1
Some arm patches; my to-review queue is by no means empty, but
1
The following changes since commit f003dd8d81f7d88f4b1f8802309eaa76f6eb223a:
2
this is a big enough set of patches to be getting on with...
3
2
4
-- PMM
3
Merge tag 'pull-tcg-20230305' of https://gitlab.com/rth7680/qemu into staging (2023-03-06 10:20:04 +0000)
5
6
The following changes since commit cb9c6a8e5ad6a1f0ce164d352e3102df46986e22:
7
8
.gitlab-ci.d/windows: Work-around timeout and OpenGL problems of the MSYS2 jobs (2023-01-04 18:58:33 +0000)
9
4
10
are available in the Git repository at:
5
are available in the Git repository at:
11
6
12
https://git.linaro.org/people/pmaydell/qemu-arm.git tags/pull-target-arm-20230105
7
https://git.linaro.org/people/pmaydell/qemu-arm.git tags/pull-target-arm-20230306
13
8
14
for you to fetch changes up to 93c9678de9dc7d2e68f9e8477da072bac30ef132:
9
for you to fetch changes up to 2ddc45954f97cd1d7ee5cbca0def05e980d1da9f:
15
10
16
hw/net: Fix read of uninitialized memory in imx_fec. (2023-01-05 15:33:00 +0000)
11
hw: arm: allwinner-h3: Fix and complete H3 i2c devices (2023-03-06 15:31:24 +0000)
17
12
18
----------------------------------------------------------------
13
----------------------------------------------------------------
19
target-arm queue:
14
target-arm queue:
20
* Implement AArch32 ARMv8-R support
15
* allwinner-h3: Fix I2C controller model for Sun6i SoCs
21
* Add Cortex-R52 CPU
16
* allwinner-h3: Add missing i2c controllers
22
* fix handling of HLT semihosting in system mode
17
* Expose M-profile system registers to gdbstub
23
* hw/timer/ixm_epit: cleanup and fix bug in compare handling
18
* Expose pauth information to gdbstub
24
* target/arm: Coding style fixes
19
* Support direct boot for Linux/arm64 EFI zboot images
25
* target/arm: Clean up includes
20
* Fix incorrect stage 2 MMU setup validation
26
* nseries: minor code cleanups
27
* target/arm: align exposed ID registers with Linux
28
* hw/arm/smmu-common: remove unnecessary inlines
29
* i.MX7D: Handle GPT timers
30
* i.MX7D: Connect IRQs to GPIO devices
31
* i.MX6UL: Add a specific GPT timer instance
32
* hw/net: Fix read of uninitialized memory in imx_fec
33
21
34
----------------------------------------------------------------
22
----------------------------------------------------------------
35
Alex Bennée (1):
23
Ard Biesheuvel (1):
36
target/arm: fix handling of HLT semihosting in system mode
24
hw: arm: Support direct boot for Linux/arm64 EFI zboot images
37
25
38
Axel Heider (8):
26
David Reiss (2):
39
hw/timer/imx_epit: improve comments
27
target/arm: Export arm_v7m_mrs_control
40
hw/timer/imx_epit: cleanup CR defines
28
target/arm: Export arm_v7m_get_sp_ptr
41
hw/timer/imx_epit: define SR_OCIF
42
hw/timer/imx_epit: update interrupt state on CR write access
43
hw/timer/imx_epit: hard reset initializes CR with 0
44
hw/timer/imx_epit: factor out register write handlers
45
hw/timer/imx_epit: remove explicit fields cnt and freq
46
hw/timer/imx_epit: fix compare timer handling
47
29
48
Claudio Fontana (1):
30
Richard Henderson (16):
49
target/arm: cleanup cpu includes
31
target/arm: Normalize aarch64 gdbstub get/set function names
32
target/arm: Unexport arm_gen_dynamic_sysreg_xml
33
target/arm: Move arm_gen_dynamic_svereg_xml to gdbstub64.c
34
target/arm: Split out output_vector_union_type
35
target/arm: Simplify register counting in arm_gen_dynamic_svereg_xml
36
target/arm: Hoist pred_width in arm_gen_dynamic_svereg_xml
37
target/arm: Fix svep width in arm_gen_dynamic_svereg_xml
38
target/arm: Add name argument to output_vector_union_type
39
target/arm: Simplify iteration over bit widths
40
target/arm: Create pauth_ptr_mask
41
target/arm: Implement gdbstub pauth extension
42
target/arm: Implement gdbstub m-profile systemreg and secext
43
target/arm: Handle m-profile in arm_is_secure
44
target/arm: Stub arm_hcr_el2_eff for m-profile
45
target/arm: Diagnose incorrect usage of arm_is_secure subroutines
46
target/arm: Rewrite check_s2_mmu_setup
50
47
51
Fabiano Rosas (5):
48
qianfan Zhao (2):
52
target/arm: Fix checkpatch comment style warnings in helper.c
49
hw: allwinner-i2c: Fix TWI_CNTR_INT_FLAG on SUN6i SoCs
53
target/arm: Fix checkpatch space errors in helper.c
50
hw: arm: allwinner-h3: Fix and complete H3 i2c devices
54
target/arm: Fix checkpatch brace errors in helper.c
55
target/arm: Remove unused includes from m_helper.c
56
target/arm: Remove unused includes from helper.c
57
51
58
Jean-Christophe Dubois (4):
52
configs/targets/aarch64-linux-user.mak | 2 +-
59
i.MX7D: Connect GPT timers to IRQ
53
configs/targets/aarch64-softmmu.mak | 2 +-
60
i.MX7D: Compute clock frequency for the fixed frequency clocks.
54
configs/targets/aarch64_be-linux-user.mak | 2 +-
61
i.MX6UL: Add a specific GPT timer instance for the i.MX6UL
55
include/hw/arm/allwinner-h3.h | 6 +
62
i.MX7D: Connect IRQs to GPIO devices.
56
include/hw/i2c/allwinner-i2c.h | 6 +
63
57
include/hw/loader.h | 19 ++
64
Peter Maydell (1):
58
target/arm/cpu.h | 17 +-
65
target/arm:Set lg_page_size to 0 if either S1 or S2 asks for it
59
target/arm/internals.h | 34 +++-
66
60
hw/arm/allwinner-h3.c | 29 +++-
67
Philippe Mathieu-Daudé (5):
61
hw/arm/boot.c | 6 +
68
hw/input/tsc2xxx: Constify set_transform()'s MouseTransformInfo arg
62
hw/core/loader.c | 91 ++++++++++
69
hw/arm/nseries: Constify various read-only arrays
63
hw/i2c/allwinner-i2c.c | 26 ++-
70
hw/arm/nseries: Silent -Wmissing-field-initializers warning
64
target/arm/gdbstub.c | 278 ++++++++++++++++++------------
71
hw/arm/smmu-common: Reduce smmu_inv_notifiers_mr() scope
65
target/arm/gdbstub64.c | 175 ++++++++++++++++++-
72
hw/arm/smmu-common: Avoid using inlined functions with external linkage
66
target/arm/helper.c | 3 +
73
67
target/arm/ptw.c | 173 +++++++++++--------
74
Stephen Longfield (1):
68
target/arm/tcg/m_helper.c | 90 +++++-----
75
hw/net: Fix read of uninitialized memory in imx_fec.
69
target/arm/tcg/pauth_helper.c | 26 ++-
76
70
gdb-xml/aarch64-pauth.xml | 15 ++
77
Tobias Röhmel (7):
71
19 files changed, 742 insertions(+), 258 deletions(-)
78
target/arm: Don't add all MIDR aliases for cores that implement PMSA
72
create mode 100644 gdb-xml/aarch64-pauth.xml
79
target/arm: Make RVBAR available for all ARMv8 CPUs
80
target/arm: Make stage_2_format for cache attributes optional
81
target/arm: Enable TTBCR_EAE for ARMv8-R AArch32
82
target/arm: Add PMSAv8r registers
83
target/arm: Add PMSAv8r functionality
84
target/arm: Add ARM Cortex-R52 CPU
85
86
Zhuojia Shen (1):
87
target/arm: align exposed ID registers with Linux
88
89
include/hw/arm/fsl-imx7.h | 20 +
90
include/hw/arm/smmu-common.h | 3 -
91
include/hw/input/tsc2xxx.h | 4 +-
92
include/hw/timer/imx_epit.h | 8 +-
93
include/hw/timer/imx_gpt.h | 1 +
94
target/arm/cpu.h | 6 +
95
target/arm/internals.h | 4 +
96
hw/arm/fsl-imx6ul.c | 2 +-
97
hw/arm/fsl-imx7.c | 41 +-
98
hw/arm/nseries.c | 28 +-
99
hw/arm/smmu-common.c | 15 +-
100
hw/input/tsc2005.c | 2 +-
101
hw/input/tsc210x.c | 3 +-
102
hw/misc/imx6ul_ccm.c | 6 -
103
hw/misc/imx7_ccm.c | 49 ++-
104
hw/net/imx_fec.c | 8 +-
105
hw/timer/imx_epit.c | 376 +++++++++-------
106
hw/timer/imx_gpt.c | 25 ++
107
target/arm/cpu.c | 35 +-
108
target/arm/cpu64.c | 6 -
109
target/arm/cpu_tcg.c | 42 ++
110
target/arm/debug_helper.c | 3 +
111
target/arm/helper.c | 871 +++++++++++++++++++++++++++++---------
112
target/arm/m_helper.c | 16 -
113
target/arm/machine.c | 28 ++
114
target/arm/ptw.c | 152 +++++--
115
target/arm/tlb_helper.c | 4 +
116
target/arm/translate.c | 2 +-
117
tests/tcg/aarch64/sysregs.c | 24 +-
118
tests/tcg/aarch64/Makefile.target | 7 +-
119
30 files changed, 1330 insertions(+), 461 deletions(-)
120
diff view generated by jsdifflib
Deleted patch
1
In get_phys_addr_twostage() we set the lg_page_size of the result to
2
the maximum of the stage 1 and stage 2 page sizes. This works for
3
the case where we do want to create a TLB entry, because we know the
4
common TLB code only creates entries of the TARGET_PAGE_SIZE and
5
asking for a size larger than that only means that invalidations
6
invalidate the whole larger area. However, if lg_page_size is
7
smaller than TARGET_PAGE_SIZE this effectively means "don't create a
8
TLB entry"; in this case if either S1 or S2 said "this covers less
9
than a page and can't go in a TLB" then the final result also should
10
be marked that way. Set the resulting page size to 0 if either
11
stage asked for a less-than-a-page entry, and expand the comment
12
to explain what's going on.
13
1
14
This has no effect for VMSA because currently the VMSA lookup always
15
returns results that cover at least TARGET_PAGE_SIZE; however when we
16
add v8R support it will reuse this code path, and for v8R the S1 and
17
S2 results can be smaller than TARGET_PAGE_SIZE.
18
19
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
20
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
21
Message-id: 20221212142708.610090-1-peter.maydell@linaro.org
22
---
23
target/arm/ptw.c | 16 +++++++++++++---
24
1 file changed, 13 insertions(+), 3 deletions(-)
25
26
diff --git a/target/arm/ptw.c b/target/arm/ptw.c
27
index XXXXXXX..XXXXXXX 100644
28
--- a/target/arm/ptw.c
29
+++ b/target/arm/ptw.c
30
@@ -XXX,XX +XXX,XX @@ static bool get_phys_addr_twostage(CPUARMState *env, S1Translate *ptw,
31
}
32
33
/*
34
- * Use the maximum of the S1 & S2 page size, so that invalidation
35
- * of pages > TARGET_PAGE_SIZE works correctly.
36
+ * If either S1 or S2 returned a result smaller than TARGET_PAGE_SIZE,
37
+ * this means "don't put this in the TLB"; in this case, return a
38
+ * result with lg_page_size == 0 to achieve that. Otherwise,
39
+ * use the maximum of the S1 & S2 page size, so that invalidation
40
+ * of pages > TARGET_PAGE_SIZE works correctly. (This works even though
41
+ * we know the combined result permissions etc only cover the minimum
42
+ * of the S1 and S2 page size, because we know that the common TLB code
43
+ * never actually creates TLB entries bigger than TARGET_PAGE_SIZE,
44
+ * and passing a larger page size value only affects invalidations.)
45
*/
46
- if (result->f.lg_page_size < s1_lgpgsz) {
47
+ if (result->f.lg_page_size < TARGET_PAGE_BITS ||
48
+ s1_lgpgsz < TARGET_PAGE_BITS) {
49
+ result->f.lg_page_size = 0;
50
+ } else if (result->f.lg_page_size < s1_lgpgsz) {
51
result->f.lg_page_size = s1_lgpgsz;
52
}
53
54
--
55
2.25.1
diff view generated by jsdifflib
Deleted patch
1
From: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
2
1
3
Cores with PMSA have the MPUIR register which has the
4
same encoding as the MIDR alias with opc2=4. So we only
5
add that alias if we are not realizing a core that
6
implements PMSA.
7
8
Signed-off-by: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
10
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
11
Message-id: 20221206102504.165775-2-tobias.roehmel@rwth-aachen.de
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
---
14
target/arm/helper.c | 13 +++++++++----
15
1 file changed, 9 insertions(+), 4 deletions(-)
16
17
diff --git a/target/arm/helper.c b/target/arm/helper.c
18
index XXXXXXX..XXXXXXX 100644
19
--- a/target/arm/helper.c
20
+++ b/target/arm/helper.c
21
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
22
.access = PL1_R, .type = ARM_CP_NO_RAW, .resetvalue = cpu->midr,
23
.fieldoffset = offsetof(CPUARMState, cp15.c0_cpuid),
24
.readfn = midr_read },
25
- /* crn = 0 op1 = 0 crm = 0 op2 = 4,7 : AArch32 aliases of MIDR */
26
- { .name = "MIDR", .type = ARM_CP_ALIAS | ARM_CP_CONST,
27
- .cp = 15, .crn = 0, .crm = 0, .opc1 = 0, .opc2 = 4,
28
- .access = PL1_R, .resetvalue = cpu->midr },
29
+ /* crn = 0 op1 = 0 crm = 0 op2 = 7 : AArch32 aliases of MIDR */
30
{ .name = "MIDR", .type = ARM_CP_ALIAS | ARM_CP_CONST,
31
.cp = 15, .crn = 0, .crm = 0, .opc1 = 0, .opc2 = 7,
32
.access = PL1_R, .resetvalue = cpu->midr },
33
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
34
.accessfn = access_aa64_tid1,
35
.type = ARM_CP_CONST, .resetvalue = cpu->revidr },
36
};
37
+ ARMCPRegInfo id_v8_midr_alias_cp_reginfo = {
38
+ .name = "MIDR", .type = ARM_CP_ALIAS | ARM_CP_CONST,
39
+ .cp = 15, .crn = 0, .crm = 0, .opc1 = 0, .opc2 = 4,
40
+ .access = PL1_R, .resetvalue = cpu->midr
41
+ };
42
ARMCPRegInfo id_cp_reginfo[] = {
43
/* These are common to v8 and pre-v8 */
44
{ .name = "CTR",
45
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
46
}
47
if (arm_feature(env, ARM_FEATURE_V8)) {
48
define_arm_cp_regs(cpu, id_v8_midr_cp_reginfo);
49
+ if (!arm_feature(env, ARM_FEATURE_PMSA)) {
50
+ define_one_arm_cp_reg(cpu, &id_v8_midr_alias_cp_reginfo);
51
+ }
52
} else {
53
define_arm_cp_regs(cpu, id_pre_v8_midr_cp_reginfo);
54
}
55
--
56
2.25.1
57
58
diff view generated by jsdifflib
1
From: Fabiano Rosas <farosas@suse.de>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
Fix these:
3
Make the form of the function names between fp and sve the same:
4
- arm_gdb_*_svereg -> aarch64_gdb_*_sve_reg.
5
- aarch64_fpu_gdb_*_reg -> aarch64_gdb_*_fpu_reg.
4
6
5
WARNING: Block comments use a leading /* on a separate line
7
Reviewed-by: Fabiano Rosas <farosas@suse.de>
6
WARNING: Block comments use * on subsequent lines
8
Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org>
7
WARNING: Block comments use a trailing */ on a separate line
9
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
8
10
Message-id: 20230227213329.793795-2-richard.henderson@linaro.org
9
Signed-off-by: Fabiano Rosas <farosas@suse.de>
10
Reviewed-by: Claudio Fontana <cfontana@suse.de>
11
Reviewed-by: Cornelia Huck <cohuck@redhat.com>
12
Message-id: 20221213190537.511-2-farosas@suse.de
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
---
12
---
15
target/arm/helper.c | 323 +++++++++++++++++++++++++++++---------------
13
target/arm/internals.h | 8 ++++----
16
1 file changed, 215 insertions(+), 108 deletions(-)
14
target/arm/gdbstub.c | 9 +++++----
15
target/arm/gdbstub64.c | 8 ++++----
16
3 files changed, 13 insertions(+), 12 deletions(-)
17
17
18
diff --git a/target/arm/helper.c b/target/arm/helper.c
18
diff --git a/target/arm/internals.h b/target/arm/internals.h
19
index XXXXXXX..XXXXXXX 100644
19
index XXXXXXX..XXXXXXX 100644
20
--- a/target/arm/helper.c
20
--- a/target/arm/internals.h
21
+++ b/target/arm/helper.c
21
+++ b/target/arm/internals.h
22
@@ -XXX,XX +XXX,XX @@ uint64_t read_raw_cp_reg(CPUARMState *env, const ARMCPRegInfo *ri)
22
@@ -XXX,XX +XXX,XX @@ static inline uint64_t pmu_counter_mask(CPUARMState *env)
23
static void write_raw_cp_reg(CPUARMState *env, const ARMCPRegInfo *ri,
23
}
24
uint64_t v)
24
25
#ifdef TARGET_AARCH64
26
-int arm_gdb_get_svereg(CPUARMState *env, GByteArray *buf, int reg);
27
-int arm_gdb_set_svereg(CPUARMState *env, uint8_t *buf, int reg);
28
-int aarch64_fpu_gdb_get_reg(CPUARMState *env, GByteArray *buf, int reg);
29
-int aarch64_fpu_gdb_set_reg(CPUARMState *env, uint8_t *buf, int reg);
30
+int aarch64_gdb_get_sve_reg(CPUARMState *env, GByteArray *buf, int reg);
31
+int aarch64_gdb_set_sve_reg(CPUARMState *env, uint8_t *buf, int reg);
32
+int aarch64_gdb_get_fpu_reg(CPUARMState *env, GByteArray *buf, int reg);
33
+int aarch64_gdb_set_fpu_reg(CPUARMState *env, uint8_t *buf, int reg);
34
void arm_cpu_sve_finalize(ARMCPU *cpu, Error **errp);
35
void arm_cpu_sme_finalize(ARMCPU *cpu, Error **errp);
36
void arm_cpu_pauth_finalize(ARMCPU *cpu, Error **errp);
37
diff --git a/target/arm/gdbstub.c b/target/arm/gdbstub.c
38
index XXXXXXX..XXXXXXX 100644
39
--- a/target/arm/gdbstub.c
40
+++ b/target/arm/gdbstub.c
41
@@ -XXX,XX +XXX,XX @@ void arm_cpu_register_gdb_regs_for_features(ARMCPU *cpu)
42
*/
43
#ifdef TARGET_AARCH64
44
if (isar_feature_aa64_sve(&cpu->isar)) {
45
- gdb_register_coprocessor(cs, arm_gdb_get_svereg, arm_gdb_set_svereg,
46
- arm_gen_dynamic_svereg_xml(cs, cs->gdb_num_regs),
47
+ int nreg = arm_gen_dynamic_svereg_xml(cs, cs->gdb_num_regs);
48
+ gdb_register_coprocessor(cs, aarch64_gdb_get_sve_reg,
49
+ aarch64_gdb_set_sve_reg, nreg,
50
"sve-registers.xml", 0);
51
} else {
52
- gdb_register_coprocessor(cs, aarch64_fpu_gdb_get_reg,
53
- aarch64_fpu_gdb_set_reg,
54
+ gdb_register_coprocessor(cs, aarch64_gdb_get_fpu_reg,
55
+ aarch64_gdb_set_fpu_reg,
56
34, "aarch64-fpu.xml", 0);
57
}
58
#endif
59
diff --git a/target/arm/gdbstub64.c b/target/arm/gdbstub64.c
60
index XXXXXXX..XXXXXXX 100644
61
--- a/target/arm/gdbstub64.c
62
+++ b/target/arm/gdbstub64.c
63
@@ -XXX,XX +XXX,XX @@ int aarch64_cpu_gdb_write_register(CPUState *cs, uint8_t *mem_buf, int n)
64
return 0;
65
}
66
67
-int aarch64_fpu_gdb_get_reg(CPUARMState *env, GByteArray *buf, int reg)
68
+int aarch64_gdb_get_fpu_reg(CPUARMState *env, GByteArray *buf, int reg)
25
{
69
{
26
- /* Raw write of a coprocessor register (as needed for migration, etc).
70
switch (reg) {
27
+ /*
71
case 0 ... 31:
28
+ * Raw write of a coprocessor register (as needed for migration, etc).
72
@@ -XXX,XX +XXX,XX @@ int aarch64_fpu_gdb_get_reg(CPUARMState *env, GByteArray *buf, int reg)
29
* Note that constant registers are treated as write-ignored; the
30
* caller should check for success by whether a readback gives the
31
* value written.
32
@@ -XXX,XX +XXX,XX @@ static void write_raw_cp_reg(CPUARMState *env, const ARMCPRegInfo *ri,
33
34
static bool raw_accessors_invalid(const ARMCPRegInfo *ri)
35
{
36
- /* Return true if the regdef would cause an assertion if you called
37
+ /*
38
+ * Return true if the regdef would cause an assertion if you called
39
* read_raw_cp_reg() or write_raw_cp_reg() on it (ie if it is a
40
* program bug for it not to have the NO_RAW flag).
41
* NB that returning false here doesn't necessarily mean that calling
42
@@ -XXX,XX +XXX,XX @@ bool write_list_to_cpustate(ARMCPU *cpu)
43
if (ri->type & ARM_CP_NO_RAW) {
44
continue;
45
}
46
- /* Write value and confirm it reads back as written
47
+ /*
48
+ * Write value and confirm it reads back as written
49
* (to catch read-only registers and partially read-only
50
* registers where the incoming migration value doesn't match)
51
*/
52
@@ -XXX,XX +XXX,XX @@ static gint cpreg_key_compare(gconstpointer a, gconstpointer b)
53
54
void init_cpreg_list(ARMCPU *cpu)
55
{
56
- /* Initialise the cpreg_tuples[] array based on the cp_regs hash.
57
+ /*
58
+ * Initialise the cpreg_tuples[] array based on the cp_regs hash.
59
* Note that we require cpreg_tuples[] to be sorted by key ID.
60
*/
61
GList *keys;
62
@@ -XXX,XX +XXX,XX @@ static CPAccessResult access_el3_aa32ns(CPUARMState *env,
63
return CP_ACCESS_OK;
64
}
65
66
-/* Some secure-only AArch32 registers trap to EL3 if used from
67
+/*
68
+ * Some secure-only AArch32 registers trap to EL3 if used from
69
* Secure EL1 (but are just ordinary UNDEF in other non-EL3 contexts).
70
* Note that an access from Secure EL1 can only happen if EL3 is AArch64.
71
* We assume that the .access field is set to PL1_RW.
72
@@ -XXX,XX +XXX,XX @@ static CPAccessResult access_trap_aa32s_el1(CPUARMState *env,
73
return CP_ACCESS_TRAP_UNCATEGORIZED;
74
}
75
76
-/* Check for traps to performance monitor registers, which are controlled
77
+/*
78
+ * Check for traps to performance monitor registers, which are controlled
79
* by MDCR_EL2.TPM for EL2 and MDCR_EL3.TPM for EL3.
80
*/
81
static CPAccessResult access_tpm(CPUARMState *env, const ARMCPRegInfo *ri,
82
@@ -XXX,XX +XXX,XX @@ static void fcse_write(CPUARMState *env, const ARMCPRegInfo *ri, uint64_t value)
83
ARMCPU *cpu = env_archcpu(env);
84
85
if (raw_read(env, ri) != value) {
86
- /* Unlike real hardware the qemu TLB uses virtual addresses,
87
+ /*
88
+ * Unlike real hardware the qemu TLB uses virtual addresses,
89
* not modified virtual addresses, so this causes a TLB flush.
90
*/
91
tlb_flush(CPU(cpu));
92
@@ -XXX,XX +XXX,XX @@ static void contextidr_write(CPUARMState *env, const ARMCPRegInfo *ri,
93
94
if (raw_read(env, ri) != value && !arm_feature(env, ARM_FEATURE_PMSA)
95
&& !extended_addresses_enabled(env)) {
96
- /* For VMSA (when not using the LPAE long descriptor page table
97
+ /*
98
+ * For VMSA (when not using the LPAE long descriptor page table
99
* format) this register includes the ASID, so do a TLB flush.
100
* For PMSA it is purely a process ID and no action is needed.
101
*/
102
@@ -XXX,XX +XXX,XX @@ static void tlbiipas2is_hyp_write(CPUARMState *env, const ARMCPRegInfo *ri,
103
}
104
105
static const ARMCPRegInfo cp_reginfo[] = {
106
- /* Define the secure and non-secure FCSE identifier CP registers
107
+ /*
108
+ * Define the secure and non-secure FCSE identifier CP registers
109
* separately because there is no secure bank in V8 (no _EL3). This allows
110
* the secure register to be properly reset and migrated. There is also no
111
* v8 EL1 version of the register so the non-secure instance stands alone.
112
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo cp_reginfo[] = {
113
.access = PL1_RW, .secure = ARM_CP_SECSTATE_S,
114
.fieldoffset = offsetof(CPUARMState, cp15.fcseidr_s),
115
.resetvalue = 0, .writefn = fcse_write, .raw_writefn = raw_write, },
116
- /* Define the secure and non-secure context identifier CP registers
117
+ /*
118
+ * Define the secure and non-secure context identifier CP registers
119
* separately because there is no secure bank in V8 (no _EL3). This allows
120
* the secure register to be properly reset and migrated. In the
121
* non-secure case, the 32-bit register will have reset and migration
122
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo cp_reginfo[] = {
123
};
124
125
static const ARMCPRegInfo not_v8_cp_reginfo[] = {
126
- /* NB: Some of these registers exist in v8 but with more precise
127
+ /*
128
+ * NB: Some of these registers exist in v8 but with more precise
129
* definitions that don't use CP_ANY wildcards (mostly in v8_cp_reginfo[]).
130
*/
131
/* MMU Domain access control / MPU write buffer control */
132
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo not_v8_cp_reginfo[] = {
133
.writefn = dacr_write, .raw_writefn = raw_write,
134
.bank_fieldoffsets = { offsetoflow32(CPUARMState, cp15.dacr_s),
135
offsetoflow32(CPUARMState, cp15.dacr_ns) } },
136
- /* ARMv7 allocates a range of implementation defined TLB LOCKDOWN regs.
137
+ /*
138
+ * ARMv7 allocates a range of implementation defined TLB LOCKDOWN regs.
139
* For v6 and v5, these mappings are overly broad.
140
*/
141
{ .name = "TLB_LOCKDOWN", .cp = 15, .crn = 10, .crm = 0,
142
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo not_v8_cp_reginfo[] = {
143
};
144
145
static const ARMCPRegInfo not_v6_cp_reginfo[] = {
146
- /* Not all pre-v6 cores implemented this WFI, so this is slightly
147
+ /*
148
+ * Not all pre-v6 cores implemented this WFI, so this is slightly
149
* over-broad.
150
*/
151
{ .name = "WFI_v5", .cp = 15, .crn = 7, .crm = 8, .opc1 = 0, .opc2 = 2,
152
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo not_v6_cp_reginfo[] = {
153
};
154
155
static const ARMCPRegInfo not_v7_cp_reginfo[] = {
156
- /* Standard v6 WFI (also used in some pre-v6 cores); not in v7 (which
157
+ /*
158
+ * Standard v6 WFI (also used in some pre-v6 cores); not in v7 (which
159
* is UNPREDICTABLE; we choose to NOP as most implementations do).
160
*/
161
{ .name = "WFI_v6", .cp = 15, .crn = 7, .crm = 0, .opc1 = 0, .opc2 = 4,
162
.access = PL1_W, .type = ARM_CP_WFI },
163
- /* L1 cache lockdown. Not architectural in v6 and earlier but in practice
164
+ /*
165
+ * L1 cache lockdown. Not architectural in v6 and earlier but in practice
166
* implemented in 926, 946, 1026, 1136, 1176 and 11MPCore. StrongARM and
167
* OMAPCP will override this space.
168
*/
169
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo not_v7_cp_reginfo[] = {
170
{ .name = "DUMMY", .cp = 15, .crn = 0, .crm = 0, .opc1 = 1, .opc2 = CP_ANY,
171
.access = PL1_R, .type = ARM_CP_CONST | ARM_CP_NO_RAW,
172
.resetvalue = 0 },
173
- /* We don't implement pre-v7 debug but most CPUs had at least a DBGDIDR;
174
+ /*
175
+ * We don't implement pre-v7 debug but most CPUs had at least a DBGDIDR;
176
* implementing it as RAZ means the "debug architecture version" bits
177
* will read as a reserved value, which should cause Linux to not try
178
* to use the debug hardware.
179
*/
180
{ .name = "DBGDIDR", .cp = 14, .crn = 0, .crm = 0, .opc1 = 0, .opc2 = 0,
181
.access = PL0_R, .type = ARM_CP_CONST, .resetvalue = 0 },
182
- /* MMU TLB control. Note that the wildcarding means we cover not just
183
+ /*
184
+ * MMU TLB control. Note that the wildcarding means we cover not just
185
* the unified TLB ops but also the dside/iside/inner-shareable variants.
186
*/
187
{ .name = "TLBIALL", .cp = 15, .crn = 8, .crm = CP_ANY,
188
@@ -XXX,XX +XXX,XX @@ static void cpacr_write(CPUARMState *env, const ARMCPRegInfo *ri,
189
190
/* In ARMv8 most bits of CPACR_EL1 are RES0. */
191
if (!arm_feature(env, ARM_FEATURE_V8)) {
192
- /* ARMv7 defines bits for unimplemented coprocessors as RAZ/WI.
193
+ /*
194
+ * ARMv7 defines bits for unimplemented coprocessors as RAZ/WI.
195
* ASEDIS [31] and D32DIS [30] are both UNK/SBZP without VFP.
196
* TRCDIS [28] is RAZ/WI since we do not implement a trace macrocell.
197
*/
198
@@ -XXX,XX +XXX,XX @@ static void cpacr_write(CPUARMState *env, const ARMCPRegInfo *ri,
199
value |= R_CPACR_ASEDIS_MASK;
200
}
201
202
- /* VFPv3 and upwards with NEON implement 32 double precision
203
+ /*
204
+ * VFPv3 and upwards with NEON implement 32 double precision
205
* registers (D0-D31).
206
*/
207
if (!cpu_isar_feature(aa32_simd_r32, env_archcpu(env))) {
208
@@ -XXX,XX +XXX,XX @@ static uint64_t cpacr_read(CPUARMState *env, const ARMCPRegInfo *ri)
209
210
static void cpacr_reset(CPUARMState *env, const ARMCPRegInfo *ri)
211
{
212
- /* Call cpacr_write() so that we reset with the correct RAO bits set
213
+ /*
214
+ * Call cpacr_write() so that we reset with the correct RAO bits set
215
* for our CPU features.
216
*/
217
cpacr_write(env, ri, 0);
218
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo v6_cp_reginfo[] = {
219
{ .name = "MVA_prefetch",
220
.cp = 15, .crn = 7, .crm = 13, .opc1 = 0, .opc2 = 1,
221
.access = PL1_W, .type = ARM_CP_NOP },
222
- /* We need to break the TB after ISB to execute self-modifying code
223
+ /*
224
+ * We need to break the TB after ISB to execute self-modifying code
225
* correctly and also to take any pending interrupts immediately.
226
* So use arm_cp_write_ignore() function instead of ARM_CP_NOP flag.
227
*/
228
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo v6_cp_reginfo[] = {
229
.bank_fieldoffsets = { offsetof(CPUARMState, cp15.ifar_s),
230
offsetof(CPUARMState, cp15.ifar_ns) },
231
.resetvalue = 0, },
232
- /* Watchpoint Fault Address Register : should actually only be present
233
+ /*
234
+ * Watchpoint Fault Address Register : should actually only be present
235
* for 1136, 1176, 11MPCore.
236
*/
237
{ .name = "WFAR", .cp = 15, .crn = 6, .crm = 0, .opc1 = 0, .opc2 = 1,
238
@@ -XXX,XX +XXX,XX @@ static bool event_supported(uint16_t number)
239
static CPAccessResult pmreg_access(CPUARMState *env, const ARMCPRegInfo *ri,
240
bool isread)
241
{
242
- /* Performance monitor registers user accessibility is controlled
243
+ /*
244
+ * Performance monitor registers user accessibility is controlled
245
* by PMUSERENR. MDCR_EL2.TPM and MDCR_EL3.TPM allow configurable
246
* trapping to EL2 or EL3 for other accesses.
247
*/
248
@@ -XXX,XX +XXX,XX @@ static CPAccessResult pmreg_access_ccntr(CPUARMState *env,
249
(MDCR_HPME | MDCR_HPMD | MDCR_HPMN | MDCR_HCCD | MDCR_HLP)
250
#define MDCR_EL3_PMU_ENABLE_BITS (MDCR_SPME | MDCR_SCCD)
251
252
-/* Returns true if the counter (pass 31 for PMCCNTR) should count events using
253
+/*
254
+ * Returns true if the counter (pass 31 for PMCCNTR) should count events using
255
* the current EL, security state, and register configuration.
256
*/
257
static bool pmu_counter_enabled(CPUARMState *env, uint8_t counter)
258
@@ -XXX,XX +XXX,XX @@ static uint64_t pmccntr_read(CPUARMState *env, const ARMCPRegInfo *ri)
259
static void pmselr_write(CPUARMState *env, const ARMCPRegInfo *ri,
260
uint64_t value)
261
{
262
- /* The value of PMSELR.SEL affects the behavior of PMXEVTYPER and
263
+ /*
264
+ * The value of PMSELR.SEL affects the behavior of PMXEVTYPER and
265
* PMXEVCNTR. We allow [0..31] to be written to PMSELR here; in the
266
* meanwhile, we check PMSELR.SEL when PMXEVTYPER and PMXEVCNTR are
267
* accessed.
268
@@ -XXX,XX +XXX,XX @@ static void pmevtyper_write(CPUARMState *env, const ARMCPRegInfo *ri,
269
env->cp15.c14_pmevtyper[counter] = value & PMXEVTYPER_MASK;
270
pmevcntr_op_finish(env, counter);
271
}
272
- /* Attempts to access PMXEVTYPER are CONSTRAINED UNPREDICTABLE when
273
+ /*
274
+ * Attempts to access PMXEVTYPER are CONSTRAINED UNPREDICTABLE when
275
* PMSELR value is equal to or greater than the number of implemented
276
* counters, but not equal to 0x1f. We opt to behave as a RAZ/WI.
277
*/
278
@@ -XXX,XX +XXX,XX @@ static uint64_t pmevcntr_read(CPUARMState *env, const ARMCPRegInfo *ri,
279
}
280
return ret;
281
} else {
282
- /* We opt to behave as a RAZ/WI when attempts to access PM[X]EVCNTR
283
- * are CONSTRAINED UNPREDICTABLE. */
284
+ /*
285
+ * We opt to behave as a RAZ/WI when attempts to access PM[X]EVCNTR
286
+ * are CONSTRAINED UNPREDICTABLE.
287
+ */
288
return 0;
289
}
73
}
290
}
74
}
291
@@ -XXX,XX +XXX,XX @@ static void pmintenclr_write(CPUARMState *env, const ARMCPRegInfo *ri,
75
292
static void vbar_write(CPUARMState *env, const ARMCPRegInfo *ri,
76
-int aarch64_fpu_gdb_set_reg(CPUARMState *env, uint8_t *buf, int reg)
293
uint64_t value)
77
+int aarch64_gdb_set_fpu_reg(CPUARMState *env, uint8_t *buf, int reg)
294
{
78
{
295
- /* Note that even though the AArch64 view of this register has bits
79
switch (reg) {
296
+ /*
80
case 0 ... 31:
297
+ * Note that even though the AArch64 view of this register has bits
81
@@ -XXX,XX +XXX,XX @@ int aarch64_fpu_gdb_set_reg(CPUARMState *env, uint8_t *buf, int reg)
298
* [10:0] all RES0 we can only mask the bottom 5, to comply with the
82
}
299
* architectural requirements for bits which are RES0 only in some
83
}
300
* contexts. (ARMv8 would permit us to do no masking at all, but ARMv7
84
301
@@ -XXX,XX +XXX,XX @@ static void scr_write(CPUARMState *env, const ARMCPRegInfo *ri, uint64_t value)
85
-int arm_gdb_get_svereg(CPUARMState *env, GByteArray *buf, int reg)
302
if (!arm_feature(env, ARM_FEATURE_EL2)) {
86
+int aarch64_gdb_get_sve_reg(CPUARMState *env, GByteArray *buf, int reg)
303
valid_mask &= ~SCR_HCE;
304
305
- /* On ARMv7, SMD (or SCD as it is called in v7) is only
306
+ /*
307
+ * On ARMv7, SMD (or SCD as it is called in v7) is only
308
* supported if EL2 exists. The bit is UNK/SBZP when
309
* EL2 is unavailable. In QEMU ARMv7, we force it to always zero
310
* when EL2 is unavailable.
311
@@ -XXX,XX +XXX,XX @@ static uint64_t ccsidr_read(CPUARMState *env, const ARMCPRegInfo *ri)
312
{
87
{
313
ARMCPU *cpu = env_archcpu(env);
88
ARMCPU *cpu = env_archcpu(env);
314
89
315
- /* Acquire the CSSELR index from the bank corresponding to the CCSIDR
90
@@ -XXX,XX +XXX,XX @@ int arm_gdb_get_svereg(CPUARMState *env, GByteArray *buf, int reg)
316
+ /*
91
return 0;
317
+ * Acquire the CSSELR index from the bank corresponding to the CCSIDR
318
* bank
319
*/
320
uint32_t index = A32_BANKED_REG_GET(env, csselr,
321
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo v7_cp_reginfo[] = {
322
/* the old v6 WFI, UNPREDICTABLE in v7 but we choose to NOP */
323
{ .name = "NOP", .cp = 15, .crn = 7, .crm = 0, .opc1 = 0, .opc2 = 4,
324
.access = PL1_W, .type = ARM_CP_NOP },
325
- /* Performance monitors are implementation defined in v7,
326
+ /*
327
+ * Performance monitors are implementation defined in v7,
328
* but with an ARM recommended set of registers, which we
329
* follow.
330
*
331
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo v7_cp_reginfo[] = {
332
.writefn = csselr_write, .resetvalue = 0,
333
.bank_fieldoffsets = { offsetof(CPUARMState, cp15.csselr_s),
334
offsetof(CPUARMState, cp15.csselr_ns) } },
335
- /* Auxiliary ID register: this actually has an IMPDEF value but for now
336
+ /*
337
+ * Auxiliary ID register: this actually has an IMPDEF value but for now
338
* just RAZ for all cores:
339
*/
340
{ .name = "AIDR", .state = ARM_CP_STATE_BOTH,
341
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo v7_cp_reginfo[] = {
342
.access = PL1_R, .type = ARM_CP_CONST,
343
.accessfn = access_aa64_tid1,
344
.resetvalue = 0 },
345
- /* Auxiliary fault status registers: these also are IMPDEF, and we
346
+ /*
347
+ * Auxiliary fault status registers: these also are IMPDEF, and we
348
* choose to RAZ/WI for all cores.
349
*/
350
{ .name = "AFSR0_EL1", .state = ARM_CP_STATE_BOTH,
351
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo v7_cp_reginfo[] = {
352
.opc0 = 3, .opc1 = 0, .crn = 5, .crm = 1, .opc2 = 1,
353
.access = PL1_RW, .accessfn = access_tvm_trvm,
354
.type = ARM_CP_CONST, .resetvalue = 0 },
355
- /* MAIR can just read-as-written because we don't implement caches
356
+ /*
357
+ * MAIR can just read-as-written because we don't implement caches
358
* and so don't need to care about memory attributes.
359
*/
360
{ .name = "MAIR_EL1", .state = ARM_CP_STATE_AA64,
361
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo v7_cp_reginfo[] = {
362
.opc0 = 3, .opc1 = 6, .crn = 10, .crm = 2, .opc2 = 0,
363
.access = PL3_RW, .fieldoffset = offsetof(CPUARMState, cp15.mair_el[3]),
364
.resetvalue = 0 },
365
- /* For non-long-descriptor page tables these are PRRR and NMRR;
366
+ /*
367
+ * For non-long-descriptor page tables these are PRRR and NMRR;
368
* regardless they still act as reads-as-written for QEMU.
369
*/
370
- /* MAIR0/1 are defined separately from their 64-bit counterpart which
371
+ /*
372
+ * MAIR0/1 are defined separately from their 64-bit counterpart which
373
* allows them to assign the correct fieldoffset based on the endianness
374
* handled in the field definitions.
375
*/
376
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo v6k_cp_reginfo[] = {
377
static CPAccessResult gt_cntfrq_access(CPUARMState *env, const ARMCPRegInfo *ri,
378
bool isread)
379
{
380
- /* CNTFRQ: not visible from PL0 if both PL0PCTEN and PL0VCTEN are zero.
381
+ /*
382
+ * CNTFRQ: not visible from PL0 if both PL0PCTEN and PL0VCTEN are zero.
383
* Writable only at the highest implemented exception level.
384
*/
385
int el = arm_current_el(env);
386
@@ -XXX,XX +XXX,XX @@ static CPAccessResult gt_stimer_access(CPUARMState *env,
387
const ARMCPRegInfo *ri,
388
bool isread)
389
{
390
- /* The AArch64 register view of the secure physical timer is
391
+ /*
392
+ * The AArch64 register view of the secure physical timer is
393
* always accessible from EL3, and configurably accessible from
394
* Secure EL1.
395
*/
396
@@ -XXX,XX +XXX,XX @@ static void gt_recalc_timer(ARMCPU *cpu, int timeridx)
397
ARMGenericTimer *gt = &cpu->env.cp15.c14_timer[timeridx];
398
399
if (gt->ctl & 1) {
400
- /* Timer enabled: calculate and set current ISTATUS, irq, and
401
+ /*
402
+ * Timer enabled: calculate and set current ISTATUS, irq, and
403
* reset timer to when ISTATUS next has to change
404
*/
405
uint64_t offset = timeridx == GTIMER_VIRT ?
406
@@ -XXX,XX +XXX,XX @@ static void gt_recalc_timer(ARMCPU *cpu, int timeridx)
407
/* Next transition is when we hit cval */
408
nexttick = gt->cval + offset;
409
}
410
- /* Note that the desired next expiry time might be beyond the
411
+ /*
412
+ * Note that the desired next expiry time might be beyond the
413
* signed-64-bit range of a QEMUTimer -- in this case we just
414
* set the timer for as far in the future as possible. When the
415
* timer expires we will reset the timer for any remaining period.
416
@@ -XXX,XX +XXX,XX @@ static void gt_ctl_write(CPUARMState *env, const ARMCPRegInfo *ri,
417
/* Enable toggled */
418
gt_recalc_timer(cpu, timeridx);
419
} else if ((oldval ^ value) & 2) {
420
- /* IMASK toggled: don't need to recalculate,
421
+ /*
422
+ * IMASK toggled: don't need to recalculate,
423
* just set the interrupt line based on ISTATUS
424
*/
425
int irqstate = (oldval & 4) && !(value & 2);
426
@@ -XXX,XX +XXX,XX @@ static void arm_gt_cntfrq_reset(CPUARMState *env, const ARMCPRegInfo *opaque)
427
}
92
}
428
93
429
static const ARMCPRegInfo generic_timer_cp_reginfo[] = {
94
-int arm_gdb_set_svereg(CPUARMState *env, uint8_t *buf, int reg)
430
- /* Note that CNTFRQ is purely reads-as-written for the benefit
95
+int aarch64_gdb_set_sve_reg(CPUARMState *env, uint8_t *buf, int reg)
431
+ /*
432
+ * Note that CNTFRQ is purely reads-as-written for the benefit
433
* of software; writing it doesn't actually change the timer frequency.
434
* Our reset value matches the fixed frequency we implement the timer at.
435
*/
436
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo generic_timer_cp_reginfo[] = {
437
.readfn = gt_virt_redir_cval_read, .raw_readfn = raw_read,
438
.writefn = gt_virt_redir_cval_write, .raw_writefn = raw_write,
439
},
440
- /* Secure timer -- this is actually restricted to only EL3
441
+ /*
442
+ * Secure timer -- this is actually restricted to only EL3
443
* and configurably Secure-EL1 via the accessfn.
444
*/
445
{ .name = "CNTPS_TVAL_EL1", .state = ARM_CP_STATE_AA64,
446
@@ -XXX,XX +XXX,XX @@ static CPAccessResult e2h_access(CPUARMState *env, const ARMCPRegInfo *ri,
447
448
#else
449
450
-/* In user-mode most of the generic timer registers are inaccessible
451
+/*
452
+ * In user-mode most of the generic timer registers are inaccessible
453
* however modern kernels (4.12+) allow access to cntvct_el0
454
*/
455
456
@@ -XXX,XX +XXX,XX @@ static uint64_t gt_virt_cnt_read(CPUARMState *env, const ARMCPRegInfo *ri)
457
{
96
{
458
ARMCPU *cpu = env_archcpu(env);
97
ARMCPU *cpu = env_archcpu(env);
459
98
460
- /* Currently we have no support for QEMUTimer in linux-user so we
461
+ /*
462
+ * Currently we have no support for QEMUTimer in linux-user so we
463
* can't call gt_get_countervalue(env), instead we directly
464
* call the lower level functions.
465
*/
466
@@ -XXX,XX +XXX,XX @@ static CPAccessResult ats_access(CPUARMState *env, const ARMCPRegInfo *ri,
467
bool isread)
468
{
469
if (ri->opc2 & 4) {
470
- /* The ATS12NSO* operations must trap to EL3 or EL2 if executed in
471
+ /*
472
+ * The ATS12NSO* operations must trap to EL3 or EL2 if executed in
473
* Secure EL1 (which can only happen if EL3 is AArch64).
474
* They are simply UNDEF if executed from NS EL1.
475
* They function normally from EL2 or EL3.
476
@@ -XXX,XX +XXX,XX @@ static uint64_t do_ats_write(CPUARMState *env, uint64_t value,
477
}
478
}
479
} else {
480
- /* fsr is a DFSR/IFSR value for the short descriptor
481
+ /*
482
+ * fsr is a DFSR/IFSR value for the short descriptor
483
* translation table format (with WnR always clear).
484
* Convert it to a 32-bit PAR.
485
*/
486
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo pmsav8r_cp_reginfo[] = {
487
};
488
489
static const ARMCPRegInfo pmsav7_cp_reginfo[] = {
490
- /* Reset for all these registers is handled in arm_cpu_reset(),
491
+ /*
492
+ * Reset for all these registers is handled in arm_cpu_reset(),
493
* because the PMSAv7 is also used by M-profile CPUs, which do
494
* not register cpregs but still need the state to be reset.
495
*/
496
@@ -XXX,XX +XXX,XX @@ static void vmsa_ttbcr_write(CPUARMState *env, const ARMCPRegInfo *ri,
497
}
498
499
if (arm_feature(env, ARM_FEATURE_LPAE)) {
500
- /* With LPAE the TTBCR could result in a change of ASID
501
+ /*
502
+ * With LPAE the TTBCR could result in a change of ASID
503
* via the TTBCR.A1 bit, so do a TLB flush.
504
*/
505
tlb_flush(CPU(cpu));
506
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo vmsa_cp_reginfo[] = {
507
offsetoflow32(CPUARMState, cp15.tcr_el[1])} },
508
};
509
510
-/* Note that unlike TTBCR, writing to TTBCR2 does not require flushing
511
+/*
512
+ * Note that unlike TTBCR, writing to TTBCR2 does not require flushing
513
* qemu tlbs nor adjusting cached masks.
514
*/
515
static const ARMCPRegInfo ttbcr2_reginfo = {
516
@@ -XXX,XX +XXX,XX @@ static void omap_wfi_write(CPUARMState *env, const ARMCPRegInfo *ri,
517
static void omap_cachemaint_write(CPUARMState *env, const ARMCPRegInfo *ri,
518
uint64_t value)
519
{
520
- /* On OMAP there are registers indicating the max/min index of dcache lines
521
+ /*
522
+ * On OMAP there are registers indicating the max/min index of dcache lines
523
* containing a dirty line; cache flush operations have to reset these.
524
*/
525
env->cp15.c15_i_max = 0x000;
526
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo omap_cp_reginfo[] = {
527
.crm = 8, .opc1 = 0, .opc2 = 0, .access = PL1_RW,
528
.type = ARM_CP_NO_RAW,
529
.readfn = arm_cp_read_zero, .writefn = omap_wfi_write, },
530
- /* TODO: Peripheral port remap register:
531
+ /*
532
+ * TODO: Peripheral port remap register:
533
* On OMAP2 mcr p15, 0, rn, c15, c2, 4 sets up the interrupt controller
534
* base address at $rn & ~0xfff and map size of 0x200 << ($rn & 0xfff),
535
* when MMU is off.
536
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo xscale_cp_reginfo[] = {
537
.cp = 15, .crn = 1, .crm = 0, .opc1 = 0, .opc2 = 1, .access = PL1_RW,
538
.fieldoffset = offsetof(CPUARMState, cp15.c1_xscaleauxcr),
539
.resetvalue = 0, },
540
- /* XScale specific cache-lockdown: since we have no cache we NOP these
541
+ /*
542
+ * XScale specific cache-lockdown: since we have no cache we NOP these
543
* and hope the guest does not really rely on cache behaviour.
544
*/
545
{ .name = "XSCALE_LOCK_ICACHE_LINE",
546
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo xscale_cp_reginfo[] = {
547
};
548
549
static const ARMCPRegInfo dummy_c15_cp_reginfo[] = {
550
- /* RAZ/WI the whole crn=15 space, when we don't have a more specific
551
+ /*
552
+ * RAZ/WI the whole crn=15 space, when we don't have a more specific
553
* implementation of this implementation-defined space.
554
* Ideally this should eventually disappear in favour of actually
555
* implementing the correct behaviour for all cores.
556
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo cache_block_ops_cp_reginfo[] = {
557
};
558
559
static const ARMCPRegInfo cache_test_clean_cp_reginfo[] = {
560
- /* The cache test-and-clean instructions always return (1 << 30)
561
+ /*
562
+ * The cache test-and-clean instructions always return (1 << 30)
563
* to indicate that there are no dirty cache lines.
564
*/
565
{ .name = "TC_DCACHE", .cp = 15, .crn = 7, .crm = 10, .opc1 = 0, .opc2 = 3,
566
@@ -XXX,XX +XXX,XX @@ static uint64_t mpidr_read_val(CPUARMState *env)
567
568
if (arm_feature(env, ARM_FEATURE_V7MP)) {
569
mpidr |= (1U << 31);
570
- /* Cores which are uniprocessor (non-coherent)
571
+ /*
572
+ * Cores which are uniprocessor (non-coherent)
573
* but still implement the MP extensions set
574
* bit 30. (For instance, Cortex-R5).
575
*/
576
@@ -XXX,XX +XXX,XX @@ static CPAccessResult access_tocu(CPUARMState *env, const ARMCPRegInfo *ri,
577
return do_cacheop_pou_access(env, HCR_TOCU | HCR_TPU);
578
}
579
580
-/* See: D4.7.2 TLB maintenance requirements and the TLB maintenance instructions
581
+/*
582
+ * See: D4.7.2 TLB maintenance requirements and the TLB maintenance instructions
583
* Page D4-1736 (DDI0487A.b)
584
*/
585
586
@@ -XXX,XX +XXX,XX @@ static void tlbi_aa64_alle3is_write(CPUARMState *env, const ARMCPRegInfo *ri,
587
static void tlbi_aa64_vae2_write(CPUARMState *env, const ARMCPRegInfo *ri,
588
uint64_t value)
589
{
590
- /* Invalidate by VA, EL2
591
+ /*
592
+ * Invalidate by VA, EL2
593
* Currently handles both VAE2 and VALE2, since we don't support
594
* flush-last-level-only.
595
*/
596
@@ -XXX,XX +XXX,XX @@ static void tlbi_aa64_vae2_write(CPUARMState *env, const ARMCPRegInfo *ri,
597
static void tlbi_aa64_vae3_write(CPUARMState *env, const ARMCPRegInfo *ri,
598
uint64_t value)
599
{
600
- /* Invalidate by VA, EL3
601
+ /*
602
+ * Invalidate by VA, EL3
603
* Currently handles both VAE3 and VALE3, since we don't support
604
* flush-last-level-only.
605
*/
606
@@ -XXX,XX +XXX,XX @@ static void tlbi_aa64_vae1is_write(CPUARMState *env, const ARMCPRegInfo *ri,
607
static void tlbi_aa64_vae1_write(CPUARMState *env, const ARMCPRegInfo *ri,
608
uint64_t value)
609
{
610
- /* Invalidate by VA, EL1&0 (AArch64 version).
611
+ /*
612
+ * Invalidate by VA, EL1&0 (AArch64 version).
613
* Currently handles all of VAE1, VAAE1, VAALE1 and VALE1,
614
* since we don't support flush-for-specific-ASID-only or
615
* flush-last-level-only.
616
@@ -XXX,XX +XXX,XX @@ static CPAccessResult sp_el0_access(CPUARMState *env, const ARMCPRegInfo *ri,
617
bool isread)
618
{
619
if (!(env->pstate & PSTATE_SP)) {
620
- /* Access to SP_EL0 is undefined if it's being used as
621
+ /*
622
+ * Access to SP_EL0 is undefined if it's being used as
623
* the stack pointer.
624
*/
625
return CP_ACCESS_TRAP_UNCATEGORIZED;
626
@@ -XXX,XX +XXX,XX @@ static void sctlr_write(CPUARMState *env, const ARMCPRegInfo *ri,
627
}
628
629
if (raw_read(env, ri) == value) {
630
- /* Skip the TLB flush if nothing actually changed; Linux likes
631
+ /*
632
+ * Skip the TLB flush if nothing actually changed; Linux likes
633
* to do a lot of pointless SCTLR writes.
634
*/
635
return;
636
@@ -XXX,XX +XXX,XX @@ static void mdcr_el2_write(CPUARMState *env, const ARMCPRegInfo *ri,
637
}
638
639
static const ARMCPRegInfo v8_cp_reginfo[] = {
640
- /* Minimal set of EL0-visible registers. This will need to be expanded
641
+ /*
642
+ * Minimal set of EL0-visible registers. This will need to be expanded
643
* significantly for system emulation of AArch64 CPUs.
644
*/
645
{ .name = "NZCV", .state = ARM_CP_STATE_AA64,
646
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo v8_cp_reginfo[] = {
647
.opc0 = 3, .opc1 = 0, .crn = 4, .crm = 0, .opc2 = 0,
648
.access = PL1_RW,
649
.fieldoffset = offsetof(CPUARMState, banked_spsr[BANK_SVC]) },
650
- /* We rely on the access checks not allowing the guest to write to the
651
+ /*
652
+ * We rely on the access checks not allowing the guest to write to the
653
* state field when SPSel indicates that it's being used as the stack
654
* pointer.
655
*/
656
@@ -XXX,XX +XXX,XX @@ static void do_hcr_write(CPUARMState *env, uint64_t value, uint64_t valid_mask)
657
if (arm_feature(env, ARM_FEATURE_EL3)) {
658
valid_mask &= ~HCR_HCD;
659
} else if (cpu->psci_conduit != QEMU_PSCI_CONDUIT_SMC) {
660
- /* Architecturally HCR.TSC is RES0 if EL3 is not implemented.
661
+ /*
662
+ * Architecturally HCR.TSC is RES0 if EL3 is not implemented.
663
* However, if we're using the SMC PSCI conduit then QEMU is
664
* effectively acting like EL3 firmware and so the guest at
665
* EL2 should retain the ability to prevent EL1 from being
666
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo el2_cp_reginfo[] = {
667
.access = PL2_W, .type = ARM_CP_NO_RAW | ARM_CP_EL3_NO_EL2_UNDEF,
668
.writefn = tlbi_aa64_vae2is_write },
669
#ifndef CONFIG_USER_ONLY
670
- /* Unlike the other EL2-related AT operations, these must
671
+ /*
672
+ * Unlike the other EL2-related AT operations, these must
673
* UNDEF from EL3 if EL2 is not implemented, which is why we
674
* define them here rather than with the rest of the AT ops.
675
*/
676
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo el2_cp_reginfo[] = {
677
.access = PL2_W, .accessfn = at_s1e2_access,
678
.type = ARM_CP_NO_RAW | ARM_CP_RAISES_EXC | ARM_CP_EL3_NO_EL2_UNDEF,
679
.writefn = ats_write64 },
680
- /* The AArch32 ATS1H* operations are CONSTRAINED UNPREDICTABLE
681
+ /*
682
+ * The AArch32 ATS1H* operations are CONSTRAINED UNPREDICTABLE
683
* if EL2 is not implemented; we choose to UNDEF. Behaviour at EL3
684
* with SCR.NS == 0 outside Monitor mode is UNPREDICTABLE; we choose
685
* to behave as if SCR.NS was 1.
686
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo el2_cp_reginfo[] = {
687
.writefn = ats1h_write, .type = ARM_CP_NO_RAW | ARM_CP_RAISES_EXC },
688
{ .name = "CNTHCTL_EL2", .state = ARM_CP_STATE_BOTH,
689
.opc0 = 3, .opc1 = 4, .crn = 14, .crm = 1, .opc2 = 0,
690
- /* ARMv7 requires bit 0 and 1 to reset to 1. ARMv8 defines the
691
+ /*
692
+ * ARMv7 requires bit 0 and 1 to reset to 1. ARMv8 defines the
693
* reset values as IMPDEF. We choose to reset to 3 to comply with
694
* both ARMv7 and ARMv8.
695
*/
696
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo el2_sec_cp_reginfo[] = {
697
static CPAccessResult nsacr_access(CPUARMState *env, const ARMCPRegInfo *ri,
698
bool isread)
699
{
700
- /* The NSACR is RW at EL3, and RO for NS EL1 and NS EL2.
701
+ /*
702
+ * The NSACR is RW at EL3, and RO for NS EL1 and NS EL2.
703
* At Secure EL1 it traps to EL3 or EL2.
704
*/
705
if (arm_current_el(env) == 3) {
706
@@ -XXX,XX +XXX,XX @@ static void define_pmu_regs(ARMCPU *cpu)
707
}
708
}
709
710
-/* We don't know until after realize whether there's a GICv3
711
+/*
712
+ * We don't know until after realize whether there's a GICv3
713
* attached, and that is what registers the gicv3 sysregs.
714
* So we have to fill in the GIC fields in ID_PFR/ID_PFR1_EL1/ID_AA64PFR0_EL1
715
* at runtime.
716
@@ -XXX,XX +XXX,XX @@ static uint64_t id_aa64pfr0_read(CPUARMState *env, const ARMCPRegInfo *ri)
717
}
718
#endif
719
720
-/* Shared logic between LORID and the rest of the LOR* registers.
721
+/*
722
+ * Shared logic between LORID and the rest of the LOR* registers.
723
* Secure state exclusion has already been dealt with.
724
*/
725
static CPAccessResult access_lor_ns(CPUARMState *env,
726
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
727
728
define_arm_cp_regs(cpu, cp_reginfo);
729
if (!arm_feature(env, ARM_FEATURE_V8)) {
730
- /* Must go early as it is full of wildcards that may be
731
+ /*
732
+ * Must go early as it is full of wildcards that may be
733
* overridden by later definitions.
734
*/
735
define_arm_cp_regs(cpu, not_v8_cp_reginfo);
736
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
737
.access = PL1_R, .type = ARM_CP_CONST,
738
.accessfn = access_aa32_tid3,
739
.resetvalue = cpu->isar.id_pfr0 },
740
- /* ID_PFR1 is not a plain ARM_CP_CONST because we don't know
741
+ /*
742
+ * ID_PFR1 is not a plain ARM_CP_CONST because we don't know
743
* the value of the GIC field until after we define these regs.
744
*/
745
{ .name = "ID_PFR1", .state = ARM_CP_STATE_BOTH,
746
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
747
748
define_arm_cp_regs(cpu, el3_regs);
749
}
750
- /* The behaviour of NSACR is sufficiently various that we don't
751
+ /*
752
+ * The behaviour of NSACR is sufficiently various that we don't
753
* try to describe it in a single reginfo:
754
* if EL3 is 64 bit, then trap to EL3 from S EL1,
755
* reads as constant 0xc00 from NS EL1 and NS EL2
756
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
757
if (cpu_isar_feature(aa32_jazelle, cpu)) {
758
define_arm_cp_regs(cpu, jazelle_regs);
759
}
760
- /* Slightly awkwardly, the OMAP and StrongARM cores need all of
761
+ /*
762
+ * Slightly awkwardly, the OMAP and StrongARM cores need all of
763
* cp15 crn=0 to be writes-ignored, whereas for other cores they should
764
* be read-only (ie write causes UNDEF exception).
765
*/
766
{
767
ARMCPRegInfo id_pre_v8_midr_cp_reginfo[] = {
768
- /* Pre-v8 MIDR space.
769
+ /*
770
+ * Pre-v8 MIDR space.
771
* Note that the MIDR isn't a simple constant register because
772
* of the TI925 behaviour where writes to another register can
773
* cause the MIDR value to change.
774
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
775
if (arm_feature(env, ARM_FEATURE_OMAPCP) ||
776
arm_feature(env, ARM_FEATURE_STRONGARM)) {
777
size_t i;
778
- /* Register the blanket "writes ignored" value first to cover the
779
+ /*
780
+ * Register the blanket "writes ignored" value first to cover the
781
* whole space. Then update the specific ID registers to allow write
782
* access, so that they ignore writes rather than causing them to
783
* UNDEF.
784
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
785
.raw_writefn = raw_write,
786
};
787
if (arm_feature(env, ARM_FEATURE_XSCALE)) {
788
- /* Normally we would always end the TB on an SCTLR write, but Linux
789
+ /*
790
+ * Normally we would always end the TB on an SCTLR write, but Linux
791
* arch/arm/mach-pxa/sleep.S expects two instructions following
792
* an MMU enable to execute from cache. Imitate this behaviour.
793
*/
794
@@ -XXX,XX +XXX,XX @@ static void add_cpreg_to_hashtable(ARMCPU *cpu, const ARMCPRegInfo *r,
795
void define_one_arm_cp_reg_with_opaque(ARMCPU *cpu,
796
const ARMCPRegInfo *r, void *opaque)
797
{
798
- /* Define implementations of coprocessor registers.
799
+ /*
800
+ * Define implementations of coprocessor registers.
801
* We store these in a hashtable because typically
802
* there are less than 150 registers in a space which
803
* is 16*16*16*8*8 = 262144 in size.
804
@@ -XXX,XX +XXX,XX @@ void define_one_arm_cp_reg_with_opaque(ARMCPU *cpu,
805
default:
806
g_assert_not_reached();
807
}
808
- /* The AArch64 pseudocode CheckSystemAccess() specifies that op1
809
+ /*
810
+ * The AArch64 pseudocode CheckSystemAccess() specifies that op1
811
* encodes a minimum access level for the register. We roll this
812
* runtime check into our general permission check code, so check
813
* here that the reginfo's specified permissions are strict enough
814
@@ -XXX,XX +XXX,XX @@ void define_one_arm_cp_reg_with_opaque(ARMCPU *cpu,
815
assert((r->access & ~mask) == 0);
816
}
817
818
- /* Check that the register definition has enough info to handle
819
+ /*
820
+ * Check that the register definition has enough info to handle
821
* reads and writes if they are permitted.
822
*/
823
if (!(r->type & (ARM_CP_SPECIAL_MASK | ARM_CP_CONST))) {
824
@@ -XXX,XX +XXX,XX @@ void define_one_arm_cp_reg_with_opaque(ARMCPU *cpu,
825
continue;
826
}
827
if (state == ARM_CP_STATE_AA32) {
828
- /* Under AArch32 CP registers can be common
829
+ /*
830
+ * Under AArch32 CP registers can be common
831
* (same for secure and non-secure world) or banked.
832
*/
833
char *name;
834
@@ -XXX,XX +XXX,XX @@ void define_one_arm_cp_reg_with_opaque(ARMCPU *cpu,
835
g_assert_not_reached();
836
}
837
} else {
838
- /* AArch64 registers get mapped to non-secure instance
839
- * of AArch32 */
840
+ /*
841
+ * AArch64 registers get mapped to non-secure instance
842
+ * of AArch32
843
+ */
844
add_cpreg_to_hashtable(cpu, r, opaque, state,
845
ARM_CP_SECSTATE_NS,
846
crm, opc1, opc2, r->name);
847
@@ -XXX,XX +XXX,XX @@ void arm_cp_reset_ignore(CPUARMState *env, const ARMCPRegInfo *opaque)
848
849
static int bad_mode_switch(CPUARMState *env, int mode, CPSRWriteType write_type)
850
{
851
- /* Return true if it is not valid for us to switch to
852
+ /*
853
+ * Return true if it is not valid for us to switch to
854
* this CPU mode (ie all the UNPREDICTABLE cases in
855
* the ARM ARM CPSRWriteByInstr pseudocode).
856
*/
857
@@ -XXX,XX +XXX,XX @@ static int bad_mode_switch(CPUARMState *env, int mode, CPSRWriteType write_type)
858
case ARM_CPU_MODE_UND:
859
case ARM_CPU_MODE_IRQ:
860
case ARM_CPU_MODE_FIQ:
861
- /* Note that we don't implement the IMPDEF NSACR.RFR which in v7
862
+ /*
863
+ * Note that we don't implement the IMPDEF NSACR.RFR which in v7
864
* allows FIQ mode to be Secure-only. (In v8 this doesn't exist.)
865
*/
866
- /* If HCR.TGE is set then changes from Monitor to NS PL1 via MSR
867
+ /*
868
+ * If HCR.TGE is set then changes from Monitor to NS PL1 via MSR
869
* and CPS are treated as illegal mode changes.
870
*/
871
if (write_type == CPSRWriteByInstr &&
872
@@ -XXX,XX +XXX,XX @@ void cpsr_write(CPUARMState *env, uint32_t val, uint32_t mask,
873
env->GE = (val >> 16) & 0xf;
874
}
875
876
- /* In a V7 implementation that includes the security extensions but does
877
+ /*
878
+ * In a V7 implementation that includes the security extensions but does
879
* not include Virtualization Extensions the SCR.FW and SCR.AW bits control
880
* whether non-secure software is allowed to change the CPSR_F and CPSR_A
881
* bits respectively.
882
@@ -XXX,XX +XXX,XX @@ void cpsr_write(CPUARMState *env, uint32_t val, uint32_t mask,
883
changed_daif = (env->daif ^ val) & mask;
884
885
if (changed_daif & CPSR_A) {
886
- /* Check to see if we are allowed to change the masking of async
887
+ /*
888
+ * Check to see if we are allowed to change the masking of async
889
* abort exceptions from a non-secure state.
890
*/
891
if (!(env->cp15.scr_el3 & SCR_AW)) {
892
@@ -XXX,XX +XXX,XX @@ void cpsr_write(CPUARMState *env, uint32_t val, uint32_t mask,
893
}
894
895
if (changed_daif & CPSR_F) {
896
- /* Check to see if we are allowed to change the masking of FIQ
897
+ /*
898
+ * Check to see if we are allowed to change the masking of FIQ
899
* exceptions from a non-secure state.
900
*/
901
if (!(env->cp15.scr_el3 & SCR_FW)) {
902
@@ -XXX,XX +XXX,XX @@ void cpsr_write(CPUARMState *env, uint32_t val, uint32_t mask,
903
mask &= ~CPSR_F;
904
}
905
906
- /* Check whether non-maskable FIQ (NMFI) support is enabled.
907
+ /*
908
+ * Check whether non-maskable FIQ (NMFI) support is enabled.
909
* If this bit is set software is not allowed to mask
910
* FIQs, but is allowed to set CPSR_F to 0.
911
*/
912
@@ -XXX,XX +XXX,XX @@ void cpsr_write(CPUARMState *env, uint32_t val, uint32_t mask,
913
if (write_type != CPSRWriteRaw &&
914
((env->uncached_cpsr ^ val) & mask & CPSR_M)) {
915
if ((env->uncached_cpsr & CPSR_M) == ARM_CPU_MODE_USR) {
916
- /* Note that we can only get here in USR mode if this is a
917
+ /*
918
+ * Note that we can only get here in USR mode if this is a
919
* gdb stub write; for this case we follow the architectural
920
* behaviour for guest writes in USR mode of ignoring an attempt
921
* to switch mode. (Those are caught by translate.c for writes
922
@@ -XXX,XX +XXX,XX @@ void cpsr_write(CPUARMState *env, uint32_t val, uint32_t mask,
923
*/
924
mask &= ~CPSR_M;
925
} else if (bad_mode_switch(env, val & CPSR_M, write_type)) {
926
- /* Attempt to switch to an invalid mode: this is UNPREDICTABLE in
927
+ /*
928
+ * Attempt to switch to an invalid mode: this is UNPREDICTABLE in
929
* v7, and has defined behaviour in v8:
930
* + leave CPSR.M untouched
931
* + allow changes to the other CPSR fields
932
@@ -XXX,XX +XXX,XX @@ static void switch_mode(CPUARMState *env, int mode)
933
env->regs[14] = env->banked_r14[r14_bank_number(mode)];
934
}
935
936
-/* Physical Interrupt Target EL Lookup Table
937
+/*
938
+ * Physical Interrupt Target EL Lookup Table
939
*
940
* [ From ARM ARM section G1.13.4 (Table G1-15) ]
941
*
942
@@ -XXX,XX +XXX,XX @@ uint32_t arm_phys_excp_target_el(CPUState *cs, uint32_t excp_idx,
943
if (arm_feature(env, ARM_FEATURE_EL3)) {
944
rw = ((env->cp15.scr_el3 & SCR_RW) == SCR_RW);
945
} else {
946
- /* Either EL2 is the highest EL (and so the EL2 register width
947
+ /*
948
+ * Either EL2 is the highest EL (and so the EL2 register width
949
* is given by is64); or there is no EL2 or EL3, in which case
950
* the value of 'rw' does not affect the table lookup anyway.
951
*/
952
@@ -XXX,XX +XXX,XX @@ void aarch64_sync_64_to_32(CPUARMState *env)
953
env->banked_r13[bank_number(ARM_CPU_MODE_UND)] = env->xregs[23];
954
}
955
956
- /* Registers x24-x30 are mapped to r8-r14 in FIQ mode. If we are in FIQ
957
+ /*
958
+ * Registers x24-x30 are mapped to r8-r14 in FIQ mode. If we are in FIQ
959
* mode, then we can copy to r8-r14. Otherwise, we copy to the
960
* FIQ bank for r8-r14.
961
*/
962
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_do_interrupt_aarch32(CPUState *cs)
963
/* High vectors. When enabled, base address cannot be remapped. */
964
addr += 0xffff0000;
965
} else {
966
- /* ARM v7 architectures provide a vector base address register to remap
967
+ /*
968
+ * ARM v7 architectures provide a vector base address register to remap
969
* the interrupt vector table.
970
* This register is only followed in non-monitor mode, and is banked.
971
* Note: only bits 31:5 are valid.
972
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_do_interrupt_aarch64(CPUState *cs)
973
aarch64_sve_change_el(env, cur_el, new_el, is_a64(env));
974
975
if (cur_el < new_el) {
976
- /* Entry vector offset depends on whether the implemented EL
977
+ /*
978
+ * Entry vector offset depends on whether the implemented EL
979
* immediately lower than the target level is using AArch32 or AArch64
980
*/
981
bool is_aa64;
982
@@ -XXX,XX +XXX,XX @@ static void handle_semihosting(CPUState *cs)
983
}
984
#endif
985
986
-/* Handle a CPU exception for A and R profile CPUs.
987
+/*
988
+ * Handle a CPU exception for A and R profile CPUs.
989
* Do any appropriate logging, handle PSCI calls, and then hand off
990
* to the AArch64-entry or AArch32-entry function depending on the
991
* target exception level's register width.
992
@@ -XXX,XX +XXX,XX @@ void arm_cpu_do_interrupt(CPUState *cs)
993
}
994
#endif
995
996
- /* Hooks may change global state so BQL should be held, also the
997
+ /*
998
+ * Hooks may change global state so BQL should be held, also the
999
* BQL needs to be held for any modification of
1000
* cs->interrupt_request.
1001
*/
1002
@@ -XXX,XX +XXX,XX @@ ARMVAParameters aa64_va_parameters(CPUARMState *env, uint64_t va,
1003
};
1004
}
1005
1006
-/* Note that signed overflow is undefined in C. The following routines are
1007
- careful to use unsigned types where modulo arithmetic is required.
1008
- Failure to do so _will_ break on newer gcc. */
1009
+/*
1010
+ * Note that signed overflow is undefined in C. The following routines are
1011
+ * careful to use unsigned types where modulo arithmetic is required.
1012
+ * Failure to do so _will_ break on newer gcc.
1013
+ */
1014
1015
/* Signed saturating arithmetic. */
1016
1017
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(sel_flags)(uint32_t flags, uint32_t a, uint32_t b)
1018
return (a & mask) | (b & ~mask);
1019
}
1020
1021
-/* CRC helpers.
1022
+/*
1023
+ * CRC helpers.
1024
* The upper bytes of val (above the number specified by 'bytes') must have
1025
* been zeroed out by the caller.
1026
*/
1027
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(crc32c)(uint32_t acc, uint32_t val, uint32_t bytes)
1028
return crc32c(acc, buf, bytes) ^ 0xffffffff;
1029
}
1030
1031
-/* Return the exception level to which FP-disabled exceptions should
1032
+/*
1033
+ * Return the exception level to which FP-disabled exceptions should
1034
* be taken, or 0 if FP is enabled.
1035
*/
1036
int fp_exception_el(CPUARMState *env, int cur_el)
1037
@@ -XXX,XX +XXX,XX @@ int fp_exception_el(CPUARMState *env, int cur_el)
1038
#ifndef CONFIG_USER_ONLY
1039
uint64_t hcr_el2;
1040
1041
- /* CPACR and the CPTR registers don't exist before v6, so FP is
1042
+ /*
1043
+ * CPACR and the CPTR registers don't exist before v6, so FP is
1044
* always accessible
1045
*/
1046
if (!arm_feature(env, ARM_FEATURE_V6)) {
1047
@@ -XXX,XX +XXX,XX @@ int fp_exception_el(CPUARMState *env, int cur_el)
1048
1049
hcr_el2 = arm_hcr_el2_eff(env);
1050
1051
- /* The CPACR controls traps to EL1, or PL1 if we're 32 bit:
1052
+ /*
1053
+ * The CPACR controls traps to EL1, or PL1 if we're 32 bit:
1054
* 0, 2 : trap EL0 and EL1/PL1 accesses
1055
* 1 : trap only EL0 accesses
1056
* 3 : trap no accesses
1057
--
99
--
1058
2.25.1
100
2.34.1
101
102
diff view generated by jsdifflib
1
From: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
Signed-off-by: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
3
This function is not used outside gdbstub.c.
4
Message-id: 20221206102504.165775-6-tobias.roehmel@rwth-aachen.de
4
5
Reviewed-by: Fabiano Rosas <farosas@suse.de>
6
Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org>
7
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20230227213329.793795-3-richard.henderson@linaro.org
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
---
10
---
7
target/arm/cpu.h | 6 +
11
target/arm/cpu.h | 1 -
8
target/arm/cpu.c | 28 +++-
12
target/arm/gdbstub.c | 2 +-
9
target/arm/helper.c | 302 +++++++++++++++++++++++++++++++++++++++++++
13
2 files changed, 1 insertion(+), 2 deletions(-)
10
target/arm/machine.c | 28 ++++
11
4 files changed, 360 insertions(+), 4 deletions(-)
12
14
13
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
14
index XXXXXXX..XXXXXXX 100644
16
index XXXXXXX..XXXXXXX 100644
15
--- a/target/arm/cpu.h
17
--- a/target/arm/cpu.h
16
+++ b/target/arm/cpu.h
18
+++ b/target/arm/cpu.h
17
@@ -XXX,XX +XXX,XX @@ typedef struct CPUArchState {
19
@@ -XXX,XX +XXX,XX @@ int arm_cpu_gdb_write_register(CPUState *cpu, uint8_t *buf, int reg);
18
};
20
* Helpers to dynamically generates XML descriptions of the sysregs
19
uint64_t sctlr_el[4];
21
* and SVE registers. Returns the number of registers in each set.
20
};
22
*/
21
+ uint64_t vsctlr; /* Virtualization System control register. */
23
-int arm_gen_dynamic_sysreg_xml(CPUState *cpu, int base_reg);
22
uint64_t cpacr_el1; /* Architectural feature access control register */
24
int arm_gen_dynamic_svereg_xml(CPUState *cpu, int base_reg);
23
uint64_t cptr_el[4]; /* ARMv8 feature trap registers */
25
24
uint32_t c1_xscaleauxcr; /* XScale auxiliary control register. */
26
/* Returns the dynamically generated XML for the gdb stub.
25
@@ -XXX,XX +XXX,XX @@ typedef struct CPUArchState {
27
diff --git a/target/arm/gdbstub.c b/target/arm/gdbstub.c
26
*/
27
uint32_t *rbar[M_REG_NUM_BANKS];
28
uint32_t *rlar[M_REG_NUM_BANKS];
29
+ uint32_t *hprbar;
30
+ uint32_t *hprlar;
31
uint32_t mair0[M_REG_NUM_BANKS];
32
uint32_t mair1[M_REG_NUM_BANKS];
33
+ uint32_t hprselr;
34
} pmsav8;
35
36
/* v8M SAU */
37
@@ -XXX,XX +XXX,XX @@ struct ArchCPU {
38
bool has_mpu;
39
/* PMSAv7 MPU number of supported regions */
40
uint32_t pmsav7_dregion;
41
+ /* PMSAv8 MPU number of supported hyp regions */
42
+ uint32_t pmsav8r_hdregion;
43
/* v8M SAU number of supported regions */
44
uint32_t sau_sregion;
45
46
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
47
index XXXXXXX..XXXXXXX 100644
28
index XXXXXXX..XXXXXXX 100644
48
--- a/target/arm/cpu.c
29
--- a/target/arm/gdbstub.c
49
+++ b/target/arm/cpu.c
30
+++ b/target/arm/gdbstub.c
50
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_reset_hold(Object *obj)
31
@@ -XXX,XX +XXX,XX @@ static void arm_register_sysreg_for_xml(gpointer key, gpointer value,
51
sizeof(*env->pmsav7.dracr) * cpu->pmsav7_dregion);
52
}
53
}
54
+
55
+ if (cpu->pmsav8r_hdregion > 0) {
56
+ memset(env->pmsav8.hprbar, 0,
57
+ sizeof(*env->pmsav8.hprbar) * cpu->pmsav8r_hdregion);
58
+ memset(env->pmsav8.hprlar, 0,
59
+ sizeof(*env->pmsav8.hprlar) * cpu->pmsav8r_hdregion);
60
+ }
61
+
62
env->pmsav7.rnr[M_REG_NS] = 0;
63
env->pmsav7.rnr[M_REG_S] = 0;
64
env->pmsav8.mair0[M_REG_NS] = 0;
65
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_realizefn(DeviceState *dev, Error **errp)
66
/* MPU can be configured out of a PMSA CPU either by setting has-mpu
67
* to false or by setting pmsav7-dregion to 0.
68
*/
69
- if (!cpu->has_mpu) {
70
- cpu->pmsav7_dregion = 0;
71
- }
72
- if (cpu->pmsav7_dregion == 0) {
73
+ if (!cpu->has_mpu || cpu->pmsav7_dregion == 0) {
74
cpu->has_mpu = false;
75
+ cpu->pmsav7_dregion = 0;
76
+ cpu->pmsav8r_hdregion = 0;
77
}
32
}
78
79
if (arm_feature(env, ARM_FEATURE_PMSA) &&
80
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_realizefn(DeviceState *dev, Error **errp)
81
env->pmsav7.dracr = g_new0(uint32_t, nr);
82
}
83
}
84
+
85
+ if (cpu->pmsav8r_hdregion > 0xff) {
86
+ error_setg(errp, "PMSAv8 MPU EL2 #regions invalid %" PRIu32,
87
+ cpu->pmsav8r_hdregion);
88
+ return;
89
+ }
90
+
91
+ if (cpu->pmsav8r_hdregion) {
92
+ env->pmsav8.hprbar = g_new0(uint32_t,
93
+ cpu->pmsav8r_hdregion);
94
+ env->pmsav8.hprlar = g_new0(uint32_t,
95
+ cpu->pmsav8r_hdregion);
96
+ }
97
}
98
99
if (arm_feature(env, ARM_FEATURE_M_SECURITY)) {
100
diff --git a/target/arm/helper.c b/target/arm/helper.c
101
index XXXXXXX..XXXXXXX 100644
102
--- a/target/arm/helper.c
103
+++ b/target/arm/helper.c
104
@@ -XXX,XX +XXX,XX @@ static void pmsav7_rgnr_write(CPUARMState *env, const ARMCPRegInfo *ri,
105
raw_write(env, ri, value);
106
}
33
}
107
34
108
+static void prbar_write(CPUARMState *env, const ARMCPRegInfo *ri,
35
-int arm_gen_dynamic_sysreg_xml(CPUState *cs, int base_reg)
109
+ uint64_t value)
36
+static int arm_gen_dynamic_sysreg_xml(CPUState *cs, int base_reg)
110
+{
37
{
111
+ ARMCPU *cpu = env_archcpu(env);
38
ARMCPU *cpu = ARM_CPU(cs);
112
+
39
GString *s = g_string_new(NULL);
113
+ tlb_flush(CPU(cpu)); /* Mappings may have changed - purge! */
114
+ env->pmsav8.rbar[M_REG_NS][env->pmsav7.rnr[M_REG_NS]] = value;
115
+}
116
+
117
+static uint64_t prbar_read(CPUARMState *env, const ARMCPRegInfo *ri)
118
+{
119
+ return env->pmsav8.rbar[M_REG_NS][env->pmsav7.rnr[M_REG_NS]];
120
+}
121
+
122
+static void prlar_write(CPUARMState *env, const ARMCPRegInfo *ri,
123
+ uint64_t value)
124
+{
125
+ ARMCPU *cpu = env_archcpu(env);
126
+
127
+ tlb_flush(CPU(cpu)); /* Mappings may have changed - purge! */
128
+ env->pmsav8.rlar[M_REG_NS][env->pmsav7.rnr[M_REG_NS]] = value;
129
+}
130
+
131
+static uint64_t prlar_read(CPUARMState *env, const ARMCPRegInfo *ri)
132
+{
133
+ return env->pmsav8.rlar[M_REG_NS][env->pmsav7.rnr[M_REG_NS]];
134
+}
135
+
136
+static void prselr_write(CPUARMState *env, const ARMCPRegInfo *ri,
137
+ uint64_t value)
138
+{
139
+ ARMCPU *cpu = env_archcpu(env);
140
+
141
+ /*
142
+ * Ignore writes that would select not implemented region.
143
+ * This is architecturally UNPREDICTABLE.
144
+ */
145
+ if (value >= cpu->pmsav7_dregion) {
146
+ return;
147
+ }
148
+
149
+ env->pmsav7.rnr[M_REG_NS] = value;
150
+}
151
+
152
+static void hprbar_write(CPUARMState *env, const ARMCPRegInfo *ri,
153
+ uint64_t value)
154
+{
155
+ ARMCPU *cpu = env_archcpu(env);
156
+
157
+ tlb_flush(CPU(cpu)); /* Mappings may have changed - purge! */
158
+ env->pmsav8.hprbar[env->pmsav8.hprselr] = value;
159
+}
160
+
161
+static uint64_t hprbar_read(CPUARMState *env, const ARMCPRegInfo *ri)
162
+{
163
+ return env->pmsav8.hprbar[env->pmsav8.hprselr];
164
+}
165
+
166
+static void hprlar_write(CPUARMState *env, const ARMCPRegInfo *ri,
167
+ uint64_t value)
168
+{
169
+ ARMCPU *cpu = env_archcpu(env);
170
+
171
+ tlb_flush(CPU(cpu)); /* Mappings may have changed - purge! */
172
+ env->pmsav8.hprlar[env->pmsav8.hprselr] = value;
173
+}
174
+
175
+static uint64_t hprlar_read(CPUARMState *env, const ARMCPRegInfo *ri)
176
+{
177
+ return env->pmsav8.hprlar[env->pmsav8.hprselr];
178
+}
179
+
180
+static void hprenr_write(CPUARMState *env, const ARMCPRegInfo *ri,
181
+ uint64_t value)
182
+{
183
+ uint32_t n;
184
+ uint32_t bit;
185
+ ARMCPU *cpu = env_archcpu(env);
186
+
187
+ /* Ignore writes to unimplemented regions */
188
+ int rmax = MIN(cpu->pmsav8r_hdregion, 32);
189
+ value &= MAKE_64BIT_MASK(0, rmax);
190
+
191
+ tlb_flush(CPU(cpu)); /* Mappings may have changed - purge! */
192
+
193
+ /* Register alias is only valid for first 32 indexes */
194
+ for (n = 0; n < rmax; ++n) {
195
+ bit = extract32(value, n, 1);
196
+ env->pmsav8.hprlar[n] = deposit32(
197
+ env->pmsav8.hprlar[n], 0, 1, bit);
198
+ }
199
+}
200
+
201
+static uint64_t hprenr_read(CPUARMState *env, const ARMCPRegInfo *ri)
202
+{
203
+ uint32_t n;
204
+ uint32_t result = 0x0;
205
+ ARMCPU *cpu = env_archcpu(env);
206
+
207
+ /* Register alias is only valid for first 32 indexes */
208
+ for (n = 0; n < MIN(cpu->pmsav8r_hdregion, 32); ++n) {
209
+ if (env->pmsav8.hprlar[n] & 0x1) {
210
+ result |= (0x1 << n);
211
+ }
212
+ }
213
+ return result;
214
+}
215
+
216
+static void hprselr_write(CPUARMState *env, const ARMCPRegInfo *ri,
217
+ uint64_t value)
218
+{
219
+ ARMCPU *cpu = env_archcpu(env);
220
+
221
+ /*
222
+ * Ignore writes that would select not implemented region.
223
+ * This is architecturally UNPREDICTABLE.
224
+ */
225
+ if (value >= cpu->pmsav8r_hdregion) {
226
+ return;
227
+ }
228
+
229
+ env->pmsav8.hprselr = value;
230
+}
231
+
232
+static void pmsav8r_regn_write(CPUARMState *env, const ARMCPRegInfo *ri,
233
+ uint64_t value)
234
+{
235
+ ARMCPU *cpu = env_archcpu(env);
236
+ uint8_t index = (extract32(ri->opc0, 0, 1) << 4) |
237
+ (extract32(ri->crm, 0, 3) << 1) | extract32(ri->opc2, 2, 1);
238
+
239
+ tlb_flush(CPU(cpu)); /* Mappings may have changed - purge! */
240
+
241
+ if (ri->opc1 & 4) {
242
+ if (index >= cpu->pmsav8r_hdregion) {
243
+ return;
244
+ }
245
+ if (ri->opc2 & 0x1) {
246
+ env->pmsav8.hprlar[index] = value;
247
+ } else {
248
+ env->pmsav8.hprbar[index] = value;
249
+ }
250
+ } else {
251
+ if (index >= cpu->pmsav7_dregion) {
252
+ return;
253
+ }
254
+ if (ri->opc2 & 0x1) {
255
+ env->pmsav8.rlar[M_REG_NS][index] = value;
256
+ } else {
257
+ env->pmsav8.rbar[M_REG_NS][index] = value;
258
+ }
259
+ }
260
+}
261
+
262
+static uint64_t pmsav8r_regn_read(CPUARMState *env, const ARMCPRegInfo *ri)
263
+{
264
+ ARMCPU *cpu = env_archcpu(env);
265
+ uint8_t index = (extract32(ri->opc0, 0, 1) << 4) |
266
+ (extract32(ri->crm, 0, 3) << 1) | extract32(ri->opc2, 2, 1);
267
+
268
+ if (ri->opc1 & 4) {
269
+ if (index >= cpu->pmsav8r_hdregion) {
270
+ return 0x0;
271
+ }
272
+ if (ri->opc2 & 0x1) {
273
+ return env->pmsav8.hprlar[index];
274
+ } else {
275
+ return env->pmsav8.hprbar[index];
276
+ }
277
+ } else {
278
+ if (index >= cpu->pmsav7_dregion) {
279
+ return 0x0;
280
+ }
281
+ if (ri->opc2 & 0x1) {
282
+ return env->pmsav8.rlar[M_REG_NS][index];
283
+ } else {
284
+ return env->pmsav8.rbar[M_REG_NS][index];
285
+ }
286
+ }
287
+}
288
+
289
+static const ARMCPRegInfo pmsav8r_cp_reginfo[] = {
290
+ { .name = "PRBAR",
291
+ .cp = 15, .opc1 = 0, .crn = 6, .crm = 3, .opc2 = 0,
292
+ .access = PL1_RW, .type = ARM_CP_NO_RAW,
293
+ .accessfn = access_tvm_trvm,
294
+ .readfn = prbar_read, .writefn = prbar_write },
295
+ { .name = "PRLAR",
296
+ .cp = 15, .opc1 = 0, .crn = 6, .crm = 3, .opc2 = 1,
297
+ .access = PL1_RW, .type = ARM_CP_NO_RAW,
298
+ .accessfn = access_tvm_trvm,
299
+ .readfn = prlar_read, .writefn = prlar_write },
300
+ { .name = "PRSELR", .resetvalue = 0,
301
+ .cp = 15, .opc1 = 0, .crn = 6, .crm = 2, .opc2 = 1,
302
+ .access = PL1_RW, .accessfn = access_tvm_trvm,
303
+ .writefn = prselr_write,
304
+ .fieldoffset = offsetof(CPUARMState, pmsav7.rnr[M_REG_NS]) },
305
+ { .name = "HPRBAR", .resetvalue = 0,
306
+ .cp = 15, .opc1 = 4, .crn = 6, .crm = 3, .opc2 = 0,
307
+ .access = PL2_RW, .type = ARM_CP_NO_RAW,
308
+ .readfn = hprbar_read, .writefn = hprbar_write },
309
+ { .name = "HPRLAR",
310
+ .cp = 15, .opc1 = 4, .crn = 6, .crm = 3, .opc2 = 1,
311
+ .access = PL2_RW, .type = ARM_CP_NO_RAW,
312
+ .readfn = hprlar_read, .writefn = hprlar_write },
313
+ { .name = "HPRSELR", .resetvalue = 0,
314
+ .cp = 15, .opc1 = 4, .crn = 6, .crm = 2, .opc2 = 1,
315
+ .access = PL2_RW,
316
+ .writefn = hprselr_write,
317
+ .fieldoffset = offsetof(CPUARMState, pmsav8.hprselr) },
318
+ { .name = "HPRENR",
319
+ .cp = 15, .opc1 = 4, .crn = 6, .crm = 1, .opc2 = 1,
320
+ .access = PL2_RW, .type = ARM_CP_NO_RAW,
321
+ .readfn = hprenr_read, .writefn = hprenr_write },
322
+};
323
+
324
static const ARMCPRegInfo pmsav7_cp_reginfo[] = {
325
/* Reset for all these registers is handled in arm_cpu_reset(),
326
* because the PMSAv7 is also used by M-profile CPUs, which do
327
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
328
.access = PL1_R, .type = ARM_CP_CONST,
329
.resetvalue = cpu->pmsav7_dregion << 8
330
};
331
+ /* HMPUIR is specific to PMSA V8 */
332
+ ARMCPRegInfo id_hmpuir_reginfo = {
333
+ .name = "HMPUIR",
334
+ .cp = 15, .opc1 = 4, .crn = 0, .crm = 0, .opc2 = 4,
335
+ .access = PL2_R, .type = ARM_CP_CONST,
336
+ .resetvalue = cpu->pmsav8r_hdregion
337
+ };
338
static const ARMCPRegInfo crn0_wi_reginfo = {
339
.name = "CRN0_WI", .cp = 15, .crn = 0, .crm = CP_ANY,
340
.opc1 = CP_ANY, .opc2 = CP_ANY, .access = PL1_W,
341
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
342
define_arm_cp_regs(cpu, id_cp_reginfo);
343
if (!arm_feature(env, ARM_FEATURE_PMSA)) {
344
define_one_arm_cp_reg(cpu, &id_tlbtr_reginfo);
345
+ } else if (arm_feature(env, ARM_FEATURE_PMSA) &&
346
+ arm_feature(env, ARM_FEATURE_V8)) {
347
+ uint32_t i = 0;
348
+ char *tmp_string;
349
+
350
+ define_one_arm_cp_reg(cpu, &id_mpuir_reginfo);
351
+ define_one_arm_cp_reg(cpu, &id_hmpuir_reginfo);
352
+ define_arm_cp_regs(cpu, pmsav8r_cp_reginfo);
353
+
354
+ /* Register alias is only valid for first 32 indexes */
355
+ for (i = 0; i < MIN(cpu->pmsav7_dregion, 32); ++i) {
356
+ uint8_t crm = 0b1000 | extract32(i, 1, 3);
357
+ uint8_t opc1 = extract32(i, 4, 1);
358
+ uint8_t opc2 = extract32(i, 0, 1) << 2;
359
+
360
+ tmp_string = g_strdup_printf("PRBAR%u", i);
361
+ ARMCPRegInfo tmp_prbarn_reginfo = {
362
+ .name = tmp_string, .type = ARM_CP_ALIAS | ARM_CP_NO_RAW,
363
+ .cp = 15, .opc1 = opc1, .crn = 6, .crm = crm, .opc2 = opc2,
364
+ .access = PL1_RW, .resetvalue = 0,
365
+ .accessfn = access_tvm_trvm,
366
+ .writefn = pmsav8r_regn_write, .readfn = pmsav8r_regn_read
367
+ };
368
+ define_one_arm_cp_reg(cpu, &tmp_prbarn_reginfo);
369
+ g_free(tmp_string);
370
+
371
+ opc2 = extract32(i, 0, 1) << 2 | 0x1;
372
+ tmp_string = g_strdup_printf("PRLAR%u", i);
373
+ ARMCPRegInfo tmp_prlarn_reginfo = {
374
+ .name = tmp_string, .type = ARM_CP_ALIAS | ARM_CP_NO_RAW,
375
+ .cp = 15, .opc1 = opc1, .crn = 6, .crm = crm, .opc2 = opc2,
376
+ .access = PL1_RW, .resetvalue = 0,
377
+ .accessfn = access_tvm_trvm,
378
+ .writefn = pmsav8r_regn_write, .readfn = pmsav8r_regn_read
379
+ };
380
+ define_one_arm_cp_reg(cpu, &tmp_prlarn_reginfo);
381
+ g_free(tmp_string);
382
+ }
383
+
384
+ /* Register alias is only valid for first 32 indexes */
385
+ for (i = 0; i < MIN(cpu->pmsav8r_hdregion, 32); ++i) {
386
+ uint8_t crm = 0b1000 | extract32(i, 1, 3);
387
+ uint8_t opc1 = 0b100 | extract32(i, 4, 1);
388
+ uint8_t opc2 = extract32(i, 0, 1) << 2;
389
+
390
+ tmp_string = g_strdup_printf("HPRBAR%u", i);
391
+ ARMCPRegInfo tmp_hprbarn_reginfo = {
392
+ .name = tmp_string,
393
+ .type = ARM_CP_NO_RAW,
394
+ .cp = 15, .opc1 = opc1, .crn = 6, .crm = crm, .opc2 = opc2,
395
+ .access = PL2_RW, .resetvalue = 0,
396
+ .writefn = pmsav8r_regn_write, .readfn = pmsav8r_regn_read
397
+ };
398
+ define_one_arm_cp_reg(cpu, &tmp_hprbarn_reginfo);
399
+ g_free(tmp_string);
400
+
401
+ opc2 = extract32(i, 0, 1) << 2 | 0x1;
402
+ tmp_string = g_strdup_printf("HPRLAR%u", i);
403
+ ARMCPRegInfo tmp_hprlarn_reginfo = {
404
+ .name = tmp_string,
405
+ .type = ARM_CP_NO_RAW,
406
+ .cp = 15, .opc1 = opc1, .crn = 6, .crm = crm, .opc2 = opc2,
407
+ .access = PL2_RW, .resetvalue = 0,
408
+ .writefn = pmsav8r_regn_write, .readfn = pmsav8r_regn_read
409
+ };
410
+ define_one_arm_cp_reg(cpu, &tmp_hprlarn_reginfo);
411
+ g_free(tmp_string);
412
+ }
413
} else if (arm_feature(env, ARM_FEATURE_V7)) {
414
define_one_arm_cp_reg(cpu, &id_mpuir_reginfo);
415
}
416
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
417
sctlr.type |= ARM_CP_SUPPRESS_TB_END;
418
}
419
define_one_arm_cp_reg(cpu, &sctlr);
420
+
421
+ if (arm_feature(env, ARM_FEATURE_PMSA) &&
422
+ arm_feature(env, ARM_FEATURE_V8)) {
423
+ ARMCPRegInfo vsctlr = {
424
+ .name = "VSCTLR", .state = ARM_CP_STATE_AA32,
425
+ .cp = 15, .opc1 = 4, .crn = 2, .crm = 0, .opc2 = 0,
426
+ .access = PL2_RW, .resetvalue = 0x0,
427
+ .fieldoffset = offsetoflow32(CPUARMState, cp15.vsctlr),
428
+ };
429
+ define_one_arm_cp_reg(cpu, &vsctlr);
430
+ }
431
}
432
433
if (cpu_isar_feature(aa64_lor, cpu)) {
434
diff --git a/target/arm/machine.c b/target/arm/machine.c
435
index XXXXXXX..XXXXXXX 100644
436
--- a/target/arm/machine.c
437
+++ b/target/arm/machine.c
438
@@ -XXX,XX +XXX,XX @@ static bool pmsav8_needed(void *opaque)
439
arm_feature(env, ARM_FEATURE_V8);
440
}
441
442
+static bool pmsav8r_needed(void *opaque)
443
+{
444
+ ARMCPU *cpu = opaque;
445
+ CPUARMState *env = &cpu->env;
446
+
447
+ return arm_feature(env, ARM_FEATURE_PMSA) &&
448
+ arm_feature(env, ARM_FEATURE_V8) &&
449
+ !arm_feature(env, ARM_FEATURE_M);
450
+}
451
+
452
+static const VMStateDescription vmstate_pmsav8r = {
453
+ .name = "cpu/pmsav8/pmsav8r",
454
+ .version_id = 1,
455
+ .minimum_version_id = 1,
456
+ .needed = pmsav8r_needed,
457
+ .fields = (VMStateField[]) {
458
+ VMSTATE_VARRAY_UINT32(env.pmsav8.hprbar, ARMCPU,
459
+ pmsav8r_hdregion, 0, vmstate_info_uint32, uint32_t),
460
+ VMSTATE_VARRAY_UINT32(env.pmsav8.hprlar, ARMCPU,
461
+ pmsav8r_hdregion, 0, vmstate_info_uint32, uint32_t),
462
+ VMSTATE_END_OF_LIST()
463
+ },
464
+};
465
+
466
static const VMStateDescription vmstate_pmsav8 = {
467
.name = "cpu/pmsav8",
468
.version_id = 1,
469
@@ -XXX,XX +XXX,XX @@ static const VMStateDescription vmstate_pmsav8 = {
470
VMSTATE_UINT32(env.pmsav8.mair0[M_REG_NS], ARMCPU),
471
VMSTATE_UINT32(env.pmsav8.mair1[M_REG_NS], ARMCPU),
472
VMSTATE_END_OF_LIST()
473
+ },
474
+ .subsections = (const VMStateDescription * []) {
475
+ &vmstate_pmsav8r,
476
+ NULL
477
}
478
};
479
480
--
40
--
481
2.25.1
41
2.34.1
482
42
483
43
diff view generated by jsdifflib
1
From: Axel Heider <axel.heider@hensoldt.net>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
- fix #1263 for CR writes
3
The function is only used for aarch64, so move it to the
4
- rework compare time handling
4
file that has the other aarch64 gdbstub stuff. Move the
5
- The compare timer has to run even if CR.OCIEN is not set,
5
declaration to internals.h.
6
as SR.OCIF must be updated.
6
7
- The compare timer fires exactly once when the
7
Reviewed-by: Fabiano Rosas <farosas@suse.de>
8
compare value is less than the current value, but the
8
Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org>
9
reload values is less than the compare value.
9
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
10
- The compare timer will never fire if the reload value is
10
Message-id: 20230227213329.793795-4-richard.henderson@linaro.org
11
less than the compare value. Disable it in this case.
12
13
Signed-off-by: Axel Heider <axel.heider@hensoldt.net>
14
[PMM: fixed minor style nits]
15
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
16
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
17
---
12
---
18
hw/timer/imx_epit.c | 192 ++++++++++++++++++++++++++------------------
13
target/arm/cpu.h | 6 ---
19
1 file changed, 116 insertions(+), 76 deletions(-)
14
target/arm/internals.h | 1 +
20
15
target/arm/gdbstub.c | 120 -----------------------------------------
21
diff --git a/hw/timer/imx_epit.c b/hw/timer/imx_epit.c
16
target/arm/gdbstub64.c | 118 ++++++++++++++++++++++++++++++++++++++++
17
4 files changed, 119 insertions(+), 126 deletions(-)
18
19
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
22
index XXXXXXX..XXXXXXX 100644
20
index XXXXXXX..XXXXXXX 100644
23
--- a/hw/timer/imx_epit.c
21
--- a/target/arm/cpu.h
24
+++ b/hw/timer/imx_epit.c
22
+++ b/target/arm/cpu.h
25
@@ -XXX,XX +XXX,XX @@
23
@@ -XXX,XX +XXX,XX @@ hwaddr arm_cpu_get_phys_page_attrs_debug(CPUState *cpu, vaddr addr,
26
* Originally written by Hans Jiang
24
int arm_cpu_gdb_read_register(CPUState *cpu, GByteArray *buf, int reg);
27
* Updated by Peter Chubb
25
int arm_cpu_gdb_write_register(CPUState *cpu, uint8_t *buf, int reg);
28
* Updated by Jean-Christophe Dubois <jcd@tribudubois.net>
26
29
+ * Updated by Axel Heider
27
-/*
30
*
28
- * Helpers to dynamically generates XML descriptions of the sysregs
31
* This code is licensed under GPL version 2 or later. See
29
- * and SVE registers. Returns the number of registers in each set.
32
* the COPYING file in the top-level directory.
30
- */
33
@@ -XXX,XX +XXX,XX @@ static uint64_t imx_epit_read(void *opaque, hwaddr offset, unsigned size)
31
-int arm_gen_dynamic_svereg_xml(CPUState *cpu, int base_reg);
34
return reg_value;
32
-
33
/* Returns the dynamically generated XML for the gdb stub.
34
* Returns a pointer to the XML contents for the specified XML file or NULL
35
* if the XML name doesn't match the predefined one.
36
diff --git a/target/arm/internals.h b/target/arm/internals.h
37
index XXXXXXX..XXXXXXX 100644
38
--- a/target/arm/internals.h
39
+++ b/target/arm/internals.h
40
@@ -XXX,XX +XXX,XX @@ static inline uint64_t pmu_counter_mask(CPUARMState *env)
35
}
41
}
36
42
37
-/* Must be called from ptimer_transaction_begin/commit block for s->timer_cmp */
43
#ifdef TARGET_AARCH64
38
-static void imx_epit_reload_compare_timer(IMXEPITState *s)
44
+int arm_gen_dynamic_svereg_xml(CPUState *cpu, int base_reg);
39
+/*
45
int aarch64_gdb_get_sve_reg(CPUARMState *env, GByteArray *buf, int reg);
40
+ * Must be called from a ptimer_transaction_begin/commit block for
46
int aarch64_gdb_set_sve_reg(CPUARMState *env, uint8_t *buf, int reg);
41
+ * s->timer_cmp, but outside of a transaction block of s->timer_reload,
47
int aarch64_gdb_get_fpu_reg(CPUARMState *env, GByteArray *buf, int reg);
42
+ * so the proper counter value is read.
48
diff --git a/target/arm/gdbstub.c b/target/arm/gdbstub.c
43
+ */
49
index XXXXXXX..XXXXXXX 100644
44
+static void imx_epit_update_compare_timer(IMXEPITState *s)
50
--- a/target/arm/gdbstub.c
51
+++ b/target/arm/gdbstub.c
52
@@ -XXX,XX +XXX,XX @@ static int arm_gen_dynamic_sysreg_xml(CPUState *cs, int base_reg)
53
return cpu->dyn_sysreg_xml.num;
54
}
55
56
-struct TypeSize {
57
- const char *gdb_type;
58
- int size;
59
- const char sz, suffix;
60
-};
61
-
62
-static const struct TypeSize vec_lanes[] = {
63
- /* quads */
64
- { "uint128", 128, 'q', 'u' },
65
- { "int128", 128, 'q', 's' },
66
- /* 64 bit */
67
- { "ieee_double", 64, 'd', 'f' },
68
- { "uint64", 64, 'd', 'u' },
69
- { "int64", 64, 'd', 's' },
70
- /* 32 bit */
71
- { "ieee_single", 32, 's', 'f' },
72
- { "uint32", 32, 's', 'u' },
73
- { "int32", 32, 's', 's' },
74
- /* 16 bit */
75
- { "ieee_half", 16, 'h', 'f' },
76
- { "uint16", 16, 'h', 'u' },
77
- { "int16", 16, 'h', 's' },
78
- /* bytes */
79
- { "uint8", 8, 'b', 'u' },
80
- { "int8", 8, 'b', 's' },
81
-};
82
-
83
-
84
-int arm_gen_dynamic_svereg_xml(CPUState *cs, int base_reg)
85
-{
86
- ARMCPU *cpu = ARM_CPU(cs);
87
- GString *s = g_string_new(NULL);
88
- DynamicGDBXMLInfo *info = &cpu->dyn_svereg_xml;
89
- g_autoptr(GString) ts = g_string_new("");
90
- int i, j, bits, reg_width = (cpu->sve_max_vq * 128);
91
- info->num = 0;
92
- g_string_printf(s, "<?xml version=\"1.0\"?>");
93
- g_string_append_printf(s, "<!DOCTYPE target SYSTEM \"gdb-target.dtd\">");
94
- g_string_append_printf(s, "<feature name=\"org.gnu.gdb.aarch64.sve\">");
95
-
96
- /* First define types and totals in a whole VL */
97
- for (i = 0; i < ARRAY_SIZE(vec_lanes); i++) {
98
- int count = reg_width / vec_lanes[i].size;
99
- g_string_printf(ts, "svev%c%c", vec_lanes[i].sz, vec_lanes[i].suffix);
100
- g_string_append_printf(s,
101
- "<vector id=\"%s\" type=\"%s\" count=\"%d\"/>",
102
- ts->str, vec_lanes[i].gdb_type, count);
103
- }
104
- /*
105
- * Now define a union for each size group containing unsigned and
106
- * signed and potentially float versions of each size from 128 to
107
- * 8 bits.
108
- */
109
- for (bits = 128, i = 0; bits >= 8; bits /= 2, i++) {
110
- const char suf[] = { 'q', 'd', 's', 'h', 'b' };
111
- g_string_append_printf(s, "<union id=\"svevn%c\">", suf[i]);
112
- for (j = 0; j < ARRAY_SIZE(vec_lanes); j++) {
113
- if (vec_lanes[j].size == bits) {
114
- g_string_append_printf(s, "<field name=\"%c\" type=\"svev%c%c\"/>",
115
- vec_lanes[j].suffix,
116
- vec_lanes[j].sz, vec_lanes[j].suffix);
117
- }
118
- }
119
- g_string_append(s, "</union>");
120
- }
121
- /* And now the final union of unions */
122
- g_string_append(s, "<union id=\"svev\">");
123
- for (bits = 128, i = 0; bits >= 8; bits /= 2, i++) {
124
- const char suf[] = { 'q', 'd', 's', 'h', 'b' };
125
- g_string_append_printf(s, "<field name=\"%c\" type=\"svevn%c\"/>",
126
- suf[i], suf[i]);
127
- }
128
- g_string_append(s, "</union>");
129
-
130
- /* Finally the sve prefix type */
131
- g_string_append_printf(s,
132
- "<vector id=\"svep\" type=\"uint8\" count=\"%d\"/>",
133
- reg_width / 8);
134
-
135
- /* Then define each register in parts for each vq */
136
- for (i = 0; i < 32; i++) {
137
- g_string_append_printf(s,
138
- "<reg name=\"z%d\" bitsize=\"%d\""
139
- " regnum=\"%d\" type=\"svev\"/>",
140
- i, reg_width, base_reg++);
141
- info->num++;
142
- }
143
- /* fpscr & status registers */
144
- g_string_append_printf(s, "<reg name=\"fpsr\" bitsize=\"32\""
145
- " regnum=\"%d\" group=\"float\""
146
- " type=\"int\"/>", base_reg++);
147
- g_string_append_printf(s, "<reg name=\"fpcr\" bitsize=\"32\""
148
- " regnum=\"%d\" group=\"float\""
149
- " type=\"int\"/>", base_reg++);
150
- info->num += 2;
151
-
152
- for (i = 0; i < 16; i++) {
153
- g_string_append_printf(s,
154
- "<reg name=\"p%d\" bitsize=\"%d\""
155
- " regnum=\"%d\" type=\"svep\"/>",
156
- i, cpu->sve_max_vq * 16, base_reg++);
157
- info->num++;
158
- }
159
- g_string_append_printf(s,
160
- "<reg name=\"ffr\" bitsize=\"%d\""
161
- " regnum=\"%d\" group=\"vector\""
162
- " type=\"svep\"/>",
163
- cpu->sve_max_vq * 16, base_reg++);
164
- g_string_append_printf(s,
165
- "<reg name=\"vg\" bitsize=\"64\""
166
- " regnum=\"%d\" type=\"int\"/>",
167
- base_reg++);
168
- info->num += 2;
169
- g_string_append_printf(s, "</feature>");
170
- cpu->dyn_svereg_xml.desc = g_string_free(s, false);
171
-
172
- return cpu->dyn_svereg_xml.num;
173
-}
174
-
175
-
176
const char *arm_gdb_get_dynamic_xml(CPUState *cs, const char *xmlname)
45
{
177
{
46
- if ((s->cr & (CR_EN | CR_OCIEN)) == (CR_EN | CR_OCIEN)) {
178
ARMCPU *cpu = ARM_CPU(cs);
47
- /* if the compare feature is on and timers are running */
179
diff --git a/target/arm/gdbstub64.c b/target/arm/gdbstub64.c
48
- uint32_t tmp = ptimer_get_count(s->timer_reload);
180
index XXXXXXX..XXXXXXX 100644
49
- uint64_t next;
181
--- a/target/arm/gdbstub64.c
50
- if (tmp > s->cmp) {
182
+++ b/target/arm/gdbstub64.c
51
- /* It'll fire in this round of the timer */
183
@@ -XXX,XX +XXX,XX @@ int aarch64_gdb_set_sve_reg(CPUARMState *env, uint8_t *buf, int reg)
52
- next = tmp - s->cmp;
184
53
- } else { /* catch it next time around */
185
return 0;
54
- next = tmp - s->cmp + ((s->cr & CR_RLD) ? EPIT_TIMER_MAX : s->lr);
186
}
55
+ uint64_t counter = 0;
187
+
56
+ bool is_oneshot = false;
188
+struct TypeSize {
189
+ const char *gdb_type;
190
+ short size;
191
+ char sz, suffix;
192
+};
193
+
194
+static const struct TypeSize vec_lanes[] = {
195
+ /* quads */
196
+ { "uint128", 128, 'q', 'u' },
197
+ { "int128", 128, 'q', 's' },
198
+ /* 64 bit */
199
+ { "ieee_double", 64, 'd', 'f' },
200
+ { "uint64", 64, 'd', 'u' },
201
+ { "int64", 64, 'd', 's' },
202
+ /* 32 bit */
203
+ { "ieee_single", 32, 's', 'f' },
204
+ { "uint32", 32, 's', 'u' },
205
+ { "int32", 32, 's', 's' },
206
+ /* 16 bit */
207
+ { "ieee_half", 16, 'h', 'f' },
208
+ { "uint16", 16, 'h', 'u' },
209
+ { "int16", 16, 'h', 's' },
210
+ /* bytes */
211
+ { "uint8", 8, 'b', 'u' },
212
+ { "int8", 8, 'b', 's' },
213
+};
214
+
215
+int arm_gen_dynamic_svereg_xml(CPUState *cs, int base_reg)
216
+{
217
+ ARMCPU *cpu = ARM_CPU(cs);
218
+ GString *s = g_string_new(NULL);
219
+ DynamicGDBXMLInfo *info = &cpu->dyn_svereg_xml;
220
+ g_autoptr(GString) ts = g_string_new("");
221
+ int i, j, bits, reg_width = (cpu->sve_max_vq * 128);
222
+ info->num = 0;
223
+ g_string_printf(s, "<?xml version=\"1.0\"?>");
224
+ g_string_append_printf(s, "<!DOCTYPE target SYSTEM \"gdb-target.dtd\">");
225
+ g_string_append_printf(s, "<feature name=\"org.gnu.gdb.aarch64.sve\">");
226
+
227
+ /* First define types and totals in a whole VL */
228
+ for (i = 0; i < ARRAY_SIZE(vec_lanes); i++) {
229
+ int count = reg_width / vec_lanes[i].size;
230
+ g_string_printf(ts, "svev%c%c", vec_lanes[i].sz, vec_lanes[i].suffix);
231
+ g_string_append_printf(s,
232
+ "<vector id=\"%s\" type=\"%s\" count=\"%d\"/>",
233
+ ts->str, vec_lanes[i].gdb_type, count);
234
+ }
57
+ /*
235
+ /*
58
+ * The compare timer only has to run if the timer peripheral is active
236
+ * Now define a union for each size group containing unsigned and
59
+ * and there is an input clock, Otherwise it can be switched off.
237
+ * signed and potentially float versions of each size from 128 to
238
+ * 8 bits.
60
+ */
239
+ */
61
+ bool is_active = (s->cr & CR_EN) && imx_epit_get_freq(s);
240
+ for (bits = 128, i = 0; bits >= 8; bits /= 2, i++) {
62
+ if (is_active) {
241
+ const char suf[] = { 'q', 'd', 's', 'h', 'b' };
63
+ /*
242
+ g_string_append_printf(s, "<union id=\"svevn%c\">", suf[i]);
64
+ * Calculate next timeout for compare timer. Reading the reload
243
+ for (j = 0; j < ARRAY_SIZE(vec_lanes); j++) {
65
+ * counter returns proper results only if pending transactions
244
+ if (vec_lanes[j].size == bits) {
66
+ * on it are committed here. Otherwise stale values are be read.
245
+ g_string_append_printf(s, "<field name=\"%c\" type=\"svev%c%c\"/>",
67
+ */
246
+ vec_lanes[j].suffix,
68
+ counter = ptimer_get_count(s->timer_reload);
247
+ vec_lanes[j].sz, vec_lanes[j].suffix);
69
+ uint64_t limit = ptimer_get_limit(s->timer_cmp);
70
+ /*
71
+ * The compare timer is a periodic timer if the limit is at least
72
+ * the compare value. Otherwise it may fire at most once in the
73
+ * current round.
74
+ */
75
+ bool is_oneshot = (limit >= s->cmp);
76
+ if (counter >= s->cmp) {
77
+ /* The compare timer fires in the current round. */
78
+ counter -= s->cmp;
79
+ } else if (!is_oneshot) {
80
+ /*
81
+ * The compare timer fires after a reload, as it is below the
82
+ * compare value already in this round. Note that the counter
83
+ * value calculated below can be above the 32-bit limit, which
84
+ * is legal here because the compare timer is an internal
85
+ * helper ptimer only.
86
+ */
87
+ counter += limit - s->cmp;
88
+ } else {
89
+ /*
90
+ * The compare timer won't fire in this round, and the limit is
91
+ * set to a value below the compare value. This practically means
92
+ * it will never fire, so it can be switched off.
93
+ */
94
+ is_active = false;
95
}
96
- ptimer_set_count(s->timer_cmp, next);
97
}
98
+
99
+ /*
100
+ * Set the compare timer and let it run, or stop it. This is agnostic
101
+ * of CR.OCIEN bit, as this bit affects interrupt generation only. The
102
+ * compare timer needs to run even if no interrupts are to be generated,
103
+ * because the SR.OCIF bit must be updated also.
104
+ * Note that the timer might already be stopped or be running with
105
+ * counter values. However, finding out when an update is needed and
106
+ * when not is not trivial. It's much easier applying the setting again,
107
+ * as this does not harm either and the overhead is negligible.
108
+ */
109
+ if (is_active) {
110
+ ptimer_set_count(s->timer_cmp, counter);
111
+ ptimer_run(s->timer_cmp, is_oneshot ? 1 : 0);
112
+ } else {
113
+ ptimer_stop(s->timer_cmp);
114
+ }
115
+
116
}
117
118
static void imx_epit_write_cr(IMXEPITState *s, uint32_t value)
119
{
120
- uint32_t freq = 0;
121
uint32_t oldcr = s->cr;
122
123
s->cr = value & 0x03ffffff;
124
125
if (s->cr & CR_SWR) {
126
- /* handle the reset */
127
+ /*
128
+ * Reset clears CR.SWR again. It does not touch CR.EN, but the timers
129
+ * are still stopped because the input clock is disabled.
130
+ */
131
imx_epit_reset(s, false);
132
+ } else {
133
+ uint32_t freq;
134
+ uint32_t toggled_cr_bits = oldcr ^ s->cr;
135
+ /* re-initialize the limits if CR.RLD has changed */
136
+ bool set_limit = toggled_cr_bits & CR_RLD;
137
+ /* set the counter if the timer got just enabled and CR.ENMOD is set */
138
+ bool is_switched_on = (toggled_cr_bits & s->cr) & CR_EN;
139
+ bool set_counter = is_switched_on && (s->cr & CR_ENMOD);
140
+
141
+ ptimer_transaction_begin(s->timer_cmp);
142
+ ptimer_transaction_begin(s->timer_reload);
143
+ freq = imx_epit_get_freq(s);
144
+ if (freq) {
145
+ ptimer_set_freq(s->timer_reload, freq);
146
+ ptimer_set_freq(s->timer_cmp, freq);
147
+ }
148
+
149
+ if (set_limit || set_counter) {
150
+ uint64_t limit = (s->cr & CR_RLD) ? s->lr : EPIT_TIMER_MAX;
151
+ ptimer_set_limit(s->timer_reload, limit, set_counter ? 1 : 0);
152
+ if (set_limit) {
153
+ ptimer_set_limit(s->timer_cmp, limit, 0);
154
+ }
248
+ }
155
+ }
249
+ }
156
+ /*
250
+ g_string_append(s, "</union>");
157
+ * If there is an input clock and the peripheral is enabled, then
251
+ }
158
+ * ensure the wall clock timer is ticking. Otherwise stop the timers.
252
+ /* And now the final union of unions */
159
+ * The compare timer will be updated later.
253
+ g_string_append(s, "<union id=\"svev\">");
160
+ */
254
+ for (bits = 128, i = 0; bits >= 8; bits /= 2, i++) {
161
+ if (freq && (s->cr & CR_EN)) {
255
+ const char suf[] = { 'q', 'd', 's', 'h', 'b' };
162
+ ptimer_run(s->timer_reload, 0);
256
+ g_string_append_printf(s, "<field name=\"%c\" type=\"svevn%c\"/>",
163
+ } else {
257
+ suf[i], suf[i]);
164
+ ptimer_stop(s->timer_reload);
258
+ }
165
+ }
259
+ g_string_append(s, "</union>");
166
+ /* Commit changes to reload timer, so they can propagate. */
260
+
167
+ ptimer_transaction_commit(s->timer_reload);
261
+ /* Finally the sve prefix type */
168
+ /* Update compare timer based on the committed reload timer value. */
262
+ g_string_append_printf(s,
169
+ imx_epit_update_compare_timer(s);
263
+ "<vector id=\"svep\" type=\"uint8\" count=\"%d\"/>",
170
+ ptimer_transaction_commit(s->timer_cmp);
264
+ reg_width / 8);
171
}
265
+
172
266
+ /* Then define each register in parts for each vq */
173
/*
267
+ for (i = 0; i < 32; i++) {
174
@@ -XXX,XX +XXX,XX @@ static void imx_epit_write_cr(IMXEPITState *s, uint32_t value)
268
+ g_string_append_printf(s,
175
* - write to CR.EN or CR.OCIE
269
+ "<reg name=\"z%d\" bitsize=\"%d\""
176
*/
270
+ " regnum=\"%d\" type=\"svev\"/>",
177
imx_epit_update_int(s);
271
+ i, reg_width, base_reg++);
178
-
272
+ info->num++;
179
- /*
273
+ }
180
- * TODO: could we 'break' here for reset? following operations appear
274
+ /* fpscr & status registers */
181
- * to duplicate the work imx_epit_reset() already did.
275
+ g_string_append_printf(s, "<reg name=\"fpsr\" bitsize=\"32\""
182
- */
276
+ " regnum=\"%d\" group=\"float\""
183
-
277
+ " type=\"int\"/>", base_reg++);
184
- ptimer_transaction_begin(s->timer_cmp);
278
+ g_string_append_printf(s, "<reg name=\"fpcr\" bitsize=\"32\""
185
- ptimer_transaction_begin(s->timer_reload);
279
+ " regnum=\"%d\" group=\"float\""
186
-
280
+ " type=\"int\"/>", base_reg++);
187
- /*
281
+ info->num += 2;
188
- * Update the frequency. In case of a reset the input clock was
282
+
189
- * switched off, so this can be skipped.
283
+ for (i = 0; i < 16; i++) {
190
- */
284
+ g_string_append_printf(s,
191
- if (!(s->cr & CR_SWR)) {
285
+ "<reg name=\"p%d\" bitsize=\"%d\""
192
- freq = imx_epit_get_freq(s);
286
+ " regnum=\"%d\" type=\"svep\"/>",
193
- if (freq) {
287
+ i, cpu->sve_max_vq * 16, base_reg++);
194
- ptimer_set_freq(s->timer_reload, freq);
288
+ info->num++;
195
- ptimer_set_freq(s->timer_cmp, freq);
289
+ }
196
- }
290
+ g_string_append_printf(s,
197
- }
291
+ "<reg name=\"ffr\" bitsize=\"%d\""
198
-
292
+ " regnum=\"%d\" group=\"vector\""
199
- if (freq && (s->cr & CR_EN) && !(oldcr & CR_EN)) {
293
+ " type=\"svep\"/>",
200
- if (s->cr & CR_ENMOD) {
294
+ cpu->sve_max_vq * 16, base_reg++);
201
- if (s->cr & CR_RLD) {
295
+ g_string_append_printf(s,
202
- ptimer_set_limit(s->timer_reload, s->lr, 1);
296
+ "<reg name=\"vg\" bitsize=\"64\""
203
- ptimer_set_limit(s->timer_cmp, s->lr, 1);
297
+ " regnum=\"%d\" type=\"int\"/>",
204
- } else {
298
+ base_reg++);
205
- ptimer_set_limit(s->timer_reload, EPIT_TIMER_MAX, 1);
299
+ info->num += 2;
206
- ptimer_set_limit(s->timer_cmp, EPIT_TIMER_MAX, 1);
300
+ g_string_append_printf(s, "</feature>");
207
- }
301
+ info->desc = g_string_free(s, false);
208
- }
302
+
209
-
303
+ return info->num;
210
- imx_epit_reload_compare_timer(s);
304
+}
211
- ptimer_run(s->timer_reload, 0);
212
- if (s->cr & CR_OCIEN) {
213
- ptimer_run(s->timer_cmp, 0);
214
- } else {
215
- ptimer_stop(s->timer_cmp);
216
- }
217
- } else if (!(s->cr & CR_EN)) {
218
- /* stop both timers */
219
- ptimer_stop(s->timer_reload);
220
- ptimer_stop(s->timer_cmp);
221
- } else if (s->cr & CR_OCIEN) {
222
- if (!(oldcr & CR_OCIEN)) {
223
- imx_epit_reload_compare_timer(s);
224
- ptimer_run(s->timer_cmp, 0);
225
- }
226
- } else {
227
- ptimer_stop(s->timer_cmp);
228
- }
229
-
230
- ptimer_transaction_commit(s->timer_cmp);
231
- ptimer_transaction_commit(s->timer_reload);
232
}
233
234
static void imx_epit_write_sr(IMXEPITState *s, uint32_t value)
235
@@ -XXX,XX +XXX,XX @@ static void imx_epit_write_lr(IMXEPITState *s, uint32_t value)
236
/* If IOVW bit is set then set the timer value */
237
ptimer_set_count(s->timer_reload, s->lr);
238
}
239
- /*
240
- * Commit the change to s->timer_reload, so it can propagate. Otherwise
241
- * the timer interrupt may not fire properly. The commit must happen
242
- * before calling imx_epit_reload_compare_timer(), which reads
243
- * s->timer_reload internally again.
244
- */
245
+ /* Commit the changes to s->timer_reload, so they can propagate. */
246
ptimer_transaction_commit(s->timer_reload);
247
- imx_epit_reload_compare_timer(s);
248
+ /* Update the compare timer based on the committed reload timer value. */
249
+ imx_epit_update_compare_timer(s);
250
ptimer_transaction_commit(s->timer_cmp);
251
}
252
253
@@ -XXX,XX +XXX,XX @@ static void imx_epit_write_cmp(IMXEPITState *s, uint32_t value)
254
{
255
s->cmp = value;
256
257
+ /* Update the compare timer based on the committed reload timer value. */
258
ptimer_transaction_begin(s->timer_cmp);
259
- imx_epit_reload_compare_timer(s);
260
+ imx_epit_update_compare_timer(s);
261
ptimer_transaction_commit(s->timer_cmp);
262
}
263
264
@@ -XXX,XX +XXX,XX @@ static void imx_epit_cmp(void *opaque)
265
{
266
IMXEPITState *s = IMX_EPIT(opaque);
267
268
+ /* The cmp ptimer can't be running when the peripheral is disabled */
269
+ assert(s->cr & CR_EN);
270
+
271
DPRINTF("sr was %d\n", s->sr);
272
/* Set interrupt status bit SR.OCIF and update the interrupt state */
273
s->sr |= SR_OCIF;
274
--
305
--
275
2.25.1
306
2.34.1
307
308
diff view generated by jsdifflib
1
From: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
All constants are taken from the ARM Cortex-R52 Processor TRM Revision: r1p3
3
Create a subroutine for creating the union of unions
4
of the various type sizes that a vector may contain.
4
5
5
Signed-off-by: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
6
Reviewed-by: Fabiano Rosas <farosas@suse.de>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Message-id: 20221206102504.165775-8-tobias.roehmel@rwth-aachen.de
8
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
9
Message-id: 20230227213329.793795-5-richard.henderson@linaro.org
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
---
11
---
10
target/arm/cpu_tcg.c | 42 ++++++++++++++++++++++++++++++++++++++++++
12
target/arm/gdbstub64.c | 83 +++++++++++++++++++++++-------------------
11
1 file changed, 42 insertions(+)
13
1 file changed, 45 insertions(+), 38 deletions(-)
12
14
13
diff --git a/target/arm/cpu_tcg.c b/target/arm/cpu_tcg.c
15
diff --git a/target/arm/gdbstub64.c b/target/arm/gdbstub64.c
14
index XXXXXXX..XXXXXXX 100644
16
index XXXXXXX..XXXXXXX 100644
15
--- a/target/arm/cpu_tcg.c
17
--- a/target/arm/gdbstub64.c
16
+++ b/target/arm/cpu_tcg.c
18
+++ b/target/arm/gdbstub64.c
17
@@ -XXX,XX +XXX,XX @@ static void cortex_r5_initfn(Object *obj)
19
@@ -XXX,XX +XXX,XX @@ int aarch64_gdb_set_sve_reg(CPUARMState *env, uint8_t *buf, int reg)
18
define_arm_cp_regs(cpu, cortexr5_cp_reginfo);
20
return 0;
19
}
21
}
20
22
21
+static void cortex_r52_initfn(Object *obj)
23
-struct TypeSize {
22
+{
24
- const char *gdb_type;
23
+ ARMCPU *cpu = ARM_CPU(obj);
25
- short size;
26
- char sz, suffix;
27
-};
28
-
29
-static const struct TypeSize vec_lanes[] = {
30
- /* quads */
31
- { "uint128", 128, 'q', 'u' },
32
- { "int128", 128, 'q', 's' },
33
- /* 64 bit */
34
- { "ieee_double", 64, 'd', 'f' },
35
- { "uint64", 64, 'd', 'u' },
36
- { "int64", 64, 'd', 's' },
37
- /* 32 bit */
38
- { "ieee_single", 32, 's', 'f' },
39
- { "uint32", 32, 's', 'u' },
40
- { "int32", 32, 's', 's' },
41
- /* 16 bit */
42
- { "ieee_half", 16, 'h', 'f' },
43
- { "uint16", 16, 'h', 'u' },
44
- { "int16", 16, 'h', 's' },
45
- /* bytes */
46
- { "uint8", 8, 'b', 'u' },
47
- { "int8", 8, 'b', 's' },
48
-};
49
-
50
-int arm_gen_dynamic_svereg_xml(CPUState *cs, int base_reg)
51
+static void output_vector_union_type(GString *s, int reg_width)
52
{
53
- ARMCPU *cpu = ARM_CPU(cs);
54
- GString *s = g_string_new(NULL);
55
- DynamicGDBXMLInfo *info = &cpu->dyn_svereg_xml;
56
+ struct TypeSize {
57
+ const char *gdb_type;
58
+ short size;
59
+ char sz, suffix;
60
+ };
24
+
61
+
25
+ set_feature(&cpu->env, ARM_FEATURE_V8);
62
+ static const struct TypeSize vec_lanes[] = {
26
+ set_feature(&cpu->env, ARM_FEATURE_EL2);
63
+ /* quads */
27
+ set_feature(&cpu->env, ARM_FEATURE_PMSA);
64
+ { "uint128", 128, 'q', 'u' },
28
+ set_feature(&cpu->env, ARM_FEATURE_NEON);
65
+ { "int128", 128, 'q', 's' },
29
+ set_feature(&cpu->env, ARM_FEATURE_GENERIC_TIMER);
66
+ /* 64 bit */
30
+ cpu->midr = 0x411fd133; /* r1p3 */
67
+ { "ieee_double", 64, 'd', 'f' },
31
+ cpu->revidr = 0x00000000;
68
+ { "uint64", 64, 'd', 'u' },
32
+ cpu->reset_fpsid = 0x41034023;
69
+ { "int64", 64, 'd', 's' },
33
+ cpu->isar.mvfr0 = 0x10110222;
70
+ /* 32 bit */
34
+ cpu->isar.mvfr1 = 0x12111111;
71
+ { "ieee_single", 32, 's', 'f' },
35
+ cpu->isar.mvfr2 = 0x00000043;
72
+ { "uint32", 32, 's', 'u' },
36
+ cpu->ctr = 0x8144c004;
73
+ { "int32", 32, 's', 's' },
37
+ cpu->reset_sctlr = 0x30c50838;
74
+ /* 16 bit */
38
+ cpu->isar.id_pfr0 = 0x00000131;
75
+ { "ieee_half", 16, 'h', 'f' },
39
+ cpu->isar.id_pfr1 = 0x10111001;
76
+ { "uint16", 16, 'h', 'u' },
40
+ cpu->isar.id_dfr0 = 0x03010006;
77
+ { "int16", 16, 'h', 's' },
41
+ cpu->id_afr0 = 0x00000000;
78
+ /* bytes */
42
+ cpu->isar.id_mmfr0 = 0x00211040;
79
+ { "uint8", 8, 'b', 'u' },
43
+ cpu->isar.id_mmfr1 = 0x40000000;
80
+ { "int8", 8, 'b', 's' },
44
+ cpu->isar.id_mmfr2 = 0x01200000;
81
+ };
45
+ cpu->isar.id_mmfr3 = 0xf0102211;
46
+ cpu->isar.id_mmfr4 = 0x00000010;
47
+ cpu->isar.id_isar0 = 0x02101110;
48
+ cpu->isar.id_isar1 = 0x13112111;
49
+ cpu->isar.id_isar2 = 0x21232142;
50
+ cpu->isar.id_isar3 = 0x01112131;
51
+ cpu->isar.id_isar4 = 0x00010142;
52
+ cpu->isar.id_isar5 = 0x00010001;
53
+ cpu->isar.dbgdidr = 0x77168000;
54
+ cpu->clidr = (1 << 27) | (1 << 24) | 0x3;
55
+ cpu->ccsidr[0] = 0x700fe01a; /* 32KB L1 dcache */
56
+ cpu->ccsidr[1] = 0x201fe00a; /* 32KB L1 icache */
57
+
82
+
58
+ cpu->pmsav7_dregion = 16;
83
+ static const char suf[] = { 'q', 'd', 's', 'h', 'b' };
59
+ cpu->pmsav8r_hdregion = 16;
84
+
85
g_autoptr(GString) ts = g_string_new("");
86
- int i, j, bits, reg_width = (cpu->sve_max_vq * 128);
87
- info->num = 0;
88
- g_string_printf(s, "<?xml version=\"1.0\"?>");
89
- g_string_append_printf(s, "<!DOCTYPE target SYSTEM \"gdb-target.dtd\">");
90
- g_string_append_printf(s, "<feature name=\"org.gnu.gdb.aarch64.sve\">");
91
+ int i, j, bits;
92
93
/* First define types and totals in a whole VL */
94
for (i = 0; i < ARRAY_SIZE(vec_lanes); i++) {
95
@@ -XXX,XX +XXX,XX @@ int arm_gen_dynamic_svereg_xml(CPUState *cs, int base_reg)
96
* 8 bits.
97
*/
98
for (bits = 128, i = 0; bits >= 8; bits /= 2, i++) {
99
- const char suf[] = { 'q', 'd', 's', 'h', 'b' };
100
g_string_append_printf(s, "<union id=\"svevn%c\">", suf[i]);
101
for (j = 0; j < ARRAY_SIZE(vec_lanes); j++) {
102
if (vec_lanes[j].size == bits) {
103
@@ -XXX,XX +XXX,XX @@ int arm_gen_dynamic_svereg_xml(CPUState *cs, int base_reg)
104
/* And now the final union of unions */
105
g_string_append(s, "<union id=\"svev\">");
106
for (bits = 128, i = 0; bits >= 8; bits /= 2, i++) {
107
- const char suf[] = { 'q', 'd', 's', 'h', 'b' };
108
g_string_append_printf(s, "<field name=\"%c\" type=\"svevn%c\"/>",
109
suf[i], suf[i]);
110
}
111
g_string_append(s, "</union>");
60
+}
112
+}
61
+
113
+
62
static void cortex_r5f_initfn(Object *obj)
114
+int arm_gen_dynamic_svereg_xml(CPUState *cs, int base_reg)
63
{
115
+{
64
ARMCPU *cpu = ARM_CPU(obj);
116
+ ARMCPU *cpu = ARM_CPU(cs);
65
@@ -XXX,XX +XXX,XX @@ static const ARMCPUInfo arm_tcg_cpus[] = {
117
+ GString *s = g_string_new(NULL);
66
.class_init = arm_v7m_class_init },
118
+ DynamicGDBXMLInfo *info = &cpu->dyn_svereg_xml;
67
{ .name = "cortex-r5", .initfn = cortex_r5_initfn },
119
+ int i, reg_width = (cpu->sve_max_vq * 128);
68
{ .name = "cortex-r5f", .initfn = cortex_r5f_initfn },
120
+ info->num = 0;
69
+ { .name = "cortex-r52", .initfn = cortex_r52_initfn },
121
+ g_string_printf(s, "<?xml version=\"1.0\"?>");
70
{ .name = "ti925t", .initfn = ti925t_initfn },
122
+ g_string_append_printf(s, "<!DOCTYPE target SYSTEM \"gdb-target.dtd\">");
71
{ .name = "sa1100", .initfn = sa1100_initfn },
123
+ g_string_append_printf(s, "<feature name=\"org.gnu.gdb.aarch64.sve\">");
72
{ .name = "sa1110", .initfn = sa1110_initfn },
124
+
125
+ output_vector_union_type(s, reg_width);
126
127
/* Finally the sve prefix type */
128
g_string_append_printf(s,
73
--
129
--
74
2.25.1
130
2.34.1
75
76
diff view generated by jsdifflib
1
From: Philippe Mathieu-Daudé <philmd@linaro.org>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
This function is not used anywhere outside this file,
3
Rather than increment base_reg and num, compute num from the change
4
so we can make the function "static void".
4
to base_reg at the end. Clean up some nearby comments.
5
5
6
Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org>
6
Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org>
7
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
7
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
8
Reviewed-by: Eric Auger <eric.auger@redhat.com>
8
Message-id: 20230227213329.793795-6-richard.henderson@linaro.org
9
Message-id: 20221216214924.4711-2-philmd@linaro.org
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
---
10
---
12
include/hw/arm/smmu-common.h | 3 ---
11
target/arm/gdbstub64.c | 27 ++++++++++++++++-----------
13
hw/arm/smmu-common.c | 2 +-
12
1 file changed, 16 insertions(+), 11 deletions(-)
14
2 files changed, 1 insertion(+), 4 deletions(-)
15
13
16
diff --git a/include/hw/arm/smmu-common.h b/include/hw/arm/smmu-common.h
14
diff --git a/target/arm/gdbstub64.c b/target/arm/gdbstub64.c
17
index XXXXXXX..XXXXXXX 100644
15
index XXXXXXX..XXXXXXX 100644
18
--- a/include/hw/arm/smmu-common.h
16
--- a/target/arm/gdbstub64.c
19
+++ b/include/hw/arm/smmu-common.h
17
+++ b/target/arm/gdbstub64.c
20
@@ -XXX,XX +XXX,XX @@ void smmu_iotlb_inv_iova(SMMUState *s, int asid, dma_addr_t iova,
18
@@ -XXX,XX +XXX,XX @@ static void output_vector_union_type(GString *s, int reg_width)
21
/* Unmap the range of all the notifiers registered to any IOMMU mr */
19
g_string_append(s, "</union>");
22
void smmu_inv_notifiers_all(SMMUState *s);
23
24
-/* Unmap the range of all the notifiers registered to @mr */
25
-void smmu_inv_notifiers_mr(IOMMUMemoryRegion *mr);
26
-
27
#endif /* HW_ARM_SMMU_COMMON_H */
28
diff --git a/hw/arm/smmu-common.c b/hw/arm/smmu-common.c
29
index XXXXXXX..XXXXXXX 100644
30
--- a/hw/arm/smmu-common.c
31
+++ b/hw/arm/smmu-common.c
32
@@ -XXX,XX +XXX,XX @@ static void smmu_unmap_notifier_range(IOMMUNotifier *n)
33
}
20
}
34
21
35
/* Unmap all notifiers attached to @mr */
22
-int arm_gen_dynamic_svereg_xml(CPUState *cs, int base_reg)
36
-inline void smmu_inv_notifiers_mr(IOMMUMemoryRegion *mr)
23
+int arm_gen_dynamic_svereg_xml(CPUState *cs, int orig_base_reg)
37
+static void smmu_inv_notifiers_mr(IOMMUMemoryRegion *mr)
38
{
24
{
39
IOMMUNotifier *n;
25
ARMCPU *cpu = ARM_CPU(cs);
40
26
GString *s = g_string_new(NULL);
27
DynamicGDBXMLInfo *info = &cpu->dyn_svereg_xml;
28
- int i, reg_width = (cpu->sve_max_vq * 128);
29
- info->num = 0;
30
+ int reg_width = cpu->sve_max_vq * 128;
31
+ int base_reg = orig_base_reg;
32
+ int i;
33
+
34
g_string_printf(s, "<?xml version=\"1.0\"?>");
35
g_string_append_printf(s, "<!DOCTYPE target SYSTEM \"gdb-target.dtd\">");
36
g_string_append_printf(s, "<feature name=\"org.gnu.gdb.aarch64.sve\">");
37
38
+ /* Create the vector union type. */
39
output_vector_union_type(s, reg_width);
40
41
- /* Finally the sve prefix type */
42
+ /* Create the predicate vector type. */
43
g_string_append_printf(s,
44
"<vector id=\"svep\" type=\"uint8\" count=\"%d\"/>",
45
reg_width / 8);
46
47
- /* Then define each register in parts for each vq */
48
+ /* Define the vector registers. */
49
for (i = 0; i < 32; i++) {
50
g_string_append_printf(s,
51
"<reg name=\"z%d\" bitsize=\"%d\""
52
" regnum=\"%d\" type=\"svev\"/>",
53
i, reg_width, base_reg++);
54
- info->num++;
55
}
56
+
57
/* fpscr & status registers */
58
g_string_append_printf(s, "<reg name=\"fpsr\" bitsize=\"32\""
59
" regnum=\"%d\" group=\"float\""
60
@@ -XXX,XX +XXX,XX @@ int arm_gen_dynamic_svereg_xml(CPUState *cs, int base_reg)
61
g_string_append_printf(s, "<reg name=\"fpcr\" bitsize=\"32\""
62
" regnum=\"%d\" group=\"float\""
63
" type=\"int\"/>", base_reg++);
64
- info->num += 2;
65
66
+ /* Define the predicate registers. */
67
for (i = 0; i < 16; i++) {
68
g_string_append_printf(s,
69
"<reg name=\"p%d\" bitsize=\"%d\""
70
" regnum=\"%d\" type=\"svep\"/>",
71
i, cpu->sve_max_vq * 16, base_reg++);
72
- info->num++;
73
}
74
g_string_append_printf(s,
75
"<reg name=\"ffr\" bitsize=\"%d\""
76
" regnum=\"%d\" group=\"vector\""
77
" type=\"svep\"/>",
78
cpu->sve_max_vq * 16, base_reg++);
79
+
80
+ /* Define the vector length pseudo-register. */
81
g_string_append_printf(s,
82
"<reg name=\"vg\" bitsize=\"64\""
83
" regnum=\"%d\" type=\"int\"/>",
84
base_reg++);
85
- info->num += 2;
86
- g_string_append_printf(s, "</feature>");
87
- info->desc = g_string_free(s, false);
88
89
+ g_string_append_printf(s, "</feature>");
90
+
91
+ info->desc = g_string_free(s, false);
92
+ info->num = base_reg - orig_base_reg;
93
return info->num;
94
}
41
--
95
--
42
2.25.1
96
2.34.1
43
97
44
98
diff view generated by jsdifflib
1
From: Philippe Mathieu-Daudé <philmd@linaro.org>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
Silent when compiling with -Wextra:
3
Reviewed-by: Fabiano Rosas <farosas@suse.de>
4
4
Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org>
5
../hw/arm/nseries.c:1081:12: warning: missing field 'line' initializer [-Wmissing-field-initializers]
5
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
6
{ NULL }
6
Message-id: 20230227213329.793795-7-richard.henderson@linaro.org
7
^
8
9
Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org>
10
Message-id: 20221220142520.24094-4-philmd@linaro.org
11
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
---
8
---
14
hw/arm/nseries.c | 10 ++++------
9
target/arm/gdbstub64.c | 5 +++--
15
1 file changed, 4 insertions(+), 6 deletions(-)
10
1 file changed, 3 insertions(+), 2 deletions(-)
16
11
17
diff --git a/hw/arm/nseries.c b/hw/arm/nseries.c
12
diff --git a/target/arm/gdbstub64.c b/target/arm/gdbstub64.c
18
index XXXXXXX..XXXXXXX 100644
13
index XXXXXXX..XXXXXXX 100644
19
--- a/hw/arm/nseries.c
14
--- a/target/arm/gdbstub64.c
20
+++ b/hw/arm/nseries.c
15
+++ b/target/arm/gdbstub64.c
21
@@ -XXX,XX +XXX,XX @@ static const struct omap_gpiosw_info_s {
16
@@ -XXX,XX +XXX,XX @@ int arm_gen_dynamic_svereg_xml(CPUState *cs, int orig_base_reg)
22
"headphone", N8X0_HEADPHONE_GPIO,
17
GString *s = g_string_new(NULL);
23
OMAP_GPIOSW_TYPE_CONNECTION | OMAP_GPIOSW_INVERTED,
18
DynamicGDBXMLInfo *info = &cpu->dyn_svereg_xml;
24
},
19
int reg_width = cpu->sve_max_vq * 128;
25
- { NULL }
20
+ int pred_width = cpu->sve_max_vq * 16;
26
+ { /* end of list */ }
21
int base_reg = orig_base_reg;
27
}, n810_gpiosw_info[] = {
22
int i;
28
{
23
29
"gps_reset", N810_GPS_RESET_GPIO,
24
@@ -XXX,XX +XXX,XX @@ int arm_gen_dynamic_svereg_xml(CPUState *cs, int orig_base_reg)
30
@@ -XXX,XX +XXX,XX @@ static const struct omap_gpiosw_info_s {
25
g_string_append_printf(s,
31
"slide", N810_SLIDE_GPIO,
26
"<reg name=\"p%d\" bitsize=\"%d\""
32
OMAP_GPIOSW_TYPE_COVER | OMAP_GPIOSW_INVERTED,
27
" regnum=\"%d\" type=\"svep\"/>",
33
},
28
- i, cpu->sve_max_vq * 16, base_reg++);
34
- { NULL }
29
+ i, pred_width, base_reg++);
35
+ { /* end of list */ }
30
}
36
};
31
g_string_append_printf(s,
37
32
"<reg name=\"ffr\" bitsize=\"%d\""
38
static const struct omap_partition_info_s {
33
" regnum=\"%d\" group=\"vector\""
39
@@ -XXX,XX +XXX,XX @@ static const struct omap_partition_info_s {
34
" type=\"svep\"/>",
40
{ 0x00080000, 0x00200000, 0x0, "kernel" },
35
- cpu->sve_max_vq * 16, base_reg++);
41
{ 0x00280000, 0x00200000, 0x3, "initfs" },
36
+ pred_width, base_reg++);
42
{ 0x00480000, 0x0fb80000, 0x3, "rootfs" },
37
43
-
38
/* Define the vector length pseudo-register. */
44
- { 0, 0, 0, NULL }
39
g_string_append_printf(s,
45
+ { /* end of list */ }
46
}, n810_part_info[] = {
47
{ 0x00000000, 0x00020000, 0x3, "bootloader" },
48
{ 0x00020000, 0x00060000, 0x0, "config" },
49
{ 0x00080000, 0x00220000, 0x0, "kernel" },
50
{ 0x002a0000, 0x00400000, 0x0, "initfs" },
51
{ 0x006a0000, 0x0f960000, 0x0, "rootfs" },
52
-
53
- { 0, 0, 0, NULL }
54
+ { /* end of list */ }
55
};
56
57
static const uint8_t n8x0_bd_addr[6] = { N8X0_BD_ADDR };
58
--
40
--
59
2.25.1
41
2.34.1
60
42
61
43
diff view generated by jsdifflib
1
From: Alex Bennée <alex.bennee@linaro.org>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
The check semihosting_enabled() wants to know if the guest is
3
Define svep based on the size of the predicates,
4
currently in user mode. Unlike the other cases the test was inverted
4
not the primary vector registers.
5
causing us to block semihosting calls in non-EL0 modes.
6
5
7
Cc: qemu-stable@nongnu.org
8
Fixes: 19b26317e9 (target/arm: Honour -semihosting-config userspace=on)
9
Signed-off-by: Alex Bennée <alex.bennee@linaro.org>
10
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20230227213329.793795-8-richard.henderson@linaro.org
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
---
10
---
13
target/arm/translate.c | 2 +-
11
target/arm/gdbstub64.c | 2 +-
14
1 file changed, 1 insertion(+), 1 deletion(-)
12
1 file changed, 1 insertion(+), 1 deletion(-)
15
13
16
diff --git a/target/arm/translate.c b/target/arm/translate.c
14
diff --git a/target/arm/gdbstub64.c b/target/arm/gdbstub64.c
17
index XXXXXXX..XXXXXXX 100644
15
index XXXXXXX..XXXXXXX 100644
18
--- a/target/arm/translate.c
16
--- a/target/arm/gdbstub64.c
19
+++ b/target/arm/translate.c
17
+++ b/target/arm/gdbstub64.c
20
@@ -XXX,XX +XXX,XX @@ static inline void gen_hlt(DisasContext *s, int imm)
18
@@ -XXX,XX +XXX,XX @@ int arm_gen_dynamic_svereg_xml(CPUState *cs, int orig_base_reg)
21
* semihosting, to provide some semblance of security
19
/* Create the predicate vector type. */
22
* (and for consistency with our 32-bit semihosting).
20
g_string_append_printf(s,
23
*/
21
"<vector id=\"svep\" type=\"uint8\" count=\"%d\"/>",
24
- if (semihosting_enabled(s->current_el != 0) &&
22
- reg_width / 8);
25
+ if (semihosting_enabled(s->current_el == 0) &&
23
+ pred_width / 8);
26
(imm == (s->thumb ? 0x3c : 0xf000))) {
24
27
gen_exception_internal_insn(s, EXCP_SEMIHOST);
25
/* Define the vector registers. */
28
return;
26
for (i = 0; i < 32; i++) {
29
--
27
--
30
2.25.1
28
2.34.1
31
32
diff view generated by jsdifflib
1
From: Philippe Mathieu-Daudé <philmd@linaro.org>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org>
3
This will make the function usable between SVE and SME.
4
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
4
5
Message-id: 20221220142520.24094-3-philmd@linaro.org
5
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org>
7
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20230227213329.793795-9-richard.henderson@linaro.org
6
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
---
10
---
8
hw/arm/nseries.c | 18 +++++++++---------
11
target/arm/gdbstub64.c | 28 ++++++++++++++--------------
9
1 file changed, 9 insertions(+), 9 deletions(-)
12
1 file changed, 14 insertions(+), 14 deletions(-)
10
13
11
diff --git a/hw/arm/nseries.c b/hw/arm/nseries.c
14
diff --git a/target/arm/gdbstub64.c b/target/arm/gdbstub64.c
12
index XXXXXXX..XXXXXXX 100644
15
index XXXXXXX..XXXXXXX 100644
13
--- a/hw/arm/nseries.c
16
--- a/target/arm/gdbstub64.c
14
+++ b/hw/arm/nseries.c
17
+++ b/target/arm/gdbstub64.c
15
@@ -XXX,XX +XXX,XX @@ static void n8x0_i2c_setup(struct n800_s *s)
18
@@ -XXX,XX +XXX,XX @@ int aarch64_gdb_set_sve_reg(CPUARMState *env, uint8_t *buf, int reg)
19
return 0;
16
}
20
}
17
21
18
/* Touchscreen and keypad controller */
22
-static void output_vector_union_type(GString *s, int reg_width)
19
-static MouseTransformInfo n800_pointercal = {
23
+static void output_vector_union_type(GString *s, int reg_width,
20
+static const MouseTransformInfo n800_pointercal = {
24
+ const char *name)
21
.x = 800,
22
.y = 480,
23
.a = { 14560, -68, -3455208, -39, -9621, 35152972, 65536 },
24
};
25
26
-static MouseTransformInfo n810_pointercal = {
27
+static const MouseTransformInfo n810_pointercal = {
28
.x = 800,
29
.y = 480,
30
.a = { 15041, 148, -4731056, 171, -10238, 35933380, 65536 },
31
@@ -XXX,XX +XXX,XX @@ static void n810_key_event(void *opaque, int keycode)
32
33
#define M    0
34
35
-static int n810_keys[0x80] = {
36
+static const int n810_keys[0x80] = {
37
[0x01] = 16,    /* Q */
38
[0x02] = 37,    /* K */
39
[0x03] = 24,    /* O */
40
@@ -XXX,XX +XXX,XX @@ static void n8x0_usb_setup(struct n800_s *s)
41
/* Setup done before the main bootloader starts by some early setup code
42
* - used when we want to run the main bootloader in emulation. This
43
* isn't documented. */
44
-static uint32_t n800_pinout[104] = {
45
+static const uint32_t n800_pinout[104] = {
46
0x080f00d8, 0x00d40808, 0x03080808, 0x080800d0,
47
0x00dc0808, 0x0b0f0f00, 0x080800b4, 0x00c00808,
48
0x08080808, 0x180800c4, 0x00b80000, 0x08080808,
49
@@ -XXX,XX +XXX,XX @@ static void n8x0_boot_init(void *opaque)
50
#define OMAP_TAG_CBUS        0x4e03
51
#define OMAP_TAG_EM_ASIC_BB5    0x4e04
52
53
-static struct omap_gpiosw_info_s {
54
+static const struct omap_gpiosw_info_s {
55
const char *name;
56
int line;
57
int type;
58
@@ -XXX,XX +XXX,XX @@ static struct omap_gpiosw_info_s {
59
{ NULL }
60
};
61
62
-static struct omap_partition_info_s {
63
+static const struct omap_partition_info_s {
64
uint32_t offset;
65
uint32_t size;
66
int mask;
67
@@ -XXX,XX +XXX,XX @@ static struct omap_partition_info_s {
68
{ 0, 0, 0, NULL }
69
};
70
71
-static uint8_t n8x0_bd_addr[6] = { N8X0_BD_ADDR };
72
+static const uint8_t n8x0_bd_addr[6] = { N8X0_BD_ADDR };
73
74
static int n8x0_atag_setup(void *p, int model)
75
{
25
{
76
uint8_t *b;
26
struct TypeSize {
77
uint16_t *w;
27
const char *gdb_type;
78
uint32_t *l;
28
@@ -XXX,XX +XXX,XX @@ static void output_vector_union_type(GString *s, int reg_width)
79
- struct omap_gpiosw_info_s *gpiosw;
29
};
80
- struct omap_partition_info_s *partition;
30
81
+ const struct omap_gpiosw_info_s *gpiosw;
31
static const char suf[] = { 'q', 'd', 's', 'h', 'b' };
82
+ const struct omap_partition_info_s *partition;
32
-
83
const char *tag;
33
- g_autoptr(GString) ts = g_string_new("");
84
34
int i, j, bits;
85
w = p;
35
36
/* First define types and totals in a whole VL */
37
for (i = 0; i < ARRAY_SIZE(vec_lanes); i++) {
38
- int count = reg_width / vec_lanes[i].size;
39
- g_string_printf(ts, "svev%c%c", vec_lanes[i].sz, vec_lanes[i].suffix);
40
g_string_append_printf(s,
41
- "<vector id=\"%s\" type=\"%s\" count=\"%d\"/>",
42
- ts->str, vec_lanes[i].gdb_type, count);
43
+ "<vector id=\"%s%c%c\" type=\"%s\" count=\"%d\"/>",
44
+ name, vec_lanes[i].sz, vec_lanes[i].suffix,
45
+ vec_lanes[i].gdb_type, reg_width / vec_lanes[i].size);
46
}
47
+
48
/*
49
* Now define a union for each size group containing unsigned and
50
* signed and potentially float versions of each size from 128 to
51
* 8 bits.
52
*/
53
for (bits = 128, i = 0; bits >= 8; bits /= 2, i++) {
54
- g_string_append_printf(s, "<union id=\"svevn%c\">", suf[i]);
55
+ g_string_append_printf(s, "<union id=\"%sn%c\">", name, suf[i]);
56
for (j = 0; j < ARRAY_SIZE(vec_lanes); j++) {
57
if (vec_lanes[j].size == bits) {
58
- g_string_append_printf(s, "<field name=\"%c\" type=\"svev%c%c\"/>",
59
- vec_lanes[j].suffix,
60
+ g_string_append_printf(s, "<field name=\"%c\" type=\"%s%c%c\"/>",
61
+ vec_lanes[j].suffix, name,
62
vec_lanes[j].sz, vec_lanes[j].suffix);
63
}
64
}
65
g_string_append(s, "</union>");
66
}
67
+
68
/* And now the final union of unions */
69
- g_string_append(s, "<union id=\"svev\">");
70
+ g_string_append_printf(s, "<union id=\"%s\">", name);
71
for (bits = 128, i = 0; bits >= 8; bits /= 2, i++) {
72
- g_string_append_printf(s, "<field name=\"%c\" type=\"svevn%c\"/>",
73
- suf[i], suf[i]);
74
+ g_string_append_printf(s, "<field name=\"%c\" type=\"%sn%c\"/>",
75
+ suf[i], name, suf[i]);
76
}
77
g_string_append(s, "</union>");
78
}
79
@@ -XXX,XX +XXX,XX @@ int arm_gen_dynamic_svereg_xml(CPUState *cs, int orig_base_reg)
80
g_string_append_printf(s, "<feature name=\"org.gnu.gdb.aarch64.sve\">");
81
82
/* Create the vector union type. */
83
- output_vector_union_type(s, reg_width);
84
+ output_vector_union_type(s, reg_width, "svev");
85
86
/* Create the predicate vector type. */
87
g_string_append_printf(s,
86
--
88
--
87
2.25.1
89
2.34.1
88
90
89
91
diff view generated by jsdifflib
1
From: Axel Heider <axel.heider@hensoldt.net>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
3
Order suf[] by the log8 of the width.
4
Use ARRAY_SIZE instead of hard-coding 128.
5
6
This changes the order of the union definitions,
7
but retains the order of the union-of-union members.
2
8
3
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
11
Message-id: 20230227213329.793795-10-richard.henderson@linaro.org
4
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
5
---
13
---
6
include/hw/timer/imx_epit.h | 2 ++
14
target/arm/gdbstub64.c | 10 ++++++----
7
hw/timer/imx_epit.c | 12 ++++++------
15
1 file changed, 6 insertions(+), 4 deletions(-)
8
2 files changed, 8 insertions(+), 6 deletions(-)
9
16
10
diff --git a/include/hw/timer/imx_epit.h b/include/hw/timer/imx_epit.h
17
diff --git a/target/arm/gdbstub64.c b/target/arm/gdbstub64.c
11
index XXXXXXX..XXXXXXX 100644
18
index XXXXXXX..XXXXXXX 100644
12
--- a/include/hw/timer/imx_epit.h
19
--- a/target/arm/gdbstub64.c
13
+++ b/include/hw/timer/imx_epit.h
20
+++ b/target/arm/gdbstub64.c
14
@@ -XXX,XX +XXX,XX @@
21
@@ -XXX,XX +XXX,XX @@ static void output_vector_union_type(GString *s, int reg_width,
15
#define CR_CLKSRC_SHIFT (24)
22
{ "int8", 8, 'b', 's' },
16
#define CR_CLKSRC_BITS (2)
23
};
17
24
18
+#define SR_OCIF (1 << 0)
25
- static const char suf[] = { 'q', 'd', 's', 'h', 'b' };
26
- int i, j, bits;
27
+ static const char suf[] = { 'b', 'h', 's', 'd', 'q' };
28
+ int i, j;
29
30
/* First define types and totals in a whole VL */
31
for (i = 0; i < ARRAY_SIZE(vec_lanes); i++) {
32
@@ -XXX,XX +XXX,XX @@ static void output_vector_union_type(GString *s, int reg_width,
33
* signed and potentially float versions of each size from 128 to
34
* 8 bits.
35
*/
36
- for (bits = 128, i = 0; bits >= 8; bits /= 2, i++) {
37
+ for (i = 0; i < ARRAY_SIZE(suf); i++) {
38
+ int bits = 8 << i;
19
+
39
+
20
#define EPIT_TIMER_MAX 0XFFFFFFFFUL
40
g_string_append_printf(s, "<union id=\"%sn%c\">", name, suf[i]);
21
41
for (j = 0; j < ARRAY_SIZE(vec_lanes); j++) {
22
#define TYPE_IMX_EPIT "imx.epit"
42
if (vec_lanes[j].size == bits) {
23
diff --git a/hw/timer/imx_epit.c b/hw/timer/imx_epit.c
43
@@ -XXX,XX +XXX,XX @@ static void output_vector_union_type(GString *s, int reg_width,
24
index XXXXXXX..XXXXXXX 100644
44
25
--- a/hw/timer/imx_epit.c
45
/* And now the final union of unions */
26
+++ b/hw/timer/imx_epit.c
46
g_string_append_printf(s, "<union id=\"%s\">", name);
27
@@ -XXX,XX +XXX,XX @@ static const IMXClk imx_epit_clocks[] = {
47
- for (bits = 128, i = 0; bits >= 8; bits /= 2, i++) {
28
*/
48
+ for (i = ARRAY_SIZE(suf) - 1; i >= 0; i--) {
29
static void imx_epit_update_int(IMXEPITState *s)
49
g_string_append_printf(s, "<field name=\"%c\" type=\"%sn%c\"/>",
30
{
50
suf[i], name, suf[i]);
31
- if (s->sr && (s->cr & CR_OCIEN) && (s->cr & CR_EN)) {
51
}
32
+ if ((s->sr & SR_OCIF) && (s->cr & CR_OCIEN) && (s->cr & CR_EN)) {
33
qemu_irq_raise(s->irq);
34
} else {
35
qemu_irq_lower(s->irq);
36
@@ -XXX,XX +XXX,XX @@ static void imx_epit_write(void *opaque, hwaddr offset, uint64_t value,
37
break;
38
39
case 1: /* SR - ACK*/
40
- /* writing 1 to OCIF clears the OCIF bit */
41
- if (value & 0x01) {
42
- s->sr = 0;
43
+ /* writing 1 to SR.OCIF clears this bit and turns the interrupt off */
44
+ if (value & SR_OCIF) {
45
+ s->sr = 0; /* SR.OCIF is the only bit in this register anyway */
46
imx_epit_update_int(s);
47
}
48
break;
49
@@ -XXX,XX +XXX,XX @@ static void imx_epit_cmp(void *opaque)
50
IMXEPITState *s = IMX_EPIT(opaque);
51
52
DPRINTF("sr was %d\n", s->sr);
53
-
54
- s->sr = 1;
55
+ /* Set interrupt status bit SR.OCIF and update the interrupt state */
56
+ s->sr |= SR_OCIF;
57
imx_epit_update_int(s);
58
}
59
60
--
52
--
61
2.25.1
53
2.34.1
diff view generated by jsdifflib
1
From: Axel Heider <axel.heider@hensoldt.net>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
Fix typos, add background information
3
Keep the logic for pauth within pauth_helper.c, and expose
4
a helper function for use with the gdbstub pac extension.
4
5
5
Signed-off-by: Axel Heider <axel.heider@hensoldt.net>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
8
Message-id: 20230227213329.793795-11-richard.henderson@linaro.org
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
---
10
---
9
hw/timer/imx_epit.c | 20 ++++++++++++++++----
11
target/arm/internals.h | 10 ++++++++++
10
1 file changed, 16 insertions(+), 4 deletions(-)
12
target/arm/tcg/pauth_helper.c | 26 ++++++++++++++++++++++----
13
2 files changed, 32 insertions(+), 4 deletions(-)
11
14
12
diff --git a/hw/timer/imx_epit.c b/hw/timer/imx_epit.c
15
diff --git a/target/arm/internals.h b/target/arm/internals.h
13
index XXXXXXX..XXXXXXX 100644
16
index XXXXXXX..XXXXXXX 100644
14
--- a/hw/timer/imx_epit.c
17
--- a/target/arm/internals.h
15
+++ b/hw/timer/imx_epit.c
18
+++ b/target/arm/internals.h
16
@@ -XXX,XX +XXX,XX @@ static void imx_epit_set_freq(IMXEPITState *s)
19
@@ -XXX,XX +XXX,XX @@ int exception_target_el(CPUARMState *env);
17
}
20
bool arm_singlestep_active(CPUARMState *env);
21
bool arm_generate_debug_exceptions(CPUARMState *env);
22
23
+/**
24
+ * pauth_ptr_mask:
25
+ * @env: cpu context
26
+ * @ptr: selects between TTBR0 and TTBR1
27
+ * @data: selects between TBI and TBID
28
+ *
29
+ * Return a mask of the bits of @ptr that contain the authentication code.
30
+ */
31
+uint64_t pauth_ptr_mask(CPUARMState *env, uint64_t ptr, bool data);
32
+
33
/* Add the cpreg definitions for debug related system registers */
34
void define_debug_regs(ARMCPU *cpu);
35
36
diff --git a/target/arm/tcg/pauth_helper.c b/target/arm/tcg/pauth_helper.c
37
index XXXXXXX..XXXXXXX 100644
38
--- a/target/arm/tcg/pauth_helper.c
39
+++ b/target/arm/tcg/pauth_helper.c
40
@@ -XXX,XX +XXX,XX @@ static uint64_t pauth_addpac(CPUARMState *env, uint64_t ptr, uint64_t modifier,
41
return pac | ext | ptr;
18
}
42
}
19
43
20
+/*
44
-static uint64_t pauth_original_ptr(uint64_t ptr, ARMVAParameters param)
21
+ * This is called both on hardware (device) reset and software reset.
45
+static uint64_t pauth_ptr_mask_internal(ARMVAParameters param)
22
+ */
23
static void imx_epit_reset(DeviceState *dev)
24
{
46
{
25
IMXEPITState *s = IMX_EPIT(dev);
47
- /* Note that bit 55 is used whether or not the regime has 2 ranges. */
26
48
- uint64_t extfield = sextract64(ptr, 55, 1);
27
- /*
49
int bot_pac_bit = 64 - param.tsz;
28
- * Soft reset doesn't touch some bits; hard reset clears them
50
int top_pac_bit = 64 - 8 * param.tbi;
29
- */
51
30
+ /* Soft reset doesn't touch some bits; hard reset clears them */
52
- return deposit64(ptr, bot_pac_bit, top_pac_bit - bot_pac_bit, extfield);
31
s->cr &= (CR_EN|CR_ENMOD|CR_STOPEN|CR_DOZEN|CR_WAITEN|CR_DBGEN);
53
+ return MAKE_64BIT_MASK(bot_pac_bit, top_pac_bit - bot_pac_bit);
32
s->sr = 0;
54
+}
33
s->lr = EPIT_TIMER_MAX;
55
+
34
@@ -XXX,XX +XXX,XX @@ static void imx_epit_write(void *opaque, hwaddr offset, uint64_t value,
56
+static uint64_t pauth_original_ptr(uint64_t ptr, ARMVAParameters param)
35
ptimer_transaction_begin(s->timer_cmp);
57
+{
36
ptimer_transaction_begin(s->timer_reload);
58
+ uint64_t mask = pauth_ptr_mask_internal(param);
37
59
+
38
+ /* Update the frequency. Has been done already in case of a reset. */
60
+ /* Note that bit 55 is used whether or not the regime has 2 ranges. */
39
if (!(s->cr & CR_SWR)) {
61
+ if (extract64(ptr, 55, 1)) {
40
imx_epit_set_freq(s);
62
+ return ptr | mask;
41
}
63
+ } else {
42
@@ -XXX,XX +XXX,XX @@ static void imx_epit_write(void *opaque, hwaddr offset, uint64_t value,
64
+ return ptr & ~mask;
43
break;
65
+ }
44
66
+}
45
case 1: /* SR - ACK*/
67
+
46
- /* writing 1 to OCIF clear the OCIF bit */
68
+uint64_t pauth_ptr_mask(CPUARMState *env, uint64_t ptr, bool data)
47
+ /* writing 1 to OCIF clears the OCIF bit */
69
+{
48
if (value & 0x01) {
70
+ ARMMMUIdx mmu_idx = arm_stage1_mmu_idx(env);
49
s->sr = 0;
71
+ ARMVAParameters param = aa64_va_parameters(env, ptr, mmu_idx, data);
50
imx_epit_update_int(s);
72
+
51
@@ -XXX,XX +XXX,XX @@ static void imx_epit_realize(DeviceState *dev, Error **errp)
73
+ return pauth_ptr_mask_internal(param);
52
0x00001000);
53
sysbus_init_mmio(sbd, &s->iomem);
54
55
+ /*
56
+ * The reload timer keeps running when the peripheral is enabled. It is a
57
+ * kind of wall clock that does not generate any interrupts. The callback
58
+ * needs to be provided, but it does nothing as the ptimer already supports
59
+ * all necessary reloading functionality.
60
+ */
61
s->timer_reload = ptimer_init(imx_epit_reload, s, PTIMER_POLICY_LEGACY);
62
63
+ /*
64
+ * The compare timer is running only when the peripheral configuration is
65
+ * in a state that will generate compare interrupts.
66
+ */
67
s->timer_cmp = ptimer_init(imx_epit_cmp, s, PTIMER_POLICY_LEGACY);
68
}
74
}
69
75
76
static uint64_t pauth_auth(CPUARMState *env, uint64_t ptr, uint64_t modifier,
70
--
77
--
71
2.25.1
78
2.34.1
diff view generated by jsdifflib
1
From: Axel Heider <axel.heider@hensoldt.net>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
Signed-off-by: Axel Heider <axel.heider@hensoldt.net>
3
The extension is primarily defined by the Linux kernel NT_ARM_PAC_MASK
4
ptrace register set.
5
6
The original gdb feature consists of two masks, data and code, which are
7
used to mask out the authentication code within a pointer. Following
8
discussion with Luis Machado, add two more masks in order to support
9
pointers within the high half of the address space (i.e. TTBR1 vs TTBR0).
10
11
Resolves: https://gitlab.com/qemu-project/qemu/-/issues/1105
4
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
12
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
14
Message-id: 20230227213329.793795-12-richard.henderson@linaro.org
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
15
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
---
16
---
7
hw/timer/imx_epit.c | 215 ++++++++++++++++++++++++--------------------
17
configs/targets/aarch64-linux-user.mak | 2 +-
8
1 file changed, 117 insertions(+), 98 deletions(-)
18
configs/targets/aarch64-softmmu.mak | 2 +-
19
configs/targets/aarch64_be-linux-user.mak | 2 +-
20
target/arm/internals.h | 2 ++
21
target/arm/gdbstub.c | 5 ++++
22
target/arm/gdbstub64.c | 34 +++++++++++++++++++++++
23
gdb-xml/aarch64-pauth.xml | 15 ++++++++++
24
7 files changed, 59 insertions(+), 3 deletions(-)
25
create mode 100644 gdb-xml/aarch64-pauth.xml
9
26
10
diff --git a/hw/timer/imx_epit.c b/hw/timer/imx_epit.c
27
diff --git a/configs/targets/aarch64-linux-user.mak b/configs/targets/aarch64-linux-user.mak
11
index XXXXXXX..XXXXXXX 100644
28
index XXXXXXX..XXXXXXX 100644
12
--- a/hw/timer/imx_epit.c
29
--- a/configs/targets/aarch64-linux-user.mak
13
+++ b/hw/timer/imx_epit.c
30
+++ b/configs/targets/aarch64-linux-user.mak
14
@@ -XXX,XX +XXX,XX @@ static void imx_epit_reload_compare_timer(IMXEPITState *s)
31
@@ -XXX,XX +XXX,XX @@
15
}
32
TARGET_ARCH=aarch64
33
TARGET_BASE_ARCH=arm
34
-TARGET_XML_FILES= gdb-xml/aarch64-core.xml gdb-xml/aarch64-fpu.xml
35
+TARGET_XML_FILES= gdb-xml/aarch64-core.xml gdb-xml/aarch64-fpu.xml gdb-xml/aarch64-pauth.xml
36
TARGET_HAS_BFLT=y
37
CONFIG_SEMIHOSTING=y
38
CONFIG_ARM_COMPATIBLE_SEMIHOSTING=y
39
diff --git a/configs/targets/aarch64-softmmu.mak b/configs/targets/aarch64-softmmu.mak
40
index XXXXXXX..XXXXXXX 100644
41
--- a/configs/targets/aarch64-softmmu.mak
42
+++ b/configs/targets/aarch64-softmmu.mak
43
@@ -XXX,XX +XXX,XX @@
44
TARGET_ARCH=aarch64
45
TARGET_BASE_ARCH=arm
46
TARGET_SUPPORTS_MTTCG=y
47
-TARGET_XML_FILES= gdb-xml/aarch64-core.xml gdb-xml/aarch64-fpu.xml gdb-xml/arm-core.xml gdb-xml/arm-vfp.xml gdb-xml/arm-vfp3.xml gdb-xml/arm-vfp-sysregs.xml gdb-xml/arm-neon.xml gdb-xml/arm-m-profile.xml gdb-xml/arm-m-profile-mve.xml
48
+TARGET_XML_FILES= gdb-xml/aarch64-core.xml gdb-xml/aarch64-fpu.xml gdb-xml/arm-core.xml gdb-xml/arm-vfp.xml gdb-xml/arm-vfp3.xml gdb-xml/arm-vfp-sysregs.xml gdb-xml/arm-neon.xml gdb-xml/arm-m-profile.xml gdb-xml/arm-m-profile-mve.xml gdb-xml/aarch64-pauth.xml
49
TARGET_NEED_FDT=y
50
diff --git a/configs/targets/aarch64_be-linux-user.mak b/configs/targets/aarch64_be-linux-user.mak
51
index XXXXXXX..XXXXXXX 100644
52
--- a/configs/targets/aarch64_be-linux-user.mak
53
+++ b/configs/targets/aarch64_be-linux-user.mak
54
@@ -XXX,XX +XXX,XX @@
55
TARGET_ARCH=aarch64
56
TARGET_BASE_ARCH=arm
57
TARGET_BIG_ENDIAN=y
58
-TARGET_XML_FILES= gdb-xml/aarch64-core.xml gdb-xml/aarch64-fpu.xml
59
+TARGET_XML_FILES= gdb-xml/aarch64-core.xml gdb-xml/aarch64-fpu.xml gdb-xml/aarch64-pauth.xml
60
TARGET_HAS_BFLT=y
61
CONFIG_SEMIHOSTING=y
62
CONFIG_ARM_COMPATIBLE_SEMIHOSTING=y
63
diff --git a/target/arm/internals.h b/target/arm/internals.h
64
index XXXXXXX..XXXXXXX 100644
65
--- a/target/arm/internals.h
66
+++ b/target/arm/internals.h
67
@@ -XXX,XX +XXX,XX @@ int aarch64_gdb_get_sve_reg(CPUARMState *env, GByteArray *buf, int reg);
68
int aarch64_gdb_set_sve_reg(CPUARMState *env, uint8_t *buf, int reg);
69
int aarch64_gdb_get_fpu_reg(CPUARMState *env, GByteArray *buf, int reg);
70
int aarch64_gdb_set_fpu_reg(CPUARMState *env, uint8_t *buf, int reg);
71
+int aarch64_gdb_get_pauth_reg(CPUARMState *env, GByteArray *buf, int reg);
72
+int aarch64_gdb_set_pauth_reg(CPUARMState *env, uint8_t *buf, int reg);
73
void arm_cpu_sve_finalize(ARMCPU *cpu, Error **errp);
74
void arm_cpu_sme_finalize(ARMCPU *cpu, Error **errp);
75
void arm_cpu_pauth_finalize(ARMCPU *cpu, Error **errp);
76
diff --git a/target/arm/gdbstub.c b/target/arm/gdbstub.c
77
index XXXXXXX..XXXXXXX 100644
78
--- a/target/arm/gdbstub.c
79
+++ b/target/arm/gdbstub.c
80
@@ -XXX,XX +XXX,XX @@ void arm_cpu_register_gdb_regs_for_features(ARMCPU *cpu)
81
aarch64_gdb_set_fpu_reg,
82
34, "aarch64-fpu.xml", 0);
83
}
84
+ if (isar_feature_aa64_pauth(&cpu->isar)) {
85
+ gdb_register_coprocessor(cs, aarch64_gdb_get_pauth_reg,
86
+ aarch64_gdb_set_pauth_reg,
87
+ 4, "aarch64-pauth.xml", 0);
88
+ }
89
#endif
90
} else {
91
if (arm_feature(env, ARM_FEATURE_NEON)) {
92
diff --git a/target/arm/gdbstub64.c b/target/arm/gdbstub64.c
93
index XXXXXXX..XXXXXXX 100644
94
--- a/target/arm/gdbstub64.c
95
+++ b/target/arm/gdbstub64.c
96
@@ -XXX,XX +XXX,XX @@ int aarch64_gdb_set_sve_reg(CPUARMState *env, uint8_t *buf, int reg)
97
return 0;
16
}
98
}
17
99
18
+static void imx_epit_write_cr(IMXEPITState *s, uint32_t value)
100
+int aarch64_gdb_get_pauth_reg(CPUARMState *env, GByteArray *buf, int reg)
19
+{
101
+{
20
+ uint32_t oldcr = s->cr;
102
+ switch (reg) {
21
+
103
+ case 0: /* pauth_dmask */
22
+ s->cr = value & 0x03ffffff;
104
+ case 1: /* pauth_cmask */
23
+
105
+ case 2: /* pauth_dmask_high */
24
+ if (s->cr & CR_SWR) {
106
+ case 3: /* pauth_cmask_high */
25
+ /* handle the reset */
107
+ /*
26
+ imx_epit_reset(s, false);
108
+ * Note that older versions of this feature only contained
27
+ }
109
+ * pauth_{d,c}mask, for use with Linux user processes, and
28
+
110
+ * thus exclusively in the low half of the address space.
29
+ /*
111
+ *
30
+ * The interrupt state can change due to:
112
+ * To support system mode, and to debug kernels, two new regs
31
+ * - reset clears both SR.OCIF and CR.OCIE
113
+ * were added to cover the high half of the address space.
32
+ * - write to CR.EN or CR.OCIE
114
+ * For the purpose of pauth_ptr_mask, we can use any well-formed
33
+ */
115
+ * address within the address space half -- here, 0 and -1.
34
+ imx_epit_update_int(s);
116
+ */
35
+
117
+ {
36
+ /*
118
+ bool is_data = !(reg & 1);
37
+ * TODO: could we 'break' here for reset? following operations appear
119
+ bool is_high = reg & 2;
38
+ * to duplicate the work imx_epit_reset() already did.
120
+ uint64_t mask = pauth_ptr_mask(env, -is_high, is_data);
39
+ */
121
+ return gdb_get_reg64(buf, mask);
40
+
41
+ ptimer_transaction_begin(s->timer_cmp);
42
+ ptimer_transaction_begin(s->timer_reload);
43
+
44
+ /* Update the frequency. Has been done already in case of a reset. */
45
+ if (!(s->cr & CR_SWR)) {
46
+ imx_epit_set_freq(s);
47
+ }
48
+
49
+ if (s->freq && (s->cr & CR_EN) && !(oldcr & CR_EN)) {
50
+ if (s->cr & CR_ENMOD) {
51
+ if (s->cr & CR_RLD) {
52
+ ptimer_set_limit(s->timer_reload, s->lr, 1);
53
+ ptimer_set_limit(s->timer_cmp, s->lr, 1);
54
+ } else {
55
+ ptimer_set_limit(s->timer_reload, EPIT_TIMER_MAX, 1);
56
+ ptimer_set_limit(s->timer_cmp, EPIT_TIMER_MAX, 1);
57
+ }
58
+ }
122
+ }
59
+
123
+ default:
60
+ imx_epit_reload_compare_timer(s);
124
+ return 0;
61
+ ptimer_run(s->timer_reload, 0);
62
+ if (s->cr & CR_OCIEN) {
63
+ ptimer_run(s->timer_cmp, 0);
64
+ } else {
65
+ ptimer_stop(s->timer_cmp);
66
+ }
67
+ } else if (!(s->cr & CR_EN)) {
68
+ /* stop both timers */
69
+ ptimer_stop(s->timer_reload);
70
+ ptimer_stop(s->timer_cmp);
71
+ } else if (s->cr & CR_OCIEN) {
72
+ if (!(oldcr & CR_OCIEN)) {
73
+ imx_epit_reload_compare_timer(s);
74
+ ptimer_run(s->timer_cmp, 0);
75
+ }
76
+ } else {
77
+ ptimer_stop(s->timer_cmp);
78
+ }
79
+
80
+ ptimer_transaction_commit(s->timer_cmp);
81
+ ptimer_transaction_commit(s->timer_reload);
82
+}
83
+
84
+static void imx_epit_write_sr(IMXEPITState *s, uint32_t value)
85
+{
86
+ /* writing 1 to SR.OCIF clears this bit and turns the interrupt off */
87
+ if (value & SR_OCIF) {
88
+ s->sr = 0; /* SR.OCIF is the only bit in this register anyway */
89
+ imx_epit_update_int(s);
90
+ }
125
+ }
91
+}
126
+}
92
+
127
+
93
+static void imx_epit_write_lr(IMXEPITState *s, uint32_t value)
128
+int aarch64_gdb_set_pauth_reg(CPUARMState *env, uint8_t *buf, int reg)
94
+{
129
+{
95
+ s->lr = value;
130
+ /* All pseudo registers are read-only. */
96
+
131
+ return 0;
97
+ ptimer_transaction_begin(s->timer_cmp);
98
+ ptimer_transaction_begin(s->timer_reload);
99
+ if (s->cr & CR_RLD) {
100
+ /* Also set the limit if the LRD bit is set */
101
+ /* If IOVW bit is set then set the timer value */
102
+ ptimer_set_limit(s->timer_reload, s->lr, s->cr & CR_IOVW);
103
+ ptimer_set_limit(s->timer_cmp, s->lr, 0);
104
+ } else if (s->cr & CR_IOVW) {
105
+ /* If IOVW bit is set then set the timer value */
106
+ ptimer_set_count(s->timer_reload, s->lr);
107
+ }
108
+ /*
109
+ * Commit the change to s->timer_reload, so it can propagate. Otherwise
110
+ * the timer interrupt may not fire properly. The commit must happen
111
+ * before calling imx_epit_reload_compare_timer(), which reads
112
+ * s->timer_reload internally again.
113
+ */
114
+ ptimer_transaction_commit(s->timer_reload);
115
+ imx_epit_reload_compare_timer(s);
116
+ ptimer_transaction_commit(s->timer_cmp);
117
+}
132
+}
118
+
133
+
119
+static void imx_epit_write_cmp(IMXEPITState *s, uint32_t value)
134
static void output_vector_union_type(GString *s, int reg_width,
120
+{
135
const char *name)
121
+ s->cmp = value;
136
{
137
diff --git a/gdb-xml/aarch64-pauth.xml b/gdb-xml/aarch64-pauth.xml
138
new file mode 100644
139
index XXXXXXX..XXXXXXX
140
--- /dev/null
141
+++ b/gdb-xml/aarch64-pauth.xml
142
@@ -XXX,XX +XXX,XX @@
143
+<?xml version="1.0"?>
144
+<!-- Copyright (C) 2018-2022 Free Software Foundation, Inc.
122
+
145
+
123
+ ptimer_transaction_begin(s->timer_cmp);
146
+ Copying and distribution of this file, with or without modification,
124
+ imx_epit_reload_compare_timer(s);
147
+ are permitted in any medium without royalty provided the copyright
125
+ ptimer_transaction_commit(s->timer_cmp);
148
+ notice and this notice are preserved. -->
126
+}
127
+
149
+
128
static void imx_epit_write(void *opaque, hwaddr offset, uint64_t value,
150
+<!DOCTYPE feature SYSTEM "gdb-target.dtd">
129
unsigned size)
151
+<feature name="org.gnu.gdb.aarch64.pauth">
130
{
152
+ <reg name="pauth_dmask" bitsize="64"/>
131
IMXEPITState *s = IMX_EPIT(opaque);
153
+ <reg name="pauth_cmask" bitsize="64"/>
132
- uint64_t oldcr;
154
+ <reg name="pauth_dmask_high" bitsize="64"/>
133
155
+ <reg name="pauth_cmask_high" bitsize="64"/>
134
DPRINTF("(%s, value = 0x%08x)\n", imx_epit_reg_name(offset >> 2),
156
+</feature>
135
(uint32_t)value);
136
137
switch (offset >> 2) {
138
case 0: /* CR */
139
-
140
- oldcr = s->cr;
141
- s->cr = value & 0x03ffffff;
142
- if (s->cr & CR_SWR) {
143
- /* handle the reset */
144
- imx_epit_reset(s, false);
145
- }
146
-
147
- /*
148
- * The interrupt state can change due to:
149
- * - reset clears both SR.OCIF and CR.OCIE
150
- * - write to CR.EN or CR.OCIE
151
- */
152
- imx_epit_update_int(s);
153
-
154
- /*
155
- * TODO: could we 'break' here for reset? following operations appear
156
- * to duplicate the work imx_epit_reset() already did.
157
- */
158
-
159
- ptimer_transaction_begin(s->timer_cmp);
160
- ptimer_transaction_begin(s->timer_reload);
161
-
162
- /* Update the frequency. Has been done already in case of a reset. */
163
- if (!(s->cr & CR_SWR)) {
164
- imx_epit_set_freq(s);
165
- }
166
-
167
- if (s->freq && (s->cr & CR_EN) && !(oldcr & CR_EN)) {
168
- if (s->cr & CR_ENMOD) {
169
- if (s->cr & CR_RLD) {
170
- ptimer_set_limit(s->timer_reload, s->lr, 1);
171
- ptimer_set_limit(s->timer_cmp, s->lr, 1);
172
- } else {
173
- ptimer_set_limit(s->timer_reload, EPIT_TIMER_MAX, 1);
174
- ptimer_set_limit(s->timer_cmp, EPIT_TIMER_MAX, 1);
175
- }
176
- }
177
-
178
- imx_epit_reload_compare_timer(s);
179
- ptimer_run(s->timer_reload, 0);
180
- if (s->cr & CR_OCIEN) {
181
- ptimer_run(s->timer_cmp, 0);
182
- } else {
183
- ptimer_stop(s->timer_cmp);
184
- }
185
- } else if (!(s->cr & CR_EN)) {
186
- /* stop both timers */
187
- ptimer_stop(s->timer_reload);
188
- ptimer_stop(s->timer_cmp);
189
- } else if (s->cr & CR_OCIEN) {
190
- if (!(oldcr & CR_OCIEN)) {
191
- imx_epit_reload_compare_timer(s);
192
- ptimer_run(s->timer_cmp, 0);
193
- }
194
- } else {
195
- ptimer_stop(s->timer_cmp);
196
- }
197
-
198
- ptimer_transaction_commit(s->timer_cmp);
199
- ptimer_transaction_commit(s->timer_reload);
200
+ imx_epit_write_cr(s, (uint32_t)value);
201
break;
202
203
- case 1: /* SR - ACK*/
204
- /* writing 1 to SR.OCIF clears this bit and turns the interrupt off */
205
- if (value & SR_OCIF) {
206
- s->sr = 0; /* SR.OCIF is the only bit in this register anyway */
207
- imx_epit_update_int(s);
208
- }
209
+ case 1: /* SR */
210
+ imx_epit_write_sr(s, (uint32_t)value);
211
break;
212
213
- case 2: /* LR - set ticks */
214
- s->lr = value;
215
-
216
- ptimer_transaction_begin(s->timer_cmp);
217
- ptimer_transaction_begin(s->timer_reload);
218
- if (s->cr & CR_RLD) {
219
- /* Also set the limit if the LRD bit is set */
220
- /* If IOVW bit is set then set the timer value */
221
- ptimer_set_limit(s->timer_reload, s->lr, s->cr & CR_IOVW);
222
- ptimer_set_limit(s->timer_cmp, s->lr, 0);
223
- } else if (s->cr & CR_IOVW) {
224
- /* If IOVW bit is set then set the timer value */
225
- ptimer_set_count(s->timer_reload, s->lr);
226
- }
227
- /*
228
- * Commit the change to s->timer_reload, so it can propagate. Otherwise
229
- * the timer interrupt may not fire properly. The commit must happen
230
- * before calling imx_epit_reload_compare_timer(), which reads
231
- * s->timer_reload internally again.
232
- */
233
- ptimer_transaction_commit(s->timer_reload);
234
- imx_epit_reload_compare_timer(s);
235
- ptimer_transaction_commit(s->timer_cmp);
236
+ case 2: /* LR */
237
+ imx_epit_write_lr(s, (uint32_t)value);
238
break;
239
240
case 3: /* CMP */
241
- s->cmp = value;
242
-
243
- ptimer_transaction_begin(s->timer_cmp);
244
- imx_epit_reload_compare_timer(s);
245
- ptimer_transaction_commit(s->timer_cmp);
246
-
247
+ imx_epit_write_cmp(s, (uint32_t)value);
248
break;
249
250
default:
251
qemu_log_mask(LOG_GUEST_ERROR, "[%s]%s: Bad register at offset 0x%"
252
HWADDR_PRIx "\n", TYPE_IMX_EPIT, __func__, offset);
253
-
254
break;
255
}
256
}
257
+
157
+
258
static void imx_epit_cmp(void *opaque)
259
{
260
IMXEPITState *s = IMX_EPIT(opaque);
261
--
158
--
262
2.25.1
159
2.34.1
diff view generated by jsdifflib
1
From: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
1
From: David Reiss <dreiss@meta.com>
2
2
3
ARMv8-R AArch32 CPUs behave as if TTBCR.EAE is always 1 even
3
Allow the function to be used outside of m_helper.c.
4
tough they don't have the TTBCR register.
4
Rename with an "arm_" prefix.
5
See ARM Architecture Reference Manual Supplement - ARMv8, for the ARMv8-R
6
AArch32 architecture profile Version:A.c section C1.2.
7
5
8
Signed-off-by: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
10
Message-id: 20221206102504.165775-5-tobias.roehmel@rwth-aachen.de
7
Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org>
8
Signed-off-by: David Reiss <dreiss@meta.com>
9
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
10
Message-id: 20230227213329.793795-13-richard.henderson@linaro.org
11
[rth: Split out of a larger patch]
12
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
---
14
---
13
target/arm/internals.h | 4 ++++
15
target/arm/internals.h | 3 +++
14
target/arm/debug_helper.c | 3 +++
16
target/arm/tcg/m_helper.c | 6 +++---
15
target/arm/tlb_helper.c | 4 ++++
17
2 files changed, 6 insertions(+), 3 deletions(-)
16
3 files changed, 11 insertions(+)
17
18
18
diff --git a/target/arm/internals.h b/target/arm/internals.h
19
diff --git a/target/arm/internals.h b/target/arm/internals.h
19
index XXXXXXX..XXXXXXX 100644
20
index XXXXXXX..XXXXXXX 100644
20
--- a/target/arm/internals.h
21
--- a/target/arm/internals.h
21
+++ b/target/arm/internals.h
22
+++ b/target/arm/internals.h
22
@@ -XXX,XX +XXX,XX @@ unsigned int arm_pamax(ARMCPU *cpu);
23
@@ -XXX,XX +XXX,XX @@ void arm_cpu_pauth_finalize(ARMCPU *cpu, Error **errp);
23
static inline bool extended_addresses_enabled(CPUARMState *env)
24
void arm_cpu_lpa2_finalize(ARMCPU *cpu, Error **errp);
25
#endif
26
27
+/* Read the CONTROL register as the MRS instruction would. */
28
+uint32_t arm_v7m_mrs_control(CPUARMState *env, uint32_t secure);
29
+
30
#ifdef CONFIG_USER_ONLY
31
static inline void define_cortex_a72_a57_a53_cp_reginfo(ARMCPU *cpu) { }
32
#else
33
diff --git a/target/arm/tcg/m_helper.c b/target/arm/tcg/m_helper.c
34
index XXXXXXX..XXXXXXX 100644
35
--- a/target/arm/tcg/m_helper.c
36
+++ b/target/arm/tcg/m_helper.c
37
@@ -XXX,XX +XXX,XX @@ static uint32_t v7m_mrs_xpsr(CPUARMState *env, uint32_t reg, unsigned el)
38
return xpsr_read(env) & mask;
39
}
40
41
-static uint32_t v7m_mrs_control(CPUARMState *env, uint32_t secure)
42
+uint32_t arm_v7m_mrs_control(CPUARMState *env, uint32_t secure)
24
{
43
{
25
uint64_t tcr = env->cp15.tcr_el[arm_is_secure(env) ? 3 : 1];
44
uint32_t value = env->v7m.control[secure];
26
+ if (arm_feature(env, ARM_FEATURE_PMSA) &&
45
27
+ arm_feature(env, ARM_FEATURE_V8)) {
46
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(v7m_mrs)(CPUARMState *env, uint32_t reg)
28
+ return true;
47
case 0 ... 7: /* xPSR sub-fields */
29
+ }
48
return v7m_mrs_xpsr(env, reg, 0);
30
return arm_el_is_aa64(env, 1) ||
49
case 20: /* CONTROL */
31
(arm_feature(env, ARM_FEATURE_LPAE) && (tcr & TTBCR_EAE));
50
- return v7m_mrs_control(env, 0);
32
}
51
+ return arm_v7m_mrs_control(env, 0);
33
diff --git a/target/arm/debug_helper.c b/target/arm/debug_helper.c
52
default:
34
index XXXXXXX..XXXXXXX 100644
53
/* Unprivileged reads others as zero. */
35
--- a/target/arm/debug_helper.c
54
return 0;
36
+++ b/target/arm/debug_helper.c
55
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(v7m_mrs)(CPUARMState *env, uint32_t reg)
37
@@ -XXX,XX +XXX,XX @@ static uint32_t arm_debug_exception_fsr(CPUARMState *env)
56
case 0 ... 7: /* xPSR sub-fields */
38
57
return v7m_mrs_xpsr(env, reg, el);
39
if (target_el == 2 || arm_el_is_aa64(env, target_el)) {
58
case 20: /* CONTROL */
40
using_lpae = true;
59
- return v7m_mrs_control(env, env->v7m.secure);
41
+ } else if (arm_feature(env, ARM_FEATURE_PMSA) &&
60
+ return arm_v7m_mrs_control(env, env->v7m.secure);
42
+ arm_feature(env, ARM_FEATURE_V8)) {
61
case 0x94: /* CONTROL_NS */
43
+ using_lpae = true;
62
/*
44
} else {
63
* We have to handle this here because unprivileged Secure code
45
if (arm_feature(env, ARM_FEATURE_LPAE) &&
46
(env->cp15.tcr_el[target_el] & TTBCR_EAE)) {
47
diff --git a/target/arm/tlb_helper.c b/target/arm/tlb_helper.c
48
index XXXXXXX..XXXXXXX 100644
49
--- a/target/arm/tlb_helper.c
50
+++ b/target/arm/tlb_helper.c
51
@@ -XXX,XX +XXX,XX @@ bool regime_using_lpae_format(CPUARMState *env, ARMMMUIdx mmu_idx)
52
if (el == 2 || arm_el_is_aa64(env, el)) {
53
return true;
54
}
55
+ if (arm_feature(env, ARM_FEATURE_PMSA) &&
56
+ arm_feature(env, ARM_FEATURE_V8)) {
57
+ return true;
58
+ }
59
if (arm_feature(env, ARM_FEATURE_LPAE)
60
&& (regime_tcr(env, mmu_idx) & TTBCR_EAE)) {
61
return true;
62
--
64
--
63
2.25.1
65
2.34.1
64
66
65
67
diff view generated by jsdifflib
1
From: Philippe Mathieu-Daudé <philmd@linaro.org>
1
From: David Reiss <dreiss@meta.com>
2
2
3
When using Clang ("Apple clang version 14.0.0 (clang-1400.0.29.202)")
3
Allow the function to be used outside of m_helper.c.
4
and building with -Wall we get:
4
Move to be outside of ifndef CONFIG_USER_ONLY block.
5
Rename from get_v7m_sp_ptr.
5
6
6
hw/arm/smmu-common.c:173:33: warning: static function 'smmu_hash_remove_by_asid_iova' is used in an inline function with external linkage [-Wstatic-in-inline]
7
hw/arm/smmu-common.h:170:1: note: use 'static' to give inline function 'smmu_iotlb_inv_iova' internal linkage
8
void smmu_iotlb_inv_iova(SMMUState *s, int asid, dma_addr_t iova,
9
^
10
static
11
12
None of our code base require / use inlined functions with external
13
linkage. Some places use internal inlining in the hot path. These
14
two functions are certainly not in any hot path and don't justify
15
any inlining, so these are likely oversights rather than intentional.
16
17
Reported-by: Stefan Weil <sw@weilnetz.de>
18
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
19
Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org>
8
Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org>
20
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
9
Signed-off-by: David Reiss <dreiss@meta.com>
21
Reviewed-by: Eric Auger <eric.auger@redhat.com>
10
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
22
Message-id: 20221216214924.4711-3-philmd@linaro.org
11
Message-id: 20230227213329.793795-14-richard.henderson@linaro.org
12
[rth: Split out of a larger patch]
13
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
23
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
24
---
15
---
25
hw/arm/smmu-common.c | 13 ++++++-------
16
target/arm/internals.h | 10 +++++
26
1 file changed, 6 insertions(+), 7 deletions(-)
17
target/arm/tcg/m_helper.c | 84 +++++++++++++++++++--------------------
18
2 files changed, 51 insertions(+), 43 deletions(-)
27
19
28
diff --git a/hw/arm/smmu-common.c b/hw/arm/smmu-common.c
20
diff --git a/target/arm/internals.h b/target/arm/internals.h
29
index XXXXXXX..XXXXXXX 100644
21
index XXXXXXX..XXXXXXX 100644
30
--- a/hw/arm/smmu-common.c
22
--- a/target/arm/internals.h
31
+++ b/hw/arm/smmu-common.c
23
+++ b/target/arm/internals.h
32
@@ -XXX,XX +XXX,XX @@ void smmu_iotlb_insert(SMMUState *bs, SMMUTransCfg *cfg, SMMUTLBEntry *new)
24
@@ -XXX,XX +XXX,XX @@ void arm_cpu_lpa2_finalize(ARMCPU *cpu, Error **errp);
33
g_hash_table_insert(bs->iotlb, key, new);
25
/* Read the CONTROL register as the MRS instruction would. */
26
uint32_t arm_v7m_mrs_control(CPUARMState *env, uint32_t secure);
27
28
+/*
29
+ * Return a pointer to the location where we currently store the
30
+ * stack pointer for the requested security state and thread mode.
31
+ * This pointer will become invalid if the CPU state is updated
32
+ * such that the stack pointers are switched around (eg changing
33
+ * the SPSEL control bit).
34
+ */
35
+uint32_t *arm_v7m_get_sp_ptr(CPUARMState *env, bool secure,
36
+ bool threadmode, bool spsel);
37
+
38
#ifdef CONFIG_USER_ONLY
39
static inline void define_cortex_a72_a57_a53_cp_reginfo(ARMCPU *cpu) { }
40
#else
41
diff --git a/target/arm/tcg/m_helper.c b/target/arm/tcg/m_helper.c
42
index XXXXXXX..XXXXXXX 100644
43
--- a/target/arm/tcg/m_helper.c
44
+++ b/target/arm/tcg/m_helper.c
45
@@ -XXX,XX +XXX,XX @@ void HELPER(v7m_blxns)(CPUARMState *env, uint32_t dest)
46
arm_rebuild_hflags(env);
34
}
47
}
35
48
36
-inline void smmu_iotlb_inv_all(SMMUState *s)
49
-static uint32_t *get_v7m_sp_ptr(CPUARMState *env, bool secure, bool threadmode,
37
+void smmu_iotlb_inv_all(SMMUState *s)
50
- bool spsel)
51
-{
52
- /*
53
- * Return a pointer to the location where we currently store the
54
- * stack pointer for the requested security state and thread mode.
55
- * This pointer will become invalid if the CPU state is updated
56
- * such that the stack pointers are switched around (eg changing
57
- * the SPSEL control bit).
58
- * Compare the v8M ARM ARM pseudocode LookUpSP_with_security_mode().
59
- * Unlike that pseudocode, we require the caller to pass us in the
60
- * SPSEL control bit value; this is because we also use this
61
- * function in handling of pushing of the callee-saves registers
62
- * part of the v8M stack frame (pseudocode PushCalleeStack()),
63
- * and in the tailchain codepath the SPSEL bit comes from the exception
64
- * return magic LR value from the previous exception. The pseudocode
65
- * opencodes the stack-selection in PushCalleeStack(), but we prefer
66
- * to make this utility function generic enough to do the job.
67
- */
68
- bool want_psp = threadmode && spsel;
69
-
70
- if (secure == env->v7m.secure) {
71
- if (want_psp == v7m_using_psp(env)) {
72
- return &env->regs[13];
73
- } else {
74
- return &env->v7m.other_sp;
75
- }
76
- } else {
77
- if (want_psp) {
78
- return &env->v7m.other_ss_psp;
79
- } else {
80
- return &env->v7m.other_ss_msp;
81
- }
82
- }
83
-}
84
-
85
static bool arm_v7m_load_vector(ARMCPU *cpu, int exc, bool targets_secure,
86
uint32_t *pvec)
38
{
87
{
39
trace_smmu_iotlb_inv_all();
88
@@ -XXX,XX +XXX,XX @@ static bool v7m_push_callee_stack(ARMCPU *cpu, uint32_t lr, bool dotailchain,
40
g_hash_table_remove_all(s->iotlb);
89
!mode;
41
@@ -XXX,XX +XXX,XX @@ static gboolean smmu_hash_remove_by_asid_iova(gpointer key, gpointer value,
90
42
((entry->iova & ~info->mask) == info->iova);
91
mmu_idx = arm_v7m_mmu_idx_for_secstate_and_priv(env, M_REG_S, priv);
92
- frame_sp_p = get_v7m_sp_ptr(env, M_REG_S, mode,
93
- lr & R_V7M_EXCRET_SPSEL_MASK);
94
+ frame_sp_p = arm_v7m_get_sp_ptr(env, M_REG_S, mode,
95
+ lr & R_V7M_EXCRET_SPSEL_MASK);
96
want_psp = mode && (lr & R_V7M_EXCRET_SPSEL_MASK);
97
if (want_psp) {
98
limit = env->v7m.psplim[M_REG_S];
99
@@ -XXX,XX +XXX,XX @@ static void do_v7m_exception_exit(ARMCPU *cpu)
100
* use 'frame_sp_p' after we do something that makes it invalid.
101
*/
102
bool spsel = env->v7m.control[return_to_secure] & R_V7M_CONTROL_SPSEL_MASK;
103
- uint32_t *frame_sp_p = get_v7m_sp_ptr(env,
104
- return_to_secure,
105
- !return_to_handler,
106
- spsel);
107
+ uint32_t *frame_sp_p = arm_v7m_get_sp_ptr(env, return_to_secure,
108
+ !return_to_handler, spsel);
109
uint32_t frameptr = *frame_sp_p;
110
bool pop_ok = true;
111
ARMMMUIdx mmu_idx;
112
@@ -XXX,XX +XXX,XX @@ static bool do_v7m_function_return(ARMCPU *cpu)
113
threadmode = !arm_v7m_is_handler_mode(env);
114
spsel = env->v7m.control[M_REG_S] & R_V7M_CONTROL_SPSEL_MASK;
115
116
- frame_sp_p = get_v7m_sp_ptr(env, true, threadmode, spsel);
117
+ frame_sp_p = arm_v7m_get_sp_ptr(env, true, threadmode, spsel);
118
frameptr = *frame_sp_p;
119
120
/*
121
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(v7m_tt)(CPUARMState *env, uint32_t addr, uint32_t op)
43
}
122
}
44
123
45
-inline void
124
#endif /* !CONFIG_USER_ONLY */
46
-smmu_iotlb_inv_iova(SMMUState *s, int asid, dma_addr_t iova,
125
+
47
- uint8_t tg, uint64_t num_pages, uint8_t ttl)
126
+uint32_t *arm_v7m_get_sp_ptr(CPUARMState *env, bool secure, bool threadmode,
48
+void smmu_iotlb_inv_iova(SMMUState *s, int asid, dma_addr_t iova,
127
+ bool spsel)
49
+ uint8_t tg, uint64_t num_pages, uint8_t ttl)
128
+{
50
{
129
+ /*
51
/* if tg is not set we use 4KB range invalidation */
130
+ * Return a pointer to the location where we currently store the
52
uint8_t granule = tg ? tg * 2 + 10 : 12;
131
+ * stack pointer for the requested security state and thread mode.
53
@@ -XXX,XX +XXX,XX @@ smmu_iotlb_inv_iova(SMMUState *s, int asid, dma_addr_t iova,
132
+ * This pointer will become invalid if the CPU state is updated
54
&info);
133
+ * such that the stack pointers are switched around (eg changing
55
}
134
+ * the SPSEL control bit).
56
135
+ * Compare the v8M ARM ARM pseudocode LookUpSP_with_security_mode().
57
-inline void smmu_iotlb_inv_asid(SMMUState *s, uint16_t asid)
136
+ * Unlike that pseudocode, we require the caller to pass us in the
58
+void smmu_iotlb_inv_asid(SMMUState *s, uint16_t asid)
137
+ * SPSEL control bit value; this is because we also use this
59
{
138
+ * function in handling of pushing of the callee-saves registers
60
trace_smmu_iotlb_inv_asid(asid);
139
+ * part of the v8M stack frame (pseudocode PushCalleeStack()),
61
g_hash_table_foreach_remove(s->iotlb, smmu_hash_remove_by_asid, &asid);
140
+ * and in the tailchain codepath the SPSEL bit comes from the exception
62
@@ -XXX,XX +XXX,XX @@ error:
141
+ * return magic LR value from the previous exception. The pseudocode
63
*
142
+ * opencodes the stack-selection in PushCalleeStack(), but we prefer
64
* return 0 on success
143
+ * to make this utility function generic enough to do the job.
65
*/
144
+ */
66
-inline int smmu_ptw(SMMUTransCfg *cfg, dma_addr_t iova, IOMMUAccessFlags perm,
145
+ bool want_psp = threadmode && spsel;
67
- SMMUTLBEntry *tlbe, SMMUPTWEventInfo *info)
146
+
68
+int smmu_ptw(SMMUTransCfg *cfg, dma_addr_t iova, IOMMUAccessFlags perm,
147
+ if (secure == env->v7m.secure) {
69
+ SMMUTLBEntry *tlbe, SMMUPTWEventInfo *info)
148
+ if (want_psp == v7m_using_psp(env)) {
70
{
149
+ return &env->regs[13];
71
if (!cfg->aa64) {
150
+ } else {
72
/*
151
+ return &env->v7m.other_sp;
152
+ }
153
+ } else {
154
+ if (want_psp) {
155
+ return &env->v7m.other_ss_psp;
156
+ } else {
157
+ return &env->v7m.other_ss_msp;
158
+ }
159
+ }
160
+}
73
--
161
--
74
2.25.1
162
2.34.1
75
163
76
164
diff view generated by jsdifflib
1
From: Axel Heider <axel.heider@hensoldt.net>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
Signed-off-by: Axel Heider <axel.heider@hensoldt.net>
3
The upstream gdb xml only implements {MSP,PSP}{,_NS,S}, but
4
go ahead and implement the other system registers as well.
5
6
Since there is significant overlap between the two, implement
7
them with common code. The only exception is the systemreg
8
view of CONTROL, which merges the banked bits as per MRS.
9
10
Signed-off-by: David Reiss <dreiss@meta.com>
11
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
12
Message-id: 20230227213329.793795-15-richard.henderson@linaro.org
13
[rth: Substatial rewrite using enumerator and shared code.]
14
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
4
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
15
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
5
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
16
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
6
---
17
---
7
hw/timer/imx_epit.c | 20 ++++++++++++++------
18
target/arm/cpu.h | 2 +
8
1 file changed, 14 insertions(+), 6 deletions(-)
19
target/arm/gdbstub.c | 178 +++++++++++++++++++++++++++++++++++++++++++
9
20
2 files changed, 180 insertions(+)
10
diff --git a/hw/timer/imx_epit.c b/hw/timer/imx_epit.c
21
22
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
11
index XXXXXXX..XXXXXXX 100644
23
index XXXXXXX..XXXXXXX 100644
12
--- a/hw/timer/imx_epit.c
24
--- a/target/arm/cpu.h
13
+++ b/hw/timer/imx_epit.c
25
+++ b/target/arm/cpu.h
14
@@ -XXX,XX +XXX,XX @@ static void imx_epit_set_freq(IMXEPITState *s)
26
@@ -XXX,XX +XXX,XX @@ struct ArchCPU {
15
/*
27
16
* This is called both on hardware (device) reset and software reset.
28
DynamicGDBXMLInfo dyn_sysreg_xml;
17
*/
29
DynamicGDBXMLInfo dyn_svereg_xml;
18
-static void imx_epit_reset(DeviceState *dev)
30
+ DynamicGDBXMLInfo dyn_m_systemreg_xml;
19
+static void imx_epit_reset(IMXEPITState *s, bool is_hard_reset)
31
+ DynamicGDBXMLInfo dyn_m_secextreg_xml;
32
33
/* Timers used by the generic (architected) timer */
34
QEMUTimer *gt_timer[NUM_GTIMERS];
35
diff --git a/target/arm/gdbstub.c b/target/arm/gdbstub.c
36
index XXXXXXX..XXXXXXX 100644
37
--- a/target/arm/gdbstub.c
38
+++ b/target/arm/gdbstub.c
39
@@ -XXX,XX +XXX,XX @@ static int arm_gen_dynamic_sysreg_xml(CPUState *cs, int base_reg)
40
return cpu->dyn_sysreg_xml.num;
41
}
42
43
+typedef enum {
44
+ M_SYSREG_MSP,
45
+ M_SYSREG_PSP,
46
+ M_SYSREG_PRIMASK,
47
+ M_SYSREG_CONTROL,
48
+ M_SYSREG_BASEPRI,
49
+ M_SYSREG_FAULTMASK,
50
+ M_SYSREG_MSPLIM,
51
+ M_SYSREG_PSPLIM,
52
+} MProfileSysreg;
53
+
54
+static const struct {
55
+ const char *name;
56
+ int feature;
57
+} m_sysreg_def[] = {
58
+ [M_SYSREG_MSP] = { "msp", ARM_FEATURE_M },
59
+ [M_SYSREG_PSP] = { "psp", ARM_FEATURE_M },
60
+ [M_SYSREG_PRIMASK] = { "primask", ARM_FEATURE_M },
61
+ [M_SYSREG_CONTROL] = { "control", ARM_FEATURE_M },
62
+ [M_SYSREG_BASEPRI] = { "basepri", ARM_FEATURE_M_MAIN },
63
+ [M_SYSREG_FAULTMASK] = { "faultmask", ARM_FEATURE_M_MAIN },
64
+ [M_SYSREG_MSPLIM] = { "msplim", ARM_FEATURE_V8 },
65
+ [M_SYSREG_PSPLIM] = { "psplim", ARM_FEATURE_V8 },
66
+};
67
+
68
+static uint32_t *m_sysreg_ptr(CPUARMState *env, MProfileSysreg reg, bool sec)
69
+{
70
+ uint32_t *ptr;
71
+
72
+ switch (reg) {
73
+ case M_SYSREG_MSP:
74
+ ptr = arm_v7m_get_sp_ptr(env, sec, false, true);
75
+ break;
76
+ case M_SYSREG_PSP:
77
+ ptr = arm_v7m_get_sp_ptr(env, sec, true, true);
78
+ break;
79
+ case M_SYSREG_MSPLIM:
80
+ ptr = &env->v7m.msplim[sec];
81
+ break;
82
+ case M_SYSREG_PSPLIM:
83
+ ptr = &env->v7m.psplim[sec];
84
+ break;
85
+ case M_SYSREG_PRIMASK:
86
+ ptr = &env->v7m.primask[sec];
87
+ break;
88
+ case M_SYSREG_BASEPRI:
89
+ ptr = &env->v7m.basepri[sec];
90
+ break;
91
+ case M_SYSREG_FAULTMASK:
92
+ ptr = &env->v7m.faultmask[sec];
93
+ break;
94
+ case M_SYSREG_CONTROL:
95
+ ptr = &env->v7m.control[sec];
96
+ break;
97
+ default:
98
+ return NULL;
99
+ }
100
+ return arm_feature(env, m_sysreg_def[reg].feature) ? ptr : NULL;
101
+}
102
+
103
+static int m_sysreg_get(CPUARMState *env, GByteArray *buf,
104
+ MProfileSysreg reg, bool secure)
105
+{
106
+ uint32_t *ptr = m_sysreg_ptr(env, reg, secure);
107
+
108
+ if (ptr == NULL) {
109
+ return 0;
110
+ }
111
+ return gdb_get_reg32(buf, *ptr);
112
+}
113
+
114
+static int arm_gdb_get_m_systemreg(CPUARMState *env, GByteArray *buf, int reg)
115
+{
116
+ /*
117
+ * Here, we emulate MRS instruction, where CONTROL has a mix of
118
+ * banked and non-banked bits.
119
+ */
120
+ if (reg == M_SYSREG_CONTROL) {
121
+ return gdb_get_reg32(buf, arm_v7m_mrs_control(env, env->v7m.secure));
122
+ }
123
+ return m_sysreg_get(env, buf, reg, env->v7m.secure);
124
+}
125
+
126
+static int arm_gdb_set_m_systemreg(CPUARMState *env, uint8_t *buf, int reg)
127
+{
128
+ return 0; /* TODO */
129
+}
130
+
131
+static int arm_gen_dynamic_m_systemreg_xml(CPUState *cs, int orig_base_reg)
132
+{
133
+ ARMCPU *cpu = ARM_CPU(cs);
134
+ CPUARMState *env = &cpu->env;
135
+ GString *s = g_string_new(NULL);
136
+ int base_reg = orig_base_reg;
137
+ int i;
138
+
139
+ g_string_printf(s, "<?xml version=\"1.0\"?>");
140
+ g_string_append_printf(s, "<!DOCTYPE target SYSTEM \"gdb-target.dtd\">");
141
+ g_string_append_printf(s, "<feature name=\"org.gnu.gdb.arm.m-system\">\n");
142
+
143
+ for (i = 0; i < ARRAY_SIZE(m_sysreg_def); i++) {
144
+ if (arm_feature(env, m_sysreg_def[i].feature)) {
145
+ g_string_append_printf(s,
146
+ "<reg name=\"%s\" bitsize=\"32\" regnum=\"%d\"/>\n",
147
+ m_sysreg_def[i].name, base_reg++);
148
+ }
149
+ }
150
+
151
+ g_string_append_printf(s, "</feature>");
152
+ cpu->dyn_m_systemreg_xml.desc = g_string_free(s, false);
153
+ cpu->dyn_m_systemreg_xml.num = base_reg - orig_base_reg;
154
+
155
+ return cpu->dyn_m_systemreg_xml.num;
156
+}
157
+
158
+#ifndef CONFIG_USER_ONLY
159
+/*
160
+ * For user-only, we see the non-secure registers via m_systemreg above.
161
+ * For secext, encode the non-secure view as even and secure view as odd.
162
+ */
163
+static int arm_gdb_get_m_secextreg(CPUARMState *env, GByteArray *buf, int reg)
164
+{
165
+ return m_sysreg_get(env, buf, reg >> 1, reg & 1);
166
+}
167
+
168
+static int arm_gdb_set_m_secextreg(CPUARMState *env, uint8_t *buf, int reg)
169
+{
170
+ return 0; /* TODO */
171
+}
172
+
173
+static int arm_gen_dynamic_m_secextreg_xml(CPUState *cs, int orig_base_reg)
174
+{
175
+ ARMCPU *cpu = ARM_CPU(cs);
176
+ GString *s = g_string_new(NULL);
177
+ int base_reg = orig_base_reg;
178
+ int i;
179
+
180
+ g_string_printf(s, "<?xml version=\"1.0\"?>");
181
+ g_string_append_printf(s, "<!DOCTYPE target SYSTEM \"gdb-target.dtd\">");
182
+ g_string_append_printf(s, "<feature name=\"org.gnu.gdb.arm.secext\">\n");
183
+
184
+ for (i = 0; i < ARRAY_SIZE(m_sysreg_def); i++) {
185
+ g_string_append_printf(s,
186
+ "<reg name=\"%s_ns\" bitsize=\"32\" regnum=\"%d\"/>\n",
187
+ m_sysreg_def[i].name, base_reg++);
188
+ g_string_append_printf(s,
189
+ "<reg name=\"%s_s\" bitsize=\"32\" regnum=\"%d\"/>\n",
190
+ m_sysreg_def[i].name, base_reg++);
191
+ }
192
+
193
+ g_string_append_printf(s, "</feature>");
194
+ cpu->dyn_m_secextreg_xml.desc = g_string_free(s, false);
195
+ cpu->dyn_m_secextreg_xml.num = base_reg - orig_base_reg;
196
+
197
+ return cpu->dyn_m_secextreg_xml.num;
198
+}
199
+#endif
200
+
201
const char *arm_gdb_get_dynamic_xml(CPUState *cs, const char *xmlname)
20
{
202
{
21
- IMXEPITState *s = IMX_EPIT(dev);
203
ARMCPU *cpu = ARM_CPU(cs);
22
-
204
@@ -XXX,XX +XXX,XX @@ const char *arm_gdb_get_dynamic_xml(CPUState *cs, const char *xmlname)
23
/* Soft reset doesn't touch some bits; hard reset clears them */
205
return cpu->dyn_sysreg_xml.desc;
24
- s->cr &= (CR_EN|CR_ENMOD|CR_STOPEN|CR_DOZEN|CR_WAITEN|CR_DBGEN);
206
} else if (strcmp(xmlname, "sve-registers.xml") == 0) {
25
+ if (is_hard_reset) {
207
return cpu->dyn_svereg_xml.desc;
26
+ s->cr = 0;
208
+ } else if (strcmp(xmlname, "arm-m-system.xml") == 0) {
27
+ } else {
209
+ return cpu->dyn_m_systemreg_xml.desc;
28
+ s->cr &= (CR_EN|CR_ENMOD|CR_STOPEN|CR_DOZEN|CR_WAITEN|CR_DBGEN);
210
+#ifndef CONFIG_USER_ONLY
29
+ }
211
+ } else if (strcmp(xmlname, "arm-m-secext.xml") == 0) {
30
s->sr = 0;
212
+ return cpu->dyn_m_secextreg_xml.desc;
31
s->lr = EPIT_TIMER_MAX;
213
+#endif
32
s->cmp = 0;
214
}
33
@@ -XXX,XX +XXX,XX @@ static void imx_epit_write(void *opaque, hwaddr offset, uint64_t value,
215
return NULL;
34
s->cr = value & 0x03ffffff;
35
if (s->cr & CR_SWR) {
36
/* handle the reset */
37
- imx_epit_reset(DEVICE(s));
38
+ imx_epit_reset(s, false);
39
}
40
41
/*
42
@@ -XXX,XX +XXX,XX @@ static void imx_epit_realize(DeviceState *dev, Error **errp)
43
s->timer_cmp = ptimer_init(imx_epit_cmp, s, PTIMER_POLICY_LEGACY);
44
}
216
}
45
217
@@ -XXX,XX +XXX,XX @@ void arm_cpu_register_gdb_regs_for_features(ARMCPU *cpu)
46
+static void imx_epit_dev_reset(DeviceState *dev)
218
arm_gen_dynamic_sysreg_xml(cs, cs->gdb_num_regs),
47
+{
219
"system-registers.xml", 0);
48
+ IMXEPITState *s = IMX_EPIT(dev);
220
49
+ imx_epit_reset(s, true);
221
+ if (arm_feature(env, ARM_FEATURE_M)) {
50
+}
222
+ gdb_register_coprocessor(cs,
51
+
223
+ arm_gdb_get_m_systemreg, arm_gdb_set_m_systemreg,
52
static void imx_epit_class_init(ObjectClass *klass, void *data)
224
+ arm_gen_dynamic_m_systemreg_xml(cs, cs->gdb_num_regs),
53
{
225
+ "arm-m-system.xml", 0);
54
DeviceClass *dc = DEVICE_CLASS(klass);
226
+#ifndef CONFIG_USER_ONLY
55
227
+ if (arm_feature(env, ARM_FEATURE_M_SECURITY)) {
56
dc->realize = imx_epit_realize;
228
+ gdb_register_coprocessor(cs,
57
- dc->reset = imx_epit_reset;
229
+ arm_gdb_get_m_secextreg, arm_gdb_set_m_secextreg,
58
+ dc->reset = imx_epit_dev_reset;
230
+ arm_gen_dynamic_m_secextreg_xml(cs, cs->gdb_num_regs),
59
dc->vmsd = &vmstate_imx_timer_epit;
231
+ "arm-m-secext.xml", 0);
60
dc->desc = "i.MX periodic timer";
232
+ }
233
+#endif
234
+ }
61
}
235
}
62
--
236
--
63
2.25.1
237
2.34.1
diff view generated by jsdifflib
1
From: Stephen Longfield <slongfield@google.com>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
Size is used at lines 1088/1188 for the loop, which reads the last 4
3
Resolves: https://gitlab.com/qemu-project/qemu/-/issues/1421
4
bytes from the crc_ptr so it does need to get increased, however it
5
shouldn't be increased before the buffer is passed to CRC computation,
6
or the crc32 function will access uninitialized memory.
7
8
This was pointed out to me by clg@kaod.org during the code review of
9
a similar patch to hw/net/ftgmac100.c
10
11
Change-Id: Ib0464303b191af1e28abeb2f5105eb25aadb5e9b
12
Signed-off-by: Stephen Longfield <slongfield@google.com>
13
Reviewed-by: Patrick Venture <venture@google.com>
14
Message-id: 20221221183202.3788132-1-slongfield@google.com
15
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
4
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
5
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
6
Message-id: 20230227225832.816605-2-richard.henderson@linaro.org
16
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
17
---
8
---
18
hw/net/imx_fec.c | 8 ++++----
9
target/arm/cpu.h | 3 +++
19
1 file changed, 4 insertions(+), 4 deletions(-)
10
1 file changed, 3 insertions(+)
20
11
21
diff --git a/hw/net/imx_fec.c b/hw/net/imx_fec.c
12
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
22
index XXXXXXX..XXXXXXX 100644
13
index XXXXXXX..XXXXXXX 100644
23
--- a/hw/net/imx_fec.c
14
--- a/target/arm/cpu.h
24
+++ b/hw/net/imx_fec.c
15
+++ b/target/arm/cpu.h
25
@@ -XXX,XX +XXX,XX @@ static ssize_t imx_fec_receive(NetClientState *nc, const uint8_t *buf,
16
@@ -XXX,XX +XXX,XX @@ static inline bool arm_is_el3_or_mon(CPUARMState *env)
26
return 0;
17
/* Return true if the processor is in secure state */
18
static inline bool arm_is_secure(CPUARMState *env)
19
{
20
+ if (arm_feature(env, ARM_FEATURE_M)) {
21
+ return env->v7m.secure;
22
+ }
23
if (arm_is_el3_or_mon(env)) {
24
return true;
27
}
25
}
28
29
- /* 4 bytes for the CRC. */
30
- size += 4;
31
crc = cpu_to_be32(crc32(~0, buf, size));
32
+ /* Increase size by 4, loop below reads the last 4 bytes from crc_ptr. */
33
+ size += 4;
34
crc_ptr = (uint8_t *) &crc;
35
36
/* Huge frames are truncated. */
37
@@ -XXX,XX +XXX,XX @@ static ssize_t imx_enet_receive(NetClientState *nc, const uint8_t *buf,
38
return 0;
39
}
40
41
- /* 4 bytes for the CRC. */
42
- size += 4;
43
crc = cpu_to_be32(crc32(~0, buf, size));
44
+ /* Increase size by 4, loop below reads the last 4 bytes from crc_ptr. */
45
+ size += 4;
46
crc_ptr = (uint8_t *) &crc;
47
48
if (shift16) {
49
--
26
--
50
2.25.1
27
2.34.1
diff view generated by jsdifflib
1
From: Fabiano Rosas <farosas@suse.de>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
Fix this:
3
M-profile doesn't have HCR_EL2. While we could test features
4
ERROR: braces {} are necessary for all arms of this statement
4
before each call, zero is a generally safe return value to
5
disable the code in the caller. This test is required to
6
avoid an assert in arm_is_secure_below_el3.
5
7
6
Signed-off-by: Fabiano Rosas <farosas@suse.de>
8
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Reviewed-by: Claudio Fontana <cfontana@suse.de>
9
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
8
Reviewed-by: Cornelia Huck <cohuck@redhat.com>
10
Message-id: 20230227225832.816605-3-richard.henderson@linaro.org
9
Message-id: 20221213190537.511-4-farosas@suse.de
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
11
---
12
---
12
target/arm/helper.c | 67 ++++++++++++++++++++++++++++-----------------
13
target/arm/helper.c | 3 +++
13
1 file changed, 42 insertions(+), 25 deletions(-)
14
1 file changed, 3 insertions(+)
14
15
15
diff --git a/target/arm/helper.c b/target/arm/helper.c
16
diff --git a/target/arm/helper.c b/target/arm/helper.c
16
index XXXXXXX..XXXXXXX 100644
17
index XXXXXXX..XXXXXXX 100644
17
--- a/target/arm/helper.c
18
--- a/target/arm/helper.c
18
+++ b/target/arm/helper.c
19
+++ b/target/arm/helper.c
19
@@ -XXX,XX +XXX,XX @@ void cpsr_write(CPUARMState *env, uint32_t val, uint32_t mask,
20
@@ -XXX,XX +XXX,XX @@ uint64_t arm_hcr_el2_eff_secstate(CPUARMState *env, bool secure)
20
env->CF = (val >> 29) & 1;
21
21
env->VF = (val << 3) & 0x80000000;
22
uint64_t arm_hcr_el2_eff(CPUARMState *env)
22
}
23
{
23
- if (mask & CPSR_Q)
24
+ if (arm_feature(env, ARM_FEATURE_M)) {
24
+ if (mask & CPSR_Q) {
25
+ return 0;
25
env->QF = ((val & CPSR_Q) != 0);
26
- if (mask & CPSR_T)
27
+ }
26
+ }
28
+ if (mask & CPSR_T) {
27
return arm_hcr_el2_eff_secstate(env, arm_is_secure_below_el3(env));
29
env->thumb = ((val & CPSR_T) != 0);
30
+ }
31
if (mask & CPSR_IT_0_1) {
32
env->condexec_bits &= ~3;
33
env->condexec_bits |= (val >> 25) & 3;
34
@@ -XXX,XX +XXX,XX @@ static void switch_mode(CPUARMState *env, int mode)
35
int i;
36
37
old_mode = env->uncached_cpsr & CPSR_M;
38
- if (mode == old_mode)
39
+ if (mode == old_mode) {
40
return;
41
+ }
42
43
if (old_mode == ARM_CPU_MODE_FIQ) {
44
memcpy(env->fiq_regs, env->regs + 8, 5 * sizeof(uint32_t));
45
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_do_interrupt_aarch32(CPUState *cs)
46
new_mode = ARM_CPU_MODE_UND;
47
addr = 0x04;
48
mask = CPSR_I;
49
- if (env->thumb)
50
+ if (env->thumb) {
51
offset = 2;
52
- else
53
+ } else {
54
offset = 4;
55
+ }
56
break;
57
case EXCP_SWI:
58
new_mode = ARM_CPU_MODE_SVC;
59
@@ -XXX,XX +XXX,XX @@ static inline uint16_t add16_sat(uint16_t a, uint16_t b)
60
61
res = a + b;
62
if (((res ^ a) & 0x8000) && !((a ^ b) & 0x8000)) {
63
- if (a & 0x8000)
64
+ if (a & 0x8000) {
65
res = 0x8000;
66
- else
67
+ } else {
68
res = 0x7fff;
69
+ }
70
}
71
return res;
72
}
28
}
73
@@ -XXX,XX +XXX,XX @@ static inline uint8_t add8_sat(uint8_t a, uint8_t b)
74
75
res = a + b;
76
if (((res ^ a) & 0x80) && !((a ^ b) & 0x80)) {
77
- if (a & 0x80)
78
+ if (a & 0x80) {
79
res = 0x80;
80
- else
81
+ } else {
82
res = 0x7f;
83
+ }
84
}
85
return res;
86
}
87
@@ -XXX,XX +XXX,XX @@ static inline uint16_t sub16_sat(uint16_t a, uint16_t b)
88
89
res = a - b;
90
if (((res ^ a) & 0x8000) && ((a ^ b) & 0x8000)) {
91
- if (a & 0x8000)
92
+ if (a & 0x8000) {
93
res = 0x8000;
94
- else
95
+ } else {
96
res = 0x7fff;
97
+ }
98
}
99
return res;
100
}
101
@@ -XXX,XX +XXX,XX @@ static inline uint8_t sub8_sat(uint8_t a, uint8_t b)
102
103
res = a - b;
104
if (((res ^ a) & 0x80) && ((a ^ b) & 0x80)) {
105
- if (a & 0x80)
106
+ if (a & 0x80) {
107
res = 0x80;
108
- else
109
+ } else {
110
res = 0x7f;
111
+ }
112
}
113
return res;
114
}
115
@@ -XXX,XX +XXX,XX @@ static inline uint16_t add16_usat(uint16_t a, uint16_t b)
116
{
117
uint16_t res;
118
res = a + b;
119
- if (res < a)
120
+ if (res < a) {
121
res = 0xffff;
122
+ }
123
return res;
124
}
125
126
static inline uint16_t sub16_usat(uint16_t a, uint16_t b)
127
{
128
- if (a > b)
129
+ if (a > b) {
130
return a - b;
131
- else
132
+ } else {
133
return 0;
134
+ }
135
}
136
137
static inline uint8_t add8_usat(uint8_t a, uint8_t b)
138
{
139
uint8_t res;
140
res = a + b;
141
- if (res < a)
142
+ if (res < a) {
143
res = 0xff;
144
+ }
145
return res;
146
}
147
148
static inline uint8_t sub8_usat(uint8_t a, uint8_t b)
149
{
150
- if (a > b)
151
+ if (a > b) {
152
return a - b;
153
- else
154
+ } else {
155
return 0;
156
+ }
157
}
158
159
#define ADD16(a, b, n) RESULT(add16_usat(a, b), n, 16);
160
@@ -XXX,XX +XXX,XX @@ static inline uint8_t sub8_usat(uint8_t a, uint8_t b)
161
162
static inline uint8_t do_usad(uint8_t a, uint8_t b)
163
{
164
- if (a > b)
165
+ if (a > b) {
166
return a - b;
167
- else
168
+ } else {
169
return b - a;
170
+ }
171
}
172
173
/* Unsigned sum of absolute byte differences. */
174
@@ -XXX,XX +XXX,XX @@ uint32_t HELPER(sel_flags)(uint32_t flags, uint32_t a, uint32_t b)
175
uint32_t mask;
176
177
mask = 0;
178
- if (flags & 1)
179
+ if (flags & 1) {
180
mask |= 0xff;
181
- if (flags & 2)
182
+ }
183
+ if (flags & 2) {
184
mask |= 0xff00;
185
- if (flags & 4)
186
+ }
187
+ if (flags & 4) {
188
mask |= 0xff0000;
189
- if (flags & 8)
190
+ }
191
+ if (flags & 8) {
192
mask |= 0xff000000;
193
+ }
194
return (a & mask) | (b & ~mask);
195
}
196
29
197
--
30
--
198
2.25.1
31
2.34.1
diff view generated by jsdifflib
1
From: Philippe Mathieu-Daudé <philmd@linaro.org>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
The pointed MouseTransformInfo structure is accessed read-only.
3
In several places we use arm_is_secure_below_el3 and
4
arm_is_el3_or_mon separately from arm_is_secure.
5
These functions make no sense for m-profile, and
6
would indicate prior incorrect feature testing.
4
7
5
Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org>
8
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
6
Reviewed-by: Richard Henderson <richard.henderson@linaro.org>
9
Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org>
7
Message-id: 20221220142520.24094-2-philmd@linaro.org
10
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
11
Message-id: 20230227225832.816605-4-richard.henderson@linaro.org
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
---
13
---
10
include/hw/input/tsc2xxx.h | 4 ++--
14
target/arm/cpu.h | 5 ++++-
11
hw/input/tsc2005.c | 2 +-
15
1 file changed, 4 insertions(+), 1 deletion(-)
12
hw/input/tsc210x.c | 3 +--
13
3 files changed, 4 insertions(+), 5 deletions(-)
14
16
15
diff --git a/include/hw/input/tsc2xxx.h b/include/hw/input/tsc2xxx.h
17
diff --git a/target/arm/cpu.h b/target/arm/cpu.h
16
index XXXXXXX..XXXXXXX 100644
18
index XXXXXXX..XXXXXXX 100644
17
--- a/include/hw/input/tsc2xxx.h
19
--- a/target/arm/cpu.h
18
+++ b/include/hw/input/tsc2xxx.h
20
+++ b/target/arm/cpu.h
19
@@ -XXX,XX +XXX,XX @@ uWireSlave *tsc2102_init(qemu_irq pint);
21
@@ -XXX,XX +XXX,XX @@ static inline int arm_feature(CPUARMState *env, int feature)
20
uWireSlave *tsc2301_init(qemu_irq penirq, qemu_irq kbirq, qemu_irq dav);
22
void arm_cpu_finalize_features(ARMCPU *cpu, Error **errp);
21
I2SCodec *tsc210x_codec(uWireSlave *chip);
23
22
uint32_t tsc210x_txrx(void *opaque, uint32_t value, int len);
24
#if !defined(CONFIG_USER_ONLY)
23
-void tsc210x_set_transform(uWireSlave *chip, MouseTransformInfo *info);
25
-/* Return true if exception levels below EL3 are in secure state,
24
+void tsc210x_set_transform(uWireSlave *chip, const MouseTransformInfo *info);
26
+/*
25
void tsc210x_key_event(uWireSlave *chip, int key, int down);
27
+ * Return true if exception levels below EL3 are in secure state,
26
28
* or would be following an exception return to that level.
27
/* tsc2005.c */
29
* Unlike arm_is_secure() (which is always a question about the
28
void *tsc2005_init(qemu_irq pintdav);
30
* _current_ state of the CPU) this doesn't care about the current
29
uint32_t tsc2005_txrx(void *opaque, uint32_t value, int len);
31
@@ -XXX,XX +XXX,XX @@ void arm_cpu_finalize_features(ARMCPU *cpu, Error **errp);
30
-void tsc2005_set_transform(void *opaque, MouseTransformInfo *info);
31
+void tsc2005_set_transform(void *opaque, const MouseTransformInfo *info);
32
33
#endif
34
diff --git a/hw/input/tsc2005.c b/hw/input/tsc2005.c
35
index XXXXXXX..XXXXXXX 100644
36
--- a/hw/input/tsc2005.c
37
+++ b/hw/input/tsc2005.c
38
@@ -XXX,XX +XXX,XX @@ void *tsc2005_init(qemu_irq pintdav)
39
* from the touchscreen. Assuming 12-bit precision was used during
40
* tslib calibration.
41
*/
32
*/
42
-void tsc2005_set_transform(void *opaque, MouseTransformInfo *info)
33
static inline bool arm_is_secure_below_el3(CPUARMState *env)
43
+void tsc2005_set_transform(void *opaque, const MouseTransformInfo *info)
44
{
34
{
45
TSC2005State *s = (TSC2005State *) opaque;
35
+ assert(!arm_feature(env, ARM_FEATURE_M));
46
36
if (arm_feature(env, ARM_FEATURE_EL3)) {
47
diff --git a/hw/input/tsc210x.c b/hw/input/tsc210x.c
37
return !(env->cp15.scr_el3 & SCR_NS);
48
index XXXXXXX..XXXXXXX 100644
38
} else {
49
--- a/hw/input/tsc210x.c
39
@@ -XXX,XX +XXX,XX @@ static inline bool arm_is_secure_below_el3(CPUARMState *env)
50
+++ b/hw/input/tsc210x.c
40
/* Return true if the CPU is AArch64 EL3 or AArch32 Mon */
51
@@ -XXX,XX +XXX,XX @@ I2SCodec *tsc210x_codec(uWireSlave *chip)
41
static inline bool arm_is_el3_or_mon(CPUARMState *env)
52
* from the touchscreen. Assuming 12-bit precision was used during
53
* tslib calibration.
54
*/
55
-void tsc210x_set_transform(uWireSlave *chip,
56
- MouseTransformInfo *info)
57
+void tsc210x_set_transform(uWireSlave *chip, const MouseTransformInfo *info)
58
{
42
{
59
TSC210xState *s = (TSC210xState *) chip->opaque;
43
+ assert(!arm_feature(env, ARM_FEATURE_M));
60
#if 0
44
if (arm_feature(env, ARM_FEATURE_EL3)) {
45
if (is_a64(env) && extract32(env->pstate, 2, 2) == 3) {
46
/* CPU currently in AArch64 state and EL3 */
61
--
47
--
62
2.25.1
48
2.34.1
63
49
64
50
diff view generated by jsdifflib
1
From: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
1
From: Richard Henderson <richard.henderson@linaro.org>
2
2
3
Add PMSAv8r translation.
3
Integrate neighboring code from get_phys_addr_lpae which computed
4
4
starting level, as it is easier to validate when doing both at the
5
Signed-off-by: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
5
same time. Mirror the checks at the start of AArch{64,32}.S2Walk,
6
especially S2InvalidSL and S2InconsistentSL.
7
8
This reverts 49ba115bb74, which was incorrect -- there is nothing
9
in the ARM pseudocode that depends on TxSZ, i.e. outputsize; the
10
pseudocode is consistent in referencing PAMax.
11
12
Fixes: 49ba115bb74 ("target/arm: Pass outputsize down to check_s2_mmu_setup")
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
13
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Message-id: 20221206102504.165775-7-tobias.roehmel@rwth-aachen.de
14
Signed-off-by: Richard Henderson <richard.henderson@linaro.org>
15
Message-id: 20230227225832.816605-5-richard.henderson@linaro.org
8
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
16
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
9
---
17
---
10
target/arm/ptw.c | 126 ++++++++++++++++++++++++++++++++++++++---------
18
target/arm/ptw.c | 173 ++++++++++++++++++++++++++---------------------
11
1 file changed, 104 insertions(+), 22 deletions(-)
19
1 file changed, 97 insertions(+), 76 deletions(-)
12
20
13
diff --git a/target/arm/ptw.c b/target/arm/ptw.c
21
diff --git a/target/arm/ptw.c b/target/arm/ptw.c
14
index XXXXXXX..XXXXXXX 100644
22
index XXXXXXX..XXXXXXX 100644
15
--- a/target/arm/ptw.c
23
--- a/target/arm/ptw.c
16
+++ b/target/arm/ptw.c
24
+++ b/target/arm/ptw.c
17
@@ -XXX,XX +XXX,XX @@ static bool pmsav7_use_background_region(ARMCPU *cpu, ARMMMUIdx mmu_idx,
25
@@ -XXX,XX +XXX,XX @@ static ARMVAParameters aa32_va_parameters(CPUARMState *env, uint32_t va,
18
26
* check_s2_mmu_setup
19
if (arm_feature(env, ARM_FEATURE_M)) {
27
* @cpu: ARMCPU
20
return env->v7m.mpu_ctrl[is_secure] & R_V7M_MPU_CTRL_PRIVDEFENA_MASK;
28
* @is_aa64: True if the translation regime is in AArch64 state
21
- } else {
29
- * @startlevel: Suggested starting level
22
- return regime_sctlr(env, mmu_idx) & SCTLR_BR;
30
- * @inputsize: Bitsize of IPAs
31
+ * @tcr: VTCR_EL2 or VSTCR_EL2
32
+ * @ds: Effective value of TCR.DS.
33
+ * @iasize: Bitsize of IPAs
34
* @stride: Page-table stride (See the ARM ARM)
35
*
36
- * Returns true if the suggested S2 translation parameters are OK and
37
- * false otherwise.
38
+ * Decode the starting level of the S2 lookup, returning INT_MIN if
39
+ * the configuration is invalid.
40
*/
41
-static bool check_s2_mmu_setup(ARMCPU *cpu, bool is_aa64, int level,
42
- int inputsize, int stride, int outputsize)
43
+static int check_s2_mmu_setup(ARMCPU *cpu, bool is_aa64, uint64_t tcr,
44
+ bool ds, int iasize, int stride)
45
{
46
- const int grainsize = stride + 3;
47
- int startsizecheck;
48
-
49
- /*
50
- * Negative levels are usually not allowed...
51
- * Except for FEAT_LPA2, 4k page table, 52-bit address space, which
52
- * begins with level -1. Note that previous feature tests will have
53
- * eliminated this combination if it is not enabled.
54
- */
55
- if (level < (inputsize == 52 && stride == 9 ? -1 : 0)) {
56
- return false;
57
- }
58
-
59
- startsizecheck = inputsize - ((3 - level) * stride + grainsize);
60
- if (startsizecheck < 1 || startsizecheck > stride + 4) {
61
- return false;
62
- }
63
+ int sl0, sl2, startlevel, granulebits, levels;
64
+ int s1_min_iasize, s1_max_iasize;
65
66
+ sl0 = extract32(tcr, 6, 2);
67
if (is_aa64) {
68
+ /*
69
+ * AArch64.S2InvalidTxSZ: While we checked tsz_oob near the top of
70
+ * get_phys_addr_lpae, that used aa64_va_parameters which apply
71
+ * to aarch64. If Stage1 is aarch32, the min_txsz is larger.
72
+ * See AArch64.S2MinTxSZ, where min_tsz is 24, translated to
73
+ * inputsize is 64 - 24 = 40.
74
+ */
75
+ if (iasize < 40 && !arm_el_is_aa64(&cpu->env, 1)) {
76
+ goto fail;
77
+ }
78
+
79
+ /*
80
+ * AArch64.S2InvalidSL: Interpretation of SL depends on the page size,
81
+ * so interleave AArch64.S2StartLevel.
82
+ */
83
switch (stride) {
84
- case 13: /* 64KB Pages. */
85
- if (level == 0 || (level == 1 && outputsize <= 42)) {
86
- return false;
87
+ case 9: /* 4KB */
88
+ /* SL2 is RES0 unless DS=1 & 4KB granule. */
89
+ sl2 = extract64(tcr, 33, 1);
90
+ if (ds && sl2) {
91
+ if (sl0 != 0) {
92
+ goto fail;
93
+ }
94
+ startlevel = -1;
95
+ } else {
96
+ startlevel = 2 - sl0;
97
+ switch (sl0) {
98
+ case 2:
99
+ if (arm_pamax(cpu) < 44) {
100
+ goto fail;
101
+ }
102
+ break;
103
+ case 3:
104
+ if (!cpu_isar_feature(aa64_st, cpu)) {
105
+ goto fail;
106
+ }
107
+ startlevel = 3;
108
+ break;
109
+ }
110
}
111
break;
112
- case 11: /* 16KB Pages. */
113
- if (level == 0 || (level == 1 && outputsize <= 40)) {
114
- return false;
115
+ case 11: /* 16KB */
116
+ switch (sl0) {
117
+ case 2:
118
+ if (arm_pamax(cpu) < 42) {
119
+ goto fail;
120
+ }
121
+ break;
122
+ case 3:
123
+ if (!ds) {
124
+ goto fail;
125
+ }
126
+ break;
127
}
128
+ startlevel = 3 - sl0;
129
break;
130
- case 9: /* 4KB Pages. */
131
- if (level == 0 && outputsize <= 42) {
132
- return false;
133
+ case 13: /* 64KB */
134
+ switch (sl0) {
135
+ case 2:
136
+ if (arm_pamax(cpu) < 44) {
137
+ goto fail;
138
+ }
139
+ break;
140
+ case 3:
141
+ goto fail;
142
}
143
+ startlevel = 3 - sl0;
144
break;
145
default:
146
g_assert_not_reached();
147
}
148
-
149
- /* Inputsize checks. */
150
- if (inputsize > outputsize &&
151
- (arm_el_is_aa64(&cpu->env, 1) || inputsize > 40)) {
152
- /* This is CONSTRAINED UNPREDICTABLE and we choose to fault. */
153
- return false;
154
- }
155
} else {
156
- /* AArch32 only supports 4KB pages. Assert on that. */
157
+ /*
158
+ * Things are simpler for AArch32 EL2, with only 4k pages.
159
+ * There is no separate S2InvalidSL function, but AArch32.S2Walk
160
+ * begins with walkparms.sl0 in {'1x'}.
161
+ */
162
assert(stride == 9);
163
-
164
- if (level == 0) {
165
- return false;
166
+ if (sl0 >= 2) {
167
+ goto fail;
168
}
169
+ startlevel = 2 - sl0;
23
}
170
}
24
+
171
- return true;
25
+ if (mmu_idx == ARMMMUIdx_Stage2) {
172
+
26
+ return false;
173
+ /* AArch{64,32}.S2InconsistentSL are functionally equivalent. */
174
+ levels = 3 - startlevel;
175
+ granulebits = stride + 3;
176
+
177
+ s1_min_iasize = levels * stride + granulebits + 1;
178
+ s1_max_iasize = s1_min_iasize + (stride - 1) + 4;
179
+
180
+ if (iasize >= s1_min_iasize && iasize <= s1_max_iasize) {
181
+ return startlevel;
27
+ }
182
+ }
28
+
183
+
29
+ return regime_sctlr(env, mmu_idx) & SCTLR_BR;
184
+ fail:
185
+ return INT_MIN;
30
}
186
}
31
187
32
static bool get_phys_addr_pmsav7(CPUARMState *env, uint32_t address,
188
/**
33
@@ -XXX,XX +XXX,XX @@ static bool get_phys_addr_pmsav7(CPUARMState *env, uint32_t address,
189
@@ -XXX,XX +XXX,XX @@ static bool get_phys_addr_lpae(CPUARMState *env, S1Translate *ptw,
34
return !(result->f.prot & (1 << access_type));
190
*/
35
}
191
level = 4 - (inputsize - 4) / stride;
36
192
} else {
37
+static uint32_t *regime_rbar(CPUARMState *env, ARMMMUIdx mmu_idx,
193
- /*
38
+ uint32_t secure)
194
- * For stage 2 translations the starting level is specified by the
39
+{
195
- * VTCR_EL2.SL0 field (whose interpretation depends on the page size)
40
+ if (regime_el(env, mmu_idx) == 2) {
196
- */
41
+ return env->pmsav8.hprbar;
197
- uint32_t sl0 = extract32(tcr, 6, 2);
42
+ } else {
198
- uint32_t sl2 = extract64(tcr, 33, 1);
43
+ return env->pmsav8.rbar[secure];
199
- int32_t startlevel;
44
+ }
200
- bool ok;
45
+}
201
-
46
+
202
- /* SL2 is RES0 unless DS=1 & 4kb granule. */
47
+static uint32_t *regime_rlar(CPUARMState *env, ARMMMUIdx mmu_idx,
203
- if (param.ds && stride == 9 && sl2) {
48
+ uint32_t secure)
204
- if (sl0 != 0) {
49
+{
205
- level = 0;
50
+ if (regime_el(env, mmu_idx) == 2) {
206
- goto do_translation_fault;
51
+ return env->pmsav8.hprlar;
207
- }
52
+ } else {
208
- startlevel = -1;
53
+ return env->pmsav8.rlar[secure];
209
- } else if (!aarch64 || stride == 9) {
54
+ }
210
- /* AArch32 or 4KB pages */
55
+}
211
- startlevel = 2 - sl0;
56
+
212
-
57
bool pmsav8_mpu_lookup(CPUARMState *env, uint32_t address,
213
- if (cpu_isar_feature(aa64_st, cpu)) {
58
MMUAccessType access_type, ARMMMUIdx mmu_idx,
214
- startlevel &= 3;
59
bool secure, GetPhysAddrResult *result,
215
- }
60
@@ -XXX,XX +XXX,XX @@ bool pmsav8_mpu_lookup(CPUARMState *env, uint32_t address,
216
- } else {
61
bool hit = false;
217
- /* 16KB or 64KB pages */
62
uint32_t addr_page_base = address & TARGET_PAGE_MASK;
218
- startlevel = 3 - sl0;
63
uint32_t addr_page_limit = addr_page_base + (TARGET_PAGE_SIZE - 1);
219
- }
64
+ int region_counter;
220
-
65
+
221
- /* Check that the starting level is valid. */
66
+ if (regime_el(env, mmu_idx) == 2) {
222
- ok = check_s2_mmu_setup(cpu, aarch64, startlevel,
67
+ region_counter = cpu->pmsav8r_hdregion;
223
- inputsize, stride, outputsize);
68
+ } else {
224
- if (!ok) {
69
+ region_counter = cpu->pmsav7_dregion;
225
+ int startlevel = check_s2_mmu_setup(cpu, aarch64, tcr, param.ds,
70
+ }
226
+ inputsize, stride);
71
227
+ if (startlevel == INT_MIN) {
72
result->f.lg_page_size = TARGET_PAGE_BITS;
228
+ level = 0;
73
result->f.phys_addr = address;
229
goto do_translation_fault;
74
@@ -XXX,XX +XXX,XX @@ bool pmsav8_mpu_lookup(CPUARMState *env, uint32_t address,
75
*mregion = -1;
76
}
77
78
+ if (mmu_idx == ARMMMUIdx_Stage2) {
79
+ fi->stage2 = true;
80
+ }
81
+
82
/*
83
* Unlike the ARM ARM pseudocode, we don't need to check whether this
84
* was an exception vector read from the vector table (which is always
85
@@ -XXX,XX +XXX,XX @@ bool pmsav8_mpu_lookup(CPUARMState *env, uint32_t address,
86
hit = true;
87
}
230
}
88
231
level = startlevel;
89
- for (n = (int)cpu->pmsav7_dregion - 1; n >= 0; n--) {
90
+ uint32_t bitmask;
91
+ if (arm_feature(env, ARM_FEATURE_M)) {
92
+ bitmask = 0x1f;
93
+ } else {
94
+ bitmask = 0x3f;
95
+ fi->level = 0;
96
+ }
97
+
98
+ for (n = region_counter - 1; n >= 0; n--) {
99
/* region search */
100
/*
101
- * Note that the base address is bits [31:5] from the register
102
- * with bits [4:0] all zeroes, but the limit address is bits
103
- * [31:5] from the register with bits [4:0] all ones.
104
+ * Note that the base address is bits [31:x] from the register
105
+ * with bits [x-1:0] all zeroes, but the limit address is bits
106
+ * [31:x] from the register with bits [x:0] all ones. Where x is
107
+ * 5 for Cortex-M and 6 for Cortex-R
108
*/
109
- uint32_t base = env->pmsav8.rbar[secure][n] & ~0x1f;
110
- uint32_t limit = env->pmsav8.rlar[secure][n] | 0x1f;
111
+ uint32_t base = regime_rbar(env, mmu_idx, secure)[n] & ~bitmask;
112
+ uint32_t limit = regime_rlar(env, mmu_idx, secure)[n] | bitmask;
113
114
- if (!(env->pmsav8.rlar[secure][n] & 0x1)) {
115
+ if (!(regime_rlar(env, mmu_idx, secure)[n] & 0x1)) {
116
/* Region disabled */
117
continue;
118
}
119
@@ -XXX,XX +XXX,XX @@ bool pmsav8_mpu_lookup(CPUARMState *env, uint32_t address,
120
* PMSAv7 where highest-numbered-region wins)
121
*/
122
fi->type = ARMFault_Permission;
123
- fi->level = 1;
124
+ if (arm_feature(env, ARM_FEATURE_M)) {
125
+ fi->level = 1;
126
+ }
127
return true;
128
}
129
130
@@ -XXX,XX +XXX,XX @@ bool pmsav8_mpu_lookup(CPUARMState *env, uint32_t address,
131
}
132
133
if (!hit) {
134
- /* background fault */
135
- fi->type = ARMFault_Background;
136
+ if (arm_feature(env, ARM_FEATURE_M)) {
137
+ fi->type = ARMFault_Background;
138
+ } else {
139
+ fi->type = ARMFault_Permission;
140
+ }
141
return true;
142
}
143
144
@@ -XXX,XX +XXX,XX @@ bool pmsav8_mpu_lookup(CPUARMState *env, uint32_t address,
145
/* hit using the background region */
146
get_phys_addr_pmsav7_default(env, mmu_idx, address, &result->f.prot);
147
} else {
148
- uint32_t ap = extract32(env->pmsav8.rbar[secure][matchregion], 1, 2);
149
- uint32_t xn = extract32(env->pmsav8.rbar[secure][matchregion], 0, 1);
150
+ uint32_t matched_rbar = regime_rbar(env, mmu_idx, secure)[matchregion];
151
+ uint32_t matched_rlar = regime_rlar(env, mmu_idx, secure)[matchregion];
152
+ uint32_t ap = extract32(matched_rbar, 1, 2);
153
+ uint32_t xn = extract32(matched_rbar, 0, 1);
154
bool pxn = false;
155
156
if (arm_feature(env, ARM_FEATURE_V8_1M)) {
157
- pxn = extract32(env->pmsav8.rlar[secure][matchregion], 4, 1);
158
+ pxn = extract32(matched_rlar, 4, 1);
159
}
160
161
if (m_is_system_region(env, address)) {
162
@@ -XXX,XX +XXX,XX @@ bool pmsav8_mpu_lookup(CPUARMState *env, uint32_t address,
163
xn = 1;
164
}
165
166
- result->f.prot = simple_ap_to_rw_prot(env, mmu_idx, ap);
167
+ if (regime_el(env, mmu_idx) == 2) {
168
+ result->f.prot = simple_ap_to_rw_prot_is_user(ap,
169
+ mmu_idx != ARMMMUIdx_E2);
170
+ } else {
171
+ result->f.prot = simple_ap_to_rw_prot(env, mmu_idx, ap);
172
+ }
173
+
174
+ if (!arm_feature(env, ARM_FEATURE_M)) {
175
+ uint8_t attrindx = extract32(matched_rlar, 1, 3);
176
+ uint64_t mair = env->cp15.mair_el[regime_el(env, mmu_idx)];
177
+ uint8_t sh = extract32(matched_rlar, 3, 2);
178
+
179
+ if (regime_sctlr(env, mmu_idx) & SCTLR_WXN &&
180
+ result->f.prot & PAGE_WRITE && mmu_idx != ARMMMUIdx_Stage2) {
181
+ xn = 0x1;
182
+ }
183
+
184
+ if ((regime_el(env, mmu_idx) == 1) &&
185
+ regime_sctlr(env, mmu_idx) & SCTLR_UWXN && ap == 0x1) {
186
+ pxn = 0x1;
187
+ }
188
+
189
+ result->cacheattrs.is_s2_format = false;
190
+ result->cacheattrs.attrs = extract64(mair, attrindx * 8, 8);
191
+ result->cacheattrs.shareability = sh;
192
+ }
193
+
194
if (result->f.prot && !xn && !(pxn && !is_user)) {
195
result->f.prot |= PAGE_EXEC;
196
}
197
- /*
198
- * We don't need to look the attribute up in the MAIR0/MAIR1
199
- * registers because that only tells us about cacheability.
200
- */
201
+
202
if (mregion) {
203
*mregion = matchregion;
204
}
205
}
206
207
fi->type = ARMFault_Permission;
208
- fi->level = 1;
209
+ if (arm_feature(env, ARM_FEATURE_M)) {
210
+ fi->level = 1;
211
+ }
212
return !(result->f.prot & (1 << access_type));
213
}
214
215
@@ -XXX,XX +XXX,XX @@ static bool get_phys_addr_twostage(CPUARMState *env, S1Translate *ptw,
216
cacheattrs1 = result->cacheattrs;
217
memset(result, 0, sizeof(*result));
218
219
- ret = get_phys_addr_lpae(env, ptw, ipa, access_type, is_el0, result, fi);
220
+ if (arm_feature(env, ARM_FEATURE_PMSA)) {
221
+ ret = get_phys_addr_pmsav8(env, ipa, access_type,
222
+ ptw->in_mmu_idx, is_secure, result, fi);
223
+ } else {
224
+ ret = get_phys_addr_lpae(env, ptw, ipa, access_type,
225
+ is_el0, result, fi);
226
+ }
227
fi->s2addr = ipa;
228
229
/* Combine the S1 and S2 perms. */
230
--
232
--
231
2.25.1
233
2.34.1
232
233
diff view generated by jsdifflib
1
From: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
1
From: Ard Biesheuvel <ardb@kernel.org>
2
2
3
RVBAR shadows RVBAR_ELx where x is the highest exception
3
Fedora 39 will ship its arm64 kernels in the new generic EFI zboot
4
level if the highest EL is not EL3. This patch also allows
4
format, using gzip compression for the payload.
5
ARMv8 CPUs to change the reset address with
6
the rvbar property.
7
5
8
Signed-off-by: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
6
For doing EFI boot in QEMU, this is completely transparent, as the
7
firmware or bootloader will take care of this. However, for direct
8
kernel boot without firmware, we will lose the ability to boot such
9
distro kernels unless we deal with the new format directly.
10
11
EFI zboot images contain metadata in the header regarding the placement
12
of the compressed payload inside the image, and the type of compression
13
used. This means we can wire up the existing gzip support without too
14
much hassle, by parsing the header and grabbing the payload from inside
15
the loaded zboot image.
16
17
Cc: Peter Maydell <peter.maydell@linaro.org>
18
Cc: Alex Bennée <alex.bennee@linaro.org>
19
Cc: Richard Henderson <richard.henderson@linaro.org>
20
Cc: Philippe Mathieu-Daudé <f4bug@amsat.org>
21
Signed-off-by: Ard Biesheuvel <ardb@kernel.org>
22
Message-id: 20230303160109.3626966-1-ardb@kernel.org
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
23
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
10
Message-id: 20221206102504.165775-3-tobias.roehmel@rwth-aachen.de
24
[PMM: tweaked comment formatting, fixed checkpatch nits]
11
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
25
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
12
---
26
---
13
target/arm/cpu.c | 6 +++++-
27
include/hw/loader.h | 19 ++++++++++
14
target/arm/helper.c | 21 ++++++++++++++-------
28
hw/arm/boot.c | 6 +++
15
2 files changed, 19 insertions(+), 8 deletions(-)
29
hw/core/loader.c | 91 +++++++++++++++++++++++++++++++++++++++++++++
30
3 files changed, 116 insertions(+)
16
31
17
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
32
diff --git a/include/hw/loader.h b/include/hw/loader.h
18
index XXXXXXX..XXXXXXX 100644
33
index XXXXXXX..XXXXXXX 100644
19
--- a/target/arm/cpu.c
34
--- a/include/hw/loader.h
20
+++ b/target/arm/cpu.c
35
+++ b/include/hw/loader.h
21
@@ -XXX,XX +XXX,XX @@ static void arm_cpu_reset_hold(Object *obj)
36
@@ -XXX,XX +XXX,XX @@ ssize_t load_image_gzipped_buffer(const char *filename, uint64_t max_sz,
22
env->cp15.cpacr_el1 = FIELD_DP64(env->cp15.cpacr_el1,
37
uint8_t **buffer);
23
CPACR, CP11, 3);
38
ssize_t load_image_gzipped(const char *filename, hwaddr addr, uint64_t max_sz);
24
#endif
39
25
+ if (arm_feature(env, ARM_FEATURE_V8)) {
40
+/**
26
+ env->cp15.rvbar = cpu->rvbar_prop;
41
+ * unpack_efi_zboot_image:
27
+ env->regs[15] = cpu->rvbar_prop;
42
+ * @buffer: pointer to a variable holding the address of a buffer containing the
43
+ * image
44
+ * @size: pointer to a variable holding the size of the buffer
45
+ *
46
+ * Check whether the buffer contains a EFI zboot image, and if it does, extract
47
+ * the compressed payload and decompress it into a new buffer. If successful,
48
+ * the old buffer is freed, and the *buffer and size variables pointed to by the
49
+ * function arguments are updated to refer to the newly populated buffer.
50
+ *
51
+ * Returns 0 if the image could not be identified as a EFI zboot image.
52
+ * Returns -1 if the buffer contents were identified as a EFI zboot image, but
53
+ * unpacking failed for any reason.
54
+ * Returns the size of the decompressed payload if decompression was performed
55
+ * successfully.
56
+ */
57
+ssize_t unpack_efi_zboot_image(uint8_t **buffer, int *size);
58
+
59
#define ELF_LOAD_FAILED -1
60
#define ELF_LOAD_NOT_ELF -2
61
#define ELF_LOAD_WRONG_ARCH -3
62
diff --git a/hw/arm/boot.c b/hw/arm/boot.c
63
index XXXXXXX..XXXXXXX 100644
64
--- a/hw/arm/boot.c
65
+++ b/hw/arm/boot.c
66
@@ -XXX,XX +XXX,XX @@ static uint64_t load_aarch64_image(const char *filename, hwaddr mem_base,
67
return -1;
68
}
69
size = len;
70
+
71
+ /* Unpack the image if it is a EFI zboot image */
72
+ if (unpack_efi_zboot_image(&buffer, &size) < 0) {
73
+ g_free(buffer);
74
+ return -1;
28
+ }
75
+ }
29
}
76
}
30
77
31
#if defined(CONFIG_USER_ONLY)
78
/* check the arm64 magic header value -- very old kernels may not have it */
32
@@ -XXX,XX +XXX,XX @@ void arm_cpu_post_init(Object *obj)
79
diff --git a/hw/core/loader.c b/hw/core/loader.c
33
qdev_property_add_static(DEVICE(obj), &arm_cpu_reset_hivecs_property);
34
}
35
36
- if (arm_feature(&cpu->env, ARM_FEATURE_AARCH64)) {
37
+ if (arm_feature(&cpu->env, ARM_FEATURE_V8)) {
38
object_property_add_uint64_ptr(obj, "rvbar",
39
&cpu->rvbar_prop,
40
OBJ_PROP_FLAG_READWRITE);
41
diff --git a/target/arm/helper.c b/target/arm/helper.c
42
index XXXXXXX..XXXXXXX 100644
80
index XXXXXXX..XXXXXXX 100644
43
--- a/target/arm/helper.c
81
--- a/hw/core/loader.c
44
+++ b/target/arm/helper.c
82
+++ b/hw/core/loader.c
45
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
83
@@ -XXX,XX +XXX,XX @@ ssize_t load_image_gzipped(const char *filename, hwaddr addr, uint64_t max_sz)
46
if (!arm_feature(env, ARM_FEATURE_EL3) &&
84
return bytes;
47
!arm_feature(env, ARM_FEATURE_EL2)) {
85
}
48
ARMCPRegInfo rvbar = {
86
49
- .name = "RVBAR_EL1", .state = ARM_CP_STATE_AA64,
87
+/* The PE/COFF MS-DOS stub magic number */
50
+ .name = "RVBAR_EL1", .state = ARM_CP_STATE_BOTH,
88
+#define EFI_PE_MSDOS_MAGIC "MZ"
51
.opc0 = 3, .opc1 = 0, .crn = 12, .crm = 0, .opc2 = 1,
89
+
52
.access = PL1_R,
90
+/*
53
.fieldoffset = offsetof(CPUARMState, cp15.rvbar),
91
+ * The Linux header magic number for a EFI PE/COFF
54
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
92
+ * image targetting an unspecified architecture.
55
}
93
+ */
56
/* RVBAR_EL2 is only implemented if EL2 is the highest EL */
94
+#define EFI_PE_LINUX_MAGIC "\xcd\x23\x82\x81"
57
if (!arm_feature(env, ARM_FEATURE_EL3)) {
95
+
58
- ARMCPRegInfo rvbar = {
96
+/*
59
- .name = "RVBAR_EL2", .state = ARM_CP_STATE_AA64,
97
+ * Bootable Linux kernel images may be packaged as EFI zboot images, which are
60
- .opc0 = 3, .opc1 = 4, .crn = 12, .crm = 0, .opc2 = 1,
98
+ * self-decompressing executables when loaded via EFI. The compressed payload
61
- .access = PL2_R,
99
+ * can also be extracted from the image and decompressed by a non-EFI loader.
62
- .fieldoffset = offsetof(CPUARMState, cp15.rvbar),
100
+ *
63
+ ARMCPRegInfo rvbar[] = {
101
+ * The de facto specification for this format is at the following URL:
64
+ {
102
+ *
65
+ .name = "RVBAR_EL2", .state = ARM_CP_STATE_AA64,
103
+ * https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git/tree/drivers/firmware/efi/libstub/zboot-header.S
66
+ .opc0 = 3, .opc1 = 4, .crn = 12, .crm = 0, .opc2 = 1,
104
+ *
67
+ .access = PL2_R,
105
+ * This definition is based on Linux upstream commit 29636a5ce87beba.
68
+ .fieldoffset = offsetof(CPUARMState, cp15.rvbar),
106
+ */
69
+ },
107
+struct linux_efi_zboot_header {
70
+ { .name = "RVBAR", .type = ARM_CP_ALIAS,
108
+ uint8_t msdos_magic[2]; /* PE/COFF 'MZ' magic number */
71
+ .cp = 15, .opc1 = 0, .crn = 12, .crm = 0, .opc2 = 1,
109
+ uint8_t reserved0[2];
72
+ .access = PL2_R,
110
+ uint8_t zimg[4]; /* "zimg" for Linux EFI zboot images */
73
+ .fieldoffset = offsetof(CPUARMState, cp15.rvbar),
111
+ uint32_t payload_offset; /* LE offset to compressed payload */
74
+ },
112
+ uint32_t payload_size; /* LE size of the compressed payload */
75
};
113
+ uint8_t reserved1[8];
76
- define_one_arm_cp_reg(cpu, &rvbar);
114
+ char compression_type[32]; /* Compression type, NUL terminated */
77
+ define_arm_cp_regs(cpu, rvbar);
115
+ uint8_t linux_magic[4]; /* Linux header magic */
78
}
116
+ uint32_t pe_header_offset; /* LE offset to the PE header */
79
}
117
+};
80
118
+
119
+/*
120
+ * Check whether *buffer points to a Linux EFI zboot image in memory.
121
+ *
122
+ * If it does, attempt to decompress it to a new buffer, and free the old one.
123
+ * If any of this fails, return an error to the caller.
124
+ *
125
+ * If the image is not a Linux EFI zboot image, do nothing and return success.
126
+ */
127
+ssize_t unpack_efi_zboot_image(uint8_t **buffer, int *size)
128
+{
129
+ const struct linux_efi_zboot_header *header;
130
+ uint8_t *data = NULL;
131
+ int ploff, plsize;
132
+ ssize_t bytes;
133
+
134
+ /* ignore if this is too small to be a EFI zboot image */
135
+ if (*size < sizeof(*header)) {
136
+ return 0;
137
+ }
138
+
139
+ header = (struct linux_efi_zboot_header *)*buffer;
140
+
141
+ /* ignore if this is not a Linux EFI zboot image */
142
+ if (memcmp(&header->msdos_magic, EFI_PE_MSDOS_MAGIC, 2) != 0 ||
143
+ memcmp(&header->zimg, "zimg", 4) != 0 ||
144
+ memcmp(&header->linux_magic, EFI_PE_LINUX_MAGIC, 4) != 0) {
145
+ return 0;
146
+ }
147
+
148
+ if (strcmp(header->compression_type, "gzip") != 0) {
149
+ fprintf(stderr,
150
+ "unable to handle EFI zboot image with \"%.*s\" compression\n",
151
+ (int)sizeof(header->compression_type) - 1,
152
+ header->compression_type);
153
+ return -1;
154
+ }
155
+
156
+ ploff = ldl_le_p(&header->payload_offset);
157
+ plsize = ldl_le_p(&header->payload_size);
158
+
159
+ if (ploff < 0 || plsize < 0 || ploff + plsize > *size) {
160
+ fprintf(stderr, "unable to handle corrupt EFI zboot image\n");
161
+ return -1;
162
+ }
163
+
164
+ data = g_malloc(LOAD_IMAGE_MAX_GUNZIP_BYTES);
165
+ bytes = gunzip(data, LOAD_IMAGE_MAX_GUNZIP_BYTES, *buffer + ploff, plsize);
166
+ if (bytes < 0) {
167
+ fprintf(stderr, "failed to decompress EFI zboot image\n");
168
+ g_free(data);
169
+ return -1;
170
+ }
171
+
172
+ g_free(*buffer);
173
+ *buffer = g_realloc(data, bytes);
174
+ *size = bytes;
175
+ return bytes;
176
+}
177
+
178
/*
179
* Functions for reboot-persistent memory regions.
180
* - used for vga bios and option roms.
81
--
181
--
82
2.25.1
182
2.34.1
83
183
84
184
diff view generated by jsdifflib
Deleted patch
1
From: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
2
1
3
The v8R PMSAv8 has a two-stage MPU translation process, but, unlike
4
VMSAv8, the stage 2 attributes are in the same format as the stage 1
5
attributes (8-bit MAIR format). Rather than converting the MAIR
6
format to the format used for VMSA stage 2 (bits [5:2] of a VMSA
7
stage 2 descriptor) and then converting back to do the attribute
8
combination, allow combined_attrs_nofwb() to accept s2 attributes
9
that are already in the MAIR format.
10
11
We move the assert() to combined_attrs_fwb(), because that function
12
really does require a VMSA stage 2 attribute format. (We will never
13
get there for v8R, because PMSAv8 does not implement FEAT_S2FWB.)
14
15
Signed-off-by: Tobias Röhmel <tobias.roehmel@rwth-aachen.de>
16
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
17
Message-id: 20221206102504.165775-4-tobias.roehmel@rwth-aachen.de
18
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
19
---
20
target/arm/ptw.c | 10 ++++++++--
21
1 file changed, 8 insertions(+), 2 deletions(-)
22
23
diff --git a/target/arm/ptw.c b/target/arm/ptw.c
24
index XXXXXXX..XXXXXXX 100644
25
--- a/target/arm/ptw.c
26
+++ b/target/arm/ptw.c
27
@@ -XXX,XX +XXX,XX @@ static uint8_t combined_attrs_nofwb(uint64_t hcr,
28
{
29
uint8_t s1lo, s2lo, s1hi, s2hi, s2_mair_attrs, ret_attrs;
30
31
- s2_mair_attrs = convert_stage2_attrs(hcr, s2.attrs);
32
+ if (s2.is_s2_format) {
33
+ s2_mair_attrs = convert_stage2_attrs(hcr, s2.attrs);
34
+ } else {
35
+ s2_mair_attrs = s2.attrs;
36
+ }
37
38
s1lo = extract32(s1.attrs, 0, 4);
39
s2lo = extract32(s2_mair_attrs, 0, 4);
40
@@ -XXX,XX +XXX,XX @@ static uint8_t force_cacheattr_nibble_wb(uint8_t attr)
41
*/
42
static uint8_t combined_attrs_fwb(ARMCacheAttrs s1, ARMCacheAttrs s2)
43
{
44
+ assert(s2.is_s2_format && !s1.is_s2_format);
45
+
46
switch (s2.attrs) {
47
case 7:
48
/* Use stage 1 attributes */
49
@@ -XXX,XX +XXX,XX @@ static ARMCacheAttrs combine_cacheattrs(uint64_t hcr,
50
ARMCacheAttrs ret;
51
bool tagged = false;
52
53
- assert(s2.is_s2_format && !s1.is_s2_format);
54
+ assert(!s1.is_s2_format);
55
ret.is_s2_format = false;
56
57
if (s1.attrs == 0xf0) {
58
--
59
2.25.1
60
61
diff view generated by jsdifflib
Deleted patch
1
From: Axel Heider <axel.heider@hensoldt.net>
2
1
3
remove unused defines, add needed defines
4
5
Signed-off-by: Axel Heider <axel.heider@hensoldt.net>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
---
9
include/hw/timer/imx_epit.h | 4 ++--
10
hw/timer/imx_epit.c | 4 ++--
11
2 files changed, 4 insertions(+), 4 deletions(-)
12
13
diff --git a/include/hw/timer/imx_epit.h b/include/hw/timer/imx_epit.h
14
index XXXXXXX..XXXXXXX 100644
15
--- a/include/hw/timer/imx_epit.h
16
+++ b/include/hw/timer/imx_epit.h
17
@@ -XXX,XX +XXX,XX @@
18
#define CR_OCIEN (1 << 2)
19
#define CR_RLD (1 << 3)
20
#define CR_PRESCALE_SHIFT (4)
21
-#define CR_PRESCALE_MASK (0xfff)
22
+#define CR_PRESCALE_BITS (12)
23
#define CR_SWR (1 << 16)
24
#define CR_IOVW (1 << 17)
25
#define CR_DBGEN (1 << 18)
26
@@ -XXX,XX +XXX,XX @@
27
#define CR_DOZEN (1 << 20)
28
#define CR_STOPEN (1 << 21)
29
#define CR_CLKSRC_SHIFT (24)
30
-#define CR_CLKSRC_MASK (0x3 << CR_CLKSRC_SHIFT)
31
+#define CR_CLKSRC_BITS (2)
32
33
#define EPIT_TIMER_MAX 0XFFFFFFFFUL
34
35
diff --git a/hw/timer/imx_epit.c b/hw/timer/imx_epit.c
36
index XXXXXXX..XXXXXXX 100644
37
--- a/hw/timer/imx_epit.c
38
+++ b/hw/timer/imx_epit.c
39
@@ -XXX,XX +XXX,XX @@ static void imx_epit_set_freq(IMXEPITState *s)
40
uint32_t clksrc;
41
uint32_t prescaler;
42
43
- clksrc = extract32(s->cr, CR_CLKSRC_SHIFT, 2);
44
- prescaler = 1 + extract32(s->cr, CR_PRESCALE_SHIFT, 12);
45
+ clksrc = extract32(s->cr, CR_CLKSRC_SHIFT, CR_CLKSRC_BITS);
46
+ prescaler = 1 + extract32(s->cr, CR_PRESCALE_SHIFT, CR_PRESCALE_BITS);
47
48
s->freq = imx_ccm_get_clock_frequency(s->ccm,
49
imx_epit_clocks[clksrc]) / prescaler;
50
--
51
2.25.1
diff view generated by jsdifflib
Deleted patch
1
From: Axel Heider <axel.heider@hensoldt.net>
2
1
3
The interrupt state can change due to:
4
- reset clears both SR.OCIF and CR.OCIE
5
- write to CR.EN or CR.OCIE
6
7
Signed-off-by: Axel Heider <axel.heider@hensoldt.net>
8
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
---
11
hw/timer/imx_epit.c | 16 ++++++++++++----
12
1 file changed, 12 insertions(+), 4 deletions(-)
13
14
diff --git a/hw/timer/imx_epit.c b/hw/timer/imx_epit.c
15
index XXXXXXX..XXXXXXX 100644
16
--- a/hw/timer/imx_epit.c
17
+++ b/hw/timer/imx_epit.c
18
@@ -XXX,XX +XXX,XX @@ static void imx_epit_write(void *opaque, hwaddr offset, uint64_t value,
19
if (s->cr & CR_SWR) {
20
/* handle the reset */
21
imx_epit_reset(DEVICE(s));
22
- /*
23
- * TODO: could we 'break' here? following operations appear
24
- * to duplicate the work imx_epit_reset() already did.
25
- */
26
}
27
28
+ /*
29
+ * The interrupt state can change due to:
30
+ * - reset clears both SR.OCIF and CR.OCIE
31
+ * - write to CR.EN or CR.OCIE
32
+ */
33
+ imx_epit_update_int(s);
34
+
35
+ /*
36
+ * TODO: could we 'break' here for reset? following operations appear
37
+ * to duplicate the work imx_epit_reset() already did.
38
+ */
39
+
40
ptimer_transaction_begin(s->timer_cmp);
41
ptimer_transaction_begin(s->timer_reload);
42
43
--
44
2.25.1
diff view generated by jsdifflib
1
From: Jean-Christophe Dubois <jcd@tribudubois.net>
1
From: qianfan Zhao <qianfanguijin@163.com>
2
2
3
The i.MX6UL doesn't support CLK_HIGH ou CLK_HIGH_DIV clock source.
3
TWI_CNTR_INT_FLAG is W1C(write 1 to clear and write 0 has non-effect)
4
register on SUN6i based SoCs, we should lower interrupt when the guest
5
set this bit.
4
6
5
Signed-off-by: Jean-Christophe Dubois <jcd@tribudubois.net>
7
The linux kernel will hang in irq handler(mv64xxx_i2c_intr) if no
8
device connected on the i2c bus, next is the trace log:
9
10
allwinner_i2c_write write CNTR(0x0c): 0xc4 A_ACK BUS_EN INT_EN
11
allwinner_i2c_write write CNTR(0x0c): 0xcc A_ACK INT_FLAG BUS_EN INT_EN
12
allwinner_i2c_read read CNTR(0x0c): 0xcc A_ACK INT_FLAG BUS_EN INT_EN
13
allwinner_i2c_read read STAT(0x10): 0x20 STAT_M_ADDR_WR_NACK
14
allwinner_i2c_write write CNTR(0x0c): 0x54 A_ACK M_STP BUS_EN
15
allwinner_i2c_write write CNTR(0x0c): 0x4c A_ACK INT_FLAG BUS_EN
16
allwinner_i2c_read read CNTR(0x0c): 0x4c A_ACK INT_FLAG BUS_EN
17
allwinner_i2c_read read STAT(0x10): 0xf8 STAT_IDLE
18
allwinner_i2c_write write CNTR(0x0c): 0x54 A_ACK M_STP BUS_EN
19
allwinner_i2c_write write CNTR(0x0c): 0x4c A_ACK INT_FLAG BUS_EN
20
allwinner_i2c_read read CNTR(0x0c): 0x4c A_ACK INT_FLAG BUS_EN
21
allwinner_i2c_read read STAT(0x10): 0xf8 STAT_IDLE
22
...
23
24
Fix it.
25
26
Signed-off-by: qianfan Zhao <qianfanguijin@163.com>
27
Reviewed-by: Strahinja Jankovic <strahinja.p.jankovic@gmail.com>
28
Tested-by: Strahinja Jankovic <strahinja.p.jankovic@gmail.com>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
29
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
30
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
---
31
---
9
include/hw/timer/imx_gpt.h | 1 +
32
include/hw/i2c/allwinner-i2c.h | 6 ++++++
10
hw/arm/fsl-imx6ul.c | 2 +-
33
hw/i2c/allwinner-i2c.c | 26 ++++++++++++++++++++++++--
11
hw/misc/imx6ul_ccm.c | 6 ------
34
2 files changed, 30 insertions(+), 2 deletions(-)
12
hw/timer/imx_gpt.c | 25 +++++++++++++++++++++++++
13
4 files changed, 27 insertions(+), 7 deletions(-)
14
35
15
diff --git a/include/hw/timer/imx_gpt.h b/include/hw/timer/imx_gpt.h
36
diff --git a/include/hw/i2c/allwinner-i2c.h b/include/hw/i2c/allwinner-i2c.h
16
index XXXXXXX..XXXXXXX 100644
37
index XXXXXXX..XXXXXXX 100644
17
--- a/include/hw/timer/imx_gpt.h
38
--- a/include/hw/i2c/allwinner-i2c.h
18
+++ b/include/hw/timer/imx_gpt.h
39
+++ b/include/hw/i2c/allwinner-i2c.h
19
@@ -XXX,XX +XXX,XX @@
40
@@ -XXX,XX +XXX,XX @@
20
#define TYPE_IMX25_GPT "imx25.gpt"
41
#include "qom/object.h"
21
#define TYPE_IMX31_GPT "imx31.gpt"
42
22
#define TYPE_IMX6_GPT "imx6.gpt"
43
#define TYPE_AW_I2C "allwinner.i2c"
23
+#define TYPE_IMX6UL_GPT "imx6ul.gpt"
44
+
24
#define TYPE_IMX7_GPT "imx7.gpt"
45
+/** Allwinner I2C sun6i family and newer (A31, H2+, H3, etc) */
25
46
+#define TYPE_AW_I2C_SUN6I TYPE_AW_I2C "-sun6i"
26
#define TYPE_IMX_GPT TYPE_IMX25_GPT
47
+
27
diff --git a/hw/arm/fsl-imx6ul.c b/hw/arm/fsl-imx6ul.c
48
OBJECT_DECLARE_SIMPLE_TYPE(AWI2CState, AW_I2C)
49
50
#define AW_I2C_MEM_SIZE 0x24
51
@@ -XXX,XX +XXX,XX @@ struct AWI2CState {
52
uint8_t srst;
53
uint8_t efr;
54
uint8_t lcr;
55
+
56
+ bool irq_clear_inverted;
57
};
58
59
#endif /* ALLWINNER_I2C_H */
60
diff --git a/hw/i2c/allwinner-i2c.c b/hw/i2c/allwinner-i2c.c
28
index XXXXXXX..XXXXXXX 100644
61
index XXXXXXX..XXXXXXX 100644
29
--- a/hw/arm/fsl-imx6ul.c
62
--- a/hw/i2c/allwinner-i2c.c
30
+++ b/hw/arm/fsl-imx6ul.c
63
+++ b/hw/i2c/allwinner-i2c.c
31
@@ -XXX,XX +XXX,XX @@ static void fsl_imx6ul_init(Object *obj)
64
@@ -XXX,XX +XXX,XX @@ static void allwinner_i2c_write(void *opaque, hwaddr offset,
32
*/
65
s->stat = STAT_FROM_STA(STAT_IDLE);
33
for (i = 0; i < FSL_IMX6UL_NUM_GPTS; i++) {
66
s->cntr &= ~TWI_CNTR_M_STP;
34
snprintf(name, NAME_SIZE, "gpt%d", i);
67
}
35
- object_initialize_child(obj, name, &s->gpt[i], TYPE_IMX7_GPT);
68
- if ((s->cntr & TWI_CNTR_INT_FLAG) == 0) {
36
+ object_initialize_child(obj, name, &s->gpt[i], TYPE_IMX6UL_GPT);
69
- /* Interrupt flag cleared */
37
}
70
+
38
71
+ if (!s->irq_clear_inverted && !(s->cntr & TWI_CNTR_INT_FLAG)) {
39
/*
72
+ /* Write 0 to clear this flag */
40
diff --git a/hw/misc/imx6ul_ccm.c b/hw/misc/imx6ul_ccm.c
73
+ qemu_irq_lower(s->irq);
41
index XXXXXXX..XXXXXXX 100644
74
+ } else if (s->irq_clear_inverted && (s->cntr & TWI_CNTR_INT_FLAG)) {
42
--- a/hw/misc/imx6ul_ccm.c
75
+ /* Write 1 to clear this flag */
43
+++ b/hw/misc/imx6ul_ccm.c
76
+ s->cntr &= ~TWI_CNTR_INT_FLAG;
44
@@ -XXX,XX +XXX,XX @@ static uint32_t imx6ul_ccm_get_clock_frequency(IMXCCMState *dev, IMXClk clock)
77
qemu_irq_lower(s->irq);
45
case CLK_32k:
78
}
46
freq = CKIL_FREQ;
79
+
47
break;
80
if ((s->cntr & TWI_CNTR_A_ACK) == 0) {
48
- case CLK_HIGH:
81
if (STAT_TO_STA(s->stat) == STAT_M_DATA_RX_ACK) {
49
- freq = CKIH_FREQ;
82
s->stat = STAT_FROM_STA(STAT_M_DATA_RX_NACK);
50
- break;
83
@@ -XXX,XX +XXX,XX @@ static const TypeInfo allwinner_i2c_type_info = {
51
- case CLK_HIGH_DIV:
84
.class_init = allwinner_i2c_class_init,
52
- freq = CKIH_FREQ / 8;
53
- break;
54
default:
55
qemu_log_mask(LOG_GUEST_ERROR, "[%s]%s: unsupported clock %d\n",
56
TYPE_IMX6UL_CCM, __func__, clock);
57
diff --git a/hw/timer/imx_gpt.c b/hw/timer/imx_gpt.c
58
index XXXXXXX..XXXXXXX 100644
59
--- a/hw/timer/imx_gpt.c
60
+++ b/hw/timer/imx_gpt.c
61
@@ -XXX,XX +XXX,XX @@ static const IMXClk imx6_gpt_clocks[] = {
62
CLK_HIGH, /* 111 reference clock */
63
};
85
};
64
86
65
+static const IMXClk imx6ul_gpt_clocks[] = {
87
+static void allwinner_i2c_sun6i_init(Object *obj)
66
+ CLK_NONE, /* 000 No clock source */
88
+{
67
+ CLK_IPG, /* 001 ipg_clk, 532MHz*/
89
+ AWI2CState *s = AW_I2C(obj);
68
+ CLK_IPG_HIGH, /* 010 ipg_clk_highfreq */
90
+
69
+ CLK_EXT, /* 011 External clock */
91
+ s->irq_clear_inverted = true;
70
+ CLK_32k, /* 100 ipg_clk_32k */
92
+}
71
+ CLK_NONE, /* 101 not defined */
93
+
72
+ CLK_NONE, /* 110 not defined */
94
+static const TypeInfo allwinner_i2c_sun6i_type_info = {
73
+ CLK_NONE, /* 111 not defined */
95
+ .name = TYPE_AW_I2C_SUN6I,
96
+ .parent = TYPE_SYS_BUS_DEVICE,
97
+ .instance_size = sizeof(AWI2CState),
98
+ .instance_init = allwinner_i2c_sun6i_init,
99
+ .class_init = allwinner_i2c_class_init,
74
+};
100
+};
75
+
101
+
76
static const IMXClk imx7_gpt_clocks[] = {
102
static void allwinner_i2c_register_types(void)
77
CLK_NONE, /* 000 No clock source */
103
{
78
CLK_IPG, /* 001 ipg_clk, 532MHz*/
104
type_register_static(&allwinner_i2c_type_info);
79
@@ -XXX,XX +XXX,XX @@ static void imx6_gpt_init(Object *obj)
105
+ type_register_static(&allwinner_i2c_sun6i_type_info);
80
s->clocks = imx6_gpt_clocks;
81
}
106
}
82
107
83
+static void imx6ul_gpt_init(Object *obj)
108
type_init(allwinner_i2c_register_types)
84
+{
85
+ IMXGPTState *s = IMX_GPT(obj);
86
+
87
+ s->clocks = imx6ul_gpt_clocks;
88
+}
89
+
90
static void imx7_gpt_init(Object *obj)
91
{
92
IMXGPTState *s = IMX_GPT(obj);
93
@@ -XXX,XX +XXX,XX @@ static const TypeInfo imx6_gpt_info = {
94
.instance_init = imx6_gpt_init,
95
};
96
97
+static const TypeInfo imx6ul_gpt_info = {
98
+ .name = TYPE_IMX6UL_GPT,
99
+ .parent = TYPE_IMX25_GPT,
100
+ .instance_init = imx6ul_gpt_init,
101
+};
102
+
103
static const TypeInfo imx7_gpt_info = {
104
.name = TYPE_IMX7_GPT,
105
.parent = TYPE_IMX25_GPT,
106
@@ -XXX,XX +XXX,XX @@ static void imx_gpt_register_types(void)
107
type_register_static(&imx25_gpt_info);
108
type_register_static(&imx31_gpt_info);
109
type_register_static(&imx6_gpt_info);
110
+ type_register_static(&imx6ul_gpt_info);
111
type_register_static(&imx7_gpt_info);
112
}
113
114
--
109
--
115
2.25.1
110
2.34.1
diff view generated by jsdifflib
1
From: Axel Heider <axel.heider@hensoldt.net>
1
From: qianfan Zhao <qianfanguijin@163.com>
2
2
3
The CNT register is a read-only register. There is no need to
3
Allwinner h3 has 4 twi(i2c) devices named twi0, twi1, twi2 and r_twi.
4
store it's value, it can be calculated on demand.
4
The registers are compatible with TYPE_AW_I2C_SUN6I, write 1 to clear
5
The calculated frequency is needed temporarily only.
5
control register's INT_FLAG bit.
6
6
7
Note that this is a migration compatibility break for all boards
7
Signed-off-by: qianfan Zhao <qianfanguijin@163.com>
8
types that use the EPIT peripheral.
8
Reviewed-by: Strahinja Jankovic <strahinja.p.jankovic@gmail.com>
9
10
Signed-off-by: Axel Heider <axel.heider@hensoldt.net>
11
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
9
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
12
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
13
---
11
---
14
include/hw/timer/imx_epit.h | 2 -
12
include/hw/arm/allwinner-h3.h | 6 ++++++
15
hw/timer/imx_epit.c | 73 ++++++++++++++-----------------------
13
hw/arm/allwinner-h3.c | 29 +++++++++++++++++++++++++----
16
2 files changed, 28 insertions(+), 47 deletions(-)
14
2 files changed, 31 insertions(+), 4 deletions(-)
17
15
18
diff --git a/include/hw/timer/imx_epit.h b/include/hw/timer/imx_epit.h
16
diff --git a/include/hw/arm/allwinner-h3.h b/include/hw/arm/allwinner-h3.h
19
index XXXXXXX..XXXXXXX 100644
17
index XXXXXXX..XXXXXXX 100644
20
--- a/include/hw/timer/imx_epit.h
18
--- a/include/hw/arm/allwinner-h3.h
21
+++ b/include/hw/timer/imx_epit.h
19
+++ b/include/hw/arm/allwinner-h3.h
22
@@ -XXX,XX +XXX,XX @@ struct IMXEPITState {
20
@@ -XXX,XX +XXX,XX @@ enum {
23
uint32_t sr;
21
AW_H3_DEV_UART3,
24
uint32_t lr;
22
AW_H3_DEV_EMAC,
25
uint32_t cmp;
23
AW_H3_DEV_TWI0,
26
- uint32_t cnt;
24
+ AW_H3_DEV_TWI1,
27
25
+ AW_H3_DEV_TWI2,
28
- uint32_t freq;
26
AW_H3_DEV_DRAMCOM,
29
qemu_irq irq;
27
AW_H3_DEV_DRAMCTL,
28
AW_H3_DEV_DRAMPHY,
29
@@ -XXX,XX +XXX,XX @@ enum {
30
AW_H3_DEV_GIC_VCPU,
31
AW_H3_DEV_RTC,
32
AW_H3_DEV_CPUCFG,
33
+ AW_H3_DEV_R_TWI,
34
AW_H3_DEV_SDRAM
30
};
35
};
31
36
32
diff --git a/hw/timer/imx_epit.c b/hw/timer/imx_epit.c
37
@@ -XXX,XX +XXX,XX @@ struct AwH3State {
38
AwSidState sid;
39
AwSdHostState mmc0;
40
AWI2CState i2c0;
41
+ AWI2CState i2c1;
42
+ AWI2CState i2c2;
43
+ AWI2CState r_twi;
44
AwSun8iEmacState emac;
45
AwRtcState rtc;
46
GICState gic;
47
diff --git a/hw/arm/allwinner-h3.c b/hw/arm/allwinner-h3.c
33
index XXXXXXX..XXXXXXX 100644
48
index XXXXXXX..XXXXXXX 100644
34
--- a/hw/timer/imx_epit.c
49
--- a/hw/arm/allwinner-h3.c
35
+++ b/hw/timer/imx_epit.c
50
+++ b/hw/arm/allwinner-h3.c
36
@@ -XXX,XX +XXX,XX @@ static void imx_epit_update_int(IMXEPITState *s)
51
@@ -XXX,XX +XXX,XX @@ const hwaddr allwinner_h3_memmap[] = {
37
}
52
[AW_H3_DEV_UART2] = 0x01c28800,
53
[AW_H3_DEV_UART3] = 0x01c28c00,
54
[AW_H3_DEV_TWI0] = 0x01c2ac00,
55
+ [AW_H3_DEV_TWI1] = 0x01c2b000,
56
+ [AW_H3_DEV_TWI2] = 0x01c2b400,
57
[AW_H3_DEV_EMAC] = 0x01c30000,
58
[AW_H3_DEV_DRAMCOM] = 0x01c62000,
59
[AW_H3_DEV_DRAMCTL] = 0x01c63000,
60
@@ -XXX,XX +XXX,XX @@ const hwaddr allwinner_h3_memmap[] = {
61
[AW_H3_DEV_GIC_VCPU] = 0x01c86000,
62
[AW_H3_DEV_RTC] = 0x01f00000,
63
[AW_H3_DEV_CPUCFG] = 0x01f01c00,
64
+ [AW_H3_DEV_R_TWI] = 0x01f02400,
65
[AW_H3_DEV_SDRAM] = 0x40000000
66
};
67
68
@@ -XXX,XX +XXX,XX @@ struct AwH3Unimplemented {
69
{ "uart1", 0x01c28400, 1 * KiB },
70
{ "uart2", 0x01c28800, 1 * KiB },
71
{ "uart3", 0x01c28c00, 1 * KiB },
72
- { "twi1", 0x01c2b000, 1 * KiB },
73
- { "twi2", 0x01c2b400, 1 * KiB },
74
{ "scr", 0x01c2c400, 1 * KiB },
75
{ "gpu", 0x01c40000, 64 * KiB },
76
{ "hstmr", 0x01c60000, 4 * KiB },
77
@@ -XXX,XX +XXX,XX @@ struct AwH3Unimplemented {
78
{ "r_prcm", 0x01f01400, 1 * KiB },
79
{ "r_twd", 0x01f01800, 1 * KiB },
80
{ "r_cir-rx", 0x01f02000, 1 * KiB },
81
- { "r_twi", 0x01f02400, 1 * KiB },
82
{ "r_uart", 0x01f02800, 1 * KiB },
83
{ "r_pio", 0x01f02c00, 1 * KiB },
84
{ "r_pwm", 0x01f03800, 1 * KiB },
85
@@ -XXX,XX +XXX,XX @@ enum {
86
AW_H3_GIC_SPI_UART2 = 2,
87
AW_H3_GIC_SPI_UART3 = 3,
88
AW_H3_GIC_SPI_TWI0 = 6,
89
+ AW_H3_GIC_SPI_TWI1 = 7,
90
+ AW_H3_GIC_SPI_TWI2 = 8,
91
AW_H3_GIC_SPI_TIMER0 = 18,
92
AW_H3_GIC_SPI_TIMER1 = 19,
93
+ AW_H3_GIC_SPI_R_TWI = 44,
94
AW_H3_GIC_SPI_MMC0 = 60,
95
AW_H3_GIC_SPI_EHCI0 = 72,
96
AW_H3_GIC_SPI_OHCI0 = 73,
97
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_init(Object *obj)
98
99
object_initialize_child(obj, "rtc", &s->rtc, TYPE_AW_RTC_SUN6I);
100
101
- object_initialize_child(obj, "twi0", &s->i2c0, TYPE_AW_I2C);
102
+ object_initialize_child(obj, "twi0", &s->i2c0, TYPE_AW_I2C_SUN6I);
103
+ object_initialize_child(obj, "twi1", &s->i2c1, TYPE_AW_I2C_SUN6I);
104
+ object_initialize_child(obj, "twi2", &s->i2c2, TYPE_AW_I2C_SUN6I);
105
+ object_initialize_child(obj, "r_twi", &s->r_twi, TYPE_AW_I2C_SUN6I);
38
}
106
}
39
107
40
-/*
108
static void allwinner_h3_realize(DeviceState *dev, Error **errp)
41
- * Must be called from within a ptimer_transaction_begin/commit block
109
@@ -XXX,XX +XXX,XX @@ static void allwinner_h3_realize(DeviceState *dev, Error **errp)
42
- * for both s->timer_cmp and s->timer_reload.
110
sysbus_connect_irq(SYS_BUS_DEVICE(&s->i2c0), 0,
43
- */
111
qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_TWI0));
44
-static void imx_epit_set_freq(IMXEPITState *s)
112
45
+static uint32_t imx_epit_get_freq(IMXEPITState *s)
113
+ sysbus_realize(SYS_BUS_DEVICE(&s->i2c1), &error_fatal);
46
{
114
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->i2c1), 0, s->memmap[AW_H3_DEV_TWI1]);
47
- uint32_t clksrc;
115
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->i2c1), 0,
48
- uint32_t prescaler;
116
+ qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_TWI1));
49
-
50
- clksrc = extract32(s->cr, CR_CLKSRC_SHIFT, CR_CLKSRC_BITS);
51
- prescaler = 1 + extract32(s->cr, CR_PRESCALE_SHIFT, CR_PRESCALE_BITS);
52
-
53
- s->freq = imx_ccm_get_clock_frequency(s->ccm,
54
- imx_epit_clocks[clksrc]) / prescaler;
55
-
56
- DPRINTF("Setting ptimer frequency to %u\n", s->freq);
57
-
58
- if (s->freq) {
59
- ptimer_set_freq(s->timer_reload, s->freq);
60
- ptimer_set_freq(s->timer_cmp, s->freq);
61
- }
62
+ uint32_t clksrc = extract32(s->cr, CR_CLKSRC_SHIFT, CR_CLKSRC_BITS);
63
+ uint32_t prescaler = 1 + extract32(s->cr, CR_PRESCALE_SHIFT, CR_PRESCALE_BITS);
64
+ uint32_t f_in = imx_ccm_get_clock_frequency(s->ccm, imx_epit_clocks[clksrc]);
65
+ uint32_t freq = f_in / prescaler;
66
+ DPRINTF("ptimer frequency is %u\n", freq);
67
+ return freq;
68
}
69
70
/*
71
@@ -XXX,XX +XXX,XX @@ static void imx_epit_reset(IMXEPITState *s, bool is_hard_reset)
72
s->sr = 0;
73
s->lr = EPIT_TIMER_MAX;
74
s->cmp = 0;
75
- s->cnt = 0;
76
ptimer_transaction_begin(s->timer_cmp);
77
ptimer_transaction_begin(s->timer_reload);
78
- /* stop both timers */
79
+
117
+
80
+ /*
118
+ sysbus_realize(SYS_BUS_DEVICE(&s->i2c2), &error_fatal);
81
+ * The reset switches off the input clock, so even if the CR.EN is still
119
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->i2c2), 0, s->memmap[AW_H3_DEV_TWI2]);
82
+ * set, the timers are no longer running.
120
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->i2c2), 0,
83
+ */
121
+ qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_TWI2));
84
+ assert(imx_epit_get_freq(s) == 0);
122
+
85
ptimer_stop(s->timer_cmp);
123
+ sysbus_realize(SYS_BUS_DEVICE(&s->r_twi), &error_fatal);
86
ptimer_stop(s->timer_reload);
124
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->r_twi), 0, s->memmap[AW_H3_DEV_R_TWI]);
87
- /* compute new frequency */
125
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->r_twi), 0,
88
- imx_epit_set_freq(s);
126
+ qdev_get_gpio_in(DEVICE(&s->gic), AW_H3_GIC_SPI_R_TWI));
89
/* init both timers to EPIT_TIMER_MAX */
127
+
90
ptimer_set_limit(s->timer_cmp, EPIT_TIMER_MAX, 1);
128
/* Unimplemented devices */
91
ptimer_set_limit(s->timer_reload, EPIT_TIMER_MAX, 1);
129
for (i = 0; i < ARRAY_SIZE(unimplemented); i++) {
92
- if (s->freq && (s->cr & CR_EN)) {
130
create_unimplemented_device(unimplemented[i].device_name,
93
- /* if the timer is still enabled, restart it */
94
- ptimer_run(s->timer_reload, 0);
95
- }
96
ptimer_transaction_commit(s->timer_cmp);
97
ptimer_transaction_commit(s->timer_reload);
98
}
99
100
-static uint32_t imx_epit_update_count(IMXEPITState *s)
101
-{
102
- s->cnt = ptimer_get_count(s->timer_reload);
103
-
104
- return s->cnt;
105
-}
106
-
107
static uint64_t imx_epit_read(void *opaque, hwaddr offset, unsigned size)
108
{
109
IMXEPITState *s = IMX_EPIT(opaque);
110
@@ -XXX,XX +XXX,XX @@ static uint64_t imx_epit_read(void *opaque, hwaddr offset, unsigned size)
111
break;
112
113
case 4: /* CNT */
114
- imx_epit_update_count(s);
115
- reg_value = s->cnt;
116
+ reg_value = ptimer_get_count(s->timer_reload);
117
break;
118
119
default:
120
@@ -XXX,XX +XXX,XX @@ static void imx_epit_reload_compare_timer(IMXEPITState *s)
121
{
122
if ((s->cr & (CR_EN | CR_OCIEN)) == (CR_EN | CR_OCIEN)) {
123
/* if the compare feature is on and timers are running */
124
- uint32_t tmp = imx_epit_update_count(s);
125
+ uint32_t tmp = ptimer_get_count(s->timer_reload);
126
uint64_t next;
127
if (tmp > s->cmp) {
128
/* It'll fire in this round of the timer */
129
@@ -XXX,XX +XXX,XX @@ static void imx_epit_reload_compare_timer(IMXEPITState *s)
130
131
static void imx_epit_write_cr(IMXEPITState *s, uint32_t value)
132
{
133
+ uint32_t freq = 0;
134
uint32_t oldcr = s->cr;
135
136
s->cr = value & 0x03ffffff;
137
@@ -XXX,XX +XXX,XX @@ static void imx_epit_write_cr(IMXEPITState *s, uint32_t value)
138
ptimer_transaction_begin(s->timer_cmp);
139
ptimer_transaction_begin(s->timer_reload);
140
141
- /* Update the frequency. Has been done already in case of a reset. */
142
+ /*
143
+ * Update the frequency. In case of a reset the input clock was
144
+ * switched off, so this can be skipped.
145
+ */
146
if (!(s->cr & CR_SWR)) {
147
- imx_epit_set_freq(s);
148
+ freq = imx_epit_get_freq(s);
149
+ if (freq) {
150
+ ptimer_set_freq(s->timer_reload, freq);
151
+ ptimer_set_freq(s->timer_cmp, freq);
152
+ }
153
}
154
155
- if (s->freq && (s->cr & CR_EN) && !(oldcr & CR_EN)) {
156
+ if (freq && (s->cr & CR_EN) && !(oldcr & CR_EN)) {
157
if (s->cr & CR_ENMOD) {
158
if (s->cr & CR_RLD) {
159
ptimer_set_limit(s->timer_reload, s->lr, 1);
160
@@ -XXX,XX +XXX,XX @@ static const MemoryRegionOps imx_epit_ops = {
161
162
static const VMStateDescription vmstate_imx_timer_epit = {
163
.name = TYPE_IMX_EPIT,
164
- .version_id = 2,
165
- .minimum_version_id = 2,
166
+ .version_id = 3,
167
+ .minimum_version_id = 3,
168
.fields = (VMStateField[]) {
169
VMSTATE_UINT32(cr, IMXEPITState),
170
VMSTATE_UINT32(sr, IMXEPITState),
171
VMSTATE_UINT32(lr, IMXEPITState),
172
VMSTATE_UINT32(cmp, IMXEPITState),
173
- VMSTATE_UINT32(cnt, IMXEPITState),
174
- VMSTATE_UINT32(freq, IMXEPITState),
175
VMSTATE_PTIMER(timer_reload, IMXEPITState),
176
VMSTATE_PTIMER(timer_cmp, IMXEPITState),
177
VMSTATE_END_OF_LIST()
178
--
131
--
179
2.25.1
132
2.34.1
diff view generated by jsdifflib
Deleted patch
1
From: Fabiano Rosas <farosas@suse.de>
2
1
3
Fix the following:
4
5
ERROR: spaces required around that '|' (ctx:VxV)
6
ERROR: space required before the open parenthesis '('
7
ERROR: spaces required around that '+' (ctx:VxB)
8
ERROR: space prohibited between function name and open parenthesis '('
9
10
(the last two still have some occurrences in macros which I left
11
behind because it might impact readability)
12
13
Signed-off-by: Fabiano Rosas <farosas@suse.de>
14
Reviewed-by: Claudio Fontana <cfontana@suse.de>
15
Reviewed-by: Cornelia Huck <cohuck@redhat.com>
16
Message-id: 20221213190537.511-3-farosas@suse.de
17
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
18
---
19
target/arm/helper.c | 42 +++++++++++++++++++++---------------------
20
1 file changed, 21 insertions(+), 21 deletions(-)
21
22
diff --git a/target/arm/helper.c b/target/arm/helper.c
23
index XXXXXXX..XXXXXXX 100644
24
--- a/target/arm/helper.c
25
+++ b/target/arm/helper.c
26
@@ -XXX,XX +XXX,XX @@ static void add_cpreg_to_list(gpointer key, gpointer opaque)
27
uint32_t regidx = (uintptr_t)key;
28
const ARMCPRegInfo *ri = get_arm_cp_reginfo(cpu->cp_regs, regidx);
29
30
- if (!(ri->type & (ARM_CP_NO_RAW|ARM_CP_ALIAS))) {
31
+ if (!(ri->type & (ARM_CP_NO_RAW | ARM_CP_ALIAS))) {
32
cpu->cpreg_indexes[cpu->cpreg_array_len] = cpreg_to_kvm_id(regidx);
33
/* The value array need not be initialized at this point */
34
cpu->cpreg_array_len++;
35
@@ -XXX,XX +XXX,XX @@ static void count_cpreg(gpointer key, gpointer opaque)
36
37
ri = g_hash_table_lookup(cpu->cp_regs, key);
38
39
- if (!(ri->type & (ARM_CP_NO_RAW|ARM_CP_ALIAS))) {
40
+ if (!(ri->type & (ARM_CP_NO_RAW | ARM_CP_ALIAS))) {
41
cpu->cpreg_array_len++;
42
}
43
}
44
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo v6k_cp_reginfo[] = {
45
.resetfn = arm_cp_reset_ignore },
46
{ .name = "TPIDRRO_EL0", .state = ARM_CP_STATE_AA64,
47
.opc0 = 3, .opc1 = 3, .opc2 = 3, .crn = 13, .crm = 0,
48
- .access = PL0_R|PL1_W,
49
+ .access = PL0_R | PL1_W,
50
.fieldoffset = offsetof(CPUARMState, cp15.tpidrro_el[0]),
51
.resetvalue = 0},
52
{ .name = "TPIDRURO", .cp = 15, .crn = 13, .crm = 0, .opc1 = 0, .opc2 = 3,
53
- .access = PL0_R|PL1_W,
54
+ .access = PL0_R | PL1_W,
55
.bank_fieldoffsets = { offsetoflow32(CPUARMState, cp15.tpidruro_s),
56
offsetoflow32(CPUARMState, cp15.tpidruro_ns) },
57
.resetfn = arm_cp_reset_ignore },
58
@@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo cache_block_ops_cp_reginfo[] = {
59
.resetvalue = 0 },
60
/* The cache ops themselves: these all NOP for QEMU */
61
{ .name = "IICR", .cp = 15, .crm = 5, .opc1 = 0,
62
- .access = PL1_W, .type = ARM_CP_NOP|ARM_CP_64BIT },
63
+ .access = PL1_W, .type = ARM_CP_NOP | ARM_CP_64BIT },
64
{ .name = "IDCR", .cp = 15, .crm = 6, .opc1 = 0,
65
- .access = PL1_W, .type = ARM_CP_NOP|ARM_CP_64BIT },
66
+ .access = PL1_W, .type = ARM_CP_NOP | ARM_CP_64BIT },
67
{ .name = "CDCR", .cp = 15, .crm = 12, .opc1 = 0,
68
- .access = PL0_W, .type = ARM_CP_NOP|ARM_CP_64BIT },
69
+ .access = PL0_W, .type = ARM_CP_NOP | ARM_CP_64BIT },
70
{ .name = "PIR", .cp = 15, .crm = 12, .opc1 = 1,
71
- .access = PL0_W, .type = ARM_CP_NOP|ARM_CP_64BIT },
72
+ .access = PL0_W, .type = ARM_CP_NOP | ARM_CP_64BIT },
73
{ .name = "PDR", .cp = 15, .crm = 12, .opc1 = 2,
74
- .access = PL0_W, .type = ARM_CP_NOP|ARM_CP_64BIT },
75
+ .access = PL0_W, .type = ARM_CP_NOP | ARM_CP_64BIT },
76
{ .name = "CIDCR", .cp = 15, .crm = 14, .opc1 = 0,
77
- .access = PL1_W, .type = ARM_CP_NOP|ARM_CP_64BIT },
78
+ .access = PL1_W, .type = ARM_CP_NOP | ARM_CP_64BIT },
79
};
80
81
static const ARMCPRegInfo cache_test_clean_cp_reginfo[] = {
82
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
83
ARMCPRegInfo cbar = {
84
.name = "CBAR",
85
.cp = 15, .crn = 15, .crm = 0, .opc1 = 4, .opc2 = 0,
86
- .access = PL1_R|PL3_W, .resetvalue = cpu->reset_cbar,
87
+ .access = PL1_R | PL3_W, .resetvalue = cpu->reset_cbar,
88
.fieldoffset = offsetof(CPUARMState,
89
cp15.c15_config_base_address)
90
};
91
@@ -XXX,XX +XXX,XX @@ static void switch_mode(CPUARMState *env, int mode)
92
return;
93
94
if (old_mode == ARM_CPU_MODE_FIQ) {
95
- memcpy (env->fiq_regs, env->regs + 8, 5 * sizeof(uint32_t));
96
- memcpy (env->regs + 8, env->usr_regs, 5 * sizeof(uint32_t));
97
+ memcpy(env->fiq_regs, env->regs + 8, 5 * sizeof(uint32_t));
98
+ memcpy(env->regs + 8, env->usr_regs, 5 * sizeof(uint32_t));
99
} else if (mode == ARM_CPU_MODE_FIQ) {
100
- memcpy (env->usr_regs, env->regs + 8, 5 * sizeof(uint32_t));
101
- memcpy (env->regs + 8, env->fiq_regs, 5 * sizeof(uint32_t));
102
+ memcpy(env->usr_regs, env->regs + 8, 5 * sizeof(uint32_t));
103
+ memcpy(env->regs + 8, env->fiq_regs, 5 * sizeof(uint32_t));
104
}
105
106
i = bank_number(old_mode);
107
@@ -XXX,XX +XXX,XX @@ static inline uint8_t sub8_usat(uint8_t a, uint8_t b)
108
RESULT(sum, n, 16); \
109
if (sum >= 0) \
110
ge |= 3 << (n * 2); \
111
- } while(0)
112
+ } while (0)
113
114
#define SARITH8(a, b, n, op) do { \
115
int32_t sum; \
116
@@ -XXX,XX +XXX,XX @@ static inline uint8_t sub8_usat(uint8_t a, uint8_t b)
117
RESULT(sum, n, 8); \
118
if (sum >= 0) \
119
ge |= 1 << n; \
120
- } while(0)
121
+ } while (0)
122
123
124
#define ADD16(a, b, n) SARITH16(a, b, n, +)
125
@@ -XXX,XX +XXX,XX @@ static inline uint8_t sub8_usat(uint8_t a, uint8_t b)
126
RESULT(sum, n, 16); \
127
if ((sum >> 16) == 1) \
128
ge |= 3 << (n * 2); \
129
- } while(0)
130
+ } while (0)
131
132
#define ADD8(a, b, n) do { \
133
uint32_t sum; \
134
@@ -XXX,XX +XXX,XX @@ static inline uint8_t sub8_usat(uint8_t a, uint8_t b)
135
RESULT(sum, n, 8); \
136
if ((sum >> 8) == 1) \
137
ge |= 1 << n; \
138
- } while(0)
139
+ } while (0)
140
141
#define SUB16(a, b, n) do { \
142
uint32_t sum; \
143
@@ -XXX,XX +XXX,XX @@ static inline uint8_t sub8_usat(uint8_t a, uint8_t b)
144
RESULT(sum, n, 16); \
145
if ((sum >> 16) == 0) \
146
ge |= 3 << (n * 2); \
147
- } while(0)
148
+ } while (0)
149
150
#define SUB8(a, b, n) do { \
151
uint32_t sum; \
152
@@ -XXX,XX +XXX,XX @@ static inline uint8_t sub8_usat(uint8_t a, uint8_t b)
153
RESULT(sum, n, 8); \
154
if ((sum >> 8) == 0) \
155
ge |= 1 << n; \
156
- } while(0)
157
+ } while (0)
158
159
#define PFX u
160
#define ARITH_GE
161
--
162
2.25.1
diff view generated by jsdifflib
Deleted patch
1
From: Fabiano Rosas <farosas@suse.de>
2
1
3
Signed-off-by: Fabiano Rosas <farosas@suse.de>
4
Reviewed-by: Claudio Fontana <cfontana@suse.de>
5
Reviewed-by: Cornelia Huck <cohuck@redhat.com>
6
Message-id: 20221213190537.511-5-farosas@suse.de
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
---
9
target/arm/m_helper.c | 16 ----------------
10
1 file changed, 16 deletions(-)
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 @@
17
*/
18
19
#include "qemu/osdep.h"
20
-#include "qemu/units.h"
21
-#include "target/arm/idau.h"
22
-#include "trace.h"
23
#include "cpu.h"
24
#include "internals.h"
25
-#include "exec/gdbstub.h"
26
#include "exec/helper-proto.h"
27
-#include "qemu/host-utils.h"
28
#include "qemu/main-loop.h"
29
#include "qemu/bitops.h"
30
-#include "qemu/crc32c.h"
31
-#include "qemu/qemu-print.h"
32
#include "qemu/log.h"
33
#include "exec/exec-all.h"
34
-#include <zlib.h> /* For crc32 */
35
-#include "semihosting/semihost.h"
36
-#include "sysemu/cpus.h"
37
-#include "sysemu/kvm.h"
38
-#include "qemu/range.h"
39
-#include "qapi/qapi-commands-machine-target.h"
40
-#include "qapi/error.h"
41
-#include "qemu/guest-random.h"
42
#ifdef CONFIG_TCG
43
-#include "arm_ldst.h"
44
#include "exec/cpu_ldst.h"
45
#include "semihosting/common-semi.h"
46
#endif
47
--
48
2.25.1
diff view generated by jsdifflib
Deleted patch
1
From: Fabiano Rosas <farosas@suse.de>
2
1
3
Signed-off-by: Fabiano Rosas <farosas@suse.de>
4
Reviewed-by: Claudio Fontana <cfontana@suse.de>
5
Reviewed-by: Cornelia Huck <cohuck@redhat.com>
6
Message-id: 20221213190537.511-6-farosas@suse.de
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
---
9
target/arm/helper.c | 7 -------
10
1 file changed, 7 deletions(-)
11
12
diff --git a/target/arm/helper.c b/target/arm/helper.c
13
index XXXXXXX..XXXXXXX 100644
14
--- a/target/arm/helper.c
15
+++ b/target/arm/helper.c
16
@@ -XXX,XX +XXX,XX @@
17
*/
18
19
#include "qemu/osdep.h"
20
-#include "qemu/units.h"
21
#include "qemu/log.h"
22
#include "trace.h"
23
#include "cpu.h"
24
#include "internals.h"
25
#include "exec/helper-proto.h"
26
-#include "qemu/host-utils.h"
27
#include "qemu/main-loop.h"
28
#include "qemu/timer.h"
29
#include "qemu/bitops.h"
30
@@ -XXX,XX +XXX,XX @@
31
#include "exec/exec-all.h"
32
#include <zlib.h> /* For crc32 */
33
#include "hw/irq.h"
34
-#include "semihosting/semihost.h"
35
-#include "sysemu/cpus.h"
36
#include "sysemu/cpu-timers.h"
37
#include "sysemu/kvm.h"
38
-#include "qemu/range.h"
39
#include "qapi/qapi-commands-machine-target.h"
40
#include "qapi/error.h"
41
#include "qemu/guest-random.h"
42
#ifdef CONFIG_TCG
43
-#include "arm_ldst.h"
44
-#include "exec/cpu_ldst.h"
45
#include "semihosting/common-semi.h"
46
#endif
47
#include "cpregs.h"
48
--
49
2.25.1
diff view generated by jsdifflib
Deleted patch
1
From: Claudio Fontana <cfontana@suse.de>
2
1
3
Remove some unused headers.
4
5
Signed-off-by: Claudio Fontana <cfontana@suse.de>
6
Acked-by: Richard Henderson <richard.henderson@linaro.org>
7
Reviewed-by: Claudio Fontana <cfontana@suse.de>
8
Reviewed-by: Cornelia Huck <cohuck@redhat.com>
9
Signed-off-by: Fabiano Rosas <farosas@suse.de>
10
Message-id: 20221213190537.511-7-farosas@suse.de
11
[added back some includes that are still needed at this point]
12
Signed-off-by: Fabiano Rosas <farosas@suse.de>
13
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
14
---
15
target/arm/cpu.c | 1 -
16
target/arm/cpu64.c | 6 ------
17
2 files changed, 7 deletions(-)
18
19
diff --git a/target/arm/cpu.c b/target/arm/cpu.c
20
index XXXXXXX..XXXXXXX 100644
21
--- a/target/arm/cpu.c
22
+++ b/target/arm/cpu.c
23
@@ -XXX,XX +XXX,XX @@
24
#include "target/arm/idau.h"
25
#include "qemu/module.h"
26
#include "qapi/error.h"
27
-#include "qapi/visitor.h"
28
#include "cpu.h"
29
#ifdef CONFIG_TCG
30
#include "hw/core/tcg-cpu-ops.h"
31
diff --git a/target/arm/cpu64.c b/target/arm/cpu64.c
32
index XXXXXXX..XXXXXXX 100644
33
--- a/target/arm/cpu64.c
34
+++ b/target/arm/cpu64.c
35
@@ -XXX,XX +XXX,XX @@
36
#include "qemu/osdep.h"
37
#include "qapi/error.h"
38
#include "cpu.h"
39
-#ifdef CONFIG_TCG
40
-#include "hw/core/tcg-cpu-ops.h"
41
-#endif /* CONFIG_TCG */
42
#include "qemu/module.h"
43
-#if !defined(CONFIG_USER_ONLY)
44
-#include "hw/loader.h"
45
-#endif
46
#include "sysemu/kvm.h"
47
#include "sysemu/hvf.h"
48
#include "kvm_arm.h"
49
--
50
2.25.1
diff view generated by jsdifflib
Deleted patch
1
From: Zhuojia Shen <chaosdefinition@hotmail.com>
2
1
3
In CPUID registers exposed to userspace, some registers were missing
4
and some fields were not exposed. This patch aligns exposed ID
5
registers and their fields with what the upstream kernel currently
6
exposes.
7
8
Specifically, the following new ID registers/fields are exposed to
9
userspace:
10
11
ID_AA64PFR1_EL1.BT: bits 3-0
12
ID_AA64PFR1_EL1.MTE: bits 11-8
13
ID_AA64PFR1_EL1.SME: bits 27-24
14
15
ID_AA64ZFR0_EL1.SVEver: bits 3-0
16
ID_AA64ZFR0_EL1.AES: bits 7-4
17
ID_AA64ZFR0_EL1.BitPerm: bits 19-16
18
ID_AA64ZFR0_EL1.BF16: bits 23-20
19
ID_AA64ZFR0_EL1.SHA3: bits 35-32
20
ID_AA64ZFR0_EL1.SM4: bits 43-40
21
ID_AA64ZFR0_EL1.I8MM: bits 47-44
22
ID_AA64ZFR0_EL1.F32MM: bits 55-52
23
ID_AA64ZFR0_EL1.F64MM: bits 59-56
24
25
ID_AA64SMFR0_EL1.F32F32: bit 32
26
ID_AA64SMFR0_EL1.B16F32: bit 34
27
ID_AA64SMFR0_EL1.F16F32: bit 35
28
ID_AA64SMFR0_EL1.I8I32: bits 39-36
29
ID_AA64SMFR0_EL1.F64F64: bit 48
30
ID_AA64SMFR0_EL1.I16I64: bits 55-52
31
ID_AA64SMFR0_EL1.FA64: bit 63
32
33
ID_AA64MMFR0_EL1.ECV: bits 63-60
34
35
ID_AA64MMFR1_EL1.AFP: bits 47-44
36
37
ID_AA64MMFR2_EL1.AT: bits 35-32
38
39
ID_AA64ISAR0_EL1.RNDR: bits 63-60
40
41
ID_AA64ISAR1_EL1.FRINTTS: bits 35-32
42
ID_AA64ISAR1_EL1.BF16: bits 47-44
43
ID_AA64ISAR1_EL1.DGH: bits 51-48
44
ID_AA64ISAR1_EL1.I8MM: bits 55-52
45
46
ID_AA64ISAR2_EL1.WFxT: bits 3-0
47
ID_AA64ISAR2_EL1.RPRES: bits 7-4
48
ID_AA64ISAR2_EL1.GPA3: bits 11-8
49
ID_AA64ISAR2_EL1.APA3: bits 15-12
50
51
The code is also refactored to use symbolic names for ID register fields
52
for better readability and maintainability.
53
54
The test case in tests/tcg/aarch64/sysregs.c is also updated to match
55
the intended behavior.
56
57
Signed-off-by: Zhuojia Shen <chaosdefinition@hotmail.com>
58
Message-id: DS7PR12MB6309FB585E10772928F14271ACE79@DS7PR12MB6309.namprd12.prod.outlook.com
59
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
60
[PMM: use Sn_n_Cn_Cn_n syntax to work with older assemblers
61
that don't recognize id_aa64isar2_el1 and id_aa64mmfr2_el1]
62
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
63
---
64
target/arm/helper.c | 96 +++++++++++++++++++++++++------
65
tests/tcg/aarch64/sysregs.c | 24 ++++++--
66
tests/tcg/aarch64/Makefile.target | 7 ++-
67
3 files changed, 103 insertions(+), 24 deletions(-)
68
69
diff --git a/target/arm/helper.c b/target/arm/helper.c
70
index XXXXXXX..XXXXXXX 100644
71
--- a/target/arm/helper.c
72
+++ b/target/arm/helper.c
73
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
74
#ifdef CONFIG_USER_ONLY
75
static const ARMCPRegUserSpaceInfo v8_user_idregs[] = {
76
{ .name = "ID_AA64PFR0_EL1",
77
- .exported_bits = 0x000f000f00ff0000,
78
- .fixed_bits = 0x0000000000000011 },
79
+ .exported_bits = R_ID_AA64PFR0_FP_MASK |
80
+ R_ID_AA64PFR0_ADVSIMD_MASK |
81
+ R_ID_AA64PFR0_SVE_MASK |
82
+ R_ID_AA64PFR0_DIT_MASK,
83
+ .fixed_bits = (0x1u << R_ID_AA64PFR0_EL0_SHIFT) |
84
+ (0x1u << R_ID_AA64PFR0_EL1_SHIFT) },
85
{ .name = "ID_AA64PFR1_EL1",
86
- .exported_bits = 0x00000000000000f0 },
87
+ .exported_bits = R_ID_AA64PFR1_BT_MASK |
88
+ R_ID_AA64PFR1_SSBS_MASK |
89
+ R_ID_AA64PFR1_MTE_MASK |
90
+ R_ID_AA64PFR1_SME_MASK },
91
{ .name = "ID_AA64PFR*_EL1_RESERVED",
92
- .is_glob = true },
93
- { .name = "ID_AA64ZFR0_EL1" },
94
+ .is_glob = true },
95
+ { .name = "ID_AA64ZFR0_EL1",
96
+ .exported_bits = R_ID_AA64ZFR0_SVEVER_MASK |
97
+ R_ID_AA64ZFR0_AES_MASK |
98
+ R_ID_AA64ZFR0_BITPERM_MASK |
99
+ R_ID_AA64ZFR0_BFLOAT16_MASK |
100
+ R_ID_AA64ZFR0_SHA3_MASK |
101
+ R_ID_AA64ZFR0_SM4_MASK |
102
+ R_ID_AA64ZFR0_I8MM_MASK |
103
+ R_ID_AA64ZFR0_F32MM_MASK |
104
+ R_ID_AA64ZFR0_F64MM_MASK },
105
+ { .name = "ID_AA64SMFR0_EL1",
106
+ .exported_bits = R_ID_AA64SMFR0_F32F32_MASK |
107
+ R_ID_AA64SMFR0_B16F32_MASK |
108
+ R_ID_AA64SMFR0_F16F32_MASK |
109
+ R_ID_AA64SMFR0_I8I32_MASK |
110
+ R_ID_AA64SMFR0_F64F64_MASK |
111
+ R_ID_AA64SMFR0_I16I64_MASK |
112
+ R_ID_AA64SMFR0_FA64_MASK },
113
{ .name = "ID_AA64MMFR0_EL1",
114
- .fixed_bits = 0x00000000ff000000 },
115
- { .name = "ID_AA64MMFR1_EL1" },
116
+ .exported_bits = R_ID_AA64MMFR0_ECV_MASK,
117
+ .fixed_bits = (0xfu << R_ID_AA64MMFR0_TGRAN64_SHIFT) |
118
+ (0xfu << R_ID_AA64MMFR0_TGRAN4_SHIFT) },
119
+ { .name = "ID_AA64MMFR1_EL1",
120
+ .exported_bits = R_ID_AA64MMFR1_AFP_MASK },
121
+ { .name = "ID_AA64MMFR2_EL1",
122
+ .exported_bits = R_ID_AA64MMFR2_AT_MASK },
123
{ .name = "ID_AA64MMFR*_EL1_RESERVED",
124
- .is_glob = true },
125
+ .is_glob = true },
126
{ .name = "ID_AA64DFR0_EL1",
127
- .fixed_bits = 0x0000000000000006 },
128
- { .name = "ID_AA64DFR1_EL1" },
129
+ .fixed_bits = (0x6u << R_ID_AA64DFR0_DEBUGVER_SHIFT) },
130
+ { .name = "ID_AA64DFR1_EL1" },
131
{ .name = "ID_AA64DFR*_EL1_RESERVED",
132
- .is_glob = true },
133
+ .is_glob = true },
134
{ .name = "ID_AA64AFR*",
135
- .is_glob = true },
136
+ .is_glob = true },
137
{ .name = "ID_AA64ISAR0_EL1",
138
- .exported_bits = 0x00fffffff0fffff0 },
139
+ .exported_bits = R_ID_AA64ISAR0_AES_MASK |
140
+ R_ID_AA64ISAR0_SHA1_MASK |
141
+ R_ID_AA64ISAR0_SHA2_MASK |
142
+ R_ID_AA64ISAR0_CRC32_MASK |
143
+ R_ID_AA64ISAR0_ATOMIC_MASK |
144
+ R_ID_AA64ISAR0_RDM_MASK |
145
+ R_ID_AA64ISAR0_SHA3_MASK |
146
+ R_ID_AA64ISAR0_SM3_MASK |
147
+ R_ID_AA64ISAR0_SM4_MASK |
148
+ R_ID_AA64ISAR0_DP_MASK |
149
+ R_ID_AA64ISAR0_FHM_MASK |
150
+ R_ID_AA64ISAR0_TS_MASK |
151
+ R_ID_AA64ISAR0_RNDR_MASK },
152
{ .name = "ID_AA64ISAR1_EL1",
153
- .exported_bits = 0x000000f0ffffffff },
154
+ .exported_bits = R_ID_AA64ISAR1_DPB_MASK |
155
+ R_ID_AA64ISAR1_APA_MASK |
156
+ R_ID_AA64ISAR1_API_MASK |
157
+ R_ID_AA64ISAR1_JSCVT_MASK |
158
+ R_ID_AA64ISAR1_FCMA_MASK |
159
+ R_ID_AA64ISAR1_LRCPC_MASK |
160
+ R_ID_AA64ISAR1_GPA_MASK |
161
+ R_ID_AA64ISAR1_GPI_MASK |
162
+ R_ID_AA64ISAR1_FRINTTS_MASK |
163
+ R_ID_AA64ISAR1_SB_MASK |
164
+ R_ID_AA64ISAR1_BF16_MASK |
165
+ R_ID_AA64ISAR1_DGH_MASK |
166
+ R_ID_AA64ISAR1_I8MM_MASK },
167
+ { .name = "ID_AA64ISAR2_EL1",
168
+ .exported_bits = R_ID_AA64ISAR2_WFXT_MASK |
169
+ R_ID_AA64ISAR2_RPRES_MASK |
170
+ R_ID_AA64ISAR2_GPA3_MASK |
171
+ R_ID_AA64ISAR2_APA3_MASK },
172
{ .name = "ID_AA64ISAR*_EL1_RESERVED",
173
- .is_glob = true },
174
+ .is_glob = true },
175
};
176
modify_arm_cp_regs(v8_idregs, v8_user_idregs);
177
#endif
178
@@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu)
179
#ifdef CONFIG_USER_ONLY
180
static const ARMCPRegUserSpaceInfo id_v8_user_midr_cp_reginfo[] = {
181
{ .name = "MIDR_EL1",
182
- .exported_bits = 0x00000000ffffffff },
183
- { .name = "REVIDR_EL1" },
184
+ .exported_bits = R_MIDR_EL1_REVISION_MASK |
185
+ R_MIDR_EL1_PARTNUM_MASK |
186
+ R_MIDR_EL1_ARCHITECTURE_MASK |
187
+ R_MIDR_EL1_VARIANT_MASK |
188
+ R_MIDR_EL1_IMPLEMENTER_MASK },
189
+ { .name = "REVIDR_EL1" },
190
};
191
modify_arm_cp_regs(id_v8_midr_cp_reginfo, id_v8_user_midr_cp_reginfo);
192
#endif
193
diff --git a/tests/tcg/aarch64/sysregs.c b/tests/tcg/aarch64/sysregs.c
194
index XXXXXXX..XXXXXXX 100644
195
--- a/tests/tcg/aarch64/sysregs.c
196
+++ b/tests/tcg/aarch64/sysregs.c
197
@@ -XXX,XX +XXX,XX @@
198
#define HWCAP_CPUID (1 << 11)
199
#endif
200
201
+/*
202
+ * Older assemblers don't recognize newer system register names,
203
+ * but we can still access them by the Sn_n_Cn_Cn_n syntax.
204
+ */
205
+#define SYS_ID_AA64ISAR2_EL1 S3_0_C0_C6_2
206
+#define SYS_ID_AA64MMFR2_EL1 S3_0_C0_C7_2
207
+
208
int failed_bit_count;
209
210
/* Read and print system register `id' value */
211
@@ -XXX,XX +XXX,XX @@ int main(void)
212
* minimum valid fields - for the purposes of this check allowed
213
* to have non-zero values.
214
*/
215
- get_cpu_reg_check_mask(id_aa64isar0_el1, _m(00ff,ffff,f0ff,fff0));
216
- get_cpu_reg_check_mask(id_aa64isar1_el1, _m(0000,00f0,ffff,ffff));
217
+ get_cpu_reg_check_mask(id_aa64isar0_el1, _m(f0ff,ffff,f0ff,fff0));
218
+ get_cpu_reg_check_mask(id_aa64isar1_el1, _m(00ff,f0ff,ffff,ffff));
219
+ get_cpu_reg_check_mask(SYS_ID_AA64ISAR2_EL1, _m(0000,0000,0000,ffff));
220
/* TGran4 & TGran64 as pegged to -1 */
221
- get_cpu_reg_check_mask(id_aa64mmfr0_el1, _m(0000,0000,ff00,0000));
222
- get_cpu_reg_check_zero(id_aa64mmfr1_el1);
223
+ get_cpu_reg_check_mask(id_aa64mmfr0_el1, _m(f000,0000,ff00,0000));
224
+ get_cpu_reg_check_mask(id_aa64mmfr1_el1, _m(0000,f000,0000,0000));
225
+ get_cpu_reg_check_mask(SYS_ID_AA64MMFR2_EL1, _m(0000,000f,0000,0000));
226
/* EL1/EL0 reported as AA64 only */
227
get_cpu_reg_check_mask(id_aa64pfr0_el1, _m(000f,000f,00ff,0011));
228
- get_cpu_reg_check_mask(id_aa64pfr1_el1, _m(0000,0000,0000,00f0));
229
+ get_cpu_reg_check_mask(id_aa64pfr1_el1, _m(0000,0000,0f00,0fff));
230
/* all hidden, DebugVer fixed to 0x6 (ARMv8 debug architecture) */
231
get_cpu_reg_check_mask(id_aa64dfr0_el1, _m(0000,0000,0000,0006));
232
get_cpu_reg_check_zero(id_aa64dfr1_el1);
233
- get_cpu_reg_check_zero(id_aa64zfr0_el1);
234
+ get_cpu_reg_check_mask(id_aa64zfr0_el1, _m(0ff0,ff0f,00ff,00ff));
235
+#ifdef HAS_ARMV9_SME
236
+ get_cpu_reg_check_mask(id_aa64smfr0_el1, _m(80f1,00fd,0000,0000));
237
+#endif
238
239
get_cpu_reg_check_zero(id_aa64afr0_el1);
240
get_cpu_reg_check_zero(id_aa64afr1_el1);
241
diff --git a/tests/tcg/aarch64/Makefile.target b/tests/tcg/aarch64/Makefile.target
242
index XXXXXXX..XXXXXXX 100644
243
--- a/tests/tcg/aarch64/Makefile.target
244
+++ b/tests/tcg/aarch64/Makefile.target
245
@@ -XXX,XX +XXX,XX @@ config-cc.mak: Makefile
246
     $(call cc-option,-march=armv8.1-a+sve2, CROSS_CC_HAS_SVE2); \
247
     $(call cc-option,-march=armv8.3-a, CROSS_CC_HAS_ARMV8_3); \
248
     $(call cc-option,-mbranch-protection=standard, CROSS_CC_HAS_ARMV8_BTI); \
249
-     $(call cc-option,-march=armv8.5-a+memtag, CROSS_CC_HAS_ARMV8_MTE)) 3> config-cc.mak
250
+     $(call cc-option,-march=armv8.5-a+memtag, CROSS_CC_HAS_ARMV8_MTE); \
251
+     $(call cc-option,-march=armv9-a+sme, CROSS_CC_HAS_ARMV9_SME)) 3> config-cc.mak
252
-include config-cc.mak
253
254
# Pauth Tests
255
@@ -XXX,XX +XXX,XX @@ endif
256
ifneq ($(CROSS_CC_HAS_SVE),)
257
# System Registers Tests
258
AARCH64_TESTS += sysregs
259
+ifneq ($(CROSS_CC_HAS_ARMV9_SME),)
260
+sysregs: CFLAGS+=-march=armv9-a+sme -DHAS_ARMV9_SME
261
+else
262
sysregs: CFLAGS+=-march=armv8.1-a+sve
263
+endif
264
265
# SVE ioctl test
266
AARCH64_TESTS += sve-ioctls
267
--
268
2.25.1
diff view generated by jsdifflib
Deleted patch
1
From: Jean-Christophe Dubois <jcd@tribudubois.net>
2
1
3
So far the GPT timers were unable to raise IRQs to the processor.
4
5
Signed-off-by: Jean-Christophe Dubois <jcd@tribudubois.net>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
---
9
include/hw/arm/fsl-imx7.h | 5 +++++
10
hw/arm/fsl-imx7.c | 10 ++++++++++
11
2 files changed, 15 insertions(+)
12
13
diff --git a/include/hw/arm/fsl-imx7.h b/include/hw/arm/fsl-imx7.h
14
index XXXXXXX..XXXXXXX 100644
15
--- a/include/hw/arm/fsl-imx7.h
16
+++ b/include/hw/arm/fsl-imx7.h
17
@@ -XXX,XX +XXX,XX @@ enum FslIMX7IRQs {
18
FSL_IMX7_USB2_IRQ = 42,
19
FSL_IMX7_USB3_IRQ = 40,
20
21
+ FSL_IMX7_GPT1_IRQ = 55,
22
+ FSL_IMX7_GPT2_IRQ = 54,
23
+ FSL_IMX7_GPT3_IRQ = 53,
24
+ FSL_IMX7_GPT4_IRQ = 52,
25
+
26
FSL_IMX7_WDOG1_IRQ = 78,
27
FSL_IMX7_WDOG2_IRQ = 79,
28
FSL_IMX7_WDOG3_IRQ = 10,
29
diff --git a/hw/arm/fsl-imx7.c b/hw/arm/fsl-imx7.c
30
index XXXXXXX..XXXXXXX 100644
31
--- a/hw/arm/fsl-imx7.c
32
+++ b/hw/arm/fsl-imx7.c
33
@@ -XXX,XX +XXX,XX @@ static void fsl_imx7_realize(DeviceState *dev, Error **errp)
34
FSL_IMX7_GPT4_ADDR,
35
};
36
37
+ static const int FSL_IMX7_GPTn_IRQ[FSL_IMX7_NUM_GPTS] = {
38
+ FSL_IMX7_GPT1_IRQ,
39
+ FSL_IMX7_GPT2_IRQ,
40
+ FSL_IMX7_GPT3_IRQ,
41
+ FSL_IMX7_GPT4_IRQ,
42
+ };
43
+
44
s->gpt[i].ccm = IMX_CCM(&s->ccm);
45
sysbus_realize(SYS_BUS_DEVICE(&s->gpt[i]), &error_abort);
46
sysbus_mmio_map(SYS_BUS_DEVICE(&s->gpt[i]), 0, FSL_IMX7_GPTn_ADDR[i]);
47
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->gpt[i]), 0,
48
+ qdev_get_gpio_in(DEVICE(&s->a7mpcore),
49
+ FSL_IMX7_GPTn_IRQ[i]));
50
}
51
52
for (i = 0; i < FSL_IMX7_NUM_GPIOS; i++) {
53
--
54
2.25.1
diff view generated by jsdifflib
Deleted patch
1
From: Jean-Christophe Dubois <jcd@tribudubois.net>
2
1
3
CCM derived clocks will have to be added later.
4
5
Signed-off-by: Jean-Christophe Dubois <jcd@tribudubois.net>
6
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
7
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
8
---
9
hw/misc/imx7_ccm.c | 49 +++++++++++++++++++++++++++++++++++++---------
10
1 file changed, 40 insertions(+), 9 deletions(-)
11
12
diff --git a/hw/misc/imx7_ccm.c b/hw/misc/imx7_ccm.c
13
index XXXXXXX..XXXXXXX 100644
14
--- a/hw/misc/imx7_ccm.c
15
+++ b/hw/misc/imx7_ccm.c
16
@@ -XXX,XX +XXX,XX @@
17
#include "hw/misc/imx7_ccm.h"
18
#include "migration/vmstate.h"
19
20
+#include "trace.h"
21
+
22
+#define CKIH_FREQ 24000000 /* 24MHz crystal input */
23
+
24
static void imx7_analog_reset(DeviceState *dev)
25
{
26
IMX7AnalogState *s = IMX7_ANALOG(dev);
27
@@ -XXX,XX +XXX,XX @@ static const VMStateDescription vmstate_imx7_ccm = {
28
static uint32_t imx7_ccm_get_clock_frequency(IMXCCMState *dev, IMXClk clock)
29
{
30
/*
31
- * This function is "consumed" by GPT emulation code, however on
32
- * i.MX7 each GPT block can have their own clock root. This means
33
- * that this functions needs somehow to know requester's identity
34
- * and the way to pass it: be it via additional IMXClk constants
35
- * or by adding another argument to this method needs to be
36
- * figured out
37
+ * This function is "consumed" by GPT emulation code. Some clocks
38
+ * have fixed frequencies and we can provide requested frequency
39
+ * easily. However for CCM provided clocks (like IPG) each GPT
40
+ * timer can have its own clock root.
41
+ * This means we need additionnal information when calling this
42
+ * function to know the requester's identity.
43
*/
44
- qemu_log_mask(LOG_GUEST_ERROR, "[%s]%s: Not implemented\n",
45
- TYPE_IMX7_CCM, __func__);
46
- return 0;
47
+ uint32_t freq = 0;
48
+
49
+ switch (clock) {
50
+ case CLK_NONE:
51
+ break;
52
+ case CLK_32k:
53
+ freq = CKIL_FREQ;
54
+ break;
55
+ case CLK_HIGH:
56
+ freq = CKIH_FREQ;
57
+ break;
58
+ case CLK_IPG:
59
+ case CLK_IPG_HIGH:
60
+ /*
61
+ * For now we don't have a way to figure out the device this
62
+ * function is called for. Until then the IPG derived clocks
63
+ * are left unimplemented.
64
+ */
65
+ qemu_log_mask(LOG_GUEST_ERROR, "[%s]%s: Clock %d Not implemented\n",
66
+ TYPE_IMX7_CCM, __func__, clock);
67
+ break;
68
+ default:
69
+ qemu_log_mask(LOG_GUEST_ERROR, "[%s]%s: unsupported clock %d\n",
70
+ TYPE_IMX7_CCM, __func__, clock);
71
+ break;
72
+ }
73
+
74
+ trace_ccm_clock_freq(clock, freq);
75
+
76
+ return freq;
77
}
78
79
static void imx7_ccm_class_init(ObjectClass *klass, void *data)
80
--
81
2.25.1
diff view generated by jsdifflib
Deleted patch
1
From: Jean-Christophe Dubois <jcd@tribudubois.net>
2
1
3
IRQs were not associated to the various GPIO devices inside i.MX7D.
4
This patch brings the i.MX7D on par with i.MX6.
5
6
Signed-off-by: Jean-Christophe Dubois <jcd@tribudubois.net>
7
Message-id: 20221226101418.415170-1-jcd@tribudubois.net
8
Reviewed-by: Peter Maydell <peter.maydell@linaro.org>
9
Signed-off-by: Peter Maydell <peter.maydell@linaro.org>
10
---
11
include/hw/arm/fsl-imx7.h | 15 +++++++++++++++
12
hw/arm/fsl-imx7.c | 31 ++++++++++++++++++++++++++++++-
13
2 files changed, 45 insertions(+), 1 deletion(-)
14
15
diff --git a/include/hw/arm/fsl-imx7.h b/include/hw/arm/fsl-imx7.h
16
index XXXXXXX..XXXXXXX 100644
17
--- a/include/hw/arm/fsl-imx7.h
18
+++ b/include/hw/arm/fsl-imx7.h
19
@@ -XXX,XX +XXX,XX @@ enum FslIMX7IRQs {
20
FSL_IMX7_GPT3_IRQ = 53,
21
FSL_IMX7_GPT4_IRQ = 52,
22
23
+ FSL_IMX7_GPIO1_LOW_IRQ = 64,
24
+ FSL_IMX7_GPIO1_HIGH_IRQ = 65,
25
+ FSL_IMX7_GPIO2_LOW_IRQ = 66,
26
+ FSL_IMX7_GPIO2_HIGH_IRQ = 67,
27
+ FSL_IMX7_GPIO3_LOW_IRQ = 68,
28
+ FSL_IMX7_GPIO3_HIGH_IRQ = 69,
29
+ FSL_IMX7_GPIO4_LOW_IRQ = 70,
30
+ FSL_IMX7_GPIO4_HIGH_IRQ = 71,
31
+ FSL_IMX7_GPIO5_LOW_IRQ = 72,
32
+ FSL_IMX7_GPIO5_HIGH_IRQ = 73,
33
+ FSL_IMX7_GPIO6_LOW_IRQ = 74,
34
+ FSL_IMX7_GPIO6_HIGH_IRQ = 75,
35
+ FSL_IMX7_GPIO7_LOW_IRQ = 76,
36
+ FSL_IMX7_GPIO7_HIGH_IRQ = 77,
37
+
38
FSL_IMX7_WDOG1_IRQ = 78,
39
FSL_IMX7_WDOG2_IRQ = 79,
40
FSL_IMX7_WDOG3_IRQ = 10,
41
diff --git a/hw/arm/fsl-imx7.c b/hw/arm/fsl-imx7.c
42
index XXXXXXX..XXXXXXX 100644
43
--- a/hw/arm/fsl-imx7.c
44
+++ b/hw/arm/fsl-imx7.c
45
@@ -XXX,XX +XXX,XX @@ static void fsl_imx7_realize(DeviceState *dev, Error **errp)
46
FSL_IMX7_GPIO7_ADDR,
47
};
48
49
+ static const int FSL_IMX7_GPIOn_LOW_IRQ[FSL_IMX7_NUM_GPIOS] = {
50
+ FSL_IMX7_GPIO1_LOW_IRQ,
51
+ FSL_IMX7_GPIO2_LOW_IRQ,
52
+ FSL_IMX7_GPIO3_LOW_IRQ,
53
+ FSL_IMX7_GPIO4_LOW_IRQ,
54
+ FSL_IMX7_GPIO5_LOW_IRQ,
55
+ FSL_IMX7_GPIO6_LOW_IRQ,
56
+ FSL_IMX7_GPIO7_LOW_IRQ,
57
+ };
58
+
59
+ static const int FSL_IMX7_GPIOn_HIGH_IRQ[FSL_IMX7_NUM_GPIOS] = {
60
+ FSL_IMX7_GPIO1_HIGH_IRQ,
61
+ FSL_IMX7_GPIO2_HIGH_IRQ,
62
+ FSL_IMX7_GPIO3_HIGH_IRQ,
63
+ FSL_IMX7_GPIO4_HIGH_IRQ,
64
+ FSL_IMX7_GPIO5_HIGH_IRQ,
65
+ FSL_IMX7_GPIO6_HIGH_IRQ,
66
+ FSL_IMX7_GPIO7_HIGH_IRQ,
67
+ };
68
+
69
sysbus_realize(SYS_BUS_DEVICE(&s->gpio[i]), &error_abort);
70
- sysbus_mmio_map(SYS_BUS_DEVICE(&s->gpio[i]), 0, FSL_IMX7_GPIOn_ADDR[i]);
71
+ sysbus_mmio_map(SYS_BUS_DEVICE(&s->gpio[i]), 0,
72
+ FSL_IMX7_GPIOn_ADDR[i]);
73
+
74
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->gpio[i]), 0,
75
+ qdev_get_gpio_in(DEVICE(&s->a7mpcore),
76
+ FSL_IMX7_GPIOn_LOW_IRQ[i]));
77
+
78
+ sysbus_connect_irq(SYS_BUS_DEVICE(&s->gpio[i]), 1,
79
+ qdev_get_gpio_in(DEVICE(&s->a7mpcore),
80
+ FSL_IMX7_GPIOn_HIGH_IRQ[i]));
81
}
82
83
/*
84
--
85
2.25.1
diff view generated by jsdifflib