1
Arm stuff, mostly patches from RTH.
1
First pullreq for 6.0: mostly my v8.1M work, plus some other
2
bits and pieces. (I still have a lot of stuff in my to-review
3
folder, which I may or may not get to before the Christmas break...)
2
4
3
thanks
5
thanks
4
-- PMM
6
-- PMM
5
7
6
The following changes since commit 01a9a51ffaf4699827ea6425cb2b834a356e159d:
8
The following changes since commit 5e7b204dbfae9a562fc73684986f936b97f63877:
7
9
8
Merge remote-tracking branch 'remotes/kraxel/tags/ui-20190205-pull-request' into staging (2019-02-05 14:01:29 +0000)
10
Merge remote-tracking branch 'remotes/mst/tags/for_upstream' into staging (2020-12-09 20:08:54 +0000)
9
11
10
are available in the Git repository at:
12
are available in the Git repository at:
11
13
12
https://git.linaro.org/people/pmaydell/qemu-arm.git tags/pull-target-arm-20190205
14
https://git.linaro.org/people/pmaydell/qemu-arm.git tags/pull-target-arm-20201210
13
15
14
for you to fetch changes up to a15945d98d3a3390c3da344d1b47218e91e49d8b:
16
for you to fetch changes up to 71f916be1c7e9ede0e37d9cabc781b5a9e8638ff:
15
17
16
target/arm: Make FPSCR/FPCR trapped-exception bits RAZ/WI (2019-02-05 16:52:42 +0000)
18
hw/arm/armv7m: Correct typo in QOM object name (2020-12-10 11:44:56 +0000)
17
19
18
----------------------------------------------------------------
20
----------------------------------------------------------------
19
target-arm queue:
21
target-arm queue:
20
* Implement Armv8.5-BTI extension for system emulation mode
22
* hw/arm/smmuv3: Fix up L1STD_SPAN decoding
21
* Implement the PR_PAC_RESET_KEYS prctl() for linux-user mode's Armv8.3-PAuth support
23
* xlnx-zynqmp: Support Xilinx ZynqMP CAN controllers
22
* Support TBI (top-byte-ignore) properly for linux-user mode
24
* sbsa-ref: allow to use Cortex-A53/57/72 cpus
23
* gdbstub: allow killing QEMU via vKill command
25
* Various minor code cleanups
24
* hw/arm/boot: Support DTB autoload for firmware-only boots
26
* hw/intc/armv7m_nvic: Make all of system PPB range be RAZWI/BusFault
25
* target/arm: Make FPSCR/FPCR trapped-exception bits RAZ/WI
27
* Implement more pieces of ARMv8.1M support
26
28
27
----------------------------------------------------------------
29
----------------------------------------------------------------
28
Max Filippov (1):
30
Alex Chen (4):
29
gdbstub: allow killing QEMU via vKill command
31
i.MX25: Fix bad printf format specifiers
32
i.MX31: Fix bad printf format specifiers
33
i.MX6: Fix bad printf format specifiers
34
i.MX6ul: Fix bad printf format specifiers
30
35
31
Peter Maydell (7):
36
Havard Skinnemoen (1):
32
target/arm: Compute TB_FLAGS for TBI for user-only
37
tests/qtest/npcm7xx_rng-test: dump random data on failure
33
hw/arm/boot: Fix block comment style in arm_load_kernel()
34
hw/arm/boot: Factor out "direct kernel boot" code into its own function
35
hw/arm/boot: Factor out "set up firmware boot" code
36
hw/arm/boot: Clarify why arm_setup_firmware_boot() doesn't set env->boot_info
37
hw/arm/boot: Support DTB autoload for firmware-only boots
38
target/arm: Make FPSCR/FPCR trapped-exception bits RAZ/WI
39
38
40
Richard Henderson (14):
39
Kunkun Jiang (1):
41
target/arm: Introduce isar_feature_aa64_bti
40
hw/arm/smmuv3: Fix up L1STD_SPAN decoding
42
target/arm: Add PSTATE.BTYPE
43
target/arm: Add BT and BTYPE to tb->flags
44
exec: Add target-specific tlb bits to MemTxAttrs
45
target/arm: Cache the GP bit for a page in MemTxAttrs
46
target/arm: Default handling of BTYPE during translation
47
target/arm: Reset btype for direct branches
48
target/arm: Set btype for indirect branches
49
target/arm: Enable BTI for -cpu max
50
linux-user: Implement PR_PAC_RESET_KEYS
51
tests/tcg/aarch64: Add pauth smoke test
52
target/arm: Add TBFLAG_A64_TBID, split out gen_top_byte_ignore
53
target/arm: Clean TBI for data operations in the translator
54
target/arm: Enable TBI for user-only
55
41
56
tests/tcg/aarch64/Makefile.target | 6 +-
42
Marcin Juszkiewicz (1):
57
include/exec/memattrs.h | 10 +
43
sbsa-ref: allow to use Cortex-A53/57/72 cpus
58
linux-user/aarch64/target_syscall.h | 7 +
59
target/arm/cpu.h | 27 +-
60
target/arm/internals.h | 27 +-
61
target/arm/translate.h | 12 +-
62
gdbstub.c | 4 +
63
hw/arm/boot.c | 166 +++++++------
64
linux-user/syscall.c | 36 +++
65
target/arm/cpu.c | 6 +
66
target/arm/cpu64.c | 4 +
67
target/arm/helper.c | 80 +++---
68
target/arm/translate-a64.c | 476 +++++++++++++++++++++++++-----------
69
tests/tcg/aarch64/pauth-1.c | 23 ++
70
14 files changed, 623 insertions(+), 261 deletions(-)
71
create mode 100644 tests/tcg/aarch64/pauth-1.c
72
44
45
Peter Maydell (25):
46
hw/intc/armv7m_nvic: Make all of system PPB range be RAZWI/BusFault
47
target/arm: Implement v8.1M PXN extension
48
target/arm: Don't clobber ID_PFR1.Security on M-profile cores
49
target/arm: Implement VSCCLRM insn
50
target/arm: Implement CLRM instruction
51
target/arm: Enforce M-profile VMRS/VMSR register restrictions
52
target/arm: Refactor M-profile VMSR/VMRS handling
53
target/arm: Move general-use constant expanders up in translate.c
54
target/arm: Implement VLDR/VSTR system register
55
target/arm: Implement M-profile FPSCR_nzcvqc
56
target/arm: Use new FPCR_NZCV_MASK constant
57
target/arm: Factor out preserve-fp-state from full_vfp_access_check()
58
target/arm: Implement FPCXT_S fp system register
59
hw/intc/armv7m_nvic: Update FPDSCR masking for v8.1M
60
target/arm: For v8.1M, always clear R0-R3, R12, APSR, EPSR on exception entry
61
target/arm: In v8.1M, don't set HFSR.FORCED on vector table fetch failures
62
target/arm: Implement v8.1M REVIDR register
63
target/arm: Implement new v8.1M NOCP check for exception return
64
target/arm: Implement new v8.1M VLLDM and VLSTM encodings
65
hw/intc/armv7m_nvic: Support v8.1M CCR.TRD bit
66
target/arm: Implement CCR_S.TRD behaviour for SG insns
67
hw/intc/armv7m_nvic: Fix "return from inactive handler" check
68
target/arm: Implement M-profile "minimal RAS implementation"
69
hw/intc/armv7m_nvic: Implement read/write for RAS register block
70
hw/arm/armv7m: Correct typo in QOM object name
71
72
Vikram Garhwal (4):
73
hw/net/can: Introduce Xilinx ZynqMP CAN controller
74
xlnx-zynqmp: Connect Xilinx ZynqMP CAN controllers
75
tests/qtest: Introduce tests for Xilinx ZynqMP CAN controller
76
MAINTAINERS: Add maintainer entry for Xilinx ZynqMP CAN controller
77
78
meson.build | 1 +
79
hw/arm/smmuv3-internal.h | 2 +-
80
hw/net/can/trace.h | 1 +
81
include/hw/arm/xlnx-zynqmp.h | 8 +
82
include/hw/intc/armv7m_nvic.h | 2 +
83
include/hw/net/xlnx-zynqmp-can.h | 78 +++
84
target/arm/cpu.h | 46 ++
85
target/arm/m-nocp.decode | 10 +-
86
target/arm/t32.decode | 10 +-
87
target/arm/vfp.decode | 14 +
88
hw/arm/armv7m.c | 4 +-
89
hw/arm/sbsa-ref.c | 23 +-
90
hw/arm/xlnx-zcu102.c | 20 +
91
hw/arm/xlnx-zynqmp.c | 34 ++
92
hw/intc/armv7m_nvic.c | 246 ++++++--
93
hw/misc/imx25_ccm.c | 12 +-
94
hw/misc/imx31_ccm.c | 14 +-
95
hw/misc/imx6_ccm.c | 20 +-
96
hw/misc/imx6_src.c | 2 +-
97
hw/misc/imx6ul_ccm.c | 4 +-
98
hw/misc/imx_ccm.c | 4 +-
99
hw/net/can/xlnx-zynqmp-can.c | 1161 ++++++++++++++++++++++++++++++++++++++
100
target/arm/cpu.c | 5 +-
101
target/arm/helper.c | 7 +-
102
target/arm/m_helper.c | 130 ++++-
103
target/arm/translate.c | 105 +++-
104
tests/qtest/npcm7xx_rng-test.c | 12 +
105
tests/qtest/xlnx-can-test.c | 360 ++++++++++++
106
MAINTAINERS | 8 +
107
hw/Kconfig | 1 +
108
hw/net/can/meson.build | 1 +
109
hw/net/can/trace-events | 9 +
110
target/arm/translate-vfp.c.inc | 511 ++++++++++++++++-
111
tests/qtest/meson.build | 1 +
112
34 files changed, 2713 insertions(+), 153 deletions(-)
113
create mode 100644 hw/net/can/trace.h
114
create mode 100644 include/hw/net/xlnx-zynqmp-can.h
115
create mode 100644 hw/net/can/xlnx-zynqmp-can.c
116
create mode 100644 tests/qtest/xlnx-can-test.c
117
create mode 100644 hw/net/can/trace-events
118
diff view generated by jsdifflib
New patch
1
From: Kunkun Jiang <jiangkunkun@huawei.com>
1
2
3
Accroding to the SMMUv3 spec, the SPAN field of Level1 Stream Table
4
Descriptor is 5 bits([4:0]).
5
6
Fixes: 9bde7f0674f(hw/arm/smmuv3: Implement translate callback)
7
Signed-off-by: Kunkun Jiang <jiangkunkun@huawei.com>
8
Message-id: 20201124023711.1184-1-jiangkunkun@huawei.com
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
10
Acked-by: Eric Auger <eric.auger@redhat.com>
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
---
13
hw/arm/smmuv3-internal.h | 2 +-
14
1 file changed, 1 insertion(+), 1 deletion(-)
15
16
diff --git a/hw/arm/smmuv3-internal.h b/hw/arm/smmuv3-internal.h
17
index XXXXXXX..XXXXXXX 100644
18
--- a/hw/arm/smmuv3-internal.h
19
+++ b/hw/arm/smmuv3-internal.h
20
@@ -XXX,XX +XXX,XX @@ static inline uint64_t l1std_l2ptr(STEDesc *desc)
21
return hi << 32 | lo;
22
}
23
24
-#define L1STD_SPAN(stm) (extract32((stm)->word[0], 0, 4))
25
+#define L1STD_SPAN(stm) (extract32((stm)->word[0], 0, 5))
26
27
#endif
28
--
29
2.20.1
30
31
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: Alex Bennée <alex.bennee@linaro.org>
3
The Xilinx ZynqMP CAN controller is developed based on SocketCAN, QEMU CAN bus
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
implementation. Bus connection and socketCAN connection for each CAN module
5
Message-id: 20190201195404.30486-3-richard.henderson@linaro.org
5
can be set through command lines.
6
7
Example for using single CAN:
8
-object can-bus,id=canbus0 \
9
-machine xlnx-zcu102.canbus0=canbus0 \
10
-object can-host-socketcan,id=socketcan0,if=vcan0,canbus=canbus0
11
12
Example for connecting both CAN to same virtual CAN on host machine:
13
-object can-bus,id=canbus0 -object can-bus,id=canbus1 \
14
-machine xlnx-zcu102.canbus0=canbus0 \
15
-machine xlnx-zcu102.canbus1=canbus1 \
16
-object can-host-socketcan,id=socketcan0,if=vcan0,canbus=canbus0 \
17
-object can-host-socketcan,id=socketcan1,if=vcan0,canbus=canbus1
18
19
To create virtual CAN on the host machine, please check the QEMU CAN docs:
20
https://github.com/qemu/qemu/blob/master/docs/can.txt
21
22
Signed-off-by: Vikram Garhwal <fnu.vikram@xilinx.com>
23
Message-id: 1605728926-352690-2-git-send-email-fnu.vikram@xilinx.com
24
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
25
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
26
---
8
tests/tcg/aarch64/Makefile.target | 6 +++++-
27
meson.build | 1 +
9
tests/tcg/aarch64/pauth-1.c | 23 +++++++++++++++++++++++
28
hw/net/can/trace.h | 1 +
10
2 files changed, 28 insertions(+), 1 deletion(-)
29
include/hw/net/xlnx-zynqmp-can.h | 78 ++
11
create mode 100644 tests/tcg/aarch64/pauth-1.c
30
hw/net/can/xlnx-zynqmp-can.c | 1161 ++++++++++++++++++++++++++++++
31
hw/Kconfig | 1 +
32
hw/net/can/meson.build | 1 +
33
hw/net/can/trace-events | 9 +
34
7 files changed, 1252 insertions(+)
35
create mode 100644 hw/net/can/trace.h
36
create mode 100644 include/hw/net/xlnx-zynqmp-can.h
37
create mode 100644 hw/net/can/xlnx-zynqmp-can.c
38
create mode 100644 hw/net/can/trace-events
12
39
13
diff --git a/tests/tcg/aarch64/Makefile.target b/tests/tcg/aarch64/Makefile.target
40
diff --git a/meson.build b/meson.build
14
index XXXXXXX..XXXXXXX 100644
41
index XXXXXXX..XXXXXXX 100644
15
--- a/tests/tcg/aarch64/Makefile.target
42
--- a/meson.build
16
+++ b/tests/tcg/aarch64/Makefile.target
43
+++ b/meson.build
17
@@ -XXX,XX +XXX,XX @@ VPATH         += $(AARCH64_SRC)
44
@@ -XXX,XX +XXX,XX @@ if have_system
18
# we don't build any of the ARM tests
45
'hw/misc',
19
AARCH64_TESTS=$(filter-out $(ARM_TESTS), $(TESTS))
46
'hw/misc/macio',
20
AARCH64_TESTS+=fcvt
47
'hw/net',
21
-TESTS:=$(AARCH64_TESTS)
48
+ 'hw/net/can',
22
49
'hw/nvram',
23
fcvt: LDFLAGS+=-lm
50
'hw/pci',
24
51
'hw/pci-host',
25
run-fcvt: fcvt
52
diff --git a/hw/net/can/trace.h b/hw/net/can/trace.h
26
    $(call run-test,$<,$(QEMU) $<, "$< on $(TARGET_NAME)")
27
    $(call diff-out,$<,$(AARCH64_SRC)/fcvt.ref)
28
+
29
+AARCH64_TESTS += pauth-1
30
+run-pauth-%: QEMU += -cpu max
31
+
32
+TESTS:=$(AARCH64_TESTS)
33
diff --git a/tests/tcg/aarch64/pauth-1.c b/tests/tcg/aarch64/pauth-1.c
34
new file mode 100644
53
new file mode 100644
35
index XXXXXXX..XXXXXXX
54
index XXXXXXX..XXXXXXX
36
--- /dev/null
55
--- /dev/null
37
+++ b/tests/tcg/aarch64/pauth-1.c
56
+++ b/hw/net/can/trace.h
57
@@ -0,0 +1 @@
58
+#include "trace/trace-hw_net_can.h"
59
diff --git a/include/hw/net/xlnx-zynqmp-can.h b/include/hw/net/xlnx-zynqmp-can.h
60
new file mode 100644
61
index XXXXXXX..XXXXXXX
62
--- /dev/null
63
+++ b/include/hw/net/xlnx-zynqmp-can.h
38
@@ -XXX,XX +XXX,XX @@
64
@@ -XXX,XX +XXX,XX @@
39
+#include <assert.h>
65
+/*
40
+#include <sys/prctl.h>
66
+ * QEMU model of the Xilinx ZynqMP CAN controller.
41
+
67
+ *
42
+asm(".arch armv8.4-a");
68
+ * Copyright (c) 2020 Xilinx Inc.
43
+
69
+ *
44
+#ifndef PR_PAC_RESET_KEYS
70
+ * Written-by: Vikram Garhwal<fnu.vikram@xilinx.com>
45
+#define PR_PAC_RESET_KEYS 54
71
+ *
46
+#define PR_PAC_APDAKEY (1 << 2)
72
+ * Based on QEMU CAN Device emulation implemented by Jin Yang, Deniz Eren and
73
+ * Pavel Pisa.
74
+ *
75
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
76
+ * of this software and associated documentation files (the "Software"), to deal
77
+ * in the Software without restriction, including without limitation the rights
78
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
79
+ * copies of the Software, and to permit persons to whom the Software is
80
+ * furnished to do so, subject to the following conditions:
81
+ *
82
+ * The above copyright notice and this permission notice shall be included in
83
+ * all copies or substantial portions of the Software.
84
+ *
85
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
86
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
87
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
88
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
89
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
90
+ * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
91
+ * THE SOFTWARE.
92
+ */
93
+
94
+#ifndef XLNX_ZYNQMP_CAN_H
95
+#define XLNX_ZYNQMP_CAN_H
96
+
97
+#include "hw/register.h"
98
+#include "net/can_emu.h"
99
+#include "net/can_host.h"
100
+#include "qemu/fifo32.h"
101
+#include "hw/ptimer.h"
102
+#include "hw/qdev-clock.h"
103
+
104
+#define TYPE_XLNX_ZYNQMP_CAN "xlnx.zynqmp-can"
105
+
106
+#define XLNX_ZYNQMP_CAN(obj) \
107
+ OBJECT_CHECK(XlnxZynqMPCANState, (obj), TYPE_XLNX_ZYNQMP_CAN)
108
+
109
+#define MAX_CAN_CTRLS 2
110
+#define XLNX_ZYNQMP_CAN_R_MAX (0x84 / 4)
111
+#define MAILBOX_CAPACITY 64
112
+#define CAN_TIMER_MAX 0XFFFFUL
113
+#define CAN_DEFAULT_CLOCK (24 * 1000 * 1000)
114
+
115
+/* Each CAN_FRAME will have 4 * 32bit size. */
116
+#define CAN_FRAME_SIZE 4
117
+#define RXFIFO_SIZE (MAILBOX_CAPACITY * CAN_FRAME_SIZE)
118
+
119
+typedef struct XlnxZynqMPCANState {
120
+ SysBusDevice parent_obj;
121
+ MemoryRegion iomem;
122
+
123
+ qemu_irq irq;
124
+
125
+ CanBusClientState bus_client;
126
+ CanBusState *canbus;
127
+
128
+ struct {
129
+ uint32_t ext_clk_freq;
130
+ } cfg;
131
+
132
+ RegisterInfo reg_info[XLNX_ZYNQMP_CAN_R_MAX];
133
+ uint32_t regs[XLNX_ZYNQMP_CAN_R_MAX];
134
+
135
+ Fifo32 rx_fifo;
136
+ Fifo32 tx_fifo;
137
+ Fifo32 txhpb_fifo;
138
+
139
+ ptimer_state *can_timer;
140
+} XlnxZynqMPCANState;
141
+
47
+#endif
142
+#endif
48
+
143
diff --git a/hw/net/can/xlnx-zynqmp-can.c b/hw/net/can/xlnx-zynqmp-can.c
49
+int main()
144
new file mode 100644
50
+{
145
index XXXXXXX..XXXXXXX
51
+ int x;
146
--- /dev/null
52
+ void *p0 = &x, *p1, *p2;
147
+++ b/hw/net/can/xlnx-zynqmp-can.c
53
+
148
@@ -XXX,XX +XXX,XX @@
54
+ asm volatile("pacdza %0" : "=r"(p1) : "0"(p0));
149
+/*
55
+ prctl(PR_PAC_RESET_KEYS, PR_PAC_APDAKEY, 0, 0, 0);
150
+ * QEMU model of the Xilinx ZynqMP CAN controller.
56
+ asm volatile("pacdza %0" : "=r"(p2) : "0"(p0));
151
+ * This implementation is based on the following datasheet:
57
+
152
+ * https://www.xilinx.com/support/documentation/user_guides/ug1085-zynq-ultrascale-trm.pdf
58
+ assert(p1 != p0);
153
+ *
59
+ assert(p1 != p2);
154
+ * Copyright (c) 2020 Xilinx Inc.
155
+ *
156
+ * Written-by: Vikram Garhwal<fnu.vikram@xilinx.com>
157
+ *
158
+ * Based on QEMU CAN Device emulation implemented by Jin Yang, Deniz Eren and
159
+ * Pavel Pisa
160
+ *
161
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
162
+ * of this software and associated documentation files (the "Software"), to deal
163
+ * in the Software without restriction, including without limitation the rights
164
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
165
+ * copies of the Software, and to permit persons to whom the Software is
166
+ * furnished to do so, subject to the following conditions:
167
+ *
168
+ * The above copyright notice and this permission notice shall be included in
169
+ * all copies or substantial portions of the Software.
170
+ *
171
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
172
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
173
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
174
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
175
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
176
+ * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
177
+ * THE SOFTWARE.
178
+ */
179
+
180
+#include "qemu/osdep.h"
181
+#include "hw/sysbus.h"
182
+#include "hw/register.h"
183
+#include "hw/irq.h"
184
+#include "qapi/error.h"
185
+#include "qemu/bitops.h"
186
+#include "qemu/log.h"
187
+#include "qemu/cutils.h"
188
+#include "sysemu/sysemu.h"
189
+#include "migration/vmstate.h"
190
+#include "hw/qdev-properties.h"
191
+#include "net/can_emu.h"
192
+#include "net/can_host.h"
193
+#include "qemu/event_notifier.h"
194
+#include "qom/object_interfaces.h"
195
+#include "hw/net/xlnx-zynqmp-can.h"
196
+#include "trace.h"
197
+
198
+#ifndef XLNX_ZYNQMP_CAN_ERR_DEBUG
199
+#define XLNX_ZYNQMP_CAN_ERR_DEBUG 0
200
+#endif
201
+
202
+#define MAX_DLC 8
203
+#undef ERROR
204
+
205
+REG32(SOFTWARE_RESET_REGISTER, 0x0)
206
+ FIELD(SOFTWARE_RESET_REGISTER, CEN, 1, 1)
207
+ FIELD(SOFTWARE_RESET_REGISTER, SRST, 0, 1)
208
+REG32(MODE_SELECT_REGISTER, 0x4)
209
+ FIELD(MODE_SELECT_REGISTER, SNOOP, 2, 1)
210
+ FIELD(MODE_SELECT_REGISTER, LBACK, 1, 1)
211
+ FIELD(MODE_SELECT_REGISTER, SLEEP, 0, 1)
212
+REG32(ARBITRATION_PHASE_BAUD_RATE_PRESCALER_REGISTER, 0x8)
213
+ FIELD(ARBITRATION_PHASE_BAUD_RATE_PRESCALER_REGISTER, BRP, 0, 8)
214
+REG32(ARBITRATION_PHASE_BIT_TIMING_REGISTER, 0xc)
215
+ FIELD(ARBITRATION_PHASE_BIT_TIMING_REGISTER, SJW, 7, 2)
216
+ FIELD(ARBITRATION_PHASE_BIT_TIMING_REGISTER, TS2, 4, 3)
217
+ FIELD(ARBITRATION_PHASE_BIT_TIMING_REGISTER, TS1, 0, 4)
218
+REG32(ERROR_COUNTER_REGISTER, 0x10)
219
+ FIELD(ERROR_COUNTER_REGISTER, REC, 8, 8)
220
+ FIELD(ERROR_COUNTER_REGISTER, TEC, 0, 8)
221
+REG32(ERROR_STATUS_REGISTER, 0x14)
222
+ FIELD(ERROR_STATUS_REGISTER, ACKER, 4, 1)
223
+ FIELD(ERROR_STATUS_REGISTER, BERR, 3, 1)
224
+ FIELD(ERROR_STATUS_REGISTER, STER, 2, 1)
225
+ FIELD(ERROR_STATUS_REGISTER, FMER, 1, 1)
226
+ FIELD(ERROR_STATUS_REGISTER, CRCER, 0, 1)
227
+REG32(STATUS_REGISTER, 0x18)
228
+ FIELD(STATUS_REGISTER, SNOOP, 12, 1)
229
+ FIELD(STATUS_REGISTER, ACFBSY, 11, 1)
230
+ FIELD(STATUS_REGISTER, TXFLL, 10, 1)
231
+ FIELD(STATUS_REGISTER, TXBFLL, 9, 1)
232
+ FIELD(STATUS_REGISTER, ESTAT, 7, 2)
233
+ FIELD(STATUS_REGISTER, ERRWRN, 6, 1)
234
+ FIELD(STATUS_REGISTER, BBSY, 5, 1)
235
+ FIELD(STATUS_REGISTER, BIDLE, 4, 1)
236
+ FIELD(STATUS_REGISTER, NORMAL, 3, 1)
237
+ FIELD(STATUS_REGISTER, SLEEP, 2, 1)
238
+ FIELD(STATUS_REGISTER, LBACK, 1, 1)
239
+ FIELD(STATUS_REGISTER, CONFIG, 0, 1)
240
+REG32(INTERRUPT_STATUS_REGISTER, 0x1c)
241
+ FIELD(INTERRUPT_STATUS_REGISTER, TXFEMP, 14, 1)
242
+ FIELD(INTERRUPT_STATUS_REGISTER, TXFWMEMP, 13, 1)
243
+ FIELD(INTERRUPT_STATUS_REGISTER, RXFWMFLL, 12, 1)
244
+ FIELD(INTERRUPT_STATUS_REGISTER, WKUP, 11, 1)
245
+ FIELD(INTERRUPT_STATUS_REGISTER, SLP, 10, 1)
246
+ FIELD(INTERRUPT_STATUS_REGISTER, BSOFF, 9, 1)
247
+ FIELD(INTERRUPT_STATUS_REGISTER, ERROR, 8, 1)
248
+ FIELD(INTERRUPT_STATUS_REGISTER, RXNEMP, 7, 1)
249
+ FIELD(INTERRUPT_STATUS_REGISTER, RXOFLW, 6, 1)
250
+ FIELD(INTERRUPT_STATUS_REGISTER, RXUFLW, 5, 1)
251
+ FIELD(INTERRUPT_STATUS_REGISTER, RXOK, 4, 1)
252
+ FIELD(INTERRUPT_STATUS_REGISTER, TXBFLL, 3, 1)
253
+ FIELD(INTERRUPT_STATUS_REGISTER, TXFLL, 2, 1)
254
+ FIELD(INTERRUPT_STATUS_REGISTER, TXOK, 1, 1)
255
+ FIELD(INTERRUPT_STATUS_REGISTER, ARBLST, 0, 1)
256
+REG32(INTERRUPT_ENABLE_REGISTER, 0x20)
257
+ FIELD(INTERRUPT_ENABLE_REGISTER, ETXFEMP, 14, 1)
258
+ FIELD(INTERRUPT_ENABLE_REGISTER, ETXFWMEMP, 13, 1)
259
+ FIELD(INTERRUPT_ENABLE_REGISTER, ERXFWMFLL, 12, 1)
260
+ FIELD(INTERRUPT_ENABLE_REGISTER, EWKUP, 11, 1)
261
+ FIELD(INTERRUPT_ENABLE_REGISTER, ESLP, 10, 1)
262
+ FIELD(INTERRUPT_ENABLE_REGISTER, EBSOFF, 9, 1)
263
+ FIELD(INTERRUPT_ENABLE_REGISTER, EERROR, 8, 1)
264
+ FIELD(INTERRUPT_ENABLE_REGISTER, ERXNEMP, 7, 1)
265
+ FIELD(INTERRUPT_ENABLE_REGISTER, ERXOFLW, 6, 1)
266
+ FIELD(INTERRUPT_ENABLE_REGISTER, ERXUFLW, 5, 1)
267
+ FIELD(INTERRUPT_ENABLE_REGISTER, ERXOK, 4, 1)
268
+ FIELD(INTERRUPT_ENABLE_REGISTER, ETXBFLL, 3, 1)
269
+ FIELD(INTERRUPT_ENABLE_REGISTER, ETXFLL, 2, 1)
270
+ FIELD(INTERRUPT_ENABLE_REGISTER, ETXOK, 1, 1)
271
+ FIELD(INTERRUPT_ENABLE_REGISTER, EARBLST, 0, 1)
272
+REG32(INTERRUPT_CLEAR_REGISTER, 0x24)
273
+ FIELD(INTERRUPT_CLEAR_REGISTER, CTXFEMP, 14, 1)
274
+ FIELD(INTERRUPT_CLEAR_REGISTER, CTXFWMEMP, 13, 1)
275
+ FIELD(INTERRUPT_CLEAR_REGISTER, CRXFWMFLL, 12, 1)
276
+ FIELD(INTERRUPT_CLEAR_REGISTER, CWKUP, 11, 1)
277
+ FIELD(INTERRUPT_CLEAR_REGISTER, CSLP, 10, 1)
278
+ FIELD(INTERRUPT_CLEAR_REGISTER, CBSOFF, 9, 1)
279
+ FIELD(INTERRUPT_CLEAR_REGISTER, CERROR, 8, 1)
280
+ FIELD(INTERRUPT_CLEAR_REGISTER, CRXNEMP, 7, 1)
281
+ FIELD(INTERRUPT_CLEAR_REGISTER, CRXOFLW, 6, 1)
282
+ FIELD(INTERRUPT_CLEAR_REGISTER, CRXUFLW, 5, 1)
283
+ FIELD(INTERRUPT_CLEAR_REGISTER, CRXOK, 4, 1)
284
+ FIELD(INTERRUPT_CLEAR_REGISTER, CTXBFLL, 3, 1)
285
+ FIELD(INTERRUPT_CLEAR_REGISTER, CTXFLL, 2, 1)
286
+ FIELD(INTERRUPT_CLEAR_REGISTER, CTXOK, 1, 1)
287
+ FIELD(INTERRUPT_CLEAR_REGISTER, CARBLST, 0, 1)
288
+REG32(TIMESTAMP_REGISTER, 0x28)
289
+ FIELD(TIMESTAMP_REGISTER, CTS, 0, 1)
290
+REG32(WIR, 0x2c)
291
+ FIELD(WIR, EW, 8, 8)
292
+ FIELD(WIR, FW, 0, 8)
293
+REG32(TXFIFO_ID, 0x30)
294
+ FIELD(TXFIFO_ID, IDH, 21, 11)
295
+ FIELD(TXFIFO_ID, SRRRTR, 20, 1)
296
+ FIELD(TXFIFO_ID, IDE, 19, 1)
297
+ FIELD(TXFIFO_ID, IDL, 1, 18)
298
+ FIELD(TXFIFO_ID, RTR, 0, 1)
299
+REG32(TXFIFO_DLC, 0x34)
300
+ FIELD(TXFIFO_DLC, DLC, 28, 4)
301
+REG32(TXFIFO_DATA1, 0x38)
302
+ FIELD(TXFIFO_DATA1, DB0, 24, 8)
303
+ FIELD(TXFIFO_DATA1, DB1, 16, 8)
304
+ FIELD(TXFIFO_DATA1, DB2, 8, 8)
305
+ FIELD(TXFIFO_DATA1, DB3, 0, 8)
306
+REG32(TXFIFO_DATA2, 0x3c)
307
+ FIELD(TXFIFO_DATA2, DB4, 24, 8)
308
+ FIELD(TXFIFO_DATA2, DB5, 16, 8)
309
+ FIELD(TXFIFO_DATA2, DB6, 8, 8)
310
+ FIELD(TXFIFO_DATA2, DB7, 0, 8)
311
+REG32(TXHPB_ID, 0x40)
312
+ FIELD(TXHPB_ID, IDH, 21, 11)
313
+ FIELD(TXHPB_ID, SRRRTR, 20, 1)
314
+ FIELD(TXHPB_ID, IDE, 19, 1)
315
+ FIELD(TXHPB_ID, IDL, 1, 18)
316
+ FIELD(TXHPB_ID, RTR, 0, 1)
317
+REG32(TXHPB_DLC, 0x44)
318
+ FIELD(TXHPB_DLC, DLC, 28, 4)
319
+REG32(TXHPB_DATA1, 0x48)
320
+ FIELD(TXHPB_DATA1, DB0, 24, 8)
321
+ FIELD(TXHPB_DATA1, DB1, 16, 8)
322
+ FIELD(TXHPB_DATA1, DB2, 8, 8)
323
+ FIELD(TXHPB_DATA1, DB3, 0, 8)
324
+REG32(TXHPB_DATA2, 0x4c)
325
+ FIELD(TXHPB_DATA2, DB4, 24, 8)
326
+ FIELD(TXHPB_DATA2, DB5, 16, 8)
327
+ FIELD(TXHPB_DATA2, DB6, 8, 8)
328
+ FIELD(TXHPB_DATA2, DB7, 0, 8)
329
+REG32(RXFIFO_ID, 0x50)
330
+ FIELD(RXFIFO_ID, IDH, 21, 11)
331
+ FIELD(RXFIFO_ID, SRRRTR, 20, 1)
332
+ FIELD(RXFIFO_ID, IDE, 19, 1)
333
+ FIELD(RXFIFO_ID, IDL, 1, 18)
334
+ FIELD(RXFIFO_ID, RTR, 0, 1)
335
+REG32(RXFIFO_DLC, 0x54)
336
+ FIELD(RXFIFO_DLC, DLC, 28, 4)
337
+ FIELD(RXFIFO_DLC, RXT, 0, 16)
338
+REG32(RXFIFO_DATA1, 0x58)
339
+ FIELD(RXFIFO_DATA1, DB0, 24, 8)
340
+ FIELD(RXFIFO_DATA1, DB1, 16, 8)
341
+ FIELD(RXFIFO_DATA1, DB2, 8, 8)
342
+ FIELD(RXFIFO_DATA1, DB3, 0, 8)
343
+REG32(RXFIFO_DATA2, 0x5c)
344
+ FIELD(RXFIFO_DATA2, DB4, 24, 8)
345
+ FIELD(RXFIFO_DATA2, DB5, 16, 8)
346
+ FIELD(RXFIFO_DATA2, DB6, 8, 8)
347
+ FIELD(RXFIFO_DATA2, DB7, 0, 8)
348
+REG32(AFR, 0x60)
349
+ FIELD(AFR, UAF4, 3, 1)
350
+ FIELD(AFR, UAF3, 2, 1)
351
+ FIELD(AFR, UAF2, 1, 1)
352
+ FIELD(AFR, UAF1, 0, 1)
353
+REG32(AFMR1, 0x64)
354
+ FIELD(AFMR1, AMIDH, 21, 11)
355
+ FIELD(AFMR1, AMSRR, 20, 1)
356
+ FIELD(AFMR1, AMIDE, 19, 1)
357
+ FIELD(AFMR1, AMIDL, 1, 18)
358
+ FIELD(AFMR1, AMRTR, 0, 1)
359
+REG32(AFIR1, 0x68)
360
+ FIELD(AFIR1, AIIDH, 21, 11)
361
+ FIELD(AFIR1, AISRR, 20, 1)
362
+ FIELD(AFIR1, AIIDE, 19, 1)
363
+ FIELD(AFIR1, AIIDL, 1, 18)
364
+ FIELD(AFIR1, AIRTR, 0, 1)
365
+REG32(AFMR2, 0x6c)
366
+ FIELD(AFMR2, AMIDH, 21, 11)
367
+ FIELD(AFMR2, AMSRR, 20, 1)
368
+ FIELD(AFMR2, AMIDE, 19, 1)
369
+ FIELD(AFMR2, AMIDL, 1, 18)
370
+ FIELD(AFMR2, AMRTR, 0, 1)
371
+REG32(AFIR2, 0x70)
372
+ FIELD(AFIR2, AIIDH, 21, 11)
373
+ FIELD(AFIR2, AISRR, 20, 1)
374
+ FIELD(AFIR2, AIIDE, 19, 1)
375
+ FIELD(AFIR2, AIIDL, 1, 18)
376
+ FIELD(AFIR2, AIRTR, 0, 1)
377
+REG32(AFMR3, 0x74)
378
+ FIELD(AFMR3, AMIDH, 21, 11)
379
+ FIELD(AFMR3, AMSRR, 20, 1)
380
+ FIELD(AFMR3, AMIDE, 19, 1)
381
+ FIELD(AFMR3, AMIDL, 1, 18)
382
+ FIELD(AFMR3, AMRTR, 0, 1)
383
+REG32(AFIR3, 0x78)
384
+ FIELD(AFIR3, AIIDH, 21, 11)
385
+ FIELD(AFIR3, AISRR, 20, 1)
386
+ FIELD(AFIR3, AIIDE, 19, 1)
387
+ FIELD(AFIR3, AIIDL, 1, 18)
388
+ FIELD(AFIR3, AIRTR, 0, 1)
389
+REG32(AFMR4, 0x7c)
390
+ FIELD(AFMR4, AMIDH, 21, 11)
391
+ FIELD(AFMR4, AMSRR, 20, 1)
392
+ FIELD(AFMR4, AMIDE, 19, 1)
393
+ FIELD(AFMR4, AMIDL, 1, 18)
394
+ FIELD(AFMR4, AMRTR, 0, 1)
395
+REG32(AFIR4, 0x80)
396
+ FIELD(AFIR4, AIIDH, 21, 11)
397
+ FIELD(AFIR4, AISRR, 20, 1)
398
+ FIELD(AFIR4, AIIDE, 19, 1)
399
+ FIELD(AFIR4, AIIDL, 1, 18)
400
+ FIELD(AFIR4, AIRTR, 0, 1)
401
+
402
+static void can_update_irq(XlnxZynqMPCANState *s)
403
+{
404
+ uint32_t irq;
405
+
406
+ /* Watermark register interrupts. */
407
+ if ((fifo32_num_free(&s->tx_fifo) / CAN_FRAME_SIZE) >
408
+ ARRAY_FIELD_EX32(s->regs, WIR, EW)) {
409
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, TXFWMEMP, 1);
410
+ }
411
+
412
+ if ((fifo32_num_used(&s->rx_fifo) / CAN_FRAME_SIZE) >
413
+ ARRAY_FIELD_EX32(s->regs, WIR, FW)) {
414
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, RXFWMFLL, 1);
415
+ }
416
+
417
+ /* RX Interrupts. */
418
+ if (fifo32_num_used(&s->rx_fifo) >= CAN_FRAME_SIZE) {
419
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, RXNEMP, 1);
420
+ }
421
+
422
+ /* TX interrupts. */
423
+ if (fifo32_is_empty(&s->tx_fifo)) {
424
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, TXFEMP, 1);
425
+ }
426
+
427
+ if (fifo32_is_full(&s->tx_fifo)) {
428
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, TXFLL, 1);
429
+ }
430
+
431
+ if (fifo32_is_full(&s->txhpb_fifo)) {
432
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, TXBFLL, 1);
433
+ }
434
+
435
+ irq = s->regs[R_INTERRUPT_STATUS_REGISTER];
436
+ irq &= s->regs[R_INTERRUPT_ENABLE_REGISTER];
437
+
438
+ trace_xlnx_can_update_irq(s->regs[R_INTERRUPT_STATUS_REGISTER],
439
+ s->regs[R_INTERRUPT_ENABLE_REGISTER], irq);
440
+ qemu_set_irq(s->irq, irq);
441
+}
442
+
443
+static void can_ier_post_write(RegisterInfo *reg, uint64_t val)
444
+{
445
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
446
+
447
+ can_update_irq(s);
448
+}
449
+
450
+static uint64_t can_icr_pre_write(RegisterInfo *reg, uint64_t val)
451
+{
452
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
453
+
454
+ s->regs[R_INTERRUPT_STATUS_REGISTER] &= ~val;
455
+ can_update_irq(s);
456
+
60
+ return 0;
457
+ return 0;
61
+}
458
+}
459
+
460
+static void can_config_reset(XlnxZynqMPCANState *s)
461
+{
462
+ /* Reset all the configuration registers. */
463
+ register_reset(&s->reg_info[R_SOFTWARE_RESET_REGISTER]);
464
+ register_reset(&s->reg_info[R_MODE_SELECT_REGISTER]);
465
+ register_reset(
466
+ &s->reg_info[R_ARBITRATION_PHASE_BAUD_RATE_PRESCALER_REGISTER]);
467
+ register_reset(&s->reg_info[R_ARBITRATION_PHASE_BIT_TIMING_REGISTER]);
468
+ register_reset(&s->reg_info[R_STATUS_REGISTER]);
469
+ register_reset(&s->reg_info[R_INTERRUPT_STATUS_REGISTER]);
470
+ register_reset(&s->reg_info[R_INTERRUPT_ENABLE_REGISTER]);
471
+ register_reset(&s->reg_info[R_INTERRUPT_CLEAR_REGISTER]);
472
+ register_reset(&s->reg_info[R_WIR]);
473
+}
474
+
475
+static void can_config_mode(XlnxZynqMPCANState *s)
476
+{
477
+ register_reset(&s->reg_info[R_ERROR_COUNTER_REGISTER]);
478
+ register_reset(&s->reg_info[R_ERROR_STATUS_REGISTER]);
479
+
480
+ /* Put XlnxZynqMPCAN in configuration mode. */
481
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, CONFIG, 1);
482
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, WKUP, 0);
483
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, SLP, 0);
484
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, BSOFF, 0);
485
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, ERROR, 0);
486
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, RXOFLW, 0);
487
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, RXOK, 0);
488
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, TXOK, 0);
489
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, ARBLST, 0);
490
+
491
+ can_update_irq(s);
492
+}
493
+
494
+static void update_status_register_mode_bits(XlnxZynqMPCANState *s)
495
+{
496
+ bool sleep_status = ARRAY_FIELD_EX32(s->regs, STATUS_REGISTER, SLEEP);
497
+ bool sleep_mode = ARRAY_FIELD_EX32(s->regs, MODE_SELECT_REGISTER, SLEEP);
498
+ /* Wake up interrupt bit. */
499
+ bool wakeup_irq_val = sleep_status && (sleep_mode == 0);
500
+ /* Sleep interrupt bit. */
501
+ bool sleep_irq_val = sleep_mode && (sleep_status == 0);
502
+
503
+ /* Clear previous core mode status bits. */
504
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, LBACK, 0);
505
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, SLEEP, 0);
506
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, SNOOP, 0);
507
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, NORMAL, 0);
508
+
509
+ /* set current mode bit and generate irqs accordingly. */
510
+ if (ARRAY_FIELD_EX32(s->regs, MODE_SELECT_REGISTER, LBACK)) {
511
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, LBACK, 1);
512
+ } else if (ARRAY_FIELD_EX32(s->regs, MODE_SELECT_REGISTER, SLEEP)) {
513
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, SLEEP, 1);
514
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, SLP,
515
+ sleep_irq_val);
516
+ } else if (ARRAY_FIELD_EX32(s->regs, MODE_SELECT_REGISTER, SNOOP)) {
517
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, SNOOP, 1);
518
+ } else {
519
+ /*
520
+ * If all bits are zero then XlnxZynqMPCAN is set in normal mode.
521
+ */
522
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, NORMAL, 1);
523
+ /* Set wakeup interrupt bit. */
524
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, WKUP,
525
+ wakeup_irq_val);
526
+ }
527
+
528
+ can_update_irq(s);
529
+}
530
+
531
+static void can_exit_sleep_mode(XlnxZynqMPCANState *s)
532
+{
533
+ ARRAY_FIELD_DP32(s->regs, MODE_SELECT_REGISTER, SLEEP, 0);
534
+ update_status_register_mode_bits(s);
535
+}
536
+
537
+static void generate_frame(qemu_can_frame *frame, uint32_t *data)
538
+{
539
+ frame->can_id = data[0];
540
+ frame->can_dlc = FIELD_EX32(data[1], TXFIFO_DLC, DLC);
541
+
542
+ frame->data[0] = FIELD_EX32(data[2], TXFIFO_DATA1, DB3);
543
+ frame->data[1] = FIELD_EX32(data[2], TXFIFO_DATA1, DB2);
544
+ frame->data[2] = FIELD_EX32(data[2], TXFIFO_DATA1, DB1);
545
+ frame->data[3] = FIELD_EX32(data[2], TXFIFO_DATA1, DB0);
546
+
547
+ frame->data[4] = FIELD_EX32(data[3], TXFIFO_DATA2, DB7);
548
+ frame->data[5] = FIELD_EX32(data[3], TXFIFO_DATA2, DB6);
549
+ frame->data[6] = FIELD_EX32(data[3], TXFIFO_DATA2, DB5);
550
+ frame->data[7] = FIELD_EX32(data[3], TXFIFO_DATA2, DB4);
551
+}
552
+
553
+static bool tx_ready_check(XlnxZynqMPCANState *s)
554
+{
555
+ if (ARRAY_FIELD_EX32(s->regs, SOFTWARE_RESET_REGISTER, SRST)) {
556
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
557
+
558
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Attempting to transfer data while"
559
+ " data while controller is in reset mode.\n",
560
+ path);
561
+ return false;
562
+ }
563
+
564
+ if (ARRAY_FIELD_EX32(s->regs, SOFTWARE_RESET_REGISTER, CEN) == 0) {
565
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
566
+
567
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Attempting to transfer"
568
+ " data while controller is in configuration mode. Reset"
569
+ " the core so operations can start fresh.\n",
570
+ path);
571
+ return false;
572
+ }
573
+
574
+ if (ARRAY_FIELD_EX32(s->regs, STATUS_REGISTER, SNOOP)) {
575
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
576
+
577
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Attempting to transfer"
578
+ " data while controller is in SNOOP MODE.\n",
579
+ path);
580
+ return false;
581
+ }
582
+
583
+ return true;
584
+}
585
+
586
+static void transfer_fifo(XlnxZynqMPCANState *s, Fifo32 *fifo)
587
+{
588
+ qemu_can_frame frame;
589
+ uint32_t data[CAN_FRAME_SIZE];
590
+ int i;
591
+ bool can_tx = tx_ready_check(s);
592
+
593
+ if (!can_tx) {
594
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
595
+
596
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Controller is not enabled for data"
597
+ " transfer.\n", path);
598
+ can_update_irq(s);
599
+ return;
600
+ }
601
+
602
+ while (!fifo32_is_empty(fifo)) {
603
+ for (i = 0; i < CAN_FRAME_SIZE; i++) {
604
+ data[i] = fifo32_pop(fifo);
605
+ }
606
+
607
+ if (ARRAY_FIELD_EX32(s->regs, STATUS_REGISTER, LBACK)) {
608
+ /*
609
+ * Controller is in loopback. In Loopback mode, the CAN core
610
+ * transmits a recessive bitstream on to the XlnxZynqMPCAN Bus.
611
+ * Any message transmitted is looped back to the RX line and
612
+ * acknowledged. The XlnxZynqMPCAN core receives any message
613
+ * that it transmits.
614
+ */
615
+ if (fifo32_is_full(&s->rx_fifo)) {
616
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, RXOFLW, 1);
617
+ } else {
618
+ for (i = 0; i < CAN_FRAME_SIZE; i++) {
619
+ fifo32_push(&s->rx_fifo, data[i]);
620
+ }
621
+
622
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, RXOK, 1);
623
+ }
624
+ } else {
625
+ /* Normal mode Tx. */
626
+ generate_frame(&frame, data);
627
+
628
+ trace_xlnx_can_tx_data(frame.can_id, frame.can_dlc,
629
+ frame.data[0], frame.data[1],
630
+ frame.data[2], frame.data[3],
631
+ frame.data[4], frame.data[5],
632
+ frame.data[6], frame.data[7]);
633
+ can_bus_client_send(&s->bus_client, &frame, 1);
634
+ }
635
+ }
636
+
637
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, TXOK, 1);
638
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, TXBFLL, 0);
639
+
640
+ if (ARRAY_FIELD_EX32(s->regs, STATUS_REGISTER, SLEEP)) {
641
+ can_exit_sleep_mode(s);
642
+ }
643
+
644
+ can_update_irq(s);
645
+}
646
+
647
+static uint64_t can_srr_pre_write(RegisterInfo *reg, uint64_t val)
648
+{
649
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
650
+
651
+ ARRAY_FIELD_DP32(s->regs, SOFTWARE_RESET_REGISTER, CEN,
652
+ FIELD_EX32(val, SOFTWARE_RESET_REGISTER, CEN));
653
+
654
+ if (FIELD_EX32(val, SOFTWARE_RESET_REGISTER, SRST)) {
655
+ trace_xlnx_can_reset(val);
656
+
657
+ /* First, core will do software reset then will enter in config mode. */
658
+ can_config_reset(s);
659
+ }
660
+
661
+ if (ARRAY_FIELD_EX32(s->regs, SOFTWARE_RESET_REGISTER, CEN) == 0) {
662
+ can_config_mode(s);
663
+ } else {
664
+ /*
665
+ * Leave config mode. Now XlnxZynqMPCAN core will enter normal,
666
+ * sleep, snoop or loopback mode depending upon LBACK, SLEEP, SNOOP
667
+ * register states.
668
+ */
669
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, CONFIG, 0);
670
+
671
+ ptimer_transaction_begin(s->can_timer);
672
+ ptimer_set_count(s->can_timer, 0);
673
+ ptimer_transaction_commit(s->can_timer);
674
+
675
+ /* XlnxZynqMPCAN is out of config mode. It will send pending data. */
676
+ transfer_fifo(s, &s->txhpb_fifo);
677
+ transfer_fifo(s, &s->tx_fifo);
678
+ }
679
+
680
+ update_status_register_mode_bits(s);
681
+
682
+ return s->regs[R_SOFTWARE_RESET_REGISTER];
683
+}
684
+
685
+static uint64_t can_msr_pre_write(RegisterInfo *reg, uint64_t val)
686
+{
687
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
688
+ uint8_t multi_mode;
689
+
690
+ /*
691
+ * Multiple mode set check. This is done to make sure user doesn't set
692
+ * multiple modes.
693
+ */
694
+ multi_mode = FIELD_EX32(val, MODE_SELECT_REGISTER, LBACK) +
695
+ FIELD_EX32(val, MODE_SELECT_REGISTER, SLEEP) +
696
+ FIELD_EX32(val, MODE_SELECT_REGISTER, SNOOP);
697
+
698
+ if (multi_mode > 1) {
699
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
700
+
701
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Attempting to config"
702
+ " several modes simultaneously. One mode will be selected"
703
+ " according to their priority: LBACK > SLEEP > SNOOP.\n",
704
+ path);
705
+ }
706
+
707
+ if (ARRAY_FIELD_EX32(s->regs, SOFTWARE_RESET_REGISTER, CEN) == 0) {
708
+ /* We are in configuration mode, any mode can be selected. */
709
+ s->regs[R_MODE_SELECT_REGISTER] = val;
710
+ } else {
711
+ bool sleep_mode_bit = FIELD_EX32(val, MODE_SELECT_REGISTER, SLEEP);
712
+
713
+ ARRAY_FIELD_DP32(s->regs, MODE_SELECT_REGISTER, SLEEP, sleep_mode_bit);
714
+
715
+ if (FIELD_EX32(val, MODE_SELECT_REGISTER, LBACK)) {
716
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
717
+
718
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Attempting to set"
719
+ " LBACK mode without setting CEN bit as 0.\n",
720
+ path);
721
+ } else if (FIELD_EX32(val, MODE_SELECT_REGISTER, SNOOP)) {
722
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
723
+
724
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Attempting to set"
725
+ " SNOOP mode without setting CEN bit as 0.\n",
726
+ path);
727
+ }
728
+
729
+ update_status_register_mode_bits(s);
730
+ }
731
+
732
+ return s->regs[R_MODE_SELECT_REGISTER];
733
+}
734
+
735
+static uint64_t can_brpr_pre_write(RegisterInfo *reg, uint64_t val)
736
+{
737
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
738
+
739
+ /* Only allow writes when in config mode. */
740
+ if (ARRAY_FIELD_EX32(s->regs, SOFTWARE_RESET_REGISTER, CEN)) {
741
+ return s->regs[R_ARBITRATION_PHASE_BAUD_RATE_PRESCALER_REGISTER];
742
+ }
743
+
744
+ return val;
745
+}
746
+
747
+static uint64_t can_btr_pre_write(RegisterInfo *reg, uint64_t val)
748
+{
749
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
750
+
751
+ /* Only allow writes when in config mode. */
752
+ if (ARRAY_FIELD_EX32(s->regs, SOFTWARE_RESET_REGISTER, CEN)) {
753
+ return s->regs[R_ARBITRATION_PHASE_BIT_TIMING_REGISTER];
754
+ }
755
+
756
+ return val;
757
+}
758
+
759
+static uint64_t can_tcr_pre_write(RegisterInfo *reg, uint64_t val)
760
+{
761
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
762
+
763
+ if (FIELD_EX32(val, TIMESTAMP_REGISTER, CTS)) {
764
+ ptimer_transaction_begin(s->can_timer);
765
+ ptimer_set_count(s->can_timer, 0);
766
+ ptimer_transaction_commit(s->can_timer);
767
+ }
768
+
769
+ return 0;
770
+}
771
+
772
+static void update_rx_fifo(XlnxZynqMPCANState *s, const qemu_can_frame *frame)
773
+{
774
+ bool filter_pass = false;
775
+ uint16_t timestamp = 0;
776
+
777
+ /* If no filter is enabled. Message will be stored in FIFO. */
778
+ if (!((ARRAY_FIELD_EX32(s->regs, AFR, UAF1)) |
779
+ (ARRAY_FIELD_EX32(s->regs, AFR, UAF2)) |
780
+ (ARRAY_FIELD_EX32(s->regs, AFR, UAF3)) |
781
+ (ARRAY_FIELD_EX32(s->regs, AFR, UAF4)))) {
782
+ filter_pass = true;
783
+ }
784
+
785
+ /*
786
+ * Messages that pass any of the acceptance filters will be stored in
787
+ * the RX FIFO.
788
+ */
789
+ if (ARRAY_FIELD_EX32(s->regs, AFR, UAF1)) {
790
+ uint32_t id_masked = s->regs[R_AFMR1] & frame->can_id;
791
+ uint32_t filter_id_masked = s->regs[R_AFMR1] & s->regs[R_AFIR1];
792
+
793
+ if (filter_id_masked == id_masked) {
794
+ filter_pass = true;
795
+ }
796
+ }
797
+
798
+ if (ARRAY_FIELD_EX32(s->regs, AFR, UAF2)) {
799
+ uint32_t id_masked = s->regs[R_AFMR2] & frame->can_id;
800
+ uint32_t filter_id_masked = s->regs[R_AFMR2] & s->regs[R_AFIR2];
801
+
802
+ if (filter_id_masked == id_masked) {
803
+ filter_pass = true;
804
+ }
805
+ }
806
+
807
+ if (ARRAY_FIELD_EX32(s->regs, AFR, UAF3)) {
808
+ uint32_t id_masked = s->regs[R_AFMR3] & frame->can_id;
809
+ uint32_t filter_id_masked = s->regs[R_AFMR3] & s->regs[R_AFIR3];
810
+
811
+ if (filter_id_masked == id_masked) {
812
+ filter_pass = true;
813
+ }
814
+ }
815
+
816
+ if (ARRAY_FIELD_EX32(s->regs, AFR, UAF4)) {
817
+ uint32_t id_masked = s->regs[R_AFMR4] & frame->can_id;
818
+ uint32_t filter_id_masked = s->regs[R_AFMR4] & s->regs[R_AFIR4];
819
+
820
+ if (filter_id_masked == id_masked) {
821
+ filter_pass = true;
822
+ }
823
+ }
824
+
825
+ if (!filter_pass) {
826
+ trace_xlnx_can_rx_fifo_filter_reject(frame->can_id, frame->can_dlc);
827
+ return;
828
+ }
829
+
830
+ /* Store the message in fifo if it passed through any of the filters. */
831
+ if (filter_pass && frame->can_dlc <= MAX_DLC) {
832
+
833
+ if (fifo32_is_full(&s->rx_fifo)) {
834
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, RXOFLW, 1);
835
+ } else {
836
+ timestamp = CAN_TIMER_MAX - ptimer_get_count(s->can_timer);
837
+
838
+ fifo32_push(&s->rx_fifo, frame->can_id);
839
+
840
+ fifo32_push(&s->rx_fifo, deposit32(0, R_RXFIFO_DLC_DLC_SHIFT,
841
+ R_RXFIFO_DLC_DLC_LENGTH,
842
+ frame->can_dlc) |
843
+ deposit32(0, R_RXFIFO_DLC_RXT_SHIFT,
844
+ R_RXFIFO_DLC_RXT_LENGTH,
845
+ timestamp));
846
+
847
+ /* First 32 bit of the data. */
848
+ fifo32_push(&s->rx_fifo, deposit32(0, R_TXFIFO_DATA1_DB3_SHIFT,
849
+ R_TXFIFO_DATA1_DB3_LENGTH,
850
+ frame->data[0]) |
851
+ deposit32(0, R_TXFIFO_DATA1_DB2_SHIFT,
852
+ R_TXFIFO_DATA1_DB2_LENGTH,
853
+ frame->data[1]) |
854
+ deposit32(0, R_TXFIFO_DATA1_DB1_SHIFT,
855
+ R_TXFIFO_DATA1_DB1_LENGTH,
856
+ frame->data[2]) |
857
+ deposit32(0, R_TXFIFO_DATA1_DB0_SHIFT,
858
+ R_TXFIFO_DATA1_DB0_LENGTH,
859
+ frame->data[3]));
860
+ /* Last 32 bit of the data. */
861
+ fifo32_push(&s->rx_fifo, deposit32(0, R_TXFIFO_DATA2_DB7_SHIFT,
862
+ R_TXFIFO_DATA2_DB7_LENGTH,
863
+ frame->data[4]) |
864
+ deposit32(0, R_TXFIFO_DATA2_DB6_SHIFT,
865
+ R_TXFIFO_DATA2_DB6_LENGTH,
866
+ frame->data[5]) |
867
+ deposit32(0, R_TXFIFO_DATA2_DB5_SHIFT,
868
+ R_TXFIFO_DATA2_DB5_LENGTH,
869
+ frame->data[6]) |
870
+ deposit32(0, R_TXFIFO_DATA2_DB4_SHIFT,
871
+ R_TXFIFO_DATA2_DB4_LENGTH,
872
+ frame->data[7]));
873
+
874
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, RXOK, 1);
875
+ trace_xlnx_can_rx_data(frame->can_id, frame->can_dlc,
876
+ frame->data[0], frame->data[1],
877
+ frame->data[2], frame->data[3],
878
+ frame->data[4], frame->data[5],
879
+ frame->data[6], frame->data[7]);
880
+ }
881
+
882
+ can_update_irq(s);
883
+ }
884
+}
885
+
886
+static uint64_t can_rxfifo_pre_read(RegisterInfo *reg, uint64_t val)
887
+{
888
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
889
+
890
+ if (!fifo32_is_empty(&s->rx_fifo)) {
891
+ val = fifo32_pop(&s->rx_fifo);
892
+ } else {
893
+ ARRAY_FIELD_DP32(s->regs, INTERRUPT_STATUS_REGISTER, RXUFLW, 1);
894
+ }
895
+
896
+ can_update_irq(s);
897
+ return val;
898
+}
899
+
900
+static void can_filter_enable_post_write(RegisterInfo *reg, uint64_t val)
901
+{
902
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
903
+
904
+ if (ARRAY_FIELD_EX32(s->regs, AFR, UAF1) &&
905
+ ARRAY_FIELD_EX32(s->regs, AFR, UAF2) &&
906
+ ARRAY_FIELD_EX32(s->regs, AFR, UAF3) &&
907
+ ARRAY_FIELD_EX32(s->regs, AFR, UAF4)) {
908
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, ACFBSY, 1);
909
+ } else {
910
+ ARRAY_FIELD_DP32(s->regs, STATUS_REGISTER, ACFBSY, 0);
911
+ }
912
+}
913
+
914
+static uint64_t can_filter_mask_pre_write(RegisterInfo *reg, uint64_t val)
915
+{
916
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
917
+ uint32_t reg_idx = (reg->access->addr) / 4;
918
+ uint32_t filter_number = (reg_idx - R_AFMR1) / 2;
919
+
920
+ /* modify an acceptance filter, the corresponding UAF bit should be '0'. */
921
+ if (!(s->regs[R_AFR] & (1 << filter_number))) {
922
+ s->regs[reg_idx] = val;
923
+
924
+ trace_xlnx_can_filter_mask_pre_write(filter_number, s->regs[reg_idx]);
925
+ } else {
926
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
927
+
928
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Acceptance filter %d"
929
+ " mask is not set as corresponding UAF bit is not 0.\n",
930
+ path, filter_number + 1);
931
+ }
932
+
933
+ return s->regs[reg_idx];
934
+}
935
+
936
+static uint64_t can_filter_id_pre_write(RegisterInfo *reg, uint64_t val)
937
+{
938
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
939
+ uint32_t reg_idx = (reg->access->addr) / 4;
940
+ uint32_t filter_number = (reg_idx - R_AFIR1) / 2;
941
+
942
+ if (!(s->regs[R_AFR] & (1 << filter_number))) {
943
+ s->regs[reg_idx] = val;
944
+
945
+ trace_xlnx_can_filter_id_pre_write(filter_number, s->regs[reg_idx]);
946
+ } else {
947
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
948
+
949
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Acceptance filter %d"
950
+ " id is not set as corresponding UAF bit is not 0.\n",
951
+ path, filter_number + 1);
952
+ }
953
+
954
+ return s->regs[reg_idx];
955
+}
956
+
957
+static void can_tx_post_write(RegisterInfo *reg, uint64_t val)
958
+{
959
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(reg->opaque);
960
+
961
+ bool is_txhpb = reg->access->addr > A_TXFIFO_DATA2;
962
+
963
+ bool initiate_transfer = (reg->access->addr == A_TXFIFO_DATA2) ||
964
+ (reg->access->addr == A_TXHPB_DATA2);
965
+
966
+ Fifo32 *f = is_txhpb ? &s->txhpb_fifo : &s->tx_fifo;
967
+
968
+ if (!fifo32_is_full(f)) {
969
+ fifo32_push(f, val);
970
+ } else {
971
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
972
+
973
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: TX FIFO is full.\n", path);
974
+ }
975
+
976
+ /* Initiate the message send if TX register is written. */
977
+ if (initiate_transfer &&
978
+ ARRAY_FIELD_EX32(s->regs, SOFTWARE_RESET_REGISTER, CEN)) {
979
+ transfer_fifo(s, f);
980
+ }
981
+
982
+ can_update_irq(s);
983
+}
984
+
985
+static const RegisterAccessInfo can_regs_info[] = {
986
+ { .name = "SOFTWARE_RESET_REGISTER",
987
+ .addr = A_SOFTWARE_RESET_REGISTER,
988
+ .rsvd = 0xfffffffc,
989
+ .pre_write = can_srr_pre_write,
990
+ },{ .name = "MODE_SELECT_REGISTER",
991
+ .addr = A_MODE_SELECT_REGISTER,
992
+ .rsvd = 0xfffffff8,
993
+ .pre_write = can_msr_pre_write,
994
+ },{ .name = "ARBITRATION_PHASE_BAUD_RATE_PRESCALER_REGISTER",
995
+ .addr = A_ARBITRATION_PHASE_BAUD_RATE_PRESCALER_REGISTER,
996
+ .rsvd = 0xffffff00,
997
+ .pre_write = can_brpr_pre_write,
998
+ },{ .name = "ARBITRATION_PHASE_BIT_TIMING_REGISTER",
999
+ .addr = A_ARBITRATION_PHASE_BIT_TIMING_REGISTER,
1000
+ .rsvd = 0xfffffe00,
1001
+ .pre_write = can_btr_pre_write,
1002
+ },{ .name = "ERROR_COUNTER_REGISTER",
1003
+ .addr = A_ERROR_COUNTER_REGISTER,
1004
+ .rsvd = 0xffff0000,
1005
+ .ro = 0xffffffff,
1006
+ },{ .name = "ERROR_STATUS_REGISTER",
1007
+ .addr = A_ERROR_STATUS_REGISTER,
1008
+ .rsvd = 0xffffffe0,
1009
+ .w1c = 0x1f,
1010
+ },{ .name = "STATUS_REGISTER", .addr = A_STATUS_REGISTER,
1011
+ .reset = 0x1,
1012
+ .rsvd = 0xffffe000,
1013
+ .ro = 0x1fff,
1014
+ },{ .name = "INTERRUPT_STATUS_REGISTER",
1015
+ .addr = A_INTERRUPT_STATUS_REGISTER,
1016
+ .reset = 0x6000,
1017
+ .rsvd = 0xffff8000,
1018
+ .ro = 0x7fff,
1019
+ },{ .name = "INTERRUPT_ENABLE_REGISTER",
1020
+ .addr = A_INTERRUPT_ENABLE_REGISTER,
1021
+ .rsvd = 0xffff8000,
1022
+ .post_write = can_ier_post_write,
1023
+ },{ .name = "INTERRUPT_CLEAR_REGISTER",
1024
+ .addr = A_INTERRUPT_CLEAR_REGISTER,
1025
+ .rsvd = 0xffff8000,
1026
+ .pre_write = can_icr_pre_write,
1027
+ },{ .name = "TIMESTAMP_REGISTER",
1028
+ .addr = A_TIMESTAMP_REGISTER,
1029
+ .rsvd = 0xfffffffe,
1030
+ .pre_write = can_tcr_pre_write,
1031
+ },{ .name = "WIR", .addr = A_WIR,
1032
+ .reset = 0x3f3f,
1033
+ .rsvd = 0xffff0000,
1034
+ },{ .name = "TXFIFO_ID", .addr = A_TXFIFO_ID,
1035
+ .post_write = can_tx_post_write,
1036
+ },{ .name = "TXFIFO_DLC", .addr = A_TXFIFO_DLC,
1037
+ .rsvd = 0xfffffff,
1038
+ .post_write = can_tx_post_write,
1039
+ },{ .name = "TXFIFO_DATA1", .addr = A_TXFIFO_DATA1,
1040
+ .post_write = can_tx_post_write,
1041
+ },{ .name = "TXFIFO_DATA2", .addr = A_TXFIFO_DATA2,
1042
+ .post_write = can_tx_post_write,
1043
+ },{ .name = "TXHPB_ID", .addr = A_TXHPB_ID,
1044
+ .post_write = can_tx_post_write,
1045
+ },{ .name = "TXHPB_DLC", .addr = A_TXHPB_DLC,
1046
+ .rsvd = 0xfffffff,
1047
+ .post_write = can_tx_post_write,
1048
+ },{ .name = "TXHPB_DATA1", .addr = A_TXHPB_DATA1,
1049
+ .post_write = can_tx_post_write,
1050
+ },{ .name = "TXHPB_DATA2", .addr = A_TXHPB_DATA2,
1051
+ .post_write = can_tx_post_write,
1052
+ },{ .name = "RXFIFO_ID", .addr = A_RXFIFO_ID,
1053
+ .ro = 0xffffffff,
1054
+ .post_read = can_rxfifo_pre_read,
1055
+ },{ .name = "RXFIFO_DLC", .addr = A_RXFIFO_DLC,
1056
+ .rsvd = 0xfff0000,
1057
+ .post_read = can_rxfifo_pre_read,
1058
+ },{ .name = "RXFIFO_DATA1", .addr = A_RXFIFO_DATA1,
1059
+ .post_read = can_rxfifo_pre_read,
1060
+ },{ .name = "RXFIFO_DATA2", .addr = A_RXFIFO_DATA2,
1061
+ .post_read = can_rxfifo_pre_read,
1062
+ },{ .name = "AFR", .addr = A_AFR,
1063
+ .rsvd = 0xfffffff0,
1064
+ .post_write = can_filter_enable_post_write,
1065
+ },{ .name = "AFMR1", .addr = A_AFMR1,
1066
+ .pre_write = can_filter_mask_pre_write,
1067
+ },{ .name = "AFIR1", .addr = A_AFIR1,
1068
+ .pre_write = can_filter_id_pre_write,
1069
+ },{ .name = "AFMR2", .addr = A_AFMR2,
1070
+ .pre_write = can_filter_mask_pre_write,
1071
+ },{ .name = "AFIR2", .addr = A_AFIR2,
1072
+ .pre_write = can_filter_id_pre_write,
1073
+ },{ .name = "AFMR3", .addr = A_AFMR3,
1074
+ .pre_write = can_filter_mask_pre_write,
1075
+ },{ .name = "AFIR3", .addr = A_AFIR3,
1076
+ .pre_write = can_filter_id_pre_write,
1077
+ },{ .name = "AFMR4", .addr = A_AFMR4,
1078
+ .pre_write = can_filter_mask_pre_write,
1079
+ },{ .name = "AFIR4", .addr = A_AFIR4,
1080
+ .pre_write = can_filter_id_pre_write,
1081
+ }
1082
+};
1083
+
1084
+static void xlnx_zynqmp_can_ptimer_cb(void *opaque)
1085
+{
1086
+ /* No action required on the timer rollover. */
1087
+}
1088
+
1089
+static const MemoryRegionOps can_ops = {
1090
+ .read = register_read_memory,
1091
+ .write = register_write_memory,
1092
+ .endianness = DEVICE_LITTLE_ENDIAN,
1093
+ .valid = {
1094
+ .min_access_size = 4,
1095
+ .max_access_size = 4,
1096
+ },
1097
+};
1098
+
1099
+static void xlnx_zynqmp_can_reset_init(Object *obj, ResetType type)
1100
+{
1101
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(obj);
1102
+ unsigned int i;
1103
+
1104
+ for (i = R_RXFIFO_ID; i < ARRAY_SIZE(s->reg_info); ++i) {
1105
+ register_reset(&s->reg_info[i]);
1106
+ }
1107
+
1108
+ ptimer_transaction_begin(s->can_timer);
1109
+ ptimer_set_count(s->can_timer, 0);
1110
+ ptimer_transaction_commit(s->can_timer);
1111
+}
1112
+
1113
+static void xlnx_zynqmp_can_reset_hold(Object *obj)
1114
+{
1115
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(obj);
1116
+ unsigned int i;
1117
+
1118
+ for (i = 0; i < R_RXFIFO_ID; ++i) {
1119
+ register_reset(&s->reg_info[i]);
1120
+ }
1121
+
1122
+ /*
1123
+ * Reset FIFOs when CAN model is reset. This will clear the fifo writes
1124
+ * done by post_write which gets called from register_reset function,
1125
+ * post_write handle will not be able to trigger tx because CAN will be
1126
+ * disabled when software_reset_register is cleared first.
1127
+ */
1128
+ fifo32_reset(&s->rx_fifo);
1129
+ fifo32_reset(&s->tx_fifo);
1130
+ fifo32_reset(&s->txhpb_fifo);
1131
+}
1132
+
1133
+static bool xlnx_zynqmp_can_can_receive(CanBusClientState *client)
1134
+{
1135
+ XlnxZynqMPCANState *s = container_of(client, XlnxZynqMPCANState,
1136
+ bus_client);
1137
+
1138
+ if (ARRAY_FIELD_EX32(s->regs, SOFTWARE_RESET_REGISTER, SRST)) {
1139
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
1140
+
1141
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Controller is in reset state.\n",
1142
+ path);
1143
+ return false;
1144
+ }
1145
+
1146
+ if ((ARRAY_FIELD_EX32(s->regs, SOFTWARE_RESET_REGISTER, CEN)) == 0) {
1147
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
1148
+
1149
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Controller is disabled. Incoming"
1150
+ " messages will be discarded.\n", path);
1151
+ return false;
1152
+ }
1153
+
1154
+ return true;
1155
+}
1156
+
1157
+static ssize_t xlnx_zynqmp_can_receive(CanBusClientState *client,
1158
+ const qemu_can_frame *buf, size_t buf_size) {
1159
+ XlnxZynqMPCANState *s = container_of(client, XlnxZynqMPCANState,
1160
+ bus_client);
1161
+ const qemu_can_frame *frame = buf;
1162
+
1163
+ if (buf_size <= 0) {
1164
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
1165
+
1166
+ qemu_log_mask(LOG_GUEST_ERROR, "%s: Error in the data received.\n",
1167
+ path);
1168
+ return 0;
1169
+ }
1170
+
1171
+ if (ARRAY_FIELD_EX32(s->regs, STATUS_REGISTER, SNOOP)) {
1172
+ /* Snoop Mode: Just keep the data. no response back. */
1173
+ update_rx_fifo(s, frame);
1174
+ } else if ((ARRAY_FIELD_EX32(s->regs, STATUS_REGISTER, SLEEP))) {
1175
+ /*
1176
+ * XlnxZynqMPCAN is in sleep mode. Any data on bus will bring it to wake
1177
+ * up state.
1178
+ */
1179
+ can_exit_sleep_mode(s);
1180
+ update_rx_fifo(s, frame);
1181
+ } else if ((ARRAY_FIELD_EX32(s->regs, STATUS_REGISTER, SLEEP)) == 0) {
1182
+ update_rx_fifo(s, frame);
1183
+ } else {
1184
+ /*
1185
+ * XlnxZynqMPCAN will not participate in normal bus communication
1186
+ * and will not receive any messages transmitted by other CAN nodes.
1187
+ */
1188
+ trace_xlnx_can_rx_discard(s->regs[R_STATUS_REGISTER]);
1189
+ }
1190
+
1191
+ return 1;
1192
+}
1193
+
1194
+static CanBusClientInfo can_xilinx_bus_client_info = {
1195
+ .can_receive = xlnx_zynqmp_can_can_receive,
1196
+ .receive = xlnx_zynqmp_can_receive,
1197
+};
1198
+
1199
+static int xlnx_zynqmp_can_connect_to_bus(XlnxZynqMPCANState *s,
1200
+ CanBusState *bus)
1201
+{
1202
+ s->bus_client.info = &can_xilinx_bus_client_info;
1203
+
1204
+ if (can_bus_insert_client(bus, &s->bus_client) < 0) {
1205
+ return -1;
1206
+ }
1207
+ return 0;
1208
+}
1209
+
1210
+static void xlnx_zynqmp_can_realize(DeviceState *dev, Error **errp)
1211
+{
1212
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(dev);
1213
+
1214
+ if (s->canbus) {
1215
+ if (xlnx_zynqmp_can_connect_to_bus(s, s->canbus) < 0) {
1216
+ g_autofree char *path = object_get_canonical_path(OBJECT(s));
1217
+
1218
+ error_setg(errp, "%s: xlnx_zynqmp_can_connect_to_bus"
1219
+ " failed.", path);
1220
+ return;
1221
+ }
1222
+ }
1223
+
1224
+ /* Create RX FIFO, TXFIFO, TXHPB storage. */
1225
+ fifo32_create(&s->rx_fifo, RXFIFO_SIZE);
1226
+ fifo32_create(&s->tx_fifo, RXFIFO_SIZE);
1227
+ fifo32_create(&s->txhpb_fifo, CAN_FRAME_SIZE);
1228
+
1229
+ /* Allocate a new timer. */
1230
+ s->can_timer = ptimer_init(xlnx_zynqmp_can_ptimer_cb, s,
1231
+ PTIMER_POLICY_DEFAULT);
1232
+
1233
+ ptimer_transaction_begin(s->can_timer);
1234
+
1235
+ ptimer_set_freq(s->can_timer, s->cfg.ext_clk_freq);
1236
+ ptimer_set_limit(s->can_timer, CAN_TIMER_MAX, 1);
1237
+ ptimer_run(s->can_timer, 0);
1238
+ ptimer_transaction_commit(s->can_timer);
1239
+}
1240
+
1241
+static void xlnx_zynqmp_can_init(Object *obj)
1242
+{
1243
+ XlnxZynqMPCANState *s = XLNX_ZYNQMP_CAN(obj);
1244
+ SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
1245
+
1246
+ RegisterInfoArray *reg_array;
1247
+
1248
+ memory_region_init(&s->iomem, obj, TYPE_XLNX_ZYNQMP_CAN,
1249
+ XLNX_ZYNQMP_CAN_R_MAX * 4);
1250
+ reg_array = register_init_block32(DEVICE(obj), can_regs_info,
1251
+ ARRAY_SIZE(can_regs_info),
1252
+ s->reg_info, s->regs,
1253
+ &can_ops,
1254
+ XLNX_ZYNQMP_CAN_ERR_DEBUG,
1255
+ XLNX_ZYNQMP_CAN_R_MAX * 4);
1256
+
1257
+ memory_region_add_subregion(&s->iomem, 0x00, &reg_array->mem);
1258
+ sysbus_init_mmio(sbd, &s->iomem);
1259
+ sysbus_init_irq(SYS_BUS_DEVICE(obj), &s->irq);
1260
+}
1261
+
1262
+static const VMStateDescription vmstate_can = {
1263
+ .name = TYPE_XLNX_ZYNQMP_CAN,
1264
+ .version_id = 1,
1265
+ .minimum_version_id = 1,
1266
+ .fields = (VMStateField[]) {
1267
+ VMSTATE_FIFO32(rx_fifo, XlnxZynqMPCANState),
1268
+ VMSTATE_FIFO32(tx_fifo, XlnxZynqMPCANState),
1269
+ VMSTATE_FIFO32(txhpb_fifo, XlnxZynqMPCANState),
1270
+ VMSTATE_UINT32_ARRAY(regs, XlnxZynqMPCANState, XLNX_ZYNQMP_CAN_R_MAX),
1271
+ VMSTATE_PTIMER(can_timer, XlnxZynqMPCANState),
1272
+ VMSTATE_END_OF_LIST(),
1273
+ }
1274
+};
1275
+
1276
+static Property xlnx_zynqmp_can_properties[] = {
1277
+ DEFINE_PROP_UINT32("ext_clk_freq", XlnxZynqMPCANState, cfg.ext_clk_freq,
1278
+ CAN_DEFAULT_CLOCK),
1279
+ DEFINE_PROP_LINK("canbus", XlnxZynqMPCANState, canbus, TYPE_CAN_BUS,
1280
+ CanBusState *),
1281
+ DEFINE_PROP_END_OF_LIST(),
1282
+};
1283
+
1284
+static void xlnx_zynqmp_can_class_init(ObjectClass *klass, void *data)
1285
+{
1286
+ DeviceClass *dc = DEVICE_CLASS(klass);
1287
+ ResettableClass *rc = RESETTABLE_CLASS(klass);
1288
+
1289
+ rc->phases.enter = xlnx_zynqmp_can_reset_init;
1290
+ rc->phases.hold = xlnx_zynqmp_can_reset_hold;
1291
+ dc->realize = xlnx_zynqmp_can_realize;
1292
+ device_class_set_props(dc, xlnx_zynqmp_can_properties);
1293
+ dc->vmsd = &vmstate_can;
1294
+}
1295
+
1296
+static const TypeInfo can_info = {
1297
+ .name = TYPE_XLNX_ZYNQMP_CAN,
1298
+ .parent = TYPE_SYS_BUS_DEVICE,
1299
+ .instance_size = sizeof(XlnxZynqMPCANState),
1300
+ .class_init = xlnx_zynqmp_can_class_init,
1301
+ .instance_init = xlnx_zynqmp_can_init,
1302
+};
1303
+
1304
+static void can_register_types(void)
1305
+{
1306
+ type_register_static(&can_info);
1307
+}
1308
+
1309
+type_init(can_register_types)
1310
diff --git a/hw/Kconfig b/hw/Kconfig
1311
index XXXXXXX..XXXXXXX 100644
1312
--- a/hw/Kconfig
1313
+++ b/hw/Kconfig
1314
@@ -XXX,XX +XXX,XX @@ config XILINX_AXI
1315
config XLNX_ZYNQMP
1316
bool
1317
select REGISTER
1318
+ select CAN_BUS
1319
diff --git a/hw/net/can/meson.build b/hw/net/can/meson.build
1320
index XXXXXXX..XXXXXXX 100644
1321
--- a/hw/net/can/meson.build
1322
+++ b/hw/net/can/meson.build
1323
@@ -XXX,XX +XXX,XX @@ softmmu_ss.add(when: 'CONFIG_CAN_PCI', if_true: files('can_pcm3680_pci.c'))
1324
softmmu_ss.add(when: 'CONFIG_CAN_PCI', if_true: files('can_mioe3680_pci.c'))
1325
softmmu_ss.add(when: 'CONFIG_CAN_CTUCANFD', if_true: files('ctucan_core.c'))
1326
softmmu_ss.add(when: 'CONFIG_CAN_CTUCANFD_PCI', if_true: files('ctucan_pci.c'))
1327
+softmmu_ss.add(when: 'CONFIG_XLNX_ZYNQMP', if_true: files('xlnx-zynqmp-can.c'))
1328
diff --git a/hw/net/can/trace-events b/hw/net/can/trace-events
1329
new file mode 100644
1330
index XXXXXXX..XXXXXXX
1331
--- /dev/null
1332
+++ b/hw/net/can/trace-events
1333
@@ -XXX,XX +XXX,XX @@
1334
+# xlnx-zynqmp-can.c
1335
+xlnx_can_update_irq(uint32_t isr, uint32_t ier, uint32_t irq) "ISR: 0x%08x IER: 0x%08x IRQ: 0x%08x"
1336
+xlnx_can_reset(uint32_t val) "Resetting controller with value = 0x%08x"
1337
+xlnx_can_rx_fifo_filter_reject(uint32_t id, uint8_t dlc) "Frame: ID: 0x%08x DLC: 0x%02x"
1338
+xlnx_can_filter_id_pre_write(uint8_t filter_num, uint32_t value) "Filter%d ID: 0x%08x"
1339
+xlnx_can_filter_mask_pre_write(uint8_t filter_num, uint32_t value) "Filter%d MASK: 0x%08x"
1340
+xlnx_can_tx_data(uint32_t id, uint8_t dlc, uint8_t db0, uint8_t db1, uint8_t db2, uint8_t db3, uint8_t db4, uint8_t db5, uint8_t db6, uint8_t db7) "Frame: ID: 0x%08x DLC: 0x%02x DATA: 0x%02x 0x%02x 0x%02x 0x%02x 0x%02x 0x%02x 0x%02x 0x%02x"
1341
+xlnx_can_rx_data(uint32_t id, uint32_t dlc, uint8_t db0, uint8_t db1, uint8_t db2, uint8_t db3, uint8_t db4, uint8_t db5, uint8_t db6, uint8_t db7) "Frame: ID: 0x%08x DLC: 0x%02x DATA: 0x%02x 0x%02x 0x%02x 0x%02x 0x%02x 0x%02x 0x%02x 0x%02x"
1342
+xlnx_can_rx_discard(uint32_t status) "Controller is not enabled for bus communication. Status Register: 0x%08x"
62
--
1343
--
63
2.20.1
1344
2.20.1
64
1345
65
1346
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Vikram Garhwal <fnu.vikram@xilinx.com>
2
2
3
This is all of the non-exception cases of DISAS_NORETURN.
3
Connect CAN0 and CAN1 on the ZynqMP.
4
4
5
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
5
Reviewed-by: Francisco Iglesias <francisco.iglesias@xilinx.com>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Edgar E. Iglesias <edgar.iglesias@xilinx.com>
7
Message-id: 20190128223118.5255-8-richard.henderson@linaro.org
7
Signed-off-by: Vikram Garhwal <fnu.vikram@xilinx.com>
8
Message-id: 1605728926-352690-3-git-send-email-fnu.vikram@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/translate-a64.c | 6 ++++++
11
include/hw/arm/xlnx-zynqmp.h | 8 ++++++++
11
1 file changed, 6 insertions(+)
12
hw/arm/xlnx-zcu102.c | 20 ++++++++++++++++++++
13
hw/arm/xlnx-zynqmp.c | 34 ++++++++++++++++++++++++++++++++++
14
3 files changed, 62 insertions(+)
12
15
13
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
16
diff --git a/include/hw/arm/xlnx-zynqmp.h b/include/hw/arm/xlnx-zynqmp.h
14
index XXXXXXX..XXXXXXX 100644
17
index XXXXXXX..XXXXXXX 100644
15
--- a/target/arm/translate-a64.c
18
--- a/include/hw/arm/xlnx-zynqmp.h
16
+++ b/target/arm/translate-a64.c
19
+++ b/include/hw/arm/xlnx-zynqmp.h
17
@@ -XXX,XX +XXX,XX @@ static void disas_uncond_b_imm(DisasContext *s, uint32_t insn)
20
@@ -XXX,XX +XXX,XX @@
21
#include "hw/intc/arm_gic.h"
22
#include "hw/net/cadence_gem.h"
23
#include "hw/char/cadence_uart.h"
24
+#include "hw/net/xlnx-zynqmp-can.h"
25
#include "hw/ide/ahci.h"
26
#include "hw/sd/sdhci.h"
27
#include "hw/ssi/xilinx_spips.h"
28
@@ -XXX,XX +XXX,XX @@
29
#include "hw/cpu/cluster.h"
30
#include "target/arm/cpu.h"
31
#include "qom/object.h"
32
+#include "net/can_emu.h"
33
34
#define TYPE_XLNX_ZYNQMP "xlnx,zynqmp"
35
OBJECT_DECLARE_SIMPLE_TYPE(XlnxZynqMPState, XLNX_ZYNQMP)
36
@@ -XXX,XX +XXX,XX @@ OBJECT_DECLARE_SIMPLE_TYPE(XlnxZynqMPState, XLNX_ZYNQMP)
37
#define XLNX_ZYNQMP_NUM_RPU_CPUS 2
38
#define XLNX_ZYNQMP_NUM_GEMS 4
39
#define XLNX_ZYNQMP_NUM_UARTS 2
40
+#define XLNX_ZYNQMP_NUM_CAN 2
41
+#define XLNX_ZYNQMP_CAN_REF_CLK (24 * 1000 * 1000)
42
#define XLNX_ZYNQMP_NUM_SDHCI 2
43
#define XLNX_ZYNQMP_NUM_SPIS 2
44
#define XLNX_ZYNQMP_NUM_GDMA_CH 8
45
@@ -XXX,XX +XXX,XX @@ struct XlnxZynqMPState {
46
47
CadenceGEMState gem[XLNX_ZYNQMP_NUM_GEMS];
48
CadenceUARTState uart[XLNX_ZYNQMP_NUM_UARTS];
49
+ XlnxZynqMPCANState can[XLNX_ZYNQMP_NUM_CAN];
50
SysbusAHCIState sata;
51
SDHCIState sdhci[XLNX_ZYNQMP_NUM_SDHCI];
52
XilinxSPIPS spi[XLNX_ZYNQMP_NUM_SPIS];
53
@@ -XXX,XX +XXX,XX @@ struct XlnxZynqMPState {
54
bool virt;
55
/* Has the RPU subsystem? */
56
bool has_rpu;
57
+
58
+ /* CAN bus. */
59
+ CanBusState *canbus[XLNX_ZYNQMP_NUM_CAN];
60
};
61
62
#endif
63
diff --git a/hw/arm/xlnx-zcu102.c b/hw/arm/xlnx-zcu102.c
64
index XXXXXXX..XXXXXXX 100644
65
--- a/hw/arm/xlnx-zcu102.c
66
+++ b/hw/arm/xlnx-zcu102.c
67
@@ -XXX,XX +XXX,XX @@
68
#include "sysemu/qtest.h"
69
#include "sysemu/device_tree.h"
70
#include "qom/object.h"
71
+#include "net/can_emu.h"
72
73
struct XlnxZCU102 {
74
MachineState parent_obj;
75
@@ -XXX,XX +XXX,XX @@ struct XlnxZCU102 {
76
bool secure;
77
bool virt;
78
79
+ CanBusState *canbus[XLNX_ZYNQMP_NUM_CAN];
80
+
81
struct arm_boot_info binfo;
82
};
83
84
@@ -XXX,XX +XXX,XX @@ static void xlnx_zcu102_init(MachineState *machine)
85
object_property_set_bool(OBJECT(&s->soc), "virtualization", s->virt,
86
&error_fatal);
87
88
+ for (i = 0; i < XLNX_ZYNQMP_NUM_CAN; i++) {
89
+ gchar *bus_name = g_strdup_printf("canbus%d", i);
90
+
91
+ object_property_set_link(OBJECT(&s->soc), bus_name,
92
+ OBJECT(s->canbus[i]), &error_fatal);
93
+ g_free(bus_name);
94
+ }
95
+
96
qdev_realize(DEVICE(&s->soc), NULL, &error_fatal);
97
98
/* Create and plug in the SD cards */
99
@@ -XXX,XX +XXX,XX @@ static void xlnx_zcu102_machine_instance_init(Object *obj)
100
s->secure = false;
101
/* Default to virt (EL2) being disabled */
102
s->virt = false;
103
+ object_property_add_link(obj, "xlnx-zcu102.canbus0", TYPE_CAN_BUS,
104
+ (Object **)&s->canbus[0],
105
+ object_property_allow_set_link,
106
+ 0);
107
+
108
+ object_property_add_link(obj, "xlnx-zcu102.canbus1", TYPE_CAN_BUS,
109
+ (Object **)&s->canbus[1],
110
+ object_property_allow_set_link,
111
+ 0);
112
}
113
114
static void xlnx_zcu102_machine_class_init(ObjectClass *oc, void *data)
115
diff --git a/hw/arm/xlnx-zynqmp.c b/hw/arm/xlnx-zynqmp.c
116
index XXXXXXX..XXXXXXX 100644
117
--- a/hw/arm/xlnx-zynqmp.c
118
+++ b/hw/arm/xlnx-zynqmp.c
119
@@ -XXX,XX +XXX,XX @@ static const int uart_intr[XLNX_ZYNQMP_NUM_UARTS] = {
120
21, 22,
121
};
122
123
+static const uint64_t can_addr[XLNX_ZYNQMP_NUM_CAN] = {
124
+ 0xFF060000, 0xFF070000,
125
+};
126
+
127
+static const int can_intr[XLNX_ZYNQMP_NUM_CAN] = {
128
+ 23, 24,
129
+};
130
+
131
static const uint64_t sdhci_addr[XLNX_ZYNQMP_NUM_SDHCI] = {
132
0xFF160000, 0xFF170000,
133
};
134
@@ -XXX,XX +XXX,XX @@ static void xlnx_zynqmp_init(Object *obj)
135
TYPE_CADENCE_UART);
18
}
136
}
19
137
20
/* B Branch / BL Branch with link */
138
+ for (i = 0; i < XLNX_ZYNQMP_NUM_CAN; i++) {
21
+ reset_btype(s);
139
+ object_initialize_child(obj, "can[*]", &s->can[i],
22
gen_goto_tb(s, 0, addr);
140
+ TYPE_XLNX_ZYNQMP_CAN);
23
}
141
+ }
24
25
@@ -XXX,XX +XXX,XX @@ static void disas_comp_b_imm(DisasContext *s, uint32_t insn)
26
tcg_cmp = read_cpu_reg(s, rt, sf);
27
label_match = gen_new_label();
28
29
+ reset_btype(s);
30
tcg_gen_brcondi_i64(op ? TCG_COND_NE : TCG_COND_EQ,
31
tcg_cmp, 0, label_match);
32
33
@@ -XXX,XX +XXX,XX @@ static void disas_test_b_imm(DisasContext *s, uint32_t insn)
34
tcg_cmp = tcg_temp_new_i64();
35
tcg_gen_andi_i64(tcg_cmp, cpu_reg(s, rt), (1ULL << bit_pos));
36
label_match = gen_new_label();
37
+
142
+
38
+ reset_btype(s);
143
object_initialize_child(obj, "sata", &s->sata, TYPE_SYSBUS_AHCI);
39
tcg_gen_brcondi_i64(op ? TCG_COND_NE : TCG_COND_EQ,
144
40
tcg_cmp, 0, label_match);
145
for (i = 0; i < XLNX_ZYNQMP_NUM_SDHCI; i++) {
41
tcg_temp_free_i64(tcg_cmp);
146
@@ -XXX,XX +XXX,XX @@ static void xlnx_zynqmp_realize(DeviceState *dev, Error **errp)
42
@@ -XXX,XX +XXX,XX @@ static void disas_cond_b_imm(DisasContext *s, uint32_t insn)
147
gic_spi[uart_intr[i]]);
43
addr = s->pc + sextract32(insn, 5, 19) * 4 - 4;
148
}
44
cond = extract32(insn, 0, 4);
149
45
150
+ for (i = 0; i < XLNX_ZYNQMP_NUM_CAN; i++) {
46
+ reset_btype(s);
151
+ object_property_set_int(OBJECT(&s->can[i]), "ext_clk_freq",
47
if (cond < 0x0e) {
152
+ XLNX_ZYNQMP_CAN_REF_CLK, &error_abort);
48
/* genuinely conditional branches */
153
+
49
TCGLabel *label_match = gen_new_label();
154
+ object_property_set_link(OBJECT(&s->can[i]), "canbus",
50
@@ -XXX,XX +XXX,XX @@ static void handle_sync(DisasContext *s, uint32_t insn,
155
+ OBJECT(s->canbus[i]), &error_fatal);
51
* a self-modified code correctly and also to take
156
+
52
* any pending interrupts immediately.
157
+ sysbus_realize(SYS_BUS_DEVICE(&s->can[i]), &err);
53
*/
158
+ if (err) {
54
+ reset_btype(s);
159
+ error_propagate(errp, err);
55
gen_goto_tb(s, 0, s->pc);
160
+ return;
56
return;
161
+ }
57
default:
162
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->can[i]), 0, can_addr[i]);
163
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->can[i]), 0,
164
+ gic_spi[can_intr[i]]);
165
+ }
166
+
167
object_property_set_int(OBJECT(&s->sata), "num-ports", SATA_NUM_PORTS,
168
&error_abort);
169
if (!sysbus_realize(SYS_BUS_DEVICE(&s->sata), errp)) {
170
@@ -XXX,XX +XXX,XX @@ static Property xlnx_zynqmp_props[] = {
171
DEFINE_PROP_BOOL("has_rpu", XlnxZynqMPState, has_rpu, false),
172
DEFINE_PROP_LINK("ddr-ram", XlnxZynqMPState, ddr_ram, TYPE_MEMORY_REGION,
173
MemoryRegion *),
174
+ DEFINE_PROP_LINK("canbus0", XlnxZynqMPState, canbus[0], TYPE_CAN_BUS,
175
+ CanBusState *),
176
+ DEFINE_PROP_LINK("canbus1", XlnxZynqMPState, canbus[1], TYPE_CAN_BUS,
177
+ CanBusState *),
178
DEFINE_PROP_END_OF_LIST()
179
};
180
58
--
181
--
59
2.20.1
182
2.20.1
60
183
61
184
diff view generated by jsdifflib
New patch
1
1
From: Vikram Garhwal <fnu.vikram@xilinx.com>
2
3
The QTests perform five tests on the Xilinx ZynqMP CAN controller:
4
Tests the CAN controller in loopback, sleep and snoop mode.
5
Tests filtering of incoming CAN messages.
6
7
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
8
Reviewed-by: Francisco Iglesias <francisco.iglesias@xilinx.com>
9
Signed-off-by: Vikram Garhwal <fnu.vikram@xilinx.com>
10
Message-id: 1605728926-352690-4-git-send-email-fnu.vikram@xilinx.com
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
---
13
tests/qtest/xlnx-can-test.c | 360 ++++++++++++++++++++++++++++++++++++
14
tests/qtest/meson.build | 1 +
15
2 files changed, 361 insertions(+)
16
create mode 100644 tests/qtest/xlnx-can-test.c
17
18
diff --git a/tests/qtest/xlnx-can-test.c b/tests/qtest/xlnx-can-test.c
19
new file mode 100644
20
index XXXXXXX..XXXXXXX
21
--- /dev/null
22
+++ b/tests/qtest/xlnx-can-test.c
23
@@ -XXX,XX +XXX,XX @@
24
+/*
25
+ * QTests for the Xilinx ZynqMP CAN controller.
26
+ *
27
+ * Copyright (c) 2020 Xilinx Inc.
28
+ *
29
+ * Written-by: Vikram Garhwal<fnu.vikram@xilinx.com>
30
+ *
31
+ * Permission is hereby granted, free of charge, to any person obtaining a copy
32
+ * of this software and associated documentation files (the "Software"), to deal
33
+ * in the Software without restriction, including without limitation the rights
34
+ * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
35
+ * copies of the Software, and to permit persons to whom the Software is
36
+ * furnished to do so, subject to the following conditions:
37
+ *
38
+ * The above copyright notice and this permission notice shall be included in
39
+ * all copies or substantial portions of the Software.
40
+ *
41
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
42
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
43
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
44
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
45
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
46
+ * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
47
+ * THE SOFTWARE.
48
+ */
49
+
50
+#include "qemu/osdep.h"
51
+#include "libqos/libqtest.h"
52
+
53
+/* Base address. */
54
+#define CAN0_BASE_ADDR 0xFF060000
55
+#define CAN1_BASE_ADDR 0xFF070000
56
+
57
+/* Register addresses. */
58
+#define R_SRR_OFFSET 0x00
59
+#define R_MSR_OFFSET 0x04
60
+#define R_SR_OFFSET 0x18
61
+#define R_ISR_OFFSET 0x1C
62
+#define R_ICR_OFFSET 0x24
63
+#define R_TXID_OFFSET 0x30
64
+#define R_TXDLC_OFFSET 0x34
65
+#define R_TXDATA1_OFFSET 0x38
66
+#define R_TXDATA2_OFFSET 0x3C
67
+#define R_RXID_OFFSET 0x50
68
+#define R_RXDLC_OFFSET 0x54
69
+#define R_RXDATA1_OFFSET 0x58
70
+#define R_RXDATA2_OFFSET 0x5C
71
+#define R_AFR 0x60
72
+#define R_AFMR1 0x64
73
+#define R_AFIR1 0x68
74
+#define R_AFMR2 0x6C
75
+#define R_AFIR2 0x70
76
+#define R_AFMR3 0x74
77
+#define R_AFIR3 0x78
78
+#define R_AFMR4 0x7C
79
+#define R_AFIR4 0x80
80
+
81
+/* CAN modes. */
82
+#define CONFIG_MODE 0x00
83
+#define NORMAL_MODE 0x00
84
+#define LOOPBACK_MODE 0x02
85
+#define SNOOP_MODE 0x04
86
+#define SLEEP_MODE 0x01
87
+#define ENABLE_CAN (1 << 1)
88
+#define STATUS_NORMAL_MODE (1 << 3)
89
+#define STATUS_LOOPBACK_MODE (1 << 1)
90
+#define STATUS_SNOOP_MODE (1 << 12)
91
+#define STATUS_SLEEP_MODE (1 << 2)
92
+#define ISR_TXOK (1 << 1)
93
+#define ISR_RXOK (1 << 4)
94
+
95
+static void match_rx_tx_data(const uint32_t *buf_tx, const uint32_t *buf_rx,
96
+ uint8_t can_timestamp)
97
+{
98
+ uint16_t size = 0;
99
+ uint8_t len = 4;
100
+
101
+ while (size < len) {
102
+ if (R_RXID_OFFSET + 4 * size == R_RXDLC_OFFSET) {
103
+ g_assert_cmpint(buf_rx[size], ==, buf_tx[size] + can_timestamp);
104
+ } else {
105
+ g_assert_cmpint(buf_rx[size], ==, buf_tx[size]);
106
+ }
107
+
108
+ size++;
109
+ }
110
+}
111
+
112
+static void read_data(QTestState *qts, uint64_t can_base_addr, uint32_t *buf_rx)
113
+{
114
+ uint32_t int_status;
115
+
116
+ /* Read the interrupt on CAN rx. */
117
+ int_status = qtest_readl(qts, can_base_addr + R_ISR_OFFSET) & ISR_RXOK;
118
+
119
+ g_assert_cmpint(int_status, ==, ISR_RXOK);
120
+
121
+ /* Read the RX register data for CAN. */
122
+ buf_rx[0] = qtest_readl(qts, can_base_addr + R_RXID_OFFSET);
123
+ buf_rx[1] = qtest_readl(qts, can_base_addr + R_RXDLC_OFFSET);
124
+ buf_rx[2] = qtest_readl(qts, can_base_addr + R_RXDATA1_OFFSET);
125
+ buf_rx[3] = qtest_readl(qts, can_base_addr + R_RXDATA2_OFFSET);
126
+
127
+ /* Clear the RX interrupt. */
128
+ qtest_writel(qts, CAN1_BASE_ADDR + R_ICR_OFFSET, ISR_RXOK);
129
+}
130
+
131
+static void send_data(QTestState *qts, uint64_t can_base_addr,
132
+ const uint32_t *buf_tx)
133
+{
134
+ uint32_t int_status;
135
+
136
+ /* Write the TX register data for CAN. */
137
+ qtest_writel(qts, can_base_addr + R_TXID_OFFSET, buf_tx[0]);
138
+ qtest_writel(qts, can_base_addr + R_TXDLC_OFFSET, buf_tx[1]);
139
+ qtest_writel(qts, can_base_addr + R_TXDATA1_OFFSET, buf_tx[2]);
140
+ qtest_writel(qts, can_base_addr + R_TXDATA2_OFFSET, buf_tx[3]);
141
+
142
+ /* Read the interrupt on CAN for tx. */
143
+ int_status = qtest_readl(qts, can_base_addr + R_ISR_OFFSET) & ISR_TXOK;
144
+
145
+ g_assert_cmpint(int_status, ==, ISR_TXOK);
146
+
147
+ /* Clear the interrupt for tx. */
148
+ qtest_writel(qts, CAN0_BASE_ADDR + R_ICR_OFFSET, ISR_TXOK);
149
+}
150
+
151
+/*
152
+ * This test will be transferring data from CAN0 and CAN1 through canbus. CAN0
153
+ * initiate the data transfer to can-bus, CAN1 receives the data. Test compares
154
+ * the data sent from CAN0 with received on CAN1.
155
+ */
156
+static void test_can_bus(void)
157
+{
158
+ const uint32_t buf_tx[4] = { 0xFF, 0x80000000, 0x12345678, 0x87654321 };
159
+ uint32_t buf_rx[4] = { 0x00, 0x00, 0x00, 0x00 };
160
+ uint32_t status = 0;
161
+ uint8_t can_timestamp = 1;
162
+
163
+ QTestState *qts = qtest_init("-machine xlnx-zcu102"
164
+ " -object can-bus,id=canbus0"
165
+ " -machine xlnx-zcu102.canbus0=canbus0"
166
+ " -machine xlnx-zcu102.canbus1=canbus0"
167
+ );
168
+
169
+ /* Configure the CAN0 and CAN1. */
170
+ qtest_writel(qts, CAN0_BASE_ADDR + R_SRR_OFFSET, ENABLE_CAN);
171
+ qtest_writel(qts, CAN0_BASE_ADDR + R_MSR_OFFSET, NORMAL_MODE);
172
+ qtest_writel(qts, CAN1_BASE_ADDR + R_SRR_OFFSET, ENABLE_CAN);
173
+ qtest_writel(qts, CAN1_BASE_ADDR + R_MSR_OFFSET, NORMAL_MODE);
174
+
175
+ /* Check here if CAN0 and CAN1 are in normal mode. */
176
+ status = qtest_readl(qts, CAN0_BASE_ADDR + R_SR_OFFSET);
177
+ g_assert_cmpint(status, ==, STATUS_NORMAL_MODE);
178
+
179
+ status = qtest_readl(qts, CAN1_BASE_ADDR + R_SR_OFFSET);
180
+ g_assert_cmpint(status, ==, STATUS_NORMAL_MODE);
181
+
182
+ send_data(qts, CAN0_BASE_ADDR, buf_tx);
183
+
184
+ read_data(qts, CAN1_BASE_ADDR, buf_rx);
185
+ match_rx_tx_data(buf_tx, buf_rx, can_timestamp);
186
+
187
+ qtest_quit(qts);
188
+}
189
+
190
+/*
191
+ * This test is performing loopback mode on CAN0 and CAN1. Data sent from TX of
192
+ * each CAN0 and CAN1 are compared with RX register data for respective CAN.
193
+ */
194
+static void test_can_loopback(void)
195
+{
196
+ uint32_t buf_tx[4] = { 0xFF, 0x80000000, 0x12345678, 0x87654321 };
197
+ uint32_t buf_rx[4] = { 0x00, 0x00, 0x00, 0x00 };
198
+ uint32_t status = 0;
199
+
200
+ QTestState *qts = qtest_init("-machine xlnx-zcu102"
201
+ " -object can-bus,id=canbus0"
202
+ " -machine xlnx-zcu102.canbus0=canbus0"
203
+ " -machine xlnx-zcu102.canbus1=canbus0"
204
+ );
205
+
206
+ /* Configure the CAN0 in loopback mode. */
207
+ qtest_writel(qts, CAN0_BASE_ADDR + R_SRR_OFFSET, CONFIG_MODE);
208
+ qtest_writel(qts, CAN0_BASE_ADDR + R_MSR_OFFSET, LOOPBACK_MODE);
209
+ qtest_writel(qts, CAN0_BASE_ADDR + R_SRR_OFFSET, ENABLE_CAN);
210
+
211
+ /* Check here if CAN0 is set in loopback mode. */
212
+ status = qtest_readl(qts, CAN0_BASE_ADDR + R_SR_OFFSET);
213
+
214
+ g_assert_cmpint(status, ==, STATUS_LOOPBACK_MODE);
215
+
216
+ send_data(qts, CAN0_BASE_ADDR, buf_tx);
217
+ read_data(qts, CAN0_BASE_ADDR, buf_rx);
218
+ match_rx_tx_data(buf_tx, buf_rx, 0);
219
+
220
+ /* Configure the CAN1 in loopback mode. */
221
+ qtest_writel(qts, CAN1_BASE_ADDR + R_SRR_OFFSET, CONFIG_MODE);
222
+ qtest_writel(qts, CAN1_BASE_ADDR + R_MSR_OFFSET, LOOPBACK_MODE);
223
+ qtest_writel(qts, CAN1_BASE_ADDR + R_SRR_OFFSET, ENABLE_CAN);
224
+
225
+ /* Check here if CAN1 is set in loopback mode. */
226
+ status = qtest_readl(qts, CAN1_BASE_ADDR + R_SR_OFFSET);
227
+
228
+ g_assert_cmpint(status, ==, STATUS_LOOPBACK_MODE);
229
+
230
+ send_data(qts, CAN1_BASE_ADDR, buf_tx);
231
+ read_data(qts, CAN1_BASE_ADDR, buf_rx);
232
+ match_rx_tx_data(buf_tx, buf_rx, 0);
233
+
234
+ qtest_quit(qts);
235
+}
236
+
237
+/*
238
+ * Enable filters for CAN1. This will filter incoming messages with ID. In this
239
+ * test message will pass through filter 2.
240
+ */
241
+static void test_can_filter(void)
242
+{
243
+ uint32_t buf_tx[4] = { 0x14, 0x80000000, 0x12345678, 0x87654321 };
244
+ uint32_t buf_rx[4] = { 0x00, 0x00, 0x00, 0x00 };
245
+ uint32_t status = 0;
246
+ uint8_t can_timestamp = 1;
247
+
248
+ QTestState *qts = qtest_init("-machine xlnx-zcu102"
249
+ " -object can-bus,id=canbus0"
250
+ " -machine xlnx-zcu102.canbus0=canbus0"
251
+ " -machine xlnx-zcu102.canbus1=canbus0"
252
+ );
253
+
254
+ /* Configure the CAN0 and CAN1. */
255
+ qtest_writel(qts, CAN0_BASE_ADDR + R_SRR_OFFSET, ENABLE_CAN);
256
+ qtest_writel(qts, CAN0_BASE_ADDR + R_MSR_OFFSET, NORMAL_MODE);
257
+ qtest_writel(qts, CAN1_BASE_ADDR + R_SRR_OFFSET, ENABLE_CAN);
258
+ qtest_writel(qts, CAN1_BASE_ADDR + R_MSR_OFFSET, NORMAL_MODE);
259
+
260
+ /* Check here if CAN0 and CAN1 are in normal mode. */
261
+ status = qtest_readl(qts, CAN0_BASE_ADDR + R_SR_OFFSET);
262
+ g_assert_cmpint(status, ==, STATUS_NORMAL_MODE);
263
+
264
+ status = qtest_readl(qts, CAN1_BASE_ADDR + R_SR_OFFSET);
265
+ g_assert_cmpint(status, ==, STATUS_NORMAL_MODE);
266
+
267
+ /* Set filter for CAN1 for incoming messages. */
268
+ qtest_writel(qts, CAN1_BASE_ADDR + R_AFR, 0x0);
269
+ qtest_writel(qts, CAN1_BASE_ADDR + R_AFMR1, 0xF7);
270
+ qtest_writel(qts, CAN1_BASE_ADDR + R_AFIR1, 0x121F);
271
+ qtest_writel(qts, CAN1_BASE_ADDR + R_AFMR2, 0x5431);
272
+ qtest_writel(qts, CAN1_BASE_ADDR + R_AFIR2, 0x14);
273
+ qtest_writel(qts, CAN1_BASE_ADDR + R_AFMR3, 0x1234);
274
+ qtest_writel(qts, CAN1_BASE_ADDR + R_AFIR3, 0x5431);
275
+ qtest_writel(qts, CAN1_BASE_ADDR + R_AFMR4, 0xFFF);
276
+ qtest_writel(qts, CAN1_BASE_ADDR + R_AFIR4, 0x1234);
277
+
278
+ qtest_writel(qts, CAN1_BASE_ADDR + R_AFR, 0xF);
279
+
280
+ send_data(qts, CAN0_BASE_ADDR, buf_tx);
281
+
282
+ read_data(qts, CAN1_BASE_ADDR, buf_rx);
283
+ match_rx_tx_data(buf_tx, buf_rx, can_timestamp);
284
+
285
+ qtest_quit(qts);
286
+}
287
+
288
+/* Testing sleep mode on CAN0 while CAN1 is in normal mode. */
289
+static void test_can_sleepmode(void)
290
+{
291
+ uint32_t buf_tx[4] = { 0x14, 0x80000000, 0x12345678, 0x87654321 };
292
+ uint32_t buf_rx[4] = { 0x00, 0x00, 0x00, 0x00 };
293
+ uint32_t status = 0;
294
+ uint8_t can_timestamp = 1;
295
+
296
+ QTestState *qts = qtest_init("-machine xlnx-zcu102"
297
+ " -object can-bus,id=canbus0"
298
+ " -machine xlnx-zcu102.canbus0=canbus0"
299
+ " -machine xlnx-zcu102.canbus1=canbus0"
300
+ );
301
+
302
+ /* Configure the CAN0. */
303
+ qtest_writel(qts, CAN0_BASE_ADDR + R_SRR_OFFSET, CONFIG_MODE);
304
+ qtest_writel(qts, CAN0_BASE_ADDR + R_MSR_OFFSET, SLEEP_MODE);
305
+ qtest_writel(qts, CAN0_BASE_ADDR + R_SRR_OFFSET, ENABLE_CAN);
306
+
307
+ qtest_writel(qts, CAN1_BASE_ADDR + R_SRR_OFFSET, ENABLE_CAN);
308
+ qtest_writel(qts, CAN1_BASE_ADDR + R_MSR_OFFSET, NORMAL_MODE);
309
+
310
+ /* Check here if CAN0 is in SLEEP mode and CAN1 in normal mode. */
311
+ status = qtest_readl(qts, CAN0_BASE_ADDR + R_SR_OFFSET);
312
+ g_assert_cmpint(status, ==, STATUS_SLEEP_MODE);
313
+
314
+ status = qtest_readl(qts, CAN1_BASE_ADDR + R_SR_OFFSET);
315
+ g_assert_cmpint(status, ==, STATUS_NORMAL_MODE);
316
+
317
+ send_data(qts, CAN1_BASE_ADDR, buf_tx);
318
+
319
+ /*
320
+ * Once CAN1 sends data on can-bus. CAN0 should exit sleep mode.
321
+ * Check the CAN0 status now. It should exit the sleep mode and receive the
322
+ * incoming data.
323
+ */
324
+ status = qtest_readl(qts, CAN0_BASE_ADDR + R_SR_OFFSET);
325
+ g_assert_cmpint(status, ==, STATUS_NORMAL_MODE);
326
+
327
+ read_data(qts, CAN0_BASE_ADDR, buf_rx);
328
+
329
+ match_rx_tx_data(buf_tx, buf_rx, can_timestamp);
330
+
331
+ qtest_quit(qts);
332
+}
333
+
334
+/* Testing Snoop mode on CAN0 while CAN1 is in normal mode. */
335
+static void test_can_snoopmode(void)
336
+{
337
+ uint32_t buf_tx[4] = { 0x14, 0x80000000, 0x12345678, 0x87654321 };
338
+ uint32_t buf_rx[4] = { 0x00, 0x00, 0x00, 0x00 };
339
+ uint32_t status = 0;
340
+ uint8_t can_timestamp = 1;
341
+
342
+ QTestState *qts = qtest_init("-machine xlnx-zcu102"
343
+ " -object can-bus,id=canbus0"
344
+ " -machine xlnx-zcu102.canbus0=canbus0"
345
+ " -machine xlnx-zcu102.canbus1=canbus0"
346
+ );
347
+
348
+ /* Configure the CAN0. */
349
+ qtest_writel(qts, CAN0_BASE_ADDR + R_SRR_OFFSET, CONFIG_MODE);
350
+ qtest_writel(qts, CAN0_BASE_ADDR + R_MSR_OFFSET, SNOOP_MODE);
351
+ qtest_writel(qts, CAN0_BASE_ADDR + R_SRR_OFFSET, ENABLE_CAN);
352
+
353
+ qtest_writel(qts, CAN1_BASE_ADDR + R_SRR_OFFSET, ENABLE_CAN);
354
+ qtest_writel(qts, CAN1_BASE_ADDR + R_MSR_OFFSET, NORMAL_MODE);
355
+
356
+ /* Check here if CAN0 is in SNOOP mode and CAN1 in normal mode. */
357
+ status = qtest_readl(qts, CAN0_BASE_ADDR + R_SR_OFFSET);
358
+ g_assert_cmpint(status, ==, STATUS_SNOOP_MODE);
359
+
360
+ status = qtest_readl(qts, CAN1_BASE_ADDR + R_SR_OFFSET);
361
+ g_assert_cmpint(status, ==, STATUS_NORMAL_MODE);
362
+
363
+ send_data(qts, CAN1_BASE_ADDR, buf_tx);
364
+
365
+ read_data(qts, CAN0_BASE_ADDR, buf_rx);
366
+
367
+ match_rx_tx_data(buf_tx, buf_rx, can_timestamp);
368
+
369
+ qtest_quit(qts);
370
+}
371
+
372
+int main(int argc, char **argv)
373
+{
374
+ g_test_init(&argc, &argv, NULL);
375
+
376
+ qtest_add_func("/net/can/can_bus", test_can_bus);
377
+ qtest_add_func("/net/can/can_loopback", test_can_loopback);
378
+ qtest_add_func("/net/can/can_filter", test_can_filter);
379
+ qtest_add_func("/net/can/can_test_snoopmode", test_can_snoopmode);
380
+ qtest_add_func("/net/can/can_test_sleepmode", test_can_sleepmode);
381
+
382
+ return g_test_run();
383
+}
384
diff --git a/tests/qtest/meson.build b/tests/qtest/meson.build
385
index XXXXXXX..XXXXXXX 100644
386
--- a/tests/qtest/meson.build
387
+++ b/tests/qtest/meson.build
388
@@ -XXX,XX +XXX,XX @@ qtests_aarch64 = \
389
['arm-cpu-features',
390
'numa-test',
391
'boot-serial-test',
392
+ 'xlnx-can-test',
393
'migration-test']
394
395
qtests_s390x = \
396
--
397
2.20.1
398
399
diff view generated by jsdifflib
New patch
1
From: Vikram Garhwal <fnu.vikram@xilinx.com>
1
2
3
Reviewed-by: Francisco Iglesias <francisco.iglesias@xilinx.com>
4
Reviewed-by: Edgar E. Iglesias <edgar.iglesias@xilinx.com>
5
Signed-off-by: Vikram Garhwal <fnu.vikram@xilinx.com>
6
Message-id: 1605728926-352690-5-git-send-email-fnu.vikram@xilinx.com
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
---
9
MAINTAINERS | 8 ++++++++
10
1 file changed, 8 insertions(+)
11
12
diff --git a/MAINTAINERS b/MAINTAINERS
13
index XXXXXXX..XXXXXXX 100644
14
--- a/MAINTAINERS
15
+++ b/MAINTAINERS
16
@@ -XXX,XX +XXX,XX @@ F: hw/net/opencores_eth.c
17
18
Devices
19
-------
20
+Xilinx CAN
21
+M: Vikram Garhwal <fnu.vikram@xilinx.com>
22
+M: Francisco Iglesias <francisco.iglesias@xilinx.com>
23
+S: Maintained
24
+F: hw/net/can/xlnx-*
25
+F: include/hw/net/xlnx-*
26
+F: tests/qtest/xlnx-can-test*
27
+
28
EDU
29
M: Jiri Slaby <jslaby@suse.cz>
30
S: Maintained
31
--
32
2.20.1
33
34
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Marcin Juszkiewicz <marcin.juszkiewicz@linaro.org>
2
2
3
The branch target exception for guarded pages has high priority,
3
Trusted Firmware now supports A72 on sbsa-ref by default [1] so enable
4
and only 8 instructions are valid for that case. Perform this
4
it for QEMU as well. A53 was already enabled there.
5
check before doing any other decode.
6
5
7
Clear BTYPE after all insns that neither set BTYPE nor exit via
6
1. https://review.trustedfirmware.org/c/TF-A/trusted-firmware-a/+/7117
8
exception (DISAS_NORETURN).
9
7
10
Not yet handled are insns that exit via DISAS_NORETURN for some
8
Signed-off-by: Marcin Juszkiewicz <marcin.juszkiewicz@linaro.org>
11
other reason, like direct branches.
9
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
12
10
Message-id: 20201120141705.246690-1-marcin.juszkiewicz@linaro.org
13
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
11
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
14
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
15
Message-id: 20190128223118.5255-7-richard.henderson@linaro.org
16
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
17
---
13
---
18
target/arm/internals.h | 6 ++
14
hw/arm/sbsa-ref.c | 23 ++++++++++++++++++++---
19
target/arm/translate.h | 9 ++-
15
1 file changed, 20 insertions(+), 3 deletions(-)
20
target/arm/translate-a64.c | 139 +++++++++++++++++++++++++++++++++++++
21
3 files changed, 152 insertions(+), 2 deletions(-)
22
16
23
diff --git a/target/arm/internals.h b/target/arm/internals.h
17
diff --git a/hw/arm/sbsa-ref.c b/hw/arm/sbsa-ref.c
24
index XXXXXXX..XXXXXXX 100644
18
index XXXXXXX..XXXXXXX 100644
25
--- a/target/arm/internals.h
19
--- a/hw/arm/sbsa-ref.c
26
+++ b/target/arm/internals.h
20
+++ b/hw/arm/sbsa-ref.c
27
@@ -XXX,XX +XXX,XX @@ enum arm_exception_class {
21
@@ -XXX,XX +XXX,XX @@ static const int sbsa_ref_irqmap[] = {
28
EC_FPIDTRAP = 0x08,
22
[SBSA_GWDT] = 16,
29
EC_PACTRAP = 0x09,
23
};
30
EC_CP14RRTTRAP = 0x0c,
24
31
+ EC_BTITRAP = 0x0d,
25
+static const char * const valid_cpus[] = {
32
EC_ILLEGALSTATE = 0x0e,
26
+ ARM_CPU_TYPE_NAME("cortex-a53"),
33
EC_AA32_SVC = 0x11,
27
+ ARM_CPU_TYPE_NAME("cortex-a57"),
34
EC_AA32_HVC = 0x12,
28
+ ARM_CPU_TYPE_NAME("cortex-a72"),
35
@@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_pactrap(void)
29
+};
36
return EC_PACTRAP << ARM_EL_EC_SHIFT;
30
+
37
}
31
+static bool cpu_type_valid(const char *cpu)
38
39
+static inline uint32_t syn_btitrap(int btype)
40
+{
32
+{
41
+ return (EC_BTITRAP << ARM_EL_EC_SHIFT) | btype;
33
+ int i;
42
+}
43
+
34
+
44
static inline uint32_t syn_insn_abort(int same_el, int ea, int s1ptw, int fsc)
35
+ for (i = 0; i < ARRAY_SIZE(valid_cpus); i++) {
45
{
36
+ if (strcmp(cpu, valid_cpus[i]) == 0) {
46
return (EC_INSNABORT << ARM_EL_EC_SHIFT) | (same_el << ARM_EL_EC_SHIFT)
47
diff --git a/target/arm/translate.h b/target/arm/translate.h
48
index XXXXXXX..XXXXXXX 100644
49
--- a/target/arm/translate.h
50
+++ b/target/arm/translate.h
51
@@ -XXX,XX +XXX,XX @@ typedef struct DisasContext {
52
bool pauth_active;
53
/* True with v8.5-BTI and SCTLR_ELx.BT* set. */
54
bool bt;
55
- /* A copy of PSTATE.BTYPE, which will be 0 without v8.5-BTI. */
56
- uint8_t btype;
57
+ /*
58
+ * >= 0, a copy of PSTATE.BTYPE, which will be 0 without v8.5-BTI.
59
+ * < 0, set by the current instruction.
60
+ */
61
+ int8_t btype;
62
+ /* True if this page is guarded. */
63
+ bool guarded_page;
64
/* Bottom two bits of XScale c15_cpar coprocessor access control reg */
65
int c15_cpar;
66
/* TCG op of the current insn_start. */
67
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
68
index XXXXXXX..XXXXXXX 100644
69
--- a/target/arm/translate-a64.c
70
+++ b/target/arm/translate-a64.c
71
@@ -XXX,XX +XXX,XX @@ static inline int get_a64_user_mem_index(DisasContext *s)
72
return arm_to_core_mmu_idx(useridx);
73
}
74
75
+static void reset_btype(DisasContext *s)
76
+{
77
+ if (s->btype != 0) {
78
+ TCGv_i32 zero = tcg_const_i32(0);
79
+ tcg_gen_st_i32(zero, cpu_env, offsetof(CPUARMState, btype));
80
+ tcg_temp_free_i32(zero);
81
+ s->btype = 0;
82
+ }
83
+}
84
+
85
void aarch64_cpu_dump_state(CPUState *cs, FILE *f,
86
fprintf_function cpu_fprintf, int flags)
87
{
88
@@ -XXX,XX +XXX,XX @@ static void disas_data_proc_simd_fp(DisasContext *s, uint32_t insn)
89
}
90
}
91
92
+/**
93
+ * is_guarded_page:
94
+ * @env: The cpu environment
95
+ * @s: The DisasContext
96
+ *
97
+ * Return true if the page is guarded.
98
+ */
99
+static bool is_guarded_page(CPUARMState *env, DisasContext *s)
100
+{
101
+#ifdef CONFIG_USER_ONLY
102
+ return false; /* FIXME */
103
+#else
104
+ uint64_t addr = s->base.pc_first;
105
+ int mmu_idx = arm_to_core_mmu_idx(s->mmu_idx);
106
+ unsigned int index = tlb_index(env, mmu_idx, addr);
107
+ CPUTLBEntry *entry = tlb_entry(env, mmu_idx, addr);
108
+
109
+ /*
110
+ * We test this immediately after reading an insn, which means
111
+ * that any normal page must be in the TLB. The only exception
112
+ * would be for executing from flash or device memory, which
113
+ * does not retain the TLB entry.
114
+ *
115
+ * FIXME: Assume false for those, for now. We could use
116
+ * arm_cpu_get_phys_page_attrs_debug to re-read the page
117
+ * table entry even for that case.
118
+ */
119
+ return (tlb_hit(entry->addr_code, addr) &&
120
+ env->iotlb[mmu_idx][index].attrs.target_tlb_bit0);
121
+#endif
122
+}
123
+
124
+/**
125
+ * btype_destination_ok:
126
+ * @insn: The instruction at the branch destination
127
+ * @bt: SCTLR_ELx.BT
128
+ * @btype: PSTATE.BTYPE, and is non-zero
129
+ *
130
+ * On a guarded page, there are a limited number of insns
131
+ * that may be present at the branch target:
132
+ * - branch target identifiers,
133
+ * - paciasp, pacibsp,
134
+ * - BRK insn
135
+ * - HLT insn
136
+ * Anything else causes a Branch Target Exception.
137
+ *
138
+ * Return true if the branch is compatible, false to raise BTITRAP.
139
+ */
140
+static bool btype_destination_ok(uint32_t insn, bool bt, int btype)
141
+{
142
+ if ((insn & 0xfffff01fu) == 0xd503201fu) {
143
+ /* HINT space */
144
+ switch (extract32(insn, 5, 7)) {
145
+ case 0b011001: /* PACIASP */
146
+ case 0b011011: /* PACIBSP */
147
+ /*
148
+ * If SCTLR_ELx.BT, then PACI*SP are not compatible
149
+ * with btype == 3. Otherwise all btype are ok.
150
+ */
151
+ return !bt || btype != 3;
152
+ case 0b100000: /* BTI */
153
+ /* Not compatible with any btype. */
154
+ return false;
155
+ case 0b100010: /* BTI c */
156
+ /* Not compatible with btype == 3 */
157
+ return btype != 3;
158
+ case 0b100100: /* BTI j */
159
+ /* Not compatible with btype == 2 */
160
+ return btype != 2;
161
+ case 0b100110: /* BTI jc */
162
+ /* Compatible with any btype. */
163
+ return true;
164
+ }
165
+ } else {
166
+ switch (insn & 0xffe0001fu) {
167
+ case 0xd4200000u: /* BRK */
168
+ case 0xd4400000u: /* HLT */
169
+ /* Give priority to the breakpoint exception. */
170
+ return true;
37
+ return true;
171
+ }
38
+ }
172
+ }
39
+ }
173
+ return false;
40
+ return false;
174
+}
41
+}
175
+
42
+
176
/* C3.1 A64 instruction index by encoding */
43
static uint64_t sbsa_ref_cpu_mp_affinity(SBSAMachineState *sms, int idx)
177
static void disas_a64_insn(CPUARMState *env, DisasContext *s)
178
{
44
{
179
@@ -XXX,XX +XXX,XX @@ static void disas_a64_insn(CPUARMState *env, DisasContext *s)
45
uint8_t clustersz = ARM_DEFAULT_CPUS_PER_CLUSTER;
180
46
@@ -XXX,XX +XXX,XX @@ static void sbsa_ref_init(MachineState *machine)
181
s->fp_access_checked = false;
47
const CPUArchIdList *possible_cpus;
182
48
int n, sbsa_max_cpus;
183
+ if (dc_isar_feature(aa64_bti, s)) {
49
184
+ if (s->base.num_insns == 1) {
50
- if (strcmp(machine->cpu_type, ARM_CPU_TYPE_NAME("cortex-a57"))) {
185
+ /*
51
- error_report("sbsa-ref: CPU type other than the built-in "
186
+ * At the first insn of the TB, compute s->guarded_page.
52
- "cortex-a57 not supported");
187
+ * We delayed computing this until successfully reading
53
+ if (!cpu_type_valid(machine->cpu_type)) {
188
+ * the first insn of the TB, above. This (mostly) ensures
54
+ error_report("mach-virt: CPU type %s not supported", machine->cpu_type);
189
+ * that the softmmu tlb entry has been populated, and the
55
exit(1);
190
+ * page table GP bit is available.
56
}
191
+ *
57
192
+ * Note that we need to compute this even if btype == 0,
193
+ * because this value is used for BR instructions later
194
+ * where ENV is not available.
195
+ */
196
+ s->guarded_page = is_guarded_page(env, s);
197
+
198
+ /* First insn can have btype set to non-zero. */
199
+ tcg_debug_assert(s->btype >= 0);
200
+
201
+ /*
202
+ * Note that the Branch Target Exception has fairly high
203
+ * priority -- below debugging exceptions but above most
204
+ * everything else. This allows us to handle this now
205
+ * instead of waiting until the insn is otherwise decoded.
206
+ */
207
+ if (s->btype != 0
208
+ && s->guarded_page
209
+ && !btype_destination_ok(insn, s->bt, s->btype)) {
210
+ gen_exception_insn(s, 4, EXCP_UDEF, syn_btitrap(s->btype),
211
+ default_exception_el(s));
212
+ return;
213
+ }
214
+ } else {
215
+ /* Not the first insn: btype must be 0. */
216
+ tcg_debug_assert(s->btype == 0);
217
+ }
218
+ }
219
+
220
switch (extract32(insn, 25, 4)) {
221
case 0x0: case 0x1: case 0x3: /* UNALLOCATED */
222
unallocated_encoding(s);
223
@@ -XXX,XX +XXX,XX @@ static void disas_a64_insn(CPUARMState *env, DisasContext *s)
224
225
/* if we allocated any temporaries, free them here */
226
free_tmp_a64(s);
227
+
228
+ /*
229
+ * After execution of most insns, btype is reset to 0.
230
+ * Note that we set btype == -1 when the insn sets btype.
231
+ */
232
+ if (s->btype > 0 && s->base.is_jmp != DISAS_NORETURN) {
233
+ reset_btype(s);
234
+ }
235
}
236
237
static void aarch64_tr_init_disas_context(DisasContextBase *dcbase,
238
--
58
--
239
2.20.1
59
2.20.1
240
60
241
61
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Havard Skinnemoen <hskinnemoen@google.com>
2
2
3
This will allow TBI to be used in user-only mode, as well as
3
Dump the collected random data after a randomness test failure.
4
avoid ping-ponging the softmmu TLB when TBI is in use. It
5
will also enable other armv8 extensions.
6
4
5
Note that this relies on the test having called
6
g_test_set_nonfatal_assertions() so we don't abort immediately on the
7
assertion failure.
8
9
Signed-off-by: Havard Skinnemoen <hskinnemoen@google.com>
7
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
10
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
8
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
11
[PMM: minor commit message tweak]
9
Message-id: 20190204132126.3255-3-richard.henderson@linaro.org
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
---
13
---
12
target/arm/translate-a64.c | 217 ++++++++++++++++++++-----------------
14
tests/qtest/npcm7xx_rng-test.c | 12 ++++++++++++
13
1 file changed, 116 insertions(+), 101 deletions(-)
15
1 file changed, 12 insertions(+)
14
16
15
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
17
diff --git a/tests/qtest/npcm7xx_rng-test.c b/tests/qtest/npcm7xx_rng-test.c
16
index XXXXXXX..XXXXXXX 100644
18
index XXXXXXX..XXXXXXX 100644
17
--- a/target/arm/translate-a64.c
19
--- a/tests/qtest/npcm7xx_rng-test.c
18
+++ b/target/arm/translate-a64.c
20
+++ b/tests/qtest/npcm7xx_rng-test.c
19
@@ -XXX,XX +XXX,XX @@ static void gen_a64_set_pc(DisasContext *s, TCGv_i64 src)
21
@@ -XXX,XX +XXX,XX @@
20
gen_top_byte_ignore(s, cpu_pc, src, s->tbii);
22
21
}
23
#include "libqtest-single.h"
22
24
#include "qemu/bitops.h"
23
+/*
25
+#include "qemu-common.h"
24
+ * Return a "clean" address for ADDR according to TBID.
26
25
+ * This is always a fresh temporary, as we need to be able to
27
#define RNG_BASE_ADDR 0xf000b000
26
+ * increment this independently of a dirty write-back address.
28
27
+ */
29
@@ -XXX,XX +XXX,XX @@
28
+static TCGv_i64 clean_data_tbi(DisasContext *s, TCGv_i64 addr)
30
/* Number of bits to collect for randomness tests. */
31
#define TEST_INPUT_BITS (128)
32
33
+static void dump_buf_if_failed(const uint8_t *buf, size_t size)
29
+{
34
+{
30
+ TCGv_i64 clean = new_tmp_a64(s);
35
+ if (g_test_failed()) {
31
+ gen_top_byte_ignore(s, clean, addr, s->tbid);
36
+ qemu_hexdump(stderr, "", buf, size);
32
+ return clean;
37
+ }
33
+}
38
+}
34
+
39
+
35
typedef struct DisasCompare64 {
40
static void rng_writeb(unsigned int offset, uint8_t value)
36
TCGCond cond;
41
{
37
TCGv_i64 value;
42
writeb(RNG_BASE_ADDR + offset, value);
38
@@ -XXX,XX +XXX,XX @@ static void gen_compare_and_swap(DisasContext *s, int rs, int rt,
43
@@ -XXX,XX +XXX,XX @@ static void test_continuous_monobit(void)
39
TCGv_i64 tcg_rs = cpu_reg(s, rs);
40
TCGv_i64 tcg_rt = cpu_reg(s, rt);
41
int memidx = get_mem_index(s);
42
- TCGv_i64 addr = cpu_reg_sp(s, rn);
43
+ TCGv_i64 clean_addr;
44
45
if (rn == 31) {
46
gen_check_sp_alignment(s);
47
}
44
}
48
- tcg_gen_atomic_cmpxchg_i64(tcg_rs, addr, tcg_rs, tcg_rt, memidx,
45
49
+ clean_addr = clean_data_tbi(s, cpu_reg_sp(s, rn));
46
g_assert_cmpfloat(calc_monobit_p(buf, sizeof(buf)), >, 0.01);
50
+ tcg_gen_atomic_cmpxchg_i64(tcg_rs, clean_addr, tcg_rs, tcg_rt, memidx,
47
+ dump_buf_if_failed(buf, sizeof(buf));
51
size | MO_ALIGN | s->be_data);
52
}
48
}
53
49
54
@@ -XXX,XX +XXX,XX @@ static void gen_compare_and_swap_pair(DisasContext *s, int rs, int rt,
50
/*
55
TCGv_i64 s2 = cpu_reg(s, rs + 1);
51
@@ -XXX,XX +XXX,XX @@ static void test_continuous_runs(void)
56
TCGv_i64 t1 = cpu_reg(s, rt);
57
TCGv_i64 t2 = cpu_reg(s, rt + 1);
58
- TCGv_i64 addr = cpu_reg_sp(s, rn);
59
+ TCGv_i64 clean_addr;
60
int memidx = get_mem_index(s);
61
62
if (rn == 31) {
63
gen_check_sp_alignment(s);
64
}
52
}
65
+ clean_addr = clean_data_tbi(s, cpu_reg_sp(s, rn));
53
66
54
g_assert_cmpfloat(calc_runs_p(buf.l, sizeof(buf) * BITS_PER_BYTE), >, 0.01);
67
if (size == 2) {
55
+ dump_buf_if_failed(buf.c, sizeof(buf));
68
TCGv_i64 cmp = tcg_temp_new_i64();
56
}
69
@@ -XXX,XX +XXX,XX @@ static void gen_compare_and_swap_pair(DisasContext *s, int rs, int rt,
57
70
tcg_gen_concat32_i64(cmp, s2, s1);
58
/*
71
}
59
@@ -XXX,XX +XXX,XX @@ static void test_first_byte_monobit(void)
72
73
- tcg_gen_atomic_cmpxchg_i64(cmp, addr, cmp, val, memidx,
74
+ tcg_gen_atomic_cmpxchg_i64(cmp, clean_addr, cmp, val, memidx,
75
MO_64 | MO_ALIGN | s->be_data);
76
tcg_temp_free_i64(val);
77
78
@@ -XXX,XX +XXX,XX @@ static void gen_compare_and_swap_pair(DisasContext *s, int rs, int rt,
79
if (HAVE_CMPXCHG128) {
80
TCGv_i32 tcg_rs = tcg_const_i32(rs);
81
if (s->be_data == MO_LE) {
82
- gen_helper_casp_le_parallel(cpu_env, tcg_rs, addr, t1, t2);
83
+ gen_helper_casp_le_parallel(cpu_env, tcg_rs,
84
+ clean_addr, t1, t2);
85
} else {
86
- gen_helper_casp_be_parallel(cpu_env, tcg_rs, addr, t1, t2);
87
+ gen_helper_casp_be_parallel(cpu_env, tcg_rs,
88
+ clean_addr, t1, t2);
89
}
90
tcg_temp_free_i32(tcg_rs);
91
} else {
92
@@ -XXX,XX +XXX,XX @@ static void gen_compare_and_swap_pair(DisasContext *s, int rs, int rt,
93
TCGv_i64 zero = tcg_const_i64(0);
94
95
/* Load the two words, in memory order. */
96
- tcg_gen_qemu_ld_i64(d1, addr, memidx,
97
+ tcg_gen_qemu_ld_i64(d1, clean_addr, memidx,
98
MO_64 | MO_ALIGN_16 | s->be_data);
99
- tcg_gen_addi_i64(a2, addr, 8);
100
- tcg_gen_qemu_ld_i64(d2, addr, memidx, MO_64 | s->be_data);
101
+ tcg_gen_addi_i64(a2, clean_addr, 8);
102
+ tcg_gen_qemu_ld_i64(d2, clean_addr, memidx, MO_64 | s->be_data);
103
104
/* Compare the two words, also in memory order. */
105
tcg_gen_setcond_i64(TCG_COND_EQ, c1, d1, s1);
106
@@ -XXX,XX +XXX,XX @@ static void gen_compare_and_swap_pair(DisasContext *s, int rs, int rt,
107
/* If compare equal, write back new data, else write back old data. */
108
tcg_gen_movcond_i64(TCG_COND_NE, c1, c2, zero, t1, d1);
109
tcg_gen_movcond_i64(TCG_COND_NE, c2, c2, zero, t2, d2);
110
- tcg_gen_qemu_st_i64(c1, addr, memidx, MO_64 | s->be_data);
111
+ tcg_gen_qemu_st_i64(c1, clean_addr, memidx, MO_64 | s->be_data);
112
tcg_gen_qemu_st_i64(c2, a2, memidx, MO_64 | s->be_data);
113
tcg_temp_free_i64(a2);
114
tcg_temp_free_i64(c1);
115
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_excl(DisasContext *s, uint32_t insn)
116
int is_lasr = extract32(insn, 15, 1);
117
int o2_L_o1_o0 = extract32(insn, 21, 3) * 2 | is_lasr;
118
int size = extract32(insn, 30, 2);
119
- TCGv_i64 tcg_addr;
120
+ TCGv_i64 clean_addr;
121
122
switch (o2_L_o1_o0) {
123
case 0x0: /* STXR */
124
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_excl(DisasContext *s, uint32_t insn)
125
if (is_lasr) {
126
tcg_gen_mb(TCG_MO_ALL | TCG_BAR_STRL);
127
}
128
- tcg_addr = read_cpu_reg_sp(s, rn, 1);
129
- gen_store_exclusive(s, rs, rt, rt2, tcg_addr, size, false);
130
+ clean_addr = clean_data_tbi(s, cpu_reg_sp(s, rn));
131
+ gen_store_exclusive(s, rs, rt, rt2, clean_addr, size, false);
132
return;
133
134
case 0x4: /* LDXR */
135
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_excl(DisasContext *s, uint32_t insn)
136
if (rn == 31) {
137
gen_check_sp_alignment(s);
138
}
139
- tcg_addr = read_cpu_reg_sp(s, rn, 1);
140
+ clean_addr = clean_data_tbi(s, cpu_reg_sp(s, rn));
141
s->is_ldex = true;
142
- gen_load_exclusive(s, rt, rt2, tcg_addr, size, false);
143
+ gen_load_exclusive(s, rt, rt2, clean_addr, size, false);
144
if (is_lasr) {
145
tcg_gen_mb(TCG_MO_ALL | TCG_BAR_LDAQ);
146
}
147
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_excl(DisasContext *s, uint32_t insn)
148
gen_check_sp_alignment(s);
149
}
150
tcg_gen_mb(TCG_MO_ALL | TCG_BAR_STRL);
151
- tcg_addr = read_cpu_reg_sp(s, rn, 1);
152
- do_gpr_st(s, cpu_reg(s, rt), tcg_addr, size, true, rt,
153
+ clean_addr = clean_data_tbi(s, cpu_reg_sp(s, rn));
154
+ do_gpr_st(s, cpu_reg(s, rt), clean_addr, size, true, rt,
155
disas_ldst_compute_iss_sf(size, false, 0), is_lasr);
156
return;
157
158
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_excl(DisasContext *s, uint32_t insn)
159
if (rn == 31) {
160
gen_check_sp_alignment(s);
161
}
162
- tcg_addr = read_cpu_reg_sp(s, rn, 1);
163
- do_gpr_ld(s, cpu_reg(s, rt), tcg_addr, size, false, false, true, rt,
164
+ clean_addr = clean_data_tbi(s, cpu_reg_sp(s, rn));
165
+ do_gpr_ld(s, cpu_reg(s, rt), clean_addr, size, false, false, true, rt,
166
disas_ldst_compute_iss_sf(size, false, 0), is_lasr);
167
tcg_gen_mb(TCG_MO_ALL | TCG_BAR_LDAQ);
168
return;
169
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_excl(DisasContext *s, uint32_t insn)
170
if (is_lasr) {
171
tcg_gen_mb(TCG_MO_ALL | TCG_BAR_STRL);
172
}
173
- tcg_addr = read_cpu_reg_sp(s, rn, 1);
174
- gen_store_exclusive(s, rs, rt, rt2, tcg_addr, size, true);
175
+ clean_addr = clean_data_tbi(s, cpu_reg_sp(s, rn));
176
+ gen_store_exclusive(s, rs, rt, rt2, clean_addr, size, true);
177
return;
178
}
179
if (rt2 == 31
180
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_excl(DisasContext *s, uint32_t insn)
181
if (rn == 31) {
182
gen_check_sp_alignment(s);
183
}
184
- tcg_addr = read_cpu_reg_sp(s, rn, 1);
185
+ clean_addr = clean_data_tbi(s, cpu_reg_sp(s, rn));
186
s->is_ldex = true;
187
- gen_load_exclusive(s, rt, rt2, tcg_addr, size, true);
188
+ gen_load_exclusive(s, rt, rt2, clean_addr, size, true);
189
if (is_lasr) {
190
tcg_gen_mb(TCG_MO_ALL | TCG_BAR_LDAQ);
191
}
192
@@ -XXX,XX +XXX,XX @@ static void disas_ld_lit(DisasContext *s, uint32_t insn)
193
int opc = extract32(insn, 30, 2);
194
bool is_signed = false;
195
int size = 2;
196
- TCGv_i64 tcg_rt, tcg_addr;
197
+ TCGv_i64 tcg_rt, clean_addr;
198
199
if (is_vector) {
200
if (opc == 3) {
201
@@ -XXX,XX +XXX,XX @@ static void disas_ld_lit(DisasContext *s, uint32_t insn)
202
203
tcg_rt = cpu_reg(s, rt);
204
205
- tcg_addr = tcg_const_i64((s->pc - 4) + imm);
206
+ clean_addr = tcg_const_i64((s->pc - 4) + imm);
207
if (is_vector) {
208
- do_fp_ld(s, rt, tcg_addr, size);
209
+ do_fp_ld(s, rt, clean_addr, size);
210
} else {
211
/* Only unsigned 32bit loads target 32bit registers. */
212
bool iss_sf = opc != 0;
213
214
- do_gpr_ld(s, tcg_rt, tcg_addr, size, is_signed, false,
215
+ do_gpr_ld(s, tcg_rt, clean_addr, size, is_signed, false,
216
true, rt, iss_sf, false);
217
}
60
}
218
- tcg_temp_free_i64(tcg_addr);
61
219
+ tcg_temp_free_i64(clean_addr);
62
g_assert_cmpfloat(calc_monobit_p(buf, sizeof(buf)), >, 0.01);
63
+ dump_buf_if_failed(buf, sizeof(buf));
220
}
64
}
221
65
222
/*
66
/*
223
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_pair(DisasContext *s, uint32_t insn)
67
@@ -XXX,XX +XXX,XX @@ static void test_first_byte_runs(void)
224
bool postindex = false;
225
bool wback = false;
226
227
- TCGv_i64 tcg_addr; /* calculated address */
228
+ TCGv_i64 clean_addr, dirty_addr;
229
+
230
int size;
231
232
if (opc == 3) {
233
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_pair(DisasContext *s, uint32_t insn)
234
gen_check_sp_alignment(s);
235
}
68
}
236
69
237
- tcg_addr = read_cpu_reg_sp(s, rn, 1);
70
g_assert_cmpfloat(calc_runs_p(buf.l, sizeof(buf) * BITS_PER_BYTE), >, 0.01);
238
-
71
+ dump_buf_if_failed(buf.c, sizeof(buf));
239
+ dirty_addr = read_cpu_reg_sp(s, rn, 1);
240
if (!postindex) {
241
- tcg_gen_addi_i64(tcg_addr, tcg_addr, offset);
242
+ tcg_gen_addi_i64(dirty_addr, dirty_addr, offset);
243
}
244
+ clean_addr = clean_data_tbi(s, dirty_addr);
245
246
if (is_vector) {
247
if (is_load) {
248
- do_fp_ld(s, rt, tcg_addr, size);
249
+ do_fp_ld(s, rt, clean_addr, size);
250
} else {
251
- do_fp_st(s, rt, tcg_addr, size);
252
+ do_fp_st(s, rt, clean_addr, size);
253
}
254
- tcg_gen_addi_i64(tcg_addr, tcg_addr, 1 << size);
255
+ tcg_gen_addi_i64(clean_addr, clean_addr, 1 << size);
256
if (is_load) {
257
- do_fp_ld(s, rt2, tcg_addr, size);
258
+ do_fp_ld(s, rt2, clean_addr, size);
259
} else {
260
- do_fp_st(s, rt2, tcg_addr, size);
261
+ do_fp_st(s, rt2, clean_addr, size);
262
}
263
} else {
264
TCGv_i64 tcg_rt = cpu_reg(s, rt);
265
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_pair(DisasContext *s, uint32_t insn)
266
/* Do not modify tcg_rt before recognizing any exception
267
* from the second load.
268
*/
269
- do_gpr_ld(s, tmp, tcg_addr, size, is_signed, false,
270
+ do_gpr_ld(s, tmp, clean_addr, size, is_signed, false,
271
false, 0, false, false);
272
- tcg_gen_addi_i64(tcg_addr, tcg_addr, 1 << size);
273
- do_gpr_ld(s, tcg_rt2, tcg_addr, size, is_signed, false,
274
+ tcg_gen_addi_i64(clean_addr, clean_addr, 1 << size);
275
+ do_gpr_ld(s, tcg_rt2, clean_addr, size, is_signed, false,
276
false, 0, false, false);
277
278
tcg_gen_mov_i64(tcg_rt, tmp);
279
tcg_temp_free_i64(tmp);
280
} else {
281
- do_gpr_st(s, tcg_rt, tcg_addr, size,
282
+ do_gpr_st(s, tcg_rt, clean_addr, size,
283
false, 0, false, false);
284
- tcg_gen_addi_i64(tcg_addr, tcg_addr, 1 << size);
285
- do_gpr_st(s, tcg_rt2, tcg_addr, size,
286
+ tcg_gen_addi_i64(clean_addr, clean_addr, 1 << size);
287
+ do_gpr_st(s, tcg_rt2, clean_addr, size,
288
false, 0, false, false);
289
}
290
}
291
292
if (wback) {
293
if (postindex) {
294
- tcg_gen_addi_i64(tcg_addr, tcg_addr, offset - (1 << size));
295
- } else {
296
- tcg_gen_subi_i64(tcg_addr, tcg_addr, 1 << size);
297
+ tcg_gen_addi_i64(dirty_addr, dirty_addr, offset);
298
}
299
- tcg_gen_mov_i64(cpu_reg_sp(s, rn), tcg_addr);
300
+ tcg_gen_mov_i64(cpu_reg_sp(s, rn), dirty_addr);
301
}
302
}
72
}
303
73
304
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_reg_imm9(DisasContext *s, uint32_t insn,
74
int main(int argc, char **argv)
305
bool post_index;
306
bool writeback;
307
308
- TCGv_i64 tcg_addr;
309
+ TCGv_i64 clean_addr, dirty_addr;
310
311
if (is_vector) {
312
size |= (opc & 2) << 1;
313
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_reg_imm9(DisasContext *s, uint32_t insn,
314
if (rn == 31) {
315
gen_check_sp_alignment(s);
316
}
317
- tcg_addr = read_cpu_reg_sp(s, rn, 1);
318
319
+ dirty_addr = read_cpu_reg_sp(s, rn, 1);
320
if (!post_index) {
321
- tcg_gen_addi_i64(tcg_addr, tcg_addr, imm9);
322
+ tcg_gen_addi_i64(dirty_addr, dirty_addr, imm9);
323
}
324
+ clean_addr = clean_data_tbi(s, dirty_addr);
325
326
if (is_vector) {
327
if (is_store) {
328
- do_fp_st(s, rt, tcg_addr, size);
329
+ do_fp_st(s, rt, clean_addr, size);
330
} else {
331
- do_fp_ld(s, rt, tcg_addr, size);
332
+ do_fp_ld(s, rt, clean_addr, size);
333
}
334
} else {
335
TCGv_i64 tcg_rt = cpu_reg(s, rt);
336
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_reg_imm9(DisasContext *s, uint32_t insn,
337
bool iss_sf = disas_ldst_compute_iss_sf(size, is_signed, opc);
338
339
if (is_store) {
340
- do_gpr_st_memidx(s, tcg_rt, tcg_addr, size, memidx,
341
+ do_gpr_st_memidx(s, tcg_rt, clean_addr, size, memidx,
342
iss_valid, rt, iss_sf, false);
343
} else {
344
- do_gpr_ld_memidx(s, tcg_rt, tcg_addr, size,
345
+ do_gpr_ld_memidx(s, tcg_rt, clean_addr, size,
346
is_signed, is_extended, memidx,
347
iss_valid, rt, iss_sf, false);
348
}
349
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_reg_imm9(DisasContext *s, uint32_t insn,
350
if (writeback) {
351
TCGv_i64 tcg_rn = cpu_reg_sp(s, rn);
352
if (post_index) {
353
- tcg_gen_addi_i64(tcg_addr, tcg_addr, imm9);
354
+ tcg_gen_addi_i64(dirty_addr, dirty_addr, imm9);
355
}
356
- tcg_gen_mov_i64(tcg_rn, tcg_addr);
357
+ tcg_gen_mov_i64(tcg_rn, dirty_addr);
358
}
359
}
360
361
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_reg_roffset(DisasContext *s, uint32_t insn,
362
bool is_store = false;
363
bool is_extended = false;
364
365
- TCGv_i64 tcg_rm;
366
- TCGv_i64 tcg_addr;
367
+ TCGv_i64 tcg_rm, clean_addr, dirty_addr;
368
369
if (extract32(opt, 1, 1) == 0) {
370
unallocated_encoding(s);
371
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_reg_roffset(DisasContext *s, uint32_t insn,
372
if (rn == 31) {
373
gen_check_sp_alignment(s);
374
}
375
- tcg_addr = read_cpu_reg_sp(s, rn, 1);
376
+ dirty_addr = read_cpu_reg_sp(s, rn, 1);
377
378
tcg_rm = read_cpu_reg(s, rm, 1);
379
ext_and_shift_reg(tcg_rm, tcg_rm, opt, shift ? size : 0);
380
381
- tcg_gen_add_i64(tcg_addr, tcg_addr, tcg_rm);
382
+ tcg_gen_add_i64(dirty_addr, dirty_addr, tcg_rm);
383
+ clean_addr = clean_data_tbi(s, dirty_addr);
384
385
if (is_vector) {
386
if (is_store) {
387
- do_fp_st(s, rt, tcg_addr, size);
388
+ do_fp_st(s, rt, clean_addr, size);
389
} else {
390
- do_fp_ld(s, rt, tcg_addr, size);
391
+ do_fp_ld(s, rt, clean_addr, size);
392
}
393
} else {
394
TCGv_i64 tcg_rt = cpu_reg(s, rt);
395
bool iss_sf = disas_ldst_compute_iss_sf(size, is_signed, opc);
396
if (is_store) {
397
- do_gpr_st(s, tcg_rt, tcg_addr, size,
398
+ do_gpr_st(s, tcg_rt, clean_addr, size,
399
true, rt, iss_sf, false);
400
} else {
401
- do_gpr_ld(s, tcg_rt, tcg_addr, size,
402
+ do_gpr_ld(s, tcg_rt, clean_addr, size,
403
is_signed, is_extended,
404
true, rt, iss_sf, false);
405
}
406
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_reg_unsigned_imm(DisasContext *s, uint32_t insn,
407
unsigned int imm12 = extract32(insn, 10, 12);
408
unsigned int offset;
409
410
- TCGv_i64 tcg_addr;
411
+ TCGv_i64 clean_addr, dirty_addr;
412
413
bool is_store;
414
bool is_signed = false;
415
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_reg_unsigned_imm(DisasContext *s, uint32_t insn,
416
if (rn == 31) {
417
gen_check_sp_alignment(s);
418
}
419
- tcg_addr = read_cpu_reg_sp(s, rn, 1);
420
+ dirty_addr = read_cpu_reg_sp(s, rn, 1);
421
offset = imm12 << size;
422
- tcg_gen_addi_i64(tcg_addr, tcg_addr, offset);
423
+ tcg_gen_addi_i64(dirty_addr, dirty_addr, offset);
424
+ clean_addr = clean_data_tbi(s, dirty_addr);
425
426
if (is_vector) {
427
if (is_store) {
428
- do_fp_st(s, rt, tcg_addr, size);
429
+ do_fp_st(s, rt, clean_addr, size);
430
} else {
431
- do_fp_ld(s, rt, tcg_addr, size);
432
+ do_fp_ld(s, rt, clean_addr, size);
433
}
434
} else {
435
TCGv_i64 tcg_rt = cpu_reg(s, rt);
436
bool iss_sf = disas_ldst_compute_iss_sf(size, is_signed, opc);
437
if (is_store) {
438
- do_gpr_st(s, tcg_rt, tcg_addr, size,
439
+ do_gpr_st(s, tcg_rt, clean_addr, size,
440
true, rt, iss_sf, false);
441
} else {
442
- do_gpr_ld(s, tcg_rt, tcg_addr, size, is_signed, is_extended,
443
+ do_gpr_ld(s, tcg_rt, clean_addr, size, is_signed, is_extended,
444
true, rt, iss_sf, false);
445
}
446
}
447
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_atomic(DisasContext *s, uint32_t insn,
448
int rs = extract32(insn, 16, 5);
449
int rn = extract32(insn, 5, 5);
450
int o3_opc = extract32(insn, 12, 4);
451
- TCGv_i64 tcg_rn, tcg_rs;
452
+ TCGv_i64 tcg_rs, clean_addr;
453
AtomicThreeOpFn *fn;
454
455
if (is_vector || !dc_isar_feature(aa64_atomics, s)) {
456
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_atomic(DisasContext *s, uint32_t insn,
457
if (rn == 31) {
458
gen_check_sp_alignment(s);
459
}
460
- tcg_rn = cpu_reg_sp(s, rn);
461
+ clean_addr = clean_data_tbi(s, cpu_reg_sp(s, rn));
462
tcg_rs = read_cpu_reg(s, rs, true);
463
464
if (o3_opc == 1) { /* LDCLR */
465
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_atomic(DisasContext *s, uint32_t insn,
466
/* The tcg atomic primitives are all full barriers. Therefore we
467
* can ignore the Acquire and Release bits of this instruction.
468
*/
469
- fn(cpu_reg(s, rt), tcg_rn, tcg_rs, get_mem_index(s),
470
+ fn(cpu_reg(s, rt), clean_addr, tcg_rs, get_mem_index(s),
471
s->be_data | size | MO_ALIGN);
472
}
473
474
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_pac(DisasContext *s, uint32_t insn,
475
bool is_wback = extract32(insn, 11, 1);
476
bool use_key_a = !extract32(insn, 23, 1);
477
int offset;
478
- TCGv_i64 tcg_addr, tcg_rt;
479
+ TCGv_i64 clean_addr, dirty_addr, tcg_rt;
480
481
if (size != 3 || is_vector || !dc_isar_feature(aa64_pauth, s)) {
482
unallocated_encoding(s);
483
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_pac(DisasContext *s, uint32_t insn,
484
if (rn == 31) {
485
gen_check_sp_alignment(s);
486
}
487
- tcg_addr = read_cpu_reg_sp(s, rn, 1);
488
+ dirty_addr = read_cpu_reg_sp(s, rn, 1);
489
490
if (s->pauth_active) {
491
if (use_key_a) {
492
- gen_helper_autda(tcg_addr, cpu_env, tcg_addr, cpu_X[31]);
493
+ gen_helper_autda(dirty_addr, cpu_env, dirty_addr, cpu_X[31]);
494
} else {
495
- gen_helper_autdb(tcg_addr, cpu_env, tcg_addr, cpu_X[31]);
496
+ gen_helper_autdb(dirty_addr, cpu_env, dirty_addr, cpu_X[31]);
497
}
498
}
499
500
/* Form the 10-bit signed, scaled offset. */
501
offset = (extract32(insn, 22, 1) << 9) | extract32(insn, 12, 9);
502
offset = sextract32(offset << size, 0, 10 + size);
503
- tcg_gen_addi_i64(tcg_addr, tcg_addr, offset);
504
+ tcg_gen_addi_i64(dirty_addr, dirty_addr, offset);
505
+
506
+ /* Note that "clean" and "dirty" here refer to TBI not PAC. */
507
+ clean_addr = clean_data_tbi(s, dirty_addr);
508
509
tcg_rt = cpu_reg(s, rt);
510
-
511
- do_gpr_ld(s, tcg_rt, tcg_addr, size, /* is_signed */ false,
512
+ do_gpr_ld(s, tcg_rt, clean_addr, size, /* is_signed */ false,
513
/* extend */ false, /* iss_valid */ !is_wback,
514
/* iss_srt */ rt, /* iss_sf */ true, /* iss_ar */ false);
515
516
if (is_wback) {
517
- tcg_gen_mov_i64(cpu_reg_sp(s, rn), tcg_addr);
518
+ tcg_gen_mov_i64(cpu_reg_sp(s, rn), dirty_addr);
519
}
520
}
521
522
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_multiple_struct(DisasContext *s, uint32_t insn)
523
bool is_store = !extract32(insn, 22, 1);
524
bool is_postidx = extract32(insn, 23, 1);
525
bool is_q = extract32(insn, 30, 1);
526
- TCGv_i64 tcg_addr, tcg_rn, tcg_ebytes;
527
+ TCGv_i64 clean_addr, tcg_rn, tcg_ebytes;
528
TCGMemOp endian = s->be_data;
529
530
int ebytes; /* bytes per element */
531
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_multiple_struct(DisasContext *s, uint32_t insn)
532
elements = (is_q ? 16 : 8) / ebytes;
533
534
tcg_rn = cpu_reg_sp(s, rn);
535
- tcg_addr = tcg_temp_new_i64();
536
- tcg_gen_mov_i64(tcg_addr, tcg_rn);
537
+ clean_addr = clean_data_tbi(s, tcg_rn);
538
tcg_ebytes = tcg_const_i64(ebytes);
539
540
for (r = 0; r < rpt; r++) {
541
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_multiple_struct(DisasContext *s, uint32_t insn)
542
for (xs = 0; xs < selem; xs++) {
543
int tt = (rt + r + xs) % 32;
544
if (is_store) {
545
- do_vec_st(s, tt, e, tcg_addr, size, endian);
546
+ do_vec_st(s, tt, e, clean_addr, size, endian);
547
} else {
548
- do_vec_ld(s, tt, e, tcg_addr, size, endian);
549
+ do_vec_ld(s, tt, e, clean_addr, size, endian);
550
}
551
- tcg_gen_add_i64(tcg_addr, tcg_addr, tcg_ebytes);
552
+ tcg_gen_add_i64(clean_addr, clean_addr, tcg_ebytes);
553
}
554
}
555
}
556
+ tcg_temp_free_i64(tcg_ebytes);
557
558
if (!is_store) {
559
/* For non-quad operations, setting a slice of the low
560
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_multiple_struct(DisasContext *s, uint32_t insn)
561
562
if (is_postidx) {
563
if (rm == 31) {
564
- tcg_gen_mov_i64(tcg_rn, tcg_addr);
565
+ tcg_gen_addi_i64(tcg_rn, tcg_rn, rpt * elements * selem * ebytes);
566
} else {
567
tcg_gen_add_i64(tcg_rn, tcg_rn, cpu_reg(s, rm));
568
}
569
}
570
- tcg_temp_free_i64(tcg_ebytes);
571
- tcg_temp_free_i64(tcg_addr);
572
}
573
574
/* AdvSIMD load/store single structure
575
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_single_struct(DisasContext *s, uint32_t insn)
576
bool replicate = false;
577
int index = is_q << 3 | S << 2 | size;
578
int ebytes, xs;
579
- TCGv_i64 tcg_addr, tcg_rn, tcg_ebytes;
580
+ TCGv_i64 clean_addr, tcg_rn, tcg_ebytes;
581
582
if (extract32(insn, 31, 1)) {
583
unallocated_encoding(s);
584
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_single_struct(DisasContext *s, uint32_t insn)
585
}
586
587
tcg_rn = cpu_reg_sp(s, rn);
588
- tcg_addr = tcg_temp_new_i64();
589
- tcg_gen_mov_i64(tcg_addr, tcg_rn);
590
+ clean_addr = clean_data_tbi(s, tcg_rn);
591
tcg_ebytes = tcg_const_i64(ebytes);
592
593
for (xs = 0; xs < selem; xs++) {
594
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_single_struct(DisasContext *s, uint32_t insn)
595
/* Load and replicate to all elements */
596
TCGv_i64 tcg_tmp = tcg_temp_new_i64();
597
598
- tcg_gen_qemu_ld_i64(tcg_tmp, tcg_addr,
599
+ tcg_gen_qemu_ld_i64(tcg_tmp, clean_addr,
600
get_mem_index(s), s->be_data + scale);
601
tcg_gen_gvec_dup_i64(scale, vec_full_reg_offset(s, rt),
602
(is_q + 1) * 8, vec_full_reg_size(s),
603
@@ -XXX,XX +XXX,XX @@ static void disas_ldst_single_struct(DisasContext *s, uint32_t insn)
604
} else {
605
/* Load/store one element per register */
606
if (is_load) {
607
- do_vec_ld(s, rt, index, tcg_addr, scale, s->be_data);
608
+ do_vec_ld(s, rt, index, clean_addr, scale, s->be_data);
609
} else {
610
- do_vec_st(s, rt, index, tcg_addr, scale, s->be_data);
611
+ do_vec_st(s, rt, index, clean_addr, scale, s->be_data);
612
}
613
}
614
- tcg_gen_add_i64(tcg_addr, tcg_addr, tcg_ebytes);
615
+ tcg_gen_add_i64(clean_addr, clean_addr, tcg_ebytes);
616
rt = (rt + 1) % 32;
617
}
618
+ tcg_temp_free_i64(tcg_ebytes);
619
620
if (is_postidx) {
621
if (rm == 31) {
622
- tcg_gen_mov_i64(tcg_rn, tcg_addr);
623
+ tcg_gen_addi_i64(tcg_rn, tcg_rn, selem * ebytes);
624
} else {
625
tcg_gen_add_i64(tcg_rn, tcg_rn, cpu_reg(s, rm));
626
}
627
}
628
- tcg_temp_free_i64(tcg_ebytes);
629
- tcg_temp_free_i64(tcg_addr);
630
}
631
632
/* Loads and stores */
633
--
75
--
634
2.20.1
76
2.20.1
635
77
636
78
diff view generated by jsdifflib
New patch
1
From: Alex Chen <alex.chen@huawei.com>
1
2
3
We should use printf format specifier "%u" instead of "%d" for
4
argument of type "unsigned int".
5
6
Reported-by: Euler Robot <euler.robot@huawei.com>
7
Signed-off-by: Alex Chen <alex.chen@huawei.com>
8
Message-id: 20201126111109.112238-2-alex.chen@huawei.com
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
---
12
hw/misc/imx25_ccm.c | 12 ++++++------
13
1 file changed, 6 insertions(+), 6 deletions(-)
14
15
diff --git a/hw/misc/imx25_ccm.c b/hw/misc/imx25_ccm.c
16
index XXXXXXX..XXXXXXX 100644
17
--- a/hw/misc/imx25_ccm.c
18
+++ b/hw/misc/imx25_ccm.c
19
@@ -XXX,XX +XXX,XX @@ static const char *imx25_ccm_reg_name(uint32_t reg)
20
case IMX25_CCM_LPIMR1_REG:
21
return "lpimr1";
22
default:
23
- sprintf(unknown, "[%d ?]", reg);
24
+ sprintf(unknown, "[%u ?]", reg);
25
return unknown;
26
}
27
}
28
@@ -XXX,XX +XXX,XX @@ static uint32_t imx25_ccm_get_mpll_clk(IMXCCMState *dev)
29
freq = imx_ccm_calc_pll(s->reg[IMX25_CCM_MPCTL_REG], CKIH_FREQ);
30
}
31
32
- DPRINTF("freq = %d\n", freq);
33
+ DPRINTF("freq = %u\n", freq);
34
35
return freq;
36
}
37
@@ -XXX,XX +XXX,XX @@ static uint32_t imx25_ccm_get_mcu_clk(IMXCCMState *dev)
38
39
freq = freq / (1 + EXTRACT(s->reg[IMX25_CCM_CCTL_REG], ARM_CLK_DIV));
40
41
- DPRINTF("freq = %d\n", freq);
42
+ DPRINTF("freq = %u\n", freq);
43
44
return freq;
45
}
46
@@ -XXX,XX +XXX,XX @@ static uint32_t imx25_ccm_get_ahb_clk(IMXCCMState *dev)
47
freq = imx25_ccm_get_mcu_clk(dev)
48
/ (1 + EXTRACT(s->reg[IMX25_CCM_CCTL_REG], AHB_CLK_DIV));
49
50
- DPRINTF("freq = %d\n", freq);
51
+ DPRINTF("freq = %u\n", freq);
52
53
return freq;
54
}
55
@@ -XXX,XX +XXX,XX @@ static uint32_t imx25_ccm_get_ipg_clk(IMXCCMState *dev)
56
57
freq = imx25_ccm_get_ahb_clk(dev) / 2;
58
59
- DPRINTF("freq = %d\n", freq);
60
+ DPRINTF("freq = %u\n", freq);
61
62
return freq;
63
}
64
@@ -XXX,XX +XXX,XX @@ static uint32_t imx25_ccm_get_clock_frequency(IMXCCMState *dev, IMXClk clock)
65
break;
66
}
67
68
- DPRINTF("Clock = %d) = %d\n", clock, freq);
69
+ DPRINTF("Clock = %d) = %u\n", clock, freq);
70
71
return freq;
72
}
73
--
74
2.20.1
75
76
diff view generated by jsdifflib
1
From: Max Filippov <jcmvbkbc@gmail.com>
1
From: Alex Chen <alex.chen@huawei.com>
2
2
3
With multiprocess extensions gdb uses 'vKill' packet instead of 'k' to
3
We should use printf format specifier "%u" instead of "%d" for
4
kill the inferior. Handle 'vKill' the same way 'k' was handled in the
4
argument of type "unsigned int".
5
presence of single process.
6
5
7
Fixes: 7cf48f6752e5 ("gdbstub: add multiprocess support to
6
Reported-by: Euler Robot <euler.robot@huawei.com>
8
(f|s)ThreadInfo and ThreadExtraInfo")
7
Signed-off-by: Alex Chen <alex.chen@huawei.com>
9
8
Message-id: 20201126111109.112238-3-alex.chen@huawei.com
10
Cc: Luc Michel <luc.michel@greensocs.com>
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
11
Signed-off-by: Max Filippov <jcmvbkbc@gmail.com>
12
Reviewed-by: Luc Michel <luc.michel@greensocs.com>
13
Reviewed-by: KONRAD Frederic <frederic.konrad@adacore.com>
14
Tested-by: KONRAD Frederic <frederic.konrad@adacore.com>
15
Message-id: 20190130192403.13754-1-jcmvbkbc@gmail.com
16
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
17
---
11
---
18
gdbstub.c | 4 ++++
12
hw/misc/imx31_ccm.c | 14 +++++++-------
19
1 file changed, 4 insertions(+)
13
hw/misc/imx_ccm.c | 4 ++--
14
2 files changed, 9 insertions(+), 9 deletions(-)
20
15
21
diff --git a/gdbstub.c b/gdbstub.c
16
diff --git a/hw/misc/imx31_ccm.c b/hw/misc/imx31_ccm.c
22
index XXXXXXX..XXXXXXX 100644
17
index XXXXXXX..XXXXXXX 100644
23
--- a/gdbstub.c
18
--- a/hw/misc/imx31_ccm.c
24
+++ b/gdbstub.c
19
+++ b/hw/misc/imx31_ccm.c
25
@@ -XXX,XX +XXX,XX @@ static int gdb_handle_packet(GDBState *s, const char *line_buf)
20
@@ -XXX,XX +XXX,XX @@ static const char *imx31_ccm_reg_name(uint32_t reg)
26
21
case IMX31_CCM_PDR2_REG:
27
put_packet(s, buf);
22
return "PDR2";
28
break;
23
default:
29
+ } else if (strncmp(p, "Kill;", 5) == 0) {
24
- sprintf(unknown, "[%d ?]", reg);
30
+ /* Kill the target */
25
+ sprintf(unknown, "[%u ?]", reg);
31
+ error_report("QEMU: Terminated via GDBstub");
26
return unknown;
32
+ exit(0);
27
}
33
} else {
28
}
34
goto unknown_command;
29
@@ -XXX,XX +XXX,XX @@ static uint32_t imx31_ccm_get_pll_ref_clk(IMXCCMState *dev)
35
}
30
freq = CKIH_FREQ;
31
}
32
33
- DPRINTF("freq = %d\n", freq);
34
+ DPRINTF("freq = %u\n", freq);
35
36
return freq;
37
}
38
@@ -XXX,XX +XXX,XX @@ static uint32_t imx31_ccm_get_mpll_clk(IMXCCMState *dev)
39
freq = imx_ccm_calc_pll(s->reg[IMX31_CCM_MPCTL_REG],
40
imx31_ccm_get_pll_ref_clk(dev));
41
42
- DPRINTF("freq = %d\n", freq);
43
+ DPRINTF("freq = %u\n", freq);
44
45
return freq;
46
}
47
@@ -XXX,XX +XXX,XX @@ static uint32_t imx31_ccm_get_mcu_main_clk(IMXCCMState *dev)
48
freq = imx31_ccm_get_mpll_clk(dev);
49
}
50
51
- DPRINTF("freq = %d\n", freq);
52
+ DPRINTF("freq = %u\n", freq);
53
54
return freq;
55
}
56
@@ -XXX,XX +XXX,XX @@ static uint32_t imx31_ccm_get_hclk_clk(IMXCCMState *dev)
57
freq = imx31_ccm_get_mcu_main_clk(dev)
58
/ (1 + EXTRACT(s->reg[IMX31_CCM_PDR0_REG], MAX));
59
60
- DPRINTF("freq = %d\n", freq);
61
+ DPRINTF("freq = %u\n", freq);
62
63
return freq;
64
}
65
@@ -XXX,XX +XXX,XX @@ static uint32_t imx31_ccm_get_ipg_clk(IMXCCMState *dev)
66
freq = imx31_ccm_get_hclk_clk(dev)
67
/ (1 + EXTRACT(s->reg[IMX31_CCM_PDR0_REG], IPG));
68
69
- DPRINTF("freq = %d\n", freq);
70
+ DPRINTF("freq = %u\n", freq);
71
72
return freq;
73
}
74
@@ -XXX,XX +XXX,XX @@ static uint32_t imx31_ccm_get_clock_frequency(IMXCCMState *dev, IMXClk clock)
75
break;
76
}
77
78
- DPRINTF("Clock = %d) = %d\n", clock, freq);
79
+ DPRINTF("Clock = %d) = %u\n", clock, freq);
80
81
return freq;
82
}
83
diff --git a/hw/misc/imx_ccm.c b/hw/misc/imx_ccm.c
84
index XXXXXXX..XXXXXXX 100644
85
--- a/hw/misc/imx_ccm.c
86
+++ b/hw/misc/imx_ccm.c
87
@@ -XXX,XX +XXX,XX @@ uint32_t imx_ccm_get_clock_frequency(IMXCCMState *dev, IMXClk clock)
88
freq = klass->get_clock_frequency(dev, clock);
89
}
90
91
- DPRINTF("(clock = %d) = %d\n", clock, freq);
92
+ DPRINTF("(clock = %d) = %u\n", clock, freq);
93
94
return freq;
95
}
96
@@ -XXX,XX +XXX,XX @@ uint32_t imx_ccm_calc_pll(uint32_t pllreg, uint32_t base_freq)
97
freq = ((2 * (base_freq >> 10) * (mfi * mfd + mfn)) /
98
(mfd * pd)) << 10;
99
100
- DPRINTF("(pllreg = 0x%08x, base_freq = %d) = %d\n", pllreg, base_freq,
101
+ DPRINTF("(pllreg = 0x%08x, base_freq = %u) = %d\n", pllreg, base_freq,
102
freq);
103
104
return freq;
36
--
105
--
37
2.20.1
106
2.20.1
38
107
39
108
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Alex Chen <alex.chen@huawei.com>
2
2
3
We should use printf format specifier "%u" instead of "%d" for
4
argument of type "unsigned int".
5
6
Reported-by: Euler Robot <euler.robot@huawei.com>
7
Signed-off-by: Alex Chen <alex.chen@huawei.com>
8
Message-id: 20201126111109.112238-4-alex.chen@huawei.com
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
5
Message-id: 20190128223118.5255-11-richard.henderson@linaro.org
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
11
---
8
target/arm/cpu64.c | 4 ++++
12
hw/misc/imx6_ccm.c | 20 ++++++++++----------
9
1 file changed, 4 insertions(+)
13
hw/misc/imx6_src.c | 2 +-
14
2 files changed, 11 insertions(+), 11 deletions(-)
10
15
11
diff --git a/target/arm/cpu64.c b/target/arm/cpu64.c
16
diff --git a/hw/misc/imx6_ccm.c b/hw/misc/imx6_ccm.c
12
index XXXXXXX..XXXXXXX 100644
17
index XXXXXXX..XXXXXXX 100644
13
--- a/target/arm/cpu64.c
18
--- a/hw/misc/imx6_ccm.c
14
+++ b/target/arm/cpu64.c
19
+++ b/hw/misc/imx6_ccm.c
15
@@ -XXX,XX +XXX,XX @@ static void aarch64_max_initfn(Object *obj)
20
@@ -XXX,XX +XXX,XX @@ static const char *imx6_ccm_reg_name(uint32_t reg)
16
t = FIELD_DP64(t, ID_AA64PFR0, ADVSIMD, 1);
21
case CCM_CMEOR:
17
cpu->isar.id_aa64pfr0 = t;
22
return "CMEOR";
18
23
default:
19
+ t = cpu->isar.id_aa64pfr1;
24
- sprintf(unknown, "%d ?", reg);
20
+ t = FIELD_DP64(t, ID_AA64PFR1, BT, 1);
25
+ sprintf(unknown, "%u ?", reg);
21
+ cpu->isar.id_aa64pfr1 = t;
26
return unknown;
22
+
27
}
23
t = cpu->isar.id_aa64mmfr1;
28
}
24
t = FIELD_DP64(t, ID_AA64MMFR1, HPDS, 1); /* HPD */
29
@@ -XXX,XX +XXX,XX @@ static const char *imx6_analog_reg_name(uint32_t reg)
25
t = FIELD_DP64(t, ID_AA64MMFR1, LO, 1);
30
case USB_ANALOG_DIGPROG:
31
return "USB_ANALOG_DIGPROG";
32
default:
33
- sprintf(unknown, "%d ?", reg);
34
+ sprintf(unknown, "%u ?", reg);
35
return unknown;
36
}
37
}
38
@@ -XXX,XX +XXX,XX @@ static uint64_t imx6_analog_get_pll2_clk(IMX6CCMState *dev)
39
freq *= 20;
40
}
41
42
- DPRINTF("freq = %d\n", (uint32_t)freq);
43
+ DPRINTF("freq = %u\n", (uint32_t)freq);
44
45
return freq;
46
}
47
@@ -XXX,XX +XXX,XX @@ static uint64_t imx6_analog_get_pll2_pfd0_clk(IMX6CCMState *dev)
48
freq = imx6_analog_get_pll2_clk(dev) * 18
49
/ EXTRACT(dev->analog[CCM_ANALOG_PFD_528], PFD0_FRAC);
50
51
- DPRINTF("freq = %d\n", (uint32_t)freq);
52
+ DPRINTF("freq = %u\n", (uint32_t)freq);
53
54
return freq;
55
}
56
@@ -XXX,XX +XXX,XX @@ static uint64_t imx6_analog_get_pll2_pfd2_clk(IMX6CCMState *dev)
57
freq = imx6_analog_get_pll2_clk(dev) * 18
58
/ EXTRACT(dev->analog[CCM_ANALOG_PFD_528], PFD2_FRAC);
59
60
- DPRINTF("freq = %d\n", (uint32_t)freq);
61
+ DPRINTF("freq = %u\n", (uint32_t)freq);
62
63
return freq;
64
}
65
@@ -XXX,XX +XXX,XX @@ static uint64_t imx6_analog_get_periph_clk(IMX6CCMState *dev)
66
break;
67
}
68
69
- DPRINTF("freq = %d\n", (uint32_t)freq);
70
+ DPRINTF("freq = %u\n", (uint32_t)freq);
71
72
return freq;
73
}
74
@@ -XXX,XX +XXX,XX @@ static uint64_t imx6_ccm_get_ahb_clk(IMX6CCMState *dev)
75
freq = imx6_analog_get_periph_clk(dev)
76
/ (1 + EXTRACT(dev->ccm[CCM_CBCDR], AHB_PODF));
77
78
- DPRINTF("freq = %d\n", (uint32_t)freq);
79
+ DPRINTF("freq = %u\n", (uint32_t)freq);
80
81
return freq;
82
}
83
@@ -XXX,XX +XXX,XX @@ static uint64_t imx6_ccm_get_ipg_clk(IMX6CCMState *dev)
84
freq = imx6_ccm_get_ahb_clk(dev)
85
/ (1 + EXTRACT(dev->ccm[CCM_CBCDR], IPG_PODF));
86
87
- DPRINTF("freq = %d\n", (uint32_t)freq);
88
+ DPRINTF("freq = %u\n", (uint32_t)freq);
89
90
return freq;
91
}
92
@@ -XXX,XX +XXX,XX @@ static uint64_t imx6_ccm_get_per_clk(IMX6CCMState *dev)
93
freq = imx6_ccm_get_ipg_clk(dev)
94
/ (1 + EXTRACT(dev->ccm[CCM_CSCMR1], PERCLK_PODF));
95
96
- DPRINTF("freq = %d\n", (uint32_t)freq);
97
+ DPRINTF("freq = %u\n", (uint32_t)freq);
98
99
return freq;
100
}
101
@@ -XXX,XX +XXX,XX @@ static uint32_t imx6_ccm_get_clock_frequency(IMXCCMState *dev, IMXClk clock)
102
break;
103
}
104
105
- DPRINTF("Clock = %d) = %d\n", clock, freq);
106
+ DPRINTF("Clock = %d) = %u\n", clock, freq);
107
108
return freq;
109
}
110
diff --git a/hw/misc/imx6_src.c b/hw/misc/imx6_src.c
111
index XXXXXXX..XXXXXXX 100644
112
--- a/hw/misc/imx6_src.c
113
+++ b/hw/misc/imx6_src.c
114
@@ -XXX,XX +XXX,XX @@ static const char *imx6_src_reg_name(uint32_t reg)
115
case SRC_GPR10:
116
return "SRC_GPR10";
117
default:
118
- sprintf(unknown, "%d ?", reg);
119
+ sprintf(unknown, "%u ?", reg);
120
return unknown;
121
}
122
}
26
--
123
--
27
2.20.1
124
2.20.1
28
125
29
126
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
From: Alex Chen <alex.chen@huawei.com>
2
2
3
These bits can be used to cache target-specific data in cputlb
3
We should use printf format specifier "%u" instead of "%d" for
4
read from the page tables.
4
argument of type "unsigned int".
5
5
6
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
6
Reported-by: Euler Robot <euler.robot@huawei.com>
7
Signed-off-by: Alex Chen <alex.chen@huawei.com>
8
Message-id: 20201126111109.112238-5-alex.chen@huawei.com
7
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
8
Message-id: 20190128223118.5255-5-richard.henderson@linaro.org
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
---
11
---
11
include/exec/memattrs.h | 10 ++++++++++
12
hw/misc/imx6ul_ccm.c | 4 ++--
12
1 file changed, 10 insertions(+)
13
1 file changed, 2 insertions(+), 2 deletions(-)
13
14
14
diff --git a/include/exec/memattrs.h b/include/exec/memattrs.h
15
diff --git a/hw/misc/imx6ul_ccm.c b/hw/misc/imx6ul_ccm.c
15
index XXXXXXX..XXXXXXX 100644
16
index XXXXXXX..XXXXXXX 100644
16
--- a/include/exec/memattrs.h
17
--- a/hw/misc/imx6ul_ccm.c
17
+++ b/include/exec/memattrs.h
18
+++ b/hw/misc/imx6ul_ccm.c
18
@@ -XXX,XX +XXX,XX @@ typedef struct MemTxAttrs {
19
@@ -XXX,XX +XXX,XX @@ static const char *imx6ul_ccm_reg_name(uint32_t reg)
19
unsigned int user:1;
20
case CCM_CMEOR:
20
/* Requester ID (for MSI for example) */
21
return "CMEOR";
21
unsigned int requester_id:16;
22
default:
22
+ /*
23
- sprintf(unknown, "%d ?", reg);
23
+ * The following are target-specific page-table bits. These are not
24
+ sprintf(unknown, "%u ?", reg);
24
+ * related to actual memory transactions at all. However, this structure
25
return unknown;
25
+ * is part of the tlb_fill interface, cached in the cputlb structure,
26
}
26
+ * and has unused bits. These fields will be read by target-specific
27
}
27
+ * helpers using env->iotlb[mmu_idx][tlb_index()].attrs.target_tlb_bitN.
28
@@ -XXX,XX +XXX,XX @@ static const char *imx6ul_analog_reg_name(uint32_t reg)
28
+ */
29
case USB_ANALOG_DIGPROG:
29
+ unsigned int target_tlb_bit0 : 1;
30
return "USB_ANALOG_DIGPROG";
30
+ unsigned int target_tlb_bit1 : 1;
31
default:
31
+ unsigned int target_tlb_bit2 : 1;
32
- sprintf(unknown, "%d ?", reg);
32
} MemTxAttrs;
33
+ sprintf(unknown, "%u ?", reg);
33
34
return unknown;
34
/* Bus masters which don't specify any attributes will get this,
35
}
36
}
35
--
37
--
36
2.20.1
38
2.20.1
37
39
38
40
diff view generated by jsdifflib
New patch
1
For M-profile CPUs, the range from 0xe0000000 to 0xe00fffff is the
2
Private Peripheral Bus range, which includes all of the memory mapped
3
devices and registers that are part of the CPU itself, including the
4
NVIC, systick timer, and debug and trace components like the Data
5
Watchpoint and Trace unit (DWT). Within this large region, the range
6
0xe000e000 to 0xe000efff is the System Control Space (NVIC, system
7
registers, systick) and 0xe002e000 to 0exe002efff is its Non-secure
8
alias.
1
9
10
The architecture is clear that within the SCS unimplemented registers
11
should be RES0 for privileged accesses and generate BusFault for
12
unprivileged accesses, and we currently implement this.
13
14
It is less clear about how to handle accesses to unimplemented
15
regions of the wider PPB. Unprivileged accesses should definitely
16
cause BusFaults (R_DQQS), but the behaviour of privileged accesses is
17
not given as a general rule. However, the register definitions of
18
individual registers for components like the DWT all state that they
19
are RES0 if the relevant component is not implemented, so the
20
simplest way to provide that is to provide RAZ/WI for the whole range
21
for privileged accesses. (The v7M Arm ARM does say that reserved
22
registers should be UNK/SBZP.)
23
24
Expand the container MemoryRegion that the NVIC exposes so that
25
it covers the whole PPB space. This means:
26
* moving the address that the ARMV7M device maps it to down by
27
0xe000 bytes
28
* moving the off and the offsets within the container of all the
29
subregions forward by 0xe000 bytes
30
* adding a new default MemoryRegion that covers the whole container
31
at a lower priority than anything else and which provides the
32
RAZWI/BusFault behaviour
33
34
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
35
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
36
Message-id: 20201119215617.29887-2-peter.maydell@linaro.org
37
---
38
include/hw/intc/armv7m_nvic.h | 1 +
39
hw/arm/armv7m.c | 2 +-
40
hw/intc/armv7m_nvic.c | 78 ++++++++++++++++++++++++++++++-----
41
3 files changed, 69 insertions(+), 12 deletions(-)
42
43
diff --git a/include/hw/intc/armv7m_nvic.h b/include/hw/intc/armv7m_nvic.h
44
index XXXXXXX..XXXXXXX 100644
45
--- a/include/hw/intc/armv7m_nvic.h
46
+++ b/include/hw/intc/armv7m_nvic.h
47
@@ -XXX,XX +XXX,XX @@ struct NVICState {
48
MemoryRegion systickmem;
49
MemoryRegion systick_ns_mem;
50
MemoryRegion container;
51
+ MemoryRegion defaultmem;
52
53
uint32_t num_irq;
54
qemu_irq excpout;
55
diff --git a/hw/arm/armv7m.c b/hw/arm/armv7m.c
56
index XXXXXXX..XXXXXXX 100644
57
--- a/hw/arm/armv7m.c
58
+++ b/hw/arm/armv7m.c
59
@@ -XXX,XX +XXX,XX @@ static void armv7m_realize(DeviceState *dev, Error **errp)
60
sysbus_connect_irq(sbd, 0,
61
qdev_get_gpio_in(DEVICE(s->cpu), ARM_CPU_IRQ));
62
63
- memory_region_add_subregion(&s->container, 0xe000e000,
64
+ memory_region_add_subregion(&s->container, 0xe0000000,
65
sysbus_mmio_get_region(sbd, 0));
66
67
for (i = 0; i < ARRAY_SIZE(s->bitband); i++) {
68
diff --git a/hw/intc/armv7m_nvic.c b/hw/intc/armv7m_nvic.c
69
index XXXXXXX..XXXXXXX 100644
70
--- a/hw/intc/armv7m_nvic.c
71
+++ b/hw/intc/armv7m_nvic.c
72
@@ -XXX,XX +XXX,XX @@ static const MemoryRegionOps nvic_systick_ops = {
73
.endianness = DEVICE_NATIVE_ENDIAN,
74
};
75
76
+/*
77
+ * Unassigned portions of the PPB space are RAZ/WI for privileged
78
+ * accesses, and fault for non-privileged accesses.
79
+ */
80
+static MemTxResult ppb_default_read(void *opaque, hwaddr addr,
81
+ uint64_t *data, unsigned size,
82
+ MemTxAttrs attrs)
83
+{
84
+ qemu_log_mask(LOG_UNIMP, "Read of unassigned area of PPB: offset 0x%x\n",
85
+ (uint32_t)addr);
86
+ if (attrs.user) {
87
+ return MEMTX_ERROR;
88
+ }
89
+ *data = 0;
90
+ return MEMTX_OK;
91
+}
92
+
93
+static MemTxResult ppb_default_write(void *opaque, hwaddr addr,
94
+ uint64_t value, unsigned size,
95
+ MemTxAttrs attrs)
96
+{
97
+ qemu_log_mask(LOG_UNIMP, "Write of unassigned area of PPB: offset 0x%x\n",
98
+ (uint32_t)addr);
99
+ if (attrs.user) {
100
+ return MEMTX_ERROR;
101
+ }
102
+ return MEMTX_OK;
103
+}
104
+
105
+static const MemoryRegionOps ppb_default_ops = {
106
+ .read_with_attrs = ppb_default_read,
107
+ .write_with_attrs = ppb_default_write,
108
+ .endianness = DEVICE_NATIVE_ENDIAN,
109
+ .valid.min_access_size = 1,
110
+ .valid.max_access_size = 8,
111
+};
112
+
113
static int nvic_post_load(void *opaque, int version_id)
114
{
115
NVICState *s = opaque;
116
@@ -XXX,XX +XXX,XX @@ static void nvic_systick_trigger(void *opaque, int n, int level)
117
static void armv7m_nvic_realize(DeviceState *dev, Error **errp)
118
{
119
NVICState *s = NVIC(dev);
120
- int regionlen;
121
122
/* The armv7m container object will have set our CPU pointer */
123
if (!s->cpu || !arm_feature(&s->cpu->env, ARM_FEATURE_M)) {
124
@@ -XXX,XX +XXX,XX @@ static void armv7m_nvic_realize(DeviceState *dev, Error **errp)
125
M_REG_S));
126
}
127
128
- /* The NVIC and System Control Space (SCS) starts at 0xe000e000
129
+ /*
130
+ * This device provides a single sysbus memory region which
131
+ * represents the whole of the "System PPB" space. This is the
132
+ * range from 0xe0000000 to 0xe00fffff and includes the NVIC,
133
+ * the System Control Space (system registers), the systick timer,
134
+ * and for CPUs with the Security extension an NS banked version
135
+ * of all of these.
136
+ *
137
+ * The default behaviour for unimplemented registers/ranges
138
+ * (for instance the Data Watchpoint and Trace unit at 0xe0001000)
139
+ * is to RAZ/WI for privileged access and BusFault for non-privileged
140
+ * access.
141
+ *
142
+ * The NVIC and System Control Space (SCS) starts at 0xe000e000
143
* and looks like this:
144
* 0x004 - ICTR
145
* 0x010 - 0xff - systick
146
@@ -XXX,XX +XXX,XX @@ static void armv7m_nvic_realize(DeviceState *dev, Error **errp)
147
* generally code determining which banked register to use should
148
* use attrs.secure; code determining actual behaviour of the system
149
* should use env->v7m.secure.
150
+ *
151
+ * The container covers the whole PPB space. Within it the priority
152
+ * of overlapping regions is:
153
+ * - default region (for RAZ/WI and BusFault) : -1
154
+ * - system register regions : 0
155
+ * - systick : 1
156
+ * This is because the systick device is a small block of registers
157
+ * in the middle of the other system control registers.
158
*/
159
- regionlen = arm_feature(&s->cpu->env, ARM_FEATURE_V8) ? 0x21000 : 0x1000;
160
- memory_region_init(&s->container, OBJECT(s), "nvic", regionlen);
161
- /* The system register region goes at the bottom of the priority
162
- * stack as it covers the whole page.
163
- */
164
+ memory_region_init(&s->container, OBJECT(s), "nvic", 0x100000);
165
+ memory_region_init_io(&s->defaultmem, OBJECT(s), &ppb_default_ops, s,
166
+ "nvic-default", 0x100000);
167
+ memory_region_add_subregion_overlap(&s->container, 0, &s->defaultmem, -1);
168
memory_region_init_io(&s->sysregmem, OBJECT(s), &nvic_sysreg_ops, s,
169
"nvic_sysregs", 0x1000);
170
- memory_region_add_subregion(&s->container, 0, &s->sysregmem);
171
+ memory_region_add_subregion(&s->container, 0xe000, &s->sysregmem);
172
173
memory_region_init_io(&s->systickmem, OBJECT(s),
174
&nvic_systick_ops, s,
175
"nvic_systick", 0xe0);
176
177
- memory_region_add_subregion_overlap(&s->container, 0x10,
178
+ memory_region_add_subregion_overlap(&s->container, 0xe010,
179
&s->systickmem, 1);
180
181
if (arm_feature(&s->cpu->env, ARM_FEATURE_V8)) {
182
memory_region_init_io(&s->sysreg_ns_mem, OBJECT(s),
183
&nvic_sysreg_ns_ops, &s->sysregmem,
184
"nvic_sysregs_ns", 0x1000);
185
- memory_region_add_subregion(&s->container, 0x20000, &s->sysreg_ns_mem);
186
+ memory_region_add_subregion(&s->container, 0x2e000, &s->sysreg_ns_mem);
187
memory_region_init_io(&s->systick_ns_mem, OBJECT(s),
188
&nvic_sysreg_ns_ops, &s->systickmem,
189
"nvic_systick_ns", 0xe0);
190
- memory_region_add_subregion_overlap(&s->container, 0x20010,
191
+ memory_region_add_subregion_overlap(&s->container, 0x2e010,
192
&s->systick_ns_mem, 1);
193
}
194
195
--
196
2.20.1
197
198
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
In v8.1M the PXN architecture extension adds a new PXN bit to the
2
MPU_RLAR registers, which forbids execution of code in the region
3
from a privileged mode.
2
4
3
Caching the bit means that we will not have to re-walk the
5
This is another feature which is just in the generic "in v8.1M" set
4
page tables to look up the bit during translation.
6
and has no ID register field indicating its presence.
5
7
6
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
7
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
8
Message-id: 20190128223118.5255-6-richard.henderson@linaro.org
9
[PMM: no need to OR in guarded bit status]
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
10
Message-id: 20201119215617.29887-3-peter.maydell@linaro.org
11
---
11
---
12
target/arm/helper.c | 6 ++++++
12
target/arm/helper.c | 7 ++++++-
13
1 file changed, 6 insertions(+)
13
1 file changed, 6 insertions(+), 1 deletion(-)
14
14
15
diff --git a/target/arm/helper.c b/target/arm/helper.c
15
diff --git a/target/arm/helper.c b/target/arm/helper.c
16
index XXXXXXX..XXXXXXX 100644
16
index XXXXXXX..XXXXXXX 100644
17
--- a/target/arm/helper.c
17
--- a/target/arm/helper.c
18
+++ b/target/arm/helper.c
18
+++ b/target/arm/helper.c
19
@@ -XXX,XX +XXX,XX @@ static bool get_phys_addr_lpae(CPUARMState *env, target_ulong address,
19
@@ -XXX,XX +XXX,XX @@ bool pmsav8_mpu_lookup(CPUARMState *env, uint32_t address,
20
bool ttbr1_valid;
20
} else {
21
uint64_t descaddrmask;
21
uint32_t ap = extract32(env->pmsav8.rbar[secure][matchregion], 1, 2);
22
bool aarch64 = arm_el_is_aa64(env, el);
22
uint32_t xn = extract32(env->pmsav8.rbar[secure][matchregion], 0, 1);
23
+ bool guarded = false;
23
+ bool pxn = false;
24
24
+
25
/* TODO:
25
+ if (arm_feature(env, ARM_FEATURE_V8_1M)) {
26
* This code does not handle the different format TCR for VTCR_EL2.
26
+ pxn = extract32(env->pmsav8.rlar[secure][matchregion], 4, 1);
27
@@ -XXX,XX +XXX,XX @@ static bool get_phys_addr_lpae(CPUARMState *env, target_ulong address,
27
+ }
28
29
if (m_is_system_region(env, address)) {
30
/* System space is always execute never */
31
@@ -XXX,XX +XXX,XX @@ bool pmsav8_mpu_lookup(CPUARMState *env, uint32_t address,
28
}
32
}
29
/* Merge in attributes from table descriptors */
33
30
attrs |= nstable << 3; /* NS */
34
*prot = simple_ap_to_rw_prot(env, mmu_idx, ap);
31
+ guarded = extract64(descriptor, 50, 1); /* GP */
35
- if (*prot && !xn) {
32
if (param.hpd) {
36
+ if (*prot && !xn && !(pxn && !is_user)) {
33
/* HPD disables all the table attributes except NSTable. */
37
*prot |= PAGE_EXEC;
34
break;
38
}
35
@@ -XXX,XX +XXX,XX @@ static bool get_phys_addr_lpae(CPUARMState *env, target_ulong address,
39
/* We don't need to look the attribute up in the MAIR0/MAIR1
36
*/
37
txattrs->secure = false;
38
}
39
+ /* When in aarch64 mode, and BTI is enabled, remember GP in the IOTLB. */
40
+ if (aarch64 && guarded && cpu_isar_feature(aa64_bti, cpu)) {
41
+ txattrs->target_tlb_bit0 = true;
42
+ }
43
44
if (cacheattrs != NULL) {
45
if (mmu_idx == ARMMMUIdx_S2NS) {
46
--
40
--
47
2.20.1
41
2.20.1
48
42
49
43
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
In arm_cpu_realizefn() we check whether the board code disabled EL3
2
via the has_el3 CPU object property, which we create if the CPU
3
starts with the ARM_FEATURE_EL3 feature bit. If it is disabled, then
4
we turn off ARM_FEATURE_EL3 and also zero out the relevant fields in
5
the ID_PFR1 and ID_AA64PFR0 registers.
2
6
3
This has been enabled in the linux kernel since v3.11
7
This codepath was incorrectly being taken for M-profile CPUs, which
4
(commit d50240a5f6cea, 2013-09-03,
8
do not have an EL3 and don't set ARM_FEATURE_EL3, but which may have
5
"arm64: mm: permit use of tagged pointers at EL0").
9
the M-profile Security extension and so should have non-zero values
10
in the ID_PFR1.Security field.
6
11
7
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
12
Restrict the handling of the feature flag to A/R-profile cores.
8
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
13
9
Message-id: 20190204132126.3255-5-richard.henderson@linaro.org
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
15
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
16
Message-id: 20201119215617.29887-4-peter.maydell@linaro.org
11
---
17
---
12
target/arm/cpu.c | 6 ++++++
18
target/arm/cpu.c | 2 +-
13
1 file changed, 6 insertions(+)
19
1 file changed, 1 insertion(+), 1 deletion(-)
14
20
15
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
21
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
16
index XXXXXXX..XXXXXXX 100644
22
index XXXXXXX..XXXXXXX 100644
17
--- a/target/arm/cpu.c
23
--- a/target/arm/cpu.c
18
+++ b/target/arm/cpu.c
24
+++ b/target/arm/cpu.c
19
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_reset(CPUState *s)
25
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_realizefn(DeviceState *dev, Error **errp)
20
env->vfp.zcr_el[1] = cpu->sve_max_vq - 1;
26
}
21
env->vfp.zcr_el[2] = env->vfp.zcr_el[1];
27
}
22
env->vfp.zcr_el[3] = env->vfp.zcr_el[1];
28
23
+ /*
29
- if (!cpu->has_el3) {
24
+ * Enable TBI0 and TBI1. While the real kernel only enables TBI0,
30
+ if (!arm_feature(env, ARM_FEATURE_M) && !cpu->has_el3) {
25
+ * turning on both here will produce smaller code and otherwise
31
/* If the has_el3 CPU property is disabled then we need to disable the
26
+ * make no difference to the user-level emulation.
32
* feature.
27
+ */
33
*/
28
+ env->cp15.tcr_el[1].raw_tcr = (3ULL << 37);
29
#else
30
/* Reset into the highest available EL */
31
if (arm_feature(env, ARM_FEATURE_EL3)) {
32
--
34
--
33
2.20.1
35
2.20.1
34
36
35
37
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
Implement the v8.1M VSCCLRM insn, which zeros floating point
2
2
registers if there is an active floating point context.
3
Split out gen_top_byte_ignore in preparation of handling these
3
This requires support in write_neon_element32() for the MO_32
4
data accesses; the new tbflags field is not yet honored.
4
element size, so add it.
5
5
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
Because we want to use arm_gen_condlabel(), we need to move
7
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
7
the definition of that function up in translate.c so it is
8
Message-id: 20190204132126.3255-2-richard.henderson@linaro.org
8
before the #include of translate-vfp.c.inc.
9
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
12
Message-id: 20201119215617.29887-5-peter.maydell@linaro.org
10
---
13
---
11
target/arm/cpu.h | 1 +
14
target/arm/cpu.h | 9 ++++
12
target/arm/translate.h | 3 +-
15
target/arm/m-nocp.decode | 8 +++-
13
target/arm/helper.c | 1 +
16
target/arm/translate.c | 21 +++++----
14
target/arm/translate-a64.c | 72 +++++++++++++++++++-------------------
17
target/arm/translate-vfp.c.inc | 84 ++++++++++++++++++++++++++++++++++
15
4 files changed, 40 insertions(+), 37 deletions(-)
18
4 files changed, 111 insertions(+), 11 deletions(-)
16
19
17
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
20
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
18
index XXXXXXX..XXXXXXX 100644
21
index XXXXXXX..XXXXXXX 100644
19
--- a/target/arm/cpu.h
22
--- a/target/arm/cpu.h
20
+++ b/target/arm/cpu.h
23
+++ b/target/arm/cpu.h
21
@@ -XXX,XX +XXX,XX @@ FIELD(TBFLAG_A64, ZCR_LEN, 4, 4)
24
@@ -XXX,XX +XXX,XX @@ static inline bool isar_feature_aa32_mprofile(const ARMISARegisters *id)
22
FIELD(TBFLAG_A64, PAUTH_ACTIVE, 8, 1)
25
return FIELD_EX32(id->id_pfr1, ID_PFR1, MPROGMOD) != 0;
23
FIELD(TBFLAG_A64, BT, 9, 1)
26
}
24
FIELD(TBFLAG_A64, BTYPE, 10, 2)
27
25
+FIELD(TBFLAG_A64, TBID, 12, 2)
28
+static inline bool isar_feature_aa32_m_sec_state(const ARMISARegisters *id)
26
27
static inline bool bswap_code(bool sctlr_b)
28
{
29
diff --git a/target/arm/translate.h b/target/arm/translate.h
30
index XXXXXXX..XXXXXXX 100644
31
--- a/target/arm/translate.h
32
+++ b/target/arm/translate.h
33
@@ -XXX,XX +XXX,XX @@ typedef struct DisasContext {
34
int user;
35
#endif
36
ARMMMUIdx mmu_idx; /* MMU index to use for normal loads/stores */
37
- uint8_t tbii; /* TBI1|TBI0 for EL0/1 or TBI for EL2/3 */
38
+ uint8_t tbii; /* TBI1|TBI0 for insns */
39
+ uint8_t tbid; /* TBI1|TBI0 for data */
40
bool ns; /* Use non-secure CPREG bank on access */
41
int fp_excp_el; /* FP exception EL or 0 if enabled */
42
int sve_excp_el; /* SVE exception EL or 0 if enabled */
43
diff --git a/target/arm/helper.c b/target/arm/helper.c
44
index XXXXXXX..XXXXXXX 100644
45
--- a/target/arm/helper.c
46
+++ b/target/arm/helper.c
47
@@ -XXX,XX +XXX,XX @@ void cpu_get_tb_cpu_state(CPUARMState *env, target_ulong *pc,
48
}
49
50
flags = FIELD_DP32(flags, TBFLAG_A64, TBII, tbii);
51
+ flags = FIELD_DP32(flags, TBFLAG_A64, TBID, tbid);
52
}
53
#endif
54
55
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
56
index XXXXXXX..XXXXXXX 100644
57
--- a/target/arm/translate-a64.c
58
+++ b/target/arm/translate-a64.c
59
@@ -XXX,XX +XXX,XX @@ void gen_a64_set_pc_im(uint64_t val)
60
tcg_gen_movi_i64(cpu_pc, val);
61
}
62
63
-/* Load the PC from a generic TCG variable.
64
+/*
65
+ * Handle Top Byte Ignore (TBI) bits.
66
*
67
- * If address tagging is enabled via the TCR TBI bits, then loading
68
- * an address into the PC will clear out any tag in it:
69
+ * If address tagging is enabled via the TCR TBI bits:
70
* + for EL2 and EL3 there is only one TBI bit, and if it is set
71
* then the address is zero-extended, clearing bits [63:56]
72
* + for EL0 and EL1, TBI0 controls addresses with bit 55 == 0
73
@@ -XXX,XX +XXX,XX @@ void gen_a64_set_pc_im(uint64_t val)
74
* If the appropriate TBI bit is set for the address then
75
* the address is sign-extended from bit 55 into bits [63:56]
76
*
77
- * We can avoid doing this for relative-branches, because the
78
- * PC + offset can never overflow into the tag bits (assuming
79
- * that virtual addresses are less than 56 bits wide, as they
80
- * are currently), but we must handle it for branch-to-register.
81
+ * Here We have concatenated TBI{1,0} into tbi.
82
*/
83
-static void gen_a64_set_pc(DisasContext *s, TCGv_i64 src)
84
+static void gen_top_byte_ignore(DisasContext *s, TCGv_i64 dst,
85
+ TCGv_i64 src, int tbi)
86
{
87
- /* Note that TBII is TBI1:TBI0. */
88
- int tbi = s->tbii;
89
-
90
- if (s->current_el <= 1) {
91
- if (tbi != 0) {
92
- /* Sign-extend from bit 55. */
93
- tcg_gen_sextract_i64(cpu_pc, src, 0, 56);
94
-
95
- if (tbi != 3) {
96
- TCGv_i64 tcg_zero = tcg_const_i64(0);
97
-
98
- /*
99
- * The two TBI bits differ.
100
- * If tbi0, then !tbi1: only use the extension if positive.
101
- * if !tbi0, then tbi1: only use the extension if negative.
102
- */
103
- tcg_gen_movcond_i64(tbi == 1 ? TCG_COND_GE : TCG_COND_LT,
104
- cpu_pc, cpu_pc, tcg_zero, cpu_pc, src);
105
- tcg_temp_free_i64(tcg_zero);
106
- }
107
- return;
108
- }
109
+ if (tbi == 0) {
110
+ /* Load unmodified address */
111
+ tcg_gen_mov_i64(dst, src);
112
+ } else if (s->current_el >= 2) {
113
+ /* FIXME: ARMv8.1-VHE S2 translation regime. */
114
+ /* Force tag byte to all zero */
115
+ tcg_gen_extract_i64(dst, src, 0, 56);
116
} else {
117
- if (tbi != 0) {
118
- /* Force tag byte to all zero */
119
- tcg_gen_extract_i64(cpu_pc, src, 0, 56);
120
- return;
121
+ /* Sign-extend from bit 55. */
122
+ tcg_gen_sextract_i64(dst, src, 0, 56);
123
+
124
+ if (tbi != 3) {
125
+ TCGv_i64 tcg_zero = tcg_const_i64(0);
126
+
127
+ /*
128
+ * The two TBI bits differ.
129
+ * If tbi0, then !tbi1: only use the extension if positive.
130
+ * if !tbi0, then tbi1: only use the extension if negative.
131
+ */
132
+ tcg_gen_movcond_i64(tbi == 1 ? TCG_COND_GE : TCG_COND_LT,
133
+ dst, dst, tcg_zero, dst, src);
134
+ tcg_temp_free_i64(tcg_zero);
135
}
136
}
137
+}
138
139
- /* Load unmodified address */
140
- tcg_gen_mov_i64(cpu_pc, src);
141
+static void gen_a64_set_pc(DisasContext *s, TCGv_i64 src)
142
+{
29
+{
143
+ /*
30
+ /*
144
+ * If address tagging is enabled for instructions via the TCR TBI bits,
31
+ * Return true if M-profile state handling insns
145
+ * then loading an address into the PC will clear out any tag.
32
+ * (VSCCLRM, CLRM, FPCTX access insns) are implemented
146
+ */
33
+ */
147
+ gen_top_byte_ignore(s, cpu_pc, src, s->tbii);
34
+ return FIELD_EX32(id->id_pfr1, ID_PFR1, SECURITY) >= 3;
148
}
35
+}
149
36
+
150
typedef struct DisasCompare64 {
37
static inline bool isar_feature_aa32_fp16_arith(const ARMISARegisters *id)
151
@@ -XXX,XX +XXX,XX @@ static void aarch64_tr_init_disas_context(DisasContextBase *dcbase,
38
{
152
core_mmu_idx = FIELD_EX32(tb_flags, TBFLAG_ANY, MMUIDX);
39
/* Sadly this is encoded differently for A-profile and M-profile */
153
dc->mmu_idx = core_to_arm_mmu_idx(env, core_mmu_idx);
40
diff --git a/target/arm/m-nocp.decode b/target/arm/m-nocp.decode
154
dc->tbii = FIELD_EX32(tb_flags, TBFLAG_A64, TBII);
41
index XXXXXXX..XXXXXXX 100644
155
+ dc->tbid = FIELD_EX32(tb_flags, TBFLAG_A64, TBID);
42
--- a/target/arm/m-nocp.decode
156
dc->current_el = arm_mmu_idx_to_el(dc->mmu_idx);
43
+++ b/target/arm/m-nocp.decode
157
#if !defined(CONFIG_USER_ONLY)
44
@@ -XXX,XX +XXX,XX @@
158
dc->user = (dc->current_el == 0);
45
# If the coprocessor is not present or disabled then we will generate
46
# the NOCP exception; otherwise we let the insn through to the main decode.
47
48
+%vd_dp 22:1 12:4
49
+%vd_sp 12:4 22:1
50
+
51
&nocp cp
52
53
{
54
# Special cases which do not take an early NOCP: VLLDM and VLSTM
55
VLLDM_VLSTM 1110 1100 001 l:1 rn:4 0000 1010 0000 0000
56
- # TODO: VSCCLRM (new in v8.1M) is similar:
57
- #VSCCLRM 1110 1100 1-01 1111 ---- 1011 ---- ---0
58
+ # VSCCLRM (new in v8.1M) is similar:
59
+ VSCCLRM 1110 1100 1.01 1111 .... 1011 imm:7 0 vd=%vd_dp size=3
60
+ VSCCLRM 1110 1100 1.01 1111 .... 1010 imm:8 vd=%vd_sp size=2
61
62
NOCP 111- 1110 ---- ---- ---- cp:4 ---- ---- &nocp
63
NOCP 111- 110- ---- ---- ---- cp:4 ---- ---- &nocp
64
diff --git a/target/arm/translate.c b/target/arm/translate.c
65
index XXXXXXX..XXXXXXX 100644
66
--- a/target/arm/translate.c
67
+++ b/target/arm/translate.c
68
@@ -XXX,XX +XXX,XX @@ void arm_translate_init(void)
69
a64_translate_init();
70
}
71
72
+/* Generate a label used for skipping this instruction */
73
+static void arm_gen_condlabel(DisasContext *s)
74
+{
75
+ if (!s->condjmp) {
76
+ s->condlabel = gen_new_label();
77
+ s->condjmp = 1;
78
+ }
79
+}
80
+
81
/* Flags for the disas_set_da_iss info argument:
82
* lower bits hold the Rt register number, higher bits are flags.
83
*/
84
@@ -XXX,XX +XXX,XX @@ static void write_neon_element64(TCGv_i64 src, int reg, int ele, MemOp memop)
85
long off = neon_element_offset(reg, ele, memop);
86
87
switch (memop) {
88
+ case MO_32:
89
+ tcg_gen_st32_i64(src, cpu_env, off);
90
+ break;
91
case MO_64:
92
tcg_gen_st_i64(src, cpu_env, off);
93
break;
94
@@ -XXX,XX +XXX,XX @@ static void gen_srs(DisasContext *s,
95
s->base.is_jmp = DISAS_UPDATE_EXIT;
96
}
97
98
-/* Generate a label used for skipping this instruction */
99
-static void arm_gen_condlabel(DisasContext *s)
100
-{
101
- if (!s->condjmp) {
102
- s->condlabel = gen_new_label();
103
- s->condjmp = 1;
104
- }
105
-}
106
-
107
/* Skip this instruction if the ARM condition is false */
108
static void arm_skip_unless(DisasContext *s, uint32_t cond)
109
{
110
diff --git a/target/arm/translate-vfp.c.inc b/target/arm/translate-vfp.c.inc
111
index XXXXXXX..XXXXXXX 100644
112
--- a/target/arm/translate-vfp.c.inc
113
+++ b/target/arm/translate-vfp.c.inc
114
@@ -XXX,XX +XXX,XX @@ static bool trans_VLLDM_VLSTM(DisasContext *s, arg_VLLDM_VLSTM *a)
115
return true;
116
}
117
118
+static bool trans_VSCCLRM(DisasContext *s, arg_VSCCLRM *a)
119
+{
120
+ int btmreg, topreg;
121
+ TCGv_i64 zero;
122
+ TCGv_i32 aspen, sfpa;
123
+
124
+ if (!dc_isar_feature(aa32_m_sec_state, s)) {
125
+ /* Before v8.1M, fall through in decode to NOCP check */
126
+ return false;
127
+ }
128
+
129
+ /* Explicitly UNDEF because this takes precedence over NOCP */
130
+ if (!arm_dc_feature(s, ARM_FEATURE_M_MAIN) || !s->v8m_secure) {
131
+ unallocated_encoding(s);
132
+ return true;
133
+ }
134
+
135
+ if (!dc_isar_feature(aa32_vfp_simd, s)) {
136
+ /* NOP if we have neither FP nor MVE */
137
+ return true;
138
+ }
139
+
140
+ /*
141
+ * If FPCCR.ASPEN != 0 && CONTROL_S.SFPA == 0 then there is no
142
+ * active floating point context so we must NOP (without doing
143
+ * any lazy state preservation or the NOCP check).
144
+ */
145
+ aspen = load_cpu_field(v7m.fpccr[M_REG_S]);
146
+ sfpa = load_cpu_field(v7m.control[M_REG_S]);
147
+ tcg_gen_andi_i32(aspen, aspen, R_V7M_FPCCR_ASPEN_MASK);
148
+ tcg_gen_xori_i32(aspen, aspen, R_V7M_FPCCR_ASPEN_MASK);
149
+ tcg_gen_andi_i32(sfpa, sfpa, R_V7M_CONTROL_SFPA_MASK);
150
+ tcg_gen_or_i32(sfpa, sfpa, aspen);
151
+ arm_gen_condlabel(s);
152
+ tcg_gen_brcondi_i32(TCG_COND_EQ, sfpa, 0, s->condlabel);
153
+
154
+ if (s->fp_excp_el != 0) {
155
+ gen_exception_insn(s, s->pc_curr, EXCP_NOCP,
156
+ syn_uncategorized(), s->fp_excp_el);
157
+ return true;
158
+ }
159
+
160
+ topreg = a->vd + a->imm - 1;
161
+ btmreg = a->vd;
162
+
163
+ /* Convert to Sreg numbers if the insn specified in Dregs */
164
+ if (a->size == 3) {
165
+ topreg = topreg * 2 + 1;
166
+ btmreg *= 2;
167
+ }
168
+
169
+ if (topreg > 63 || (topreg > 31 && !(topreg & 1))) {
170
+ /* UNPREDICTABLE: we choose to undef */
171
+ unallocated_encoding(s);
172
+ return true;
173
+ }
174
+
175
+ /* Silently ignore requests to clear D16-D31 if they don't exist */
176
+ if (topreg > 31 && !dc_isar_feature(aa32_simd_r32, s)) {
177
+ topreg = 31;
178
+ }
179
+
180
+ if (!vfp_access_check(s)) {
181
+ return true;
182
+ }
183
+
184
+ /* Zero the Sregs from btmreg to topreg inclusive. */
185
+ zero = tcg_const_i64(0);
186
+ if (btmreg & 1) {
187
+ write_neon_element64(zero, btmreg >> 1, 1, MO_32);
188
+ btmreg++;
189
+ }
190
+ for (; btmreg + 1 <= topreg; btmreg += 2) {
191
+ write_neon_element64(zero, btmreg >> 1, 0, MO_64);
192
+ }
193
+ if (btmreg == topreg) {
194
+ write_neon_element64(zero, btmreg >> 1, 0, MO_32);
195
+ btmreg++;
196
+ }
197
+ assert(btmreg == topreg + 1);
198
+ /* TODO: when MVE is implemented, zero VPR here */
199
+ return true;
200
+}
201
+
202
static bool trans_NOCP(DisasContext *s, arg_nocp *a)
203
{
204
/*
159
--
205
--
160
2.20.1
206
2.20.1
161
207
162
208
diff view generated by jsdifflib
New patch
1
In v8.1M the new CLRM instruction allows zeroing an arbitrary set of
2
the general-purpose registers and APSR. Implement this.
1
3
4
The encoding is a subset of the LDMIA T2 encoding, using what would
5
be Rn=0b1111 (which UNDEFs for LDMIA).
6
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
9
Message-id: 20201119215617.29887-6-peter.maydell@linaro.org
10
---
11
target/arm/t32.decode | 6 +++++-
12
target/arm/translate.c | 38 ++++++++++++++++++++++++++++++++++++++
13
2 files changed, 43 insertions(+), 1 deletion(-)
14
15
diff --git a/target/arm/t32.decode b/target/arm/t32.decode
16
index XXXXXXX..XXXXXXX 100644
17
--- a/target/arm/t32.decode
18
+++ b/target/arm/t32.decode
19
@@ -XXX,XX +XXX,XX @@ UXTAB 1111 1010 0101 .... 1111 .... 10.. .... @rrr_rot
20
21
STM_t32 1110 1000 10.0 .... ................ @ldstm i=1 b=0
22
STM_t32 1110 1001 00.0 .... ................ @ldstm i=0 b=1
23
-LDM_t32 1110 1000 10.1 .... ................ @ldstm i=1 b=0
24
+{
25
+ # Rn=15 UNDEFs for LDM; M-profile CLRM uses that encoding
26
+ CLRM 1110 1000 1001 1111 list:16
27
+ LDM_t32 1110 1000 10.1 .... ................ @ldstm i=1 b=0
28
+}
29
LDM_t32 1110 1001 00.1 .... ................ @ldstm i=0 b=1
30
31
&rfe !extern rn w pu
32
diff --git a/target/arm/translate.c b/target/arm/translate.c
33
index XXXXXXX..XXXXXXX 100644
34
--- a/target/arm/translate.c
35
+++ b/target/arm/translate.c
36
@@ -XXX,XX +XXX,XX @@ static bool trans_LDM_t16(DisasContext *s, arg_ldst_block *a)
37
return do_ldm(s, a, 1);
38
}
39
40
+static bool trans_CLRM(DisasContext *s, arg_CLRM *a)
41
+{
42
+ int i;
43
+ TCGv_i32 zero;
44
+
45
+ if (!dc_isar_feature(aa32_m_sec_state, s)) {
46
+ return false;
47
+ }
48
+
49
+ if (extract32(a->list, 13, 1)) {
50
+ return false;
51
+ }
52
+
53
+ if (!a->list) {
54
+ /* UNPREDICTABLE; we choose to UNDEF */
55
+ return false;
56
+ }
57
+
58
+ zero = tcg_const_i32(0);
59
+ for (i = 0; i < 15; i++) {
60
+ if (extract32(a->list, i, 1)) {
61
+ /* Clear R[i] */
62
+ tcg_gen_mov_i32(cpu_R[i], zero);
63
+ }
64
+ }
65
+ if (extract32(a->list, 15, 1)) {
66
+ /*
67
+ * Clear APSR (by calling the MSR helper with the same argument
68
+ * as for "MSR APSR_nzcvqg, Rn": mask = 0b1100, SYSM=0)
69
+ */
70
+ TCGv_i32 maskreg = tcg_const_i32(0xc << 8);
71
+ gen_helper_v7m_msr(cpu_env, maskreg, zero);
72
+ tcg_temp_free_i32(maskreg);
73
+ }
74
+ tcg_temp_free_i32(zero);
75
+ return true;
76
+}
77
+
78
/*
79
* Branch, branch with link
80
*/
81
--
82
2.20.1
83
84
diff view generated by jsdifflib
New patch
1
For M-profile before v8.1M, the only valid register for VMSR/VMRS is
2
the FPSCR. We have a comment that states this, but the actual logic
3
to forbid accesses for any other register value is missing, so we
4
would end up with A-profile style behaviour. Add the missing check.
1
5
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20201119215617.29887-7-peter.maydell@linaro.org
9
---
10
target/arm/translate-vfp.c.inc | 5 ++++-
11
1 file changed, 4 insertions(+), 1 deletion(-)
12
13
diff --git a/target/arm/translate-vfp.c.inc b/target/arm/translate-vfp.c.inc
14
index XXXXXXX..XXXXXXX 100644
15
--- a/target/arm/translate-vfp.c.inc
16
+++ b/target/arm/translate-vfp.c.inc
17
@@ -XXX,XX +XXX,XX @@ static bool trans_VMSR_VMRS(DisasContext *s, arg_VMSR_VMRS *a)
18
* Accesses to R15 are UNPREDICTABLE; we choose to undef.
19
* (FPSCR -> r15 is a special case which writes to the PSR flags.)
20
*/
21
- if (a->rt == 15 && (!a->l || a->reg != ARM_VFP_FPSCR)) {
22
+ if (a->reg != ARM_VFP_FPSCR) {
23
+ return false;
24
+ }
25
+ if (a->rt == 15 && !a->l) {
26
return false;
27
}
28
}
29
--
30
2.20.1
31
32
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
Currently M-profile borrows the A-profile code for VMSR and VMRS
2
2
(access to the FP system registers), because all it needs to support
3
Place this in its own field within ENV, as that will
3
is the FPSCR. In v8.1M things become significantly more complicated
4
make it easier to reset from within TCG generated code.
4
in two ways:
5
5
6
With the change to pstate_read/write, exception entry
6
* there are several new FP system registers; some have side effects
7
and return are automatically handled.
7
on read, and one (FPCXT_NS) needs to avoid the usual
8
8
vfp_access_check() and the "only if FPU implemented" check
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
9
10
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
10
* all sysregs are now accessible both by VMRS/VMSR (which
11
Message-id: 20190128223118.5255-3-richard.henderson@linaro.org
11
reads/writes a general purpose register) and also by VLDR/VSTR
12
(which reads/writes them directly to memory)
13
14
Refactor the structure of how we handle VMSR/VMRS to cope with this:
15
16
* keep the M-profile code entirely separate from the A-profile code
17
18
* abstract out the "read or write the general purpose register" part
19
of the code into a loadfn or storefn function pointer, so we can
20
reuse it for VLDR/VSTR.
21
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
22
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
23
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
24
Message-id: 20201119215617.29887-8-peter.maydell@linaro.org
13
---
25
---
14
target/arm/cpu.h | 8 ++++++--
26
target/arm/cpu.h | 3 +
15
target/arm/translate-a64.c | 3 +++
27
target/arm/translate-vfp.c.inc | 182 ++++++++++++++++++++++++++++++---
16
2 files changed, 9 insertions(+), 2 deletions(-)
28
2 files changed, 171 insertions(+), 14 deletions(-)
17
29
18
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
30
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
19
index XXXXXXX..XXXXXXX 100644
31
index XXXXXXX..XXXXXXX 100644
20
--- a/target/arm/cpu.h
32
--- a/target/arm/cpu.h
21
+++ b/target/arm/cpu.h
33
+++ b/target/arm/cpu.h
22
@@ -XXX,XX +XXX,XX @@ typedef struct CPUARMState {
34
@@ -XXX,XX +XXX,XX @@ enum arm_cpu_mode {
23
* semantics as for AArch32, as described in the comments on each field)
35
#define ARM_VFP_FPINST 9
24
* nRW (also known as M[4]) is kept, inverted, in env->aarch64
36
#define ARM_VFP_FPINST2 10
25
* DAIF (exception masks) are kept in env->daif
37
26
+ * BTYPE is kept in env->btype
38
+/* QEMU-internal value meaning "FPSCR, but we care only about NZCV" */
27
* all other bits are stored in their correct places in env->pstate
39
+#define QEMU_VFP_FPSCR_NZCV 0xffff
28
*/
40
+
29
uint32_t pstate;
41
/* iwMMXt coprocessor control registers. */
30
@@ -XXX,XX +XXX,XX @@ typedef struct CPUARMState {
42
#define ARM_IWMMXT_wCID 0
31
uint32_t GE; /* cpsr[19:16] */
43
#define ARM_IWMMXT_wCon 1
32
uint32_t thumb; /* cpsr[5]. 0 = arm mode, 1 = thumb mode. */
44
diff --git a/target/arm/translate-vfp.c.inc b/target/arm/translate-vfp.c.inc
33
uint32_t condexec_bits; /* IT bits. cpsr[15:10,26:25]. */
45
index XXXXXXX..XXXXXXX 100644
34
+ uint32_t btype; /* BTI branch type. spsr[11:10]. */
46
--- a/target/arm/translate-vfp.c.inc
35
uint64_t daif; /* exception masks, in the bits they are in PSTATE */
47
+++ b/target/arm/translate-vfp.c.inc
36
48
@@ -XXX,XX +XXX,XX @@ static bool trans_VDUP(DisasContext *s, arg_VDUP *a)
37
uint64_t elr_el[4]; /* AArch64 exception link regs */
49
return true;
38
@@ -XXX,XX +XXX,XX @@ void pmu_init(ARMCPU *cpu);
39
#define PSTATE_I (1U << 7)
40
#define PSTATE_A (1U << 8)
41
#define PSTATE_D (1U << 9)
42
+#define PSTATE_BTYPE (3U << 10)
43
#define PSTATE_IL (1U << 20)
44
#define PSTATE_SS (1U << 21)
45
#define PSTATE_V (1U << 28)
46
@@ -XXX,XX +XXX,XX @@ void pmu_init(ARMCPU *cpu);
47
#define PSTATE_N (1U << 31)
48
#define PSTATE_NZCV (PSTATE_N | PSTATE_Z | PSTATE_C | PSTATE_V)
49
#define PSTATE_DAIF (PSTATE_D | PSTATE_A | PSTATE_I | PSTATE_F)
50
-#define CACHED_PSTATE_BITS (PSTATE_NZCV | PSTATE_DAIF)
51
+#define CACHED_PSTATE_BITS (PSTATE_NZCV | PSTATE_DAIF | PSTATE_BTYPE)
52
/* Mode values for AArch64 */
53
#define PSTATE_MODE_EL3h 13
54
#define PSTATE_MODE_EL3t 12
55
@@ -XXX,XX +XXX,XX @@ static inline uint32_t pstate_read(CPUARMState *env)
56
ZF = (env->ZF == 0);
57
return (env->NF & 0x80000000) | (ZF << 30)
58
| (env->CF << 29) | ((env->VF & 0x80000000) >> 3)
59
- | env->pstate | env->daif;
60
+ | env->pstate | env->daif | (env->btype << 10);
61
}
50
}
62
51
63
static inline void pstate_write(CPUARMState *env, uint32_t val)
52
+/*
64
@@ -XXX,XX +XXX,XX @@ static inline void pstate_write(CPUARMState *env, uint32_t val)
53
+ * M-profile provides two different sets of instructions that can
65
env->CF = (val >> 29) & 1;
54
+ * access floating point system registers: VMSR/VMRS (which move
66
env->VF = (val << 3) & 0x80000000;
55
+ * to/from a general purpose register) and VLDR/VSTR sysreg (which
67
env->daif = val & PSTATE_DAIF;
56
+ * move directly to/from memory). In some cases there are also side
68
+ env->btype = (val >> 10) & 3;
57
+ * effects which must happen after any write to memory (which could
69
env->pstate = val & ~CACHED_PSTATE_BITS;
58
+ * cause an exception). So we implement the common logic for the
70
}
59
+ * sysreg access in gen_M_fp_sysreg_write() and gen_M_fp_sysreg_read(),
71
60
+ * which take pointers to callback functions which will perform the
72
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
61
+ * actual "read/write general purpose register" and "read/write
73
index XXXXXXX..XXXXXXX 100644
62
+ * memory" operations.
74
--- a/target/arm/translate-a64.c
63
+ */
75
+++ b/target/arm/translate-a64.c
64
+
76
@@ -XXX,XX +XXX,XX @@ void aarch64_cpu_dump_state(CPUState *cs, FILE *f,
65
+/*
77
el,
66
+ * Emit code to store the sysreg to its final destination; frees the
78
psr & PSTATE_SP ? 'h' : 't');
67
+ * TCG temp 'value' it is passed.
79
68
+ */
80
+ if (cpu_isar_feature(aa64_bti, cpu)) {
69
+typedef void fp_sysreg_storefn(DisasContext *s, void *opaque, TCGv_i32 value);
81
+ cpu_fprintf(f, " BTYPE=%d", (psr & PSTATE_BTYPE) >> 10);
70
+/*
82
+ }
71
+ * Emit code to load the value to be copied to the sysreg; returns
83
if (!(flags & CPU_DUMP_FPU)) {
72
+ * a new TCG temporary
84
cpu_fprintf(f, "\n");
73
+ */
85
return;
74
+typedef TCGv_i32 fp_sysreg_loadfn(DisasContext *s, void *opaque);
75
+
76
+/* Common decode/access checks for fp sysreg read/write */
77
+typedef enum FPSysRegCheckResult {
78
+ FPSysRegCheckFailed, /* caller should return false */
79
+ FPSysRegCheckDone, /* caller should return true */
80
+ FPSysRegCheckContinue, /* caller should continue generating code */
81
+} FPSysRegCheckResult;
82
+
83
+static FPSysRegCheckResult fp_sysreg_checks(DisasContext *s, int regno)
84
+{
85
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
86
+ return FPSysRegCheckFailed;
87
+ }
88
+
89
+ switch (regno) {
90
+ case ARM_VFP_FPSCR:
91
+ case QEMU_VFP_FPSCR_NZCV:
92
+ break;
93
+ default:
94
+ return FPSysRegCheckFailed;
95
+ }
96
+
97
+ if (!vfp_access_check(s)) {
98
+ return FPSysRegCheckDone;
99
+ }
100
+
101
+ return FPSysRegCheckContinue;
102
+}
103
+
104
+static bool gen_M_fp_sysreg_write(DisasContext *s, int regno,
105
+
106
+ fp_sysreg_loadfn *loadfn,
107
+ void *opaque)
108
+{
109
+ /* Do a write to an M-profile floating point system register */
110
+ TCGv_i32 tmp;
111
+
112
+ switch (fp_sysreg_checks(s, regno)) {
113
+ case FPSysRegCheckFailed:
114
+ return false;
115
+ case FPSysRegCheckDone:
116
+ return true;
117
+ case FPSysRegCheckContinue:
118
+ break;
119
+ }
120
+
121
+ switch (regno) {
122
+ case ARM_VFP_FPSCR:
123
+ tmp = loadfn(s, opaque);
124
+ gen_helper_vfp_set_fpscr(cpu_env, tmp);
125
+ tcg_temp_free_i32(tmp);
126
+ gen_lookup_tb(s);
127
+ break;
128
+ default:
129
+ g_assert_not_reached();
130
+ }
131
+ return true;
132
+}
133
+
134
+static bool gen_M_fp_sysreg_read(DisasContext *s, int regno,
135
+ fp_sysreg_storefn *storefn,
136
+ void *opaque)
137
+{
138
+ /* Do a read from an M-profile floating point system register */
139
+ TCGv_i32 tmp;
140
+
141
+ switch (fp_sysreg_checks(s, regno)) {
142
+ case FPSysRegCheckFailed:
143
+ return false;
144
+ case FPSysRegCheckDone:
145
+ return true;
146
+ case FPSysRegCheckContinue:
147
+ break;
148
+ }
149
+
150
+ switch (regno) {
151
+ case ARM_VFP_FPSCR:
152
+ tmp = tcg_temp_new_i32();
153
+ gen_helper_vfp_get_fpscr(tmp, cpu_env);
154
+ storefn(s, opaque, tmp);
155
+ break;
156
+ case QEMU_VFP_FPSCR_NZCV:
157
+ /*
158
+ * Read just NZCV; this is a special case to avoid the
159
+ * helper call for the "VMRS to CPSR.NZCV" insn.
160
+ */
161
+ tmp = load_cpu_field(vfp.xregs[ARM_VFP_FPSCR]);
162
+ tcg_gen_andi_i32(tmp, tmp, 0xf0000000);
163
+ storefn(s, opaque, tmp);
164
+ break;
165
+ default:
166
+ g_assert_not_reached();
167
+ }
168
+ return true;
169
+}
170
+
171
+static void fp_sysreg_to_gpr(DisasContext *s, void *opaque, TCGv_i32 value)
172
+{
173
+ arg_VMSR_VMRS *a = opaque;
174
+
175
+ if (a->rt == 15) {
176
+ /* Set the 4 flag bits in the CPSR */
177
+ gen_set_nzcv(value);
178
+ tcg_temp_free_i32(value);
179
+ } else {
180
+ store_reg(s, a->rt, value);
181
+ }
182
+}
183
+
184
+static TCGv_i32 gpr_to_fp_sysreg(DisasContext *s, void *opaque)
185
+{
186
+ arg_VMSR_VMRS *a = opaque;
187
+
188
+ return load_reg(s, a->rt);
189
+}
190
+
191
+static bool gen_M_VMSR_VMRS(DisasContext *s, arg_VMSR_VMRS *a)
192
+{
193
+ /*
194
+ * Accesses to R15 are UNPREDICTABLE; we choose to undef.
195
+ * FPSCR -> r15 is a special case which writes to the PSR flags;
196
+ * set a->reg to a special value to tell gen_M_fp_sysreg_read()
197
+ * we only care about the top 4 bits of FPSCR there.
198
+ */
199
+ if (a->rt == 15) {
200
+ if (a->l && a->reg == ARM_VFP_FPSCR) {
201
+ a->reg = QEMU_VFP_FPSCR_NZCV;
202
+ } else {
203
+ return false;
204
+ }
205
+ }
206
+
207
+ if (a->l) {
208
+ /* VMRS, move FP system register to gp register */
209
+ return gen_M_fp_sysreg_read(s, a->reg, fp_sysreg_to_gpr, a);
210
+ } else {
211
+ /* VMSR, move gp register to FP system register */
212
+ return gen_M_fp_sysreg_write(s, a->reg, gpr_to_fp_sysreg, a);
213
+ }
214
+}
215
+
216
static bool trans_VMSR_VMRS(DisasContext *s, arg_VMSR_VMRS *a)
217
{
218
TCGv_i32 tmp;
219
bool ignore_vfp_enabled = false;
220
221
- if (!dc_isar_feature(aa32_fpsp_v2, s)) {
222
- return false;
223
+ if (arm_dc_feature(s, ARM_FEATURE_M)) {
224
+ return gen_M_VMSR_VMRS(s, a);
225
}
226
227
- if (arm_dc_feature(s, ARM_FEATURE_M)) {
228
- /*
229
- * The only M-profile VFP vmrs/vmsr sysreg is FPSCR.
230
- * Accesses to R15 are UNPREDICTABLE; we choose to undef.
231
- * (FPSCR -> r15 is a special case which writes to the PSR flags.)
232
- */
233
- if (a->reg != ARM_VFP_FPSCR) {
234
- return false;
235
- }
236
- if (a->rt == 15 && !a->l) {
237
- return false;
238
- }
239
+ if (!dc_isar_feature(aa32_fpsp_v2, s)) {
240
+ return false;
241
}
242
243
switch (a->reg) {
86
--
244
--
87
2.20.1
245
2.20.1
88
246
89
247
diff view generated by jsdifflib
1
The code path for booting firmware doesn't set env->boot_info. At
1
The constant-expander functions like negate, plus_2, etc, are
2
first sight this looks odd, so add a comment saying why we don't.
2
generally useful; move them up in translate.c so we can use them in
3
the VFP/Neon decoders as well as in the A32/T32/T16 decoders.
3
4
4
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
5
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
6
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
6
Reviewed-by: Igor Mammedov <imammedo@redhat.com>
7
Message-id: 20201119215617.29887-9-peter.maydell@linaro.org
7
Message-id: 20190131112240.8395-5-peter.maydell@linaro.org
8
---
8
---
9
hw/arm/boot.c | 3 ++-
9
target/arm/translate.c | 46 +++++++++++++++++++++++-------------------
10
1 file changed, 2 insertions(+), 1 deletion(-)
10
1 file changed, 25 insertions(+), 21 deletions(-)
11
11
12
diff --git a/hw/arm/boot.c b/hw/arm/boot.c
12
diff --git a/target/arm/translate.c b/target/arm/translate.c
13
index XXXXXXX..XXXXXXX 100644
13
index XXXXXXX..XXXXXXX 100644
14
--- a/hw/arm/boot.c
14
--- a/target/arm/translate.c
15
+++ b/hw/arm/boot.c
15
+++ b/target/arm/translate.c
16
@@ -XXX,XX +XXX,XX @@ static void arm_setup_firmware_boot(ARMCPU *cpu, struct arm_boot_info *info)
16
@@ -XXX,XX +XXX,XX @@ static void arm_gen_condlabel(DisasContext *s)
17
17
}
18
/*
19
* We will start from address 0 (typically a boot ROM image) in the
20
- * same way as hardware.
21
+ * same way as hardware. Leave env->boot_info NULL, so that
22
+ * do_cpu_reset() knows it does not need to alter the PC on reset.
23
*/
24
}
18
}
25
19
20
+/*
21
+ * Constant expanders for the decoders.
22
+ */
23
+
24
+static int negate(DisasContext *s, int x)
25
+{
26
+ return -x;
27
+}
28
+
29
+static int plus_2(DisasContext *s, int x)
30
+{
31
+ return x + 2;
32
+}
33
+
34
+static int times_2(DisasContext *s, int x)
35
+{
36
+ return x * 2;
37
+}
38
+
39
+static int times_4(DisasContext *s, int x)
40
+{
41
+ return x * 4;
42
+}
43
+
44
/* Flags for the disas_set_da_iss info argument:
45
* lower bits hold the Rt register number, higher bits are flags.
46
*/
47
@@ -XXX,XX +XXX,XX @@ static void arm_skip_unless(DisasContext *s, uint32_t cond)
48
49
50
/*
51
- * Constant expanders for the decoders.
52
+ * Constant expanders used by T16/T32 decode
53
*/
54
55
-static int negate(DisasContext *s, int x)
56
-{
57
- return -x;
58
-}
59
-
60
-static int plus_2(DisasContext *s, int x)
61
-{
62
- return x + 2;
63
-}
64
-
65
-static int times_2(DisasContext *s, int x)
66
-{
67
- return x * 2;
68
-}
69
-
70
-static int times_4(DisasContext *s, int x)
71
-{
72
- return x * 4;
73
-}
74
-
75
/* Return only the rotation part of T32ExpandImm. */
76
static int t32_expandimm_rot(DisasContext *s, int x)
77
{
26
--
78
--
27
2.20.1
79
2.20.1
28
80
29
81
diff view generated by jsdifflib
1
Factor out the "direct kernel boot" code path from arm_load_kernel()
1
Implement the new-in-v8.1M VLDR/VSTR variants which directly
2
into its own function; this function is getting long enough that
2
read or write FP system registers to memory.
3
the code flow is a bit confusing.
4
5
This commit only moves code around; no semantic changes.
6
7
We leave the "load the dtb" code in arm_load_kernel() -- this
8
is currently only used by the "direct kernel boot" path, but
9
this is a bug which we will fix shortly.
10
3
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
4
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
5
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
13
Reviewed-by: Igor Mammedov <imammedo@redhat.com>
6
Message-id: 20201119215617.29887-10-peter.maydell@linaro.org
14
Message-id: 20190131112240.8395-3-peter.maydell@linaro.org
15
---
7
---
16
hw/arm/boot.c | 150 +++++++++++++++++++++++++++-----------------------
8
target/arm/vfp.decode | 14 ++++++
17
1 file changed, 80 insertions(+), 70 deletions(-)
9
target/arm/translate-vfp.c.inc | 91 ++++++++++++++++++++++++++++++++++
10
2 files changed, 105 insertions(+)
18
11
19
diff --git a/hw/arm/boot.c b/hw/arm/boot.c
12
diff --git a/target/arm/vfp.decode b/target/arm/vfp.decode
20
index XXXXXXX..XXXXXXX 100644
13
index XXXXXXX..XXXXXXX 100644
21
--- a/hw/arm/boot.c
14
--- a/target/arm/vfp.decode
22
+++ b/hw/arm/boot.c
15
+++ b/target/arm/vfp.decode
23
@@ -XXX,XX +XXX,XX @@ static uint64_t load_aarch64_image(const char *filename, hwaddr mem_base,
16
@@ -XXX,XX +XXX,XX @@ VLDR_VSTR_hp ---- 1101 u:1 .0 l:1 rn:4 .... 1001 imm:8 vd=%vd_sp
24
return size;
17
VLDR_VSTR_sp ---- 1101 u:1 .0 l:1 rn:4 .... 1010 imm:8 vd=%vd_sp
18
VLDR_VSTR_dp ---- 1101 u:1 .0 l:1 rn:4 .... 1011 imm:8 vd=%vd_dp
19
20
+# M-profile VLDR/VSTR to sysreg
21
+%vldr_sysreg 22:1 13:3
22
+%imm7_0x4 0:7 !function=times_4
23
+
24
+&vldr_sysreg rn reg imm a w p
25
+@vldr_sysreg .... ... . a:1 . . . rn:4 ... . ... .. ....... \
26
+ reg=%vldr_sysreg imm=%imm7_0x4 &vldr_sysreg
27
+
28
+# P=0 W=0 is SEE "Related encodings", so split into two patterns
29
+VLDR_sysreg ---- 110 1 . . w:1 1 .... ... 0 111 11 ....... @vldr_sysreg p=1
30
+VLDR_sysreg ---- 110 0 . . 1 1 .... ... 0 111 11 ....... @vldr_sysreg p=0 w=1
31
+VSTR_sysreg ---- 110 1 . . w:1 0 .... ... 0 111 11 ....... @vldr_sysreg p=1
32
+VSTR_sysreg ---- 110 0 . . 1 0 .... ... 0 111 11 ....... @vldr_sysreg p=0 w=1
33
+
34
# We split the load/store multiple up into two patterns to avoid
35
# overlap with other insns in the "Advanced SIMD load/store and 64-bit move"
36
# grouping:
37
diff --git a/target/arm/translate-vfp.c.inc b/target/arm/translate-vfp.c.inc
38
index XXXXXXX..XXXXXXX 100644
39
--- a/target/arm/translate-vfp.c.inc
40
+++ b/target/arm/translate-vfp.c.inc
41
@@ -XXX,XX +XXX,XX @@ static bool trans_VMSR_VMRS(DisasContext *s, arg_VMSR_VMRS *a)
42
return true;
25
}
43
}
26
44
27
-void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
45
+static void fp_sysreg_to_memory(DisasContext *s, void *opaque, TCGv_i32 value)
28
+static void arm_setup_direct_kernel_boot(ARMCPU *cpu,
46
+{
29
+ struct arm_boot_info *info)
47
+ arg_vldr_sysreg *a = opaque;
30
{
48
+ uint32_t offset = a->imm;
31
+ /* Set up for a direct boot of a kernel image file. */
49
+ TCGv_i32 addr;
32
CPUState *cs;
50
+
33
+ AddressSpace *as = arm_boot_address_space(cpu, info);
51
+ if (!a->a) {
34
int kernel_size;
52
+ offset = - offset;
35
int initrd_size;
53
+ }
36
int is_linux = 0;
54
+
37
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
55
+ addr = load_reg(s, a->rn);
38
int elf_machine;
56
+ if (a->p) {
39
hwaddr entry;
57
+ tcg_gen_addi_i32(addr, addr, offset);
40
static const ARMInsnFixup *primary_loader;
58
+ }
41
- AddressSpace *as = arm_boot_address_space(cpu, info);
59
+
42
-
60
+ if (s->v8m_stackcheck && a->rn == 13 && a->w) {
43
- /*
61
+ gen_helper_v8m_stackcheck(cpu_env, addr);
44
- * CPU objects (unlike devices) are not automatically reset on system
62
+ }
45
- * reset, so we must always register a handler to do so. If we're
63
+
46
- * actually loading a kernel, the handler is also responsible for
64
+ gen_aa32_st_i32(s, value, addr, get_mem_index(s),
47
- * arranging that we start it correctly.
65
+ MO_UL | MO_ALIGN | s->be_data);
48
- */
66
+ tcg_temp_free_i32(value);
49
- for (cs = first_cpu; cs; cs = CPU_NEXT(cs)) {
67
+
50
- qemu_register_reset(do_cpu_reset, ARM_CPU(cs));
68
+ if (a->w) {
51
- }
69
+ /* writeback */
52
-
70
+ if (!a->p) {
53
- /*
71
+ tcg_gen_addi_i32(addr, addr, offset);
54
- * The board code is not supposed to set secure_board_setup unless
72
+ }
55
- * running its code in secure mode is actually possible, and KVM
73
+ store_reg(s, a->rn, addr);
56
- * doesn't support secure.
74
+ } else {
57
- */
75
+ tcg_temp_free_i32(addr);
58
- assert(!(info->secure_board_setup && kvm_enabled()));
76
+ }
59
-
60
- info->dtb_filename = qemu_opt_get(qemu_get_machine_opts(), "dtb");
61
- info->dtb_limit = 0;
62
-
63
- /* Load the kernel. */
64
- if (!info->kernel_filename || info->firmware_loaded) {
65
-
66
- if (have_dtb(info)) {
67
- /*
68
- * If we have a device tree blob, but no kernel to supply it to (or
69
- * the kernel is supposed to be loaded by the bootloader), copy the
70
- * DTB to the base of RAM for the bootloader to pick up.
71
- */
72
- info->dtb_start = info->loader_start;
73
- }
74
-
75
- if (info->kernel_filename) {
76
- FWCfgState *fw_cfg;
77
- bool try_decompressing_kernel;
78
-
79
- fw_cfg = fw_cfg_find();
80
- try_decompressing_kernel = arm_feature(&cpu->env,
81
- ARM_FEATURE_AARCH64);
82
-
83
- /*
84
- * Expose the kernel, the command line, and the initrd in fw_cfg.
85
- * We don't process them here at all, it's all left to the
86
- * firmware.
87
- */
88
- load_image_to_fw_cfg(fw_cfg,
89
- FW_CFG_KERNEL_SIZE, FW_CFG_KERNEL_DATA,
90
- info->kernel_filename,
91
- try_decompressing_kernel);
92
- load_image_to_fw_cfg(fw_cfg,
93
- FW_CFG_INITRD_SIZE, FW_CFG_INITRD_DATA,
94
- info->initrd_filename, false);
95
-
96
- if (info->kernel_cmdline) {
97
- fw_cfg_add_i32(fw_cfg, FW_CFG_CMDLINE_SIZE,
98
- strlen(info->kernel_cmdline) + 1);
99
- fw_cfg_add_string(fw_cfg, FW_CFG_CMDLINE_DATA,
100
- info->kernel_cmdline);
101
- }
102
- }
103
-
104
- /*
105
- * We will start from address 0 (typically a boot ROM image) in the
106
- * same way as hardware.
107
- */
108
- return;
109
- }
110
111
if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64)) {
112
primary_loader = bootloader_aarch64;
113
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
114
for (cs = first_cpu; cs; cs = CPU_NEXT(cs)) {
115
ARM_CPU(cs)->env.boot_info = info;
116
}
117
+}
77
+}
118
+
78
+
119
+void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
79
+static TCGv_i32 memory_to_fp_sysreg(DisasContext *s, void *opaque)
120
+{
80
+{
121
+ CPUState *cs;
81
+ arg_vldr_sysreg *a = opaque;
122
+ AddressSpace *as = arm_boot_address_space(cpu, info);
82
+ uint32_t offset = a->imm;
83
+ TCGv_i32 addr;
84
+ TCGv_i32 value = tcg_temp_new_i32();
123
+
85
+
124
+ /*
86
+ if (!a->a) {
125
+ * CPU objects (unlike devices) are not automatically reset on system
87
+ offset = - offset;
126
+ * reset, so we must always register a handler to do so. If we're
127
+ * actually loading a kernel, the handler is also responsible for
128
+ * arranging that we start it correctly.
129
+ */
130
+ for (cs = first_cpu; cs; cs = CPU_NEXT(cs)) {
131
+ qemu_register_reset(do_cpu_reset, ARM_CPU(cs));
132
+ }
88
+ }
133
+
89
+
134
+ /*
90
+ addr = load_reg(s, a->rn);
135
+ * The board code is not supposed to set secure_board_setup unless
91
+ if (a->p) {
136
+ * running its code in secure mode is actually possible, and KVM
92
+ tcg_gen_addi_i32(addr, addr, offset);
137
+ * doesn't support secure.
93
+ }
138
+ */
139
+ assert(!(info->secure_board_setup && kvm_enabled()));
140
+
94
+
141
+ info->dtb_filename = qemu_opt_get(qemu_get_machine_opts(), "dtb");
95
+ if (s->v8m_stackcheck && a->rn == 13 && a->w) {
142
+ info->dtb_limit = 0;
96
+ gen_helper_v8m_stackcheck(cpu_env, addr);
97
+ }
143
+
98
+
144
+ /* Load the kernel. */
99
+ gen_aa32_ld_i32(s, value, addr, get_mem_index(s),
145
+ if (!info->kernel_filename || info->firmware_loaded) {
100
+ MO_UL | MO_ALIGN | s->be_data);
146
+
101
+
147
+ if (have_dtb(info)) {
102
+ if (a->w) {
148
+ /*
103
+ /* writeback */
149
+ * If we have a device tree blob, but no kernel to supply it to (or
104
+ if (!a->p) {
150
+ * the kernel is supposed to be loaded by the bootloader), copy the
105
+ tcg_gen_addi_i32(addr, addr, offset);
151
+ * DTB to the base of RAM for the bootloader to pick up.
152
+ */
153
+ info->dtb_start = info->loader_start;
154
+ }
106
+ }
107
+ store_reg(s, a->rn, addr);
108
+ } else {
109
+ tcg_temp_free_i32(addr);
110
+ }
111
+ return value;
112
+}
155
+
113
+
156
+ if (info->kernel_filename) {
114
+static bool trans_VLDR_sysreg(DisasContext *s, arg_vldr_sysreg *a)
157
+ FWCfgState *fw_cfg;
115
+{
158
+ bool try_decompressing_kernel;
116
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_1M)) {
117
+ return false;
118
+ }
119
+ if (a->rn == 15) {
120
+ return false;
121
+ }
122
+ return gen_M_fp_sysreg_write(s, a->reg, memory_to_fp_sysreg, a);
123
+}
159
+
124
+
160
+ fw_cfg = fw_cfg_find();
125
+static bool trans_VSTR_sysreg(DisasContext *s, arg_vldr_sysreg *a)
161
+ try_decompressing_kernel = arm_feature(&cpu->env,
126
+{
162
+ ARM_FEATURE_AARCH64);
127
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_1M)) {
128
+ return false;
129
+ }
130
+ if (a->rn == 15) {
131
+ return false;
132
+ }
133
+ return gen_M_fp_sysreg_read(s, a->reg, fp_sysreg_to_memory, a);
134
+}
163
+
135
+
164
+ /*
136
static bool trans_VMOV_half(DisasContext *s, arg_VMOV_single *a)
165
+ * Expose the kernel, the command line, and the initrd in fw_cfg.
137
{
166
+ * We don't process them here at all, it's all left to the
138
TCGv_i32 tmp;
167
+ * firmware.
168
+ */
169
+ load_image_to_fw_cfg(fw_cfg,
170
+ FW_CFG_KERNEL_SIZE, FW_CFG_KERNEL_DATA,
171
+ info->kernel_filename,
172
+ try_decompressing_kernel);
173
+ load_image_to_fw_cfg(fw_cfg,
174
+ FW_CFG_INITRD_SIZE, FW_CFG_INITRD_DATA,
175
+ info->initrd_filename, false);
176
+
177
+ if (info->kernel_cmdline) {
178
+ fw_cfg_add_i32(fw_cfg, FW_CFG_CMDLINE_SIZE,
179
+ strlen(info->kernel_cmdline) + 1);
180
+ fw_cfg_add_string(fw_cfg, FW_CFG_CMDLINE_DATA,
181
+ info->kernel_cmdline);
182
+ }
183
+ }
184
+
185
+ /*
186
+ * We will start from address 0 (typically a boot ROM image) in the
187
+ * same way as hardware.
188
+ */
189
+ return;
190
+ } else {
191
+ arm_setup_direct_kernel_boot(cpu, info);
192
+ }
193
194
if (!info->skip_dtb_autoload && have_dtb(info)) {
195
if (arm_load_dtb(info->dtb_start, info, info->dtb_limit, as) < 0) {
196
--
139
--
197
2.20.1
140
2.20.1
198
141
199
142
diff view generated by jsdifflib
1
The {IOE, DZE, OFE, UFE, IXE, IDE} bits in the FPSCR/FPCR are for
1
v8.1M defines a new FP system register FPSCR_nzcvqc; this behaves
2
enabling trapped IEEE floating point exceptions (where IEEE exception
2
like the existing FPSCR, except that it reads and writes only bits
3
conditions cause a CPU exception rather than updating the FPSR status
3
[31:27] of the FPSCR (the N, Z, C, V and QC flag bits). (Unlike the
4
bits). QEMU doesn't implement this (and nor does the hardware we're
4
FPSCR, the special case for Rt=15 of writing the CPSR.NZCV is not
5
modelling), but for implementations which don't implement trapped
5
permitted.)
6
exception handling these control bits are supposed to be RAZ/WI.
7
This allows guest code to test for whether the feature is present
8
by trying to write to the bit and checking whether it sticks.
9
6
10
QEMU is incorrectly making these bits read as written. Make them
7
Implement the register. Since we don't yet implement MVE, we handle
11
RAZ/WI as the architecture requires.
8
the QC bit as RES0, with todo comments for where we will need to add
9
support later.
12
10
13
In particular this was causing problems for the NetBSD automatic
14
test suite.
15
16
Reported-by: Martin Husemann <martin@netbsd.org>
17
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
18
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
12
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
19
Message-id: 20190131130700.28392-1-peter.maydell@linaro.org
13
Message-id: 20201119215617.29887-11-peter.maydell@linaro.org
20
---
14
---
21
target/arm/cpu.h | 6 ++++++
15
target/arm/cpu.h | 13 +++++++++++++
22
target/arm/helper.c | 6 ++++++
16
target/arm/translate-vfp.c.inc | 27 +++++++++++++++++++++++++++
23
2 files changed, 12 insertions(+)
17
2 files changed, 40 insertions(+)
24
18
25
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
19
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
26
index XXXXXXX..XXXXXXX 100644
20
index XXXXXXX..XXXXXXX 100644
27
--- a/target/arm/cpu.h
21
--- a/target/arm/cpu.h
28
+++ b/target/arm/cpu.h
22
+++ b/target/arm/cpu.h
29
@@ -XXX,XX +XXX,XX @@ void vfp_set_fpscr(CPUARMState *env, uint32_t val);
23
@@ -XXX,XX +XXX,XX @@ void vfp_set_fpscr(CPUARMState *env, uint32_t val);
30
#define FPSR_MASK 0xf800009f
31
#define FPCR_MASK 0x07ff9f00
32
33
+#define FPCR_IOE (1 << 8) /* Invalid Operation exception trap enable */
34
+#define FPCR_DZE (1 << 9) /* Divide by Zero exception trap enable */
35
+#define FPCR_OFE (1 << 10) /* Overflow exception trap enable */
36
+#define FPCR_UFE (1 << 11) /* Underflow exception trap enable */
37
+#define FPCR_IXE (1 << 12) /* Inexact exception trap enable */
38
+#define FPCR_IDE (1 << 15) /* Input Denormal exception trap enable */
39
#define FPCR_FZ16 (1 << 19) /* ARMv8.2+, FP16 flush-to-zero */
40
#define FPCR_FZ (1 << 24) /* Flush-to-zero enable bit */
24
#define FPCR_FZ (1 << 24) /* Flush-to-zero enable bit */
41
#define FPCR_DN (1 << 25) /* Default NaN enable bit */
25
#define FPCR_DN (1 << 25) /* Default NaN enable bit */
42
diff --git a/target/arm/helper.c b/target/arm/helper.c
26
#define FPCR_QC (1 << 27) /* Cumulative saturation bit */
27
+#define FPCR_V (1 << 28) /* FP overflow flag */
28
+#define FPCR_C (1 << 29) /* FP carry flag */
29
+#define FPCR_Z (1 << 30) /* FP zero flag */
30
+#define FPCR_N (1 << 31) /* FP negative flag */
31
+
32
+#define FPCR_NZCV_MASK (FPCR_N | FPCR_Z | FPCR_C | FPCR_V)
33
+#define FPCR_NZCVQC_MASK (FPCR_NZCV_MASK | FPCR_QC)
34
35
static inline uint32_t vfp_get_fpsr(CPUARMState *env)
36
{
37
@@ -XXX,XX +XXX,XX @@ enum arm_cpu_mode {
38
#define ARM_VFP_FPEXC 8
39
#define ARM_VFP_FPINST 9
40
#define ARM_VFP_FPINST2 10
41
+/* These ones are M-profile only */
42
+#define ARM_VFP_FPSCR_NZCVQC 2
43
+#define ARM_VFP_VPR 12
44
+#define ARM_VFP_P0 13
45
+#define ARM_VFP_FPCXT_NS 14
46
+#define ARM_VFP_FPCXT_S 15
47
48
/* QEMU-internal value meaning "FPSCR, but we care only about NZCV" */
49
#define QEMU_VFP_FPSCR_NZCV 0xffff
50
diff --git a/target/arm/translate-vfp.c.inc b/target/arm/translate-vfp.c.inc
43
index XXXXXXX..XXXXXXX 100644
51
index XXXXXXX..XXXXXXX 100644
44
--- a/target/arm/helper.c
52
--- a/target/arm/translate-vfp.c.inc
45
+++ b/target/arm/helper.c
53
+++ b/target/arm/translate-vfp.c.inc
46
@@ -XXX,XX +XXX,XX @@ void HELPER(vfp_set_fpscr)(CPUARMState *env, uint32_t val)
54
@@ -XXX,XX +XXX,XX @@ static FPSysRegCheckResult fp_sysreg_checks(DisasContext *s, int regno)
47
val &= ~FPCR_FZ16;
55
case ARM_VFP_FPSCR:
56
case QEMU_VFP_FPSCR_NZCV:
57
break;
58
+ case ARM_VFP_FPSCR_NZCVQC:
59
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_1M)) {
60
+ return false;
61
+ }
62
+ break;
63
default:
64
return FPSysRegCheckFailed;
48
}
65
}
49
66
@@ -XXX,XX +XXX,XX @@ static bool gen_M_fp_sysreg_write(DisasContext *s, int regno,
50
+ /*
67
tcg_temp_free_i32(tmp);
51
+ * We don't implement trapped exception handling, so the
68
gen_lookup_tb(s);
52
+ * trap enable bits are all RAZ/WI (not RES0!)
69
break;
53
+ */
70
+ case ARM_VFP_FPSCR_NZCVQC:
54
+ val &= ~(FPCR_IDE | FPCR_IXE | FPCR_UFE | FPCR_OFE | FPCR_DZE | FPCR_IOE);
71
+ {
55
+
72
+ TCGv_i32 fpscr;
56
changed = env->vfp.xregs[ARM_VFP_FPSCR];
73
+ tmp = loadfn(s, opaque);
57
env->vfp.xregs[ARM_VFP_FPSCR] = (val & 0xffc8ffff);
74
+ /*
58
env->vfp.vec_len = (val >> 16) & 7;
75
+ * TODO: when we implement MVE, write the QC bit.
76
+ * For non-MVE, QC is RES0.
77
+ */
78
+ tcg_gen_andi_i32(tmp, tmp, FPCR_NZCV_MASK);
79
+ fpscr = load_cpu_field(vfp.xregs[ARM_VFP_FPSCR]);
80
+ tcg_gen_andi_i32(fpscr, fpscr, ~FPCR_NZCV_MASK);
81
+ tcg_gen_or_i32(fpscr, fpscr, tmp);
82
+ store_cpu_field(fpscr, vfp.xregs[ARM_VFP_FPSCR]);
83
+ tcg_temp_free_i32(tmp);
84
+ break;
85
+ }
86
default:
87
g_assert_not_reached();
88
}
89
@@ -XXX,XX +XXX,XX @@ static bool gen_M_fp_sysreg_read(DisasContext *s, int regno,
90
gen_helper_vfp_get_fpscr(tmp, cpu_env);
91
storefn(s, opaque, tmp);
92
break;
93
+ case ARM_VFP_FPSCR_NZCVQC:
94
+ /*
95
+ * TODO: MVE has a QC bit, which we probably won't store
96
+ * in the xregs[] field. For non-MVE, where QC is RES0,
97
+ * we can just fall through to the FPSCR_NZCV case.
98
+ */
99
case QEMU_VFP_FPSCR_NZCV:
100
/*
101
* Read just NZCV; this is a special case to avoid the
59
--
102
--
60
2.20.1
103
2.20.1
61
104
62
105
diff view generated by jsdifflib
New patch
1
We defined a constant name for the mask of NZCV bits in the FPCR/FPSCR
2
in the previous commit; use it in a couple of places in existing code,
3
where we're masking out everything except NZCV for the "load to Rt=15
4
sets CPSR.NZCV" special case.
1
5
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20201119215617.29887-12-peter.maydell@linaro.org
9
---
10
target/arm/translate-vfp.c.inc | 4 ++--
11
1 file changed, 2 insertions(+), 2 deletions(-)
12
13
diff --git a/target/arm/translate-vfp.c.inc b/target/arm/translate-vfp.c.inc
14
index XXXXXXX..XXXXXXX 100644
15
--- a/target/arm/translate-vfp.c.inc
16
+++ b/target/arm/translate-vfp.c.inc
17
@@ -XXX,XX +XXX,XX @@ static bool gen_M_fp_sysreg_read(DisasContext *s, int regno,
18
* helper call for the "VMRS to CPSR.NZCV" insn.
19
*/
20
tmp = load_cpu_field(vfp.xregs[ARM_VFP_FPSCR]);
21
- tcg_gen_andi_i32(tmp, tmp, 0xf0000000);
22
+ tcg_gen_andi_i32(tmp, tmp, FPCR_NZCV_MASK);
23
storefn(s, opaque, tmp);
24
break;
25
default:
26
@@ -XXX,XX +XXX,XX @@ static bool trans_VMSR_VMRS(DisasContext *s, arg_VMSR_VMRS *a)
27
case ARM_VFP_FPSCR:
28
if (a->rt == 15) {
29
tmp = load_cpu_field(vfp.xregs[ARM_VFP_FPSCR]);
30
- tcg_gen_andi_i32(tmp, tmp, 0xf0000000);
31
+ tcg_gen_andi_i32(tmp, tmp, FPCR_NZCV_MASK);
32
} else {
33
tmp = tcg_temp_new_i32();
34
gen_helper_vfp_get_fpscr(tmp, cpu_env);
35
--
36
2.20.1
37
38
diff view generated by jsdifflib
1
Enables, but does not turn on, TBI for CONFIG_USER_ONLY.
1
Factor out the code which handles M-profile lazy FP state preservation
2
from full_vfp_access_check(); accesses to the FPCXT_NS register are
3
a special case which need to do just this part (corresponding in the
4
pseudocode to the PreserveFPState() function), and not the full
5
set of actions matching the pseudocode ExecuteFPCheck() which
6
normal FP instructions need to do.
2
7
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
5
Message-id: 20190204132126.3255-4-richard.henderson@linaro.org
6
[PMM: adjusted #ifdeffery to placate clang, which otherwise complains
7
about static functions that are unused in the CONFIG_USER_ONLY build]
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
10
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
11
Message-id: 20201119215617.29887-13-peter.maydell@linaro.org
9
---
12
---
10
target/arm/internals.h | 21 --------------------
13
target/arm/translate-vfp.c.inc | 45 ++++++++++++++++++++--------------
11
target/arm/helper.c | 45 ++++++++++++++++++++++--------------------
14
1 file changed, 27 insertions(+), 18 deletions(-)
12
2 files changed, 24 insertions(+), 42 deletions(-)
13
15
14
diff --git a/target/arm/internals.h b/target/arm/internals.h
16
diff --git a/target/arm/translate-vfp.c.inc b/target/arm/translate-vfp.c.inc
15
index XXXXXXX..XXXXXXX 100644
17
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/internals.h
18
--- a/target/arm/translate-vfp.c.inc
17
+++ b/target/arm/internals.h
19
+++ b/target/arm/translate-vfp.c.inc
18
@@ -XXX,XX +XXX,XX @@ typedef struct ARMVAParameters {
20
@@ -XXX,XX +XXX,XX @@ static inline long vfp_f16_offset(unsigned reg, bool top)
19
bool using64k : 1;
21
return offs;
20
} ARMVAParameters;
21
22
-#ifdef CONFIG_USER_ONLY
23
-static inline ARMVAParameters aa64_va_parameters_both(CPUARMState *env,
24
- uint64_t va,
25
- ARMMMUIdx mmu_idx)
26
-{
27
- return (ARMVAParameters) {
28
- /* 48-bit address space */
29
- .tsz = 16,
30
- /* We can't handle tagged addresses properly in user-only mode */
31
- .tbi = false,
32
- };
33
-}
34
-
35
-static inline ARMVAParameters aa64_va_parameters(CPUARMState *env,
36
- uint64_t va,
37
- ARMMMUIdx mmu_idx, bool data)
38
-{
39
- return aa64_va_parameters_both(env, va, mmu_idx);
40
-}
41
-#else
42
ARMVAParameters aa64_va_parameters_both(CPUARMState *env, uint64_t va,
43
ARMMMUIdx mmu_idx);
44
ARMVAParameters aa64_va_parameters(CPUARMState *env, uint64_t va,
45
ARMMMUIdx mmu_idx, bool data);
46
-#endif
47
48
#endif
49
diff --git a/target/arm/helper.c b/target/arm/helper.c
50
index XXXXXXX..XXXXXXX 100644
51
--- a/target/arm/helper.c
52
+++ b/target/arm/helper.c
53
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(rbit)(uint32_t x)
54
return revbit32(x);
55
}
22
}
56
23
57
-#if defined(CONFIG_USER_ONLY)
24
+/*
58
+#ifdef CONFIG_USER_ONLY
25
+ * Generate code for M-profile lazy FP state preservation if needed;
59
26
+ * this corresponds to the pseudocode PreserveFPState() function.
60
/* These should probably raise undefined insn exceptions. */
27
+ */
61
void HELPER(v7m_msr)(CPUARMState *env, uint32_t reg, uint32_t val)
28
+static void gen_preserve_fp_state(DisasContext *s)
62
@@ -XXX,XX +XXX,XX @@ void arm_cpu_do_interrupt(CPUState *cs)
63
cs->interrupt_request |= CPU_INTERRUPT_EXITTB;
64
}
65
}
66
+#endif /* !CONFIG_USER_ONLY */
67
68
/* Return the exception level which controls this address translation regime */
69
static inline uint32_t regime_el(CPUARMState *env, ARMMMUIdx mmu_idx)
70
@@ -XXX,XX +XXX,XX @@ static inline uint32_t regime_el(CPUARMState *env, ARMMMUIdx mmu_idx)
71
}
72
}
73
74
+#ifndef CONFIG_USER_ONLY
75
+
76
/* Return the SCTLR value which controls this address translation regime */
77
static inline uint32_t regime_sctlr(CPUARMState *env, ARMMMUIdx mmu_idx)
78
{
79
@@ -XXX,XX +XXX,XX @@ static inline bool regime_translation_big_endian(CPUARMState *env,
80
return (regime_sctlr(env, mmu_idx) & SCTLR_EE) != 0;
81
}
82
83
+/* Return the TTBR associated with this translation regime */
84
+static inline uint64_t regime_ttbr(CPUARMState *env, ARMMMUIdx mmu_idx,
85
+ int ttbrn)
86
+{
29
+{
87
+ if (mmu_idx == ARMMMUIdx_S2NS) {
30
+ if (s->v7m_lspact) {
88
+ return env->cp15.vttbr_el2;
31
+ /*
89
+ }
32
+ * Lazy state saving affects external memory and also the NVIC,
90
+ if (ttbrn == 0) {
33
+ * so we must mark it as an IO operation for icount (and cause
91
+ return env->cp15.ttbr0_el[regime_el(env, mmu_idx)];
34
+ * this to be the last insn in the TB).
92
+ } else {
35
+ */
93
+ return env->cp15.ttbr1_el[regime_el(env, mmu_idx)];
36
+ if (tb_cflags(s->base.tb) & CF_USE_ICOUNT) {
37
+ s->base.is_jmp = DISAS_UPDATE_EXIT;
38
+ gen_io_start();
39
+ }
40
+ gen_helper_v7m_preserve_fp_state(cpu_env);
41
+ /*
42
+ * If the preserve_fp_state helper doesn't throw an exception
43
+ * then it will clear LSPACT; we don't need to repeat this for
44
+ * any further FP insns in this TB.
45
+ */
46
+ s->v7m_lspact = false;
94
+ }
47
+ }
95
+}
48
+}
96
+
49
+
97
+#endif /* !CONFIG_USER_ONLY */
50
/*
98
+
51
* Check that VFP access is enabled. If it is, do the necessary
99
/* Return the TCR controlling this translation regime */
52
* M-profile lazy-FP handling and then return true.
100
static inline TCR *regime_tcr(CPUARMState *env, ARMMMUIdx mmu_idx)
53
@@ -XXX,XX +XXX,XX @@ static bool full_vfp_access_check(DisasContext *s, bool ignore_vfp_enabled)
101
{
54
/* Handle M-profile lazy FP state mechanics */
102
@@ -XXX,XX +XXX,XX @@ static inline ARMMMUIdx stage_1_mmu_idx(ARMMMUIdx mmu_idx)
55
103
return mmu_idx;
56
/* Trigger lazy-state preservation if necessary */
104
}
57
- if (s->v7m_lspact) {
105
58
- /*
106
-/* Return the TTBR associated with this translation regime */
59
- * Lazy state saving affects external memory and also the NVIC,
107
-static inline uint64_t regime_ttbr(CPUARMState *env, ARMMMUIdx mmu_idx,
60
- * so we must mark it as an IO operation for icount (and cause
108
- int ttbrn)
61
- * this to be the last insn in the TB).
109
-{
62
- */
110
- if (mmu_idx == ARMMMUIdx_S2NS) {
63
- if (tb_cflags(s->base.tb) & CF_USE_ICOUNT) {
111
- return env->cp15.vttbr_el2;
64
- s->base.is_jmp = DISAS_UPDATE_EXIT;
112
- }
65
- gen_io_start();
113
- if (ttbrn == 0) {
66
- }
114
- return env->cp15.ttbr0_el[regime_el(env, mmu_idx)];
67
- gen_helper_v7m_preserve_fp_state(cpu_env);
115
- } else {
68
- /*
116
- return env->cp15.ttbr1_el[regime_el(env, mmu_idx)];
69
- * If the preserve_fp_state helper doesn't throw an exception
117
- }
70
- * then it will clear LSPACT; we don't need to repeat this for
118
-}
71
- * any further FP insns in this TB.
119
-
72
- */
120
/* Return true if the translation regime is using LPAE format page tables */
73
- s->v7m_lspact = false;
121
static inline bool regime_using_lpae_format(CPUARMState *env,
74
- }
122
ARMMMUIdx mmu_idx)
75
+ gen_preserve_fp_state(s);
123
@@ -XXX,XX +XXX,XX @@ bool arm_s1_regime_using_lpae_format(CPUARMState *env, ARMMMUIdx mmu_idx)
76
124
return regime_using_lpae_format(env, mmu_idx);
77
/* Update ownership of FP context: set FPCCR.S to match current state */
125
}
78
if (s->v8m_fpccr_s_wrong) {
126
127
+#ifndef CONFIG_USER_ONLY
128
static inline bool regime_is_user(CPUARMState *env, ARMMMUIdx mmu_idx)
129
{
130
switch (mmu_idx) {
131
@@ -XXX,XX +XXX,XX @@ static uint8_t convert_stage2_attrs(CPUARMState *env, uint8_t s2attrs)
132
133
return (hiattr << 6) | (hihint << 4) | (loattr << 2) | lohint;
134
}
135
+#endif /* !CONFIG_USER_ONLY */
136
137
ARMVAParameters aa64_va_parameters_both(CPUARMState *env, uint64_t va,
138
ARMMMUIdx mmu_idx)
139
@@ -XXX,XX +XXX,XX @@ ARMVAParameters aa64_va_parameters(CPUARMState *env, uint64_t va,
140
return ret;
141
}
142
143
+#ifndef CONFIG_USER_ONLY
144
static ARMVAParameters aa32_va_parameters(CPUARMState *env, uint32_t va,
145
ARMMMUIdx mmu_idx)
146
{
147
@@ -XXX,XX +XXX,XX @@ void cpu_get_tb_cpu_state(CPUARMState *env, target_ulong *pc,
148
*pc = env->pc;
149
flags = FIELD_DP32(flags, TBFLAG_ANY, AARCH64_STATE, 1);
150
151
-#ifndef CONFIG_USER_ONLY
152
- /*
153
- * Get control bits for tagged addresses. Note that the
154
- * translator only uses this for instruction addresses.
155
- */
156
+ /* Get control bits for tagged addresses. */
157
{
158
ARMMMUIdx stage1 = stage_1_mmu_idx(mmu_idx);
159
ARMVAParameters p0 = aa64_va_parameters_both(env, 0, stage1);
160
@@ -XXX,XX +XXX,XX @@ void cpu_get_tb_cpu_state(CPUARMState *env, target_ulong *pc,
161
flags = FIELD_DP32(flags, TBFLAG_A64, TBII, tbii);
162
flags = FIELD_DP32(flags, TBFLAG_A64, TBID, tbid);
163
}
164
-#endif
165
166
if (cpu_isar_feature(aa64_sve, cpu)) {
167
int sve_el = sve_exception_el(env, current_el);
168
--
79
--
169
2.20.1
80
2.20.1
170
81
171
82
diff view generated by jsdifflib
1
The arm_boot_info struct has a skip_dtb_autoload flag: if this is
1
Implement the new-in-v8.1M FPCXT_S floating point system register.
2
set to true by the board code then arm_load_kernel() will not
2
This is for saving and restoring the secure floating point context,
3
load the DTB itself, but will leave this for the board code to
3
and it reads and writes bits [27:0] from the FPSCR and the
4
do itself later. However, the check for this is done in a
4
CONTROL.SFPA bit in bit [31].
5
code path which is only executed for the case where we load
6
a kernel image file. If we're taking the "boot via firmware"
7
code path then the flag isn't honoured and the DTB is never
8
loaded.
9
10
We didn't notice this because the only real user of "boot
11
via firmware" that cares about the DTB is the virt board
12
(for UEFI boot), and that always wants skip_dtb_autoload
13
anyway. But the SBSA reference board model we're planning to
14
add will want the flag to behave correctly.
15
16
Now we've refactored the arm_load_kernel() function, the
17
fix is simple: drop the early 'return' so we fall into
18
the same "load the DTB" code the boot-direct-kernel path uses.
19
5
20
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
21
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
22
Reviewed-by: Igor Mammedov <imammedo@redhat.com>
8
Message-id: 20201119215617.29887-14-peter.maydell@linaro.org
23
Message-id: 20190131112240.8395-6-peter.maydell@linaro.org
24
---
9
---
25
hw/arm/boot.c | 1 -
10
target/arm/translate-vfp.c.inc | 58 ++++++++++++++++++++++++++++++++++
26
1 file changed, 1 deletion(-)
11
1 file changed, 58 insertions(+)
27
12
28
diff --git a/hw/arm/boot.c b/hw/arm/boot.c
13
diff --git a/target/arm/translate-vfp.c.inc b/target/arm/translate-vfp.c.inc
29
index XXXXXXX..XXXXXXX 100644
14
index XXXXXXX..XXXXXXX 100644
30
--- a/hw/arm/boot.c
15
--- a/target/arm/translate-vfp.c.inc
31
+++ b/hw/arm/boot.c
16
+++ b/target/arm/translate-vfp.c.inc
32
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
17
@@ -XXX,XX +XXX,XX @@ static FPSysRegCheckResult fp_sysreg_checks(DisasContext *s, int regno)
33
/* Load the kernel. */
18
return false;
34
if (!info->kernel_filename || info->firmware_loaded) {
19
}
35
arm_setup_firmware_boot(cpu, info);
20
break;
36
- return;
21
+ case ARM_VFP_FPCXT_S:
37
} else {
22
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_1M)) {
38
arm_setup_direct_kernel_boot(cpu, info);
23
+ return false;
24
+ }
25
+ if (!s->v8m_secure) {
26
+ return false;
27
+ }
28
+ break;
29
default:
30
return FPSysRegCheckFailed;
31
}
32
@@ -XXX,XX +XXX,XX @@ static bool gen_M_fp_sysreg_write(DisasContext *s, int regno,
33
tcg_temp_free_i32(tmp);
34
break;
35
}
36
+ case ARM_VFP_FPCXT_S:
37
+ {
38
+ TCGv_i32 sfpa, control, fpscr;
39
+ /* Set FPSCR[27:0] and CONTROL.SFPA from value */
40
+ tmp = loadfn(s, opaque);
41
+ sfpa = tcg_temp_new_i32();
42
+ tcg_gen_shri_i32(sfpa, tmp, 31);
43
+ control = load_cpu_field(v7m.control[M_REG_S]);
44
+ tcg_gen_deposit_i32(control, control, sfpa,
45
+ R_V7M_CONTROL_SFPA_SHIFT, 1);
46
+ store_cpu_field(control, v7m.control[M_REG_S]);
47
+ fpscr = load_cpu_field(vfp.xregs[ARM_VFP_FPSCR]);
48
+ tcg_gen_andi_i32(fpscr, fpscr, FPCR_NZCV_MASK);
49
+ tcg_gen_andi_i32(tmp, tmp, ~FPCR_NZCV_MASK);
50
+ tcg_gen_or_i32(fpscr, fpscr, tmp);
51
+ store_cpu_field(fpscr, vfp.xregs[ARM_VFP_FPSCR]);
52
+ tcg_temp_free_i32(tmp);
53
+ tcg_temp_free_i32(sfpa);
54
+ break;
55
+ }
56
default:
57
g_assert_not_reached();
58
}
59
@@ -XXX,XX +XXX,XX @@ static bool gen_M_fp_sysreg_read(DisasContext *s, int regno,
60
tcg_gen_andi_i32(tmp, tmp, FPCR_NZCV_MASK);
61
storefn(s, opaque, tmp);
62
break;
63
+ case ARM_VFP_FPCXT_S:
64
+ {
65
+ TCGv_i32 control, sfpa, fpscr;
66
+ /* Bits [27:0] from FPSCR, bit [31] from CONTROL.SFPA */
67
+ tmp = tcg_temp_new_i32();
68
+ sfpa = tcg_temp_new_i32();
69
+ gen_helper_vfp_get_fpscr(tmp, cpu_env);
70
+ tcg_gen_andi_i32(tmp, tmp, ~FPCR_NZCV_MASK);
71
+ control = load_cpu_field(v7m.control[M_REG_S]);
72
+ tcg_gen_andi_i32(sfpa, control, R_V7M_CONTROL_SFPA_MASK);
73
+ tcg_gen_shli_i32(sfpa, sfpa, 31 - R_V7M_CONTROL_SFPA_SHIFT);
74
+ tcg_gen_or_i32(tmp, tmp, sfpa);
75
+ tcg_temp_free_i32(sfpa);
76
+ /*
77
+ * Store result before updating FPSCR etc, in case
78
+ * it is a memory write which causes an exception.
79
+ */
80
+ storefn(s, opaque, tmp);
81
+ /*
82
+ * Now we must reset FPSCR from FPDSCR_NS, and clear
83
+ * CONTROL.SFPA; so we'll end the TB here.
84
+ */
85
+ tcg_gen_andi_i32(control, control, ~R_V7M_CONTROL_SFPA_MASK);
86
+ store_cpu_field(control, v7m.control[M_REG_S]);
87
+ fpscr = load_cpu_field(v7m.fpdscr[M_REG_NS]);
88
+ gen_helper_vfp_set_fpscr(cpu_env, fpscr);
89
+ tcg_temp_free_i32(fpscr);
90
+ gen_lookup_tb(s);
91
+ break;
92
+ }
93
default:
94
g_assert_not_reached();
39
}
95
}
40
--
96
--
41
2.20.1
97
2.20.1
42
98
43
99
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
The FPDSCR register has a similar layout to the FPSCR. In v8.1M it
2
gains new fields FZ16 (if half-precision floating point is supported)
3
and LTPSIZE (always reads as 4). Update the reset value and the code
4
that handles writes to this register accordingly.
2
5
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
5
Message-id: 20190128223118.5255-4-richard.henderson@linaro.org
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20201119215617.29887-16-peter.maydell@linaro.org
7
---
9
---
8
target/arm/cpu.h | 2 ++
10
target/arm/cpu.h | 5 +++++
9
target/arm/translate.h | 4 ++++
11
hw/intc/armv7m_nvic.c | 9 ++++++++-
10
target/arm/helper.c | 22 +++++++++++++++-------
12
target/arm/cpu.c | 3 +++
11
target/arm/translate-a64.c | 2 ++
13
3 files changed, 16 insertions(+), 1 deletion(-)
12
4 files changed, 23 insertions(+), 7 deletions(-)
13
14
14
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
15
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
15
index XXXXXXX..XXXXXXX 100644
16
index XXXXXXX..XXXXXXX 100644
16
--- a/target/arm/cpu.h
17
--- a/target/arm/cpu.h
17
+++ b/target/arm/cpu.h
18
+++ b/target/arm/cpu.h
18
@@ -XXX,XX +XXX,XX @@ FIELD(TBFLAG_A64, TBII, 0, 2)
19
@@ -XXX,XX +XXX,XX @@ void vfp_set_fpscr(CPUARMState *env, uint32_t val);
19
FIELD(TBFLAG_A64, SVEEXC_EL, 2, 2)
20
#define FPCR_IXE (1 << 12) /* Inexact exception trap enable */
20
FIELD(TBFLAG_A64, ZCR_LEN, 4, 4)
21
#define FPCR_IDE (1 << 15) /* Input Denormal exception trap enable */
21
FIELD(TBFLAG_A64, PAUTH_ACTIVE, 8, 1)
22
#define FPCR_FZ16 (1 << 19) /* ARMv8.2+, FP16 flush-to-zero */
22
+FIELD(TBFLAG_A64, BT, 9, 1)
23
+#define FPCR_RMODE_MASK (3 << 22) /* Rounding mode */
23
+FIELD(TBFLAG_A64, BTYPE, 10, 2)
24
#define FPCR_FZ (1 << 24) /* Flush-to-zero enable bit */
24
25
#define FPCR_DN (1 << 25) /* Default NaN enable bit */
25
static inline bool bswap_code(bool sctlr_b)
26
+#define FPCR_AHP (1 << 26) /* Alternative half-precision */
26
{
27
#define FPCR_QC (1 << 27) /* Cumulative saturation bit */
27
diff --git a/target/arm/translate.h b/target/arm/translate.h
28
#define FPCR_V (1 << 28) /* FP overflow flag */
29
#define FPCR_C (1 << 29) /* FP carry flag */
30
#define FPCR_Z (1 << 30) /* FP zero flag */
31
#define FPCR_N (1 << 31) /* FP negative flag */
32
33
+#define FPCR_LTPSIZE_SHIFT 16 /* LTPSIZE, M-profile only */
34
+#define FPCR_LTPSIZE_MASK (7 << FPCR_LTPSIZE_SHIFT)
35
+
36
#define FPCR_NZCV_MASK (FPCR_N | FPCR_Z | FPCR_C | FPCR_V)
37
#define FPCR_NZCVQC_MASK (FPCR_NZCV_MASK | FPCR_QC)
38
39
diff --git a/hw/intc/armv7m_nvic.c b/hw/intc/armv7m_nvic.c
28
index XXXXXXX..XXXXXXX 100644
40
index XXXXXXX..XXXXXXX 100644
29
--- a/target/arm/translate.h
41
--- a/hw/intc/armv7m_nvic.c
30
+++ b/target/arm/translate.h
42
+++ b/hw/intc/armv7m_nvic.c
31
@@ -XXX,XX +XXX,XX @@ typedef struct DisasContext {
43
@@ -XXX,XX +XXX,XX @@ static void nvic_writel(NVICState *s, uint32_t offset, uint32_t value,
32
bool ss_same_el;
44
break;
33
/* True if v8.3-PAuth is active. */
45
case 0xf3c: /* FPDSCR */
34
bool pauth_active;
46
if (cpu_isar_feature(aa32_vfp_simd, cpu)) {
35
+ /* True with v8.5-BTI and SCTLR_ELx.BT* set. */
47
- value &= 0x07c00000;
36
+ bool bt;
48
+ uint32_t mask = FPCR_AHP | FPCR_DN | FPCR_FZ | FPCR_RMODE_MASK;
37
+ /* A copy of PSTATE.BTYPE, which will be 0 without v8.5-BTI. */
49
+ if (cpu_isar_feature(any_fp16, cpu)) {
38
+ uint8_t btype;
50
+ mask |= FPCR_FZ16;
39
/* Bottom two bits of XScale c15_cpar coprocessor access control reg */
51
+ }
40
int c15_cpar;
52
+ value &= mask;
41
/* TCG op of the current insn_start. */
53
+ if (cpu_isar_feature(aa32_lob, cpu)) {
42
diff --git a/target/arm/helper.c b/target/arm/helper.c
54
+ value |= 4 << FPCR_LTPSIZE_SHIFT;
55
+ }
56
cpu->env.v7m.fpdscr[attrs.secure] = value;
57
}
58
break;
59
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
43
index XXXXXXX..XXXXXXX 100644
60
index XXXXXXX..XXXXXXX 100644
44
--- a/target/arm/helper.c
61
--- a/target/arm/cpu.c
45
+++ b/target/arm/helper.c
62
+++ b/target/arm/cpu.c
46
@@ -XXX,XX +XXX,XX @@ void cpu_get_tb_cpu_state(CPUARMState *env, target_ulong *pc,
63
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_reset(DeviceState *dev)
47
64
* always reset to 4.
48
if (is_a64(env)) {
65
*/
49
ARMCPU *cpu = arm_env_get_cpu(env);
66
env->v7m.ltpsize = 4;
50
+ uint64_t sctlr;
67
+ /* The LTPSIZE field in FPDSCR is constant and reads as 4. */
51
68
+ env->v7m.fpdscr[M_REG_NS] = 4 << FPCR_LTPSIZE_SHIFT;
52
*pc = env->pc;
69
+ env->v7m.fpdscr[M_REG_S] = 4 << FPCR_LTPSIZE_SHIFT;
53
flags = FIELD_DP32(flags, TBFLAG_ANY, AARCH64_STATE, 1);
54
@@ -XXX,XX +XXX,XX @@ void cpu_get_tb_cpu_state(CPUARMState *env, target_ulong *pc,
55
flags = FIELD_DP32(flags, TBFLAG_A64, ZCR_LEN, zcr_len);
56
}
70
}
57
71
58
+ if (current_el == 0) {
72
if (arm_feature(env, ARM_FEATURE_M_SECURITY)) {
59
+ /* FIXME: ARMv8.1-VHE S2 translation regime. */
60
+ sctlr = env->cp15.sctlr_el[1];
61
+ } else {
62
+ sctlr = env->cp15.sctlr_el[current_el];
63
+ }
64
if (cpu_isar_feature(aa64_pauth, cpu)) {
65
/*
66
* In order to save space in flags, we record only whether
67
@@ -XXX,XX +XXX,XX @@ void cpu_get_tb_cpu_state(CPUARMState *env, target_ulong *pc,
68
* a nop, or "active" when some action must be performed.
69
* The decision of which action to take is left to a helper.
70
*/
71
- uint64_t sctlr;
72
- if (current_el == 0) {
73
- /* FIXME: ARMv8.1-VHE S2 translation regime. */
74
- sctlr = env->cp15.sctlr_el[1];
75
- } else {
76
- sctlr = env->cp15.sctlr_el[current_el];
77
- }
78
if (sctlr & (SCTLR_EnIA | SCTLR_EnIB | SCTLR_EnDA | SCTLR_EnDB)) {
79
flags = FIELD_DP32(flags, TBFLAG_A64, PAUTH_ACTIVE, 1);
80
}
81
}
82
+
83
+ if (cpu_isar_feature(aa64_bti, cpu)) {
84
+ /* Note that SCTLR_EL[23].BT == SCTLR_BT1. */
85
+ if (sctlr & (current_el == 0 ? SCTLR_BT0 : SCTLR_BT1)) {
86
+ flags = FIELD_DP32(flags, TBFLAG_A64, BT, 1);
87
+ }
88
+ flags = FIELD_DP32(flags, TBFLAG_A64, BTYPE, env->btype);
89
+ }
90
} else {
91
*pc = env->regs[15];
92
flags = FIELD_DP32(flags, TBFLAG_A32, THUMB, env->thumb);
93
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
94
index XXXXXXX..XXXXXXX 100644
95
--- a/target/arm/translate-a64.c
96
+++ b/target/arm/translate-a64.c
97
@@ -XXX,XX +XXX,XX @@ static void aarch64_tr_init_disas_context(DisasContextBase *dcbase,
98
dc->sve_excp_el = FIELD_EX32(tb_flags, TBFLAG_A64, SVEEXC_EL);
99
dc->sve_len = (FIELD_EX32(tb_flags, TBFLAG_A64, ZCR_LEN) + 1) * 16;
100
dc->pauth_active = FIELD_EX32(tb_flags, TBFLAG_A64, PAUTH_ACTIVE);
101
+ dc->bt = FIELD_EX32(tb_flags, TBFLAG_A64, BT);
102
+ dc->btype = FIELD_EX32(tb_flags, TBFLAG_A64, BTYPE);
103
dc->vec_len = 0;
104
dc->vec_stride = 0;
105
dc->cp_regs = arm_cpu->cp_regs;
106
--
73
--
107
2.20.1
74
2.20.1
108
75
109
76
diff view generated by jsdifflib
New patch
1
In v8.0M, on exception entry the registers R0-R3, R12, APSR and EPSR
2
are zeroed for an exception taken to Non-secure state; for an
3
exception taken to Secure state they become UNKNOWN, and we chose to
4
leave them at their previous values.
1
5
6
In v8.1M the behaviour is specified more tightly and these registers
7
are always zeroed regardless of the security state that the exception
8
targets (see rule R_KPZV). Implement this.
9
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
12
Message-id: 20201119215617.29887-17-peter.maydell@linaro.org
13
---
14
target/arm/m_helper.c | 16 ++++++++++++----
15
1 file changed, 12 insertions(+), 4 deletions(-)
16
17
diff --git a/target/arm/m_helper.c b/target/arm/m_helper.c
18
index XXXXXXX..XXXXXXX 100644
19
--- a/target/arm/m_helper.c
20
+++ b/target/arm/m_helper.c
21
@@ -XXX,XX +XXX,XX @@ static void v7m_exception_taken(ARMCPU *cpu, uint32_t lr, bool dotailchain,
22
* Clear registers if necessary to prevent non-secure exception
23
* code being able to see register values from secure code.
24
* Where register values become architecturally UNKNOWN we leave
25
- * them with their previous values.
26
+ * them with their previous values. v8.1M is tighter than v8.0M
27
+ * here and always zeroes the caller-saved registers regardless
28
+ * of the security state the exception is targeting.
29
*/
30
if (arm_feature(env, ARM_FEATURE_M_SECURITY)) {
31
- if (!targets_secure) {
32
+ if (!targets_secure || arm_feature(env, ARM_FEATURE_V8_1M)) {
33
/*
34
* Always clear the caller-saved registers (they have been
35
* pushed to the stack earlier in v7m_push_stack()).
36
@@ -XXX,XX +XXX,XX @@ static void v7m_exception_taken(ARMCPU *cpu, uint32_t lr, bool dotailchain,
37
* v7m_push_callee_stack()).
38
*/
39
int i;
40
+ /*
41
+ * r4..r11 are callee-saves, zero only if background
42
+ * state was Secure (EXCRET.S == 1) and exception
43
+ * targets Non-secure state
44
+ */
45
+ bool zero_callee_saves = !targets_secure &&
46
+ (lr & R_V7M_EXCRET_S_MASK);
47
48
for (i = 0; i < 13; i++) {
49
- /* r4..r11 are callee-saves, zero only if EXCRET.S == 1 */
50
- if (i < 4 || i > 11 || (lr & R_V7M_EXCRET_S_MASK)) {
51
+ if (i < 4 || i > 11 || zero_callee_saves) {
52
env->regs[i] = 0;
53
}
54
}
55
--
56
2.20.1
57
58
diff view generated by jsdifflib
New patch
1
In v8.1M, vector table fetch failures don't set HFSR.FORCED (see rule
2
R_LLRP). (In previous versions of the architecture this was either
3
required or IMPDEF.)
1
4
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
7
Message-id: 20201119215617.29887-18-peter.maydell@linaro.org
8
---
9
target/arm/m_helper.c | 6 +++++-
10
1 file changed, 5 insertions(+), 1 deletion(-)
11
12
diff --git a/target/arm/m_helper.c b/target/arm/m_helper.c
13
index XXXXXXX..XXXXXXX 100644
14
--- a/target/arm/m_helper.c
15
+++ b/target/arm/m_helper.c
16
@@ -XXX,XX +XXX,XX @@ load_fail:
17
* The HardFault is Secure if BFHFNMINS is 0 (meaning that all HFs are
18
* secure); otherwise it targets the same security state as the
19
* underlying exception.
20
+ * In v8.1M HardFaults from vector table fetch fails don't set FORCED.
21
*/
22
if (!(cpu->env.v7m.aircr & R_V7M_AIRCR_BFHFNMINS_MASK)) {
23
exc_secure = true;
24
}
25
- env->v7m.hfsr |= R_V7M_HFSR_VECTTBL_MASK | R_V7M_HFSR_FORCED_MASK;
26
+ env->v7m.hfsr |= R_V7M_HFSR_VECTTBL_MASK;
27
+ if (!arm_feature(env, ARM_FEATURE_V8_1M)) {
28
+ env->v7m.hfsr |= R_V7M_HFSR_FORCED_MASK;
29
+ }
30
armv7m_nvic_set_pending_derived(env->nvic, ARMV7M_EXCP_HARD, exc_secure);
31
return false;
32
}
33
--
34
2.20.1
35
36
diff view generated by jsdifflib
New patch
1
In v8.1M a REVIDR register is defined, which is at address 0xe00ecfc
2
and is a read-only IMPDEF register providing implementation specific
3
minor revision information, like the v8A REVIDR_EL1. Implement this.
1
4
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
7
Message-id: 20201119215617.29887-19-peter.maydell@linaro.org
8
---
9
hw/intc/armv7m_nvic.c | 5 +++++
10
1 file changed, 5 insertions(+)
11
12
diff --git a/hw/intc/armv7m_nvic.c b/hw/intc/armv7m_nvic.c
13
index XXXXXXX..XXXXXXX 100644
14
--- a/hw/intc/armv7m_nvic.c
15
+++ b/hw/intc/armv7m_nvic.c
16
@@ -XXX,XX +XXX,XX @@ static uint32_t nvic_readl(NVICState *s, uint32_t offset, MemTxAttrs attrs)
17
}
18
return val;
19
}
20
+ case 0xcfc:
21
+ if (!arm_feature(&cpu->env, ARM_FEATURE_V8_1M)) {
22
+ goto bad_offset;
23
+ }
24
+ return cpu->revidr;
25
case 0xd00: /* CPUID Base. */
26
return cpu->midr;
27
case 0xd04: /* Interrupt Control State (ICSR) */
28
--
29
2.20.1
30
31
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
In v8.1M a new exception return check is added which may cause a NOCP
2
UsageFault (see rule R_XLTP): before we clear s0..s15 and the FPSCR
3
we must check whether access to CP10 from the Security state of the
4
returning exception is disabled; if it is then we must take a fault.
2
5
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
(Note that for our implementation CPPWR is always RAZ/WI and so can
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
7
never cause CP10 accesses to fail.)
5
Message-id: 20190201195404.30486-2-richard.henderson@linaro.org
8
9
The other v8.1M change to this register-clearing code is that if MVE
10
is implemented VPR must also be cleared, so add a TODO comment to
11
that effect.
12
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
15
Message-id: 20201119215617.29887-20-peter.maydell@linaro.org
7
---
16
---
8
linux-user/aarch64/target_syscall.h | 7 ++++++
17
target/arm/m_helper.c | 22 +++++++++++++++++++++-
9
linux-user/syscall.c | 36 +++++++++++++++++++++++++++++
18
1 file changed, 21 insertions(+), 1 deletion(-)
10
2 files changed, 43 insertions(+)
11
19
12
diff --git a/linux-user/aarch64/target_syscall.h b/linux-user/aarch64/target_syscall.h
20
diff --git a/target/arm/m_helper.c b/target/arm/m_helper.c
13
index XXXXXXX..XXXXXXX 100644
21
index XXXXXXX..XXXXXXX 100644
14
--- a/linux-user/aarch64/target_syscall.h
22
--- a/target/arm/m_helper.c
15
+++ b/linux-user/aarch64/target_syscall.h
23
+++ b/target/arm/m_helper.c
16
@@ -XXX,XX +XXX,XX @@ struct target_pt_regs {
24
@@ -XXX,XX +XXX,XX @@ static void do_v7m_exception_exit(ARMCPU *cpu)
17
#define TARGET_PR_SVE_SET_VL 50
25
v7m_exception_taken(cpu, excret, true, false);
18
#define TARGET_PR_SVE_GET_VL 51
26
return;
19
27
} else {
20
+#define TARGET_PR_PAC_RESET_KEYS 54
28
- /* Clear s0..s15 and FPSCR */
21
+# define TARGET_PR_PAC_APIAKEY (1 << 0)
29
+ if (arm_feature(env, ARM_FEATURE_V8_1M)) {
22
+# define TARGET_PR_PAC_APIBKEY (1 << 1)
30
+ /* v8.1M adds this NOCP check */
23
+# define TARGET_PR_PAC_APDAKEY (1 << 2)
31
+ bool nsacr_pass = exc_secure ||
24
+# define TARGET_PR_PAC_APDBKEY (1 << 3)
32
+ extract32(env->v7m.nsacr, 10, 1);
25
+# define TARGET_PR_PAC_APGAKEY (1 << 4)
33
+ bool cpacr_pass = v7m_cpacr_pass(env, exc_secure, true);
26
+
34
+ if (!nsacr_pass) {
27
void arm_init_pauth_key(ARMPACKey *key);
35
+ armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, true);
28
36
+ env->v7m.cfsr[M_REG_S] |= R_V7M_CFSR_NOCP_MASK;
29
#endif /* AARCH64_TARGET_SYSCALL_H */
37
+ qemu_log_mask(CPU_LOG_INT, "...taking UsageFault on existing "
30
diff --git a/linux-user/syscall.c b/linux-user/syscall.c
38
+ "stackframe: NSACR prevents clearing FPU registers\n");
31
index XXXXXXX..XXXXXXX 100644
39
+ v7m_exception_taken(cpu, excret, true, false);
32
--- a/linux-user/syscall.c
40
+ } else if (!cpacr_pass) {
33
+++ b/linux-user/syscall.c
41
+ armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE,
34
@@ -XXX,XX +XXX,XX @@ static abi_long do_syscall1(void *cpu_env, int num, abi_long arg1,
42
+ exc_secure);
35
}
43
+ env->v7m.cfsr[exc_secure] |= R_V7M_CFSR_NOCP_MASK;
36
}
44
+ qemu_log_mask(CPU_LOG_INT, "...taking UsageFault on existing "
37
return ret;
45
+ "stackframe: CPACR prevents clearing FPU registers\n");
38
+ case TARGET_PR_PAC_RESET_KEYS:
46
+ v7m_exception_taken(cpu, excret, true, false);
39
+ {
40
+ CPUARMState *env = cpu_env;
41
+ ARMCPU *cpu = arm_env_get_cpu(env);
42
+
43
+ if (arg3 || arg4 || arg5) {
44
+ return -TARGET_EINVAL;
45
+ }
46
+ if (cpu_isar_feature(aa64_pauth, cpu)) {
47
+ int all = (TARGET_PR_PAC_APIAKEY | TARGET_PR_PAC_APIBKEY |
48
+ TARGET_PR_PAC_APDAKEY | TARGET_PR_PAC_APDBKEY |
49
+ TARGET_PR_PAC_APGAKEY);
50
+ if (arg2 == 0) {
51
+ arg2 = all;
52
+ } else if (arg2 & ~all) {
53
+ return -TARGET_EINVAL;
54
+ }
55
+ if (arg2 & TARGET_PR_PAC_APIAKEY) {
56
+ arm_init_pauth_key(&env->apia_key);
57
+ }
58
+ if (arg2 & TARGET_PR_PAC_APIBKEY) {
59
+ arm_init_pauth_key(&env->apib_key);
60
+ }
61
+ if (arg2 & TARGET_PR_PAC_APDAKEY) {
62
+ arm_init_pauth_key(&env->apda_key);
63
+ }
64
+ if (arg2 & TARGET_PR_PAC_APDBKEY) {
65
+ arm_init_pauth_key(&env->apdb_key);
66
+ }
67
+ if (arg2 & TARGET_PR_PAC_APGAKEY) {
68
+ arm_init_pauth_key(&env->apga_key);
69
+ }
70
+ return 0;
71
+ }
47
+ }
72
+ }
48
+ }
73
+ return -TARGET_EINVAL;
49
+ /* Clear s0..s15 and FPSCR; TODO also VPR when MVE is implemented */
74
#endif /* AARCH64 */
50
int i;
75
case PR_GET_SECCOMP:
51
76
case PR_SET_SECCOMP:
52
for (i = 0; i < 16; i += 2) {
77
--
53
--
78
2.20.1
54
2.20.1
79
55
80
56
diff view generated by jsdifflib
New patch
1
v8.1M adds new encodings of VLLDM and VLSTM (where bit 7 is set).
2
The only difference is that:
3
* the old T1 encodings UNDEF if the implementation implements 32
4
Dregs (this is currently architecturally impossible for M-profile)
5
* the new T2 encodings have the implementation-defined option to
6
read from memory (discarding the data) or write UNKNOWN values to
7
memory for the stack slots that would be D16-D31
1
8
9
We choose not to make those accesses, so for us the two
10
instructions behave identically assuming they don't UNDEF.
11
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
14
Message-id: 20201119215617.29887-21-peter.maydell@linaro.org
15
---
16
target/arm/m-nocp.decode | 2 +-
17
target/arm/translate-vfp.c.inc | 25 +++++++++++++++++++++++++
18
2 files changed, 26 insertions(+), 1 deletion(-)
19
20
diff --git a/target/arm/m-nocp.decode b/target/arm/m-nocp.decode
21
index XXXXXXX..XXXXXXX 100644
22
--- a/target/arm/m-nocp.decode
23
+++ b/target/arm/m-nocp.decode
24
@@ -XXX,XX +XXX,XX @@
25
26
{
27
# Special cases which do not take an early NOCP: VLLDM and VLSTM
28
- VLLDM_VLSTM 1110 1100 001 l:1 rn:4 0000 1010 0000 0000
29
+ VLLDM_VLSTM 1110 1100 001 l:1 rn:4 0000 1010 op:1 000 0000
30
# VSCCLRM (new in v8.1M) is similar:
31
VSCCLRM 1110 1100 1.01 1111 .... 1011 imm:7 0 vd=%vd_dp size=3
32
VSCCLRM 1110 1100 1.01 1111 .... 1010 imm:8 vd=%vd_sp size=2
33
diff --git a/target/arm/translate-vfp.c.inc b/target/arm/translate-vfp.c.inc
34
index XXXXXXX..XXXXXXX 100644
35
--- a/target/arm/translate-vfp.c.inc
36
+++ b/target/arm/translate-vfp.c.inc
37
@@ -XXX,XX +XXX,XX @@ static bool trans_VLLDM_VLSTM(DisasContext *s, arg_VLLDM_VLSTM *a)
38
!arm_dc_feature(s, ARM_FEATURE_V8)) {
39
return false;
40
}
41
+
42
+ if (a->op) {
43
+ /*
44
+ * T2 encoding ({D0-D31} reglist): v8.1M and up. We choose not
45
+ * to take the IMPDEF option to make memory accesses to the stack
46
+ * slots that correspond to the D16-D31 registers (discarding
47
+ * read data and writing UNKNOWN values), so for us the T2
48
+ * encoding behaves identically to the T1 encoding.
49
+ */
50
+ if (!arm_dc_feature(s, ARM_FEATURE_V8_1M)) {
51
+ return false;
52
+ }
53
+ } else {
54
+ /*
55
+ * T1 encoding ({D0-D15} reglist); undef if we have 32 Dregs.
56
+ * This is currently architecturally impossible, but we add the
57
+ * check to stay in line with the pseudocode. Note that we must
58
+ * emit code for the UNDEF so it takes precedence over the NOCP.
59
+ */
60
+ if (dc_isar_feature(aa32_simd_r32, s)) {
61
+ unallocated_encoding(s);
62
+ return true;
63
+ }
64
+ }
65
+
66
/*
67
* If not secure, UNDEF. We must emit code for this
68
* rather than returning false so that this takes
69
--
70
2.20.1
71
72
diff view generated by jsdifflib
New patch
1
v8.1M introduces a new TRD flag in the CCR register, which enables
2
checking for stack frame integrity signatures on SG instructions.
3
This bit is not banked, and is always RAZ/WI to Non-secure code.
4
Adjust the code for handling CCR reads and writes to handle this.
1
5
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20201119215617.29887-23-peter.maydell@linaro.org
9
---
10
target/arm/cpu.h | 2 ++
11
hw/intc/armv7m_nvic.c | 26 ++++++++++++++++++--------
12
2 files changed, 20 insertions(+), 8 deletions(-)
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 @@ FIELD(V7M_CCR, STKOFHFNMIGN, 10, 1)
19
FIELD(V7M_CCR, DC, 16, 1)
20
FIELD(V7M_CCR, IC, 17, 1)
21
FIELD(V7M_CCR, BP, 18, 1)
22
+FIELD(V7M_CCR, LOB, 19, 1)
23
+FIELD(V7M_CCR, TRD, 20, 1)
24
25
/* V7M SCR bits */
26
FIELD(V7M_SCR, SLEEPONEXIT, 1, 1)
27
diff --git a/hw/intc/armv7m_nvic.c b/hw/intc/armv7m_nvic.c
28
index XXXXXXX..XXXXXXX 100644
29
--- a/hw/intc/armv7m_nvic.c
30
+++ b/hw/intc/armv7m_nvic.c
31
@@ -XXX,XX +XXX,XX @@ static uint32_t nvic_readl(NVICState *s, uint32_t offset, MemTxAttrs attrs)
32
}
33
return cpu->env.v7m.scr[attrs.secure];
34
case 0xd14: /* Configuration Control. */
35
- /* The BFHFNMIGN bit is the only non-banked bit; we
36
- * keep it in the non-secure copy of the register.
37
+ /*
38
+ * Non-banked bits: BFHFNMIGN (stored in the NS copy of the register)
39
+ * and TRD (stored in the S copy of the register)
40
*/
41
val = cpu->env.v7m.ccr[attrs.secure];
42
val |= cpu->env.v7m.ccr[M_REG_NS] & R_V7M_CCR_BFHFNMIGN_MASK;
43
@@ -XXX,XX +XXX,XX @@ static void nvic_writel(NVICState *s, uint32_t offset, uint32_t value,
44
cpu->env.v7m.scr[attrs.secure] = value;
45
break;
46
case 0xd14: /* Configuration Control. */
47
+ {
48
+ uint32_t mask;
49
+
50
if (!arm_feature(&cpu->env, ARM_FEATURE_M_MAIN)) {
51
goto bad_offset;
52
}
53
54
/* Enforce RAZ/WI on reserved and must-RAZ/WI bits */
55
- value &= (R_V7M_CCR_STKALIGN_MASK |
56
- R_V7M_CCR_BFHFNMIGN_MASK |
57
- R_V7M_CCR_DIV_0_TRP_MASK |
58
- R_V7M_CCR_UNALIGN_TRP_MASK |
59
- R_V7M_CCR_USERSETMPEND_MASK |
60
- R_V7M_CCR_NONBASETHRDENA_MASK);
61
+ mask = R_V7M_CCR_STKALIGN_MASK |
62
+ R_V7M_CCR_BFHFNMIGN_MASK |
63
+ R_V7M_CCR_DIV_0_TRP_MASK |
64
+ R_V7M_CCR_UNALIGN_TRP_MASK |
65
+ R_V7M_CCR_USERSETMPEND_MASK |
66
+ R_V7M_CCR_NONBASETHRDENA_MASK;
67
+ if (arm_feature(&cpu->env, ARM_FEATURE_V8_1M) && attrs.secure) {
68
+ /* TRD is always RAZ/WI from NS */
69
+ mask |= R_V7M_CCR_TRD_MASK;
70
+ }
71
+ value &= mask;
72
73
if (arm_feature(&cpu->env, ARM_FEATURE_V8)) {
74
/* v8M makes NONBASETHRDENA and STKALIGN be RES1 */
75
@@ -XXX,XX +XXX,XX @@ static void nvic_writel(NVICState *s, uint32_t offset, uint32_t value,
76
77
cpu->env.v7m.ccr[attrs.secure] = value;
78
break;
79
+ }
80
case 0xd24: /* System Handler Control and State (SHCSR) */
81
if (!arm_feature(&cpu->env, ARM_FEATURE_V7)) {
82
goto bad_offset;
83
--
84
2.20.1
85
86
diff view generated by jsdifflib
1
Factor out the "boot via firmware" code path from arm_load_kernel()
1
v8.1M introduces a new TRD flag in the CCR register, which enables
2
into its own function.
2
checking for stack frame integrity signatures on SG instructions.
3
3
Add the code in the SG insn implementation for the new behaviour.
4
This commit only moves code around; no semantic changes.
5
4
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
6
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Reviewed-by: Igor Mammedov <imammedo@redhat.com>
7
Message-id: 20201119215617.29887-24-peter.maydell@linaro.org
9
Message-id: 20190131112240.8395-4-peter.maydell@linaro.org
10
---
8
---
11
hw/arm/boot.c | 92 +++++++++++++++++++++++++++------------------------
9
target/arm/m_helper.c | 86 +++++++++++++++++++++++++++++++++++++++++++
12
1 file changed, 49 insertions(+), 43 deletions(-)
10
1 file changed, 86 insertions(+)
13
11
14
diff --git a/hw/arm/boot.c b/hw/arm/boot.c
12
diff --git a/target/arm/m_helper.c b/target/arm/m_helper.c
15
index XXXXXXX..XXXXXXX 100644
13
index XXXXXXX..XXXXXXX 100644
16
--- a/hw/arm/boot.c
14
--- a/target/arm/m_helper.c
17
+++ b/hw/arm/boot.c
15
+++ b/target/arm/m_helper.c
18
@@ -XXX,XX +XXX,XX @@ static void arm_setup_direct_kernel_boot(ARMCPU *cpu,
16
@@ -XXX,XX +XXX,XX @@ static bool v7m_read_half_insn(ARMCPU *cpu, ARMMMUIdx mmu_idx,
19
}
17
return true;
20
}
18
}
21
19
22
+static void arm_setup_firmware_boot(ARMCPU *cpu, struct arm_boot_info *info)
20
+static bool v7m_read_sg_stack_word(ARMCPU *cpu, ARMMMUIdx mmu_idx,
21
+ uint32_t addr, uint32_t *spdata)
23
+{
22
+{
24
+ /* Set up for booting firmware (which might load a kernel via fw_cfg) */
23
+ /*
24
+ * Read a word of data from the stack for the SG instruction,
25
+ * writing the value into *spdata. If the load succeeds, return
26
+ * true; otherwise pend an appropriate exception and return false.
27
+ * (We can't use data load helpers here that throw an exception
28
+ * because of the context we're called in, which is halfway through
29
+ * arm_v7m_cpu_do_interrupt().)
30
+ */
31
+ CPUState *cs = CPU(cpu);
32
+ CPUARMState *env = &cpu->env;
33
+ MemTxAttrs attrs = {};
34
+ MemTxResult txres;
35
+ target_ulong page_size;
36
+ hwaddr physaddr;
37
+ int prot;
38
+ ARMMMUFaultInfo fi = {};
39
+ ARMCacheAttrs cacheattrs = {};
40
+ uint32_t value;
25
+
41
+
26
+ if (have_dtb(info)) {
42
+ if (get_phys_addr(env, addr, MMU_DATA_LOAD, mmu_idx, &physaddr,
27
+ /*
43
+ &attrs, &prot, &page_size, &fi, &cacheattrs)) {
28
+ * If we have a device tree blob, but no kernel to supply it to (or
44
+ /* MPU/SAU lookup failed */
29
+ * the kernel is supposed to be loaded by the bootloader), copy the
45
+ if (fi.type == ARMFault_QEMU_SFault) {
30
+ * DTB to the base of RAM for the bootloader to pick up.
46
+ qemu_log_mask(CPU_LOG_INT,
31
+ */
47
+ "...SecureFault during stack word read\n");
32
+ info->dtb_start = info->loader_start;
48
+ env->v7m.sfsr |= R_V7M_SFSR_AUVIOL_MASK | R_V7M_SFSR_SFARVALID_MASK;
49
+ env->v7m.sfar = addr;
50
+ armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false);
51
+ } else {
52
+ qemu_log_mask(CPU_LOG_INT,
53
+ "...MemManageFault during stack word read\n");
54
+ env->v7m.cfsr[M_REG_S] |= R_V7M_CFSR_DACCVIOL_MASK |
55
+ R_V7M_CFSR_MMARVALID_MASK;
56
+ env->v7m.mmfar[M_REG_S] = addr;
57
+ armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_MEM, false);
58
+ }
59
+ return false;
60
+ }
61
+ value = address_space_ldl(arm_addressspace(cs, attrs), physaddr,
62
+ attrs, &txres);
63
+ if (txres != MEMTX_OK) {
64
+ /* BusFault trying to read the data */
65
+ qemu_log_mask(CPU_LOG_INT,
66
+ "...BusFault during stack word read\n");
67
+ env->v7m.cfsr[M_REG_NS] |=
68
+ (R_V7M_CFSR_PRECISERR_MASK | R_V7M_CFSR_BFARVALID_MASK);
69
+ env->v7m.bfar = addr;
70
+ armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_BUS, false);
71
+ return false;
33
+ }
72
+ }
34
+
73
+
35
+ if (info->kernel_filename) {
74
+ *spdata = value;
36
+ FWCfgState *fw_cfg;
75
+ return true;
37
+ bool try_decompressing_kernel;
76
+}
38
+
77
+
39
+ fw_cfg = fw_cfg_find();
78
static bool v7m_handle_execute_nsc(ARMCPU *cpu)
40
+ try_decompressing_kernel = arm_feature(&cpu->env,
79
{
41
+ ARM_FEATURE_AARCH64);
80
/*
81
@@ -XXX,XX +XXX,XX @@ static bool v7m_handle_execute_nsc(ARMCPU *cpu)
82
*/
83
qemu_log_mask(CPU_LOG_INT, "...really an SG instruction at 0x%08" PRIx32
84
", executing it\n", env->regs[15]);
85
+
86
+ if (cpu_isar_feature(aa32_m_sec_state, cpu) &&
87
+ !arm_v7m_is_handler_mode(env)) {
88
+ /*
89
+ * v8.1M exception stack frame integrity check. Note that we
90
+ * must perform the memory access even if CCR_S.TRD is zero
91
+ * and we aren't going to check what the data loaded is.
92
+ */
93
+ uint32_t spdata, sp;
42
+
94
+
43
+ /*
95
+ /*
44
+ * Expose the kernel, the command line, and the initrd in fw_cfg.
96
+ * We know we are currently NS, so the S stack pointers must be
45
+ * We don't process them here at all, it's all left to the
97
+ * in other_ss_{psp,msp}, not in regs[13]/other_sp.
46
+ * firmware.
47
+ */
98
+ */
48
+ load_image_to_fw_cfg(fw_cfg,
99
+ sp = v7m_using_psp(env) ? env->v7m.other_ss_psp : env->v7m.other_ss_msp;
49
+ FW_CFG_KERNEL_SIZE, FW_CFG_KERNEL_DATA,
100
+ if (!v7m_read_sg_stack_word(cpu, mmu_idx, sp, &spdata)) {
50
+ info->kernel_filename,
101
+ /* Stack access failed and an exception has been pended */
51
+ try_decompressing_kernel);
102
+ return false;
52
+ load_image_to_fw_cfg(fw_cfg,
103
+ }
53
+ FW_CFG_INITRD_SIZE, FW_CFG_INITRD_DATA,
54
+ info->initrd_filename, false);
55
+
104
+
56
+ if (info->kernel_cmdline) {
105
+ if (env->v7m.ccr[M_REG_S] & R_V7M_CCR_TRD_MASK) {
57
+ fw_cfg_add_i32(fw_cfg, FW_CFG_CMDLINE_SIZE,
106
+ if (((spdata & ~1) == 0xfefa125a) ||
58
+ strlen(info->kernel_cmdline) + 1);
107
+ !(env->v7m.control[M_REG_S] & 1)) {
59
+ fw_cfg_add_string(fw_cfg, FW_CFG_CMDLINE_DATA,
108
+ goto gen_invep;
60
+ info->kernel_cmdline);
109
+ }
61
+ }
110
+ }
62
+ }
111
+ }
63
+
112
+
64
+ /*
113
env->regs[14] &= ~1;
65
+ * We will start from address 0 (typically a boot ROM image) in the
114
env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_SFPA_MASK;
66
+ * same way as hardware.
115
switch_v7m_security_state(env, true);
67
+ */
68
+}
69
+
70
void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
71
{
72
CPUState *cs;
73
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
74
75
/* Load the kernel. */
76
if (!info->kernel_filename || info->firmware_loaded) {
77
-
78
- if (have_dtb(info)) {
79
- /*
80
- * If we have a device tree blob, but no kernel to supply it to (or
81
- * the kernel is supposed to be loaded by the bootloader), copy the
82
- * DTB to the base of RAM for the bootloader to pick up.
83
- */
84
- info->dtb_start = info->loader_start;
85
- }
86
-
87
- if (info->kernel_filename) {
88
- FWCfgState *fw_cfg;
89
- bool try_decompressing_kernel;
90
-
91
- fw_cfg = fw_cfg_find();
92
- try_decompressing_kernel = arm_feature(&cpu->env,
93
- ARM_FEATURE_AARCH64);
94
-
95
- /*
96
- * Expose the kernel, the command line, and the initrd in fw_cfg.
97
- * We don't process them here at all, it's all left to the
98
- * firmware.
99
- */
100
- load_image_to_fw_cfg(fw_cfg,
101
- FW_CFG_KERNEL_SIZE, FW_CFG_KERNEL_DATA,
102
- info->kernel_filename,
103
- try_decompressing_kernel);
104
- load_image_to_fw_cfg(fw_cfg,
105
- FW_CFG_INITRD_SIZE, FW_CFG_INITRD_DATA,
106
- info->initrd_filename, false);
107
-
108
- if (info->kernel_cmdline) {
109
- fw_cfg_add_i32(fw_cfg, FW_CFG_CMDLINE_SIZE,
110
- strlen(info->kernel_cmdline) + 1);
111
- fw_cfg_add_string(fw_cfg, FW_CFG_CMDLINE_DATA,
112
- info->kernel_cmdline);
113
- }
114
- }
115
-
116
- /*
117
- * We will start from address 0 (typically a boot ROM image) in the
118
- * same way as hardware.
119
- */
120
+ arm_setup_firmware_boot(cpu, info);
121
return;
122
} else {
123
arm_setup_direct_kernel_boot(cpu, info);
124
--
116
--
125
2.20.1
117
2.20.1
126
118
127
119
diff view generated by jsdifflib
1
Fix the block comment style in arm_load_kernel() to QEMU's
1
In commit 077d7449100d824a4 we added code to handle the v8M
2
current style preferences. This will allow us to do some
2
requirement that returns from NMI or HardFault forcibly deactivate
3
refactoring of this function without checkpatch complaining
3
those exceptions regardless of what interrupt the guest is trying to
4
about the code-motion patches.
4
deactivate. Unfortunately this broke the handling of the "illegal
5
exception return because the returning exception number is not
6
active" check for those cases. In the pseudocode this test is done
7
on the exception the guest asks to return from, but because our
8
implementation was doing this in armv7m_nvic_complete_irq() after the
9
new "deactivate NMI/HardFault regardless" code we ended up doing the
10
test on the VecInfo for that exception instead, which usually meant
11
failing to raise the illegal exception return fault.
12
13
In the case for "configurable exception targeting the opposite
14
security state" we detected the illegal-return case but went ahead
15
and deactivated the VecInfo anyway, which is wrong because that is
16
the VecInfo for the other security state.
17
18
Rearrange the code so that we first identify the illegal return
19
cases, then see if we really need to deactivate NMI or HardFault
20
instead, and finally do the deactivation.
5
21
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
22
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
23
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
8
Reviewed-by: Igor Mammedov <imammedo@redhat.com>
24
Message-id: 20201119215617.29887-25-peter.maydell@linaro.org
9
Message-id: 20190131112240.8395-2-peter.maydell@linaro.org
10
---
25
---
11
hw/arm/boot.c | 30 ++++++++++++++++++++----------
26
hw/intc/armv7m_nvic.c | 59 +++++++++++++++++++++++--------------------
12
1 file changed, 20 insertions(+), 10 deletions(-)
27
1 file changed, 32 insertions(+), 27 deletions(-)
13
28
14
diff --git a/hw/arm/boot.c b/hw/arm/boot.c
29
diff --git a/hw/intc/armv7m_nvic.c b/hw/intc/armv7m_nvic.c
15
index XXXXXXX..XXXXXXX 100644
30
index XXXXXXX..XXXXXXX 100644
16
--- a/hw/arm/boot.c
31
--- a/hw/intc/armv7m_nvic.c
17
+++ b/hw/arm/boot.c
32
+++ b/hw/intc/armv7m_nvic.c
18
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
33
@@ -XXX,XX +XXX,XX @@ int armv7m_nvic_complete_irq(void *opaque, int irq, bool secure)
19
static const ARMInsnFixup *primary_loader;
34
{
20
AddressSpace *as = arm_boot_address_space(cpu, info);
35
NVICState *s = (NVICState *)opaque;
21
36
VecInfo *vec = NULL;
22
- /* CPU objects (unlike devices) are not automatically reset on system
37
- int ret;
38
+ int ret = 0;
39
40
assert(irq > ARMV7M_EXCP_RESET && irq < s->num_irq);
41
42
+ trace_nvic_complete_irq(irq, secure);
43
+
44
+ if (secure && exc_is_banked(irq)) {
45
+ vec = &s->sec_vectors[irq];
46
+ } else {
47
+ vec = &s->vectors[irq];
48
+ }
49
+
23
+ /*
50
+ /*
24
+ * CPU objects (unlike devices) are not automatically reset on system
51
+ * Identify illegal exception return cases. We can't immediately
25
* reset, so we must always register a handler to do so. If we're
52
+ * return at this point because we still need to deactivate
26
* actually loading a kernel, the handler is also responsible for
53
+ * (either this exception or NMI/HardFault) first.
27
* arranging that we start it correctly.
54
+ */
28
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
55
+ if (!exc_is_banked(irq) && exc_targets_secure(s, irq) != secure) {
29
qemu_register_reset(do_cpu_reset, ARM_CPU(cs));
56
+ /*
57
+ * Return from a configurable exception targeting the opposite
58
+ * security state from the one we're trying to complete it for.
59
+ * Clear vec because it's not really the VecInfo for this
60
+ * (irq, secstate) so we mustn't deactivate it.
61
+ */
62
+ ret = -1;
63
+ vec = NULL;
64
+ } else if (!vec->active) {
65
+ /* Return from an inactive interrupt */
66
+ ret = -1;
67
+ } else {
68
+ /* Legal return, we will return the RETTOBASE bit value to the caller */
69
+ ret = nvic_rettobase(s);
70
+ }
71
+
72
/*
73
* For negative priorities, v8M will forcibly deactivate the appropriate
74
* NMI or HardFault regardless of what interrupt we're being asked to
75
@@ -XXX,XX +XXX,XX @@ int armv7m_nvic_complete_irq(void *opaque, int irq, bool secure)
30
}
76
}
31
77
32
- /* The board code is not supposed to set secure_board_setup unless
78
if (!vec) {
33
+ /*
79
- if (secure && exc_is_banked(irq)) {
34
+ * The board code is not supposed to set secure_board_setup unless
80
- vec = &s->sec_vectors[irq];
35
* running its code in secure mode is actually possible, and KVM
81
- } else {
36
* doesn't support secure.
82
- vec = &s->vectors[irq];
37
*/
83
- }
38
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
84
- }
39
if (!info->kernel_filename || info->firmware_loaded) {
85
-
40
86
- trace_nvic_complete_irq(irq, secure);
41
if (have_dtb(info)) {
87
-
42
- /* If we have a device tree blob, but no kernel to supply it to (or
88
- if (!vec->active) {
43
+ /*
89
- /* Tell the caller this was an illegal exception return */
44
+ * If we have a device tree blob, but no kernel to supply it to (or
90
- return -1;
45
* the kernel is supposed to be loaded by the bootloader), copy the
91
- }
46
* DTB to the base of RAM for the bootloader to pick up.
92
-
47
*/
93
- /*
48
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
94
- * If this is a configurable exception and it is currently
49
try_decompressing_kernel = arm_feature(&cpu->env,
95
- * targeting the opposite security state from the one we're trying
50
ARM_FEATURE_AARCH64);
96
- * to complete it for, this counts as an illegal exception return.
51
97
- * We still need to deactivate whatever vector the logic above has
52
- /* Expose the kernel, the command line, and the initrd in fw_cfg.
98
- * selected, though, as it might not be the same as the one for the
53
+ /*
99
- * requested exception number.
54
+ * Expose the kernel, the command line, and the initrd in fw_cfg.
100
- */
55
* We don't process them here at all, it's all left to the
101
- if (!exc_is_banked(irq) && exc_targets_secure(s, irq) != secure) {
56
* firmware.
102
- ret = -1;
57
*/
103
- } else {
58
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
104
- ret = nvic_rettobase(s);
59
}
105
+ return ret;
60
}
106
}
61
107
62
- /* We will start from address 0 (typically a boot ROM image) in the
108
vec->active = 0;
63
+ /*
64
+ * We will start from address 0 (typically a boot ROM image) in the
65
* same way as hardware.
66
*/
67
return;
68
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
69
if (info->nb_cpus == 0)
70
info->nb_cpus = 1;
71
72
- /* We want to put the initrd far enough into RAM that when the
73
+ /*
74
+ * We want to put the initrd far enough into RAM that when the
75
* kernel is uncompressed it will not clobber the initrd. However
76
* on boards without much RAM we must ensure that we still leave
77
* enough room for a decent sized initrd, and on boards with large
78
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
79
kernel_size = arm_load_elf(info, &elf_entry, &elf_low_addr,
80
&elf_high_addr, elf_machine, as);
81
if (kernel_size > 0 && have_dtb(info)) {
82
- /* If there is still some room left at the base of RAM, try and put
83
+ /*
84
+ * If there is still some room left at the base of RAM, try and put
85
* the DTB there like we do for images loaded with -bios or -pflash.
86
*/
87
if (elf_low_addr > info->loader_start
88
|| elf_high_addr < info->loader_start) {
89
- /* Set elf_low_addr as address limit for arm_load_dtb if it may be
90
+ /*
91
+ * Set elf_low_addr as address limit for arm_load_dtb if it may be
92
* pointing into RAM, otherwise pass '0' (no limit)
93
*/
94
if (elf_low_addr < info->loader_start) {
95
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
96
fixupcontext[FIXUP_BOARDID] = info->board_id;
97
fixupcontext[FIXUP_BOARD_SETUP] = info->board_setup_addr;
98
99
- /* for device tree boot, we pass the DTB directly in r2. Otherwise
100
+ /*
101
+ * for device tree boot, we pass the DTB directly in r2. Otherwise
102
* we point to the kernel args.
103
*/
104
if (have_dtb(info)) {
105
@@ -XXX,XX +XXX,XX @@ void arm_load_kernel(ARMCPU *cpu, struct arm_boot_info *info)
106
info->write_board_setup(cpu, info);
107
}
108
109
- /* Notify devices which need to fake up firmware initialization
110
+ /*
111
+ * Notify devices which need to fake up firmware initialization
112
* that we're doing a direct kernel boot.
113
*/
114
object_child_foreach_recursive(object_get_root(),
115
--
109
--
116
2.20.1
110
2.20.1
117
111
118
112
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
For v8.1M the architecture mandates that CPUs must provide at
2
least the "minimal RAS implementation" from the Reliability,
3
Availability and Serviceability extension. This consists of:
4
* an ESB instruction which is a NOP
5
-- since it is in the HINT space we need only add a comment
6
* an RFSR register which will RAZ/WI
7
* a RAZ/WI AIRCR.IESB bit
8
-- the code which handles writes to AIRCR does not allow setting
9
of RES0 bits, so we already treat this as RAZ/WI; add a comment
10
noting that this is deliberate
11
* minimal implementation of the RAS register block at 0xe0005000
12
-- this will be in a subsequent commit
13
* setting the ID_PFR0.RAS field to 0b0010
14
-- we will do this when we add the Cortex-M55 CPU model
2
15
3
Also create field definitions for id_aa64pfr1 from ARMv8.5.
4
5
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
7
Message-id: 20190128223118.5255-2-richard.henderson@linaro.org
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
16
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
17
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
18
Message-id: 20201119215617.29887-26-peter.maydell@linaro.org
9
---
19
---
10
target/arm/cpu.h | 10 ++++++++++
20
target/arm/cpu.h | 14 ++++++++++++++
11
1 file changed, 10 insertions(+)
21
target/arm/t32.decode | 4 ++++
22
hw/intc/armv7m_nvic.c | 13 +++++++++++++
23
3 files changed, 31 insertions(+)
12
24
13
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
25
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
14
index XXXXXXX..XXXXXXX 100644
26
index XXXXXXX..XXXXXXX 100644
15
--- a/target/arm/cpu.h
27
--- a/target/arm/cpu.h
16
+++ b/target/arm/cpu.h
28
+++ b/target/arm/cpu.h
17
@@ -XXX,XX +XXX,XX @@ FIELD(ID_AA64PFR0, GIC, 24, 4)
29
@@ -XXX,XX +XXX,XX @@ FIELD(ID_MMFR4, LSM, 20, 4)
18
FIELD(ID_AA64PFR0, RAS, 28, 4)
30
FIELD(ID_MMFR4, CCIDX, 24, 4)
19
FIELD(ID_AA64PFR0, SVE, 32, 4)
31
FIELD(ID_MMFR4, EVT, 28, 4)
20
32
21
+FIELD(ID_AA64PFR1, BT, 0, 4)
33
+FIELD(ID_PFR0, STATE0, 0, 4)
22
+FIELD(ID_AA64PFR1, SBSS, 4, 4)
34
+FIELD(ID_PFR0, STATE1, 4, 4)
23
+FIELD(ID_AA64PFR1, MTE, 8, 4)
35
+FIELD(ID_PFR0, STATE2, 8, 4)
24
+FIELD(ID_AA64PFR1, RAS_FRAC, 12, 4)
36
+FIELD(ID_PFR0, STATE3, 12, 4)
37
+FIELD(ID_PFR0, CSV2, 16, 4)
38
+FIELD(ID_PFR0, AMU, 20, 4)
39
+FIELD(ID_PFR0, DIT, 24, 4)
40
+FIELD(ID_PFR0, RAS, 28, 4)
25
+
41
+
26
FIELD(ID_AA64MMFR0, PARANGE, 0, 4)
42
FIELD(ID_PFR1, PROGMOD, 0, 4)
27
FIELD(ID_AA64MMFR0, ASIDBITS, 4, 4)
43
FIELD(ID_PFR1, SECURITY, 4, 4)
28
FIELD(ID_AA64MMFR0, BIGEND, 8, 4)
44
FIELD(ID_PFR1, MPROGMOD, 8, 4)
29
@@ -XXX,XX +XXX,XX @@ static inline bool isar_feature_aa64_lor(const ARMISARegisters *id)
45
@@ -XXX,XX +XXX,XX @@ static inline bool isar_feature_aa32_predinv(const ARMISARegisters *id)
30
return FIELD_EX64(id->id_aa64mmfr1, ID_AA64MMFR1, LO) != 0;
46
return FIELD_EX32(id->id_isar6, ID_ISAR6, SPECRES) != 0;
31
}
47
}
32
48
33
+static inline bool isar_feature_aa64_bti(const ARMISARegisters *id)
49
+static inline bool isar_feature_aa32_ras(const ARMISARegisters *id)
34
+{
50
+{
35
+ return FIELD_EX64(id->id_aa64pfr1, ID_AA64PFR1, BT) != 0;
51
+ return FIELD_EX32(id->id_pfr0, ID_PFR0, RAS) != 0;
36
+}
52
+}
37
+
53
+
38
/*
54
static inline bool isar_feature_aa32_mprofile(const ARMISARegisters *id)
39
* Forward to the above feature tests given an ARMCPU pointer.
55
{
40
*/
56
return FIELD_EX32(id->id_pfr1, ID_PFR1, MPROGMOD) != 0;
57
diff --git a/target/arm/t32.decode b/target/arm/t32.decode
58
index XXXXXXX..XXXXXXX 100644
59
--- a/target/arm/t32.decode
60
+++ b/target/arm/t32.decode
61
@@ -XXX,XX +XXX,XX @@ CLZ 1111 1010 1011 ---- 1111 .... 1000 .... @rdm
62
# SEV 1111 0011 1010 1111 1000 0000 0000 0100
63
# SEVL 1111 0011 1010 1111 1000 0000 0000 0101
64
65
+ # For M-profile minimal-RAS ESB can be a NOP, which is the
66
+ # default behaviour since it is in the hint space.
67
+ # ESB 1111 0011 1010 1111 1000 0000 0001 0000
68
+
69
# The canonical nop ends in 0000 0000, but the whole rest
70
# of the space is "reserved hint, behaves as nop".
71
NOP 1111 0011 1010 1111 1000 0000 ---- ----
72
diff --git a/hw/intc/armv7m_nvic.c b/hw/intc/armv7m_nvic.c
73
index XXXXXXX..XXXXXXX 100644
74
--- a/hw/intc/armv7m_nvic.c
75
+++ b/hw/intc/armv7m_nvic.c
76
@@ -XXX,XX +XXX,XX @@ static uint32_t nvic_readl(NVICState *s, uint32_t offset, MemTxAttrs attrs)
77
return 0;
78
}
79
return cpu->env.v7m.sfar;
80
+ case 0xf04: /* RFSR */
81
+ if (!cpu_isar_feature(aa32_ras, cpu)) {
82
+ goto bad_offset;
83
+ }
84
+ /* We provide minimal-RAS only: RFSR is RAZ/WI */
85
+ return 0;
86
case 0xf34: /* FPCCR */
87
if (!cpu_isar_feature(aa32_vfp_simd, cpu)) {
88
return 0;
89
@@ -XXX,XX +XXX,XX @@ static void nvic_writel(NVICState *s, uint32_t offset, uint32_t value,
90
R_V7M_AIRCR_PRIGROUP_SHIFT,
91
R_V7M_AIRCR_PRIGROUP_LENGTH);
92
}
93
+ /* AIRCR.IESB is RAZ/WI because we implement only minimal RAS */
94
if (attrs.secure) {
95
/* These bits are only writable by secure */
96
cpu->env.v7m.aircr = value &
97
@@ -XXX,XX +XXX,XX @@ static void nvic_writel(NVICState *s, uint32_t offset, uint32_t value,
98
}
99
break;
100
}
101
+ case 0xf04: /* RFSR */
102
+ if (!cpu_isar_feature(aa32_ras, cpu)) {
103
+ goto bad_offset;
104
+ }
105
+ /* We provide minimal-RAS only: RFSR is RAZ/WI */
106
+ break;
107
case 0xf34: /* FPCCR */
108
if (cpu_isar_feature(aa32_vfp_simd, cpu)) {
109
/* Not all bits here are banked. */
41
--
110
--
42
2.20.1
111
2.20.1
43
112
44
113
diff view generated by jsdifflib
1
From: Richard Henderson <richard.henderson@linaro.org>
1
The RAS feature has a block of memory-mapped registers at offset
2
0x5000 within the PPB. For a "minimal RAS" implementation we provide
3
no error records and so the only registers that exist in the block
4
are ERRIIDR and ERRDEVID.
2
5
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
The "RAZ/WI for privileged, BusFault for nonprivileged" behaviour
4
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
7
of the "nvic-default" region is actually valid for minimal-RAS,
5
Message-id: 20190128223118.5255-9-richard.henderson@linaro.org
8
so the main benefit of providing an explicit implementation of
9
the register block is more accurate LOG_UNIMP messages, and a
10
framework for where we could add a real RAS implementation later
11
if necessary.
12
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
15
Message-id: 20201119215617.29887-27-peter.maydell@linaro.org
7
---
16
---
8
target/arm/translate-a64.c | 37 ++++++++++++++++++++++++++++++++++++-
17
include/hw/intc/armv7m_nvic.h | 1 +
9
1 file changed, 36 insertions(+), 1 deletion(-)
18
hw/intc/armv7m_nvic.c | 56 +++++++++++++++++++++++++++++++++++
19
2 files changed, 57 insertions(+)
10
20
11
diff --git a/target/arm/translate-a64.c b/target/arm/translate-a64.c
21
diff --git a/include/hw/intc/armv7m_nvic.h b/include/hw/intc/armv7m_nvic.h
12
index XXXXXXX..XXXXXXX 100644
22
index XXXXXXX..XXXXXXX 100644
13
--- a/target/arm/translate-a64.c
23
--- a/include/hw/intc/armv7m_nvic.h
14
+++ b/target/arm/translate-a64.c
24
+++ b/include/hw/intc/armv7m_nvic.h
15
@@ -XXX,XX +XXX,XX @@ static void reset_btype(DisasContext *s)
25
@@ -XXX,XX +XXX,XX @@ struct NVICState {
16
}
26
MemoryRegion sysreg_ns_mem;
17
}
27
MemoryRegion systickmem;
18
28
MemoryRegion systick_ns_mem;
19
+static void set_btype(DisasContext *s, int val)
29
+ MemoryRegion ras_mem;
30
MemoryRegion container;
31
MemoryRegion defaultmem;
32
33
diff --git a/hw/intc/armv7m_nvic.c b/hw/intc/armv7m_nvic.c
34
index XXXXXXX..XXXXXXX 100644
35
--- a/hw/intc/armv7m_nvic.c
36
+++ b/hw/intc/armv7m_nvic.c
37
@@ -XXX,XX +XXX,XX @@ static const MemoryRegionOps nvic_systick_ops = {
38
.endianness = DEVICE_NATIVE_ENDIAN,
39
};
40
41
+
42
+static MemTxResult ras_read(void *opaque, hwaddr addr,
43
+ uint64_t *data, unsigned size,
44
+ MemTxAttrs attrs)
20
+{
45
+{
21
+ TCGv_i32 tcg_val;
46
+ if (attrs.user) {
47
+ return MEMTX_ERROR;
48
+ }
22
+
49
+
23
+ /* BTYPE is a 2-bit field, and 0 should be done with reset_btype. */
50
+ switch (addr) {
24
+ tcg_debug_assert(val >= 1 && val <= 3);
51
+ case 0xe10: /* ERRIIDR */
25
+
52
+ /* architect field = Arm; product/variant/revision 0 */
26
+ tcg_val = tcg_const_i32(val);
53
+ *data = 0x43b;
27
+ tcg_gen_st_i32(tcg_val, cpu_env, offsetof(CPUARMState, btype));
54
+ break;
28
+ tcg_temp_free_i32(tcg_val);
55
+ case 0xfc8: /* ERRDEVID */
29
+ s->btype = -1;
56
+ /* Minimal RAS: we implement 0 error record indexes */
57
+ *data = 0;
58
+ break;
59
+ default:
60
+ qemu_log_mask(LOG_UNIMP, "Read RAS register offset 0x%x\n",
61
+ (uint32_t)addr);
62
+ *data = 0;
63
+ break;
64
+ }
65
+ return MEMTX_OK;
30
+}
66
+}
31
+
67
+
32
void aarch64_cpu_dump_state(CPUState *cs, FILE *f,
68
+static MemTxResult ras_write(void *opaque, hwaddr addr,
33
fprintf_function cpu_fprintf, int flags)
69
+ uint64_t value, unsigned size,
34
{
70
+ MemTxAttrs attrs)
35
@@ -XXX,XX +XXX,XX @@ static void disas_exc(DisasContext *s, uint32_t insn)
71
+{
36
static void disas_uncond_b_reg(DisasContext *s, uint32_t insn)
72
+ if (attrs.user) {
37
{
73
+ return MEMTX_ERROR;
38
unsigned int opc, op2, op3, rn, op4;
74
+ }
39
+ unsigned btype_mod = 2; /* 0: BR, 1: BLR, 2: other */
40
TCGv_i64 dst;
41
TCGv_i64 modifier;
42
43
@@ -XXX,XX +XXX,XX @@ static void disas_uncond_b_reg(DisasContext *s, uint32_t insn)
44
case 0: /* BR */
45
case 1: /* BLR */
46
case 2: /* RET */
47
+ btype_mod = opc;
48
switch (op3) {
49
case 0:
50
/* BR, BLR, RET */
51
@@ -XXX,XX +XXX,XX @@ static void disas_uncond_b_reg(DisasContext *s, uint32_t insn)
52
default:
53
goto do_unallocated;
54
}
55
-
56
gen_a64_set_pc(s, dst);
57
/* BLR also needs to load return address */
58
if (opc == 1) {
59
@@ -XXX,XX +XXX,XX @@ static void disas_uncond_b_reg(DisasContext *s, uint32_t insn)
60
if ((op3 & ~1) != 2) {
61
goto do_unallocated;
62
}
63
+ btype_mod = opc & 1;
64
if (s->pauth_active) {
65
dst = new_tmp_a64(s);
66
modifier = cpu_reg_sp(s, op4);
67
@@ -XXX,XX +XXX,XX @@ static void disas_uncond_b_reg(DisasContext *s, uint32_t insn)
68
return;
69
}
70
71
+ switch (btype_mod) {
72
+ case 0: /* BR */
73
+ if (dc_isar_feature(aa64_bti, s)) {
74
+ /* BR to {x16,x17} or !guard -> 1, else 3. */
75
+ set_btype(s, rn == 16 || rn == 17 || !s->guarded_page ? 1 : 3);
76
+ }
77
+ break;
78
+
75
+
79
+ case 1: /* BLR */
76
+ switch (addr) {
80
+ if (dc_isar_feature(aa64_bti, s)) {
77
+ default:
81
+ /* BLR sets BTYPE to 2, regardless of source guarded page. */
78
+ qemu_log_mask(LOG_UNIMP, "Write to RAS register offset 0x%x\n",
82
+ set_btype(s, 2);
79
+ (uint32_t)addr);
83
+ }
84
+ break;
85
+
86
+ default: /* RET or none of the above. */
87
+ /* BTYPE will be set to 0 by normal end-of-insn processing. */
88
+ break;
80
+ break;
89
+ }
81
+ }
82
+ return MEMTX_OK;
83
+}
90
+
84
+
91
s->base.is_jmp = DISAS_JUMP;
85
+static const MemoryRegionOps ras_ops = {
86
+ .read_with_attrs = ras_read,
87
+ .write_with_attrs = ras_write,
88
+ .endianness = DEVICE_NATIVE_ENDIAN,
89
+};
90
+
91
/*
92
* Unassigned portions of the PPB space are RAZ/WI for privileged
93
* accesses, and fault for non-privileged accesses.
94
@@ -XXX,XX +XXX,XX @@ static void armv7m_nvic_realize(DeviceState *dev, Error **errp)
95
&s->systick_ns_mem, 1);
96
}
97
98
+ if (cpu_isar_feature(aa32_ras, s->cpu)) {
99
+ memory_region_init_io(&s->ras_mem, OBJECT(s),
100
+ &ras_ops, s, "nvic_ras", 0x1000);
101
+ memory_region_add_subregion(&s->container, 0x5000, &s->ras_mem);
102
+ }
103
+
104
sysbus_init_mmio(SYS_BUS_DEVICE(dev), &s->container);
92
}
105
}
93
106
94
--
107
--
95
2.20.1
108
2.20.1
96
109
97
110
diff view generated by jsdifflib
New patch
1
Correct a typo in the name we give the NVIC object.
1
2
3
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
4
Reviewed-by: Philippe Mathieu-Daudé <f4bug@amsat.org>
5
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
6
Message-id: 20201119215617.29887-28-peter.maydell@linaro.org
7
---
8
hw/arm/armv7m.c | 2 +-
9
1 file changed, 1 insertion(+), 1 deletion(-)
10
11
diff --git a/hw/arm/armv7m.c b/hw/arm/armv7m.c
12
index XXXXXXX..XXXXXXX 100644
13
--- a/hw/arm/armv7m.c
14
+++ b/hw/arm/armv7m.c
15
@@ -XXX,XX +XXX,XX @@ static void armv7m_instance_init(Object *obj)
16
17
memory_region_init(&s->container, obj, "armv7m-container", UINT64_MAX);
18
19
- object_initialize_child(obj, "nvnic", &s->nvic, TYPE_NVIC);
20
+ object_initialize_child(obj, "nvic", &s->nvic, TYPE_NVIC);
21
object_property_add_alias(obj, "num-irq",
22
OBJECT(&s->nvic), "num-irq");
23
24
--
25
2.20.1
26
27
diff view generated by jsdifflib