1
Second pull request of the week; mostly RTH's support for some
1
A grab-bag of minor stuff for the end of the year. My to-review
2
new-in-v8.1/v8.3 instructions, and my v8M board model.
2
queue is not empty, but it it at least in single figures...
3
3
4
thanks
5
-- PMM
4
-- PMM
6
5
7
The following changes since commit 427cbc7e4136a061628cb4315cc8182ea36d772f:
6
The following changes since commit 5bfbd8170ce7acb98a1834ff49ed7340b0837144:
8
7
9
Merge remote-tracking branch 'remotes/mst/tags/for_upstream' into staging (2018-03-01 18:46:41 +0000)
8
Merge remote-tracking branch 'remotes/vivier2/tags/trivial-branch-for-6.0-pull-request' into staging (2020-12-14 20:32:38 +0000)
10
9
11
are available in the Git repository at:
10
are available in the Git repository at:
12
11
13
git://git.linaro.org/people/pmaydell/qemu-arm.git tags/pull-target-arm-20180302
12
https://git.linaro.org/people/pmaydell/qemu-arm.git tags/pull-target-arm-20201215
14
13
15
for you to fetch changes up to e66a67bf28e1b4fce2e3d72a2610dbd48d9d3078:
14
for you to fetch changes up to 23af268566069183285bebbdf95b1b37cb7c0942:
16
15
17
target/arm: Enable ARM_FEATURE_V8_FCMA (2018-03-02 11:03:45 +0000)
16
hw/block/m25p80: Fix Numonyx fast read dummy cycle count (2020-12-15 13:39:30 +0000)
18
17
19
----------------------------------------------------------------
18
----------------------------------------------------------------
20
target-arm queue:
19
target-arm queue:
21
* implement FCMA and RDM v8.1 and v8.3 instructions
20
* gdbstub: Correct misparsing of vCont C/S requests
22
* enable Cortex-M33 v8M core, and provide new mps2-an505 board model
21
* openrisc: Move pic_cpu code into CPU object proper
23
that uses it
22
* nios2: Move IIC code into CPU object proper
24
* decodetree: Propagate return value from translate subroutines
23
* Improve reporting of ROM overlap errors
25
* xlnx-zynqmp: Implement the RTC device
24
* xlnx-versal: Add USB support
25
* hw/misc/zynq_slcr: Avoid #DIV/0! error
26
* Numonyx: Fix dummy cycles and check for SPI mode on cmds
26
27
27
----------------------------------------------------------------
28
----------------------------------------------------------------
28
Alistair Francis (3):
29
Joe Komlodi (4):
29
xlnx-zynqmp-rtc: Initial commit
30
hw/block/m25p80: Make Numonyx config field names more accurate
30
xlnx-zynqmp-rtc: Add basic time support
31
hw/block/m25p80: Fix when VCFG XIP bit is set for Numonyx
31
xlnx-zynqmp: Connect the RTC device
32
hw/block/m25p80: Check SPI mode before running some Numonyx commands
33
hw/block/m25p80: Fix Numonyx fast read dummy cycle count
32
34
33
Peter Maydell (19):
35
Peter Maydell (11):
34
loader: Add new load_ramdisk_as()
36
gdbstub: Correct misparsing of vCont C/S requests
35
hw/arm/boot: Honour CPU's address space for image loads
37
hw/openrisc/openrisc_sim: Use IRQ splitter when connecting IRQ to multiple CPUs
36
hw/arm/armv7m: Honour CPU's address space for image loads
38
hw/openrisc/openrisc_sim: Abstract out "get IRQ x of CPU y"
37
target/arm: Define an IDAU interface
39
target/openrisc: Move pic_cpu code into CPU object proper
38
armv7m: Forward idau property to CPU object
40
target/nios2: Move IIC code into CPU object proper
39
target/arm: Define init-svtor property for the reset secure VTOR value
41
target/nios2: Move nios2_check_interrupts() into target/nios2
40
armv7m: Forward init-svtor property to CPU object
42
target/nios2: Use deposit32() to update ipending register
41
target/arm: Add Cortex-M33
43
hw/core/loader.c: Track last-seen ROM in rom_check_and_register_reset()
42
hw/misc/unimp: Move struct to header file
44
hw/core/loader.c: Improve reporting of ROM overlap errors
43
include/hw/or-irq.h: Add missing include guard
45
elf_ops.h: Don't truncate name of the ROM blobs we create
44
qdev: Add new qdev_init_gpio_in_named_with_opaque()
46
elf_ops.h: Be more verbose with ROM blob names
45
hw/core/split-irq: Device that splits IRQ lines
46
hw/misc/mps2-fpgaio: FPGA control block for MPS2 AN505
47
hw/misc/tz-ppc: Model TrustZone peripheral protection controller
48
hw/misc/iotkit-secctl: Arm IoT Kit security controller initial skeleton
49
hw/misc/iotkit-secctl: Add handling for PPCs
50
hw/misc/iotkit-secctl: Add remaining simple registers
51
hw/arm/iotkit: Model Arm IOT Kit
52
mps2-an505: New board model: MPS2 with AN505 Cortex-M33 FPGA image
53
47
54
Richard Henderson (17):
48
Philippe Mathieu-Daudé (1):
55
decodetree: Propagate return value from translate subroutines
49
hw/misc/zynq_slcr: Avoid #DIV/0! error
56
target/arm: Add ARM_FEATURE_V8_RDM
57
target/arm: Refactor disas_simd_indexed decode
58
target/arm: Refactor disas_simd_indexed size checks
59
target/arm: Decode aa64 armv8.1 scalar three same extra
60
target/arm: Decode aa64 armv8.1 three same extra
61
target/arm: Decode aa64 armv8.1 scalar/vector x indexed element
62
target/arm: Decode aa32 armv8.1 three same
63
target/arm: Decode aa32 armv8.1 two reg and a scalar
64
target/arm: Enable ARM_FEATURE_V8_RDM
65
target/arm: Add ARM_FEATURE_V8_FCMA
66
target/arm: Decode aa64 armv8.3 fcadd
67
target/arm: Decode aa64 armv8.3 fcmla
68
target/arm: Decode aa32 armv8.3 3-same
69
target/arm: Decode aa32 armv8.3 2-reg-index
70
target/arm: Decode t32 simd 3reg and 2reg_scalar extension
71
target/arm: Enable ARM_FEATURE_V8_FCMA
72
50
73
hw/arm/Makefile.objs | 2 +
51
Sai Pavan Boddu (2):
74
hw/core/Makefile.objs | 1 +
52
usb: Add versal-usb2-ctrl-regs module
75
hw/misc/Makefile.objs | 4 +
53
usb: xlnx-usb-subsystem: Add xilinx usb subsystem
76
hw/timer/Makefile.objs | 1 +
77
target/arm/Makefile.objs | 2 +-
78
include/hw/arm/armv7m.h | 5 +
79
include/hw/arm/iotkit.h | 109 ++++++
80
include/hw/arm/xlnx-zynqmp.h | 2 +
81
include/hw/core/split-irq.h | 57 +++
82
include/hw/irq.h | 4 +-
83
include/hw/loader.h | 12 +-
84
include/hw/misc/iotkit-secctl.h | 103 ++++++
85
include/hw/misc/mps2-fpgaio.h | 43 +++
86
include/hw/misc/tz-ppc.h | 101 ++++++
87
include/hw/misc/unimp.h | 10 +
88
include/hw/or-irq.h | 5 +
89
include/hw/qdev-core.h | 30 +-
90
include/hw/timer/xlnx-zynqmp-rtc.h | 86 +++++
91
target/arm/cpu.h | 8 +
92
target/arm/helper.h | 31 ++
93
target/arm/idau.h | 61 ++++
94
hw/arm/armv7m.c | 35 +-
95
hw/arm/boot.c | 119 ++++---
96
hw/arm/iotkit.c | 598 +++++++++++++++++++++++++++++++
97
hw/arm/mps2-tz.c | 503 ++++++++++++++++++++++++++
98
hw/arm/xlnx-zynqmp.c | 14 +
99
hw/core/loader.c | 8 +-
100
hw/core/qdev.c | 8 +-
101
hw/core/split-irq.c | 89 +++++
102
hw/misc/iotkit-secctl.c | 704 +++++++++++++++++++++++++++++++++++++
103
hw/misc/mps2-fpgaio.c | 176 ++++++++++
104
hw/misc/tz-ppc.c | 302 ++++++++++++++++
105
hw/misc/unimp.c | 10 -
106
hw/timer/xlnx-zynqmp-rtc.c | 272 ++++++++++++++
107
linux-user/elfload.c | 2 +
108
target/arm/cpu.c | 66 +++-
109
target/arm/cpu64.c | 2 +
110
target/arm/helper.c | 28 +-
111
target/arm/translate-a64.c | 514 +++++++++++++++++++++------
112
target/arm/translate.c | 275 +++++++++++++--
113
target/arm/vec_helper.c | 429 ++++++++++++++++++++++
114
default-configs/arm-softmmu.mak | 5 +
115
hw/misc/trace-events | 24 ++
116
hw/timer/trace-events | 3 +
117
scripts/decodetree.py | 5 +-
118
45 files changed, 4668 insertions(+), 200 deletions(-)
119
create mode 100644 include/hw/arm/iotkit.h
120
create mode 100644 include/hw/core/split-irq.h
121
create mode 100644 include/hw/misc/iotkit-secctl.h
122
create mode 100644 include/hw/misc/mps2-fpgaio.h
123
create mode 100644 include/hw/misc/tz-ppc.h
124
create mode 100644 include/hw/timer/xlnx-zynqmp-rtc.h
125
create mode 100644 target/arm/idau.h
126
create mode 100644 hw/arm/iotkit.c
127
create mode 100644 hw/arm/mps2-tz.c
128
create mode 100644 hw/core/split-irq.c
129
create mode 100644 hw/misc/iotkit-secctl.c
130
create mode 100644 hw/misc/mps2-fpgaio.c
131
create mode 100644 hw/misc/tz-ppc.c
132
create mode 100644 hw/timer/xlnx-zynqmp-rtc.c
133
create mode 100644 target/arm/vec_helper.c
134
54
55
Vikram Garhwal (2):
56
usb: Add DWC3 model
57
arm: xlnx-versal: Connect usb to virt-versal
58
59
include/hw/arm/xlnx-versal.h | 9 +
60
include/hw/elf_ops.h | 5 +-
61
include/hw/usb/hcd-dwc3.h | 55 +++
62
include/hw/usb/xlnx-usb-subsystem.h | 45 ++
63
include/hw/usb/xlnx-versal-usb2-ctrl-regs.h | 45 ++
64
target/nios2/cpu.h | 3 -
65
target/openrisc/cpu.h | 1 -
66
gdbstub.c | 2 +-
67
hw/arm/xlnx-versal-virt.c | 55 +++
68
hw/arm/xlnx-versal.c | 26 ++
69
hw/block/m25p80.c | 158 +++++--
70
hw/core/loader.c | 67 ++-
71
hw/intc/nios2_iic.c | 95 ----
72
hw/misc/zynq_slcr.c | 5 +
73
hw/nios2/10m50_devboard.c | 13 +-
74
hw/nios2/cpu_pic.c | 67 ---
75
hw/openrisc/openrisc_sim.c | 46 +-
76
hw/openrisc/pic_cpu.c | 61 ---
77
hw/usb/hcd-dwc3.c | 689 ++++++++++++++++++++++++++++
78
hw/usb/xlnx-usb-subsystem.c | 94 ++++
79
hw/usb/xlnx-versal-usb2-ctrl-regs.c | 229 +++++++++
80
softmmu/vl.c | 1 -
81
target/nios2/cpu.c | 29 ++
82
target/nios2/op_helper.c | 9 +
83
target/openrisc/cpu.c | 32 ++
84
MAINTAINERS | 1 -
85
hw/intc/meson.build | 1 -
86
hw/nios2/meson.build | 2 +-
87
hw/openrisc/Kconfig | 1 +
88
hw/openrisc/meson.build | 2 +-
89
hw/usb/Kconfig | 10 +
90
hw/usb/meson.build | 3 +
91
32 files changed, 1557 insertions(+), 304 deletions(-)
92
create mode 100644 include/hw/usb/hcd-dwc3.h
93
create mode 100644 include/hw/usb/xlnx-usb-subsystem.h
94
create mode 100644 include/hw/usb/xlnx-versal-usb2-ctrl-regs.h
95
delete mode 100644 hw/intc/nios2_iic.c
96
delete mode 100644 hw/nios2/cpu_pic.c
97
delete mode 100644 hw/openrisc/pic_cpu.c
98
create mode 100644 hw/usb/hcd-dwc3.c
99
create mode 100644 hw/usb/xlnx-usb-subsystem.c
100
create mode 100644 hw/usb/xlnx-versal-usb2-ctrl-regs.c
101
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
In the vCont packet, two of the command actions (C and S) take an
2
argument specifying the signal to be sent to the process/thread, which is
3
sent as an ASCII string of two hex digits which immediately follow the
4
'C' or 'S' character.
2
5
6
Our code for parsing this packet accidentally skipped the first of the
7
two bytes of the signal value, because it started parsing the hex string
8
at 'p + 1' when the preceding code had already moved past the 'C' or
9
'S' with "cur_action = *p++".
10
11
This meant that we would only do the right thing for signals below
12
10, and would misinterpret the rest. For instance, when the debugger
13
wants to send the process a SIGPROF (27 on x86-64) we mangle this into
14
a SIGSEGV (11).
15
16
Remove the accidental double increment.
17
18
Fixes: https://bugs.launchpad.net/qemu/+bug/1773743
19
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
20
Reviewed-by: Philippe Mathieu-Daudé <philmd@redhat.com>
3
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
21
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
22
Message-id: 20201121210342.10089-1-peter.maydell@linaro.org
5
Message-id: 20180228193125.20577-7-richard.henderson@linaro.org
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
23
---
8
target/arm/translate-a64.c | 29 +++++++++++++++++++++++++++++
24
gdbstub.c | 2 +-
9
1 file changed, 29 insertions(+)
25
1 file changed, 1 insertion(+), 1 deletion(-)
10
26
11
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
27
diff --git a/gdbstub.c b/gdbstub.c
12
index XXXXXXX..XXXXXXX 100644
28
index XXXXXXX..XXXXXXX 100644
13
--- a/target/arm/translate-a64.c
29
--- a/gdbstub.c
14
+++ b/target/arm/translate-a64.c
30
+++ b/gdbstub.c
15
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
31
@@ -XXX,XX +XXX,XX @@ static int gdb_handle_vcont(const char *p)
16
case 0x19: /* FMULX */
32
cur_action = *p++;
17
is_fp = true;
33
if (cur_action == 'C' || cur_action == 'S') {
18
break;
34
cur_action = qemu_tolower(cur_action);
19
+ case 0x1d: /* SQRDMLAH */
35
- res = qemu_strtoul(p + 1, &p, 16, &tmp);
20
+ case 0x1f: /* SQRDMLSH */
36
+ res = qemu_strtoul(p, &p, 16, &tmp);
21
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_RDM)) {
37
if (res) {
22
+ unallocated_encoding(s);
38
goto out;
23
+ return;
24
+ }
25
+ break;
26
default:
27
unallocated_encoding(s);
28
return;
29
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
30
tcg_op, tcg_idx);
31
}
32
break;
33
+ case 0x1d: /* SQRDMLAH */
34
+ read_vec_element_i32(s, tcg_res, rd, pass,
35
+ is_scalar ? size : MO_32);
36
+ if (size == 1) {
37
+ gen_helper_neon_qrdmlah_s16(tcg_res, cpu_env,
38
+ tcg_op, tcg_idx, tcg_res);
39
+ } else {
40
+ gen_helper_neon_qrdmlah_s32(tcg_res, cpu_env,
41
+ tcg_op, tcg_idx, tcg_res);
42
+ }
43
+ break;
44
+ case 0x1f: /* SQRDMLSH */
45
+ read_vec_element_i32(s, tcg_res, rd, pass,
46
+ is_scalar ? size : MO_32);
47
+ if (size == 1) {
48
+ gen_helper_neon_qrdmlsh_s16(tcg_res, cpu_env,
49
+ tcg_op, tcg_idx, tcg_res);
50
+ } else {
51
+ gen_helper_neon_qrdmlsh_s32(tcg_res, cpu_env,
52
+ tcg_op, tcg_idx, tcg_res);
53
+ }
54
+ break;
55
default:
56
g_assert_not_reached();
57
}
39
}
58
--
40
--
59
2.16.2
41
2.20.1
60
42
61
43
diff view generated by jsdifflib
1
Add remaining easy registers to iotkit-secctl:
1
openrisc_sim_net_init() attempts to connect the IRQ line from the
2
* NSCCFG just routes its two bits out to external GPIO lines
2
ethernet device to both CPUs in an SMP configuration by simply caling
3
* BRGINSTAT/BRGINTCLR/BRGINTEN can be dummies, because QEMU's
3
sysbus_connect_irq() for it twice. This doesn't work, because the
4
bus fabric can never report errors
4
second connection simply overrides the first.
5
6
Fix this by creating a TYPE_SPLIT_IRQ to split the IRQ in the SMP
7
case.
5
8
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Message-id: 20180220180325.29818-18-peter.maydell@linaro.org
10
Reviewed-by: Stafford Horne <shorne@gmail.com>
11
Message-id: 20201127225127.14770-2-peter.maydell@linaro.org
8
---
12
---
9
include/hw/misc/iotkit-secctl.h | 4 ++++
13
hw/openrisc/openrisc_sim.c | 13 +++++++++++--
10
hw/misc/iotkit-secctl.c | 32 ++++++++++++++++++++++++++------
14
hw/openrisc/Kconfig | 1 +
11
2 files changed, 30 insertions(+), 6 deletions(-)
15
2 files changed, 12 insertions(+), 2 deletions(-)
12
16
13
diff --git a/include/hw/misc/iotkit-secctl.h b/include/hw/misc/iotkit-secctl.h
17
diff --git a/hw/openrisc/openrisc_sim.c b/hw/openrisc/openrisc_sim.c
14
index XXXXXXX..XXXXXXX 100644
18
index XXXXXXX..XXXXXXX 100644
15
--- a/include/hw/misc/iotkit-secctl.h
19
--- a/hw/openrisc/openrisc_sim.c
16
+++ b/include/hw/misc/iotkit-secctl.h
20
+++ b/hw/openrisc/openrisc_sim.c
17
@@ -XXX,XX +XXX,XX @@
21
@@ -XXX,XX +XXX,XX @@
18
* + sysbus MMIO region 1 is the "non-secure privilege control block" registers
22
#include "hw/sysbus.h"
19
* + named GPIO output "sec_resp_cfg" indicating whether blocked accesses
23
#include "sysemu/qtest.h"
20
* should RAZ/WI or bus error
24
#include "sysemu/reset.h"
21
+ * + named GPIO output "nsc_cfg" whose value tracks the NSCCFG register value
25
+#include "hw/core/split-irq.h"
22
* Controlling the 2 APB PPCs in the IoTKit:
26
23
* + named GPIO outputs apb_ppc0_nonsec[0..2] and apb_ppc1_nonsec
27
#define KERNEL_LOAD_ADDR 0x100
24
* + named GPIO outputs apb_ppc0_ap[0..2] and apb_ppc1_ap
28
25
@@ -XXX,XX +XXX,XX @@ struct IoTKitSecCtl {
29
@@ -XXX,XX +XXX,XX @@ static void openrisc_sim_net_init(hwaddr base, hwaddr descriptors,
26
30
27
/*< public >*/
31
s = SYS_BUS_DEVICE(dev);
28
qemu_irq sec_resp_cfg;
32
sysbus_realize_and_unref(s, &error_fatal);
29
+ qemu_irq nsc_cfg_irq;
33
- for (i = 0; i < num_cpus; i++) {
30
34
- sysbus_connect_irq(s, 0, cpu_irqs[i][irq_pin]);
31
MemoryRegion s_regs;
35
+ if (num_cpus > 1) {
32
MemoryRegion ns_regs;
36
+ DeviceState *splitter = qdev_new(TYPE_SPLIT_IRQ);
33
@@ -XXX,XX +XXX,XX @@ struct IoTKitSecCtl {
37
+ qdev_prop_set_uint32(splitter, "num-lines", num_cpus);
34
uint32_t secppcintstat;
38
+ qdev_realize_and_unref(splitter, NULL, &error_fatal);
35
uint32_t secppcinten;
39
+ for (i = 0; i < num_cpus; i++) {
36
uint32_t secrespcfg;
40
+ qdev_connect_gpio_out(splitter, i, cpu_irqs[i][irq_pin]);
37
+ uint32_t nsccfg;
41
+ }
38
+ uint32_t brginten;
42
+ sysbus_connect_irq(s, 0, qdev_get_gpio_in(splitter, 0));
39
43
+ } else {
40
IoTKitSecCtlPPC apb[IOTS_NUM_APB_PPC];
44
+ sysbus_connect_irq(s, 0, cpu_irqs[0][irq_pin]);
41
IoTKitSecCtlPPC apbexp[IOTS_NUM_APB_EXP_PPC];
45
}
42
diff --git a/hw/misc/iotkit-secctl.c b/hw/misc/iotkit-secctl.c
46
sysbus_mmio_map(s, 0, base);
47
sysbus_mmio_map(s, 1, descriptors);
48
diff --git a/hw/openrisc/Kconfig b/hw/openrisc/Kconfig
43
index XXXXXXX..XXXXXXX 100644
49
index XXXXXXX..XXXXXXX 100644
44
--- a/hw/misc/iotkit-secctl.c
50
--- a/hw/openrisc/Kconfig
45
+++ b/hw/misc/iotkit-secctl.c
51
+++ b/hw/openrisc/Kconfig
46
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_s_read(void *opaque, hwaddr addr,
52
@@ -XXX,XX +XXX,XX @@ config OR1K_SIM
47
case A_SECRESPCFG:
53
select SERIAL
48
r = s->secrespcfg;
54
select OPENCORES_ETH
49
break;
55
select OMPIC
50
+ case A_NSCCFG:
56
+ select SPLIT_IRQ
51
+ r = s->nsccfg;
52
+ break;
53
case A_SECPPCINTSTAT:
54
r = s->secppcintstat;
55
break;
56
case A_SECPPCINTEN:
57
r = s->secppcinten;
58
break;
59
+ case A_BRGINTSTAT:
60
+ /* QEMU's bus fabric can never report errors as it doesn't buffer
61
+ * writes, so we never report bridge interrupts.
62
+ */
63
+ r = 0;
64
+ break;
65
+ case A_BRGINTEN:
66
+ r = s->brginten;
67
+ break;
68
case A_AHBNSPPCEXP0:
69
case A_AHBNSPPCEXP1:
70
case A_AHBNSPPCEXP2:
71
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_s_read(void *opaque, hwaddr addr,
72
case A_APBSPPPCEXP3:
73
r = s->apbexp[offset_to_ppc_idx(offset)].sp;
74
break;
75
- case A_NSCCFG:
76
case A_SECMPCINTSTATUS:
77
case A_SECMSCINTSTAT:
78
case A_SECMSCINTEN:
79
- case A_BRGINTSTAT:
80
- case A_BRGINTEN:
81
case A_NSMSCEXP:
82
qemu_log_mask(LOG_UNIMP,
83
"IoTKit SecCtl S block read: "
84
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_s_write(void *opaque, hwaddr addr,
85
}
86
87
switch (offset) {
88
+ case A_NSCCFG:
89
+ s->nsccfg = value & 3;
90
+ qemu_set_irq(s->nsc_cfg_irq, s->nsccfg);
91
+ break;
92
case A_SECRESPCFG:
93
value &= 1;
94
s->secrespcfg = value;
95
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_s_write(void *opaque, hwaddr addr,
96
s->secppcinten = value & 0x00f000f3;
97
foreach_ppc(s, iotkit_secctl_ppc_update_irq_enable);
98
break;
99
+ case A_BRGINTCLR:
100
+ break;
101
+ case A_BRGINTEN:
102
+ s->brginten = value & 0xffff0000;
103
+ break;
104
case A_AHBNSPPCEXP0:
105
case A_AHBNSPPCEXP1:
106
case A_AHBNSPPCEXP2:
107
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_s_write(void *opaque, hwaddr addr,
108
ppc = &s->apbexp[offset_to_ppc_idx(offset)];
109
iotkit_secctl_ppc_sp_write(ppc, value);
110
break;
111
- case A_NSCCFG:
112
case A_SECMSCINTCLR:
113
case A_SECMSCINTEN:
114
- case A_BRGINTCLR:
115
- case A_BRGINTEN:
116
qemu_log_mask(LOG_UNIMP,
117
"IoTKit SecCtl S block write: "
118
"unimplemented offset 0x%x\n", offset);
119
@@ -XXX,XX +XXX,XX @@ static void iotkit_secctl_reset(DeviceState *dev)
120
s->secppcintstat = 0;
121
s->secppcinten = 0;
122
s->secrespcfg = 0;
123
+ s->nsccfg = 0;
124
+ s->brginten = 0;
125
126
foreach_ppc(s, iotkit_secctl_reset_ppc);
127
}
128
@@ -XXX,XX +XXX,XX @@ static void iotkit_secctl_init(Object *obj)
129
}
130
131
qdev_init_gpio_out_named(dev, &s->sec_resp_cfg, "sec_resp_cfg", 1);
132
+ qdev_init_gpio_out_named(dev, &s->nsc_cfg_irq, "nsc_cfg", 1);
133
134
memory_region_init_io(&s->s_regs, obj, &iotkit_secctl_s_ops,
135
s, "iotkit-secctl-s-regs", 0x1000);
136
@@ -XXX,XX +XXX,XX @@ static const VMStateDescription iotkit_secctl_vmstate = {
137
VMSTATE_UINT32(secppcintstat, IoTKitSecCtl),
138
VMSTATE_UINT32(secppcinten, IoTKitSecCtl),
139
VMSTATE_UINT32(secrespcfg, IoTKitSecCtl),
140
+ VMSTATE_UINT32(nsccfg, IoTKitSecCtl),
141
+ VMSTATE_UINT32(brginten, IoTKitSecCtl),
142
VMSTATE_STRUCT_ARRAY(apb, IoTKitSecCtl, IOTS_NUM_APB_PPC, 1,
143
iotkit_secctl_ppc_vmstate, IoTKitSecCtlPPC),
144
VMSTATE_STRUCT_ARRAY(apbexp, IoTKitSecCtl, IOTS_NUM_APB_EXP_PPC, 1,
145
--
57
--
146
2.16.2
58
2.20.1
147
59
148
60
diff view generated by jsdifflib
1
The IoTKit Security Controller includes various registers
1
We're about to refactor the OpenRISC pic_cpu code in a way that means
2
that expose to software the controls for the Peripheral
2
that just grabbing the whole qemu_irq[] array of inbound IRQs for a
3
Protection Controllers in the system. Implement these.
3
CPU won't be possible any more. Abstract out a function for "return
4
the qemu_irq for IRQ x input of CPU y" so we can more easily replace
5
the implementation.
4
6
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Reviewed-by: Stafford Horne <shorne@gmail.com>
7
Message-id: 20180220180325.29818-17-peter.maydell@linaro.org
9
Message-id: 20201127225127.14770-3-peter.maydell@linaro.org
8
---
10
---
9
include/hw/misc/iotkit-secctl.h | 64 +++++++++-
11
hw/openrisc/openrisc_sim.c | 38 +++++++++++++++++++++-----------------
10
hw/misc/iotkit-secctl.c | 270 +++++++++++++++++++++++++++++++++++++---
12
1 file changed, 21 insertions(+), 17 deletions(-)
11
2 files changed, 315 insertions(+), 19 deletions(-)
12
13
13
diff --git a/include/hw/misc/iotkit-secctl.h b/include/hw/misc/iotkit-secctl.h
14
diff --git a/hw/openrisc/openrisc_sim.c b/hw/openrisc/openrisc_sim.c
14
index XXXXXXX..XXXXXXX 100644
15
index XXXXXXX..XXXXXXX 100644
15
--- a/include/hw/misc/iotkit-secctl.h
16
--- a/hw/openrisc/openrisc_sim.c
16
+++ b/include/hw/misc/iotkit-secctl.h
17
+++ b/hw/openrisc/openrisc_sim.c
17
@@ -XXX,XX +XXX,XX @@
18
@@ -XXX,XX +XXX,XX @@ static void main_cpu_reset(void *opaque)
18
* QEMU interface:
19
cpu_set_pc(cs, boot_info.bootstrap_pc);
19
* + sysbus MMIO region 0 is the "secure privilege control block" registers
20
}
20
* + sysbus MMIO region 1 is the "non-secure privilege control block" registers
21
21
+ * + named GPIO output "sec_resp_cfg" indicating whether blocked accesses
22
+static qemu_irq get_cpu_irq(OpenRISCCPU *cpus[], int cpunum, int irq_pin)
22
+ * should RAZ/WI or bus error
23
+ * Controlling the 2 APB PPCs in the IoTKit:
24
+ * + named GPIO outputs apb_ppc0_nonsec[0..2] and apb_ppc1_nonsec
25
+ * + named GPIO outputs apb_ppc0_ap[0..2] and apb_ppc1_ap
26
+ * + named GPIO outputs apb_ppc{0,1}_irq_enable
27
+ * + named GPIO outputs apb_ppc{0,1}_irq_clear
28
+ * + named GPIO inputs apb_ppc{0,1}_irq_status
29
+ * Controlling each of the 4 expansion APB PPCs which a system using the IoTKit
30
+ * might provide:
31
+ * + named GPIO outputs apb_ppcexp{0,1,2,3}_nonsec[0..15]
32
+ * + named GPIO outputs apb_ppcexp{0,1,2,3}_ap[0..15]
33
+ * + named GPIO outputs apb_ppcexp{0,1,2,3}_irq_enable
34
+ * + named GPIO outputs apb_ppcexp{0,1,2,3}_irq_clear
35
+ * + named GPIO inputs apb_ppcexp{0,1,2,3}_irq_status
36
+ * Controlling each of the 4 expansion AHB PPCs which a system using the IoTKit
37
+ * might provide:
38
+ * + named GPIO outputs ahb_ppcexp{0,1,2,3}_nonsec[0..15]
39
+ * + named GPIO outputs ahb_ppcexp{0,1,2,3}_ap[0..15]
40
+ * + named GPIO outputs ahb_ppcexp{0,1,2,3}_irq_enable
41
+ * + named GPIO outputs ahb_ppcexp{0,1,2,3}_irq_clear
42
+ * + named GPIO inputs ahb_ppcexp{0,1,2,3}_irq_status
43
*/
44
45
#ifndef IOTKIT_SECCTL_H
46
@@ -XXX,XX +XXX,XX @@
47
#define TYPE_IOTKIT_SECCTL "iotkit-secctl"
48
#define IOTKIT_SECCTL(obj) OBJECT_CHECK(IoTKitSecCtl, (obj), TYPE_IOTKIT_SECCTL)
49
50
-typedef struct IoTKitSecCtl {
51
+#define IOTS_APB_PPC0_NUM_PORTS 3
52
+#define IOTS_APB_PPC1_NUM_PORTS 1
53
+#define IOTS_PPC_NUM_PORTS 16
54
+#define IOTS_NUM_APB_PPC 2
55
+#define IOTS_NUM_APB_EXP_PPC 4
56
+#define IOTS_NUM_AHB_EXP_PPC 4
57
+
58
+typedef struct IoTKitSecCtl IoTKitSecCtl;
59
+
60
+/* State and IRQ lines relating to a PPC. For the
61
+ * PPCs in the IoTKit not all the IRQ lines are used.
62
+ */
63
+typedef struct IoTKitSecCtlPPC {
64
+ qemu_irq nonsec[IOTS_PPC_NUM_PORTS];
65
+ qemu_irq ap[IOTS_PPC_NUM_PORTS];
66
+ qemu_irq irq_enable;
67
+ qemu_irq irq_clear;
68
+
69
+ uint32_t ns;
70
+ uint32_t sp;
71
+ uint32_t nsp;
72
+
73
+ /* Number of ports actually present */
74
+ int numports;
75
+ /* Offset of this PPC's interrupt bits in SECPPCINTSTAT */
76
+ int irq_bit_offset;
77
+ IoTKitSecCtl *parent;
78
+} IoTKitSecCtlPPC;
79
+
80
+struct IoTKitSecCtl {
81
/*< private >*/
82
SysBusDevice parent_obj;
83
84
/*< public >*/
85
+ qemu_irq sec_resp_cfg;
86
87
MemoryRegion s_regs;
88
MemoryRegion ns_regs;
89
-} IoTKitSecCtl;
90
+
91
+ uint32_t secppcintstat;
92
+ uint32_t secppcinten;
93
+ uint32_t secrespcfg;
94
+
95
+ IoTKitSecCtlPPC apb[IOTS_NUM_APB_PPC];
96
+ IoTKitSecCtlPPC apbexp[IOTS_NUM_APB_EXP_PPC];
97
+ IoTKitSecCtlPPC ahbexp[IOTS_NUM_APB_EXP_PPC];
98
+};
99
100
#endif
101
diff --git a/hw/misc/iotkit-secctl.c b/hw/misc/iotkit-secctl.c
102
index XXXXXXX..XXXXXXX 100644
103
--- a/hw/misc/iotkit-secctl.c
104
+++ b/hw/misc/iotkit-secctl.c
105
@@ -XXX,XX +XXX,XX @@ static const uint8_t iotkit_secctl_ns_idregs[] = {
106
0x0d, 0xf0, 0x05, 0xb1,
107
};
108
109
+/* The register sets for the various PPCs (AHB internal, APB internal,
110
+ * AHB expansion, APB expansion) are all set up so that they are
111
+ * in 16-aligned blocks so offsets 0xN0, 0xN4, 0xN8, 0xNC are PPCs
112
+ * 0, 1, 2, 3 of that type, so we can convert a register address offset
113
+ * into an an index into a PPC array easily.
114
+ */
115
+static inline int offset_to_ppc_idx(uint32_t offset)
116
+{
23
+{
117
+ return extract32(offset, 2, 2);
24
+ return cpus[cpunum]->env.irq[irq_pin];
118
+}
25
+}
119
+
26
+
120
+typedef void PerPPCFunction(IoTKitSecCtlPPC *ppc);
27
static void openrisc_sim_net_init(hwaddr base, hwaddr descriptors,
121
+
28
- int num_cpus, qemu_irq **cpu_irqs,
122
+static void foreach_ppc(IoTKitSecCtl *s, PerPPCFunction *fn)
29
+ int num_cpus, OpenRISCCPU *cpus[],
123
+{
30
int irq_pin, NICInfo *nd)
124
+ int i;
125
+
126
+ for (i = 0; i < IOTS_NUM_APB_PPC; i++) {
127
+ fn(&s->apb[i]);
128
+ }
129
+ for (i = 0; i < IOTS_NUM_APB_EXP_PPC; i++) {
130
+ fn(&s->apbexp[i]);
131
+ }
132
+ for (i = 0; i < IOTS_NUM_AHB_EXP_PPC; i++) {
133
+ fn(&s->ahbexp[i]);
134
+ }
135
+}
136
+
137
static MemTxResult iotkit_secctl_s_read(void *opaque, hwaddr addr,
138
uint64_t *pdata,
139
unsigned size, MemTxAttrs attrs)
140
{
31
{
141
uint64_t r;
32
DeviceState *dev;
142
uint32_t offset = addr & ~0x3;
33
@@ -XXX,XX +XXX,XX @@ static void openrisc_sim_net_init(hwaddr base, hwaddr descriptors,
143
+ IoTKitSecCtl *s = IOTKIT_SECCTL(opaque);
34
qdev_prop_set_uint32(splitter, "num-lines", num_cpus);
144
35
qdev_realize_and_unref(splitter, NULL, &error_fatal);
145
switch (offset) {
36
for (i = 0; i < num_cpus; i++) {
146
case A_AHBNSPPC0:
37
- qdev_connect_gpio_out(splitter, i, cpu_irqs[i][irq_pin]);
147
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_s_read(void *opaque, hwaddr addr,
38
+ qdev_connect_gpio_out(splitter, i, get_cpu_irq(cpus, i, irq_pin));
148
r = 0;
39
}
149
break;
40
sysbus_connect_irq(s, 0, qdev_get_gpio_in(splitter, 0));
150
case A_SECRESPCFG:
41
} else {
151
- case A_NSCCFG:
42
- sysbus_connect_irq(s, 0, cpu_irqs[0][irq_pin]);
152
- case A_SECMPCINTSTATUS:
43
+ sysbus_connect_irq(s, 0, get_cpu_irq(cpus, 0, irq_pin));
153
+ r = s->secrespcfg;
44
}
154
+ break;
45
sysbus_mmio_map(s, 0, base);
155
case A_SECPPCINTSTAT:
46
sysbus_mmio_map(s, 1, descriptors);
156
+ r = s->secppcintstat;
157
+ break;
158
case A_SECPPCINTEN:
159
- case A_SECMSCINTSTAT:
160
- case A_SECMSCINTEN:
161
- case A_BRGINTSTAT:
162
- case A_BRGINTEN:
163
+ r = s->secppcinten;
164
+ break;
165
case A_AHBNSPPCEXP0:
166
case A_AHBNSPPCEXP1:
167
case A_AHBNSPPCEXP2:
168
case A_AHBNSPPCEXP3:
169
+ r = s->ahbexp[offset_to_ppc_idx(offset)].ns;
170
+ break;
171
case A_APBNSPPC0:
172
case A_APBNSPPC1:
173
+ r = s->apb[offset_to_ppc_idx(offset)].ns;
174
+ break;
175
case A_APBNSPPCEXP0:
176
case A_APBNSPPCEXP1:
177
case A_APBNSPPCEXP2:
178
case A_APBNSPPCEXP3:
179
+ r = s->apbexp[offset_to_ppc_idx(offset)].ns;
180
+ break;
181
case A_AHBSPPPCEXP0:
182
case A_AHBSPPPCEXP1:
183
case A_AHBSPPPCEXP2:
184
case A_AHBSPPPCEXP3:
185
+ r = s->apbexp[offset_to_ppc_idx(offset)].sp;
186
+ break;
187
case A_APBSPPPC0:
188
case A_APBSPPPC1:
189
+ r = s->apb[offset_to_ppc_idx(offset)].sp;
190
+ break;
191
case A_APBSPPPCEXP0:
192
case A_APBSPPPCEXP1:
193
case A_APBSPPPCEXP2:
194
case A_APBSPPPCEXP3:
195
+ r = s->apbexp[offset_to_ppc_idx(offset)].sp;
196
+ break;
197
+ case A_NSCCFG:
198
+ case A_SECMPCINTSTATUS:
199
+ case A_SECMSCINTSTAT:
200
+ case A_SECMSCINTEN:
201
+ case A_BRGINTSTAT:
202
+ case A_BRGINTEN:
203
case A_NSMSCEXP:
204
qemu_log_mask(LOG_UNIMP,
205
"IoTKit SecCtl S block read: "
206
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_s_read(void *opaque, hwaddr addr,
207
return MEMTX_OK;
208
}
47
}
209
48
210
+static void iotkit_secctl_update_ppc_ap(IoTKitSecCtlPPC *ppc)
49
static void openrisc_sim_ompic_init(hwaddr base, int num_cpus,
211
+{
50
- qemu_irq **cpu_irqs, int irq_pin)
212
+ int i;
51
+ OpenRISCCPU *cpus[], int irq_pin)
213
+
214
+ for (i = 0; i < ppc->numports; i++) {
215
+ bool v;
216
+
217
+ if (extract32(ppc->ns, i, 1)) {
218
+ v = extract32(ppc->nsp, i, 1);
219
+ } else {
220
+ v = extract32(ppc->sp, i, 1);
221
+ }
222
+ qemu_set_irq(ppc->ap[i], v);
223
+ }
224
+}
225
+
226
+static void iotkit_secctl_ppc_ns_write(IoTKitSecCtlPPC *ppc, uint32_t value)
227
+{
228
+ int i;
229
+
230
+ ppc->ns = value & MAKE_64BIT_MASK(0, ppc->numports);
231
+ for (i = 0; i < ppc->numports; i++) {
232
+ qemu_set_irq(ppc->nonsec[i], extract32(ppc->ns, i, 1));
233
+ }
234
+ iotkit_secctl_update_ppc_ap(ppc);
235
+}
236
+
237
+static void iotkit_secctl_ppc_sp_write(IoTKitSecCtlPPC *ppc, uint32_t value)
238
+{
239
+ ppc->sp = value & MAKE_64BIT_MASK(0, ppc->numports);
240
+ iotkit_secctl_update_ppc_ap(ppc);
241
+}
242
+
243
+static void iotkit_secctl_ppc_nsp_write(IoTKitSecCtlPPC *ppc, uint32_t value)
244
+{
245
+ ppc->nsp = value & MAKE_64BIT_MASK(0, ppc->numports);
246
+ iotkit_secctl_update_ppc_ap(ppc);
247
+}
248
+
249
+static void iotkit_secctl_ppc_update_irq_clear(IoTKitSecCtlPPC *ppc)
250
+{
251
+ uint32_t value = ppc->parent->secppcintstat;
252
+
253
+ qemu_set_irq(ppc->irq_clear, extract32(value, ppc->irq_bit_offset, 1));
254
+}
255
+
256
+static void iotkit_secctl_ppc_update_irq_enable(IoTKitSecCtlPPC *ppc)
257
+{
258
+ uint32_t value = ppc->parent->secppcinten;
259
+
260
+ qemu_set_irq(ppc->irq_enable, extract32(value, ppc->irq_bit_offset, 1));
261
+}
262
+
263
static MemTxResult iotkit_secctl_s_write(void *opaque, hwaddr addr,
264
uint64_t value,
265
unsigned size, MemTxAttrs attrs)
266
{
52
{
267
+ IoTKitSecCtl *s = IOTKIT_SECCTL(opaque);
53
DeviceState *dev;
268
uint32_t offset = addr;
54
SysBusDevice *s;
269
+ IoTKitSecCtlPPC *ppc;
55
@@ -XXX,XX +XXX,XX @@ static void openrisc_sim_ompic_init(hwaddr base, int num_cpus,
270
56
s = SYS_BUS_DEVICE(dev);
271
trace_iotkit_secctl_s_write(offset, value, size);
57
sysbus_realize_and_unref(s, &error_fatal);
272
58
for (i = 0; i < num_cpus; i++) {
273
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_s_write(void *opaque, hwaddr addr,
59
- sysbus_connect_irq(s, i, cpu_irqs[i][irq_pin]);
274
60
+ sysbus_connect_irq(s, i, get_cpu_irq(cpus, i, irq_pin));
275
switch (offset) {
61
}
276
case A_SECRESPCFG:
62
sysbus_mmio_map(s, 0, base);
277
- case A_NSCCFG:
63
}
278
+ value &= 1;
64
@@ -XXX,XX +XXX,XX @@ static void openrisc_sim_init(MachineState *machine)
279
+ s->secrespcfg = value;
280
+ qemu_set_irq(s->sec_resp_cfg, s->secrespcfg);
281
+ break;
282
case A_SECPPCINTCLR:
283
+ value &= 0x00f000f3;
284
+ foreach_ppc(s, iotkit_secctl_ppc_update_irq_clear);
285
+ break;
286
case A_SECPPCINTEN:
287
- case A_SECMSCINTCLR:
288
- case A_SECMSCINTEN:
289
- case A_BRGINTCLR:
290
- case A_BRGINTEN:
291
+ s->secppcinten = value & 0x00f000f3;
292
+ foreach_ppc(s, iotkit_secctl_ppc_update_irq_enable);
293
+ break;
294
case A_AHBNSPPCEXP0:
295
case A_AHBNSPPCEXP1:
296
case A_AHBNSPPCEXP2:
297
case A_AHBNSPPCEXP3:
298
+ ppc = &s->ahbexp[offset_to_ppc_idx(offset)];
299
+ iotkit_secctl_ppc_ns_write(ppc, value);
300
+ break;
301
case A_APBNSPPC0:
302
case A_APBNSPPC1:
303
+ ppc = &s->apb[offset_to_ppc_idx(offset)];
304
+ iotkit_secctl_ppc_ns_write(ppc, value);
305
+ break;
306
case A_APBNSPPCEXP0:
307
case A_APBNSPPCEXP1:
308
case A_APBNSPPCEXP2:
309
case A_APBNSPPCEXP3:
310
+ ppc = &s->apbexp[offset_to_ppc_idx(offset)];
311
+ iotkit_secctl_ppc_ns_write(ppc, value);
312
+ break;
313
case A_AHBSPPPCEXP0:
314
case A_AHBSPPPCEXP1:
315
case A_AHBSPPPCEXP2:
316
case A_AHBSPPPCEXP3:
317
+ ppc = &s->ahbexp[offset_to_ppc_idx(offset)];
318
+ iotkit_secctl_ppc_sp_write(ppc, value);
319
+ break;
320
case A_APBSPPPC0:
321
case A_APBSPPPC1:
322
+ ppc = &s->apb[offset_to_ppc_idx(offset)];
323
+ iotkit_secctl_ppc_sp_write(ppc, value);
324
+ break;
325
case A_APBSPPPCEXP0:
326
case A_APBSPPPCEXP1:
327
case A_APBSPPPCEXP2:
328
case A_APBSPPPCEXP3:
329
+ ppc = &s->apbexp[offset_to_ppc_idx(offset)];
330
+ iotkit_secctl_ppc_sp_write(ppc, value);
331
+ break;
332
+ case A_NSCCFG:
333
+ case A_SECMSCINTCLR:
334
+ case A_SECMSCINTEN:
335
+ case A_BRGINTCLR:
336
+ case A_BRGINTEN:
337
qemu_log_mask(LOG_UNIMP,
338
"IoTKit SecCtl S block write: "
339
"unimplemented offset 0x%x\n", offset);
340
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_ns_read(void *opaque, hwaddr addr,
341
uint64_t *pdata,
342
unsigned size, MemTxAttrs attrs)
343
{
65
{
344
+ IoTKitSecCtl *s = IOTKIT_SECCTL(opaque);
66
ram_addr_t ram_size = machine->ram_size;
345
uint64_t r;
67
const char *kernel_filename = machine->kernel_filename;
346
uint32_t offset = addr & ~0x3;
68
- OpenRISCCPU *cpu = NULL;
347
69
+ OpenRISCCPU *cpus[2] = {};
348
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_ns_read(void *opaque, hwaddr addr,
70
MemoryRegion *ram;
349
case A_AHBNSPPPCEXP1:
71
- qemu_irq *cpu_irqs[2];
350
case A_AHBNSPPPCEXP2:
72
qemu_irq serial_irq;
351
case A_AHBNSPPPCEXP3:
73
int n;
352
+ r = s->ahbexp[offset_to_ppc_idx(offset)].nsp;
74
unsigned int smp_cpus = machine->smp.cpus;
353
+ break;
75
354
case A_APBNSPPPC0:
76
assert(smp_cpus >= 1 && smp_cpus <= 2);
355
case A_APBNSPPPC1:
77
for (n = 0; n < smp_cpus; n++) {
356
+ r = s->apb[offset_to_ppc_idx(offset)].nsp;
78
- cpu = OPENRISC_CPU(cpu_create(machine->cpu_type));
357
+ break;
79
- if (cpu == NULL) {
358
case A_APBNSPPPCEXP0:
80
+ cpus[n] = OPENRISC_CPU(cpu_create(machine->cpu_type));
359
case A_APBNSPPPCEXP1:
81
+ if (cpus[n] == NULL) {
360
case A_APBNSPPPCEXP2:
82
fprintf(stderr, "Unable to find CPU definition!\n");
361
case A_APBNSPPPCEXP3:
83
exit(1);
362
- qemu_log_mask(LOG_UNIMP,
84
}
363
- "IoTKit SecCtl NS block read: "
85
- cpu_openrisc_pic_init(cpu);
364
- "unimplemented offset 0x%x\n", offset);
86
- cpu_irqs[n] = (qemu_irq *) cpu->env.irq;
365
+ r = s->apbexp[offset_to_ppc_idx(offset)].nsp;
87
+ cpu_openrisc_pic_init(cpus[n]);
366
break;
88
367
case A_PID4:
89
- cpu_openrisc_clock_init(cpu);
368
case A_PID5:
90
+ cpu_openrisc_clock_init(cpus[n]);
369
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_ns_write(void *opaque, hwaddr addr,
91
370
uint64_t value,
92
- qemu_register_reset(main_cpu_reset, cpu);
371
unsigned size, MemTxAttrs attrs)
93
+ qemu_register_reset(main_cpu_reset, cpus[n]);
372
{
373
+ IoTKitSecCtl *s = IOTKIT_SECCTL(opaque);
374
uint32_t offset = addr;
375
+ IoTKitSecCtlPPC *ppc;
376
377
trace_iotkit_secctl_ns_write(offset, value, size);
378
379
@@ -XXX,XX +XXX,XX @@ static MemTxResult iotkit_secctl_ns_write(void *opaque, hwaddr addr,
380
case A_AHBNSPPPCEXP1:
381
case A_AHBNSPPPCEXP2:
382
case A_AHBNSPPPCEXP3:
383
+ ppc = &s->ahbexp[offset_to_ppc_idx(offset)];
384
+ iotkit_secctl_ppc_nsp_write(ppc, value);
385
+ break;
386
case A_APBNSPPPC0:
387
case A_APBNSPPPC1:
388
+ ppc = &s->apb[offset_to_ppc_idx(offset)];
389
+ iotkit_secctl_ppc_nsp_write(ppc, value);
390
+ break;
391
case A_APBNSPPPCEXP0:
392
case A_APBNSPPPCEXP1:
393
case A_APBNSPPPCEXP2:
394
case A_APBNSPPPCEXP3:
395
- qemu_log_mask(LOG_UNIMP,
396
- "IoTKit SecCtl NS block write: "
397
- "unimplemented offset 0x%x\n", offset);
398
+ ppc = &s->apbexp[offset_to_ppc_idx(offset)];
399
+ iotkit_secctl_ppc_nsp_write(ppc, value);
400
break;
401
case A_AHBNSPPPC0:
402
case A_PID4:
403
@@ -XXX,XX +XXX,XX @@ static const MemoryRegionOps iotkit_secctl_ns_ops = {
404
.impl.max_access_size = 4,
405
};
406
407
+static void iotkit_secctl_reset_ppc(IoTKitSecCtlPPC *ppc)
408
+{
409
+ ppc->ns = 0;
410
+ ppc->sp = 0;
411
+ ppc->nsp = 0;
412
+}
413
+
414
static void iotkit_secctl_reset(DeviceState *dev)
415
{
416
+ IoTKitSecCtl *s = IOTKIT_SECCTL(dev);
417
418
+ s->secppcintstat = 0;
419
+ s->secppcinten = 0;
420
+ s->secrespcfg = 0;
421
+
422
+ foreach_ppc(s, iotkit_secctl_reset_ppc);
423
+}
424
+
425
+static void iotkit_secctl_ppc_irqstatus(void *opaque, int n, int level)
426
+{
427
+ IoTKitSecCtlPPC *ppc = opaque;
428
+ IoTKitSecCtl *s = IOTKIT_SECCTL(ppc->parent);
429
+ int irqbit = ppc->irq_bit_offset + n;
430
+
431
+ s->secppcintstat = deposit32(s->secppcintstat, irqbit, 1, level);
432
+}
433
+
434
+static void iotkit_secctl_init_ppc(IoTKitSecCtl *s,
435
+ IoTKitSecCtlPPC *ppc,
436
+ const char *name,
437
+ int numports,
438
+ int irq_bit_offset)
439
+{
440
+ char *gpioname;
441
+ DeviceState *dev = DEVICE(s);
442
+
443
+ ppc->numports = numports;
444
+ ppc->irq_bit_offset = irq_bit_offset;
445
+ ppc->parent = s;
446
+
447
+ gpioname = g_strdup_printf("%s_nonsec", name);
448
+ qdev_init_gpio_out_named(dev, ppc->nonsec, gpioname, numports);
449
+ g_free(gpioname);
450
+ gpioname = g_strdup_printf("%s_ap", name);
451
+ qdev_init_gpio_out_named(dev, ppc->ap, gpioname, numports);
452
+ g_free(gpioname);
453
+ gpioname = g_strdup_printf("%s_irq_enable", name);
454
+ qdev_init_gpio_out_named(dev, &ppc->irq_enable, gpioname, 1);
455
+ g_free(gpioname);
456
+ gpioname = g_strdup_printf("%s_irq_clear", name);
457
+ qdev_init_gpio_out_named(dev, &ppc->irq_clear, gpioname, 1);
458
+ g_free(gpioname);
459
+ gpioname = g_strdup_printf("%s_irq_status", name);
460
+ qdev_init_gpio_in_named_with_opaque(dev, iotkit_secctl_ppc_irqstatus,
461
+ ppc, gpioname, 1);
462
+ g_free(gpioname);
463
}
464
465
static void iotkit_secctl_init(Object *obj)
466
{
467
IoTKitSecCtl *s = IOTKIT_SECCTL(obj);
468
SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
469
+ DeviceState *dev = DEVICE(obj);
470
+ int i;
471
+
472
+ iotkit_secctl_init_ppc(s, &s->apb[0], "apb_ppc0",
473
+ IOTS_APB_PPC0_NUM_PORTS, 0);
474
+ iotkit_secctl_init_ppc(s, &s->apb[1], "apb_ppc1",
475
+ IOTS_APB_PPC1_NUM_PORTS, 1);
476
+
477
+ for (i = 0; i < IOTS_NUM_APB_EXP_PPC; i++) {
478
+ IoTKitSecCtlPPC *ppc = &s->apbexp[i];
479
+ char *ppcname = g_strdup_printf("apb_ppcexp%d", i);
480
+ iotkit_secctl_init_ppc(s, ppc, ppcname, IOTS_PPC_NUM_PORTS, 4 + i);
481
+ g_free(ppcname);
482
+ }
483
+ for (i = 0; i < IOTS_NUM_AHB_EXP_PPC; i++) {
484
+ IoTKitSecCtlPPC *ppc = &s->ahbexp[i];
485
+ char *ppcname = g_strdup_printf("ahb_ppcexp%d", i);
486
+ iotkit_secctl_init_ppc(s, ppc, ppcname, IOTS_PPC_NUM_PORTS, 20 + i);
487
+ g_free(ppcname);
488
+ }
489
+
490
+ qdev_init_gpio_out_named(dev, &s->sec_resp_cfg, "sec_resp_cfg", 1);
491
492
memory_region_init_io(&s->s_regs, obj, &iotkit_secctl_s_ops,
493
s, "iotkit-secctl-s-regs", 0x1000);
494
@@ -XXX,XX +XXX,XX @@ static void iotkit_secctl_init(Object *obj)
495
sysbus_init_mmio(sbd, &s->ns_regs);
496
}
497
498
+static const VMStateDescription iotkit_secctl_ppc_vmstate = {
499
+ .name = "iotkit-secctl-ppc",
500
+ .version_id = 1,
501
+ .minimum_version_id = 1,
502
+ .fields = (VMStateField[]) {
503
+ VMSTATE_UINT32(ns, IoTKitSecCtlPPC),
504
+ VMSTATE_UINT32(sp, IoTKitSecCtlPPC),
505
+ VMSTATE_UINT32(nsp, IoTKitSecCtlPPC),
506
+ VMSTATE_END_OF_LIST()
507
+ }
508
+};
509
+
510
static const VMStateDescription iotkit_secctl_vmstate = {
511
.name = "iotkit-secctl",
512
.version_id = 1,
513
.minimum_version_id = 1,
514
.fields = (VMStateField[]) {
515
+ VMSTATE_UINT32(secppcintstat, IoTKitSecCtl),
516
+ VMSTATE_UINT32(secppcinten, IoTKitSecCtl),
517
+ VMSTATE_UINT32(secrespcfg, IoTKitSecCtl),
518
+ VMSTATE_STRUCT_ARRAY(apb, IoTKitSecCtl, IOTS_NUM_APB_PPC, 1,
519
+ iotkit_secctl_ppc_vmstate, IoTKitSecCtlPPC),
520
+ VMSTATE_STRUCT_ARRAY(apbexp, IoTKitSecCtl, IOTS_NUM_APB_EXP_PPC, 1,
521
+ iotkit_secctl_ppc_vmstate, IoTKitSecCtlPPC),
522
+ VMSTATE_STRUCT_ARRAY(ahbexp, IoTKitSecCtl, IOTS_NUM_AHB_EXP_PPC, 1,
523
+ iotkit_secctl_ppc_vmstate, IoTKitSecCtlPPC),
524
VMSTATE_END_OF_LIST()
525
}
94
}
526
};
95
96
ram = g_malloc(sizeof(*ram));
97
@@ -XXX,XX +XXX,XX @@ static void openrisc_sim_init(MachineState *machine)
98
99
if (nd_table[0].used) {
100
openrisc_sim_net_init(0x92000000, 0x92000400, smp_cpus,
101
- cpu_irqs, 4, nd_table);
102
+ cpus, 4, nd_table);
103
}
104
105
if (smp_cpus > 1) {
106
- openrisc_sim_ompic_init(0x98000000, smp_cpus, cpu_irqs, 1);
107
+ openrisc_sim_ompic_init(0x98000000, smp_cpus, cpus, 1);
108
109
- serial_irq = qemu_irq_split(cpu_irqs[0][2], cpu_irqs[1][2]);
110
+ serial_irq = qemu_irq_split(get_cpu_irq(cpus, 0, 2),
111
+ get_cpu_irq(cpus, 1, 2));
112
} else {
113
- serial_irq = cpu_irqs[0][2];
114
+ serial_irq = get_cpu_irq(cpus, 0, 2);
115
}
116
117
serial_mm_init(get_system_memory(), 0x90000000, 0, serial_irq,
527
--
118
--
528
2.16.2
119
2.20.1
529
120
530
121
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
The openrisc code uses an old style of interrupt handling, where a
2
separate standalone set of qemu_irqs invoke a function
3
openrisc_pic_cpu_handler() which signals the interrupt to the CPU
4
proper by directly calling cpu_interrupt() and cpu_reset_interrupt().
5
Because CPU objects now inherit (indirectly) from TYPE_DEVICE, they
6
can have GPIO input lines themselves, and the neater modern way to
7
implement this is to simply have the CPU object itself provide the
8
input IRQ lines.
2
9
3
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
10
Create GPIO inputs to the OpenRISC CPU object, and make the only user
4
Message-id: 20180228193125.20577-15-richard.henderson@linaro.org
11
of cpu_openrisc_pic_init() wire up directly to those instead.
5
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
12
13
This allows us to delete the hw/openrisc/pic_cpu.c file entirely.
14
15
This fixes a trivial memory leak reported by Coverity of the IRQs
16
allocated in cpu_openrisc_pic_init().
17
18
Fixes: Coverity CID 1421934
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
19
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
20
Reviewed-by: Stafford Horne <shorne@gmail.com>
21
Message-id: 20201127225127.14770-4-peter.maydell@linaro.org
7
---
22
---
8
target/arm/translate.c | 61 ++++++++++++++++++++++++++++++++++++++++++++++++++
23
target/openrisc/cpu.h | 1 -
9
1 file changed, 61 insertions(+)
24
hw/openrisc/openrisc_sim.c | 3 +-
25
hw/openrisc/pic_cpu.c | 61 --------------------------------------
26
target/openrisc/cpu.c | 32 ++++++++++++++++++++
27
hw/openrisc/meson.build | 2 +-
28
5 files changed, 34 insertions(+), 65 deletions(-)
29
delete mode 100644 hw/openrisc/pic_cpu.c
10
30
11
diff --git a/target/arm/translate.c b/target/arm/translate.c
31
diff --git a/target/openrisc/cpu.h b/target/openrisc/cpu.h
12
index XXXXXXX..XXXXXXX 100644
32
index XXXXXXX..XXXXXXX 100644
13
--- a/target/arm/translate.c
33
--- a/target/openrisc/cpu.h
14
+++ b/target/arm/translate.c
34
+++ b/target/openrisc/cpu.h
15
@@ -XXX,XX +XXX,XX @@ static int disas_neon_insn_3same_ext(DisasContext *s, uint32_t insn)
35
@@ -XXX,XX +XXX,XX @@ typedef struct CPUOpenRISCState {
16
return 0;
36
uint32_t picmr; /* Interrupt mask register */
37
uint32_t picsr; /* Interrupt contrl register*/
38
#endif
39
- void *irq[32]; /* Interrupt irq input */
40
} CPUOpenRISCState;
41
42
/**
43
diff --git a/hw/openrisc/openrisc_sim.c b/hw/openrisc/openrisc_sim.c
44
index XXXXXXX..XXXXXXX 100644
45
--- a/hw/openrisc/openrisc_sim.c
46
+++ b/hw/openrisc/openrisc_sim.c
47
@@ -XXX,XX +XXX,XX @@ static void main_cpu_reset(void *opaque)
48
49
static qemu_irq get_cpu_irq(OpenRISCCPU *cpus[], int cpunum, int irq_pin)
50
{
51
- return cpus[cpunum]->env.irq[irq_pin];
52
+ return qdev_get_gpio_in_named(DEVICE(cpus[cpunum]), "IRQ", irq_pin);
17
}
53
}
18
54
19
+/* Advanced SIMD two registers and a scalar extension.
55
static void openrisc_sim_net_init(hwaddr base, hwaddr descriptors,
20
+ * 31 24 23 22 20 16 12 11 10 9 8 3 0
56
@@ -XXX,XX +XXX,XX @@ static void openrisc_sim_init(MachineState *machine)
21
+ * +-----------------+----+---+----+----+----+---+----+---+----+---------+----+
57
fprintf(stderr, "Unable to find CPU definition!\n");
22
+ * | 1 1 1 1 1 1 1 0 | o1 | D | o2 | Vn | Vd | 1 | o3 | 0 | o4 | N Q M U | Vm |
58
exit(1);
23
+ * +-----------------+----+---+----+----+----+---+----+---+----+---------+----+
59
}
24
+ *
60
- cpu_openrisc_pic_init(cpus[n]);
25
+ */
61
62
cpu_openrisc_clock_init(cpus[n]);
63
64
diff --git a/hw/openrisc/pic_cpu.c b/hw/openrisc/pic_cpu.c
65
deleted file mode 100644
66
index XXXXXXX..XXXXXXX
67
--- a/hw/openrisc/pic_cpu.c
68
+++ /dev/null
69
@@ -XXX,XX +XXX,XX @@
70
-/*
71
- * OpenRISC Programmable Interrupt Controller support.
72
- *
73
- * Copyright (c) 2011-2012 Jia Liu <proljc@gmail.com>
74
- * Feng Gao <gf91597@gmail.com>
75
- *
76
- * This library is free software; you can redistribute it and/or
77
- * modify it under the terms of the GNU Lesser General Public
78
- * License as published by the Free Software Foundation; either
79
- * version 2.1 of the License, or (at your option) any later version.
80
- *
81
- * This library is distributed in the hope that it will be useful,
82
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
83
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
84
- * Lesser General Public License for more details.
85
- *
86
- * You should have received a copy of the GNU Lesser General Public
87
- * License along with this library; if not, see <http://www.gnu.org/licenses/>.
88
- */
89
-
90
-#include "qemu/osdep.h"
91
-#include "hw/irq.h"
92
-#include "cpu.h"
93
-
94
-/* OpenRISC pic handler */
95
-static void openrisc_pic_cpu_handler(void *opaque, int irq, int level)
96
-{
97
- OpenRISCCPU *cpu = (OpenRISCCPU *)opaque;
98
- CPUState *cs = CPU(cpu);
99
- uint32_t irq_bit;
100
-
101
- if (irq > 31 || irq < 0) {
102
- return;
103
- }
104
-
105
- irq_bit = 1U << irq;
106
-
107
- if (level) {
108
- cpu->env.picsr |= irq_bit;
109
- } else {
110
- cpu->env.picsr &= ~irq_bit;
111
- }
112
-
113
- if (cpu->env.picsr & cpu->env.picmr) {
114
- cpu_interrupt(cs, CPU_INTERRUPT_HARD);
115
- } else {
116
- cpu_reset_interrupt(cs, CPU_INTERRUPT_HARD);
117
- cpu->env.picsr = 0;
118
- }
119
-}
120
-
121
-void cpu_openrisc_pic_init(OpenRISCCPU *cpu)
122
-{
123
- int i;
124
- qemu_irq *qi;
125
- qi = qemu_allocate_irqs(openrisc_pic_cpu_handler, cpu, NR_IRQS);
126
-
127
- for (i = 0; i < NR_IRQS; i++) {
128
- cpu->env.irq[i] = qi[i];
129
- }
130
-}
131
diff --git a/target/openrisc/cpu.c b/target/openrisc/cpu.c
132
index XXXXXXX..XXXXXXX 100644
133
--- a/target/openrisc/cpu.c
134
+++ b/target/openrisc/cpu.c
135
@@ -XXX,XX +XXX,XX @@ static void openrisc_cpu_reset(DeviceState *dev)
136
#endif
137
}
138
139
+#ifndef CONFIG_USER_ONLY
140
+static void openrisc_cpu_set_irq(void *opaque, int irq, int level)
141
+{
142
+ OpenRISCCPU *cpu = (OpenRISCCPU *)opaque;
143
+ CPUState *cs = CPU(cpu);
144
+ uint32_t irq_bit;
26
+
145
+
27
+static int disas_neon_insn_2reg_scalar_ext(DisasContext *s, uint32_t insn)
146
+ if (irq > 31 || irq < 0) {
28
+{
147
+ return;
29
+ int rd, rn, rm, rot, size, opr_sz;
30
+ TCGv_ptr fpst;
31
+ bool q;
32
+
33
+ q = extract32(insn, 6, 1);
34
+ VFP_DREG_D(rd, insn);
35
+ VFP_DREG_N(rn, insn);
36
+ VFP_DREG_M(rm, insn);
37
+ if ((rd | rn) & q) {
38
+ return 1;
39
+ }
148
+ }
40
+
149
+
41
+ if ((insn & 0xff000f10) == 0xfe000800) {
150
+ irq_bit = 1U << irq;
42
+ /* VCMLA (indexed) -- 1111 1110 S.RR .... .... 1000 ...0 .... */
151
+
43
+ rot = extract32(insn, 20, 2);
152
+ if (level) {
44
+ size = extract32(insn, 23, 1);
153
+ cpu->env.picsr |= irq_bit;
45
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_FCMA)
46
+ || (!size && !arm_dc_feature(s, ARM_FEATURE_V8_FP16))) {
47
+ return 1;
48
+ }
49
+ } else {
154
+ } else {
50
+ return 1;
155
+ cpu->env.picsr &= ~irq_bit;
51
+ }
156
+ }
52
+
157
+
53
+ if (s->fp_excp_el) {
158
+ if (cpu->env.picsr & cpu->env.picmr) {
54
+ gen_exception_insn(s, 4, EXCP_UDEF,
159
+ cpu_interrupt(cs, CPU_INTERRUPT_HARD);
55
+ syn_fp_access_trap(1, 0xe, false), s->fp_excp_el);
160
+ } else {
56
+ return 0;
161
+ cpu_reset_interrupt(cs, CPU_INTERRUPT_HARD);
162
+ cpu->env.picsr = 0;
57
+ }
163
+ }
58
+ if (!s->vfp_enabled) {
164
+}
59
+ return 1;
165
+#endif
60
+ }
61
+
166
+
62
+ opr_sz = (1 + q) * 8;
167
static void openrisc_cpu_realizefn(DeviceState *dev, Error **errp)
63
+ fpst = get_fpstatus_ptr(1);
168
{
64
+ tcg_gen_gvec_3_ptr(vfp_reg_offset(1, rd),
169
CPUState *cs = CPU(dev);
65
+ vfp_reg_offset(1, rn),
170
@@ -XXX,XX +XXX,XX @@ static void openrisc_cpu_initfn(Object *obj)
66
+ vfp_reg_offset(1, rm), fpst,
171
OpenRISCCPU *cpu = OPENRISC_CPU(obj);
67
+ opr_sz, opr_sz, rot,
172
68
+ size ? gen_helper_gvec_fcmlas_idx
173
cpu_set_cpustate_pointers(cpu);
69
+ : gen_helper_gvec_fcmlah_idx);
70
+ tcg_temp_free_ptr(fpst);
71
+ return 0;
72
+}
73
+
174
+
74
static int disas_coproc_insn(DisasContext *s, uint32_t insn)
175
+#ifndef CONFIG_USER_ONLY
75
{
176
+ qdev_init_gpio_in_named(DEVICE(cpu), openrisc_cpu_set_irq, "IRQ", NR_IRQS);
76
int cpnum, is64, crn, crm, opc1, opc2, isread, rt, rt2;
177
+#endif
77
@@ -XXX,XX +XXX,XX @@ static void disas_arm_insn(DisasContext *s, unsigned int insn)
178
}
78
goto illegal_op;
179
79
}
180
/* CPU models */
80
return;
181
diff --git a/hw/openrisc/meson.build b/hw/openrisc/meson.build
81
+ } else if ((insn & 0x0f000a00) == 0x0e000800
182
index XXXXXXX..XXXXXXX 100644
82
+ && arm_dc_feature(s, ARM_FEATURE_V8)) {
183
--- a/hw/openrisc/meson.build
83
+ if (disas_neon_insn_2reg_scalar_ext(s, insn)) {
184
+++ b/hw/openrisc/meson.build
84
+ goto illegal_op;
185
@@ -XXX,XX +XXX,XX @@
85
+ }
186
openrisc_ss = ss.source_set()
86
+ return;
187
-openrisc_ss.add(files('pic_cpu.c', 'cputimer.c'))
87
} else if ((insn & 0x0fe00000) == 0x0c400000) {
188
+openrisc_ss.add(files('cputimer.c'))
88
/* Coprocessor double register transfer. */
189
openrisc_ss.add(when: 'CONFIG_OR1K_SIM', if_true: files('openrisc_sim.c'))
89
ARCH(5TE);
190
191
hw_arch += {'openrisc': openrisc_ss}
90
--
192
--
91
2.16.2
193
2.20.1
92
194
93
195
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
The Nios2 architecture supports two different interrupt controller
2
2
options:
3
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
3
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
* The IIC (Internal Interrupt Controller) is part of the CPU itself;
5
Message-id: 20180228193125.20577-12-richard.henderson@linaro.org
5
it has 32 IRQ input lines and no NMI support. Interrupt status is
6
queried and controlled via the CPU's ipending and istatus
7
registers.
8
9
* The EIC (External Interrupt Controller) interface allows the CPU
10
to connect to an external interrupt controller. The interface
11
allows the interrupt controller to present a packet of information
12
containing:
13
- handler address
14
- interrupt level
15
- register set
16
- NMI mode
17
18
QEMU does not model an EIC currently. We do model the IIC, but its
19
implementation is split across code in hw/nios2/cpu_pic.c and
20
hw/intc/nios2_iic.c. The code in those two files has no state of its
21
own -- the IIC state is in the Nios2CPU state struct.
22
23
Because CPU objects now inherit (indirectly) from TYPE_DEVICE, they
24
can have GPIO input lines themselves, so we can implement the IIC
25
directly in the CPU object the same way that real hardware does.
26
27
Create named "IRQ" GPIO inputs to the Nios2 CPU object, and make the
28
only user of the IIC wire up directly to those instead.
29
30
Note that the old code had an "NMI" concept which was entirely unused
31
and also as far as I can see not architecturally correct, since only
32
the EIC has a concept of an NMI.
33
34
This fixes a Coverity-reported trivial memory leak of the IRQ array
35
allocated in nios2_cpu_pic_init().
36
37
Fixes: Coverity CID 1421916
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
38
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
39
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
40
Message-id: 20201129174022.26530-2-peter.maydell@linaro.org
41
Reviewed-by: Wentong Wu <wentong.wu@intel.com>
42
Tested-by: Wentong Wu <wentong.wu@intel.com>
7
---
43
---
8
target/arm/helper.h | 7 ++++
44
target/nios2/cpu.h | 1 -
9
target/arm/translate-a64.c | 48 ++++++++++++++++++++++-
45
hw/intc/nios2_iic.c | 95 ---------------------------------------
10
target/arm/vec_helper.c | 97 ++++++++++++++++++++++++++++++++++++++++++++++
46
hw/nios2/10m50_devboard.c | 13 +-----
11
3 files changed, 151 insertions(+), 1 deletion(-)
47
hw/nios2/cpu_pic.c | 31 -------------
12
48
target/nios2/cpu.c | 30 +++++++++++++
13
diff --git a/target/arm/helper.h b/target/arm/helper.h
49
MAINTAINERS | 1 -
14
index XXXXXXX..XXXXXXX 100644
50
hw/intc/meson.build | 1 -
15
--- a/target/arm/helper.h
51
7 files changed, 32 insertions(+), 140 deletions(-)
16
+++ b/target/arm/helper.h
52
delete mode 100644 hw/intc/nios2_iic.c
17
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_5(gvec_qrdmlah_s32, TCG_CALL_NO_RWG,
53
18
DEF_HELPER_FLAGS_5(gvec_qrdmlsh_s32, TCG_CALL_NO_RWG,
54
diff --git a/target/nios2/cpu.h b/target/nios2/cpu.h
19
void, ptr, ptr, ptr, ptr, i32)
55
index XXXXXXX..XXXXXXX 100644
20
56
--- a/target/nios2/cpu.h
21
+DEF_HELPER_FLAGS_5(gvec_fcaddh, TCG_CALL_NO_RWG,
57
+++ b/target/nios2/cpu.h
22
+ void, ptr, ptr, ptr, ptr, i32)
58
@@ -XXX,XX +XXX,XX @@ void nios2_cpu_do_unaligned_access(CPUState *cpu, vaddr addr,
23
+DEF_HELPER_FLAGS_5(gvec_fcadds, TCG_CALL_NO_RWG,
59
MMUAccessType access_type,
24
+ void, ptr, ptr, ptr, ptr, i32)
60
int mmu_idx, uintptr_t retaddr);
25
+DEF_HELPER_FLAGS_5(gvec_fcaddd, TCG_CALL_NO_RWG,
61
26
+ void, ptr, ptr, ptr, ptr, i32)
62
-qemu_irq *nios2_cpu_pic_init(Nios2CPU *cpu);
27
+
63
void nios2_check_interrupts(CPUNios2State *env);
28
#ifdef TARGET_AARCH64
64
29
#include "helper-a64.h"
65
void do_nios2_semihosting(CPUNios2State *env);
66
diff --git a/hw/intc/nios2_iic.c b/hw/intc/nios2_iic.c
67
deleted file mode 100644
68
index XXXXXXX..XXXXXXX
69
--- a/hw/intc/nios2_iic.c
70
+++ /dev/null
71
@@ -XXX,XX +XXX,XX @@
72
-/*
73
- * QEMU Altera Internal Interrupt Controller.
74
- *
75
- * Copyright (c) 2012 Chris Wulff <crwulff@gmail.com>
76
- *
77
- * This library is free software; you can redistribute it and/or
78
- * modify it under the terms of the GNU Lesser General Public
79
- * License as published by the Free Software Foundation; either
80
- * version 2.1 of the License, or (at your option) any later version.
81
- *
82
- * This library 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 GNU
85
- * Lesser General Public License for more details.
86
- *
87
- * You should have received a copy of the GNU Lesser General Public
88
- * License along with this library; if not, see
89
- * <http://www.gnu.org/licenses/lgpl-2.1.html>
90
- */
91
-
92
-#include "qemu/osdep.h"
93
-#include "qemu/module.h"
94
-#include "qapi/error.h"
95
-
96
-#include "hw/irq.h"
97
-#include "hw/sysbus.h"
98
-#include "cpu.h"
99
-#include "qom/object.h"
100
-
101
-#define TYPE_ALTERA_IIC "altera,iic"
102
-OBJECT_DECLARE_SIMPLE_TYPE(AlteraIIC, ALTERA_IIC)
103
-
104
-struct AlteraIIC {
105
- SysBusDevice parent_obj;
106
- void *cpu;
107
- qemu_irq parent_irq;
108
-};
109
-
110
-static void update_irq(AlteraIIC *pv)
111
-{
112
- CPUNios2State *env = &((Nios2CPU *)(pv->cpu))->env;
113
-
114
- qemu_set_irq(pv->parent_irq,
115
- env->regs[CR_IPENDING] & env->regs[CR_IENABLE]);
116
-}
117
-
118
-static void irq_handler(void *opaque, int irq, int level)
119
-{
120
- AlteraIIC *pv = opaque;
121
- CPUNios2State *env = &((Nios2CPU *)(pv->cpu))->env;
122
-
123
- env->regs[CR_IPENDING] &= ~(1 << irq);
124
- env->regs[CR_IPENDING] |= !!level << irq;
125
-
126
- update_irq(pv);
127
-}
128
-
129
-static void altera_iic_init(Object *obj)
130
-{
131
- AlteraIIC *pv = ALTERA_IIC(obj);
132
-
133
- qdev_init_gpio_in(DEVICE(pv), irq_handler, 32);
134
- sysbus_init_irq(SYS_BUS_DEVICE(obj), &pv->parent_irq);
135
-}
136
-
137
-static void altera_iic_realize(DeviceState *dev, Error **errp)
138
-{
139
- struct AlteraIIC *pv = ALTERA_IIC(dev);
140
-
141
- pv->cpu = object_property_get_link(OBJECT(dev), "cpu", &error_abort);
142
-}
143
-
144
-static void altera_iic_class_init(ObjectClass *klass, void *data)
145
-{
146
- DeviceClass *dc = DEVICE_CLASS(klass);
147
-
148
- /* Reason: needs to be wired up, e.g. by nios2_10m50_ghrd_init() */
149
- dc->user_creatable = false;
150
- dc->realize = altera_iic_realize;
151
-}
152
-
153
-static TypeInfo altera_iic_info = {
154
- .name = TYPE_ALTERA_IIC,
155
- .parent = TYPE_SYS_BUS_DEVICE,
156
- .instance_size = sizeof(AlteraIIC),
157
- .instance_init = altera_iic_init,
158
- .class_init = altera_iic_class_init,
159
-};
160
-
161
-static void altera_iic_register(void)
162
-{
163
- type_register_static(&altera_iic_info);
164
-}
165
-
166
-type_init(altera_iic_register)
167
diff --git a/hw/nios2/10m50_devboard.c b/hw/nios2/10m50_devboard.c
168
index XXXXXXX..XXXXXXX 100644
169
--- a/hw/nios2/10m50_devboard.c
170
+++ b/hw/nios2/10m50_devboard.c
171
@@ -XXX,XX +XXX,XX @@ static void nios2_10m50_ghrd_init(MachineState *machine)
172
ram_addr_t tcm_size = 0x1000; /* 1 kiB, but QEMU limit is 4 kiB */
173
ram_addr_t ram_base = 0x08000000;
174
ram_addr_t ram_size = 0x08000000;
175
- qemu_irq *cpu_irq, irq[32];
176
+ qemu_irq irq[32];
177
int i;
178
179
/* Physical TCM (tb_ram_1k) with alias at 0xc0000000 */
180
@@ -XXX,XX +XXX,XX @@ static void nios2_10m50_ghrd_init(MachineState *machine)
181
182
/* Create CPU -- FIXME */
183
cpu = NIOS2_CPU(cpu_create(TYPE_NIOS2_CPU));
184
-
185
- /* Register: CPU interrupt controller (PIC) */
186
- cpu_irq = nios2_cpu_pic_init(cpu);
187
-
188
- /* Register: Internal Interrupt Controller (IIC) */
189
- dev = qdev_new("altera,iic");
190
- object_property_add_const_link(OBJECT(dev), "cpu", OBJECT(cpu));
191
- sysbus_realize_and_unref(SYS_BUS_DEVICE(dev), &error_fatal);
192
- sysbus_connect_irq(SYS_BUS_DEVICE(dev), 0, cpu_irq[0]);
193
for (i = 0; i < 32; i++) {
194
- irq[i] = qdev_get_gpio_in(dev, i);
195
+ irq[i] = qdev_get_gpio_in_named(DEVICE(cpu), "IRQ", i);
196
}
197
198
/* Register: Altera 16550 UART */
199
diff --git a/hw/nios2/cpu_pic.c b/hw/nios2/cpu_pic.c
200
index XXXXXXX..XXXXXXX 100644
201
--- a/hw/nios2/cpu_pic.c
202
+++ b/hw/nios2/cpu_pic.c
203
@@ -XXX,XX +XXX,XX @@
204
205
#include "boot.h"
206
207
-static void nios2_pic_cpu_handler(void *opaque, int irq, int level)
208
-{
209
- Nios2CPU *cpu = opaque;
210
- CPUNios2State *env = &cpu->env;
211
- CPUState *cs = CPU(cpu);
212
- int type = irq ? CPU_INTERRUPT_NMI : CPU_INTERRUPT_HARD;
213
-
214
- if (type == CPU_INTERRUPT_HARD) {
215
- env->irq_pending = level;
216
-
217
- if (level && (env->regs[CR_STATUS] & CR_STATUS_PIE)) {
218
- env->irq_pending = 0;
219
- cpu_interrupt(cs, type);
220
- } else if (!level) {
221
- env->irq_pending = 0;
222
- cpu_reset_interrupt(cs, type);
223
- }
224
- } else {
225
- if (level) {
226
- cpu_interrupt(cs, type);
227
- } else {
228
- cpu_reset_interrupt(cs, type);
229
- }
230
- }
231
-}
232
-
233
void nios2_check_interrupts(CPUNios2State *env)
234
{
235
if (env->irq_pending &&
236
@@ -XXX,XX +XXX,XX @@ void nios2_check_interrupts(CPUNios2State *env)
237
cpu_interrupt(env_cpu(env), CPU_INTERRUPT_HARD);
238
}
239
}
240
-
241
-qemu_irq *nios2_cpu_pic_init(Nios2CPU *cpu)
242
-{
243
- return qemu_allocate_irqs(nios2_pic_cpu_handler, cpu, 2);
244
-}
245
diff --git a/target/nios2/cpu.c b/target/nios2/cpu.c
246
index XXXXXXX..XXXXXXX 100644
247
--- a/target/nios2/cpu.c
248
+++ b/target/nios2/cpu.c
249
@@ -XXX,XX +XXX,XX @@ static void nios2_cpu_reset(DeviceState *dev)
30
#endif
250
#endif
31
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
32
index XXXXXXX..XXXXXXX 100644
33
--- a/target/arm/translate-a64.c
34
+++ b/target/arm/translate-a64.c
35
@@ -XXX,XX +XXX,XX @@ static void gen_gvec_op3_env(DisasContext *s, bool is_q, int rd,
36
is_q ? 16 : 8, vec_full_reg_size(s), 0, fn);
37
}
251
}
38
252
39
+/* Expand a 3-operand + fpstatus pointer + simd data value operation using
253
+#ifndef CONFIG_USER_ONLY
40
+ * an out-of-line helper.
254
+static void nios2_cpu_set_irq(void *opaque, int irq, int level)
41
+ */
42
+static void gen_gvec_op3_fpst(DisasContext *s, bool is_q, int rd, int rn,
43
+ int rm, bool is_fp16, int data,
44
+ gen_helper_gvec_3_ptr *fn)
45
+{
255
+{
46
+ TCGv_ptr fpst = get_fpstatus_ptr(is_fp16);
256
+ Nios2CPU *cpu = opaque;
47
+ tcg_gen_gvec_3_ptr(vec_full_reg_offset(s, rd),
257
+ CPUNios2State *env = &cpu->env;
48
+ vec_full_reg_offset(s, rn),
258
+ CPUState *cs = CPU(cpu);
49
+ vec_full_reg_offset(s, rm), fpst,
259
+
50
+ is_q ? 16 : 8, vec_full_reg_size(s), data, fn);
260
+ env->regs[CR_IPENDING] &= ~(1 << irq);
51
+ tcg_temp_free_ptr(fpst);
261
+ env->regs[CR_IPENDING] |= !!level << irq;
262
+
263
+ env->irq_pending = env->regs[CR_IPENDING] & env->regs[CR_IENABLE];
264
+
265
+ if (env->irq_pending && (env->regs[CR_STATUS] & CR_STATUS_PIE)) {
266
+ env->irq_pending = 0;
267
+ cpu_interrupt(cs, CPU_INTERRUPT_HARD);
268
+ } else if (!env->irq_pending) {
269
+ cpu_reset_interrupt(cs, CPU_INTERRUPT_HARD);
270
+ }
52
+}
271
+}
53
+
54
/* Set ZF and NF based on a 64 bit result. This is alas fiddlier
55
* than the 32 bit equivalent.
56
*/
57
@@ -XXX,XX +XXX,XX @@ static void disas_simd_three_reg_same_extra(DisasContext *s, uint32_t insn)
58
int size = extract32(insn, 22, 2);
59
bool u = extract32(insn, 29, 1);
60
bool is_q = extract32(insn, 30, 1);
61
- int feature;
62
+ int feature, rot;
63
64
switch (u * 16 + opcode) {
65
case 0x10: /* SQRDMLAH (vector) */
66
@@ -XXX,XX +XXX,XX @@ static void disas_simd_three_reg_same_extra(DisasContext *s, uint32_t insn)
67
}
68
feature = ARM_FEATURE_V8_RDM;
69
break;
70
+ case 0xc: /* FCADD, #90 */
71
+ case 0xe: /* FCADD, #270 */
72
+ if (size == 0
73
+ || (size == 1 && !arm_dc_feature(s, ARM_FEATURE_V8_FP16))
74
+ || (size == 3 && !is_q)) {
75
+ unallocated_encoding(s);
76
+ return;
77
+ }
78
+ feature = ARM_FEATURE_V8_FCMA;
79
+ break;
80
default:
81
unallocated_encoding(s);
82
return;
83
@@ -XXX,XX +XXX,XX @@ static void disas_simd_three_reg_same_extra(DisasContext *s, uint32_t insn)
84
}
85
return;
86
87
+ case 0xc: /* FCADD, #90 */
88
+ case 0xe: /* FCADD, #270 */
89
+ rot = extract32(opcode, 1, 1);
90
+ switch (size) {
91
+ case 1:
92
+ gen_gvec_op3_fpst(s, is_q, rd, rn, rm, size == 1, rot,
93
+ gen_helper_gvec_fcaddh);
94
+ break;
95
+ case 2:
96
+ gen_gvec_op3_fpst(s, is_q, rd, rn, rm, size == 1, rot,
97
+ gen_helper_gvec_fcadds);
98
+ break;
99
+ case 3:
100
+ gen_gvec_op3_fpst(s, is_q, rd, rn, rm, size == 1, rot,
101
+ gen_helper_gvec_fcaddd);
102
+ break;
103
+ default:
104
+ g_assert_not_reached();
105
+ }
106
+ return;
107
+
108
default:
109
g_assert_not_reached();
110
}
111
diff --git a/target/arm/vec_helper.c b/target/arm/vec_helper.c
112
index XXXXXXX..XXXXXXX 100644
113
--- a/target/arm/vec_helper.c
114
+++ b/target/arm/vec_helper.c
115
@@ -XXX,XX +XXX,XX @@
116
#include "exec/exec-all.h"
117
#include "exec/helper-proto.h"
118
#include "tcg/tcg-gvec-desc.h"
119
+#include "fpu/softfloat.h"
120
121
122
+/* Note that vector data is stored in host-endian 64-bit chunks,
123
+ so addressing units smaller than that needs a host-endian fixup. */
124
+#ifdef HOST_WORDS_BIGENDIAN
125
+#define H1(x) ((x) ^ 7)
126
+#define H2(x) ((x) ^ 3)
127
+#define H4(x) ((x) ^ 1)
128
+#else
129
+#define H1(x) (x)
130
+#define H2(x) (x)
131
+#define H4(x) (x)
132
+#endif
272
+#endif
133
+
273
+
134
#define SET_QC() env->vfp.xregs[ARM_VFP_FPSCR] |= CPSR_Q
274
static void nios2_cpu_initfn(Object *obj)
135
275
{
136
static void clear_tail(void *vd, uintptr_t opr_sz, uintptr_t max_sz)
276
Nios2CPU *cpu = NIOS2_CPU(obj);
137
@@ -XXX,XX +XXX,XX @@ void HELPER(gvec_qrdmlsh_s32)(void *vd, void *vn, void *vm,
277
@@ -XXX,XX +XXX,XX @@ static void nios2_cpu_initfn(Object *obj)
138
}
278
139
clear_tail(d, opr_sz, simd_maxsz(desc));
279
#if !defined(CONFIG_USER_ONLY)
280
mmu_init(&cpu->env);
281
+
282
+ /*
283
+ * These interrupt lines model the IIC (internal interrupt
284
+ * controller). QEMU does not currently support the EIC
285
+ * (external interrupt controller) -- if we did it would be
286
+ * a separate device in hw/intc with a custom interface to
287
+ * the CPU, and boards using it would not wire up these IRQ lines.
288
+ */
289
+ qdev_init_gpio_in_named(DEVICE(cpu), nios2_cpu_set_irq, "IRQ", 32);
290
#endif
140
}
291
}
141
+
292
142
+void HELPER(gvec_fcaddh)(void *vd, void *vn, void *vm,
293
diff --git a/MAINTAINERS b/MAINTAINERS
143
+ void *vfpst, uint32_t desc)
294
index XXXXXXX..XXXXXXX 100644
144
+{
295
--- a/MAINTAINERS
145
+ uintptr_t opr_sz = simd_oprsz(desc);
296
+++ b/MAINTAINERS
146
+ float16 *d = vd;
297
@@ -XXX,XX +XXX,XX @@ M: Marek Vasut <marex@denx.de>
147
+ float16 *n = vn;
298
S: Maintained
148
+ float16 *m = vm;
299
F: target/nios2/
149
+ float_status *fpst = vfpst;
300
F: hw/nios2/
150
+ uint32_t neg_real = extract32(desc, SIMD_DATA_SHIFT, 1);
301
-F: hw/intc/nios2_iic.c
151
+ uint32_t neg_imag = neg_real ^ 1;
302
F: disas/nios2.c
152
+ uintptr_t i;
303
F: default-configs/nios2-softmmu.mak
153
+
304
154
+ /* Shift boolean to the sign bit so we can xor to negate. */
305
diff --git a/hw/intc/meson.build b/hw/intc/meson.build
155
+ neg_real <<= 15;
306
index XXXXXXX..XXXXXXX 100644
156
+ neg_imag <<= 15;
307
--- a/hw/intc/meson.build
157
+
308
+++ b/hw/intc/meson.build
158
+ for (i = 0; i < opr_sz / 2; i += 2) {
309
@@ -XXX,XX +XXX,XX @@ specific_ss.add(when: 'CONFIG_IBEX', if_true: files('ibex_plic.c'))
159
+ float16 e0 = n[H2(i)];
310
specific_ss.add(when: 'CONFIG_IOAPIC', if_true: files('ioapic.c'))
160
+ float16 e1 = m[H2(i + 1)] ^ neg_imag;
311
specific_ss.add(when: 'CONFIG_LOONGSON_LIOINTC', if_true: files('loongson_liointc.c'))
161
+ float16 e2 = n[H2(i + 1)];
312
specific_ss.add(when: 'CONFIG_MIPS_CPS', if_true: files('mips_gic.c'))
162
+ float16 e3 = m[H2(i)] ^ neg_real;
313
-specific_ss.add(when: 'CONFIG_NIOS2', if_true: files('nios2_iic.c'))
163
+
314
specific_ss.add(when: 'CONFIG_OMAP', if_true: files('omap_intc.c'))
164
+ d[H2(i)] = float16_add(e0, e1, fpst);
315
specific_ss.add(when: 'CONFIG_OMPIC', if_true: files('ompic.c'))
165
+ d[H2(i + 1)] = float16_add(e2, e3, fpst);
316
specific_ss.add(when: 'CONFIG_OPENPIC_KVM', if_true: files('openpic_kvm.c'))
166
+ }
167
+ clear_tail(d, opr_sz, simd_maxsz(desc));
168
+}
169
+
170
+void HELPER(gvec_fcadds)(void *vd, void *vn, void *vm,
171
+ void *vfpst, uint32_t desc)
172
+{
173
+ uintptr_t opr_sz = simd_oprsz(desc);
174
+ float32 *d = vd;
175
+ float32 *n = vn;
176
+ float32 *m = vm;
177
+ float_status *fpst = vfpst;
178
+ uint32_t neg_real = extract32(desc, SIMD_DATA_SHIFT, 1);
179
+ uint32_t neg_imag = neg_real ^ 1;
180
+ uintptr_t i;
181
+
182
+ /* Shift boolean to the sign bit so we can xor to negate. */
183
+ neg_real <<= 31;
184
+ neg_imag <<= 31;
185
+
186
+ for (i = 0; i < opr_sz / 4; i += 2) {
187
+ float32 e0 = n[H4(i)];
188
+ float32 e1 = m[H4(i + 1)] ^ neg_imag;
189
+ float32 e2 = n[H4(i + 1)];
190
+ float32 e3 = m[H4(i)] ^ neg_real;
191
+
192
+ d[H4(i)] = float32_add(e0, e1, fpst);
193
+ d[H4(i + 1)] = float32_add(e2, e3, fpst);
194
+ }
195
+ clear_tail(d, opr_sz, simd_maxsz(desc));
196
+}
197
+
198
+void HELPER(gvec_fcaddd)(void *vd, void *vn, void *vm,
199
+ void *vfpst, uint32_t desc)
200
+{
201
+ uintptr_t opr_sz = simd_oprsz(desc);
202
+ float64 *d = vd;
203
+ float64 *n = vn;
204
+ float64 *m = vm;
205
+ float_status *fpst = vfpst;
206
+ uint64_t neg_real = extract64(desc, SIMD_DATA_SHIFT, 1);
207
+ uint64_t neg_imag = neg_real ^ 1;
208
+ uintptr_t i;
209
+
210
+ /* Shift boolean to the sign bit so we can xor to negate. */
211
+ neg_real <<= 63;
212
+ neg_imag <<= 63;
213
+
214
+ for (i = 0; i < opr_sz / 8; i += 2) {
215
+ float64 e0 = n[i];
216
+ float64 e1 = m[i + 1] ^ neg_imag;
217
+ float64 e2 = n[i + 1];
218
+ float64 e3 = m[i] ^ neg_real;
219
+
220
+ d[i] = float64_add(e0, e1, fpst);
221
+ d[i + 1] = float64_add(e2, e3, fpst);
222
+ }
223
+ clear_tail(d, opr_sz, simd_maxsz(desc));
224
+}
225
--
317
--
226
2.16.2
318
2.20.1
227
319
228
320
diff view generated by jsdifflib
1
Add a Cortex-M33 definition. The M33 is an M profile CPU
1
The function nios2_check_interrupts)() looks only at CPU-internal
2
which implements the ARM v8M architecture, including the
2
state; it belongs in target/nios2, not hw/nios2. Move it into the
3
M profile Security Extension.
3
same file as its only caller, so it can just be local to that file.
4
5
This removes the only remaining code from cpu_pic.c, so we can delete
6
that file entirely.
4
7
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
9
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
7
Message-id: 20180220180325.29818-9-peter.maydell@linaro.org
10
Message-id: 20201129174022.26530-3-peter.maydell@linaro.org
11
Reviewed-by: Wentong Wu <wentong.wu@intel.com>
12
Tested-by: Wentong Wu <wentong.wu@intel.com>
8
---
13
---
9
target/arm/cpu.c | 31 +++++++++++++++++++++++++++++++
14
target/nios2/cpu.h | 2 --
10
1 file changed, 31 insertions(+)
15
hw/nios2/cpu_pic.c | 36 ------------------------------------
16
target/nios2/op_helper.c | 9 +++++++++
17
hw/nios2/meson.build | 2 +-
18
4 files changed, 10 insertions(+), 39 deletions(-)
19
delete mode 100644 hw/nios2/cpu_pic.c
11
20
12
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
21
diff --git a/target/nios2/cpu.h b/target/nios2/cpu.h
13
index XXXXXXX..XXXXXXX 100644
22
index XXXXXXX..XXXXXXX 100644
14
--- a/target/arm/cpu.c
23
--- a/target/nios2/cpu.h
15
+++ b/target/arm/cpu.c
24
+++ b/target/nios2/cpu.h
16
@@ -XXX,XX +XXX,XX @@ static void cortex_m4_initfn(Object *obj)
25
@@ -XXX,XX +XXX,XX @@ void nios2_cpu_do_unaligned_access(CPUState *cpu, vaddr addr,
17
cpu->id_isar5 = 0x00000000;
26
MMUAccessType access_type,
27
int mmu_idx, uintptr_t retaddr);
28
29
-void nios2_check_interrupts(CPUNios2State *env);
30
-
31
void do_nios2_semihosting(CPUNios2State *env);
32
33
#define CPU_RESOLVING_TYPE TYPE_NIOS2_CPU
34
diff --git a/hw/nios2/cpu_pic.c b/hw/nios2/cpu_pic.c
35
deleted file mode 100644
36
index XXXXXXX..XXXXXXX
37
--- a/hw/nios2/cpu_pic.c
38
+++ /dev/null
39
@@ -XXX,XX +XXX,XX @@
40
-/*
41
- * Altera Nios2 CPU PIC
42
- *
43
- * Copyright (c) 2016 Marek Vasut <marek.vasut@gmail.com>
44
- *
45
- * This library is free software; you can redistribute it and/or
46
- * modify it under the terms of the GNU Lesser General Public
47
- * License as published by the Free Software Foundation; either
48
- * version 2.1 of the License, or (at your option) any later version.
49
- *
50
- * This library is distributed in the hope that it will be useful,
51
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
52
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
53
- * Lesser General Public License for more details.
54
- *
55
- * You should have received a copy of the GNU Lesser General Public
56
- * License along with this library; if not, see
57
- * <http://www.gnu.org/licenses/lgpl-2.1.html>
58
- */
59
-
60
-#include "qemu/osdep.h"
61
-#include "cpu.h"
62
-#include "hw/irq.h"
63
-
64
-#include "qemu/config-file.h"
65
-
66
-#include "boot.h"
67
-
68
-void nios2_check_interrupts(CPUNios2State *env)
69
-{
70
- if (env->irq_pending &&
71
- (env->regs[CR_STATUS] & CR_STATUS_PIE)) {
72
- env->irq_pending = 0;
73
- cpu_interrupt(env_cpu(env), CPU_INTERRUPT_HARD);
74
- }
75
-}
76
diff --git a/target/nios2/op_helper.c b/target/nios2/op_helper.c
77
index XXXXXXX..XXXXXXX 100644
78
--- a/target/nios2/op_helper.c
79
+++ b/target/nios2/op_helper.c
80
@@ -XXX,XX +XXX,XX @@ void helper_mmu_write(CPUNios2State *env, uint32_t rn, uint32_t v)
81
mmu_write(env, rn, v);
18
}
82
}
19
83
20
+static void cortex_m33_initfn(Object *obj)
84
+static void nios2_check_interrupts(CPUNios2State *env)
21
+{
85
+{
22
+ ARMCPU *cpu = ARM_CPU(obj);
86
+ if (env->irq_pending &&
23
+
87
+ (env->regs[CR_STATUS] & CR_STATUS_PIE)) {
24
+ set_feature(&cpu->env, ARM_FEATURE_V8);
88
+ env->irq_pending = 0;
25
+ set_feature(&cpu->env, ARM_FEATURE_M);
89
+ cpu_interrupt(env_cpu(env), CPU_INTERRUPT_HARD);
26
+ set_feature(&cpu->env, ARM_FEATURE_M_SECURITY);
90
+ }
27
+ set_feature(&cpu->env, ARM_FEATURE_THUMB_DSP);
28
+ cpu->midr = 0x410fd213; /* r0p3 */
29
+ cpu->pmsav7_dregion = 16;
30
+ cpu->sau_sregion = 8;
31
+ cpu->id_pfr0 = 0x00000030;
32
+ cpu->id_pfr1 = 0x00000210;
33
+ cpu->id_dfr0 = 0x00200000;
34
+ cpu->id_afr0 = 0x00000000;
35
+ cpu->id_mmfr0 = 0x00101F40;
36
+ cpu->id_mmfr1 = 0x00000000;
37
+ cpu->id_mmfr2 = 0x01000000;
38
+ cpu->id_mmfr3 = 0x00000000;
39
+ cpu->id_isar0 = 0x01101110;
40
+ cpu->id_isar1 = 0x02212000;
41
+ cpu->id_isar2 = 0x20232232;
42
+ cpu->id_isar3 = 0x01111131;
43
+ cpu->id_isar4 = 0x01310132;
44
+ cpu->id_isar5 = 0x00000000;
45
+ cpu->clidr = 0x00000000;
46
+ cpu->ctr = 0x8000c000;
47
+}
91
+}
48
+
92
+
49
static void arm_v7m_class_init(ObjectClass *oc, void *data)
93
void helper_check_interrupts(CPUNios2State *env)
50
{
94
{
51
CPUClass *cc = CPU_CLASS(oc);
95
qemu_mutex_lock_iothread();
52
@@ -XXX,XX +XXX,XX @@ static const ARMCPUInfo arm_cpus[] = {
96
diff --git a/hw/nios2/meson.build b/hw/nios2/meson.build
53
.class_init = arm_v7m_class_init },
97
index XXXXXXX..XXXXXXX 100644
54
{ .name = "cortex-m4", .initfn = cortex_m4_initfn,
98
--- a/hw/nios2/meson.build
55
.class_init = arm_v7m_class_init },
99
+++ b/hw/nios2/meson.build
56
+ { .name = "cortex-m33", .initfn = cortex_m33_initfn,
100
@@ -XXX,XX +XXX,XX @@
57
+ .class_init = arm_v7m_class_init },
101
nios2_ss = ss.source_set()
58
{ .name = "cortex-r5", .initfn = cortex_r5_initfn },
102
-nios2_ss.add(files('boot.c', 'cpu_pic.c'))
59
{ .name = "cortex-a7", .initfn = cortex_a7_initfn },
103
+nios2_ss.add(files('boot.c'))
60
{ .name = "cortex-a8", .initfn = cortex_a8_initfn },
104
nios2_ss.add(when: 'CONFIG_NIOS2_10M50', if_true: files('10m50_devboard.c'))
105
nios2_ss.add(when: 'CONFIG_NIOS2_GENERIC_NOMMU', if_true: files('generic_nommu.c'))
106
61
--
107
--
62
2.16.2
108
2.20.1
63
109
64
110
diff view generated by jsdifflib
1
Instead of loading kernels, device trees, and the like to
1
In nios2_cpu_set_irq(), use deposit32() rather than raw shift-and-mask
2
the system address space, use the CPU's address space. This
2
operations to set the appropriate bit in the ipending register.
3
is important if we're trying to load the file to memory or
4
via an alias memory region that is provided by an SoC
5
object and thus not mapped into the system address space.
6
3
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
4
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
5
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
9
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
6
Message-id: 20201129174022.26530-4-peter.maydell@linaro.org
10
Message-id: 20180220180325.29818-3-peter.maydell@linaro.org
11
---
7
---
12
hw/arm/boot.c | 119 +++++++++++++++++++++++++++++++++++++---------------------
8
target/nios2/cpu.c | 3 +--
13
1 file changed, 76 insertions(+), 43 deletions(-)
9
1 file changed, 1 insertion(+), 2 deletions(-)
14
10
15
diff --git a/hw/arm/boot.c b/hw/arm/boot.c
11
diff --git a/target/nios2/cpu.c b/target/nios2/cpu.c
16
index XXXXXXX..XXXXXXX 100644
12
index XXXXXXX..XXXXXXX 100644
17
--- a/hw/arm/boot.c
13
--- a/target/nios2/cpu.c
18
+++ b/hw/arm/boot.c
14
+++ b/target/nios2/cpu.c
19
@@ -XXX,XX +XXX,XX @@
15
@@ -XXX,XX +XXX,XX @@ static void nios2_cpu_set_irq(void *opaque, int irq, int level)
20
#define ARM64_TEXT_OFFSET_OFFSET 8
16
CPUNios2State *env = &cpu->env;
21
#define ARM64_MAGIC_OFFSET 56
22
23
+static AddressSpace *arm_boot_address_space(ARMCPU *cpu,
24
+ const struct arm_boot_info *info)
25
+{
26
+ /* Return the address space to use for bootloader reads and writes.
27
+ * We prefer the secure address space if the CPU has it and we're
28
+ * going to boot the guest into it.
29
+ */
30
+ int asidx;
31
+ CPUState *cs = CPU(cpu);
32
+
33
+ if (arm_feature(&cpu->env, ARM_FEATURE_EL3) && info->secure_boot) {
34
+ asidx = ARMASIdx_S;
35
+ } else {
36
+ asidx = ARMASIdx_NS;
37
+ }
38
+
39
+ return cpu_get_address_space(cs, asidx);
40
+}
41
+
42
typedef enum {
43
FIXUP_NONE = 0, /* do nothing */
44
FIXUP_TERMINATOR, /* end of insns */
45
@@ -XXX,XX +XXX,XX @@ static const ARMInsnFixup smpboot[] = {
46
};
47
48
static void write_bootloader(const char *name, hwaddr addr,
49
- const ARMInsnFixup *insns, uint32_t *fixupcontext)
50
+ const ARMInsnFixup *insns, uint32_t *fixupcontext,
51
+ AddressSpace *as)
52
{
53
/* Fix up the specified bootloader fragment and write it into
54
* guest memory using rom_add_blob_fixed(). fixupcontext is
55
@@ -XXX,XX +XXX,XX @@ static void write_bootloader(const char *name, hwaddr addr,
56
code[i] = tswap32(insn);
57
}
58
59
- rom_add_blob_fixed(name, code, len * sizeof(uint32_t), addr);
60
+ rom_add_blob_fixed_as(name, code, len * sizeof(uint32_t), addr, as);
61
62
g_free(code);
63
}
64
@@ -XXX,XX +XXX,XX @@ static void default_write_secondary(ARMCPU *cpu,
65
const struct arm_boot_info *info)
66
{
67
uint32_t fixupcontext[FIXUP_MAX];
68
+ AddressSpace *as = arm_boot_address_space(cpu, info);
69
70
fixupcontext[FIXUP_GIC_CPU_IF] = info->gic_cpu_if_addr;
71
fixupcontext[FIXUP_BOOTREG] = info->smp_bootreg_addr;
72
@@ -XXX,XX +XXX,XX @@ static void default_write_secondary(ARMCPU *cpu,
73
}
74
75
write_bootloader("smpboot", info->smp_loader_start,
76
- smpboot, fixupcontext);
77
+ smpboot, fixupcontext, as);
78
}
79
80
void arm_write_secure_board_setup_dummy_smc(ARMCPU *cpu,
81
const struct arm_boot_info *info,
82
hwaddr mvbar_addr)
83
{
84
+ AddressSpace *as = arm_boot_address_space(cpu, info);
85
int n;
86
uint32_t mvbar_blob[] = {
87
/* mvbar_addr: secure monitor vectors
88
@@ -XXX,XX +XXX,XX @@ void arm_write_secure_board_setup_dummy_smc(ARMCPU *cpu,
89
for (n = 0; n < ARRAY_SIZE(mvbar_blob); n++) {
90
mvbar_blob[n] = tswap32(mvbar_blob[n]);
91
}
92
- rom_add_blob_fixed("board-setup-mvbar", mvbar_blob, sizeof(mvbar_blob),
93
- mvbar_addr);
94
+ rom_add_blob_fixed_as("board-setup-mvbar", mvbar_blob, sizeof(mvbar_blob),
95
+ mvbar_addr, as);
96
97
for (n = 0; n < ARRAY_SIZE(board_setup_blob); n++) {
98
board_setup_blob[n] = tswap32(board_setup_blob[n]);
99
}
100
- rom_add_blob_fixed("board-setup", board_setup_blob,
101
- sizeof(board_setup_blob), info->board_setup_addr);
102
+ rom_add_blob_fixed_as("board-setup", board_setup_blob,
103
+ sizeof(board_setup_blob), info->board_setup_addr, as);
104
}
105
106
static void default_reset_secondary(ARMCPU *cpu,
107
const struct arm_boot_info *info)
108
{
109
+ AddressSpace *as = arm_boot_address_space(cpu, info);
110
CPUState *cs = CPU(cpu);
17
CPUState *cs = CPU(cpu);
111
18
112
- address_space_stl_notdirty(&address_space_memory, info->smp_bootreg_addr,
19
- env->regs[CR_IPENDING] &= ~(1 << irq);
113
+ address_space_stl_notdirty(as, info->smp_bootreg_addr,
20
- env->regs[CR_IPENDING] |= !!level << irq;
114
0, MEMTXATTRS_UNSPECIFIED, NULL);
21
+ env->regs[CR_IPENDING] = deposit32(env->regs[CR_IPENDING], irq, 1, !!level);
115
cpu_set_pc(cs, info->smp_loader_start);
22
116
}
23
env->irq_pending = env->regs[CR_IPENDING] & env->regs[CR_IENABLE];
117
@@ -XXX,XX +XXX,XX @@ static inline bool have_dtb(const struct arm_boot_info *info)
24
118
}
119
120
#define WRITE_WORD(p, value) do { \
121
- address_space_stl_notdirty(&address_space_memory, p, value, \
122
+ address_space_stl_notdirty(as, p, value, \
123
MEMTXATTRS_UNSPECIFIED, NULL); \
124
p += 4; \
125
} while (0)
126
127
-static void set_kernel_args(const struct arm_boot_info *info)
128
+static void set_kernel_args(const struct arm_boot_info *info, AddressSpace *as)
129
{
130
int initrd_size = info->initrd_size;
131
hwaddr base = info->loader_start;
132
@@ -XXX,XX +XXX,XX @@ static void set_kernel_args(const struct arm_boot_info *info)
133
int cmdline_size;
134
135
cmdline_size = strlen(info->kernel_cmdline);
136
- cpu_physical_memory_write(p + 8, info->kernel_cmdline,
137
- cmdline_size + 1);
138
+ address_space_write(as, p + 8, MEMTXATTRS_UNSPECIFIED,
139
+ (const uint8_t *)info->kernel_cmdline,
140
+ cmdline_size + 1);
141
cmdline_size = (cmdline_size >> 2) + 1;
142
WRITE_WORD(p, cmdline_size + 2);
143
WRITE_WORD(p, 0x54410009);
144
@@ -XXX,XX +XXX,XX @@ static void set_kernel_args(const struct arm_boot_info *info)
145
atag_board_len = (info->atag_board(info, atag_board_buf) + 3) & ~3;
146
WRITE_WORD(p, (atag_board_len + 8) >> 2);
147
WRITE_WORD(p, 0x414f4d50);
148
- cpu_physical_memory_write(p, atag_board_buf, atag_board_len);
149
+ address_space_write(as, p, MEMTXATTRS_UNSPECIFIED,
150
+ atag_board_buf, atag_board_len);
151
p += atag_board_len;
152
}
153
/* ATAG_END */
154
@@ -XXX,XX +XXX,XX @@ static void set_kernel_args(const struct arm_boot_info *info)
155
WRITE_WORD(p, 0);
156
}
157
158
-static void set_kernel_args_old(const struct arm_boot_info *info)
159
+static void set_kernel_args_old(const struct arm_boot_info *info,
160
+ AddressSpace *as)
161
{
162
hwaddr p;
163
const char *s;
164
@@ -XXX,XX +XXX,XX @@ static void set_kernel_args_old(const struct arm_boot_info *info)
165
}
166
s = info->kernel_cmdline;
167
if (s) {
168
- cpu_physical_memory_write(p, s, strlen(s) + 1);
169
+ address_space_write(as, p, MEMTXATTRS_UNSPECIFIED,
170
+ (const uint8_t *)s, strlen(s) + 1);
171
} else {
172
WRITE_WORD(p, 0);
173
}
174
@@ -XXX,XX +XXX,XX @@ static void fdt_add_psci_node(void *fdt)
175
* @addr: the address to load the image at
176
* @binfo: struct describing the boot environment
177
* @addr_limit: upper limit of the available memory area at @addr
178
+ * @as: address space to load image to
179
*
180
* Load a device tree supplied by the machine or by the user with the
181
* '-dtb' command line option, and put it at offset @addr in target
182
@@ -XXX,XX +XXX,XX @@ static void fdt_add_psci_node(void *fdt)
183
* Note: Must not be called unless have_dtb(binfo) is true.
184
*/
185
static int load_dtb(hwaddr addr, const struct arm_boot_info *binfo,
186
- hwaddr addr_limit)
187
+ hwaddr addr_limit, AddressSpace *as)
188
{
189
void *fdt = NULL;
190
int size, rc;
191
@@ -XXX,XX +XXX,XX @@ static int load_dtb(hwaddr addr, const struct arm_boot_info *binfo,
192
/* Put the DTB into the memory map as a ROM image: this will ensure
193
* the DTB is copied again upon reset, even if addr points into RAM.
194
*/
195
- rom_add_blob_fixed("dtb", fdt, size, addr);
196
+ rom_add_blob_fixed_as("dtb", fdt, size, addr, as);
197
198
g_free(fdt);
199
200
@@ -XXX,XX +XXX,XX @@ static void do_cpu_reset(void *opaque)
201
}
202
203
if (cs == first_cpu) {
204
+ AddressSpace *as = arm_boot_address_space(cpu, info);
205
+
206
cpu_set_pc(cs, info->loader_start);
207
208
if (!have_dtb(info)) {
209
if (old_param) {
210
- set_kernel_args_old(info);
211
+ set_kernel_args_old(info, as);
212
} else {
213
- set_kernel_args(info);
214
+ set_kernel_args(info, as);
215
}
216
}
217
} else {
218
@@ -XXX,XX +XXX,XX @@ static int do_arm_linux_init(Object *obj, void *opaque)
219
220
static uint64_t arm_load_elf(struct arm_boot_info *info, uint64_t *pentry,
221
uint64_t *lowaddr, uint64_t *highaddr,
222
- int elf_machine)
223
+ int elf_machine, AddressSpace *as)
224
{
225
bool elf_is64;
226
union {
227
@@ -XXX,XX +XXX,XX @@ static uint64_t arm_load_elf(struct arm_boot_info *info, uint64_t *pentry,
228
}
229
}
230
231
- ret = load_elf(info->kernel_filename, NULL, NULL,
232
- pentry, lowaddr, highaddr, big_endian, elf_machine,
233
- 1, data_swab);
234
+ ret = load_elf_as(info->kernel_filename, NULL, NULL,
235
+ pentry, lowaddr, highaddr, big_endian, elf_machine,
236
+ 1, data_swab, as);
237
if (ret <= 0) {
238
/* The header loaded but the image didn't */
239
exit(1);
240
@@ -XXX,XX +XXX,XX @@ static uint64_t arm_load_elf(struct arm_boot_info *info, uint64_t *pentry,
241
}
242
243
static uint64_t load_aarch64_image(const char *filename, hwaddr mem_base,
244
- hwaddr *entry)
245
+ hwaddr *entry, AddressSpace *as)
246
{
247
hwaddr kernel_load_offset = KERNEL64_LOAD_ADDR;
248
uint8_t *buffer;
249
@@ -XXX,XX +XXX,XX @@ static uint64_t load_aarch64_image(const char *filename, hwaddr mem_base,
250
}
251
252
*entry = mem_base + kernel_load_offset;
253
- rom_add_blob_fixed(filename, buffer, size, *entry);
254
+ rom_add_blob_fixed_as(filename, buffer, size, *entry, as);
255
256
g_free(buffer);
257
258
@@ -XXX,XX +XXX,XX @@ static void arm_load_kernel_notify(Notifier *notifier, void *data)
259
ARMCPU *cpu = n->cpu;
260
struct arm_boot_info *info =
261
container_of(n, struct arm_boot_info, load_kernel_notifier);
262
+ AddressSpace *as = arm_boot_address_space(cpu, info);
263
264
/* The board code is not supposed to set secure_board_setup unless
265
* running its code in secure mode is actually possible, and KVM
266
@@ -XXX,XX +XXX,XX @@ static void arm_load_kernel_notify(Notifier *notifier, void *data)
267
* the kernel is supposed to be loaded by the bootloader), copy the
268
* DTB to the base of RAM for the bootloader to pick up.
269
*/
270
- if (load_dtb(info->loader_start, info, 0) < 0) {
271
+ if (load_dtb(info->loader_start, info, 0, as) < 0) {
272
exit(1);
273
}
274
}
275
@@ -XXX,XX +XXX,XX @@ static void arm_load_kernel_notify(Notifier *notifier, void *data)
276
277
/* Assume that raw images are linux kernels, and ELF images are not. */
278
kernel_size = arm_load_elf(info, &elf_entry, &elf_low_addr,
279
- &elf_high_addr, elf_machine);
280
+ &elf_high_addr, elf_machine, as);
281
if (kernel_size > 0 && have_dtb(info)) {
282
/* If there is still some room left at the base of RAM, try and put
283
* the DTB there like we do for images loaded with -bios or -pflash.
284
@@ -XXX,XX +XXX,XX @@ static void arm_load_kernel_notify(Notifier *notifier, void *data)
285
if (elf_low_addr < info->loader_start) {
286
elf_low_addr = 0;
287
}
288
- if (load_dtb(info->loader_start, info, elf_low_addr) < 0) {
289
+ if (load_dtb(info->loader_start, info, elf_low_addr, as) < 0) {
290
exit(1);
291
}
292
}
293
}
294
entry = elf_entry;
295
if (kernel_size < 0) {
296
- kernel_size = load_uimage(info->kernel_filename, &entry, NULL,
297
- &is_linux, NULL, NULL);
298
+ kernel_size = load_uimage_as(info->kernel_filename, &entry, NULL,
299
+ &is_linux, NULL, NULL, as);
300
}
301
if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64) && kernel_size < 0) {
302
kernel_size = load_aarch64_image(info->kernel_filename,
303
- info->loader_start, &entry);
304
+ info->loader_start, &entry, as);
305
is_linux = 1;
306
} else if (kernel_size < 0) {
307
/* 32-bit ARM */
308
entry = info->loader_start + KERNEL_LOAD_ADDR;
309
- kernel_size = load_image_targphys(info->kernel_filename, entry,
310
- info->ram_size - KERNEL_LOAD_ADDR);
311
+ kernel_size = load_image_targphys_as(info->kernel_filename, entry,
312
+ info->ram_size - KERNEL_LOAD_ADDR,
313
+ as);
314
is_linux = 1;
315
}
316
if (kernel_size < 0) {
317
@@ -XXX,XX +XXX,XX @@ static void arm_load_kernel_notify(Notifier *notifier, void *data)
318
uint32_t fixupcontext[FIXUP_MAX];
319
320
if (info->initrd_filename) {
321
- initrd_size = load_ramdisk(info->initrd_filename,
322
- info->initrd_start,
323
- info->ram_size -
324
- info->initrd_start);
325
+ initrd_size = load_ramdisk_as(info->initrd_filename,
326
+ info->initrd_start,
327
+ info->ram_size - info->initrd_start,
328
+ as);
329
if (initrd_size < 0) {
330
- initrd_size = load_image_targphys(info->initrd_filename,
331
- info->initrd_start,
332
- info->ram_size -
333
- info->initrd_start);
334
+ initrd_size = load_image_targphys_as(info->initrd_filename,
335
+ info->initrd_start,
336
+ info->ram_size -
337
+ info->initrd_start,
338
+ as);
339
}
340
if (initrd_size < 0) {
341
error_report("could not load initrd '%s'",
342
@@ -XXX,XX +XXX,XX @@ static void arm_load_kernel_notify(Notifier *notifier, void *data)
343
344
/* Place the DTB after the initrd in memory with alignment. */
345
dtb_start = QEMU_ALIGN_UP(info->initrd_start + initrd_size, align);
346
- if (load_dtb(dtb_start, info, 0) < 0) {
347
+ if (load_dtb(dtb_start, info, 0, as) < 0) {
348
exit(1);
349
}
350
fixupcontext[FIXUP_ARGPTR] = dtb_start;
351
@@ -XXX,XX +XXX,XX @@ static void arm_load_kernel_notify(Notifier *notifier, void *data)
352
fixupcontext[FIXUP_ENTRYPOINT] = entry;
353
354
write_bootloader("bootloader", info->loader_start,
355
- primary_loader, fixupcontext);
356
+ primary_loader, fixupcontext, as);
357
358
if (info->nb_cpus > 1) {
359
info->write_secondary_boot(cpu, info);
360
--
25
--
361
2.16.2
26
2.20.1
362
27
363
28
diff view generated by jsdifflib
1
Add a function load_ramdisk_as() which behaves like the existing
1
In rom_check_and_register_reset() we detect overlaps by looking at
2
load_ramdisk() but allows the caller to specify the AddressSpace
2
whether the ROM blob we're currently examining is in the same address
3
to use. This matches the pattern we have already for various
3
space and starts before the previous ROM blob ends. (This works
4
other loader functions.
4
because the ROM list is kept sorted in order by AddressSpace and then
5
by address.)
6
7
Instead of keeping the AddressSpace and last address of the previous ROM
8
blob in local variables, just keep a pointer to it.
9
10
This will allow us to print more useful information when we do detect
11
an overlap.
5
12
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
8
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
14
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
9
Message-id: 20180220180325.29818-2-peter.maydell@linaro.org
15
Message-id: 20201129203923.10622-2-peter.maydell@linaro.org
10
---
16
---
11
include/hw/loader.h | 12 +++++++++++-
17
hw/core/loader.c | 23 +++++++++++++++--------
12
hw/core/loader.c | 8 +++++++-
18
1 file changed, 15 insertions(+), 8 deletions(-)
13
2 files changed, 18 insertions(+), 2 deletions(-)
14
19
15
diff --git a/include/hw/loader.h b/include/hw/loader.h
16
index XXXXXXX..XXXXXXX 100644
17
--- a/include/hw/loader.h
18
+++ b/include/hw/loader.h
19
@@ -XXX,XX +XXX,XX @@ int load_uimage(const char *filename, hwaddr *ep,
20
void *translate_opaque);
21
22
/**
23
- * load_ramdisk:
24
+ * load_ramdisk_as:
25
* @filename: Path to the ramdisk image
26
* @addr: Memory address to load the ramdisk to
27
* @max_sz: Maximum allowed ramdisk size (for non-u-boot ramdisks)
28
+ * @as: The AddressSpace to load the ELF to. The value of address_space_memory
29
+ * is used if nothing is supplied here.
30
*
31
* Load a ramdisk image with U-Boot header to the specified memory
32
* address.
33
*
34
* Returns the size of the loaded image on success, -1 otherwise.
35
*/
36
+int load_ramdisk_as(const char *filename, hwaddr addr, uint64_t max_sz,
37
+ AddressSpace *as);
38
+
39
+/**
40
+ * load_ramdisk:
41
+ * Same as load_ramdisk_as(), but doesn't allow the caller to specify
42
+ * an AddressSpace.
43
+ */
44
int load_ramdisk(const char *filename, hwaddr addr, uint64_t max_sz);
45
46
ssize_t gunzip(void *dst, size_t dstlen, uint8_t *src, size_t srclen);
47
diff --git a/hw/core/loader.c b/hw/core/loader.c
20
diff --git a/hw/core/loader.c b/hw/core/loader.c
48
index XXXXXXX..XXXXXXX 100644
21
index XXXXXXX..XXXXXXX 100644
49
--- a/hw/core/loader.c
22
--- a/hw/core/loader.c
50
+++ b/hw/core/loader.c
23
+++ b/hw/core/loader.c
51
@@ -XXX,XX +XXX,XX @@ int load_uimage_as(const char *filename, hwaddr *ep, hwaddr *loadaddr,
24
@@ -XXX,XX +XXX,XX @@ static void rom_reset(void *unused)
52
25
}
53
/* Load a ramdisk. */
26
}
54
int load_ramdisk(const char *filename, hwaddr addr, uint64_t max_sz)
27
28
+/* Return true if two consecutive ROMs in the ROM list overlap */
29
+static bool roms_overlap(Rom *last_rom, Rom *this_rom)
55
+{
30
+{
56
+ return load_ramdisk_as(filename, addr, max_sz, NULL);
31
+ if (!last_rom) {
32
+ return false;
33
+ }
34
+ return last_rom->as == this_rom->as &&
35
+ last_rom->addr + last_rom->romsize > this_rom->addr;
57
+}
36
+}
58
+
37
+
59
+int load_ramdisk_as(const char *filename, hwaddr addr, uint64_t max_sz,
38
int rom_check_and_register_reset(void)
60
+ AddressSpace *as)
61
{
39
{
62
return load_uboot_image(filename, NULL, &addr, NULL, IH_TYPE_RAMDISK,
40
- hwaddr addr = 0;
63
- NULL, NULL, NULL);
41
MemoryRegionSection section;
64
+ NULL, NULL, as);
42
- Rom *rom;
65
}
43
- AddressSpace *as = NULL;
66
44
+ Rom *rom, *last_rom = NULL;
67
/* Load a gzip-compressed kernel to a dynamically allocated buffer. */
45
46
QTAILQ_FOREACH(rom, &roms, next) {
47
if (rom->fw_file) {
48
continue;
49
}
50
if (!rom->mr) {
51
- if ((addr > rom->addr) && (as == rom->as)) {
52
+ if (roms_overlap(last_rom, rom)) {
53
fprintf(stderr, "rom: requested regions overlap "
54
"(rom %s. free=0x" TARGET_FMT_plx
55
", addr=0x" TARGET_FMT_plx ")\n",
56
- rom->name, addr, rom->addr);
57
+ rom->name, last_rom->addr + last_rom->romsize,
58
+ rom->addr);
59
return -1;
60
}
61
- addr = rom->addr;
62
- addr += rom->romsize;
63
- as = rom->as;
64
+ last_rom = rom;
65
}
66
section = memory_region_find(rom->mr ? rom->mr : get_system_memory(),
67
rom->addr, 1);
68
--
68
--
69
2.16.2
69
2.20.1
70
70
71
71
diff view generated by jsdifflib
1
Add a model of the TrustZone peripheral protection controller (PPC),
1
In rom_check_and_register_reset() we report to the user if there is
2
which is used to gate transactions to non-TZ-aware peripherals so
2
a "ROM region overlap". This has a couple of problems:
3
that secure software can configure them to not be accessible to
3
* the reported information is not very easy to intepret
4
non-secure software.
4
* the function just prints the overlap to stderr (and relies on
5
its single callsite in vl.c to do an error_report() and exit)
6
* only the first overlap encountered is diagnosed
7
8
Make this function use error_report() and error_printf() and
9
report a more user-friendly report with all the overlaps
10
diagnosed.
11
12
Sample old output:
13
14
rom: requested regions overlap (rom dtb. free=0x0000000000008000, addr=0x0000000000000000)
15
qemu-system-aarch64: rom check and register reset failed
16
17
Sample new output:
18
19
qemu-system-aarch64: Some ROM regions are overlapping
20
These ROM regions might have been loaded by direct user request or by default.
21
They could be BIOS/firmware images, a guest kernel, initrd or some other file loaded into guest memory.
22
Check whether you intended to load all this guest code, and whether it has been built to load to the correct addresses.
23
24
The following two regions overlap (in the cpu-memory-0 address space):
25
phdr #0: /home/petmay01/linaro/qemu-misc-tests/ldmia-fault.axf (addresses 0x0000000000000000 - 0x0000000000008000)
26
dtb (addresses 0x0000000000000000 - 0x0000000000100000)
27
28
The following two regions overlap (in the cpu-memory-0 address space):
29
phdr #1: /home/petmay01/linaro/qemu-misc-tests/bad-psci-call.axf (addresses 0x0000000040000000 - 0x0000000040000010)
30
phdr #0: /home/petmay01/linaro/qemu-misc-tests/bp-test.elf (addresses 0x0000000040000000 - 0x0000000040000020)
5
31
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
32
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
33
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20180220180325.29818-15-peter.maydell@linaro.org
34
Message-id: 20201129203923.10622-3-peter.maydell@linaro.org
9
---
35
---
10
hw/misc/Makefile.objs | 2 +
36
hw/core/loader.c | 48 ++++++++++++++++++++++++++++++++++++++++++------
11
include/hw/misc/tz-ppc.h | 101 ++++++++++++++
37
softmmu/vl.c | 1 -
12
hw/misc/tz-ppc.c | 302 ++++++++++++++++++++++++++++++++++++++++
38
2 files changed, 42 insertions(+), 7 deletions(-)
13
default-configs/arm-softmmu.mak | 2 +
14
hw/misc/trace-events | 11 ++
15
5 files changed, 418 insertions(+)
16
create mode 100644 include/hw/misc/tz-ppc.h
17
create mode 100644 hw/misc/tz-ppc.c
18
39
19
diff --git a/hw/misc/Makefile.objs b/hw/misc/Makefile.objs
40
diff --git a/hw/core/loader.c b/hw/core/loader.c
20
index XXXXXXX..XXXXXXX 100644
41
index XXXXXXX..XXXXXXX 100644
21
--- a/hw/misc/Makefile.objs
42
--- a/hw/core/loader.c
22
+++ b/hw/misc/Makefile.objs
43
+++ b/hw/core/loader.c
23
@@ -XXX,XX +XXX,XX @@ obj-$(CONFIG_MIPS_ITU) += mips_itu.o
44
@@ -XXX,XX +XXX,XX @@ static bool roms_overlap(Rom *last_rom, Rom *this_rom)
24
obj-$(CONFIG_MPS2_FPGAIO) += mps2-fpgaio.o
45
last_rom->addr + last_rom->romsize > this_rom->addr;
25
obj-$(CONFIG_MPS2_SCC) += mps2-scc.o
46
}
26
47
27
+obj-$(CONFIG_TZ_PPC) += tz-ppc.o
48
+static const char *rom_as_name(Rom *rom)
28
+
29
obj-$(CONFIG_PVPANIC) += pvpanic.o
30
obj-$(CONFIG_HYPERV_TESTDEV) += hyperv_testdev.o
31
obj-$(CONFIG_AUX) += auxbus.o
32
diff --git a/include/hw/misc/tz-ppc.h b/include/hw/misc/tz-ppc.h
33
new file mode 100644
34
index XXXXXXX..XXXXXXX
35
--- /dev/null
36
+++ b/include/hw/misc/tz-ppc.h
37
@@ -XXX,XX +XXX,XX @@
38
+/*
39
+ * ARM TrustZone peripheral protection controller emulation
40
+ *
41
+ * Copyright (c) 2018 Linaro Limited
42
+ * Written by Peter Maydell
43
+ *
44
+ * This program is free software; you can redistribute it and/or modify
45
+ * it under the terms of the GNU General Public License version 2 or
46
+ * (at your option) any later version.
47
+ */
48
+
49
+/* This is a model of the TrustZone peripheral protection controller (PPC).
50
+ * It is documented in the ARM CoreLink SIE-200 System IP for Embedded TRM
51
+ * (DDI 0571G):
52
+ * https://developer.arm.com/products/architecture/m-profile/docs/ddi0571/g
53
+ *
54
+ * The PPC sits in front of peripherals and allows secure software to
55
+ * configure it to either pass through or reject transactions.
56
+ * Rejected transactions may be configured to either be aborted, or to
57
+ * behave as RAZ/WI. An interrupt can be signalled for a rejected transaction.
58
+ *
59
+ * The PPC has no register interface -- it is configured purely by a
60
+ * collection of input signals from other hardware in the system. Typically
61
+ * they are either hardwired or exposed in an ad-hoc register interface by
62
+ * the SoC that uses the PPC.
63
+ *
64
+ * This QEMU model can be used to model either the AHB5 or APB4 TZ PPC,
65
+ * since the only difference between them is that the AHB version has a
66
+ * "default" port which has no security checks applied. In QEMU the default
67
+ * port can be emulated simply by wiring its downstream devices directly
68
+ * into the parent address space, since the PPC does not need to intercept
69
+ * transactions there.
70
+ *
71
+ * In the hardware, selection of which downstream port to use is done by
72
+ * the user's decode logic asserting one of the hsel[] signals. In QEMU,
73
+ * we provide 16 MMIO regions, one per port, and the user maps these into
74
+ * the desired addresses to implement the address decode.
75
+ *
76
+ * QEMU interface:
77
+ * + sysbus MMIO regions 0..15: MemoryRegions defining the upstream end
78
+ * of each of the 16 ports of the PPC
79
+ * + Property "port[0..15]": MemoryRegion defining the downstream device(s)
80
+ * for each of the 16 ports of the PPC
81
+ * + Named GPIO inputs "cfg_nonsec[0..15]": set to 1 if the port should be
82
+ * accessible to NonSecure transactions
83
+ * + Named GPIO inputs "cfg_ap[0..15]": set to 1 if the port should be
84
+ * accessible to non-privileged transactions
85
+ * + Named GPIO input "cfg_sec_resp": set to 1 if a rejected transaction should
86
+ * result in a transaction error, or 0 for the transaction to RAZ/WI
87
+ * + Named GPIO input "irq_enable": set to 1 to enable interrupts
88
+ * + Named GPIO input "irq_clear": set to 1 to clear a pending interrupt
89
+ * + Named GPIO output "irq": set for a transaction-failed interrupt
90
+ * + Property "NONSEC_MASK": if a bit is set in this mask then accesses to
91
+ * the associated port do not have the TZ security check performed. (This
92
+ * corresponds to the hardware allowing this to be set as a Verilog
93
+ * parameter.)
94
+ */
95
+
96
+#ifndef TZ_PPC_H
97
+#define TZ_PPC_H
98
+
99
+#include "hw/sysbus.h"
100
+
101
+#define TYPE_TZ_PPC "tz-ppc"
102
+#define TZ_PPC(obj) OBJECT_CHECK(TZPPC, (obj), TYPE_TZ_PPC)
103
+
104
+#define TZ_NUM_PORTS 16
105
+
106
+typedef struct TZPPC TZPPC;
107
+
108
+typedef struct TZPPCPort {
109
+ TZPPC *ppc;
110
+ MemoryRegion upstream;
111
+ AddressSpace downstream_as;
112
+ MemoryRegion *downstream;
113
+} TZPPCPort;
114
+
115
+struct TZPPC {
116
+ /*< private >*/
117
+ SysBusDevice parent_obj;
118
+
119
+ /*< public >*/
120
+
121
+ /* State: these just track the values of our input signals */
122
+ bool cfg_nonsec[TZ_NUM_PORTS];
123
+ bool cfg_ap[TZ_NUM_PORTS];
124
+ bool cfg_sec_resp;
125
+ bool irq_enable;
126
+ bool irq_clear;
127
+ /* State: are we asserting irq ? */
128
+ bool irq_status;
129
+
130
+ qemu_irq irq;
131
+
132
+ /* Properties */
133
+ uint32_t nonsec_mask;
134
+
135
+ TZPPCPort port[TZ_NUM_PORTS];
136
+};
137
+
138
+#endif
139
diff --git a/hw/misc/tz-ppc.c b/hw/misc/tz-ppc.c
140
new file mode 100644
141
index XXXXXXX..XXXXXXX
142
--- /dev/null
143
+++ b/hw/misc/tz-ppc.c
144
@@ -XXX,XX +XXX,XX @@
145
+/*
146
+ * ARM TrustZone peripheral protection controller emulation
147
+ *
148
+ * Copyright (c) 2018 Linaro Limited
149
+ * Written by Peter Maydell
150
+ *
151
+ * This program is free software; you can redistribute it and/or modify
152
+ * it under the terms of the GNU General Public License version 2 or
153
+ * (at your option) any later version.
154
+ */
155
+
156
+#include "qemu/osdep.h"
157
+#include "qemu/log.h"
158
+#include "qapi/error.h"
159
+#include "trace.h"
160
+#include "hw/sysbus.h"
161
+#include "hw/registerfields.h"
162
+#include "hw/misc/tz-ppc.h"
163
+
164
+static void tz_ppc_update_irq(TZPPC *s)
165
+{
49
+{
166
+ bool level = s->irq_status && s->irq_enable;
50
+ const char *name = rom->as ? rom->as->name : NULL;
167
+
51
+ return name ?: "anonymous";
168
+ trace_tz_ppc_update_irq(level);
169
+ qemu_set_irq(s->irq, level);
170
+}
52
+}
171
+
53
+
172
+static void tz_ppc_cfg_nonsec(void *opaque, int n, int level)
54
+static void rom_print_overlap_error_header(void)
173
+{
55
+{
174
+ TZPPC *s = TZ_PPC(opaque);
56
+ error_report("Some ROM regions are overlapping");
175
+
57
+ error_printf(
176
+ assert(n < TZ_NUM_PORTS);
58
+ "These ROM regions might have been loaded by "
177
+ trace_tz_ppc_cfg_nonsec(n, level);
59
+ "direct user request or by default.\n"
178
+ s->cfg_nonsec[n] = level;
60
+ "They could be BIOS/firmware images, a guest kernel, "
61
+ "initrd or some other file loaded into guest memory.\n"
62
+ "Check whether you intended to load all this guest code, and "
63
+ "whether it has been built to load to the correct addresses.\n");
179
+}
64
+}
180
+
65
+
181
+static void tz_ppc_cfg_ap(void *opaque, int n, int level)
66
+static void rom_print_one_overlap_error(Rom *last_rom, Rom *rom)
182
+{
67
+{
183
+ TZPPC *s = TZ_PPC(opaque);
68
+ error_printf(
184
+
69
+ "\nThe following two regions overlap (in the %s address space):\n",
185
+ assert(n < TZ_NUM_PORTS);
70
+ rom_as_name(rom));
186
+ trace_tz_ppc_cfg_ap(n, level);
71
+ error_printf(
187
+ s->cfg_ap[n] = level;
72
+ " %s (addresses 0x" TARGET_FMT_plx " - 0x" TARGET_FMT_plx ")\n",
73
+ last_rom->name, last_rom->addr, last_rom->addr + last_rom->romsize);
74
+ error_printf(
75
+ " %s (addresses 0x" TARGET_FMT_plx " - 0x" TARGET_FMT_plx ")\n",
76
+ rom->name, rom->addr, rom->addr + rom->romsize);
188
+}
77
+}
189
+
78
+
190
+static void tz_ppc_cfg_sec_resp(void *opaque, int n, int level)
79
int rom_check_and_register_reset(void)
191
+{
80
{
192
+ TZPPC *s = TZ_PPC(opaque);
81
MemoryRegionSection section;
193
+
82
Rom *rom, *last_rom = NULL;
194
+ trace_tz_ppc_cfg_sec_resp(level);
83
+ bool found_overlap = false;
195
+ s->cfg_sec_resp = level;
84
196
+}
85
QTAILQ_FOREACH(rom, &roms, next) {
197
+
86
if (rom->fw_file) {
198
+static void tz_ppc_irq_enable(void *opaque, int n, int level)
87
@@ -XXX,XX +XXX,XX @@ int rom_check_and_register_reset(void)
199
+{
88
}
200
+ TZPPC *s = TZ_PPC(opaque);
89
if (!rom->mr) {
201
+
90
if (roms_overlap(last_rom, rom)) {
202
+ trace_tz_ppc_irq_enable(level);
91
- fprintf(stderr, "rom: requested regions overlap "
203
+ s->irq_enable = level;
92
- "(rom %s. free=0x" TARGET_FMT_plx
204
+ tz_ppc_update_irq(s);
93
- ", addr=0x" TARGET_FMT_plx ")\n",
205
+}
94
- rom->name, last_rom->addr + last_rom->romsize,
206
+
95
- rom->addr);
207
+static void tz_ppc_irq_clear(void *opaque, int n, int level)
96
- return -1;
208
+{
97
+ if (!found_overlap) {
209
+ TZPPC *s = TZ_PPC(opaque);
98
+ found_overlap = true;
210
+
99
+ rom_print_overlap_error_header();
211
+ trace_tz_ppc_irq_clear(level);
100
+ }
212
+
101
+ rom_print_one_overlap_error(last_rom, rom);
213
+ s->irq_clear = level;
102
+ /* Keep going through the list so we report all overlaps */
214
+ if (level) {
103
}
215
+ s->irq_status = false;
104
last_rom = rom;
216
+ tz_ppc_update_irq(s);
105
}
217
+ }
106
@@ -XXX,XX +XXX,XX @@ int rom_check_and_register_reset(void)
218
+}
107
rom->isrom = int128_nz(section.size) && memory_region_is_rom(section.mr);
219
+
108
memory_region_unref(section.mr);
220
+static bool tz_ppc_check(TZPPC *s, int n, MemTxAttrs attrs)
109
}
221
+{
110
+ if (found_overlap) {
222
+ /* Check whether to allow an access to port n; return true if
111
+ return -1;
223
+ * the check passes, and false if the transaction must be blocked.
224
+ * If the latter, the caller must check cfg_sec_resp to determine
225
+ * whether to abort or RAZ/WI the transaction.
226
+ * The checks are:
227
+ * + nonsec_mask suppresses any check of the secure attribute
228
+ * + otherwise, block if cfg_nonsec is 1 and transaction is secure,
229
+ * or if cfg_nonsec is 0 and transaction is non-secure
230
+ * + block if transaction is usermode and cfg_ap is 0
231
+ */
232
+ if ((attrs.secure == s->cfg_nonsec[n] && !(s->nonsec_mask & (1 << n))) ||
233
+ (attrs.user && !s->cfg_ap[n])) {
234
+ /* Block the transaction. */
235
+ if (!s->irq_clear) {
236
+ /* Note that holding irq_clear high suppresses interrupts */
237
+ s->irq_status = true;
238
+ tz_ppc_update_irq(s);
239
+ }
240
+ return false;
241
+ }
242
+ return true;
243
+}
244
+
245
+static MemTxResult tz_ppc_read(void *opaque, hwaddr addr, uint64_t *pdata,
246
+ unsigned size, MemTxAttrs attrs)
247
+{
248
+ TZPPCPort *p = opaque;
249
+ TZPPC *s = p->ppc;
250
+ int n = p - s->port;
251
+ AddressSpace *as = &p->downstream_as;
252
+ uint64_t data;
253
+ MemTxResult res;
254
+
255
+ if (!tz_ppc_check(s, n, attrs)) {
256
+ trace_tz_ppc_read_blocked(n, addr, attrs.secure, attrs.user);
257
+ if (s->cfg_sec_resp) {
258
+ return MEMTX_ERROR;
259
+ } else {
260
+ *pdata = 0;
261
+ return MEMTX_OK;
262
+ }
263
+ }
112
+ }
264
+
113
+
265
+ switch (size) {
114
qemu_register_reset(rom_reset, NULL);
266
+ case 1:
115
roms_loaded = 1;
267
+ data = address_space_ldub(as, addr, attrs, &res);
116
return 0;
268
+ break;
117
diff --git a/softmmu/vl.c b/softmmu/vl.c
269
+ case 2:
270
+ data = address_space_lduw_le(as, addr, attrs, &res);
271
+ break;
272
+ case 4:
273
+ data = address_space_ldl_le(as, addr, attrs, &res);
274
+ break;
275
+ case 8:
276
+ data = address_space_ldq_le(as, addr, attrs, &res);
277
+ break;
278
+ default:
279
+ g_assert_not_reached();
280
+ }
281
+ *pdata = data;
282
+ return res;
283
+}
284
+
285
+static MemTxResult tz_ppc_write(void *opaque, hwaddr addr, uint64_t val,
286
+ unsigned size, MemTxAttrs attrs)
287
+{
288
+ TZPPCPort *p = opaque;
289
+ TZPPC *s = p->ppc;
290
+ AddressSpace *as = &p->downstream_as;
291
+ int n = p - s->port;
292
+ MemTxResult res;
293
+
294
+ if (!tz_ppc_check(s, n, attrs)) {
295
+ trace_tz_ppc_write_blocked(n, addr, attrs.secure, attrs.user);
296
+ if (s->cfg_sec_resp) {
297
+ return MEMTX_ERROR;
298
+ } else {
299
+ return MEMTX_OK;
300
+ }
301
+ }
302
+
303
+ switch (size) {
304
+ case 1:
305
+ address_space_stb(as, addr, val, attrs, &res);
306
+ break;
307
+ case 2:
308
+ address_space_stw_le(as, addr, val, attrs, &res);
309
+ break;
310
+ case 4:
311
+ address_space_stl_le(as, addr, val, attrs, &res);
312
+ break;
313
+ case 8:
314
+ address_space_stq_le(as, addr, val, attrs, &res);
315
+ break;
316
+ default:
317
+ g_assert_not_reached();
318
+ }
319
+ return res;
320
+}
321
+
322
+static const MemoryRegionOps tz_ppc_ops = {
323
+ .read_with_attrs = tz_ppc_read,
324
+ .write_with_attrs = tz_ppc_write,
325
+ .endianness = DEVICE_LITTLE_ENDIAN,
326
+};
327
+
328
+static void tz_ppc_reset(DeviceState *dev)
329
+{
330
+ TZPPC *s = TZ_PPC(dev);
331
+
332
+ trace_tz_ppc_reset();
333
+ s->cfg_sec_resp = false;
334
+ memset(s->cfg_nonsec, 0, sizeof(s->cfg_nonsec));
335
+ memset(s->cfg_ap, 0, sizeof(s->cfg_ap));
336
+}
337
+
338
+static void tz_ppc_init(Object *obj)
339
+{
340
+ DeviceState *dev = DEVICE(obj);
341
+ TZPPC *s = TZ_PPC(obj);
342
+
343
+ qdev_init_gpio_in_named(dev, tz_ppc_cfg_nonsec, "cfg_nonsec", TZ_NUM_PORTS);
344
+ qdev_init_gpio_in_named(dev, tz_ppc_cfg_ap, "cfg_ap", TZ_NUM_PORTS);
345
+ qdev_init_gpio_in_named(dev, tz_ppc_cfg_sec_resp, "cfg_sec_resp", 1);
346
+ qdev_init_gpio_in_named(dev, tz_ppc_irq_enable, "irq_enable", 1);
347
+ qdev_init_gpio_in_named(dev, tz_ppc_irq_clear, "irq_clear", 1);
348
+ qdev_init_gpio_out_named(dev, &s->irq, "irq", 1);
349
+}
350
+
351
+static void tz_ppc_realize(DeviceState *dev, Error **errp)
352
+{
353
+ Object *obj = OBJECT(dev);
354
+ SysBusDevice *sbd = SYS_BUS_DEVICE(dev);
355
+ TZPPC *s = TZ_PPC(dev);
356
+ int i;
357
+
358
+ /* We can't create the upstream end of the port until realize,
359
+ * as we don't know the size of the MR used as the downstream until then.
360
+ */
361
+ for (i = 0; i < TZ_NUM_PORTS; i++) {
362
+ TZPPCPort *port = &s->port[i];
363
+ char *name;
364
+ uint64_t size;
365
+
366
+ if (!port->downstream) {
367
+ continue;
368
+ }
369
+
370
+ name = g_strdup_printf("tz-ppc-port[%d]", i);
371
+
372
+ port->ppc = s;
373
+ address_space_init(&port->downstream_as, port->downstream, name);
374
+
375
+ size = memory_region_size(port->downstream);
376
+ memory_region_init_io(&port->upstream, obj, &tz_ppc_ops,
377
+ port, name, size);
378
+ sysbus_init_mmio(sbd, &port->upstream);
379
+ g_free(name);
380
+ }
381
+}
382
+
383
+static const VMStateDescription tz_ppc_vmstate = {
384
+ .name = "tz-ppc",
385
+ .version_id = 1,
386
+ .minimum_version_id = 1,
387
+ .fields = (VMStateField[]) {
388
+ VMSTATE_BOOL_ARRAY(cfg_nonsec, TZPPC, 16),
389
+ VMSTATE_BOOL_ARRAY(cfg_ap, TZPPC, 16),
390
+ VMSTATE_BOOL(cfg_sec_resp, TZPPC),
391
+ VMSTATE_BOOL(irq_enable, TZPPC),
392
+ VMSTATE_BOOL(irq_clear, TZPPC),
393
+ VMSTATE_BOOL(irq_status, TZPPC),
394
+ VMSTATE_END_OF_LIST()
395
+ }
396
+};
397
+
398
+#define DEFINE_PORT(N) \
399
+ DEFINE_PROP_LINK("port[" #N "]", TZPPC, port[N].downstream, \
400
+ TYPE_MEMORY_REGION, MemoryRegion *)
401
+
402
+static Property tz_ppc_properties[] = {
403
+ DEFINE_PROP_UINT32("NONSEC_MASK", TZPPC, nonsec_mask, 0),
404
+ DEFINE_PORT(0),
405
+ DEFINE_PORT(1),
406
+ DEFINE_PORT(2),
407
+ DEFINE_PORT(3),
408
+ DEFINE_PORT(4),
409
+ DEFINE_PORT(5),
410
+ DEFINE_PORT(6),
411
+ DEFINE_PORT(7),
412
+ DEFINE_PORT(8),
413
+ DEFINE_PORT(9),
414
+ DEFINE_PORT(10),
415
+ DEFINE_PORT(11),
416
+ DEFINE_PORT(12),
417
+ DEFINE_PORT(13),
418
+ DEFINE_PORT(14),
419
+ DEFINE_PORT(15),
420
+ DEFINE_PROP_END_OF_LIST(),
421
+};
422
+
423
+static void tz_ppc_class_init(ObjectClass *klass, void *data)
424
+{
425
+ DeviceClass *dc = DEVICE_CLASS(klass);
426
+
427
+ dc->realize = tz_ppc_realize;
428
+ dc->vmsd = &tz_ppc_vmstate;
429
+ dc->reset = tz_ppc_reset;
430
+ dc->props = tz_ppc_properties;
431
+}
432
+
433
+static const TypeInfo tz_ppc_info = {
434
+ .name = TYPE_TZ_PPC,
435
+ .parent = TYPE_SYS_BUS_DEVICE,
436
+ .instance_size = sizeof(TZPPC),
437
+ .instance_init = tz_ppc_init,
438
+ .class_init = tz_ppc_class_init,
439
+};
440
+
441
+static void tz_ppc_register_types(void)
442
+{
443
+ type_register_static(&tz_ppc_info);
444
+}
445
+
446
+type_init(tz_ppc_register_types);
447
diff --git a/default-configs/arm-softmmu.mak b/default-configs/arm-softmmu.mak
448
index XXXXXXX..XXXXXXX 100644
118
index XXXXXXX..XXXXXXX 100644
449
--- a/default-configs/arm-softmmu.mak
119
--- a/softmmu/vl.c
450
+++ b/default-configs/arm-softmmu.mak
120
+++ b/softmmu/vl.c
451
@@ -XXX,XX +XXX,XX @@ CONFIG_CMSDK_APB_UART=y
121
@@ -XXX,XX +XXX,XX @@ static void qemu_machine_creation_done(void)
452
CONFIG_MPS2_FPGAIO=y
122
qemu_run_machine_init_done_notifiers();
453
CONFIG_MPS2_SCC=y
123
454
124
if (rom_check_and_register_reset() != 0) {
455
+CONFIG_TZ_PPC=y
125
- error_report("rom check and register reset failed");
456
+
126
exit(1);
457
CONFIG_VERSATILE_PCI=y
127
}
458
CONFIG_VERSATILE_I2C=y
128
459
460
diff --git a/hw/misc/trace-events b/hw/misc/trace-events
461
index XXXXXXX..XXXXXXX 100644
462
--- a/hw/misc/trace-events
463
+++ b/hw/misc/trace-events
464
@@ -XXX,XX +XXX,XX @@ mos6522_get_next_irq_time(uint16_t latch, int64_t d, int64_t delta) "latch=%d co
465
mos6522_set_sr_int(void) "set sr_int"
466
mos6522_write(uint64_t addr, uint64_t val) "reg=0x%"PRIx64 " val=0x%"PRIx64
467
mos6522_read(uint64_t addr, unsigned val) "reg=0x%"PRIx64 " val=0x%x"
468
+
469
+# hw/misc/tz-ppc.c
470
+tz_ppc_reset(void) "TZ PPC: reset"
471
+tz_ppc_cfg_nonsec(int n, int level) "TZ PPC: cfg_nonsec[%d] = %d"
472
+tz_ppc_cfg_ap(int n, int level) "TZ PPC: cfg_ap[%d] = %d"
473
+tz_ppc_cfg_sec_resp(int level) "TZ PPC: cfg_sec_resp = %d"
474
+tz_ppc_irq_enable(int level) "TZ PPC: int_enable = %d"
475
+tz_ppc_irq_clear(int level) "TZ PPC: int_clear = %d"
476
+tz_ppc_update_irq(int level) "TZ PPC: setting irq line to %d"
477
+tz_ppc_read_blocked(int n, hwaddr offset, bool secure, bool user) "TZ PPC: port %d offset 0x%" HWADDR_PRIx " read (secure %d user %d) blocked"
478
+tz_ppc_write_blocked(int n, hwaddr offset, bool secure, bool user) "TZ PPC: port %d offset 0x%" HWADDR_PRIx " write (secure %d user %d) blocked"
479
--
129
--
480
2.16.2
130
2.20.1
481
131
482
132
diff view generated by jsdifflib
1
Define a new board model for the MPS2 with an AN505 FPGA image
1
Currently the load_elf code assembles the ROM blob name into a
2
containing a Cortex-M33. Since the FPGA images for TrustZone
2
local 128 byte fixed-size array. Use g_strdup_printf() instead so
3
cores (AN505, and the similar AN519 for Cortex-M23) have a
3
that we don't truncate the pathname if it happens to be long.
4
significantly different layout of devices to the non-TrustZone
4
(This matters mostly for monitor 'info roms' output and for the
5
images, we use a new source file rather than shoehorning them
5
error messages if ROM blobs overlap.)
6
into the existing mps2.c.
7
6
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
10
Message-id: 20180220180325.29818-20-peter.maydell@linaro.org
9
Message-id: 20201129203923.10622-4-peter.maydell@linaro.org
11
---
10
---
12
hw/arm/Makefile.objs | 1 +
11
include/hw/elf_ops.h | 4 ++--
13
hw/arm/mps2-tz.c | 503 +++++++++++++++++++++++++++++++++++++++++++++++++++
12
1 file changed, 2 insertions(+), 2 deletions(-)
14
2 files changed, 504 insertions(+)
15
create mode 100644 hw/arm/mps2-tz.c
16
13
17
diff --git a/hw/arm/Makefile.objs b/hw/arm/Makefile.objs
14
diff --git a/include/hw/elf_ops.h b/include/hw/elf_ops.h
18
index XXXXXXX..XXXXXXX 100644
15
index XXXXXXX..XXXXXXX 100644
19
--- a/hw/arm/Makefile.objs
16
--- a/include/hw/elf_ops.h
20
+++ b/hw/arm/Makefile.objs
17
+++ b/include/hw/elf_ops.h
21
@@ -XXX,XX +XXX,XX @@ obj-$(CONFIG_FSL_IMX31) += fsl-imx31.o kzm.o
18
@@ -XXX,XX +XXX,XX @@ static int glue(load_elf, SZ)(const char *name, int fd,
22
obj-$(CONFIG_FSL_IMX6) += fsl-imx6.o sabrelite.o
19
uint64_t addr, low = (uint64_t)-1, high = 0;
23
obj-$(CONFIG_ASPEED_SOC) += aspeed_soc.o aspeed.o
20
GMappedFile *mapped_file = NULL;
24
obj-$(CONFIG_MPS2) += mps2.o
21
uint8_t *data = NULL;
25
+obj-$(CONFIG_MPS2) += mps2-tz.o
22
- char label[128];
26
obj-$(CONFIG_MSF2) += msf2-soc.o msf2-som.o
23
int ret = ELF_LOAD_FAILED;
27
obj-$(CONFIG_IOTKIT) += iotkit.o
24
28
diff --git a/hw/arm/mps2-tz.c b/hw/arm/mps2-tz.c
25
if (read(fd, &ehdr, sizeof(ehdr)) != sizeof(ehdr))
29
new file mode 100644
26
@@ -XXX,XX +XXX,XX @@ static int glue(load_elf, SZ)(const char *name, int fd,
30
index XXXXXXX..XXXXXXX
27
*/
31
--- /dev/null
28
if (mem_size != 0) {
32
+++ b/hw/arm/mps2-tz.c
29
if (load_rom) {
33
@@ -XXX,XX +XXX,XX @@
30
- snprintf(label, sizeof(label), "phdr #%d: %s", i, name);
34
+/*
31
+ g_autofree char *label =
35
+ * ARM V2M MPS2 board emulation, trustzone aware FPGA images
32
+ g_strdup_printf("phdr #%d: %s", i, name);
36
+ *
33
37
+ * Copyright (c) 2017 Linaro Limited
34
/*
38
+ * Written by Peter Maydell
35
* rom_add_elf_program() takes its own reference to
39
+ *
40
+ * This program is free software; you can redistribute it and/or modify
41
+ * it under the terms of the GNU General Public License version 2 or
42
+ * (at your option) any later version.
43
+ */
44
+
45
+/* The MPS2 and MPS2+ dev boards are FPGA based (the 2+ has a bigger
46
+ * FPGA but is otherwise the same as the 2). Since the CPU itself
47
+ * and most of the devices are in the FPGA, the details of the board
48
+ * as seen by the guest depend significantly on the FPGA image.
49
+ * This source file covers the following FPGA images, for TrustZone cores:
50
+ * "mps2-an505" -- Cortex-M33 as documented in ARM Application Note AN505
51
+ *
52
+ * Links to the TRM for the board itself and to the various Application
53
+ * Notes which document the FPGA images can be found here:
54
+ * https://developer.arm.com/products/system-design/development-boards/fpga-prototyping-boards/mps2
55
+ *
56
+ * Board TRM:
57
+ * http://infocenter.arm.com/help/topic/com.arm.doc.100112_0200_06_en/versatile_express_cortex_m_prototyping_systems_v2m_mps2_and_v2m_mps2plus_technical_reference_100112_0200_06_en.pdf
58
+ * Application Note AN505:
59
+ * http://infocenter.arm.com/help/topic/com.arm.doc.dai0505b/index.html
60
+ *
61
+ * The AN505 defers to the Cortex-M33 processor ARMv8M IoT Kit FVP User Guide
62
+ * (ARM ECM0601256) for the details of some of the device layout:
63
+ * http://infocenter.arm.com/help/index.jsp?topic=/com.arm.doc.ecm0601256/index.html
64
+ */
65
+
66
+#include "qemu/osdep.h"
67
+#include "qapi/error.h"
68
+#include "qemu/error-report.h"
69
+#include "hw/arm/arm.h"
70
+#include "hw/arm/armv7m.h"
71
+#include "hw/or-irq.h"
72
+#include "hw/boards.h"
73
+#include "exec/address-spaces.h"
74
+#include "sysemu/sysemu.h"
75
+#include "hw/misc/unimp.h"
76
+#include "hw/char/cmsdk-apb-uart.h"
77
+#include "hw/timer/cmsdk-apb-timer.h"
78
+#include "hw/misc/mps2-scc.h"
79
+#include "hw/misc/mps2-fpgaio.h"
80
+#include "hw/arm/iotkit.h"
81
+#include "hw/devices.h"
82
+#include "net/net.h"
83
+#include "hw/core/split-irq.h"
84
+
85
+typedef enum MPS2TZFPGAType {
86
+ FPGA_AN505,
87
+} MPS2TZFPGAType;
88
+
89
+typedef struct {
90
+ MachineClass parent;
91
+ MPS2TZFPGAType fpga_type;
92
+ uint32_t scc_id;
93
+} MPS2TZMachineClass;
94
+
95
+typedef struct {
96
+ MachineState parent;
97
+
98
+ IoTKit iotkit;
99
+ MemoryRegion psram;
100
+ MemoryRegion ssram1;
101
+ MemoryRegion ssram1_m;
102
+ MemoryRegion ssram23;
103
+ MPS2SCC scc;
104
+ MPS2FPGAIO fpgaio;
105
+ TZPPC ppc[5];
106
+ UnimplementedDeviceState ssram_mpc[3];
107
+ UnimplementedDeviceState spi[5];
108
+ UnimplementedDeviceState i2c[4];
109
+ UnimplementedDeviceState i2s_audio;
110
+ UnimplementedDeviceState gpio[5];
111
+ UnimplementedDeviceState dma[4];
112
+ UnimplementedDeviceState gfx;
113
+ CMSDKAPBUART uart[5];
114
+ SplitIRQ sec_resp_splitter;
115
+ qemu_or_irq uart_irq_orgate;
116
+} MPS2TZMachineState;
117
+
118
+#define TYPE_MPS2TZ_MACHINE "mps2tz"
119
+#define TYPE_MPS2TZ_AN505_MACHINE MACHINE_TYPE_NAME("mps2-an505")
120
+
121
+#define MPS2TZ_MACHINE(obj) \
122
+ OBJECT_CHECK(MPS2TZMachineState, obj, TYPE_MPS2TZ_MACHINE)
123
+#define MPS2TZ_MACHINE_GET_CLASS(obj) \
124
+ OBJECT_GET_CLASS(MPS2TZMachineClass, obj, TYPE_MPS2TZ_MACHINE)
125
+#define MPS2TZ_MACHINE_CLASS(klass) \
126
+ OBJECT_CLASS_CHECK(MPS2TZMachineClass, klass, TYPE_MPS2TZ_MACHINE)
127
+
128
+/* Main SYSCLK frequency in Hz */
129
+#define SYSCLK_FRQ 20000000
130
+
131
+/* Initialize the auxiliary RAM region @mr and map it into
132
+ * the memory map at @base.
133
+ */
134
+static void make_ram(MemoryRegion *mr, const char *name,
135
+ hwaddr base, hwaddr size)
136
+{
137
+ memory_region_init_ram(mr, NULL, name, size, &error_fatal);
138
+ memory_region_add_subregion(get_system_memory(), base, mr);
139
+}
140
+
141
+/* Create an alias of an entire original MemoryRegion @orig
142
+ * located at @base in the memory map.
143
+ */
144
+static void make_ram_alias(MemoryRegion *mr, const char *name,
145
+ MemoryRegion *orig, hwaddr base)
146
+{
147
+ memory_region_init_alias(mr, NULL, name, orig, 0,
148
+ memory_region_size(orig));
149
+ memory_region_add_subregion(get_system_memory(), base, mr);
150
+}
151
+
152
+static void init_sysbus_child(Object *parent, const char *childname,
153
+ void *child, size_t childsize,
154
+ const char *childtype)
155
+{
156
+ object_initialize(child, childsize, childtype);
157
+ object_property_add_child(parent, childname, OBJECT(child), &error_abort);
158
+ qdev_set_parent_bus(DEVICE(child), sysbus_get_default());
159
+
160
+}
161
+
162
+/* Most of the devices in the AN505 FPGA image sit behind
163
+ * Peripheral Protection Controllers. These data structures
164
+ * define the layout of which devices sit behind which PPCs.
165
+ * The devfn for each port is a function which creates, configures
166
+ * and initializes the device, returning the MemoryRegion which
167
+ * needs to be plugged into the downstream end of the PPC port.
168
+ */
169
+typedef MemoryRegion *MakeDevFn(MPS2TZMachineState *mms, void *opaque,
170
+ const char *name, hwaddr size);
171
+
172
+typedef struct PPCPortInfo {
173
+ const char *name;
174
+ MakeDevFn *devfn;
175
+ void *opaque;
176
+ hwaddr addr;
177
+ hwaddr size;
178
+} PPCPortInfo;
179
+
180
+typedef struct PPCInfo {
181
+ const char *name;
182
+ PPCPortInfo ports[TZ_NUM_PORTS];
183
+} PPCInfo;
184
+
185
+static MemoryRegion *make_unimp_dev(MPS2TZMachineState *mms,
186
+ void *opaque,
187
+ const char *name, hwaddr size)
188
+{
189
+ /* Initialize, configure and realize a TYPE_UNIMPLEMENTED_DEVICE,
190
+ * and return a pointer to its MemoryRegion.
191
+ */
192
+ UnimplementedDeviceState *uds = opaque;
193
+
194
+ init_sysbus_child(OBJECT(mms), name, uds,
195
+ sizeof(UnimplementedDeviceState),
196
+ TYPE_UNIMPLEMENTED_DEVICE);
197
+ qdev_prop_set_string(DEVICE(uds), "name", name);
198
+ qdev_prop_set_uint64(DEVICE(uds), "size", size);
199
+ object_property_set_bool(OBJECT(uds), true, "realized", &error_fatal);
200
+ return sysbus_mmio_get_region(SYS_BUS_DEVICE(uds), 0);
201
+}
202
+
203
+static MemoryRegion *make_uart(MPS2TZMachineState *mms, void *opaque,
204
+ const char *name, hwaddr size)
205
+{
206
+ CMSDKAPBUART *uart = opaque;
207
+ int i = uart - &mms->uart[0];
208
+ Chardev *uartchr = i < MAX_SERIAL_PORTS ? serial_hds[i] : NULL;
209
+ int rxirqno = i * 2;
210
+ int txirqno = i * 2 + 1;
211
+ int combirqno = i + 10;
212
+ SysBusDevice *s;
213
+ DeviceState *iotkitdev = DEVICE(&mms->iotkit);
214
+ DeviceState *orgate_dev = DEVICE(&mms->uart_irq_orgate);
215
+
216
+ init_sysbus_child(OBJECT(mms), name, uart,
217
+ sizeof(mms->uart[0]), TYPE_CMSDK_APB_UART);
218
+ qdev_prop_set_chr(DEVICE(uart), "chardev", uartchr);
219
+ qdev_prop_set_uint32(DEVICE(uart), "pclk-frq", SYSCLK_FRQ);
220
+ object_property_set_bool(OBJECT(uart), true, "realized", &error_fatal);
221
+ s = SYS_BUS_DEVICE(uart);
222
+ sysbus_connect_irq(s, 0, qdev_get_gpio_in_named(iotkitdev,
223
+ "EXP_IRQ", txirqno));
224
+ sysbus_connect_irq(s, 1, qdev_get_gpio_in_named(iotkitdev,
225
+ "EXP_IRQ", rxirqno));
226
+ sysbus_connect_irq(s, 2, qdev_get_gpio_in(orgate_dev, i * 2));
227
+ sysbus_connect_irq(s, 3, qdev_get_gpio_in(orgate_dev, i * 2 + 1));
228
+ sysbus_connect_irq(s, 4, qdev_get_gpio_in_named(iotkitdev,
229
+ "EXP_IRQ", combirqno));
230
+ return sysbus_mmio_get_region(SYS_BUS_DEVICE(uart), 0);
231
+}
232
+
233
+static MemoryRegion *make_scc(MPS2TZMachineState *mms, void *opaque,
234
+ const char *name, hwaddr size)
235
+{
236
+ MPS2SCC *scc = opaque;
237
+ DeviceState *sccdev;
238
+ MPS2TZMachineClass *mmc = MPS2TZ_MACHINE_GET_CLASS(mms);
239
+
240
+ object_initialize(scc, sizeof(mms->scc), TYPE_MPS2_SCC);
241
+ sccdev = DEVICE(scc);
242
+ qdev_set_parent_bus(sccdev, sysbus_get_default());
243
+ qdev_prop_set_uint32(sccdev, "scc-cfg4", 0x2);
244
+ qdev_prop_set_uint32(sccdev, "scc-aid", 0x02000008);
245
+ qdev_prop_set_uint32(sccdev, "scc-id", mmc->scc_id);
246
+ object_property_set_bool(OBJECT(scc), true, "realized", &error_fatal);
247
+ return sysbus_mmio_get_region(SYS_BUS_DEVICE(sccdev), 0);
248
+}
249
+
250
+static MemoryRegion *make_fpgaio(MPS2TZMachineState *mms, void *opaque,
251
+ const char *name, hwaddr size)
252
+{
253
+ MPS2FPGAIO *fpgaio = opaque;
254
+
255
+ object_initialize(fpgaio, sizeof(mms->fpgaio), TYPE_MPS2_FPGAIO);
256
+ qdev_set_parent_bus(DEVICE(fpgaio), sysbus_get_default());
257
+ object_property_set_bool(OBJECT(fpgaio), true, "realized", &error_fatal);
258
+ return sysbus_mmio_get_region(SYS_BUS_DEVICE(fpgaio), 0);
259
+}
260
+
261
+static void mps2tz_common_init(MachineState *machine)
262
+{
263
+ MPS2TZMachineState *mms = MPS2TZ_MACHINE(machine);
264
+ MachineClass *mc = MACHINE_GET_CLASS(machine);
265
+ MemoryRegion *system_memory = get_system_memory();
266
+ DeviceState *iotkitdev;
267
+ DeviceState *dev_splitter;
268
+ int i;
269
+
270
+ if (strcmp(machine->cpu_type, mc->default_cpu_type) != 0) {
271
+ error_report("This board can only be used with CPU %s",
272
+ mc->default_cpu_type);
273
+ exit(1);
274
+ }
275
+
276
+ init_sysbus_child(OBJECT(machine), "iotkit", &mms->iotkit,
277
+ sizeof(mms->iotkit), TYPE_IOTKIT);
278
+ iotkitdev = DEVICE(&mms->iotkit);
279
+ object_property_set_link(OBJECT(&mms->iotkit), OBJECT(system_memory),
280
+ "memory", &error_abort);
281
+ qdev_prop_set_uint32(iotkitdev, "EXP_NUMIRQ", 92);
282
+ qdev_prop_set_uint32(iotkitdev, "MAINCLK", SYSCLK_FRQ);
283
+ object_property_set_bool(OBJECT(&mms->iotkit), true, "realized",
284
+ &error_fatal);
285
+
286
+ /* The sec_resp_cfg output from the IoTKit must be split into multiple
287
+ * lines, one for each of the PPCs we create here.
288
+ */
289
+ object_initialize(&mms->sec_resp_splitter, sizeof(mms->sec_resp_splitter),
290
+ TYPE_SPLIT_IRQ);
291
+ object_property_add_child(OBJECT(machine), "sec-resp-splitter",
292
+ OBJECT(&mms->sec_resp_splitter), &error_abort);
293
+ object_property_set_int(OBJECT(&mms->sec_resp_splitter), 5,
294
+ "num-lines", &error_fatal);
295
+ object_property_set_bool(OBJECT(&mms->sec_resp_splitter), true,
296
+ "realized", &error_fatal);
297
+ dev_splitter = DEVICE(&mms->sec_resp_splitter);
298
+ qdev_connect_gpio_out_named(iotkitdev, "sec_resp_cfg", 0,
299
+ qdev_get_gpio_in(dev_splitter, 0));
300
+
301
+ /* The IoTKit sets up much of the memory layout, including
302
+ * the aliases between secure and non-secure regions in the
303
+ * address space. The FPGA itself contains:
304
+ *
305
+ * 0x00000000..0x003fffff SSRAM1
306
+ * 0x00400000..0x007fffff alias of SSRAM1
307
+ * 0x28000000..0x283fffff 4MB SSRAM2 + SSRAM3
308
+ * 0x40100000..0x4fffffff AHB Master Expansion 1 interface devices
309
+ * 0x80000000..0x80ffffff 16MB PSRAM
310
+ */
311
+
312
+ /* The FPGA images have an odd combination of different RAMs,
313
+ * because in hardware they are different implementations and
314
+ * connected to different buses, giving varying performance/size
315
+ * tradeoffs. For QEMU they're all just RAM, though. We arbitrarily
316
+ * call the 16MB our "system memory", as it's the largest lump.
317
+ */
318
+ memory_region_allocate_system_memory(&mms->psram,
319
+ NULL, "mps.ram", 0x01000000);
320
+ memory_region_add_subregion(system_memory, 0x80000000, &mms->psram);
321
+
322
+ /* The SSRAM memories should all be behind Memory Protection Controllers,
323
+ * but we don't implement that yet.
324
+ */
325
+ make_ram(&mms->ssram1, "mps.ssram1", 0x00000000, 0x00400000);
326
+ make_ram_alias(&mms->ssram1_m, "mps.ssram1_m", &mms->ssram1, 0x00400000);
327
+
328
+ make_ram(&mms->ssram23, "mps.ssram23", 0x28000000, 0x00400000);
329
+
330
+ /* The overflow IRQs for all UARTs are ORed together.
331
+ * Tx, Rx and "combined" IRQs are sent to the NVIC separately.
332
+ * Create the OR gate for this.
333
+ */
334
+ object_initialize(&mms->uart_irq_orgate, sizeof(mms->uart_irq_orgate),
335
+ TYPE_OR_IRQ);
336
+ object_property_add_child(OBJECT(mms), "uart-irq-orgate",
337
+ OBJECT(&mms->uart_irq_orgate), &error_abort);
338
+ object_property_set_int(OBJECT(&mms->uart_irq_orgate), 10, "num-lines",
339
+ &error_fatal);
340
+ object_property_set_bool(OBJECT(&mms->uart_irq_orgate), true,
341
+ "realized", &error_fatal);
342
+ qdev_connect_gpio_out(DEVICE(&mms->uart_irq_orgate), 0,
343
+ qdev_get_gpio_in_named(iotkitdev, "EXP_IRQ", 15));
344
+
345
+ /* Most of the devices in the FPGA are behind Peripheral Protection
346
+ * Controllers. The required order for initializing things is:
347
+ * + initialize the PPC
348
+ * + initialize, configure and realize downstream devices
349
+ * + connect downstream device MemoryRegions to the PPC
350
+ * + realize the PPC
351
+ * + map the PPC's MemoryRegions to the places in the address map
352
+ * where the downstream devices should appear
353
+ * + wire up the PPC's control lines to the IoTKit object
354
+ */
355
+
356
+ const PPCInfo ppcs[] = { {
357
+ .name = "apb_ppcexp0",
358
+ .ports = {
359
+ { "ssram-mpc0", make_unimp_dev, &mms->ssram_mpc[0],
360
+ 0x58007000, 0x1000 },
361
+ { "ssram-mpc1", make_unimp_dev, &mms->ssram_mpc[1],
362
+ 0x58008000, 0x1000 },
363
+ { "ssram-mpc2", make_unimp_dev, &mms->ssram_mpc[2],
364
+ 0x58009000, 0x1000 },
365
+ },
366
+ }, {
367
+ .name = "apb_ppcexp1",
368
+ .ports = {
369
+ { "spi0", make_unimp_dev, &mms->spi[0], 0x40205000, 0x1000 },
370
+ { "spi1", make_unimp_dev, &mms->spi[1], 0x40206000, 0x1000 },
371
+ { "spi2", make_unimp_dev, &mms->spi[2], 0x40209000, 0x1000 },
372
+ { "spi3", make_unimp_dev, &mms->spi[3], 0x4020a000, 0x1000 },
373
+ { "spi4", make_unimp_dev, &mms->spi[4], 0x4020b000, 0x1000 },
374
+ { "uart0", make_uart, &mms->uart[0], 0x40200000, 0x1000 },
375
+ { "uart1", make_uart, &mms->uart[1], 0x40201000, 0x1000 },
376
+ { "uart2", make_uart, &mms->uart[2], 0x40202000, 0x1000 },
377
+ { "uart3", make_uart, &mms->uart[3], 0x40203000, 0x1000 },
378
+ { "uart4", make_uart, &mms->uart[4], 0x40204000, 0x1000 },
379
+ { "i2c0", make_unimp_dev, &mms->i2c[0], 0x40207000, 0x1000 },
380
+ { "i2c1", make_unimp_dev, &mms->i2c[1], 0x40208000, 0x1000 },
381
+ { "i2c2", make_unimp_dev, &mms->i2c[2], 0x4020c000, 0x1000 },
382
+ { "i2c3", make_unimp_dev, &mms->i2c[3], 0x4020d000, 0x1000 },
383
+ },
384
+ }, {
385
+ .name = "apb_ppcexp2",
386
+ .ports = {
387
+ { "scc", make_scc, &mms->scc, 0x40300000, 0x1000 },
388
+ { "i2s-audio", make_unimp_dev, &mms->i2s_audio,
389
+ 0x40301000, 0x1000 },
390
+ { "fpgaio", make_fpgaio, &mms->fpgaio, 0x40302000, 0x1000 },
391
+ },
392
+ }, {
393
+ .name = "ahb_ppcexp0",
394
+ .ports = {
395
+ { "gfx", make_unimp_dev, &mms->gfx, 0x41000000, 0x140000 },
396
+ { "gpio0", make_unimp_dev, &mms->gpio[0], 0x40100000, 0x1000 },
397
+ { "gpio1", make_unimp_dev, &mms->gpio[1], 0x40101000, 0x1000 },
398
+ { "gpio2", make_unimp_dev, &mms->gpio[2], 0x40102000, 0x1000 },
399
+ { "gpio3", make_unimp_dev, &mms->gpio[3], 0x40103000, 0x1000 },
400
+ { "gpio4", make_unimp_dev, &mms->gpio[4], 0x40104000, 0x1000 },
401
+ },
402
+ }, {
403
+ .name = "ahb_ppcexp1",
404
+ .ports = {
405
+ { "dma0", make_unimp_dev, &mms->dma[0], 0x40110000, 0x1000 },
406
+ { "dma1", make_unimp_dev, &mms->dma[1], 0x40111000, 0x1000 },
407
+ { "dma2", make_unimp_dev, &mms->dma[2], 0x40112000, 0x1000 },
408
+ { "dma3", make_unimp_dev, &mms->dma[3], 0x40113000, 0x1000 },
409
+ },
410
+ },
411
+ };
412
+
413
+ for (i = 0; i < ARRAY_SIZE(ppcs); i++) {
414
+ const PPCInfo *ppcinfo = &ppcs[i];
415
+ TZPPC *ppc = &mms->ppc[i];
416
+ DeviceState *ppcdev;
417
+ int port;
418
+ char *gpioname;
419
+
420
+ init_sysbus_child(OBJECT(machine), ppcinfo->name, ppc,
421
+ sizeof(TZPPC), TYPE_TZ_PPC);
422
+ ppcdev = DEVICE(ppc);
423
+
424
+ for (port = 0; port < TZ_NUM_PORTS; port++) {
425
+ const PPCPortInfo *pinfo = &ppcinfo->ports[port];
426
+ MemoryRegion *mr;
427
+ char *portname;
428
+
429
+ if (!pinfo->devfn) {
430
+ continue;
431
+ }
432
+
433
+ mr = pinfo->devfn(mms, pinfo->opaque, pinfo->name, pinfo->size);
434
+ portname = g_strdup_printf("port[%d]", port);
435
+ object_property_set_link(OBJECT(ppc), OBJECT(mr),
436
+ portname, &error_fatal);
437
+ g_free(portname);
438
+ }
439
+
440
+ object_property_set_bool(OBJECT(ppc), true, "realized", &error_fatal);
441
+
442
+ for (port = 0; port < TZ_NUM_PORTS; port++) {
443
+ const PPCPortInfo *pinfo = &ppcinfo->ports[port];
444
+
445
+ if (!pinfo->devfn) {
446
+ continue;
447
+ }
448
+ sysbus_mmio_map(SYS_BUS_DEVICE(ppc), port, pinfo->addr);
449
+
450
+ gpioname = g_strdup_printf("%s_nonsec", ppcinfo->name);
451
+ qdev_connect_gpio_out_named(iotkitdev, gpioname, port,
452
+ qdev_get_gpio_in_named(ppcdev,
453
+ "cfg_nonsec",
454
+ port));
455
+ g_free(gpioname);
456
+ gpioname = g_strdup_printf("%s_ap", ppcinfo->name);
457
+ qdev_connect_gpio_out_named(iotkitdev, gpioname, port,
458
+ qdev_get_gpio_in_named(ppcdev,
459
+ "cfg_ap", port));
460
+ g_free(gpioname);
461
+ }
462
+
463
+ gpioname = g_strdup_printf("%s_irq_enable", ppcinfo->name);
464
+ qdev_connect_gpio_out_named(iotkitdev, gpioname, 0,
465
+ qdev_get_gpio_in_named(ppcdev,
466
+ "irq_enable", 0));
467
+ g_free(gpioname);
468
+ gpioname = g_strdup_printf("%s_irq_clear", ppcinfo->name);
469
+ qdev_connect_gpio_out_named(iotkitdev, gpioname, 0,
470
+ qdev_get_gpio_in_named(ppcdev,
471
+ "irq_clear", 0));
472
+ g_free(gpioname);
473
+ gpioname = g_strdup_printf("%s_irq_status", ppcinfo->name);
474
+ qdev_connect_gpio_out_named(ppcdev, "irq", 0,
475
+ qdev_get_gpio_in_named(iotkitdev,
476
+ gpioname, 0));
477
+ g_free(gpioname);
478
+
479
+ qdev_connect_gpio_out(dev_splitter, i,
480
+ qdev_get_gpio_in_named(ppcdev,
481
+ "cfg_sec_resp", 0));
482
+ }
483
+
484
+ /* In hardware this is a LAN9220; the LAN9118 is software compatible
485
+ * except that it doesn't support the checksum-offload feature.
486
+ * The ethernet controller is not behind a PPC.
487
+ */
488
+ lan9118_init(&nd_table[0], 0x42000000,
489
+ qdev_get_gpio_in_named(iotkitdev, "EXP_IRQ", 16));
490
+
491
+ create_unimplemented_device("FPGA NS PC", 0x48007000, 0x1000);
492
+
493
+ armv7m_load_kernel(ARM_CPU(first_cpu), machine->kernel_filename, 0x400000);
494
+}
495
+
496
+static void mps2tz_class_init(ObjectClass *oc, void *data)
497
+{
498
+ MachineClass *mc = MACHINE_CLASS(oc);
499
+
500
+ mc->init = mps2tz_common_init;
501
+ mc->max_cpus = 1;
502
+}
503
+
504
+static void mps2tz_an505_class_init(ObjectClass *oc, void *data)
505
+{
506
+ MachineClass *mc = MACHINE_CLASS(oc);
507
+ MPS2TZMachineClass *mmc = MPS2TZ_MACHINE_CLASS(oc);
508
+
509
+ mc->desc = "ARM MPS2 with AN505 FPGA image for Cortex-M33";
510
+ mmc->fpga_type = FPGA_AN505;
511
+ mc->default_cpu_type = ARM_CPU_TYPE_NAME("cortex-m33");
512
+ mmc->scc_id = 0x41040000 | (505 << 4);
513
+}
514
+
515
+static const TypeInfo mps2tz_info = {
516
+ .name = TYPE_MPS2TZ_MACHINE,
517
+ .parent = TYPE_MACHINE,
518
+ .abstract = true,
519
+ .instance_size = sizeof(MPS2TZMachineState),
520
+ .class_size = sizeof(MPS2TZMachineClass),
521
+ .class_init = mps2tz_class_init,
522
+};
523
+
524
+static const TypeInfo mps2tz_an505_info = {
525
+ .name = TYPE_MPS2TZ_AN505_MACHINE,
526
+ .parent = TYPE_MPS2TZ_MACHINE,
527
+ .class_init = mps2tz_an505_class_init,
528
+};
529
+
530
+static void mps2tz_machine_init(void)
531
+{
532
+ type_register_static(&mps2tz_info);
533
+ type_register_static(&mps2tz_an505_info);
534
+}
535
+
536
+type_init(mps2tz_machine_init);
537
--
36
--
538
2.16.2
37
2.20.1
539
38
540
39
diff view generated by jsdifflib
1
Create an "idau" property on the armv7m container object which
1
Instead of making the ROM blob name something like:
2
we can forward to the CPU object. Annoyingly, we can't use
2
phdr #0: /home/petmay01/linaro/qemu-misc-tests/ldmia-fault.axf
3
object_property_add_alias() because the CPU object we want to
3
make it a little more self-explanatory for people who don't know
4
forward to doesn't exist until the armv7m container is realized.
4
ELF format details:
5
/home/petmay01/linaro/qemu-misc-tests/ldmia-fault.axf ELF program header segment 0
5
6
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20180220180325.29818-6-peter.maydell@linaro.org
9
Message-id: 20201129203923.10622-5-peter.maydell@linaro.org
9
---
10
---
10
include/hw/arm/armv7m.h | 3 +++
11
include/hw/elf_ops.h | 3 ++-
11
hw/arm/armv7m.c | 9 +++++++++
12
1 file changed, 2 insertions(+), 1 deletion(-)
12
2 files changed, 12 insertions(+)
13
13
14
diff --git a/include/hw/arm/armv7m.h b/include/hw/arm/armv7m.h
14
diff --git a/include/hw/elf_ops.h b/include/hw/elf_ops.h
15
index XXXXXXX..XXXXXXX 100644
15
index XXXXXXX..XXXXXXX 100644
16
--- a/include/hw/arm/armv7m.h
16
--- a/include/hw/elf_ops.h
17
+++ b/include/hw/arm/armv7m.h
17
+++ b/include/hw/elf_ops.h
18
@@ -XXX,XX +XXX,XX @@
18
@@ -XXX,XX +XXX,XX @@ static int glue(load_elf, SZ)(const char *name, int fd,
19
19
if (mem_size != 0) {
20
#include "hw/sysbus.h"
20
if (load_rom) {
21
#include "hw/intc/armv7m_nvic.h"
21
g_autofree char *label =
22
+#include "target/arm/idau.h"
22
- g_strdup_printf("phdr #%d: %s", i, name);
23
23
+ g_strdup_printf("%s ELF program header segment %d",
24
#define TYPE_BITBAND "ARM,bitband-memory"
24
+ name, i);
25
#define BITBAND(obj) OBJECT_CHECK(BitBandState, (obj), TYPE_BITBAND)
25
26
@@ -XXX,XX +XXX,XX @@ typedef struct {
26
/*
27
* + Property "memory": MemoryRegion defining the physical address space
27
* rom_add_elf_program() takes its own reference to
28
* that CPU accesses see. (The NVIC, bitbanding and other CPU-internal
29
* devices will be automatically layered on top of this view.)
30
+ * + Property "idau": IDAU interface (forwarded to CPU object)
31
*/
32
typedef struct ARMv7MState {
33
/*< private >*/
34
@@ -XXX,XX +XXX,XX @@ typedef struct ARMv7MState {
35
char *cpu_type;
36
/* MemoryRegion the board provides to us (with its devices, RAM, etc) */
37
MemoryRegion *board_memory;
38
+ Object *idau;
39
} ARMv7MState;
40
41
#endif
42
diff --git a/hw/arm/armv7m.c b/hw/arm/armv7m.c
43
index XXXXXXX..XXXXXXX 100644
44
--- a/hw/arm/armv7m.c
45
+++ b/hw/arm/armv7m.c
46
@@ -XXX,XX +XXX,XX @@
47
#include "sysemu/qtest.h"
48
#include "qemu/error-report.h"
49
#include "exec/address-spaces.h"
50
+#include "target/arm/idau.h"
51
52
/* Bitbanded IO. Each word corresponds to a single bit. */
53
54
@@ -XXX,XX +XXX,XX @@ static void armv7m_realize(DeviceState *dev, Error **errp)
55
56
object_property_set_link(OBJECT(s->cpu), OBJECT(&s->container), "memory",
57
&error_abort);
58
+ if (object_property_find(OBJECT(s->cpu), "idau", NULL)) {
59
+ object_property_set_link(OBJECT(s->cpu), s->idau, "idau", &err);
60
+ if (err != NULL) {
61
+ error_propagate(errp, err);
62
+ return;
63
+ }
64
+ }
65
object_property_set_bool(OBJECT(s->cpu), true, "realized", &err);
66
if (err != NULL) {
67
error_propagate(errp, err);
68
@@ -XXX,XX +XXX,XX @@ static Property armv7m_properties[] = {
69
DEFINE_PROP_STRING("cpu-type", ARMv7MState, cpu_type),
70
DEFINE_PROP_LINK("memory", ARMv7MState, board_memory, TYPE_MEMORY_REGION,
71
MemoryRegion *),
72
+ DEFINE_PROP_LINK("idau", ARMv7MState, idau, TYPE_IDAU_INTERFACE, Object *),
73
DEFINE_PROP_END_OF_LIST(),
74
};
75
76
--
28
--
77
2.16.2
29
2.20.1
78
30
79
31
diff view generated by jsdifflib
1
From: Alistair Francis <alistair.francis@xilinx.com>
1
From: Sai Pavan Boddu <sai.pavan.boddu@xilinx.com>
2
2
3
Initial commit of the ZynqMP RTC device.
3
This module emulates control registers of versal usb2 controller, this is added
4
4
just to make guest happy. In general this module would control the phy-reset
5
Signed-off-by: Alistair Francis <alistair.francis@xilinx.com>
5
signal from usb controller, data coherency of the transactions, signals
6
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
6
the host system errors received from controller.
7
8
Signed-off-by: Sai Pavan Boddu <sai.pavan.boddu@xilinx.com>
9
Signed-off-by: Vikram Garhwal <fnu.vikram@xilinx.com>
10
Reviewed-by: Edgar E. Iglesias <edgar.iglesias@xilinx.com>
11
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
12
Message-id: 1607023357-5096-2-git-send-email-sai.pavan.boddu@xilinx.com
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
---
14
---
9
hw/timer/Makefile.objs | 1 +
15
include/hw/usb/xlnx-versal-usb2-ctrl-regs.h | 45 ++++
10
include/hw/timer/xlnx-zynqmp-rtc.h | 84 +++++++++++++++
16
hw/usb/xlnx-versal-usb2-ctrl-regs.c | 229 ++++++++++++++++++++
11
hw/timer/xlnx-zynqmp-rtc.c | 214 +++++++++++++++++++++++++++++++++++++
17
hw/usb/meson.build | 1 +
12
3 files changed, 299 insertions(+)
18
3 files changed, 275 insertions(+)
13
create mode 100644 include/hw/timer/xlnx-zynqmp-rtc.h
19
create mode 100644 include/hw/usb/xlnx-versal-usb2-ctrl-regs.h
14
create mode 100644 hw/timer/xlnx-zynqmp-rtc.c
20
create mode 100644 hw/usb/xlnx-versal-usb2-ctrl-regs.c
15
21
16
diff --git a/hw/timer/Makefile.objs b/hw/timer/Makefile.objs
22
diff --git a/include/hw/usb/xlnx-versal-usb2-ctrl-regs.h b/include/hw/usb/xlnx-versal-usb2-ctrl-regs.h
17
index XXXXXXX..XXXXXXX 100644
18
--- a/hw/timer/Makefile.objs
19
+++ b/hw/timer/Makefile.objs
20
@@ -XXX,XX +XXX,XX @@ common-obj-$(CONFIG_IMX) += imx_epit.o
21
common-obj-$(CONFIG_IMX) += imx_gpt.o
22
common-obj-$(CONFIG_LM32) += lm32_timer.o
23
common-obj-$(CONFIG_MILKYMIST) += milkymist-sysctl.o
24
+common-obj-$(CONFIG_XLNX_ZYNQMP) += xlnx-zynqmp-rtc.o
25
26
obj-$(CONFIG_ALTERA_TIMER) += altera_timer.o
27
obj-$(CONFIG_EXYNOS4) += exynos4210_mct.o
28
diff --git a/include/hw/timer/xlnx-zynqmp-rtc.h b/include/hw/timer/xlnx-zynqmp-rtc.h
29
new file mode 100644
23
new file mode 100644
30
index XXXXXXX..XXXXXXX
24
index XXXXXXX..XXXXXXX
31
--- /dev/null
25
--- /dev/null
32
+++ b/include/hw/timer/xlnx-zynqmp-rtc.h
26
+++ b/include/hw/usb/xlnx-versal-usb2-ctrl-regs.h
33
@@ -XXX,XX +XXX,XX @@
27
@@ -XXX,XX +XXX,XX @@
34
+/*
28
+/*
35
+ * QEMU model of the Xilinx ZynqMP Real Time Clock (RTC).
29
+ * QEMU model of the VersalUsb2CtrlRegs Register control/Status block for
36
+ *
30
+ * USB2.0 controller
37
+ * Copyright (c) 2017 Xilinx Inc.
31
+ *
38
+ *
32
+ * Copyright (c) 2020 Xilinx Inc. Vikram Garhwal <fnu.vikram@xilinx.com>
39
+ * Written-by: Alistair Francis <alistair.francis@xilinx.com>
40
+ *
33
+ *
41
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
34
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
42
+ * of this software and associated documentation files (the "Software"), to deal
35
+ * of this software and associated documentation files (the "Software"), to deal
43
+ * in the Software without restriction, including without limitation the rights
36
+ * in the Software without restriction, including without limitation the rights
44
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
37
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
...
...
55
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
48
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
56
+ * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
49
+ * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
57
+ * THE SOFTWARE.
50
+ * THE SOFTWARE.
58
+ */
51
+ */
59
+
52
+
60
+#include "hw/register.h"
53
+#ifndef _XLNX_USB2_REGS_H_
61
+
54
+#define _XLNX_USB2_REGS_H_
62
+#define TYPE_XLNX_ZYNQMP_RTC "xlnx-zynmp.rtc"
55
+
63
+
56
+#define TYPE_XILINX_VERSAL_USB2_CTRL_REGS "xlnx.versal-usb2-ctrl-regs"
64
+#define XLNX_ZYNQMP_RTC(obj) \
57
+
65
+ OBJECT_CHECK(XlnxZynqMPRTC, (obj), TYPE_XLNX_ZYNQMP_RTC)
58
+#define XILINX_VERSAL_USB2_CTRL_REGS(obj) \
66
+
59
+ OBJECT_CHECK(VersalUsb2CtrlRegs, (obj), TYPE_XILINX_VERSAL_USB2_CTRL_REGS)
67
+REG32(SET_TIME_WRITE, 0x0)
60
+
68
+REG32(SET_TIME_READ, 0x4)
61
+#define USB2_REGS_R_MAX ((0x78 / 4) + 1)
69
+REG32(CALIB_WRITE, 0x8)
62
+
70
+ FIELD(CALIB_WRITE, FRACTION_EN, 20, 1)
63
+typedef struct VersalUsb2CtrlRegs {
71
+ FIELD(CALIB_WRITE, FRACTION_DATA, 16, 4)
72
+ FIELD(CALIB_WRITE, MAX_TICK, 0, 16)
73
+REG32(CALIB_READ, 0xc)
74
+ FIELD(CALIB_READ, FRACTION_EN, 20, 1)
75
+ FIELD(CALIB_READ, FRACTION_DATA, 16, 4)
76
+ FIELD(CALIB_READ, MAX_TICK, 0, 16)
77
+REG32(CURRENT_TIME, 0x10)
78
+REG32(CURRENT_TICK, 0x14)
79
+ FIELD(CURRENT_TICK, VALUE, 0, 16)
80
+REG32(ALARM, 0x18)
81
+REG32(RTC_INT_STATUS, 0x20)
82
+ FIELD(RTC_INT_STATUS, ALARM, 1, 1)
83
+ FIELD(RTC_INT_STATUS, SECONDS, 0, 1)
84
+REG32(RTC_INT_MASK, 0x24)
85
+ FIELD(RTC_INT_MASK, ALARM, 1, 1)
86
+ FIELD(RTC_INT_MASK, SECONDS, 0, 1)
87
+REG32(RTC_INT_EN, 0x28)
88
+ FIELD(RTC_INT_EN, ALARM, 1, 1)
89
+ FIELD(RTC_INT_EN, SECONDS, 0, 1)
90
+REG32(RTC_INT_DIS, 0x2c)
91
+ FIELD(RTC_INT_DIS, ALARM, 1, 1)
92
+ FIELD(RTC_INT_DIS, SECONDS, 0, 1)
93
+REG32(ADDR_ERROR, 0x30)
94
+ FIELD(ADDR_ERROR, STATUS, 0, 1)
95
+REG32(ADDR_ERROR_INT_MASK, 0x34)
96
+ FIELD(ADDR_ERROR_INT_MASK, MASK, 0, 1)
97
+REG32(ADDR_ERROR_INT_EN, 0x38)
98
+ FIELD(ADDR_ERROR_INT_EN, MASK, 0, 1)
99
+REG32(ADDR_ERROR_INT_DIS, 0x3c)
100
+ FIELD(ADDR_ERROR_INT_DIS, MASK, 0, 1)
101
+REG32(CONTROL, 0x40)
102
+ FIELD(CONTROL, BATTERY_DISABLE, 31, 1)
103
+ FIELD(CONTROL, OSC_CNTRL, 24, 4)
104
+ FIELD(CONTROL, SLVERR_ENABLE, 0, 1)
105
+REG32(SAFETY_CHK, 0x50)
106
+
107
+#define XLNX_ZYNQMP_RTC_R_MAX (R_SAFETY_CHK + 1)
108
+
109
+typedef struct XlnxZynqMPRTC {
110
+ SysBusDevice parent_obj;
64
+ SysBusDevice parent_obj;
111
+ MemoryRegion iomem;
65
+ MemoryRegion iomem;
112
+ qemu_irq irq_rtc_int;
66
+ qemu_irq irq_ir;
113
+ qemu_irq irq_addr_error_int;
67
+
114
+
68
+ uint32_t regs[USB2_REGS_R_MAX];
115
+ uint32_t regs[XLNX_ZYNQMP_RTC_R_MAX];
69
+ RegisterInfo regs_info[USB2_REGS_R_MAX];
116
+ RegisterInfo regs_info[XLNX_ZYNQMP_RTC_R_MAX];
70
+} VersalUsb2CtrlRegs;
117
+} XlnxZynqMPRTC;
71
+
118
diff --git a/hw/timer/xlnx-zynqmp-rtc.c b/hw/timer/xlnx-zynqmp-rtc.c
72
+#endif
73
diff --git a/hw/usb/xlnx-versal-usb2-ctrl-regs.c b/hw/usb/xlnx-versal-usb2-ctrl-regs.c
119
new file mode 100644
74
new file mode 100644
120
index XXXXXXX..XXXXXXX
75
index XXXXXXX..XXXXXXX
121
--- /dev/null
76
--- /dev/null
122
+++ b/hw/timer/xlnx-zynqmp-rtc.c
77
+++ b/hw/usb/xlnx-versal-usb2-ctrl-regs.c
123
@@ -XXX,XX +XXX,XX @@
78
@@ -XXX,XX +XXX,XX @@
124
+/*
79
+/*
125
+ * QEMU model of the Xilinx ZynqMP Real Time Clock (RTC).
80
+ * QEMU model of the VersalUsb2CtrlRegs Register control/Status block for
126
+ *
81
+ * USB2.0 controller
127
+ * Copyright (c) 2017 Xilinx Inc.
82
+ *
128
+ *
83
+ * This module should control phy_reset, permanent device plugs, frame length
129
+ * Written-by: Alistair Francis <alistair.francis@xilinx.com>
84
+ * time adjust & setting of coherency paths. None of which are emulated in
85
+ * present model.
86
+ *
87
+ * Copyright (c) 2020 Xilinx Inc. Vikram Garhwal <fnu.vikram@xilinx.com>
130
+ *
88
+ *
131
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
89
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
132
+ * of this software and associated documentation files (the "Software"), to deal
90
+ * of this software and associated documentation files (the "Software"), to deal
133
+ * in the Software without restriction, including without limitation the rights
91
+ * in the Software without restriction, including without limitation the rights
134
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
92
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
...
...
147
+ * THE SOFTWARE.
105
+ * THE SOFTWARE.
148
+ */
106
+ */
149
+
107
+
150
+#include "qemu/osdep.h"
108
+#include "qemu/osdep.h"
151
+#include "hw/sysbus.h"
109
+#include "hw/sysbus.h"
110
+#include "hw/irq.h"
152
+#include "hw/register.h"
111
+#include "hw/register.h"
153
+#include "qemu/bitops.h"
112
+#include "qemu/bitops.h"
154
+#include "qemu/log.h"
113
+#include "qemu/log.h"
155
+#include "hw/timer/xlnx-zynqmp-rtc.h"
114
+#include "qom/object.h"
156
+
115
+#include "migration/vmstate.h"
157
+#ifndef XLNX_ZYNQMP_RTC_ERR_DEBUG
116
+#include "hw/usb/xlnx-versal-usb2-ctrl-regs.h"
158
+#define XLNX_ZYNQMP_RTC_ERR_DEBUG 0
117
+
118
+#ifndef XILINX_VERSAL_USB2_CTRL_REGS_ERR_DEBUG
119
+#define XILINX_VERSAL_USB2_CTRL_REGS_ERR_DEBUG 0
159
+#endif
120
+#endif
160
+
121
+
161
+static void rtc_int_update_irq(XlnxZynqMPRTC *s)
122
+REG32(BUS_FILTER, 0x30)
162
+{
123
+ FIELD(BUS_FILTER, BYPASS, 0, 4)
163
+ bool pending = s->regs[R_RTC_INT_STATUS] & ~s->regs[R_RTC_INT_MASK];
124
+REG32(PORT, 0x34)
164
+ qemu_set_irq(s->irq_rtc_int, pending);
125
+ FIELD(PORT, HOST_SMI_BAR_WR, 4, 1)
165
+}
126
+ FIELD(PORT, HOST_SMI_PCI_CMD_REG_WR, 3, 1)
166
+
127
+ FIELD(PORT, HOST_MSI_ENABLE, 2, 1)
167
+static void addr_error_int_update_irq(XlnxZynqMPRTC *s)
128
+ FIELD(PORT, PWR_CTRL_PRSNT, 1, 1)
168
+{
129
+ FIELD(PORT, HUB_PERM_ATTACH, 0, 1)
169
+ bool pending = s->regs[R_ADDR_ERROR] & ~s->regs[R_ADDR_ERROR_INT_MASK];
130
+REG32(JITTER_ADJUST, 0x38)
170
+ qemu_set_irq(s->irq_addr_error_int, pending);
131
+ FIELD(JITTER_ADJUST, FLADJ, 0, 6)
171
+}
132
+REG32(BIGENDIAN, 0x40)
172
+
133
+ FIELD(BIGENDIAN, ENDIAN_GS, 0, 1)
173
+static void rtc_int_status_postw(RegisterInfo *reg, uint64_t val64)
134
+REG32(COHERENCY, 0x44)
174
+{
135
+ FIELD(COHERENCY, USB_COHERENCY, 0, 1)
175
+ XlnxZynqMPRTC *s = XLNX_ZYNQMP_RTC(reg->opaque);
136
+REG32(XHC_BME, 0x48)
176
+ rtc_int_update_irq(s);
137
+ FIELD(XHC_BME, XHC_BME, 0, 1)
177
+}
138
+REG32(REG_CTRL, 0x60)
178
+
139
+ FIELD(REG_CTRL, SLVERR_ENABLE, 0, 1)
179
+static uint64_t rtc_int_en_prew(RegisterInfo *reg, uint64_t val64)
140
+REG32(IR_STATUS, 0x64)
180
+{
141
+ FIELD(IR_STATUS, HOST_SYS_ERR, 1, 1)
181
+ XlnxZynqMPRTC *s = XLNX_ZYNQMP_RTC(reg->opaque);
142
+ FIELD(IR_STATUS, ADDR_DEC_ERR, 0, 1)
182
+
143
+REG32(IR_MASK, 0x68)
183
+ s->regs[R_RTC_INT_MASK] &= (uint32_t) ~val64;
144
+ FIELD(IR_MASK, HOST_SYS_ERR, 1, 1)
184
+ rtc_int_update_irq(s);
145
+ FIELD(IR_MASK, ADDR_DEC_ERR, 0, 1)
146
+REG32(IR_ENABLE, 0x6c)
147
+ FIELD(IR_ENABLE, HOST_SYS_ERR, 1, 1)
148
+ FIELD(IR_ENABLE, ADDR_DEC_ERR, 0, 1)
149
+REG32(IR_DISABLE, 0x70)
150
+ FIELD(IR_DISABLE, HOST_SYS_ERR, 1, 1)
151
+ FIELD(IR_DISABLE, ADDR_DEC_ERR, 0, 1)
152
+REG32(USB3, 0x78)
153
+
154
+static void ir_update_irq(VersalUsb2CtrlRegs *s)
155
+{
156
+ bool pending = s->regs[R_IR_STATUS] & ~s->regs[R_IR_MASK];
157
+ qemu_set_irq(s->irq_ir, pending);
158
+}
159
+
160
+static void ir_status_postw(RegisterInfo *reg, uint64_t val64)
161
+{
162
+ VersalUsb2CtrlRegs *s = XILINX_VERSAL_USB2_CTRL_REGS(reg->opaque);
163
+ /*
164
+ * TODO: This should also clear USBSTS.HSE field in USB XHCI register.
165
+ * May be combine both the modules.
166
+ */
167
+ ir_update_irq(s);
168
+}
169
+
170
+static uint64_t ir_enable_prew(RegisterInfo *reg, uint64_t val64)
171
+{
172
+ VersalUsb2CtrlRegs *s = XILINX_VERSAL_USB2_CTRL_REGS(reg->opaque);
173
+ uint32_t val = val64;
174
+
175
+ s->regs[R_IR_MASK] &= ~val;
176
+ ir_update_irq(s);
185
+ return 0;
177
+ return 0;
186
+}
178
+}
187
+
179
+
188
+static uint64_t rtc_int_dis_prew(RegisterInfo *reg, uint64_t val64)
180
+static uint64_t ir_disable_prew(RegisterInfo *reg, uint64_t val64)
189
+{
181
+{
190
+ XlnxZynqMPRTC *s = XLNX_ZYNQMP_RTC(reg->opaque);
182
+ VersalUsb2CtrlRegs *s = XILINX_VERSAL_USB2_CTRL_REGS(reg->opaque);
191
+
183
+ uint32_t val = val64;
192
+ s->regs[R_RTC_INT_MASK] |= (uint32_t) val64;
184
+
193
+ rtc_int_update_irq(s);
185
+ s->regs[R_IR_MASK] |= val;
186
+ ir_update_irq(s);
194
+ return 0;
187
+ return 0;
195
+}
188
+}
196
+
189
+
197
+static void addr_error_postw(RegisterInfo *reg, uint64_t val64)
190
+static const RegisterAccessInfo usb2_ctrl_regs_regs_info[] = {
198
+{
191
+ { .name = "BUS_FILTER", .addr = A_BUS_FILTER,
199
+ XlnxZynqMPRTC *s = XLNX_ZYNQMP_RTC(reg->opaque);
192
+ .rsvd = 0xfffffff0,
200
+ addr_error_int_update_irq(s);
193
+ },{ .name = "PORT", .addr = A_PORT,
201
+}
194
+ .rsvd = 0xffffffe0,
202
+
195
+ },{ .name = "JITTER_ADJUST", .addr = A_JITTER_ADJUST,
203
+static uint64_t addr_error_int_en_prew(RegisterInfo *reg, uint64_t val64)
196
+ .reset = 0x20,
204
+{
197
+ .rsvd = 0xffffffc0,
205
+ XlnxZynqMPRTC *s = XLNX_ZYNQMP_RTC(reg->opaque);
198
+ },{ .name = "BIGENDIAN", .addr = A_BIGENDIAN,
206
+
199
+ .rsvd = 0xfffffffe,
207
+ s->regs[R_ADDR_ERROR_INT_MASK] &= (uint32_t) ~val64;
200
+ },{ .name = "COHERENCY", .addr = A_COHERENCY,
208
+ addr_error_int_update_irq(s);
201
+ .rsvd = 0xfffffffe,
209
+ return 0;
202
+ },{ .name = "XHC_BME", .addr = A_XHC_BME,
210
+}
203
+ .reset = 0x1,
211
+
204
+ .rsvd = 0xfffffffe,
212
+static uint64_t addr_error_int_dis_prew(RegisterInfo *reg, uint64_t val64)
205
+ },{ .name = "REG_CTRL", .addr = A_REG_CTRL,
213
+{
206
+ .rsvd = 0xfffffffe,
214
+ XlnxZynqMPRTC *s = XLNX_ZYNQMP_RTC(reg->opaque);
207
+ },{ .name = "IR_STATUS", .addr = A_IR_STATUS,
215
+
208
+ .rsvd = 0xfffffffc,
216
+ s->regs[R_ADDR_ERROR_INT_MASK] |= (uint32_t) val64;
217
+ addr_error_int_update_irq(s);
218
+ return 0;
219
+}
220
+
221
+static const RegisterAccessInfo rtc_regs_info[] = {
222
+ { .name = "SET_TIME_WRITE", .addr = A_SET_TIME_WRITE,
223
+ },{ .name = "SET_TIME_READ", .addr = A_SET_TIME_READ,
224
+ .ro = 0xffffffff,
225
+ },{ .name = "CALIB_WRITE", .addr = A_CALIB_WRITE,
226
+ },{ .name = "CALIB_READ", .addr = A_CALIB_READ,
227
+ .ro = 0x1fffff,
228
+ },{ .name = "CURRENT_TIME", .addr = A_CURRENT_TIME,
229
+ .ro = 0xffffffff,
230
+ },{ .name = "CURRENT_TICK", .addr = A_CURRENT_TICK,
231
+ .ro = 0xffff,
232
+ },{ .name = "ALARM", .addr = A_ALARM,
233
+ },{ .name = "RTC_INT_STATUS", .addr = A_RTC_INT_STATUS,
234
+ .w1c = 0x3,
209
+ .w1c = 0x3,
235
+ .post_write = rtc_int_status_postw,
210
+ .post_write = ir_status_postw,
236
+ },{ .name = "RTC_INT_MASK", .addr = A_RTC_INT_MASK,
211
+ },{ .name = "IR_MASK", .addr = A_IR_MASK,
237
+ .reset = 0x3,
212
+ .reset = 0x3,
213
+ .rsvd = 0xfffffffc,
238
+ .ro = 0x3,
214
+ .ro = 0x3,
239
+ },{ .name = "RTC_INT_EN", .addr = A_RTC_INT_EN,
215
+ },{ .name = "IR_ENABLE", .addr = A_IR_ENABLE,
240
+ .pre_write = rtc_int_en_prew,
216
+ .rsvd = 0xfffffffc,
241
+ },{ .name = "RTC_INT_DIS", .addr = A_RTC_INT_DIS,
217
+ .pre_write = ir_enable_prew,
242
+ .pre_write = rtc_int_dis_prew,
218
+ },{ .name = "IR_DISABLE", .addr = A_IR_DISABLE,
243
+ },{ .name = "ADDR_ERROR", .addr = A_ADDR_ERROR,
219
+ .rsvd = 0xfffffffc,
244
+ .w1c = 0x1,
220
+ .pre_write = ir_disable_prew,
245
+ .post_write = addr_error_postw,
221
+ },{ .name = "USB3", .addr = A_USB3,
246
+ },{ .name = "ADDR_ERROR_INT_MASK", .addr = A_ADDR_ERROR_INT_MASK,
247
+ .reset = 0x1,
248
+ .ro = 0x1,
249
+ },{ .name = "ADDR_ERROR_INT_EN", .addr = A_ADDR_ERROR_INT_EN,
250
+ .pre_write = addr_error_int_en_prew,
251
+ },{ .name = "ADDR_ERROR_INT_DIS", .addr = A_ADDR_ERROR_INT_DIS,
252
+ .pre_write = addr_error_int_dis_prew,
253
+ },{ .name = "CONTROL", .addr = A_CONTROL,
254
+ .reset = 0x1000000,
255
+ .rsvd = 0x70fffffe,
256
+ },{ .name = "SAFETY_CHK", .addr = A_SAFETY_CHK,
257
+ }
222
+ }
258
+};
223
+};
259
+
224
+
260
+static void rtc_reset(DeviceState *dev)
225
+static void usb2_ctrl_regs_reset_init(Object *obj, ResetType type)
261
+{
226
+{
262
+ XlnxZynqMPRTC *s = XLNX_ZYNQMP_RTC(dev);
227
+ VersalUsb2CtrlRegs *s = XILINX_VERSAL_USB2_CTRL_REGS(obj);
263
+ unsigned int i;
228
+ unsigned int i;
264
+
229
+
265
+ for (i = 0; i < ARRAY_SIZE(s->regs_info); ++i) {
230
+ for (i = 0; i < ARRAY_SIZE(s->regs_info); ++i) {
266
+ register_reset(&s->regs_info[i]);
231
+ register_reset(&s->regs_info[i]);
267
+ }
232
+ }
268
+
233
+}
269
+ rtc_int_update_irq(s);
234
+
270
+ addr_error_int_update_irq(s);
235
+static void usb2_ctrl_regs_reset_hold(Object *obj)
271
+}
236
+{
272
+
237
+ VersalUsb2CtrlRegs *s = XILINX_VERSAL_USB2_CTRL_REGS(obj);
273
+static const MemoryRegionOps rtc_ops = {
238
+
239
+ ir_update_irq(s);
240
+}
241
+
242
+static const MemoryRegionOps usb2_ctrl_regs_ops = {
274
+ .read = register_read_memory,
243
+ .read = register_read_memory,
275
+ .write = register_write_memory,
244
+ .write = register_write_memory,
276
+ .endianness = DEVICE_LITTLE_ENDIAN,
245
+ .endianness = DEVICE_LITTLE_ENDIAN,
277
+ .valid = {
246
+ .valid = {
278
+ .min_access_size = 4,
247
+ .min_access_size = 4,
279
+ .max_access_size = 4,
248
+ .max_access_size = 4,
280
+ },
249
+ },
281
+};
250
+};
282
+
251
+
283
+static void rtc_init(Object *obj)
252
+static void usb2_ctrl_regs_init(Object *obj)
284
+{
253
+{
285
+ XlnxZynqMPRTC *s = XLNX_ZYNQMP_RTC(obj);
254
+ VersalUsb2CtrlRegs *s = XILINX_VERSAL_USB2_CTRL_REGS(obj);
286
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
255
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
287
+ RegisterInfoArray *reg_array;
256
+ RegisterInfoArray *reg_array;
288
+
257
+
289
+ memory_region_init(&s->iomem, obj, TYPE_XLNX_ZYNQMP_RTC,
258
+ memory_region_init(&s->iomem, obj, TYPE_XILINX_VERSAL_USB2_CTRL_REGS,
290
+ XLNX_ZYNQMP_RTC_R_MAX * 4);
259
+ USB2_REGS_R_MAX * 4);
291
+ reg_array =
260
+ reg_array =
292
+ register_init_block32(DEVICE(obj), rtc_regs_info,
261
+ register_init_block32(DEVICE(obj), usb2_ctrl_regs_regs_info,
293
+ ARRAY_SIZE(rtc_regs_info),
262
+ ARRAY_SIZE(usb2_ctrl_regs_regs_info),
294
+ s->regs_info, s->regs,
263
+ s->regs_info, s->regs,
295
+ &rtc_ops,
264
+ &usb2_ctrl_regs_ops,
296
+ XLNX_ZYNQMP_RTC_ERR_DEBUG,
265
+ XILINX_VERSAL_USB2_CTRL_REGS_ERR_DEBUG,
297
+ XLNX_ZYNQMP_RTC_R_MAX * 4);
266
+ USB2_REGS_R_MAX * 4);
298
+ memory_region_add_subregion(&s->iomem,
267
+ memory_region_add_subregion(&s->iomem,
299
+ 0x0,
268
+ 0x0,
300
+ &reg_array->mem);
269
+ &reg_array->mem);
301
+ sysbus_init_mmio(sbd, &s->iomem);
270
+ sysbus_init_mmio(sbd, &s->iomem);
302
+ sysbus_init_irq(sbd, &s->irq_rtc_int);
271
+ sysbus_init_irq(sbd, &s->irq_ir);
303
+ sysbus_init_irq(sbd, &s->irq_addr_error_int);
272
+}
304
+}
273
+
305
+
274
+static const VMStateDescription vmstate_usb2_ctrl_regs = {
306
+static const VMStateDescription vmstate_rtc = {
275
+ .name = TYPE_XILINX_VERSAL_USB2_CTRL_REGS,
307
+ .name = TYPE_XLNX_ZYNQMP_RTC,
308
+ .version_id = 1,
276
+ .version_id = 1,
309
+ .minimum_version_id = 1,
277
+ .minimum_version_id = 1,
310
+ .fields = (VMStateField[]) {
278
+ .fields = (VMStateField[]) {
311
+ VMSTATE_UINT32_ARRAY(regs, XlnxZynqMPRTC, XLNX_ZYNQMP_RTC_R_MAX),
279
+ VMSTATE_UINT32_ARRAY(regs, VersalUsb2CtrlRegs, USB2_REGS_R_MAX),
312
+ VMSTATE_END_OF_LIST(),
280
+ VMSTATE_END_OF_LIST(),
313
+ }
281
+ }
314
+};
282
+};
315
+
283
+
316
+static void rtc_class_init(ObjectClass *klass, void *data)
284
+static void usb2_ctrl_regs_class_init(ObjectClass *klass, void *data)
317
+{
285
+{
318
+ DeviceClass *dc = DEVICE_CLASS(klass);
286
+ DeviceClass *dc = DEVICE_CLASS(klass);
319
+
287
+ ResettableClass *rc = RESETTABLE_CLASS(klass);
320
+ dc->reset = rtc_reset;
288
+
321
+ dc->vmsd = &vmstate_rtc;
289
+ rc->phases.enter = usb2_ctrl_regs_reset_init;
322
+}
290
+ rc->phases.hold = usb2_ctrl_regs_reset_hold;
323
+
291
+ dc->vmsd = &vmstate_usb2_ctrl_regs;
324
+static const TypeInfo rtc_info = {
292
+}
325
+ .name = TYPE_XLNX_ZYNQMP_RTC,
293
+
294
+static const TypeInfo usb2_ctrl_regs_info = {
295
+ .name = TYPE_XILINX_VERSAL_USB2_CTRL_REGS,
326
+ .parent = TYPE_SYS_BUS_DEVICE,
296
+ .parent = TYPE_SYS_BUS_DEVICE,
327
+ .instance_size = sizeof(XlnxZynqMPRTC),
297
+ .instance_size = sizeof(VersalUsb2CtrlRegs),
328
+ .class_init = rtc_class_init,
298
+ .class_init = usb2_ctrl_regs_class_init,
329
+ .instance_init = rtc_init,
299
+ .instance_init = usb2_ctrl_regs_init,
330
+};
300
+};
331
+
301
+
332
+static void rtc_register_types(void)
302
+static void usb2_ctrl_regs_register_types(void)
333
+{
303
+{
334
+ type_register_static(&rtc_info);
304
+ type_register_static(&usb2_ctrl_regs_info);
335
+}
305
+}
336
+
306
+
337
+type_init(rtc_register_types)
307
+type_init(usb2_ctrl_regs_register_types)
308
diff --git a/hw/usb/meson.build b/hw/usb/meson.build
309
index XXXXXXX..XXXXXXX 100644
310
--- a/hw/usb/meson.build
311
+++ b/hw/usb/meson.build
312
@@ -XXX,XX +XXX,XX @@ softmmu_ss.add(when: 'CONFIG_USB_DWC2', if_true: files('hcd-dwc2.c'))
313
softmmu_ss.add(when: 'CONFIG_TUSB6010', if_true: files('tusb6010.c'))
314
softmmu_ss.add(when: 'CONFIG_IMX', if_true: files('chipidea.c'))
315
softmmu_ss.add(when: 'CONFIG_IMX_USBPHY', if_true: files('imx-usb-phy.c'))
316
+specific_ss.add(when: 'CONFIG_XLNX_VERSAL', if_true: files('xlnx-versal-usb2-ctrl-regs.c'))
317
318
# emulated usb devices
319
softmmu_ss.add(when: 'CONFIG_USB', if_true: files('dev-hub.c'))
338
--
320
--
339
2.16.2
321
2.20.1
340
322
341
323
diff view generated by jsdifflib
Deleted patch
1
From: Alistair Francis <alistair.francis@xilinx.com>
2
1
3
Allow the guest to determine the time set from the QEMU command line.
4
5
This includes adding a trace event to debug the new time.
6
7
Signed-off-by: Alistair Francis <alistair.francis@xilinx.com>
8
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
---
12
include/hw/timer/xlnx-zynqmp-rtc.h | 2 ++
13
hw/timer/xlnx-zynqmp-rtc.c | 58 ++++++++++++++++++++++++++++++++++++++
14
hw/timer/trace-events | 3 ++
15
3 files changed, 63 insertions(+)
16
17
diff --git a/include/hw/timer/xlnx-zynqmp-rtc.h b/include/hw/timer/xlnx-zynqmp-rtc.h
18
index XXXXXXX..XXXXXXX 100644
19
--- a/include/hw/timer/xlnx-zynqmp-rtc.h
20
+++ b/include/hw/timer/xlnx-zynqmp-rtc.h
21
@@ -XXX,XX +XXX,XX @@ typedef struct XlnxZynqMPRTC {
22
qemu_irq irq_rtc_int;
23
qemu_irq irq_addr_error_int;
24
25
+ uint32_t tick_offset;
26
+
27
uint32_t regs[XLNX_ZYNQMP_RTC_R_MAX];
28
RegisterInfo regs_info[XLNX_ZYNQMP_RTC_R_MAX];
29
} XlnxZynqMPRTC;
30
diff --git a/hw/timer/xlnx-zynqmp-rtc.c b/hw/timer/xlnx-zynqmp-rtc.c
31
index XXXXXXX..XXXXXXX 100644
32
--- a/hw/timer/xlnx-zynqmp-rtc.c
33
+++ b/hw/timer/xlnx-zynqmp-rtc.c
34
@@ -XXX,XX +XXX,XX @@
35
#include "hw/register.h"
36
#include "qemu/bitops.h"
37
#include "qemu/log.h"
38
+#include "hw/ptimer.h"
39
+#include "qemu/cutils.h"
40
+#include "sysemu/sysemu.h"
41
+#include "trace.h"
42
#include "hw/timer/xlnx-zynqmp-rtc.h"
43
44
#ifndef XLNX_ZYNQMP_RTC_ERR_DEBUG
45
@@ -XXX,XX +XXX,XX @@ static void addr_error_int_update_irq(XlnxZynqMPRTC *s)
46
qemu_set_irq(s->irq_addr_error_int, pending);
47
}
48
49
+static uint32_t rtc_get_count(XlnxZynqMPRTC *s)
50
+{
51
+ int64_t now = qemu_clock_get_ns(rtc_clock);
52
+ return s->tick_offset + now / NANOSECONDS_PER_SECOND;
53
+}
54
+
55
+static uint64_t current_time_postr(RegisterInfo *reg, uint64_t val64)
56
+{
57
+ XlnxZynqMPRTC *s = XLNX_ZYNQMP_RTC(reg->opaque);
58
+
59
+ return rtc_get_count(s);
60
+}
61
+
62
static void rtc_int_status_postw(RegisterInfo *reg, uint64_t val64)
63
{
64
XlnxZynqMPRTC *s = XLNX_ZYNQMP_RTC(reg->opaque);
65
@@ -XXX,XX +XXX,XX @@ static uint64_t addr_error_int_dis_prew(RegisterInfo *reg, uint64_t val64)
66
67
static const RegisterAccessInfo rtc_regs_info[] = {
68
{ .name = "SET_TIME_WRITE", .addr = A_SET_TIME_WRITE,
69
+ .unimp = MAKE_64BIT_MASK(0, 32),
70
},{ .name = "SET_TIME_READ", .addr = A_SET_TIME_READ,
71
.ro = 0xffffffff,
72
+ .post_read = current_time_postr,
73
},{ .name = "CALIB_WRITE", .addr = A_CALIB_WRITE,
74
+ .unimp = MAKE_64BIT_MASK(0, 32),
75
},{ .name = "CALIB_READ", .addr = A_CALIB_READ,
76
.ro = 0x1fffff,
77
},{ .name = "CURRENT_TIME", .addr = A_CURRENT_TIME,
78
.ro = 0xffffffff,
79
+ .post_read = current_time_postr,
80
},{ .name = "CURRENT_TICK", .addr = A_CURRENT_TICK,
81
.ro = 0xffff,
82
},{ .name = "ALARM", .addr = A_ALARM,
83
@@ -XXX,XX +XXX,XX @@ static void rtc_init(Object *obj)
84
XlnxZynqMPRTC *s = XLNX_ZYNQMP_RTC(obj);
85
SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
86
RegisterInfoArray *reg_array;
87
+ struct tm current_tm;
88
89
memory_region_init(&s->iomem, obj, TYPE_XLNX_ZYNQMP_RTC,
90
XLNX_ZYNQMP_RTC_R_MAX * 4);
91
@@ -XXX,XX +XXX,XX @@ static void rtc_init(Object *obj)
92
sysbus_init_mmio(sbd, &s->iomem);
93
sysbus_init_irq(sbd, &s->irq_rtc_int);
94
sysbus_init_irq(sbd, &s->irq_addr_error_int);
95
+
96
+ qemu_get_timedate(&current_tm, 0);
97
+ s->tick_offset = mktimegm(&current_tm) -
98
+ qemu_clock_get_ns(rtc_clock) / NANOSECONDS_PER_SECOND;
99
+
100
+ trace_xlnx_zynqmp_rtc_gettime(current_tm.tm_year, current_tm.tm_mon,
101
+ current_tm.tm_mday, current_tm.tm_hour,
102
+ current_tm.tm_min, current_tm.tm_sec);
103
+}
104
+
105
+static int rtc_pre_save(void *opaque)
106
+{
107
+ XlnxZynqMPRTC *s = opaque;
108
+ int64_t now = qemu_clock_get_ns(rtc_clock) / NANOSECONDS_PER_SECOND;
109
+
110
+ /* Add the time at migration */
111
+ s->tick_offset = s->tick_offset + now;
112
+
113
+ return 0;
114
+}
115
+
116
+static int rtc_post_load(void *opaque, int version_id)
117
+{
118
+ XlnxZynqMPRTC *s = opaque;
119
+ int64_t now = qemu_clock_get_ns(rtc_clock) / NANOSECONDS_PER_SECOND;
120
+
121
+ /* Subtract the time after migration. This combined with the pre_save
122
+ * action results in us having subtracted the time that the guest was
123
+ * stopped to the offset.
124
+ */
125
+ s->tick_offset = s->tick_offset - now;
126
+
127
+ return 0;
128
}
129
130
static const VMStateDescription vmstate_rtc = {
131
.name = TYPE_XLNX_ZYNQMP_RTC,
132
.version_id = 1,
133
.minimum_version_id = 1,
134
+ .pre_save = rtc_pre_save,
135
+ .post_load = rtc_post_load,
136
.fields = (VMStateField[]) {
137
VMSTATE_UINT32_ARRAY(regs, XlnxZynqMPRTC, XLNX_ZYNQMP_RTC_R_MAX),
138
+ VMSTATE_UINT32(tick_offset, XlnxZynqMPRTC),
139
VMSTATE_END_OF_LIST(),
140
}
141
};
142
diff --git a/hw/timer/trace-events b/hw/timer/trace-events
143
index XXXXXXX..XXXXXXX 100644
144
--- a/hw/timer/trace-events
145
+++ b/hw/timer/trace-events
146
@@ -XXX,XX +XXX,XX @@ systick_write(uint64_t addr, uint32_t value, unsigned size) "systick write addr
147
cmsdk_apb_timer_read(uint64_t offset, uint64_t data, unsigned size) "CMSDK APB timer read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
148
cmsdk_apb_timer_write(uint64_t offset, uint64_t data, unsigned size) "CMSDK APB timer write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
149
cmsdk_apb_timer_reset(void) "CMSDK APB timer: reset"
150
+
151
+# hw/timer/xlnx-zynqmp-rtc.c
152
+xlnx_zynqmp_rtc_gettime(int year, int month, int day, int hour, int min, int sec) "Get time from host: %d-%d-%d %2d:%02d:%02d"
153
--
154
2.16.2
155
156
diff view generated by jsdifflib
Deleted patch
1
From: Alistair Francis <alistair.francis@xilinx.com>
2
1
3
Signed-off-by: Alistair Francis <alistair.francis@xilinx.com>
4
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
5
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
8
include/hw/arm/xlnx-zynqmp.h | 2 ++
9
hw/arm/xlnx-zynqmp.c | 14 ++++++++++++++
10
2 files changed, 16 insertions(+)
11
12
diff --git a/include/hw/arm/xlnx-zynqmp.h b/include/hw/arm/xlnx-zynqmp.h
13
index XXXXXXX..XXXXXXX 100644
14
--- a/include/hw/arm/xlnx-zynqmp.h
15
+++ b/include/hw/arm/xlnx-zynqmp.h
16
@@ -XXX,XX +XXX,XX @@
17
#include "hw/dma/xlnx_dpdma.h"
18
#include "hw/display/xlnx_dp.h"
19
#include "hw/intc/xlnx-zynqmp-ipi.h"
20
+#include "hw/timer/xlnx-zynqmp-rtc.h"
21
22
#define TYPE_XLNX_ZYNQMP "xlnx,zynqmp"
23
#define XLNX_ZYNQMP(obj) OBJECT_CHECK(XlnxZynqMPState, (obj), \
24
@@ -XXX,XX +XXX,XX @@ typedef struct XlnxZynqMPState {
25
XlnxDPState dp;
26
XlnxDPDMAState dpdma;
27
XlnxZynqMPIPI ipi;
28
+ XlnxZynqMPRTC rtc;
29
30
char *boot_cpu;
31
ARMCPU *boot_cpu_ptr;
32
diff --git a/hw/arm/xlnx-zynqmp.c b/hw/arm/xlnx-zynqmp.c
33
index XXXXXXX..XXXXXXX 100644
34
--- a/hw/arm/xlnx-zynqmp.c
35
+++ b/hw/arm/xlnx-zynqmp.c
36
@@ -XXX,XX +XXX,XX @@
37
#define IPI_ADDR 0xFF300000
38
#define IPI_IRQ 64
39
40
+#define RTC_ADDR 0xffa60000
41
+#define RTC_IRQ 26
42
+
43
#define SDHCI_CAPABILITIES 0x280737ec6481 /* Datasheet: UG1085 (v1.7) */
44
45
static const uint64_t gem_addr[XLNX_ZYNQMP_NUM_GEMS] = {
46
@@ -XXX,XX +XXX,XX @@ static void xlnx_zynqmp_init(Object *obj)
47
48
object_initialize(&s->ipi, sizeof(s->ipi), TYPE_XLNX_ZYNQMP_IPI);
49
qdev_set_parent_bus(DEVICE(&s->ipi), sysbus_get_default());
50
+
51
+ object_initialize(&s->rtc, sizeof(s->rtc), TYPE_XLNX_ZYNQMP_RTC);
52
+ qdev_set_parent_bus(DEVICE(&s->rtc), sysbus_get_default());
53
}
54
55
static void xlnx_zynqmp_realize(DeviceState *dev, Error **errp)
56
@@ -XXX,XX +XXX,XX @@ static void xlnx_zynqmp_realize(DeviceState *dev, Error **errp)
57
}
58
sysbus_mmio_map(SYS_BUS_DEVICE(&s->ipi), 0, IPI_ADDR);
59
sysbus_connect_irq(SYS_BUS_DEVICE(&s->ipi), 0, gic_spi[IPI_IRQ]);
60
+
61
+ object_property_set_bool(OBJECT(&s->rtc), true, "realized", &err);
62
+ if (err) {
63
+ error_propagate(errp, err);
64
+ return;
65
+ }
66
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->rtc), 0, RTC_ADDR);
67
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->rtc), 0, gic_spi[RTC_IRQ]);
68
}
69
70
static Property xlnx_zynqmp_props[] = {
71
--
72
2.16.2
73
74
diff view generated by jsdifflib
Deleted patch
1
From: Richard Henderson <richard.henderson@linaro.org>
2
1
3
Allow the translate subroutines to return false for invalid insns.
4
5
At present we can of course invoke an invalid insn exception from within
6
the translate subroutine, but in the short term this consolidates code.
7
In the long term it would allow the decodetree language to support
8
overlapping patterns for ISA extensions.
9
10
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
11
Message-id: 20180227232618.2908-1-richard.henderson@linaro.org
12
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
---
15
scripts/decodetree.py | 5 ++---
16
1 file changed, 2 insertions(+), 3 deletions(-)
17
18
diff --git a/scripts/decodetree.py b/scripts/decodetree.py
19
index XXXXXXX..XXXXXXX 100755
20
--- a/scripts/decodetree.py
21
+++ b/scripts/decodetree.py
22
@@ -XXX,XX +XXX,XX @@ class Pattern(General):
23
global translate_prefix
24
output('typedef ', self.base.base.struct_name(),
25
' arg_', self.name, ';\n')
26
- output(translate_scope, 'void ', translate_prefix, '_', self.name,
27
+ output(translate_scope, 'bool ', translate_prefix, '_', self.name,
28
'(DisasContext *ctx, arg_', self.name,
29
' *a, ', insntype, ' insn);\n')
30
31
@@ -XXX,XX +XXX,XX @@ class Pattern(General):
32
output(ind, self.base.extract_name(), '(&u.f_', arg, ', insn);\n')
33
for n, f in self.fields.items():
34
output(ind, 'u.f_', arg, '.', n, ' = ', f.str_extract(), ';\n')
35
- output(ind, translate_prefix, '_', self.name,
36
+ output(ind, 'return ', translate_prefix, '_', self.name,
37
'(ctx, &u.f_', arg, ', insn);\n')
38
- output(ind, 'return true;\n')
39
# end Pattern
40
41
42
--
43
2.16.2
44
45
diff view generated by jsdifflib
Deleted patch
1
Instead of loading guest images to the system address space, use the
2
CPU's address space. This is important if we're trying to load the
3
file to memory or via an alias memory region that is provided by an
4
SoC object and thus not mapped into the system address space.
5
1
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
8
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
9
Message-id: 20180220180325.29818-4-peter.maydell@linaro.org
10
---
11
hw/arm/armv7m.c | 17 ++++++++++++++---
12
1 file changed, 14 insertions(+), 3 deletions(-)
13
14
diff --git a/hw/arm/armv7m.c b/hw/arm/armv7m.c
15
index XXXXXXX..XXXXXXX 100644
16
--- a/hw/arm/armv7m.c
17
+++ b/hw/arm/armv7m.c
18
@@ -XXX,XX +XXX,XX @@ void armv7m_load_kernel(ARMCPU *cpu, const char *kernel_filename, int mem_size)
19
uint64_t entry;
20
uint64_t lowaddr;
21
int big_endian;
22
+ AddressSpace *as;
23
+ int asidx;
24
+ CPUState *cs = CPU(cpu);
25
26
#ifdef TARGET_WORDS_BIGENDIAN
27
big_endian = 1;
28
@@ -XXX,XX +XXX,XX @@ void armv7m_load_kernel(ARMCPU *cpu, const char *kernel_filename, int mem_size)
29
exit(1);
30
}
31
32
+ if (arm_feature(&cpu->env, ARM_FEATURE_EL3)) {
33
+ asidx = ARMASIdx_S;
34
+ } else {
35
+ asidx = ARMASIdx_NS;
36
+ }
37
+ as = cpu_get_address_space(cs, asidx);
38
+
39
if (kernel_filename) {
40
- image_size = load_elf(kernel_filename, NULL, NULL, &entry, &lowaddr,
41
- NULL, big_endian, EM_ARM, 1, 0);
42
+ image_size = load_elf_as(kernel_filename, NULL, NULL, &entry, &lowaddr,
43
+ NULL, big_endian, EM_ARM, 1, 0, as);
44
if (image_size < 0) {
45
- image_size = load_image_targphys(kernel_filename, 0, mem_size);
46
+ image_size = load_image_targphys_as(kernel_filename, 0,
47
+ mem_size, as);
48
lowaddr = 0;
49
}
50
if (image_size < 0) {
51
--
52
2.16.2
53
54
diff view generated by jsdifflib
1
In some board or SoC models it is necessary to split a qemu_irq line
1
From: Vikram Garhwal <fnu.vikram@xilinx.com>
2
so that one input can feed multiple outputs. We currently have
3
qemu_irq_split() for this, but that has several deficiencies:
4
* it can only handle splitting a line into two
5
* it unavoidably leaks memory, so it can't be used
6
in a device that can be deleted
7
2
8
Implement a qdev device that encapsulates splitting of IRQs, with a
3
This patch adds skeleton model of dwc3 usb controller attached to
9
configurable number of outputs. (This is in some ways the inverse of
4
xhci-sysbus device. It defines global register space of DWC3 controller,
10
the TYPE_OR_IRQ device.)
5
global registers control the AXI/AHB interfaces properties, external FIFO
6
support and event count support. All of which are unimplemented at
7
present,we are only supporting core reset and read of ID register.
11
8
9
Signed-off-by: Vikram Garhwal <fnu.vikram@xilinx.com>
10
Signed-off-by: Sai Pavan Boddu <sai.pavan.boddu@xilinx.com>
11
Reviewed-by: Edgar E. Iglesias <edgar.iglesias@xilinx.com>
12
Message-id: 1607023357-5096-3-git-send-email-sai.pavan.boddu@xilinx.com
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
14
Message-id: 20180220180325.29818-13-peter.maydell@linaro.org
15
---
14
---
16
hw/core/Makefile.objs | 1 +
15
include/hw/usb/hcd-dwc3.h | 55 +++
17
include/hw/core/split-irq.h | 57 +++++++++++++++++++++++++++++
16
hw/usb/hcd-dwc3.c | 689 ++++++++++++++++++++++++++++++++++++++
18
include/hw/irq.h | 4 +-
17
hw/usb/Kconfig | 5 +
19
hw/core/split-irq.c | 89 +++++++++++++++++++++++++++++++++++++++++++++
18
hw/usb/meson.build | 1 +
20
4 files changed, 150 insertions(+), 1 deletion(-)
19
4 files changed, 750 insertions(+)
21
create mode 100644 include/hw/core/split-irq.h
20
create mode 100644 include/hw/usb/hcd-dwc3.h
22
create mode 100644 hw/core/split-irq.c
21
create mode 100644 hw/usb/hcd-dwc3.c
23
22
24
diff --git a/hw/core/Makefile.objs b/hw/core/Makefile.objs
23
diff --git a/include/hw/usb/hcd-dwc3.h b/include/hw/usb/hcd-dwc3.h
25
index XXXXXXX..XXXXXXX 100644
26
--- a/hw/core/Makefile.objs
27
+++ b/hw/core/Makefile.objs
28
@@ -XXX,XX +XXX,XX @@ common-obj-$(CONFIG_FITLOADER) += loader-fit.o
29
common-obj-$(CONFIG_SOFTMMU) += qdev-properties-system.o
30
common-obj-$(CONFIG_SOFTMMU) += register.o
31
common-obj-$(CONFIG_SOFTMMU) += or-irq.o
32
+common-obj-$(CONFIG_SOFTMMU) += split-irq.o
33
common-obj-$(CONFIG_PLATFORM_BUS) += platform-bus.o
34
35
obj-$(CONFIG_SOFTMMU) += generic-loader.o
36
diff --git a/include/hw/core/split-irq.h b/include/hw/core/split-irq.h
37
new file mode 100644
24
new file mode 100644
38
index XXXXXXX..XXXXXXX
25
index XXXXXXX..XXXXXXX
39
--- /dev/null
26
--- /dev/null
40
+++ b/include/hw/core/split-irq.h
27
+++ b/include/hw/usb/hcd-dwc3.h
41
@@ -XXX,XX +XXX,XX @@
28
@@ -XXX,XX +XXX,XX @@
42
+/*
29
+/*
43
+ * IRQ splitter device.
30
+ * QEMU model of the USB DWC3 host controller emulation.
44
+ *
31
+ *
45
+ * Copyright (c) 2018 Linaro Limited.
32
+ * Copyright (c) 2020 Xilinx Inc.
46
+ * Written by Peter Maydell
33
+ *
34
+ * Written by Vikram Garhwal<fnu.vikram@xilinx.com>
47
+ *
35
+ *
48
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
36
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
49
+ * of this software and associated documentation files (the "Software"), to deal
37
+ * of this software and associated documentation files (the "Software"), to deal
50
+ * in the Software without restriction, including without limitation the rights
38
+ * in the Software without restriction, including without limitation the rights
51
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
39
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
...
...
61
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
49
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
62
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
50
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
63
+ * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
51
+ * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
64
+ * THE SOFTWARE.
52
+ * THE SOFTWARE.
65
+ */
53
+ */
66
+
54
+#ifndef HCD_DWC3_H
67
+/* This is a simple device which has one GPIO input line and multiple
55
+#define HCD_DWC3_H
68
+ * GPIO output lines. Any change on the input line is forwarded to all
56
+
69
+ * of the outputs.
57
+#include "hw/usb/hcd-xhci.h"
70
+ *
58
+#include "hw/usb/hcd-xhci-sysbus.h"
71
+ * QEMU interface:
59
+
72
+ * + one unnamed GPIO input: the input line
60
+#define TYPE_USB_DWC3 "usb_dwc3"
73
+ * + N unnamed GPIO outputs: the output lines
61
+
74
+ * + QOM property "num-lines": sets the number of output lines
62
+#define USB_DWC3(obj) \
75
+ */
63
+ OBJECT_CHECK(USBDWC3, (obj), TYPE_USB_DWC3)
76
+#ifndef HW_SPLIT_IRQ_H
64
+
77
+#define HW_SPLIT_IRQ_H
65
+#define USB_DWC3_R_MAX ((0x530 / 4) + 1)
78
+
66
+#define DWC3_SIZE 0x10000
79
+#include "hw/irq.h"
67
+
80
+#include "hw/sysbus.h"
68
+typedef struct USBDWC3 {
81
+#include "qom/object.h"
69
+ SysBusDevice parent_obj;
82
+
70
+ MemoryRegion iomem;
83
+#define TYPE_SPLIT_IRQ "split-irq"
71
+ XHCISysbusState sysbus_xhci;
84
+
72
+
85
+#define MAX_SPLIT_LINES 16
73
+ uint32_t regs[USB_DWC3_R_MAX];
86
+
74
+ RegisterInfo regs_info[USB_DWC3_R_MAX];
87
+typedef struct SplitIRQ SplitIRQ;
75
+
88
+
76
+ struct {
89
+#define SPLIT_IRQ(obj) OBJECT_CHECK(SplitIRQ, (obj), TYPE_SPLIT_IRQ)
77
+ uint8_t mode;
90
+
78
+ uint32_t dwc_usb3_user;
91
+struct SplitIRQ {
79
+ } cfg;
92
+ DeviceState parent_obj;
80
+
93
+
81
+} USBDWC3;
94
+ qemu_irq out_irq[MAX_SPLIT_LINES];
95
+ uint16_t num_lines;
96
+};
97
+
82
+
98
+#endif
83
+#endif
99
diff --git a/include/hw/irq.h b/include/hw/irq.h
84
diff --git a/hw/usb/hcd-dwc3.c b/hw/usb/hcd-dwc3.c
100
index XXXXXXX..XXXXXXX 100644
101
--- a/include/hw/irq.h
102
+++ b/include/hw/irq.h
103
@@ -XXX,XX +XXX,XX @@ void qemu_free_irq(qemu_irq irq);
104
/* Returns a new IRQ with opposite polarity. */
105
qemu_irq qemu_irq_invert(qemu_irq irq);
106
107
-/* Returns a new IRQ which feeds into both the passed IRQs */
108
+/* Returns a new IRQ which feeds into both the passed IRQs.
109
+ * It's probably better to use the TYPE_SPLIT_IRQ device instead.
110
+ */
111
qemu_irq qemu_irq_split(qemu_irq irq1, qemu_irq irq2);
112
113
/* Returns a new IRQ set which connects 1:1 to another IRQ set, which
114
diff --git a/hw/core/split-irq.c b/hw/core/split-irq.c
115
new file mode 100644
85
new file mode 100644
116
index XXXXXXX..XXXXXXX
86
index XXXXXXX..XXXXXXX
117
--- /dev/null
87
--- /dev/null
118
+++ b/hw/core/split-irq.c
88
+++ b/hw/usb/hcd-dwc3.c
119
@@ -XXX,XX +XXX,XX @@
89
@@ -XXX,XX +XXX,XX @@
120
+/*
90
+/*
121
+ * IRQ splitter device.
91
+ * QEMU model of the USB DWC3 host controller emulation.
122
+ *
92
+ *
123
+ * Copyright (c) 2018 Linaro Limited.
93
+ * This model defines global register space of DWC3 controller. Global
124
+ * Written by Peter Maydell
94
+ * registers control the AXI/AHB interfaces properties, external FIFO support
95
+ * and event count support. All of which are unimplemented at present. We are
96
+ * only supporting core reset and read of ID register.
97
+ *
98
+ * Copyright (c) 2020 Xilinx Inc. Vikram Garhwal<fnu.vikram@xilinx.com>
125
+ *
99
+ *
126
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
100
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
127
+ * of this software and associated documentation files (the "Software"), to deal
101
+ * of this software and associated documentation files (the "Software"), to deal
128
+ * in the Software without restriction, including without limitation the rights
102
+ * in the Software without restriction, including without limitation the rights
129
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
103
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
...
...
141
+ * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
115
+ * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
142
+ * THE SOFTWARE.
116
+ * THE SOFTWARE.
143
+ */
117
+ */
144
+
118
+
145
+#include "qemu/osdep.h"
119
+#include "qemu/osdep.h"
146
+#include "hw/core/split-irq.h"
120
+#include "hw/sysbus.h"
121
+#include "hw/register.h"
122
+#include "qemu/bitops.h"
123
+#include "qemu/log.h"
124
+#include "qom/object.h"
125
+#include "migration/vmstate.h"
126
+#include "hw/qdev-properties.h"
127
+#include "hw/usb/hcd-dwc3.h"
147
+#include "qapi/error.h"
128
+#include "qapi/error.h"
148
+
129
+
149
+static void split_irq_handler(void *opaque, int n, int level)
130
+#ifndef USB_DWC3_ERR_DEBUG
131
+#define USB_DWC3_ERR_DEBUG 0
132
+#endif
133
+
134
+#define HOST_MODE 1
135
+#define FIFO_LEN 0x1000
136
+
137
+REG32(GSBUSCFG0, 0x00)
138
+ FIELD(GSBUSCFG0, DATRDREQINFO, 28, 4)
139
+ FIELD(GSBUSCFG0, DESRDREQINFO, 24, 4)
140
+ FIELD(GSBUSCFG0, DATWRREQINFO, 20, 4)
141
+ FIELD(GSBUSCFG0, DESWRREQINFO, 16, 4)
142
+ FIELD(GSBUSCFG0, RESERVED_15_12, 12, 4)
143
+ FIELD(GSBUSCFG0, DATBIGEND, 11, 1)
144
+ FIELD(GSBUSCFG0, DESBIGEND, 10, 1)
145
+ FIELD(GSBUSCFG0, RESERVED_9_8, 8, 2)
146
+ FIELD(GSBUSCFG0, INCR256BRSTENA, 7, 1)
147
+ FIELD(GSBUSCFG0, INCR128BRSTENA, 6, 1)
148
+ FIELD(GSBUSCFG0, INCR64BRSTENA, 5, 1)
149
+ FIELD(GSBUSCFG0, INCR32BRSTENA, 4, 1)
150
+ FIELD(GSBUSCFG0, INCR16BRSTENA, 3, 1)
151
+ FIELD(GSBUSCFG0, INCR8BRSTENA, 2, 1)
152
+ FIELD(GSBUSCFG0, INCR4BRSTENA, 1, 1)
153
+ FIELD(GSBUSCFG0, INCRBRSTENA, 0, 1)
154
+REG32(GSBUSCFG1, 0x04)
155
+ FIELD(GSBUSCFG1, RESERVED_31_13, 13, 19)
156
+ FIELD(GSBUSCFG1, EN1KPAGE, 12, 1)
157
+ FIELD(GSBUSCFG1, PIPETRANSLIMIT, 8, 4)
158
+ FIELD(GSBUSCFG1, RESERVED_7_0, 0, 8)
159
+REG32(GTXTHRCFG, 0x08)
160
+ FIELD(GTXTHRCFG, RESERVED_31, 31, 1)
161
+ FIELD(GTXTHRCFG, RESERVED_30, 30, 1)
162
+ FIELD(GTXTHRCFG, USBTXPKTCNTSEL, 29, 1)
163
+ FIELD(GTXTHRCFG, RESERVED_28, 28, 1)
164
+ FIELD(GTXTHRCFG, USBTXPKTCNT, 24, 4)
165
+ FIELD(GTXTHRCFG, USBMAXTXBURSTSIZE, 16, 8)
166
+ FIELD(GTXTHRCFG, RESERVED_15, 15, 1)
167
+ FIELD(GTXTHRCFG, RESERVED_14, 14, 1)
168
+ FIELD(GTXTHRCFG, RESERVED_13_11, 11, 3)
169
+ FIELD(GTXTHRCFG, RESERVED_10_0, 0, 11)
170
+REG32(GRXTHRCFG, 0x0c)
171
+ FIELD(GRXTHRCFG, RESERVED_31_30, 30, 2)
172
+ FIELD(GRXTHRCFG, USBRXPKTCNTSEL, 29, 1)
173
+ FIELD(GRXTHRCFG, RESERVED_28, 28, 1)
174
+ FIELD(GRXTHRCFG, USBRXPKTCNT, 24, 4)
175
+ FIELD(GRXTHRCFG, USBMAXRXBURSTSIZE, 19, 5)
176
+ FIELD(GRXTHRCFG, RESERVED_18_16, 16, 3)
177
+ FIELD(GRXTHRCFG, RESERVED_15, 15, 1)
178
+ FIELD(GRXTHRCFG, RESERVED_14_13, 13, 2)
179
+ FIELD(GRXTHRCFG, RESVISOCOUTSPC, 0, 13)
180
+REG32(GCTL, 0x10)
181
+ FIELD(GCTL, PWRDNSCALE, 19, 13)
182
+ FIELD(GCTL, MASTERFILTBYPASS, 18, 1)
183
+ FIELD(GCTL, BYPSSETADDR, 17, 1)
184
+ FIELD(GCTL, U2RSTECN, 16, 1)
185
+ FIELD(GCTL, FRMSCLDWN, 14, 2)
186
+ FIELD(GCTL, PRTCAPDIR, 12, 2)
187
+ FIELD(GCTL, CORESOFTRESET, 11, 1)
188
+ FIELD(GCTL, U1U2TIMERSCALE, 9, 1)
189
+ FIELD(GCTL, DEBUGATTACH, 8, 1)
190
+ FIELD(GCTL, RAMCLKSEL, 6, 2)
191
+ FIELD(GCTL, SCALEDOWN, 4, 2)
192
+ FIELD(GCTL, DISSCRAMBLE, 3, 1)
193
+ FIELD(GCTL, U2EXIT_LFPS, 2, 1)
194
+ FIELD(GCTL, GBLHIBERNATIONEN, 1, 1)
195
+ FIELD(GCTL, DSBLCLKGTNG, 0, 1)
196
+REG32(GPMSTS, 0x14)
197
+REG32(GSTS, 0x18)
198
+ FIELD(GSTS, CBELT, 20, 12)
199
+ FIELD(GSTS, RESERVED_19_12, 12, 8)
200
+ FIELD(GSTS, SSIC_IP, 11, 1)
201
+ FIELD(GSTS, OTG_IP, 10, 1)
202
+ FIELD(GSTS, BC_IP, 9, 1)
203
+ FIELD(GSTS, ADP_IP, 8, 1)
204
+ FIELD(GSTS, HOST_IP, 7, 1)
205
+ FIELD(GSTS, DEVICE_IP, 6, 1)
206
+ FIELD(GSTS, CSRTIMEOUT, 5, 1)
207
+ FIELD(GSTS, BUSERRADDRVLD, 4, 1)
208
+ FIELD(GSTS, RESERVED_3_2, 2, 2)
209
+ FIELD(GSTS, CURMOD, 0, 2)
210
+REG32(GUCTL1, 0x1c)
211
+ FIELD(GUCTL1, RESUME_OPMODE_HS_HOST, 10, 1)
212
+REG32(GSNPSID, 0x20)
213
+REG32(GGPIO, 0x24)
214
+ FIELD(GGPIO, GPO, 16, 16)
215
+ FIELD(GGPIO, GPI, 0, 16)
216
+REG32(GUID, 0x28)
217
+REG32(GUCTL, 0x2c)
218
+ FIELD(GUCTL, REFCLKPER, 22, 10)
219
+ FIELD(GUCTL, NOEXTRDL, 21, 1)
220
+ FIELD(GUCTL, RESERVED_20_18, 18, 3)
221
+ FIELD(GUCTL, SPRSCTRLTRANSEN, 17, 1)
222
+ FIELD(GUCTL, RESBWHSEPS, 16, 1)
223
+ FIELD(GUCTL, RESERVED_15, 15, 1)
224
+ FIELD(GUCTL, USBHSTINAUTORETRYEN, 14, 1)
225
+ FIELD(GUCTL, ENOVERLAPCHK, 13, 1)
226
+ FIELD(GUCTL, EXTCAPSUPPTEN, 12, 1)
227
+ FIELD(GUCTL, INSRTEXTRFSBODI, 11, 1)
228
+ FIELD(GUCTL, DTCT, 9, 2)
229
+ FIELD(GUCTL, DTFT, 0, 9)
230
+REG32(GBUSERRADDRLO, 0x30)
231
+REG32(GBUSERRADDRHI, 0x34)
232
+REG32(GHWPARAMS0, 0x40)
233
+ FIELD(GHWPARAMS0, GHWPARAMS0_31_24, 24, 8)
234
+ FIELD(GHWPARAMS0, GHWPARAMS0_23_16, 16, 8)
235
+ FIELD(GHWPARAMS0, GHWPARAMS0_15_8, 8, 8)
236
+ FIELD(GHWPARAMS0, GHWPARAMS0_7_6, 6, 2)
237
+ FIELD(GHWPARAMS0, GHWPARAMS0_5_3, 3, 3)
238
+ FIELD(GHWPARAMS0, GHWPARAMS0_2_0, 0, 3)
239
+REG32(GHWPARAMS1, 0x44)
240
+ FIELD(GHWPARAMS1, GHWPARAMS1_31, 31, 1)
241
+ FIELD(GHWPARAMS1, GHWPARAMS1_30, 30, 1)
242
+ FIELD(GHWPARAMS1, GHWPARAMS1_29, 29, 1)
243
+ FIELD(GHWPARAMS1, GHWPARAMS1_28, 28, 1)
244
+ FIELD(GHWPARAMS1, GHWPARAMS1_27, 27, 1)
245
+ FIELD(GHWPARAMS1, GHWPARAMS1_26, 26, 1)
246
+ FIELD(GHWPARAMS1, GHWPARAMS1_25_24, 24, 2)
247
+ FIELD(GHWPARAMS1, GHWPARAMS1_23, 23, 1)
248
+ FIELD(GHWPARAMS1, GHWPARAMS1_22_21, 21, 2)
249
+ FIELD(GHWPARAMS1, GHWPARAMS1_20_15, 15, 6)
250
+ FIELD(GHWPARAMS1, GHWPARAMS1_14_12, 12, 3)
251
+ FIELD(GHWPARAMS1, GHWPARAMS1_11_9, 9, 3)
252
+ FIELD(GHWPARAMS1, GHWPARAMS1_8_6, 6, 3)
253
+ FIELD(GHWPARAMS1, GHWPARAMS1_5_3, 3, 3)
254
+ FIELD(GHWPARAMS1, GHWPARAMS1_2_0, 0, 3)
255
+REG32(GHWPARAMS2, 0x48)
256
+REG32(GHWPARAMS3, 0x4c)
257
+ FIELD(GHWPARAMS3, GHWPARAMS3_31, 31, 1)
258
+ FIELD(GHWPARAMS3, GHWPARAMS3_30_23, 23, 8)
259
+ FIELD(GHWPARAMS3, GHWPARAMS3_22_18, 18, 5)
260
+ FIELD(GHWPARAMS3, GHWPARAMS3_17_12, 12, 6)
261
+ FIELD(GHWPARAMS3, GHWPARAMS3_11, 11, 1)
262
+ FIELD(GHWPARAMS3, GHWPARAMS3_10, 10, 1)
263
+ FIELD(GHWPARAMS3, GHWPARAMS3_9_8, 8, 2)
264
+ FIELD(GHWPARAMS3, GHWPARAMS3_7_6, 6, 2)
265
+ FIELD(GHWPARAMS3, GHWPARAMS3_5_4, 4, 2)
266
+ FIELD(GHWPARAMS3, GHWPARAMS3_3_2, 2, 2)
267
+ FIELD(GHWPARAMS3, GHWPARAMS3_1_0, 0, 2)
268
+REG32(GHWPARAMS4, 0x50)
269
+ FIELD(GHWPARAMS4, GHWPARAMS4_31_28, 28, 4)
270
+ FIELD(GHWPARAMS4, GHWPARAMS4_27_24, 24, 4)
271
+ FIELD(GHWPARAMS4, GHWPARAMS4_23, 23, 1)
272
+ FIELD(GHWPARAMS4, GHWPARAMS4_22, 22, 1)
273
+ FIELD(GHWPARAMS4, GHWPARAMS4_21, 21, 1)
274
+ FIELD(GHWPARAMS4, GHWPARAMS4_20_17, 17, 4)
275
+ FIELD(GHWPARAMS4, GHWPARAMS4_16_13, 13, 4)
276
+ FIELD(GHWPARAMS4, GHWPARAMS4_12, 12, 1)
277
+ FIELD(GHWPARAMS4, GHWPARAMS4_11, 11, 1)
278
+ FIELD(GHWPARAMS4, GHWPARAMS4_10_9, 9, 2)
279
+ FIELD(GHWPARAMS4, GHWPARAMS4_8_7, 7, 2)
280
+ FIELD(GHWPARAMS4, GHWPARAMS4_6, 6, 1)
281
+ FIELD(GHWPARAMS4, GHWPARAMS4_5_0, 0, 6)
282
+REG32(GHWPARAMS5, 0x54)
283
+ FIELD(GHWPARAMS5, GHWPARAMS5_31_28, 28, 4)
284
+ FIELD(GHWPARAMS5, GHWPARAMS5_27_22, 22, 6)
285
+ FIELD(GHWPARAMS5, GHWPARAMS5_21_16, 16, 6)
286
+ FIELD(GHWPARAMS5, GHWPARAMS5_15_10, 10, 6)
287
+ FIELD(GHWPARAMS5, GHWPARAMS5_9_4, 4, 6)
288
+ FIELD(GHWPARAMS5, GHWPARAMS5_3_0, 0, 4)
289
+REG32(GHWPARAMS6, 0x58)
290
+ FIELD(GHWPARAMS6, GHWPARAMS6_31_16, 16, 16)
291
+ FIELD(GHWPARAMS6, BUSFLTRSSUPPORT, 15, 1)
292
+ FIELD(GHWPARAMS6, BCSUPPORT, 14, 1)
293
+ FIELD(GHWPARAMS6, OTG_SS_SUPPORT, 13, 1)
294
+ FIELD(GHWPARAMS6, ADPSUPPORT, 12, 1)
295
+ FIELD(GHWPARAMS6, HNPSUPPORT, 11, 1)
296
+ FIELD(GHWPARAMS6, SRPSUPPORT, 10, 1)
297
+ FIELD(GHWPARAMS6, GHWPARAMS6_9_8, 8, 2)
298
+ FIELD(GHWPARAMS6, GHWPARAMS6_7, 7, 1)
299
+ FIELD(GHWPARAMS6, GHWPARAMS6_6, 6, 1)
300
+ FIELD(GHWPARAMS6, GHWPARAMS6_5_0, 0, 6)
301
+REG32(GHWPARAMS7, 0x5c)
302
+ FIELD(GHWPARAMS7, GHWPARAMS7_31_16, 16, 16)
303
+ FIELD(GHWPARAMS7, GHWPARAMS7_15_0, 0, 16)
304
+REG32(GDBGFIFOSPACE, 0x60)
305
+ FIELD(GDBGFIFOSPACE, SPACE_AVAILABLE, 16, 16)
306
+ FIELD(GDBGFIFOSPACE, RESERVED_15_9, 9, 7)
307
+ FIELD(GDBGFIFOSPACE, FIFO_QUEUE_SELECT, 0, 9)
308
+REG32(GUCTL2, 0x9c)
309
+ FIELD(GUCTL2, RESERVED_31_26, 26, 6)
310
+ FIELD(GUCTL2, EN_HP_PM_TIMER, 19, 7)
311
+ FIELD(GUCTL2, NOLOWPWRDUR, 15, 4)
312
+ FIELD(GUCTL2, RST_ACTBITLATER, 14, 1)
313
+ FIELD(GUCTL2, RESERVED_13, 13, 1)
314
+ FIELD(GUCTL2, DISABLECFC, 11, 1)
315
+REG32(GUSB2PHYCFG, 0x100)
316
+ FIELD(GUSB2PHYCFG, U2_FREECLK_EXISTS, 30, 1)
317
+ FIELD(GUSB2PHYCFG, ULPI_LPM_WITH_OPMODE_CHK, 29, 1)
318
+ FIELD(GUSB2PHYCFG, RESERVED_25, 25, 1)
319
+ FIELD(GUSB2PHYCFG, LSTRD, 22, 3)
320
+ FIELD(GUSB2PHYCFG, LSIPD, 19, 3)
321
+ FIELD(GUSB2PHYCFG, ULPIEXTVBUSINDIACTOR, 18, 1)
322
+ FIELD(GUSB2PHYCFG, ULPIEXTVBUSDRV, 17, 1)
323
+ FIELD(GUSB2PHYCFG, RESERVED_16, 16, 1)
324
+ FIELD(GUSB2PHYCFG, ULPIAUTORES, 15, 1)
325
+ FIELD(GUSB2PHYCFG, RESERVED_14, 14, 1)
326
+ FIELD(GUSB2PHYCFG, USBTRDTIM, 10, 4)
327
+ FIELD(GUSB2PHYCFG, XCVRDLY, 9, 1)
328
+ FIELD(GUSB2PHYCFG, ENBLSLPM, 8, 1)
329
+ FIELD(GUSB2PHYCFG, PHYSEL, 7, 1)
330
+ FIELD(GUSB2PHYCFG, SUSPENDUSB20, 6, 1)
331
+ FIELD(GUSB2PHYCFG, FSINTF, 5, 1)
332
+ FIELD(GUSB2PHYCFG, ULPI_UTMI_SEL, 4, 1)
333
+ FIELD(GUSB2PHYCFG, PHYIF, 3, 1)
334
+ FIELD(GUSB2PHYCFG, TOUTCAL, 0, 3)
335
+REG32(GUSB2I2CCTL, 0x140)
336
+REG32(GUSB2PHYACC_ULPI, 0x180)
337
+ FIELD(GUSB2PHYACC_ULPI, RESERVED_31_27, 27, 5)
338
+ FIELD(GUSB2PHYACC_ULPI, DISUIPIDRVR, 26, 1)
339
+ FIELD(GUSB2PHYACC_ULPI, NEWREGREQ, 25, 1)
340
+ FIELD(GUSB2PHYACC_ULPI, VSTSDONE, 24, 1)
341
+ FIELD(GUSB2PHYACC_ULPI, VSTSBSY, 23, 1)
342
+ FIELD(GUSB2PHYACC_ULPI, REGWR, 22, 1)
343
+ FIELD(GUSB2PHYACC_ULPI, REGADDR, 16, 6)
344
+ FIELD(GUSB2PHYACC_ULPI, EXTREGADDR, 8, 8)
345
+ FIELD(GUSB2PHYACC_ULPI, REGDATA, 0, 8)
346
+REG32(GTXFIFOSIZ0, 0x200)
347
+ FIELD(GTXFIFOSIZ0, TXFSTADDR_N, 16, 16)
348
+ FIELD(GTXFIFOSIZ0, TXFDEP_N, 0, 16)
349
+REG32(GTXFIFOSIZ1, 0x204)
350
+ FIELD(GTXFIFOSIZ1, TXFSTADDR_N, 16, 16)
351
+ FIELD(GTXFIFOSIZ1, TXFDEP_N, 0, 16)
352
+REG32(GTXFIFOSIZ2, 0x208)
353
+ FIELD(GTXFIFOSIZ2, TXFSTADDR_N, 16, 16)
354
+ FIELD(GTXFIFOSIZ2, TXFDEP_N, 0, 16)
355
+REG32(GTXFIFOSIZ3, 0x20c)
356
+ FIELD(GTXFIFOSIZ3, TXFSTADDR_N, 16, 16)
357
+ FIELD(GTXFIFOSIZ3, TXFDEP_N, 0, 16)
358
+REG32(GTXFIFOSIZ4, 0x210)
359
+ FIELD(GTXFIFOSIZ4, TXFSTADDR_N, 16, 16)
360
+ FIELD(GTXFIFOSIZ4, TXFDEP_N, 0, 16)
361
+REG32(GTXFIFOSIZ5, 0x214)
362
+ FIELD(GTXFIFOSIZ5, TXFSTADDR_N, 16, 16)
363
+ FIELD(GTXFIFOSIZ5, TXFDEP_N, 0, 16)
364
+REG32(GRXFIFOSIZ0, 0x280)
365
+ FIELD(GRXFIFOSIZ0, RXFSTADDR_N, 16, 16)
366
+ FIELD(GRXFIFOSIZ0, RXFDEP_N, 0, 16)
367
+REG32(GRXFIFOSIZ1, 0x284)
368
+ FIELD(GRXFIFOSIZ1, RXFSTADDR_N, 16, 16)
369
+ FIELD(GRXFIFOSIZ1, RXFDEP_N, 0, 16)
370
+REG32(GRXFIFOSIZ2, 0x288)
371
+ FIELD(GRXFIFOSIZ2, RXFSTADDR_N, 16, 16)
372
+ FIELD(GRXFIFOSIZ2, RXFDEP_N, 0, 16)
373
+REG32(GEVNTADRLO_0, 0x300)
374
+REG32(GEVNTADRHI_0, 0x304)
375
+REG32(GEVNTSIZ_0, 0x308)
376
+ FIELD(GEVNTSIZ_0, EVNTINTRPTMASK, 31, 1)
377
+ FIELD(GEVNTSIZ_0, RESERVED_30_16, 16, 15)
378
+ FIELD(GEVNTSIZ_0, EVENTSIZ, 0, 16)
379
+REG32(GEVNTCOUNT_0, 0x30c)
380
+ FIELD(GEVNTCOUNT_0, EVNT_HANDLER_BUSY, 31, 1)
381
+ FIELD(GEVNTCOUNT_0, RESERVED_30_16, 16, 15)
382
+ FIELD(GEVNTCOUNT_0, EVNTCOUNT, 0, 16)
383
+REG32(GEVNTADRLO_1, 0x310)
384
+REG32(GEVNTADRHI_1, 0x314)
385
+REG32(GEVNTSIZ_1, 0x318)
386
+ FIELD(GEVNTSIZ_1, EVNTINTRPTMASK, 31, 1)
387
+ FIELD(GEVNTSIZ_1, RESERVED_30_16, 16, 15)
388
+ FIELD(GEVNTSIZ_1, EVENTSIZ, 0, 16)
389
+REG32(GEVNTCOUNT_1, 0x31c)
390
+ FIELD(GEVNTCOUNT_1, EVNT_HANDLER_BUSY, 31, 1)
391
+ FIELD(GEVNTCOUNT_1, RESERVED_30_16, 16, 15)
392
+ FIELD(GEVNTCOUNT_1, EVNTCOUNT, 0, 16)
393
+REG32(GEVNTADRLO_2, 0x320)
394
+REG32(GEVNTADRHI_2, 0x324)
395
+REG32(GEVNTSIZ_2, 0x328)
396
+ FIELD(GEVNTSIZ_2, EVNTINTRPTMASK, 31, 1)
397
+ FIELD(GEVNTSIZ_2, RESERVED_30_16, 16, 15)
398
+ FIELD(GEVNTSIZ_2, EVENTSIZ, 0, 16)
399
+REG32(GEVNTCOUNT_2, 0x32c)
400
+ FIELD(GEVNTCOUNT_2, EVNT_HANDLER_BUSY, 31, 1)
401
+ FIELD(GEVNTCOUNT_2, RESERVED_30_16, 16, 15)
402
+ FIELD(GEVNTCOUNT_2, EVNTCOUNT, 0, 16)
403
+REG32(GEVNTADRLO_3, 0x330)
404
+REG32(GEVNTADRHI_3, 0x334)
405
+REG32(GEVNTSIZ_3, 0x338)
406
+ FIELD(GEVNTSIZ_3, EVNTINTRPTMASK, 31, 1)
407
+ FIELD(GEVNTSIZ_3, RESERVED_30_16, 16, 15)
408
+ FIELD(GEVNTSIZ_3, EVENTSIZ, 0, 16)
409
+REG32(GEVNTCOUNT_3, 0x33c)
410
+ FIELD(GEVNTCOUNT_3, EVNT_HANDLER_BUSY, 31, 1)
411
+ FIELD(GEVNTCOUNT_3, RESERVED_30_16, 16, 15)
412
+ FIELD(GEVNTCOUNT_3, EVNTCOUNT, 0, 16)
413
+REG32(GHWPARAMS8, 0x500)
414
+REG32(GTXFIFOPRIDEV, 0x510)
415
+ FIELD(GTXFIFOPRIDEV, RESERVED_31_N, 6, 26)
416
+ FIELD(GTXFIFOPRIDEV, GTXFIFOPRIDEV, 0, 6)
417
+REG32(GTXFIFOPRIHST, 0x518)
418
+ FIELD(GTXFIFOPRIHST, RESERVED_31_16, 3, 29)
419
+ FIELD(GTXFIFOPRIHST, GTXFIFOPRIHST, 0, 3)
420
+REG32(GRXFIFOPRIHST, 0x51c)
421
+ FIELD(GRXFIFOPRIHST, RESERVED_31_16, 3, 29)
422
+ FIELD(GRXFIFOPRIHST, GRXFIFOPRIHST, 0, 3)
423
+REG32(GDMAHLRATIO, 0x524)
424
+ FIELD(GDMAHLRATIO, RESERVED_31_13, 13, 19)
425
+ FIELD(GDMAHLRATIO, HSTRXFIFO, 8, 5)
426
+ FIELD(GDMAHLRATIO, RESERVED_7_5, 5, 3)
427
+ FIELD(GDMAHLRATIO, HSTTXFIFO, 0, 5)
428
+REG32(GFLADJ, 0x530)
429
+ FIELD(GFLADJ, GFLADJ_REFCLK_240MHZDECR_PLS1, 31, 1)
430
+ FIELD(GFLADJ, GFLADJ_REFCLK_240MHZ_DECR, 24, 7)
431
+ FIELD(GFLADJ, GFLADJ_REFCLK_LPM_SEL, 23, 1)
432
+ FIELD(GFLADJ, RESERVED_22, 22, 1)
433
+ FIELD(GFLADJ, GFLADJ_REFCLK_FLADJ, 8, 14)
434
+ FIELD(GFLADJ, GFLADJ_30MHZ_SDBND_SEL, 7, 1)
435
+ FIELD(GFLADJ, GFLADJ_30MHZ, 0, 6)
436
+
437
+#define DWC3_GLOBAL_OFFSET 0xC100
438
+static void reset_csr(USBDWC3 * s)
150
+{
439
+{
151
+ SplitIRQ *s = SPLIT_IRQ(opaque);
440
+ int i = 0;
152
+ int i;
441
+ /*
153
+
442
+ * We reset all CSR regs except GCTL, GUCTL, GSTS, GSNPSID, GGPIO, GUID,
154
+ for (i = 0; i < s->num_lines; i++) {
443
+ * GUSB2PHYCFGn registers and GUSB3PIPECTLn registers. We will skip PHY
155
+ qemu_set_irq(s->out_irq[i], level);
444
+ * register as we don't implement them.
445
+ */
446
+ for (i = 0; i < USB_DWC3_R_MAX; i++) {
447
+ switch (i) {
448
+ case R_GCTL:
449
+ break;
450
+ case R_GSTS:
451
+ break;
452
+ case R_GSNPSID:
453
+ break;
454
+ case R_GGPIO:
455
+ break;
456
+ case R_GUID:
457
+ break;
458
+ case R_GUCTL:
459
+ break;
460
+ case R_GHWPARAMS0...R_GHWPARAMS7:
461
+ break;
462
+ case R_GHWPARAMS8:
463
+ break;
464
+ default:
465
+ register_reset(&s->regs_info[i]);
466
+ break;
467
+ }
468
+ }
469
+
470
+ xhci_sysbus_reset(DEVICE(&s->sysbus_xhci));
471
+}
472
+
473
+static void usb_dwc3_gctl_postw(RegisterInfo *reg, uint64_t val64)
474
+{
475
+ USBDWC3 *s = USB_DWC3(reg->opaque);
476
+
477
+ if (ARRAY_FIELD_EX32(s->regs, GCTL, CORESOFTRESET)) {
478
+ reset_csr(s);
156
+ }
479
+ }
157
+}
480
+}
158
+
481
+
159
+static void split_irq_init(Object *obj)
482
+static void usb_dwc3_guid_postw(RegisterInfo *reg, uint64_t val64)
160
+{
483
+{
161
+ qdev_init_gpio_in(DEVICE(obj), split_irq_handler, 1);
484
+ USBDWC3 *s = USB_DWC3(reg->opaque);
485
+
486
+ s->regs[R_GUID] = s->cfg.dwc_usb3_user;
162
+}
487
+}
163
+
488
+
164
+static void split_irq_realize(DeviceState *dev, Error **errp)
489
+static const RegisterAccessInfo usb_dwc3_regs_info[] = {
490
+ { .name = "GSBUSCFG0", .addr = A_GSBUSCFG0,
491
+ .ro = 0xf300,
492
+ .unimp = 0xffffffff,
493
+ },{ .name = "GSBUSCFG1", .addr = A_GSBUSCFG1,
494
+ .reset = 0x300,
495
+ .ro = 0xffffe0ff,
496
+ .unimp = 0xffffffff,
497
+ },{ .name = "GTXTHRCFG", .addr = A_GTXTHRCFG,
498
+ .ro = 0xd000ffff,
499
+ .unimp = 0xffffffff,
500
+ },{ .name = "GRXTHRCFG", .addr = A_GRXTHRCFG,
501
+ .ro = 0xd007e000,
502
+ .unimp = 0xffffffff,
503
+ },{ .name = "GCTL", .addr = A_GCTL,
504
+ .reset = 0x30c13004, .post_write = usb_dwc3_gctl_postw,
505
+ },{ .name = "GPMSTS", .addr = A_GPMSTS,
506
+ .ro = 0xfffffff,
507
+ .unimp = 0xffffffff,
508
+ },{ .name = "GSTS", .addr = A_GSTS,
509
+ .reset = 0x7e800000,
510
+ .ro = 0xffffffcf,
511
+ .w1c = 0x30,
512
+ .unimp = 0xffffffff,
513
+ },{ .name = "GUCTL1", .addr = A_GUCTL1,
514
+ .reset = 0x198a,
515
+ .ro = 0x7800,
516
+ .unimp = 0xffffffff,
517
+ },{ .name = "GSNPSID", .addr = A_GSNPSID,
518
+ .reset = 0x5533330a,
519
+ .ro = 0xffffffff,
520
+ },{ .name = "GGPIO", .addr = A_GGPIO,
521
+ .ro = 0xffff,
522
+ .unimp = 0xffffffff,
523
+ },{ .name = "GUID", .addr = A_GUID,
524
+ .reset = 0x12345678, .post_write = usb_dwc3_guid_postw,
525
+ },{ .name = "GUCTL", .addr = A_GUCTL,
526
+ .reset = 0x0c808010,
527
+ .ro = 0x1c8000,
528
+ .unimp = 0xffffffff,
529
+ },{ .name = "GBUSERRADDRLO", .addr = A_GBUSERRADDRLO,
530
+ .ro = 0xffffffff,
531
+ },{ .name = "GBUSERRADDRHI", .addr = A_GBUSERRADDRHI,
532
+ .ro = 0xffffffff,
533
+ },{ .name = "GHWPARAMS0", .addr = A_GHWPARAMS0,
534
+ .ro = 0xffffffff,
535
+ },{ .name = "GHWPARAMS1", .addr = A_GHWPARAMS1,
536
+ .ro = 0xffffffff,
537
+ },{ .name = "GHWPARAMS2", .addr = A_GHWPARAMS2,
538
+ .ro = 0xffffffff,
539
+ },{ .name = "GHWPARAMS3", .addr = A_GHWPARAMS3,
540
+ .ro = 0xffffffff,
541
+ },{ .name = "GHWPARAMS4", .addr = A_GHWPARAMS4,
542
+ .ro = 0xffffffff,
543
+ },{ .name = "GHWPARAMS5", .addr = A_GHWPARAMS5,
544
+ .ro = 0xffffffff,
545
+ },{ .name = "GHWPARAMS6", .addr = A_GHWPARAMS6,
546
+ .ro = 0xffffffff,
547
+ },{ .name = "GHWPARAMS7", .addr = A_GHWPARAMS7,
548
+ .ro = 0xffffffff,
549
+ },{ .name = "GDBGFIFOSPACE", .addr = A_GDBGFIFOSPACE,
550
+ .reset = 0xa0000,
551
+ .ro = 0xfffffe00,
552
+ .unimp = 0xffffffff,
553
+ },{ .name = "GUCTL2", .addr = A_GUCTL2,
554
+ .reset = 0x40d,
555
+ .ro = 0x2000,
556
+ .unimp = 0xffffffff,
557
+ },{ .name = "GUSB2PHYCFG", .addr = A_GUSB2PHYCFG,
558
+ .reset = 0x40102410,
559
+ .ro = 0x1e014030,
560
+ .unimp = 0xffffffff,
561
+ },{ .name = "GUSB2I2CCTL", .addr = A_GUSB2I2CCTL,
562
+ .ro = 0xffffffff,
563
+ .unimp = 0xffffffff,
564
+ },{ .name = "GUSB2PHYACC_ULPI", .addr = A_GUSB2PHYACC_ULPI,
565
+ .ro = 0xfd000000,
566
+ .unimp = 0xffffffff,
567
+ },{ .name = "GTXFIFOSIZ0", .addr = A_GTXFIFOSIZ0,
568
+ .reset = 0x2c7000a,
569
+ .unimp = 0xffffffff,
570
+ },{ .name = "GTXFIFOSIZ1", .addr = A_GTXFIFOSIZ1,
571
+ .reset = 0x2d10103,
572
+ .unimp = 0xffffffff,
573
+ },{ .name = "GTXFIFOSIZ2", .addr = A_GTXFIFOSIZ2,
574
+ .reset = 0x3d40103,
575
+ .unimp = 0xffffffff,
576
+ },{ .name = "GTXFIFOSIZ3", .addr = A_GTXFIFOSIZ3,
577
+ .reset = 0x4d70083,
578
+ .unimp = 0xffffffff,
579
+ },{ .name = "GTXFIFOSIZ4", .addr = A_GTXFIFOSIZ4,
580
+ .reset = 0x55a0083,
581
+ .unimp = 0xffffffff,
582
+ },{ .name = "GTXFIFOSIZ5", .addr = A_GTXFIFOSIZ5,
583
+ .reset = 0x5dd0083,
584
+ .unimp = 0xffffffff,
585
+ },{ .name = "GRXFIFOSIZ0", .addr = A_GRXFIFOSIZ0,
586
+ .reset = 0x1c20105,
587
+ .unimp = 0xffffffff,
588
+ },{ .name = "GRXFIFOSIZ1", .addr = A_GRXFIFOSIZ1,
589
+ .reset = 0x2c70000,
590
+ .unimp = 0xffffffff,
591
+ },{ .name = "GRXFIFOSIZ2", .addr = A_GRXFIFOSIZ2,
592
+ .reset = 0x2c70000,
593
+ .unimp = 0xffffffff,
594
+ },{ .name = "GEVNTADRLO_0", .addr = A_GEVNTADRLO_0,
595
+ .unimp = 0xffffffff,
596
+ },{ .name = "GEVNTADRHI_0", .addr = A_GEVNTADRHI_0,
597
+ .unimp = 0xffffffff,
598
+ },{ .name = "GEVNTSIZ_0", .addr = A_GEVNTSIZ_0,
599
+ .ro = 0x7fff0000,
600
+ .unimp = 0xffffffff,
601
+ },{ .name = "GEVNTCOUNT_0", .addr = A_GEVNTCOUNT_0,
602
+ .ro = 0x7fff0000,
603
+ .unimp = 0xffffffff,
604
+ },{ .name = "GEVNTADRLO_1", .addr = A_GEVNTADRLO_1,
605
+ .unimp = 0xffffffff,
606
+ },{ .name = "GEVNTADRHI_1", .addr = A_GEVNTADRHI_1,
607
+ .unimp = 0xffffffff,
608
+ },{ .name = "GEVNTSIZ_1", .addr = A_GEVNTSIZ_1,
609
+ .ro = 0x7fff0000,
610
+ .unimp = 0xffffffff,
611
+ },{ .name = "GEVNTCOUNT_1", .addr = A_GEVNTCOUNT_1,
612
+ .ro = 0x7fff0000,
613
+ .unimp = 0xffffffff,
614
+ },{ .name = "GEVNTADRLO_2", .addr = A_GEVNTADRLO_2,
615
+ .unimp = 0xffffffff,
616
+ },{ .name = "GEVNTADRHI_2", .addr = A_GEVNTADRHI_2,
617
+ .unimp = 0xffffffff,
618
+ },{ .name = "GEVNTSIZ_2", .addr = A_GEVNTSIZ_2,
619
+ .ro = 0x7fff0000,
620
+ .unimp = 0xffffffff,
621
+ },{ .name = "GEVNTCOUNT_2", .addr = A_GEVNTCOUNT_2,
622
+ .ro = 0x7fff0000,
623
+ .unimp = 0xffffffff,
624
+ },{ .name = "GEVNTADRLO_3", .addr = A_GEVNTADRLO_3,
625
+ .unimp = 0xffffffff,
626
+ },{ .name = "GEVNTADRHI_3", .addr = A_GEVNTADRHI_3,
627
+ .unimp = 0xffffffff,
628
+ },{ .name = "GEVNTSIZ_3", .addr = A_GEVNTSIZ_3,
629
+ .ro = 0x7fff0000,
630
+ .unimp = 0xffffffff,
631
+ },{ .name = "GEVNTCOUNT_3", .addr = A_GEVNTCOUNT_3,
632
+ .ro = 0x7fff0000,
633
+ .unimp = 0xffffffff,
634
+ },{ .name = "GHWPARAMS8", .addr = A_GHWPARAMS8,
635
+ .ro = 0xffffffff,
636
+ },{ .name = "GTXFIFOPRIDEV", .addr = A_GTXFIFOPRIDEV,
637
+ .ro = 0xffffffc0,
638
+ .unimp = 0xffffffff,
639
+ },{ .name = "GTXFIFOPRIHST", .addr = A_GTXFIFOPRIHST,
640
+ .ro = 0xfffffff8,
641
+ .unimp = 0xffffffff,
642
+ },{ .name = "GRXFIFOPRIHST", .addr = A_GRXFIFOPRIHST,
643
+ .ro = 0xfffffff8,
644
+ .unimp = 0xffffffff,
645
+ },{ .name = "GDMAHLRATIO", .addr = A_GDMAHLRATIO,
646
+ .ro = 0xffffe0e0,
647
+ .unimp = 0xffffffff,
648
+ },{ .name = "GFLADJ", .addr = A_GFLADJ,
649
+ .reset = 0xc83f020,
650
+ .rsvd = 0x40,
651
+ .ro = 0x400040,
652
+ .unimp = 0xffffffff,
653
+ }
654
+};
655
+
656
+static void usb_dwc3_reset(DeviceState *dev)
165
+{
657
+{
166
+ SplitIRQ *s = SPLIT_IRQ(dev);
658
+ USBDWC3 *s = USB_DWC3(dev);
167
+
659
+ unsigned int i;
168
+ if (s->num_lines < 1 || s->num_lines >= MAX_SPLIT_LINES) {
660
+
169
+ error_setg(errp,
661
+ for (i = 0; i < ARRAY_SIZE(s->regs_info); ++i) {
170
+ "IRQ splitter number of lines %d is not between 1 and %d",
662
+ switch (i) {
171
+ s->num_lines, MAX_SPLIT_LINES);
663
+ case R_GHWPARAMS0...R_GHWPARAMS7:
664
+ break;
665
+ case R_GHWPARAMS8:
666
+ break;
667
+ default:
668
+ register_reset(&s->regs_info[i]);
669
+ };
670
+ }
671
+
672
+ xhci_sysbus_reset(DEVICE(&s->sysbus_xhci));
673
+}
674
+
675
+static const MemoryRegionOps usb_dwc3_ops = {
676
+ .read = register_read_memory,
677
+ .write = register_write_memory,
678
+ .endianness = DEVICE_LITTLE_ENDIAN,
679
+ .valid = {
680
+ .min_access_size = 4,
681
+ .max_access_size = 4,
682
+ },
683
+};
684
+
685
+static void usb_dwc3_realize(DeviceState *dev, Error **errp)
686
+{
687
+ USBDWC3 *s = USB_DWC3(dev);
688
+ SysBusDevice *sbd = SYS_BUS_DEVICE(dev);
689
+ Error *err = NULL;
690
+
691
+ sysbus_realize(SYS_BUS_DEVICE(&s->sysbus_xhci), &err);
692
+ if (err) {
693
+ error_propagate(errp, err);
172
+ return;
694
+ return;
173
+ }
695
+ }
174
+
696
+
175
+ qdev_init_gpio_out(dev, s->out_irq, s->num_lines);
697
+ memory_region_add_subregion(&s->iomem, 0,
698
+ sysbus_mmio_get_region(SYS_BUS_DEVICE(&s->sysbus_xhci), 0));
699
+ sysbus_init_mmio(sbd, &s->iomem);
700
+
701
+ /*
702
+ * Device Configuration
703
+ */
704
+ s->regs[R_GHWPARAMS0] = 0x40204048 | s->cfg.mode;
705
+ s->regs[R_GHWPARAMS1] = 0x222493b;
706
+ s->regs[R_GHWPARAMS2] = 0x12345678;
707
+ s->regs[R_GHWPARAMS3] = 0x618c088;
708
+ s->regs[R_GHWPARAMS4] = 0x47822004;
709
+ s->regs[R_GHWPARAMS5] = 0x4202088;
710
+ s->regs[R_GHWPARAMS6] = 0x7850c20;
711
+ s->regs[R_GHWPARAMS7] = 0x0;
712
+ s->regs[R_GHWPARAMS8] = 0x478;
176
+}
713
+}
177
+
714
+
178
+static Property split_irq_properties[] = {
715
+static void usb_dwc3_init(Object *obj)
179
+ DEFINE_PROP_UINT16("num-lines", SplitIRQ, num_lines, 1),
716
+{
717
+ USBDWC3 *s = USB_DWC3(obj);
718
+ RegisterInfoArray *reg_array;
719
+
720
+ memory_region_init(&s->iomem, obj, TYPE_USB_DWC3, DWC3_SIZE);
721
+ reg_array =
722
+ register_init_block32(DEVICE(obj), usb_dwc3_regs_info,
723
+ ARRAY_SIZE(usb_dwc3_regs_info),
724
+ s->regs_info, s->regs,
725
+ &usb_dwc3_ops,
726
+ USB_DWC3_ERR_DEBUG,
727
+ USB_DWC3_R_MAX * 4);
728
+ memory_region_add_subregion(&s->iomem,
729
+ DWC3_GLOBAL_OFFSET,
730
+ &reg_array->mem);
731
+ object_initialize_child(obj, "dwc3-xhci", &s->sysbus_xhci,
732
+ TYPE_XHCI_SYSBUS);
733
+ qdev_alias_all_properties(DEVICE(&s->sysbus_xhci), obj);
734
+
735
+ s->cfg.mode = HOST_MODE;
736
+}
737
+
738
+static const VMStateDescription vmstate_usb_dwc3 = {
739
+ .name = "usb-dwc3",
740
+ .version_id = 1,
741
+ .fields = (VMStateField[]) {
742
+ VMSTATE_UINT32_ARRAY(regs, USBDWC3, USB_DWC3_R_MAX),
743
+ VMSTATE_UINT8(cfg.mode, USBDWC3),
744
+ VMSTATE_UINT32(cfg.dwc_usb3_user, USBDWC3),
745
+ VMSTATE_END_OF_LIST()
746
+ }
747
+};
748
+
749
+static Property usb_dwc3_properties[] = {
750
+ DEFINE_PROP_UINT32("DWC_USB3_USERID", USBDWC3, cfg.dwc_usb3_user,
751
+ 0x12345678),
180
+ DEFINE_PROP_END_OF_LIST(),
752
+ DEFINE_PROP_END_OF_LIST(),
181
+};
753
+};
182
+
754
+
183
+static void split_irq_class_init(ObjectClass *klass, void *data)
755
+static void usb_dwc3_class_init(ObjectClass *klass, void *data)
184
+{
756
+{
185
+ DeviceClass *dc = DEVICE_CLASS(klass);
757
+ DeviceClass *dc = DEVICE_CLASS(klass);
186
+
758
+
187
+ /* No state to reset or migrate */
759
+ dc->reset = usb_dwc3_reset;
188
+ dc->props = split_irq_properties;
760
+ dc->realize = usb_dwc3_realize;
189
+ dc->realize = split_irq_realize;
761
+ dc->vmsd = &vmstate_usb_dwc3;
190
+
762
+ device_class_set_props(dc, usb_dwc3_properties);
191
+ /* Reason: Needs to be wired up to work */
192
+ dc->user_creatable = false;
193
+}
763
+}
194
+
764
+
195
+static const TypeInfo split_irq_type_info = {
765
+static const TypeInfo usb_dwc3_info = {
196
+ .name = TYPE_SPLIT_IRQ,
766
+ .name = TYPE_USB_DWC3,
197
+ .parent = TYPE_DEVICE,
767
+ .parent = TYPE_SYS_BUS_DEVICE,
198
+ .instance_size = sizeof(SplitIRQ),
768
+ .instance_size = sizeof(USBDWC3),
199
+ .instance_init = split_irq_init,
769
+ .class_init = usb_dwc3_class_init,
200
+ .class_init = split_irq_class_init,
770
+ .instance_init = usb_dwc3_init,
201
+};
771
+};
202
+
772
+
203
+static void split_irq_register_types(void)
773
+static void usb_dwc3_register_types(void)
204
+{
774
+{
205
+ type_register_static(&split_irq_type_info);
775
+ type_register_static(&usb_dwc3_info);
206
+}
776
+}
207
+
777
+
208
+type_init(split_irq_register_types)
778
+type_init(usb_dwc3_register_types)
779
diff --git a/hw/usb/Kconfig b/hw/usb/Kconfig
780
index XXXXXXX..XXXXXXX 100644
781
--- a/hw/usb/Kconfig
782
+++ b/hw/usb/Kconfig
783
@@ -XXX,XX +XXX,XX @@ config IMX_USBPHY
784
bool
785
default y
786
depends on USB
787
+
788
+config USB_DWC3
789
+ bool
790
+ select USB_XHCI_SYSBUS
791
+ select REGISTER
792
diff --git a/hw/usb/meson.build b/hw/usb/meson.build
793
index XXXXXXX..XXXXXXX 100644
794
--- a/hw/usb/meson.build
795
+++ b/hw/usb/meson.build
796
@@ -XXX,XX +XXX,XX @@ softmmu_ss.add(when: 'CONFIG_USB_XHCI_SYSBUS', if_true: files('hcd-xhci-sysbus.c
797
softmmu_ss.add(when: 'CONFIG_USB_XHCI_NEC', if_true: files('hcd-xhci-nec.c'))
798
softmmu_ss.add(when: 'CONFIG_USB_MUSB', if_true: files('hcd-musb.c'))
799
softmmu_ss.add(when: 'CONFIG_USB_DWC2', if_true: files('hcd-dwc2.c'))
800
+softmmu_ss.add(when: 'CONFIG_USB_DWC3', if_true: files('hcd-dwc3.c'))
801
802
softmmu_ss.add(when: 'CONFIG_TUSB6010', if_true: files('tusb6010.c'))
803
softmmu_ss.add(when: 'CONFIG_IMX', if_true: files('chipidea.c'))
209
--
804
--
210
2.16.2
805
2.20.1
211
806
212
807
diff view generated by jsdifflib
1
Model the Arm IoT Kit documented in
1
From: Sai Pavan Boddu <sai.pavan.boddu@xilinx.com>
2
http://infocenter.arm.com/help/index.jsp?topic=/com.arm.doc.ecm0601256/index.html
2
3
3
This model is a top level integration wrapper for hcd-dwc3 and
4
The Arm IoT Kit is a subsystem which includes a CPU and some devices,
4
versal-usb2-ctrl-regs modules, this is used by xilinx versal soc's and
5
and is intended be extended by adding extra devices to form a
5
future xilinx usb subsystems would also be part of it.
6
complete system. It is used in the MPS2 board's AN505 image for the
6
7
Cortex-M33.
7
Signed-off-by: Sai Pavan Boddu <sai.pavan.boddu@xilinx.com>
8
8
Reviewed-by: Edgar E. Iglesias <edgar.iglesias@xilinx.com>
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
10
Message-id: 1607023357-5096-4-git-send-email-sai.pavan.boddu@xilinx.com
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
11
Message-id: 20180220180325.29818-19-peter.maydell@linaro.org
12
---
12
---
13
hw/arm/Makefile.objs | 1 +
13
include/hw/usb/xlnx-usb-subsystem.h | 45 ++++++++++++++
14
include/hw/arm/iotkit.h | 109 ++++++++
14
hw/usb/xlnx-usb-subsystem.c | 94 +++++++++++++++++++++++++++++
15
hw/arm/iotkit.c | 598 ++++++++++++++++++++++++++++++++++++++++
15
hw/usb/Kconfig | 5 ++
16
default-configs/arm-softmmu.mak | 1 +
16
hw/usb/meson.build | 1 +
17
4 files changed, 709 insertions(+)
17
4 files changed, 145 insertions(+)
18
create mode 100644 include/hw/arm/iotkit.h
18
create mode 100644 include/hw/usb/xlnx-usb-subsystem.h
19
create mode 100644 hw/arm/iotkit.c
19
create mode 100644 hw/usb/xlnx-usb-subsystem.c
20
20
21
diff --git a/hw/arm/Makefile.objs b/hw/arm/Makefile.objs
21
diff --git a/include/hw/usb/xlnx-usb-subsystem.h b/include/hw/usb/xlnx-usb-subsystem.h
22
index XXXXXXX..XXXXXXX 100644
23
--- a/hw/arm/Makefile.objs
24
+++ b/hw/arm/Makefile.objs
25
@@ -XXX,XX +XXX,XX @@ obj-$(CONFIG_FSL_IMX6) += fsl-imx6.o sabrelite.o
26
obj-$(CONFIG_ASPEED_SOC) += aspeed_soc.o aspeed.o
27
obj-$(CONFIG_MPS2) += mps2.o
28
obj-$(CONFIG_MSF2) += msf2-soc.o msf2-som.o
29
+obj-$(CONFIG_IOTKIT) += iotkit.o
30
diff --git a/include/hw/arm/iotkit.h b/include/hw/arm/iotkit.h
31
new file mode 100644
22
new file mode 100644
32
index XXXXXXX..XXXXXXX
23
index XXXXXXX..XXXXXXX
33
--- /dev/null
24
--- /dev/null
34
+++ b/include/hw/arm/iotkit.h
25
+++ b/include/hw/usb/xlnx-usb-subsystem.h
35
@@ -XXX,XX +XXX,XX @@
26
@@ -XXX,XX +XXX,XX @@
36
+/*
27
+/*
37
+ * ARM IoT Kit
28
+ * QEMU model of the Xilinx usb subsystem
38
+ *
29
+ *
39
+ * Copyright (c) 2018 Linaro Limited
30
+ * Copyright (c) 2020 Xilinx Inc. Sai Pavan Boddu <sai.pavan.boddu@xilinx.com>
40
+ * Written by Peter Maydell
31
+ *
41
+ *
32
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
42
+ * This program is free software; you can redistribute it and/or modify
33
+ * of this software and associated documentation files (the "Software"), to deal
43
+ * it under the terms of the GNU General Public License version 2 or
34
+ * in the Software without restriction, including without limitation the rights
44
+ * (at your option) any later version.
35
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
36
+ * copies of the Software, and to permit persons to whom the Software is
37
+ * furnished to do so, subject to the following conditions:
38
+ *
39
+ * The above copyright notice and this permission notice shall be included in
40
+ * all copies or substantial portions of the Software.
41
+ *
42
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
43
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
44
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
45
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
46
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
47
+ * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
48
+ * THE SOFTWARE.
45
+ */
49
+ */
46
+
50
+
47
+/* This is a model of the Arm IoT Kit which is documented in
51
+#ifndef _XLNX_VERSAL_USB_SUBSYSTEM_H_
48
+ * http://infocenter.arm.com/help/index.jsp?topic=/com.arm.doc.ecm0601256/index.html
52
+#define _XLNX_VERSAL_USB_SUBSYSTEM_H_
49
+ * It contains:
53
+
50
+ * a Cortex-M33
54
+#include "hw/usb/xlnx-versal-usb2-ctrl-regs.h"
51
+ * the IDAU
55
+#include "hw/usb/hcd-dwc3.h"
52
+ * some timers and watchdogs
56
+
53
+ * two peripheral protection controllers
57
+#define TYPE_XILINX_VERSAL_USB2 "xlnx.versal-usb2"
54
+ * a memory protection controller
58
+
55
+ * a security controller
59
+#define VERSAL_USB2(obj) \
56
+ * a bus fabric which arranges that some parts of the address
60
+ OBJECT_CHECK(VersalUsb2, (obj), TYPE_XILINX_VERSAL_USB2)
57
+ * space are secure and non-secure aliases of each other
61
+
58
+ *
62
+typedef struct VersalUsb2 {
59
+ * QEMU interface:
60
+ * + QOM property "memory" is a MemoryRegion containing the devices provided
61
+ * by the board model.
62
+ * + QOM property "MAINCLK" is the frequency of the main system clock
63
+ * + QOM property "EXP_NUMIRQ" sets the number of expansion interrupts
64
+ * + Named GPIO inputs "EXP_IRQ" 0..n are the expansion interrupts, which
65
+ * are wired to the NVIC lines 32 .. n+32
66
+ * Controlling up to 4 AHB expansion PPBs which a system using the IoTKit
67
+ * might provide:
68
+ * + named GPIO outputs apb_ppcexp{0,1,2,3}_nonsec[0..15]
69
+ * + named GPIO outputs apb_ppcexp{0,1,2,3}_ap[0..15]
70
+ * + named GPIO outputs apb_ppcexp{0,1,2,3}_irq_enable
71
+ * + named GPIO outputs apb_ppcexp{0,1,2,3}_irq_clear
72
+ * + named GPIO inputs apb_ppcexp{0,1,2,3}_irq_status
73
+ * Controlling each of the 4 expansion AHB PPCs which a system using the IoTKit
74
+ * might provide:
75
+ * + named GPIO outputs ahb_ppcexp{0,1,2,3}_nonsec[0..15]
76
+ * + named GPIO outputs ahb_ppcexp{0,1,2,3}_ap[0..15]
77
+ * + named GPIO outputs ahb_ppcexp{0,1,2,3}_irq_enable
78
+ * + named GPIO outputs ahb_ppcexp{0,1,2,3}_irq_clear
79
+ * + named GPIO inputs ahb_ppcexp{0,1,2,3}_irq_status
80
+ */
81
+
82
+#ifndef IOTKIT_H
83
+#define IOTKIT_H
84
+
85
+#include "hw/sysbus.h"
86
+#include "hw/arm/armv7m.h"
87
+#include "hw/misc/iotkit-secctl.h"
88
+#include "hw/misc/tz-ppc.h"
89
+#include "hw/timer/cmsdk-apb-timer.h"
90
+#include "hw/misc/unimp.h"
91
+#include "hw/or-irq.h"
92
+#include "hw/core/split-irq.h"
93
+
94
+#define TYPE_IOTKIT "iotkit"
95
+#define IOTKIT(obj) OBJECT_CHECK(IoTKit, (obj), TYPE_IOTKIT)
96
+
97
+/* We have an IRQ splitter and an OR gate input for each external PPC
98
+ * and the 2 internal PPCs
99
+ */
100
+#define NUM_EXTERNAL_PPCS (IOTS_NUM_AHB_EXP_PPC + IOTS_NUM_APB_EXP_PPC)
101
+#define NUM_PPCS (NUM_EXTERNAL_PPCS + 2)
102
+
103
+typedef struct IoTKit {
104
+ /*< private >*/
105
+ SysBusDevice parent_obj;
63
+ SysBusDevice parent_obj;
106
+
64
+ MemoryRegion dwc3_mr;
107
+ /*< public >*/
65
+ MemoryRegion usb2Ctrl_mr;
108
+ ARMv7MState armv7m;
66
+
109
+ IoTKitSecCtl secctl;
67
+ VersalUsb2CtrlRegs usb2Ctrl;
110
+ TZPPC apb_ppc0;
68
+ USBDWC3 dwc3;
111
+ TZPPC apb_ppc1;
69
+} VersalUsb2;
112
+ CMSDKAPBTIMER timer0;
113
+ CMSDKAPBTIMER timer1;
114
+ qemu_or_irq ppc_irq_orgate;
115
+ SplitIRQ sec_resp_splitter;
116
+ SplitIRQ ppc_irq_splitter[NUM_PPCS];
117
+
118
+ UnimplementedDeviceState dualtimer;
119
+ UnimplementedDeviceState s32ktimer;
120
+
121
+ MemoryRegion container;
122
+ MemoryRegion alias1;
123
+ MemoryRegion alias2;
124
+ MemoryRegion alias3;
125
+ MemoryRegion sram0;
126
+
127
+ qemu_irq *exp_irqs;
128
+ qemu_irq ppc0_irq;
129
+ qemu_irq ppc1_irq;
130
+ qemu_irq sec_resp_cfg;
131
+ qemu_irq sec_resp_cfg_in;
132
+ qemu_irq nsc_cfg_in;
133
+
134
+ qemu_irq irq_status_in[NUM_EXTERNAL_PPCS];
135
+
136
+ uint32_t nsccfg;
137
+
138
+ /* Properties */
139
+ MemoryRegion *board_memory;
140
+ uint32_t exp_numirq;
141
+ uint32_t mainclk_frq;
142
+} IoTKit;
143
+
70
+
144
+#endif
71
+#endif
145
diff --git a/hw/arm/iotkit.c b/hw/arm/iotkit.c
72
diff --git a/hw/usb/xlnx-usb-subsystem.c b/hw/usb/xlnx-usb-subsystem.c
146
new file mode 100644
73
new file mode 100644
147
index XXXXXXX..XXXXXXX
74
index XXXXXXX..XXXXXXX
148
--- /dev/null
75
--- /dev/null
149
+++ b/hw/arm/iotkit.c
76
+++ b/hw/usb/xlnx-usb-subsystem.c
150
@@ -XXX,XX +XXX,XX @@
77
@@ -XXX,XX +XXX,XX @@
151
+/*
78
+/*
152
+ * Arm IoT Kit
79
+ * QEMU model of the Xilinx usb subsystem
153
+ *
80
+ *
154
+ * Copyright (c) 2018 Linaro Limited
81
+ * Copyright (c) 2020 Xilinx Inc. Sai Pavan Boddu <sai.pava.boddu@xilinx.com>
155
+ * Written by Peter Maydell
82
+ *
156
+ *
83
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
157
+ * This program is free software; you can redistribute it and/or modify
84
+ * of this software and associated documentation files (the "Software"), to deal
158
+ * it under the terms of the GNU General Public License version 2 or
85
+ * in the Software without restriction, including without limitation the rights
159
+ * (at your option) any later version.
86
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
87
+ * copies of the Software, and to permit persons to whom the Software is
88
+ * furnished to do so, subject to the following conditions:
89
+ *
90
+ * The above copyright notice and this permission notice shall be included in
91
+ * all copies or substantial portions of the Software.
92
+ *
93
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
94
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
95
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
96
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
97
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
98
+ * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
99
+ * THE SOFTWARE.
160
+ */
100
+ */
161
+
101
+
162
+#include "qemu/osdep.h"
102
+#include "qemu/osdep.h"
103
+#include "hw/sysbus.h"
104
+#include "hw/irq.h"
105
+#include "hw/register.h"
106
+#include "qemu/bitops.h"
163
+#include "qemu/log.h"
107
+#include "qemu/log.h"
108
+#include "qom/object.h"
164
+#include "qapi/error.h"
109
+#include "qapi/error.h"
165
+#include "trace.h"
110
+#include "hw/qdev-properties.h"
166
+#include "hw/sysbus.h"
111
+#include "hw/usb/xlnx-usb-subsystem.h"
167
+#include "hw/registerfields.h"
112
+
168
+#include "hw/arm/iotkit.h"
113
+static void versal_usb2_realize(DeviceState *dev, Error **errp)
169
+#include "hw/misc/unimp.h"
114
+{
170
+#include "hw/arm/arm.h"
115
+ VersalUsb2 *s = VERSAL_USB2(dev);
171
+
116
+ SysBusDevice *sbd = SYS_BUS_DEVICE(dev);
172
+/* Create an alias region of @size bytes starting at @base
173
+ * which mirrors the memory starting at @orig.
174
+ */
175
+static void make_alias(IoTKit *s, MemoryRegion *mr, const char *name,
176
+ hwaddr base, hwaddr size, hwaddr orig)
177
+{
178
+ memory_region_init_alias(mr, NULL, name, &s->container, orig, size);
179
+ /* The alias is even lower priority than unimplemented_device regions */
180
+ memory_region_add_subregion_overlap(&s->container, base, mr, -1500);
181
+}
182
+
183
+static void init_sysbus_child(Object *parent, const char *childname,
184
+ void *child, size_t childsize,
185
+ const char *childtype)
186
+{
187
+ object_initialize(child, childsize, childtype);
188
+ object_property_add_child(parent, childname, OBJECT(child), &error_abort);
189
+ qdev_set_parent_bus(DEVICE(child), sysbus_get_default());
190
+}
191
+
192
+static void irq_status_forwarder(void *opaque, int n, int level)
193
+{
194
+ qemu_irq destirq = opaque;
195
+
196
+ qemu_set_irq(destirq, level);
197
+}
198
+
199
+static void nsccfg_handler(void *opaque, int n, int level)
200
+{
201
+ IoTKit *s = IOTKIT(opaque);
202
+
203
+ s->nsccfg = level;
204
+}
205
+
206
+static void iotkit_forward_ppc(IoTKit *s, const char *ppcname, int ppcnum)
207
+{
208
+ /* Each of the 4 AHB and 4 APB PPCs that might be present in a
209
+ * system using the IoTKit has a collection of control lines which
210
+ * are provided by the security controller and which we want to
211
+ * expose as control lines on the IoTKit device itself, so the
212
+ * code using the IoTKit can wire them up to the PPCs.
213
+ */
214
+ SplitIRQ *splitter = &s->ppc_irq_splitter[ppcnum];
215
+ DeviceState *iotkitdev = DEVICE(s);
216
+ DeviceState *dev_secctl = DEVICE(&s->secctl);
217
+ DeviceState *dev_splitter = DEVICE(splitter);
218
+ char *name;
219
+
220
+ name = g_strdup_printf("%s_nonsec", ppcname);
221
+ qdev_pass_gpios(dev_secctl, iotkitdev, name);
222
+ g_free(name);
223
+ name = g_strdup_printf("%s_ap", ppcname);
224
+ qdev_pass_gpios(dev_secctl, iotkitdev, name);
225
+ g_free(name);
226
+ name = g_strdup_printf("%s_irq_enable", ppcname);
227
+ qdev_pass_gpios(dev_secctl, iotkitdev, name);
228
+ g_free(name);
229
+ name = g_strdup_printf("%s_irq_clear", ppcname);
230
+ qdev_pass_gpios(dev_secctl, iotkitdev, name);
231
+ g_free(name);
232
+
233
+ /* irq_status is a little more tricky, because we need to
234
+ * split it so we can send it both to the security controller
235
+ * and to our OR gate for the NVIC interrupt line.
236
+ * Connect up the splitter's outputs, and create a GPIO input
237
+ * which will pass the line state to the input splitter.
238
+ */
239
+ name = g_strdup_printf("%s_irq_status", ppcname);
240
+ qdev_connect_gpio_out(dev_splitter, 0,
241
+ qdev_get_gpio_in_named(dev_secctl,
242
+ name, 0));
243
+ qdev_connect_gpio_out(dev_splitter, 1,
244
+ qdev_get_gpio_in(DEVICE(&s->ppc_irq_orgate), ppcnum));
245
+ s->irq_status_in[ppcnum] = qdev_get_gpio_in(dev_splitter, 0);
246
+ qdev_init_gpio_in_named_with_opaque(iotkitdev, irq_status_forwarder,
247
+ s->irq_status_in[ppcnum], name, 1);
248
+ g_free(name);
249
+}
250
+
251
+static void iotkit_forward_sec_resp_cfg(IoTKit *s)
252
+{
253
+ /* Forward the 3rd output from the splitter device as a
254
+ * named GPIO output of the iotkit object.
255
+ */
256
+ DeviceState *dev = DEVICE(s);
257
+ DeviceState *dev_splitter = DEVICE(&s->sec_resp_splitter);
258
+
259
+ qdev_init_gpio_out_named(dev, &s->sec_resp_cfg, "sec_resp_cfg", 1);
260
+ s->sec_resp_cfg_in = qemu_allocate_irq(irq_status_forwarder,
261
+ s->sec_resp_cfg, 1);
262
+ qdev_connect_gpio_out(dev_splitter, 2, s->sec_resp_cfg_in);
263
+}
264
+
265
+static void iotkit_init(Object *obj)
266
+{
267
+ IoTKit *s = IOTKIT(obj);
268
+ int i;
269
+
270
+ memory_region_init(&s->container, obj, "iotkit-container", UINT64_MAX);
271
+
272
+ init_sysbus_child(obj, "armv7m", &s->armv7m, sizeof(s->armv7m),
273
+ TYPE_ARMV7M);
274
+ qdev_prop_set_string(DEVICE(&s->armv7m), "cpu-type",
275
+ ARM_CPU_TYPE_NAME("cortex-m33"));
276
+
277
+ init_sysbus_child(obj, "secctl", &s->secctl, sizeof(s->secctl),
278
+ TYPE_IOTKIT_SECCTL);
279
+ init_sysbus_child(obj, "apb-ppc0", &s->apb_ppc0, sizeof(s->apb_ppc0),
280
+ TYPE_TZ_PPC);
281
+ init_sysbus_child(obj, "apb-ppc1", &s->apb_ppc1, sizeof(s->apb_ppc1),
282
+ TYPE_TZ_PPC);
283
+ init_sysbus_child(obj, "timer0", &s->timer0, sizeof(s->timer0),
284
+ TYPE_CMSDK_APB_TIMER);
285
+ init_sysbus_child(obj, "timer1", &s->timer1, sizeof(s->timer1),
286
+ TYPE_CMSDK_APB_TIMER);
287
+ init_sysbus_child(obj, "dualtimer", &s->dualtimer, sizeof(s->dualtimer),
288
+ TYPE_UNIMPLEMENTED_DEVICE);
289
+ object_initialize(&s->ppc_irq_orgate, sizeof(s->ppc_irq_orgate),
290
+ TYPE_OR_IRQ);
291
+ object_property_add_child(obj, "ppc-irq-orgate",
292
+ OBJECT(&s->ppc_irq_orgate), &error_abort);
293
+ object_initialize(&s->sec_resp_splitter, sizeof(s->sec_resp_splitter),
294
+ TYPE_SPLIT_IRQ);
295
+ object_property_add_child(obj, "sec-resp-splitter",
296
+ OBJECT(&s->sec_resp_splitter), &error_abort);
297
+ for (i = 0; i < ARRAY_SIZE(s->ppc_irq_splitter); i++) {
298
+ char *name = g_strdup_printf("ppc-irq-splitter-%d", i);
299
+ SplitIRQ *splitter = &s->ppc_irq_splitter[i];
300
+
301
+ object_initialize(splitter, sizeof(*splitter), TYPE_SPLIT_IRQ);
302
+ object_property_add_child(obj, name, OBJECT(splitter), &error_abort);
303
+ }
304
+ init_sysbus_child(obj, "s32ktimer", &s->s32ktimer, sizeof(s->s32ktimer),
305
+ TYPE_UNIMPLEMENTED_DEVICE);
306
+}
307
+
308
+static void iotkit_exp_irq(void *opaque, int n, int level)
309
+{
310
+ IoTKit *s = IOTKIT(opaque);
311
+
312
+ qemu_set_irq(s->exp_irqs[n], level);
313
+}
314
+
315
+static void iotkit_realize(DeviceState *dev, Error **errp)
316
+{
317
+ IoTKit *s = IOTKIT(dev);
318
+ int i;
319
+ MemoryRegion *mr;
320
+ Error *err = NULL;
117
+ Error *err = NULL;
321
+ SysBusDevice *sbd_apb_ppc0;
118
+
322
+ SysBusDevice *sbd_secctl;
119
+ sysbus_realize(SYS_BUS_DEVICE(&s->dwc3), &err);
323
+ DeviceState *dev_apb_ppc0;
324
+ DeviceState *dev_apb_ppc1;
325
+ DeviceState *dev_secctl;
326
+ DeviceState *dev_splitter;
327
+
328
+ if (!s->board_memory) {
329
+ error_setg(errp, "memory property was not set");
330
+ return;
331
+ }
332
+
333
+ if (!s->mainclk_frq) {
334
+ error_setg(errp, "MAINCLK property was not set");
335
+ return;
336
+ }
337
+
338
+ /* Handling of which devices should be available only to secure
339
+ * code is usually done differently for M profile than for A profile.
340
+ * Instead of putting some devices only into the secure address space,
341
+ * devices exist in both address spaces but with hard-wired security
342
+ * permissions that will cause the CPU to fault for non-secure accesses.
343
+ *
344
+ * The IoTKit has an IDAU (Implementation Defined Access Unit),
345
+ * which specifies hard-wired security permissions for different
346
+ * areas of the physical address space. For the IoTKit IDAU, the
347
+ * top 4 bits of the physical address are the IDAU region ID, and
348
+ * if bit 28 (ie the lowest bit of the ID) is 0 then this is an NS
349
+ * region, otherwise it is an S region.
350
+ *
351
+ * The various devices and RAMs are generally all mapped twice,
352
+ * once into a region that the IDAU defines as secure and once
353
+ * into a non-secure region. They sit behind either a Memory
354
+ * Protection Controller (for RAM) or a Peripheral Protection
355
+ * Controller (for devices), which allow a more fine grained
356
+ * configuration of whether non-secure accesses are permitted.
357
+ *
358
+ * (The other place that guest software can configure security
359
+ * permissions is in the architected SAU (Security Attribution
360
+ * Unit), which is entirely inside the CPU. The IDAU can upgrade
361
+ * the security attributes for a region to more restrictive than
362
+ * the SAU specifies, but cannot downgrade them.)
363
+ *
364
+ * 0x10000000..0x1fffffff alias of 0x00000000..0x0fffffff
365
+ * 0x20000000..0x2007ffff 32KB FPGA block RAM
366
+ * 0x30000000..0x3fffffff alias of 0x20000000..0x2fffffff
367
+ * 0x40000000..0x4000ffff base peripheral region 1
368
+ * 0x40010000..0x4001ffff CPU peripherals (none for IoTKit)
369
+ * 0x40020000..0x4002ffff system control element peripherals
370
+ * 0x40080000..0x400fffff base peripheral region 2
371
+ * 0x50000000..0x5fffffff alias of 0x40000000..0x4fffffff
372
+ */
373
+
374
+ memory_region_add_subregion_overlap(&s->container, 0, s->board_memory, -1);
375
+
376
+ qdev_prop_set_uint32(DEVICE(&s->armv7m), "num-irq", s->exp_numirq + 32);
377
+ /* In real hardware the initial Secure VTOR is set from the INITSVTOR0
378
+ * register in the IoT Kit System Control Register block, and the
379
+ * initial value of that is in turn specifiable by the FPGA that
380
+ * instantiates the IoT Kit. In QEMU we don't implement this wrinkle,
381
+ * and simply set the CPU's init-svtor to the IoT Kit default value.
382
+ */
383
+ qdev_prop_set_uint32(DEVICE(&s->armv7m), "init-svtor", 0x10000000);
384
+ object_property_set_link(OBJECT(&s->armv7m), OBJECT(&s->container),
385
+ "memory", &err);
386
+ if (err) {
120
+ if (err) {
387
+ error_propagate(errp, err);
121
+ error_propagate(errp, err);
388
+ return;
122
+ return;
389
+ }
123
+ }
390
+ object_property_set_link(OBJECT(&s->armv7m), OBJECT(s), "idau", &err);
124
+ sysbus_realize(SYS_BUS_DEVICE(&s->usb2Ctrl), &err);
391
+ if (err) {
125
+ if (err) {
392
+ error_propagate(errp, err);
126
+ error_propagate(errp, err);
393
+ return;
127
+ return;
394
+ }
128
+ }
395
+ object_property_set_bool(OBJECT(&s->armv7m), true, "realized", &err);
129
+ sysbus_init_mmio(sbd, &s->dwc3_mr);
396
+ if (err) {
130
+ sysbus_init_mmio(sbd, &s->usb2Ctrl_mr);
397
+ error_propagate(errp, err);
131
+ qdev_pass_gpios(DEVICE(&s->dwc3.sysbus_xhci), dev, SYSBUS_DEVICE_GPIO_IRQ);
398
+ return;
132
+}
399
+ }
133
+
400
+
134
+static void versal_usb2_init(Object *obj)
401
+ /* Connect our EXP_IRQ GPIOs to the NVIC's lines 32 and up. */
135
+{
402
+ s->exp_irqs = g_new(qemu_irq, s->exp_numirq);
136
+ VersalUsb2 *s = VERSAL_USB2(obj);
403
+ for (i = 0; i < s->exp_numirq; i++) {
137
+
404
+ s->exp_irqs[i] = qdev_get_gpio_in(DEVICE(&s->armv7m), i + 32);
138
+ object_initialize_child(obj, "versal.dwc3", &s->dwc3,
405
+ }
139
+ TYPE_USB_DWC3);
406
+ qdev_init_gpio_in_named(dev, iotkit_exp_irq, "EXP_IRQ", s->exp_numirq);
140
+ object_initialize_child(obj, "versal.usb2-ctrl", &s->usb2Ctrl,
407
+
141
+ TYPE_XILINX_VERSAL_USB2_CTRL_REGS);
408
+ /* Set up the big aliases first */
142
+ memory_region_init_alias(&s->dwc3_mr, obj, "versal.dwc3_alias",
409
+ make_alias(s, &s->alias1, "alias 1", 0x10000000, 0x10000000, 0x00000000);
143
+ &s->dwc3.iomem, 0, DWC3_SIZE);
410
+ make_alias(s, &s->alias2, "alias 2", 0x30000000, 0x10000000, 0x20000000);
144
+ memory_region_init_alias(&s->usb2Ctrl_mr, obj, "versal.usb2Ctrl_alias",
411
+ /* The 0x50000000..0x5fffffff region is not a pure alias: it has
145
+ &s->usb2Ctrl.iomem, 0, USB2_REGS_R_MAX * 4);
412
+ * a few extra devices that only appear there (generally the
146
+ qdev_alias_all_properties(DEVICE(&s->dwc3), obj);
413
+ * control interfaces for the protection controllers).
147
+ qdev_alias_all_properties(DEVICE(&s->dwc3.sysbus_xhci), obj);
414
+ * We implement this by mapping those devices over the top of this
148
+ object_property_add_alias(obj, "dma", OBJECT(&s->dwc3.sysbus_xhci), "dma");
415
+ * alias MR at a higher priority.
149
+}
416
+ */
150
+
417
+ make_alias(s, &s->alias3, "alias 3", 0x50000000, 0x10000000, 0x40000000);
151
+static void versal_usb2_class_init(ObjectClass *klass, void *data)
418
+
152
+{
419
+ /* This RAM should be behind a Memory Protection Controller, but we
153
+ DeviceClass *dc = DEVICE_CLASS(klass);
420
+ * don't implement that yet.
154
+
421
+ */
155
+ dc->realize = versal_usb2_realize;
422
+ memory_region_init_ram(&s->sram0, NULL, "iotkit.sram0", 0x00008000, &err);
156
+}
423
+ if (err) {
157
+
424
+ error_propagate(errp, err);
158
+static const TypeInfo versal_usb2_info = {
425
+ return;
159
+ .name = TYPE_XILINX_VERSAL_USB2,
426
+ }
160
+ .parent = TYPE_SYS_BUS_DEVICE,
427
+ memory_region_add_subregion(&s->container, 0x20000000, &s->sram0);
161
+ .instance_size = sizeof(VersalUsb2),
428
+
162
+ .class_init = versal_usb2_class_init,
429
+ /* Security controller */
163
+ .instance_init = versal_usb2_init,
430
+ object_property_set_bool(OBJECT(&s->secctl), true, "realized", &err);
431
+ if (err) {
432
+ error_propagate(errp, err);
433
+ return;
434
+ }
435
+ sbd_secctl = SYS_BUS_DEVICE(&s->secctl);
436
+ dev_secctl = DEVICE(&s->secctl);
437
+ sysbus_mmio_map(sbd_secctl, 0, 0x50080000);
438
+ sysbus_mmio_map(sbd_secctl, 1, 0x40080000);
439
+
440
+ s->nsc_cfg_in = qemu_allocate_irq(nsccfg_handler, s, 1);
441
+ qdev_connect_gpio_out_named(dev_secctl, "nsc_cfg", 0, s->nsc_cfg_in);
442
+
443
+ /* The sec_resp_cfg output from the security controller must be split into
444
+ * multiple lines, one for each of the PPCs within the IoTKit and one
445
+ * that will be an output from the IoTKit to the system.
446
+ */
447
+ object_property_set_int(OBJECT(&s->sec_resp_splitter), 3,
448
+ "num-lines", &err);
449
+ if (err) {
450
+ error_propagate(errp, err);
451
+ return;
452
+ }
453
+ object_property_set_bool(OBJECT(&s->sec_resp_splitter), true,
454
+ "realized", &err);
455
+ if (err) {
456
+ error_propagate(errp, err);
457
+ return;
458
+ }
459
+ dev_splitter = DEVICE(&s->sec_resp_splitter);
460
+ qdev_connect_gpio_out_named(dev_secctl, "sec_resp_cfg", 0,
461
+ qdev_get_gpio_in(dev_splitter, 0));
462
+
463
+ /* Devices behind APB PPC0:
464
+ * 0x40000000: timer0
465
+ * 0x40001000: timer1
466
+ * 0x40002000: dual timer
467
+ * We must configure and realize each downstream device and connect
468
+ * it to the appropriate PPC port; then we can realize the PPC and
469
+ * map its upstream ends to the right place in the container.
470
+ */
471
+ qdev_prop_set_uint32(DEVICE(&s->timer0), "pclk-frq", s->mainclk_frq);
472
+ object_property_set_bool(OBJECT(&s->timer0), true, "realized", &err);
473
+ if (err) {
474
+ error_propagate(errp, err);
475
+ return;
476
+ }
477
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->timer0), 0,
478
+ qdev_get_gpio_in(DEVICE(&s->armv7m), 3));
479
+ mr = sysbus_mmio_get_region(SYS_BUS_DEVICE(&s->timer0), 0);
480
+ object_property_set_link(OBJECT(&s->apb_ppc0), OBJECT(mr), "port[0]", &err);
481
+ if (err) {
482
+ error_propagate(errp, err);
483
+ return;
484
+ }
485
+
486
+ qdev_prop_set_uint32(DEVICE(&s->timer1), "pclk-frq", s->mainclk_frq);
487
+ object_property_set_bool(OBJECT(&s->timer1), true, "realized", &err);
488
+ if (err) {
489
+ error_propagate(errp, err);
490
+ return;
491
+ }
492
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->timer1), 0,
493
+ qdev_get_gpio_in(DEVICE(&s->armv7m), 3));
494
+ mr = sysbus_mmio_get_region(SYS_BUS_DEVICE(&s->timer1), 0);
495
+ object_property_set_link(OBJECT(&s->apb_ppc0), OBJECT(mr), "port[1]", &err);
496
+ if (err) {
497
+ error_propagate(errp, err);
498
+ return;
499
+ }
500
+
501
+ qdev_prop_set_string(DEVICE(&s->dualtimer), "name", "Dual timer");
502
+ qdev_prop_set_uint64(DEVICE(&s->dualtimer), "size", 0x1000);
503
+ object_property_set_bool(OBJECT(&s->dualtimer), true, "realized", &err);
504
+ if (err) {
505
+ error_propagate(errp, err);
506
+ return;
507
+ }
508
+ mr = sysbus_mmio_get_region(SYS_BUS_DEVICE(&s->dualtimer), 0);
509
+ object_property_set_link(OBJECT(&s->apb_ppc0), OBJECT(mr), "port[2]", &err);
510
+ if (err) {
511
+ error_propagate(errp, err);
512
+ return;
513
+ }
514
+
515
+ object_property_set_bool(OBJECT(&s->apb_ppc0), true, "realized", &err);
516
+ if (err) {
517
+ error_propagate(errp, err);
518
+ return;
519
+ }
520
+
521
+ sbd_apb_ppc0 = SYS_BUS_DEVICE(&s->apb_ppc0);
522
+ dev_apb_ppc0 = DEVICE(&s->apb_ppc0);
523
+
524
+ mr = sysbus_mmio_get_region(sbd_apb_ppc0, 0);
525
+ memory_region_add_subregion(&s->container, 0x40000000, mr);
526
+ mr = sysbus_mmio_get_region(sbd_apb_ppc0, 1);
527
+ memory_region_add_subregion(&s->container, 0x40001000, mr);
528
+ mr = sysbus_mmio_get_region(sbd_apb_ppc0, 2);
529
+ memory_region_add_subregion(&s->container, 0x40002000, mr);
530
+ for (i = 0; i < IOTS_APB_PPC0_NUM_PORTS; i++) {
531
+ qdev_connect_gpio_out_named(dev_secctl, "apb_ppc0_nonsec", i,
532
+ qdev_get_gpio_in_named(dev_apb_ppc0,
533
+ "cfg_nonsec", i));
534
+ qdev_connect_gpio_out_named(dev_secctl, "apb_ppc0_ap", i,
535
+ qdev_get_gpio_in_named(dev_apb_ppc0,
536
+ "cfg_ap", i));
537
+ }
538
+ qdev_connect_gpio_out_named(dev_secctl, "apb_ppc0_irq_enable", 0,
539
+ qdev_get_gpio_in_named(dev_apb_ppc0,
540
+ "irq_enable", 0));
541
+ qdev_connect_gpio_out_named(dev_secctl, "apb_ppc0_irq_clear", 0,
542
+ qdev_get_gpio_in_named(dev_apb_ppc0,
543
+ "irq_clear", 0));
544
+ qdev_connect_gpio_out(dev_splitter, 0,
545
+ qdev_get_gpio_in_named(dev_apb_ppc0,
546
+ "cfg_sec_resp", 0));
547
+
548
+ /* All the PPC irq lines (from the 2 internal PPCs and the 8 external
549
+ * ones) are sent individually to the security controller, and also
550
+ * ORed together to give a single combined PPC interrupt to the NVIC.
551
+ */
552
+ object_property_set_int(OBJECT(&s->ppc_irq_orgate),
553
+ NUM_PPCS, "num-lines", &err);
554
+ if (err) {
555
+ error_propagate(errp, err);
556
+ return;
557
+ }
558
+ object_property_set_bool(OBJECT(&s->ppc_irq_orgate), true,
559
+ "realized", &err);
560
+ if (err) {
561
+ error_propagate(errp, err);
562
+ return;
563
+ }
564
+ qdev_connect_gpio_out(DEVICE(&s->ppc_irq_orgate), 0,
565
+ qdev_get_gpio_in(DEVICE(&s->armv7m), 10));
566
+
567
+ /* 0x40010000 .. 0x4001ffff: private CPU region: unused in IoTKit */
568
+
569
+ /* 0x40020000 .. 0x4002ffff : IoTKit system control peripheral region */
570
+ /* Devices behind APB PPC1:
571
+ * 0x4002f000: S32K timer
572
+ */
573
+ qdev_prop_set_string(DEVICE(&s->s32ktimer), "name", "S32KTIMER");
574
+ qdev_prop_set_uint64(DEVICE(&s->s32ktimer), "size", 0x1000);
575
+ object_property_set_bool(OBJECT(&s->s32ktimer), true, "realized", &err);
576
+ if (err) {
577
+ error_propagate(errp, err);
578
+ return;
579
+ }
580
+ mr = sysbus_mmio_get_region(SYS_BUS_DEVICE(&s->s32ktimer), 0);
581
+ object_property_set_link(OBJECT(&s->apb_ppc1), OBJECT(mr), "port[0]", &err);
582
+ if (err) {
583
+ error_propagate(errp, err);
584
+ return;
585
+ }
586
+
587
+ object_property_set_bool(OBJECT(&s->apb_ppc1), true, "realized", &err);
588
+ if (err) {
589
+ error_propagate(errp, err);
590
+ return;
591
+ }
592
+ mr = sysbus_mmio_get_region(SYS_BUS_DEVICE(&s->apb_ppc1), 0);
593
+ memory_region_add_subregion(&s->container, 0x4002f000, mr);
594
+
595
+ dev_apb_ppc1 = DEVICE(&s->apb_ppc1);
596
+ qdev_connect_gpio_out_named(dev_secctl, "apb_ppc1_nonsec", 0,
597
+ qdev_get_gpio_in_named(dev_apb_ppc1,
598
+ "cfg_nonsec", 0));
599
+ qdev_connect_gpio_out_named(dev_secctl, "apb_ppc1_ap", 0,
600
+ qdev_get_gpio_in_named(dev_apb_ppc1,
601
+ "cfg_ap", 0));
602
+ qdev_connect_gpio_out_named(dev_secctl, "apb_ppc1_irq_enable", 0,
603
+ qdev_get_gpio_in_named(dev_apb_ppc1,
604
+ "irq_enable", 0));
605
+ qdev_connect_gpio_out_named(dev_secctl, "apb_ppc1_irq_clear", 0,
606
+ qdev_get_gpio_in_named(dev_apb_ppc1,
607
+ "irq_clear", 0));
608
+ qdev_connect_gpio_out(dev_splitter, 1,
609
+ qdev_get_gpio_in_named(dev_apb_ppc1,
610
+ "cfg_sec_resp", 0));
611
+
612
+ /* Using create_unimplemented_device() maps the stub into the
613
+ * system address space rather than into our container, but the
614
+ * overall effect to the guest is the same.
615
+ */
616
+ create_unimplemented_device("SYSINFO", 0x40020000, 0x1000);
617
+
618
+ create_unimplemented_device("SYSCONTROL", 0x50021000, 0x1000);
619
+ create_unimplemented_device("S32KWATCHDOG", 0x5002e000, 0x1000);
620
+
621
+ /* 0x40080000 .. 0x4008ffff : IoTKit second Base peripheral region */
622
+
623
+ create_unimplemented_device("NS watchdog", 0x40081000, 0x1000);
624
+ create_unimplemented_device("S watchdog", 0x50081000, 0x1000);
625
+
626
+ create_unimplemented_device("SRAM0 MPC", 0x50083000, 0x1000);
627
+
628
+ for (i = 0; i < ARRAY_SIZE(s->ppc_irq_splitter); i++) {
629
+ Object *splitter = OBJECT(&s->ppc_irq_splitter[i]);
630
+
631
+ object_property_set_int(splitter, 2, "num-lines", &err);
632
+ if (err) {
633
+ error_propagate(errp, err);
634
+ return;
635
+ }
636
+ object_property_set_bool(splitter, true, "realized", &err);
637
+ if (err) {
638
+ error_propagate(errp, err);
639
+ return;
640
+ }
641
+ }
642
+
643
+ for (i = 0; i < IOTS_NUM_AHB_EXP_PPC; i++) {
644
+ char *ppcname = g_strdup_printf("ahb_ppcexp%d", i);
645
+
646
+ iotkit_forward_ppc(s, ppcname, i);
647
+ g_free(ppcname);
648
+ }
649
+
650
+ for (i = 0; i < IOTS_NUM_APB_EXP_PPC; i++) {
651
+ char *ppcname = g_strdup_printf("apb_ppcexp%d", i);
652
+
653
+ iotkit_forward_ppc(s, ppcname, i + IOTS_NUM_AHB_EXP_PPC);
654
+ g_free(ppcname);
655
+ }
656
+
657
+ for (i = NUM_EXTERNAL_PPCS; i < NUM_PPCS; i++) {
658
+ /* Wire up IRQ splitter for internal PPCs */
659
+ DeviceState *devs = DEVICE(&s->ppc_irq_splitter[i]);
660
+ char *gpioname = g_strdup_printf("apb_ppc%d_irq_status",
661
+ i - NUM_EXTERNAL_PPCS);
662
+ TZPPC *ppc = (i == NUM_EXTERNAL_PPCS) ? &s->apb_ppc0 : &s->apb_ppc1;
663
+
664
+ qdev_connect_gpio_out(devs, 0,
665
+ qdev_get_gpio_in_named(dev_secctl, gpioname, 0));
666
+ qdev_connect_gpio_out(devs, 1,
667
+ qdev_get_gpio_in(DEVICE(&s->ppc_irq_orgate), i));
668
+ qdev_connect_gpio_out_named(DEVICE(ppc), "irq", 0,
669
+ qdev_get_gpio_in(devs, 0));
670
+ }
671
+
672
+ iotkit_forward_sec_resp_cfg(s);
673
+
674
+ system_clock_scale = NANOSECONDS_PER_SECOND / s->mainclk_frq;
675
+}
676
+
677
+static void iotkit_idau_check(IDAUInterface *ii, uint32_t address,
678
+ int *iregion, bool *exempt, bool *ns, bool *nsc)
679
+{
680
+ /* For IoTKit systems the IDAU responses are simple logical functions
681
+ * of the address bits. The NSC attribute is guest-adjustable via the
682
+ * NSCCFG register in the security controller.
683
+ */
684
+ IoTKit *s = IOTKIT(ii);
685
+ int region = extract32(address, 28, 4);
686
+
687
+ *ns = !(region & 1);
688
+ *nsc = (region == 1 && (s->nsccfg & 1)) || (region == 3 && (s->nsccfg & 2));
689
+ /* 0xe0000000..0xe00fffff and 0xf0000000..0xf00fffff are exempt */
690
+ *exempt = (address & 0xeff00000) == 0xe0000000;
691
+ *iregion = region;
692
+}
693
+
694
+static const VMStateDescription iotkit_vmstate = {
695
+ .name = "iotkit",
696
+ .version_id = 1,
697
+ .minimum_version_id = 1,
698
+ .fields = (VMStateField[]) {
699
+ VMSTATE_UINT32(nsccfg, IoTKit),
700
+ VMSTATE_END_OF_LIST()
701
+ }
702
+};
164
+};
703
+
165
+
704
+static Property iotkit_properties[] = {
166
+static void versal_usb_types(void)
705
+ DEFINE_PROP_LINK("memory", IoTKit, board_memory, TYPE_MEMORY_REGION,
167
+{
706
+ MemoryRegion *),
168
+ type_register_static(&versal_usb2_info);
707
+ DEFINE_PROP_UINT32("EXP_NUMIRQ", IoTKit, exp_numirq, 64),
169
+}
708
+ DEFINE_PROP_UINT32("MAINCLK", IoTKit, mainclk_frq, 0),
170
+
709
+ DEFINE_PROP_END_OF_LIST()
171
+type_init(versal_usb_types)
710
+};
172
diff --git a/hw/usb/Kconfig b/hw/usb/Kconfig
711
+
712
+static void iotkit_reset(DeviceState *dev)
713
+{
714
+ IoTKit *s = IOTKIT(dev);
715
+
716
+ s->nsccfg = 0;
717
+}
718
+
719
+static void iotkit_class_init(ObjectClass *klass, void *data)
720
+{
721
+ DeviceClass *dc = DEVICE_CLASS(klass);
722
+ IDAUInterfaceClass *iic = IDAU_INTERFACE_CLASS(klass);
723
+
724
+ dc->realize = iotkit_realize;
725
+ dc->vmsd = &iotkit_vmstate;
726
+ dc->props = iotkit_properties;
727
+ dc->reset = iotkit_reset;
728
+ iic->check = iotkit_idau_check;
729
+}
730
+
731
+static const TypeInfo iotkit_info = {
732
+ .name = TYPE_IOTKIT,
733
+ .parent = TYPE_SYS_BUS_DEVICE,
734
+ .instance_size = sizeof(IoTKit),
735
+ .instance_init = iotkit_init,
736
+ .class_init = iotkit_class_init,
737
+ .interfaces = (InterfaceInfo[]) {
738
+ { TYPE_IDAU_INTERFACE },
739
+ { }
740
+ }
741
+};
742
+
743
+static void iotkit_register_types(void)
744
+{
745
+ type_register_static(&iotkit_info);
746
+}
747
+
748
+type_init(iotkit_register_types);
749
diff --git a/default-configs/arm-softmmu.mak b/default-configs/arm-softmmu.mak
750
index XXXXXXX..XXXXXXX 100644
173
index XXXXXXX..XXXXXXX 100644
751
--- a/default-configs/arm-softmmu.mak
174
--- a/hw/usb/Kconfig
752
+++ b/default-configs/arm-softmmu.mak
175
+++ b/hw/usb/Kconfig
753
@@ -XXX,XX +XXX,XX @@ CONFIG_MPS2_FPGAIO=y
176
@@ -XXX,XX +XXX,XX @@ config USB_DWC3
754
CONFIG_MPS2_SCC=y
177
bool
755
178
select USB_XHCI_SYSBUS
756
CONFIG_TZ_PPC=y
179
select REGISTER
757
+CONFIG_IOTKIT=y
180
+
758
CONFIG_IOTKIT_SECCTL=y
181
+config XLNX_USB_SUBSYS
759
182
+ bool
760
CONFIG_VERSATILE_PCI=y
183
+ default y if XLNX_VERSAL
184
+ select USB_DWC3
185
diff --git a/hw/usb/meson.build b/hw/usb/meson.build
186
index XXXXXXX..XXXXXXX 100644
187
--- a/hw/usb/meson.build
188
+++ b/hw/usb/meson.build
189
@@ -XXX,XX +XXX,XX @@ softmmu_ss.add(when: 'CONFIG_TUSB6010', if_true: files('tusb6010.c'))
190
softmmu_ss.add(when: 'CONFIG_IMX', if_true: files('chipidea.c'))
191
softmmu_ss.add(when: 'CONFIG_IMX_USBPHY', if_true: files('imx-usb-phy.c'))
192
specific_ss.add(when: 'CONFIG_XLNX_VERSAL', if_true: files('xlnx-versal-usb2-ctrl-regs.c'))
193
+specific_ss.add(when: 'CONFIG_XLNX_USB_SUBSYS', if_true: files('xlnx-usb-subsystem.c'))
194
195
# emulated usb devices
196
softmmu_ss.add(when: 'CONFIG_USB', if_true: files('dev-hub.c'))
761
--
197
--
762
2.16.2
198
2.20.1
763
199
764
200
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Vikram Garhwal <fnu.vikram@xilinx.com>
2
2
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
3
Connect VersalUsb2 subsystem to xlnx-versal SOC, its placed
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
in iou of lpd domain and configure it as dual port host controller.
5
Message-id: 20180228193125.20577-6-richard.henderson@linaro.org
5
Add the respective guest dts nodes for "xlnx-versal-virt" machine.
6
7
Signed-off-by: Vikram Garhwal <fnu.vikram@xilinx.com>
8
Signed-off-by: Sai Pavan Boddu <sai.pavan.boddu@xilinx.com>
9
Reviewed-by: Edgar E. Iglesias <edgar.iglesias@xilinx.com>
10
Message-id: 1607023357-5096-5-git-send-email-sai.pavan.boddu@xilinx.com
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
12
---
8
target/arm/helper.h | 9 +++++
13
include/hw/arm/xlnx-versal.h | 9 ++++++
9
target/arm/translate-a64.c | 83 ++++++++++++++++++++++++++++++++++++++++++++++
14
hw/arm/xlnx-versal-virt.c | 55 ++++++++++++++++++++++++++++++++++++
10
target/arm/vec_helper.c | 74 +++++++++++++++++++++++++++++++++++++++++
15
hw/arm/xlnx-versal.c | 26 +++++++++++++++++
11
3 files changed, 166 insertions(+)
16
3 files changed, 90 insertions(+)
12
17
13
diff --git a/target/arm/helper.h b/target/arm/helper.h
18
diff --git a/include/hw/arm/xlnx-versal.h b/include/hw/arm/xlnx-versal.h
14
index XXXXXXX..XXXXXXX 100644
19
index XXXXXXX..XXXXXXX 100644
15
--- a/target/arm/helper.h
20
--- a/include/hw/arm/xlnx-versal.h
16
+++ b/target/arm/helper.h
21
+++ b/include/hw/arm/xlnx-versal.h
17
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_2(dc_zva, void, env, i64)
22
@@ -XXX,XX +XXX,XX @@
18
DEF_HELPER_FLAGS_2(neon_pmull_64_lo, TCG_CALL_NO_RWG_SE, i64, i64, i64)
23
#include "hw/net/cadence_gem.h"
19
DEF_HELPER_FLAGS_2(neon_pmull_64_hi, TCG_CALL_NO_RWG_SE, i64, i64, i64)
24
#include "hw/rtc/xlnx-zynqmp-rtc.h"
20
25
#include "qom/object.h"
21
+DEF_HELPER_FLAGS_5(gvec_qrdmlah_s16, TCG_CALL_NO_RWG,
26
+#include "hw/usb/xlnx-usb-subsystem.h"
22
+ void, ptr, ptr, ptr, ptr, i32)
27
23
+DEF_HELPER_FLAGS_5(gvec_qrdmlsh_s16, TCG_CALL_NO_RWG,
28
#define TYPE_XLNX_VERSAL "xlnx-versal"
24
+ void, ptr, ptr, ptr, ptr, i32)
29
OBJECT_DECLARE_SIMPLE_TYPE(Versal, XLNX_VERSAL)
25
+DEF_HELPER_FLAGS_5(gvec_qrdmlah_s32, TCG_CALL_NO_RWG,
30
@@ -XXX,XX +XXX,XX @@ struct Versal {
26
+ void, ptr, ptr, ptr, ptr, i32)
31
PL011State uart[XLNX_VERSAL_NR_UARTS];
27
+DEF_HELPER_FLAGS_5(gvec_qrdmlsh_s32, TCG_CALL_NO_RWG,
32
CadenceGEMState gem[XLNX_VERSAL_NR_GEMS];
28
+ void, ptr, ptr, ptr, ptr, i32)
33
XlnxZDMA adma[XLNX_VERSAL_NR_ADMAS];
34
+ VersalUsb2 usb;
35
} iou;
36
} lpd;
37
38
@@ -XXX,XX +XXX,XX @@ struct Versal {
39
40
#define VERSAL_UART0_IRQ_0 18
41
#define VERSAL_UART1_IRQ_0 19
42
+#define VERSAL_USB0_IRQ_0 22
43
#define VERSAL_GEM0_IRQ_0 56
44
#define VERSAL_GEM0_WAKE_IRQ_0 57
45
#define VERSAL_GEM1_IRQ_0 58
46
@@ -XXX,XX +XXX,XX @@ struct Versal {
47
#define MM_OCM 0xfffc0000U
48
#define MM_OCM_SIZE 0x40000
49
50
+#define MM_USB2_CTRL_REGS 0xFF9D0000
51
+#define MM_USB2_CTRL_REGS_SIZE 0x10000
29
+
52
+
30
#ifdef TARGET_AARCH64
53
+#define MM_USB_0 0xFE200000
31
#include "helper-a64.h"
54
+#define MM_USB_0_SIZE 0x10000
32
#endif
55
+
33
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
56
#define MM_TOP_DDR 0x0
57
#define MM_TOP_DDR_SIZE 0x80000000U
58
#define MM_TOP_DDR_2 0x800000000ULL
59
diff --git a/hw/arm/xlnx-versal-virt.c b/hw/arm/xlnx-versal-virt.c
34
index XXXXXXX..XXXXXXX 100644
60
index XXXXXXX..XXXXXXX 100644
35
--- a/target/arm/translate-a64.c
61
--- a/hw/arm/xlnx-versal-virt.c
36
+++ b/target/arm/translate-a64.c
62
+++ b/hw/arm/xlnx-versal-virt.c
37
@@ -XXX,XX +XXX,XX @@ static void gen_gvec_op3(DisasContext *s, bool is_q, int rd,
63
@@ -XXX,XX +XXX,XX @@ struct VersalVirt {
38
vec_full_reg_size(s), gvec_op);
64
uint32_t ethernet_phy[2];
65
uint32_t clk_125Mhz;
66
uint32_t clk_25Mhz;
67
+ uint32_t usb;
68
+ uint32_t dwc;
69
} phandle;
70
struct arm_boot_info binfo;
71
72
@@ -XXX,XX +XXX,XX @@ static void fdt_create(VersalVirt *s)
73
s->phandle.clk_25Mhz = qemu_fdt_alloc_phandle(s->fdt);
74
s->phandle.clk_125Mhz = qemu_fdt_alloc_phandle(s->fdt);
75
76
+ s->phandle.usb = qemu_fdt_alloc_phandle(s->fdt);
77
+ s->phandle.dwc = qemu_fdt_alloc_phandle(s->fdt);
78
/* Create /chosen node for load_dtb. */
79
qemu_fdt_add_subnode(s->fdt, "/chosen");
80
81
@@ -XXX,XX +XXX,XX @@ static void fdt_add_timer_nodes(VersalVirt *s)
82
compat, sizeof(compat));
39
}
83
}
40
84
41
+/* Expand a 3-operand + env pointer operation using
85
+static void fdt_add_usb_xhci_nodes(VersalVirt *s)
42
+ * an out-of-line helper.
43
+ */
44
+static void gen_gvec_op3_env(DisasContext *s, bool is_q, int rd,
45
+ int rn, int rm, gen_helper_gvec_3_ptr *fn)
46
+{
86
+{
47
+ tcg_gen_gvec_3_ptr(vec_full_reg_offset(s, rd),
87
+ const char clocknames[] = "bus_clk\0ref_clk";
48
+ vec_full_reg_offset(s, rn),
88
+ const char irq_name[] = "dwc_usb3";
49
+ vec_full_reg_offset(s, rm), cpu_env,
89
+ const char compatVersalDWC3[] = "xlnx,versal-dwc3";
50
+ is_q ? 16 : 8, vec_full_reg_size(s), 0, fn);
90
+ const char compatDWC3[] = "snps,dwc3";
91
+ char *name = g_strdup_printf("/usb@%" PRIx32, MM_USB2_CTRL_REGS);
92
+
93
+ qemu_fdt_add_subnode(s->fdt, name);
94
+ qemu_fdt_setprop(s->fdt, name, "compatible",
95
+ compatVersalDWC3, sizeof(compatVersalDWC3));
96
+ qemu_fdt_setprop_sized_cells(s->fdt, name, "reg",
97
+ 2, MM_USB2_CTRL_REGS,
98
+ 2, MM_USB2_CTRL_REGS_SIZE);
99
+ qemu_fdt_setprop(s->fdt, name, "clock-names",
100
+ clocknames, sizeof(clocknames));
101
+ qemu_fdt_setprop_cells(s->fdt, name, "clocks",
102
+ s->phandle.clk_25Mhz, s->phandle.clk_125Mhz);
103
+ qemu_fdt_setprop(s->fdt, name, "ranges", NULL, 0);
104
+ qemu_fdt_setprop_cell(s->fdt, name, "#address-cells", 2);
105
+ qemu_fdt_setprop_cell(s->fdt, name, "#size-cells", 2);
106
+ qemu_fdt_setprop_cell(s->fdt, name, "phandle", s->phandle.usb);
107
+ g_free(name);
108
+
109
+ name = g_strdup_printf("/usb@%" PRIx32 "/dwc3@%" PRIx32,
110
+ MM_USB2_CTRL_REGS, MM_USB_0);
111
+ qemu_fdt_add_subnode(s->fdt, name);
112
+ qemu_fdt_setprop(s->fdt, name, "compatible",
113
+ compatDWC3, sizeof(compatDWC3));
114
+ qemu_fdt_setprop_sized_cells(s->fdt, name, "reg",
115
+ 2, MM_USB_0, 2, MM_USB_0_SIZE);
116
+ qemu_fdt_setprop(s->fdt, name, "interrupt-names",
117
+ irq_name, sizeof(irq_name));
118
+ qemu_fdt_setprop_cells(s->fdt, name, "interrupts",
119
+ GIC_FDT_IRQ_TYPE_SPI, VERSAL_USB0_IRQ_0,
120
+ GIC_FDT_IRQ_FLAGS_LEVEL_HI);
121
+ qemu_fdt_setprop_cell(s->fdt, name,
122
+ "snps,quirk-frame-length-adjustment", 0x20);
123
+ qemu_fdt_setprop_cells(s->fdt, name, "#stream-id-cells", 1);
124
+ qemu_fdt_setprop_string(s->fdt, name, "dr_mode", "host");
125
+ qemu_fdt_setprop_string(s->fdt, name, "phy-names", "usb3-phy");
126
+ qemu_fdt_setprop(s->fdt, name, "snps,dis_u2_susphy_quirk", NULL, 0);
127
+ qemu_fdt_setprop(s->fdt, name, "snps,dis_u3_susphy_quirk", NULL, 0);
128
+ qemu_fdt_setprop(s->fdt, name, "snps,refclk_fladj", NULL, 0);
129
+ qemu_fdt_setprop(s->fdt, name, "snps,mask_phy_reset", NULL, 0);
130
+ qemu_fdt_setprop_cell(s->fdt, name, "phandle", s->phandle.dwc);
131
+ qemu_fdt_setprop_string(s->fdt, name, "maximum-speed", "high-speed");
132
+ g_free(name);
51
+}
133
+}
52
+
134
+
53
/* Set ZF and NF based on a 64 bit result. This is alas fiddlier
135
static void fdt_add_uart_nodes(VersalVirt *s)
54
* than the 32 bit equivalent.
136
{
55
*/
137
uint64_t addrs[] = { MM_UART1, MM_UART0 };
56
@@ -XXX,XX +XXX,XX @@ static void disas_simd_three_reg_same_fp16(DisasContext *s, uint32_t insn)
138
@@ -XXX,XX +XXX,XX @@ static void versal_virt_init(MachineState *machine)
57
clear_vec_high(s, is_q, rd);
139
fdt_add_gic_nodes(s);
140
fdt_add_timer_nodes(s);
141
fdt_add_zdma_nodes(s);
142
+ fdt_add_usb_xhci_nodes(s);
143
fdt_add_sd_nodes(s);
144
fdt_add_rtc_node(s);
145
fdt_add_cpu_nodes(s, psci_conduit);
146
diff --git a/hw/arm/xlnx-versal.c b/hw/arm/xlnx-versal.c
147
index XXXXXXX..XXXXXXX 100644
148
--- a/hw/arm/xlnx-versal.c
149
+++ b/hw/arm/xlnx-versal.c
150
@@ -XXX,XX +XXX,XX @@ static void versal_create_uarts(Versal *s, qemu_irq *pic)
151
}
58
}
152
}
59
153
60
+/* AdvSIMD three same extra
154
+static void versal_create_usbs(Versal *s, qemu_irq *pic)
61
+ * 31 30 29 28 24 23 22 21 20 16 15 14 11 10 9 5 4 0
62
+ * +---+---+---+-----------+------+---+------+---+--------+---+----+----+
63
+ * | 0 | Q | U | 0 1 1 1 0 | size | 0 | Rm | 1 | opcode | 1 | Rn | Rd |
64
+ * +---+---+---+-----------+------+---+------+---+--------+---+----+----+
65
+ */
66
+static void disas_simd_three_reg_same_extra(DisasContext *s, uint32_t insn)
67
+{
155
+{
68
+ int rd = extract32(insn, 0, 5);
156
+ DeviceState *dev;
69
+ int rn = extract32(insn, 5, 5);
157
+ MemoryRegion *mr;
70
+ int opcode = extract32(insn, 11, 4);
71
+ int rm = extract32(insn, 16, 5);
72
+ int size = extract32(insn, 22, 2);
73
+ bool u = extract32(insn, 29, 1);
74
+ bool is_q = extract32(insn, 30, 1);
75
+ int feature;
76
+
158
+
77
+ switch (u * 16 + opcode) {
159
+ object_initialize_child(OBJECT(s), "usb2", &s->lpd.iou.usb,
78
+ case 0x10: /* SQRDMLAH (vector) */
160
+ TYPE_XILINX_VERSAL_USB2);
79
+ case 0x11: /* SQRDMLSH (vector) */
161
+ dev = DEVICE(&s->lpd.iou.usb);
80
+ if (size != 1 && size != 2) {
81
+ unallocated_encoding(s);
82
+ return;
83
+ }
84
+ feature = ARM_FEATURE_V8_RDM;
85
+ break;
86
+ default:
87
+ unallocated_encoding(s);
88
+ return;
89
+ }
90
+ if (!arm_dc_feature(s, feature)) {
91
+ unallocated_encoding(s);
92
+ return;
93
+ }
94
+ if (!fp_access_check(s)) {
95
+ return;
96
+ }
97
+
162
+
98
+ switch (opcode) {
163
+ object_property_set_link(OBJECT(dev), "dma", OBJECT(&s->mr_ps),
99
+ case 0x0: /* SQRDMLAH (vector) */
164
+ &error_abort);
100
+ switch (size) {
165
+ qdev_prop_set_uint32(dev, "intrs", 1);
101
+ case 1:
166
+ qdev_prop_set_uint32(dev, "slots", 2);
102
+ gen_gvec_op3_env(s, is_q, rd, rn, rm, gen_helper_gvec_qrdmlah_s16);
103
+ break;
104
+ case 2:
105
+ gen_gvec_op3_env(s, is_q, rd, rn, rm, gen_helper_gvec_qrdmlah_s32);
106
+ break;
107
+ default:
108
+ g_assert_not_reached();
109
+ }
110
+ return;
111
+
167
+
112
+ case 0x1: /* SQRDMLSH (vector) */
168
+ sysbus_realize(SYS_BUS_DEVICE(dev), &error_fatal);
113
+ switch (size) {
114
+ case 1:
115
+ gen_gvec_op3_env(s, is_q, rd, rn, rm, gen_helper_gvec_qrdmlsh_s16);
116
+ break;
117
+ case 2:
118
+ gen_gvec_op3_env(s, is_q, rd, rn, rm, gen_helper_gvec_qrdmlsh_s32);
119
+ break;
120
+ default:
121
+ g_assert_not_reached();
122
+ }
123
+ return;
124
+
169
+
125
+ default:
170
+ mr = sysbus_mmio_get_region(SYS_BUS_DEVICE(dev), 0);
126
+ g_assert_not_reached();
171
+ memory_region_add_subregion(&s->mr_ps, MM_USB_0, mr);
127
+ }
172
+
173
+ sysbus_connect_irq(SYS_BUS_DEVICE(dev), 0, pic[VERSAL_USB0_IRQ_0]);
174
+
175
+ mr = sysbus_mmio_get_region(SYS_BUS_DEVICE(dev), 1);
176
+ memory_region_add_subregion(&s->mr_ps, MM_USB2_CTRL_REGS, mr);
128
+}
177
+}
129
+
178
+
130
static void handle_2misc_widening(DisasContext *s, int opcode, bool is_q,
179
static void versal_create_gems(Versal *s, qemu_irq *pic)
131
int size, int rn, int rd)
132
{
180
{
133
@@ -XXX,XX +XXX,XX @@ static void disas_crypto_three_reg_imm2(DisasContext *s, uint32_t insn)
181
int i;
134
static const AArch64DecodeTable data_proc_simd[] = {
182
@@ -XXX,XX +XXX,XX @@ static void versal_realize(DeviceState *dev, Error **errp)
135
/* pattern , mask , fn */
183
versal_create_apu_cpus(s);
136
{ 0x0e200400, 0x9f200400, disas_simd_three_reg_same },
184
versal_create_apu_gic(s, pic);
137
+ { 0x0e008400, 0x9f208400, disas_simd_three_reg_same_extra },
185
versal_create_uarts(s, pic);
138
{ 0x0e200000, 0x9f200c00, disas_simd_three_reg_diff },
186
+ versal_create_usbs(s, pic);
139
{ 0x0e200800, 0x9f3e0c00, disas_simd_two_reg_misc },
187
versal_create_gems(s, pic);
140
{ 0x0e300800, 0x9f3e0c00, disas_simd_across_lanes },
188
versal_create_admas(s, pic);
141
diff --git a/target/arm/vec_helper.c b/target/arm/vec_helper.c
189
versal_create_sds(s, pic);
142
index XXXXXXX..XXXXXXX 100644
143
--- a/target/arm/vec_helper.c
144
+++ b/target/arm/vec_helper.c
145
@@ -XXX,XX +XXX,XX @@
146
147
#define SET_QC() env->vfp.xregs[ARM_VFP_FPSCR] |= CPSR_Q
148
149
+static void clear_tail(void *vd, uintptr_t opr_sz, uintptr_t max_sz)
150
+{
151
+ uint64_t *d = vd + opr_sz;
152
+ uintptr_t i;
153
+
154
+ for (i = opr_sz; i < max_sz; i += 8) {
155
+ *d++ = 0;
156
+ }
157
+}
158
+
159
/* Signed saturating rounding doubling multiply-accumulate high half, 16-bit */
160
static uint16_t inl_qrdmlah_s16(CPUARMState *env, int16_t src1,
161
int16_t src2, int16_t src3)
162
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(neon_qrdmlah_s16)(CPUARMState *env, uint32_t src1,
163
return deposit32(e1, 16, 16, e2);
164
}
165
166
+void HELPER(gvec_qrdmlah_s16)(void *vd, void *vn, void *vm,
167
+ void *ve, uint32_t desc)
168
+{
169
+ uintptr_t opr_sz = simd_oprsz(desc);
170
+ int16_t *d = vd;
171
+ int16_t *n = vn;
172
+ int16_t *m = vm;
173
+ CPUARMState *env = ve;
174
+ uintptr_t i;
175
+
176
+ for (i = 0; i < opr_sz / 2; ++i) {
177
+ d[i] = inl_qrdmlah_s16(env, n[i], m[i], d[i]);
178
+ }
179
+ clear_tail(d, opr_sz, simd_maxsz(desc));
180
+}
181
+
182
/* Signed saturating rounding doubling multiply-subtract high half, 16-bit */
183
static uint16_t inl_qrdmlsh_s16(CPUARMState *env, int16_t src1,
184
int16_t src2, int16_t src3)
185
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(neon_qrdmlsh_s16)(CPUARMState *env, uint32_t src1,
186
return deposit32(e1, 16, 16, e2);
187
}
188
189
+void HELPER(gvec_qrdmlsh_s16)(void *vd, void *vn, void *vm,
190
+ void *ve, uint32_t desc)
191
+{
192
+ uintptr_t opr_sz = simd_oprsz(desc);
193
+ int16_t *d = vd;
194
+ int16_t *n = vn;
195
+ int16_t *m = vm;
196
+ CPUARMState *env = ve;
197
+ uintptr_t i;
198
+
199
+ for (i = 0; i < opr_sz / 2; ++i) {
200
+ d[i] = inl_qrdmlsh_s16(env, n[i], m[i], d[i]);
201
+ }
202
+ clear_tail(d, opr_sz, simd_maxsz(desc));
203
+}
204
+
205
/* Signed saturating rounding doubling multiply-accumulate high half, 32-bit */
206
uint32_t HELPER(neon_qrdmlah_s32)(CPUARMState *env, int32_t src1,
207
int32_t src2, int32_t src3)
208
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(neon_qrdmlah_s32)(CPUARMState *env, int32_t src1,
209
return ret;
210
}
211
212
+void HELPER(gvec_qrdmlah_s32)(void *vd, void *vn, void *vm,
213
+ void *ve, uint32_t desc)
214
+{
215
+ uintptr_t opr_sz = simd_oprsz(desc);
216
+ int32_t *d = vd;
217
+ int32_t *n = vn;
218
+ int32_t *m = vm;
219
+ CPUARMState *env = ve;
220
+ uintptr_t i;
221
+
222
+ for (i = 0; i < opr_sz / 4; ++i) {
223
+ d[i] = helper_neon_qrdmlah_s32(env, n[i], m[i], d[i]);
224
+ }
225
+ clear_tail(d, opr_sz, simd_maxsz(desc));
226
+}
227
+
228
/* Signed saturating rounding doubling multiply-subtract high half, 32-bit */
229
uint32_t HELPER(neon_qrdmlsh_s32)(CPUARMState *env, int32_t src1,
230
int32_t src2, int32_t src3)
231
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(neon_qrdmlsh_s32)(CPUARMState *env, int32_t src1,
232
}
233
return ret;
234
}
235
+
236
+void HELPER(gvec_qrdmlsh_s32)(void *vd, void *vn, void *vm,
237
+ void *ve, uint32_t desc)
238
+{
239
+ uintptr_t opr_sz = simd_oprsz(desc);
240
+ int32_t *d = vd;
241
+ int32_t *n = vn;
242
+ int32_t *m = vm;
243
+ CPUARMState *env = ve;
244
+ uintptr_t i;
245
+
246
+ for (i = 0; i < opr_sz / 4; ++i) {
247
+ d[i] = helper_neon_qrdmlsh_s32(env, n[i], m[i], d[i]);
248
+ }
249
+ clear_tail(d, opr_sz, simd_maxsz(desc));
250
+}
251
--
190
--
252
2.16.2
191
2.20.1
253
192
254
193
diff view generated by jsdifflib
1
In v8M, the Implementation Defined Attribution Unit (IDAU) is
1
From: Philippe Mathieu-Daudé <f4bug@amsat.org>
2
a small piece of hardware typically implemented in the SoC
3
which provides board or SoC specific security attribution
4
information for each address that the CPU performs MPU/SAU
5
checks on. For QEMU, we model this with a QOM interface which
6
is implemented by the board or SoC object and connected to
7
the CPU using a link property.
8
2
9
This commit defines the new interface class, adds the link
3
Malicious user can set the feedback divisor for the PLLs
10
property to the CPU object, and makes the SAU checking
4
to zero, triggering a floating-point exception (SIGFPE).
11
code call the IDAU interface if one is present.
12
5
6
As the datasheet [*] is not clear how hardware behaves
7
when these bits are zeroes, use the maximum divisor
8
possible (128) to avoid the software FPE.
9
10
[*] Zynq-7000 TRM, UG585 (v1.12.2)
11
B.28 System Level Control Registers (slcr)
12
-> "Register (slcr) ARM_PLL_CTRL"
13
25.10.4 PLLs
14
-> "Software-Controlled PLL Update"
15
16
Fixes: 38867cb7ec9 ("hw/misc/zynq_slcr: add clock generation for uarts")
17
Reported-by: Gaoning Pan <pgn@zju.edu.cn>
18
Signed-off-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
19
Reviewed-by: Alistair Francis <alistair.francis@wdc.com>
20
Reviewed-by: Edgar E. Iglesias <edgar.iglesias@xilinx.com>
21
Reviewed-by: Damien Hedde <damien.hedde@greensocs.com>
22
Message-id: 20201210141610.884600-1-f4bug@amsat.org
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
23
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
15
Message-id: 20180220180325.29818-5-peter.maydell@linaro.org
16
---
24
---
17
target/arm/cpu.h | 3 +++
25
hw/misc/zynq_slcr.c | 5 +++++
18
target/arm/idau.h | 61 +++++++++++++++++++++++++++++++++++++++++++++++++++++
26
1 file changed, 5 insertions(+)
19
target/arm/cpu.c | 15 +++++++++++++
20
target/arm/helper.c | 28 +++++++++++++++++++++---
21
4 files changed, 104 insertions(+), 3 deletions(-)
22
create mode 100644 target/arm/idau.h
23
27
24
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
28
diff --git a/hw/misc/zynq_slcr.c b/hw/misc/zynq_slcr.c
25
index XXXXXXX..XXXXXXX 100644
29
index XXXXXXX..XXXXXXX 100644
26
--- a/target/arm/cpu.h
30
--- a/hw/misc/zynq_slcr.c
27
+++ b/target/arm/cpu.h
31
+++ b/hw/misc/zynq_slcr.c
28
@@ -XXX,XX +XXX,XX @@ struct ARMCPU {
32
@@ -XXX,XX +XXX,XX @@ static uint64_t zynq_slcr_compute_pll(uint64_t input, uint32_t ctrl_reg)
29
/* MemoryRegion to use for secure physical accesses */
33
return 0;
30
MemoryRegion *secure_memory;
31
32
+ /* For v8M, pointer to the IDAU interface provided by board/SoC */
33
+ Object *idau;
34
+
35
/* 'compatible' string for this CPU for Linux device trees */
36
const char *dtb_compatible;
37
38
diff --git a/target/arm/idau.h b/target/arm/idau.h
39
new file mode 100644
40
index XXXXXXX..XXXXXXX
41
--- /dev/null
42
+++ b/target/arm/idau.h
43
@@ -XXX,XX +XXX,XX @@
44
+/*
45
+ * QEMU ARM CPU -- interface for the Arm v8M IDAU
46
+ *
47
+ * Copyright (c) 2018 Linaro Ltd
48
+ *
49
+ * This program is free software; you can redistribute it and/or
50
+ * modify it under the terms of the GNU General Public License
51
+ * as published by the Free Software Foundation; either version 2
52
+ * of the License, or (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
61
+ * <http://www.gnu.org/licenses/gpl-2.0.html>
62
+ *
63
+ * In the v8M architecture, the IDAU is a small piece of hardware
64
+ * typically implemented in the SoC which provides board or SoC
65
+ * specific security attribution information for each address that
66
+ * the CPU performs MPU/SAU checks on. For QEMU, we model this with a
67
+ * QOM interface which is implemented by the board or SoC object and
68
+ * connected to the CPU using a link property.
69
+ */
70
+
71
+#ifndef TARGET_ARM_IDAU_H
72
+#define TARGET_ARM_IDAU_H
73
+
74
+#include "qom/object.h"
75
+
76
+#define TYPE_IDAU_INTERFACE "idau-interface"
77
+#define IDAU_INTERFACE(obj) \
78
+ INTERFACE_CHECK(IDAUInterface, (obj), TYPE_IDAU_INTERFACE)
79
+#define IDAU_INTERFACE_CLASS(class) \
80
+ OBJECT_CLASS_CHECK(IDAUInterfaceClass, (class), TYPE_IDAU_INTERFACE)
81
+#define IDAU_INTERFACE_GET_CLASS(obj) \
82
+ OBJECT_GET_CLASS(IDAUInterfaceClass, (obj), TYPE_IDAU_INTERFACE)
83
+
84
+typedef struct IDAUInterface {
85
+ Object parent;
86
+} IDAUInterface;
87
+
88
+#define IREGION_NOTVALID -1
89
+
90
+typedef struct IDAUInterfaceClass {
91
+ InterfaceClass parent;
92
+
93
+ /* Check the specified address and return the IDAU security information
94
+ * for it by filling in iregion, exempt, ns and nsc:
95
+ * iregion: IDAU region number, or IREGION_NOTVALID if not valid
96
+ * exempt: true if address is exempt from security attribution
97
+ * ns: true if the address is NonSecure
98
+ * nsc: true if the address is NonSecure-callable
99
+ */
100
+ void (*check)(IDAUInterface *ii, uint32_t address, int *iregion,
101
+ bool *exempt, bool *ns, bool *nsc);
102
+} IDAUInterfaceClass;
103
+
104
+#endif
105
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
106
index XXXXXXX..XXXXXXX 100644
107
--- a/target/arm/cpu.c
108
+++ b/target/arm/cpu.c
109
@@ -XXX,XX +XXX,XX @@
110
*/
111
112
#include "qemu/osdep.h"
113
+#include "target/arm/idau.h"
114
#include "qemu/error-report.h"
115
#include "qapi/error.h"
116
#include "cpu.h"
117
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_post_init(Object *obj)
118
}
119
}
34
}
120
35
121
+ if (arm_feature(&cpu->env, ARM_FEATURE_M_SECURITY)) {
36
+ /* Consider zero feedback as maximum divide ratio possible */
122
+ object_property_add_link(obj, "idau", TYPE_IDAU_INTERFACE, &cpu->idau,
37
+ if (!mult) {
123
+ qdev_prop_allow_set_link_before_realize,
38
+ mult = 1 << R_xxx_PLL_CTRL_PLL_FPDIV_LENGTH;
124
+ OBJ_PROP_LINK_UNREF_ON_RELEASE,
125
+ &error_abort);
126
+ }
39
+ }
127
+
40
+
128
qdev_property_add_static(DEVICE(obj), &arm_cpu_cfgend_property,
41
/* frequency multiplier -> period division */
129
&error_abort);
42
return input / mult;
130
}
131
@@ -XXX,XX +XXX,XX @@ static const TypeInfo arm_cpu_type_info = {
132
.class_init = arm_cpu_class_init,
133
};
134
135
+static const TypeInfo idau_interface_type_info = {
136
+ .name = TYPE_IDAU_INTERFACE,
137
+ .parent = TYPE_INTERFACE,
138
+ .class_size = sizeof(IDAUInterfaceClass),
139
+};
140
+
141
static void arm_cpu_register_types(void)
142
{
143
const ARMCPUInfo *info = arm_cpus;
144
145
type_register_static(&arm_cpu_type_info);
146
+ type_register_static(&idau_interface_type_info);
147
148
while (info->name) {
149
cpu_register(info);
150
diff --git a/target/arm/helper.c b/target/arm/helper.c
151
index XXXXXXX..XXXXXXX 100644
152
--- a/target/arm/helper.c
153
+++ b/target/arm/helper.c
154
@@ -XXX,XX +XXX,XX @@
155
#include "qemu/osdep.h"
156
+#include "target/arm/idau.h"
157
#include "trace.h"
158
#include "cpu.h"
159
#include "internals.h"
160
@@ -XXX,XX +XXX,XX @@ static void v8m_security_lookup(CPUARMState *env, uint32_t address,
161
*/
162
ARMCPU *cpu = arm_env_get_cpu(env);
163
int r;
164
+ bool idau_exempt = false, idau_ns = true, idau_nsc = true;
165
+ int idau_region = IREGION_NOTVALID;
166
167
- /* TODO: implement IDAU */
168
+ if (cpu->idau) {
169
+ IDAUInterfaceClass *iic = IDAU_INTERFACE_GET_CLASS(cpu->idau);
170
+ IDAUInterface *ii = IDAU_INTERFACE(cpu->idau);
171
+
172
+ iic->check(ii, address, &idau_region, &idau_exempt, &idau_ns,
173
+ &idau_nsc);
174
+ }
175
176
if (access_type == MMU_INST_FETCH && extract32(address, 28, 4) == 0xf) {
177
/* 0xf0000000..0xffffffff is always S for insn fetches */
178
return;
179
}
180
181
- if (v8m_is_sau_exempt(env, address, access_type)) {
182
+ if (idau_exempt || v8m_is_sau_exempt(env, address, access_type)) {
183
sattrs->ns = !regime_is_secure(env, mmu_idx);
184
return;
185
}
186
187
+ if (idau_region != IREGION_NOTVALID) {
188
+ sattrs->irvalid = true;
189
+ sattrs->iregion = idau_region;
190
+ }
191
+
192
switch (env->sau.ctrl & 3) {
193
case 0: /* SAU.ENABLE == 0, SAU.ALLNS == 0 */
194
break;
195
@@ -XXX,XX +XXX,XX @@ static void v8m_security_lookup(CPUARMState *env, uint32_t address,
196
}
197
}
198
199
- /* TODO when we support the IDAU then it may override the result here */
200
+ /* The IDAU will override the SAU lookup results if it specifies
201
+ * higher security than the SAU does.
202
+ */
203
+ if (!idau_ns) {
204
+ if (sattrs->ns || (!idau_nsc && sattrs->nsc)) {
205
+ sattrs->ns = false;
206
+ sattrs->nsc = idau_nsc;
207
+ }
208
+ }
209
break;
210
}
211
}
43
}
212
--
44
--
213
2.16.2
45
2.20.1
214
46
215
47
diff view generated by jsdifflib
Deleted patch
1
The Cortex-M33 allows the system to specify the reset value of the
2
secure Vector Table Offset Register (VTOR) by asserting config
3
signals. In particular, guest images for the MPS2 AN505 board rely
4
on the MPS2's initial VTOR being correct for that board.
5
Implement a QEMU property so board and SoC code can set the reset
6
value to the correct value.
7
1
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
10
Message-id: 20180220180325.29818-7-peter.maydell@linaro.org
11
---
12
target/arm/cpu.h | 3 +++
13
target/arm/cpu.c | 18 ++++++++++++++----
14
2 files changed, 17 insertions(+), 4 deletions(-)
15
16
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
17
index XXXXXXX..XXXXXXX 100644
18
--- a/target/arm/cpu.h
19
+++ b/target/arm/cpu.h
20
@@ -XXX,XX +XXX,XX @@ struct ARMCPU {
21
*/
22
uint32_t psci_conduit;
23
24
+ /* For v8M, initial value of the Secure VTOR */
25
+ uint32_t init_svtor;
26
+
27
/* [QEMU_]KVM_ARM_TARGET_* constant for this CPU, or
28
* QEMU_KVM_ARM_TARGET_NONE if the kernel doesn't support this CPU type.
29
*/
30
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
31
index XXXXXXX..XXXXXXX 100644
32
--- a/target/arm/cpu.c
33
+++ b/target/arm/cpu.c
34
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_reset(CPUState *s)
35
uint32_t initial_msp; /* Loaded from 0x0 */
36
uint32_t initial_pc; /* Loaded from 0x4 */
37
uint8_t *rom;
38
+ uint32_t vecbase;
39
40
if (arm_feature(env, ARM_FEATURE_M_SECURITY)) {
41
env->v7m.secure = true;
42
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_reset(CPUState *s)
43
/* Unlike A/R profile, M profile defines the reset LR value */
44
env->regs[14] = 0xffffffff;
45
46
- /* Load the initial SP and PC from the vector table at address 0 */
47
- rom = rom_ptr(0);
48
+ env->v7m.vecbase[M_REG_S] = cpu->init_svtor & 0xffffff80;
49
+
50
+ /* Load the initial SP and PC from offset 0 and 4 in the vector table */
51
+ vecbase = env->v7m.vecbase[env->v7m.secure];
52
+ rom = rom_ptr(vecbase);
53
if (rom) {
54
/* Address zero is covered by ROM which hasn't yet been
55
* copied into physical memory.
56
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_reset(CPUState *s)
57
* it got copied into memory. In the latter case, rom_ptr
58
* will return a NULL pointer and we should use ldl_phys instead.
59
*/
60
- initial_msp = ldl_phys(s->as, 0);
61
- initial_pc = ldl_phys(s->as, 4);
62
+ initial_msp = ldl_phys(s->as, vecbase);
63
+ initial_pc = ldl_phys(s->as, vecbase + 4);
64
}
65
66
env->regs[13] = initial_msp & 0xFFFFFFFC;
67
@@ -XXX,XX +XXX,XX @@ static Property arm_cpu_pmsav7_dregion_property =
68
pmsav7_dregion,
69
qdev_prop_uint32, uint32_t);
70
71
+/* M profile: initial value of the Secure VTOR */
72
+static Property arm_cpu_initsvtor_property =
73
+ DEFINE_PROP_UINT32("init-svtor", ARMCPU, init_svtor, 0);
74
+
75
static void arm_cpu_post_init(Object *obj)
76
{
77
ARMCPU *cpu = ARM_CPU(obj);
78
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_post_init(Object *obj)
79
qdev_prop_allow_set_link_before_realize,
80
OBJ_PROP_LINK_UNREF_ON_RELEASE,
81
&error_abort);
82
+ qdev_property_add_static(DEVICE(obj), &arm_cpu_initsvtor_property,
83
+ &error_abort);
84
}
85
86
qdev_property_add_static(DEVICE(obj), &arm_cpu_cfgend_property,
87
--
88
2.16.2
89
90
diff view generated by jsdifflib
Deleted patch
1
Create an "init-svtor" property on the armv7m container
2
object which we can forward to the CPU object.
3
1
4
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
5
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
6
Message-id: 20180220180325.29818-8-peter.maydell@linaro.org
7
---
8
include/hw/arm/armv7m.h | 2 ++
9
hw/arm/armv7m.c | 9 +++++++++
10
2 files changed, 11 insertions(+)
11
12
diff --git a/include/hw/arm/armv7m.h b/include/hw/arm/armv7m.h
13
index XXXXXXX..XXXXXXX 100644
14
--- a/include/hw/arm/armv7m.h
15
+++ b/include/hw/arm/armv7m.h
16
@@ -XXX,XX +XXX,XX @@ typedef struct {
17
* that CPU accesses see. (The NVIC, bitbanding and other CPU-internal
18
* devices will be automatically layered on top of this view.)
19
* + Property "idau": IDAU interface (forwarded to CPU object)
20
+ * + Property "init-svtor": secure VTOR reset value (forwarded to CPU object)
21
*/
22
typedef struct ARMv7MState {
23
/*< private >*/
24
@@ -XXX,XX +XXX,XX @@ typedef struct ARMv7MState {
25
/* MemoryRegion the board provides to us (with its devices, RAM, etc) */
26
MemoryRegion *board_memory;
27
Object *idau;
28
+ uint32_t init_svtor;
29
} ARMv7MState;
30
31
#endif
32
diff --git a/hw/arm/armv7m.c b/hw/arm/armv7m.c
33
index XXXXXXX..XXXXXXX 100644
34
--- a/hw/arm/armv7m.c
35
+++ b/hw/arm/armv7m.c
36
@@ -XXX,XX +XXX,XX @@ static void armv7m_realize(DeviceState *dev, Error **errp)
37
return;
38
}
39
}
40
+ if (object_property_find(OBJECT(s->cpu), "init-svtor", NULL)) {
41
+ object_property_set_uint(OBJECT(s->cpu), s->init_svtor,
42
+ "init-svtor", &err);
43
+ if (err != NULL) {
44
+ error_propagate(errp, err);
45
+ return;
46
+ }
47
+ }
48
object_property_set_bool(OBJECT(s->cpu), true, "realized", &err);
49
if (err != NULL) {
50
error_propagate(errp, err);
51
@@ -XXX,XX +XXX,XX @@ static Property armv7m_properties[] = {
52
DEFINE_PROP_LINK("memory", ARMv7MState, board_memory, TYPE_MEMORY_REGION,
53
MemoryRegion *),
54
DEFINE_PROP_LINK("idau", ARMv7MState, idau, TYPE_IDAU_INTERFACE, Object *),
55
+ DEFINE_PROP_UINT32("init-svtor", ARMv7MState, init_svtor, 0),
56
DEFINE_PROP_END_OF_LIST(),
57
};
58
59
--
60
2.16.2
61
62
diff view generated by jsdifflib
Deleted patch
1
Move the definition of the struct for the unimplemented-device
2
from unimp.c to unimp.h, so that users can embed the struct
3
in their own device structs if they prefer.
4
1
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20180220180325.29818-10-peter.maydell@linaro.org
9
---
10
include/hw/misc/unimp.h | 10 ++++++++++
11
hw/misc/unimp.c | 10 ----------
12
2 files changed, 10 insertions(+), 10 deletions(-)
13
14
diff --git a/include/hw/misc/unimp.h b/include/hw/misc/unimp.h
15
index XXXXXXX..XXXXXXX 100644
16
--- a/include/hw/misc/unimp.h
17
+++ b/include/hw/misc/unimp.h
18
@@ -XXX,XX +XXX,XX @@
19
20
#define TYPE_UNIMPLEMENTED_DEVICE "unimplemented-device"
21
22
+#define UNIMPLEMENTED_DEVICE(obj) \
23
+ OBJECT_CHECK(UnimplementedDeviceState, (obj), TYPE_UNIMPLEMENTED_DEVICE)
24
+
25
+typedef struct {
26
+ SysBusDevice parent_obj;
27
+ MemoryRegion iomem;
28
+ char *name;
29
+ uint64_t size;
30
+} UnimplementedDeviceState;
31
+
32
/**
33
* create_unimplemented_device: create and map a dummy device
34
* @name: name of the device for debug logging
35
diff --git a/hw/misc/unimp.c b/hw/misc/unimp.c
36
index XXXXXXX..XXXXXXX 100644
37
--- a/hw/misc/unimp.c
38
+++ b/hw/misc/unimp.c
39
@@ -XXX,XX +XXX,XX @@
40
#include "qemu/log.h"
41
#include "qapi/error.h"
42
43
-#define UNIMPLEMENTED_DEVICE(obj) \
44
- OBJECT_CHECK(UnimplementedDeviceState, (obj), TYPE_UNIMPLEMENTED_DEVICE)
45
-
46
-typedef struct {
47
- SysBusDevice parent_obj;
48
- MemoryRegion iomem;
49
- char *name;
50
- uint64_t size;
51
-} UnimplementedDeviceState;
52
-
53
static uint64_t unimp_read(void *opaque, hwaddr offset, unsigned size)
54
{
55
UnimplementedDeviceState *s = UNIMPLEMENTED_DEVICE(opaque);
56
--
57
2.16.2
58
59
diff view generated by jsdifflib
Deleted patch
1
The or-irq.h header file is missing the customary guard against
2
multiple inclusion, which means compilation fails if it gets
3
included twice. Fix the omission.
4
1
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20180220180325.29818-11-peter.maydell@linaro.org
9
---
10
include/hw/or-irq.h | 5 +++++
11
1 file changed, 5 insertions(+)
12
13
diff --git a/include/hw/or-irq.h b/include/hw/or-irq.h
14
index XXXXXXX..XXXXXXX 100644
15
--- a/include/hw/or-irq.h
16
+++ b/include/hw/or-irq.h
17
@@ -XXX,XX +XXX,XX @@
18
* THE SOFTWARE.
19
*/
20
21
+#ifndef HW_OR_IRQ_H
22
+#define HW_OR_IRQ_H
23
+
24
#include "hw/irq.h"
25
#include "hw/sysbus.h"
26
#include "qom/object.h"
27
@@ -XXX,XX +XXX,XX @@ struct OrIRQState {
28
bool levels[MAX_OR_LINES];
29
uint16_t num_lines;
30
};
31
+
32
+#endif
33
--
34
2.16.2
35
36
diff view generated by jsdifflib
Deleted patch
1
The function qdev_init_gpio_in_named() passes the DeviceState pointer
2
as the opaque data pointor for the irq handler function. Usually
3
this is what you want, but in some cases it would be helpful to use
4
some other data pointer.
5
1
6
Add a new function qdev_init_gpio_in_named_with_opaque() which allows
7
the caller to specify the data pointer they want.
8
9
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: 20180220180325.29818-12-peter.maydell@linaro.org
13
---
14
include/hw/qdev-core.h | 30 ++++++++++++++++++++++++++++--
15
hw/core/qdev.c | 8 +++++---
16
2 files changed, 33 insertions(+), 5 deletions(-)
17
18
diff --git a/include/hw/qdev-core.h b/include/hw/qdev-core.h
19
index XXXXXXX..XXXXXXX 100644
20
--- a/include/hw/qdev-core.h
21
+++ b/include/hw/qdev-core.h
22
@@ -XXX,XX +XXX,XX @@ BusState *qdev_get_child_bus(DeviceState *dev, const char *name);
23
/* GPIO inputs also double as IRQ sinks. */
24
void qdev_init_gpio_in(DeviceState *dev, qemu_irq_handler handler, int n);
25
void qdev_init_gpio_out(DeviceState *dev, qemu_irq *pins, int n);
26
-void qdev_init_gpio_in_named(DeviceState *dev, qemu_irq_handler handler,
27
- const char *name, int n);
28
void qdev_init_gpio_out_named(DeviceState *dev, qemu_irq *pins,
29
const char *name, int n);
30
+/**
31
+ * qdev_init_gpio_in_named_with_opaque: create an array of input GPIO lines
32
+ * for the specified device
33
+ *
34
+ * @dev: Device to create input GPIOs for
35
+ * @handler: Function to call when GPIO line value is set
36
+ * @opaque: Opaque data pointer to pass to @handler
37
+ * @name: Name of the GPIO input (must be unique for this device)
38
+ * @n: Number of GPIO lines in this input set
39
+ */
40
+void qdev_init_gpio_in_named_with_opaque(DeviceState *dev,
41
+ qemu_irq_handler handler,
42
+ void *opaque,
43
+ const char *name, int n);
44
+
45
+/**
46
+ * qdev_init_gpio_in_named: create an array of input GPIO lines
47
+ * for the specified device
48
+ *
49
+ * Like qdev_init_gpio_in_named_with_opaque(), but the opaque pointer
50
+ * passed to the handler is @dev (which is the most commonly desired behaviour).
51
+ */
52
+static inline void qdev_init_gpio_in_named(DeviceState *dev,
53
+ qemu_irq_handler handler,
54
+ const char *name, int n)
55
+{
56
+ qdev_init_gpio_in_named_with_opaque(dev, handler, dev, name, n);
57
+}
58
59
void qdev_pass_gpios(DeviceState *dev, DeviceState *container,
60
const char *name);
61
diff --git a/hw/core/qdev.c b/hw/core/qdev.c
62
index XXXXXXX..XXXXXXX 100644
63
--- a/hw/core/qdev.c
64
+++ b/hw/core/qdev.c
65
@@ -XXX,XX +XXX,XX @@ static NamedGPIOList *qdev_get_named_gpio_list(DeviceState *dev,
66
return ngl;
67
}
68
69
-void qdev_init_gpio_in_named(DeviceState *dev, qemu_irq_handler handler,
70
- const char *name, int n)
71
+void qdev_init_gpio_in_named_with_opaque(DeviceState *dev,
72
+ qemu_irq_handler handler,
73
+ void *opaque,
74
+ const char *name, int n)
75
{
76
int i;
77
NamedGPIOList *gpio_list = qdev_get_named_gpio_list(dev, name);
78
79
assert(gpio_list->num_out == 0 || !name);
80
gpio_list->in = qemu_extend_irqs(gpio_list->in, gpio_list->num_in, handler,
81
- dev, n);
82
+ opaque, n);
83
84
if (!name) {
85
name = "unnamed-gpio-in";
86
--
87
2.16.2
88
89
diff view generated by jsdifflib
Deleted patch
1
The MPS2 AN505 FPGA image includes a "FPGA control block"
2
which is a small set of registers handling LEDs, buttons
3
and some counters.
4
1
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
7
Message-id: 20180220180325.29818-14-peter.maydell@linaro.org
8
---
9
hw/misc/Makefile.objs | 1 +
10
include/hw/misc/mps2-fpgaio.h | 43 ++++++++++
11
hw/misc/mps2-fpgaio.c | 176 ++++++++++++++++++++++++++++++++++++++++
12
default-configs/arm-softmmu.mak | 1 +
13
hw/misc/trace-events | 6 ++
14
5 files changed, 227 insertions(+)
15
create mode 100644 include/hw/misc/mps2-fpgaio.h
16
create mode 100644 hw/misc/mps2-fpgaio.c
17
18
diff --git a/hw/misc/Makefile.objs b/hw/misc/Makefile.objs
19
index XXXXXXX..XXXXXXX 100644
20
--- a/hw/misc/Makefile.objs
21
+++ b/hw/misc/Makefile.objs
22
@@ -XXX,XX +XXX,XX @@ obj-$(CONFIG_STM32F2XX_SYSCFG) += stm32f2xx_syscfg.o
23
obj-$(CONFIG_MIPS_CPS) += mips_cmgcr.o
24
obj-$(CONFIG_MIPS_CPS) += mips_cpc.o
25
obj-$(CONFIG_MIPS_ITU) += mips_itu.o
26
+obj-$(CONFIG_MPS2_FPGAIO) += mps2-fpgaio.o
27
obj-$(CONFIG_MPS2_SCC) += mps2-scc.o
28
29
obj-$(CONFIG_PVPANIC) += pvpanic.o
30
diff --git a/include/hw/misc/mps2-fpgaio.h b/include/hw/misc/mps2-fpgaio.h
31
new file mode 100644
32
index XXXXXXX..XXXXXXX
33
--- /dev/null
34
+++ b/include/hw/misc/mps2-fpgaio.h
35
@@ -XXX,XX +XXX,XX @@
36
+/*
37
+ * ARM MPS2 FPGAIO emulation
38
+ *
39
+ * Copyright (c) 2018 Linaro Limited
40
+ * Written by Peter Maydell
41
+ *
42
+ * This program is free software; you can redistribute it and/or modify
43
+ * it under the terms of the GNU General Public License version 2 or
44
+ * (at your option) any later version.
45
+ */
46
+
47
+/* This is a model of the FPGAIO register block in the AN505
48
+ * FPGA image for the MPS2 dev board; it is documented in the
49
+ * application note:
50
+ * http://infocenter.arm.com/help/topic/com.arm.doc.dai0505b/index.html
51
+ *
52
+ * QEMU interface:
53
+ * + sysbus MMIO region 0: the register bank
54
+ */
55
+
56
+#ifndef MPS2_FPGAIO_H
57
+#define MPS2_FPGAIO_H
58
+
59
+#include "hw/sysbus.h"
60
+
61
+#define TYPE_MPS2_FPGAIO "mps2-fpgaio"
62
+#define MPS2_FPGAIO(obj) OBJECT_CHECK(MPS2FPGAIO, (obj), TYPE_MPS2_FPGAIO)
63
+
64
+typedef struct {
65
+ /*< private >*/
66
+ SysBusDevice parent_obj;
67
+
68
+ /*< public >*/
69
+ MemoryRegion iomem;
70
+
71
+ uint32_t led0;
72
+ uint32_t prescale;
73
+ uint32_t misc;
74
+
75
+ uint32_t prescale_clk;
76
+} MPS2FPGAIO;
77
+
78
+#endif
79
diff --git a/hw/misc/mps2-fpgaio.c b/hw/misc/mps2-fpgaio.c
80
new file mode 100644
81
index XXXXXXX..XXXXXXX
82
--- /dev/null
83
+++ b/hw/misc/mps2-fpgaio.c
84
@@ -XXX,XX +XXX,XX @@
85
+/*
86
+ * ARM MPS2 AN505 FPGAIO emulation
87
+ *
88
+ * Copyright (c) 2018 Linaro Limited
89
+ * Written by Peter Maydell
90
+ *
91
+ * This program is free software; you can redistribute it and/or modify
92
+ * it under the terms of the GNU General Public License version 2 or
93
+ * (at your option) any later version.
94
+ */
95
+
96
+/* This is a model of the "FPGA system control and I/O" block found
97
+ * in the AN505 FPGA image for the MPS2 devboard.
98
+ * It is documented in AN505:
99
+ * http://infocenter.arm.com/help/topic/com.arm.doc.dai0505b/index.html
100
+ */
101
+
102
+#include "qemu/osdep.h"
103
+#include "qemu/log.h"
104
+#include "qapi/error.h"
105
+#include "trace.h"
106
+#include "hw/sysbus.h"
107
+#include "hw/registerfields.h"
108
+#include "hw/misc/mps2-fpgaio.h"
109
+
110
+REG32(LED0, 0)
111
+REG32(BUTTON, 8)
112
+REG32(CLK1HZ, 0x10)
113
+REG32(CLK100HZ, 0x14)
114
+REG32(COUNTER, 0x18)
115
+REG32(PRESCALE, 0x1c)
116
+REG32(PSCNTR, 0x20)
117
+REG32(MISC, 0x4c)
118
+
119
+static uint64_t mps2_fpgaio_read(void *opaque, hwaddr offset, unsigned size)
120
+{
121
+ MPS2FPGAIO *s = MPS2_FPGAIO(opaque);
122
+ uint64_t r;
123
+
124
+ switch (offset) {
125
+ case A_LED0:
126
+ r = s->led0;
127
+ break;
128
+ case A_BUTTON:
129
+ /* User-pressable board buttons. We don't model that, so just return
130
+ * zeroes.
131
+ */
132
+ r = 0;
133
+ break;
134
+ case A_PRESCALE:
135
+ r = s->prescale;
136
+ break;
137
+ case A_MISC:
138
+ r = s->misc;
139
+ break;
140
+ case A_CLK1HZ:
141
+ case A_CLK100HZ:
142
+ case A_COUNTER:
143
+ case A_PSCNTR:
144
+ /* These are all upcounters of various frequencies. */
145
+ qemu_log_mask(LOG_UNIMP, "MPS2 FPGAIO: counters unimplemented\n");
146
+ r = 0;
147
+ break;
148
+ default:
149
+ qemu_log_mask(LOG_GUEST_ERROR,
150
+ "MPS2 FPGAIO read: bad offset %x\n", (int) offset);
151
+ r = 0;
152
+ break;
153
+ }
154
+
155
+ trace_mps2_fpgaio_read(offset, r, size);
156
+ return r;
157
+}
158
+
159
+static void mps2_fpgaio_write(void *opaque, hwaddr offset, uint64_t value,
160
+ unsigned size)
161
+{
162
+ MPS2FPGAIO *s = MPS2_FPGAIO(opaque);
163
+
164
+ trace_mps2_fpgaio_write(offset, value, size);
165
+
166
+ switch (offset) {
167
+ case A_LED0:
168
+ /* LED bits [1:0] control board LEDs. We don't currently have
169
+ * a mechanism for displaying this graphically, so use a trace event.
170
+ */
171
+ trace_mps2_fpgaio_leds(value & 0x02 ? '*' : '.',
172
+ value & 0x01 ? '*' : '.');
173
+ s->led0 = value & 0x3;
174
+ break;
175
+ case A_PRESCALE:
176
+ s->prescale = value;
177
+ break;
178
+ case A_MISC:
179
+ /* These are control bits for some of the other devices on the
180
+ * board (SPI, CLCD, etc). We don't implement that yet, so just
181
+ * make the bits read as written.
182
+ */
183
+ qemu_log_mask(LOG_UNIMP,
184
+ "MPS2 FPGAIO: MISC control bits unimplemented\n");
185
+ s->misc = value;
186
+ break;
187
+ default:
188
+ qemu_log_mask(LOG_GUEST_ERROR,
189
+ "MPS2 FPGAIO write: bad offset 0x%x\n", (int) offset);
190
+ break;
191
+ }
192
+}
193
+
194
+static const MemoryRegionOps mps2_fpgaio_ops = {
195
+ .read = mps2_fpgaio_read,
196
+ .write = mps2_fpgaio_write,
197
+ .endianness = DEVICE_LITTLE_ENDIAN,
198
+};
199
+
200
+static void mps2_fpgaio_reset(DeviceState *dev)
201
+{
202
+ MPS2FPGAIO *s = MPS2_FPGAIO(dev);
203
+
204
+ trace_mps2_fpgaio_reset();
205
+ s->led0 = 0;
206
+ s->prescale = 0;
207
+ s->misc = 0;
208
+}
209
+
210
+static void mps2_fpgaio_init(Object *obj)
211
+{
212
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
213
+ MPS2FPGAIO *s = MPS2_FPGAIO(obj);
214
+
215
+ memory_region_init_io(&s->iomem, obj, &mps2_fpgaio_ops, s,
216
+ "mps2-fpgaio", 0x1000);
217
+ sysbus_init_mmio(sbd, &s->iomem);
218
+}
219
+
220
+static const VMStateDescription mps2_fpgaio_vmstate = {
221
+ .name = "mps2-fpgaio",
222
+ .version_id = 1,
223
+ .minimum_version_id = 1,
224
+ .fields = (VMStateField[]) {
225
+ VMSTATE_UINT32(led0, MPS2FPGAIO),
226
+ VMSTATE_UINT32(prescale, MPS2FPGAIO),
227
+ VMSTATE_UINT32(misc, MPS2FPGAIO),
228
+ VMSTATE_END_OF_LIST()
229
+ }
230
+};
231
+
232
+static Property mps2_fpgaio_properties[] = {
233
+ /* Frequency of the prescale counter */
234
+ DEFINE_PROP_UINT32("prescale-clk", MPS2FPGAIO, prescale_clk, 20000000),
235
+ DEFINE_PROP_END_OF_LIST(),
236
+};
237
+
238
+static void mps2_fpgaio_class_init(ObjectClass *klass, void *data)
239
+{
240
+ DeviceClass *dc = DEVICE_CLASS(klass);
241
+
242
+ dc->vmsd = &mps2_fpgaio_vmstate;
243
+ dc->reset = mps2_fpgaio_reset;
244
+ dc->props = mps2_fpgaio_properties;
245
+}
246
+
247
+static const TypeInfo mps2_fpgaio_info = {
248
+ .name = TYPE_MPS2_FPGAIO,
249
+ .parent = TYPE_SYS_BUS_DEVICE,
250
+ .instance_size = sizeof(MPS2FPGAIO),
251
+ .instance_init = mps2_fpgaio_init,
252
+ .class_init = mps2_fpgaio_class_init,
253
+};
254
+
255
+static void mps2_fpgaio_register_types(void)
256
+{
257
+ type_register_static(&mps2_fpgaio_info);
258
+}
259
+
260
+type_init(mps2_fpgaio_register_types);
261
diff --git a/default-configs/arm-softmmu.mak b/default-configs/arm-softmmu.mak
262
index XXXXXXX..XXXXXXX 100644
263
--- a/default-configs/arm-softmmu.mak
264
+++ b/default-configs/arm-softmmu.mak
265
@@ -XXX,XX +XXX,XX @@ CONFIG_STM32F205_SOC=y
266
CONFIG_CMSDK_APB_TIMER=y
267
CONFIG_CMSDK_APB_UART=y
268
269
+CONFIG_MPS2_FPGAIO=y
270
CONFIG_MPS2_SCC=y
271
272
CONFIG_VERSATILE_PCI=y
273
diff --git a/hw/misc/trace-events b/hw/misc/trace-events
274
index XXXXXXX..XXXXXXX 100644
275
--- a/hw/misc/trace-events
276
+++ b/hw/misc/trace-events
277
@@ -XXX,XX +XXX,XX @@ mps2_scc_leds(char led7, char led6, char led5, char led4, char led3, char led2,
278
mps2_scc_cfg_write(unsigned function, unsigned device, uint32_t value) "MPS2 SCC config write: function %d device %d data 0x%" PRIx32
279
mps2_scc_cfg_read(unsigned function, unsigned device, uint32_t value) "MPS2 SCC config read: function %d device %d data 0x%" PRIx32
280
281
+# hw/misc/mps2_fpgaio.c
282
+mps2_fpgaio_read(uint64_t offset, uint64_t data, unsigned size) "MPS2 FPGAIO read: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
283
+mps2_fpgaio_write(uint64_t offset, uint64_t data, unsigned size) "MPS2 FPGAIO write: offset 0x%" PRIx64 " data 0x%" PRIx64 " size %u"
284
+mps2_fpgaio_reset(void) "MPS2 FPGAIO: reset"
285
+mps2_fpgaio_leds(char led1, char led0) "MPS2 FPGAIO LEDs: %c%c"
286
+
287
# hw/misc/msf2-sysreg.c
288
msf2_sysreg_write(uint64_t offset, uint32_t val, uint32_t prev) "msf2-sysreg write: addr 0x%08" HWADDR_PRIx " data 0x%" PRIx32 " prev 0x%" PRIx32
289
msf2_sysreg_read(uint64_t offset, uint32_t val) "msf2-sysreg read: addr 0x%08" HWADDR_PRIx " data 0x%08" PRIx32
290
--
291
2.16.2
292
293
diff view generated by jsdifflib
Deleted patch
1
The Arm IoT Kit includes a "security controller" which is largely a
2
collection of registers for controlling the PPCs and other bits of
3
glue in the system. This commit provides the initial skeleton of the
4
device, implementing just the ID registers, and a couple of read-only
5
read-as-zero registers.
6
1
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
9
Message-id: 20180220180325.29818-16-peter.maydell@linaro.org
10
---
11
hw/misc/Makefile.objs | 1 +
12
include/hw/misc/iotkit-secctl.h | 39 ++++
13
hw/misc/iotkit-secctl.c | 448 ++++++++++++++++++++++++++++++++++++++++
14
default-configs/arm-softmmu.mak | 1 +
15
hw/misc/trace-events | 7 +
16
5 files changed, 496 insertions(+)
17
create mode 100644 include/hw/misc/iotkit-secctl.h
18
create mode 100644 hw/misc/iotkit-secctl.c
19
20
diff --git a/hw/misc/Makefile.objs b/hw/misc/Makefile.objs
21
index XXXXXXX..XXXXXXX 100644
22
--- a/hw/misc/Makefile.objs
23
+++ b/hw/misc/Makefile.objs
24
@@ -XXX,XX +XXX,XX @@ obj-$(CONFIG_MPS2_FPGAIO) += mps2-fpgaio.o
25
obj-$(CONFIG_MPS2_SCC) += mps2-scc.o
26
27
obj-$(CONFIG_TZ_PPC) += tz-ppc.o
28
+obj-$(CONFIG_IOTKIT_SECCTL) += iotkit-secctl.o
29
30
obj-$(CONFIG_PVPANIC) += pvpanic.o
31
obj-$(CONFIG_HYPERV_TESTDEV) += hyperv_testdev.o
32
diff --git a/include/hw/misc/iotkit-secctl.h b/include/hw/misc/iotkit-secctl.h
33
new file mode 100644
34
index XXXXXXX..XXXXXXX
35
--- /dev/null
36
+++ b/include/hw/misc/iotkit-secctl.h
37
@@ -XXX,XX +XXX,XX @@
38
+/*
39
+ * ARM IoT Kit security controller
40
+ *
41
+ * Copyright (c) 2018 Linaro Limited
42
+ * Written by Peter Maydell
43
+ *
44
+ * This program is free software; you can redistribute it and/or modify
45
+ * it under the terms of the GNU General Public License version 2 or
46
+ * (at your option) any later version.
47
+ */
48
+
49
+/* This is a model of the security controller which is part of the
50
+ * Arm IoT Kit and documented in
51
+ * http://infocenter.arm.com/help/index.jsp?topic=/com.arm.doc.ecm0601256/index.html
52
+ *
53
+ * QEMU interface:
54
+ * + sysbus MMIO region 0 is the "secure privilege control block" registers
55
+ * + sysbus MMIO region 1 is the "non-secure privilege control block" registers
56
+ */
57
+
58
+#ifndef IOTKIT_SECCTL_H
59
+#define IOTKIT_SECCTL_H
60
+
61
+#include "hw/sysbus.h"
62
+
63
+#define TYPE_IOTKIT_SECCTL "iotkit-secctl"
64
+#define IOTKIT_SECCTL(obj) OBJECT_CHECK(IoTKitSecCtl, (obj), TYPE_IOTKIT_SECCTL)
65
+
66
+typedef struct IoTKitSecCtl {
67
+ /*< private >*/
68
+ SysBusDevice parent_obj;
69
+
70
+ /*< public >*/
71
+
72
+ MemoryRegion s_regs;
73
+ MemoryRegion ns_regs;
74
+} IoTKitSecCtl;
75
+
76
+#endif
77
diff --git a/hw/misc/iotkit-secctl.c b/hw/misc/iotkit-secctl.c
78
new file mode 100644
79
index XXXXXXX..XXXXXXX
80
--- /dev/null
81
+++ b/hw/misc/iotkit-secctl.c
82
@@ -XXX,XX +XXX,XX @@
83
+/*
84
+ * Arm IoT Kit security controller
85
+ *
86
+ * Copyright (c) 2018 Linaro Limited
87
+ * Written by Peter Maydell
88
+ *
89
+ * This program is free software; you can redistribute it and/or modify
90
+ * it under the terms of the GNU General Public License version 2 or
91
+ * (at your option) any later version.
92
+ */
93
+
94
+#include "qemu/osdep.h"
95
+#include "qemu/log.h"
96
+#include "qapi/error.h"
97
+#include "trace.h"
98
+#include "hw/sysbus.h"
99
+#include "hw/registerfields.h"
100
+#include "hw/misc/iotkit-secctl.h"
101
+
102
+/* Registers in the secure privilege control block */
103
+REG32(SECRESPCFG, 0x10)
104
+REG32(NSCCFG, 0x14)
105
+REG32(SECMPCINTSTATUS, 0x1c)
106
+REG32(SECPPCINTSTAT, 0x20)
107
+REG32(SECPPCINTCLR, 0x24)
108
+REG32(SECPPCINTEN, 0x28)
109
+REG32(SECMSCINTSTAT, 0x30)
110
+REG32(SECMSCINTCLR, 0x34)
111
+REG32(SECMSCINTEN, 0x38)
112
+REG32(BRGINTSTAT, 0x40)
113
+REG32(BRGINTCLR, 0x44)
114
+REG32(BRGINTEN, 0x48)
115
+REG32(AHBNSPPC0, 0x50)
116
+REG32(AHBNSPPCEXP0, 0x60)
117
+REG32(AHBNSPPCEXP1, 0x64)
118
+REG32(AHBNSPPCEXP2, 0x68)
119
+REG32(AHBNSPPCEXP3, 0x6c)
120
+REG32(APBNSPPC0, 0x70)
121
+REG32(APBNSPPC1, 0x74)
122
+REG32(APBNSPPCEXP0, 0x80)
123
+REG32(APBNSPPCEXP1, 0x84)
124
+REG32(APBNSPPCEXP2, 0x88)
125
+REG32(APBNSPPCEXP3, 0x8c)
126
+REG32(AHBSPPPC0, 0x90)
127
+REG32(AHBSPPPCEXP0, 0xa0)
128
+REG32(AHBSPPPCEXP1, 0xa4)
129
+REG32(AHBSPPPCEXP2, 0xa8)
130
+REG32(AHBSPPPCEXP3, 0xac)
131
+REG32(APBSPPPC0, 0xb0)
132
+REG32(APBSPPPC1, 0xb4)
133
+REG32(APBSPPPCEXP0, 0xc0)
134
+REG32(APBSPPPCEXP1, 0xc4)
135
+REG32(APBSPPPCEXP2, 0xc8)
136
+REG32(APBSPPPCEXP3, 0xcc)
137
+REG32(NSMSCEXP, 0xd0)
138
+REG32(PID4, 0xfd0)
139
+REG32(PID5, 0xfd4)
140
+REG32(PID6, 0xfd8)
141
+REG32(PID7, 0xfdc)
142
+REG32(PID0, 0xfe0)
143
+REG32(PID1, 0xfe4)
144
+REG32(PID2, 0xfe8)
145
+REG32(PID3, 0xfec)
146
+REG32(CID0, 0xff0)
147
+REG32(CID1, 0xff4)
148
+REG32(CID2, 0xff8)
149
+REG32(CID3, 0xffc)
150
+
151
+/* Registers in the non-secure privilege control block */
152
+REG32(AHBNSPPPC0, 0x90)
153
+REG32(AHBNSPPPCEXP0, 0xa0)
154
+REG32(AHBNSPPPCEXP1, 0xa4)
155
+REG32(AHBNSPPPCEXP2, 0xa8)
156
+REG32(AHBNSPPPCEXP3, 0xac)
157
+REG32(APBNSPPPC0, 0xb0)
158
+REG32(APBNSPPPC1, 0xb4)
159
+REG32(APBNSPPPCEXP0, 0xc0)
160
+REG32(APBNSPPPCEXP1, 0xc4)
161
+REG32(APBNSPPPCEXP2, 0xc8)
162
+REG32(APBNSPPPCEXP3, 0xcc)
163
+/* PID and CID registers are also present in the NS block */
164
+
165
+static const uint8_t iotkit_secctl_s_idregs[] = {
166
+ 0x04, 0x00, 0x00, 0x00,
167
+ 0x52, 0xb8, 0x0b, 0x00,
168
+ 0x0d, 0xf0, 0x05, 0xb1,
169
+};
170
+
171
+static const uint8_t iotkit_secctl_ns_idregs[] = {
172
+ 0x04, 0x00, 0x00, 0x00,
173
+ 0x53, 0xb8, 0x0b, 0x00,
174
+ 0x0d, 0xf0, 0x05, 0xb1,
175
+};
176
+
177
+static MemTxResult iotkit_secctl_s_read(void *opaque, hwaddr addr,
178
+ uint64_t *pdata,
179
+ unsigned size, MemTxAttrs attrs)
180
+{
181
+ uint64_t r;
182
+ uint32_t offset = addr & ~0x3;
183
+
184
+ switch (offset) {
185
+ case A_AHBNSPPC0:
186
+ case A_AHBSPPPC0:
187
+ r = 0;
188
+ break;
189
+ case A_SECRESPCFG:
190
+ case A_NSCCFG:
191
+ case A_SECMPCINTSTATUS:
192
+ case A_SECPPCINTSTAT:
193
+ case A_SECPPCINTEN:
194
+ case A_SECMSCINTSTAT:
195
+ case A_SECMSCINTEN:
196
+ case A_BRGINTSTAT:
197
+ case A_BRGINTEN:
198
+ case A_AHBNSPPCEXP0:
199
+ case A_AHBNSPPCEXP1:
200
+ case A_AHBNSPPCEXP2:
201
+ case A_AHBNSPPCEXP3:
202
+ case A_APBNSPPC0:
203
+ case A_APBNSPPC1:
204
+ case A_APBNSPPCEXP0:
205
+ case A_APBNSPPCEXP1:
206
+ case A_APBNSPPCEXP2:
207
+ case A_APBNSPPCEXP3:
208
+ case A_AHBSPPPCEXP0:
209
+ case A_AHBSPPPCEXP1:
210
+ case A_AHBSPPPCEXP2:
211
+ case A_AHBSPPPCEXP3:
212
+ case A_APBSPPPC0:
213
+ case A_APBSPPPC1:
214
+ case A_APBSPPPCEXP0:
215
+ case A_APBSPPPCEXP1:
216
+ case A_APBSPPPCEXP2:
217
+ case A_APBSPPPCEXP3:
218
+ case A_NSMSCEXP:
219
+ qemu_log_mask(LOG_UNIMP,
220
+ "IoTKit SecCtl S block read: "
221
+ "unimplemented offset 0x%x\n", offset);
222
+ r = 0;
223
+ break;
224
+ case A_PID4:
225
+ case A_PID5:
226
+ case A_PID6:
227
+ case A_PID7:
228
+ case A_PID0:
229
+ case A_PID1:
230
+ case A_PID2:
231
+ case A_PID3:
232
+ case A_CID0:
233
+ case A_CID1:
234
+ case A_CID2:
235
+ case A_CID3:
236
+ r = iotkit_secctl_s_idregs[(offset - A_PID4) / 4];
237
+ break;
238
+ case A_SECPPCINTCLR:
239
+ case A_SECMSCINTCLR:
240
+ case A_BRGINTCLR:
241
+ qemu_log_mask(LOG_GUEST_ERROR,
242
+ "IotKit SecCtl S block read: write-only offset 0x%x\n",
243
+ offset);
244
+ r = 0;
245
+ break;
246
+ default:
247
+ qemu_log_mask(LOG_GUEST_ERROR,
248
+ "IotKit SecCtl S block read: bad offset 0x%x\n", offset);
249
+ r = 0;
250
+ break;
251
+ }
252
+
253
+ if (size != 4) {
254
+ /* None of our registers are access-sensitive, so just pull the right
255
+ * byte out of the word read result.
256
+ */
257
+ r = extract32(r, (addr & 3) * 8, size * 8);
258
+ }
259
+
260
+ trace_iotkit_secctl_s_read(offset, r, size);
261
+ *pdata = r;
262
+ return MEMTX_OK;
263
+}
264
+
265
+static MemTxResult iotkit_secctl_s_write(void *opaque, hwaddr addr,
266
+ uint64_t value,
267
+ unsigned size, MemTxAttrs attrs)
268
+{
269
+ uint32_t offset = addr;
270
+
271
+ trace_iotkit_secctl_s_write(offset, value, size);
272
+
273
+ if (size != 4) {
274
+ /* Byte and halfword writes are ignored */
275
+ qemu_log_mask(LOG_GUEST_ERROR,
276
+ "IotKit SecCtl S block write: bad size, ignored\n");
277
+ return MEMTX_OK;
278
+ }
279
+
280
+ switch (offset) {
281
+ case A_SECRESPCFG:
282
+ case A_NSCCFG:
283
+ case A_SECPPCINTCLR:
284
+ case A_SECPPCINTEN:
285
+ case A_SECMSCINTCLR:
286
+ case A_SECMSCINTEN:
287
+ case A_BRGINTCLR:
288
+ case A_BRGINTEN:
289
+ case A_AHBNSPPCEXP0:
290
+ case A_AHBNSPPCEXP1:
291
+ case A_AHBNSPPCEXP2:
292
+ case A_AHBNSPPCEXP3:
293
+ case A_APBNSPPC0:
294
+ case A_APBNSPPC1:
295
+ case A_APBNSPPCEXP0:
296
+ case A_APBNSPPCEXP1:
297
+ case A_APBNSPPCEXP2:
298
+ case A_APBNSPPCEXP3:
299
+ case A_AHBSPPPCEXP0:
300
+ case A_AHBSPPPCEXP1:
301
+ case A_AHBSPPPCEXP2:
302
+ case A_AHBSPPPCEXP3:
303
+ case A_APBSPPPC0:
304
+ case A_APBSPPPC1:
305
+ case A_APBSPPPCEXP0:
306
+ case A_APBSPPPCEXP1:
307
+ case A_APBSPPPCEXP2:
308
+ case A_APBSPPPCEXP3:
309
+ qemu_log_mask(LOG_UNIMP,
310
+ "IoTKit SecCtl S block write: "
311
+ "unimplemented offset 0x%x\n", offset);
312
+ break;
313
+ case A_SECMPCINTSTATUS:
314
+ case A_SECPPCINTSTAT:
315
+ case A_SECMSCINTSTAT:
316
+ case A_BRGINTSTAT:
317
+ case A_AHBNSPPC0:
318
+ case A_AHBSPPPC0:
319
+ case A_NSMSCEXP:
320
+ case A_PID4:
321
+ case A_PID5:
322
+ case A_PID6:
323
+ case A_PID7:
324
+ case A_PID0:
325
+ case A_PID1:
326
+ case A_PID2:
327
+ case A_PID3:
328
+ case A_CID0:
329
+ case A_CID1:
330
+ case A_CID2:
331
+ case A_CID3:
332
+ qemu_log_mask(LOG_GUEST_ERROR,
333
+ "IoTKit SecCtl S block write: "
334
+ "read-only offset 0x%x\n", offset);
335
+ break;
336
+ default:
337
+ qemu_log_mask(LOG_GUEST_ERROR,
338
+ "IotKit SecCtl S block write: bad offset 0x%x\n",
339
+ offset);
340
+ break;
341
+ }
342
+
343
+ return MEMTX_OK;
344
+}
345
+
346
+static MemTxResult iotkit_secctl_ns_read(void *opaque, hwaddr addr,
347
+ uint64_t *pdata,
348
+ unsigned size, MemTxAttrs attrs)
349
+{
350
+ uint64_t r;
351
+ uint32_t offset = addr & ~0x3;
352
+
353
+ switch (offset) {
354
+ case A_AHBNSPPPC0:
355
+ r = 0;
356
+ break;
357
+ case A_AHBNSPPPCEXP0:
358
+ case A_AHBNSPPPCEXP1:
359
+ case A_AHBNSPPPCEXP2:
360
+ case A_AHBNSPPPCEXP3:
361
+ case A_APBNSPPPC0:
362
+ case A_APBNSPPPC1:
363
+ case A_APBNSPPPCEXP0:
364
+ case A_APBNSPPPCEXP1:
365
+ case A_APBNSPPPCEXP2:
366
+ case A_APBNSPPPCEXP3:
367
+ qemu_log_mask(LOG_UNIMP,
368
+ "IoTKit SecCtl NS block read: "
369
+ "unimplemented offset 0x%x\n", offset);
370
+ break;
371
+ case A_PID4:
372
+ case A_PID5:
373
+ case A_PID6:
374
+ case A_PID7:
375
+ case A_PID0:
376
+ case A_PID1:
377
+ case A_PID2:
378
+ case A_PID3:
379
+ case A_CID0:
380
+ case A_CID1:
381
+ case A_CID2:
382
+ case A_CID3:
383
+ r = iotkit_secctl_ns_idregs[(offset - A_PID4) / 4];
384
+ break;
385
+ default:
386
+ qemu_log_mask(LOG_GUEST_ERROR,
387
+ "IotKit SecCtl NS block write: bad offset 0x%x\n",
388
+ offset);
389
+ r = 0;
390
+ break;
391
+ }
392
+
393
+ if (size != 4) {
394
+ /* None of our registers are access-sensitive, so just pull the right
395
+ * byte out of the word read result.
396
+ */
397
+ r = extract32(r, (addr & 3) * 8, size * 8);
398
+ }
399
+
400
+ trace_iotkit_secctl_ns_read(offset, r, size);
401
+ *pdata = r;
402
+ return MEMTX_OK;
403
+}
404
+
405
+static MemTxResult iotkit_secctl_ns_write(void *opaque, hwaddr addr,
406
+ uint64_t value,
407
+ unsigned size, MemTxAttrs attrs)
408
+{
409
+ uint32_t offset = addr;
410
+
411
+ trace_iotkit_secctl_ns_write(offset, value, size);
412
+
413
+ if (size != 4) {
414
+ /* Byte and halfword writes are ignored */
415
+ qemu_log_mask(LOG_GUEST_ERROR,
416
+ "IotKit SecCtl NS block write: bad size, ignored\n");
417
+ return MEMTX_OK;
418
+ }
419
+
420
+ switch (offset) {
421
+ case A_AHBNSPPPCEXP0:
422
+ case A_AHBNSPPPCEXP1:
423
+ case A_AHBNSPPPCEXP2:
424
+ case A_AHBNSPPPCEXP3:
425
+ case A_APBNSPPPC0:
426
+ case A_APBNSPPPC1:
427
+ case A_APBNSPPPCEXP0:
428
+ case A_APBNSPPPCEXP1:
429
+ case A_APBNSPPPCEXP2:
430
+ case A_APBNSPPPCEXP3:
431
+ qemu_log_mask(LOG_UNIMP,
432
+ "IoTKit SecCtl NS block write: "
433
+ "unimplemented offset 0x%x\n", offset);
434
+ break;
435
+ case A_AHBNSPPPC0:
436
+ case A_PID4:
437
+ case A_PID5:
438
+ case A_PID6:
439
+ case A_PID7:
440
+ case A_PID0:
441
+ case A_PID1:
442
+ case A_PID2:
443
+ case A_PID3:
444
+ case A_CID0:
445
+ case A_CID1:
446
+ case A_CID2:
447
+ case A_CID3:
448
+ qemu_log_mask(LOG_GUEST_ERROR,
449
+ "IoTKit SecCtl NS block write: "
450
+ "read-only offset 0x%x\n", offset);
451
+ break;
452
+ default:
453
+ qemu_log_mask(LOG_GUEST_ERROR,
454
+ "IotKit SecCtl NS block write: bad offset 0x%x\n",
455
+ offset);
456
+ break;
457
+ }
458
+
459
+ return MEMTX_OK;
460
+}
461
+
462
+static const MemoryRegionOps iotkit_secctl_s_ops = {
463
+ .read_with_attrs = iotkit_secctl_s_read,
464
+ .write_with_attrs = iotkit_secctl_s_write,
465
+ .endianness = DEVICE_LITTLE_ENDIAN,
466
+ .valid.min_access_size = 1,
467
+ .valid.max_access_size = 4,
468
+ .impl.min_access_size = 1,
469
+ .impl.max_access_size = 4,
470
+};
471
+
472
+static const MemoryRegionOps iotkit_secctl_ns_ops = {
473
+ .read_with_attrs = iotkit_secctl_ns_read,
474
+ .write_with_attrs = iotkit_secctl_ns_write,
475
+ .endianness = DEVICE_LITTLE_ENDIAN,
476
+ .valid.min_access_size = 1,
477
+ .valid.max_access_size = 4,
478
+ .impl.min_access_size = 1,
479
+ .impl.max_access_size = 4,
480
+};
481
+
482
+static void iotkit_secctl_reset(DeviceState *dev)
483
+{
484
+
485
+}
486
+
487
+static void iotkit_secctl_init(Object *obj)
488
+{
489
+ IoTKitSecCtl *s = IOTKIT_SECCTL(obj);
490
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
491
+
492
+ memory_region_init_io(&s->s_regs, obj, &iotkit_secctl_s_ops,
493
+ s, "iotkit-secctl-s-regs", 0x1000);
494
+ memory_region_init_io(&s->ns_regs, obj, &iotkit_secctl_ns_ops,
495
+ s, "iotkit-secctl-ns-regs", 0x1000);
496
+ sysbus_init_mmio(sbd, &s->s_regs);
497
+ sysbus_init_mmio(sbd, &s->ns_regs);
498
+}
499
+
500
+static const VMStateDescription iotkit_secctl_vmstate = {
501
+ .name = "iotkit-secctl",
502
+ .version_id = 1,
503
+ .minimum_version_id = 1,
504
+ .fields = (VMStateField[]) {
505
+ VMSTATE_END_OF_LIST()
506
+ }
507
+};
508
+
509
+static void iotkit_secctl_class_init(ObjectClass *klass, void *data)
510
+{
511
+ DeviceClass *dc = DEVICE_CLASS(klass);
512
+
513
+ dc->vmsd = &iotkit_secctl_vmstate;
514
+ dc->reset = iotkit_secctl_reset;
515
+}
516
+
517
+static const TypeInfo iotkit_secctl_info = {
518
+ .name = TYPE_IOTKIT_SECCTL,
519
+ .parent = TYPE_SYS_BUS_DEVICE,
520
+ .instance_size = sizeof(IoTKitSecCtl),
521
+ .instance_init = iotkit_secctl_init,
522
+ .class_init = iotkit_secctl_class_init,
523
+};
524
+
525
+static void iotkit_secctl_register_types(void)
526
+{
527
+ type_register_static(&iotkit_secctl_info);
528
+}
529
+
530
+type_init(iotkit_secctl_register_types);
531
diff --git a/default-configs/arm-softmmu.mak b/default-configs/arm-softmmu.mak
532
index XXXXXXX..XXXXXXX 100644
533
--- a/default-configs/arm-softmmu.mak
534
+++ b/default-configs/arm-softmmu.mak
535
@@ -XXX,XX +XXX,XX @@ CONFIG_MPS2_FPGAIO=y
536
CONFIG_MPS2_SCC=y
537
538
CONFIG_TZ_PPC=y
539
+CONFIG_IOTKIT_SECCTL=y
540
541
CONFIG_VERSATILE_PCI=y
542
CONFIG_VERSATILE_I2C=y
543
diff --git a/hw/misc/trace-events b/hw/misc/trace-events
544
index XXXXXXX..XXXXXXX 100644
545
--- a/hw/misc/trace-events
546
+++ b/hw/misc/trace-events
547
@@ -XXX,XX +XXX,XX @@ tz_ppc_irq_clear(int level) "TZ PPC: int_clear = %d"
548
tz_ppc_update_irq(int level) "TZ PPC: setting irq line to %d"
549
tz_ppc_read_blocked(int n, hwaddr offset, bool secure, bool user) "TZ PPC: port %d offset 0x%" HWADDR_PRIx " read (secure %d user %d) blocked"
550
tz_ppc_write_blocked(int n, hwaddr offset, bool secure, bool user) "TZ PPC: port %d offset 0x%" HWADDR_PRIx " write (secure %d user %d) blocked"
551
+
552
+# hw/misc/iotkit-secctl.c
553
+iotkit_secctl_s_read(uint32_t offset, uint64_t data, unsigned size) "IoTKit SecCtl S regs read: offset 0x%x data 0x%" PRIx64 " size %u"
554
+iotkit_secctl_s_write(uint32_t offset, uint64_t data, unsigned size) "IoTKit SecCtl S regs write: offset 0x%x data 0x%" PRIx64 " size %u"
555
+iotkit_secctl_ns_read(uint32_t offset, uint64_t data, unsigned size) "IoTKit SecCtl NS regs read: offset 0x%x data 0x%" PRIx64 " size %u"
556
+iotkit_secctl_ns_write(uint32_t offset, uint64_t data, unsigned size) "IoTKit SecCtl NS regs write: offset 0x%x data 0x%" PRIx64 " size %u"
557
+iotkit_secctl_reset(void) "IoTKit SecCtl: reset"
558
--
559
2.16.2
560
561
diff view generated by jsdifflib
Deleted patch
1
From: Richard Henderson <richard.henderson@linaro.org>
2
1
3
Not enabled anywhere yet.
4
5
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20180228193125.20577-2-richard.henderson@linaro.org
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
---
11
target/arm/cpu.h | 1 +
12
linux-user/elfload.c | 1 +
13
2 files changed, 2 insertions(+)
14
15
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
16
index XXXXXXX..XXXXXXX 100644
17
--- a/target/arm/cpu.h
18
+++ b/target/arm/cpu.h
19
@@ -XXX,XX +XXX,XX @@ enum arm_features {
20
ARM_FEATURE_V8_SHA3, /* implements SHA3 part of v8 Crypto Extensions */
21
ARM_FEATURE_V8_SM3, /* implements SM3 part of v8 Crypto Extensions */
22
ARM_FEATURE_V8_SM4, /* implements SM4 part of v8 Crypto Extensions */
23
+ ARM_FEATURE_V8_RDM, /* implements v8.1 simd round multiply */
24
ARM_FEATURE_V8_FP16, /* implements v8.2 half-precision float */
25
};
26
27
diff --git a/linux-user/elfload.c b/linux-user/elfload.c
28
index XXXXXXX..XXXXXXX 100644
29
--- a/linux-user/elfload.c
30
+++ b/linux-user/elfload.c
31
@@ -XXX,XX +XXX,XX @@ static uint32_t get_elf_hwcap(void)
32
GET_FEATURE(ARM_FEATURE_V8_SHA512, ARM_HWCAP_A64_SHA512);
33
GET_FEATURE(ARM_FEATURE_V8_FP16,
34
ARM_HWCAP_A64_FPHP | ARM_HWCAP_A64_ASIMDHP);
35
+ GET_FEATURE(ARM_FEATURE_V8_RDM, ARM_HWCAP_A64_ASIMDRDM);
36
#undef GET_FEATURE
37
38
return hwcaps;
39
--
40
2.16.2
41
42
diff view generated by jsdifflib
Deleted patch
1
From: Richard Henderson <richard.henderson@linaro.org>
2
1
3
Include the U bit in the switches rather than testing separately.
4
5
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Message-id: 20180228193125.20577-3-richard.henderson@linaro.org
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
---
10
target/arm/translate-a64.c | 129 +++++++++++++++++++++------------------------
11
1 file changed, 61 insertions(+), 68 deletions(-)
12
13
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
14
index XXXXXXX..XXXXXXX 100644
15
--- a/target/arm/translate-a64.c
16
+++ b/target/arm/translate-a64.c
17
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
18
int index;
19
TCGv_ptr fpst;
20
21
- switch (opcode) {
22
- case 0x0: /* MLA */
23
- case 0x4: /* MLS */
24
- if (!u || is_scalar) {
25
+ switch (16 * u + opcode) {
26
+ case 0x08: /* MUL */
27
+ case 0x10: /* MLA */
28
+ case 0x14: /* MLS */
29
+ if (is_scalar) {
30
unallocated_encoding(s);
31
return;
32
}
33
break;
34
- case 0x2: /* SMLAL, SMLAL2, UMLAL, UMLAL2 */
35
- case 0x6: /* SMLSL, SMLSL2, UMLSL, UMLSL2 */
36
- case 0xa: /* SMULL, SMULL2, UMULL, UMULL2 */
37
+ case 0x02: /* SMLAL, SMLAL2 */
38
+ case 0x12: /* UMLAL, UMLAL2 */
39
+ case 0x06: /* SMLSL, SMLSL2 */
40
+ case 0x16: /* UMLSL, UMLSL2 */
41
+ case 0x0a: /* SMULL, SMULL2 */
42
+ case 0x1a: /* UMULL, UMULL2 */
43
if (is_scalar) {
44
unallocated_encoding(s);
45
return;
46
}
47
is_long = true;
48
break;
49
- case 0x3: /* SQDMLAL, SQDMLAL2 */
50
- case 0x7: /* SQDMLSL, SQDMLSL2 */
51
- case 0xb: /* SQDMULL, SQDMULL2 */
52
+ case 0x03: /* SQDMLAL, SQDMLAL2 */
53
+ case 0x07: /* SQDMLSL, SQDMLSL2 */
54
+ case 0x0b: /* SQDMULL, SQDMULL2 */
55
is_long = true;
56
- /* fall through */
57
- case 0xc: /* SQDMULH */
58
- case 0xd: /* SQRDMULH */
59
- if (u) {
60
- unallocated_encoding(s);
61
- return;
62
- }
63
break;
64
- case 0x8: /* MUL */
65
- if (u || is_scalar) {
66
- unallocated_encoding(s);
67
- return;
68
- }
69
+ case 0x0c: /* SQDMULH */
70
+ case 0x0d: /* SQRDMULH */
71
break;
72
- case 0x1: /* FMLA */
73
- case 0x5: /* FMLS */
74
- if (u) {
75
- unallocated_encoding(s);
76
- return;
77
- }
78
- /* fall through */
79
- case 0x9: /* FMUL, FMULX */
80
+ case 0x01: /* FMLA */
81
+ case 0x05: /* FMLS */
82
+ case 0x09: /* FMUL */
83
+ case 0x19: /* FMULX */
84
if (size == 1) {
85
unallocated_encoding(s);
86
return;
87
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
88
89
read_vec_element(s, tcg_op, rn, pass, MO_64);
90
91
- switch (opcode) {
92
- case 0x5: /* FMLS */
93
+ switch (16 * u + opcode) {
94
+ case 0x05: /* FMLS */
95
/* As usual for ARM, separate negation for fused multiply-add */
96
gen_helper_vfp_negd(tcg_op, tcg_op);
97
/* fall through */
98
- case 0x1: /* FMLA */
99
+ case 0x01: /* FMLA */
100
read_vec_element(s, tcg_res, rd, pass, MO_64);
101
gen_helper_vfp_muladdd(tcg_res, tcg_op, tcg_idx, tcg_res, fpst);
102
break;
103
- case 0x9: /* FMUL, FMULX */
104
- if (u) {
105
- gen_helper_vfp_mulxd(tcg_res, tcg_op, tcg_idx, fpst);
106
- } else {
107
- gen_helper_vfp_muld(tcg_res, tcg_op, tcg_idx, fpst);
108
- }
109
+ case 0x09: /* FMUL */
110
+ gen_helper_vfp_muld(tcg_res, tcg_op, tcg_idx, fpst);
111
+ break;
112
+ case 0x19: /* FMULX */
113
+ gen_helper_vfp_mulxd(tcg_res, tcg_op, tcg_idx, fpst);
114
break;
115
default:
116
g_assert_not_reached();
117
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
118
119
read_vec_element_i32(s, tcg_op, rn, pass, is_scalar ? size : MO_32);
120
121
- switch (opcode) {
122
- case 0x0: /* MLA */
123
- case 0x4: /* MLS */
124
- case 0x8: /* MUL */
125
+ switch (16 * u + opcode) {
126
+ case 0x08: /* MUL */
127
+ case 0x10: /* MLA */
128
+ case 0x14: /* MLS */
129
{
130
static NeonGenTwoOpFn * const fns[2][2] = {
131
{ gen_helper_neon_add_u16, gen_helper_neon_sub_u16 },
132
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
133
genfn(tcg_res, tcg_op, tcg_res);
134
break;
135
}
136
- case 0x5: /* FMLS */
137
- case 0x1: /* FMLA */
138
+ case 0x05: /* FMLS */
139
+ case 0x01: /* FMLA */
140
read_vec_element_i32(s, tcg_res, rd, pass,
141
is_scalar ? size : MO_32);
142
switch (size) {
143
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
144
g_assert_not_reached();
145
}
146
break;
147
- case 0x9: /* FMUL, FMULX */
148
+ case 0x09: /* FMUL */
149
switch (size) {
150
case 1:
151
- if (u) {
152
- if (is_scalar) {
153
- gen_helper_advsimd_mulxh(tcg_res, tcg_op,
154
- tcg_idx, fpst);
155
- } else {
156
- gen_helper_advsimd_mulx2h(tcg_res, tcg_op,
157
- tcg_idx, fpst);
158
- }
159
+ if (is_scalar) {
160
+ gen_helper_advsimd_mulh(tcg_res, tcg_op,
161
+ tcg_idx, fpst);
162
} else {
163
- if (is_scalar) {
164
- gen_helper_advsimd_mulh(tcg_res, tcg_op,
165
- tcg_idx, fpst);
166
- } else {
167
- gen_helper_advsimd_mul2h(tcg_res, tcg_op,
168
- tcg_idx, fpst);
169
- }
170
+ gen_helper_advsimd_mul2h(tcg_res, tcg_op,
171
+ tcg_idx, fpst);
172
}
173
break;
174
case 2:
175
- if (u) {
176
- gen_helper_vfp_mulxs(tcg_res, tcg_op, tcg_idx, fpst);
177
- } else {
178
- gen_helper_vfp_muls(tcg_res, tcg_op, tcg_idx, fpst);
179
- }
180
+ gen_helper_vfp_muls(tcg_res, tcg_op, tcg_idx, fpst);
181
break;
182
default:
183
g_assert_not_reached();
184
}
185
break;
186
- case 0xc: /* SQDMULH */
187
+ case 0x19: /* FMULX */
188
+ switch (size) {
189
+ case 1:
190
+ if (is_scalar) {
191
+ gen_helper_advsimd_mulxh(tcg_res, tcg_op,
192
+ tcg_idx, fpst);
193
+ } else {
194
+ gen_helper_advsimd_mulx2h(tcg_res, tcg_op,
195
+ tcg_idx, fpst);
196
+ }
197
+ break;
198
+ case 2:
199
+ gen_helper_vfp_mulxs(tcg_res, tcg_op, tcg_idx, fpst);
200
+ break;
201
+ default:
202
+ g_assert_not_reached();
203
+ }
204
+ break;
205
+ case 0x0c: /* SQDMULH */
206
if (size == 1) {
207
gen_helper_neon_qdmulh_s16(tcg_res, cpu_env,
208
tcg_op, tcg_idx);
209
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
210
tcg_op, tcg_idx);
211
}
212
break;
213
- case 0xd: /* SQRDMULH */
214
+ case 0x0d: /* SQRDMULH */
215
if (size == 1) {
216
gen_helper_neon_qrdmulh_s16(tcg_res, cpu_env,
217
tcg_op, tcg_idx);
218
--
219
2.16.2
220
221
diff view generated by jsdifflib
Deleted patch
1
From: Richard Henderson <richard.henderson@linaro.org>
2
1
3
The integer size check was already outside of the opcode switch;
4
move the floating-point size check outside as well. Unify the
5
size vs index adjustment between fp and integer paths.
6
7
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
8
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
9
Message-id: 20180228193125.20577-4-richard.henderson@linaro.org
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
---
12
target/arm/translate-a64.c | 65 +++++++++++++++++++++++-----------------------
13
1 file changed, 32 insertions(+), 33 deletions(-)
14
15
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
16
index XXXXXXX..XXXXXXX 100644
17
--- a/target/arm/translate-a64.c
18
+++ b/target/arm/translate-a64.c
19
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
20
case 0x05: /* FMLS */
21
case 0x09: /* FMUL */
22
case 0x19: /* FMULX */
23
- if (size == 1) {
24
- unallocated_encoding(s);
25
- return;
26
- }
27
is_fp = true;
28
break;
29
default:
30
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
31
if (is_fp) {
32
/* convert insn encoded size to TCGMemOp size */
33
switch (size) {
34
- case 2: /* single precision */
35
- size = MO_32;
36
- index = h << 1 | l;
37
- rm |= (m << 4);
38
- break;
39
- case 3: /* double precision */
40
- size = MO_64;
41
- if (l || !is_q) {
42
+ case 0: /* half-precision */
43
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_FP16)) {
44
unallocated_encoding(s);
45
return;
46
}
47
- index = h;
48
- rm |= (m << 4);
49
- break;
50
- case 0: /* half precision */
51
size = MO_16;
52
- index = h << 2 | l << 1 | m;
53
- is_fp16 = true;
54
- if (arm_dc_feature(s, ARM_FEATURE_V8_FP16)) {
55
- break;
56
- }
57
- /* fallthru */
58
- default: /* unallocated */
59
- unallocated_encoding(s);
60
- return;
61
- }
62
- } else {
63
- switch (size) {
64
- case 1:
65
- index = h << 2 | l << 1 | m;
66
break;
67
- case 2:
68
- index = h << 1 | l;
69
- rm |= (m << 4);
70
+ case MO_32: /* single precision */
71
+ case MO_64: /* double precision */
72
break;
73
default:
74
unallocated_encoding(s);
75
return;
76
}
77
+ } else {
78
+ switch (size) {
79
+ case MO_8:
80
+ case MO_64:
81
+ unallocated_encoding(s);
82
+ return;
83
+ }
84
+ }
85
+
86
+ /* Given TCGMemOp size, adjust register and indexing. */
87
+ switch (size) {
88
+ case MO_16:
89
+ index = h << 2 | l << 1 | m;
90
+ break;
91
+ case MO_32:
92
+ index = h << 1 | l;
93
+ rm |= m << 4;
94
+ break;
95
+ case MO_64:
96
+ if (l || !is_q) {
97
+ unallocated_encoding(s);
98
+ return;
99
+ }
100
+ index = h;
101
+ rm |= m << 4;
102
+ break;
103
+ default:
104
+ g_assert_not_reached();
105
}
106
107
if (!fp_access_check(s)) {
108
--
109
2.16.2
110
111
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Joe Komlodi <joe.komlodi@xilinx.com>
2
2
3
Enable it for the "any" CPU used by *-linux-user.
3
The previous naming of the configuration registers made it sound like that if
4
the bits were set the settings would be enabled, while the opposite is true.
4
5
5
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
6
Signed-off-by: Joe Komlodi <komlodi@xilinx.com>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Francisco Iglesias <francisco.iglesias@xilinx.com>
7
Message-id: 20180228193125.20577-17-richard.henderson@linaro.org
8
Message-id: 1605568264-26376-2-git-send-email-komlodi@xilinx.com
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
---
10
---
10
target/arm/cpu.c | 1 +
11
hw/block/m25p80.c | 12 ++++++------
11
target/arm/cpu64.c | 1 +
12
1 file changed, 6 insertions(+), 6 deletions(-)
12
2 files changed, 2 insertions(+)
13
13
14
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
14
diff --git a/hw/block/m25p80.c b/hw/block/m25p80.c
15
index XXXXXXX..XXXXXXX 100644
15
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/cpu.c
16
--- a/hw/block/m25p80.c
17
+++ b/target/arm/cpu.c
17
+++ b/hw/block/m25p80.c
18
@@ -XXX,XX +XXX,XX @@ static void arm_any_initfn(Object *obj)
18
@@ -XXX,XX +XXX,XX @@ typedef struct FlashPartInfo {
19
set_feature(&cpu->env, ARM_FEATURE_V8_PMULL);
19
#define VCFG_WRAP_SEQUENTIAL 0x2
20
set_feature(&cpu->env, ARM_FEATURE_CRC);
20
#define NVCFG_XIP_MODE_DISABLED (7 << 9)
21
set_feature(&cpu->env, ARM_FEATURE_V8_RDM);
21
#define NVCFG_XIP_MODE_MASK (7 << 9)
22
+ set_feature(&cpu->env, ARM_FEATURE_V8_FCMA);
22
-#define VCFG_XIP_MODE_ENABLED (1 << 3)
23
cpu->midr = 0xffffffff;
23
+#define VCFG_XIP_MODE_DISABLED (1 << 3)
24
}
24
#define CFG_DUMMY_CLK_LEN 4
25
#endif
25
#define NVCFG_DUMMY_CLK_POS 12
26
diff --git a/target/arm/cpu64.c b/target/arm/cpu64.c
26
#define VCFG_DUMMY_CLK_POS 4
27
index XXXXXXX..XXXXXXX 100644
27
@@ -XXX,XX +XXX,XX @@ typedef struct FlashPartInfo {
28
--- a/target/arm/cpu64.c
28
#define EVCFG_VPP_ACCELERATOR (1 << 3)
29
+++ b/target/arm/cpu64.c
29
#define EVCFG_RESET_HOLD_ENABLED (1 << 4)
30
@@ -XXX,XX +XXX,XX @@ static void aarch64_any_initfn(Object *obj)
30
#define NVCFG_DUAL_IO_MASK (1 << 2)
31
set_feature(&cpu->env, ARM_FEATURE_CRC);
31
-#define EVCFG_DUAL_IO_ENABLED (1 << 6)
32
set_feature(&cpu->env, ARM_FEATURE_V8_RDM);
32
+#define EVCFG_DUAL_IO_DISABLED (1 << 6)
33
set_feature(&cpu->env, ARM_FEATURE_V8_FP16);
33
#define NVCFG_QUAD_IO_MASK (1 << 3)
34
+ set_feature(&cpu->env, ARM_FEATURE_V8_FCMA);
34
-#define EVCFG_QUAD_IO_ENABLED (1 << 7)
35
cpu->ctr = 0x80038003; /* 32 byte I and D cacheline size, VIPT icache */
35
+#define EVCFG_QUAD_IO_DISABLED (1 << 7)
36
cpu->dcz_blocksize = 7; /* 512 bytes */
36
#define NVCFG_4BYTE_ADDR_MASK (1 << 0)
37
}
37
#define NVCFG_LOWER_SEGMENT_MASK (1 << 1)
38
39
@@ -XXX,XX +XXX,XX @@ static void reset_memory(Flash *s)
40
s->volatile_cfg |= VCFG_WRAP_SEQUENTIAL;
41
if ((s->nonvolatile_cfg & NVCFG_XIP_MODE_MASK)
42
!= NVCFG_XIP_MODE_DISABLED) {
43
- s->volatile_cfg |= VCFG_XIP_MODE_ENABLED;
44
+ s->volatile_cfg |= VCFG_XIP_MODE_DISABLED;
45
}
46
s->volatile_cfg |= deposit32(s->volatile_cfg,
47
VCFG_DUMMY_CLK_POS,
48
@@ -XXX,XX +XXX,XX @@ static void reset_memory(Flash *s)
49
s->enh_volatile_cfg |= EVCFG_VPP_ACCELERATOR;
50
s->enh_volatile_cfg |= EVCFG_RESET_HOLD_ENABLED;
51
if (s->nonvolatile_cfg & NVCFG_DUAL_IO_MASK) {
52
- s->enh_volatile_cfg |= EVCFG_DUAL_IO_ENABLED;
53
+ s->enh_volatile_cfg |= EVCFG_DUAL_IO_DISABLED;
54
}
55
if (s->nonvolatile_cfg & NVCFG_QUAD_IO_MASK) {
56
- s->enh_volatile_cfg |= EVCFG_QUAD_IO_ENABLED;
57
+ s->enh_volatile_cfg |= EVCFG_QUAD_IO_DISABLED;
58
}
59
if (!(s->nonvolatile_cfg & NVCFG_4BYTE_ADDR_MASK)) {
60
s->four_bytes_address_mode = true;
38
--
61
--
39
2.16.2
62
2.20.1
40
63
41
64
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Joe Komlodi <joe.komlodi@xilinx.com>
2
2
3
Happily, the bits are in the same places compared to a32.
3
VCFG XIP is set (disabled) when the NVCFG XIP bits are all set (disabled).
4
4
5
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
5
Signed-off-by: Joe Komlodi <komlodi@xilinx.com>
6
Message-id: 20180228193125.20577-16-richard.henderson@linaro.org
6
Reviewed-by: Francisco Iglesias <francisco.iglesias@xilinx.com>
7
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Message-id: 1605568264-26376-3-git-send-email-komlodi@xilinx.com
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
---
9
---
10
target/arm/translate.c | 14 +++++++++++++-
10
hw/block/m25p80.c | 2 +-
11
1 file changed, 13 insertions(+), 1 deletion(-)
11
1 file changed, 1 insertion(+), 1 deletion(-)
12
12
13
diff --git a/target/arm/translate.c b/target/arm/translate.c
13
diff --git a/hw/block/m25p80.c b/hw/block/m25p80.c
14
index XXXXXXX..XXXXXXX 100644
14
index XXXXXXX..XXXXXXX 100644
15
--- a/target/arm/translate.c
15
--- a/hw/block/m25p80.c
16
+++ b/target/arm/translate.c
16
+++ b/hw/block/m25p80.c
17
@@ -XXX,XX +XXX,XX @@ static void disas_thumb2_insn(DisasContext *s, uint32_t insn)
17
@@ -XXX,XX +XXX,XX @@ static void reset_memory(Flash *s)
18
default_exception_el(s));
18
s->volatile_cfg |= VCFG_DUMMY;
19
break;
19
s->volatile_cfg |= VCFG_WRAP_SEQUENTIAL;
20
if ((s->nonvolatile_cfg & NVCFG_XIP_MODE_MASK)
21
- != NVCFG_XIP_MODE_DISABLED) {
22
+ == NVCFG_XIP_MODE_DISABLED) {
23
s->volatile_cfg |= VCFG_XIP_MODE_DISABLED;
20
}
24
}
21
- if (((insn >> 24) & 3) == 3) {
25
s->volatile_cfg |= deposit32(s->volatile_cfg,
22
+ if ((insn & 0xfe000a00) == 0xfc000800
23
+ && arm_dc_feature(s, ARM_FEATURE_V8)) {
24
+ /* The Thumb2 and ARM encodings are identical. */
25
+ if (disas_neon_insn_3same_ext(s, insn)) {
26
+ goto illegal_op;
27
+ }
28
+ } else if ((insn & 0xff000a00) == 0xfe000800
29
+ && arm_dc_feature(s, ARM_FEATURE_V8)) {
30
+ /* The Thumb2 and ARM encodings are identical. */
31
+ if (disas_neon_insn_2reg_scalar_ext(s, insn)) {
32
+ goto illegal_op;
33
+ }
34
+ } else if (((insn >> 24) & 3) == 3) {
35
/* Translate into the equivalent ARM encoding. */
36
insn = (insn & 0xe2ffffff) | ((insn & (1 << 28)) >> 4) | (1 << 28);
37
if (disas_neon_data_insn(s, insn)) {
38
--
26
--
39
2.16.2
27
2.20.1
40
28
41
29
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Joe Komlodi <joe.komlodi@xilinx.com>
2
2
3
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
3
Some Numonyx flash commands cannot be executed in DIO and QIO mode, such as
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
trying to do DPP or DOR when in QIO mode.
5
Message-id: 20180228193125.20577-5-richard.henderson@linaro.org
5
6
Signed-off-by: Joe Komlodi <komlodi@xilinx.com>
7
Reviewed-by: Francisco Iglesias <francisco.iglesias@xilinx.com>
8
Message-id: 1605568264-26376-4-git-send-email-komlodi@xilinx.com
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/Makefile.objs | 2 +-
11
hw/block/m25p80.c | 114 ++++++++++++++++++++++++++++++++++++++--------
9
target/arm/helper.h | 4 ++
12
1 file changed, 95 insertions(+), 19 deletions(-)
10
target/arm/translate-a64.c | 84 ++++++++++++++++++++++++++++++++++
11
target/arm/vec_helper.c | 109 +++++++++++++++++++++++++++++++++++++++++++++
12
4 files changed, 198 insertions(+), 1 deletion(-)
13
create mode 100644 target/arm/vec_helper.c
14
13
15
diff --git a/target/arm/Makefile.objs b/target/arm/Makefile.objs
14
diff --git a/hw/block/m25p80.c b/hw/block/m25p80.c
16
index XXXXXXX..XXXXXXX 100644
15
index XXXXXXX..XXXXXXX 100644
17
--- a/target/arm/Makefile.objs
16
--- a/hw/block/m25p80.c
18
+++ b/target/arm/Makefile.objs
17
+++ b/hw/block/m25p80.c
19
@@ -XXX,XX +XXX,XX @@ obj-$(call land,$(CONFIG_KVM),$(call lnot,$(TARGET_AARCH64))) += kvm32.o
18
@@ -XXX,XX +XXX,XX @@ typedef enum {
20
obj-$(call land,$(CONFIG_KVM),$(TARGET_AARCH64)) += kvm64.o
19
MAN_GENERIC,
21
obj-$(call lnot,$(CONFIG_KVM)) += kvm-stub.o
20
} Manufacturer;
22
obj-y += translate.o op_helper.o helper.o cpu.o
21
23
-obj-y += neon_helper.o iwmmxt_helper.o
22
+typedef enum {
24
+obj-y += neon_helper.o iwmmxt_helper.o vec_helper.o
23
+ MODE_STD = 0,
25
obj-y += gdbstub.o
24
+ MODE_DIO = 1,
26
obj-$(TARGET_AARCH64) += cpu64.o translate-a64.o helper-a64.o gdbstub64.o
25
+ MODE_QIO = 2
27
obj-y += crypto_helper.o
26
+} SPIMode;
28
diff --git a/target/arm/helper.h b/target/arm/helper.h
27
+
29
index XXXXXXX..XXXXXXX 100644
28
#define M25P80_INTERNAL_DATA_BUFFER_SZ 16
30
--- a/target/arm/helper.h
29
31
+++ b/target/arm/helper.h
30
struct Flash {
32
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_1(neon_rbit_u8, TCG_CALL_NO_RWG_SE, i32, i32)
31
@@ -XXX,XX +XXX,XX @@ static void reset_memory(Flash *s)
33
32
trace_m25p80_reset_done(s);
34
DEF_HELPER_3(neon_qdmulh_s16, i32, env, i32, i32)
35
DEF_HELPER_3(neon_qrdmulh_s16, i32, env, i32, i32)
36
+DEF_HELPER_4(neon_qrdmlah_s16, i32, env, i32, i32, i32)
37
+DEF_HELPER_4(neon_qrdmlsh_s16, i32, env, i32, i32, i32)
38
DEF_HELPER_3(neon_qdmulh_s32, i32, env, i32, i32)
39
DEF_HELPER_3(neon_qrdmulh_s32, i32, env, i32, i32)
40
+DEF_HELPER_4(neon_qrdmlah_s32, i32, env, s32, s32, s32)
41
+DEF_HELPER_4(neon_qrdmlsh_s32, i32, env, s32, s32, s32)
42
43
DEF_HELPER_1(neon_narrow_u8, i32, i64)
44
DEF_HELPER_1(neon_narrow_u16, i32, i64)
45
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
46
index XXXXXXX..XXXXXXX 100644
47
--- a/target/arm/translate-a64.c
48
+++ b/target/arm/translate-a64.c
49
@@ -XXX,XX +XXX,XX @@ static void disas_simd_scalar_three_reg_same_fp16(DisasContext *s,
50
tcg_temp_free_ptr(fpst);
51
}
33
}
52
34
53
+/* AdvSIMD scalar three same extra
35
+static uint8_t numonyx_mode(Flash *s)
54
+ * 31 30 29 28 24 23 22 21 20 16 15 14 11 10 9 5 4 0
55
+ * +-----+---+-----------+------+---+------+---+--------+---+----+----+
56
+ * | 0 1 | U | 1 1 1 1 0 | size | 0 | Rm | 1 | opcode | 1 | Rn | Rd |
57
+ * +-----+---+-----------+------+---+------+---+--------+---+----+----+
58
+ */
59
+static void disas_simd_scalar_three_reg_same_extra(DisasContext *s,
60
+ uint32_t insn)
61
+{
36
+{
62
+ int rd = extract32(insn, 0, 5);
37
+ if (!(s->enh_volatile_cfg & EVCFG_QUAD_IO_DISABLED)) {
63
+ int rn = extract32(insn, 5, 5);
38
+ return MODE_QIO;
64
+ int opcode = extract32(insn, 11, 4);
39
+ } else if (!(s->enh_volatile_cfg & EVCFG_DUAL_IO_DISABLED)) {
65
+ int rm = extract32(insn, 16, 5);
40
+ return MODE_DIO;
66
+ int size = extract32(insn, 22, 2);
41
+ } else {
67
+ bool u = extract32(insn, 29, 1);
42
+ return MODE_STD;
68
+ TCGv_i32 ele1, ele2, ele3;
43
+ }
69
+ TCGv_i64 res;
44
+}
70
+ int feature;
71
+
45
+
72
+ switch (u * 16 + opcode) {
46
static void decode_fast_read_cmd(Flash *s)
73
+ case 0x10: /* SQRDMLAH (vector) */
47
{
74
+ case 0x11: /* SQRDMLSH (vector) */
48
s->needed_bytes = get_addr_length(s);
75
+ if (size != 1 && size != 2) {
49
@@ -XXX,XX +XXX,XX @@ static void decode_new_cmd(Flash *s, uint32_t value)
76
+ unallocated_encoding(s);
50
case ERASE4_32K:
77
+ return;
51
case ERASE_SECTOR:
78
+ }
52
case ERASE4_SECTOR:
79
+ feature = ARM_FEATURE_V8_RDM;
53
- case READ:
80
+ break;
54
- case READ4:
81
+ default:
55
- case DPP:
82
+ unallocated_encoding(s);
56
- case QPP:
83
+ return;
57
- case QPP_4:
84
+ }
58
case PP:
85
+ if (!arm_dc_feature(s, feature)) {
59
case PP4:
86
+ unallocated_encoding(s);
60
- case PP4_4:
87
+ return;
61
case DIE_ERASE:
88
+ }
62
case RDID_90:
89
+ if (!fp_access_check(s)) {
63
case RDID_AB:
90
+ return;
64
@@ -XXX,XX +XXX,XX @@ static void decode_new_cmd(Flash *s, uint32_t value)
91
+ }
65
s->len = 0;
92
+
66
s->state = STATE_COLLECTING_DATA;
93
+ /* Do a single operation on the lowest element in the vector.
67
break;
94
+ * We use the standard Neon helpers and rely on 0 OP 0 == 0
68
+ case READ:
95
+ * with no side effects for all these operations.
69
+ case READ4:
96
+ * OPTME: special-purpose helpers would avoid doing some
70
+ if (get_man(s) != MAN_NUMONYX || numonyx_mode(s) == MODE_STD) {
97
+ * unnecessary work in the helper for the 16 bit cases.
71
+ s->needed_bytes = get_addr_length(s);
98
+ */
72
+ s->pos = 0;
99
+ ele1 = tcg_temp_new_i32();
73
+ s->len = 0;
100
+ ele2 = tcg_temp_new_i32();
74
+ s->state = STATE_COLLECTING_DATA;
101
+ ele3 = tcg_temp_new_i32();
102
+
103
+ read_vec_element_i32(s, ele1, rn, 0, size);
104
+ read_vec_element_i32(s, ele2, rm, 0, size);
105
+ read_vec_element_i32(s, ele3, rd, 0, size);
106
+
107
+ switch (opcode) {
108
+ case 0x0: /* SQRDMLAH */
109
+ if (size == 1) {
110
+ gen_helper_neon_qrdmlah_s16(ele3, cpu_env, ele1, ele2, ele3);
111
+ } else {
75
+ } else {
112
+ gen_helper_neon_qrdmlah_s32(ele3, cpu_env, ele1, ele2, ele3);
76
+ qemu_log_mask(LOG_GUEST_ERROR, "M25P80: Cannot execute cmd %x in "
77
+ "DIO or QIO mode\n", s->cmd_in_progress);
113
+ }
78
+ }
114
+ break;
79
+ break;
115
+ case 0x1: /* SQRDMLSH */
80
+ case DPP:
116
+ if (size == 1) {
81
+ if (get_man(s) != MAN_NUMONYX || numonyx_mode(s) != MODE_QIO) {
117
+ gen_helper_neon_qrdmlsh_s16(ele3, cpu_env, ele1, ele2, ele3);
82
+ s->needed_bytes = get_addr_length(s);
83
+ s->pos = 0;
84
+ s->len = 0;
85
+ s->state = STATE_COLLECTING_DATA;
118
+ } else {
86
+ } else {
119
+ gen_helper_neon_qrdmlsh_s32(ele3, cpu_env, ele1, ele2, ele3);
87
+ qemu_log_mask(LOG_GUEST_ERROR, "M25P80: Cannot execute cmd %x in "
88
+ "QIO mode\n", s->cmd_in_progress);
120
+ }
89
+ }
121
+ break;
90
+ break;
122
+ default:
91
+ case QPP:
123
+ g_assert_not_reached();
92
+ case QPP_4:
124
+ }
93
+ case PP4_4:
125
+ tcg_temp_free_i32(ele1);
94
+ if (get_man(s) != MAN_NUMONYX || numonyx_mode(s) != MODE_DIO) {
126
+ tcg_temp_free_i32(ele2);
95
+ s->needed_bytes = get_addr_length(s);
127
+
96
+ s->pos = 0;
128
+ res = tcg_temp_new_i64();
97
+ s->len = 0;
129
+ tcg_gen_extu_i32_i64(res, ele3);
98
+ s->state = STATE_COLLECTING_DATA;
130
+ tcg_temp_free_i32(ele3);
99
+ } else {
131
+
100
+ qemu_log_mask(LOG_GUEST_ERROR, "M25P80: Cannot execute cmd %x in "
132
+ write_fp_dreg(s, rd, res);
101
+ "DIO mode\n", s->cmd_in_progress);
133
+ tcg_temp_free_i64(res);
102
+ }
134
+}
103
+ break;
135
+
104
136
static void handle_2misc_64(DisasContext *s, int opcode, bool u,
105
case FAST_READ:
137
TCGv_i64 tcg_rd, TCGv_i64 tcg_rn,
106
case FAST_READ4:
138
TCGv_i32 tcg_rmode, TCGv_ptr tcg_fpstatus)
107
+ decode_fast_read_cmd(s);
139
@@ -XXX,XX +XXX,XX @@ static const AArch64DecodeTable data_proc_simd[] = {
108
+ break;
140
{ 0x0e000800, 0xbf208c00, disas_simd_zip_trn },
109
case DOR:
141
{ 0x2e000000, 0xbf208400, disas_simd_ext },
110
case DOR4:
142
{ 0x5e200400, 0xdf200400, disas_simd_scalar_three_reg_same },
111
+ if (get_man(s) != MAN_NUMONYX || numonyx_mode(s) != MODE_QIO) {
143
+ { 0x5e008400, 0xdf208400, disas_simd_scalar_three_reg_same_extra },
112
+ decode_fast_read_cmd(s);
144
{ 0x5e200000, 0xdf200c00, disas_simd_scalar_three_reg_diff },
113
+ } else {
145
{ 0x5e200800, 0xdf3e0c00, disas_simd_scalar_two_reg_misc },
114
+ qemu_log_mask(LOG_GUEST_ERROR, "M25P80: Cannot execute cmd %x in "
146
{ 0x5e300800, 0xdf3e0c00, disas_simd_scalar_pairwise },
115
+ "QIO mode\n", s->cmd_in_progress);
147
diff --git a/target/arm/vec_helper.c b/target/arm/vec_helper.c
116
+ }
148
new file mode 100644
117
+ break;
149
index XXXXXXX..XXXXXXX
118
case QOR:
150
--- /dev/null
119
case QOR4:
151
+++ b/target/arm/vec_helper.c
120
- decode_fast_read_cmd(s);
152
@@ -XXX,XX +XXX,XX @@
121
+ if (get_man(s) != MAN_NUMONYX || numonyx_mode(s) != MODE_DIO) {
153
+/*
122
+ decode_fast_read_cmd(s);
154
+ * ARM AdvSIMD / SVE Vector Operations
123
+ } else {
155
+ *
124
+ qemu_log_mask(LOG_GUEST_ERROR, "M25P80: Cannot execute cmd %x in "
156
+ * Copyright (c) 2018 Linaro
125
+ "DIO mode\n", s->cmd_in_progress);
157
+ *
126
+ }
158
+ * This library is free software; you can redistribute it and/or
127
break;
159
+ * modify it under the terms of the GNU Lesser General Public
128
160
+ * License as published by the Free Software Foundation; either
129
case DIOR:
161
+ * version 2 of the License, or (at your option) any later version.
130
case DIOR4:
162
+ *
131
- decode_dio_read_cmd(s);
163
+ * This library is distributed in the hope that it will be useful,
132
+ if (get_man(s) != MAN_NUMONYX || numonyx_mode(s) != MODE_QIO) {
164
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
133
+ decode_dio_read_cmd(s);
165
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
134
+ } else {
166
+ * Lesser General Public License for more details.
135
+ qemu_log_mask(LOG_GUEST_ERROR, "M25P80: Cannot execute cmd %x in "
167
+ *
136
+ "QIO mode\n", s->cmd_in_progress);
168
+ * You should have received a copy of the GNU Lesser General Public
137
+ }
169
+ * License along with this library; if not, see <http://www.gnu.org/licenses/>.
138
break;
170
+ */
139
171
+
140
case QIOR:
172
+#include "qemu/osdep.h"
141
case QIOR4:
173
+#include "cpu.h"
142
- decode_qio_read_cmd(s);
174
+#include "exec/exec-all.h"
143
+ if (get_man(s) != MAN_NUMONYX || numonyx_mode(s) != MODE_DIO) {
175
+#include "exec/helper-proto.h"
144
+ decode_qio_read_cmd(s);
176
+#include "tcg/tcg-gvec-desc.h"
145
+ } else {
177
+
146
+ qemu_log_mask(LOG_GUEST_ERROR, "M25P80: Cannot execute cmd %x in "
178
+
147
+ "DIO mode\n", s->cmd_in_progress);
179
+#define SET_QC() env->vfp.xregs[ARM_VFP_FPSCR] |= CPSR_Q
148
+ }
180
+
149
break;
181
+/* Signed saturating rounding doubling multiply-accumulate high half, 16-bit */
150
182
+static uint16_t inl_qrdmlah_s16(CPUARMState *env, int16_t src1,
151
case WRSR:
183
+ int16_t src2, int16_t src3)
152
@@ -XXX,XX +XXX,XX @@ static void decode_new_cmd(Flash *s, uint32_t value)
184
+{
153
break;
185
+ /* Simplify:
154
186
+ * = ((a3 << 16) + ((e1 * e2) << 1) + (1 << 15)) >> 16
155
case JEDEC_READ:
187
+ * = ((a3 << 15) + (e1 * e2) + (1 << 14)) >> 15
156
- trace_m25p80_populated_jedec(s);
188
+ */
157
- for (i = 0; i < s->pi->id_len; i++) {
189
+ int32_t ret = (int32_t)src1 * src2;
158
- s->data[i] = s->pi->id[i];
190
+ ret = ((int32_t)src3 << 15) + ret + (1 << 14);
159
- }
191
+ ret >>= 15;
160
- for (; i < SPI_NOR_MAX_ID_LEN; i++) {
192
+ if (ret != (int16_t)ret) {
161
- s->data[i] = 0;
193
+ SET_QC();
162
- }
194
+ ret = (ret < 0 ? -0x8000 : 0x7fff);
163
+ if (get_man(s) != MAN_NUMONYX || numonyx_mode(s) == MODE_STD) {
195
+ }
164
+ trace_m25p80_populated_jedec(s);
196
+ return ret;
165
+ for (i = 0; i < s->pi->id_len; i++) {
197
+}
166
+ s->data[i] = s->pi->id[i];
198
+
167
+ }
199
+uint32_t HELPER(neon_qrdmlah_s16)(CPUARMState *env, uint32_t src1,
168
+ for (; i < SPI_NOR_MAX_ID_LEN; i++) {
200
+ uint32_t src2, uint32_t src3)
169
+ s->data[i] = 0;
201
+{
170
+ }
202
+ uint16_t e1 = inl_qrdmlah_s16(env, src1, src2, src3);
171
203
+ uint16_t e2 = inl_qrdmlah_s16(env, src1 >> 16, src2 >> 16, src3 >> 16);
172
- s->len = SPI_NOR_MAX_ID_LEN;
204
+ return deposit32(e1, 16, 16, e2);
173
- s->pos = 0;
205
+}
174
- s->state = STATE_READING_DATA;
206
+
175
+ s->len = SPI_NOR_MAX_ID_LEN;
207
+/* Signed saturating rounding doubling multiply-subtract high half, 16-bit */
176
+ s->pos = 0;
208
+static uint16_t inl_qrdmlsh_s16(CPUARMState *env, int16_t src1,
177
+ s->state = STATE_READING_DATA;
209
+ int16_t src2, int16_t src3)
178
+ } else {
210
+{
179
+ qemu_log_mask(LOG_GUEST_ERROR, "M25P80: Cannot execute JEDEC read "
211
+ /* Similarly, using subtraction:
180
+ "in DIO or QIO mode\n");
212
+ * = ((a3 << 16) - ((e1 * e2) << 1) + (1 << 15)) >> 16
181
+ }
213
+ * = ((a3 << 15) - (e1 * e2) + (1 << 14)) >> 15
182
break;
214
+ */
183
215
+ int32_t ret = (int32_t)src1 * src2;
184
case RDCR:
216
+ ret = ((int32_t)src3 << 15) - ret + (1 << 14);
217
+ ret >>= 15;
218
+ if (ret != (int16_t)ret) {
219
+ SET_QC();
220
+ ret = (ret < 0 ? -0x8000 : 0x7fff);
221
+ }
222
+ return ret;
223
+}
224
+
225
+uint32_t HELPER(neon_qrdmlsh_s16)(CPUARMState *env, uint32_t src1,
226
+ uint32_t src2, uint32_t src3)
227
+{
228
+ uint16_t e1 = inl_qrdmlsh_s16(env, src1, src2, src3);
229
+ uint16_t e2 = inl_qrdmlsh_s16(env, src1 >> 16, src2 >> 16, src3 >> 16);
230
+ return deposit32(e1, 16, 16, e2);
231
+}
232
+
233
+/* Signed saturating rounding doubling multiply-accumulate high half, 32-bit */
234
+uint32_t HELPER(neon_qrdmlah_s32)(CPUARMState *env, int32_t src1,
235
+ int32_t src2, int32_t src3)
236
+{
237
+ /* Simplify similarly to int_qrdmlah_s16 above. */
238
+ int64_t ret = (int64_t)src1 * src2;
239
+ ret = ((int64_t)src3 << 31) + ret + (1 << 30);
240
+ ret >>= 31;
241
+ if (ret != (int32_t)ret) {
242
+ SET_QC();
243
+ ret = (ret < 0 ? INT32_MIN : INT32_MAX);
244
+ }
245
+ return ret;
246
+}
247
+
248
+/* Signed saturating rounding doubling multiply-subtract high half, 32-bit */
249
+uint32_t HELPER(neon_qrdmlsh_s32)(CPUARMState *env, int32_t src1,
250
+ int32_t src2, int32_t src3)
251
+{
252
+ /* Simplify similarly to int_qrdmlsh_s16 above. */
253
+ int64_t ret = (int64_t)src1 * src2;
254
+ ret = ((int64_t)src3 << 31) - ret + (1 << 30);
255
+ ret >>= 31;
256
+ if (ret != (int32_t)ret) {
257
+ SET_QC();
258
+ ret = (ret < 0 ? INT32_MIN : INT32_MAX);
259
+ }
260
+ return ret;
261
+}
262
--
185
--
263
2.16.2
186
2.20.1
264
187
265
188
diff view generated by jsdifflib
Deleted patch
1
From: Richard Henderson <richard.henderson@linaro.org>
2
1
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
5
Message-id: 20180228193125.20577-8-richard.henderson@linaro.org
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
8
target/arm/translate.c | 86 +++++++++++++++++++++++++++++++++++++++-----------
9
1 file changed, 67 insertions(+), 19 deletions(-)
10
11
diff --git a/target/arm/translate.c b/target/arm/translate.c
12
index XXXXXXX..XXXXXXX 100644
13
--- a/target/arm/translate.c
14
+++ b/target/arm/translate.c
15
@@ -XXX,XX +XXX,XX @@
16
#include "disas/disas.h"
17
#include "exec/exec-all.h"
18
#include "tcg-op.h"
19
+#include "tcg-op-gvec.h"
20
#include "qemu/log.h"
21
#include "qemu/bitops.h"
22
#include "arm_ldst.h"
23
@@ -XXX,XX +XXX,XX @@ static void gen_neon_narrow_op(int op, int u, int size,
24
#define NEON_3R_VPMAX 20
25
#define NEON_3R_VPMIN 21
26
#define NEON_3R_VQDMULH_VQRDMULH 22
27
-#define NEON_3R_VPADD 23
28
+#define NEON_3R_VPADD_VQRDMLAH 23
29
#define NEON_3R_SHA 24 /* SHA1C,SHA1P,SHA1M,SHA1SU0,SHA256H{2},SHA256SU1 */
30
-#define NEON_3R_VFM 25 /* VFMA, VFMS : float fused multiply-add */
31
+#define NEON_3R_VFM_VQRDMLSH 25 /* VFMA, VFMS, VQRDMLSH */
32
#define NEON_3R_FLOAT_ARITH 26 /* float VADD, VSUB, VPADD, VABD */
33
#define NEON_3R_FLOAT_MULTIPLY 27 /* float VMLA, VMLS, VMUL */
34
#define NEON_3R_FLOAT_CMP 28 /* float VCEQ, VCGE, VCGT */
35
@@ -XXX,XX +XXX,XX @@ static const uint8_t neon_3r_sizes[] = {
36
[NEON_3R_VPMAX] = 0x7,
37
[NEON_3R_VPMIN] = 0x7,
38
[NEON_3R_VQDMULH_VQRDMULH] = 0x6,
39
- [NEON_3R_VPADD] = 0x7,
40
+ [NEON_3R_VPADD_VQRDMLAH] = 0x7,
41
[NEON_3R_SHA] = 0xf, /* size field encodes op type */
42
- [NEON_3R_VFM] = 0x5, /* size bit 1 encodes op */
43
+ [NEON_3R_VFM_VQRDMLSH] = 0x7, /* For VFM, size bit 1 encodes op */
44
[NEON_3R_FLOAT_ARITH] = 0x5, /* size bit 1 encodes op */
45
[NEON_3R_FLOAT_MULTIPLY] = 0x5, /* size bit 1 encodes op */
46
[NEON_3R_FLOAT_CMP] = 0x5, /* size bit 1 encodes op */
47
@@ -XXX,XX +XXX,XX @@ static const uint8_t neon_2rm_sizes[] = {
48
[NEON_2RM_VCVT_UF] = 0x4,
49
};
50
51
+
52
+/* Expand v8.1 simd helper. */
53
+static int do_v81_helper(DisasContext *s, gen_helper_gvec_3_ptr *fn,
54
+ int q, int rd, int rn, int rm)
55
+{
56
+ if (arm_dc_feature(s, ARM_FEATURE_V8_RDM)) {
57
+ int opr_sz = (1 + q) * 8;
58
+ tcg_gen_gvec_3_ptr(vfp_reg_offset(1, rd),
59
+ vfp_reg_offset(1, rn),
60
+ vfp_reg_offset(1, rm), cpu_env,
61
+ opr_sz, opr_sz, 0, fn);
62
+ return 0;
63
+ }
64
+ return 1;
65
+}
66
+
67
/* Translate a NEON data processing instruction. Return nonzero if the
68
instruction is invalid.
69
We process data in a mixture of 32-bit and 64-bit chunks.
70
@@ -XXX,XX +XXX,XX @@ static int disas_neon_data_insn(DisasContext *s, uint32_t insn)
71
if (q && ((rd | rn | rm) & 1)) {
72
return 1;
73
}
74
- /*
75
- * The SHA-1/SHA-256 3-register instructions require special treatment
76
- * here, as their size field is overloaded as an op type selector, and
77
- * they all consume their input in a single pass.
78
- */
79
- if (op == NEON_3R_SHA) {
80
+ switch (op) {
81
+ case NEON_3R_SHA:
82
+ /* The SHA-1/SHA-256 3-register instructions require special
83
+ * treatment here, as their size field is overloaded as an
84
+ * op type selector, and they all consume their input in a
85
+ * single pass.
86
+ */
87
if (!q) {
88
return 1;
89
}
90
@@ -XXX,XX +XXX,XX @@ static int disas_neon_data_insn(DisasContext *s, uint32_t insn)
91
tcg_temp_free_ptr(ptr2);
92
tcg_temp_free_ptr(ptr3);
93
return 0;
94
+
95
+ case NEON_3R_VPADD_VQRDMLAH:
96
+ if (!u) {
97
+ break; /* VPADD */
98
+ }
99
+ /* VQRDMLAH */
100
+ switch (size) {
101
+ case 1:
102
+ return do_v81_helper(s, gen_helper_gvec_qrdmlah_s16,
103
+ q, rd, rn, rm);
104
+ case 2:
105
+ return do_v81_helper(s, gen_helper_gvec_qrdmlah_s32,
106
+ q, rd, rn, rm);
107
+ }
108
+ return 1;
109
+
110
+ case NEON_3R_VFM_VQRDMLSH:
111
+ if (!u) {
112
+ /* VFM, VFMS */
113
+ if (size == 1) {
114
+ return 1;
115
+ }
116
+ break;
117
+ }
118
+ /* VQRDMLSH */
119
+ switch (size) {
120
+ case 1:
121
+ return do_v81_helper(s, gen_helper_gvec_qrdmlsh_s16,
122
+ q, rd, rn, rm);
123
+ case 2:
124
+ return do_v81_helper(s, gen_helper_gvec_qrdmlsh_s32,
125
+ q, rd, rn, rm);
126
+ }
127
+ return 1;
128
}
129
if (size == 3 && op != NEON_3R_LOGIC) {
130
/* 64-bit element instructions. */
131
@@ -XXX,XX +XXX,XX @@ static int disas_neon_data_insn(DisasContext *s, uint32_t insn)
132
rm = rtmp;
133
}
134
break;
135
- case NEON_3R_VPADD:
136
- if (u) {
137
- return 1;
138
- }
139
- /* Fall through */
140
+ case NEON_3R_VPADD_VQRDMLAH:
141
case NEON_3R_VPMAX:
142
case NEON_3R_VPMIN:
143
pairwise = 1;
144
@@ -XXX,XX +XXX,XX @@ static int disas_neon_data_insn(DisasContext *s, uint32_t insn)
145
return 1;
146
}
147
break;
148
- case NEON_3R_VFM:
149
- if (!arm_dc_feature(s, ARM_FEATURE_VFP4) || u) {
150
+ case NEON_3R_VFM_VQRDMLSH:
151
+ if (!arm_dc_feature(s, ARM_FEATURE_VFP4)) {
152
return 1;
153
}
154
break;
155
@@ -XXX,XX +XXX,XX @@ static int disas_neon_data_insn(DisasContext *s, uint32_t insn)
156
}
157
}
158
break;
159
- case NEON_3R_VPADD:
160
+ case NEON_3R_VPADD_VQRDMLAH:
161
switch (size) {
162
case 0: gen_helper_neon_padd_u8(tmp, tmp, tmp2); break;
163
case 1: gen_helper_neon_padd_u16(tmp, tmp, tmp2); break;
164
@@ -XXX,XX +XXX,XX @@ static int disas_neon_data_insn(DisasContext *s, uint32_t insn)
165
}
166
}
167
break;
168
- case NEON_3R_VFM:
169
+ case NEON_3R_VFM_VQRDMLSH:
170
{
171
/* VFMA, VFMS: fused multiply-add */
172
TCGv_ptr fpstatus = get_fpstatus_ptr(1);
173
--
174
2.16.2
175
176
diff view generated by jsdifflib
Deleted patch
1
From: Richard Henderson <richard.henderson@linaro.org>
2
1
3
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
5
Message-id: 20180228193125.20577-9-richard.henderson@linaro.org
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
8
target/arm/translate.c | 46 ++++++++++++++++++++++++++++++++++++++++++----
9
1 file changed, 42 insertions(+), 4 deletions(-)
10
11
diff --git a/target/arm/translate.c b/target/arm/translate.c
12
index XXXXXXX..XXXXXXX 100644
13
--- a/target/arm/translate.c
14
+++ b/target/arm/translate.c
15
@@ -XXX,XX +XXX,XX @@ static const char *regnames[] =
16
{ "r0", "r1", "r2", "r3", "r4", "r5", "r6", "r7",
17
"r8", "r9", "r10", "r11", "r12", "r13", "r14", "pc" };
18
19
+/* Function prototypes for gen_ functions calling Neon helpers. */
20
+typedef void NeonGenThreeOpEnvFn(TCGv_i32, TCGv_env, TCGv_i32,
21
+ TCGv_i32, TCGv_i32);
22
+
23
/* initialize TCG globals. */
24
void arm_translate_init(void)
25
{
26
@@ -XXX,XX +XXX,XX @@ static int disas_neon_data_insn(DisasContext *s, uint32_t insn)
27
}
28
neon_store_reg64(cpu_V0, rd + pass);
29
}
30
-
31
-
32
break;
33
- default: /* 14 and 15 are RESERVED */
34
- return 1;
35
+ case 14: /* VQRDMLAH scalar */
36
+ case 15: /* VQRDMLSH scalar */
37
+ {
38
+ NeonGenThreeOpEnvFn *fn;
39
+
40
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_RDM)) {
41
+ return 1;
42
+ }
43
+ if (u && ((rd | rn) & 1)) {
44
+ return 1;
45
+ }
46
+ if (op == 14) {
47
+ if (size == 1) {
48
+ fn = gen_helper_neon_qrdmlah_s16;
49
+ } else {
50
+ fn = gen_helper_neon_qrdmlah_s32;
51
+ }
52
+ } else {
53
+ if (size == 1) {
54
+ fn = gen_helper_neon_qrdmlsh_s16;
55
+ } else {
56
+ fn = gen_helper_neon_qrdmlsh_s32;
57
+ }
58
+ }
59
+
60
+ tmp2 = neon_get_scalar(size, rm);
61
+ for (pass = 0; pass < (u ? 4 : 2); pass++) {
62
+ tmp = neon_load_reg(rn, pass);
63
+ tmp3 = neon_load_reg(rd, pass);
64
+ fn(tmp, cpu_env, tmp, tmp2, tmp3);
65
+ tcg_temp_free_i32(tmp3);
66
+ neon_store_reg(rd, pass, tmp);
67
+ }
68
+ tcg_temp_free_i32(tmp2);
69
+ }
70
+ break;
71
+ default:
72
+ g_assert_not_reached();
73
}
74
}
75
} else { /* size == 3 */
76
--
77
2.16.2
78
79
diff view generated by jsdifflib
Deleted patch
1
From: Richard Henderson <richard.henderson@linaro.org>
2
1
3
Enable it for the "any" CPU used by *-linux-user.
4
5
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Message-id: 20180228193125.20577-10-richard.henderson@linaro.org
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
---
10
target/arm/cpu.c | 1 +
11
target/arm/cpu64.c | 1 +
12
2 files changed, 2 insertions(+)
13
14
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
15
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/cpu.c
17
+++ b/target/arm/cpu.c
18
@@ -XXX,XX +XXX,XX @@ static void arm_any_initfn(Object *obj)
19
set_feature(&cpu->env, ARM_FEATURE_V8_SHA256);
20
set_feature(&cpu->env, ARM_FEATURE_V8_PMULL);
21
set_feature(&cpu->env, ARM_FEATURE_CRC);
22
+ set_feature(&cpu->env, ARM_FEATURE_V8_RDM);
23
cpu->midr = 0xffffffff;
24
}
25
#endif
26
diff --git a/target/arm/cpu64.c b/target/arm/cpu64.c
27
index XXXXXXX..XXXXXXX 100644
28
--- a/target/arm/cpu64.c
29
+++ b/target/arm/cpu64.c
30
@@ -XXX,XX +XXX,XX @@ static void aarch64_any_initfn(Object *obj)
31
set_feature(&cpu->env, ARM_FEATURE_V8_SM4);
32
set_feature(&cpu->env, ARM_FEATURE_V8_PMULL);
33
set_feature(&cpu->env, ARM_FEATURE_CRC);
34
+ set_feature(&cpu->env, ARM_FEATURE_V8_RDM);
35
set_feature(&cpu->env, ARM_FEATURE_V8_FP16);
36
cpu->ctr = 0x80038003; /* 32 byte I and D cacheline size, VIPT icache */
37
cpu->dcz_blocksize = 7; /* 512 bytes */
38
--
39
2.16.2
40
41
diff view generated by jsdifflib
Deleted patch
1
From: Richard Henderson <richard.henderson@linaro.org>
2
1
3
Not enabled anywhere yet.
4
5
Reviewed-by: Alex Bennée <alex.bennee@linaro.org>
6
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
7
Message-id: 20180228193125.20577-11-richard.henderson@linaro.org
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
---
10
target/arm/cpu.h | 1 +
11
linux-user/elfload.c | 1 +
12
2 files changed, 2 insertions(+)
13
14
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
15
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/cpu.h
17
+++ b/target/arm/cpu.h
18
@@ -XXX,XX +XXX,XX @@ enum arm_features {
19
ARM_FEATURE_V8_SM4, /* implements SM4 part of v8 Crypto Extensions */
20
ARM_FEATURE_V8_RDM, /* implements v8.1 simd round multiply */
21
ARM_FEATURE_V8_FP16, /* implements v8.2 half-precision float */
22
+ ARM_FEATURE_V8_FCMA, /* has complex number part of v8.3 extensions. */
23
};
24
25
static inline int arm_feature(CPUARMState *env, int feature)
26
diff --git a/linux-user/elfload.c b/linux-user/elfload.c
27
index XXXXXXX..XXXXXXX 100644
28
--- a/linux-user/elfload.c
29
+++ b/linux-user/elfload.c
30
@@ -XXX,XX +XXX,XX @@ static uint32_t get_elf_hwcap(void)
31
GET_FEATURE(ARM_FEATURE_V8_FP16,
32
ARM_HWCAP_A64_FPHP | ARM_HWCAP_A64_ASIMDHP);
33
GET_FEATURE(ARM_FEATURE_V8_RDM, ARM_HWCAP_A64_ASIMDRDM);
34
+ GET_FEATURE(ARM_FEATURE_V8_FCMA, ARM_HWCAP_A64_FCMA);
35
#undef GET_FEATURE
36
37
return hwcaps;
38
--
39
2.16.2
40
41
diff view generated by jsdifflib
Deleted patch
1
From: Richard Henderson <richard.henderson@linaro.org>
2
1
3
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
Message-id: 20180228193125.20577-13-richard.henderson@linaro.org
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
[PMM: renamed e1/e2/e3/e4 to use the same naming as the version
7
of the pseudocode in the Arm ARM]
8
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
9
---
10
target/arm/helper.h | 11 ++++
11
target/arm/translate-a64.c | 94 +++++++++++++++++++++++++---
12
target/arm/vec_helper.c | 149 +++++++++++++++++++++++++++++++++++++++++++++
13
3 files changed, 246 insertions(+), 8 deletions(-)
14
15
diff --git a/target/arm/helper.h b/target/arm/helper.h
16
index XXXXXXX..XXXXXXX 100644
17
--- a/target/arm/helper.h
18
+++ b/target/arm/helper.h
19
@@ -XXX,XX +XXX,XX @@ DEF_HELPER_FLAGS_5(gvec_fcadds, TCG_CALL_NO_RWG,
20
DEF_HELPER_FLAGS_5(gvec_fcaddd, TCG_CALL_NO_RWG,
21
void, ptr, ptr, ptr, ptr, i32)
22
23
+DEF_HELPER_FLAGS_5(gvec_fcmlah, TCG_CALL_NO_RWG,
24
+ void, ptr, ptr, ptr, ptr, i32)
25
+DEF_HELPER_FLAGS_5(gvec_fcmlah_idx, TCG_CALL_NO_RWG,
26
+ void, ptr, ptr, ptr, ptr, i32)
27
+DEF_HELPER_FLAGS_5(gvec_fcmlas, TCG_CALL_NO_RWG,
28
+ void, ptr, ptr, ptr, ptr, i32)
29
+DEF_HELPER_FLAGS_5(gvec_fcmlas_idx, TCG_CALL_NO_RWG,
30
+ void, ptr, ptr, ptr, ptr, i32)
31
+DEF_HELPER_FLAGS_5(gvec_fcmlad, TCG_CALL_NO_RWG,
32
+ void, ptr, ptr, ptr, ptr, i32)
33
+
34
#ifdef TARGET_AARCH64
35
#include "helper-a64.h"
36
#endif
37
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
38
index XXXXXXX..XXXXXXX 100644
39
--- a/target/arm/translate-a64.c
40
+++ b/target/arm/translate-a64.c
41
@@ -XXX,XX +XXX,XX @@ static void disas_simd_three_reg_same_extra(DisasContext *s, uint32_t insn)
42
}
43
feature = ARM_FEATURE_V8_RDM;
44
break;
45
+ case 0x8: /* FCMLA, #0 */
46
+ case 0x9: /* FCMLA, #90 */
47
+ case 0xa: /* FCMLA, #180 */
48
+ case 0xb: /* FCMLA, #270 */
49
case 0xc: /* FCADD, #90 */
50
case 0xe: /* FCADD, #270 */
51
if (size == 0
52
@@ -XXX,XX +XXX,XX @@ static void disas_simd_three_reg_same_extra(DisasContext *s, uint32_t insn)
53
}
54
return;
55
56
+ case 0x8: /* FCMLA, #0 */
57
+ case 0x9: /* FCMLA, #90 */
58
+ case 0xa: /* FCMLA, #180 */
59
+ case 0xb: /* FCMLA, #270 */
60
+ rot = extract32(opcode, 0, 2);
61
+ switch (size) {
62
+ case 1:
63
+ gen_gvec_op3_fpst(s, is_q, rd, rn, rm, true, rot,
64
+ gen_helper_gvec_fcmlah);
65
+ break;
66
+ case 2:
67
+ gen_gvec_op3_fpst(s, is_q, rd, rn, rm, false, rot,
68
+ gen_helper_gvec_fcmlas);
69
+ break;
70
+ case 3:
71
+ gen_gvec_op3_fpst(s, is_q, rd, rn, rm, false, rot,
72
+ gen_helper_gvec_fcmlad);
73
+ break;
74
+ default:
75
+ g_assert_not_reached();
76
+ }
77
+ return;
78
+
79
case 0xc: /* FCADD, #90 */
80
case 0xe: /* FCADD, #270 */
81
rot = extract32(opcode, 1, 1);
82
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
83
int rn = extract32(insn, 5, 5);
84
int rd = extract32(insn, 0, 5);
85
bool is_long = false;
86
- bool is_fp = false;
87
+ int is_fp = 0;
88
bool is_fp16 = false;
89
int index;
90
TCGv_ptr fpst;
91
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
92
case 0x05: /* FMLS */
93
case 0x09: /* FMUL */
94
case 0x19: /* FMULX */
95
- is_fp = true;
96
+ is_fp = 1;
97
break;
98
case 0x1d: /* SQRDMLAH */
99
case 0x1f: /* SQRDMLSH */
100
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
101
return;
102
}
103
break;
104
+ case 0x11: /* FCMLA #0 */
105
+ case 0x13: /* FCMLA #90 */
106
+ case 0x15: /* FCMLA #180 */
107
+ case 0x17: /* FCMLA #270 */
108
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_FCMA)) {
109
+ unallocated_encoding(s);
110
+ return;
111
+ }
112
+ is_fp = 2;
113
+ break;
114
default:
115
unallocated_encoding(s);
116
return;
117
}
118
119
- if (is_fp) {
120
+ switch (is_fp) {
121
+ case 1: /* normal fp */
122
/* convert insn encoded size to TCGMemOp size */
123
switch (size) {
124
case 0: /* half-precision */
125
- if (!arm_dc_feature(s, ARM_FEATURE_V8_FP16)) {
126
- unallocated_encoding(s);
127
- return;
128
- }
129
size = MO_16;
130
+ is_fp16 = true;
131
break;
132
case MO_32: /* single precision */
133
case MO_64: /* double precision */
134
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
135
unallocated_encoding(s);
136
return;
137
}
138
- } else {
139
+ break;
140
+
141
+ case 2: /* complex fp */
142
+ /* Each indexable element is a complex pair. */
143
+ size <<= 1;
144
+ switch (size) {
145
+ case MO_32:
146
+ if (h && !is_q) {
147
+ unallocated_encoding(s);
148
+ return;
149
+ }
150
+ is_fp16 = true;
151
+ break;
152
+ case MO_64:
153
+ break;
154
+ default:
155
+ unallocated_encoding(s);
156
+ return;
157
+ }
158
+ break;
159
+
160
+ default: /* integer */
161
switch (size) {
162
case MO_8:
163
case MO_64:
164
unallocated_encoding(s);
165
return;
166
}
167
+ break;
168
+ }
169
+ if (is_fp16 && !arm_dc_feature(s, ARM_FEATURE_V8_FP16)) {
170
+ unallocated_encoding(s);
171
+ return;
172
}
173
174
/* Given TCGMemOp size, adjust register and indexing. */
175
@@ -XXX,XX +XXX,XX @@ static void disas_simd_indexed(DisasContext *s, uint32_t insn)
176
fpst = NULL;
177
}
178
179
+ switch (16 * u + opcode) {
180
+ case 0x11: /* FCMLA #0 */
181
+ case 0x13: /* FCMLA #90 */
182
+ case 0x15: /* FCMLA #180 */
183
+ case 0x17: /* FCMLA #270 */
184
+ tcg_gen_gvec_3_ptr(vec_full_reg_offset(s, rd),
185
+ vec_full_reg_offset(s, rn),
186
+ vec_reg_offset(s, rm, index, size), fpst,
187
+ is_q ? 16 : 8, vec_full_reg_size(s),
188
+ extract32(insn, 13, 2), /* rot */
189
+ size == MO_64
190
+ ? gen_helper_gvec_fcmlas_idx
191
+ : gen_helper_gvec_fcmlah_idx);
192
+ tcg_temp_free_ptr(fpst);
193
+ return;
194
+ }
195
+
196
if (size == 3) {
197
TCGv_i64 tcg_idx = tcg_temp_new_i64();
198
int pass;
199
diff --git a/target/arm/vec_helper.c b/target/arm/vec_helper.c
200
index XXXXXXX..XXXXXXX 100644
201
--- a/target/arm/vec_helper.c
202
+++ b/target/arm/vec_helper.c
203
@@ -XXX,XX +XXX,XX @@ void HELPER(gvec_fcaddd)(void *vd, void *vn, void *vm,
204
}
205
clear_tail(d, opr_sz, simd_maxsz(desc));
206
}
207
+
208
+void HELPER(gvec_fcmlah)(void *vd, void *vn, void *vm,
209
+ void *vfpst, uint32_t desc)
210
+{
211
+ uintptr_t opr_sz = simd_oprsz(desc);
212
+ float16 *d = vd;
213
+ float16 *n = vn;
214
+ float16 *m = vm;
215
+ float_status *fpst = vfpst;
216
+ intptr_t flip = extract32(desc, SIMD_DATA_SHIFT, 1);
217
+ uint32_t neg_imag = extract32(desc, SIMD_DATA_SHIFT + 1, 1);
218
+ uint32_t neg_real = flip ^ neg_imag;
219
+ uintptr_t i;
220
+
221
+ /* Shift boolean to the sign bit so we can xor to negate. */
222
+ neg_real <<= 15;
223
+ neg_imag <<= 15;
224
+
225
+ for (i = 0; i < opr_sz / 2; i += 2) {
226
+ float16 e2 = n[H2(i + flip)];
227
+ float16 e1 = m[H2(i + flip)] ^ neg_real;
228
+ float16 e4 = e2;
229
+ float16 e3 = m[H2(i + 1 - flip)] ^ neg_imag;
230
+
231
+ d[H2(i)] = float16_muladd(e2, e1, d[H2(i)], 0, fpst);
232
+ d[H2(i + 1)] = float16_muladd(e4, e3, d[H2(i + 1)], 0, fpst);
233
+ }
234
+ clear_tail(d, opr_sz, simd_maxsz(desc));
235
+}
236
+
237
+void HELPER(gvec_fcmlah_idx)(void *vd, void *vn, void *vm,
238
+ void *vfpst, uint32_t desc)
239
+{
240
+ uintptr_t opr_sz = simd_oprsz(desc);
241
+ float16 *d = vd;
242
+ float16 *n = vn;
243
+ float16 *m = vm;
244
+ float_status *fpst = vfpst;
245
+ intptr_t flip = extract32(desc, SIMD_DATA_SHIFT, 1);
246
+ uint32_t neg_imag = extract32(desc, SIMD_DATA_SHIFT + 1, 1);
247
+ uint32_t neg_real = flip ^ neg_imag;
248
+ uintptr_t i;
249
+ float16 e1 = m[H2(flip)];
250
+ float16 e3 = m[H2(1 - flip)];
251
+
252
+ /* Shift boolean to the sign bit so we can xor to negate. */
253
+ neg_real <<= 15;
254
+ neg_imag <<= 15;
255
+ e1 ^= neg_real;
256
+ e3 ^= neg_imag;
257
+
258
+ for (i = 0; i < opr_sz / 2; i += 2) {
259
+ float16 e2 = n[H2(i + flip)];
260
+ float16 e4 = e2;
261
+
262
+ d[H2(i)] = float16_muladd(e2, e1, d[H2(i)], 0, fpst);
263
+ d[H2(i + 1)] = float16_muladd(e4, e3, d[H2(i + 1)], 0, fpst);
264
+ }
265
+ clear_tail(d, opr_sz, simd_maxsz(desc));
266
+}
267
+
268
+void HELPER(gvec_fcmlas)(void *vd, void *vn, void *vm,
269
+ void *vfpst, uint32_t desc)
270
+{
271
+ uintptr_t opr_sz = simd_oprsz(desc);
272
+ float32 *d = vd;
273
+ float32 *n = vn;
274
+ float32 *m = vm;
275
+ float_status *fpst = vfpst;
276
+ intptr_t flip = extract32(desc, SIMD_DATA_SHIFT, 1);
277
+ uint32_t neg_imag = extract32(desc, SIMD_DATA_SHIFT + 1, 1);
278
+ uint32_t neg_real = flip ^ neg_imag;
279
+ uintptr_t i;
280
+
281
+ /* Shift boolean to the sign bit so we can xor to negate. */
282
+ neg_real <<= 31;
283
+ neg_imag <<= 31;
284
+
285
+ for (i = 0; i < opr_sz / 4; i += 2) {
286
+ float32 e2 = n[H4(i + flip)];
287
+ float32 e1 = m[H4(i + flip)] ^ neg_real;
288
+ float32 e4 = e2;
289
+ float32 e3 = m[H4(i + 1 - flip)] ^ neg_imag;
290
+
291
+ d[H4(i)] = float32_muladd(e2, e1, d[H4(i)], 0, fpst);
292
+ d[H4(i + 1)] = float32_muladd(e4, e3, d[H4(i + 1)], 0, fpst);
293
+ }
294
+ clear_tail(d, opr_sz, simd_maxsz(desc));
295
+}
296
+
297
+void HELPER(gvec_fcmlas_idx)(void *vd, void *vn, void *vm,
298
+ void *vfpst, uint32_t desc)
299
+{
300
+ uintptr_t opr_sz = simd_oprsz(desc);
301
+ float32 *d = vd;
302
+ float32 *n = vn;
303
+ float32 *m = vm;
304
+ float_status *fpst = vfpst;
305
+ intptr_t flip = extract32(desc, SIMD_DATA_SHIFT, 1);
306
+ uint32_t neg_imag = extract32(desc, SIMD_DATA_SHIFT + 1, 1);
307
+ uint32_t neg_real = flip ^ neg_imag;
308
+ uintptr_t i;
309
+ float32 e1 = m[H4(flip)];
310
+ float32 e3 = m[H4(1 - flip)];
311
+
312
+ /* Shift boolean to the sign bit so we can xor to negate. */
313
+ neg_real <<= 31;
314
+ neg_imag <<= 31;
315
+ e1 ^= neg_real;
316
+ e3 ^= neg_imag;
317
+
318
+ for (i = 0; i < opr_sz / 4; i += 2) {
319
+ float32 e2 = n[H4(i + flip)];
320
+ float32 e4 = e2;
321
+
322
+ d[H4(i)] = float32_muladd(e2, e1, d[H4(i)], 0, fpst);
323
+ d[H4(i + 1)] = float32_muladd(e4, e3, d[H4(i + 1)], 0, fpst);
324
+ }
325
+ clear_tail(d, opr_sz, simd_maxsz(desc));
326
+}
327
+
328
+void HELPER(gvec_fcmlad)(void *vd, void *vn, void *vm,
329
+ void *vfpst, uint32_t desc)
330
+{
331
+ uintptr_t opr_sz = simd_oprsz(desc);
332
+ float64 *d = vd;
333
+ float64 *n = vn;
334
+ float64 *m = vm;
335
+ float_status *fpst = vfpst;
336
+ intptr_t flip = extract32(desc, SIMD_DATA_SHIFT, 1);
337
+ uint64_t neg_imag = extract32(desc, SIMD_DATA_SHIFT + 1, 1);
338
+ uint64_t neg_real = flip ^ neg_imag;
339
+ uintptr_t i;
340
+
341
+ /* Shift boolean to the sign bit so we can xor to negate. */
342
+ neg_real <<= 63;
343
+ neg_imag <<= 63;
344
+
345
+ for (i = 0; i < opr_sz / 8; i += 2) {
346
+ float64 e2 = n[i + flip];
347
+ float64 e1 = m[i + flip] ^ neg_real;
348
+ float64 e4 = e2;
349
+ float64 e3 = m[i + 1 - flip] ^ neg_imag;
350
+
351
+ d[i] = float64_muladd(e2, e1, d[i], 0, fpst);
352
+ d[i + 1] = float64_muladd(e4, e3, d[i + 1], 0, fpst);
353
+ }
354
+ clear_tail(d, opr_sz, simd_maxsz(desc));
355
+}
356
--
357
2.16.2
358
359
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Joe Komlodi <joe.komlodi@xilinx.com>
2
2
3
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
3
Numonyx chips determine the number of cycles to wait based on bits 7:4
4
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
4
in the volatile configuration register.
5
Message-id: 20180228193125.20577-14-richard.henderson@linaro.org
5
6
However, if these bits are 0x0 or 0xF, the number of dummy cycles to
7
wait is 10 for QIOR and QIOR4 commands or when in QIO mode, and otherwise 8 for
8
the currently supported fast read commands. [1]
9
10
[1]
11
https://www.micron.com/-/media/client/global/documents/products/data-sheet/nor-flash/serial-nor/mt25q/die-rev-b/mt25q_qlkt_u_02g_cbb_0.pdf?rev=9b167fbf2b3645efba6385949a72e453
12
13
Signed-off-by: Joe Komlodi <komlodi@xilinx.com>
14
Reviewed-by: Francisco Iglesias <francisco.iglesias@xilinx.com>
15
Message-id: 1605568264-26376-5-git-send-email-komlodi@xilinx.com
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
16
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
17
---
8
target/arm/translate.c | 68 ++++++++++++++++++++++++++++++++++++++++++++++++++
18
hw/block/m25p80.c | 30 +++++++++++++++++++++++++++---
9
1 file changed, 68 insertions(+)
19
1 file changed, 27 insertions(+), 3 deletions(-)
10
20
11
diff --git a/target/arm/translate.c b/target/arm/translate.c
21
diff --git a/hw/block/m25p80.c b/hw/block/m25p80.c
12
index XXXXXXX..XXXXXXX 100644
22
index XXXXXXX..XXXXXXX 100644
13
--- a/target/arm/translate.c
23
--- a/hw/block/m25p80.c
14
+++ b/target/arm/translate.c
24
+++ b/hw/block/m25p80.c
15
@@ -XXX,XX +XXX,XX @@ static int disas_neon_data_insn(DisasContext *s, uint32_t insn)
25
@@ -XXX,XX +XXX,XX @@ static uint8_t numonyx_mode(Flash *s)
16
return 0;
26
}
17
}
27
}
18
28
19
+/* Advanced SIMD three registers of the same length extension.
29
+static uint8_t numonyx_extract_cfg_num_dummies(Flash *s)
20
+ * 31 25 23 22 20 16 12 11 10 9 8 3 0
21
+ * +---------------+-----+---+-----+----+----+---+----+---+----+---------+----+
22
+ * | 1 1 1 1 1 1 0 | op1 | D | op2 | Vn | Vd | 1 | o3 | 0 | o4 | N Q M U | Vm |
23
+ * +---------------+-----+---+-----+----+----+---+----+---+----+---------+----+
24
+ */
25
+static int disas_neon_insn_3same_ext(DisasContext *s, uint32_t insn)
26
+{
30
+{
27
+ gen_helper_gvec_3_ptr *fn_gvec_ptr;
31
+ uint8_t num_dummies;
28
+ int rd, rn, rm, rot, size, opr_sz;
32
+ uint8_t mode;
29
+ TCGv_ptr fpst;
33
+ assert(get_man(s) == MAN_NUMONYX);
30
+ bool q;
31
+
34
+
32
+ q = extract32(insn, 6, 1);
35
+ mode = numonyx_mode(s);
33
+ VFP_DREG_D(rd, insn);
36
+ num_dummies = extract32(s->volatile_cfg, 4, 4);
34
+ VFP_DREG_N(rn, insn);
37
+
35
+ VFP_DREG_M(rm, insn);
38
+ if (num_dummies == 0x0 || num_dummies == 0xf) {
36
+ if ((rd | rn | rm) & q) {
39
+ switch (s->cmd_in_progress) {
37
+ return 1;
40
+ case QIOR:
41
+ case QIOR4:
42
+ num_dummies = 10;
43
+ break;
44
+ default:
45
+ num_dummies = (mode == MODE_QIO) ? 10 : 8;
46
+ break;
47
+ }
38
+ }
48
+ }
39
+
49
+
40
+ if ((insn & 0xfe200f10) == 0xfc200800) {
50
+ return num_dummies;
41
+ /* VCMLA -- 1111 110R R.1S .... .... 1000 ...0 .... */
42
+ size = extract32(insn, 20, 1);
43
+ rot = extract32(insn, 23, 2);
44
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_FCMA)
45
+ || (!size && !arm_dc_feature(s, ARM_FEATURE_V8_FP16))) {
46
+ return 1;
47
+ }
48
+ fn_gvec_ptr = size ? gen_helper_gvec_fcmlas : gen_helper_gvec_fcmlah;
49
+ } else if ((insn & 0xfea00f10) == 0xfc800800) {
50
+ /* VCADD -- 1111 110R 1.0S .... .... 1000 ...0 .... */
51
+ size = extract32(insn, 20, 1);
52
+ rot = extract32(insn, 24, 1);
53
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_FCMA)
54
+ || (!size && !arm_dc_feature(s, ARM_FEATURE_V8_FP16))) {
55
+ return 1;
56
+ }
57
+ fn_gvec_ptr = size ? gen_helper_gvec_fcadds : gen_helper_gvec_fcaddh;
58
+ } else {
59
+ return 1;
60
+ }
61
+
62
+ if (s->fp_excp_el) {
63
+ gen_exception_insn(s, 4, EXCP_UDEF,
64
+ syn_fp_access_trap(1, 0xe, false), s->fp_excp_el);
65
+ return 0;
66
+ }
67
+ if (!s->vfp_enabled) {
68
+ return 1;
69
+ }
70
+
71
+ opr_sz = (1 + q) * 8;
72
+ fpst = get_fpstatus_ptr(1);
73
+ tcg_gen_gvec_3_ptr(vfp_reg_offset(1, rd),
74
+ vfp_reg_offset(1, rn),
75
+ vfp_reg_offset(1, rm), fpst,
76
+ opr_sz, opr_sz, rot, fn_gvec_ptr);
77
+ tcg_temp_free_ptr(fpst);
78
+ return 0;
79
+}
51
+}
80
+
52
+
81
static int disas_coproc_insn(DisasContext *s, uint32_t insn)
53
static void decode_fast_read_cmd(Flash *s)
82
{
54
{
83
int cpnum, is64, crn, crm, opc1, opc2, isread, rt, rt2;
55
s->needed_bytes = get_addr_length(s);
84
@@ -XXX,XX +XXX,XX @@ static void disas_arm_insn(DisasContext *s, unsigned int insn)
56
@@ -XXX,XX +XXX,XX @@ static void decode_fast_read_cmd(Flash *s)
85
}
57
s->needed_bytes += 8;
86
}
58
break;
87
}
59
case MAN_NUMONYX:
88
+ } else if ((insn & 0x0e000a00) == 0x0c000800
60
- s->needed_bytes += extract32(s->volatile_cfg, 4, 4);
89
+ && arm_dc_feature(s, ARM_FEATURE_V8)) {
61
+ s->needed_bytes += numonyx_extract_cfg_num_dummies(s);
90
+ if (disas_neon_insn_3same_ext(s, insn)) {
62
break;
91
+ goto illegal_op;
63
case MAN_MACRONIX:
92
+ }
64
if (extract32(s->volatile_cfg, 6, 2) == 1) {
93
+ return;
65
@@ -XXX,XX +XXX,XX @@ static void decode_dio_read_cmd(Flash *s)
94
} else if ((insn & 0x0fe00000) == 0x0c400000) {
66
);
95
/* Coprocessor double register transfer. */
67
break;
96
ARCH(5TE);
68
case MAN_NUMONYX:
69
- s->needed_bytes += extract32(s->volatile_cfg, 4, 4);
70
+ s->needed_bytes += numonyx_extract_cfg_num_dummies(s);
71
break;
72
case MAN_MACRONIX:
73
switch (extract32(s->volatile_cfg, 6, 2)) {
74
@@ -XXX,XX +XXX,XX @@ static void decode_qio_read_cmd(Flash *s)
75
);
76
break;
77
case MAN_NUMONYX:
78
- s->needed_bytes += extract32(s->volatile_cfg, 4, 4);
79
+ s->needed_bytes += numonyx_extract_cfg_num_dummies(s);
80
break;
81
case MAN_MACRONIX:
82
switch (extract32(s->volatile_cfg, 6, 2)) {
97
--
83
--
98
2.16.2
84
2.20.1
99
85
100
86
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