true);
132
@@ -XXX,XX +XXX,XX @@ tb_page_addr_t get_page_addr_code(CPUArchState *env, target_ulong addr)
133
}
78
}
134
}
79
}
135
iotlbentry = &env->iotlb[mmu_idx][index];
80
136
- pd = iotlbentry->addr & ~TARGET_PAGE_MASK;
81
- if (vms->gic_version == 2) {
137
- mr = iotlb_to_region(cpu, pd, iotlbentry->attrs);
82
+ if (vms->gic_version == VIRT_GIC_VERSION_2) {
138
+ section = iotlb_to_section(cpu, iotlbentry->addr, iotlbentry->attrs);
83
irqflags = deposit32(irqflags, GIC_FDT_IRQ_PPI_CPU_START,
139
+ mr = section->mr;
84
GIC_FDT_IRQ_PPI_CPU_WIDTH,
140
if (memory_region_is_unassigned(mr)) {
85
(1 << vms->smp_cpus) - 1);
141
qemu_mutex_lock_iothread();
86
@@ -XXX,XX +XXX,XX @@ static uint64_t virt_cpu_mp_affinity(VirtMachineState *vms, int idx)
142
if (memory_region_request_mmio_ptr(mr, addr)) {
87
* purposes are to make TCG consistent (with 64-bit KVM hosts)
143
@@ -XXX,XX +XXX,XX @@ tb_page_addr_t get_page_addr_code(CPUArchState *env, target_ulong addr)
88
* and to improve SGI efficiency.
144
* and use the MemTXResult it produced). However it is the
145
* simplest place we have currently available for the check.
146
*/
89
*/
147
- physaddr = (iotlbentry->addr & TARGET_PAGE_MASK) + addr;
90
- if (vms->gic_version == 3) {
148
+ mr_offset = (iotlbentry->addr & TARGET_PAGE_MASK) + addr;
91
+ if (vms->gic_version == VIRT_GIC_VERSION_3) {
149
+ physaddr = mr_offset +
92
clustersz = GICV3_TARGETLIST_BITS;
150
+ section->offset_within_address_space -
93
} else {
151
+ section->offset_within_region;
94
clustersz = GIC_TARGETLIST_BITS;
152
cpu_transaction_failed(cpu, physaddr, addr, 0, MMU_INST_FETCH, mmu_idx,
95
@@ -XXX,XX +XXX,XX @@ static void machvirt_init(MachineState *machine)
153
iotlbentry->attrs, MEMTX_DECODE_ERROR, 0);
96
/* We can probe only here because during property set
154
97
* KVM is not available yet
155
diff --git a/exec.c b/exec.c
98
*/
156
index XXXXXXX..XXXXXXX 100644
99
- if (vms->gic_version <= 0) {
157
--- a/exec.c
100
- /* "host" or "max" */
158
+++ b/exec.c
101
+ if (vms->gic_version == VIRT_GIC_VERSION_HOST ||
159
@@ -XXX,XX +XXX,XX @@ static const MemoryRegionOps readonly_mem_ops = {
102
+ vms->gic_version == VIRT_GIC_VERSION_MAX) {
160
},
103
if (!kvm_enabled()) {
161
};
104
- if (vms->gic_version == 0) {
162
105
+ if (vms->gic_version == VIRT_GIC_VERSION_HOST) {
163
-MemoryRegion *iotlb_to_region(CPUState *cpu, hwaddr index, MemTxAttrs attrs)
106
error_report("gic-version=host requires KVM");
164
+MemoryRegionSection *iotlb_to_section(CPUState *cpu,
107
exit(1);
165
+ hwaddr index, MemTxAttrs attrs)
108
} else {
109
/* "max": currently means 3 for TCG */
110
- vms->gic_version = 3;
111
+ vms->gic_version = VIRT_GIC_VERSION_3;
112
}
113
} else {
114
vms->gic_version = kvm_arm_vgic_probe();
115
@@ -XXX,XX +XXX,XX @@ static void machvirt_init(MachineState *machine)
116
/* The maximum number of CPUs depends on the GIC version, or on how
117
* many redistributors we can fit into the memory map.
118
*/
119
- if (vms->gic_version == 3) {
120
+ if (vms->gic_version == VIRT_GIC_VERSION_3) {
121
virt_max_cpus =
122
vms->memmap[VIRT_GIC_REDIST].size / GICV3_REDIST_SIZE;
123
virt_max_cpus +=
124
@@ -XXX,XX +XXX,XX @@ static void virt_set_its(Object *obj, bool value, Error **errp)
125
static char *virt_get_gic_version(Object *obj, Error **errp)
166
{
126
{
167
int asidx = cpu_asidx_from_attrs(cpu, attrs);
127
VirtMachineState *vms = VIRT_MACHINE(obj);
168
CPUAddressSpace *cpuas = &cpu->cpu_ases[asidx];
128
- const char *val = vms->gic_version == 3 ? "3" : "2";
169
AddressSpaceDispatch *d = atomic_rcu_read(&cpuas->memory_dispatch);
129
+ const char *val = vms->gic_version == VIRT_GIC_VERSION_3 ? "3" : "2";
170
MemoryRegionSection *sections = d->map.sections;
130
171
131
return g_strdup(val);
172
- return sections[index & ~TARGET_PAGE_MASK].mr;
173
+ return &sections[index & ~TARGET_PAGE_MASK];
174
}
132
}
175
133
@@ -XXX,XX +XXX,XX @@ static void virt_set_gic_version(Object *obj, const char *value, Error **errp)
176
static void io_mem_init(void)
134
VirtMachineState *vms = VIRT_MACHINE(obj);
135
136
if (!strcmp(value, "3")) {
137
- vms->gic_version = 3;
138
+ vms->gic_version = VIRT_GIC_VERSION_3;
139
} else if (!strcmp(value, "2")) {
140
- vms->gic_version = 2;
141
+ vms->gic_version = VIRT_GIC_VERSION_2;
142
} else if (!strcmp(value, "host")) {
143
- vms->gic_version = 0; /* Will probe later */
144
+ vms->gic_version = VIRT_GIC_VERSION_HOST; /* Will probe later */
145
} else if (!strcmp(value, "max")) {
146
- vms->gic_version = -1; /* Will probe later */
147
+ vms->gic_version = VIRT_GIC_VERSION_MAX; /* Will probe later */
148
} else {
149
error_setg(errp, "Invalid gic-version value");
150
error_append_hint(errp, "Valid values are 3, 2, host, max.\n");
151
@@ -XXX,XX +XXX,XX @@ static void virt_instance_init(Object *obj)
152
"physical address space above 32 bits",
153
NULL);
154
/* Default GIC type is v2 */
155
- vms->gic_version = 2;
156
+ vms->gic_version = VIRT_GIC_VERSION_2;
157
object_property_add_str(obj, "gic-version", virt_get_gic_version,
158
virt_set_gic_version, NULL);
159
object_property_set_description(obj, "gic-version",
177
--
160
--
178
2.17.1
161
2.20.1
179
162
180
163
diff view generated by jsdifflib
1
Convert the sh7750 device away from using the old_mmio field
1
From: Eric Auger <eric.auger@redhat.com>
2
of MemoryRegionOps. This device is used by the sh4 r2d board.
3
2
3
Let's move the code which freezes which gic-version to
4
be applied in a dedicated function. We also now set by
5
default the VIRT_GIC_VERSION_NO_SET. This eventually
6
turns into the legacy v2 choice in the finalize() function.
7
8
Signed-off-by: Eric Auger <eric.auger@redhat.com>
9
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
10
Reviewed-by: Andrew Jones <drjones@redhat.com>
11
Message-id: 20200311131618.7187-4-eric.auger@redhat.com
4
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
5
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
6
Message-id: 20180601141223.26630-2-peter.maydell@linaro.org
7
---
13
---
8
hw/sh4/sh7750.c | 44 ++++++++++++++++++++++++++++++++++++--------
14
include/hw/arm/virt.h | 1 +
9
1 file changed, 36 insertions(+), 8 deletions(-)
15
hw/arm/virt.c | 54 ++++++++++++++++++++++++++-----------------
16
2 files changed, 34 insertions(+), 21 deletions(-)
10
17
11
diff --git a/hw/sh4/sh7750.c b/hw/sh4/sh7750.c
18
diff --git a/include/hw/arm/virt.h b/include/hw/arm/virt.h
12
index XXXXXXX..XXXXXXX 100644
19
index XXXXXXX..XXXXXXX 100644
13
--- a/hw/sh4/sh7750.c
20
--- a/include/hw/arm/virt.h
14
+++ b/hw/sh4/sh7750.c
21
+++ b/include/hw/arm/virt.h
15
@@ -XXX,XX +XXX,XX @@ static void sh7750_mem_writel(void *opaque, hwaddr addr,
22
@@ -XXX,XX +XXX,XX @@ typedef enum VirtGICType {
23
VIRT_GIC_VERSION_HOST,
24
VIRT_GIC_VERSION_2,
25
VIRT_GIC_VERSION_3,
26
+ VIRT_GIC_VERSION_NOSEL,
27
} VirtGICType;
28
29
typedef struct MemMapEntry {
30
diff --git a/hw/arm/virt.c b/hw/arm/virt.c
31
index XXXXXXX..XXXXXXX 100644
32
--- a/hw/arm/virt.c
33
+++ b/hw/arm/virt.c
34
@@ -XXX,XX +XXX,XX @@ static void virt_set_memmap(VirtMachineState *vms)
16
}
35
}
17
}
36
}
18
37
19
+static uint64_t sh7750_mem_readfn(void *opaque, hwaddr addr, unsigned size)
38
+/*
39
+ * finalize_gic_version - Determines the final gic_version
40
+ * according to the gic-version property
41
+ *
42
+ * Default GIC type is v2
43
+ */
44
+static void finalize_gic_version(VirtMachineState *vms)
20
+{
45
+{
21
+ switch (size) {
46
+ if (vms->gic_version == VIRT_GIC_VERSION_HOST ||
22
+ case 1:
47
+ vms->gic_version == VIRT_GIC_VERSION_MAX) {
23
+ return sh7750_mem_readb(opaque, addr);
48
+ if (!kvm_enabled()) {
24
+ case 2:
49
+ if (vms->gic_version == VIRT_GIC_VERSION_HOST) {
25
+ return sh7750_mem_readw(opaque, addr);
50
+ error_report("gic-version=host requires KVM");
26
+ case 4:
51
+ exit(1);
27
+ return sh7750_mem_readl(opaque, addr);
52
+ } else {
28
+ default:
53
+ /* "max": currently means 3 for TCG */
29
+ g_assert_not_reached();
54
+ vms->gic_version = VIRT_GIC_VERSION_3;
55
+ }
56
+ } else {
57
+ vms->gic_version = kvm_arm_vgic_probe();
58
+ if (!vms->gic_version) {
59
+ error_report(
60
+ "Unable to determine GIC version supported by host");
61
+ exit(1);
62
+ }
63
+ }
64
+ } else if (vms->gic_version == VIRT_GIC_VERSION_NOSEL) {
65
+ vms->gic_version = VIRT_GIC_VERSION_2;
30
+ }
66
+ }
31
+}
67
+}
32
+
68
+
33
+static void sh7750_mem_writefn(void *opaque, hwaddr addr,
69
static void machvirt_init(MachineState *machine)
34
+ uint64_t value, unsigned size)
70
{
35
+{
71
VirtMachineState *vms = VIRT_MACHINE(machine);
36
+ switch (size) {
72
@@ -XXX,XX +XXX,XX @@ static void machvirt_init(MachineState *machine)
37
+ case 1:
73
/* We can probe only here because during property set
38
+ sh7750_mem_writeb(opaque, addr, value);
74
* KVM is not available yet
39
+ break;
75
*/
40
+ case 2:
76
- if (vms->gic_version == VIRT_GIC_VERSION_HOST ||
41
+ sh7750_mem_writew(opaque, addr, value);
77
- vms->gic_version == VIRT_GIC_VERSION_MAX) {
42
+ break;
78
- if (!kvm_enabled()) {
43
+ case 4:
79
- if (vms->gic_version == VIRT_GIC_VERSION_HOST) {
44
+ sh7750_mem_writel(opaque, addr, value);
80
- error_report("gic-version=host requires KVM");
45
+ break;
81
- exit(1);
46
+ default:
82
- } else {
47
+ g_assert_not_reached();
83
- /* "max": currently means 3 for TCG */
48
+ }
84
- vms->gic_version = VIRT_GIC_VERSION_3;
49
+}
85
- }
50
+
86
- } else {
51
static const MemoryRegionOps sh7750_mem_ops = {
87
- vms->gic_version = kvm_arm_vgic_probe();
52
- .old_mmio = {
88
- if (!vms->gic_version) {
53
- .read = {sh7750_mem_readb,
89
- error_report(
54
- sh7750_mem_readw,
90
- "Unable to determine GIC version supported by host");
55
- sh7750_mem_readl },
91
- exit(1);
56
- .write = {sh7750_mem_writeb,
92
- }
57
- sh7750_mem_writew,
93
- }
58
- sh7750_mem_writel },
94
- }
59
- },
95
+ finalize_gic_version(vms);
60
+ .read = sh7750_mem_readfn,
96
61
+ .write = sh7750_mem_writefn,
97
if (!cpu_type_valid(machine->cpu_type)) {
62
+ .valid.min_access_size = 1,
98
error_report("mach-virt: CPU type %s not supported", machine->cpu_type);
63
+ .valid.max_access_size = 4,
99
@@ -XXX,XX +XXX,XX @@ static void virt_instance_init(Object *obj)
64
.endianness = DEVICE_NATIVE_ENDIAN,
100
"Set on/off to enable/disable using "
65
};
101
"physical address space above 32 bits",
66
102
NULL);
103
- /* Default GIC type is v2 */
104
- vms->gic_version = VIRT_GIC_VERSION_2;
105
+ vms->gic_version = VIRT_GIC_VERSION_NOSEL;
106
object_property_add_str(obj, "gic-version", virt_get_gic_version,
107
virt_set_gic_version, NULL);
108
object_property_set_description(obj, "gic-version",
67
--
109
--
68
2.17.1
110
2.20.1
69
111
70
112
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Eric Auger <eric.auger@redhat.com>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
Convert kvm_arm_vgic_probe() so that it returns a
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
bitmap of supported in-kernel emulation VGIC versions instead
5
Message-id: 20180613015641.5667-8-richard.henderson@linaro.org
5
of the max version: at the moment values can be v2 and v3.
6
This allows to expose the case where the host GICv3 also
7
supports GICv2 emulation. This will be useful to choose the
8
default version in KVM accelerated mode.
9
10
Signed-off-by: Eric Auger <eric.auger@redhat.com>
11
Reviewed-by: Andrew Jones <drjones@redhat.com>
12
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
13
Message-id: 20200311131618.7187-5-eric.auger@redhat.com
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
15
---
8
target/arm/translate-sve.c | 19 +++++++++++++++++++
16
target/arm/kvm_arm.h | 3 +++
9
target/arm/sve.decode | 6 ++++++
17
hw/arm/virt.c | 11 +++++++++--
10
2 files changed, 25 insertions(+)
18
target/arm/kvm.c | 14 ++++++++------
19
3 files changed, 20 insertions(+), 8 deletions(-)
11
20
12
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
21
diff --git a/target/arm/kvm_arm.h b/target/arm/kvm_arm.h
13
index XXXXXXX..XXXXXXX 100644
22
index XXXXXXX..XXXXXXX 100644
14
--- a/target/arm/translate-sve.c
23
--- a/target/arm/kvm_arm.h
15
+++ b/target/arm/translate-sve.c
24
+++ b/target/arm/kvm_arm.h
16
@@ -XXX,XX +XXX,XX @@ static bool trans_LASTB_r(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
25
@@ -XXX,XX +XXX,XX @@
17
return do_last_general(s, a, true);
26
#include "exec/memory.h"
27
#include "qemu/error-report.h"
28
29
+#define KVM_ARM_VGIC_V2 (1 << 0)
30
+#define KVM_ARM_VGIC_V3 (1 << 1)
31
+
32
/**
33
* kvm_arm_vcpu_init:
34
* @cs: CPUState
35
diff --git a/hw/arm/virt.c b/hw/arm/virt.c
36
index XXXXXXX..XXXXXXX 100644
37
--- a/hw/arm/virt.c
38
+++ b/hw/arm/virt.c
39
@@ -XXX,XX +XXX,XX @@ static void finalize_gic_version(VirtMachineState *vms)
40
vms->gic_version = VIRT_GIC_VERSION_3;
41
}
42
} else {
43
- vms->gic_version = kvm_arm_vgic_probe();
44
- if (!vms->gic_version) {
45
+ int probe_bitmap = kvm_arm_vgic_probe();
46
+
47
+ if (!probe_bitmap) {
48
error_report(
49
"Unable to determine GIC version supported by host");
50
exit(1);
51
+ } else {
52
+ if (probe_bitmap & KVM_ARM_VGIC_V3) {
53
+ vms->gic_version = VIRT_GIC_VERSION_3;
54
+ } else {
55
+ vms->gic_version = VIRT_GIC_VERSION_2;
56
+ }
57
}
58
}
59
} else if (vms->gic_version == VIRT_GIC_VERSION_NOSEL) {
60
diff --git a/target/arm/kvm.c b/target/arm/kvm.c
61
index XXXXXXX..XXXXXXX 100644
62
--- a/target/arm/kvm.c
63
+++ b/target/arm/kvm.c
64
@@ -XXX,XX +XXX,XX @@ int kvm_arch_irqchip_create(KVMState *s)
65
66
int kvm_arm_vgic_probe(void)
67
{
68
+ int val = 0;
69
+
70
if (kvm_create_device(kvm_state,
71
KVM_DEV_TYPE_ARM_VGIC_V3, true) == 0) {
72
- return 3;
73
- } else if (kvm_create_device(kvm_state,
74
- KVM_DEV_TYPE_ARM_VGIC_V2, true) == 0) {
75
- return 2;
76
- } else {
77
- return 0;
78
+ val |= KVM_ARM_VGIC_V3;
79
}
80
+ if (kvm_create_device(kvm_state,
81
+ KVM_DEV_TYPE_ARM_VGIC_V2, true) == 0) {
82
+ val |= KVM_ARM_VGIC_V2;
83
+ }
84
+ return val;
18
}
85
}
19
86
20
+static bool trans_CPY_m_r(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
87
int kvm_arm_set_irq(int cpu, int irqtype, int irq, int level)
21
+{
22
+ if (sve_access_check(s)) {
23
+ do_cpy_m(s, a->esz, a->rd, a->rd, a->pg, cpu_reg_sp(s, a->rn));
24
+ }
25
+ return true;
26
+}
27
+
28
+static bool trans_CPY_m_v(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
29
+{
30
+ if (sve_access_check(s)) {
31
+ int ofs = vec_reg_offset(s, a->rn, 0, a->esz);
32
+ TCGv_i64 t = load_esz(cpu_env, ofs, a->esz);
33
+ do_cpy_m(s, a->esz, a->rd, a->rd, a->pg, t);
34
+ tcg_temp_free_i64(t);
35
+ }
36
+ return true;
37
+}
38
+
39
/*
40
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
41
*/
42
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
43
index XXXXXXX..XXXXXXX 100644
44
--- a/target/arm/sve.decode
45
+++ b/target/arm/sve.decode
46
@@ -XXX,XX +XXX,XX @@ LASTB_v 00000101 .. 10001 1 100 ... ..... ..... @rd_pg_rn
47
LASTA_r 00000101 .. 10000 0 101 ... ..... ..... @rd_pg_rn
48
LASTB_r 00000101 .. 10000 1 101 ... ..... ..... @rd_pg_rn
49
50
+# SVE copy element from SIMD&FP scalar register
51
+CPY_m_v 00000101 .. 100000 100 ... ..... ..... @rd_pg_rn
52
+
53
+# SVE copy element from general register to vector (predicated)
54
+CPY_m_r 00000101 .. 101000 101 ... ..... ..... @rd_pg_rn
55
+
56
### SVE Predicate Logical Operations Group
57
58
# SVE predicate logical operations
59
--
88
--
60
2.17.1
89
2.20.1
61
90
62
91
diff view generated by jsdifflib
1
Add support for multiple IOMMU indexes to the IOMMU notifier APIs.
1
From: Eric Auger <eric.auger@redhat.com>
2
When initializing a notifier with iommu_notifier_init(), the caller
3
must pass the IOMMU index that it is interested in. When a change
4
happens, the IOMMU implementation must pass
5
memory_region_notify_iommu() the IOMMU index that has changed and
6
that notifiers must be called for.
7
2
8
IOMMUs which support only a single index don't need to change.
3
Restructure the finalize_gic_version with switch cases and
9
Callers which only really support working with IOMMUs with a single
4
clearly separate the following cases:
10
index can use the result of passing MEMTXATTRS_UNSPECIFIED to
11
memory_region_iommu_attrs_to_index().
12
5
6
- KVM mode / in-kernel irqchip
7
- KVM mode / userspace irqchip
8
- TCG mode
9
10
In KVM mode / in-kernel irqchip , we explictly check whether
11
the chosen version is supported by the host. If the end-user
12
explicitly sets v2/v3 and this is not supported by the host,
13
then the user gets an explicit error message. Note that for
14
old kernels where the CREATE_DEVICE ioctl doesn't exist then
15
we will now fail if the user specifically asked for gicv2,
16
where previously we (probably) would have succeeded.
17
18
In KVM mode / userspace irqchip we immediatly output an error
19
in case the end-user explicitly selected v3. Also we warn the
20
end-user about the unexpected usage of gic-version=host in
21
that case as only userspace GICv2 is supported.
22
23
Signed-off-by: Eric Auger <eric.auger@redhat.com>
24
Reviewed-by: Andrew Jones <drjones@redhat.com>
25
Message-id: 20200311131618.7187-6-eric.auger@redhat.com
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
26
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
15
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
16
Message-id: 20180604152941.20374-3-peter.maydell@linaro.org
17
---
27
---
18
include/exec/memory.h | 7 ++++++-
28
hw/arm/virt.c | 88 +++++++++++++++++++++++++++++++++++++++------------
19
hw/i386/intel_iommu.c | 6 +++---
29
1 file changed, 67 insertions(+), 21 deletions(-)
20
hw/ppc/spapr_iommu.c | 2 +-
21
hw/s390x/s390-pci-inst.c | 4 ++--
22
hw/vfio/common.c | 6 +++++-
23
hw/virtio/vhost.c | 7 ++++++-
24
memory.c | 8 +++++++-
25
7 files changed, 30 insertions(+), 10 deletions(-)
26
30
27
diff --git a/include/exec/memory.h b/include/exec/memory.h
31
diff --git a/hw/arm/virt.c b/hw/arm/virt.c
28
index XXXXXXX..XXXXXXX 100644
32
index XXXXXXX..XXXXXXX 100644
29
--- a/include/exec/memory.h
33
--- a/hw/arm/virt.c
30
+++ b/include/exec/memory.h
34
+++ b/hw/arm/virt.c
31
@@ -XXX,XX +XXX,XX @@ struct IOMMUNotifier {
35
@@ -XXX,XX +XXX,XX @@ static void virt_set_memmap(VirtMachineState *vms)
32
/* Notify for address space range start <= addr <= end */
36
*/
33
hwaddr start;
37
static void finalize_gic_version(VirtMachineState *vms)
34
hwaddr end;
35
+ int iommu_idx;
36
QLIST_ENTRY(IOMMUNotifier) node;
37
};
38
typedef struct IOMMUNotifier IOMMUNotifier;
39
40
static inline void iommu_notifier_init(IOMMUNotifier *n, IOMMUNotify fn,
41
IOMMUNotifierFlag flags,
42
- hwaddr start, hwaddr end)
43
+ hwaddr start, hwaddr end,
44
+ int iommu_idx)
45
{
38
{
46
n->notify = fn;
39
- if (vms->gic_version == VIRT_GIC_VERSION_HOST ||
47
n->notifier_flags = flags;
40
- vms->gic_version == VIRT_GIC_VERSION_MAX) {
48
n->start = start;
41
- if (!kvm_enabled()) {
49
n->end = end;
42
- if (vms->gic_version == VIRT_GIC_VERSION_HOST) {
50
+ n->iommu_idx = iommu_idx;
43
- error_report("gic-version=host requires KVM");
51
}
44
- exit(1);
52
45
- } else {
53
/*
46
- /* "max": currently means 3 for TCG */
54
@@ -XXX,XX +XXX,XX @@ uint64_t memory_region_iommu_get_min_page_size(IOMMUMemoryRegion *iommu_mr);
47
- vms->gic_version = VIRT_GIC_VERSION_3;
55
* should be notified with an UNMAP followed by a MAP.
48
- }
56
*
49
- } else {
57
* @iommu_mr: the memory region that was changed
50
- int probe_bitmap = kvm_arm_vgic_probe();
58
+ * @iommu_idx: the IOMMU index for the translation table which has changed
51
+ if (kvm_enabled()) {
59
* @entry: the new entry in the IOMMU translation table. The entry
52
+ int probe_bitmap;
60
* replaces all old entries for the same virtual I/O address range.
53
61
* Deleted entries have .@perm == 0.
54
- if (!probe_bitmap) {
62
*/
55
+ if (!kvm_irqchip_in_kernel()) {
63
void memory_region_notify_iommu(IOMMUMemoryRegion *iommu_mr,
56
+ switch (vms->gic_version) {
64
+ int iommu_idx,
57
+ case VIRT_GIC_VERSION_HOST:
65
IOMMUTLBEntry entry);
58
+ warn_report(
66
59
+ "gic-version=host not relevant with kernel-irqchip=off "
67
/**
60
+ "as only userspace GICv2 is supported. Using v2 ...");
68
diff --git a/hw/i386/intel_iommu.c b/hw/i386/intel_iommu.c
61
+ return;
69
index XXXXXXX..XXXXXXX 100644
62
+ case VIRT_GIC_VERSION_MAX:
70
--- a/hw/i386/intel_iommu.c
63
+ case VIRT_GIC_VERSION_NOSEL:
71
+++ b/hw/i386/intel_iommu.c
64
+ vms->gic_version = VIRT_GIC_VERSION_2;
72
@@ -XXX,XX +XXX,XX @@ static int vtd_dev_to_context_entry(IntelIOMMUState *s, uint8_t bus_num,
65
+ return;
73
static int vtd_sync_shadow_page_hook(IOMMUTLBEntry *entry,
66
+ case VIRT_GIC_VERSION_2:
74
void *private)
67
+ return;
75
{
68
+ case VIRT_GIC_VERSION_3:
76
- memory_region_notify_iommu((IOMMUMemoryRegion *)private, *entry);
69
error_report(
77
+ memory_region_notify_iommu((IOMMUMemoryRegion *)private, 0, *entry);
70
- "Unable to determine GIC version supported by host");
78
return 0;
71
+ "gic-version=3 is not supported with kernel-irqchip=off");
79
}
72
exit(1);
80
73
- } else {
81
@@ -XXX,XX +XXX,XX @@ static void vtd_iotlb_page_invalidate_notify(IntelIOMMUState *s,
74
- if (probe_bitmap & KVM_ARM_VGIC_V3) {
82
.addr_mask = size - 1,
75
- vms->gic_version = VIRT_GIC_VERSION_3;
83
.perm = IOMMU_NONE,
76
- } else {
84
};
77
- vms->gic_version = VIRT_GIC_VERSION_2;
85
- memory_region_notify_iommu(&vtd_as->iommu, entry);
78
- }
86
+ memory_region_notify_iommu(&vtd_as->iommu, 0, entry);
87
}
79
}
88
}
80
}
89
}
81
- } else if (vms->gic_version == VIRT_GIC_VERSION_NOSEL) {
90
@@ -XXX,XX +XXX,XX @@ static bool vtd_process_device_iotlb_desc(IntelIOMMUState *s,
91
entry.iova = addr;
92
entry.perm = IOMMU_NONE;
93
entry.translated_addr = 0;
94
- memory_region_notify_iommu(&vtd_dev_as->iommu, entry);
95
+ memory_region_notify_iommu(&vtd_dev_as->iommu, 0, entry);
96
97
done:
98
return true;
99
diff --git a/hw/ppc/spapr_iommu.c b/hw/ppc/spapr_iommu.c
100
index XXXXXXX..XXXXXXX 100644
101
--- a/hw/ppc/spapr_iommu.c
102
+++ b/hw/ppc/spapr_iommu.c
103
@@ -XXX,XX +XXX,XX @@ static target_ulong put_tce_emu(sPAPRTCETable *tcet, target_ulong ioba,
104
entry.translated_addr = tce & page_mask;
105
entry.addr_mask = ~page_mask;
106
entry.perm = spapr_tce_iommu_access_flags(tce);
107
- memory_region_notify_iommu(&tcet->iommu, entry);
108
+ memory_region_notify_iommu(&tcet->iommu, 0, entry);
109
110
return H_SUCCESS;
111
}
112
diff --git a/hw/s390x/s390-pci-inst.c b/hw/s390x/s390-pci-inst.c
113
index XXXXXXX..XXXXXXX 100644
114
--- a/hw/s390x/s390-pci-inst.c
115
+++ b/hw/s390x/s390-pci-inst.c
116
@@ -XXX,XX +XXX,XX @@ static void s390_pci_update_iotlb(S390PCIIOMMU *iommu, S390IOTLBEntry *entry)
117
}
118
119
notify.perm = IOMMU_NONE;
120
- memory_region_notify_iommu(&iommu->iommu_mr, notify);
121
+ memory_region_notify_iommu(&iommu->iommu_mr, 0, notify);
122
notify.perm = entry->perm;
123
}
124
125
@@ -XXX,XX +XXX,XX @@ static void s390_pci_update_iotlb(S390PCIIOMMU *iommu, S390IOTLBEntry *entry)
126
g_hash_table_replace(iommu->iotlb, &cache->iova, cache);
127
}
128
129
- memory_region_notify_iommu(&iommu->iommu_mr, notify);
130
+ memory_region_notify_iommu(&iommu->iommu_mr, 0, notify);
131
}
132
133
int rpcit_service_call(S390CPU *cpu, uint8_t r1, uint8_t r2, uintptr_t ra)
134
diff --git a/hw/vfio/common.c b/hw/vfio/common.c
135
index XXXXXXX..XXXXXXX 100644
136
--- a/hw/vfio/common.c
137
+++ b/hw/vfio/common.c
138
@@ -XXX,XX +XXX,XX @@ static void vfio_listener_region_add(MemoryListener *listener,
139
if (memory_region_is_iommu(section->mr)) {
140
VFIOGuestIOMMU *giommu;
141
IOMMUMemoryRegion *iommu_mr = IOMMU_MEMORY_REGION(section->mr);
142
+ int iommu_idx;
143
144
trace_vfio_listener_region_add_iommu(iova, end);
145
/*
146
@@ -XXX,XX +XXX,XX @@ static void vfio_listener_region_add(MemoryListener *listener,
147
llend = int128_add(int128_make64(section->offset_within_region),
148
section->size);
149
llend = int128_sub(llend, int128_one());
150
+ iommu_idx = memory_region_iommu_attrs_to_index(iommu_mr,
151
+ MEMTXATTRS_UNSPECIFIED);
152
iommu_notifier_init(&giommu->n, vfio_iommu_map_notify,
153
IOMMU_NOTIFIER_ALL,
154
section->offset_within_region,
155
- int128_get64(llend));
156
+ int128_get64(llend),
157
+ iommu_idx);
158
QLIST_INSERT_HEAD(&container->giommu_list, giommu, giommu_next);
159
160
memory_region_register_iommu_notifier(section->mr, &giommu->n);
161
diff --git a/hw/virtio/vhost.c b/hw/virtio/vhost.c
162
index XXXXXXX..XXXXXXX 100644
163
--- a/hw/virtio/vhost.c
164
+++ b/hw/virtio/vhost.c
165
@@ -XXX,XX +XXX,XX @@ static void vhost_iommu_region_add(MemoryListener *listener,
166
iommu_listener);
167
struct vhost_iommu *iommu;
168
Int128 end;
169
+ int iommu_idx;
170
+ IOMMUMemoryRegion *iommu_mr = IOMMU_MEMORY_REGION(section->mr);
171
172
if (!memory_region_is_iommu(section->mr)) {
173
return;
174
@@ -XXX,XX +XXX,XX @@ static void vhost_iommu_region_add(MemoryListener *listener,
175
end = int128_add(int128_make64(section->offset_within_region),
176
section->size);
177
end = int128_sub(end, int128_one());
178
+ iommu_idx = memory_region_iommu_attrs_to_index(iommu_mr,
179
+ MEMTXATTRS_UNSPECIFIED);
180
iommu_notifier_init(&iommu->n, vhost_iommu_unmap_notify,
181
IOMMU_NOTIFIER_UNMAP,
182
section->offset_within_region,
183
- int128_get64(end));
184
+ int128_get64(end),
185
+ iommu_idx);
186
iommu->mr = section->mr;
187
iommu->iommu_offset = section->offset_within_address_space -
188
section->offset_within_region;
189
diff --git a/memory.c b/memory.c
190
index XXXXXXX..XXXXXXX 100644
191
--- a/memory.c
192
+++ b/memory.c
193
@@ -XXX,XX +XXX,XX @@ void memory_region_register_iommu_notifier(MemoryRegion *mr,
194
iommu_mr = IOMMU_MEMORY_REGION(mr);
195
assert(n->notifier_flags != IOMMU_NOTIFIER_NONE);
196
assert(n->start <= n->end);
197
+ assert(n->iommu_idx >= 0 &&
198
+ n->iommu_idx < memory_region_iommu_num_indexes(iommu_mr));
199
+
82
+
200
QLIST_INSERT_HEAD(&iommu_mr->iommu_notify, n, node);
83
+ probe_bitmap = kvm_arm_vgic_probe();
201
memory_region_update_iommu_notify_flags(iommu_mr);
84
+ if (!probe_bitmap) {
202
}
85
+ error_report("Unable to determine GIC version supported by host");
203
@@ -XXX,XX +XXX,XX @@ void memory_region_notify_one(IOMMUNotifier *notifier,
86
+ exit(1);
204
}
205
206
void memory_region_notify_iommu(IOMMUMemoryRegion *iommu_mr,
207
+ int iommu_idx,
208
IOMMUTLBEntry entry)
209
{
210
IOMMUNotifier *iommu_notifier;
211
@@ -XXX,XX +XXX,XX @@ void memory_region_notify_iommu(IOMMUMemoryRegion *iommu_mr,
212
assert(memory_region_is_iommu(MEMORY_REGION(iommu_mr)));
213
214
IOMMU_NOTIFIER_FOREACH(iommu_notifier, iommu_mr) {
215
- memory_region_notify_one(iommu_notifier, &entry);
216
+ if (iommu_notifier->iommu_idx == iommu_idx) {
217
+ memory_region_notify_one(iommu_notifier, &entry);
218
+ }
87
+ }
88
+
89
+ switch (vms->gic_version) {
90
+ case VIRT_GIC_VERSION_HOST:
91
+ case VIRT_GIC_VERSION_MAX:
92
+ if (probe_bitmap & KVM_ARM_VGIC_V3) {
93
+ vms->gic_version = VIRT_GIC_VERSION_3;
94
+ } else {
95
+ vms->gic_version = VIRT_GIC_VERSION_2;
96
+ }
97
+ return;
98
+ case VIRT_GIC_VERSION_NOSEL:
99
+ vms->gic_version = VIRT_GIC_VERSION_2;
100
+ break;
101
+ case VIRT_GIC_VERSION_2:
102
+ case VIRT_GIC_VERSION_3:
103
+ break;
104
+ }
105
+
106
+ /* Check chosen version is effectively supported by the host */
107
+ if (vms->gic_version == VIRT_GIC_VERSION_2 &&
108
+ !(probe_bitmap & KVM_ARM_VGIC_V2)) {
109
+ error_report("host does not support in-kernel GICv2 emulation");
110
+ exit(1);
111
+ } else if (vms->gic_version == VIRT_GIC_VERSION_3 &&
112
+ !(probe_bitmap & KVM_ARM_VGIC_V3)) {
113
+ error_report("host does not support in-kernel GICv3 emulation");
114
+ exit(1);
115
+ }
116
+ return;
117
+ }
118
+
119
+ /* TCG mode */
120
+ switch (vms->gic_version) {
121
+ case VIRT_GIC_VERSION_NOSEL:
122
vms->gic_version = VIRT_GIC_VERSION_2;
123
+ break;
124
+ case VIRT_GIC_VERSION_MAX:
125
+ vms->gic_version = VIRT_GIC_VERSION_3;
126
+ break;
127
+ case VIRT_GIC_VERSION_HOST:
128
+ error_report("gic-version=host requires KVM");
129
+ exit(1);
130
+ case VIRT_GIC_VERSION_2:
131
+ case VIRT_GIC_VERSION_3:
132
+ break;
219
}
133
}
220
}
134
}
221
135
222
--
136
--
223
2.17.1
137
2.20.1
224
138
225
139
diff view generated by jsdifflib
1
From: Shannon Zhao <zhaoshenglong@huawei.com>
1
From: Eric Auger <eric.auger@redhat.com>
2
2
3
While for_each_dist_irq_reg loop starts from GIC_INTERNAL, it forgot to
3
At the moment if the end-user does not specify the gic-version along
4
offset the date array and index. This will overlap the GICR registers
4
with KVM acceleration, v2 is set by default. However most of the
5
value and leave the last GIC_INTERNAL irq's registers out of update.
5
systems now have GICv3 and sometimes they do not support GICv2
6
compatibility.
6
7
7
Fixes: 367b9f527becdd20ddf116e17a3c0c2bbc486920
8
This patch keeps the default v2 selection in all cases except
8
Cc: qemu-stable@nongnu.org
9
in the KVM accelerated mode when either
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
10
- the host does not support GICv2 in-kernel emulation or
10
Reviewed-by: Eric Auger <eric.auger@redhat.com>
11
- number of VCPUS exceeds 8.
11
Signed-off-by: Shannon Zhao <zhaoshenglong@huawei.com>
12
13
Those cases did not work anyway so we do not break any compatibility.
14
Now we get v3 selected in such a case.
15
16
Signed-off-by: Eric Auger <eric.auger@redhat.com>
17
Reported-by: Dr. David Alan Gilbert <dgilbert@redhat.com>
18
Reviewed-by: Andrew Jones <drjones@redhat.com>
19
Message-id: 20200311131618.7187-7-eric.auger@redhat.com
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
20
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
---
21
---
14
hw/intc/arm_gicv3_kvm.c | 18 ++++++++++++++++--
22
hw/arm/virt.c | 17 ++++++++++++++++-
15
1 file changed, 16 insertions(+), 2 deletions(-)
23
1 file changed, 16 insertions(+), 1 deletion(-)
16
24
17
diff --git a/hw/intc/arm_gicv3_kvm.c b/hw/intc/arm_gicv3_kvm.c
25
diff --git a/hw/arm/virt.c b/hw/arm/virt.c
18
index XXXXXXX..XXXXXXX 100644
26
index XXXXXXX..XXXXXXX 100644
19
--- a/hw/intc/arm_gicv3_kvm.c
27
--- a/hw/arm/virt.c
20
+++ b/hw/intc/arm_gicv3_kvm.c
28
+++ b/hw/arm/virt.c
21
@@ -XXX,XX +XXX,XX @@ static void kvm_dist_get_priority(GICv3State *s, uint32_t offset, uint8_t *bmp)
29
@@ -XXX,XX +XXX,XX @@ static void virt_set_memmap(VirtMachineState *vms)
22
uint32_t reg, *field;
30
*/
23
int irq;
31
static void finalize_gic_version(VirtMachineState *vms)
24
32
{
25
- field = (uint32_t *)bmp;
33
+ unsigned int max_cpus = MACHINE(vms)->smp.max_cpus;
26
+ /* For the KVM GICv3, affinity routing is always enabled, and the first 8
34
+
27
+ * GICD_IPRIORITYR<n> registers are always RAZ/WI. The corresponding
35
if (kvm_enabled()) {
28
+ * functionality is replaced by GICR_IPRIORITYR<n>. It doesn't need to
36
int probe_bitmap;
29
+ * sync them. So it needs to skip the field of GIC_INTERNAL irqs in bmp and
37
30
+ * offset.
38
@@ -XXX,XX +XXX,XX @@ static void finalize_gic_version(VirtMachineState *vms)
31
+ */
39
}
32
+ field = (uint32_t *)(bmp + GIC_INTERNAL);
40
return;
33
+ offset += (GIC_INTERNAL * 8) / 8;
41
case VIRT_GIC_VERSION_NOSEL:
34
for_each_dist_irq_reg(irq, s->num_irq, 8) {
42
- vms->gic_version = VIRT_GIC_VERSION_2;
35
kvm_gicd_access(s, offset, &reg, false);
43
+ if ((probe_bitmap & KVM_ARM_VGIC_V2) && max_cpus <= GIC_NCPU) {
36
*field = reg;
44
+ vms->gic_version = VIRT_GIC_VERSION_2;
37
@@ -XXX,XX +XXX,XX @@ static void kvm_dist_put_priority(GICv3State *s, uint32_t offset, uint8_t *bmp)
45
+ } else if (probe_bitmap & KVM_ARM_VGIC_V3) {
38
uint32_t reg, *field;
46
+ /*
39
int irq;
47
+ * in case the host does not support v2 in-kernel emulation or
40
48
+ * the end-user requested more than 8 VCPUs we now default
41
- field = (uint32_t *)bmp;
49
+ * to v3. In any case defaulting to v2 would be broken.
42
+ /* For the KVM GICv3, affinity routing is always enabled, and the first 8
50
+ */
43
+ * GICD_IPRIORITYR<n> registers are always RAZ/WI. The corresponding
51
+ vms->gic_version = VIRT_GIC_VERSION_3;
44
+ * functionality is replaced by GICR_IPRIORITYR<n>. It doesn't need to
52
+ } else if (max_cpus > GIC_NCPU) {
45
+ * sync them. So it needs to skip the field of GIC_INTERNAL irqs in bmp and
53
+ error_report("host only supports in-kernel GICv2 emulation "
46
+ * offset.
54
+ "but more than 8 vcpus are requested");
47
+ */
55
+ exit(1);
48
+ field = (uint32_t *)(bmp + GIC_INTERNAL);
56
+ }
49
+ offset += (GIC_INTERNAL * 8) / 8;
57
break;
50
for_each_dist_irq_reg(irq, s->num_irq, 8) {
58
case VIRT_GIC_VERSION_2:
51
reg = *field;
59
case VIRT_GIC_VERSION_3:
52
kvm_gicd_access(s, offset, &reg, true);
53
--
60
--
54
2.17.1
61
2.20.1
55
62
56
63
diff view generated by jsdifflib
Deleted patch
1
Convert the pflash_cfi02 device away from using the old_mmio field
2
of MemoryRegionOps.
3
1
4
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
5
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
6
Acked-by: Max Reitz <mreitz@redhat.com>
7
Message-id: 20180601141223.26630-4-peter.maydell@linaro.org
8
---
9
hw/block/pflash_cfi02.c | 97 ++++++++---------------------------------
10
1 file changed, 18 insertions(+), 79 deletions(-)
11
12
diff --git a/hw/block/pflash_cfi02.c b/hw/block/pflash_cfi02.c
13
index XXXXXXX..XXXXXXX 100644
14
--- a/hw/block/pflash_cfi02.c
15
+++ b/hw/block/pflash_cfi02.c
16
@@ -XXX,XX +XXX,XX @@ static void pflash_write (pflash_t *pfl, hwaddr offset,
17
pfl->cmd = 0;
18
}
19
20
-
21
-static uint32_t pflash_readb_be(void *opaque, hwaddr addr)
22
+static uint64_t pflash_be_readfn(void *opaque, hwaddr addr, unsigned size)
23
{
24
- return pflash_read(opaque, addr, 1, 1);
25
+ return pflash_read(opaque, addr, size, 1);
26
}
27
28
-static uint32_t pflash_readb_le(void *opaque, hwaddr addr)
29
+static void pflash_be_writefn(void *opaque, hwaddr addr,
30
+ uint64_t value, unsigned size)
31
{
32
- return pflash_read(opaque, addr, 1, 0);
33
+ pflash_write(opaque, addr, value, size, 1);
34
}
35
36
-static uint32_t pflash_readw_be(void *opaque, hwaddr addr)
37
+static uint64_t pflash_le_readfn(void *opaque, hwaddr addr, unsigned size)
38
{
39
- pflash_t *pfl = opaque;
40
-
41
- return pflash_read(pfl, addr, 2, 1);
42
+ return pflash_read(opaque, addr, size, 0);
43
}
44
45
-static uint32_t pflash_readw_le(void *opaque, hwaddr addr)
46
+static void pflash_le_writefn(void *opaque, hwaddr addr,
47
+ uint64_t value, unsigned size)
48
{
49
- pflash_t *pfl = opaque;
50
-
51
- return pflash_read(pfl, addr, 2, 0);
52
-}
53
-
54
-static uint32_t pflash_readl_be(void *opaque, hwaddr addr)
55
-{
56
- pflash_t *pfl = opaque;
57
-
58
- return pflash_read(pfl, addr, 4, 1);
59
-}
60
-
61
-static uint32_t pflash_readl_le(void *opaque, hwaddr addr)
62
-{
63
- pflash_t *pfl = opaque;
64
-
65
- return pflash_read(pfl, addr, 4, 0);
66
-}
67
-
68
-static void pflash_writeb_be(void *opaque, hwaddr addr,
69
- uint32_t value)
70
-{
71
- pflash_write(opaque, addr, value, 1, 1);
72
-}
73
-
74
-static void pflash_writeb_le(void *opaque, hwaddr addr,
75
- uint32_t value)
76
-{
77
- pflash_write(opaque, addr, value, 1, 0);
78
-}
79
-
80
-static void pflash_writew_be(void *opaque, hwaddr addr,
81
- uint32_t value)
82
-{
83
- pflash_t *pfl = opaque;
84
-
85
- pflash_write(pfl, addr, value, 2, 1);
86
-}
87
-
88
-static void pflash_writew_le(void *opaque, hwaddr addr,
89
- uint32_t value)
90
-{
91
- pflash_t *pfl = opaque;
92
-
93
- pflash_write(pfl, addr, value, 2, 0);
94
-}
95
-
96
-static void pflash_writel_be(void *opaque, hwaddr addr,
97
- uint32_t value)
98
-{
99
- pflash_t *pfl = opaque;
100
-
101
- pflash_write(pfl, addr, value, 4, 1);
102
-}
103
-
104
-static void pflash_writel_le(void *opaque, hwaddr addr,
105
- uint32_t value)
106
-{
107
- pflash_t *pfl = opaque;
108
-
109
- pflash_write(pfl, addr, value, 4, 0);
110
+ pflash_write(opaque, addr, value, size, 0);
111
}
112
113
static const MemoryRegionOps pflash_cfi02_ops_be = {
114
- .old_mmio = {
115
- .read = { pflash_readb_be, pflash_readw_be, pflash_readl_be, },
116
- .write = { pflash_writeb_be, pflash_writew_be, pflash_writel_be, },
117
- },
118
+ .read = pflash_be_readfn,
119
+ .write = pflash_be_writefn,
120
+ .valid.min_access_size = 1,
121
+ .valid.max_access_size = 4,
122
.endianness = DEVICE_NATIVE_ENDIAN,
123
};
124
125
static const MemoryRegionOps pflash_cfi02_ops_le = {
126
- .old_mmio = {
127
- .read = { pflash_readb_le, pflash_readw_le, pflash_readl_le, },
128
- .write = { pflash_writeb_le, pflash_writew_le, pflash_writel_le, },
129
- },
130
+ .read = pflash_le_readfn,
131
+ .write = pflash_le_writefn,
132
+ .valid.min_access_size = 1,
133
+ .valid.max_access_size = 4,
134
.endianness = DEVICE_NATIVE_ENDIAN,
135
};
136
137
--
138
2.17.1
139
140
diff view generated by jsdifflib
Deleted patch
1
Convert the pckbd device away from using the old_mmio field
2
of MemoryRegionOps. This change only affects the memory-mapped
3
variant of the i8042, which is used by the Unicore32 'puv3'
4
board and the MIPS Jazz boards 'magnum' and 'pica61'.
5
1
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
8
Message-id: 20180601141223.26630-6-peter.maydell@linaro.org
9
---
10
hw/input/pckbd.c | 14 ++++++++------
11
1 file changed, 8 insertions(+), 6 deletions(-)
12
13
diff --git a/hw/input/pckbd.c b/hw/input/pckbd.c
14
index XXXXXXX..XXXXXXX 100644
15
--- a/hw/input/pckbd.c
16
+++ b/hw/input/pckbd.c
17
@@ -XXX,XX +XXX,XX @@ static const VMStateDescription vmstate_kbd = {
18
};
19
20
/* Memory mapped interface */
21
-static uint32_t kbd_mm_readb (void *opaque, hwaddr addr)
22
+static uint64_t kbd_mm_readfn(void *opaque, hwaddr addr, unsigned size)
23
{
24
KBDState *s = opaque;
25
26
@@ -XXX,XX +XXX,XX @@ static uint32_t kbd_mm_readb (void *opaque, hwaddr addr)
27
return kbd_read_data(s, 0, 1) & 0xff;
28
}
29
30
-static void kbd_mm_writeb (void *opaque, hwaddr addr, uint32_t value)
31
+static void kbd_mm_writefn(void *opaque, hwaddr addr,
32
+ uint64_t value, unsigned size)
33
{
34
KBDState *s = opaque;
35
36
@@ -XXX,XX +XXX,XX @@ static void kbd_mm_writeb (void *opaque, hwaddr addr, uint32_t value)
37
kbd_write_data(s, 0, value & 0xff, 1);
38
}
39
40
+
41
static const MemoryRegionOps i8042_mmio_ops = {
42
+ .read = kbd_mm_readfn,
43
+ .write = kbd_mm_writefn,
44
+ .valid.min_access_size = 1,
45
+ .valid.max_access_size = 4,
46
.endianness = DEVICE_NATIVE_ENDIAN,
47
- .old_mmio = {
48
- .read = { kbd_mm_readb, kbd_mm_readb, kbd_mm_readb },
49
- .write = { kbd_mm_writeb, kbd_mm_writeb, kbd_mm_writeb },
50
- },
51
};
52
53
void i8042_mm_init(qemu_irq kbd_irq, qemu_irq mouse_irq,
54
--
55
2.17.1
56
57
diff view generated by jsdifflib
Deleted patch
1
The stellaris board is still using the legacy armv7m_init() function,
2
which predates conversion of the ARMv7M into a proper QOM container
3
object. Make the board code directly create the ARMv7M object instead.
4
1
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
7
Reviewed-by: Stefan Hajnoczi <stefanha@redhat.com>
8
Message-id: 20180601144328.23817-2-peter.maydell@linaro.org
9
---
10
hw/arm/stellaris.c | 12 ++++++++++--
11
1 file changed, 10 insertions(+), 2 deletions(-)
12
13
diff --git a/hw/arm/stellaris.c b/hw/arm/stellaris.c
14
index XXXXXXX..XXXXXXX 100644
15
--- a/hw/arm/stellaris.c
16
+++ b/hw/arm/stellaris.c
17
@@ -XXX,XX +XXX,XX @@
18
#include "qemu/log.h"
19
#include "exec/address-spaces.h"
20
#include "sysemu/sysemu.h"
21
+#include "hw/arm/armv7m.h"
22
#include "hw/char/pl011.h"
23
#include "hw/misc/unimp.h"
24
#include "cpu.h"
25
@@ -XXX,XX +XXX,XX @@ static void stellaris_init(MachineState *ms, stellaris_board_info *board)
26
&error_fatal);
27
memory_region_add_subregion(system_memory, 0x20000000, sram);
28
29
- nvic = armv7m_init(system_memory, flash_size, NUM_IRQ_LINES,
30
- ms->kernel_filename, ms->cpu_type);
31
+ nvic = qdev_create(NULL, TYPE_ARMV7M);
32
+ qdev_prop_set_uint32(nvic, "num-irq", NUM_IRQ_LINES);
33
+ qdev_prop_set_string(nvic, "cpu-type", ms->cpu_type);
34
+ object_property_set_link(OBJECT(nvic), OBJECT(get_system_memory()),
35
+ "memory", &error_abort);
36
+ /* This will exit with an error if the user passed us a bad cpu_type */
37
+ qdev_init_nofail(nvic);
38
39
qdev_connect_gpio_out_named(nvic, "SYSRESETREQ", 0,
40
qemu_allocate_irq(&do_sys_reset, NULL, 0));
41
@@ -XXX,XX +XXX,XX @@ static void stellaris_init(MachineState *ms, stellaris_board_info *board)
42
create_unimplemented_device("analogue-comparator", 0x4003c000, 0x1000);
43
create_unimplemented_device("hibernation", 0x400fc000, 0x1000);
44
create_unimplemented_device("flash-control", 0x400fd000, 0x1000);
45
+
46
+ armv7m_load_kernel(ARM_CPU(first_cpu), ms->kernel_filename, flash_size);
47
}
48
49
/* FIXME: Figure out how to generate these from stellaris_boards. */
50
--
51
2.17.1
52
53
diff view generated by jsdifflib
Deleted patch
1
Remove the now-unused armv7m_init() function. This was a legacy from
2
before we properly QOMified ARMv7M, and it has some flaws:
3
1
4
* it combines work that needs to be done by an SoC object (creating
5
and initializing the TYPE_ARMV7M object) with work that needs to
6
be done by the board model (setting the system up to load the ELF
7
file specified with -kernel)
8
* TYPE_ARMV7M creation failure is fatal, but an SoC object wants to
9
arrange to propagate the failure outward
10
* it uses allocate-and-create via qdev_create() whereas the current
11
preferred style for SoC objects is to do creation in-place
12
13
Board and SoC models can instead do the two jobs this function
14
was doing themselves, in the right places and with whatever their
15
preferred style/error handling is.
16
17
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
18
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
19
Reviewed-by: Stefan Hajnoczi <stefanha@redhat.com>
20
Message-id: 20180601144328.23817-3-peter.maydell@linaro.org
21
---
22
include/hw/arm/arm.h | 8 ++------
23
hw/arm/armv7m.c | 21 ---------------------
24
2 files changed, 2 insertions(+), 27 deletions(-)
25
26
diff --git a/include/hw/arm/arm.h b/include/hw/arm/arm.h
27
index XXXXXXX..XXXXXXX 100644
28
--- a/include/hw/arm/arm.h
29
+++ b/include/hw/arm/arm.h
30
@@ -XXX,XX +XXX,XX @@ typedef enum {
31
ARM_ENDIANNESS_BE32,
32
} arm_endianness;
33
34
-/* armv7m.c */
35
-DeviceState *armv7m_init(MemoryRegion *system_memory, int mem_size, int num_irq,
36
- const char *kernel_filename, const char *cpu_type);
37
/**
38
* armv7m_load_kernel:
39
* @cpu: CPU
40
@@ -XXX,XX +XXX,XX @@ DeviceState *armv7m_init(MemoryRegion *system_memory, int mem_size, int num_irq,
41
* @mem_size: mem_size: maximum image size to load
42
*
43
* Load the guest image for an ARMv7M system. This must be called by
44
- * any ARMv7M board, either directly or via armv7m_init(). (This is
45
- * necessary to ensure that the CPU resets correctly on system reset,
46
- * as well as for kernel loading.)
47
+ * any ARMv7M board. (This is necessary to ensure that the CPU resets
48
+ * correctly on system reset, as well as for kernel loading.)
49
*/
50
void armv7m_load_kernel(ARMCPU *cpu, const char *kernel_filename, int mem_size);
51
52
diff --git a/hw/arm/armv7m.c b/hw/arm/armv7m.c
53
index XXXXXXX..XXXXXXX 100644
54
--- a/hw/arm/armv7m.c
55
+++ b/hw/arm/armv7m.c
56
@@ -XXX,XX +XXX,XX @@ static void armv7m_reset(void *opaque)
57
cpu_reset(CPU(cpu));
58
}
59
60
-/* Init CPU and memory for a v7-M based board.
61
- mem_size is in bytes.
62
- Returns the ARMv7M device. */
63
-
64
-DeviceState *armv7m_init(MemoryRegion *system_memory, int mem_size, int num_irq,
65
- const char *kernel_filename, const char *cpu_type)
66
-{
67
- DeviceState *armv7m;
68
-
69
- armv7m = qdev_create(NULL, TYPE_ARMV7M);
70
- qdev_prop_set_uint32(armv7m, "num-irq", num_irq);
71
- qdev_prop_set_string(armv7m, "cpu-type", cpu_type);
72
- object_property_set_link(OBJECT(armv7m), OBJECT(get_system_memory()),
73
- "memory", &error_abort);
74
- /* This will exit with an error if the user passed us a bad cpu_type */
75
- qdev_init_nofail(armv7m);
76
-
77
- armv7m_load_kernel(ARM_CPU(first_cpu), kernel_filename, mem_size);
78
- return armv7m;
79
-}
80
-
81
void armv7m_load_kernel(ARMCPU *cpu, const char *kernel_filename, int mem_size)
82
{
83
int image_size;
84
--
85
2.17.1
86
87
diff view generated by jsdifflib
Deleted patch
1
The Cortex-M CPU and its NVIC are two intimately intertwined parts of
2
the same hardware; it is not possible to use one without the other.
3
Unfortunately a lot of our board models don't do any sanity checking
4
on the CPU type the user asks for, so a command line like
5
qemu-system-arm -M versatilepb -cpu cortex-m3
6
will create an M3 without an NVIC, and coredump immediately.
7
In the other direction, trying a non-M-profile CPU in an M-profile
8
board won't blow up, but doesn't do anything useful either:
9
qemu-system-arm -M lm3s6965evb -cpu arm926
10
1
11
Add some checking in the NVIC and CPU realize functions that the
12
user isn't trying to use an NVIC without an M-profile CPU or
13
an M-profile CPU without an NVIC, so we can produce a helpful
14
error message rather than a core dump.
15
16
Fixes: https://bugs.launchpad.net/qemu/+bug/1766896
17
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
18
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
19
Message-id: 20180601160355.15393-1-peter.maydell@linaro.org
20
---
21
hw/arm/armv7m.c | 7 ++++++-
22
hw/intc/armv7m_nvic.c | 6 +++++-
23
target/arm/cpu.c | 18 ++++++++++++++++++
24
3 files changed, 29 insertions(+), 2 deletions(-)
25
26
diff --git a/hw/arm/armv7m.c b/hw/arm/armv7m.c
27
index XXXXXXX..XXXXXXX 100644
28
--- a/hw/arm/armv7m.c
29
+++ b/hw/arm/armv7m.c
30
@@ -XXX,XX +XXX,XX @@ static void armv7m_realize(DeviceState *dev, Error **errp)
31
return;
32
}
33
}
34
+
35
+ /* Tell the CPU where the NVIC is; it will fail realize if it doesn't
36
+ * have one.
37
+ */
38
+ s->cpu->env.nvic = &s->nvic;
39
+
40
object_property_set_bool(OBJECT(s->cpu), true, "realized", &err);
41
if (err != NULL) {
42
error_propagate(errp, err);
43
@@ -XXX,XX +XXX,XX @@ static void armv7m_realize(DeviceState *dev, Error **errp)
44
sbd = SYS_BUS_DEVICE(&s->nvic);
45
sysbus_connect_irq(sbd, 0,
46
qdev_get_gpio_in(DEVICE(s->cpu), ARM_CPU_IRQ));
47
- s->cpu->env.nvic = &s->nvic;
48
49
memory_region_add_subregion(&s->container, 0xe000e000,
50
sysbus_mmio_get_region(sbd, 0));
51
diff --git a/hw/intc/armv7m_nvic.c b/hw/intc/armv7m_nvic.c
52
index XXXXXXX..XXXXXXX 100644
53
--- a/hw/intc/armv7m_nvic.c
54
+++ b/hw/intc/armv7m_nvic.c
55
@@ -XXX,XX +XXX,XX @@ static void armv7m_nvic_realize(DeviceState *dev, Error **errp)
56
int regionlen;
57
58
s->cpu = ARM_CPU(qemu_get_cpu(0));
59
- assert(s->cpu);
60
+
61
+ if (!s->cpu || !arm_feature(&s->cpu->env, ARM_FEATURE_M)) {
62
+ error_setg(errp, "The NVIC can only be used with a Cortex-M CPU");
63
+ return;
64
+ }
65
66
if (s->num_irq > NVIC_MAX_IRQ) {
67
error_setg(errp, "num-irq %d exceeds NVIC maximum", s->num_irq);
68
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
69
index XXXXXXX..XXXXXXX 100644
70
--- a/target/arm/cpu.c
71
+++ b/target/arm/cpu.c
72
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_realizefn(DeviceState *dev, Error **errp)
73
return;
74
}
75
76
+#ifndef CONFIG_USER_ONLY
77
+ /* The NVIC and M-profile CPU are two halves of a single piece of
78
+ * hardware; trying to use one without the other is a command line
79
+ * error and will result in segfaults if not caught here.
80
+ */
81
+ if (arm_feature(env, ARM_FEATURE_M)) {
82
+ if (!env->nvic) {
83
+ error_setg(errp, "This board cannot be used with Cortex-M CPUs");
84
+ return;
85
+ }
86
+ } else {
87
+ if (env->nvic) {
88
+ error_setg(errp, "This board can only be used with Cortex-M CPUs");
89
+ return;
90
+ }
91
+ }
92
+#endif
93
+
94
cpu_exec_realizefn(cs, &local_err);
95
if (local_err != NULL) {
96
error_propagate(errp, local_err);
97
--
98
2.17.1
99
100
diff view generated by jsdifflib
Deleted patch
1
The codebase has a bit of a mix of different multiline
2
comment styles. State a preference for the Linux kernel
3
style:
4
/*
5
* Star on the left for each line.
6
* Leading slash-star and trailing star-slash
7
* each go on a line of their own.
8
*/
9
1
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
Reviewed-by: Eric Blake <eblake@redhat.com>
12
Reviewed-by: Cornelia Huck <cohuck@redhat.com>
13
Reviewed-by: Markus Armbruster <armbru@redhat.com>
14
Reviewed-by: Alex Williamson <alex.williamson@redhat.com>
15
Reviewed-by: Thomas Huth <thuth@redhat.com>
16
Reviewed-by: John Snow <jsnow@redhat.com>
17
Reviewed-by: Stefan Hajnoczi <stefanha@redhat.com>
18
Message-id: 20180611141716.3813-1-peter.maydell@linaro.org
19
---
20
CODING_STYLE | 17 +++++++++++++++++
21
1 file changed, 17 insertions(+)
22
23
diff --git a/CODING_STYLE b/CODING_STYLE
24
index XXXXXXX..XXXXXXX 100644
25
--- a/CODING_STYLE
26
+++ b/CODING_STYLE
27
@@ -XXX,XX +XXX,XX @@ We use traditional C-style /* */ comments and avoid // comments.
28
Rationale: The // form is valid in C99, so this is purely a matter of
29
consistency of style. The checkpatch script will warn you about this.
30
31
+Multiline comment blocks should have a row of stars on the left,
32
+and the initial /* and terminating */ both on their own lines:
33
+ /*
34
+ * like
35
+ * this
36
+ */
37
+This is the same format required by the Linux kernel coding style.
38
+
39
+(Some of the existing comments in the codebase use the GNU Coding
40
+Standards form which does not have stars on the left, or other
41
+variations; avoid these when writing new comments, but don't worry
42
+about converting to the preferred form unless you're editing that
43
+comment anyway.)
44
+
45
+Rationale: Consistency, and ease of visually picking out a multiline
46
+comment from the surrounding code.
47
+
48
8. trace-events style
49
50
8.1 0x prefix
51
--
52
2.17.1
53
54
diff view generated by jsdifflib
Deleted patch
1
Now we have stn_p() and ldn_p() we can use them in various
2
functions in exec.c that used to have their own switch-on-size code.
3
1
4
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
5
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
6
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
7
Message-id: 20180611171007.4165-4-peter.maydell@linaro.org
8
---
9
exec.c | 112 +++++----------------------------------------------------
10
1 file changed, 8 insertions(+), 104 deletions(-)
11
12
diff --git a/exec.c b/exec.c
13
index XXXXXXX..XXXXXXX 100644
14
--- a/exec.c
15
+++ b/exec.c
16
@@ -XXX,XX +XXX,XX @@ static void notdirty_mem_write(void *opaque, hwaddr ram_addr,
17
memory_notdirty_write_prepare(&ndi, current_cpu, current_cpu->mem_io_vaddr,
18
ram_addr, size);
19
20
- switch (size) {
21
- case 1:
22
- stb_p(qemu_map_ram_ptr(NULL, ram_addr), val);
23
- break;
24
- case 2:
25
- stw_p(qemu_map_ram_ptr(NULL, ram_addr), val);
26
- break;
27
- case 4:
28
- stl_p(qemu_map_ram_ptr(NULL, ram_addr), val);
29
- break;
30
- case 8:
31
- stq_p(qemu_map_ram_ptr(NULL, ram_addr), val);
32
- break;
33
- default:
34
- abort();
35
- }
36
+ stn_p(qemu_map_ram_ptr(NULL, ram_addr), size, val);
37
memory_notdirty_write_complete(&ndi);
38
}
39
40
@@ -XXX,XX +XXX,XX @@ static MemTxResult subpage_read(void *opaque, hwaddr addr, uint64_t *data,
41
if (res) {
42
return res;
43
}
44
- switch (len) {
45
- case 1:
46
- *data = ldub_p(buf);
47
- return MEMTX_OK;
48
- case 2:
49
- *data = lduw_p(buf);
50
- return MEMTX_OK;
51
- case 4:
52
- *data = (uint32_t)ldl_p(buf);
53
- return MEMTX_OK;
54
- case 8:
55
- *data = ldq_p(buf);
56
- return MEMTX_OK;
57
- default:
58
- abort();
59
- }
60
+ *data = ldn_p(buf, len);
61
+ return MEMTX_OK;
62
}
63
64
static MemTxResult subpage_write(void *opaque, hwaddr addr,
65
@@ -XXX,XX +XXX,XX @@ static MemTxResult subpage_write(void *opaque, hwaddr addr,
66
" value %"PRIx64"\n",
67
__func__, subpage, len, addr, value);
68
#endif
69
- switch (len) {
70
- case 1:
71
- stb_p(buf, value);
72
- break;
73
- case 2:
74
- stw_p(buf, value);
75
- break;
76
- case 4:
77
- stl_p(buf, value);
78
- break;
79
- case 8:
80
- stq_p(buf, value);
81
- break;
82
- default:
83
- abort();
84
- }
85
+ stn_p(buf, len, value);
86
return flatview_write(subpage->fv, addr + subpage->base, attrs, buf, len);
87
}
88
89
@@ -XXX,XX +XXX,XX @@ static MemTxResult flatview_write_continue(FlatView *fv, hwaddr addr,
90
l = memory_access_size(mr, l, addr1);
91
/* XXX: could force current_cpu to NULL to avoid
92
potential bugs */
93
- switch (l) {
94
- case 8:
95
- /* 64 bit write access */
96
- val = ldq_p(buf);
97
- result |= memory_region_dispatch_write(mr, addr1, val, 8,
98
- attrs);
99
- break;
100
- case 4:
101
- /* 32 bit write access */
102
- val = (uint32_t)ldl_p(buf);
103
- result |= memory_region_dispatch_write(mr, addr1, val, 4,
104
- attrs);
105
- break;
106
- case 2:
107
- /* 16 bit write access */
108
- val = lduw_p(buf);
109
- result |= memory_region_dispatch_write(mr, addr1, val, 2,
110
- attrs);
111
- break;
112
- case 1:
113
- /* 8 bit write access */
114
- val = ldub_p(buf);
115
- result |= memory_region_dispatch_write(mr, addr1, val, 1,
116
- attrs);
117
- break;
118
- default:
119
- abort();
120
- }
121
+ val = ldn_p(buf, l);
122
+ result |= memory_region_dispatch_write(mr, addr1, val, l, attrs);
123
} else {
124
/* RAM case */
125
ptr = qemu_ram_ptr_length(mr->ram_block, addr1, &l, false);
126
@@ -XXX,XX +XXX,XX @@ MemTxResult flatview_read_continue(FlatView *fv, hwaddr addr,
127
/* I/O case */
128
release_lock |= prepare_mmio_access(mr);
129
l = memory_access_size(mr, l, addr1);
130
- switch (l) {
131
- case 8:
132
- /* 64 bit read access */
133
- result |= memory_region_dispatch_read(mr, addr1, &val, 8,
134
- attrs);
135
- stq_p(buf, val);
136
- break;
137
- case 4:
138
- /* 32 bit read access */
139
- result |= memory_region_dispatch_read(mr, addr1, &val, 4,
140
- attrs);
141
- stl_p(buf, val);
142
- break;
143
- case 2:
144
- /* 16 bit read access */
145
- result |= memory_region_dispatch_read(mr, addr1, &val, 2,
146
- attrs);
147
- stw_p(buf, val);
148
- break;
149
- case 1:
150
- /* 8 bit read access */
151
- result |= memory_region_dispatch_read(mr, addr1, &val, 1,
152
- attrs);
153
- stb_p(buf, val);
154
- break;
155
- default:
156
- abort();
157
- }
158
+ result |= memory_region_dispatch_read(mr, addr1, &val, l, attrs);
159
+ stn_p(buf, l, val);
160
} else {
161
/* RAM case */
162
ptr = qemu_ram_ptr_length(mr->ram_block, addr1, &l, false);
163
--
164
2.17.1
165
166
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Beata Michalska <beata.michalska@linaro.org>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
KVM_SET_VCPU_EVENTS might actually lead to vcpu registers being modified.
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
As such this should be the last step of sync to avoid potential overwriting
5
Message-id: 20180613015641.5667-7-richard.henderson@linaro.org
5
of whatever changes KVM might have done.
6
7
Signed-off-by: Beata Michalska <beata.michalska@linaro.org>
8
Reviewed-by: Andrew Jones <drjones@redhat.com>
9
Message-id: 20200312003401.29017-2-beata.michalska@linaro.org
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
11
---
8
target/arm/helper-sve.h | 2 +
12
target/arm/kvm32.c | 15 ++++++++++-----
9
target/arm/sve_helper.c | 12 ++
13
target/arm/kvm64.c | 15 ++++++++++-----
10
target/arm/translate-sve.c | 328 +++++++++++++++++++++++++++++++++++++
14
2 files changed, 20 insertions(+), 10 deletions(-)
11
target/arm/sve.decode | 20 +++
12
4 files changed, 362 insertions(+)
13
15
14
diff --git a/target/arm/helper-sve.h b/target/arm/helper-sve.h
16
diff --git a/target/arm/kvm32.c b/target/arm/kvm32.c
15
index XXXXXXX..XXXXXXX 100644
17
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/helper-sve.h
18
--- a/target/arm/kvm32.c
17
+++ b/target/arm/helper-sve.h
19
+++ b/target/arm/kvm32.c
18
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_4(sve_trn_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
20
@@ -XXX,XX +XXX,XX @@ int kvm_arch_put_registers(CPUState *cs, int level)
19
DEF_HELPER_FLAGS_4(sve_compact_s, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
21
return ret;
20
DEF_HELPER_FLAGS_4(sve_compact_d, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, i32)
21
22
+DEF_HELPER_FLAGS_2(sve_last_active_element, TCG_CALL_NO_RWG, s32, ptr, i32)
23
+
24
DEF_HELPER_FLAGS_5(sve_and_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
25
DEF_HELPER_FLAGS_5(sve_bic_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
26
DEF_HELPER_FLAGS_5(sve_eor_pppp, TCG_CALL_NO_RWG, void, ptr, ptr, ptr, ptr, i32)
27
diff --git a/target/arm/sve_helper.c b/target/arm/sve_helper.c
28
index XXXXXXX..XXXXXXX 100644
29
--- a/target/arm/sve_helper.c
30
+++ b/target/arm/sve_helper.c
31
@@ -XXX,XX +XXX,XX @@ void HELPER(sve_compact_d)(void *vd, void *vn, void *vg, uint32_t desc)
32
d[j] = 0;
33
}
22
}
34
}
23
35
+
24
- ret = kvm_put_vcpu_events(cpu);
36
+/* Similar to the ARM LastActiveElement pseudocode function, except the
25
- if (ret) {
37
+ * result is multiplied by the element size. This includes the not found
26
- return ret;
38
+ * indication; e.g. not found for esz=3 is -8.
27
- }
39
+ */
28
-
40
+int32_t HELPER(sve_last_active_element)(void *vg, uint32_t pred_desc)
29
write_cpustate_to_list(cpu, true);
41
+{
30
42
+ intptr_t oprsz = extract32(pred_desc, 0, SIMD_OPRSZ_BITS) + 2;
31
if (!write_list_to_kvmstate(cpu, level)) {
43
+ intptr_t esz = extract32(pred_desc, SIMD_DATA_SHIFT, 2);
32
return EINVAL;
44
+
33
}
45
+ return last_active_element(vg, DIV_ROUND_UP(oprsz, 8), esz);
34
46
+}
35
+ /*
47
diff --git a/target/arm/translate-sve.c b/target/arm/translate-sve.c
36
+ * Setting VCPU events should be triggered after syncing the registers
48
index XXXXXXX..XXXXXXX 100644
37
+ * to avoid overwriting potential changes made by KVM upon calling
49
--- a/target/arm/translate-sve.c
38
+ * KVM_SET_VCPU_EVENTS ioctl
50
+++ b/target/arm/translate-sve.c
51
@@ -XXX,XX +XXX,XX @@ static bool trans_COMPACT(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
52
return do_zpz_ool(s, a, fns[a->esz]);
53
}
54
55
+/* Call the helper that computes the ARM LastActiveElement pseudocode
56
+ * function, scaled by the element size. This includes the not found
57
+ * indication; e.g. not found for esz=3 is -8.
58
+ */
59
+static void find_last_active(DisasContext *s, TCGv_i32 ret, int esz, int pg)
60
+{
61
+ /* Predicate sizes may be smaller and cannot use simd_desc. We cannot
62
+ * round up, as we do elsewhere, because we need the exact size.
63
+ */
39
+ */
64
+ TCGv_ptr t_p = tcg_temp_new_ptr();
40
+ ret = kvm_put_vcpu_events(cpu);
65
+ TCGv_i32 t_desc;
41
+ if (ret) {
66
+ unsigned vsz = pred_full_reg_size(s);
42
+ return ret;
67
+ unsigned desc;
68
+
69
+ desc = vsz - 2;
70
+ desc = deposit32(desc, SIMD_DATA_SHIFT, 2, esz);
71
+
72
+ tcg_gen_addi_ptr(t_p, cpu_env, pred_full_reg_offset(s, pg));
73
+ t_desc = tcg_const_i32(desc);
74
+
75
+ gen_helper_sve_last_active_element(ret, t_p, t_desc);
76
+
77
+ tcg_temp_free_i32(t_desc);
78
+ tcg_temp_free_ptr(t_p);
79
+}
80
+
81
+/* Increment LAST to the offset of the next element in the vector,
82
+ * wrapping around to 0.
83
+ */
84
+static void incr_last_active(DisasContext *s, TCGv_i32 last, int esz)
85
+{
86
+ unsigned vsz = vec_full_reg_size(s);
87
+
88
+ tcg_gen_addi_i32(last, last, 1 << esz);
89
+ if (is_power_of_2(vsz)) {
90
+ tcg_gen_andi_i32(last, last, vsz - 1);
91
+ } else {
92
+ TCGv_i32 max = tcg_const_i32(vsz);
93
+ TCGv_i32 zero = tcg_const_i32(0);
94
+ tcg_gen_movcond_i32(TCG_COND_GEU, last, last, max, zero, last);
95
+ tcg_temp_free_i32(max);
96
+ tcg_temp_free_i32(zero);
97
+ }
98
+}
99
+
100
+/* If LAST < 0, set LAST to the offset of the last element in the vector. */
101
+static void wrap_last_active(DisasContext *s, TCGv_i32 last, int esz)
102
+{
103
+ unsigned vsz = vec_full_reg_size(s);
104
+
105
+ if (is_power_of_2(vsz)) {
106
+ tcg_gen_andi_i32(last, last, vsz - 1);
107
+ } else {
108
+ TCGv_i32 max = tcg_const_i32(vsz - (1 << esz));
109
+ TCGv_i32 zero = tcg_const_i32(0);
110
+ tcg_gen_movcond_i32(TCG_COND_LT, last, last, zero, max, last);
111
+ tcg_temp_free_i32(max);
112
+ tcg_temp_free_i32(zero);
113
+ }
114
+}
115
+
116
+/* Load an unsigned element of ESZ from BASE+OFS. */
117
+static TCGv_i64 load_esz(TCGv_ptr base, int ofs, int esz)
118
+{
119
+ TCGv_i64 r = tcg_temp_new_i64();
120
+
121
+ switch (esz) {
122
+ case 0:
123
+ tcg_gen_ld8u_i64(r, base, ofs);
124
+ break;
125
+ case 1:
126
+ tcg_gen_ld16u_i64(r, base, ofs);
127
+ break;
128
+ case 2:
129
+ tcg_gen_ld32u_i64(r, base, ofs);
130
+ break;
131
+ case 3:
132
+ tcg_gen_ld_i64(r, base, ofs);
133
+ break;
134
+ default:
135
+ g_assert_not_reached();
136
+ }
137
+ return r;
138
+}
139
+
140
+/* Load an unsigned element of ESZ from RM[LAST]. */
141
+static TCGv_i64 load_last_active(DisasContext *s, TCGv_i32 last,
142
+ int rm, int esz)
143
+{
144
+ TCGv_ptr p = tcg_temp_new_ptr();
145
+ TCGv_i64 r;
146
+
147
+ /* Convert offset into vector into offset into ENV.
148
+ * The final adjustment for the vector register base
149
+ * is added via constant offset to the load.
150
+ */
151
+#ifdef HOST_WORDS_BIGENDIAN
152
+ /* Adjust for element ordering. See vec_reg_offset. */
153
+ if (esz < 3) {
154
+ tcg_gen_xori_i32(last, last, 8 - (1 << esz));
155
+ }
156
+#endif
157
+ tcg_gen_ext_i32_ptr(p, last);
158
+ tcg_gen_add_ptr(p, p, cpu_env);
159
+
160
+ r = load_esz(p, vec_full_reg_offset(s, rm), esz);
161
+ tcg_temp_free_ptr(p);
162
+
163
+ return r;
164
+}
165
+
166
+/* Compute CLAST for a Zreg. */
167
+static bool do_clast_vector(DisasContext *s, arg_rprr_esz *a, bool before)
168
+{
169
+ TCGv_i32 last;
170
+ TCGLabel *over;
171
+ TCGv_i64 ele;
172
+ unsigned vsz, esz = a->esz;
173
+
174
+ if (!sve_access_check(s)) {
175
+ return true;
176
+ }
43
+ }
177
+
44
+
178
+ last = tcg_temp_local_new_i32();
45
kvm_arm_sync_mpstate_to_kvm(cpu);
179
+ over = gen_new_label();
46
180
+
47
return ret;
181
+ find_last_active(s, last, esz, a->pg);
48
diff --git a/target/arm/kvm64.c b/target/arm/kvm64.c
182
+
49
index XXXXXXX..XXXXXXX 100644
183
+ /* There is of course no movcond for a 2048-bit vector,
50
--- a/target/arm/kvm64.c
184
+ * so we must branch over the actual store.
51
+++ b/target/arm/kvm64.c
185
+ */
52
@@ -XXX,XX +XXX,XX @@ int kvm_arch_put_registers(CPUState *cs, int level)
186
+ tcg_gen_brcondi_i32(TCG_COND_LT, last, 0, over);
53
return ret;
187
+
54
}
188
+ if (!before) {
55
189
+ incr_last_active(s, last, esz);
56
- ret = kvm_put_vcpu_events(cpu);
57
- if (ret) {
58
- return ret;
59
- }
60
-
61
write_cpustate_to_list(cpu, true);
62
63
if (!write_list_to_kvmstate(cpu, level)) {
64
return -EINVAL;
65
}
66
67
+ /*
68
+ * Setting VCPU events should be triggered after syncing the registers
69
+ * to avoid overwriting potential changes made by KVM upon calling
70
+ * KVM_SET_VCPU_EVENTS ioctl
71
+ */
72
+ ret = kvm_put_vcpu_events(cpu);
73
+ if (ret) {
74
+ return ret;
190
+ }
75
+ }
191
+
76
+
192
+ ele = load_last_active(s, last, a->rm, esz);
77
kvm_arm_sync_mpstate_to_kvm(cpu);
193
+ tcg_temp_free_i32(last);
78
194
+
79
return ret;
195
+ vsz = vec_full_reg_size(s);
196
+ tcg_gen_gvec_dup_i64(esz, vec_full_reg_offset(s, a->rd), vsz, vsz, ele);
197
+ tcg_temp_free_i64(ele);
198
+
199
+ /* If this insn used MOVPRFX, we may need a second move. */
200
+ if (a->rd != a->rn) {
201
+ TCGLabel *done = gen_new_label();
202
+ tcg_gen_br(done);
203
+
204
+ gen_set_label(over);
205
+ do_mov_z(s, a->rd, a->rn);
206
+
207
+ gen_set_label(done);
208
+ } else {
209
+ gen_set_label(over);
210
+ }
211
+ return true;
212
+}
213
+
214
+static bool trans_CLASTA_z(DisasContext *s, arg_rprr_esz *a, uint32_t insn)
215
+{
216
+ return do_clast_vector(s, a, false);
217
+}
218
+
219
+static bool trans_CLASTB_z(DisasContext *s, arg_rprr_esz *a, uint32_t insn)
220
+{
221
+ return do_clast_vector(s, a, true);
222
+}
223
+
224
+/* Compute CLAST for a scalar. */
225
+static void do_clast_scalar(DisasContext *s, int esz, int pg, int rm,
226
+ bool before, TCGv_i64 reg_val)
227
+{
228
+ TCGv_i32 last = tcg_temp_new_i32();
229
+ TCGv_i64 ele, cmp, zero;
230
+
231
+ find_last_active(s, last, esz, pg);
232
+
233
+ /* Extend the original value of last prior to incrementing. */
234
+ cmp = tcg_temp_new_i64();
235
+ tcg_gen_ext_i32_i64(cmp, last);
236
+
237
+ if (!before) {
238
+ incr_last_active(s, last, esz);
239
+ }
240
+
241
+ /* The conceit here is that while last < 0 indicates not found, after
242
+ * adjusting for cpu_env->vfp.zregs[rm], it is still a valid address
243
+ * from which we can load garbage. We then discard the garbage with
244
+ * a conditional move.
245
+ */
246
+ ele = load_last_active(s, last, rm, esz);
247
+ tcg_temp_free_i32(last);
248
+
249
+ zero = tcg_const_i64(0);
250
+ tcg_gen_movcond_i64(TCG_COND_GE, reg_val, cmp, zero, ele, reg_val);
251
+
252
+ tcg_temp_free_i64(zero);
253
+ tcg_temp_free_i64(cmp);
254
+ tcg_temp_free_i64(ele);
255
+}
256
+
257
+/* Compute CLAST for a Vreg. */
258
+static bool do_clast_fp(DisasContext *s, arg_rpr_esz *a, bool before)
259
+{
260
+ if (sve_access_check(s)) {
261
+ int esz = a->esz;
262
+ int ofs = vec_reg_offset(s, a->rd, 0, esz);
263
+ TCGv_i64 reg = load_esz(cpu_env, ofs, esz);
264
+
265
+ do_clast_scalar(s, esz, a->pg, a->rn, before, reg);
266
+ write_fp_dreg(s, a->rd, reg);
267
+ tcg_temp_free_i64(reg);
268
+ }
269
+ return true;
270
+}
271
+
272
+static bool trans_CLASTA_v(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
273
+{
274
+ return do_clast_fp(s, a, false);
275
+}
276
+
277
+static bool trans_CLASTB_v(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
278
+{
279
+ return do_clast_fp(s, a, true);
280
+}
281
+
282
+/* Compute CLAST for a Xreg. */
283
+static bool do_clast_general(DisasContext *s, arg_rpr_esz *a, bool before)
284
+{
285
+ TCGv_i64 reg;
286
+
287
+ if (!sve_access_check(s)) {
288
+ return true;
289
+ }
290
+
291
+ reg = cpu_reg(s, a->rd);
292
+ switch (a->esz) {
293
+ case 0:
294
+ tcg_gen_ext8u_i64(reg, reg);
295
+ break;
296
+ case 1:
297
+ tcg_gen_ext16u_i64(reg, reg);
298
+ break;
299
+ case 2:
300
+ tcg_gen_ext32u_i64(reg, reg);
301
+ break;
302
+ case 3:
303
+ break;
304
+ default:
305
+ g_assert_not_reached();
306
+ }
307
+
308
+ do_clast_scalar(s, a->esz, a->pg, a->rn, before, reg);
309
+ return true;
310
+}
311
+
312
+static bool trans_CLASTA_r(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
313
+{
314
+ return do_clast_general(s, a, false);
315
+}
316
+
317
+static bool trans_CLASTB_r(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
318
+{
319
+ return do_clast_general(s, a, true);
320
+}
321
+
322
+/* Compute LAST for a scalar. */
323
+static TCGv_i64 do_last_scalar(DisasContext *s, int esz,
324
+ int pg, int rm, bool before)
325
+{
326
+ TCGv_i32 last = tcg_temp_new_i32();
327
+ TCGv_i64 ret;
328
+
329
+ find_last_active(s, last, esz, pg);
330
+ if (before) {
331
+ wrap_last_active(s, last, esz);
332
+ } else {
333
+ incr_last_active(s, last, esz);
334
+ }
335
+
336
+ ret = load_last_active(s, last, rm, esz);
337
+ tcg_temp_free_i32(last);
338
+ return ret;
339
+}
340
+
341
+/* Compute LAST for a Vreg. */
342
+static bool do_last_fp(DisasContext *s, arg_rpr_esz *a, bool before)
343
+{
344
+ if (sve_access_check(s)) {
345
+ TCGv_i64 val = do_last_scalar(s, a->esz, a->pg, a->rn, before);
346
+ write_fp_dreg(s, a->rd, val);
347
+ tcg_temp_free_i64(val);
348
+ }
349
+ return true;
350
+}
351
+
352
+static bool trans_LASTA_v(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
353
+{
354
+ return do_last_fp(s, a, false);
355
+}
356
+
357
+static bool trans_LASTB_v(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
358
+{
359
+ return do_last_fp(s, a, true);
360
+}
361
+
362
+/* Compute LAST for a Xreg. */
363
+static bool do_last_general(DisasContext *s, arg_rpr_esz *a, bool before)
364
+{
365
+ if (sve_access_check(s)) {
366
+ TCGv_i64 val = do_last_scalar(s, a->esz, a->pg, a->rn, before);
367
+ tcg_gen_mov_i64(cpu_reg(s, a->rd), val);
368
+ tcg_temp_free_i64(val);
369
+ }
370
+ return true;
371
+}
372
+
373
+static bool trans_LASTA_r(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
374
+{
375
+ return do_last_general(s, a, false);
376
+}
377
+
378
+static bool trans_LASTB_r(DisasContext *s, arg_rpr_esz *a, uint32_t insn)
379
+{
380
+ return do_last_general(s, a, true);
381
+}
382
+
383
/*
384
*** SVE Memory - 32-bit Gather and Unsized Contiguous Group
385
*/
386
diff --git a/target/arm/sve.decode b/target/arm/sve.decode
387
index XXXXXXX..XXXXXXX 100644
388
--- a/target/arm/sve.decode
389
+++ b/target/arm/sve.decode
390
@@ -XXX,XX +XXX,XX @@ TRN2_z 00000101 .. 1 ..... 011 101 ..... ..... @rd_rn_rm
391
# Note esz >= 2
392
COMPACT 00000101 .. 100001 100 ... ..... ..... @rd_pg_rn
393
394
+# SVE conditionally broadcast element to vector
395
+CLASTA_z 00000101 .. 10100 0 100 ... ..... ..... @rdn_pg_rm
396
+CLASTB_z 00000101 .. 10100 1 100 ... ..... ..... @rdn_pg_rm
397
+
398
+# SVE conditionally copy element to SIMD&FP scalar
399
+CLASTA_v 00000101 .. 10101 0 100 ... ..... ..... @rd_pg_rn
400
+CLASTB_v 00000101 .. 10101 1 100 ... ..... ..... @rd_pg_rn
401
+
402
+# SVE conditionally copy element to general register
403
+CLASTA_r 00000101 .. 11000 0 101 ... ..... ..... @rd_pg_rn
404
+CLASTB_r 00000101 .. 11000 1 101 ... ..... ..... @rd_pg_rn
405
+
406
+# SVE copy element to SIMD&FP scalar register
407
+LASTA_v 00000101 .. 10001 0 100 ... ..... ..... @rd_pg_rn
408
+LASTB_v 00000101 .. 10001 1 100 ... ..... ..... @rd_pg_rn
409
+
410
+# SVE copy element to general register
411
+LASTA_r 00000101 .. 10000 0 101 ... ..... ..... @rd_pg_rn
412
+LASTB_r 00000101 .. 10000 1 101 ... ..... ..... @rd_pg_rn
413
+
414
### SVE Predicate Logical Operations Group
415
416
# SVE predicate logical operations
417
--
80
--
418
2.17.1
81
2.20.1
419
82
420
83
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