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A last collection of patches to squeeze in before rc0. The patches from me are all bugfixes. Philippe's are just code-movement, but I wanted to get these into 4.1 because that kind of patch is so painful to have to rebase. (The diffstat is huge but it's just code moving from file to file.) thanks -- PMM The following changes since commit 234e256511e588680300600ce087c5185d68cf2a: Merge remote-tracking branch 'remotes/armbru/tags/pull-build-2019-07-02-v2' into staging (2019-07-04 15:58:46 +0100) are available in the Git repository at: https://git.linaro.org/people/pmaydell/qemu-arm.git tags/pull-target-arm-20190704 for you to fetch changes up to b75f3735802b5b33f10e4bfe374d4b17bb86d29a: target/arm: Correct VMOV_imm_dp handling of short vectors (2019-07-04 16:52:05 +0100) ---------------------------------------------------------------- target-arm queue: * more code-movement to separate TCG-only functions into their own files * Correct VMOV_imm_dp handling of short vectors * Execute Thumb instructions when their condbits are 0xf * armv7m_systick: Forbid non-privileged accesses * Use _ra versions of cpu_stl_data() in v7M helpers * v8M: Check state of exception being returned from * v8M: Forcibly clear negative-priority exceptions on deactivate ---------------------------------------------------------------- Peter Maydell (6): arm v8M: Forcibly clear negative-priority exceptions on deactivate target/arm: v8M: Check state of exception being returned from target/arm: Use _ra versions of cpu_stl_data() in v7M helpers hw/timer/armv7m_systick: Forbid non-privileged accesses target/arm: Execute Thumb instructions when their condbits are 0xf target/arm: Correct VMOV_imm_dp handling of short vectors Philippe Mathieu-Daudé (3): target/arm: Move debug routines to debug_helper.c target/arm: Restrict semi-hosting to TCG target/arm/helper: Move M profile routines to m_helper.c target/arm/Makefile.objs | 5 +- target/arm/cpu.h | 7 + hw/intc/armv7m_nvic.c | 54 +- hw/timer/armv7m_systick.c | 26 +- target/arm/cpu.c | 9 +- target/arm/debug_helper.c | 311 +++++ target/arm/helper.c | 2646 +-------------------------------------- target/arm/m_helper.c | 2679 ++++++++++++++++++++++++++++++++++++++++ target/arm/op_helper.c | 295 ----- target/arm/translate-vfp.inc.c | 2 +- target/arm/translate.c | 15 +- 11 files changed, 3096 insertions(+), 2953 deletions(-) create mode 100644 target/arm/debug_helper.c create mode 100644 target/arm/m_helper.c
From: Philippe Mathieu-Daudé <philmd@redhat.com> These routines are TCG specific. Signed-off-by: Philippe Mathieu-Daudé <philmd@redhat.com> Message-id: 20190701194942.10092-2-philmd@redhat.com Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/Makefile.objs | 2 +- target/arm/cpu.c | 9 +- target/arm/debug_helper.c | 311 ++++++++++++++++++++++++++++++++++++++ target/arm/op_helper.c | 295 ------------------------------------ 4 files changed, 315 insertions(+), 302 deletions(-) create mode 100644 target/arm/debug_helper.c diff --git a/target/arm/Makefile.objs b/target/arm/Makefile.objs index XXXXXXX..XXXXXXX 100644 --- a/target/arm/Makefile.objs +++ b/target/arm/Makefile.objs @@ -XXX,XX +XXX,XX @@ target/arm/translate-sve.o: target/arm/decode-sve.inc.c target/arm/translate.o: target/arm/decode-vfp.inc.c target/arm/translate.o: target/arm/decode-vfp-uncond.inc.c -obj-y += tlb_helper.o +obj-y += tlb_helper.o debug_helper.o obj-y += translate.o op_helper.o obj-y += crypto_helper.o obj-y += iwmmxt_helper.o vec_helper.o neon_helper.o diff --git a/target/arm/cpu.c b/target/arm/cpu.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/cpu.c +++ b/target/arm/cpu.c @@ -XXX,XX +XXX,XX @@ static void arm_cpu_class_init(ObjectClass *oc, void *data) cc->gdb_arch_name = arm_gdb_arch_name; cc->gdb_get_dynamic_xml = arm_gdb_get_dynamic_xml; cc->gdb_stop_before_watchpoint = true; - cc->debug_excp_handler = arm_debug_excp_handler; - cc->debug_check_watchpoint = arm_debug_check_watchpoint; -#if !defined(CONFIG_USER_ONLY) - cc->adjust_watchpoint_address = arm_adjust_watchpoint_address; -#endif - cc->disas_set_info = arm_disas_set_info; #ifdef CONFIG_TCG cc->tcg_initialize = arm_translate_init; cc->tlb_fill = arm_cpu_tlb_fill; + cc->debug_excp_handler = arm_debug_excp_handler; + cc->debug_check_watchpoint = arm_debug_check_watchpoint; #if !defined(CONFIG_USER_ONLY) cc->do_unaligned_access = arm_cpu_do_unaligned_access; cc->do_transaction_failed = arm_cpu_do_transaction_failed; + cc->adjust_watchpoint_address = arm_adjust_watchpoint_address; #endif /* CONFIG_TCG && !CONFIG_USER_ONLY */ #endif } diff --git a/target/arm/debug_helper.c b/target/arm/debug_helper.c new file mode 100644 index XXXXXXX..XXXXXXX --- /dev/null +++ b/target/arm/debug_helper.c @@ -XXX,XX +XXX,XX @@ +/* + * ARM debug helpers. + * + * This code is licensed under the GNU GPL v2 or later. + * + * SPDX-License-Identifier: GPL-2.0-or-later + */ +#include "qemu/osdep.h" +#include "cpu.h" +#include "internals.h" +#include "exec/exec-all.h" +#include "exec/helper-proto.h" + +/* Return true if the linked breakpoint entry lbn passes its checks */ +static bool linked_bp_matches(ARMCPU *cpu, int lbn) +{ + CPUARMState *env = &cpu->env; + uint64_t bcr = env->cp15.dbgbcr[lbn]; + int brps = extract32(cpu->dbgdidr, 24, 4); + int ctx_cmps = extract32(cpu->dbgdidr, 20, 4); + int bt; + uint32_t contextidr; + + /* + * Links to unimplemented or non-context aware breakpoints are + * CONSTRAINED UNPREDICTABLE: either behave as if disabled, or + * as if linked to an UNKNOWN context-aware breakpoint (in which + * case DBGWCR<n>_EL1.LBN must indicate that breakpoint). + * We choose the former. + */ + if (lbn > brps || lbn < (brps - ctx_cmps)) { + return false; + } + + bcr = env->cp15.dbgbcr[lbn]; + + if (extract64(bcr, 0, 1) == 0) { + /* Linked breakpoint disabled : generate no events */ + return false; + } + + bt = extract64(bcr, 20, 4); + + /* + * We match the whole register even if this is AArch32 using the + * short descriptor format (in which case it holds both PROCID and ASID), + * since we don't implement the optional v7 context ID masking. + */ + contextidr = extract64(env->cp15.contextidr_el[1], 0, 32); + + switch (bt) { + case 3: /* linked context ID match */ + if (arm_current_el(env) > 1) { + /* Context matches never fire in EL2 or (AArch64) EL3 */ + return false; + } + return (contextidr == extract64(env->cp15.dbgbvr[lbn], 0, 32)); + case 5: /* linked address mismatch (reserved in AArch64) */ + case 9: /* linked VMID match (reserved if no EL2) */ + case 11: /* linked context ID and VMID match (reserved if no EL2) */ + default: + /* + * Links to Unlinked context breakpoints must generate no + * events; we choose to do the same for reserved values too. + */ + return false; + } + + return false; +} + +static bool bp_wp_matches(ARMCPU *cpu, int n, bool is_wp) +{ + CPUARMState *env = &cpu->env; + uint64_t cr; + int pac, hmc, ssc, wt, lbn; + /* + * Note that for watchpoints the check is against the CPU security + * state, not the S/NS attribute on the offending data access. + */ + bool is_secure = arm_is_secure(env); + int access_el = arm_current_el(env); + + if (is_wp) { + CPUWatchpoint *wp = env->cpu_watchpoint[n]; + + if (!wp || !(wp->flags & BP_WATCHPOINT_HIT)) { + return false; + } + cr = env->cp15.dbgwcr[n]; + if (wp->hitattrs.user) { + /* + * The LDRT/STRT/LDT/STT "unprivileged access" instructions should + * match watchpoints as if they were accesses done at EL0, even if + * the CPU is at EL1 or higher. + */ + access_el = 0; + } + } else { + uint64_t pc = is_a64(env) ? env->pc : env->regs[15]; + + if (!env->cpu_breakpoint[n] || env->cpu_breakpoint[n]->pc != pc) { + return false; + } + cr = env->cp15.dbgbcr[n]; + } + /* + * The WATCHPOINT_HIT flag guarantees us that the watchpoint is + * enabled and that the address and access type match; for breakpoints + * we know the address matched; check the remaining fields, including + * linked breakpoints. We rely on WCR and BCR having the same layout + * for the LBN, SSC, HMC, PAC/PMC and is-linked fields. + * Note that some combinations of {PAC, HMC, SSC} are reserved and + * must act either like some valid combination or as if the watchpoint + * were disabled. We choose the former, and use this together with + * the fact that EL3 must always be Secure and EL2 must always be + * Non-Secure to simplify the code slightly compared to the full + * table in the ARM ARM. + */ + pac = extract64(cr, 1, 2); + hmc = extract64(cr, 13, 1); + ssc = extract64(cr, 14, 2); + + switch (ssc) { + case 0: + break; + case 1: + case 3: + if (is_secure) { + return false; + } + break; + case 2: + if (!is_secure) { + return false; + } + break; + } + + switch (access_el) { + case 3: + case 2: + if (!hmc) { + return false; + } + break; + case 1: + if (extract32(pac, 0, 1) == 0) { + return false; + } + break; + case 0: + if (extract32(pac, 1, 1) == 0) { + return false; + } + break; + default: + g_assert_not_reached(); + } + + wt = extract64(cr, 20, 1); + lbn = extract64(cr, 16, 4); + + if (wt && !linked_bp_matches(cpu, lbn)) { + return false; + } + + return true; +} + +static bool check_watchpoints(ARMCPU *cpu) +{ + CPUARMState *env = &cpu->env; + int n; + + /* + * If watchpoints are disabled globally or we can't take debug + * exceptions here then watchpoint firings are ignored. + */ + if (extract32(env->cp15.mdscr_el1, 15, 1) == 0 + || !arm_generate_debug_exceptions(env)) { + return false; + } + + for (n = 0; n < ARRAY_SIZE(env->cpu_watchpoint); n++) { + if (bp_wp_matches(cpu, n, true)) { + return true; + } + } + return false; +} + +static bool check_breakpoints(ARMCPU *cpu) +{ + CPUARMState *env = &cpu->env; + int n; + + /* + * If breakpoints are disabled globally or we can't take debug + * exceptions here then breakpoint firings are ignored. + */ + if (extract32(env->cp15.mdscr_el1, 15, 1) == 0 + || !arm_generate_debug_exceptions(env)) { + return false; + } + + for (n = 0; n < ARRAY_SIZE(env->cpu_breakpoint); n++) { + if (bp_wp_matches(cpu, n, false)) { + return true; + } + } + return false; +} + +void HELPER(check_breakpoints)(CPUARMState *env) +{ + ARMCPU *cpu = env_archcpu(env); + + if (check_breakpoints(cpu)) { + HELPER(exception_internal(env, EXCP_DEBUG)); + } +} + +bool arm_debug_check_watchpoint(CPUState *cs, CPUWatchpoint *wp) +{ + /* + * Called by core code when a CPU watchpoint fires; need to check if this + * is also an architectural watchpoint match. + */ + ARMCPU *cpu = ARM_CPU(cs); + + return check_watchpoints(cpu); +} + +void arm_debug_excp_handler(CPUState *cs) +{ + /* + * Called by core code when a watchpoint or breakpoint fires; + * need to check which one and raise the appropriate exception. + */ + ARMCPU *cpu = ARM_CPU(cs); + CPUARMState *env = &cpu->env; + CPUWatchpoint *wp_hit = cs->watchpoint_hit; + + if (wp_hit) { + if (wp_hit->flags & BP_CPU) { + bool wnr = (wp_hit->flags & BP_WATCHPOINT_HIT_WRITE) != 0; + bool same_el = arm_debug_target_el(env) == arm_current_el(env); + + cs->watchpoint_hit = NULL; + + env->exception.fsr = arm_debug_exception_fsr(env); + env->exception.vaddress = wp_hit->hitaddr; + raise_exception(env, EXCP_DATA_ABORT, + syn_watchpoint(same_el, 0, wnr), + arm_debug_target_el(env)); + } + } else { + uint64_t pc = is_a64(env) ? env->pc : env->regs[15]; + bool same_el = (arm_debug_target_el(env) == arm_current_el(env)); + + /* + * (1) GDB breakpoints should be handled first. + * (2) Do not raise a CPU exception if no CPU breakpoint has fired, + * since singlestep is also done by generating a debug internal + * exception. + */ + if (cpu_breakpoint_test(cs, pc, BP_GDB) + || !cpu_breakpoint_test(cs, pc, BP_CPU)) { + return; + } + + env->exception.fsr = arm_debug_exception_fsr(env); + /* + * FAR is UNKNOWN: clear vaddress to avoid potentially exposing + * values to the guest that it shouldn't be able to see at its + * exception/security level. + */ + env->exception.vaddress = 0; + raise_exception(env, EXCP_PREFETCH_ABORT, + syn_breakpoint(same_el), + arm_debug_target_el(env)); + } +} + +#if !defined(CONFIG_USER_ONLY) + +vaddr arm_adjust_watchpoint_address(CPUState *cs, vaddr addr, int len) +{ + ARMCPU *cpu = ARM_CPU(cs); + CPUARMState *env = &cpu->env; + + /* + * In BE32 system mode, target memory is stored byteswapped (on a + * little-endian host system), and by the time we reach here (via an + * opcode helper) the addresses of subword accesses have been adjusted + * to account for that, which means that watchpoints will not match. + * Undo the adjustment here. + */ + if (arm_sctlr_b(env)) { + if (len == 1) { + addr ^= 3; + } else if (len == 2) { + addr ^= 2; + } + } + + return addr; +} + +#endif diff --git a/target/arm/op_helper.c b/target/arm/op_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/op_helper.c +++ b/target/arm/op_helper.c @@ -XXX,XX +XXX,XX @@ void HELPER(pre_smc)(CPUARMState *env, uint32_t syndrome) } } -/* Return true if the linked breakpoint entry lbn passes its checks */ -static bool linked_bp_matches(ARMCPU *cpu, int lbn) -{ - CPUARMState *env = &cpu->env; - uint64_t bcr = env->cp15.dbgbcr[lbn]; - int brps = extract32(cpu->dbgdidr, 24, 4); - int ctx_cmps = extract32(cpu->dbgdidr, 20, 4); - int bt; - uint32_t contextidr; - - /* - * Links to unimplemented or non-context aware breakpoints are - * CONSTRAINED UNPREDICTABLE: either behave as if disabled, or - * as if linked to an UNKNOWN context-aware breakpoint (in which - * case DBGWCR<n>_EL1.LBN must indicate that breakpoint). - * We choose the former. - */ - if (lbn > brps || lbn < (brps - ctx_cmps)) { - return false; - } - - bcr = env->cp15.dbgbcr[lbn]; - - if (extract64(bcr, 0, 1) == 0) { - /* Linked breakpoint disabled : generate no events */ - return false; - } - - bt = extract64(bcr, 20, 4); - - /* - * We match the whole register even if this is AArch32 using the - * short descriptor format (in which case it holds both PROCID and ASID), - * since we don't implement the optional v7 context ID masking. - */ - contextidr = extract64(env->cp15.contextidr_el[1], 0, 32); - - switch (bt) { - case 3: /* linked context ID match */ - if (arm_current_el(env) > 1) { - /* Context matches never fire in EL2 or (AArch64) EL3 */ - return false; - } - return (contextidr == extract64(env->cp15.dbgbvr[lbn], 0, 32)); - case 5: /* linked address mismatch (reserved in AArch64) */ - case 9: /* linked VMID match (reserved if no EL2) */ - case 11: /* linked context ID and VMID match (reserved if no EL2) */ - default: - /* - * Links to Unlinked context breakpoints must generate no - * events; we choose to do the same for reserved values too. - */ - return false; - } - - return false; -} - -static bool bp_wp_matches(ARMCPU *cpu, int n, bool is_wp) -{ - CPUARMState *env = &cpu->env; - uint64_t cr; - int pac, hmc, ssc, wt, lbn; - /* - * Note that for watchpoints the check is against the CPU security - * state, not the S/NS attribute on the offending data access. - */ - bool is_secure = arm_is_secure(env); - int access_el = arm_current_el(env); - - if (is_wp) { - CPUWatchpoint *wp = env->cpu_watchpoint[n]; - - if (!wp || !(wp->flags & BP_WATCHPOINT_HIT)) { - return false; - } - cr = env->cp15.dbgwcr[n]; - if (wp->hitattrs.user) { - /* - * The LDRT/STRT/LDT/STT "unprivileged access" instructions should - * match watchpoints as if they were accesses done at EL0, even if - * the CPU is at EL1 or higher. - */ - access_el = 0; - } - } else { - uint64_t pc = is_a64(env) ? env->pc : env->regs[15]; - - if (!env->cpu_breakpoint[n] || env->cpu_breakpoint[n]->pc != pc) { - return false; - } - cr = env->cp15.dbgbcr[n]; - } - /* - * The WATCHPOINT_HIT flag guarantees us that the watchpoint is - * enabled and that the address and access type match; for breakpoints - * we know the address matched; check the remaining fields, including - * linked breakpoints. We rely on WCR and BCR having the same layout - * for the LBN, SSC, HMC, PAC/PMC and is-linked fields. - * Note that some combinations of {PAC, HMC, SSC} are reserved and - * must act either like some valid combination or as if the watchpoint - * were disabled. We choose the former, and use this together with - * the fact that EL3 must always be Secure and EL2 must always be - * Non-Secure to simplify the code slightly compared to the full - * table in the ARM ARM. - */ - pac = extract64(cr, 1, 2); - hmc = extract64(cr, 13, 1); - ssc = extract64(cr, 14, 2); - - switch (ssc) { - case 0: - break; - case 1: - case 3: - if (is_secure) { - return false; - } - break; - case 2: - if (!is_secure) { - return false; - } - break; - } - - switch (access_el) { - case 3: - case 2: - if (!hmc) { - return false; - } - break; - case 1: - if (extract32(pac, 0, 1) == 0) { - return false; - } - break; - case 0: - if (extract32(pac, 1, 1) == 0) { - return false; - } - break; - default: - g_assert_not_reached(); - } - - wt = extract64(cr, 20, 1); - lbn = extract64(cr, 16, 4); - - if (wt && !linked_bp_matches(cpu, lbn)) { - return false; - } - - return true; -} - -static bool check_watchpoints(ARMCPU *cpu) -{ - CPUARMState *env = &cpu->env; - int n; - - /* - * If watchpoints are disabled globally or we can't take debug - * exceptions here then watchpoint firings are ignored. - */ - if (extract32(env->cp15.mdscr_el1, 15, 1) == 0 - || !arm_generate_debug_exceptions(env)) { - return false; - } - - for (n = 0; n < ARRAY_SIZE(env->cpu_watchpoint); n++) { - if (bp_wp_matches(cpu, n, true)) { - return true; - } - } - return false; -} - -static bool check_breakpoints(ARMCPU *cpu) -{ - CPUARMState *env = &cpu->env; - int n; - - /* - * If breakpoints are disabled globally or we can't take debug - * exceptions here then breakpoint firings are ignored. - */ - if (extract32(env->cp15.mdscr_el1, 15, 1) == 0 - || !arm_generate_debug_exceptions(env)) { - return false; - } - - for (n = 0; n < ARRAY_SIZE(env->cpu_breakpoint); n++) { - if (bp_wp_matches(cpu, n, false)) { - return true; - } - } - return false; -} - -void HELPER(check_breakpoints)(CPUARMState *env) -{ - ARMCPU *cpu = env_archcpu(env); - - if (check_breakpoints(cpu)) { - HELPER(exception_internal(env, EXCP_DEBUG)); - } -} - -bool arm_debug_check_watchpoint(CPUState *cs, CPUWatchpoint *wp) -{ - /* - * Called by core code when a CPU watchpoint fires; need to check if this - * is also an architectural watchpoint match. - */ - ARMCPU *cpu = ARM_CPU(cs); - - return check_watchpoints(cpu); -} - -vaddr arm_adjust_watchpoint_address(CPUState *cs, vaddr addr, int len) -{ - ARMCPU *cpu = ARM_CPU(cs); - CPUARMState *env = &cpu->env; - - /* - * In BE32 system mode, target memory is stored byteswapped (on a - * little-endian host system), and by the time we reach here (via an - * opcode helper) the addresses of subword accesses have been adjusted - * to account for that, which means that watchpoints will not match. - * Undo the adjustment here. - */ - if (arm_sctlr_b(env)) { - if (len == 1) { - addr ^= 3; - } else if (len == 2) { - addr ^= 2; - } - } - - return addr; -} - -void arm_debug_excp_handler(CPUState *cs) -{ - /* - * Called by core code when a watchpoint or breakpoint fires; - * need to check which one and raise the appropriate exception. - */ - ARMCPU *cpu = ARM_CPU(cs); - CPUARMState *env = &cpu->env; - CPUWatchpoint *wp_hit = cs->watchpoint_hit; - - if (wp_hit) { - if (wp_hit->flags & BP_CPU) { - bool wnr = (wp_hit->flags & BP_WATCHPOINT_HIT_WRITE) != 0; - bool same_el = arm_debug_target_el(env) == arm_current_el(env); - - cs->watchpoint_hit = NULL; - - env->exception.fsr = arm_debug_exception_fsr(env); - env->exception.vaddress = wp_hit->hitaddr; - raise_exception(env, EXCP_DATA_ABORT, - syn_watchpoint(same_el, 0, wnr), - arm_debug_target_el(env)); - } - } else { - uint64_t pc = is_a64(env) ? env->pc : env->regs[15]; - bool same_el = (arm_debug_target_el(env) == arm_current_el(env)); - - /* - * (1) GDB breakpoints should be handled first. - * (2) Do not raise a CPU exception if no CPU breakpoint has fired, - * since singlestep is also done by generating a debug internal - * exception. - */ - if (cpu_breakpoint_test(cs, pc, BP_GDB) - || !cpu_breakpoint_test(cs, pc, BP_CPU)) { - return; - } - - env->exception.fsr = arm_debug_exception_fsr(env); - /* - * FAR is UNKNOWN: clear vaddress to avoid potentially exposing - * values to the guest that it shouldn't be able to see at its - * exception/security level. - */ - env->exception.vaddress = 0; - raise_exception(env, EXCP_PREFETCH_ABORT, - syn_breakpoint(same_el), - arm_debug_target_el(env)); - } -} - /* ??? Flag setting arithmetic is awkward because we need to do comparisons. The only way to do that in TCG is a conditional branch, which clobbers all our temporaries. For now implement these as helper functions. */ -- 2.20.1
From: Philippe Mathieu-Daudé <philmd@redhat.com> Per Peter Maydell: Semihosting hooks either SVC or HLT instructions, and inside KVM both of those go to EL1, ie to the guest, and can't be trapped to KVM. Let check_for_semihosting() return False when not running on TCG. Signed-off-by: Philippe Mathieu-Daudé <philmd@redhat.com> Message-id: 20190701194942.10092-3-philmd@redhat.com Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/Makefile.objs | 2 +- target/arm/cpu.h | 7 +++++++ target/arm/helper.c | 8 +++++++- 3 files changed, 15 insertions(+), 2 deletions(-) diff --git a/target/arm/Makefile.objs b/target/arm/Makefile.objs index XXXXXXX..XXXXXXX 100644 --- a/target/arm/Makefile.objs +++ b/target/arm/Makefile.objs @@ -XXX,XX +XXX,XX @@ -obj-y += arm-semi.o +obj-$(CONFIG_TCG) += arm-semi.o obj-y += helper.o vfp_helper.o obj-y += cpu.o gdbstub.o obj-$(TARGET_AARCH64) += cpu64.o gdbstub64.o diff --git a/target/arm/cpu.h b/target/arm/cpu.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/cpu.h +++ b/target/arm/cpu.h @@ -XXX,XX +XXX,XX @@ static inline void aarch64_sve_change_el(CPUARMState *env, int o, { } #endif +#if !defined(CONFIG_TCG) +static inline target_ulong do_arm_semihosting(CPUARMState *env) +{ + g_assert_not_reached(); +} +#else target_ulong do_arm_semihosting(CPUARMState *env); +#endif void aarch64_sync_32_to_64(CPUARMState *env); void aarch64_sync_64_to_32(CPUARMState *env); diff --git a/target/arm/helper.c b/target/arm/helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/helper.c +++ b/target/arm/helper.c @@ -XXX,XX +XXX,XX @@ #include "qemu/qemu-print.h" #include "exec/exec-all.h" #include "exec/cpu_ldst.h" -#include "arm_ldst.h" #include <zlib.h> /* For crc32 */ #include "hw/semihosting/semihost.h" #include "sysemu/cpus.h" @@ -XXX,XX +XXX,XX @@ #include "qapi/qapi-commands-machine-target.h" #include "qapi/error.h" #include "qemu/guest-random.h" +#ifdef CONFIG_TCG +#include "arm_ldst.h" +#endif #define ARM_CPU_FREQ 1000000000 /* FIXME: 1 GHz, should be configurable */ @@ -XXX,XX +XXX,XX @@ static void arm_cpu_do_interrupt_aarch64(CPUState *cs) static inline bool check_for_semihosting(CPUState *cs) { +#ifdef CONFIG_TCG /* Check whether this exception is a semihosting call; if so * then handle it and return true; otherwise return false. */ @@ -XXX,XX +XXX,XX @@ static inline bool check_for_semihosting(CPUState *cs) env->regs[0] = do_arm_semihosting(env); return true; } +#else + return false; +#endif } /* Handle a CPU exception for A and R profile CPUs. -- 2.20.1
From: Philippe Mathieu-Daudé <philmd@redhat.com> In preparation for supporting TCG disablement on ARM, we move most of TCG related v7m/v8m helpers and APIs into their own file. Note: It is easier to review this commit using the 'histogram' diff algorithm: $ git diff --diff-algorithm=histogram ... or $ git diff --histogram ... Suggested-by: Samuel Ortiz <sameo@linux.intel.com> Signed-off-by: Philippe Mathieu-Daudé <philmd@redhat.com> Message-id: 20190702144335.10717-2-philmd@redhat.com Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/Makefile.objs | 1 + target/arm/helper.c | 2638 +------------------------------------ target/arm/m_helper.c | 2676 ++++++++++++++++++++++++++++++++++++++ 3 files changed, 2681 insertions(+), 2634 deletions(-) create mode 100644 target/arm/m_helper.c diff --git a/target/arm/Makefile.objs b/target/arm/Makefile.objs index XXXXXXX..XXXXXXX 100644 --- a/target/arm/Makefile.objs +++ b/target/arm/Makefile.objs @@ -XXX,XX +XXX,XX @@ obj-y += tlb_helper.o debug_helper.o obj-y += translate.o op_helper.o obj-y += crypto_helper.o obj-y += iwmmxt_helper.o vec_helper.o neon_helper.o +obj-y += m_helper.o obj-$(CONFIG_SOFTMMU) += psci.o diff --git a/target/arm/helper.c b/target/arm/helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/helper.c +++ b/target/arm/helper.c @@ -XXX,XX +XXX,XX @@ #include "qemu/crc32c.h" #include "qemu/qemu-print.h" #include "exec/exec-all.h" -#include "exec/cpu_ldst.h" #include <zlib.h> /* For crc32 */ #include "hw/semihosting/semihost.h" #include "sysemu/cpus.h" @@ -XXX,XX +XXX,XX @@ #include "qemu/guest-random.h" #ifdef CONFIG_TCG #include "arm_ldst.h" +#include "exec/cpu_ldst.h" #endif #define ARM_CPU_FREQ 1000000000 /* FIXME: 1 GHz, should be configurable */ @@ -XXX,XX +XXX,XX @@ uint32_t HELPER(rbit)(uint32_t x) #ifdef CONFIG_USER_ONLY -/* These should probably raise undefined insn exceptions. */ -void HELPER(v7m_msr)(CPUARMState *env, uint32_t reg, uint32_t val) -{ - ARMCPU *cpu = env_archcpu(env); - - cpu_abort(CPU(cpu), "v7m_msr %d\n", reg); -} - -uint32_t HELPER(v7m_mrs)(CPUARMState *env, uint32_t reg) -{ - ARMCPU *cpu = env_archcpu(env); - - cpu_abort(CPU(cpu), "v7m_mrs %d\n", reg); - return 0; -} - -void HELPER(v7m_bxns)(CPUARMState *env, uint32_t dest) -{ - /* translate.c should never generate calls here in user-only mode */ - g_assert_not_reached(); -} - -void HELPER(v7m_blxns)(CPUARMState *env, uint32_t dest) -{ - /* translate.c should never generate calls here in user-only mode */ - g_assert_not_reached(); -} - -void HELPER(v7m_preserve_fp_state)(CPUARMState *env) -{ - /* translate.c should never generate calls here in user-only mode */ - g_assert_not_reached(); -} - -void HELPER(v7m_vlstm)(CPUARMState *env, uint32_t fptr) -{ - /* translate.c should never generate calls here in user-only mode */ - g_assert_not_reached(); -} - -void HELPER(v7m_vlldm)(CPUARMState *env, uint32_t fptr) -{ - /* translate.c should never generate calls here in user-only mode */ - g_assert_not_reached(); -} - -uint32_t HELPER(v7m_tt)(CPUARMState *env, uint32_t addr, uint32_t op) -{ - /* - * The TT instructions can be used by unprivileged code, but in - * user-only emulation we don't have the MPU. - * Luckily since we know we are NonSecure unprivileged (and that in - * turn means that the A flag wasn't specified), all the bits in the - * register must be zero: - * IREGION: 0 because IRVALID is 0 - * IRVALID: 0 because NS - * S: 0 because NS - * NSRW: 0 because NS - * NSR: 0 because NS - * RW: 0 because unpriv and A flag not set - * R: 0 because unpriv and A flag not set - * SRVALID: 0 because NS - * MRVALID: 0 because unpriv and A flag not set - * SREGION: 0 becaus SRVALID is 0 - * MREGION: 0 because MRVALID is 0 - */ - return 0; -} - static void switch_mode(CPUARMState *env, int mode) { ARMCPU *cpu = env_archcpu(env); @@ -XXX,XX +XXX,XX @@ void arm_log_exception(int idx) } } -/* - * What kind of stack write are we doing? This affects how exceptions - * generated during the stacking are treated. - */ -typedef enum StackingMode { - STACK_NORMAL, - STACK_IGNFAULTS, - STACK_LAZYFP, -} StackingMode; - -static bool v7m_stack_write(ARMCPU *cpu, uint32_t addr, uint32_t value, - ARMMMUIdx mmu_idx, StackingMode mode) -{ - CPUState *cs = CPU(cpu); - CPUARMState *env = &cpu->env; - MemTxAttrs attrs = {}; - MemTxResult txres; - target_ulong page_size; - hwaddr physaddr; - int prot; - ARMMMUFaultInfo fi = {}; - bool secure = mmu_idx & ARM_MMU_IDX_M_S; - int exc; - bool exc_secure; - - if (get_phys_addr(env, addr, MMU_DATA_STORE, mmu_idx, &physaddr, - &attrs, &prot, &page_size, &fi, NULL)) { - /* MPU/SAU lookup failed */ - if (fi.type == ARMFault_QEMU_SFault) { - if (mode == STACK_LAZYFP) { - qemu_log_mask(CPU_LOG_INT, - "...SecureFault with SFSR.LSPERR " - "during lazy stacking\n"); - env->v7m.sfsr |= R_V7M_SFSR_LSPERR_MASK; - } else { - qemu_log_mask(CPU_LOG_INT, - "...SecureFault with SFSR.AUVIOL " - "during stacking\n"); - env->v7m.sfsr |= R_V7M_SFSR_AUVIOL_MASK; - } - env->v7m.sfsr |= R_V7M_SFSR_SFARVALID_MASK; - env->v7m.sfar = addr; - exc = ARMV7M_EXCP_SECURE; - exc_secure = false; - } else { - if (mode == STACK_LAZYFP) { - qemu_log_mask(CPU_LOG_INT, - "...MemManageFault with CFSR.MLSPERR\n"); - env->v7m.cfsr[secure] |= R_V7M_CFSR_MLSPERR_MASK; - } else { - qemu_log_mask(CPU_LOG_INT, - "...MemManageFault with CFSR.MSTKERR\n"); - env->v7m.cfsr[secure] |= R_V7M_CFSR_MSTKERR_MASK; - } - exc = ARMV7M_EXCP_MEM; - exc_secure = secure; - } - goto pend_fault; - } - address_space_stl_le(arm_addressspace(cs, attrs), physaddr, value, - attrs, &txres); - if (txres != MEMTX_OK) { - /* BusFault trying to write the data */ - if (mode == STACK_LAZYFP) { - qemu_log_mask(CPU_LOG_INT, "...BusFault with BFSR.LSPERR\n"); - env->v7m.cfsr[M_REG_NS] |= R_V7M_CFSR_LSPERR_MASK; - } else { - qemu_log_mask(CPU_LOG_INT, "...BusFault with BFSR.STKERR\n"); - env->v7m.cfsr[M_REG_NS] |= R_V7M_CFSR_STKERR_MASK; - } - exc = ARMV7M_EXCP_BUS; - exc_secure = false; - goto pend_fault; - } - return true; - -pend_fault: - /* - * By pending the exception at this point we are making - * the IMPDEF choice "overridden exceptions pended" (see the - * MergeExcInfo() pseudocode). The other choice would be to not - * pend them now and then make a choice about which to throw away - * later if we have two derived exceptions. - * The only case when we must not pend the exception but instead - * throw it away is if we are doing the push of the callee registers - * and we've already generated a derived exception (this is indicated - * by the caller passing STACK_IGNFAULTS). Even in this case we will - * still update the fault status registers. - */ - switch (mode) { - case STACK_NORMAL: - armv7m_nvic_set_pending_derived(env->nvic, exc, exc_secure); - break; - case STACK_LAZYFP: - armv7m_nvic_set_pending_lazyfp(env->nvic, exc, exc_secure); - break; - case STACK_IGNFAULTS: - break; - } - return false; -} - -static bool v7m_stack_read(ARMCPU *cpu, uint32_t *dest, uint32_t addr, - ARMMMUIdx mmu_idx) -{ - CPUState *cs = CPU(cpu); - CPUARMState *env = &cpu->env; - MemTxAttrs attrs = {}; - MemTxResult txres; - target_ulong page_size; - hwaddr physaddr; - int prot; - ARMMMUFaultInfo fi = {}; - bool secure = mmu_idx & ARM_MMU_IDX_M_S; - int exc; - bool exc_secure; - uint32_t value; - - if (get_phys_addr(env, addr, MMU_DATA_LOAD, mmu_idx, &physaddr, - &attrs, &prot, &page_size, &fi, NULL)) { - /* MPU/SAU lookup failed */ - if (fi.type == ARMFault_QEMU_SFault) { - qemu_log_mask(CPU_LOG_INT, - "...SecureFault with SFSR.AUVIOL during unstack\n"); - env->v7m.sfsr |= R_V7M_SFSR_AUVIOL_MASK | R_V7M_SFSR_SFARVALID_MASK; - env->v7m.sfar = addr; - exc = ARMV7M_EXCP_SECURE; - exc_secure = false; - } else { - qemu_log_mask(CPU_LOG_INT, - "...MemManageFault with CFSR.MUNSTKERR\n"); - env->v7m.cfsr[secure] |= R_V7M_CFSR_MUNSTKERR_MASK; - exc = ARMV7M_EXCP_MEM; - exc_secure = secure; - } - goto pend_fault; - } - - value = address_space_ldl(arm_addressspace(cs, attrs), physaddr, - attrs, &txres); - if (txres != MEMTX_OK) { - /* BusFault trying to read the data */ - qemu_log_mask(CPU_LOG_INT, "...BusFault with BFSR.UNSTKERR\n"); - env->v7m.cfsr[M_REG_NS] |= R_V7M_CFSR_UNSTKERR_MASK; - exc = ARMV7M_EXCP_BUS; - exc_secure = false; - goto pend_fault; - } - - *dest = value; - return true; - -pend_fault: - /* - * By pending the exception at this point we are making - * the IMPDEF choice "overridden exceptions pended" (see the - * MergeExcInfo() pseudocode). The other choice would be to not - * pend them now and then make a choice about which to throw away - * later if we have two derived exceptions. - */ - armv7m_nvic_set_pending(env->nvic, exc, exc_secure); - return false; -} - -void HELPER(v7m_preserve_fp_state)(CPUARMState *env) -{ - /* - * Preserve FP state (because LSPACT was set and we are about - * to execute an FP instruction). This corresponds to the - * PreserveFPState() pseudocode. - * We may throw an exception if the stacking fails. - */ - ARMCPU *cpu = env_archcpu(env); - bool is_secure = env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_S_MASK; - bool negpri = !(env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_HFRDY_MASK); - bool is_priv = !(env->v7m.fpccr[is_secure] & R_V7M_FPCCR_USER_MASK); - bool splimviol = env->v7m.fpccr[is_secure] & R_V7M_FPCCR_SPLIMVIOL_MASK; - uint32_t fpcar = env->v7m.fpcar[is_secure]; - bool stacked_ok = true; - bool ts = is_secure && (env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_TS_MASK); - bool take_exception; - - /* Take the iothread lock as we are going to touch the NVIC */ - qemu_mutex_lock_iothread(); - - /* Check the background context had access to the FPU */ - if (!v7m_cpacr_pass(env, is_secure, is_priv)) { - armv7m_nvic_set_pending_lazyfp(env->nvic, ARMV7M_EXCP_USAGE, is_secure); - env->v7m.cfsr[is_secure] |= R_V7M_CFSR_NOCP_MASK; - stacked_ok = false; - } else if (!is_secure && !extract32(env->v7m.nsacr, 10, 1)) { - armv7m_nvic_set_pending_lazyfp(env->nvic, ARMV7M_EXCP_USAGE, M_REG_S); - env->v7m.cfsr[M_REG_S] |= R_V7M_CFSR_NOCP_MASK; - stacked_ok = false; - } - - if (!splimviol && stacked_ok) { - /* We only stack if the stack limit wasn't violated */ - int i; - ARMMMUIdx mmu_idx; - - mmu_idx = arm_v7m_mmu_idx_all(env, is_secure, is_priv, negpri); - for (i = 0; i < (ts ? 32 : 16); i += 2) { - uint64_t dn = *aa32_vfp_dreg(env, i / 2); - uint32_t faddr = fpcar + 4 * i; - uint32_t slo = extract64(dn, 0, 32); - uint32_t shi = extract64(dn, 32, 32); - - if (i >= 16) { - faddr += 8; /* skip the slot for the FPSCR */ - } - stacked_ok = stacked_ok && - v7m_stack_write(cpu, faddr, slo, mmu_idx, STACK_LAZYFP) && - v7m_stack_write(cpu, faddr + 4, shi, mmu_idx, STACK_LAZYFP); - } - - stacked_ok = stacked_ok && - v7m_stack_write(cpu, fpcar + 0x40, - vfp_get_fpscr(env), mmu_idx, STACK_LAZYFP); - } - - /* - * We definitely pended an exception, but it's possible that it - * might not be able to be taken now. If its priority permits us - * to take it now, then we must not update the LSPACT or FP regs, - * but instead jump out to take the exception immediately. - * If it's just pending and won't be taken until the current - * handler exits, then we do update LSPACT and the FP regs. - */ - take_exception = !stacked_ok && - armv7m_nvic_can_take_pending_exception(env->nvic); - - qemu_mutex_unlock_iothread(); - - if (take_exception) { - raise_exception_ra(env, EXCP_LAZYFP, 0, 1, GETPC()); - } - - env->v7m.fpccr[is_secure] &= ~R_V7M_FPCCR_LSPACT_MASK; - - if (ts) { - /* Clear s0 to s31 and the FPSCR */ - int i; - - for (i = 0; i < 32; i += 2) { - *aa32_vfp_dreg(env, i / 2) = 0; - } - vfp_set_fpscr(env, 0); - } - /* - * Otherwise s0 to s15 and FPSCR are UNKNOWN; we choose to leave them - * unchanged. - */ -} - -/* - * Write to v7M CONTROL.SPSEL bit for the specified security bank. - * This may change the current stack pointer between Main and Process - * stack pointers if it is done for the CONTROL register for the current - * security state. - */ -static void write_v7m_control_spsel_for_secstate(CPUARMState *env, - bool new_spsel, - bool secstate) -{ - bool old_is_psp = v7m_using_psp(env); - - env->v7m.control[secstate] = - deposit32(env->v7m.control[secstate], - R_V7M_CONTROL_SPSEL_SHIFT, - R_V7M_CONTROL_SPSEL_LENGTH, new_spsel); - - if (secstate == env->v7m.secure) { - bool new_is_psp = v7m_using_psp(env); - uint32_t tmp; - - if (old_is_psp != new_is_psp) { - tmp = env->v7m.other_sp; - env->v7m.other_sp = env->regs[13]; - env->regs[13] = tmp; - } - } -} - -/* - * Write to v7M CONTROL.SPSEL bit. This may change the current - * stack pointer between Main and Process stack pointers. - */ -static void write_v7m_control_spsel(CPUARMState *env, bool new_spsel) -{ - write_v7m_control_spsel_for_secstate(env, new_spsel, env->v7m.secure); -} - -void write_v7m_exception(CPUARMState *env, uint32_t new_exc) -{ - /* - * Write a new value to v7m.exception, thus transitioning into or out - * of Handler mode; this may result in a change of active stack pointer. - */ - bool new_is_psp, old_is_psp = v7m_using_psp(env); - uint32_t tmp; - - env->v7m.exception = new_exc; - - new_is_psp = v7m_using_psp(env); - - if (old_is_psp != new_is_psp) { - tmp = env->v7m.other_sp; - env->v7m.other_sp = env->regs[13]; - env->regs[13] = tmp; - } -} - -/* Switch M profile security state between NS and S */ -static void switch_v7m_security_state(CPUARMState *env, bool new_secstate) -{ - uint32_t new_ss_msp, new_ss_psp; - - if (env->v7m.secure == new_secstate) { - return; - } - - /* - * All the banked state is accessed by looking at env->v7m.secure - * except for the stack pointer; rearrange the SP appropriately. - */ - new_ss_msp = env->v7m.other_ss_msp; - new_ss_psp = env->v7m.other_ss_psp; - - if (v7m_using_psp(env)) { - env->v7m.other_ss_psp = env->regs[13]; - env->v7m.other_ss_msp = env->v7m.other_sp; - } else { - env->v7m.other_ss_msp = env->regs[13]; - env->v7m.other_ss_psp = env->v7m.other_sp; - } - - env->v7m.secure = new_secstate; - - if (v7m_using_psp(env)) { - env->regs[13] = new_ss_psp; - env->v7m.other_sp = new_ss_msp; - } else { - env->regs[13] = new_ss_msp; - env->v7m.other_sp = new_ss_psp; - } -} - -void HELPER(v7m_bxns)(CPUARMState *env, uint32_t dest) -{ - /* - * Handle v7M BXNS: - * - if the return value is a magic value, do exception return (like BX) - * - otherwise bit 0 of the return value is the target security state - */ - uint32_t min_magic; - - if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { - /* Covers FNC_RETURN and EXC_RETURN magic */ - min_magic = FNC_RETURN_MIN_MAGIC; - } else { - /* EXC_RETURN magic only */ - min_magic = EXC_RETURN_MIN_MAGIC; - } - - if (dest >= min_magic) { - /* - * This is an exception return magic value; put it where - * do_v7m_exception_exit() expects and raise EXCEPTION_EXIT. - * Note that if we ever add gen_ss_advance() singlestep support to - * M profile this should count as an "instruction execution complete" - * event (compare gen_bx_excret_final_code()). - */ - env->regs[15] = dest & ~1; - env->thumb = dest & 1; - HELPER(exception_internal)(env, EXCP_EXCEPTION_EXIT); - /* notreached */ - } - - /* translate.c should have made BXNS UNDEF unless we're secure */ - assert(env->v7m.secure); - - if (!(dest & 1)) { - env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_SFPA_MASK; - } - switch_v7m_security_state(env, dest & 1); - env->thumb = 1; - env->regs[15] = dest & ~1; -} - -void HELPER(v7m_blxns)(CPUARMState *env, uint32_t dest) -{ - /* - * Handle v7M BLXNS: - * - bit 0 of the destination address is the target security state - */ - - /* At this point regs[15] is the address just after the BLXNS */ - uint32_t nextinst = env->regs[15] | 1; - uint32_t sp = env->regs[13] - 8; - uint32_t saved_psr; - - /* translate.c will have made BLXNS UNDEF unless we're secure */ - assert(env->v7m.secure); - - if (dest & 1) { - /* - * Target is Secure, so this is just a normal BLX, - * except that the low bit doesn't indicate Thumb/not. - */ - env->regs[14] = nextinst; - env->thumb = 1; - env->regs[15] = dest & ~1; - return; - } - - /* Target is non-secure: first push a stack frame */ - if (!QEMU_IS_ALIGNED(sp, 8)) { - qemu_log_mask(LOG_GUEST_ERROR, - "BLXNS with misaligned SP is UNPREDICTABLE\n"); - } - - if (sp < v7m_sp_limit(env)) { - raise_exception(env, EXCP_STKOF, 0, 1); - } - - saved_psr = env->v7m.exception; - if (env->v7m.control[M_REG_S] & R_V7M_CONTROL_SFPA_MASK) { - saved_psr |= XPSR_SFPA; - } - - /* Note that these stores can throw exceptions on MPU faults */ - cpu_stl_data(env, sp, nextinst); - cpu_stl_data(env, sp + 4, saved_psr); - - env->regs[13] = sp; - env->regs[14] = 0xfeffffff; - if (arm_v7m_is_handler_mode(env)) { - /* - * Write a dummy value to IPSR, to avoid leaking the current secure - * exception number to non-secure code. This is guaranteed not - * to cause write_v7m_exception() to actually change stacks. - */ - write_v7m_exception(env, 1); - } - env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_SFPA_MASK; - switch_v7m_security_state(env, 0); - env->thumb = 1; - env->regs[15] = dest; -} - -static uint32_t *get_v7m_sp_ptr(CPUARMState *env, bool secure, bool threadmode, - bool spsel) -{ - /* - * Return a pointer to the location where we currently store the - * stack pointer for the requested security state and thread mode. - * This pointer will become invalid if the CPU state is updated - * such that the stack pointers are switched around (eg changing - * the SPSEL control bit). - * Compare the v8M ARM ARM pseudocode LookUpSP_with_security_mode(). - * Unlike that pseudocode, we require the caller to pass us in the - * SPSEL control bit value; this is because we also use this - * function in handling of pushing of the callee-saves registers - * part of the v8M stack frame (pseudocode PushCalleeStack()), - * and in the tailchain codepath the SPSEL bit comes from the exception - * return magic LR value from the previous exception. The pseudocode - * opencodes the stack-selection in PushCalleeStack(), but we prefer - * to make this utility function generic enough to do the job. - */ - bool want_psp = threadmode && spsel; - - if (secure == env->v7m.secure) { - if (want_psp == v7m_using_psp(env)) { - return &env->regs[13]; - } else { - return &env->v7m.other_sp; - } - } else { - if (want_psp) { - return &env->v7m.other_ss_psp; - } else { - return &env->v7m.other_ss_msp; - } - } -} - -static bool arm_v7m_load_vector(ARMCPU *cpu, int exc, bool targets_secure, - uint32_t *pvec) -{ - CPUState *cs = CPU(cpu); - CPUARMState *env = &cpu->env; - MemTxResult result; - uint32_t addr = env->v7m.vecbase[targets_secure] + exc * 4; - uint32_t vector_entry; - MemTxAttrs attrs = {}; - ARMMMUIdx mmu_idx; - bool exc_secure; - - mmu_idx = arm_v7m_mmu_idx_for_secstate_and_priv(env, targets_secure, true); - - /* - * We don't do a get_phys_addr() here because the rules for vector - * loads are special: they always use the default memory map, and - * the default memory map permits reads from all addresses. - * Since there's no easy way to pass through to pmsav8_mpu_lookup() - * that we want this special case which would always say "yes", - * we just do the SAU lookup here followed by a direct physical load. - */ - attrs.secure = targets_secure; - attrs.user = false; - - if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { - V8M_SAttributes sattrs = {}; - - v8m_security_lookup(env, addr, MMU_DATA_LOAD, mmu_idx, &sattrs); - if (sattrs.ns) { - attrs.secure = false; - } else if (!targets_secure) { - /* NS access to S memory */ - goto load_fail; - } - } - - vector_entry = address_space_ldl(arm_addressspace(cs, attrs), addr, - attrs, &result); - if (result != MEMTX_OK) { - goto load_fail; - } - *pvec = vector_entry; - return true; - -load_fail: - /* - * All vector table fetch fails are reported as HardFault, with - * HFSR.VECTTBL and .FORCED set. (FORCED is set because - * technically the underlying exception is a MemManage or BusFault - * that is escalated to HardFault.) This is a terminal exception, - * so we will either take the HardFault immediately or else enter - * lockup (the latter case is handled in armv7m_nvic_set_pending_derived()). - */ - exc_secure = targets_secure || - !(cpu->env.v7m.aircr & R_V7M_AIRCR_BFHFNMINS_MASK); - env->v7m.hfsr |= R_V7M_HFSR_VECTTBL_MASK | R_V7M_HFSR_FORCED_MASK; - armv7m_nvic_set_pending_derived(env->nvic, ARMV7M_EXCP_HARD, exc_secure); - return false; -} - -static uint32_t v7m_integrity_sig(CPUARMState *env, uint32_t lr) -{ - /* - * Return the integrity signature value for the callee-saves - * stack frame section. @lr is the exception return payload/LR value - * whose FType bit forms bit 0 of the signature if FP is present. - */ - uint32_t sig = 0xfefa125a; - - if (!arm_feature(env, ARM_FEATURE_VFP) || (lr & R_V7M_EXCRET_FTYPE_MASK)) { - sig |= 1; - } - return sig; -} - -static bool v7m_push_callee_stack(ARMCPU *cpu, uint32_t lr, bool dotailchain, - bool ignore_faults) -{ - /* - * For v8M, push the callee-saves register part of the stack frame. - * Compare the v8M pseudocode PushCalleeStack(). - * In the tailchaining case this may not be the current stack. - */ - CPUARMState *env = &cpu->env; - uint32_t *frame_sp_p; - uint32_t frameptr; - ARMMMUIdx mmu_idx; - bool stacked_ok; - uint32_t limit; - bool want_psp; - uint32_t sig; - StackingMode smode = ignore_faults ? STACK_IGNFAULTS : STACK_NORMAL; - - if (dotailchain) { - bool mode = lr & R_V7M_EXCRET_MODE_MASK; - bool priv = !(env->v7m.control[M_REG_S] & R_V7M_CONTROL_NPRIV_MASK) || - !mode; - - mmu_idx = arm_v7m_mmu_idx_for_secstate_and_priv(env, M_REG_S, priv); - frame_sp_p = get_v7m_sp_ptr(env, M_REG_S, mode, - lr & R_V7M_EXCRET_SPSEL_MASK); - want_psp = mode && (lr & R_V7M_EXCRET_SPSEL_MASK); - if (want_psp) { - limit = env->v7m.psplim[M_REG_S]; - } else { - limit = env->v7m.msplim[M_REG_S]; - } - } else { - mmu_idx = arm_mmu_idx(env); - frame_sp_p = &env->regs[13]; - limit = v7m_sp_limit(env); - } - - frameptr = *frame_sp_p - 0x28; - if (frameptr < limit) { - /* - * Stack limit failure: set SP to the limit value, and generate - * STKOF UsageFault. Stack pushes below the limit must not be - * performed. It is IMPDEF whether pushes above the limit are - * performed; we choose not to. - */ - qemu_log_mask(CPU_LOG_INT, - "...STKOF during callee-saves register stacking\n"); - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_STKOF_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, - env->v7m.secure); - *frame_sp_p = limit; - return true; - } - - /* - * Write as much of the stack frame as we can. A write failure may - * cause us to pend a derived exception. - */ - sig = v7m_integrity_sig(env, lr); - stacked_ok = - v7m_stack_write(cpu, frameptr, sig, mmu_idx, smode) && - v7m_stack_write(cpu, frameptr + 0x8, env->regs[4], mmu_idx, smode) && - v7m_stack_write(cpu, frameptr + 0xc, env->regs[5], mmu_idx, smode) && - v7m_stack_write(cpu, frameptr + 0x10, env->regs[6], mmu_idx, smode) && - v7m_stack_write(cpu, frameptr + 0x14, env->regs[7], mmu_idx, smode) && - v7m_stack_write(cpu, frameptr + 0x18, env->regs[8], mmu_idx, smode) && - v7m_stack_write(cpu, frameptr + 0x1c, env->regs[9], mmu_idx, smode) && - v7m_stack_write(cpu, frameptr + 0x20, env->regs[10], mmu_idx, smode) && - v7m_stack_write(cpu, frameptr + 0x24, env->regs[11], mmu_idx, smode); - - /* Update SP regardless of whether any of the stack accesses failed. */ - *frame_sp_p = frameptr; - - return !stacked_ok; -} - -static void v7m_exception_taken(ARMCPU *cpu, uint32_t lr, bool dotailchain, - bool ignore_stackfaults) -{ - /* - * Do the "take the exception" parts of exception entry, - * but not the pushing of state to the stack. This is - * similar to the pseudocode ExceptionTaken() function. - */ - CPUARMState *env = &cpu->env; - uint32_t addr; - bool targets_secure; - int exc; - bool push_failed = false; - - armv7m_nvic_get_pending_irq_info(env->nvic, &exc, &targets_secure); - qemu_log_mask(CPU_LOG_INT, "...taking pending %s exception %d\n", - targets_secure ? "secure" : "nonsecure", exc); - - if (dotailchain) { - /* Sanitize LR FType and PREFIX bits */ - if (!arm_feature(env, ARM_FEATURE_VFP)) { - lr |= R_V7M_EXCRET_FTYPE_MASK; - } - lr = deposit32(lr, 24, 8, 0xff); - } - - if (arm_feature(env, ARM_FEATURE_V8)) { - if (arm_feature(env, ARM_FEATURE_M_SECURITY) && - (lr & R_V7M_EXCRET_S_MASK)) { - /* - * The background code (the owner of the registers in the - * exception frame) is Secure. This means it may either already - * have or now needs to push callee-saves registers. - */ - if (targets_secure) { - if (dotailchain && !(lr & R_V7M_EXCRET_ES_MASK)) { - /* - * We took an exception from Secure to NonSecure - * (which means the callee-saved registers got stacked) - * and are now tailchaining to a Secure exception. - * Clear DCRS so eventual return from this Secure - * exception unstacks the callee-saved registers. - */ - lr &= ~R_V7M_EXCRET_DCRS_MASK; - } - } else { - /* - * We're going to a non-secure exception; push the - * callee-saves registers to the stack now, if they're - * not already saved. - */ - if (lr & R_V7M_EXCRET_DCRS_MASK && - !(dotailchain && !(lr & R_V7M_EXCRET_ES_MASK))) { - push_failed = v7m_push_callee_stack(cpu, lr, dotailchain, - ignore_stackfaults); - } - lr |= R_V7M_EXCRET_DCRS_MASK; - } - } - - lr &= ~R_V7M_EXCRET_ES_MASK; - if (targets_secure || !arm_feature(env, ARM_FEATURE_M_SECURITY)) { - lr |= R_V7M_EXCRET_ES_MASK; - } - lr &= ~R_V7M_EXCRET_SPSEL_MASK; - if (env->v7m.control[targets_secure] & R_V7M_CONTROL_SPSEL_MASK) { - lr |= R_V7M_EXCRET_SPSEL_MASK; - } - - /* - * Clear registers if necessary to prevent non-secure exception - * code being able to see register values from secure code. - * Where register values become architecturally UNKNOWN we leave - * them with their previous values. - */ - if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { - if (!targets_secure) { - /* - * Always clear the caller-saved registers (they have been - * pushed to the stack earlier in v7m_push_stack()). - * Clear callee-saved registers if the background code is - * Secure (in which case these regs were saved in - * v7m_push_callee_stack()). - */ - int i; - - for (i = 0; i < 13; i++) { - /* r4..r11 are callee-saves, zero only if EXCRET.S == 1 */ - if (i < 4 || i > 11 || (lr & R_V7M_EXCRET_S_MASK)) { - env->regs[i] = 0; - } - } - /* Clear EAPSR */ - xpsr_write(env, 0, XPSR_NZCV | XPSR_Q | XPSR_GE | XPSR_IT); - } - } - } - - if (push_failed && !ignore_stackfaults) { - /* - * Derived exception on callee-saves register stacking: - * we might now want to take a different exception which - * targets a different security state, so try again from the top. - */ - qemu_log_mask(CPU_LOG_INT, - "...derived exception on callee-saves register stacking"); - v7m_exception_taken(cpu, lr, true, true); - return; - } - - if (!arm_v7m_load_vector(cpu, exc, targets_secure, &addr)) { - /* Vector load failed: derived exception */ - qemu_log_mask(CPU_LOG_INT, "...derived exception on vector table load"); - v7m_exception_taken(cpu, lr, true, true); - return; - } - - /* - * Now we've done everything that might cause a derived exception - * we can go ahead and activate whichever exception we're going to - * take (which might now be the derived exception). - */ - armv7m_nvic_acknowledge_irq(env->nvic); - - /* Switch to target security state -- must do this before writing SPSEL */ - switch_v7m_security_state(env, targets_secure); - write_v7m_control_spsel(env, 0); - arm_clear_exclusive(env); - /* Clear SFPA and FPCA (has no effect if no FPU) */ - env->v7m.control[M_REG_S] &= - ~(R_V7M_CONTROL_FPCA_MASK | R_V7M_CONTROL_SFPA_MASK); - /* Clear IT bits */ - env->condexec_bits = 0; - env->regs[14] = lr; - env->regs[15] = addr & 0xfffffffe; - env->thumb = addr & 1; -} - -static void v7m_update_fpccr(CPUARMState *env, uint32_t frameptr, - bool apply_splim) -{ - /* - * Like the pseudocode UpdateFPCCR: save state in FPCAR and FPCCR - * that we will need later in order to do lazy FP reg stacking. - */ - bool is_secure = env->v7m.secure; - void *nvic = env->nvic; - /* - * Some bits are unbanked and live always in fpccr[M_REG_S]; some bits - * are banked and we want to update the bit in the bank for the - * current security state; and in one case we want to specifically - * update the NS banked version of a bit even if we are secure. - */ - uint32_t *fpccr_s = &env->v7m.fpccr[M_REG_S]; - uint32_t *fpccr_ns = &env->v7m.fpccr[M_REG_NS]; - uint32_t *fpccr = &env->v7m.fpccr[is_secure]; - bool hfrdy, bfrdy, mmrdy, ns_ufrdy, s_ufrdy, sfrdy, monrdy; - - env->v7m.fpcar[is_secure] = frameptr & ~0x7; - - if (apply_splim && arm_feature(env, ARM_FEATURE_V8)) { - bool splimviol; - uint32_t splim = v7m_sp_limit(env); - bool ign = armv7m_nvic_neg_prio_requested(nvic, is_secure) && - (env->v7m.ccr[is_secure] & R_V7M_CCR_STKOFHFNMIGN_MASK); - - splimviol = !ign && frameptr < splim; - *fpccr = FIELD_DP32(*fpccr, V7M_FPCCR, SPLIMVIOL, splimviol); - } - - *fpccr = FIELD_DP32(*fpccr, V7M_FPCCR, LSPACT, 1); - - *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, S, is_secure); - - *fpccr = FIELD_DP32(*fpccr, V7M_FPCCR, USER, arm_current_el(env) == 0); - - *fpccr = FIELD_DP32(*fpccr, V7M_FPCCR, THREAD, - !arm_v7m_is_handler_mode(env)); - - hfrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_HARD, false); - *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, HFRDY, hfrdy); - - bfrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_BUS, false); - *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, BFRDY, bfrdy); - - mmrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_MEM, is_secure); - *fpccr = FIELD_DP32(*fpccr, V7M_FPCCR, MMRDY, mmrdy); - - ns_ufrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_USAGE, false); - *fpccr_ns = FIELD_DP32(*fpccr_ns, V7M_FPCCR, UFRDY, ns_ufrdy); - - monrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_DEBUG, false); - *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, MONRDY, monrdy); - - if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { - s_ufrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_USAGE, true); - *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, UFRDY, s_ufrdy); - - sfrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_SECURE, false); - *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, SFRDY, sfrdy); - } -} - -void HELPER(v7m_vlstm)(CPUARMState *env, uint32_t fptr) -{ - /* fptr is the value of Rn, the frame pointer we store the FP regs to */ - bool s = env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_S_MASK; - bool lspact = env->v7m.fpccr[s] & R_V7M_FPCCR_LSPACT_MASK; - - assert(env->v7m.secure); - - if (!(env->v7m.control[M_REG_S] & R_V7M_CONTROL_SFPA_MASK)) { - return; - } - - /* Check access to the coprocessor is permitted */ - if (!v7m_cpacr_pass(env, true, arm_current_el(env) != 0)) { - raise_exception_ra(env, EXCP_NOCP, 0, 1, GETPC()); - } - - if (lspact) { - /* LSPACT should not be active when there is active FP state */ - raise_exception_ra(env, EXCP_LSERR, 0, 1, GETPC()); - } - - if (fptr & 7) { - raise_exception_ra(env, EXCP_UNALIGNED, 0, 1, GETPC()); - } - - /* - * Note that we do not use v7m_stack_write() here, because the - * accesses should not set the FSR bits for stacking errors if they - * fail. (In pseudocode terms, they are AccType_NORMAL, not AccType_STACK - * or AccType_LAZYFP). Faults in cpu_stl_data() will throw exceptions - * and longjmp out. - */ - if (!(env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_LSPEN_MASK)) { - bool ts = env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_TS_MASK; - int i; - - for (i = 0; i < (ts ? 32 : 16); i += 2) { - uint64_t dn = *aa32_vfp_dreg(env, i / 2); - uint32_t faddr = fptr + 4 * i; - uint32_t slo = extract64(dn, 0, 32); - uint32_t shi = extract64(dn, 32, 32); - - if (i >= 16) { - faddr += 8; /* skip the slot for the FPSCR */ - } - cpu_stl_data(env, faddr, slo); - cpu_stl_data(env, faddr + 4, shi); - } - cpu_stl_data(env, fptr + 0x40, vfp_get_fpscr(env)); - - /* - * If TS is 0 then s0 to s15 and FPSCR are UNKNOWN; we choose to - * leave them unchanged, matching our choice in v7m_preserve_fp_state. - */ - if (ts) { - for (i = 0; i < 32; i += 2) { - *aa32_vfp_dreg(env, i / 2) = 0; - } - vfp_set_fpscr(env, 0); - } - } else { - v7m_update_fpccr(env, fptr, false); - } - - env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_FPCA_MASK; -} - -void HELPER(v7m_vlldm)(CPUARMState *env, uint32_t fptr) -{ - /* fptr is the value of Rn, the frame pointer we load the FP regs from */ - assert(env->v7m.secure); - - if (!(env->v7m.control[M_REG_S] & R_V7M_CONTROL_SFPA_MASK)) { - return; - } - - /* Check access to the coprocessor is permitted */ - if (!v7m_cpacr_pass(env, true, arm_current_el(env) != 0)) { - raise_exception_ra(env, EXCP_NOCP, 0, 1, GETPC()); - } - - if (env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_LSPACT_MASK) { - /* State in FP is still valid */ - env->v7m.fpccr[M_REG_S] &= ~R_V7M_FPCCR_LSPACT_MASK; - } else { - bool ts = env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_TS_MASK; - int i; - uint32_t fpscr; - - if (fptr & 7) { - raise_exception_ra(env, EXCP_UNALIGNED, 0, 1, GETPC()); - } - - for (i = 0; i < (ts ? 32 : 16); i += 2) { - uint32_t slo, shi; - uint64_t dn; - uint32_t faddr = fptr + 4 * i; - - if (i >= 16) { - faddr += 8; /* skip the slot for the FPSCR */ - } - - slo = cpu_ldl_data(env, faddr); - shi = cpu_ldl_data(env, faddr + 4); - - dn = (uint64_t) shi << 32 | slo; - *aa32_vfp_dreg(env, i / 2) = dn; - } - fpscr = cpu_ldl_data(env, fptr + 0x40); - vfp_set_fpscr(env, fpscr); - } - - env->v7m.control[M_REG_S] |= R_V7M_CONTROL_FPCA_MASK; -} - -static bool v7m_push_stack(ARMCPU *cpu) -{ - /* - * Do the "set up stack frame" part of exception entry, - * similar to pseudocode PushStack(). - * Return true if we generate a derived exception (and so - * should ignore further stack faults trying to process - * that derived exception.) - */ - bool stacked_ok = true, limitviol = false; - CPUARMState *env = &cpu->env; - uint32_t xpsr = xpsr_read(env); - uint32_t frameptr = env->regs[13]; - ARMMMUIdx mmu_idx = arm_mmu_idx(env); - uint32_t framesize; - bool nsacr_cp10 = extract32(env->v7m.nsacr, 10, 1); - - if ((env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK) && - (env->v7m.secure || nsacr_cp10)) { - if (env->v7m.secure && - env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_TS_MASK) { - framesize = 0xa8; - } else { - framesize = 0x68; - } - } else { - framesize = 0x20; - } - - /* Align stack pointer if the guest wants that */ - if ((frameptr & 4) && - (env->v7m.ccr[env->v7m.secure] & R_V7M_CCR_STKALIGN_MASK)) { - frameptr -= 4; - xpsr |= XPSR_SPREALIGN; - } - - xpsr &= ~XPSR_SFPA; - if (env->v7m.secure && - (env->v7m.control[M_REG_S] & R_V7M_CONTROL_SFPA_MASK)) { - xpsr |= XPSR_SFPA; - } - - frameptr -= framesize; - - if (arm_feature(env, ARM_FEATURE_V8)) { - uint32_t limit = v7m_sp_limit(env); - - if (frameptr < limit) { - /* - * Stack limit failure: set SP to the limit value, and generate - * STKOF UsageFault. Stack pushes below the limit must not be - * performed. It is IMPDEF whether pushes above the limit are - * performed; we choose not to. - */ - qemu_log_mask(CPU_LOG_INT, - "...STKOF during stacking\n"); - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_STKOF_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, - env->v7m.secure); - env->regs[13] = limit; - /* - * We won't try to perform any further memory accesses but - * we must continue through the following code to check for - * permission faults during FPU state preservation, and we - * must update FPCCR if lazy stacking is enabled. - */ - limitviol = true; - stacked_ok = false; - } - } - - /* - * Write as much of the stack frame as we can. If we fail a stack - * write this will result in a derived exception being pended - * (which may be taken in preference to the one we started with - * if it has higher priority). - */ - stacked_ok = stacked_ok && - v7m_stack_write(cpu, frameptr, env->regs[0], mmu_idx, STACK_NORMAL) && - v7m_stack_write(cpu, frameptr + 4, env->regs[1], - mmu_idx, STACK_NORMAL) && - v7m_stack_write(cpu, frameptr + 8, env->regs[2], - mmu_idx, STACK_NORMAL) && - v7m_stack_write(cpu, frameptr + 12, env->regs[3], - mmu_idx, STACK_NORMAL) && - v7m_stack_write(cpu, frameptr + 16, env->regs[12], - mmu_idx, STACK_NORMAL) && - v7m_stack_write(cpu, frameptr + 20, env->regs[14], - mmu_idx, STACK_NORMAL) && - v7m_stack_write(cpu, frameptr + 24, env->regs[15], - mmu_idx, STACK_NORMAL) && - v7m_stack_write(cpu, frameptr + 28, xpsr, mmu_idx, STACK_NORMAL); - - if (env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK) { - /* FPU is active, try to save its registers */ - bool fpccr_s = env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_S_MASK; - bool lspact = env->v7m.fpccr[fpccr_s] & R_V7M_FPCCR_LSPACT_MASK; - - if (lspact && arm_feature(env, ARM_FEATURE_M_SECURITY)) { - qemu_log_mask(CPU_LOG_INT, - "...SecureFault because LSPACT and FPCA both set\n"); - env->v7m.sfsr |= R_V7M_SFSR_LSERR_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); - } else if (!env->v7m.secure && !nsacr_cp10) { - qemu_log_mask(CPU_LOG_INT, - "...Secure UsageFault with CFSR.NOCP because " - "NSACR.CP10 prevents stacking FP regs\n"); - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, M_REG_S); - env->v7m.cfsr[M_REG_S] |= R_V7M_CFSR_NOCP_MASK; - } else { - if (!(env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_LSPEN_MASK)) { - /* Lazy stacking disabled, save registers now */ - int i; - bool cpacr_pass = v7m_cpacr_pass(env, env->v7m.secure, - arm_current_el(env) != 0); - - if (stacked_ok && !cpacr_pass) { - /* - * Take UsageFault if CPACR forbids access. The pseudocode - * here does a full CheckCPEnabled() but we know the NSACR - * check can never fail as we have already handled that. - */ - qemu_log_mask(CPU_LOG_INT, - "...UsageFault with CFSR.NOCP because " - "CPACR.CP10 prevents stacking FP regs\n"); - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, - env->v7m.secure); - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_NOCP_MASK; - stacked_ok = false; - } - - for (i = 0; i < ((framesize == 0xa8) ? 32 : 16); i += 2) { - uint64_t dn = *aa32_vfp_dreg(env, i / 2); - uint32_t faddr = frameptr + 0x20 + 4 * i; - uint32_t slo = extract64(dn, 0, 32); - uint32_t shi = extract64(dn, 32, 32); - - if (i >= 16) { - faddr += 8; /* skip the slot for the FPSCR */ - } - stacked_ok = stacked_ok && - v7m_stack_write(cpu, faddr, slo, - mmu_idx, STACK_NORMAL) && - v7m_stack_write(cpu, faddr + 4, shi, - mmu_idx, STACK_NORMAL); - } - stacked_ok = stacked_ok && - v7m_stack_write(cpu, frameptr + 0x60, - vfp_get_fpscr(env), mmu_idx, STACK_NORMAL); - if (cpacr_pass) { - for (i = 0; i < ((framesize == 0xa8) ? 32 : 16); i += 2) { - *aa32_vfp_dreg(env, i / 2) = 0; - } - vfp_set_fpscr(env, 0); - } - } else { - /* Lazy stacking enabled, save necessary info to stack later */ - v7m_update_fpccr(env, frameptr + 0x20, true); - } - } - } - - /* - * If we broke a stack limit then SP was already updated earlier; - * otherwise we update SP regardless of whether any of the stack - * accesses failed or we took some other kind of fault. - */ - if (!limitviol) { - env->regs[13] = frameptr; - } - - return !stacked_ok; -} - -static void do_v7m_exception_exit(ARMCPU *cpu) -{ - CPUARMState *env = &cpu->env; - uint32_t excret; - uint32_t xpsr, xpsr_mask; - bool ufault = false; - bool sfault = false; - bool return_to_sp_process; - bool return_to_handler; - bool rettobase = false; - bool exc_secure = false; - bool return_to_secure; - bool ftype; - bool restore_s16_s31; - - /* - * If we're not in Handler mode then jumps to magic exception-exit - * addresses don't have magic behaviour. However for the v8M - * security extensions the magic secure-function-return has to - * work in thread mode too, so to avoid doing an extra check in - * the generated code we allow exception-exit magic to also cause the - * internal exception and bring us here in thread mode. Correct code - * will never try to do this (the following insn fetch will always - * fault) so we the overhead of having taken an unnecessary exception - * doesn't matter. - */ - if (!arm_v7m_is_handler_mode(env)) { - return; - } - - /* - * In the spec pseudocode ExceptionReturn() is called directly - * from BXWritePC() and gets the full target PC value including - * bit zero. In QEMU's implementation we treat it as a normal - * jump-to-register (which is then caught later on), and so split - * the target value up between env->regs[15] and env->thumb in - * gen_bx(). Reconstitute it. - */ - excret = env->regs[15]; - if (env->thumb) { - excret |= 1; - } - - qemu_log_mask(CPU_LOG_INT, "Exception return: magic PC %" PRIx32 - " previous exception %d\n", - excret, env->v7m.exception); - - if ((excret & R_V7M_EXCRET_RES1_MASK) != R_V7M_EXCRET_RES1_MASK) { - qemu_log_mask(LOG_GUEST_ERROR, "M profile: zero high bits in exception " - "exit PC value 0x%" PRIx32 " are UNPREDICTABLE\n", - excret); - } - - ftype = excret & R_V7M_EXCRET_FTYPE_MASK; - - if (!arm_feature(env, ARM_FEATURE_VFP) && !ftype) { - qemu_log_mask(LOG_GUEST_ERROR, "M profile: zero FTYPE in exception " - "exit PC value 0x%" PRIx32 " is UNPREDICTABLE " - "if FPU not present\n", - excret); - ftype = true; - } - - if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { - /* - * EXC_RETURN.ES validation check (R_SMFL). We must do this before - * we pick which FAULTMASK to clear. - */ - if (!env->v7m.secure && - ((excret & R_V7M_EXCRET_ES_MASK) || - !(excret & R_V7M_EXCRET_DCRS_MASK))) { - sfault = 1; - /* For all other purposes, treat ES as 0 (R_HXSR) */ - excret &= ~R_V7M_EXCRET_ES_MASK; - } - exc_secure = excret & R_V7M_EXCRET_ES_MASK; - } - - if (env->v7m.exception != ARMV7M_EXCP_NMI) { - /* - * Auto-clear FAULTMASK on return from other than NMI. - * If the security extension is implemented then this only - * happens if the raw execution priority is >= 0; the - * value of the ES bit in the exception return value indicates - * which security state's faultmask to clear. (v8M ARM ARM R_KBNF.) - */ - if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { - if (armv7m_nvic_raw_execution_priority(env->nvic) >= 0) { - env->v7m.faultmask[exc_secure] = 0; - } - } else { - env->v7m.faultmask[M_REG_NS] = 0; - } - } - - switch (armv7m_nvic_complete_irq(env->nvic, env->v7m.exception, - exc_secure)) { - case -1: - /* attempt to exit an exception that isn't active */ - ufault = true; - break; - case 0: - /* still an irq active now */ - break; - case 1: - /* - * We returned to base exception level, no nesting. - * (In the pseudocode this is written using "NestedActivation != 1" - * where we have 'rettobase == false'.) - */ - rettobase = true; - break; - default: - g_assert_not_reached(); - } - - return_to_handler = !(excret & R_V7M_EXCRET_MODE_MASK); - return_to_sp_process = excret & R_V7M_EXCRET_SPSEL_MASK; - return_to_secure = arm_feature(env, ARM_FEATURE_M_SECURITY) && - (excret & R_V7M_EXCRET_S_MASK); - - if (arm_feature(env, ARM_FEATURE_V8)) { - if (!arm_feature(env, ARM_FEATURE_M_SECURITY)) { - /* - * UNPREDICTABLE if S == 1 or DCRS == 0 or ES == 1 (R_XLCP); - * we choose to take the UsageFault. - */ - if ((excret & R_V7M_EXCRET_S_MASK) || - (excret & R_V7M_EXCRET_ES_MASK) || - !(excret & R_V7M_EXCRET_DCRS_MASK)) { - ufault = true; - } - } - if (excret & R_V7M_EXCRET_RES0_MASK) { - ufault = true; - } - } else { - /* For v7M we only recognize certain combinations of the low bits */ - switch (excret & 0xf) { - case 1: /* Return to Handler */ - break; - case 13: /* Return to Thread using Process stack */ - case 9: /* Return to Thread using Main stack */ - /* - * We only need to check NONBASETHRDENA for v7M, because in - * v8M this bit does not exist (it is RES1). - */ - if (!rettobase && - !(env->v7m.ccr[env->v7m.secure] & - R_V7M_CCR_NONBASETHRDENA_MASK)) { - ufault = true; - } - break; - default: - ufault = true; - } - } - - /* - * Set CONTROL.SPSEL from excret.SPSEL. Since we're still in - * Handler mode (and will be until we write the new XPSR.Interrupt - * field) this does not switch around the current stack pointer. - * We must do this before we do any kind of tailchaining, including - * for the derived exceptions on integrity check failures, or we will - * give the guest an incorrect EXCRET.SPSEL value on exception entry. - */ - write_v7m_control_spsel_for_secstate(env, return_to_sp_process, exc_secure); - - /* - * Clear scratch FP values left in caller saved registers; this - * must happen before any kind of tail chaining. - */ - if ((env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_CLRONRET_MASK) && - (env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK)) { - if (env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_LSPACT_MASK) { - env->v7m.sfsr |= R_V7M_SFSR_LSERR_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); - qemu_log_mask(CPU_LOG_INT, "...taking SecureFault on existing " - "stackframe: error during lazy state deactivation\n"); - v7m_exception_taken(cpu, excret, true, false); - return; - } else { - /* Clear s0..s15 and FPSCR */ - int i; - - for (i = 0; i < 16; i += 2) { - *aa32_vfp_dreg(env, i / 2) = 0; - } - vfp_set_fpscr(env, 0); - } - } - - if (sfault) { - env->v7m.sfsr |= R_V7M_SFSR_INVER_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); - qemu_log_mask(CPU_LOG_INT, "...taking SecureFault on existing " - "stackframe: failed EXC_RETURN.ES validity check\n"); - v7m_exception_taken(cpu, excret, true, false); - return; - } - - if (ufault) { - /* - * Bad exception return: instead of popping the exception - * stack, directly take a usage fault on the current stack. - */ - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_INVPC_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, env->v7m.secure); - qemu_log_mask(CPU_LOG_INT, "...taking UsageFault on existing " - "stackframe: failed exception return integrity check\n"); - v7m_exception_taken(cpu, excret, true, false); - return; - } - - /* - * Tailchaining: if there is currently a pending exception that - * is high enough priority to preempt execution at the level we're - * about to return to, then just directly take that exception now, - * avoiding an unstack-and-then-stack. Note that now we have - * deactivated the previous exception by calling armv7m_nvic_complete_irq() - * our current execution priority is already the execution priority we are - * returning to -- none of the state we would unstack or set based on - * the EXCRET value affects it. - */ - if (armv7m_nvic_can_take_pending_exception(env->nvic)) { - qemu_log_mask(CPU_LOG_INT, "...tailchaining to pending exception\n"); - v7m_exception_taken(cpu, excret, true, false); - return; - } - - switch_v7m_security_state(env, return_to_secure); - - { - /* - * The stack pointer we should be reading the exception frame from - * depends on bits in the magic exception return type value (and - * for v8M isn't necessarily the stack pointer we will eventually - * end up resuming execution with). Get a pointer to the location - * in the CPU state struct where the SP we need is currently being - * stored; we will use and modify it in place. - * We use this limited C variable scope so we don't accidentally - * use 'frame_sp_p' after we do something that makes it invalid. - */ - uint32_t *frame_sp_p = get_v7m_sp_ptr(env, - return_to_secure, - !return_to_handler, - return_to_sp_process); - uint32_t frameptr = *frame_sp_p; - bool pop_ok = true; - ARMMMUIdx mmu_idx; - bool return_to_priv = return_to_handler || - !(env->v7m.control[return_to_secure] & R_V7M_CONTROL_NPRIV_MASK); - - mmu_idx = arm_v7m_mmu_idx_for_secstate_and_priv(env, return_to_secure, - return_to_priv); - - if (!QEMU_IS_ALIGNED(frameptr, 8) && - arm_feature(env, ARM_FEATURE_V8)) { - qemu_log_mask(LOG_GUEST_ERROR, - "M profile exception return with non-8-aligned SP " - "for destination state is UNPREDICTABLE\n"); - } - - /* Do we need to pop callee-saved registers? */ - if (return_to_secure && - ((excret & R_V7M_EXCRET_ES_MASK) == 0 || - (excret & R_V7M_EXCRET_DCRS_MASK) == 0)) { - uint32_t actual_sig; - - pop_ok = v7m_stack_read(cpu, &actual_sig, frameptr, mmu_idx); - - if (pop_ok && v7m_integrity_sig(env, excret) != actual_sig) { - /* Take a SecureFault on the current stack */ - env->v7m.sfsr |= R_V7M_SFSR_INVIS_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); - qemu_log_mask(CPU_LOG_INT, "...taking SecureFault on existing " - "stackframe: failed exception return integrity " - "signature check\n"); - v7m_exception_taken(cpu, excret, true, false); - return; - } - - pop_ok = pop_ok && - v7m_stack_read(cpu, &env->regs[4], frameptr + 0x8, mmu_idx) && - v7m_stack_read(cpu, &env->regs[5], frameptr + 0xc, mmu_idx) && - v7m_stack_read(cpu, &env->regs[6], frameptr + 0x10, mmu_idx) && - v7m_stack_read(cpu, &env->regs[7], frameptr + 0x14, mmu_idx) && - v7m_stack_read(cpu, &env->regs[8], frameptr + 0x18, mmu_idx) && - v7m_stack_read(cpu, &env->regs[9], frameptr + 0x1c, mmu_idx) && - v7m_stack_read(cpu, &env->regs[10], frameptr + 0x20, mmu_idx) && - v7m_stack_read(cpu, &env->regs[11], frameptr + 0x24, mmu_idx); - - frameptr += 0x28; - } - - /* Pop registers */ - pop_ok = pop_ok && - v7m_stack_read(cpu, &env->regs[0], frameptr, mmu_idx) && - v7m_stack_read(cpu, &env->regs[1], frameptr + 0x4, mmu_idx) && - v7m_stack_read(cpu, &env->regs[2], frameptr + 0x8, mmu_idx) && - v7m_stack_read(cpu, &env->regs[3], frameptr + 0xc, mmu_idx) && - v7m_stack_read(cpu, &env->regs[12], frameptr + 0x10, mmu_idx) && - v7m_stack_read(cpu, &env->regs[14], frameptr + 0x14, mmu_idx) && - v7m_stack_read(cpu, &env->regs[15], frameptr + 0x18, mmu_idx) && - v7m_stack_read(cpu, &xpsr, frameptr + 0x1c, mmu_idx); - - if (!pop_ok) { - /* - * v7m_stack_read() pended a fault, so take it (as a tail - * chained exception on the same stack frame) - */ - qemu_log_mask(CPU_LOG_INT, "...derived exception on unstacking\n"); - v7m_exception_taken(cpu, excret, true, false); - return; - } - - /* - * Returning from an exception with a PC with bit 0 set is defined - * behaviour on v8M (bit 0 is ignored), but for v7M it was specified - * to be UNPREDICTABLE. In practice actual v7M hardware seems to ignore - * the lsbit, and there are several RTOSes out there which incorrectly - * assume the r15 in the stack frame should be a Thumb-style "lsbit - * indicates ARM/Thumb" value, so ignore the bit on v7M as well, but - * complain about the badly behaved guest. - */ - if (env->regs[15] & 1) { - env->regs[15] &= ~1U; - if (!arm_feature(env, ARM_FEATURE_V8)) { - qemu_log_mask(LOG_GUEST_ERROR, - "M profile return from interrupt with misaligned " - "PC is UNPREDICTABLE on v7M\n"); - } - } - - if (arm_feature(env, ARM_FEATURE_V8)) { - /* - * For v8M we have to check whether the xPSR exception field - * matches the EXCRET value for return to handler/thread - * before we commit to changing the SP and xPSR. - */ - bool will_be_handler = (xpsr & XPSR_EXCP) != 0; - if (return_to_handler != will_be_handler) { - /* - * Take an INVPC UsageFault on the current stack. - * By this point we will have switched to the security state - * for the background state, so this UsageFault will target - * that state. - */ - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, - env->v7m.secure); - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_INVPC_MASK; - qemu_log_mask(CPU_LOG_INT, "...taking UsageFault on existing " - "stackframe: failed exception return integrity " - "check\n"); - v7m_exception_taken(cpu, excret, true, false); - return; - } - } - - if (!ftype) { - /* FP present and we need to handle it */ - if (!return_to_secure && - (env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_LSPACT_MASK)) { - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); - env->v7m.sfsr |= R_V7M_SFSR_LSERR_MASK; - qemu_log_mask(CPU_LOG_INT, - "...taking SecureFault on existing stackframe: " - "Secure LSPACT set but exception return is " - "not to secure state\n"); - v7m_exception_taken(cpu, excret, true, false); - return; - } - - restore_s16_s31 = return_to_secure && - (env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_TS_MASK); - - if (env->v7m.fpccr[return_to_secure] & R_V7M_FPCCR_LSPACT_MASK) { - /* State in FPU is still valid, just clear LSPACT */ - env->v7m.fpccr[return_to_secure] &= ~R_V7M_FPCCR_LSPACT_MASK; - } else { - int i; - uint32_t fpscr; - bool cpacr_pass, nsacr_pass; - - cpacr_pass = v7m_cpacr_pass(env, return_to_secure, - return_to_priv); - nsacr_pass = return_to_secure || - extract32(env->v7m.nsacr, 10, 1); - - if (!cpacr_pass) { - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, - return_to_secure); - env->v7m.cfsr[return_to_secure] |= R_V7M_CFSR_NOCP_MASK; - qemu_log_mask(CPU_LOG_INT, - "...taking UsageFault on existing " - "stackframe: CPACR.CP10 prevents unstacking " - "FP regs\n"); - v7m_exception_taken(cpu, excret, true, false); - return; - } else if (!nsacr_pass) { - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, true); - env->v7m.cfsr[M_REG_S] |= R_V7M_CFSR_INVPC_MASK; - qemu_log_mask(CPU_LOG_INT, - "...taking Secure UsageFault on existing " - "stackframe: NSACR.CP10 prevents unstacking " - "FP regs\n"); - v7m_exception_taken(cpu, excret, true, false); - return; - } - - for (i = 0; i < (restore_s16_s31 ? 32 : 16); i += 2) { - uint32_t slo, shi; - uint64_t dn; - uint32_t faddr = frameptr + 0x20 + 4 * i; - - if (i >= 16) { - faddr += 8; /* Skip the slot for the FPSCR */ - } - - pop_ok = pop_ok && - v7m_stack_read(cpu, &slo, faddr, mmu_idx) && - v7m_stack_read(cpu, &shi, faddr + 4, mmu_idx); - - if (!pop_ok) { - break; - } - - dn = (uint64_t)shi << 32 | slo; - *aa32_vfp_dreg(env, i / 2) = dn; - } - pop_ok = pop_ok && - v7m_stack_read(cpu, &fpscr, frameptr + 0x60, mmu_idx); - if (pop_ok) { - vfp_set_fpscr(env, fpscr); - } - if (!pop_ok) { - /* - * These regs are 0 if security extension present; - * otherwise merely UNKNOWN. We zero always. - */ - for (i = 0; i < (restore_s16_s31 ? 32 : 16); i += 2) { - *aa32_vfp_dreg(env, i / 2) = 0; - } - vfp_set_fpscr(env, 0); - } - } - } - env->v7m.control[M_REG_S] = FIELD_DP32(env->v7m.control[M_REG_S], - V7M_CONTROL, FPCA, !ftype); - - /* Commit to consuming the stack frame */ - frameptr += 0x20; - if (!ftype) { - frameptr += 0x48; - if (restore_s16_s31) { - frameptr += 0x40; - } - } - /* - * Undo stack alignment (the SPREALIGN bit indicates that the original - * pre-exception SP was not 8-aligned and we added a padding word to - * align it, so we undo this by ORing in the bit that increases it - * from the current 8-aligned value to the 8-unaligned value. (Adding 4 - * would work too but a logical OR is how the pseudocode specifies it.) - */ - if (xpsr & XPSR_SPREALIGN) { - frameptr |= 4; - } - *frame_sp_p = frameptr; - } - - xpsr_mask = ~(XPSR_SPREALIGN | XPSR_SFPA); - if (!arm_feature(env, ARM_FEATURE_THUMB_DSP)) { - xpsr_mask &= ~XPSR_GE; - } - /* This xpsr_write() will invalidate frame_sp_p as it may switch stack */ - xpsr_write(env, xpsr, xpsr_mask); - - if (env->v7m.secure) { - bool sfpa = xpsr & XPSR_SFPA; - - env->v7m.control[M_REG_S] = FIELD_DP32(env->v7m.control[M_REG_S], - V7M_CONTROL, SFPA, sfpa); - } - - /* - * The restored xPSR exception field will be zero if we're - * resuming in Thread mode. If that doesn't match what the - * exception return excret specified then this is a UsageFault. - * v7M requires we make this check here; v8M did it earlier. - */ - if (return_to_handler != arm_v7m_is_handler_mode(env)) { - /* - * Take an INVPC UsageFault by pushing the stack again; - * we know we're v7M so this is never a Secure UsageFault. - */ - bool ignore_stackfaults; - - assert(!arm_feature(env, ARM_FEATURE_V8)); - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, false); - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_INVPC_MASK; - ignore_stackfaults = v7m_push_stack(cpu); - qemu_log_mask(CPU_LOG_INT, "...taking UsageFault on new stackframe: " - "failed exception return integrity check\n"); - v7m_exception_taken(cpu, excret, false, ignore_stackfaults); - return; - } - - /* Otherwise, we have a successful exception exit. */ - arm_clear_exclusive(env); - qemu_log_mask(CPU_LOG_INT, "...successful exception return\n"); -} - -static bool do_v7m_function_return(ARMCPU *cpu) -{ - /* - * v8M security extensions magic function return. - * We may either: - * (1) throw an exception (longjump) - * (2) return true if we successfully handled the function return - * (3) return false if we failed a consistency check and have - * pended a UsageFault that needs to be taken now - * - * At this point the magic return value is split between env->regs[15] - * and env->thumb. We don't bother to reconstitute it because we don't - * need it (all values are handled the same way). - */ - CPUARMState *env = &cpu->env; - uint32_t newpc, newpsr, newpsr_exc; - - qemu_log_mask(CPU_LOG_INT, "...really v7M secure function return\n"); - - { - bool threadmode, spsel; - TCGMemOpIdx oi; - ARMMMUIdx mmu_idx; - uint32_t *frame_sp_p; - uint32_t frameptr; - - /* Pull the return address and IPSR from the Secure stack */ - threadmode = !arm_v7m_is_handler_mode(env); - spsel = env->v7m.control[M_REG_S] & R_V7M_CONTROL_SPSEL_MASK; - - frame_sp_p = get_v7m_sp_ptr(env, true, threadmode, spsel); - frameptr = *frame_sp_p; - - /* - * These loads may throw an exception (for MPU faults). We want to - * do them as secure, so work out what MMU index that is. - */ - mmu_idx = arm_v7m_mmu_idx_for_secstate(env, true); - oi = make_memop_idx(MO_LE, arm_to_core_mmu_idx(mmu_idx)); - newpc = helper_le_ldul_mmu(env, frameptr, oi, 0); - newpsr = helper_le_ldul_mmu(env, frameptr + 4, oi, 0); - - /* Consistency checks on new IPSR */ - newpsr_exc = newpsr & XPSR_EXCP; - if (!((env->v7m.exception == 0 && newpsr_exc == 0) || - (env->v7m.exception == 1 && newpsr_exc != 0))) { - /* Pend the fault and tell our caller to take it */ - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_INVPC_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, - env->v7m.secure); - qemu_log_mask(CPU_LOG_INT, - "...taking INVPC UsageFault: " - "IPSR consistency check failed\n"); - return false; - } - - *frame_sp_p = frameptr + 8; - } - - /* This invalidates frame_sp_p */ - switch_v7m_security_state(env, true); - env->v7m.exception = newpsr_exc; - env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_SFPA_MASK; - if (newpsr & XPSR_SFPA) { - env->v7m.control[M_REG_S] |= R_V7M_CONTROL_SFPA_MASK; - } - xpsr_write(env, 0, XPSR_IT); - env->thumb = newpc & 1; - env->regs[15] = newpc & ~1; - - qemu_log_mask(CPU_LOG_INT, "...function return successful\n"); - return true; -} - -static bool v7m_read_half_insn(ARMCPU *cpu, ARMMMUIdx mmu_idx, - uint32_t addr, uint16_t *insn) -{ - /* - * Load a 16-bit portion of a v7M instruction, returning true on success, - * or false on failure (in which case we will have pended the appropriate - * exception). - * We need to do the instruction fetch's MPU and SAU checks - * like this because there is no MMU index that would allow - * doing the load with a single function call. Instead we must - * first check that the security attributes permit the load - * and that they don't mismatch on the two halves of the instruction, - * and then we do the load as a secure load (ie using the security - * attributes of the address, not the CPU, as architecturally required). - */ - CPUState *cs = CPU(cpu); - CPUARMState *env = &cpu->env; - V8M_SAttributes sattrs = {}; - MemTxAttrs attrs = {}; - ARMMMUFaultInfo fi = {}; - MemTxResult txres; - target_ulong page_size; - hwaddr physaddr; - int prot; - - v8m_security_lookup(env, addr, MMU_INST_FETCH, mmu_idx, &sattrs); - if (!sattrs.nsc || sattrs.ns) { - /* - * This must be the second half of the insn, and it straddles a - * region boundary with the second half not being S&NSC. - */ - env->v7m.sfsr |= R_V7M_SFSR_INVEP_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); - qemu_log_mask(CPU_LOG_INT, - "...really SecureFault with SFSR.INVEP\n"); - return false; - } - if (get_phys_addr(env, addr, MMU_INST_FETCH, mmu_idx, - &physaddr, &attrs, &prot, &page_size, &fi, NULL)) { - /* the MPU lookup failed */ - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_IACCVIOL_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_MEM, env->v7m.secure); - qemu_log_mask(CPU_LOG_INT, "...really MemManage with CFSR.IACCVIOL\n"); - return false; - } - *insn = address_space_lduw_le(arm_addressspace(cs, attrs), physaddr, - attrs, &txres); - if (txres != MEMTX_OK) { - env->v7m.cfsr[M_REG_NS] |= R_V7M_CFSR_IBUSERR_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_BUS, false); - qemu_log_mask(CPU_LOG_INT, "...really BusFault with CFSR.IBUSERR\n"); - return false; - } - return true; -} - -static bool v7m_handle_execute_nsc(ARMCPU *cpu) -{ - /* - * Check whether this attempt to execute code in a Secure & NS-Callable - * memory region is for an SG instruction; if so, then emulate the - * effect of the SG instruction and return true. Otherwise pend - * the correct kind of exception and return false. - */ - CPUARMState *env = &cpu->env; - ARMMMUIdx mmu_idx; - uint16_t insn; - - /* - * We should never get here unless get_phys_addr_pmsav8() caused - * an exception for NS executing in S&NSC memory. - */ - assert(!env->v7m.secure); - assert(arm_feature(env, ARM_FEATURE_M_SECURITY)); - - /* We want to do the MPU lookup as secure; work out what mmu_idx that is */ - mmu_idx = arm_v7m_mmu_idx_for_secstate(env, true); - - if (!v7m_read_half_insn(cpu, mmu_idx, env->regs[15], &insn)) { - return false; - } - - if (!env->thumb) { - goto gen_invep; - } - - if (insn != 0xe97f) { - /* - * Not an SG instruction first half (we choose the IMPDEF - * early-SG-check option). - */ - goto gen_invep; - } - - if (!v7m_read_half_insn(cpu, mmu_idx, env->regs[15] + 2, &insn)) { - return false; - } - - if (insn != 0xe97f) { - /* - * Not an SG instruction second half (yes, both halves of the SG - * insn have the same hex value) - */ - goto gen_invep; - } - - /* - * OK, we have confirmed that we really have an SG instruction. - * We know we're NS in S memory so don't need to repeat those checks. - */ - qemu_log_mask(CPU_LOG_INT, "...really an SG instruction at 0x%08" PRIx32 - ", executing it\n", env->regs[15]); - env->regs[14] &= ~1; - env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_SFPA_MASK; - switch_v7m_security_state(env, true); - xpsr_write(env, 0, XPSR_IT); - env->regs[15] += 4; - return true; - -gen_invep: - env->v7m.sfsr |= R_V7M_SFSR_INVEP_MASK; - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); - qemu_log_mask(CPU_LOG_INT, - "...really SecureFault with SFSR.INVEP\n"); - return false; -} - -void arm_v7m_cpu_do_interrupt(CPUState *cs) -{ - ARMCPU *cpu = ARM_CPU(cs); - CPUARMState *env = &cpu->env; - uint32_t lr; - bool ignore_stackfaults; - - arm_log_exception(cs->exception_index); - - /* - * For exceptions we just mark as pending on the NVIC, and let that - * handle it. - */ - switch (cs->exception_index) { - case EXCP_UDEF: - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, env->v7m.secure); - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_UNDEFINSTR_MASK; - break; - case EXCP_NOCP: - { - /* - * NOCP might be directed to something other than the current - * security state if this fault is because of NSACR; we indicate - * the target security state using exception.target_el. - */ - int target_secstate; - - if (env->exception.target_el == 3) { - target_secstate = M_REG_S; - } else { - target_secstate = env->v7m.secure; - } - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, target_secstate); - env->v7m.cfsr[target_secstate] |= R_V7M_CFSR_NOCP_MASK; - break; - } - case EXCP_INVSTATE: - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, env->v7m.secure); - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_INVSTATE_MASK; - break; - case EXCP_STKOF: - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, env->v7m.secure); - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_STKOF_MASK; - break; - case EXCP_LSERR: - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); - env->v7m.sfsr |= R_V7M_SFSR_LSERR_MASK; - break; - case EXCP_UNALIGNED: - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, env->v7m.secure); - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_UNALIGNED_MASK; - break; - case EXCP_SWI: - /* The PC already points to the next instruction. */ - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SVC, env->v7m.secure); - break; - case EXCP_PREFETCH_ABORT: - case EXCP_DATA_ABORT: - /* - * Note that for M profile we don't have a guest facing FSR, but - * the env->exception.fsr will be populated by the code that - * raises the fault, in the A profile short-descriptor format. - */ - switch (env->exception.fsr & 0xf) { - case M_FAKE_FSR_NSC_EXEC: - /* - * Exception generated when we try to execute code at an address - * which is marked as Secure & Non-Secure Callable and the CPU - * is in the Non-Secure state. The only instruction which can - * be executed like this is SG (and that only if both halves of - * the SG instruction have the same security attributes.) - * Everything else must generate an INVEP SecureFault, so we - * emulate the SG instruction here. - */ - if (v7m_handle_execute_nsc(cpu)) { - return; - } - break; - case M_FAKE_FSR_SFAULT: - /* - * Various flavours of SecureFault for attempts to execute or - * access data in the wrong security state. - */ - switch (cs->exception_index) { - case EXCP_PREFETCH_ABORT: - if (env->v7m.secure) { - env->v7m.sfsr |= R_V7M_SFSR_INVTRAN_MASK; - qemu_log_mask(CPU_LOG_INT, - "...really SecureFault with SFSR.INVTRAN\n"); - } else { - env->v7m.sfsr |= R_V7M_SFSR_INVEP_MASK; - qemu_log_mask(CPU_LOG_INT, - "...really SecureFault with SFSR.INVEP\n"); - } - break; - case EXCP_DATA_ABORT: - /* This must be an NS access to S memory */ - env->v7m.sfsr |= R_V7M_SFSR_AUVIOL_MASK; - qemu_log_mask(CPU_LOG_INT, - "...really SecureFault with SFSR.AUVIOL\n"); - break; - } - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); - break; - case 0x8: /* External Abort */ - switch (cs->exception_index) { - case EXCP_PREFETCH_ABORT: - env->v7m.cfsr[M_REG_NS] |= R_V7M_CFSR_IBUSERR_MASK; - qemu_log_mask(CPU_LOG_INT, "...with CFSR.IBUSERR\n"); - break; - case EXCP_DATA_ABORT: - env->v7m.cfsr[M_REG_NS] |= - (R_V7M_CFSR_PRECISERR_MASK | R_V7M_CFSR_BFARVALID_MASK); - env->v7m.bfar = env->exception.vaddress; - qemu_log_mask(CPU_LOG_INT, - "...with CFSR.PRECISERR and BFAR 0x%x\n", - env->v7m.bfar); - break; - } - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_BUS, false); - break; - default: - /* - * All other FSR values are either MPU faults or "can't happen - * for M profile" cases. - */ - switch (cs->exception_index) { - case EXCP_PREFETCH_ABORT: - env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_IACCVIOL_MASK; - qemu_log_mask(CPU_LOG_INT, "...with CFSR.IACCVIOL\n"); - break; - case EXCP_DATA_ABORT: - env->v7m.cfsr[env->v7m.secure] |= - (R_V7M_CFSR_DACCVIOL_MASK | R_V7M_CFSR_MMARVALID_MASK); - env->v7m.mmfar[env->v7m.secure] = env->exception.vaddress; - qemu_log_mask(CPU_LOG_INT, - "...with CFSR.DACCVIOL and MMFAR 0x%x\n", - env->v7m.mmfar[env->v7m.secure]); - break; - } - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_MEM, - env->v7m.secure); - break; - } - break; - case EXCP_BKPT: - if (semihosting_enabled()) { - int nr; - nr = arm_lduw_code(env, env->regs[15], arm_sctlr_b(env)) & 0xff; - if (nr == 0xab) { - env->regs[15] += 2; - qemu_log_mask(CPU_LOG_INT, - "...handling as semihosting call 0x%x\n", - env->regs[0]); - env->regs[0] = do_arm_semihosting(env); - return; - } - } - armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_DEBUG, false); - break; - case EXCP_IRQ: - break; - case EXCP_EXCEPTION_EXIT: - if (env->regs[15] < EXC_RETURN_MIN_MAGIC) { - /* Must be v8M security extension function return */ - assert(env->regs[15] >= FNC_RETURN_MIN_MAGIC); - assert(arm_feature(env, ARM_FEATURE_M_SECURITY)); - if (do_v7m_function_return(cpu)) { - return; - } - } else { - do_v7m_exception_exit(cpu); - return; - } - break; - case EXCP_LAZYFP: - /* - * We already pended the specific exception in the NVIC in the - * v7m_preserve_fp_state() helper function. - */ - break; - default: - cpu_abort(cs, "Unhandled exception 0x%x\n", cs->exception_index); - return; /* Never happens. Keep compiler happy. */ - } - - if (arm_feature(env, ARM_FEATURE_V8)) { - lr = R_V7M_EXCRET_RES1_MASK | - R_V7M_EXCRET_DCRS_MASK; - /* - * The S bit indicates whether we should return to Secure - * or NonSecure (ie our current state). - * The ES bit indicates whether we're taking this exception - * to Secure or NonSecure (ie our target state). We set it - * later, in v7m_exception_taken(). - * The SPSEL bit is also set in v7m_exception_taken() for v8M. - * This corresponds to the ARM ARM pseudocode for v8M setting - * some LR bits in PushStack() and some in ExceptionTaken(); - * the distinction matters for the tailchain cases where we - * can take an exception without pushing the stack. - */ - if (env->v7m.secure) { - lr |= R_V7M_EXCRET_S_MASK; - } - if (!(env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK)) { - lr |= R_V7M_EXCRET_FTYPE_MASK; - } - } else { - lr = R_V7M_EXCRET_RES1_MASK | - R_V7M_EXCRET_S_MASK | - R_V7M_EXCRET_DCRS_MASK | - R_V7M_EXCRET_FTYPE_MASK | - R_V7M_EXCRET_ES_MASK; - if (env->v7m.control[M_REG_NS] & R_V7M_CONTROL_SPSEL_MASK) { - lr |= R_V7M_EXCRET_SPSEL_MASK; - } - } - if (!arm_v7m_is_handler_mode(env)) { - lr |= R_V7M_EXCRET_MODE_MASK; - } - - ignore_stackfaults = v7m_push_stack(cpu); - v7m_exception_taken(cpu, lr, false, ignore_stackfaults); -} - /* * Function used to synchronize QEMU's AArch64 register set with AArch32 * register set. This is necessary when switching between AArch32 and AArch64 @@ -XXX,XX +XXX,XX @@ hwaddr arm_cpu_get_phys_page_attrs_debug(CPUState *cs, vaddr addr, return phys_addr; } -uint32_t HELPER(v7m_mrs)(CPUARMState *env, uint32_t reg) -{ - uint32_t mask; - unsigned el = arm_current_el(env); - - /* First handle registers which unprivileged can read */ - - switch (reg) { - case 0 ... 7: /* xPSR sub-fields */ - mask = 0; - if ((reg & 1) && el) { - mask |= XPSR_EXCP; /* IPSR (unpriv. reads as zero) */ - } - if (!(reg & 4)) { - mask |= XPSR_NZCV | XPSR_Q; /* APSR */ - if (arm_feature(env, ARM_FEATURE_THUMB_DSP)) { - mask |= XPSR_GE; - } - } - /* EPSR reads as zero */ - return xpsr_read(env) & mask; - break; - case 20: /* CONTROL */ - { - uint32_t value = env->v7m.control[env->v7m.secure]; - if (!env->v7m.secure) { - /* SFPA is RAZ/WI from NS; FPCA is stored in the M_REG_S bank */ - value |= env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK; - } - return value; - } - case 0x94: /* CONTROL_NS */ - /* - * We have to handle this here because unprivileged Secure code - * can read the NS CONTROL register. - */ - if (!env->v7m.secure) { - return 0; - } - return env->v7m.control[M_REG_NS] | - (env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK); - } - - if (el == 0) { - return 0; /* unprivileged reads others as zero */ - } - - if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { - switch (reg) { - case 0x88: /* MSP_NS */ - if (!env->v7m.secure) { - return 0; - } - return env->v7m.other_ss_msp; - case 0x89: /* PSP_NS */ - if (!env->v7m.secure) { - return 0; - } - return env->v7m.other_ss_psp; - case 0x8a: /* MSPLIM_NS */ - if (!env->v7m.secure) { - return 0; - } - return env->v7m.msplim[M_REG_NS]; - case 0x8b: /* PSPLIM_NS */ - if (!env->v7m.secure) { - return 0; - } - return env->v7m.psplim[M_REG_NS]; - case 0x90: /* PRIMASK_NS */ - if (!env->v7m.secure) { - return 0; - } - return env->v7m.primask[M_REG_NS]; - case 0x91: /* BASEPRI_NS */ - if (!env->v7m.secure) { - return 0; - } - return env->v7m.basepri[M_REG_NS]; - case 0x93: /* FAULTMASK_NS */ - if (!env->v7m.secure) { - return 0; - } - return env->v7m.faultmask[M_REG_NS]; - case 0x98: /* SP_NS */ - { - /* - * This gives the non-secure SP selected based on whether we're - * currently in handler mode or not, using the NS CONTROL.SPSEL. - */ - bool spsel = env->v7m.control[M_REG_NS] & R_V7M_CONTROL_SPSEL_MASK; - - if (!env->v7m.secure) { - return 0; - } - if (!arm_v7m_is_handler_mode(env) && spsel) { - return env->v7m.other_ss_psp; - } else { - return env->v7m.other_ss_msp; - } - } - default: - break; - } - } - - switch (reg) { - case 8: /* MSP */ - return v7m_using_psp(env) ? env->v7m.other_sp : env->regs[13]; - case 9: /* PSP */ - return v7m_using_psp(env) ? env->regs[13] : env->v7m.other_sp; - case 10: /* MSPLIM */ - if (!arm_feature(env, ARM_FEATURE_V8)) { - goto bad_reg; - } - return env->v7m.msplim[env->v7m.secure]; - case 11: /* PSPLIM */ - if (!arm_feature(env, ARM_FEATURE_V8)) { - goto bad_reg; - } - return env->v7m.psplim[env->v7m.secure]; - case 16: /* PRIMASK */ - return env->v7m.primask[env->v7m.secure]; - case 17: /* BASEPRI */ - case 18: /* BASEPRI_MAX */ - return env->v7m.basepri[env->v7m.secure]; - case 19: /* FAULTMASK */ - return env->v7m.faultmask[env->v7m.secure]; - default: - bad_reg: - qemu_log_mask(LOG_GUEST_ERROR, "Attempt to read unknown special" - " register %d\n", reg); - return 0; - } -} - -void HELPER(v7m_msr)(CPUARMState *env, uint32_t maskreg, uint32_t val) -{ - /* - * We're passed bits [11..0] of the instruction; extract - * SYSm and the mask bits. - * Invalid combinations of SYSm and mask are UNPREDICTABLE; - * we choose to treat them as if the mask bits were valid. - * NB that the pseudocode 'mask' variable is bits [11..10], - * whereas ours is [11..8]. - */ - uint32_t mask = extract32(maskreg, 8, 4); - uint32_t reg = extract32(maskreg, 0, 8); - int cur_el = arm_current_el(env); - - if (cur_el == 0 && reg > 7 && reg != 20) { - /* - * only xPSR sub-fields and CONTROL.SFPA may be written by - * unprivileged code - */ - return; - } - - if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { - switch (reg) { - case 0x88: /* MSP_NS */ - if (!env->v7m.secure) { - return; - } - env->v7m.other_ss_msp = val; - return; - case 0x89: /* PSP_NS */ - if (!env->v7m.secure) { - return; - } - env->v7m.other_ss_psp = val; - return; - case 0x8a: /* MSPLIM_NS */ - if (!env->v7m.secure) { - return; - } - env->v7m.msplim[M_REG_NS] = val & ~7; - return; - case 0x8b: /* PSPLIM_NS */ - if (!env->v7m.secure) { - return; - } - env->v7m.psplim[M_REG_NS] = val & ~7; - return; - case 0x90: /* PRIMASK_NS */ - if (!env->v7m.secure) { - return; - } - env->v7m.primask[M_REG_NS] = val & 1; - return; - case 0x91: /* BASEPRI_NS */ - if (!env->v7m.secure || !arm_feature(env, ARM_FEATURE_M_MAIN)) { - return; - } - env->v7m.basepri[M_REG_NS] = val & 0xff; - return; - case 0x93: /* FAULTMASK_NS */ - if (!env->v7m.secure || !arm_feature(env, ARM_FEATURE_M_MAIN)) { - return; - } - env->v7m.faultmask[M_REG_NS] = val & 1; - return; - case 0x94: /* CONTROL_NS */ - if (!env->v7m.secure) { - return; - } - write_v7m_control_spsel_for_secstate(env, - val & R_V7M_CONTROL_SPSEL_MASK, - M_REG_NS); - if (arm_feature(env, ARM_FEATURE_M_MAIN)) { - env->v7m.control[M_REG_NS] &= ~R_V7M_CONTROL_NPRIV_MASK; - env->v7m.control[M_REG_NS] |= val & R_V7M_CONTROL_NPRIV_MASK; - } - /* - * SFPA is RAZ/WI from NS. FPCA is RO if NSACR.CP10 == 0, - * RES0 if the FPU is not present, and is stored in the S bank - */ - if (arm_feature(env, ARM_FEATURE_VFP) && - extract32(env->v7m.nsacr, 10, 1)) { - env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_FPCA_MASK; - env->v7m.control[M_REG_S] |= val & R_V7M_CONTROL_FPCA_MASK; - } - return; - case 0x98: /* SP_NS */ - { - /* - * This gives the non-secure SP selected based on whether we're - * currently in handler mode or not, using the NS CONTROL.SPSEL. - */ - bool spsel = env->v7m.control[M_REG_NS] & R_V7M_CONTROL_SPSEL_MASK; - bool is_psp = !arm_v7m_is_handler_mode(env) && spsel; - uint32_t limit; - - if (!env->v7m.secure) { - return; - } - - limit = is_psp ? env->v7m.psplim[false] : env->v7m.msplim[false]; - - if (val < limit) { - CPUState *cs = env_cpu(env); - - cpu_restore_state(cs, GETPC(), true); - raise_exception(env, EXCP_STKOF, 0, 1); - } - - if (is_psp) { - env->v7m.other_ss_psp = val; - } else { - env->v7m.other_ss_msp = val; - } - return; - } - default: - break; - } - } - - switch (reg) { - case 0 ... 7: /* xPSR sub-fields */ - /* only APSR is actually writable */ - if (!(reg & 4)) { - uint32_t apsrmask = 0; - - if (mask & 8) { - apsrmask |= XPSR_NZCV | XPSR_Q; - } - if ((mask & 4) && arm_feature(env, ARM_FEATURE_THUMB_DSP)) { - apsrmask |= XPSR_GE; - } - xpsr_write(env, val, apsrmask); - } - break; - case 8: /* MSP */ - if (v7m_using_psp(env)) { - env->v7m.other_sp = val; - } else { - env->regs[13] = val; - } - break; - case 9: /* PSP */ - if (v7m_using_psp(env)) { - env->regs[13] = val; - } else { - env->v7m.other_sp = val; - } - break; - case 10: /* MSPLIM */ - if (!arm_feature(env, ARM_FEATURE_V8)) { - goto bad_reg; - } - env->v7m.msplim[env->v7m.secure] = val & ~7; - break; - case 11: /* PSPLIM */ - if (!arm_feature(env, ARM_FEATURE_V8)) { - goto bad_reg; - } - env->v7m.psplim[env->v7m.secure] = val & ~7; - break; - case 16: /* PRIMASK */ - env->v7m.primask[env->v7m.secure] = val & 1; - break; - case 17: /* BASEPRI */ - if (!arm_feature(env, ARM_FEATURE_M_MAIN)) { - goto bad_reg; - } - env->v7m.basepri[env->v7m.secure] = val & 0xff; - break; - case 18: /* BASEPRI_MAX */ - if (!arm_feature(env, ARM_FEATURE_M_MAIN)) { - goto bad_reg; - } - val &= 0xff; - if (val != 0 && (val < env->v7m.basepri[env->v7m.secure] - || env->v7m.basepri[env->v7m.secure] == 0)) { - env->v7m.basepri[env->v7m.secure] = val; - } - break; - case 19: /* FAULTMASK */ - if (!arm_feature(env, ARM_FEATURE_M_MAIN)) { - goto bad_reg; - } - env->v7m.faultmask[env->v7m.secure] = val & 1; - break; - case 20: /* CONTROL */ - /* - * Writing to the SPSEL bit only has an effect if we are in - * thread mode; other bits can be updated by any privileged code. - * write_v7m_control_spsel() deals with updating the SPSEL bit in - * env->v7m.control, so we only need update the others. - * For v7M, we must just ignore explicit writes to SPSEL in handler - * mode; for v8M the write is permitted but will have no effect. - * All these bits are writes-ignored from non-privileged code, - * except for SFPA. - */ - if (cur_el > 0 && (arm_feature(env, ARM_FEATURE_V8) || - !arm_v7m_is_handler_mode(env))) { - write_v7m_control_spsel(env, (val & R_V7M_CONTROL_SPSEL_MASK) != 0); - } - if (cur_el > 0 && arm_feature(env, ARM_FEATURE_M_MAIN)) { - env->v7m.control[env->v7m.secure] &= ~R_V7M_CONTROL_NPRIV_MASK; - env->v7m.control[env->v7m.secure] |= val & R_V7M_CONTROL_NPRIV_MASK; - } - if (arm_feature(env, ARM_FEATURE_VFP)) { - /* - * SFPA is RAZ/WI from NS or if no FPU. - * FPCA is RO if NSACR.CP10 == 0, RES0 if the FPU is not present. - * Both are stored in the S bank. - */ - if (env->v7m.secure) { - env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_SFPA_MASK; - env->v7m.control[M_REG_S] |= val & R_V7M_CONTROL_SFPA_MASK; - } - if (cur_el > 0 && - (env->v7m.secure || !arm_feature(env, ARM_FEATURE_M_SECURITY) || - extract32(env->v7m.nsacr, 10, 1))) { - env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_FPCA_MASK; - env->v7m.control[M_REG_S] |= val & R_V7M_CONTROL_FPCA_MASK; - } - } - break; - default: - bad_reg: - qemu_log_mask(LOG_GUEST_ERROR, "Attempt to write unknown special" - " register %d\n", reg); - return; - } -} - -uint32_t HELPER(v7m_tt)(CPUARMState *env, uint32_t addr, uint32_t op) -{ - /* Implement the TT instruction. op is bits [7:6] of the insn. */ - bool forceunpriv = op & 1; - bool alt = op & 2; - V8M_SAttributes sattrs = {}; - uint32_t tt_resp; - bool r, rw, nsr, nsrw, mrvalid; - int prot; - ARMMMUFaultInfo fi = {}; - MemTxAttrs attrs = {}; - hwaddr phys_addr; - ARMMMUIdx mmu_idx; - uint32_t mregion; - bool targetpriv; - bool targetsec = env->v7m.secure; - bool is_subpage; - - /* - * Work out what the security state and privilege level we're - * interested in is... - */ - if (alt) { - targetsec = !targetsec; - } - - if (forceunpriv) { - targetpriv = false; - } else { - targetpriv = arm_v7m_is_handler_mode(env) || - !(env->v7m.control[targetsec] & R_V7M_CONTROL_NPRIV_MASK); - } - - /* ...and then figure out which MMU index this is */ - mmu_idx = arm_v7m_mmu_idx_for_secstate_and_priv(env, targetsec, targetpriv); - - /* - * We know that the MPU and SAU don't care about the access type - * for our purposes beyond that we don't want to claim to be - * an insn fetch, so we arbitrarily call this a read. - */ - - /* - * MPU region info only available for privileged or if - * inspecting the other MPU state. - */ - if (arm_current_el(env) != 0 || alt) { - /* We can ignore the return value as prot is always set */ - pmsav8_mpu_lookup(env, addr, MMU_DATA_LOAD, mmu_idx, - &phys_addr, &attrs, &prot, &is_subpage, - &fi, &mregion); - if (mregion == -1) { - mrvalid = false; - mregion = 0; - } else { - mrvalid = true; - } - r = prot & PAGE_READ; - rw = prot & PAGE_WRITE; - } else { - r = false; - rw = false; - mrvalid = false; - mregion = 0; - } - - if (env->v7m.secure) { - v8m_security_lookup(env, addr, MMU_DATA_LOAD, mmu_idx, &sattrs); - nsr = sattrs.ns && r; - nsrw = sattrs.ns && rw; - } else { - sattrs.ns = true; - nsr = false; - nsrw = false; - } - - tt_resp = (sattrs.iregion << 24) | - (sattrs.irvalid << 23) | - ((!sattrs.ns) << 22) | - (nsrw << 21) | - (nsr << 20) | - (rw << 19) | - (r << 18) | - (sattrs.srvalid << 17) | - (mrvalid << 16) | - (sattrs.sregion << 8) | - mregion; - - return tt_resp; -} - #endif /* Note that signed overflow is undefined in C. The following routines are @@ -XXX,XX +XXX,XX @@ int fp_exception_el(CPUARMState *env, int cur_el) return 0; } -ARMMMUIdx arm_v7m_mmu_idx_all(CPUARMState *env, - bool secstate, bool priv, bool negpri) -{ - ARMMMUIdx mmu_idx = ARM_MMU_IDX_M; - - if (priv) { - mmu_idx |= ARM_MMU_IDX_M_PRIV; - } - - if (negpri) { - mmu_idx |= ARM_MMU_IDX_M_NEGPRI; - } - - if (secstate) { - mmu_idx |= ARM_MMU_IDX_M_S; - } - - return mmu_idx; -} - -ARMMMUIdx arm_v7m_mmu_idx_for_secstate_and_priv(CPUARMState *env, - bool secstate, bool priv) -{ - bool negpri = armv7m_nvic_neg_prio_requested(env->nvic, secstate); - - return arm_v7m_mmu_idx_all(env, secstate, priv, negpri); -} - -/* Return the MMU index for a v7M CPU in the specified security state */ +#ifndef CONFIG_TCG ARMMMUIdx arm_v7m_mmu_idx_for_secstate(CPUARMState *env, bool secstate) { - bool priv = arm_current_el(env) != 0; - - return arm_v7m_mmu_idx_for_secstate_and_priv(env, secstate, priv); + g_assert_not_reached(); } +#endif ARMMMUIdx arm_mmu_idx(CPUARMState *env) { diff --git a/target/arm/m_helper.c b/target/arm/m_helper.c new file mode 100644 index XXXXXXX..XXXXXXX --- /dev/null +++ b/target/arm/m_helper.c @@ -XXX,XX +XXX,XX @@ +/* + * ARM generic helpers. + * + * This code is licensed under the GNU GPL v2 or later. + * + * SPDX-License-Identifier: GPL-2.0-or-later + */ +#include "qemu/osdep.h" +#include "qemu/units.h" +#include "target/arm/idau.h" +#include "trace.h" +#include "cpu.h" +#include "internals.h" +#include "exec/gdbstub.h" +#include "exec/helper-proto.h" +#include "qemu/host-utils.h" +#include "sysemu/sysemu.h" +#include "qemu/bitops.h" +#include "qemu/crc32c.h" +#include "qemu/qemu-print.h" +#include "exec/exec-all.h" +#include <zlib.h> /* For crc32 */ +#include "hw/semihosting/semihost.h" +#include "sysemu/cpus.h" +#include "sysemu/kvm.h" +#include "qemu/range.h" +#include "qapi/qapi-commands-target.h" +#include "qapi/error.h" +#include "qemu/guest-random.h" +#ifdef CONFIG_TCG +#include "arm_ldst.h" +#include "exec/cpu_ldst.h" +#endif + +#ifdef CONFIG_USER_ONLY + +/* These should probably raise undefined insn exceptions. */ +void HELPER(v7m_msr)(CPUARMState *env, uint32_t reg, uint32_t val) +{ + ARMCPU *cpu = env_archcpu(env); + + cpu_abort(CPU(cpu), "v7m_msr %d\n", reg); +} + +uint32_t HELPER(v7m_mrs)(CPUARMState *env, uint32_t reg) +{ + ARMCPU *cpu = env_archcpu(env); + + cpu_abort(CPU(cpu), "v7m_mrs %d\n", reg); + return 0; +} + +void HELPER(v7m_bxns)(CPUARMState *env, uint32_t dest) +{ + /* translate.c should never generate calls here in user-only mode */ + g_assert_not_reached(); +} + +void HELPER(v7m_blxns)(CPUARMState *env, uint32_t dest) +{ + /* translate.c should never generate calls here in user-only mode */ + g_assert_not_reached(); +} + +void HELPER(v7m_preserve_fp_state)(CPUARMState *env) +{ + /* translate.c should never generate calls here in user-only mode */ + g_assert_not_reached(); +} + +void HELPER(v7m_vlstm)(CPUARMState *env, uint32_t fptr) +{ + /* translate.c should never generate calls here in user-only mode */ + g_assert_not_reached(); +} + +void HELPER(v7m_vlldm)(CPUARMState *env, uint32_t fptr) +{ + /* translate.c should never generate calls here in user-only mode */ + g_assert_not_reached(); +} + +uint32_t HELPER(v7m_tt)(CPUARMState *env, uint32_t addr, uint32_t op) +{ + /* + * The TT instructions can be used by unprivileged code, but in + * user-only emulation we don't have the MPU. + * Luckily since we know we are NonSecure unprivileged (and that in + * turn means that the A flag wasn't specified), all the bits in the + * register must be zero: + * IREGION: 0 because IRVALID is 0 + * IRVALID: 0 because NS + * S: 0 because NS + * NSRW: 0 because NS + * NSR: 0 because NS + * RW: 0 because unpriv and A flag not set + * R: 0 because unpriv and A flag not set + * SRVALID: 0 because NS + * MRVALID: 0 because unpriv and A flag not set + * SREGION: 0 becaus SRVALID is 0 + * MREGION: 0 because MRVALID is 0 + */ + return 0; +} + +#else + +/* + * What kind of stack write are we doing? This affects how exceptions + * generated during the stacking are treated. + */ +typedef enum StackingMode { + STACK_NORMAL, + STACK_IGNFAULTS, + STACK_LAZYFP, +} StackingMode; + +static bool v7m_stack_write(ARMCPU *cpu, uint32_t addr, uint32_t value, + ARMMMUIdx mmu_idx, StackingMode mode) +{ + CPUState *cs = CPU(cpu); + CPUARMState *env = &cpu->env; + MemTxAttrs attrs = {}; + MemTxResult txres; + target_ulong page_size; + hwaddr physaddr; + int prot; + ARMMMUFaultInfo fi = {}; + bool secure = mmu_idx & ARM_MMU_IDX_M_S; + int exc; + bool exc_secure; + + if (get_phys_addr(env, addr, MMU_DATA_STORE, mmu_idx, &physaddr, + &attrs, &prot, &page_size, &fi, NULL)) { + /* MPU/SAU lookup failed */ + if (fi.type == ARMFault_QEMU_SFault) { + if (mode == STACK_LAZYFP) { + qemu_log_mask(CPU_LOG_INT, + "...SecureFault with SFSR.LSPERR " + "during lazy stacking\n"); + env->v7m.sfsr |= R_V7M_SFSR_LSPERR_MASK; + } else { + qemu_log_mask(CPU_LOG_INT, + "...SecureFault with SFSR.AUVIOL " + "during stacking\n"); + env->v7m.sfsr |= R_V7M_SFSR_AUVIOL_MASK; + } + env->v7m.sfsr |= R_V7M_SFSR_SFARVALID_MASK; + env->v7m.sfar = addr; + exc = ARMV7M_EXCP_SECURE; + exc_secure = false; + } else { + if (mode == STACK_LAZYFP) { + qemu_log_mask(CPU_LOG_INT, + "...MemManageFault with CFSR.MLSPERR\n"); + env->v7m.cfsr[secure] |= R_V7M_CFSR_MLSPERR_MASK; + } else { + qemu_log_mask(CPU_LOG_INT, + "...MemManageFault with CFSR.MSTKERR\n"); + env->v7m.cfsr[secure] |= R_V7M_CFSR_MSTKERR_MASK; + } + exc = ARMV7M_EXCP_MEM; + exc_secure = secure; + } + goto pend_fault; + } + address_space_stl_le(arm_addressspace(cs, attrs), physaddr, value, + attrs, &txres); + if (txres != MEMTX_OK) { + /* BusFault trying to write the data */ + if (mode == STACK_LAZYFP) { + qemu_log_mask(CPU_LOG_INT, "...BusFault with BFSR.LSPERR\n"); + env->v7m.cfsr[M_REG_NS] |= R_V7M_CFSR_LSPERR_MASK; + } else { + qemu_log_mask(CPU_LOG_INT, "...BusFault with BFSR.STKERR\n"); + env->v7m.cfsr[M_REG_NS] |= R_V7M_CFSR_STKERR_MASK; + } + exc = ARMV7M_EXCP_BUS; + exc_secure = false; + goto pend_fault; + } + return true; + +pend_fault: + /* + * By pending the exception at this point we are making + * the IMPDEF choice "overridden exceptions pended" (see the + * MergeExcInfo() pseudocode). The other choice would be to not + * pend them now and then make a choice about which to throw away + * later if we have two derived exceptions. + * The only case when we must not pend the exception but instead + * throw it away is if we are doing the push of the callee registers + * and we've already generated a derived exception (this is indicated + * by the caller passing STACK_IGNFAULTS). Even in this case we will + * still update the fault status registers. + */ + switch (mode) { + case STACK_NORMAL: + armv7m_nvic_set_pending_derived(env->nvic, exc, exc_secure); + break; + case STACK_LAZYFP: + armv7m_nvic_set_pending_lazyfp(env->nvic, exc, exc_secure); + break; + case STACK_IGNFAULTS: + break; + } + return false; +} + +static bool v7m_stack_read(ARMCPU *cpu, uint32_t *dest, uint32_t addr, + ARMMMUIdx mmu_idx) +{ + CPUState *cs = CPU(cpu); + CPUARMState *env = &cpu->env; + MemTxAttrs attrs = {}; + MemTxResult txres; + target_ulong page_size; + hwaddr physaddr; + int prot; + ARMMMUFaultInfo fi = {}; + bool secure = mmu_idx & ARM_MMU_IDX_M_S; + int exc; + bool exc_secure; + uint32_t value; + + if (get_phys_addr(env, addr, MMU_DATA_LOAD, mmu_idx, &physaddr, + &attrs, &prot, &page_size, &fi, NULL)) { + /* MPU/SAU lookup failed */ + if (fi.type == ARMFault_QEMU_SFault) { + qemu_log_mask(CPU_LOG_INT, + "...SecureFault with SFSR.AUVIOL during unstack\n"); + env->v7m.sfsr |= R_V7M_SFSR_AUVIOL_MASK | R_V7M_SFSR_SFARVALID_MASK; + env->v7m.sfar = addr; + exc = ARMV7M_EXCP_SECURE; + exc_secure = false; + } else { + qemu_log_mask(CPU_LOG_INT, + "...MemManageFault with CFSR.MUNSTKERR\n"); + env->v7m.cfsr[secure] |= R_V7M_CFSR_MUNSTKERR_MASK; + exc = ARMV7M_EXCP_MEM; + exc_secure = secure; + } + goto pend_fault; + } + + value = address_space_ldl(arm_addressspace(cs, attrs), physaddr, + attrs, &txres); + if (txres != MEMTX_OK) { + /* BusFault trying to read the data */ + qemu_log_mask(CPU_LOG_INT, "...BusFault with BFSR.UNSTKERR\n"); + env->v7m.cfsr[M_REG_NS] |= R_V7M_CFSR_UNSTKERR_MASK; + exc = ARMV7M_EXCP_BUS; + exc_secure = false; + goto pend_fault; + } + + *dest = value; + return true; + +pend_fault: + /* + * By pending the exception at this point we are making + * the IMPDEF choice "overridden exceptions pended" (see the + * MergeExcInfo() pseudocode). The other choice would be to not + * pend them now and then make a choice about which to throw away + * later if we have two derived exceptions. + */ + armv7m_nvic_set_pending(env->nvic, exc, exc_secure); + return false; +} + +void HELPER(v7m_preserve_fp_state)(CPUARMState *env) +{ + /* + * Preserve FP state (because LSPACT was set and we are about + * to execute an FP instruction). This corresponds to the + * PreserveFPState() pseudocode. + * We may throw an exception if the stacking fails. + */ + ARMCPU *cpu = env_archcpu(env); + bool is_secure = env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_S_MASK; + bool negpri = !(env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_HFRDY_MASK); + bool is_priv = !(env->v7m.fpccr[is_secure] & R_V7M_FPCCR_USER_MASK); + bool splimviol = env->v7m.fpccr[is_secure] & R_V7M_FPCCR_SPLIMVIOL_MASK; + uint32_t fpcar = env->v7m.fpcar[is_secure]; + bool stacked_ok = true; + bool ts = is_secure && (env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_TS_MASK); + bool take_exception; + + /* Take the iothread lock as we are going to touch the NVIC */ + qemu_mutex_lock_iothread(); + + /* Check the background context had access to the FPU */ + if (!v7m_cpacr_pass(env, is_secure, is_priv)) { + armv7m_nvic_set_pending_lazyfp(env->nvic, ARMV7M_EXCP_USAGE, is_secure); + env->v7m.cfsr[is_secure] |= R_V7M_CFSR_NOCP_MASK; + stacked_ok = false; + } else if (!is_secure && !extract32(env->v7m.nsacr, 10, 1)) { + armv7m_nvic_set_pending_lazyfp(env->nvic, ARMV7M_EXCP_USAGE, M_REG_S); + env->v7m.cfsr[M_REG_S] |= R_V7M_CFSR_NOCP_MASK; + stacked_ok = false; + } + + if (!splimviol && stacked_ok) { + /* We only stack if the stack limit wasn't violated */ + int i; + ARMMMUIdx mmu_idx; + + mmu_idx = arm_v7m_mmu_idx_all(env, is_secure, is_priv, negpri); + for (i = 0; i < (ts ? 32 : 16); i += 2) { + uint64_t dn = *aa32_vfp_dreg(env, i / 2); + uint32_t faddr = fpcar + 4 * i; + uint32_t slo = extract64(dn, 0, 32); + uint32_t shi = extract64(dn, 32, 32); + + if (i >= 16) { + faddr += 8; /* skip the slot for the FPSCR */ + } + stacked_ok = stacked_ok && + v7m_stack_write(cpu, faddr, slo, mmu_idx, STACK_LAZYFP) && + v7m_stack_write(cpu, faddr + 4, shi, mmu_idx, STACK_LAZYFP); + } + + stacked_ok = stacked_ok && + v7m_stack_write(cpu, fpcar + 0x40, + vfp_get_fpscr(env), mmu_idx, STACK_LAZYFP); + } + + /* + * We definitely pended an exception, but it's possible that it + * might not be able to be taken now. If its priority permits us + * to take it now, then we must not update the LSPACT or FP regs, + * but instead jump out to take the exception immediately. + * If it's just pending and won't be taken until the current + * handler exits, then we do update LSPACT and the FP regs. + */ + take_exception = !stacked_ok && + armv7m_nvic_can_take_pending_exception(env->nvic); + + qemu_mutex_unlock_iothread(); + + if (take_exception) { + raise_exception_ra(env, EXCP_LAZYFP, 0, 1, GETPC()); + } + + env->v7m.fpccr[is_secure] &= ~R_V7M_FPCCR_LSPACT_MASK; + + if (ts) { + /* Clear s0 to s31 and the FPSCR */ + int i; + + for (i = 0; i < 32; i += 2) { + *aa32_vfp_dreg(env, i / 2) = 0; + } + vfp_set_fpscr(env, 0); + } + /* + * Otherwise s0 to s15 and FPSCR are UNKNOWN; we choose to leave them + * unchanged. + */ +} + +/* + * Write to v7M CONTROL.SPSEL bit for the specified security bank. + * This may change the current stack pointer between Main and Process + * stack pointers if it is done for the CONTROL register for the current + * security state. + */ +static void write_v7m_control_spsel_for_secstate(CPUARMState *env, + bool new_spsel, + bool secstate) +{ + bool old_is_psp = v7m_using_psp(env); + + env->v7m.control[secstate] = + deposit32(env->v7m.control[secstate], + R_V7M_CONTROL_SPSEL_SHIFT, + R_V7M_CONTROL_SPSEL_LENGTH, new_spsel); + + if (secstate == env->v7m.secure) { + bool new_is_psp = v7m_using_psp(env); + uint32_t tmp; + + if (old_is_psp != new_is_psp) { + tmp = env->v7m.other_sp; + env->v7m.other_sp = env->regs[13]; + env->regs[13] = tmp; + } + } +} + +/* + * Write to v7M CONTROL.SPSEL bit. This may change the current + * stack pointer between Main and Process stack pointers. + */ +static void write_v7m_control_spsel(CPUARMState *env, bool new_spsel) +{ + write_v7m_control_spsel_for_secstate(env, new_spsel, env->v7m.secure); +} + +void write_v7m_exception(CPUARMState *env, uint32_t new_exc) +{ + /* + * Write a new value to v7m.exception, thus transitioning into or out + * of Handler mode; this may result in a change of active stack pointer. + */ + bool new_is_psp, old_is_psp = v7m_using_psp(env); + uint32_t tmp; + + env->v7m.exception = new_exc; + + new_is_psp = v7m_using_psp(env); + + if (old_is_psp != new_is_psp) { + tmp = env->v7m.other_sp; + env->v7m.other_sp = env->regs[13]; + env->regs[13] = tmp; + } +} + +/* Switch M profile security state between NS and S */ +static void switch_v7m_security_state(CPUARMState *env, bool new_secstate) +{ + uint32_t new_ss_msp, new_ss_psp; + + if (env->v7m.secure == new_secstate) { + return; + } + + /* + * All the banked state is accessed by looking at env->v7m.secure + * except for the stack pointer; rearrange the SP appropriately. + */ + new_ss_msp = env->v7m.other_ss_msp; + new_ss_psp = env->v7m.other_ss_psp; + + if (v7m_using_psp(env)) { + env->v7m.other_ss_psp = env->regs[13]; + env->v7m.other_ss_msp = env->v7m.other_sp; + } else { + env->v7m.other_ss_msp = env->regs[13]; + env->v7m.other_ss_psp = env->v7m.other_sp; + } + + env->v7m.secure = new_secstate; + + if (v7m_using_psp(env)) { + env->regs[13] = new_ss_psp; + env->v7m.other_sp = new_ss_msp; + } else { + env->regs[13] = new_ss_msp; + env->v7m.other_sp = new_ss_psp; + } +} + +void HELPER(v7m_bxns)(CPUARMState *env, uint32_t dest) +{ + /* + * Handle v7M BXNS: + * - if the return value is a magic value, do exception return (like BX) + * - otherwise bit 0 of the return value is the target security state + */ + uint32_t min_magic; + + if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { + /* Covers FNC_RETURN and EXC_RETURN magic */ + min_magic = FNC_RETURN_MIN_MAGIC; + } else { + /* EXC_RETURN magic only */ + min_magic = EXC_RETURN_MIN_MAGIC; + } + + if (dest >= min_magic) { + /* + * This is an exception return magic value; put it where + * do_v7m_exception_exit() expects and raise EXCEPTION_EXIT. + * Note that if we ever add gen_ss_advance() singlestep support to + * M profile this should count as an "instruction execution complete" + * event (compare gen_bx_excret_final_code()). + */ + env->regs[15] = dest & ~1; + env->thumb = dest & 1; + HELPER(exception_internal)(env, EXCP_EXCEPTION_EXIT); + /* notreached */ + } + + /* translate.c should have made BXNS UNDEF unless we're secure */ + assert(env->v7m.secure); + + if (!(dest & 1)) { + env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_SFPA_MASK; + } + switch_v7m_security_state(env, dest & 1); + env->thumb = 1; + env->regs[15] = dest & ~1; +} + +void HELPER(v7m_blxns)(CPUARMState *env, uint32_t dest) +{ + /* + * Handle v7M BLXNS: + * - bit 0 of the destination address is the target security state + */ + + /* At this point regs[15] is the address just after the BLXNS */ + uint32_t nextinst = env->regs[15] | 1; + uint32_t sp = env->regs[13] - 8; + uint32_t saved_psr; + + /* translate.c will have made BLXNS UNDEF unless we're secure */ + assert(env->v7m.secure); + + if (dest & 1) { + /* + * Target is Secure, so this is just a normal BLX, + * except that the low bit doesn't indicate Thumb/not. + */ + env->regs[14] = nextinst; + env->thumb = 1; + env->regs[15] = dest & ~1; + return; + } + + /* Target is non-secure: first push a stack frame */ + if (!QEMU_IS_ALIGNED(sp, 8)) { + qemu_log_mask(LOG_GUEST_ERROR, + "BLXNS with misaligned SP is UNPREDICTABLE\n"); + } + + if (sp < v7m_sp_limit(env)) { + raise_exception(env, EXCP_STKOF, 0, 1); + } + + saved_psr = env->v7m.exception; + if (env->v7m.control[M_REG_S] & R_V7M_CONTROL_SFPA_MASK) { + saved_psr |= XPSR_SFPA; + } + + /* Note that these stores can throw exceptions on MPU faults */ + cpu_stl_data(env, sp, nextinst); + cpu_stl_data(env, sp + 4, saved_psr); + + env->regs[13] = sp; + env->regs[14] = 0xfeffffff; + if (arm_v7m_is_handler_mode(env)) { + /* + * Write a dummy value to IPSR, to avoid leaking the current secure + * exception number to non-secure code. This is guaranteed not + * to cause write_v7m_exception() to actually change stacks. + */ + write_v7m_exception(env, 1); + } + env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_SFPA_MASK; + switch_v7m_security_state(env, 0); + env->thumb = 1; + env->regs[15] = dest; +} + +static uint32_t *get_v7m_sp_ptr(CPUARMState *env, bool secure, bool threadmode, + bool spsel) +{ + /* + * Return a pointer to the location where we currently store the + * stack pointer for the requested security state and thread mode. + * This pointer will become invalid if the CPU state is updated + * such that the stack pointers are switched around (eg changing + * the SPSEL control bit). + * Compare the v8M ARM ARM pseudocode LookUpSP_with_security_mode(). + * Unlike that pseudocode, we require the caller to pass us in the + * SPSEL control bit value; this is because we also use this + * function in handling of pushing of the callee-saves registers + * part of the v8M stack frame (pseudocode PushCalleeStack()), + * and in the tailchain codepath the SPSEL bit comes from the exception + * return magic LR value from the previous exception. The pseudocode + * opencodes the stack-selection in PushCalleeStack(), but we prefer + * to make this utility function generic enough to do the job. + */ + bool want_psp = threadmode && spsel; + + if (secure == env->v7m.secure) { + if (want_psp == v7m_using_psp(env)) { + return &env->regs[13]; + } else { + return &env->v7m.other_sp; + } + } else { + if (want_psp) { + return &env->v7m.other_ss_psp; + } else { + return &env->v7m.other_ss_msp; + } + } +} + +static bool arm_v7m_load_vector(ARMCPU *cpu, int exc, bool targets_secure, + uint32_t *pvec) +{ + CPUState *cs = CPU(cpu); + CPUARMState *env = &cpu->env; + MemTxResult result; + uint32_t addr = env->v7m.vecbase[targets_secure] + exc * 4; + uint32_t vector_entry; + MemTxAttrs attrs = {}; + ARMMMUIdx mmu_idx; + bool exc_secure; + + mmu_idx = arm_v7m_mmu_idx_for_secstate_and_priv(env, targets_secure, true); + + /* + * We don't do a get_phys_addr() here because the rules for vector + * loads are special: they always use the default memory map, and + * the default memory map permits reads from all addresses. + * Since there's no easy way to pass through to pmsav8_mpu_lookup() + * that we want this special case which would always say "yes", + * we just do the SAU lookup here followed by a direct physical load. + */ + attrs.secure = targets_secure; + attrs.user = false; + + if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { + V8M_SAttributes sattrs = {}; + + v8m_security_lookup(env, addr, MMU_DATA_LOAD, mmu_idx, &sattrs); + if (sattrs.ns) { + attrs.secure = false; + } else if (!targets_secure) { + /* NS access to S memory */ + goto load_fail; + } + } + + vector_entry = address_space_ldl(arm_addressspace(cs, attrs), addr, + attrs, &result); + if (result != MEMTX_OK) { + goto load_fail; + } + *pvec = vector_entry; + return true; + +load_fail: + /* + * All vector table fetch fails are reported as HardFault, with + * HFSR.VECTTBL and .FORCED set. (FORCED is set because + * technically the underlying exception is a MemManage or BusFault + * that is escalated to HardFault.) This is a terminal exception, + * so we will either take the HardFault immediately or else enter + * lockup (the latter case is handled in armv7m_nvic_set_pending_derived()). + */ + exc_secure = targets_secure || + !(cpu->env.v7m.aircr & R_V7M_AIRCR_BFHFNMINS_MASK); + env->v7m.hfsr |= R_V7M_HFSR_VECTTBL_MASK | R_V7M_HFSR_FORCED_MASK; + armv7m_nvic_set_pending_derived(env->nvic, ARMV7M_EXCP_HARD, exc_secure); + return false; +} + +static uint32_t v7m_integrity_sig(CPUARMState *env, uint32_t lr) +{ + /* + * Return the integrity signature value for the callee-saves + * stack frame section. @lr is the exception return payload/LR value + * whose FType bit forms bit 0 of the signature if FP is present. + */ + uint32_t sig = 0xfefa125a; + + if (!arm_feature(env, ARM_FEATURE_VFP) || (lr & R_V7M_EXCRET_FTYPE_MASK)) { + sig |= 1; + } + return sig; +} + +static bool v7m_push_callee_stack(ARMCPU *cpu, uint32_t lr, bool dotailchain, + bool ignore_faults) +{ + /* + * For v8M, push the callee-saves register part of the stack frame. + * Compare the v8M pseudocode PushCalleeStack(). + * In the tailchaining case this may not be the current stack. + */ + CPUARMState *env = &cpu->env; + uint32_t *frame_sp_p; + uint32_t frameptr; + ARMMMUIdx mmu_idx; + bool stacked_ok; + uint32_t limit; + bool want_psp; + uint32_t sig; + StackingMode smode = ignore_faults ? STACK_IGNFAULTS : STACK_NORMAL; + + if (dotailchain) { + bool mode = lr & R_V7M_EXCRET_MODE_MASK; + bool priv = !(env->v7m.control[M_REG_S] & R_V7M_CONTROL_NPRIV_MASK) || + !mode; + + mmu_idx = arm_v7m_mmu_idx_for_secstate_and_priv(env, M_REG_S, priv); + frame_sp_p = get_v7m_sp_ptr(env, M_REG_S, mode, + lr & R_V7M_EXCRET_SPSEL_MASK); + want_psp = mode && (lr & R_V7M_EXCRET_SPSEL_MASK); + if (want_psp) { + limit = env->v7m.psplim[M_REG_S]; + } else { + limit = env->v7m.msplim[M_REG_S]; + } + } else { + mmu_idx = arm_mmu_idx(env); + frame_sp_p = &env->regs[13]; + limit = v7m_sp_limit(env); + } + + frameptr = *frame_sp_p - 0x28; + if (frameptr < limit) { + /* + * Stack limit failure: set SP to the limit value, and generate + * STKOF UsageFault. Stack pushes below the limit must not be + * performed. It is IMPDEF whether pushes above the limit are + * performed; we choose not to. + */ + qemu_log_mask(CPU_LOG_INT, + "...STKOF during callee-saves register stacking\n"); + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_STKOF_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, + env->v7m.secure); + *frame_sp_p = limit; + return true; + } + + /* + * Write as much of the stack frame as we can. A write failure may + * cause us to pend a derived exception. + */ + sig = v7m_integrity_sig(env, lr); + stacked_ok = + v7m_stack_write(cpu, frameptr, sig, mmu_idx, smode) && + v7m_stack_write(cpu, frameptr + 0x8, env->regs[4], mmu_idx, smode) && + v7m_stack_write(cpu, frameptr + 0xc, env->regs[5], mmu_idx, smode) && + v7m_stack_write(cpu, frameptr + 0x10, env->regs[6], mmu_idx, smode) && + v7m_stack_write(cpu, frameptr + 0x14, env->regs[7], mmu_idx, smode) && + v7m_stack_write(cpu, frameptr + 0x18, env->regs[8], mmu_idx, smode) && + v7m_stack_write(cpu, frameptr + 0x1c, env->regs[9], mmu_idx, smode) && + v7m_stack_write(cpu, frameptr + 0x20, env->regs[10], mmu_idx, smode) && + v7m_stack_write(cpu, frameptr + 0x24, env->regs[11], mmu_idx, smode); + + /* Update SP regardless of whether any of the stack accesses failed. */ + *frame_sp_p = frameptr; + + return !stacked_ok; +} + +static void v7m_exception_taken(ARMCPU *cpu, uint32_t lr, bool dotailchain, + bool ignore_stackfaults) +{ + /* + * Do the "take the exception" parts of exception entry, + * but not the pushing of state to the stack. This is + * similar to the pseudocode ExceptionTaken() function. + */ + CPUARMState *env = &cpu->env; + uint32_t addr; + bool targets_secure; + int exc; + bool push_failed = false; + + armv7m_nvic_get_pending_irq_info(env->nvic, &exc, &targets_secure); + qemu_log_mask(CPU_LOG_INT, "...taking pending %s exception %d\n", + targets_secure ? "secure" : "nonsecure", exc); + + if (dotailchain) { + /* Sanitize LR FType and PREFIX bits */ + if (!arm_feature(env, ARM_FEATURE_VFP)) { + lr |= R_V7M_EXCRET_FTYPE_MASK; + } + lr = deposit32(lr, 24, 8, 0xff); + } + + if (arm_feature(env, ARM_FEATURE_V8)) { + if (arm_feature(env, ARM_FEATURE_M_SECURITY) && + (lr & R_V7M_EXCRET_S_MASK)) { + /* + * The background code (the owner of the registers in the + * exception frame) is Secure. This means it may either already + * have or now needs to push callee-saves registers. + */ + if (targets_secure) { + if (dotailchain && !(lr & R_V7M_EXCRET_ES_MASK)) { + /* + * We took an exception from Secure to NonSecure + * (which means the callee-saved registers got stacked) + * and are now tailchaining to a Secure exception. + * Clear DCRS so eventual return from this Secure + * exception unstacks the callee-saved registers. + */ + lr &= ~R_V7M_EXCRET_DCRS_MASK; + } + } else { + /* + * We're going to a non-secure exception; push the + * callee-saves registers to the stack now, if they're + * not already saved. + */ + if (lr & R_V7M_EXCRET_DCRS_MASK && + !(dotailchain && !(lr & R_V7M_EXCRET_ES_MASK))) { + push_failed = v7m_push_callee_stack(cpu, lr, dotailchain, + ignore_stackfaults); + } + lr |= R_V7M_EXCRET_DCRS_MASK; + } + } + + lr &= ~R_V7M_EXCRET_ES_MASK; + if (targets_secure || !arm_feature(env, ARM_FEATURE_M_SECURITY)) { + lr |= R_V7M_EXCRET_ES_MASK; + } + lr &= ~R_V7M_EXCRET_SPSEL_MASK; + if (env->v7m.control[targets_secure] & R_V7M_CONTROL_SPSEL_MASK) { + lr |= R_V7M_EXCRET_SPSEL_MASK; + } + + /* + * Clear registers if necessary to prevent non-secure exception + * code being able to see register values from secure code. + * Where register values become architecturally UNKNOWN we leave + * them with their previous values. + */ + if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { + if (!targets_secure) { + /* + * Always clear the caller-saved registers (they have been + * pushed to the stack earlier in v7m_push_stack()). + * Clear callee-saved registers if the background code is + * Secure (in which case these regs were saved in + * v7m_push_callee_stack()). + */ + int i; + + for (i = 0; i < 13; i++) { + /* r4..r11 are callee-saves, zero only if EXCRET.S == 1 */ + if (i < 4 || i > 11 || (lr & R_V7M_EXCRET_S_MASK)) { + env->regs[i] = 0; + } + } + /* Clear EAPSR */ + xpsr_write(env, 0, XPSR_NZCV | XPSR_Q | XPSR_GE | XPSR_IT); + } + } + } + + if (push_failed && !ignore_stackfaults) { + /* + * Derived exception on callee-saves register stacking: + * we might now want to take a different exception which + * targets a different security state, so try again from the top. + */ + qemu_log_mask(CPU_LOG_INT, + "...derived exception on callee-saves register stacking"); + v7m_exception_taken(cpu, lr, true, true); + return; + } + + if (!arm_v7m_load_vector(cpu, exc, targets_secure, &addr)) { + /* Vector load failed: derived exception */ + qemu_log_mask(CPU_LOG_INT, "...derived exception on vector table load"); + v7m_exception_taken(cpu, lr, true, true); + return; + } + + /* + * Now we've done everything that might cause a derived exception + * we can go ahead and activate whichever exception we're going to + * take (which might now be the derived exception). + */ + armv7m_nvic_acknowledge_irq(env->nvic); + + /* Switch to target security state -- must do this before writing SPSEL */ + switch_v7m_security_state(env, targets_secure); + write_v7m_control_spsel(env, 0); + arm_clear_exclusive(env); + /* Clear SFPA and FPCA (has no effect if no FPU) */ + env->v7m.control[M_REG_S] &= + ~(R_V7M_CONTROL_FPCA_MASK | R_V7M_CONTROL_SFPA_MASK); + /* Clear IT bits */ + env->condexec_bits = 0; + env->regs[14] = lr; + env->regs[15] = addr & 0xfffffffe; + env->thumb = addr & 1; +} + +static void v7m_update_fpccr(CPUARMState *env, uint32_t frameptr, + bool apply_splim) +{ + /* + * Like the pseudocode UpdateFPCCR: save state in FPCAR and FPCCR + * that we will need later in order to do lazy FP reg stacking. + */ + bool is_secure = env->v7m.secure; + void *nvic = env->nvic; + /* + * Some bits are unbanked and live always in fpccr[M_REG_S]; some bits + * are banked and we want to update the bit in the bank for the + * current security state; and in one case we want to specifically + * update the NS banked version of a bit even if we are secure. + */ + uint32_t *fpccr_s = &env->v7m.fpccr[M_REG_S]; + uint32_t *fpccr_ns = &env->v7m.fpccr[M_REG_NS]; + uint32_t *fpccr = &env->v7m.fpccr[is_secure]; + bool hfrdy, bfrdy, mmrdy, ns_ufrdy, s_ufrdy, sfrdy, monrdy; + + env->v7m.fpcar[is_secure] = frameptr & ~0x7; + + if (apply_splim && arm_feature(env, ARM_FEATURE_V8)) { + bool splimviol; + uint32_t splim = v7m_sp_limit(env); + bool ign = armv7m_nvic_neg_prio_requested(nvic, is_secure) && + (env->v7m.ccr[is_secure] & R_V7M_CCR_STKOFHFNMIGN_MASK); + + splimviol = !ign && frameptr < splim; + *fpccr = FIELD_DP32(*fpccr, V7M_FPCCR, SPLIMVIOL, splimviol); + } + + *fpccr = FIELD_DP32(*fpccr, V7M_FPCCR, LSPACT, 1); + + *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, S, is_secure); + + *fpccr = FIELD_DP32(*fpccr, V7M_FPCCR, USER, arm_current_el(env) == 0); + + *fpccr = FIELD_DP32(*fpccr, V7M_FPCCR, THREAD, + !arm_v7m_is_handler_mode(env)); + + hfrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_HARD, false); + *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, HFRDY, hfrdy); + + bfrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_BUS, false); + *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, BFRDY, bfrdy); + + mmrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_MEM, is_secure); + *fpccr = FIELD_DP32(*fpccr, V7M_FPCCR, MMRDY, mmrdy); + + ns_ufrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_USAGE, false); + *fpccr_ns = FIELD_DP32(*fpccr_ns, V7M_FPCCR, UFRDY, ns_ufrdy); + + monrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_DEBUG, false); + *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, MONRDY, monrdy); + + if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { + s_ufrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_USAGE, true); + *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, UFRDY, s_ufrdy); + + sfrdy = armv7m_nvic_get_ready_status(nvic, ARMV7M_EXCP_SECURE, false); + *fpccr_s = FIELD_DP32(*fpccr_s, V7M_FPCCR, SFRDY, sfrdy); + } +} + +void HELPER(v7m_vlstm)(CPUARMState *env, uint32_t fptr) +{ + /* fptr is the value of Rn, the frame pointer we store the FP regs to */ + bool s = env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_S_MASK; + bool lspact = env->v7m.fpccr[s] & R_V7M_FPCCR_LSPACT_MASK; + + assert(env->v7m.secure); + + if (!(env->v7m.control[M_REG_S] & R_V7M_CONTROL_SFPA_MASK)) { + return; + } + + /* Check access to the coprocessor is permitted */ + if (!v7m_cpacr_pass(env, true, arm_current_el(env) != 0)) { + raise_exception_ra(env, EXCP_NOCP, 0, 1, GETPC()); + } + + if (lspact) { + /* LSPACT should not be active when there is active FP state */ + raise_exception_ra(env, EXCP_LSERR, 0, 1, GETPC()); + } + + if (fptr & 7) { + raise_exception_ra(env, EXCP_UNALIGNED, 0, 1, GETPC()); + } + + /* + * Note that we do not use v7m_stack_write() here, because the + * accesses should not set the FSR bits for stacking errors if they + * fail. (In pseudocode terms, they are AccType_NORMAL, not AccType_STACK + * or AccType_LAZYFP). Faults in cpu_stl_data() will throw exceptions + * and longjmp out. + */ + if (!(env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_LSPEN_MASK)) { + bool ts = env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_TS_MASK; + int i; + + for (i = 0; i < (ts ? 32 : 16); i += 2) { + uint64_t dn = *aa32_vfp_dreg(env, i / 2); + uint32_t faddr = fptr + 4 * i; + uint32_t slo = extract64(dn, 0, 32); + uint32_t shi = extract64(dn, 32, 32); + + if (i >= 16) { + faddr += 8; /* skip the slot for the FPSCR */ + } + cpu_stl_data(env, faddr, slo); + cpu_stl_data(env, faddr + 4, shi); + } + cpu_stl_data(env, fptr + 0x40, vfp_get_fpscr(env)); + + /* + * If TS is 0 then s0 to s15 and FPSCR are UNKNOWN; we choose to + * leave them unchanged, matching our choice in v7m_preserve_fp_state. + */ + if (ts) { + for (i = 0; i < 32; i += 2) { + *aa32_vfp_dreg(env, i / 2) = 0; + } + vfp_set_fpscr(env, 0); + } + } else { + v7m_update_fpccr(env, fptr, false); + } + + env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_FPCA_MASK; +} + +void HELPER(v7m_vlldm)(CPUARMState *env, uint32_t fptr) +{ + /* fptr is the value of Rn, the frame pointer we load the FP regs from */ + assert(env->v7m.secure); + + if (!(env->v7m.control[M_REG_S] & R_V7M_CONTROL_SFPA_MASK)) { + return; + } + + /* Check access to the coprocessor is permitted */ + if (!v7m_cpacr_pass(env, true, arm_current_el(env) != 0)) { + raise_exception_ra(env, EXCP_NOCP, 0, 1, GETPC()); + } + + if (env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_LSPACT_MASK) { + /* State in FP is still valid */ + env->v7m.fpccr[M_REG_S] &= ~R_V7M_FPCCR_LSPACT_MASK; + } else { + bool ts = env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_TS_MASK; + int i; + uint32_t fpscr; + + if (fptr & 7) { + raise_exception_ra(env, EXCP_UNALIGNED, 0, 1, GETPC()); + } + + for (i = 0; i < (ts ? 32 : 16); i += 2) { + uint32_t slo, shi; + uint64_t dn; + uint32_t faddr = fptr + 4 * i; + + if (i >= 16) { + faddr += 8; /* skip the slot for the FPSCR */ + } + + slo = cpu_ldl_data(env, faddr); + shi = cpu_ldl_data(env, faddr + 4); + + dn = (uint64_t) shi << 32 | slo; + *aa32_vfp_dreg(env, i / 2) = dn; + } + fpscr = cpu_ldl_data(env, fptr + 0x40); + vfp_set_fpscr(env, fpscr); + } + + env->v7m.control[M_REG_S] |= R_V7M_CONTROL_FPCA_MASK; +} + +static bool v7m_push_stack(ARMCPU *cpu) +{ + /* + * Do the "set up stack frame" part of exception entry, + * similar to pseudocode PushStack(). + * Return true if we generate a derived exception (and so + * should ignore further stack faults trying to process + * that derived exception.) + */ + bool stacked_ok = true, limitviol = false; + CPUARMState *env = &cpu->env; + uint32_t xpsr = xpsr_read(env); + uint32_t frameptr = env->regs[13]; + ARMMMUIdx mmu_idx = arm_mmu_idx(env); + uint32_t framesize; + bool nsacr_cp10 = extract32(env->v7m.nsacr, 10, 1); + + if ((env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK) && + (env->v7m.secure || nsacr_cp10)) { + if (env->v7m.secure && + env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_TS_MASK) { + framesize = 0xa8; + } else { + framesize = 0x68; + } + } else { + framesize = 0x20; + } + + /* Align stack pointer if the guest wants that */ + if ((frameptr & 4) && + (env->v7m.ccr[env->v7m.secure] & R_V7M_CCR_STKALIGN_MASK)) { + frameptr -= 4; + xpsr |= XPSR_SPREALIGN; + } + + xpsr &= ~XPSR_SFPA; + if (env->v7m.secure && + (env->v7m.control[M_REG_S] & R_V7M_CONTROL_SFPA_MASK)) { + xpsr |= XPSR_SFPA; + } + + frameptr -= framesize; + + if (arm_feature(env, ARM_FEATURE_V8)) { + uint32_t limit = v7m_sp_limit(env); + + if (frameptr < limit) { + /* + * Stack limit failure: set SP to the limit value, and generate + * STKOF UsageFault. Stack pushes below the limit must not be + * performed. It is IMPDEF whether pushes above the limit are + * performed; we choose not to. + */ + qemu_log_mask(CPU_LOG_INT, + "...STKOF during stacking\n"); + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_STKOF_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, + env->v7m.secure); + env->regs[13] = limit; + /* + * We won't try to perform any further memory accesses but + * we must continue through the following code to check for + * permission faults during FPU state preservation, and we + * must update FPCCR if lazy stacking is enabled. + */ + limitviol = true; + stacked_ok = false; + } + } + + /* + * Write as much of the stack frame as we can. If we fail a stack + * write this will result in a derived exception being pended + * (which may be taken in preference to the one we started with + * if it has higher priority). + */ + stacked_ok = stacked_ok && + v7m_stack_write(cpu, frameptr, env->regs[0], mmu_idx, STACK_NORMAL) && + v7m_stack_write(cpu, frameptr + 4, env->regs[1], + mmu_idx, STACK_NORMAL) && + v7m_stack_write(cpu, frameptr + 8, env->regs[2], + mmu_idx, STACK_NORMAL) && + v7m_stack_write(cpu, frameptr + 12, env->regs[3], + mmu_idx, STACK_NORMAL) && + v7m_stack_write(cpu, frameptr + 16, env->regs[12], + mmu_idx, STACK_NORMAL) && + v7m_stack_write(cpu, frameptr + 20, env->regs[14], + mmu_idx, STACK_NORMAL) && + v7m_stack_write(cpu, frameptr + 24, env->regs[15], + mmu_idx, STACK_NORMAL) && + v7m_stack_write(cpu, frameptr + 28, xpsr, mmu_idx, STACK_NORMAL); + + if (env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK) { + /* FPU is active, try to save its registers */ + bool fpccr_s = env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_S_MASK; + bool lspact = env->v7m.fpccr[fpccr_s] & R_V7M_FPCCR_LSPACT_MASK; + + if (lspact && arm_feature(env, ARM_FEATURE_M_SECURITY)) { + qemu_log_mask(CPU_LOG_INT, + "...SecureFault because LSPACT and FPCA both set\n"); + env->v7m.sfsr |= R_V7M_SFSR_LSERR_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); + } else if (!env->v7m.secure && !nsacr_cp10) { + qemu_log_mask(CPU_LOG_INT, + "...Secure UsageFault with CFSR.NOCP because " + "NSACR.CP10 prevents stacking FP regs\n"); + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, M_REG_S); + env->v7m.cfsr[M_REG_S] |= R_V7M_CFSR_NOCP_MASK; + } else { + if (!(env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_LSPEN_MASK)) { + /* Lazy stacking disabled, save registers now */ + int i; + bool cpacr_pass = v7m_cpacr_pass(env, env->v7m.secure, + arm_current_el(env) != 0); + + if (stacked_ok && !cpacr_pass) { + /* + * Take UsageFault if CPACR forbids access. The pseudocode + * here does a full CheckCPEnabled() but we know the NSACR + * check can never fail as we have already handled that. + */ + qemu_log_mask(CPU_LOG_INT, + "...UsageFault with CFSR.NOCP because " + "CPACR.CP10 prevents stacking FP regs\n"); + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, + env->v7m.secure); + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_NOCP_MASK; + stacked_ok = false; + } + + for (i = 0; i < ((framesize == 0xa8) ? 32 : 16); i += 2) { + uint64_t dn = *aa32_vfp_dreg(env, i / 2); + uint32_t faddr = frameptr + 0x20 + 4 * i; + uint32_t slo = extract64(dn, 0, 32); + uint32_t shi = extract64(dn, 32, 32); + + if (i >= 16) { + faddr += 8; /* skip the slot for the FPSCR */ + } + stacked_ok = stacked_ok && + v7m_stack_write(cpu, faddr, slo, + mmu_idx, STACK_NORMAL) && + v7m_stack_write(cpu, faddr + 4, shi, + mmu_idx, STACK_NORMAL); + } + stacked_ok = stacked_ok && + v7m_stack_write(cpu, frameptr + 0x60, + vfp_get_fpscr(env), mmu_idx, STACK_NORMAL); + if (cpacr_pass) { + for (i = 0; i < ((framesize == 0xa8) ? 32 : 16); i += 2) { + *aa32_vfp_dreg(env, i / 2) = 0; + } + vfp_set_fpscr(env, 0); + } + } else { + /* Lazy stacking enabled, save necessary info to stack later */ + v7m_update_fpccr(env, frameptr + 0x20, true); + } + } + } + + /* + * If we broke a stack limit then SP was already updated earlier; + * otherwise we update SP regardless of whether any of the stack + * accesses failed or we took some other kind of fault. + */ + if (!limitviol) { + env->regs[13] = frameptr; + } + + return !stacked_ok; +} + +static void do_v7m_exception_exit(ARMCPU *cpu) +{ + CPUARMState *env = &cpu->env; + uint32_t excret; + uint32_t xpsr, xpsr_mask; + bool ufault = false; + bool sfault = false; + bool return_to_sp_process; + bool return_to_handler; + bool rettobase = false; + bool exc_secure = false; + bool return_to_secure; + bool ftype; + bool restore_s16_s31; + + /* + * If we're not in Handler mode then jumps to magic exception-exit + * addresses don't have magic behaviour. However for the v8M + * security extensions the magic secure-function-return has to + * work in thread mode too, so to avoid doing an extra check in + * the generated code we allow exception-exit magic to also cause the + * internal exception and bring us here in thread mode. Correct code + * will never try to do this (the following insn fetch will always + * fault) so we the overhead of having taken an unnecessary exception + * doesn't matter. + */ + if (!arm_v7m_is_handler_mode(env)) { + return; + } + + /* + * In the spec pseudocode ExceptionReturn() is called directly + * from BXWritePC() and gets the full target PC value including + * bit zero. In QEMU's implementation we treat it as a normal + * jump-to-register (which is then caught later on), and so split + * the target value up between env->regs[15] and env->thumb in + * gen_bx(). Reconstitute it. + */ + excret = env->regs[15]; + if (env->thumb) { + excret |= 1; + } + + qemu_log_mask(CPU_LOG_INT, "Exception return: magic PC %" PRIx32 + " previous exception %d\n", + excret, env->v7m.exception); + + if ((excret & R_V7M_EXCRET_RES1_MASK) != R_V7M_EXCRET_RES1_MASK) { + qemu_log_mask(LOG_GUEST_ERROR, "M profile: zero high bits in exception " + "exit PC value 0x%" PRIx32 " are UNPREDICTABLE\n", + excret); + } + + ftype = excret & R_V7M_EXCRET_FTYPE_MASK; + + if (!arm_feature(env, ARM_FEATURE_VFP) && !ftype) { + qemu_log_mask(LOG_GUEST_ERROR, "M profile: zero FTYPE in exception " + "exit PC value 0x%" PRIx32 " is UNPREDICTABLE " + "if FPU not present\n", + excret); + ftype = true; + } + + if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { + /* + * EXC_RETURN.ES validation check (R_SMFL). We must do this before + * we pick which FAULTMASK to clear. + */ + if (!env->v7m.secure && + ((excret & R_V7M_EXCRET_ES_MASK) || + !(excret & R_V7M_EXCRET_DCRS_MASK))) { + sfault = 1; + /* For all other purposes, treat ES as 0 (R_HXSR) */ + excret &= ~R_V7M_EXCRET_ES_MASK; + } + exc_secure = excret & R_V7M_EXCRET_ES_MASK; + } + + if (env->v7m.exception != ARMV7M_EXCP_NMI) { + /* + * Auto-clear FAULTMASK on return from other than NMI. + * If the security extension is implemented then this only + * happens if the raw execution priority is >= 0; the + * value of the ES bit in the exception return value indicates + * which security state's faultmask to clear. (v8M ARM ARM R_KBNF.) + */ + if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { + if (armv7m_nvic_raw_execution_priority(env->nvic) >= 0) { + env->v7m.faultmask[exc_secure] = 0; + } + } else { + env->v7m.faultmask[M_REG_NS] = 0; + } + } + + switch (armv7m_nvic_complete_irq(env->nvic, env->v7m.exception, + exc_secure)) { + case -1: + /* attempt to exit an exception that isn't active */ + ufault = true; + break; + case 0: + /* still an irq active now */ + break; + case 1: + /* + * We returned to base exception level, no nesting. + * (In the pseudocode this is written using "NestedActivation != 1" + * where we have 'rettobase == false'.) + */ + rettobase = true; + break; + default: + g_assert_not_reached(); + } + + return_to_handler = !(excret & R_V7M_EXCRET_MODE_MASK); + return_to_sp_process = excret & R_V7M_EXCRET_SPSEL_MASK; + return_to_secure = arm_feature(env, ARM_FEATURE_M_SECURITY) && + (excret & R_V7M_EXCRET_S_MASK); + + if (arm_feature(env, ARM_FEATURE_V8)) { + if (!arm_feature(env, ARM_FEATURE_M_SECURITY)) { + /* + * UNPREDICTABLE if S == 1 or DCRS == 0 or ES == 1 (R_XLCP); + * we choose to take the UsageFault. + */ + if ((excret & R_V7M_EXCRET_S_MASK) || + (excret & R_V7M_EXCRET_ES_MASK) || + !(excret & R_V7M_EXCRET_DCRS_MASK)) { + ufault = true; + } + } + if (excret & R_V7M_EXCRET_RES0_MASK) { + ufault = true; + } + } else { + /* For v7M we only recognize certain combinations of the low bits */ + switch (excret & 0xf) { + case 1: /* Return to Handler */ + break; + case 13: /* Return to Thread using Process stack */ + case 9: /* Return to Thread using Main stack */ + /* + * We only need to check NONBASETHRDENA for v7M, because in + * v8M this bit does not exist (it is RES1). + */ + if (!rettobase && + !(env->v7m.ccr[env->v7m.secure] & + R_V7M_CCR_NONBASETHRDENA_MASK)) { + ufault = true; + } + break; + default: + ufault = true; + } + } + + /* + * Set CONTROL.SPSEL from excret.SPSEL. Since we're still in + * Handler mode (and will be until we write the new XPSR.Interrupt + * field) this does not switch around the current stack pointer. + * We must do this before we do any kind of tailchaining, including + * for the derived exceptions on integrity check failures, or we will + * give the guest an incorrect EXCRET.SPSEL value on exception entry. + */ + write_v7m_control_spsel_for_secstate(env, return_to_sp_process, exc_secure); + + /* + * Clear scratch FP values left in caller saved registers; this + * must happen before any kind of tail chaining. + */ + if ((env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_CLRONRET_MASK) && + (env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK)) { + if (env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_LSPACT_MASK) { + env->v7m.sfsr |= R_V7M_SFSR_LSERR_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); + qemu_log_mask(CPU_LOG_INT, "...taking SecureFault on existing " + "stackframe: error during lazy state deactivation\n"); + v7m_exception_taken(cpu, excret, true, false); + return; + } else { + /* Clear s0..s15 and FPSCR */ + int i; + + for (i = 0; i < 16; i += 2) { + *aa32_vfp_dreg(env, i / 2) = 0; + } + vfp_set_fpscr(env, 0); + } + } + + if (sfault) { + env->v7m.sfsr |= R_V7M_SFSR_INVER_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); + qemu_log_mask(CPU_LOG_INT, "...taking SecureFault on existing " + "stackframe: failed EXC_RETURN.ES validity check\n"); + v7m_exception_taken(cpu, excret, true, false); + return; + } + + if (ufault) { + /* + * Bad exception return: instead of popping the exception + * stack, directly take a usage fault on the current stack. + */ + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_INVPC_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, env->v7m.secure); + qemu_log_mask(CPU_LOG_INT, "...taking UsageFault on existing " + "stackframe: failed exception return integrity check\n"); + v7m_exception_taken(cpu, excret, true, false); + return; + } + + /* + * Tailchaining: if there is currently a pending exception that + * is high enough priority to preempt execution at the level we're + * about to return to, then just directly take that exception now, + * avoiding an unstack-and-then-stack. Note that now we have + * deactivated the previous exception by calling armv7m_nvic_complete_irq() + * our current execution priority is already the execution priority we are + * returning to -- none of the state we would unstack or set based on + * the EXCRET value affects it. + */ + if (armv7m_nvic_can_take_pending_exception(env->nvic)) { + qemu_log_mask(CPU_LOG_INT, "...tailchaining to pending exception\n"); + v7m_exception_taken(cpu, excret, true, false); + return; + } + + switch_v7m_security_state(env, return_to_secure); + + { + /* + * The stack pointer we should be reading the exception frame from + * depends on bits in the magic exception return type value (and + * for v8M isn't necessarily the stack pointer we will eventually + * end up resuming execution with). Get a pointer to the location + * in the CPU state struct where the SP we need is currently being + * stored; we will use and modify it in place. + * We use this limited C variable scope so we don't accidentally + * use 'frame_sp_p' after we do something that makes it invalid. + */ + uint32_t *frame_sp_p = get_v7m_sp_ptr(env, + return_to_secure, + !return_to_handler, + return_to_sp_process); + uint32_t frameptr = *frame_sp_p; + bool pop_ok = true; + ARMMMUIdx mmu_idx; + bool return_to_priv = return_to_handler || + !(env->v7m.control[return_to_secure] & R_V7M_CONTROL_NPRIV_MASK); + + mmu_idx = arm_v7m_mmu_idx_for_secstate_and_priv(env, return_to_secure, + return_to_priv); + + if (!QEMU_IS_ALIGNED(frameptr, 8) && + arm_feature(env, ARM_FEATURE_V8)) { + qemu_log_mask(LOG_GUEST_ERROR, + "M profile exception return with non-8-aligned SP " + "for destination state is UNPREDICTABLE\n"); + } + + /* Do we need to pop callee-saved registers? */ + if (return_to_secure && + ((excret & R_V7M_EXCRET_ES_MASK) == 0 || + (excret & R_V7M_EXCRET_DCRS_MASK) == 0)) { + uint32_t actual_sig; + + pop_ok = v7m_stack_read(cpu, &actual_sig, frameptr, mmu_idx); + + if (pop_ok && v7m_integrity_sig(env, excret) != actual_sig) { + /* Take a SecureFault on the current stack */ + env->v7m.sfsr |= R_V7M_SFSR_INVIS_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); + qemu_log_mask(CPU_LOG_INT, "...taking SecureFault on existing " + "stackframe: failed exception return integrity " + "signature check\n"); + v7m_exception_taken(cpu, excret, true, false); + return; + } + + pop_ok = pop_ok && + v7m_stack_read(cpu, &env->regs[4], frameptr + 0x8, mmu_idx) && + v7m_stack_read(cpu, &env->regs[5], frameptr + 0xc, mmu_idx) && + v7m_stack_read(cpu, &env->regs[6], frameptr + 0x10, mmu_idx) && + v7m_stack_read(cpu, &env->regs[7], frameptr + 0x14, mmu_idx) && + v7m_stack_read(cpu, &env->regs[8], frameptr + 0x18, mmu_idx) && + v7m_stack_read(cpu, &env->regs[9], frameptr + 0x1c, mmu_idx) && + v7m_stack_read(cpu, &env->regs[10], frameptr + 0x20, mmu_idx) && + v7m_stack_read(cpu, &env->regs[11], frameptr + 0x24, mmu_idx); + + frameptr += 0x28; + } + + /* Pop registers */ + pop_ok = pop_ok && + v7m_stack_read(cpu, &env->regs[0], frameptr, mmu_idx) && + v7m_stack_read(cpu, &env->regs[1], frameptr + 0x4, mmu_idx) && + v7m_stack_read(cpu, &env->regs[2], frameptr + 0x8, mmu_idx) && + v7m_stack_read(cpu, &env->regs[3], frameptr + 0xc, mmu_idx) && + v7m_stack_read(cpu, &env->regs[12], frameptr + 0x10, mmu_idx) && + v7m_stack_read(cpu, &env->regs[14], frameptr + 0x14, mmu_idx) && + v7m_stack_read(cpu, &env->regs[15], frameptr + 0x18, mmu_idx) && + v7m_stack_read(cpu, &xpsr, frameptr + 0x1c, mmu_idx); + + if (!pop_ok) { + /* + * v7m_stack_read() pended a fault, so take it (as a tail + * chained exception on the same stack frame) + */ + qemu_log_mask(CPU_LOG_INT, "...derived exception on unstacking\n"); + v7m_exception_taken(cpu, excret, true, false); + return; + } + + /* + * Returning from an exception with a PC with bit 0 set is defined + * behaviour on v8M (bit 0 is ignored), but for v7M it was specified + * to be UNPREDICTABLE. In practice actual v7M hardware seems to ignore + * the lsbit, and there are several RTOSes out there which incorrectly + * assume the r15 in the stack frame should be a Thumb-style "lsbit + * indicates ARM/Thumb" value, so ignore the bit on v7M as well, but + * complain about the badly behaved guest. + */ + if (env->regs[15] & 1) { + env->regs[15] &= ~1U; + if (!arm_feature(env, ARM_FEATURE_V8)) { + qemu_log_mask(LOG_GUEST_ERROR, + "M profile return from interrupt with misaligned " + "PC is UNPREDICTABLE on v7M\n"); + } + } + + if (arm_feature(env, ARM_FEATURE_V8)) { + /* + * For v8M we have to check whether the xPSR exception field + * matches the EXCRET value for return to handler/thread + * before we commit to changing the SP and xPSR. + */ + bool will_be_handler = (xpsr & XPSR_EXCP) != 0; + if (return_to_handler != will_be_handler) { + /* + * Take an INVPC UsageFault on the current stack. + * By this point we will have switched to the security state + * for the background state, so this UsageFault will target + * that state. + */ + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, + env->v7m.secure); + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_INVPC_MASK; + qemu_log_mask(CPU_LOG_INT, "...taking UsageFault on existing " + "stackframe: failed exception return integrity " + "check\n"); + v7m_exception_taken(cpu, excret, true, false); + return; + } + } + + if (!ftype) { + /* FP present and we need to handle it */ + if (!return_to_secure && + (env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_LSPACT_MASK)) { + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); + env->v7m.sfsr |= R_V7M_SFSR_LSERR_MASK; + qemu_log_mask(CPU_LOG_INT, + "...taking SecureFault on existing stackframe: " + "Secure LSPACT set but exception return is " + "not to secure state\n"); + v7m_exception_taken(cpu, excret, true, false); + return; + } + + restore_s16_s31 = return_to_secure && + (env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_TS_MASK); + + if (env->v7m.fpccr[return_to_secure] & R_V7M_FPCCR_LSPACT_MASK) { + /* State in FPU is still valid, just clear LSPACT */ + env->v7m.fpccr[return_to_secure] &= ~R_V7M_FPCCR_LSPACT_MASK; + } else { + int i; + uint32_t fpscr; + bool cpacr_pass, nsacr_pass; + + cpacr_pass = v7m_cpacr_pass(env, return_to_secure, + return_to_priv); + nsacr_pass = return_to_secure || + extract32(env->v7m.nsacr, 10, 1); + + if (!cpacr_pass) { + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, + return_to_secure); + env->v7m.cfsr[return_to_secure] |= R_V7M_CFSR_NOCP_MASK; + qemu_log_mask(CPU_LOG_INT, + "...taking UsageFault on existing " + "stackframe: CPACR.CP10 prevents unstacking " + "FP regs\n"); + v7m_exception_taken(cpu, excret, true, false); + return; + } else if (!nsacr_pass) { + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, true); + env->v7m.cfsr[M_REG_S] |= R_V7M_CFSR_INVPC_MASK; + qemu_log_mask(CPU_LOG_INT, + "...taking Secure UsageFault on existing " + "stackframe: NSACR.CP10 prevents unstacking " + "FP regs\n"); + v7m_exception_taken(cpu, excret, true, false); + return; + } + + for (i = 0; i < (restore_s16_s31 ? 32 : 16); i += 2) { + uint32_t slo, shi; + uint64_t dn; + uint32_t faddr = frameptr + 0x20 + 4 * i; + + if (i >= 16) { + faddr += 8; /* Skip the slot for the FPSCR */ + } + + pop_ok = pop_ok && + v7m_stack_read(cpu, &slo, faddr, mmu_idx) && + v7m_stack_read(cpu, &shi, faddr + 4, mmu_idx); + + if (!pop_ok) { + break; + } + + dn = (uint64_t)shi << 32 | slo; + *aa32_vfp_dreg(env, i / 2) = dn; + } + pop_ok = pop_ok && + v7m_stack_read(cpu, &fpscr, frameptr + 0x60, mmu_idx); + if (pop_ok) { + vfp_set_fpscr(env, fpscr); + } + if (!pop_ok) { + /* + * These regs are 0 if security extension present; + * otherwise merely UNKNOWN. We zero always. + */ + for (i = 0; i < (restore_s16_s31 ? 32 : 16); i += 2) { + *aa32_vfp_dreg(env, i / 2) = 0; + } + vfp_set_fpscr(env, 0); + } + } + } + env->v7m.control[M_REG_S] = FIELD_DP32(env->v7m.control[M_REG_S], + V7M_CONTROL, FPCA, !ftype); + + /* Commit to consuming the stack frame */ + frameptr += 0x20; + if (!ftype) { + frameptr += 0x48; + if (restore_s16_s31) { + frameptr += 0x40; + } + } + /* + * Undo stack alignment (the SPREALIGN bit indicates that the original + * pre-exception SP was not 8-aligned and we added a padding word to + * align it, so we undo this by ORing in the bit that increases it + * from the current 8-aligned value to the 8-unaligned value. (Adding 4 + * would work too but a logical OR is how the pseudocode specifies it.) + */ + if (xpsr & XPSR_SPREALIGN) { + frameptr |= 4; + } + *frame_sp_p = frameptr; + } + + xpsr_mask = ~(XPSR_SPREALIGN | XPSR_SFPA); + if (!arm_feature(env, ARM_FEATURE_THUMB_DSP)) { + xpsr_mask &= ~XPSR_GE; + } + /* This xpsr_write() will invalidate frame_sp_p as it may switch stack */ + xpsr_write(env, xpsr, xpsr_mask); + + if (env->v7m.secure) { + bool sfpa = xpsr & XPSR_SFPA; + + env->v7m.control[M_REG_S] = FIELD_DP32(env->v7m.control[M_REG_S], + V7M_CONTROL, SFPA, sfpa); + } + + /* + * The restored xPSR exception field will be zero if we're + * resuming in Thread mode. If that doesn't match what the + * exception return excret specified then this is a UsageFault. + * v7M requires we make this check here; v8M did it earlier. + */ + if (return_to_handler != arm_v7m_is_handler_mode(env)) { + /* + * Take an INVPC UsageFault by pushing the stack again; + * we know we're v7M so this is never a Secure UsageFault. + */ + bool ignore_stackfaults; + + assert(!arm_feature(env, ARM_FEATURE_V8)); + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, false); + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_INVPC_MASK; + ignore_stackfaults = v7m_push_stack(cpu); + qemu_log_mask(CPU_LOG_INT, "...taking UsageFault on new stackframe: " + "failed exception return integrity check\n"); + v7m_exception_taken(cpu, excret, false, ignore_stackfaults); + return; + } + + /* Otherwise, we have a successful exception exit. */ + arm_clear_exclusive(env); + qemu_log_mask(CPU_LOG_INT, "...successful exception return\n"); +} + +static bool do_v7m_function_return(ARMCPU *cpu) +{ + /* + * v8M security extensions magic function return. + * We may either: + * (1) throw an exception (longjump) + * (2) return true if we successfully handled the function return + * (3) return false if we failed a consistency check and have + * pended a UsageFault that needs to be taken now + * + * At this point the magic return value is split between env->regs[15] + * and env->thumb. We don't bother to reconstitute it because we don't + * need it (all values are handled the same way). + */ + CPUARMState *env = &cpu->env; + uint32_t newpc, newpsr, newpsr_exc; + + qemu_log_mask(CPU_LOG_INT, "...really v7M secure function return\n"); + + { + bool threadmode, spsel; + TCGMemOpIdx oi; + ARMMMUIdx mmu_idx; + uint32_t *frame_sp_p; + uint32_t frameptr; + + /* Pull the return address and IPSR from the Secure stack */ + threadmode = !arm_v7m_is_handler_mode(env); + spsel = env->v7m.control[M_REG_S] & R_V7M_CONTROL_SPSEL_MASK; + + frame_sp_p = get_v7m_sp_ptr(env, true, threadmode, spsel); + frameptr = *frame_sp_p; + + /* + * These loads may throw an exception (for MPU faults). We want to + * do them as secure, so work out what MMU index that is. + */ + mmu_idx = arm_v7m_mmu_idx_for_secstate(env, true); + oi = make_memop_idx(MO_LE, arm_to_core_mmu_idx(mmu_idx)); + newpc = helper_le_ldul_mmu(env, frameptr, oi, 0); + newpsr = helper_le_ldul_mmu(env, frameptr + 4, oi, 0); + + /* Consistency checks on new IPSR */ + newpsr_exc = newpsr & XPSR_EXCP; + if (!((env->v7m.exception == 0 && newpsr_exc == 0) || + (env->v7m.exception == 1 && newpsr_exc != 0))) { + /* Pend the fault and tell our caller to take it */ + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_INVPC_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, + env->v7m.secure); + qemu_log_mask(CPU_LOG_INT, + "...taking INVPC UsageFault: " + "IPSR consistency check failed\n"); + return false; + } + + *frame_sp_p = frameptr + 8; + } + + /* This invalidates frame_sp_p */ + switch_v7m_security_state(env, true); + env->v7m.exception = newpsr_exc; + env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_SFPA_MASK; + if (newpsr & XPSR_SFPA) { + env->v7m.control[M_REG_S] |= R_V7M_CONTROL_SFPA_MASK; + } + xpsr_write(env, 0, XPSR_IT); + env->thumb = newpc & 1; + env->regs[15] = newpc & ~1; + + qemu_log_mask(CPU_LOG_INT, "...function return successful\n"); + return true; +} + +static bool v7m_read_half_insn(ARMCPU *cpu, ARMMMUIdx mmu_idx, + uint32_t addr, uint16_t *insn) +{ + /* + * Load a 16-bit portion of a v7M instruction, returning true on success, + * or false on failure (in which case we will have pended the appropriate + * exception). + * We need to do the instruction fetch's MPU and SAU checks + * like this because there is no MMU index that would allow + * doing the load with a single function call. Instead we must + * first check that the security attributes permit the load + * and that they don't mismatch on the two halves of the instruction, + * and then we do the load as a secure load (ie using the security + * attributes of the address, not the CPU, as architecturally required). + */ + CPUState *cs = CPU(cpu); + CPUARMState *env = &cpu->env; + V8M_SAttributes sattrs = {}; + MemTxAttrs attrs = {}; + ARMMMUFaultInfo fi = {}; + MemTxResult txres; + target_ulong page_size; + hwaddr physaddr; + int prot; + + v8m_security_lookup(env, addr, MMU_INST_FETCH, mmu_idx, &sattrs); + if (!sattrs.nsc || sattrs.ns) { + /* + * This must be the second half of the insn, and it straddles a + * region boundary with the second half not being S&NSC. + */ + env->v7m.sfsr |= R_V7M_SFSR_INVEP_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); + qemu_log_mask(CPU_LOG_INT, + "...really SecureFault with SFSR.INVEP\n"); + return false; + } + if (get_phys_addr(env, addr, MMU_INST_FETCH, mmu_idx, + &physaddr, &attrs, &prot, &page_size, &fi, NULL)) { + /* the MPU lookup failed */ + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_IACCVIOL_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_MEM, env->v7m.secure); + qemu_log_mask(CPU_LOG_INT, "...really MemManage with CFSR.IACCVIOL\n"); + return false; + } + *insn = address_space_lduw_le(arm_addressspace(cs, attrs), physaddr, + attrs, &txres); + if (txres != MEMTX_OK) { + env->v7m.cfsr[M_REG_NS] |= R_V7M_CFSR_IBUSERR_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_BUS, false); + qemu_log_mask(CPU_LOG_INT, "...really BusFault with CFSR.IBUSERR\n"); + return false; + } + return true; +} + +static bool v7m_handle_execute_nsc(ARMCPU *cpu) +{ + /* + * Check whether this attempt to execute code in a Secure & NS-Callable + * memory region is for an SG instruction; if so, then emulate the + * effect of the SG instruction and return true. Otherwise pend + * the correct kind of exception and return false. + */ + CPUARMState *env = &cpu->env; + ARMMMUIdx mmu_idx; + uint16_t insn; + + /* + * We should never get here unless get_phys_addr_pmsav8() caused + * an exception for NS executing in S&NSC memory. + */ + assert(!env->v7m.secure); + assert(arm_feature(env, ARM_FEATURE_M_SECURITY)); + + /* We want to do the MPU lookup as secure; work out what mmu_idx that is */ + mmu_idx = arm_v7m_mmu_idx_for_secstate(env, true); + + if (!v7m_read_half_insn(cpu, mmu_idx, env->regs[15], &insn)) { + return false; + } + + if (!env->thumb) { + goto gen_invep; + } + + if (insn != 0xe97f) { + /* + * Not an SG instruction first half (we choose the IMPDEF + * early-SG-check option). + */ + goto gen_invep; + } + + if (!v7m_read_half_insn(cpu, mmu_idx, env->regs[15] + 2, &insn)) { + return false; + } + + if (insn != 0xe97f) { + /* + * Not an SG instruction second half (yes, both halves of the SG + * insn have the same hex value) + */ + goto gen_invep; + } + + /* + * OK, we have confirmed that we really have an SG instruction. + * We know we're NS in S memory so don't need to repeat those checks. + */ + qemu_log_mask(CPU_LOG_INT, "...really an SG instruction at 0x%08" PRIx32 + ", executing it\n", env->regs[15]); + env->regs[14] &= ~1; + env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_SFPA_MASK; + switch_v7m_security_state(env, true); + xpsr_write(env, 0, XPSR_IT); + env->regs[15] += 4; + return true; + +gen_invep: + env->v7m.sfsr |= R_V7M_SFSR_INVEP_MASK; + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); + qemu_log_mask(CPU_LOG_INT, + "...really SecureFault with SFSR.INVEP\n"); + return false; +} + +void arm_v7m_cpu_do_interrupt(CPUState *cs) +{ + ARMCPU *cpu = ARM_CPU(cs); + CPUARMState *env = &cpu->env; + uint32_t lr; + bool ignore_stackfaults; + + arm_log_exception(cs->exception_index); + + /* + * For exceptions we just mark as pending on the NVIC, and let that + * handle it. + */ + switch (cs->exception_index) { + case EXCP_UDEF: + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, env->v7m.secure); + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_UNDEFINSTR_MASK; + break; + case EXCP_NOCP: + { + /* + * NOCP might be directed to something other than the current + * security state if this fault is because of NSACR; we indicate + * the target security state using exception.target_el. + */ + int target_secstate; + + if (env->exception.target_el == 3) { + target_secstate = M_REG_S; + } else { + target_secstate = env->v7m.secure; + } + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, target_secstate); + env->v7m.cfsr[target_secstate] |= R_V7M_CFSR_NOCP_MASK; + break; + } + case EXCP_INVSTATE: + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, env->v7m.secure); + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_INVSTATE_MASK; + break; + case EXCP_STKOF: + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, env->v7m.secure); + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_STKOF_MASK; + break; + case EXCP_LSERR: + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); + env->v7m.sfsr |= R_V7M_SFSR_LSERR_MASK; + break; + case EXCP_UNALIGNED: + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_USAGE, env->v7m.secure); + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_UNALIGNED_MASK; + break; + case EXCP_SWI: + /* The PC already points to the next instruction. */ + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SVC, env->v7m.secure); + break; + case EXCP_PREFETCH_ABORT: + case EXCP_DATA_ABORT: + /* + * Note that for M profile we don't have a guest facing FSR, but + * the env->exception.fsr will be populated by the code that + * raises the fault, in the A profile short-descriptor format. + */ + switch (env->exception.fsr & 0xf) { + case M_FAKE_FSR_NSC_EXEC: + /* + * Exception generated when we try to execute code at an address + * which is marked as Secure & Non-Secure Callable and the CPU + * is in the Non-Secure state. The only instruction which can + * be executed like this is SG (and that only if both halves of + * the SG instruction have the same security attributes.) + * Everything else must generate an INVEP SecureFault, so we + * emulate the SG instruction here. + */ + if (v7m_handle_execute_nsc(cpu)) { + return; + } + break; + case M_FAKE_FSR_SFAULT: + /* + * Various flavours of SecureFault for attempts to execute or + * access data in the wrong security state. + */ + switch (cs->exception_index) { + case EXCP_PREFETCH_ABORT: + if (env->v7m.secure) { + env->v7m.sfsr |= R_V7M_SFSR_INVTRAN_MASK; + qemu_log_mask(CPU_LOG_INT, + "...really SecureFault with SFSR.INVTRAN\n"); + } else { + env->v7m.sfsr |= R_V7M_SFSR_INVEP_MASK; + qemu_log_mask(CPU_LOG_INT, + "...really SecureFault with SFSR.INVEP\n"); + } + break; + case EXCP_DATA_ABORT: + /* This must be an NS access to S memory */ + env->v7m.sfsr |= R_V7M_SFSR_AUVIOL_MASK; + qemu_log_mask(CPU_LOG_INT, + "...really SecureFault with SFSR.AUVIOL\n"); + break; + } + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_SECURE, false); + break; + case 0x8: /* External Abort */ + switch (cs->exception_index) { + case EXCP_PREFETCH_ABORT: + env->v7m.cfsr[M_REG_NS] |= R_V7M_CFSR_IBUSERR_MASK; + qemu_log_mask(CPU_LOG_INT, "...with CFSR.IBUSERR\n"); + break; + case EXCP_DATA_ABORT: + env->v7m.cfsr[M_REG_NS] |= + (R_V7M_CFSR_PRECISERR_MASK | R_V7M_CFSR_BFARVALID_MASK); + env->v7m.bfar = env->exception.vaddress; + qemu_log_mask(CPU_LOG_INT, + "...with CFSR.PRECISERR and BFAR 0x%x\n", + env->v7m.bfar); + break; + } + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_BUS, false); + break; + default: + /* + * All other FSR values are either MPU faults or "can't happen + * for M profile" cases. + */ + switch (cs->exception_index) { + case EXCP_PREFETCH_ABORT: + env->v7m.cfsr[env->v7m.secure] |= R_V7M_CFSR_IACCVIOL_MASK; + qemu_log_mask(CPU_LOG_INT, "...with CFSR.IACCVIOL\n"); + break; + case EXCP_DATA_ABORT: + env->v7m.cfsr[env->v7m.secure] |= + (R_V7M_CFSR_DACCVIOL_MASK | R_V7M_CFSR_MMARVALID_MASK); + env->v7m.mmfar[env->v7m.secure] = env->exception.vaddress; + qemu_log_mask(CPU_LOG_INT, + "...with CFSR.DACCVIOL and MMFAR 0x%x\n", + env->v7m.mmfar[env->v7m.secure]); + break; + } + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_MEM, + env->v7m.secure); + break; + } + break; + case EXCP_BKPT: + if (semihosting_enabled()) { + int nr; + nr = arm_lduw_code(env, env->regs[15], arm_sctlr_b(env)) & 0xff; + if (nr == 0xab) { + env->regs[15] += 2; + qemu_log_mask(CPU_LOG_INT, + "...handling as semihosting call 0x%x\n", + env->regs[0]); + env->regs[0] = do_arm_semihosting(env); + return; + } + } + armv7m_nvic_set_pending(env->nvic, ARMV7M_EXCP_DEBUG, false); + break; + case EXCP_IRQ: + break; + case EXCP_EXCEPTION_EXIT: + if (env->regs[15] < EXC_RETURN_MIN_MAGIC) { + /* Must be v8M security extension function return */ + assert(env->regs[15] >= FNC_RETURN_MIN_MAGIC); + assert(arm_feature(env, ARM_FEATURE_M_SECURITY)); + if (do_v7m_function_return(cpu)) { + return; + } + } else { + do_v7m_exception_exit(cpu); + return; + } + break; + case EXCP_LAZYFP: + /* + * We already pended the specific exception in the NVIC in the + * v7m_preserve_fp_state() helper function. + */ + break; + default: + cpu_abort(cs, "Unhandled exception 0x%x\n", cs->exception_index); + return; /* Never happens. Keep compiler happy. */ + } + + if (arm_feature(env, ARM_FEATURE_V8)) { + lr = R_V7M_EXCRET_RES1_MASK | + R_V7M_EXCRET_DCRS_MASK; + /* + * The S bit indicates whether we should return to Secure + * or NonSecure (ie our current state). + * The ES bit indicates whether we're taking this exception + * to Secure or NonSecure (ie our target state). We set it + * later, in v7m_exception_taken(). + * The SPSEL bit is also set in v7m_exception_taken() for v8M. + * This corresponds to the ARM ARM pseudocode for v8M setting + * some LR bits in PushStack() and some in ExceptionTaken(); + * the distinction matters for the tailchain cases where we + * can take an exception without pushing the stack. + */ + if (env->v7m.secure) { + lr |= R_V7M_EXCRET_S_MASK; + } + if (!(env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK)) { + lr |= R_V7M_EXCRET_FTYPE_MASK; + } + } else { + lr = R_V7M_EXCRET_RES1_MASK | + R_V7M_EXCRET_S_MASK | + R_V7M_EXCRET_DCRS_MASK | + R_V7M_EXCRET_FTYPE_MASK | + R_V7M_EXCRET_ES_MASK; + if (env->v7m.control[M_REG_NS] & R_V7M_CONTROL_SPSEL_MASK) { + lr |= R_V7M_EXCRET_SPSEL_MASK; + } + } + if (!arm_v7m_is_handler_mode(env)) { + lr |= R_V7M_EXCRET_MODE_MASK; + } + + ignore_stackfaults = v7m_push_stack(cpu); + v7m_exception_taken(cpu, lr, false, ignore_stackfaults); +} + +uint32_t HELPER(v7m_mrs)(CPUARMState *env, uint32_t reg) +{ + uint32_t mask; + unsigned el = arm_current_el(env); + + /* First handle registers which unprivileged can read */ + + switch (reg) { + case 0 ... 7: /* xPSR sub-fields */ + mask = 0; + if ((reg & 1) && el) { + mask |= XPSR_EXCP; /* IPSR (unpriv. reads as zero) */ + } + if (!(reg & 4)) { + mask |= XPSR_NZCV | XPSR_Q; /* APSR */ + if (arm_feature(env, ARM_FEATURE_THUMB_DSP)) { + mask |= XPSR_GE; + } + } + /* EPSR reads as zero */ + return xpsr_read(env) & mask; + break; + case 20: /* CONTROL */ + { + uint32_t value = env->v7m.control[env->v7m.secure]; + if (!env->v7m.secure) { + /* SFPA is RAZ/WI from NS; FPCA is stored in the M_REG_S bank */ + value |= env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK; + } + return value; + } + case 0x94: /* CONTROL_NS */ + /* + * We have to handle this here because unprivileged Secure code + * can read the NS CONTROL register. + */ + if (!env->v7m.secure) { + return 0; + } + return env->v7m.control[M_REG_NS] | + (env->v7m.control[M_REG_S] & R_V7M_CONTROL_FPCA_MASK); + } + + if (el == 0) { + return 0; /* unprivileged reads others as zero */ + } + + if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { + switch (reg) { + case 0x88: /* MSP_NS */ + if (!env->v7m.secure) { + return 0; + } + return env->v7m.other_ss_msp; + case 0x89: /* PSP_NS */ + if (!env->v7m.secure) { + return 0; + } + return env->v7m.other_ss_psp; + case 0x8a: /* MSPLIM_NS */ + if (!env->v7m.secure) { + return 0; + } + return env->v7m.msplim[M_REG_NS]; + case 0x8b: /* PSPLIM_NS */ + if (!env->v7m.secure) { + return 0; + } + return env->v7m.psplim[M_REG_NS]; + case 0x90: /* PRIMASK_NS */ + if (!env->v7m.secure) { + return 0; + } + return env->v7m.primask[M_REG_NS]; + case 0x91: /* BASEPRI_NS */ + if (!env->v7m.secure) { + return 0; + } + return env->v7m.basepri[M_REG_NS]; + case 0x93: /* FAULTMASK_NS */ + if (!env->v7m.secure) { + return 0; + } + return env->v7m.faultmask[M_REG_NS]; + case 0x98: /* SP_NS */ + { + /* + * This gives the non-secure SP selected based on whether we're + * currently in handler mode or not, using the NS CONTROL.SPSEL. + */ + bool spsel = env->v7m.control[M_REG_NS] & R_V7M_CONTROL_SPSEL_MASK; + + if (!env->v7m.secure) { + return 0; + } + if (!arm_v7m_is_handler_mode(env) && spsel) { + return env->v7m.other_ss_psp; + } else { + return env->v7m.other_ss_msp; + } + } + default: + break; + } + } + + switch (reg) { + case 8: /* MSP */ + return v7m_using_psp(env) ? env->v7m.other_sp : env->regs[13]; + case 9: /* PSP */ + return v7m_using_psp(env) ? env->regs[13] : env->v7m.other_sp; + case 10: /* MSPLIM */ + if (!arm_feature(env, ARM_FEATURE_V8)) { + goto bad_reg; + } + return env->v7m.msplim[env->v7m.secure]; + case 11: /* PSPLIM */ + if (!arm_feature(env, ARM_FEATURE_V8)) { + goto bad_reg; + } + return env->v7m.psplim[env->v7m.secure]; + case 16: /* PRIMASK */ + return env->v7m.primask[env->v7m.secure]; + case 17: /* BASEPRI */ + case 18: /* BASEPRI_MAX */ + return env->v7m.basepri[env->v7m.secure]; + case 19: /* FAULTMASK */ + return env->v7m.faultmask[env->v7m.secure]; + default: + bad_reg: + qemu_log_mask(LOG_GUEST_ERROR, "Attempt to read unknown special" + " register %d\n", reg); + return 0; + } +} + +void HELPER(v7m_msr)(CPUARMState *env, uint32_t maskreg, uint32_t val) +{ + /* + * We're passed bits [11..0] of the instruction; extract + * SYSm and the mask bits. + * Invalid combinations of SYSm and mask are UNPREDICTABLE; + * we choose to treat them as if the mask bits were valid. + * NB that the pseudocode 'mask' variable is bits [11..10], + * whereas ours is [11..8]. + */ + uint32_t mask = extract32(maskreg, 8, 4); + uint32_t reg = extract32(maskreg, 0, 8); + int cur_el = arm_current_el(env); + + if (cur_el == 0 && reg > 7 && reg != 20) { + /* + * only xPSR sub-fields and CONTROL.SFPA may be written by + * unprivileged code + */ + return; + } + + if (arm_feature(env, ARM_FEATURE_M_SECURITY)) { + switch (reg) { + case 0x88: /* MSP_NS */ + if (!env->v7m.secure) { + return; + } + env->v7m.other_ss_msp = val; + return; + case 0x89: /* PSP_NS */ + if (!env->v7m.secure) { + return; + } + env->v7m.other_ss_psp = val; + return; + case 0x8a: /* MSPLIM_NS */ + if (!env->v7m.secure) { + return; + } + env->v7m.msplim[M_REG_NS] = val & ~7; + return; + case 0x8b: /* PSPLIM_NS */ + if (!env->v7m.secure) { + return; + } + env->v7m.psplim[M_REG_NS] = val & ~7; + return; + case 0x90: /* PRIMASK_NS */ + if (!env->v7m.secure) { + return; + } + env->v7m.primask[M_REG_NS] = val & 1; + return; + case 0x91: /* BASEPRI_NS */ + if (!env->v7m.secure || !arm_feature(env, ARM_FEATURE_M_MAIN)) { + return; + } + env->v7m.basepri[M_REG_NS] = val & 0xff; + return; + case 0x93: /* FAULTMASK_NS */ + if (!env->v7m.secure || !arm_feature(env, ARM_FEATURE_M_MAIN)) { + return; + } + env->v7m.faultmask[M_REG_NS] = val & 1; + return; + case 0x94: /* CONTROL_NS */ + if (!env->v7m.secure) { + return; + } + write_v7m_control_spsel_for_secstate(env, + val & R_V7M_CONTROL_SPSEL_MASK, + M_REG_NS); + if (arm_feature(env, ARM_FEATURE_M_MAIN)) { + env->v7m.control[M_REG_NS] &= ~R_V7M_CONTROL_NPRIV_MASK; + env->v7m.control[M_REG_NS] |= val & R_V7M_CONTROL_NPRIV_MASK; + } + /* + * SFPA is RAZ/WI from NS. FPCA is RO if NSACR.CP10 == 0, + * RES0 if the FPU is not present, and is stored in the S bank + */ + if (arm_feature(env, ARM_FEATURE_VFP) && + extract32(env->v7m.nsacr, 10, 1)) { + env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_FPCA_MASK; + env->v7m.control[M_REG_S] |= val & R_V7M_CONTROL_FPCA_MASK; + } + return; + case 0x98: /* SP_NS */ + { + /* + * This gives the non-secure SP selected based on whether we're + * currently in handler mode or not, using the NS CONTROL.SPSEL. + */ + bool spsel = env->v7m.control[M_REG_NS] & R_V7M_CONTROL_SPSEL_MASK; + bool is_psp = !arm_v7m_is_handler_mode(env) && spsel; + uint32_t limit; + + if (!env->v7m.secure) { + return; + } + + limit = is_psp ? env->v7m.psplim[false] : env->v7m.msplim[false]; + + if (val < limit) { + CPUState *cs = env_cpu(env); + + cpu_restore_state(cs, GETPC(), true); + raise_exception(env, EXCP_STKOF, 0, 1); + } + + if (is_psp) { + env->v7m.other_ss_psp = val; + } else { + env->v7m.other_ss_msp = val; + } + return; + } + default: + break; + } + } + + switch (reg) { + case 0 ... 7: /* xPSR sub-fields */ + /* only APSR is actually writable */ + if (!(reg & 4)) { + uint32_t apsrmask = 0; + + if (mask & 8) { + apsrmask |= XPSR_NZCV | XPSR_Q; + } + if ((mask & 4) && arm_feature(env, ARM_FEATURE_THUMB_DSP)) { + apsrmask |= XPSR_GE; + } + xpsr_write(env, val, apsrmask); + } + break; + case 8: /* MSP */ + if (v7m_using_psp(env)) { + env->v7m.other_sp = val; + } else { + env->regs[13] = val; + } + break; + case 9: /* PSP */ + if (v7m_using_psp(env)) { + env->regs[13] = val; + } else { + env->v7m.other_sp = val; + } + break; + case 10: /* MSPLIM */ + if (!arm_feature(env, ARM_FEATURE_V8)) { + goto bad_reg; + } + env->v7m.msplim[env->v7m.secure] = val & ~7; + break; + case 11: /* PSPLIM */ + if (!arm_feature(env, ARM_FEATURE_V8)) { + goto bad_reg; + } + env->v7m.psplim[env->v7m.secure] = val & ~7; + break; + case 16: /* PRIMASK */ + env->v7m.primask[env->v7m.secure] = val & 1; + break; + case 17: /* BASEPRI */ + if (!arm_feature(env, ARM_FEATURE_M_MAIN)) { + goto bad_reg; + } + env->v7m.basepri[env->v7m.secure] = val & 0xff; + break; + case 18: /* BASEPRI_MAX */ + if (!arm_feature(env, ARM_FEATURE_M_MAIN)) { + goto bad_reg; + } + val &= 0xff; + if (val != 0 && (val < env->v7m.basepri[env->v7m.secure] + || env->v7m.basepri[env->v7m.secure] == 0)) { + env->v7m.basepri[env->v7m.secure] = val; + } + break; + case 19: /* FAULTMASK */ + if (!arm_feature(env, ARM_FEATURE_M_MAIN)) { + goto bad_reg; + } + env->v7m.faultmask[env->v7m.secure] = val & 1; + break; + case 20: /* CONTROL */ + /* + * Writing to the SPSEL bit only has an effect if we are in + * thread mode; other bits can be updated by any privileged code. + * write_v7m_control_spsel() deals with updating the SPSEL bit in + * env->v7m.control, so we only need update the others. + * For v7M, we must just ignore explicit writes to SPSEL in handler + * mode; for v8M the write is permitted but will have no effect. + * All these bits are writes-ignored from non-privileged code, + * except for SFPA. + */ + if (cur_el > 0 && (arm_feature(env, ARM_FEATURE_V8) || + !arm_v7m_is_handler_mode(env))) { + write_v7m_control_spsel(env, (val & R_V7M_CONTROL_SPSEL_MASK) != 0); + } + if (cur_el > 0 && arm_feature(env, ARM_FEATURE_M_MAIN)) { + env->v7m.control[env->v7m.secure] &= ~R_V7M_CONTROL_NPRIV_MASK; + env->v7m.control[env->v7m.secure] |= val & R_V7M_CONTROL_NPRIV_MASK; + } + if (arm_feature(env, ARM_FEATURE_VFP)) { + /* + * SFPA is RAZ/WI from NS or if no FPU. + * FPCA is RO if NSACR.CP10 == 0, RES0 if the FPU is not present. + * Both are stored in the S bank. + */ + if (env->v7m.secure) { + env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_SFPA_MASK; + env->v7m.control[M_REG_S] |= val & R_V7M_CONTROL_SFPA_MASK; + } + if (cur_el > 0 && + (env->v7m.secure || !arm_feature(env, ARM_FEATURE_M_SECURITY) || + extract32(env->v7m.nsacr, 10, 1))) { + env->v7m.control[M_REG_S] &= ~R_V7M_CONTROL_FPCA_MASK; + env->v7m.control[M_REG_S] |= val & R_V7M_CONTROL_FPCA_MASK; + } + } + break; + default: + bad_reg: + qemu_log_mask(LOG_GUEST_ERROR, "Attempt to write unknown special" + " register %d\n", reg); + return; + } +} + +uint32_t HELPER(v7m_tt)(CPUARMState *env, uint32_t addr, uint32_t op) +{ + /* Implement the TT instruction. op is bits [7:6] of the insn. */ + bool forceunpriv = op & 1; + bool alt = op & 2; + V8M_SAttributes sattrs = {}; + uint32_t tt_resp; + bool r, rw, nsr, nsrw, mrvalid; + int prot; + ARMMMUFaultInfo fi = {}; + MemTxAttrs attrs = {}; + hwaddr phys_addr; + ARMMMUIdx mmu_idx; + uint32_t mregion; + bool targetpriv; + bool targetsec = env->v7m.secure; + bool is_subpage; + + /* + * Work out what the security state and privilege level we're + * interested in is... + */ + if (alt) { + targetsec = !targetsec; + } + + if (forceunpriv) { + targetpriv = false; + } else { + targetpriv = arm_v7m_is_handler_mode(env) || + !(env->v7m.control[targetsec] & R_V7M_CONTROL_NPRIV_MASK); + } + + /* ...and then figure out which MMU index this is */ + mmu_idx = arm_v7m_mmu_idx_for_secstate_and_priv(env, targetsec, targetpriv); + + /* + * We know that the MPU and SAU don't care about the access type + * for our purposes beyond that we don't want to claim to be + * an insn fetch, so we arbitrarily call this a read. + */ + + /* + * MPU region info only available for privileged or if + * inspecting the other MPU state. + */ + if (arm_current_el(env) != 0 || alt) { + /* We can ignore the return value as prot is always set */ + pmsav8_mpu_lookup(env, addr, MMU_DATA_LOAD, mmu_idx, + &phys_addr, &attrs, &prot, &is_subpage, + &fi, &mregion); + if (mregion == -1) { + mrvalid = false; + mregion = 0; + } else { + mrvalid = true; + } + r = prot & PAGE_READ; + rw = prot & PAGE_WRITE; + } else { + r = false; + rw = false; + mrvalid = false; + mregion = 0; + } + + if (env->v7m.secure) { + v8m_security_lookup(env, addr, MMU_DATA_LOAD, mmu_idx, &sattrs); + nsr = sattrs.ns && r; + nsrw = sattrs.ns && rw; + } else { + sattrs.ns = true; + nsr = false; + nsrw = false; + } + + tt_resp = (sattrs.iregion << 24) | + (sattrs.irvalid << 23) | + ((!sattrs.ns) << 22) | + (nsrw << 21) | + (nsr << 20) | + (rw << 19) | + (r << 18) | + (sattrs.srvalid << 17) | + (mrvalid << 16) | + (sattrs.sregion << 8) | + mregion; + + return tt_resp; +} + +#endif /* !CONFIG_USER_ONLY */ + +ARMMMUIdx arm_v7m_mmu_idx_all(CPUARMState *env, + bool secstate, bool priv, bool negpri) +{ + ARMMMUIdx mmu_idx = ARM_MMU_IDX_M; + + if (priv) { + mmu_idx |= ARM_MMU_IDX_M_PRIV; + } + + if (negpri) { + mmu_idx |= ARM_MMU_IDX_M_NEGPRI; + } + + if (secstate) { + mmu_idx |= ARM_MMU_IDX_M_S; + } + + return mmu_idx; +} + +ARMMMUIdx arm_v7m_mmu_idx_for_secstate_and_priv(CPUARMState *env, + bool secstate, bool priv) +{ + bool negpri = armv7m_nvic_neg_prio_requested(env->nvic, secstate); + + return arm_v7m_mmu_idx_all(env, secstate, priv, negpri); +} + +/* Return the MMU index for a v7M CPU in the specified security state */ +ARMMMUIdx arm_v7m_mmu_idx_for_secstate(CPUARMState *env, bool secstate) +{ + bool priv = arm_current_el(env) != 0; + + return arm_v7m_mmu_idx_for_secstate_and_priv(env, secstate, priv); +} -- 2.20.1
To prevent execution priority remaining negative if the guest returns from an NMI or HardFault with a corrupted IPSR, the v8M interrupt deactivation process forces the HardFault and NMI to inactive based on the current raw execution priority, even if the interrupt the guest is trying to deactivate is something else. In the pseudocode this is done in the Deactivate() function. Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20190617175317.27557-3-peter.maydell@linaro.org --- hw/intc/armv7m_nvic.c | 40 +++++++++++++++++++++++++++++++++++----- 1 file changed, 35 insertions(+), 5 deletions(-) diff --git a/hw/intc/armv7m_nvic.c b/hw/intc/armv7m_nvic.c index XXXXXXX..XXXXXXX 100644 --- a/hw/intc/armv7m_nvic.c +++ b/hw/intc/armv7m_nvic.c @@ -XXX,XX +XXX,XX @@ void armv7m_nvic_get_pending_irq_info(void *opaque, int armv7m_nvic_complete_irq(void *opaque, int irq, bool secure) { NVICState *s = (NVICState *)opaque; - VecInfo *vec; + VecInfo *vec = NULL; int ret; assert(irq > ARMV7M_EXCP_RESET && irq < s->num_irq); - if (secure && exc_is_banked(irq)) { - vec = &s->sec_vectors[irq]; - } else { - vec = &s->vectors[irq]; + /* + * For negative priorities, v8M will forcibly deactivate the appropriate + * NMI or HardFault regardless of what interrupt we're being asked to + * deactivate (compare the DeActivate() pseudocode). This is a guard + * against software returning from NMI or HardFault with a corrupted + * IPSR and leaving the CPU in a negative-priority state. + * v7M does not do this, but simply deactivates the requested interrupt. + */ + if (arm_feature(&s->cpu->env, ARM_FEATURE_V8)) { + switch (armv7m_nvic_raw_execution_priority(s)) { + case -1: + if (s->cpu->env.v7m.aircr & R_V7M_AIRCR_BFHFNMINS_MASK) { + vec = &s->vectors[ARMV7M_EXCP_HARD]; + } else { + vec = &s->sec_vectors[ARMV7M_EXCP_HARD]; + } + break; + case -2: + vec = &s->vectors[ARMV7M_EXCP_NMI]; + break; + case -3: + vec = &s->sec_vectors[ARMV7M_EXCP_HARD]; + break; + default: + break; + } + } + + if (!vec) { + if (secure && exc_is_banked(irq)) { + vec = &s->sec_vectors[irq]; + } else { + vec = &s->vectors[irq]; + } } trace_nvic_complete_irq(irq, secure); -- 2.20.1
In v8M, an attempt to return from an exception which is not active is an illegal exception return. For this purpose, exceptions which can configurably target either Secure or NonSecure are not considered to be active if they are configured for the opposite security state for the one we're trying to return from (eg attempt to return from an NS NMI but NMI targets Secure). In the pseudocode this is handled by IsActiveForState(). Detect this case rather than counting an active exception possibly of the wrong security state as being sufficient. Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20190617175317.27557-4-peter.maydell@linaro.org --- hw/intc/armv7m_nvic.c | 14 +++++++++++++- 1 file changed, 13 insertions(+), 1 deletion(-) diff --git a/hw/intc/armv7m_nvic.c b/hw/intc/armv7m_nvic.c index XXXXXXX..XXXXXXX 100644 --- a/hw/intc/armv7m_nvic.c +++ b/hw/intc/armv7m_nvic.c @@ -XXX,XX +XXX,XX @@ int armv7m_nvic_complete_irq(void *opaque, int irq, bool secure) return -1; } - ret = nvic_rettobase(s); + /* + * If this is a configurable exception and it is currently + * targeting the opposite security state from the one we're trying + * to complete it for, this counts as an illegal exception return. + * We still need to deactivate whatever vector the logic above has + * selected, though, as it might not be the same as the one for the + * requested exception number. + */ + if (!exc_is_banked(irq) && exc_targets_secure(s, irq) != secure) { + ret = -1; + } else { + ret = nvic_rettobase(s); + } vec->active = 0; if (vec->level) { -- 2.20.1
In the various helper functions for v7M/v8M instructions, use the _ra versions of cpu_stl_data() and friends. Otherwise we may get wrong behaviour or an assert() due to not being able to locate the TB if there is an exception on the memory access or if it performs an IO operation when in icount mode. Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20190617175317.27557-5-peter.maydell@linaro.org --- target/arm/m_helper.c | 21 ++++++++++++--------- 1 file changed, 12 insertions(+), 9 deletions(-) diff --git a/target/arm/m_helper.c b/target/arm/m_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/m_helper.c +++ b/target/arm/m_helper.c @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_blxns)(CPUARMState *env, uint32_t dest) } /* Note that these stores can throw exceptions on MPU faults */ - cpu_stl_data(env, sp, nextinst); - cpu_stl_data(env, sp + 4, saved_psr); + cpu_stl_data_ra(env, sp, nextinst, GETPC()); + cpu_stl_data_ra(env, sp + 4, saved_psr, GETPC()); env->regs[13] = sp; env->regs[14] = 0xfeffffff; @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_vlstm)(CPUARMState *env, uint32_t fptr) /* fptr is the value of Rn, the frame pointer we store the FP regs to */ bool s = env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_S_MASK; bool lspact = env->v7m.fpccr[s] & R_V7M_FPCCR_LSPACT_MASK; + uintptr_t ra = GETPC(); assert(env->v7m.secure); @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_vlstm)(CPUARMState *env, uint32_t fptr) * Note that we do not use v7m_stack_write() here, because the * accesses should not set the FSR bits for stacking errors if they * fail. (In pseudocode terms, they are AccType_NORMAL, not AccType_STACK - * or AccType_LAZYFP). Faults in cpu_stl_data() will throw exceptions + * or AccType_LAZYFP). Faults in cpu_stl_data_ra() will throw exceptions * and longjmp out. */ if (!(env->v7m.fpccr[M_REG_S] & R_V7M_FPCCR_LSPEN_MASK)) { @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_vlstm)(CPUARMState *env, uint32_t fptr) if (i >= 16) { faddr += 8; /* skip the slot for the FPSCR */ } - cpu_stl_data(env, faddr, slo); - cpu_stl_data(env, faddr + 4, shi); + cpu_stl_data_ra(env, faddr, slo, ra); + cpu_stl_data_ra(env, faddr + 4, shi, ra); } - cpu_stl_data(env, fptr + 0x40, vfp_get_fpscr(env)); + cpu_stl_data_ra(env, fptr + 0x40, vfp_get_fpscr(env), ra); /* * If TS is 0 then s0 to s15 and FPSCR are UNKNOWN; we choose to @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_vlstm)(CPUARMState *env, uint32_t fptr) void HELPER(v7m_vlldm)(CPUARMState *env, uint32_t fptr) { + uintptr_t ra = GETPC(); + /* fptr is the value of Rn, the frame pointer we load the FP regs from */ assert(env->v7m.secure); @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_vlldm)(CPUARMState *env, uint32_t fptr) faddr += 8; /* skip the slot for the FPSCR */ } - slo = cpu_ldl_data(env, faddr); - shi = cpu_ldl_data(env, faddr + 4); + slo = cpu_ldl_data_ra(env, faddr, ra); + shi = cpu_ldl_data_ra(env, faddr + 4, ra); dn = (uint64_t) shi << 32 | slo; *aa32_vfp_dreg(env, i / 2) = dn; } - fpscr = cpu_ldl_data(env, fptr + 0x40); + fpscr = cpu_ldl_data_ra(env, fptr + 0x40, ra); vfp_set_fpscr(env, fpscr); } -- 2.20.1
Like most of the v7M memory mapped system registers, the systick registers are accessible to privileged code only and user accesses must generate a BusFault. We implement that for registers in the NVIC proper already, but missed it for systick since we implement it as a separate device. Correct the omission. Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Reviewed-by: Philippe Mathieu-Daudé <philmd@redhat.com> Message-id: 20190617175317.27557-6-peter.maydell@linaro.org --- hw/timer/armv7m_systick.c | 26 ++++++++++++++++++++------ 1 file changed, 20 insertions(+), 6 deletions(-) diff --git a/hw/timer/armv7m_systick.c b/hw/timer/armv7m_systick.c index XXXXXXX..XXXXXXX 100644 --- a/hw/timer/armv7m_systick.c +++ b/hw/timer/armv7m_systick.c @@ -XXX,XX +XXX,XX @@ static void systick_timer_tick(void *opaque) } } -static uint64_t systick_read(void *opaque, hwaddr addr, unsigned size) +static MemTxResult systick_read(void *opaque, hwaddr addr, uint64_t *data, + unsigned size, MemTxAttrs attrs) { SysTickState *s = opaque; uint32_t val; + if (attrs.user) { + /* Generate BusFault for unprivileged accesses */ + return MEMTX_ERROR; + } + switch (addr) { case 0x0: /* SysTick Control and Status. */ val = s->control; @@ -XXX,XX +XXX,XX @@ static uint64_t systick_read(void *opaque, hwaddr addr, unsigned size) } trace_systick_read(addr, val, size); - return val; + *data = val; + return MEMTX_OK; } -static void systick_write(void *opaque, hwaddr addr, - uint64_t value, unsigned size) +static MemTxResult systick_write(void *opaque, hwaddr addr, + uint64_t value, unsigned size, + MemTxAttrs attrs) { SysTickState *s = opaque; + if (attrs.user) { + /* Generate BusFault for unprivileged accesses */ + return MEMTX_ERROR; + } + trace_systick_write(addr, value, size); switch (addr) { @@ -XXX,XX +XXX,XX @@ static void systick_write(void *opaque, hwaddr addr, qemu_log_mask(LOG_GUEST_ERROR, "SysTick: Bad write offset 0x%" HWADDR_PRIx "\n", addr); } + return MEMTX_OK; } static const MemoryRegionOps systick_ops = { - .read = systick_read, - .write = systick_write, + .read_with_attrs = systick_read, + .write_with_attrs = systick_write, .endianness = DEVICE_NATIVE_ENDIAN, .valid.min_access_size = 4, .valid.max_access_size = 4, -- 2.20.1
Thumb instructions in an IT block are set up to be conditionally executed depending on a set of condition bits encoded into the IT bits of the CPSR/XPSR. The architecture specifies that if the condition bits are 0b1111 this means "always execute" (like 0b1110), not "never execute"; we were treating it as "never execute". (See the ConditionHolds() pseudocode in both the A-profile and M-profile Arm ARM.) This is a bit of an obscure corner case, because the only legal way to get to an 0b1111 set of condbits is to do an exception return which sets the XPSR/CPSR up that way. An IT instruction which encodes a condition sequence that would include an 0b1111 is UNPREDICTABLE, and for v8A the CONSTRAINED UNPREDICTABLE choices for such an IT insn are to NOP, UNDEF, or treat 0b1111 like 0b1110. Add a comment noting that we take the latter option. Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20190617175317.27557-7-peter.maydell@linaro.org --- target/arm/translate.c | 15 +++++++++++++-- 1 file changed, 13 insertions(+), 2 deletions(-) diff --git a/target/arm/translate.c b/target/arm/translate.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/translate.c +++ b/target/arm/translate.c @@ -XXX,XX +XXX,XX @@ static void disas_thumb_insn(DisasContext *s, uint32_t insn) gen_nop_hint(s, (insn >> 4) & 0xf); break; } - /* If Then. */ + /* + * IT (If-Then) + * + * Combinations of firstcond and mask which set up an 0b1111 + * condition are UNPREDICTABLE; we take the CONSTRAINED + * UNPREDICTABLE choice to treat 0b1111 the same as 0b1110, + * i.e. both meaning "execute always". + */ s->condexec_cond = (insn >> 4) & 0xe; s->condexec_mask = insn & 0x1f; /* No actual code generated for this insn, just setup state. */ @@ -XXX,XX +XXX,XX @@ static void thumb_tr_translate_insn(DisasContextBase *dcbase, CPUState *cpu) if (dc->condexec_mask && !thumb_insn_is_unconditional(dc, insn)) { uint32_t cond = dc->condexec_cond; - if (cond != 0x0e) { /* Skip conditional when condition is AL. */ + /* + * Conditionally skip the insn. Note that both 0xe and 0xf mean + * "always"; 0xf is not "never". + */ + if (cond < 0x0e) { arm_skip_unless(dc, cond); } } -- 2.20.1
Coverity points out (CID 1402195) that the loop in trans_VMOV_imm_dp() that iterates over the destination registers in a short-vector VMOV accidentally throws away the returned updated register number from vfp_advance_dreg(). Add the missing assignment. (We got this correct in trans_VMOV_imm_sp().) Fixes: 18cf951af9a27ae573a Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20190702105115.9465-1-peter.maydell@linaro.org --- target/arm/translate-vfp.inc.c | 2 +- 1 file changed, 1 insertion(+), 1 deletion(-) diff --git a/target/arm/translate-vfp.inc.c b/target/arm/translate-vfp.inc.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/translate-vfp.inc.c +++ b/target/arm/translate-vfp.inc.c @@ -XXX,XX +XXX,XX @@ static bool trans_VMOV_imm_dp(DisasContext *s, arg_VMOV_imm_dp *a) /* Set up the operands for the next iteration */ veclen--; - vfp_advance_dreg(vd, delta_d); + vd = vfp_advance_dreg(vd, delta_d); } tcg_temp_free_i64(fd); -- 2.20.1
Hi; here's another arm pullreq; main parts here are the new i.MX 8MM EVK board, and a lot of refactoring. thanks -- PMM The following changes since commit aa15257174da180c6a8a9d58f87319cfe61c5520: Merge tag 'pbouvier/pr/plugins-20260424' of https://gitlab.com/p-b-o/qemu into staging (2026-04-25 10:22:04 -0400) are available in the Git repository at: https://gitlab.com/pm215/qemu.git tags/pull-target-arm-20260427 for you to fetch changes up to 4575da5ecb7a27544aa6da1f78e700e8100ceaea: target/arm: report register in WFIT syndromes (2026-04-27 11:46:34 +0100) ---------------------------------------------------------------- target-arm queue: docs/system: add FEAT_AA32 and FEAT_AA64 to emulation list hw/arm: Add the i.MX 8MM EVK(Evaluation Kit) board target/arm: Build M-profile helper code once only hw/arm: Remove hw_error() for the unimplemented CM_LMBUSCNT register hw: Move ARM_SYSCTL_GPIO definitions to arm sysctl specific header target/arm: Allow 'aarch64=off' to be set for TCG CPUs target/arm: Allow some sysregs to not have to be an exact match for migration hw/arm/raspi4b: NOP all DTB nodes when removing unimplemented devices hw/arm/fsl-imx6ul: Implement LCDIF display device target/arm: Refactor syndrome value code to use registerfields target/arm: Report the register in WFxT syndromes ---------------------------------------------------------------- Alex Bennée (24): docs/system: add FEAT_AA32 and FEAT_AA64 to emulation list target/arm: migrate basic syndrome helpers to registerfields target/arm: migrate system/cp trap syndromes to registerfields target/arm: migrate FP/SIMD trap syndromes to registerfields target/arm: migrate eret trap syndromes to registerfields target/arm: migrate SME trap syndromes to registerfields target/arm: migrate PAC trap syndromes to registerfields target/arm: migrate BTI trap syndromes to registerfields target/arm: migrate BXJ trap syndromes to registerfields target/arm: migrate Granule Protection traps to registerfields target/arm: migrate fault syndromes to registerfields target/arm: migrate debug syndromes to registerfields target/arm: migrate wfx syndromes to registerfields target/arm: migrate gcs syndromes to registerfields target/arm: migrate memory op syndromes to registerfields target/arm: migrate check_hcr_el2_trap to use syndrome helper target/arm: use syndrome helpers in arm_cpu_do_interrupt_aarch32_hyp target/arm: use syndrome helpers to set SAME_EL EC bit target/arm: make whpx use syndrome helpers for decode target/arm: make hvf use syndrome helpers for decode target/arm: use syndrome helpers in merge_syn_data_abort target/arm: use syndrome helpers to query VNCR bit target/arm: remove old syndrome defines target/arm: report register in WFIT syndromes Eric Auger (7): target/arm/cpu: Introduce the infrastructure for cpreg migration tolerances target/arm/machine: Handle ToleranceNotOnBothEnds migration tolerances target/arm/machine: Handle ToleranceOnlySrcTestValue migration tolerance target/arm/cpu64: Mitigate migration failures due to spurious TCR_EL1, PIRE0_EL1 and PIR_EL1 target/arm/cpu64: Define cpreg migration tolerance for KVM_REG_ARM_VENDOR_HYP_BMAP_2 target/arm/helper: Define cpreg migration tolerance for DGBDTR_EL0 Revert "target/arm: Reinstate bogus AArch32 DBGDTRTX register for migration compat" Gaurav Sharma (15): hw/arm: Add the i.MX 8MM EVK(Evaluation Kit) board hw/misc/imx8mp_analog: Add property to analog device hw/arm/fsl-imx8mm: Add Analog device IP to iMX8MM SOC hw/arm/fsl-imx8mm: Add Clock Control Module IP to iMX8MM hw/arm/fsl-imx8mm: Implemented support for SNVS hw/arm/fsl-imx8mm: Adding support for USDHC storage controllers hw/arm/fsl-imx8mm: Add PCIe support hw/arm/fsl-imx8mm: Add GPIO controllers hw/arm/fsl-imx8mm: Adding support for I2C emulation hw/arm/fsl-imx8mm: Adding support for SPI controller hw/arm/fsl-imx8mm: Adding support for Watchdog Timers hw/arm/fsl-imx8mm: Adding support for General Purpose Timers hw/arm/fsl-imx8mm: Adding support for ENET ethernet controller hw/arm/fsl-imx8mm: Adding support for USB controller hw/arm/fsl-imx8mm: Adding functional testing of iMX8MM emulation Osama Abdelkader (1): hw/arm/raspi4b: NOP all DTB nodes when removing unimplemented devices Peter Maydell (4): hw: Move ARM_SYSCTL_GPIO definitions to arm sysctl specific header target/arm: Clear AArch64 ID regs from ARMISARegisters if AArch64 disabled target/arm: Allow 'aarch64=off' to be set for TCG CPUs tests/functional/aarch64: Add basic test of TCG aarch64=off Philippe Mathieu-Daudé (9): target/arm: Ignore endianness when setting MTE tags target/arm: Explode MO_TExx -> MO_TE | MO_xx target/arm: Hoist MO_TE into mve_advance_vpt() target/arm: Hoist MO_TE into MVE DO_VSTR() macro target/arm: Introduce mo_endian() helper target/arm: Replace MO_TE -> mo_endian() for MVE helpers target/arm: Compile mve_helper.c once target/arm: Replace MO_TE -> mo_endian() for Cortex-M helpers target/arm: Compile m_helper.c once Thomas Huth (1): hw/arm: Remove hw_error() for the unimplemented CM_LMBUSCNT register Yucai Liu (2): hw/display: Add i.MX6UL LCDIF device model hw/arm/fsl-imx6ul: Wire in the LCDIF device model MAINTAINERS | 16 +- docs/system/arm/cpu-features.rst | 10 +- docs/system/arm/emulation.rst | 2 + docs/system/arm/{imx8mp-evk.rst => imx8m.rst} | 49 +- docs/system/target-arm.rst | 2 +- hw/arm/Kconfig | 25 + hw/arm/fsl-imx6ul.c | 12 +- hw/arm/fsl-imx8mm.c | 704 ++++++++++++++++++++++ hw/arm/imx8mm-evk.c | 130 ++++ hw/arm/integratorcp.c | 3 - hw/arm/meson.build | 2 + hw/arm/raspi4b.c | 10 +- hw/arm/realview.c | 2 +- hw/arm/vexpress.c | 2 +- hw/arm/virt.c | 1 - hw/display/Kconfig | 4 + hw/display/imx6ul_lcdif.c | 453 ++++++++++++++ hw/display/meson.build | 1 + hw/misc/arm_sysctl.c | 2 +- hw/misc/imx8mp_analog.c | 12 +- hw/timer/imx_gpt.c | 26 + hw/vmapple/vmapple.c | 1 - include/hw/arm/fsl-imx6ul.h | 4 +- include/hw/arm/fsl-imx8mm.h | 242 ++++++++ include/hw/arm/primecell.h | 12 - include/hw/display/imx6ul_lcdif.h | 37 ++ include/hw/misc/arm_sysctl.h | 16 + include/hw/misc/imx8mp_analog.h | 3 + include/hw/timer/imx_gpt.h | 2 + target/arm/cpu-features.h | 5 + target/arm/cpu.c | 153 ++++- target/arm/cpu.h | 4 +- target/arm/cpu64.c | 39 ++ target/arm/debug_helper.c | 29 - target/arm/helper.c | 27 +- target/arm/hvf/hvf.c | 14 +- target/arm/internals.h | 60 ++ target/arm/machine.c | 33 +- target/arm/syndrome.h | 595 ++++++++++++++---- target/arm/tcg/debug.c | 2 +- target/arm/tcg/helper-a64.c | 2 +- target/arm/tcg/helper-defs.h | 2 +- target/arm/tcg/m_helper.c | 8 +- target/arm/tcg/meson.build | 6 +- target/arm/tcg/mve_helper.c | 102 ++-- target/arm/tcg/op_helper.c | 7 +- target/arm/tcg/tlb_helper.c | 6 +- target/arm/tcg/translate-a64.c | 2 +- target/arm/tcg/vfp_helper.c | 5 +- target/arm/trace-events | 2 + target/arm/whpx/whpx-all.c | 13 +- tests/functional/aarch64/meson.build | 3 + tests/functional/aarch64/test_imx8mm_evk.py | 69 +++ tests/functional/aarch64/test_virt_aarch64_off.py | 37 ++ tests/qtest/arm-cpu-features.c | 8 +- 55 files changed, 2743 insertions(+), 275 deletions(-) rename docs/system/arm/{imx8mp-evk.rst => imx8m.rst} (58%) create mode 100644 hw/arm/fsl-imx8mm.c create mode 100644 hw/arm/imx8mm-evk.c create mode 100644 hw/display/imx6ul_lcdif.c create mode 100644 include/hw/arm/fsl-imx8mm.h delete mode 100644 include/hw/arm/primecell.h create mode 100644 include/hw/display/imx6ul_lcdif.h create mode 100644 include/hw/misc/arm_sysctl.h create mode 100755 tests/functional/aarch64/test_imx8mm_evk.py create mode 100755 tests/functional/aarch64/test_virt_aarch64_off.py
From: Alex Bennée <alex.bennee@linaro.org> This is just a documentation tweak as we already support both. FEAT_AA32 implies FEAT_AA32EL0. FEAT_AA64 implies FEAT_AA64EL[0123]. This is however useful if you are using emulation.rst as a source of truth of what QEMU emulates and when cross checking with Features.json from Arm. Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20260421093506.616307-1-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- docs/system/arm/emulation.rst | 2 ++ 1 file changed, 2 insertions(+) diff --git a/docs/system/arm/emulation.rst b/docs/system/arm/emulation.rst index XXXXXXX..XXXXXXX 100644 --- a/docs/system/arm/emulation.rst +++ b/docs/system/arm/emulation.rst @@ -XXX,XX +XXX,XX @@ QEMU's TCG emulation includes support for the Armv5, Armv6, Armv7, Armv8 and Armv9 versions of the A-profile architecture. It also has support for the following architecture extensions: +- FEAT_AA32 (PE Support for AArch32) - FEAT_AA32BF16 (AArch32 BFloat16 instructions) - FEAT_AA32EL0 (Support for AArch32 at EL0) - FEAT_AA32EL1 (Support for AArch32 at EL1) @@ -XXX,XX +XXX,XX @@ the following architecture extensions: - FEAT_AA32EL3 (Support for AArch32 at EL3) - FEAT_AA32HPD (AArch32 hierarchical permission disables) - FEAT_AA32I8MM (AArch32 Int8 matrix multiplication instructions) +- FEAT_AA64 (PE uses AArch64 after last reboot) - FEAT_AA64EL0 (Support for AArch64 at EL0) - FEAT_AA64EL1 (Support for AArch64 at EL1) - FEAT_AA64EL2 (Support for AArch64 at EL2) -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> Implemented CPUs, RAM, UARTs and Interrupt Controller Other peripherals are represented as TYPE_UNIMPLEMENTED_DEVICE Complete memory map of the SoC is provided. Set default RAM size to 2GB and default CPU count to 4 to match the real i.MX8MM EVK hardware configuration. Documentation is shared with imx8mp-evk to avoid duplication. Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> [PMM: fixed over-long lines in doc] Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- MAINTAINERS | 11 +- docs/system/arm/{imx8mp-evk.rst => imx8m.rst} | 49 ++- docs/system/target-arm.rst | 2 +- hw/arm/Kconfig | 12 + hw/arm/fsl-imx8mm.c | 377 ++++++++++++++++++ hw/arm/imx8mm-evk.c | 112 ++++++ hw/arm/meson.build | 2 + include/hw/arm/fsl-imx8mm.h | 158 ++++++++ 8 files changed, 709 insertions(+), 14 deletions(-) rename docs/system/arm/{imx8mp-evk.rst => imx8m.rst} (58%) create mode 100644 hw/arm/fsl-imx8mm.c create mode 100644 hw/arm/imx8mm-evk.c create mode 100644 include/hw/arm/fsl-imx8mm.h diff --git a/MAINTAINERS b/MAINTAINERS index XXXXXXX..XXXXXXX 100644 --- a/MAINTAINERS +++ b/MAINTAINERS @@ -XXX,XX +XXX,XX @@ F: hw/pci-host/designware.c F: include/hw/pci-host/designware.h F: docs/system/arm/mcimx7d-sabre.rst +MCIMX8MM-EVK / iMX8MM +M: Gaurav Sharma <gaurav.sharma_7@nxp.com> +L: qemu-arm@nongnu.org +S: Maintained +F: hw/arm/fsl-imx8mm.c +F: hw/arm/imx8mm-evk.c +F: include/hw/arm/fsl-imx8mm.h +F: docs/system/arm/imx8m.rst + MCIMX8MP-EVK / i.MX8MP M: Bernhard Beschow <shentey@gmail.com> L: qemu-arm@nongnu.org @@ -XXX,XX +XXX,XX @@ F: hw/rtc/rs5c372.c F: include/hw/arm/fsl-imx8mp.h F: include/hw/misc/imx8mp_*.h F: include/hw/pci-host/fsl_imx8m_phy.h -F: docs/system/arm/imx8mp-evk.rst +F: docs/system/arm/imx8m.rst F: tests/functional/aarch64/test_imx8mp_evk.py F: tests/qtest/rs5c372-test.c diff --git a/docs/system/arm/imx8mp-evk.rst b/docs/system/arm/imx8m.rst similarity index 58% rename from docs/system/arm/imx8mp-evk.rst rename to docs/system/arm/imx8m.rst index XXXXXXX..XXXXXXX 100644 --- a/docs/system/arm/imx8mp-evk.rst +++ b/docs/system/arm/imx8m.rst @@ -XXX,XX +XXX,XX @@ -NXP i.MX 8M Plus Evaluation Kit (``imx8mp-evk``) -================================================ +NXP i.MX 8M Plus and i.MX 8M Mini Evaluation Kits (``imx8mp-evk``, ``imx8mm-evk``) +================================================================================== -The ``imx8mp-evk`` machine models the i.MX 8M Plus Evaluation Kit, based on an -i.MX 8M Plus SoC. +The ``imx8mp-evk`` and ``imx8mm-evk`` machine models the i.MX 8M Plus +and i.MX 8M Mini Evaluation Kits, based on i.MX 8M Plus and i.MX8M +Mini SoCs. Supported devices ----------------- -The ``imx8mp-evk`` machine implements the following devices: +The ``imx8mp-evk`` and ``imx8mm-evk`` machines implement the +following devices: * Up to 4 Cortex-A53 cores * Generic Interrupt Controller (GICv3) @@ -XXX,XX +XXX,XX @@ The ``imx8mp-evk`` machine implements the following devices: Boot options ------------ -The ``imx8mp-evk`` machine can start a Linux kernel directly using the standard -``-kernel`` functionality. +The ``imx8mp-evk`` and ``imx8mm-evk`` machines can start a Linux +kernel directly using the standard ``-kernel`` functionality. Direct Linux Kernel Boot '''''''''''''''''''''''' @@ -XXX,XX +XXX,XX @@ is to generate an image with Buildroot. Version 2024.11.1 is tested at the time of writing and involves two steps. First run the following commands in the toplevel directory of the Buildroot source tree: +For i.MX 8M Plus EVK: + .. code-block:: bash $ make freescale_imx8mpevk_defconfig $ make +For i.MX 8M Mini EVK: + +.. code-block:: bash + + $ make freescale_imx8mmevk_defconfig + $ make + Once finished successfully there is an ``output/image`` subfolder. Navigate into it and resize the SD card image to a power of two: @@ -XXX,XX +XXX,XX @@ it and resize the SD card image to a power of two: Now that everything is prepared the machine can be started as follows: +For i.MX 8M Plus EVK: + .. code-block:: bash $ qemu-system-aarch64 -M imx8mp-evk \ @@ -XXX,XX +XXX,XX @@ Now that everything is prepared the machine can be started as follows: -append "root=/dev/mmcblk2p2" \ -drive file=sdcard.img,if=sd,bus=2,format=raw,id=mmcblk2 +For i.MX 8M Mini EVK: + +.. code-block:: bash + + $ qemu-system-aarch64 -M imx8mm-evk -smp 4 -m 2G \ + -display none -serial null -serial stdio \ + -kernel Image \ + -dtb imx8mm-evk.dtb \ + -append "root=/dev/mmcblk2p2" \ + -drive file=sdcard.img,if=sd,bus=2,format=raw,id=mmcblk2 KVM Acceleration ---------------- @@ -XXX,XX +XXX,XX @@ To enable hardware-assisted acceleration via KVM, append ``-accel kvm`` to the command line. While this speeds up performance significantly, be aware of the following limitations: -* The ``imx8mp-evk`` machine is not included under the "virtualization use case" - of :doc:`QEMU's security policy </system/security>`. This means that you - should not trust that it can contain malicious guests, whether it is run - using TCG or KVM. If you don't trust your guests and you're relying on QEMU to - be the security boundary, you want to choose another machine such as ``virt``. +* The ``imx8mp-evk`` and ``imx8mm-evk`` machines are not included + under the "virtualization use case" of :doc:`QEMU's security + policy </system/security>`. This means that you should not trust that + it can contain malicious guests, whether it is run using TCG or KVM. + If you don't trust your guests and you're relying on QEMU to be the + security boundary, you want to choose another machine such as + ``virt``. * Rather than Cortex-A53 CPUs, the same CPU type as the host's will be used. This is a limitation of KVM and may not work with guests with a tight dependency on Cortex-A53. diff --git a/docs/system/target-arm.rst b/docs/system/target-arm.rst index XXXXXXX..XXXXXXX 100644 --- a/docs/system/target-arm.rst +++ b/docs/system/target-arm.rst @@ -XXX,XX +XXX,XX @@ Board-specific documentation arm/imx25-pdk arm/mcimx6ul-evk arm/mcimx7d-sabre - arm/imx8mp-evk + arm/imx8m arm/orangepi arm/raspi arm/collie diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/Kconfig +++ b/hw/arm/Kconfig @@ -XXX,XX +XXX,XX @@ config FSL_IMX8MP_EVK depends on TCG select FSL_IMX8MP +config FSL_IMX8MM + bool + select ARM_GIC + select IMX + +config FSL_IMX8MM_EVK + bool + default y + depends on AARCH64 + depends on TCG + select FSL_IMX8MM + config ARM_SMMUV3_ACCEL bool depends on ARM_SMMUV3 diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c new file mode 100644 index XXXXXXX..XXXXXXX --- /dev/null +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ +/* + * i.MX 8MM SoC Implementation + * + * Based on hw/arm/fsl-imx6.c + * + * Copyright (c) 2025, NXP Semiconductors + * Author: Gaurav Sharma <gaurav.sharma_7@nxp.com> + * + * SPDX-License-Identifier: GPL-2.0-or-later + * + * iMX8MM Reference Manual - https://www.nxp.com/products/i.MX8MMINI -> Documentation + */ + +#include "qemu/osdep.h" +#include "system/address-spaces.h" +#include "hw/arm/bsa.h" +#include "hw/arm/fsl-imx8mm.h" +#include "hw/misc/unimp.h" +#include "hw/core/boards.h" +#include "system/kvm.h" +#include "system/system.h" +#include "target/arm/cpu.h" +#include "target/arm/cpu-qom.h" +#include "target/arm/kvm_arm.h" +#include "qapi/error.h" +#include "qobject/qlist.h" + +static const struct { + hwaddr addr; + size_t size; + const char *name; +} fsl_imx8mm_memmap[] = { + [FSL_IMX8MM_RAM] = { FSL_IMX8MM_RAM_START, FSL_IMX8MM_RAM_SIZE_MAX, "ram" }, + [FSL_IMX8MM_DDR_PHY_BROADCAST] = { 0x3dc00000, 4 * MiB, "ddr_phy_broadcast" }, + [FSL_IMX8MM_DDR_PERF_MON] = { 0x3d800000, 4 * MiB, "ddr_perf_mon" }, + [FSL_IMX8MM_DDR_CTL] = { 0x3d400000, 4 * MiB, "ddr_ctl" }, + [FSL_IMX8MM_DDR_PHY] = { 0x3c000000, 16 * MiB, "ddr_phy" }, + [FSL_IMX8MM_GIC_DIST] = { 0x38800000, 512 * KiB, "gic_dist" }, + [FSL_IMX8MM_GIC_REDIST] = { 0x38880000, 512 * KiB, "gic_redist" }, + [FSL_IMX8MM_VPU] = { 0x38340000, 2 * MiB, "vpu" }, + [FSL_IMX8MM_VPU_BLK_CTRL] = { 0x38330000, 2 * MiB, "vpu_blk_ctrl" }, + [FSL_IMX8MM_VPU_G2_DECODER] = { 0x38310000, 1 * MiB, "vpu_g2_decoder" }, + [FSL_IMX8MM_VPU_G1_DECODER] = { 0x38300000, 1 * MiB, "vpu_g1_decoder" }, + [FSL_IMX8MM_USB2_OTG] = { 0x32e50200, 0x200, "usb2_otg" }, + [FSL_IMX8MM_USB2] = { 0x32e50000, 0x200, "usb2" }, + [FSL_IMX8MM_USB1_OTG] = { 0x32e40200, 0x200, "usb1_otg" }, + [FSL_IMX8MM_USB1] = { 0x32e40000, 0x200, "usb1" }, + [FSL_IMX8MM_GPU2D] = { 0x38000000, 64 * KiB, "gpu2d" }, + [FSL_IMX8MM_QSPI1_RX_BUFFER] = { 0x34000000, 32 * MiB, "qspi1_rx_buffer" }, + [FSL_IMX8MM_PCIE1] = { 0x33800000, 4 * MiB, "pcie1" }, + [FSL_IMX8MM_QSPI1_TX_BUFFER] = { 0x33008000, 32 * KiB, "qspi1_tx_buffer" }, + [FSL_IMX8MM_APBH_DMA] = { 0x33000000, 32 * KiB, "apbh_dma" }, + + /* AIPS-4 Begin */ + [FSL_IMX8MM_TZASC] = { 0x32f80000, 64 * KiB, "tzasc" }, + [FSL_IMX8MM_PCIE_PHY1] = { 0x32f00000, 64 * KiB, "pcie_phy1" }, + [FSL_IMX8MM_MEDIA_BLK_CTL] = { 0x32e28000, 256, "media_blk_ctl" }, + [FSL_IMX8MM_LCDIF] = { 0x32e00000, 64 * KiB, "lcdif" }, + [FSL_IMX8MM_MIPI_DSI] = { 0x32e10000, 64 * KiB, "mipi_dsi" }, + [FSL_IMX8MM_MIPI_CSI] = { 0x32e30000, 64 * KiB, "mipi_csi" }, + [FSL_IMX8MM_AIPS4_CONFIGURATION] = { 0x32df0000, 64 * KiB, "aips4_configuration" }, + /* AIPS-4 End */ + + [FSL_IMX8MM_INTERCONNECT] = { 0x32700000, 1 * MiB, "interconnect" }, + + /* AIPS-3 Begin */ + [FSL_IMX8MM_ENET1] = { 0x30be0000, 64 * KiB, "enet1" }, + [FSL_IMX8MM_SDMA1] = { 0x30bd0000, 64 * KiB, "sdma1" }, + [FSL_IMX8MM_QSPI] = { 0x30bb0000, 64 * KiB, "qspi" }, + [FSL_IMX8MM_USDHC3] = { 0x30b60000, 64 * KiB, "usdhc3" }, + [FSL_IMX8MM_USDHC2] = { 0x30b50000, 64 * KiB, "usdhc2" }, + [FSL_IMX8MM_USDHC1] = { 0x30b40000, 64 * KiB, "usdhc1" }, + [FSL_IMX8MM_SEMAPHORE_HS] = { 0x30ac0000, 64 * KiB, "semaphore_hs" }, + [FSL_IMX8MM_MU_B] = { 0x30ab0000, 64 * KiB, "mu_b" }, + [FSL_IMX8MM_MU_A] = { 0x30aa0000, 64 * KiB, "mu_a" }, + [FSL_IMX8MM_UART4] = { 0x30a60000, 64 * KiB, "uart4" }, + [FSL_IMX8MM_I2C4] = { 0x30a50000, 64 * KiB, "i2c4" }, + [FSL_IMX8MM_I2C3] = { 0x30a40000, 64 * KiB, "i2c3" }, + [FSL_IMX8MM_I2C2] = { 0x30a30000, 64 * KiB, "i2c2" }, + [FSL_IMX8MM_I2C1] = { 0x30a20000, 64 * KiB, "i2c1" }, + [FSL_IMX8MM_AIPS3_CONFIGURATION] = { 0x309f0000, 64 * KiB, "aips3_configuration" }, + [FSL_IMX8MM_CAAM] = { 0x30900000, 256 * KiB, "caam" }, + [FSL_IMX8MM_SPBA1] = { 0x308f0000, 64 * KiB, "spba1" }, + [FSL_IMX8MM_UART2] = { 0x30890000, 64 * KiB, "uart2" }, + [FSL_IMX8MM_UART3] = { 0x30880000, 64 * KiB, "uart3" }, + [FSL_IMX8MM_UART1] = { 0x30860000, 64 * KiB, "uart1" }, + [FSL_IMX8MM_ECSPI3] = { 0x30840000, 64 * KiB, "ecspi3" }, + [FSL_IMX8MM_ECSPI2] = { 0x30830000, 64 * KiB, "ecspi2" }, + [FSL_IMX8MM_ECSPI1] = { 0x30820000, 64 * KiB, "ecspi1" }, + /* AIPS-3 End */ + + /* AIPS-2 Begin */ + [FSL_IMX8MM_QOSC] = { 0x307f0000, 64 * KiB, "qosc" }, + [FSL_IMX8MM_PERFMON2] = { 0x307d0000, 64 * KiB, "perfmon2" }, + [FSL_IMX8MM_PERFMON1] = { 0x307c0000, 64 * KiB, "perfmon1" }, + [FSL_IMX8MM_GPT4] = { 0x30700000, 64 * KiB, "gpt4" }, + [FSL_IMX8MM_GPT5] = { 0x306f0000, 64 * KiB, "gpt5" }, + [FSL_IMX8MM_GPT6] = { 0x306e0000, 64 * KiB, "gpt6" }, + [FSL_IMX8MM_SYSCNT_CTRL] = { 0x306c0000, 64 * KiB, "syscnt_ctrl" }, + [FSL_IMX8MM_SYSCNT_CMP] = { 0x306b0000, 64 * KiB, "syscnt_cmp" }, + [FSL_IMX8MM_SYSCNT_RD] = { 0x306a0000, 64 * KiB, "syscnt_rd" }, + [FSL_IMX8MM_PWM4] = { 0x30690000, 64 * KiB, "pwm4" }, + [FSL_IMX8MM_PWM3] = { 0x30680000, 64 * KiB, "pwm3" }, + [FSL_IMX8MM_PWM2] = { 0x30670000, 64 * KiB, "pwm2" }, + [FSL_IMX8MM_PWM1] = { 0x30660000, 64 * KiB, "pwm1" }, + [FSL_IMX8MM_AIPS2_CONFIGURATION] = { 0x305f0000, 64 * KiB, "aips2_configuration" }, + /* AIPS-2 End */ + + /* AIPS-1 Begin */ + [FSL_IMX8MM_CSU] = { 0x303e0000, 64 * KiB, "csu" }, + [FSL_IMX8MM_RDC] = { 0x303d0000, 64 * KiB, "rdc" }, + [FSL_IMX8MM_SEMAPHORE2] = { 0x303c0000, 64 * KiB, "semaphore2" }, + [FSL_IMX8MM_SEMAPHORE1] = { 0x303b0000, 64 * KiB, "semaphore1" }, + [FSL_IMX8MM_GPC] = { 0x303a0000, 64 * KiB, "gpc" }, + [FSL_IMX8MM_SRC] = { 0x30390000, 64 * KiB, "src" }, + [FSL_IMX8MM_CCM] = { 0x30380000, 64 * KiB, "ccm" }, + [FSL_IMX8MM_SNVS_HP] = { 0x30370000, 64 * KiB, "snvs_hp" }, + [FSL_IMX8MM_ANA_PLL] = { 0x30360000, 64 * KiB, "ana_pll" }, + [FSL_IMX8MM_OCOTP_CTRL] = { 0x30350000, 64 * KiB, "ocotp_ctrl" }, + [FSL_IMX8MM_IOMUXC_GPR] = { 0x30340000, 64 * KiB, "iomuxc_gpr" }, + [FSL_IMX8MM_IOMUXC] = { 0x30330000, 64 * KiB, "iomuxc" }, + [FSL_IMX8MM_GPT3] = { 0x302f0000, 64 * KiB, "gpt3" }, + [FSL_IMX8MM_GPT2] = { 0x302e0000, 64 * KiB, "gpt2" }, + [FSL_IMX8MM_GPT1] = { 0x302d0000, 64 * KiB, "gpt1" }, + [FSL_IMX8MM_SDMA2] = { 0x302c0000, 64 * KiB, "sdma2" }, + [FSL_IMX8MM_SDMA3] = { 0x302b0000, 64 * KiB, "sdma3" }, + [FSL_IMX8MM_WDOG3] = { 0x302a0000, 64 * KiB, "wdog3" }, + [FSL_IMX8MM_WDOG2] = { 0x30290000, 64 * KiB, "wdog2" }, + [FSL_IMX8MM_WDOG1] = { 0x30280000, 64 * KiB, "wdog1" }, + [FSL_IMX8MM_ANA_OSC] = { 0x30270000, 64 * KiB, "ana_osc" }, + [FSL_IMX8MM_ANA_TSENSOR] = { 0x30260000, 64 * KiB, "ana_tsensor" }, + [FSL_IMX8MM_GPIO5] = { 0x30240000, 64 * KiB, "gpio5" }, + [FSL_IMX8MM_GPIO4] = { 0x30230000, 64 * KiB, "gpio4" }, + [FSL_IMX8MM_GPIO3] = { 0x30220000, 64 * KiB, "gpio3" }, + [FSL_IMX8MM_GPIO2] = { 0x30210000, 64 * KiB, "gpio2" }, + [FSL_IMX8MM_GPIO1] = { 0x30200000, 64 * KiB, "gpio1" }, + [FSL_IMX8MM_AIPS1_CONFIGURATION] = { 0x301f0000, 64 * KiB, "aips1_configuration" }, + [FSL_IMX8MM_SAI6] = { 0x30060000, 64 * KiB, "sai6" }, + [FSL_IMX8MM_SAI5] = { 0x30050000, 64 * KiB, "sai5" }, + [FSL_IMX8MM_SAI3] = { 0x30030000, 64 * KiB, "sai3" }, + [FSL_IMX8MM_SAI2] = { 0x30020000, 64 * KiB, "sai2" }, + [FSL_IMX8MM_SAI1] = { 0x30010000, 64 * KiB, "sai1" }, + + /* AIPS-1 End */ + + [FSL_IMX8MM_A53_DAP] = { 0x28000000, 16 * MiB, "a53_dap" }, + [FSL_IMX8MM_PCIE1_MEM] = { 0x18000000, 128 * MiB, "pcie1_mem" }, + [FSL_IMX8MM_QSPI_MEM] = { 0x08000000, 256 * MiB, "qspi_mem" }, + [FSL_IMX8MM_OCRAM] = { 0x00900000, 256 * KiB, "ocram" }, + [FSL_IMX8MM_TCM_DTCM] = { 0x00800000, 128 * KiB, "tcm_dtcm" }, + [FSL_IMX8MM_TCM_ITCM] = { 0x007e0000, 128 * KiB, "tcm_itcm" }, + [FSL_IMX8MM_OCRAM_S] = { 0x00180000, 32 * KiB, "ocram_s" }, + [FSL_IMX8MM_CAAM_MEM] = { 0x00100000, 32 * KiB, "caam_mem" }, + [FSL_IMX8MM_BOOT_ROM_PROTECTED] = { 0x0003f000, 4 * KiB, "boot_rom_protected" }, + [FSL_IMX8MM_BOOT_ROM] = { 0x00000000, 252 * KiB, "boot_rom" }, +}; + +static void fsl_imx8mm_init(Object *obj) +{ + MachineState *ms = MACHINE(qdev_get_machine()); + FslImx8mmState *s = FSL_IMX8MM(obj); + const char *cpu_type = ms->cpu_type ?: ARM_CPU_TYPE_NAME("cortex-a53"); + int i; + + for (i = 0; i < MIN(ms->smp.cpus, FSL_IMX8MM_NUM_CPUS); i++) { + g_autofree char *name = g_strdup_printf("cpu%d", i); + object_initialize_child(obj, name, &s->cpu[i], cpu_type); + } + + object_initialize_child(obj, "gic", &s->gic, gicv3_class_name()); + + for (i = 0; i < FSL_IMX8MM_NUM_UARTS; i++) { + g_autofree char *name = g_strdup_printf("uart%d", i + 1); + object_initialize_child(obj, name, &s->uart[i], TYPE_IMX_SERIAL); + } + +} + +static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) +{ + MachineState *ms = MACHINE(qdev_get_machine()); + FslImx8mmState *s = FSL_IMX8MM(dev); + DeviceState *gicdev = DEVICE(&s->gic); + int i; + + if (ms->smp.cpus > FSL_IMX8MM_NUM_CPUS) { + error_setg(errp, "%s: Only %d CPUs are supported (%d requested)", + TYPE_FSL_IMX8MM, FSL_IMX8MM_NUM_CPUS, ms->smp.cpus); + return; + } + + /* CPUs */ + for (i = 0; i < ms->smp.cpus; i++) { + /* On uniprocessor, the CBAR is set to 0 */ + if (ms->smp.cpus > 1 && + object_property_find(OBJECT(&s->cpu[i]), "reset-cbar")) { + object_property_set_int(OBJECT(&s->cpu[i]), "reset-cbar", + fsl_imx8mm_memmap[FSL_IMX8MM_GIC_DIST].addr, + &error_abort); + } + + /* + * CNTFID0 base frequency in Hz of system counter + */ + object_property_set_int(OBJECT(&s->cpu[i]), "cntfrq", 8000000, + &error_abort); + + if (object_property_find(OBJECT(&s->cpu[i]), "has_el2")) { + object_property_set_bool(OBJECT(&s->cpu[i]), "has_el2", + !kvm_enabled(), &error_abort); + } + + if (object_property_find(OBJECT(&s->cpu[i]), "has_el3")) { + object_property_set_bool(OBJECT(&s->cpu[i]), "has_el3", + !kvm_enabled(), &error_abort); + } + + if (i) { + /* + * Secondary CPUs start in powered-down state (and can be + * powered up via the SRC system reset controller) + */ + object_property_set_bool(OBJECT(&s->cpu[i]), "start-powered-off", + true, &error_abort); + } + + if (!qdev_realize(DEVICE(&s->cpu[i]), NULL, errp)) { + return; + } + } + + /* GIC */ + { + SysBusDevice *gicsbd = SYS_BUS_DEVICE(&s->gic); + QList *redist_region_count; + bool pmu = object_property_get_bool(OBJECT(first_cpu), "pmu", NULL); + + qdev_prop_set_uint32(gicdev, "num-cpu", ms->smp.cpus); + qdev_prop_set_uint32(gicdev, "num-irq", + FSL_IMX8MM_NUM_IRQS + GIC_INTERNAL); + redist_region_count = qlist_new(); + qlist_append_int(redist_region_count, ms->smp.cpus); + qdev_prop_set_array(gicdev, "redist-region-count", redist_region_count); + object_property_set_link(OBJECT(&s->gic), "sysmem", + OBJECT(get_system_memory()), &error_fatal); + if (!sysbus_realize(gicsbd, errp)) { + return; + } + sysbus_mmio_map(gicsbd, 0, fsl_imx8mm_memmap[FSL_IMX8MM_GIC_DIST].addr); + sysbus_mmio_map(gicsbd, 1, fsl_imx8mm_memmap[FSL_IMX8MM_GIC_REDIST].addr); + + /* + * Wire the outputs from each CPU's generic timer and the GICv3 + * maintenance interrupt signal to the appropriate GIC PPI inputs, and + * the GIC's IRQ/FIQ interrupt outputs to the CPU's inputs. + */ + for (i = 0; i < ms->smp.cpus; i++) { + DeviceState *cpudev = DEVICE(&s->cpu[i]); + int intidbase = FSL_IMX8MM_NUM_IRQS + i * GIC_INTERNAL; + qemu_irq irq; + + /* + * Mapping from the output timer irq lines from the CPU to the + * GIC PPI inputs. + */ + static const int timer_irqs[] = { + [GTIMER_PHYS] = ARCH_TIMER_NS_EL1_IRQ, + [GTIMER_VIRT] = ARCH_TIMER_VIRT_IRQ, + [GTIMER_HYP] = ARCH_TIMER_NS_EL2_IRQ, + [GTIMER_SEC] = ARCH_TIMER_S_EL1_IRQ, + }; + + for (int j = 0; j < ARRAY_SIZE(timer_irqs); j++) { + irq = qdev_get_gpio_in(gicdev, intidbase + timer_irqs[j]); + qdev_connect_gpio_out(cpudev, j, irq); + } + + irq = qdev_get_gpio_in(gicdev, intidbase + ARCH_GIC_MAINT_IRQ); + qdev_connect_gpio_out_named(cpudev, "gicv3-maintenance-interrupt", + 0, irq); + + irq = qdev_get_gpio_in(gicdev, intidbase + VIRTUAL_PMU_IRQ); + qdev_connect_gpio_out_named(cpudev, "pmu-interrupt", 0, irq); + + sysbus_connect_irq(gicsbd, i, + qdev_get_gpio_in(cpudev, ARM_CPU_IRQ)); + sysbus_connect_irq(gicsbd, i + ms->smp.cpus, + qdev_get_gpio_in(cpudev, ARM_CPU_FIQ)); + sysbus_connect_irq(gicsbd, i + 2 * ms->smp.cpus, + qdev_get_gpio_in(cpudev, ARM_CPU_VIRQ)); + sysbus_connect_irq(gicsbd, i + 3 * ms->smp.cpus, + qdev_get_gpio_in(cpudev, ARM_CPU_VFIQ)); + + if (kvm_enabled()) { + if (pmu) { + assert(arm_feature(&s->cpu[i].env, ARM_FEATURE_PMU)); + if (kvm_irqchip_in_kernel()) { + kvm_arm_pmu_set_irq(&s->cpu[i], VIRTUAL_PMU_IRQ); + } + kvm_arm_pmu_init(&s->cpu[i]); + } + } + } + } + + /* UARTs */ + for (i = 0; i < FSL_IMX8MM_NUM_UARTS; i++) { + static const struct { + hwaddr addr; + unsigned int irq; + } serial_table[FSL_IMX8MM_NUM_UARTS] = { + { fsl_imx8mm_memmap[FSL_IMX8MM_UART1].addr, FSL_IMX8MM_UART1_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_UART2].addr, FSL_IMX8MM_UART2_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_UART3].addr, FSL_IMX8MM_UART3_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_UART4].addr, FSL_IMX8MM_UART4_IRQ }, + }; + + qdev_prop_set_chr(DEVICE(&s->uart[i]), "chardev", serial_hd(i)); + if (!sysbus_realize(SYS_BUS_DEVICE(&s->uart[i]), errp)) { + return; + } + + sysbus_mmio_map(SYS_BUS_DEVICE(&s->uart[i]), 0, serial_table[i].addr); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->uart[i]), 0, + qdev_get_gpio_in(gicdev, serial_table[i].irq)); + } + + /* On-Chip RAM */ + if (!memory_region_init_ram(&s->ocram, OBJECT(dev), "imx8mm.ocram", + fsl_imx8mm_memmap[FSL_IMX8MM_OCRAM].size, + errp)) { + return; + } + memory_region_add_subregion(get_system_memory(), + fsl_imx8mm_memmap[FSL_IMX8MM_OCRAM].addr, + &s->ocram); + + /* Unimplemented devices */ + for (i = 0; i < ARRAY_SIZE(fsl_imx8mm_memmap); i++) { + switch (i) { + case FSL_IMX8MM_GIC_DIST: + case FSL_IMX8MM_GIC_REDIST: + case FSL_IMX8MM_RAM: + case FSL_IMX8MM_OCRAM: + case FSL_IMX8MM_UART1 ... FSL_IMX8MM_UART4: + /* device implemented and treated above */ + break; + + default: + create_unimplemented_device(fsl_imx8mm_memmap[i].name, + fsl_imx8mm_memmap[i].addr, + fsl_imx8mm_memmap[i].size); + break; + } + } +} + +static void fsl_imx8mm_class_init(ObjectClass *oc, const void *data) +{ + DeviceClass *dc = DEVICE_CLASS(oc); + + dc->realize = fsl_imx8mm_realize; + + dc->desc = "i.MX 8MM SoC"; +} + +static const TypeInfo fsl_imx8mm_types[] = { + { + .name = TYPE_FSL_IMX8MM, + .parent = TYPE_SYS_BUS_DEVICE, + .instance_size = sizeof(FslImx8mmState), + .instance_init = fsl_imx8mm_init, + .class_init = fsl_imx8mm_class_init, + }, +}; + +DEFINE_TYPES(fsl_imx8mm_types) diff --git a/hw/arm/imx8mm-evk.c b/hw/arm/imx8mm-evk.c new file mode 100644 index XXXXXXX..XXXXXXX --- /dev/null +++ b/hw/arm/imx8mm-evk.c @@ -XXX,XX +XXX,XX @@ +/* + * NXP i.MX 8MM Evaluation Kit System Emulation + * + * Copyright (c) 2025, NXP Semiconductors + * Author: Gaurav Sharma <gaurav.sharma_7@nxp.com> + * + * SPDX-License-Identifier: GPL-2.0-or-later + */ + +#include "qemu/osdep.h" +#include "system/address-spaces.h" +#include "hw/arm/boot.h" +#include "hw/arm/fsl-imx8mm.h" +#include "hw/arm/machines-qom.h" +#include "hw/core/boards.h" +#include "hw/core/qdev-properties.h" +#include "system/kvm.h" +#include "system/qtest.h" +#include "qemu/error-report.h" +#include "qapi/error.h" +#include <libfdt.h> + +static void imx8mm_evk_modify_dtb(const struct arm_boot_info *info, void *fdt) +{ + int i, offset; + + /* Temporarily disable following nodes until they are implemented */ + const char *nodes_to_remove[] = { + "nxp,imx8mm-fspi", + "fsl,imx8mm-mipi-csi", + "fsl,imx8mm-mipi-dsim" + }; + + for (i = 0; i < ARRAY_SIZE(nodes_to_remove); i++) { + const char *dev_str = nodes_to_remove[i]; + + offset = fdt_node_offset_by_compatible(fdt, -1, dev_str); + while (offset >= 0) { + fdt_nop_node(fdt, offset); + offset = fdt_node_offset_by_compatible(fdt, offset, dev_str); + } + } + + /* Remove cpu-idle-states property from CPU nodes */ + offset = fdt_node_offset_by_compatible(fdt, -1, "arm,cortex-a53"); + while (offset >= 0) { + fdt_nop_property(fdt, offset, "cpu-idle-states"); + offset = fdt_node_offset_by_compatible(fdt, offset, "arm,cortex-a53"); + } + + if (kvm_enabled()) { + /* Use system counter frequency from host CPU to fix time in guest */ + offset = fdt_node_offset_by_compatible(fdt, -1, "arm,armv8-timer"); + while (offset >= 0) { + fdt_nop_property(fdt, offset, "clock-frequency"); + offset = fdt_node_offset_by_compatible(fdt, offset, "arm,armv8-timer"); + } + } +} + +static void imx8mm_evk_init(MachineState *machine) +{ + static struct arm_boot_info boot_info; + FslImx8mmState *s; + + if (machine->ram_size > FSL_IMX8MM_RAM_SIZE_MAX) { + error_report("RAM size " RAM_ADDR_FMT " above max supported (%08" PRIx64 ")", + machine->ram_size, FSL_IMX8MM_RAM_SIZE_MAX); + exit(1); + } + + boot_info = (struct arm_boot_info) { + .loader_start = FSL_IMX8MM_RAM_START, + .board_id = -1, + .ram_size = machine->ram_size, + .psci_conduit = QEMU_PSCI_CONDUIT_SMC, + .modify_dtb = imx8mm_evk_modify_dtb, + }; + + s = FSL_IMX8MM(object_new_with_props(TYPE_FSL_IMX8MM, OBJECT(machine), + "soc", &error_fatal, NULL)); + sysbus_realize_and_unref(SYS_BUS_DEVICE(s), &error_fatal); + + memory_region_add_subregion(get_system_memory(), FSL_IMX8MM_RAM_START, + machine->ram); + + if (!qtest_enabled()) { + arm_load_kernel(&s->cpu[0], machine, &boot_info); + } +} + +static const char *imx8mm_evk_get_default_cpu_type(const MachineState *ms) +{ + if (kvm_enabled()) { + return ARM_CPU_TYPE_NAME("host"); + } + + return ARM_CPU_TYPE_NAME("cortex-a53"); +} + +static void imx8mm_evk_machine_init(MachineClass *mc) +{ + mc->desc = "NXP i.MX 8MM EVK Board"; + mc->init = imx8mm_evk_init; + mc->max_cpus = FSL_IMX8MM_NUM_CPUS; + mc->default_cpus = FSL_IMX8MM_NUM_CPUS; + mc->default_ram_size = 2 * GiB; + mc->default_ram_id = "imx8mm-evk.ram"; + mc->get_default_cpu_type = imx8mm_evk_get_default_cpu_type; +} + +DEFINE_MACHINE_AARCH64("imx8mm-evk", imx8mm_evk_machine_init) diff --git a/hw/arm/meson.build b/hw/arm/meson.build index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/meson.build +++ b/hw/arm/meson.build @@ -XXX,XX +XXX,XX @@ arm_common_ss.add(when: 'CONFIG_ARMSSE', if_true: files('armsse.c')) arm_common_ss.add(when: 'CONFIG_FSL_IMX7', if_true: files('fsl-imx7.c', 'mcimx7d-sabre.c')) arm_common_ss.add(when: 'CONFIG_FSL_IMX8MP', if_true: files('fsl-imx8mp.c')) arm_common_ss.add(when: 'CONFIG_FSL_IMX8MP_EVK', if_true: files('imx8mp-evk.c')) +arm_common_ss.add(when: 'CONFIG_FSL_IMX8MM', if_true: files('fsl-imx8mm.c')) +arm_common_ss.add(when: 'CONFIG_FSL_IMX8MM_EVK', if_true: files('imx8mm-evk.c')) arm_common_ss.add(when: 'CONFIG_ARM_SMMUV3', if_true: files('smmuv3.c')) arm_common_ss.add(when: 'CONFIG_ARM_SMMUV3_ACCEL', if_true: files('smmuv3-accel.c')) stub_ss.add(files('smmuv3-accel-stubs.c')) diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h new file mode 100644 index XXXXXXX..XXXXXXX --- /dev/null +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ +/* + * i.MX 8MM SoC Definitions + * + * Copyright (c) 2025, NXP Semiconductors + * Author: Gaurav Sharma <gaurav.sharma_7@nxp.com> + * + * SPDX-License-Identifier: GPL-2.0-or-later + */ + +#ifndef FSL_IMX8MM_H +#define FSL_IMX8MM_H + +#include "cpu.h" +#include "hw/char/imx_serial.h" +#include "hw/intc/arm_gicv3_common.h" +#include "qom/object.h" +#include "qemu/units.h" + +#define TYPE_FSL_IMX8MM "fsl-imx8mm" +OBJECT_DECLARE_SIMPLE_TYPE(FslImx8mmState, FSL_IMX8MM) + +#define FSL_IMX8MM_RAM_START 0x40000000 +#define FSL_IMX8MM_RAM_SIZE_MAX (4 * GiB) + +enum FslImx8mmConfiguration { + FSL_IMX8MM_NUM_CPUS = 4, + FSL_IMX8MM_NUM_IRQS = 128, + FSL_IMX8MM_NUM_UARTS = 4, +}; + +struct FslImx8mmState { + SysBusDevice parent_obj; + + ARMCPU cpu[FSL_IMX8MM_NUM_CPUS]; + GICv3State gic; + IMXSerialState uart[FSL_IMX8MM_NUM_UARTS]; + MemoryRegion ocram; +}; + +enum FslImx8mmMemoryRegions { + FSL_IMX8MM_A53_DAP, + FSL_IMX8MM_AIPS1_CONFIGURATION, + FSL_IMX8MM_AIPS2_CONFIGURATION, + FSL_IMX8MM_AIPS3_CONFIGURATION, + FSL_IMX8MM_AIPS4_CONFIGURATION, + FSL_IMX8MM_ANA_OSC, + FSL_IMX8MM_ANA_PLL, + FSL_IMX8MM_ANA_TSENSOR, + FSL_IMX8MM_APBH_DMA, + FSL_IMX8MM_BOOT_ROM, + FSL_IMX8MM_BOOT_ROM_PROTECTED, + FSL_IMX8MM_CAAM, + FSL_IMX8MM_CAAM_MEM, + FSL_IMX8MM_CCM, + FSL_IMX8MM_CSU, + FSL_IMX8MM_DDR_CTL, + FSL_IMX8MM_DDR_PERF_MON, + FSL_IMX8MM_DDR_PHY, + FSL_IMX8MM_DDR_PHY_BROADCAST, + FSL_IMX8MM_ECSPI1, + FSL_IMX8MM_ECSPI2, + FSL_IMX8MM_ECSPI3, + FSL_IMX8MM_ENET1, + FSL_IMX8MM_GIC_DIST, + FSL_IMX8MM_GIC_REDIST, + FSL_IMX8MM_GPC, + FSL_IMX8MM_GPIO1, + FSL_IMX8MM_GPIO2, + FSL_IMX8MM_GPIO3, + FSL_IMX8MM_GPIO4, + FSL_IMX8MM_GPIO5, + FSL_IMX8MM_GPT1, + FSL_IMX8MM_GPT2, + FSL_IMX8MM_GPT3, + FSL_IMX8MM_GPT4, + FSL_IMX8MM_GPT5, + FSL_IMX8MM_GPT6, + FSL_IMX8MM_GPU2D, + FSL_IMX8MM_I2C1, + FSL_IMX8MM_I2C2, + FSL_IMX8MM_I2C3, + FSL_IMX8MM_I2C4, + FSL_IMX8MM_INTERCONNECT, + FSL_IMX8MM_IOMUXC, + FSL_IMX8MM_IOMUXC_GPR, + FSL_IMX8MM_MEDIA_BLK_CTL, + FSL_IMX8MM_LCDIF, + FSL_IMX8MM_MIPI_CSI, + FSL_IMX8MM_MIPI_DSI, + FSL_IMX8MM_MU_A, + FSL_IMX8MM_MU_B, + FSL_IMX8MM_OCOTP_CTRL, + FSL_IMX8MM_OCRAM, + FSL_IMX8MM_OCRAM_S, + FSL_IMX8MM_PCIE1, + FSL_IMX8MM_PCIE1_MEM, + FSL_IMX8MM_PCIE_PHY1, + FSL_IMX8MM_PERFMON1, + FSL_IMX8MM_PERFMON2, + FSL_IMX8MM_PWM1, + FSL_IMX8MM_PWM2, + FSL_IMX8MM_PWM3, + FSL_IMX8MM_PWM4, + FSL_IMX8MM_QOSC, + FSL_IMX8MM_QSPI, + FSL_IMX8MM_QSPI1_RX_BUFFER, + FSL_IMX8MM_QSPI1_TX_BUFFER, + FSL_IMX8MM_QSPI_MEM, + FSL_IMX8MM_RAM, + FSL_IMX8MM_RDC, + FSL_IMX8MM_SAI1, + FSL_IMX8MM_SAI2, + FSL_IMX8MM_SAI3, + FSL_IMX8MM_SAI5, + FSL_IMX8MM_SAI6, + FSL_IMX8MM_SDMA1, + FSL_IMX8MM_SDMA2, + FSL_IMX8MM_SDMA3, + FSL_IMX8MM_SEMAPHORE1, + FSL_IMX8MM_SEMAPHORE2, + FSL_IMX8MM_SEMAPHORE_HS, + FSL_IMX8MM_SNVS_HP, + FSL_IMX8MM_SPBA1, + FSL_IMX8MM_SRC, + FSL_IMX8MM_SYSCNT_CMP, + FSL_IMX8MM_SYSCNT_CTRL, + FSL_IMX8MM_SYSCNT_RD, + FSL_IMX8MM_TCM_DTCM, + FSL_IMX8MM_TCM_ITCM, + FSL_IMX8MM_TZASC, + FSL_IMX8MM_UART1, + FSL_IMX8MM_UART2, + FSL_IMX8MM_UART3, + FSL_IMX8MM_UART4, + FSL_IMX8MM_USB1, + FSL_IMX8MM_USB2, + FSL_IMX8MM_USB1_OTG, + FSL_IMX8MM_USB2_OTG, + FSL_IMX8MM_USDHC1, + FSL_IMX8MM_USDHC2, + FSL_IMX8MM_USDHC3, + FSL_IMX8MM_VPU, + FSL_IMX8MM_VPU_BLK_CTRL, + FSL_IMX8MM_VPU_G1_DECODER, + FSL_IMX8MM_VPU_G2_DECODER, + FSL_IMX8MM_WDOG1, + FSL_IMX8MM_WDOG2, + FSL_IMX8MM_WDOG3, +}; + +enum FslImx8mmIrqs { + FSL_IMX8MM_UART1_IRQ = 26, + FSL_IMX8MM_UART2_IRQ = 27, + FSL_IMX8MM_UART3_IRQ = 28, + FSL_IMX8MM_UART4_IRQ = 29, +}; + +#endif /* FSL_IMX8MM_H */ -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> Add configurable properties for register reset values that differ between i.MX 8M variants (Plus, Mini, etc.). This allows the same device implementation to be shared across multiple SoCs. Properties added: - arm-pll-fdiv-ctl0-reset: ARM PLL divider control reset value Default value is set to match i.MX 8MP reset value (0x000FA031). This can be overridden in the variant like iMX8MM with its own reset value. Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/misc/imx8mp_analog.c | 12 +++++++++++- include/hw/misc/imx8mp_analog.h | 3 +++ 2 files changed, 14 insertions(+), 1 deletion(-) diff --git a/hw/misc/imx8mp_analog.c b/hw/misc/imx8mp_analog.c index XXXXXXX..XXXXXXX 100644 --- a/hw/misc/imx8mp_analog.c +++ b/hw/misc/imx8mp_analog.c @@ -XXX,XX +XXX,XX @@ #include "qemu/log.h" #include "hw/misc/imx8mp_analog.h" +#include "hw/core/qdev-properties.h" #include "migration/vmstate.h" #define ANALOG_PLL_LOCK BIT(31) @@ -XXX,XX +XXX,XX @@ static void imx8mp_analog_reset(DeviceState *dev) s->analog[ANALOG_VPU_PLL_LOCKD_CTRL] = 0x0010003f; s->analog[ANALOG_VPU_PLL_MNIT_CTRL] = 0x00280081; s->analog[ANALOG_ARM_PLL_GEN_CTRL] = 0x00000810; - s->analog[ANALOG_ARM_PLL_FDIV_CTL0] = 0x000fa031; + + /* Use property value instead of hardcoded */ + s->analog[ANALOG_ARM_PLL_FDIV_CTL0] = s->arm_pll_fdiv_ctl0_reset; + s->analog[ANALOG_ARM_PLL_LOCKD_CTRL] = 0x0010003f; s->analog[ANALOG_ARM_PLL_MNIT_CTRL] = 0x00280081; s->analog[ANALOG_SYS_PLL1_GEN_CTRL] = 0x0aaaa810; @@ -XXX,XX +XXX,XX @@ static const VMStateDescription imx8mp_analog_vmstate = { }, }; +static const Property imx8mp_analog_properties[] = { + DEFINE_PROP_UINT32("arm-pll-fdiv-ctl0-reset", IMX8MPAnalogState, + arm_pll_fdiv_ctl0_reset, 0x000fa031), /* imx8mp default */ +}; + static void imx8mp_analog_class_init(ObjectClass *klass, const void *data) { DeviceClass *dc = DEVICE_CLASS(klass); device_class_set_legacy_reset(dc, imx8mp_analog_reset); + device_class_set_props(dc, imx8mp_analog_properties); dc->vmsd = &imx8mp_analog_vmstate; dc->desc = "i.MX 8M Plus Analog Module"; } diff --git a/include/hw/misc/imx8mp_analog.h b/include/hw/misc/imx8mp_analog.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/misc/imx8mp_analog.h +++ b/include/hw/misc/imx8mp_analog.h @@ -XXX,XX +XXX,XX @@ struct IMX8MPAnalogState { } mmio; uint32_t analog[ANALOG_MAX]; + + /* Property for variant-specific reset values */ + uint32_t arm_pll_fdiv_ctl0_reset; }; #endif /* IMX8MP_ANALOG_H */ -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> Add the Analog IP to i.MX8MM SoC. iMX8MM and i.MX8MP uses the same Analog IP so the analog ip source will be shared. The ARM PLL divider control register (arm-pll-fdiv-ctl0) has a different reset value on i.MX8MM (0x000fa030) compared to i.MX8MP (0x000fa031). So iMX8MM will be overriding this property with its own reset-value. Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/Kconfig | 1 + hw/arm/fsl-imx8mm.c | 12 ++++++++++++ include/hw/arm/fsl-imx8mm.h | 2 ++ 3 files changed, 15 insertions(+) diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/Kconfig +++ b/hw/arm/Kconfig @@ -XXX,XX +XXX,XX @@ config FSL_IMX8MP_EVK config FSL_IMX8MM bool select ARM_GIC + select FSL_IMX8MP_ANALOG select IMX config FSL_IMX8MM_EVK diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) object_initialize_child(obj, "gic", &s->gic, gicv3_class_name()); + object_initialize_child(obj, "analog", &s->analog, TYPE_IMX8MP_ANALOG); + for (i = 0; i < FSL_IMX8MM_NUM_UARTS; i++) { g_autofree char *name = g_strdup_printf("uart%d", i + 1); object_initialize_child(obj, name, &s->uart[i], TYPE_IMX_SERIAL); @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) } } + /* Analog */ + object_property_set_uint(OBJECT(&s->analog), "arm-pll-fdiv-ctl0-reset", + 0x000fa030, &error_abort); + if (!sysbus_realize(SYS_BUS_DEVICE(&s->analog), errp)) { + return; + } + sysbus_mmio_map(SYS_BUS_DEVICE(&s->analog), 0, + fsl_imx8mm_memmap[FSL_IMX8MM_ANA_PLL].addr); + /* UARTs */ for (i = 0; i < FSL_IMX8MM_NUM_UARTS; i++) { static const struct { @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) /* Unimplemented devices */ for (i = 0; i < ARRAY_SIZE(fsl_imx8mm_memmap); i++) { switch (i) { + case FSL_IMX8MM_ANA_PLL: case FSL_IMX8MM_GIC_DIST: case FSL_IMX8MM_GIC_REDIST: case FSL_IMX8MM_RAM: diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "cpu.h" #include "hw/char/imx_serial.h" #include "hw/intc/arm_gicv3_common.h" +#include "hw/misc/imx8mp_analog.h" #include "qom/object.h" #include "qemu/units.h" @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { ARMCPU cpu[FSL_IMX8MM_NUM_CPUS]; GICv3State gic; + IMX8MPAnalogState analog; IMXSerialState uart[FSL_IMX8MM_NUM_UARTS]; MemoryRegion ocram; }; -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> Add the Clock Control Module (CCM) device to i.MX8MM SoC. The CCM implementation is shared with i.MX8MP as the register layout is identical between the two variants.Hence iMX8MM will be using the source of iMX8MP CCM. Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/Kconfig | 1 + hw/arm/fsl-imx8mm.c | 10 ++++++++++ include/hw/arm/fsl-imx8mm.h | 2 ++ 3 files changed, 13 insertions(+) diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/Kconfig +++ b/hw/arm/Kconfig @@ -XXX,XX +XXX,XX @@ config FSL_IMX8MM bool select ARM_GIC select FSL_IMX8MP_ANALOG + select FSL_IMX8MP_CCM select IMX config FSL_IMX8MM_EVK diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) object_initialize_child(obj, "gic", &s->gic, gicv3_class_name()); + object_initialize_child(obj, "ccm", &s->ccm, TYPE_IMX8MP_CCM); + object_initialize_child(obj, "analog", &s->analog, TYPE_IMX8MP_ANALOG); for (i = 0; i < FSL_IMX8MM_NUM_UARTS; i++) { @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) } } + /* CCM */ + if (!sysbus_realize(SYS_BUS_DEVICE(&s->ccm), errp)) { + return; + } + sysbus_mmio_map(SYS_BUS_DEVICE(&s->ccm), 0, + fsl_imx8mm_memmap[FSL_IMX8MM_CCM].addr); + /* Analog */ object_property_set_uint(OBJECT(&s->analog), "arm-pll-fdiv-ctl0-reset", 0x000fa030, &error_abort); @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) for (i = 0; i < ARRAY_SIZE(fsl_imx8mm_memmap); i++) { switch (i) { case FSL_IMX8MM_ANA_PLL: + case FSL_IMX8MM_CCM: case FSL_IMX8MM_GIC_DIST: case FSL_IMX8MM_GIC_REDIST: case FSL_IMX8MM_RAM: diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "hw/char/imx_serial.h" #include "hw/intc/arm_gicv3_common.h" #include "hw/misc/imx8mp_analog.h" +#include "hw/misc/imx8mp_ccm.h" #include "qom/object.h" #include "qemu/units.h" @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { ARMCPU cpu[FSL_IMX8MM_NUM_CPUS]; GICv3State gic; + IMX8MPCCMState ccm; IMX8MPAnalogState analog; IMXSerialState uart[FSL_IMX8MM_NUM_UARTS]; MemoryRegion ocram; -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> SNVS contains an RTC which allows Linux to deal correctly with time Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/fsl-imx8mm.c | 10 ++++++++++ include/hw/arm/fsl-imx8mm.h | 2 ++ 2 files changed, 12 insertions(+) diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) object_initialize_child(obj, "analog", &s->analog, TYPE_IMX8MP_ANALOG); + object_initialize_child(obj, "snvs", &s->snvs, TYPE_IMX7_SNVS); + for (i = 0; i < FSL_IMX8MM_NUM_UARTS; i++) { g_autofree char *name = g_strdup_printf("uart%d", i + 1); object_initialize_child(obj, name, &s->uart[i], TYPE_IMX_SERIAL); @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) fsl_imx8mm_memmap[FSL_IMX8MM_OCRAM].addr, &s->ocram); + /* SNVS */ + if (!sysbus_realize(SYS_BUS_DEVICE(&s->snvs), errp)) { + return; + } + sysbus_mmio_map(SYS_BUS_DEVICE(&s->snvs), 0, + fsl_imx8mm_memmap[FSL_IMX8MM_SNVS_HP].addr); + /* Unimplemented devices */ for (i = 0; i < ARRAY_SIZE(fsl_imx8mm_memmap); i++) { switch (i) { @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) case FSL_IMX8MM_GIC_REDIST: case FSL_IMX8MM_RAM: case FSL_IMX8MM_OCRAM: + case FSL_IMX8MM_SNVS_HP: case FSL_IMX8MM_UART1 ... FSL_IMX8MM_UART4: /* device implemented and treated above */ break; diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "cpu.h" #include "hw/char/imx_serial.h" #include "hw/intc/arm_gicv3_common.h" +#include "hw/misc/imx7_snvs.h" #include "hw/misc/imx8mp_analog.h" #include "hw/misc/imx8mp_ccm.h" #include "qom/object.h" @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { GICv3State gic; IMX8MPCCMState ccm; IMX8MPAnalogState analog; + IMX7SNVSState snvs; IMXSerialState uart[FSL_IMX8MM_NUM_UARTS]; MemoryRegion ocram; }; -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> It enables emulation of SD/MMC cards through a virtual SDHCI interface The emulated SDHCI controller allows guest OS to use emulated storage as a standard block device. This will allow running the images such as those generated by Buildroot. Reviewed-by: Philippe Mathieu-Daude <philmd@linaro.org> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/Kconfig | 1 + hw/arm/fsl-imx8mm.c | 25 +++++++++++++++++++++++++ hw/arm/imx8mm-evk.c | 17 +++++++++++++++++ include/hw/arm/fsl-imx8mm.h | 7 +++++++ 4 files changed, 50 insertions(+) diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/Kconfig +++ b/hw/arm/Kconfig @@ -XXX,XX +XXX,XX @@ config FSL_IMX8MM select FSL_IMX8MP_ANALOG select FSL_IMX8MP_CCM select IMX + select SDHCI config FSL_IMX8MM_EVK bool diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) object_initialize_child(obj, name, &s->uart[i], TYPE_IMX_SERIAL); } + for (i = 0; i < FSL_IMX8MM_NUM_USDHCS; i++) { + g_autofree char *name = g_strdup_printf("usdhc%d", i + 1); + object_initialize_child(obj, name, &s->usdhc[i], TYPE_IMX_USDHC); + } } static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) fsl_imx8mm_memmap[FSL_IMX8MM_OCRAM].addr, &s->ocram); + /* USDHCs */ + for (i = 0; i < FSL_IMX8MM_NUM_USDHCS; i++) { + static const struct { + hwaddr addr; + unsigned int irq; + } usdhc_table[FSL_IMX8MM_NUM_USDHCS] = { + { fsl_imx8mm_memmap[FSL_IMX8MM_USDHC1].addr, FSL_IMX8MM_USDHC1_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_USDHC2].addr, FSL_IMX8MM_USDHC2_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_USDHC3].addr, FSL_IMX8MM_USDHC3_IRQ }, + }; + + if (!sysbus_realize(SYS_BUS_DEVICE(&s->usdhc[i]), errp)) { + return; + } + + sysbus_mmio_map(SYS_BUS_DEVICE(&s->usdhc[i]), 0, usdhc_table[i].addr); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->usdhc[i]), 0, + qdev_get_gpio_in(gicdev, usdhc_table[i].irq)); + } + /* SNVS */ if (!sysbus_realize(SYS_BUS_DEVICE(&s->snvs), errp)) { return; @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) case FSL_IMX8MM_OCRAM: case FSL_IMX8MM_SNVS_HP: case FSL_IMX8MM_UART1 ... FSL_IMX8MM_UART4: + case FSL_IMX8MM_USDHC1 ... FSL_IMX8MM_USDHC3: /* device implemented and treated above */ break; diff --git a/hw/arm/imx8mm-evk.c b/hw/arm/imx8mm-evk.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/imx8mm-evk.c +++ b/hw/arm/imx8mm-evk.c @@ -XXX,XX +XXX,XX @@ static void imx8mm_evk_init(MachineState *machine) memory_region_add_subregion(get_system_memory(), FSL_IMX8MM_RAM_START, machine->ram); + for (int i = 0; i < FSL_IMX8MM_NUM_USDHCS; i++) { + BusState *bus; + DeviceState *carddev; + BlockBackend *blk; + DriveInfo *di = drive_get(IF_SD, i, 0); + + if (!di) { + continue; + } + + blk = blk_by_legacy_dinfo(di); + bus = qdev_get_child_bus(DEVICE(&s->usdhc[i]), "sd-bus"); + carddev = qdev_new(TYPE_SD_CARD); + qdev_prop_set_drive_err(carddev, "drive", blk, &error_fatal); + qdev_realize_and_unref(carddev, bus, &error_fatal); + } + if (!qtest_enabled()) { arm_load_kernel(&s->cpu[0], machine, &boot_info); } diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "hw/misc/imx7_snvs.h" #include "hw/misc/imx8mp_analog.h" #include "hw/misc/imx8mp_ccm.h" +#include "hw/sd/sdhci.h" #include "qom/object.h" #include "qemu/units.h" @@ -XXX,XX +XXX,XX @@ enum FslImx8mmConfiguration { FSL_IMX8MM_NUM_CPUS = 4, FSL_IMX8MM_NUM_IRQS = 128, FSL_IMX8MM_NUM_UARTS = 4, + FSL_IMX8MM_NUM_USDHCS = 3, }; struct FslImx8mmState { @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { IMX7SNVSState snvs; IMXSerialState uart[FSL_IMX8MM_NUM_UARTS]; MemoryRegion ocram; + SDHCIState usdhc[FSL_IMX8MM_NUM_USDHCS]; }; enum FslImx8mmMemoryRegions { @@ -XXX,XX +XXX,XX @@ enum FslImx8mmMemoryRegions { }; enum FslImx8mmIrqs { + FSL_IMX8MM_USDHC1_IRQ = 22, + FSL_IMX8MM_USDHC2_IRQ = 23, + FSL_IMX8MM_USDHC3_IRQ = 24, + FSL_IMX8MM_UART1_IRQ = 26, FSL_IMX8MM_UART2_IRQ = 27, FSL_IMX8MM_UART3_IRQ = 28, -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> This enables support for Designware PCI Express Controller emulation It provides a controlled environment to debug the linux pci subsystem Reviewed-by: Philippe Mathieu-Daude <philmd@linaro.org> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/Kconfig | 3 +++ hw/arm/fsl-imx8mm.c | 30 ++++++++++++++++++++++++++++++ include/hw/arm/fsl-imx8mm.h | 10 ++++++++++ 3 files changed, 43 insertions(+) diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/Kconfig +++ b/hw/arm/Kconfig @@ -XXX,XX +XXX,XX @@ config FSL_IMX8MP_EVK config FSL_IMX8MM bool + imply PCI_DEVICES select ARM_GIC select FSL_IMX8MP_ANALOG select FSL_IMX8MP_CCM select IMX select SDHCI + select PCI_EXPRESS_DESIGNWARE + select PCI_EXPRESS_FSL_IMX8M_PHY config FSL_IMX8MM_EVK bool diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) g_autofree char *name = g_strdup_printf("usdhc%d", i + 1); object_initialize_child(obj, name, &s->usdhc[i], TYPE_IMX_USDHC); } + + object_initialize_child(obj, "pcie", &s->pcie, TYPE_DESIGNWARE_PCIE_HOST); + object_initialize_child(obj, "pcie_phy", &s->pcie_phy, + TYPE_FSL_IMX8M_PCIE_PHY); } static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) sysbus_mmio_map(SYS_BUS_DEVICE(&s->snvs), 0, fsl_imx8mm_memmap[FSL_IMX8MM_SNVS_HP].addr); + /* PCIe */ + if (!sysbus_realize(SYS_BUS_DEVICE(&s->pcie), errp)) { + return; + } + sysbus_mmio_map(SYS_BUS_DEVICE(&s->pcie), 0, + fsl_imx8mm_memmap[FSL_IMX8MM_PCIE1].addr); + + sysbus_connect_irq(SYS_BUS_DEVICE(&s->pcie), 0, + qdev_get_gpio_in(gicdev, FSL_IMX8MM_PCI_INTA_IRQ)); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->pcie), 1, + qdev_get_gpio_in(gicdev, FSL_IMX8MM_PCI_INTB_IRQ)); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->pcie), 2, + qdev_get_gpio_in(gicdev, FSL_IMX8MM_PCI_INTC_IRQ)); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->pcie), 3, + qdev_get_gpio_in(gicdev, FSL_IMX8MM_PCI_INTD_IRQ)); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->pcie), 4, + qdev_get_gpio_in(gicdev, FSL_IMX8MM_PCI_MSI_IRQ)); + + if (!sysbus_realize(SYS_BUS_DEVICE(&s->pcie_phy), errp)) { + return; + } + sysbus_mmio_map(SYS_BUS_DEVICE(&s->pcie_phy), 0, + fsl_imx8mm_memmap[FSL_IMX8MM_PCIE_PHY1].addr); + /* Unimplemented devices */ for (i = 0; i < ARRAY_SIZE(fsl_imx8mm_memmap); i++) { switch (i) { @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) case FSL_IMX8MM_CCM: case FSL_IMX8MM_GIC_DIST: case FSL_IMX8MM_GIC_REDIST: + case FSL_IMX8MM_PCIE1: + case FSL_IMX8MM_PCIE_PHY1: case FSL_IMX8MM_RAM: case FSL_IMX8MM_OCRAM: case FSL_IMX8MM_SNVS_HP: diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "hw/misc/imx7_snvs.h" #include "hw/misc/imx8mp_analog.h" #include "hw/misc/imx8mp_ccm.h" +#include "hw/pci-host/designware.h" +#include "hw/pci-host/fsl_imx8m_phy.h" #include "hw/sd/sdhci.h" #include "qom/object.h" #include "qemu/units.h" @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { IMXSerialState uart[FSL_IMX8MM_NUM_UARTS]; MemoryRegion ocram; SDHCIState usdhc[FSL_IMX8MM_NUM_USDHCS]; + DesignwarePCIEHost pcie; + FslImx8mPciePhyState pcie_phy; }; enum FslImx8mmMemoryRegions { @@ -XXX,XX +XXX,XX @@ enum FslImx8mmIrqs { FSL_IMX8MM_UART2_IRQ = 27, FSL_IMX8MM_UART3_IRQ = 28, FSL_IMX8MM_UART4_IRQ = 29, + + FSL_IMX8MM_PCI_INTA_IRQ = 122, + FSL_IMX8MM_PCI_INTB_IRQ = 123, + FSL_IMX8MM_PCI_INTC_IRQ = 124, + FSL_IMX8MM_PCI_INTD_IRQ = 125, + FSL_IMX8MM_PCI_MSI_IRQ = 127, }; #endif /* FSL_IMX8MM_H */ -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> Enabled GPIO controller emulation Also updated the GPIO IRQ lines of iMX8MM Reviewed-by: Philippe Mathieu-Daude <philmd@linaro.org> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/fsl-imx8mm.c | 54 +++++++++++++++++++++++++++++++++++++ include/hw/arm/fsl-imx8mm.h | 14 ++++++++++ 2 files changed, 68 insertions(+) diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) object_initialize_child(obj, name, &s->uart[i], TYPE_IMX_SERIAL); } + for (i = 0; i < FSL_IMX8MM_NUM_GPIOS; i++) { + g_autofree char *name = g_strdup_printf("gpio%d", i + 1); + object_initialize_child(obj, name, &s->gpio[i], TYPE_IMX_GPIO); + } + for (i = 0; i < FSL_IMX8MM_NUM_USDHCS; i++) { g_autofree char *name = g_strdup_printf("usdhc%d", i + 1); object_initialize_child(obj, name, &s->usdhc[i], TYPE_IMX_USDHC); @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) fsl_imx8mm_memmap[FSL_IMX8MM_OCRAM].addr, &s->ocram); + /* GPIOs */ + for (i = 0; i < FSL_IMX8MM_NUM_GPIOS; i++) { + static const struct { + hwaddr addr; + unsigned int irq_low; + unsigned int irq_high; + } gpio_table[FSL_IMX8MM_NUM_GPIOS] = { + { + fsl_imx8mm_memmap[FSL_IMX8MM_GPIO1].addr, + FSL_IMX8MM_GPIO1_LOW_IRQ, + FSL_IMX8MM_GPIO1_HIGH_IRQ + }, + { + fsl_imx8mm_memmap[FSL_IMX8MM_GPIO2].addr, + FSL_IMX8MM_GPIO2_LOW_IRQ, + FSL_IMX8MM_GPIO2_HIGH_IRQ + }, + { + fsl_imx8mm_memmap[FSL_IMX8MM_GPIO3].addr, + FSL_IMX8MM_GPIO3_LOW_IRQ, + FSL_IMX8MM_GPIO3_HIGH_IRQ + }, + { + fsl_imx8mm_memmap[FSL_IMX8MM_GPIO4].addr, + FSL_IMX8MM_GPIO4_LOW_IRQ, + FSL_IMX8MM_GPIO4_HIGH_IRQ + }, + { + fsl_imx8mm_memmap[FSL_IMX8MM_GPIO5].addr, + FSL_IMX8MM_GPIO5_LOW_IRQ, + FSL_IMX8MM_GPIO5_HIGH_IRQ + }, + }; + object_property_set_bool(OBJECT(&s->gpio[i]), "has-edge-sel", true, + &error_abort); + object_property_set_bool(OBJECT(&s->gpio[i]), "has-upper-pin-irq", + true, &error_abort); + if (!sysbus_realize(SYS_BUS_DEVICE(&s->gpio[i]), errp)) { + return; + } + + sysbus_mmio_map(SYS_BUS_DEVICE(&s->gpio[i]), 0, gpio_table[i].addr); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->gpio[i]), 0, + qdev_get_gpio_in(gicdev, gpio_table[i].irq_low)); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->gpio[i]), 1, + qdev_get_gpio_in(gicdev, gpio_table[i].irq_high)); + } + /* USDHCs */ for (i = 0; i < FSL_IMX8MM_NUM_USDHCS; i++) { static const struct { @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) case FSL_IMX8MM_CCM: case FSL_IMX8MM_GIC_DIST: case FSL_IMX8MM_GIC_REDIST: + case FSL_IMX8MM_GPIO1 ... FSL_IMX8MM_GPIO5: case FSL_IMX8MM_PCIE1: case FSL_IMX8MM_PCIE_PHY1: case FSL_IMX8MM_RAM: diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "cpu.h" #include "hw/char/imx_serial.h" +#include "hw/gpio/imx_gpio.h" #include "hw/intc/arm_gicv3_common.h" #include "hw/misc/imx7_snvs.h" #include "hw/misc/imx8mp_analog.h" @@ -XXX,XX +XXX,XX @@ OBJECT_DECLARE_SIMPLE_TYPE(FslImx8mmState, FSL_IMX8MM) enum FslImx8mmConfiguration { FSL_IMX8MM_NUM_CPUS = 4, + FSL_IMX8MM_NUM_GPIOS = 5, FSL_IMX8MM_NUM_IRQS = 128, FSL_IMX8MM_NUM_UARTS = 4, FSL_IMX8MM_NUM_USDHCS = 3, @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { ARMCPU cpu[FSL_IMX8MM_NUM_CPUS]; GICv3State gic; + IMXGPIOState gpio[FSL_IMX8MM_NUM_GPIOS]; IMX8MPCCMState ccm; IMX8MPAnalogState analog; IMX7SNVSState snvs; @@ -XXX,XX +XXX,XX @@ enum FslImx8mmIrqs { FSL_IMX8MM_UART3_IRQ = 28, FSL_IMX8MM_UART4_IRQ = 29, + FSL_IMX8MM_GPIO1_LOW_IRQ = 64, + FSL_IMX8MM_GPIO1_HIGH_IRQ = 65, + FSL_IMX8MM_GPIO2_LOW_IRQ = 66, + FSL_IMX8MM_GPIO2_HIGH_IRQ = 67, + FSL_IMX8MM_GPIO3_LOW_IRQ = 68, + FSL_IMX8MM_GPIO3_HIGH_IRQ = 69, + FSL_IMX8MM_GPIO4_LOW_IRQ = 70, + FSL_IMX8MM_GPIO4_HIGH_IRQ = 71, + FSL_IMX8MM_GPIO5_LOW_IRQ = 72, + FSL_IMX8MM_GPIO5_HIGH_IRQ = 73, + FSL_IMX8MM_PCI_INTA_IRQ = 122, FSL_IMX8MM_PCI_INTB_IRQ = 123, FSL_IMX8MM_PCI_INTC_IRQ = 124, -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> This can be used to test and debug I2C device drivers. Added I2C interrupts Reviewed-by: Philippe Mathieu-Daude <philmd@linaro.org> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/Kconfig | 2 ++ hw/arm/fsl-imx8mm.c | 27 +++++++++++++++++++++++++++ include/hw/arm/fsl-imx8mm.h | 8 ++++++++ 3 files changed, 37 insertions(+) diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/Kconfig +++ b/hw/arm/Kconfig @@ -XXX,XX +XXX,XX @@ config FSL_IMX8MP_EVK config FSL_IMX8MM bool imply PCI_DEVICES + imply I2C_DEVICES select ARM_GIC select FSL_IMX8MP_ANALOG select FSL_IMX8MP_CCM select IMX + select IMX_I2C select SDHCI select PCI_EXPRESS_DESIGNWARE select PCI_EXPRESS_FSL_IMX8M_PHY diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) object_initialize_child(obj, name, &s->uart[i], TYPE_IMX_SERIAL); } + for (i = 0; i < FSL_IMX8MM_NUM_I2CS; i++) { + g_autofree char *name = g_strdup_printf("i2c%d", i + 1); + object_initialize_child(obj, name, &s->i2c[i], TYPE_IMX_I2C); + } + for (i = 0; i < FSL_IMX8MM_NUM_GPIOS; i++) { g_autofree char *name = g_strdup_printf("gpio%d", i + 1); object_initialize_child(obj, name, &s->gpio[i], TYPE_IMX_GPIO); @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) fsl_imx8mm_memmap[FSL_IMX8MM_OCRAM].addr, &s->ocram); + /* I2Cs */ + for (i = 0; i < FSL_IMX8MM_NUM_I2CS; i++) { + static const struct { + hwaddr addr; + unsigned int irq; + } i2c_table[FSL_IMX8MM_NUM_I2CS] = { + { fsl_imx8mm_memmap[FSL_IMX8MM_I2C1].addr, FSL_IMX8MM_I2C1_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_I2C2].addr, FSL_IMX8MM_I2C2_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_I2C3].addr, FSL_IMX8MM_I2C3_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_I2C4].addr, FSL_IMX8MM_I2C4_IRQ }, + }; + + if (!sysbus_realize(SYS_BUS_DEVICE(&s->i2c[i]), errp)) { + return; + } + + sysbus_mmio_map(SYS_BUS_DEVICE(&s->i2c[i]), 0, i2c_table[i].addr); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->i2c[i]), 0, + qdev_get_gpio_in(gicdev, i2c_table[i].irq)); + } + /* GPIOs */ for (i = 0; i < FSL_IMX8MM_NUM_GPIOS; i++) { static const struct { @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) case FSL_IMX8MM_GIC_DIST: case FSL_IMX8MM_GIC_REDIST: case FSL_IMX8MM_GPIO1 ... FSL_IMX8MM_GPIO5: + case FSL_IMX8MM_I2C1 ... FSL_IMX8MM_I2C4: case FSL_IMX8MM_PCIE1: case FSL_IMX8MM_PCIE_PHY1: case FSL_IMX8MM_RAM: diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "cpu.h" #include "hw/char/imx_serial.h" #include "hw/gpio/imx_gpio.h" +#include "hw/i2c/imx_i2c.h" #include "hw/intc/arm_gicv3_common.h" #include "hw/misc/imx7_snvs.h" #include "hw/misc/imx8mp_analog.h" @@ -XXX,XX +XXX,XX @@ OBJECT_DECLARE_SIMPLE_TYPE(FslImx8mmState, FSL_IMX8MM) enum FslImx8mmConfiguration { FSL_IMX8MM_NUM_CPUS = 4, FSL_IMX8MM_NUM_GPIOS = 5, + FSL_IMX8MM_NUM_I2CS = 4, FSL_IMX8MM_NUM_IRQS = 128, FSL_IMX8MM_NUM_UARTS = 4, FSL_IMX8MM_NUM_USDHCS = 3, @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { IMX8MPCCMState ccm; IMX8MPAnalogState analog; IMX7SNVSState snvs; + IMXI2CState i2c[FSL_IMX8MM_NUM_I2CS]; IMXSerialState uart[FSL_IMX8MM_NUM_UARTS]; MemoryRegion ocram; SDHCIState usdhc[FSL_IMX8MM_NUM_USDHCS]; @@ -XXX,XX +XXX,XX @@ enum FslImx8mmIrqs { FSL_IMX8MM_UART3_IRQ = 28, FSL_IMX8MM_UART4_IRQ = 29, + FSL_IMX8MM_I2C1_IRQ = 35, + FSL_IMX8MM_I2C2_IRQ = 36, + FSL_IMX8MM_I2C3_IRQ = 37, + FSL_IMX8MM_I2C4_IRQ = 38, + FSL_IMX8MM_GPIO1_LOW_IRQ = 64, FSL_IMX8MM_GPIO1_HIGH_IRQ = 65, FSL_IMX8MM_GPIO2_LOW_IRQ = 66, -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> It enables emulation of ECSPI in iMX8MM Added SPI IRQ lines Reviewed-by: Philippe Mathieu-Daude <philmd@linaro.org> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/fsl-imx8mm.c | 26 ++++++++++++++++++++++++++ include/hw/arm/fsl-imx8mm.h | 7 +++++++ 2 files changed, 33 insertions(+) diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) object_initialize_child(obj, name, &s->usdhc[i], TYPE_IMX_USDHC); } + for (i = 0; i < FSL_IMX8MM_NUM_ECSPIS; i++) { + g_autofree char *name = g_strdup_printf("spi%d", i + 1); + object_initialize_child(obj, name, &s->spi[i], TYPE_IMX_SPI); + } + object_initialize_child(obj, "pcie", &s->pcie, TYPE_DESIGNWARE_PCIE_HOST); object_initialize_child(obj, "pcie_phy", &s->pcie_phy, TYPE_FSL_IMX8M_PCIE_PHY); @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) qdev_get_gpio_in(gicdev, usdhc_table[i].irq)); } + /* ECSPIs */ + for (i = 0; i < FSL_IMX8MM_NUM_ECSPIS; i++) { + static const struct { + hwaddr addr; + unsigned int irq; + } spi_table[FSL_IMX8MM_NUM_ECSPIS] = { + { fsl_imx8mm_memmap[FSL_IMX8MM_ECSPI1].addr, FSL_IMX8MM_ECSPI1_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_ECSPI2].addr, FSL_IMX8MM_ECSPI2_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_ECSPI3].addr, FSL_IMX8MM_ECSPI3_IRQ }, + }; + + if (!sysbus_realize(SYS_BUS_DEVICE(&s->spi[i]), errp)) { + return; + } + + sysbus_mmio_map(SYS_BUS_DEVICE(&s->spi[i]), 0, spi_table[i].addr); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->spi[i]), 0, + qdev_get_gpio_in(gicdev, spi_table[i].irq)); + } + /* SNVS */ if (!sysbus_realize(SYS_BUS_DEVICE(&s->snvs), errp)) { return; @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) case FSL_IMX8MM_GIC_DIST: case FSL_IMX8MM_GIC_REDIST: case FSL_IMX8MM_GPIO1 ... FSL_IMX8MM_GPIO5: + case FSL_IMX8MM_ECSPI1 ... FSL_IMX8MM_ECSPI3: case FSL_IMX8MM_I2C1 ... FSL_IMX8MM_I2C4: case FSL_IMX8MM_PCIE1: case FSL_IMX8MM_PCIE_PHY1: diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "hw/pci-host/designware.h" #include "hw/pci-host/fsl_imx8m_phy.h" #include "hw/sd/sdhci.h" +#include "hw/ssi/imx_spi.h" #include "qom/object.h" #include "qemu/units.h" @@ -XXX,XX +XXX,XX @@ OBJECT_DECLARE_SIMPLE_TYPE(FslImx8mmState, FSL_IMX8MM) enum FslImx8mmConfiguration { FSL_IMX8MM_NUM_CPUS = 4, + FSL_IMX8MM_NUM_ECSPIS = 3, FSL_IMX8MM_NUM_GPIOS = 5, FSL_IMX8MM_NUM_I2CS = 4, FSL_IMX8MM_NUM_IRQS = 128, @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { IMX8MPCCMState ccm; IMX8MPAnalogState analog; IMX7SNVSState snvs; + IMXSPIState spi[FSL_IMX8MM_NUM_ECSPIS]; IMXI2CState i2c[FSL_IMX8MM_NUM_I2CS]; IMXSerialState uart[FSL_IMX8MM_NUM_UARTS]; MemoryRegion ocram; @@ -XXX,XX +XXX,XX @@ enum FslImx8mmIrqs { FSL_IMX8MM_UART3_IRQ = 28, FSL_IMX8MM_UART4_IRQ = 29, + FSL_IMX8MM_ECSPI1_IRQ = 31, + FSL_IMX8MM_ECSPI2_IRQ = 32, + FSL_IMX8MM_ECSPI3_IRQ = 33, + FSL_IMX8MM_I2C1_IRQ = 35, FSL_IMX8MM_I2C2_IRQ = 36, FSL_IMX8MM_I2C3_IRQ = 37, -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> It enables emulation of WDT in iMX8MM Added WDT IRQ lines Reviewed-by: Philippe Mathieu-Daude <philmd@linaro.org> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/Kconfig | 1 + hw/arm/fsl-imx8mm.c | 28 ++++++++++++++++++++++++++++ include/hw/arm/fsl-imx8mm.h | 7 +++++++ 3 files changed, 36 insertions(+) diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/Kconfig +++ b/hw/arm/Kconfig @@ -XXX,XX +XXX,XX @@ config FSL_IMX8MM select SDHCI select PCI_EXPRESS_DESIGNWARE select PCI_EXPRESS_FSL_IMX8M_PHY + select WDT_IMX2 config FSL_IMX8MM_EVK bool diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) object_initialize_child(obj, name, &s->spi[i], TYPE_IMX_SPI); } + for (i = 0; i < FSL_IMX8MM_NUM_WDTS; i++) { + g_autofree char *name = g_strdup_printf("wdt%d", i); + object_initialize_child(obj, name, &s->wdt[i], TYPE_IMX2_WDT); + } + object_initialize_child(obj, "pcie", &s->pcie, TYPE_DESIGNWARE_PCIE_HOST); object_initialize_child(obj, "pcie_phy", &s->pcie_phy, TYPE_FSL_IMX8M_PCIE_PHY); @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) sysbus_mmio_map(SYS_BUS_DEVICE(&s->snvs), 0, fsl_imx8mm_memmap[FSL_IMX8MM_SNVS_HP].addr); + /* Watchdogs */ + for (i = 0; i < FSL_IMX8MM_NUM_WDTS; i++) { + static const struct { + hwaddr addr; + unsigned int irq; + } wdog_table[FSL_IMX8MM_NUM_WDTS] = { + { fsl_imx8mm_memmap[FSL_IMX8MM_WDOG1].addr, FSL_IMX8MM_WDOG1_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_WDOG2].addr, FSL_IMX8MM_WDOG2_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_WDOG3].addr, FSL_IMX8MM_WDOG3_IRQ }, + }; + + object_property_set_bool(OBJECT(&s->wdt[i]), "pretimeout-support", + true, &error_abort); + if (!sysbus_realize(SYS_BUS_DEVICE(&s->wdt[i]), errp)) { + return; + } + + sysbus_mmio_map(SYS_BUS_DEVICE(&s->wdt[i]), 0, wdog_table[i].addr); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->wdt[i]), 0, + qdev_get_gpio_in(gicdev, wdog_table[i].irq)); + } + /* PCIe */ if (!sysbus_realize(SYS_BUS_DEVICE(&s->pcie), errp)) { return; @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) case FSL_IMX8MM_SNVS_HP: case FSL_IMX8MM_UART1 ... FSL_IMX8MM_UART4: case FSL_IMX8MM_USDHC1 ... FSL_IMX8MM_USDHC3: + case FSL_IMX8MM_WDOG1 ... FSL_IMX8MM_WDOG3: /* device implemented and treated above */ break; diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "hw/pci-host/fsl_imx8m_phy.h" #include "hw/sd/sdhci.h" #include "hw/ssi/imx_spi.h" +#include "hw/watchdog/wdt_imx2.h" #include "qom/object.h" #include "qemu/units.h" @@ -XXX,XX +XXX,XX @@ enum FslImx8mmConfiguration { FSL_IMX8MM_NUM_IRQS = 128, FSL_IMX8MM_NUM_UARTS = 4, FSL_IMX8MM_NUM_USDHCS = 3, + FSL_IMX8MM_NUM_WDTS = 3, }; struct FslImx8mmState { @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { IMXSerialState uart[FSL_IMX8MM_NUM_UARTS]; MemoryRegion ocram; SDHCIState usdhc[FSL_IMX8MM_NUM_USDHCS]; + IMX2WdtState wdt[FSL_IMX8MM_NUM_WDTS]; DesignwarePCIEHost pcie; FslImx8mPciePhyState pcie_phy; }; @@ -XXX,XX +XXX,XX @@ enum FslImx8mmIrqs { FSL_IMX8MM_GPIO5_LOW_IRQ = 72, FSL_IMX8MM_GPIO5_HIGH_IRQ = 73, + FSL_IMX8MM_WDOG1_IRQ = 78, + FSL_IMX8MM_WDOG2_IRQ = 79, + FSL_IMX8MM_WDOG3_IRQ = 10, + FSL_IMX8MM_PCI_INTA_IRQ = 122, FSL_IMX8MM_PCI_INTB_IRQ = 123, FSL_IMX8MM_PCI_INTC_IRQ = 124, -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> It enables emulation of GPT in iMX8MM Added GPT IRQ lines Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/Kconfig | 1 + hw/arm/fsl-imx8mm.c | 54 +++++++++++++++++++++++++++++++++++++ hw/timer/imx_gpt.c | 26 ++++++++++++++++++ include/hw/arm/fsl-imx8mm.h | 11 ++++++++ include/hw/timer/imx_gpt.h | 2 ++ 5 files changed, 94 insertions(+) diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/Kconfig +++ b/hw/arm/Kconfig @@ -XXX,XX +XXX,XX @@ config FSL_IMX8MM select FSL_IMX8MP_CCM select IMX select IMX_I2C + select OR_IRQ select SDHCI select PCI_EXPRESS_DESIGNWARE select PCI_EXPRESS_FSL_IMX8M_PHY diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) object_initialize_child(obj, name, &s->uart[i], TYPE_IMX_SERIAL); } + for (i = 0; i < FSL_IMX8MM_NUM_GPTS; i++) { + g_autofree char *name = g_strdup_printf("gpt%d", i + 1); + object_initialize_child(obj, name, &s->gpt[i], TYPE_IMX8MM_GPT); + } + object_initialize_child(obj, "gpt5-gpt6-irq", &s->gpt5_gpt6_irq, + TYPE_OR_IRQ); + for (i = 0; i < FSL_IMX8MM_NUM_I2CS; i++) { g_autofree char *name = g_strdup_printf("i2c%d", i + 1); object_initialize_child(obj, name, &s->i2c[i], TYPE_IMX_I2C); @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) fsl_imx8mm_memmap[FSL_IMX8MM_OCRAM].addr, &s->ocram); + /* GPTs */ + object_property_set_int(OBJECT(&s->gpt5_gpt6_irq), "num-lines", 2, + &error_abort); + if (!qdev_realize(DEVICE(&s->gpt5_gpt6_irq), NULL, errp)) { + return; + } + + qdev_connect_gpio_out(DEVICE(&s->gpt5_gpt6_irq), 0, + qdev_get_gpio_in(gicdev, FSL_IMX8MM_GPT5_GPT6_IRQ)); + + for (i = 0; i < FSL_IMX8MM_NUM_GPTS; i++) { + hwaddr gpt_addrs[FSL_IMX8MM_NUM_GPTS] = { + fsl_imx8mm_memmap[FSL_IMX8MM_GPT1].addr, + fsl_imx8mm_memmap[FSL_IMX8MM_GPT2].addr, + fsl_imx8mm_memmap[FSL_IMX8MM_GPT3].addr, + fsl_imx8mm_memmap[FSL_IMX8MM_GPT4].addr, + fsl_imx8mm_memmap[FSL_IMX8MM_GPT5].addr, + fsl_imx8mm_memmap[FSL_IMX8MM_GPT6].addr, + }; + + s->gpt[i].ccm = IMX_CCM(&s->ccm); + + if (!sysbus_realize(SYS_BUS_DEVICE(&s->gpt[i]), errp)) { + return; + } + + sysbus_mmio_map(SYS_BUS_DEVICE(&s->gpt[i]), 0, gpt_addrs[i]); + + if (i < FSL_IMX8MM_NUM_GPTS - 2) { + static const unsigned int gpt_irqs[FSL_IMX8MM_NUM_GPTS - 2] = { + FSL_IMX8MM_GPT1_IRQ, + FSL_IMX8MM_GPT2_IRQ, + FSL_IMX8MM_GPT3_IRQ, + FSL_IMX8MM_GPT4_IRQ, + }; + + sysbus_connect_irq(SYS_BUS_DEVICE(&s->gpt[i]), 0, + qdev_get_gpio_in(gicdev, gpt_irqs[i])); + } else { + int irq = i - FSL_IMX8MM_NUM_GPTS + 2; + + sysbus_connect_irq(SYS_BUS_DEVICE(&s->gpt[i]), 0, + qdev_get_gpio_in(DEVICE(&s->gpt5_gpt6_irq), irq)); + } + } + /* I2Cs */ for (i = 0; i < FSL_IMX8MM_NUM_I2CS; i++) { static const struct { @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) case FSL_IMX8MM_GIC_DIST: case FSL_IMX8MM_GIC_REDIST: case FSL_IMX8MM_GPIO1 ... FSL_IMX8MM_GPIO5: + case FSL_IMX8MM_GPT1 ... FSL_IMX8MM_GPT6: case FSL_IMX8MM_ECSPI1 ... FSL_IMX8MM_ECSPI3: case FSL_IMX8MM_I2C1 ... FSL_IMX8MM_I2C4: case FSL_IMX8MM_PCIE1: diff --git a/hw/timer/imx_gpt.c b/hw/timer/imx_gpt.c index XXXXXXX..XXXXXXX 100644 --- a/hw/timer/imx_gpt.c +++ b/hw/timer/imx_gpt.c @@ -XXX,XX +XXX,XX @@ * Originally written by Hans Jiang * Updated by Peter Chubb * Updated by Jean-Christophe Dubois <jcd@tribudubois.net> + * Updated by Gaurav Sharma <gaurav.sharma_7@nxp.com> * * This code is licensed under GPL version 2 or later. See * the COPYING file in the top-level directory. @@ -XXX,XX +XXX,XX @@ static const IMXClk imx8mp_gpt_clocks[] = { CLK_NONE, /* 111 not defined */ }; +static const IMXClk imx8mm_gpt_clocks[] = { + CLK_NONE, /* 000 No clock source */ + CLK_IPG, /* 001 ipg_clk, 532MHz */ + CLK_IPG_HIGH, /* 010 ipg_clk_highfreq */ + CLK_EXT, /* 011 External clock */ + CLK_32k, /* 100 ipg_clk_32k */ + CLK_HIGH, /* 101 ipg_clk_16M */ + CLK_NONE, /* 110 not defined */ + CLK_NONE, /* 111 not defined */ +}; + /* Must be called from within ptimer_transaction_begin/commit block */ static void imx_gpt_set_freq(IMXGPTState *s) { @@ -XXX,XX +XXX,XX @@ static void imx8mp_gpt_init(Object *obj) s->clocks = imx8mp_gpt_clocks; } +static void imx8mm_gpt_init(Object *obj) +{ + IMXGPTState *s = IMX_GPT(obj); + + s->clocks = imx8mm_gpt_clocks; +} + static const TypeInfo imx25_gpt_info = { .name = TYPE_IMX25_GPT, .parent = TYPE_SYS_BUS_DEVICE, @@ -XXX,XX +XXX,XX @@ static const TypeInfo imx8mp_gpt_info = { .instance_init = imx8mp_gpt_init, }; +static const TypeInfo imx8mm_gpt_info = { + .name = TYPE_IMX8MM_GPT, + .parent = TYPE_IMX25_GPT, + .instance_init = imx8mm_gpt_init, +}; + static void imx_gpt_register_types(void) { type_register_static(&imx25_gpt_info); @@ -XXX,XX +XXX,XX @@ static void imx_gpt_register_types(void) type_register_static(&imx6ul_gpt_info); type_register_static(&imx7_gpt_info); type_register_static(&imx8mp_gpt_info); + type_register_static(&imx8mm_gpt_info); } type_init(imx_gpt_register_types) diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "hw/misc/imx7_snvs.h" #include "hw/misc/imx8mp_analog.h" #include "hw/misc/imx8mp_ccm.h" +#include "hw/or-irq.h" #include "hw/pci-host/designware.h" #include "hw/pci-host/fsl_imx8m_phy.h" #include "hw/sd/sdhci.h" #include "hw/ssi/imx_spi.h" +#include "hw/timer/imx_gpt.h" #include "hw/watchdog/wdt_imx2.h" #include "qom/object.h" #include "qemu/units.h" @@ -XXX,XX +XXX,XX @@ enum FslImx8mmConfiguration { FSL_IMX8MM_NUM_CPUS = 4, FSL_IMX8MM_NUM_ECSPIS = 3, FSL_IMX8MM_NUM_GPIOS = 5, + FSL_IMX8MM_NUM_GPTS = 6, FSL_IMX8MM_NUM_I2CS = 4, FSL_IMX8MM_NUM_IRQS = 128, FSL_IMX8MM_NUM_UARTS = 4, @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { ARMCPU cpu[FSL_IMX8MM_NUM_CPUS]; GICv3State gic; + IMXGPTState gpt[FSL_IMX8MM_NUM_GPTS]; IMXGPIOState gpio[FSL_IMX8MM_NUM_GPIOS]; IMX8MPCCMState ccm; IMX8MPAnalogState analog; @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { IMX2WdtState wdt[FSL_IMX8MM_NUM_WDTS]; DesignwarePCIEHost pcie; FslImx8mPciePhyState pcie_phy; + OrIRQState gpt5_gpt6_irq; }; enum FslImx8mmMemoryRegions { @@ -XXX,XX +XXX,XX @@ enum FslImx8mmIrqs { FSL_IMX8MM_I2C3_IRQ = 37, FSL_IMX8MM_I2C4_IRQ = 38, + FSL_IMX8MM_GPT1_IRQ = 55, + FSL_IMX8MM_GPT2_IRQ = 54, + FSL_IMX8MM_GPT3_IRQ = 53, + FSL_IMX8MM_GPT4_IRQ = 52, + FSL_IMX8MM_GPT5_GPT6_IRQ = 51, + FSL_IMX8MM_GPIO1_LOW_IRQ = 64, FSL_IMX8MM_GPIO1_HIGH_IRQ = 65, FSL_IMX8MM_GPIO2_LOW_IRQ = 66, diff --git a/include/hw/timer/imx_gpt.h b/include/hw/timer/imx_gpt.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/timer/imx_gpt.h +++ b/include/hw/timer/imx_gpt.h @@ -XXX,XX +XXX,XX @@ * Originally written by Hans Jiang * Updated by Peter Chubb * Updated by Jean-Christophe Dubois <jcd@tribudubois.net> + * Updated by Gaurav Sharma <gaurav.sharma_7@nxp.com> * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to deal @@ -XXX,XX +XXX,XX @@ #define TYPE_IMX6UL_GPT "imx6ul.gpt" #define TYPE_IMX7_GPT "imx7.gpt" #define TYPE_IMX8MP_GPT "imx8mp.gpt" +#define TYPE_IMX8MM_GPT "imx8mm.gpt" #define TYPE_IMX_GPT TYPE_IMX25_GPT -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> It enables emulation of ENET ethernet controller in iMX8MM Enables testing and debugging of network dependent drivers Added ENET MAC IRQ lines Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/Kconfig | 1 + hw/arm/fsl-imx8mm.c | 24 ++++++++++++++++++++++++ hw/arm/imx8mm-evk.c | 1 + include/hw/arm/fsl-imx8mm.h | 10 +++++++++- 4 files changed, 35 insertions(+), 1 deletion(-) diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/Kconfig +++ b/hw/arm/Kconfig @@ -XXX,XX +XXX,XX @@ config FSL_IMX8MM select FSL_IMX8MP_ANALOG select FSL_IMX8MP_CCM select IMX + select IMX_FEC select IMX_I2C select OR_IRQ select SDHCI diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) object_initialize_child(obj, name, &s->wdt[i], TYPE_IMX2_WDT); } + object_initialize_child(obj, "eth0", &s->enet, TYPE_IMX_ENET); + object_initialize_child(obj, "pcie", &s->pcie, TYPE_DESIGNWARE_PCIE_HOST); object_initialize_child(obj, "pcie_phy", &s->pcie_phy, TYPE_FSL_IMX8M_PCIE_PHY); @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) qdev_get_gpio_in(gicdev, spi_table[i].irq)); } + /* ENET1 */ + object_property_set_uint(OBJECT(&s->enet), "phy-num", s->phy_num, + &error_abort); + object_property_set_uint(OBJECT(&s->enet), "tx-ring-num", 3, &error_abort); + qemu_configure_nic_device(DEVICE(&s->enet), true, NULL); + if (!sysbus_realize(SYS_BUS_DEVICE(&s->enet), errp)) { + return; + } + sysbus_mmio_map(SYS_BUS_DEVICE(&s->enet), 0, + fsl_imx8mm_memmap[FSL_IMX8MM_ENET1].addr); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->enet), 0, + qdev_get_gpio_in(gicdev, FSL_IMX8MM_ENET1_MAC_IRQ)); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->enet), 1, + qdev_get_gpio_in(gicdev, FSL_IMX6_ENET1_MAC_1588_IRQ)); + /* SNVS */ if (!sysbus_realize(SYS_BUS_DEVICE(&s->snvs), errp)) { return; @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) case FSL_IMX8MM_GPIO1 ... FSL_IMX8MM_GPIO5: case FSL_IMX8MM_GPT1 ... FSL_IMX8MM_GPT6: case FSL_IMX8MM_ECSPI1 ... FSL_IMX8MM_ECSPI3: + case FSL_IMX8MM_ENET1: case FSL_IMX8MM_I2C1 ... FSL_IMX8MM_I2C4: case FSL_IMX8MM_PCIE1: case FSL_IMX8MM_PCIE_PHY1: @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) } } +static const Property fsl_imx8mm_properties[] = { + DEFINE_PROP_UINT32("fec1-phy-num", FslImx8mmState, phy_num, 0), + DEFINE_PROP_BOOL("fec1-phy-connected", FslImx8mmState, phy_connected, true), +}; + static void fsl_imx8mm_class_init(ObjectClass *oc, const void *data) { DeviceClass *dc = DEVICE_CLASS(oc); + device_class_set_props(dc, fsl_imx8mm_properties); dc->realize = fsl_imx8mm_realize; dc->desc = "i.MX 8MM SoC"; diff --git a/hw/arm/imx8mm-evk.c b/hw/arm/imx8mm-evk.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/imx8mm-evk.c +++ b/hw/arm/imx8mm-evk.c @@ -XXX,XX +XXX,XX @@ static void imx8mm_evk_init(MachineState *machine) s = FSL_IMX8MM(object_new_with_props(TYPE_FSL_IMX8MM, OBJECT(machine), "soc", &error_fatal, NULL)); + object_property_set_uint(OBJECT(s), "fec1-phy-num", 1, &error_fatal); sysbus_realize_and_unref(SYS_BUS_DEVICE(s), &error_fatal); memory_region_add_subregion(get_system_memory(), FSL_IMX8MM_RAM_START, diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "hw/misc/imx7_snvs.h" #include "hw/misc/imx8mp_analog.h" #include "hw/misc/imx8mp_ccm.h" -#include "hw/or-irq.h" +#include "hw/net/imx_fec.h" +#include "hw/core/or-irq.h" #include "hw/pci-host/designware.h" #include "hw/pci-host/fsl_imx8m_phy.h" #include "hw/sd/sdhci.h" @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { IMXI2CState i2c[FSL_IMX8MM_NUM_I2CS]; IMXSerialState uart[FSL_IMX8MM_NUM_UARTS]; MemoryRegion ocram; + IMXFECState enet; SDHCIState usdhc[FSL_IMX8MM_NUM_USDHCS]; IMX2WdtState wdt[FSL_IMX8MM_NUM_WDTS]; DesignwarePCIEHost pcie; FslImx8mPciePhyState pcie_phy; OrIRQState gpt5_gpt6_irq; + + uint32_t phy_num; + bool phy_connected; }; enum FslImx8mmMemoryRegions { @@ -XXX,XX +XXX,XX @@ enum FslImx8mmIrqs { FSL_IMX8MM_WDOG2_IRQ = 79, FSL_IMX8MM_WDOG3_IRQ = 10, + FSL_IMX8MM_ENET1_MAC_IRQ = 118, + FSL_IMX6_ENET1_MAC_1588_IRQ = 121, + FSL_IMX8MM_PCI_INTA_IRQ = 122, FSL_IMX8MM_PCI_INTB_IRQ = 123, FSL_IMX8MM_PCI_INTC_IRQ = 124, -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> It enables emulation of USB on iMX8MM Enables testing and debugging of USB drivers Reviewed-by: Philippe Mathieu-Daude <philmd@linaro.org> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Bernhard Beschow <shentey@gmail.com> Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/Kconfig | 1 + hw/arm/fsl-imx8mm.c | 27 +++++++++++++++++++++++++++ include/hw/arm/fsl-imx8mm.h | 6 ++++++ 3 files changed, 34 insertions(+) diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/Kconfig +++ b/hw/arm/Kconfig @@ -XXX,XX +XXX,XX @@ config FSL_IMX8MM select SDHCI select PCI_EXPRESS_DESIGNWARE select PCI_EXPRESS_FSL_IMX8M_PHY + select USB_DWC3 select WDT_IMX2 config FSL_IMX8MM_EVK diff --git a/hw/arm/fsl-imx8mm.c b/hw/arm/fsl-imx8mm.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx8mm.c +++ b/hw/arm/fsl-imx8mm.c @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_init(Object *obj) object_initialize_child(obj, name, &s->usdhc[i], TYPE_IMX_USDHC); } + for (i = 0; i < FSL_IMX8MM_NUM_USBS; i++) { + g_autofree char *name = g_strdup_printf("usb%d", i); + object_initialize_child(obj, name, &s->usb[i], TYPE_USB_DWC3); + } + for (i = 0; i < FSL_IMX8MM_NUM_ECSPIS; i++) { g_autofree char *name = g_strdup_printf("spi%d", i + 1); object_initialize_child(obj, name, &s->spi[i], TYPE_IMX_SPI); @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) qdev_get_gpio_in(gicdev, usdhc_table[i].irq)); } + /* USBs */ + for (i = 0; i < FSL_IMX8MM_NUM_USBS; i++) { + static const struct { + hwaddr addr; + unsigned int irq; + } usb_table[FSL_IMX8MM_NUM_USBS] = { + { fsl_imx8mm_memmap[FSL_IMX8MM_USB1].addr, FSL_IMX8MM_USB1_IRQ }, + { fsl_imx8mm_memmap[FSL_IMX8MM_USB2].addr, FSL_IMX8MM_USB2_IRQ }, + }; + + qdev_prop_set_uint32(DEVICE(&s->usb[i].sysbus_xhci), "p2", 1); + qdev_prop_set_uint32(DEVICE(&s->usb[i].sysbus_xhci), "p3", 1); + qdev_prop_set_uint32(DEVICE(&s->usb[i].sysbus_xhci), "slots", 2); + if (!sysbus_realize(SYS_BUS_DEVICE(&s->usb[i]), errp)) { + return; + } + sysbus_mmio_map(SYS_BUS_DEVICE(&s->usb[i]), 0, usb_table[i].addr); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->usb[i].sysbus_xhci), 0, + qdev_get_gpio_in(gicdev, usb_table[i].irq)); + } + /* ECSPIs */ for (i = 0; i < FSL_IMX8MM_NUM_ECSPIS; i++) { static const struct { @@ -XXX,XX +XXX,XX @@ static void fsl_imx8mm_realize(DeviceState *dev, Error **errp) case FSL_IMX8MM_OCRAM: case FSL_IMX8MM_SNVS_HP: case FSL_IMX8MM_UART1 ... FSL_IMX8MM_UART4: + case FSL_IMX8MM_USB1 ... FSL_IMX8MM_USB2: case FSL_IMX8MM_USDHC1 ... FSL_IMX8MM_USDHC3: case FSL_IMX8MM_WDOG1 ... FSL_IMX8MM_WDOG3: /* device implemented and treated above */ diff --git a/include/hw/arm/fsl-imx8mm.h b/include/hw/arm/fsl-imx8mm.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx8mm.h +++ b/include/hw/arm/fsl-imx8mm.h @@ -XXX,XX +XXX,XX @@ #include "hw/sd/sdhci.h" #include "hw/ssi/imx_spi.h" #include "hw/timer/imx_gpt.h" +#include "hw/usb/hcd-dwc3.h" #include "hw/watchdog/wdt_imx2.h" #include "qom/object.h" #include "qemu/units.h" @@ -XXX,XX +XXX,XX @@ enum FslImx8mmConfiguration { FSL_IMX8MM_NUM_I2CS = 4, FSL_IMX8MM_NUM_IRQS = 128, FSL_IMX8MM_NUM_UARTS = 4, + FSL_IMX8MM_NUM_USBS = 2, FSL_IMX8MM_NUM_USDHCS = 3, FSL_IMX8MM_NUM_WDTS = 3, }; @@ -XXX,XX +XXX,XX @@ struct FslImx8mmState { IMXFECState enet; SDHCIState usdhc[FSL_IMX8MM_NUM_USDHCS]; IMX2WdtState wdt[FSL_IMX8MM_NUM_WDTS]; + USBDWC3 usb[FSL_IMX8MM_NUM_USBS]; DesignwarePCIEHost pcie; FslImx8mPciePhyState pcie_phy; OrIRQState gpt5_gpt6_irq; @@ -XXX,XX +XXX,XX @@ enum FslImx8mmIrqs { FSL_IMX8MM_I2C3_IRQ = 37, FSL_IMX8MM_I2C4_IRQ = 38, + FSL_IMX8MM_USB1_IRQ = 40, + FSL_IMX8MM_USB2_IRQ = 41, + FSL_IMX8MM_GPT1_IRQ = 55, FSL_IMX8MM_GPT2_IRQ = 54, FSL_IMX8MM_GPT3_IRQ = 53, -- 2.43.0
From: Gaurav Sharma <gaurav.sharma_7@nxp.com> Added script that would validate the iMX8MM emulation by checking the linux console log. If it succeeds, it will return:- ok 1 test_imx8mm_evk.Imx8mmEvkMachine.test_aarch64_imx8mm_evk_usdhc Signed-off-by: Gaurav Sharma <gaurav.sharma_7@nxp.com> Reviewed-by: Thomas Huth <thuth@redhat.com> Reviewed-by: Bernhard Beschow <shentey@gmail.com> [PMM: Add missing blank lines that flake8 wants] Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- MAINTAINERS | 1 + tests/functional/aarch64/meson.build | 2 + tests/functional/aarch64/test_imx8mm_evk.py | 69 +++++++++++++++++++++ 3 files changed, 72 insertions(+) create mode 100755 tests/functional/aarch64/test_imx8mm_evk.py diff --git a/MAINTAINERS b/MAINTAINERS index XXXXXXX..XXXXXXX 100644 --- a/MAINTAINERS +++ b/MAINTAINERS @@ -XXX,XX +XXX,XX @@ F: hw/arm/fsl-imx8mm.c F: hw/arm/imx8mm-evk.c F: include/hw/arm/fsl-imx8mm.h F: docs/system/arm/imx8m.rst +F: tests/functional/aarch64/test_imx8mm_evk.py MCIMX8MP-EVK / i.MX8MP M: Bernhard Beschow <shentey@gmail.com> diff --git a/tests/functional/aarch64/meson.build b/tests/functional/aarch64/meson.build index XXXXXXX..XXXXXXX 100644 --- a/tests/functional/aarch64/meson.build +++ b/tests/functional/aarch64/meson.build @@ -XXX,XX +XXX,XX @@ test_aarch64_timeouts = { 'aspeed_ast2700a2' : 600, 'aspeed_ast2700fc' : 600, 'device_passthrough' : 720, + 'imx8mm_evk' : 240, 'imx8mp_evk' : 240, 'raspi4' : 480, 'reverse_debug' : 180, @@ -XXX,XX +XXX,XX @@ tests_aarch64_system_thorough = [ 'aspeed_ast2700fc', 'device_passthrough', 'hotplug_pci', + 'imx8mm_evk', 'imx8mp_evk', 'kvm', 'multiprocess', diff --git a/tests/functional/aarch64/test_imx8mm_evk.py b/tests/functional/aarch64/test_imx8mm_evk.py new file mode 100755 index XXXXXXX..XXXXXXX --- /dev/null +++ b/tests/functional/aarch64/test_imx8mm_evk.py @@ -XXX,XX +XXX,XX @@ +#!/usr/bin/env python3 +# +# Functional test that boots a Linux kernel and checks the console +# +# SPDX-License-Identifier: GPL-2.0-or-later + +from qemu_test import LinuxKernelTest, Asset + + +class Imx8mmEvkMachine(LinuxKernelTest): + + ASSET_IMAGE = Asset( + ('https://cloud.debian.org/images/cloud/bookworm/20231210-1590/' + 'debian-12-generic-arm64-20231210-1590.tar.xz'), + '7ebf1577b32d5af6204df74b54ca2e4675de9b5a9fa14f3ff70b88eeb7b3b359') + + KERNEL_OFFSET = 0x51000000 + KERNEL_SIZE = 32622528 + INITRD_OFFSET = 0x76000000 + INITRD_SIZE = 30987766 + DTB_OFFSET = 0x64DB5000 + DTB_SIZE = 36812 + + def extract(self, in_path, out_path, offset, size): + try: + with open(in_path, "rb") as source: + source.seek(offset) + data = source.read(size) + with open(out_path, "wb") as target: + target.write(data) + except (IOError, ValueError) as e: + self.log.error(f"Failed to extract {out_path}: {e}") + raise + + def setUp(self): + super().setUp() + + self.image_path = self.scratch_file("disk.raw") + self.kernel_path = self.scratch_file("linux") + self.initrd_path = self.scratch_file("initrd.zstd") + self.dtb_path = self.scratch_file("imx8mm-evk.dtb") + + self.archive_extract(self.ASSET_IMAGE) + self.extract(self.image_path, self.kernel_path, + self.KERNEL_OFFSET, self.KERNEL_SIZE) + self.extract(self.image_path, self.initrd_path, + self.INITRD_OFFSET, self.INITRD_SIZE) + self.extract(self.image_path, self.dtb_path, + self.DTB_OFFSET, self.DTB_SIZE) + + def test_aarch64_imx8mm_evk_usdhc(self): + self.require_accelerator("tcg") + self.set_machine('imx8mm-evk') + self.vm.set_console(console_index=1) + self.vm.add_args('-m', '2G', + '-smp', '4', + '-kernel', self.kernel_path, + '-initrd', self.initrd_path, + '-dtb', self.dtb_path, + '-append', 'root=/dev/mmcblk2p1', + '-drive', f'file={self.image_path},if=sd,bus=2,' + 'format=raw,id=mmcblk2,snapshot=on') + + self.vm.launch() + self.wait_for_console_pattern('Welcome to ') + + +if __name__ == '__main__': + LinuxKernelTest.main() -- 2.43.0
From: Philippe Mathieu-Daudé <philmd@linaro.org> As mentioned by Richard in [*]: We don't actually need any specific endianness here, because every byte has the same value. So we could simply drop MO_TE. That would produce a store in host-endianness, which will be fractionally more efficient on some hosts. [*] https://lore.kernel.org/qemu-devel/d64d3576-9188-4e74-afdc-3492c9feb8e0@linaro.org/ Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org> Message-id: 20260414005348.4767-2-philmd@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/tcg/helper-a64.c | 2 +- 1 file changed, 1 insertion(+), 1 deletion(-) diff --git a/target/arm/tcg/helper-a64.c b/target/arm/tcg/helper-a64.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/helper-a64.c +++ b/target/arm/tcg/helper-a64.c @@ -XXX,XX +XXX,XX @@ static uint64_t set_step_tags(CPUARMState *env, uint64_t toaddr, * the page dirty and will use the fast path. */ uint64_t repldata = data * 0x0101010101010101ULL; - MemOpIdx oi16 = make_memop_idx(MO_TE | MO_128, memidx); + MemOpIdx oi16 = make_memop_idx(MO_128, memidx); cpu_st16_mmu(env, toaddr, int128_make128(repldata, repldata), oi16, ra); mte_mops_set_tags(env, toaddr, 16, *mtedesc); return 16; -- 2.43.0
From: Philippe Mathieu-Daudé <philmd@linaro.org> Extract the implicit MO_TE definition in order to replace it in the next commit. Mechanical change using: $ for n in UW UL UQ UO SW SL SQ; do \ sed -i -e "s/MO_TE$n/MO_TE | MO_$n/" \ $(git grep -l MO_TE$n target/arm); \ done Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20260414005348.4767-3-philmd@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/tcg/m_helper.c | 6 +-- target/arm/tcg/mve_helper.c | 79 ++++++++++++++++++++----------------- 2 files changed, 45 insertions(+), 40 deletions(-) diff --git a/target/arm/tcg/m_helper.c b/target/arm/tcg/m_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/m_helper.c +++ b/target/arm/tcg/m_helper.c @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_blxns)(CPUARMState *env, uint32_t dest) /* Note that these stores can throw exceptions on MPU faults */ ARMMMUIdx mmu_idx = arm_mmu_idx(env); - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, arm_to_core_mmu_idx(mmu_idx)); cpu_stl_mmu(env, sp, nextinst, oi, GETPC()); cpu_stl_mmu(env, sp + 4, saved_psr, oi, GETPC()); @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_vlstm)(CPUARMState *env, uint32_t fptr) bool lspact = env->v7m.fpccr[s] & R_V7M_FPCCR_LSPACT_MASK; uintptr_t ra = GETPC(); ARMMMUIdx mmu_idx = arm_mmu_idx(env); - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, arm_to_core_mmu_idx(mmu_idx)); assert(env->v7m.secure); @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_vlldm)(CPUARMState *env, uint32_t fptr) ARMCPU *cpu = env_archcpu(env); uintptr_t ra = GETPC(); ARMMMUIdx mmu_idx = arm_mmu_idx(env); - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, arm_to_core_mmu_idx(mmu_idx)); /* fptr is the value of Rn, the frame pointer we load the FP regs from */ diff --git a/target/arm/tcg/mve_helper.c b/target/arm/tcg/mve_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/mve_helper.c +++ b/target/arm/tcg/mve_helper.c @@ -XXX,XX +XXX,XX @@ static void mve_advance_vpt(CPUARMState *env) } DO_VLDR(vldrb, MO_UB, 1, uint8_t, ldb, 1, uint8_t) -DO_VLDR(vldrh, MO_TEUW, 2, uint16_t, ldw, 2, uint16_t) -DO_VLDR(vldrw, MO_TEUL, 4, uint32_t, ldl, 4, uint32_t) +DO_VLDR(vldrh, MO_TE | MO_UW, 2, uint16_t, ldw, 2, uint16_t) +DO_VLDR(vldrw, MO_TE | MO_UL, 4, uint32_t, ldl, 4, uint32_t) DO_VSTR(vstrb, MO_UB, 1, stb, 1, uint8_t) -DO_VSTR(vstrh, MO_TEUW, 2, stw, 2, uint16_t) -DO_VSTR(vstrw, MO_TEUL, 4, stl, 4, uint32_t) +DO_VSTR(vstrh, MO_TE | MO_UW, 2, stw, 2, uint16_t) +DO_VSTR(vstrw, MO_TE | MO_UL, 4, stl, 4, uint32_t) DO_VLDR(vldrb_sh, MO_SB, 1, int8_t, ldb, 2, int16_t) DO_VLDR(vldrb_sw, MO_SB, 1, int8_t, ldb, 4, int32_t) DO_VLDR(vldrb_uh, MO_UB, 1, uint8_t, ldb, 2, uint16_t) DO_VLDR(vldrb_uw, MO_UB, 1, uint8_t, ldb, 4, uint32_t) -DO_VLDR(vldrh_sw, MO_TESW, 2, int16_t, ldw, 4, int32_t) -DO_VLDR(vldrh_uw, MO_TEUW, 2, uint16_t, ldw, 4, uint32_t) +DO_VLDR(vldrh_sw, MO_TE | MO_SW, 2, int16_t, ldw, 4, int32_t) +DO_VLDR(vldrh_uw, MO_TE | MO_UW, 2, uint16_t, ldw, 4, uint32_t) DO_VSTR(vstrb_h, MO_UB, 1, stb, 2, int16_t) DO_VSTR(vstrb_w, MO_UB, 1, stb, 4, int32_t) -DO_VSTR(vstrh_w, MO_TEUW, 2, stw, 4, int32_t) +DO_VSTR(vstrh_w, MO_TE | MO_UW, 2, stw, 4, int32_t) #undef DO_VLDR #undef DO_VSTR @@ -XXX,XX +XXX,XX @@ DO_VSTR(vstrh_w, MO_TEUW, 2, stw, 4, int32_t) unsigned e; \ uint32_t addr; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (e = 0; e < 16 / 4; e++, mask >>= 4, eci_mask >>= 4) { \ if (!(eci_mask & 1)) { \ continue; \ @@ -XXX,XX +XXX,XX @@ DO_VSTR(vstrh_w, MO_TEUW, 2, stw, 4, int32_t) unsigned e; \ uint32_t addr; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (e = 0; e < 16 / 4; e++, mask >>= 4, eci_mask >>= 4) { \ if (!(eci_mask & 1)) { \ continue; \ @@ -XXX,XX +XXX,XX @@ DO_VSTR(vstrh_w, MO_TEUW, 2, stw, 4, int32_t) DO_VLDR_SG(vldrb_sg_sh, MO_SB, int8_t, ldb, 2, int16_t, uint16_t, ADDR_ADD, false) DO_VLDR_SG(vldrb_sg_sw, MO_SB, int8_t, ldb, 4, int32_t, uint32_t, ADDR_ADD, false) -DO_VLDR_SG(vldrh_sg_sw, MO_TESW, int16_t, ldw, 4, int32_t, uint32_t, ADDR_ADD, false) +DO_VLDR_SG(vldrh_sg_sw, MO_TE | MO_SW, int16_t, ldw, 4, + int32_t, uint32_t, ADDR_ADD, false) DO_VLDR_SG(vldrb_sg_ub, MO_UB, uint8_t, ldb, 1, uint8_t, uint8_t, ADDR_ADD, false) DO_VLDR_SG(vldrb_sg_uh, MO_UB, uint8_t, ldb, 2, uint16_t, uint16_t, ADDR_ADD, false) DO_VLDR_SG(vldrb_sg_uw, MO_UB, uint8_t, ldb, 4, uint32_t, uint32_t, ADDR_ADD, false) -DO_VLDR_SG(vldrh_sg_uh, MO_TEUW, uint16_t, ldw, 2, uint16_t, uint16_t, ADDR_ADD, false) -DO_VLDR_SG(vldrh_sg_uw, MO_TEUW, uint16_t, ldw, 4, uint32_t, uint32_t, ADDR_ADD, false) -DO_VLDR_SG(vldrw_sg_uw, MO_TEUL, uint32_t, ldl, 4, uint32_t, uint32_t, ADDR_ADD, false) +DO_VLDR_SG(vldrh_sg_uh, MO_TE | MO_UW, uint16_t, ldw, 2, + uint16_t, uint16_t, ADDR_ADD, false) +DO_VLDR_SG(vldrh_sg_uw, MO_TE | MO_UW, uint16_t, ldw, 4, + uint32_t, uint32_t, ADDR_ADD, false) +DO_VLDR_SG(vldrw_sg_uw, MO_TE | MO_UL, uint32_t, ldl, 4, + uint32_t, uint32_t, ADDR_ADD, false) DO_VLDR64_SG(vldrd_sg_ud, ADDR_ADD, false) -DO_VLDR_SG(vldrh_sg_os_sw, MO_TESW, int16_t, ldw, 4, +DO_VLDR_SG(vldrh_sg_os_sw, MO_TE | MO_SW, int16_t, ldw, 4, int32_t, uint32_t, ADDR_ADD_OSH, false) -DO_VLDR_SG(vldrh_sg_os_uh, MO_TEUW, uint16_t, ldw, 2, +DO_VLDR_SG(vldrh_sg_os_uh, MO_TE | MO_UW, uint16_t, ldw, 2, uint16_t, uint16_t, ADDR_ADD_OSH, false) -DO_VLDR_SG(vldrh_sg_os_uw, MO_TEUW, uint16_t, ldw, 4, +DO_VLDR_SG(vldrh_sg_os_uw, MO_TE | MO_UW, uint16_t, ldw, 4, uint32_t, uint32_t, ADDR_ADD_OSH, false) -DO_VLDR_SG(vldrw_sg_os_uw, MO_TEUL, uint32_t, ldl, 4, +DO_VLDR_SG(vldrw_sg_os_uw, MO_TE | MO_UL, uint32_t, ldl, 4, uint32_t, uint32_t, ADDR_ADD_OSW, false) DO_VLDR64_SG(vldrd_sg_os_ud, ADDR_ADD_OSD, false) DO_VSTR_SG(vstrb_sg_ub, MO_UB, stb, 1, uint8_t, ADDR_ADD, false) DO_VSTR_SG(vstrb_sg_uh, MO_UB, stb, 2, uint16_t, ADDR_ADD, false) DO_VSTR_SG(vstrb_sg_uw, MO_UB, stb, 4, uint32_t, ADDR_ADD, false) -DO_VSTR_SG(vstrh_sg_uh, MO_TEUW, stw, 2, uint16_t, ADDR_ADD, false) -DO_VSTR_SG(vstrh_sg_uw, MO_TEUW, stw, 4, uint32_t, ADDR_ADD, false) -DO_VSTR_SG(vstrw_sg_uw, MO_TEUL, stl, 4, uint32_t, ADDR_ADD, false) +DO_VSTR_SG(vstrh_sg_uh, MO_TE | MO_UW, stw, 2, uint16_t, ADDR_ADD, false) +DO_VSTR_SG(vstrh_sg_uw, MO_TE | MO_UW, stw, 4, uint32_t, ADDR_ADD, false) +DO_VSTR_SG(vstrw_sg_uw, MO_TE | MO_UL, stl, 4, uint32_t, ADDR_ADD, false) DO_VSTR64_SG(vstrd_sg_ud, ADDR_ADD, false) -DO_VSTR_SG(vstrh_sg_os_uh, MO_TEUW, stw, 2, uint16_t, ADDR_ADD_OSH, false) -DO_VSTR_SG(vstrh_sg_os_uw, MO_TEUW, stw, 4, uint32_t, ADDR_ADD_OSH, false) -DO_VSTR_SG(vstrw_sg_os_uw, MO_TEUL, stl, 4, uint32_t, ADDR_ADD_OSW, false) +DO_VSTR_SG(vstrh_sg_os_uh, MO_TE | MO_UW, stw, 2, uint16_t, ADDR_ADD_OSH, false) +DO_VSTR_SG(vstrh_sg_os_uw, MO_TE | MO_UW, stw, 4, uint32_t, ADDR_ADD_OSH, false) +DO_VSTR_SG(vstrw_sg_os_uw, MO_TE | MO_UL, stl, 4, uint32_t, ADDR_ADD_OSW, false) DO_VSTR64_SG(vstrd_sg_os_ud, ADDR_ADD_OSD, false) -DO_VLDR_SG(vldrw_sg_wb_uw, MO_TEUL, uint32_t, ldl, 4, uint32_t, uint32_t, ADDR_ADD, true) +DO_VLDR_SG(vldrw_sg_wb_uw, MO_TE | MO_UL, uint32_t, ldl, 4, + uint32_t, uint32_t, ADDR_ADD, true) DO_VLDR64_SG(vldrd_sg_wb_ud, ADDR_ADD, true) -DO_VSTR_SG(vstrw_sg_wb_uw, MO_TEUL, stl, 4, uint32_t, ADDR_ADD, true) +DO_VSTR_SG(vstrw_sg_wb_uw, MO_TE | MO_UL, stl, 4, uint32_t, ADDR_ADD, true) DO_VSTR64_SG(vstrd_sg_wb_ud, ADDR_ADD, true) /* @@ -XXX,XX +XXX,XX @@ DO_VSTR64_SG(vstrd_sg_wb_ud, ADDR_ADD, true) static const uint8_t off[4] = { O1, O2, O3, O4 }; \ uint32_t addr, data; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VSTR64_SG(vstrd_sg_wb_ud, ADDR_ADD, true) int y; /* y counts 0 2 0 2 */ \ uint16_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0, y = 0; beat < 4; beat++, mask >>= 4, y ^= 2) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VSTR64_SG(vstrd_sg_wb_ud, ADDR_ADD, true) uint32_t *qd; \ int y; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD4W(vld43w, 6, 7, 8, 9) uint32_t addr, data; \ uint8_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD4W(vld43w, 6, 7, 8, 9) int e; \ uint16_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD4W(vld43w, 6, 7, 8, 9) uint32_t addr, data; \ uint32_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD2W(vld21w, 8, 12, 16, 20) static const uint8_t off[4] = { O1, O2, O3, O4 }; \ uint32_t addr, data; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD2W(vld21w, 8, 12, 16, 20) int y; /* y counts 0 2 0 2 */ \ uint16_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0, y = 0; beat < 4; beat++, mask >>= 4, y ^= 2) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD2W(vld21w, 8, 12, 16, 20) uint32_t *qd; \ int y; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VST4W(vst43w, 6, 7, 8, 9) uint32_t addr, data; \ uint8_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VST4W(vst43w, 6, 7, 8, 9) int e; \ uint16_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VST4W(vst43w, 6, 7, 8, 9) uint32_t addr, data; \ uint32_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TEUL | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ -- 2.43.0
From: Philippe Mathieu-Daudé <philmd@linaro.org> Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20260414005348.4767-4-philmd@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/tcg/mve_helper.c | 20 +++++++++++--------- 1 file changed, 11 insertions(+), 9 deletions(-) diff --git a/target/arm/tcg/mve_helper.c b/target/arm/tcg/mve_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/mve_helper.c +++ b/target/arm/tcg/mve_helper.c @@ -XXX,XX +XXX,XX @@ static void mve_advance_vpt(CPUARMState *env) uint16_t eci_mask = mve_eci_mask(env); \ unsigned b, e; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MFLAG | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MFLAG | MO_ALIGN, \ + mmu_idx); \ /* \ * R_SXTM allows the dest reg to become UNKNOWN for abandoned \ * beats so we don't care if we update part of the dest and \ @@ -XXX,XX +XXX,XX @@ static void mve_advance_vpt(CPUARMState *env) uint16_t mask = mve_element_mask(env); \ unsigned b, e; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MFLAG | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MFLAG | MO_ALIGN, \ + mmu_idx); \ for (b = 0, e = 0; b < 16; b += ESIZE, e++) { \ if (mask & (1 << b)) { \ cpu_##STTYPE##_mmu(env, addr, d[H##ESIZE(e)], oi, GETPC()); \ @@ -XXX,XX +XXX,XX @@ static void mve_advance_vpt(CPUARMState *env) } DO_VLDR(vldrb, MO_UB, 1, uint8_t, ldb, 1, uint8_t) -DO_VLDR(vldrh, MO_TE | MO_UW, 2, uint16_t, ldw, 2, uint16_t) -DO_VLDR(vldrw, MO_TE | MO_UL, 4, uint32_t, ldl, 4, uint32_t) +DO_VLDR(vldrh, MO_UW, 2, uint16_t, ldw, 2, uint16_t) +DO_VLDR(vldrw, MO_UL, 4, uint32_t, ldl, 4, uint32_t) DO_VSTR(vstrb, MO_UB, 1, stb, 1, uint8_t) -DO_VSTR(vstrh, MO_TE | MO_UW, 2, stw, 2, uint16_t) -DO_VSTR(vstrw, MO_TE | MO_UL, 4, stl, 4, uint32_t) +DO_VSTR(vstrh, MO_UW, 2, stw, 2, uint16_t) +DO_VSTR(vstrw, MO_UL, 4, stl, 4, uint32_t) DO_VLDR(vldrb_sh, MO_SB, 1, int8_t, ldb, 2, int16_t) DO_VLDR(vldrb_sw, MO_SB, 1, int8_t, ldb, 4, int32_t) DO_VLDR(vldrb_uh, MO_UB, 1, uint8_t, ldb, 2, uint16_t) DO_VLDR(vldrb_uw, MO_UB, 1, uint8_t, ldb, 4, uint32_t) -DO_VLDR(vldrh_sw, MO_TE | MO_SW, 2, int16_t, ldw, 4, int32_t) -DO_VLDR(vldrh_uw, MO_TE | MO_UW, 2, uint16_t, ldw, 4, uint32_t) +DO_VLDR(vldrh_sw, MO_SW, 2, int16_t, ldw, 4, int32_t) +DO_VLDR(vldrh_uw, MO_UW, 2, uint16_t, ldw, 4, uint32_t) DO_VSTR(vstrb_h, MO_UB, 1, stb, 2, int16_t) DO_VSTR(vstrb_w, MO_UB, 1, stb, 4, int32_t) -DO_VSTR(vstrh_w, MO_TE | MO_UW, 2, stw, 4, int32_t) +DO_VSTR(vstrh_w, MO_UW, 2, stw, 4, int32_t) #undef DO_VLDR #undef DO_VSTR -- 2.43.0
From: Philippe Mathieu-Daudé <philmd@linaro.org> Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20260414005348.4767-5-philmd@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/tcg/mve_helper.c | 43 +++++++++++++++++-------------------- 1 file changed, 20 insertions(+), 23 deletions(-) diff --git a/target/arm/tcg/mve_helper.c b/target/arm/tcg/mve_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/mve_helper.c +++ b/target/arm/tcg/mve_helper.c @@ -XXX,XX +XXX,XX @@ DO_VSTR(vstrh_w, MO_UW, 2, stw, 4, int32_t) unsigned e; \ uint32_t addr; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MFLAG | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MFLAG | MO_ALIGN, \ + mmu_idx); \ for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE, eci_mask >>= ESIZE) { \ if (!(eci_mask & 1)) { \ continue; \ @@ -XXX,XX +XXX,XX @@ DO_VSTR(vstrh_w, MO_UW, 2, stw, 4, int32_t) unsigned e; \ uint32_t addr; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MFLAG | MO_ALIGN, mmu_idx); \ + MemOpIdx oi = make_memop_idx(MO_TE | MFLAG | MO_ALIGN, \ + mmu_idx); \ for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE, eci_mask >>= ESIZE) { \ if (!(eci_mask & 1)) { \ continue; \ @@ -XXX,XX +XXX,XX @@ DO_VSTR(vstrh_w, MO_UW, 2, stw, 4, int32_t) DO_VLDR_SG(vldrb_sg_sh, MO_SB, int8_t, ldb, 2, int16_t, uint16_t, ADDR_ADD, false) DO_VLDR_SG(vldrb_sg_sw, MO_SB, int8_t, ldb, 4, int32_t, uint32_t, ADDR_ADD, false) -DO_VLDR_SG(vldrh_sg_sw, MO_TE | MO_SW, int16_t, ldw, 4, - int32_t, uint32_t, ADDR_ADD, false) +DO_VLDR_SG(vldrh_sg_sw, MO_SW, int16_t, ldw, 4, int32_t, uint32_t, ADDR_ADD, false) DO_VLDR_SG(vldrb_sg_ub, MO_UB, uint8_t, ldb, 1, uint8_t, uint8_t, ADDR_ADD, false) DO_VLDR_SG(vldrb_sg_uh, MO_UB, uint8_t, ldb, 2, uint16_t, uint16_t, ADDR_ADD, false) DO_VLDR_SG(vldrb_sg_uw, MO_UB, uint8_t, ldb, 4, uint32_t, uint32_t, ADDR_ADD, false) -DO_VLDR_SG(vldrh_sg_uh, MO_TE | MO_UW, uint16_t, ldw, 2, - uint16_t, uint16_t, ADDR_ADD, false) -DO_VLDR_SG(vldrh_sg_uw, MO_TE | MO_UW, uint16_t, ldw, 4, - uint32_t, uint32_t, ADDR_ADD, false) -DO_VLDR_SG(vldrw_sg_uw, MO_TE | MO_UL, uint32_t, ldl, 4, - uint32_t, uint32_t, ADDR_ADD, false) +DO_VLDR_SG(vldrh_sg_uh, MO_UW, uint16_t, ldw, 2, uint16_t, uint16_t, ADDR_ADD, false) +DO_VLDR_SG(vldrh_sg_uw, MO_UW, uint16_t, ldw, 4, uint32_t, uint32_t, ADDR_ADD, false) +DO_VLDR_SG(vldrw_sg_uw, MO_UL, uint32_t, ldl, 4, uint32_t, uint32_t, ADDR_ADD, false) DO_VLDR64_SG(vldrd_sg_ud, ADDR_ADD, false) -DO_VLDR_SG(vldrh_sg_os_sw, MO_TE | MO_SW, int16_t, ldw, 4, +DO_VLDR_SG(vldrh_sg_os_sw, MO_SW, int16_t, ldw, 4, int32_t, uint32_t, ADDR_ADD_OSH, false) -DO_VLDR_SG(vldrh_sg_os_uh, MO_TE | MO_UW, uint16_t, ldw, 2, +DO_VLDR_SG(vldrh_sg_os_uh, MO_UW, uint16_t, ldw, 2, uint16_t, uint16_t, ADDR_ADD_OSH, false) -DO_VLDR_SG(vldrh_sg_os_uw, MO_TE | MO_UW, uint16_t, ldw, 4, +DO_VLDR_SG(vldrh_sg_os_uw, MO_UW, uint16_t, ldw, 4, uint32_t, uint32_t, ADDR_ADD_OSH, false) -DO_VLDR_SG(vldrw_sg_os_uw, MO_TE | MO_UL, uint32_t, ldl, 4, +DO_VLDR_SG(vldrw_sg_os_uw, MO_UL, uint32_t, ldl, 4, uint32_t, uint32_t, ADDR_ADD_OSW, false) DO_VLDR64_SG(vldrd_sg_os_ud, ADDR_ADD_OSD, false) DO_VSTR_SG(vstrb_sg_ub, MO_UB, stb, 1, uint8_t, ADDR_ADD, false) DO_VSTR_SG(vstrb_sg_uh, MO_UB, stb, 2, uint16_t, ADDR_ADD, false) DO_VSTR_SG(vstrb_sg_uw, MO_UB, stb, 4, uint32_t, ADDR_ADD, false) -DO_VSTR_SG(vstrh_sg_uh, MO_TE | MO_UW, stw, 2, uint16_t, ADDR_ADD, false) -DO_VSTR_SG(vstrh_sg_uw, MO_TE | MO_UW, stw, 4, uint32_t, ADDR_ADD, false) -DO_VSTR_SG(vstrw_sg_uw, MO_TE | MO_UL, stl, 4, uint32_t, ADDR_ADD, false) +DO_VSTR_SG(vstrh_sg_uh, MO_UW, stw, 2, uint16_t, ADDR_ADD, false) +DO_VSTR_SG(vstrh_sg_uw, MO_UW, stw, 4, uint32_t, ADDR_ADD, false) +DO_VSTR_SG(vstrw_sg_uw, MO_UL, stl, 4, uint32_t, ADDR_ADD, false) DO_VSTR64_SG(vstrd_sg_ud, ADDR_ADD, false) -DO_VSTR_SG(vstrh_sg_os_uh, MO_TE | MO_UW, stw, 2, uint16_t, ADDR_ADD_OSH, false) -DO_VSTR_SG(vstrh_sg_os_uw, MO_TE | MO_UW, stw, 4, uint32_t, ADDR_ADD_OSH, false) -DO_VSTR_SG(vstrw_sg_os_uw, MO_TE | MO_UL, stl, 4, uint32_t, ADDR_ADD_OSW, false) +DO_VSTR_SG(vstrh_sg_os_uh, MO_UW, stw, 2, uint16_t, ADDR_ADD_OSH, false) +DO_VSTR_SG(vstrh_sg_os_uw, MO_UW, stw, 4, uint32_t, ADDR_ADD_OSH, false) +DO_VSTR_SG(vstrw_sg_os_uw, MO_UL, stl, 4, uint32_t, ADDR_ADD_OSW, false) DO_VSTR64_SG(vstrd_sg_os_ud, ADDR_ADD_OSD, false) -DO_VLDR_SG(vldrw_sg_wb_uw, MO_TE | MO_UL, uint32_t, ldl, 4, - uint32_t, uint32_t, ADDR_ADD, true) +DO_VLDR_SG(vldrw_sg_wb_uw, MO_UL, uint32_t, ldl, 4, uint32_t, uint32_t, ADDR_ADD, true) DO_VLDR64_SG(vldrd_sg_wb_ud, ADDR_ADD, true) -DO_VSTR_SG(vstrw_sg_wb_uw, MO_TE | MO_UL, stl, 4, uint32_t, ADDR_ADD, true) +DO_VSTR_SG(vstrw_sg_wb_uw, MO_UL, stl, 4, uint32_t, ADDR_ADD, true) DO_VSTR64_SG(vstrd_sg_wb_ud, ADDR_ADD, true) /* -- 2.43.0
From: Philippe Mathieu-Daudé <philmd@linaro.org> Suggested-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20260414005348.4767-6-philmd@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/internals.h | 6 ++++++ target/arm/tcg/mve_helper.c | 3 ++- 2 files changed, 8 insertions(+), 1 deletion(-) diff --git a/target/arm/internals.h b/target/arm/internals.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/internals.h +++ b/target/arm/internals.h @@ -XXX,XX +XXX,XX @@ #include "exec/hwaddr.h" #include "exec/vaddr.h" #include "exec/breakpoint.h" +#include "exec/memop.h" #include "accel/tcg/tb-cpu-state.h" #include "hw/core/registerfields.h" #include "tcg/tcg-gvec-desc.h" @@ -XXX,XX +XXX,XX @@ #define BANK_HYP 6 #define BANK_MON 7 +static inline MemOp mo_endian(CPUARMState *env) +{ + return EX_TBFLAG_ANY(env->hflags, BE_DATA) ? MO_BE : MO_LE; +} + static inline int arm_env_mmu_index(CPUARMState *env) { return EX_TBFLAG_ANY(env->hflags, MMUIDX); diff --git a/target/arm/tcg/mve_helper.c b/target/arm/tcg/mve_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/mve_helper.c +++ b/target/arm/tcg/mve_helper.c @@ -XXX,XX +XXX,XX @@ DO_VSTR(vstrh_w, MO_UW, 2, stw, 4, int32_t) unsigned e; \ uint32_t addr; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (e = 0; e < 16 / 4; e++, mask >>= 4, eci_mask >>= 4) { \ if (!(eci_mask & 1)) { \ continue; \ -- 2.43.0
From: Philippe Mathieu-Daudé <philmd@linaro.org> Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20260414005348.4767-7-philmd@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/tcg/mve_helper.c | 47 +++++++++++++++++++++++-------------- 1 file changed, 30 insertions(+), 17 deletions(-) diff --git a/target/arm/tcg/mve_helper.c b/target/arm/tcg/mve_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/mve_helper.c +++ b/target/arm/tcg/mve_helper.c @@ -XXX,XX +XXX,XX @@ static void mve_advance_vpt(CPUARMState *env) uint16_t eci_mask = mve_eci_mask(env); \ unsigned b, e; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MFLAG | MO_ALIGN, \ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MFLAG | MO_ALIGN, \ mmu_idx); \ /* \ * R_SXTM allows the dest reg to become UNKNOWN for abandoned \ @@ -XXX,XX +XXX,XX @@ static void mve_advance_vpt(CPUARMState *env) uint16_t mask = mve_element_mask(env); \ unsigned b, e; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MFLAG | MO_ALIGN, \ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MFLAG | MO_ALIGN, \ mmu_idx); \ for (b = 0, e = 0; b < 16; b += ESIZE, e++) { \ if (mask & (1 << b)) { \ @@ -XXX,XX +XXX,XX @@ DO_VSTR(vstrh_w, MO_UW, 2, stw, 4, int32_t) unsigned e; \ uint32_t addr; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MFLAG | MO_ALIGN, \ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MFLAG | MO_ALIGN, \ mmu_idx); \ for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE, eci_mask >>= ESIZE) { \ if (!(eci_mask & 1)) { \ @@ -XXX,XX +XXX,XX @@ DO_VSTR(vstrh_w, MO_UW, 2, stw, 4, int32_t) unsigned e; \ uint32_t addr; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MFLAG | MO_ALIGN, \ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MFLAG | MO_ALIGN, \ mmu_idx); \ for (e = 0; e < 16 / ESIZE; e++, mask >>= ESIZE, eci_mask >>= ESIZE) { \ if (!(eci_mask & 1)) { \ @@ -XXX,XX +XXX,XX @@ DO_VSTR(vstrh_w, MO_UW, 2, stw, 4, int32_t) unsigned e; \ uint32_t addr; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (e = 0; e < 16 / 4; e++, mask >>= 4, eci_mask >>= 4) { \ if (!(eci_mask & 1)) { \ continue; \ @@ -XXX,XX +XXX,XX @@ DO_VSTR64_SG(vstrd_sg_wb_ud, ADDR_ADD, true) static const uint8_t off[4] = { O1, O2, O3, O4 }; \ uint32_t addr, data; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VSTR64_SG(vstrd_sg_wb_ud, ADDR_ADD, true) int y; /* y counts 0 2 0 2 */ \ uint16_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0, y = 0; beat < 4; beat++, mask >>= 4, y ^= 2) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VSTR64_SG(vstrd_sg_wb_ud, ADDR_ADD, true) uint32_t *qd; \ int y; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD4W(vld43w, 6, 7, 8, 9) uint32_t addr, data; \ uint8_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD4W(vld43w, 6, 7, 8, 9) int e; \ uint16_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD4W(vld43w, 6, 7, 8, 9) uint32_t addr, data; \ uint32_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD2W(vld21w, 8, 12, 16, 20) static const uint8_t off[4] = { O1, O2, O3, O4 }; \ uint32_t addr, data; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD2W(vld21w, 8, 12, 16, 20) int y; /* y counts 0 2 0 2 */ \ uint16_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0, y = 0; beat < 4; beat++, mask >>= 4, y ^= 2) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VLD2W(vld21w, 8, 12, 16, 20) uint32_t *qd; \ int y; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VST4W(vst43w, 6, 7, 8, 9) uint32_t addr, data; \ uint8_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VST4W(vst43w, 6, 7, 8, 9) int e; \ uint16_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ @@ -XXX,XX +XXX,XX @@ DO_VST4W(vst43w, 6, 7, 8, 9) uint32_t addr, data; \ uint32_t *qd; \ int mmu_idx = arm_to_core_mmu_idx(arm_mmu_idx(env)); \ - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, mmu_idx);\ + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, \ + mmu_idx); \ for (beat = 0; beat < 4; beat++, mask >>= 4) { \ if ((mask & 1) == 0) { \ /* ECI says skip this beat */ \ -- 2.43.0
From: Philippe Mathieu-Daudé <philmd@linaro.org> Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20260414005348.4767-8-philmd@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/tcg/meson.build | 3 ++- target/arm/tcg/mve_helper.c | 2 +- 2 files changed, 3 insertions(+), 2 deletions(-) diff --git a/target/arm/tcg/meson.build b/target/arm/tcg/meson.build index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/meson.build +++ b/target/arm/tcg/meson.build @@ -XXX,XX +XXX,XX @@ arm_ss.add(when: 'TARGET_AARCH64', if_false: files('stubs32.c')) arm_ss.add(files( 'cpu32.c', 'm_helper.c', - 'mve_helper.c', )) arm_ss.add(when: 'TARGET_AARCH64', if_true: files( @@ -XXX,XX +XXX,XX @@ arm_common_system_ss.add( 'debug.c', 'hflags.c', 'gengvec.c', + 'mve_helper.c', 'neon_helper.c', 'op_helper.c', 'psci.c', @@ -XXX,XX +XXX,XX @@ arm_user_ss.add( 'debug.c', 'gengvec.c', 'hflags.c', + 'mve_helper.c', 'neon_helper.c', 'op_helper.c', 'tlb_helper.c', diff --git a/target/arm/tcg/mve_helper.c b/target/arm/tcg/mve_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/mve_helper.c +++ b/target/arm/tcg/mve_helper.c @@ -XXX,XX +XXX,XX @@ #include "helper-mve.h" #include "internals.h" #include "vec_internal.h" -#include "accel/tcg/cpu-ldst.h" +#include "accel/tcg/cpu-ldst-common.h" #include "tcg/tcg.h" #include "fpu/softfloat.h" #include "crypto/clmul.h" -- 2.43.0
From: Philippe Mathieu-Daudé <philmd@linaro.org> Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20260414005348.4767-9-philmd@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/tcg/m_helper.c | 6 +++--- 1 file changed, 3 insertions(+), 3 deletions(-) diff --git a/target/arm/tcg/m_helper.c b/target/arm/tcg/m_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/m_helper.c +++ b/target/arm/tcg/m_helper.c @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_blxns)(CPUARMState *env, uint32_t dest) /* Note that these stores can throw exceptions on MPU faults */ ARMMMUIdx mmu_idx = arm_mmu_idx(env); - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, arm_to_core_mmu_idx(mmu_idx)); cpu_stl_mmu(env, sp, nextinst, oi, GETPC()); cpu_stl_mmu(env, sp + 4, saved_psr, oi, GETPC()); @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_vlstm)(CPUARMState *env, uint32_t fptr) bool lspact = env->v7m.fpccr[s] & R_V7M_FPCCR_LSPACT_MASK; uintptr_t ra = GETPC(); ARMMMUIdx mmu_idx = arm_mmu_idx(env); - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, arm_to_core_mmu_idx(mmu_idx)); assert(env->v7m.secure); @@ -XXX,XX +XXX,XX @@ void HELPER(v7m_vlldm)(CPUARMState *env, uint32_t fptr) ARMCPU *cpu = env_archcpu(env); uintptr_t ra = GETPC(); ARMMMUIdx mmu_idx = arm_mmu_idx(env); - MemOpIdx oi = make_memop_idx(MO_TE | MO_UL | MO_ALIGN, + MemOpIdx oi = make_memop_idx(mo_endian(env) | MO_UL | MO_ALIGN, arm_to_core_mmu_idx(mmu_idx)); /* fptr is the value of Rn, the frame pointer we load the FP regs from */ -- 2.43.0
From: Philippe Mathieu-Daudé <philmd@linaro.org> Signed-off-by: Philippe Mathieu-Daudé <philmd@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20260414005348.4767-10-philmd@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/tcg/m_helper.c | 2 +- target/arm/tcg/meson.build | 3 ++- 2 files changed, 3 insertions(+), 2 deletions(-) diff --git a/target/arm/tcg/m_helper.c b/target/arm/tcg/m_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/m_helper.c +++ b/target/arm/tcg/m_helper.c @@ -XXX,XX +XXX,XX @@ #include "qemu/log.h" #include "exec/page-protection.h" #ifdef CONFIG_TCG -#include "accel/tcg/cpu-ldst.h" +#include "accel/tcg/cpu-ldst-common.h" #include "semihosting/common-semi.h" #endif #if !defined(CONFIG_USER_ONLY) diff --git a/target/arm/tcg/meson.build b/target/arm/tcg/meson.build index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/meson.build +++ b/target/arm/tcg/meson.build @@ -XXX,XX +XXX,XX @@ arm_ss.add(when: 'TARGET_AARCH64', if_false: files('stubs32.c')) arm_ss.add(files( 'cpu32.c', - 'm_helper.c', )) arm_ss.add(when: 'TARGET_AARCH64', if_true: files( @@ -XXX,XX +XXX,XX @@ arm_common_system_ss.add( 'debug.c', 'hflags.c', 'gengvec.c', + 'm_helper.c', 'mve_helper.c', 'neon_helper.c', 'op_helper.c', @@ -XXX,XX +XXX,XX @@ arm_user_ss.add( 'debug.c', 'gengvec.c', 'hflags.c', + 'm_helper.c', 'mve_helper.c', 'neon_helper.c', 'op_helper.c', -- 2.43.0
From: Thomas Huth <thuth@redhat.com> When writing to this register, QEMU currently aborts: $ echo "readl 0x10000018" | ./qemu-system-arm -audiodev none,id=snd0 \ -M integratorcp,accel=qtest,audiodev=snd0 -display none -qtest stdio [I 0.000000] OPENED [R +0.001907] readl 0x10000018 qemu: hardware error: integratorcm_read: CM_LMBUSCNT [...] Aborted (core dumped) This is bad, a guest should ideally never be able to kill QEMU like this. Now, according to the "Intergrator/CP User Guide" from: https://developer.arm.com/documentation/dui0159/b/porting-integrator-ap-and-im-pd1/registers "The Integrator/AP CM_LMBUSCNT has been removed." That means this register does not seem to be implemented on real CP boards at all, only for older AP boards. Thus it should be fine if we simply ignore this register in QEMU and handle it like all other unimplemented registers in the "default" handler of the case statement. Resolves: https://gitlab.com/qemu-project/qemu/-/work_items/3407 Signed-off-by: Thomas Huth <thuth@redhat.com> Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org> Message-id: 20260420064933.64765-1-thuth@redhat.com Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/integratorcp.c | 3 --- 1 file changed, 3 deletions(-) diff --git a/hw/arm/integratorcp.c b/hw/arm/integratorcp.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/integratorcp.c +++ b/hw/arm/integratorcp.c @@ -XXX,XX +XXX,XX @@ static uint64_t integratorcm_read(void *opaque, hwaddr offset, } else { return s->cm_lock; } - case 6: /* CM_LMBUSCNT */ - /* ??? High frequency timer. */ - hw_error("integratorcm_read: CM_LMBUSCNT"); case 7: /* CM_AUXOSC */ return s->cm_auxosc; case 8: /* CM_SDRAM */ -- 2.43.0
include/hw/arm/primecell.h used to be more expansive, but now the only thing it defines is the ARM_SYSCTL_GPIO_* constants for the GPIO lines for the arm-sysctl system-control device used on the Realview, Versatile and Versatile Express boards. Replace it with a header file specific to that device. virt.c and vmapple.c included primecell.h despite not using the constants it defined; there we can simply drop the include entirely. Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org> Message-id: 20260416172627.690396-1-peter.maydell@linaro.org --- MAINTAINERS | 2 +- hw/arm/realview.c | 2 +- hw/arm/vexpress.c | 2 +- hw/arm/virt.c | 1 - hw/misc/arm_sysctl.c | 2 +- hw/vmapple/vmapple.c | 1 - include/hw/arm/primecell.h | 12 ------------ include/hw/misc/arm_sysctl.h | 16 ++++++++++++++++ 8 files changed, 20 insertions(+), 18 deletions(-) delete mode 100644 include/hw/arm/primecell.h create mode 100644 include/hw/misc/arm_sysctl.h diff --git a/MAINTAINERS b/MAINTAINERS index XXXXXXX..XXXXXXX 100644 --- a/MAINTAINERS +++ b/MAINTAINERS @@ -XXX,XX +XXX,XX @@ F: hw/ssi/pl022.c F: include/hw/ssi/pl022.h F: hw/rtc/pl031.c F: include/hw/rtc/pl031.h -F: include/hw/arm/primecell.h F: hw/timer/cmsdk-apb-timer.c F: include/hw/timer/cmsdk-apb-timer.h F: tests/qtest/cmsdk-apb-timer-test.c @@ -XXX,XX +XXX,XX @@ F: hw/*/versatile* F: hw/i2c/arm_sbcon_i2c.c F: include/hw/i2c/arm_sbcon_i2c.h F: hw/misc/arm_sysctl.c +F: include/hw/misc/arm_sysctl.h F: docs/system/arm/versatile.rst Virt diff --git a/hw/arm/realview.c b/hw/arm/realview.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/realview.c +++ b/hw/arm/realview.c @@ -XXX,XX +XXX,XX @@ #include "target/arm/cpu.h" #include "hw/core/sysbus.h" #include "hw/arm/boot.h" -#include "hw/arm/primecell.h" #include "hw/arm/machines-qom.h" #include "hw/core/split-irq.h" +#include "hw/misc/arm_sysctl.h" #include "hw/net/lan9118.h" #include "hw/net/smc91c111.h" #include "hw/pci/pci.h" diff --git a/hw/arm/vexpress.c b/hw/arm/vexpress.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/vexpress.c +++ b/hw/arm/vexpress.c @@ -XXX,XX +XXX,XX @@ #include "qemu/datadir.h" #include "hw/core/sysbus.h" #include "hw/arm/boot.h" -#include "hw/arm/primecell.h" #include "hw/arm/machines-qom.h" +#include "hw/misc/arm_sysctl.h" #include "hw/net/lan9118.h" #include "hw/i2c/i2c.h" #include "net/net.h" diff --git a/hw/arm/virt.c b/hw/arm/virt.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/virt.c +++ b/hw/arm/virt.c @@ -XXX,XX +XXX,XX @@ #include "monitor/qdev.h" #include "hw/core/sysbus.h" #include "hw/arm/boot.h" -#include "hw/arm/primecell.h" #include "hw/arm/virt.h" #include "hw/arm/machines-qom.h" #include "hw/block/flash.h" diff --git a/hw/misc/arm_sysctl.c b/hw/misc/arm_sysctl.c index XXXXXXX..XXXXXXX 100644 --- a/hw/misc/arm_sysctl.c +++ b/hw/misc/arm_sysctl.c @@ -XXX,XX +XXX,XX @@ #include "system/runstate.h" #include "qemu/bitops.h" #include "hw/core/sysbus.h" +#include "hw/misc/arm_sysctl.h" #include "migration/vmstate.h" -#include "hw/arm/primecell.h" #include "qemu/log.h" #include "qemu/module.h" #include "qom/object.h" diff --git a/hw/vmapple/vmapple.c b/hw/vmapple/vmapple.c index XXXXXXX..XXXXXXX 100644 --- a/hw/vmapple/vmapple.c +++ b/hw/vmapple/vmapple.c @@ -XXX,XX +XXX,XX @@ #include "hw/core/sysbus.h" #include "hw/usb/usb.h" #include "hw/arm/boot.h" -#include "hw/arm/primecell.h" #include "hw/char/pl011.h" #include "hw/intc/arm_gic.h" #include "hw/intc/arm_gicv3_common.h" diff --git a/include/hw/arm/primecell.h b/include/hw/arm/primecell.h deleted file mode 100644 index XXXXXXX..XXXXXXX --- a/include/hw/arm/primecell.h +++ /dev/null @@ -XXX,XX +XXX,XX @@ -#ifndef PRIMECELL_H -#define PRIMECELL_H - -/* Declarations for ARM PrimeCell based periperals. */ -/* Also includes some devices that are currently only used by the - ARM boards. */ - -/* arm_sysctl GPIO lines */ -#define ARM_SYSCTL_GPIO_MMC_WPROT 0 -#define ARM_SYSCTL_GPIO_MMC_CARDIN 1 - -#endif diff --git a/include/hw/misc/arm_sysctl.h b/include/hw/misc/arm_sysctl.h new file mode 100644 index XXXXXXX..XXXXXXX --- /dev/null +++ b/include/hw/misc/arm_sysctl.h @@ -XXX,XX +XXX,XX @@ +/* + * Status and system control registers for ARM RealView/Versatile boards. + * + * Copyright (c) Linaro Ltd + * + * SPDX-License-Identifier: GPL-2.0-or-later + */ + +#ifndef HW_MISC_ARM_SYSCTL_H +#define HW_MISC_ARM_SYSCTL_H + +/* arm_sysctl inbound GPIO lines */ +#define ARM_SYSCTL_GPIO_MMC_WPROT 0 +#define ARM_SYSCTL_GPIO_MMC_CARDIN 1 + +#endif -- 2.43.0
If we create a normally-AArch64 CPU and configure it with aarch64=off, this will by default leave all the AArch64 ID register values in its ARMISARegisters struct untouched. That in turn means that tests of cpu_isar_feature(aa64_something, cpu) will return true. Until now we have had a design policy that you shouldn't check an aa64_ feature unless you know that the CPU has AArch64; but this is quite fragile as it's easy to forget and only causes a problem in the corner case where AArch64 was turned off. In particular, when we extend the ability to disable AArch64 from only KVM to also TCG there are many more aa64 feature check points which we would otherwise have to audit for whether they needed to be guarded with a check on ARM_FEATURE_AARCH64. Instead, make the CPU realize function zero out all the 64-bit ID registers if a TCG CPU doesn't have AArch64; this will make aa64_ feature tests generally return false. We only do this for TCG because only TCG really needs it, and for KVM it might be confusing to have QEMU's idea of the ID registers be different from KVM's. Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Message-id: 20260416165353.589569-2-peter.maydell@linaro.org --- target/arm/cpu.c | 35 +++++++++++++++++++++++++++++++++++ target/arm/cpu.h | 3 ++- 2 files changed, 37 insertions(+), 1 deletion(-) diff --git a/target/arm/cpu.c b/target/arm/cpu.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/cpu.c +++ b/target/arm/cpu.c @@ -XXX,XX +XXX,XX @@ void arm_cpu_finalize_features(ARMCPU *cpu, Error **errp) } } +static void arm_clear_aarch64_idregs(ARMCPU *cpu) +{ + /* Zero out all the AArch64 ID registers in ARMISARegisters */ + SET_IDREG(&cpu->isar, ID_AA64ISAR0, 0); + SET_IDREG(&cpu->isar, ID_AA64ISAR1, 0); + SET_IDREG(&cpu->isar, ID_AA64ISAR2, 0); + SET_IDREG(&cpu->isar, ID_AA64PFR0, 0); + SET_IDREG(&cpu->isar, ID_AA64PFR1, 0); + SET_IDREG(&cpu->isar, ID_AA64PFR2, 0); + SET_IDREG(&cpu->isar, ID_AA64MMFR0, 0); + SET_IDREG(&cpu->isar, ID_AA64MMFR1, 0); + SET_IDREG(&cpu->isar, ID_AA64MMFR2, 0); + SET_IDREG(&cpu->isar, ID_AA64MMFR3, 0); + SET_IDREG(&cpu->isar, ID_AA64DFR0, 0); + SET_IDREG(&cpu->isar, ID_AA64DFR1, 0); + SET_IDREG(&cpu->isar, ID_AA64AFR0, 0); + SET_IDREG(&cpu->isar, ID_AA64AFR1, 0); + SET_IDREG(&cpu->isar, ID_AA64ZFR0, 0); + SET_IDREG(&cpu->isar, ID_AA64SMFR0, 0); +} + static void arm_cpu_realizefn(DeviceState *dev, Error **errp) { CPUState *cs = CPU(dev); @@ -XXX,XX +XXX,XX @@ static void arm_cpu_realizefn(DeviceState *dev, Error **errp) } #endif + /* + * A TCG aarch64=off CPU has no AArch64 at all, so we clear out the + * ID registers to avoid cpu_isar_feature(aa64_something, cpu) tests + * incorrectly returning true. We don't do this for other accelerators + * (which in practice means "for KVM", since no others have AArch32 + * guest support) because from KVM's point of view the AArch64 ID + * registers still exist and must have their correct values. So we + * avoid clearing them out so that we don't have QEMU and KVM with + * different ideas of the ID registers. + */ + if (tcg_enabled() && !arm_feature(env, ARM_FEATURE_AARCH64)) { + arm_clear_aarch64_idregs(cpu); + } + #ifdef CONFIG_USER_ONLY /* * User mode relies on IC IVAU instructions to catch modification of diff --git a/target/arm/cpu.h b/target/arm/cpu.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/cpu.h +++ b/target/arm/cpu.h @@ -XXX,XX +XXX,XX @@ struct ArchCPU { * Note that if you add an ID register to the ARMISARegisters struct * you need to also update the 32-bit and 64-bit versions of the * kvm_arm_get_host_cpu_features() function to correctly populate the - * field by reading the value from the KVM vCPU. + * field by reading the value from the KVM vCPU. If it is an AArch64 + * ID register then you also must update arm_clear_aarch64_idregs(). */ struct ARMISARegisters { uint32_t mvfr0; -- 2.43.0
Allow the 'aarch64=off' property, which is currently KVM-only, to be set for TCG CPUs also. Note that we don't permit it on the qemu-aarch64 user-mode binary: this makes no sense as that executable can only handle AArch64 syscalls (and it would also assert at startup since it doesn't compile in the A32-specific GDB xml files like arm-neon.xml). Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Tested-by: Clément Chigot <chigot@adacore.com> Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org> Message-id: 20260416165353.589569-3-peter.maydell@linaro.org --- docs/system/arm/cpu-features.rst | 10 +++++---- target/arm/cpu-features.h | 5 +++++ target/arm/cpu.c | 36 ++++++++++++++++++++++++++++---- tests/qtest/arm-cpu-features.c | 8 ++----- 4 files changed, 45 insertions(+), 14 deletions(-) diff --git a/docs/system/arm/cpu-features.rst b/docs/system/arm/cpu-features.rst index XXXXXXX..XXXXXXX 100644 --- a/docs/system/arm/cpu-features.rst +++ b/docs/system/arm/cpu-features.rst @@ -XXX,XX +XXX,XX @@ not implement ARMv8-A, will not have the ``aarch64`` CPU property. QEMU's support may be limited for some CPU features, only partially supporting the feature or only supporting the feature under certain configurations. For example, the ``aarch64`` CPU feature, which, when -disabled, enables the optional AArch32 CPU feature, is only supported -when using the KVM accelerator and when running on a host CPU type that -supports the feature. While ``aarch64`` currently only works with KVM, -it could work with TCG. CPU features that are specific to KVM are +disabled, enables the optional AArch32 CPU feature, can only be set to +``off`` on the TCG and KVM accelerators, and it cannot be set to +``off`` under KVM unless running on a host CPU type that supports +running guests in AArch32. + +CPU features that are inherently specific to KVM are prefixed with "kvm-" and are described in "KVM VCPU Features". CPU Feature Probing diff --git a/target/arm/cpu-features.h b/target/arm/cpu-features.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/cpu-features.h +++ b/target/arm/cpu-features.h @@ -XXX,XX +XXX,XX @@ static inline bool isar_feature_aa64_aa32_el2(const ARMISARegisters *id) return FIELD_EX64_IDREG(id, ID_AA64PFR0, EL2) >= 2; } +static inline bool isar_feature_aa64_aa32_el3(const ARMISARegisters *id) +{ + return FIELD_EX64_IDREG(id, ID_AA64PFR0, EL3) >= 2; +} + static inline bool isar_feature_aa64_ras(const ARMISARegisters *id) { return FIELD_EX64_IDREG(id, ID_AA64PFR0, RAS) != 0; diff --git a/target/arm/cpu.c b/target/arm/cpu.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/cpu.c +++ b/target/arm/cpu.c @@ -XXX,XX +XXX,XX @@ static void aarch64_cpu_set_aarch64(Object *obj, bool value, Error **errp) * uniform execution state like do_interrupt. */ if (value == false) { - if (!kvm_enabled() || !kvm_arm_aarch32_supported()) { - error_setg(errp, "'aarch64' feature cannot be disabled " - "unless KVM is enabled and 32-bit EL1 " - "is supported"); + if (kvm_enabled()) { + if (!kvm_arm_aarch32_supported()) { + error_setg(errp, "'aarch64' feature cannot be disabled for KVM " + "because this host does not support 32-bit EL1"); + return; + } + } else if (tcg_enabled()) { +#ifdef CONFIG_USER_ONLY + error_setg(errp, "'aarch64' feature cannot be disabled for " + "usermode emulator qemu-aarch64; use qemu-arm instead"); + return; +#else + bool aa32_at_highest_el; + if (arm_feature(&cpu->env, ARM_FEATURE_EL3)) { + aa32_at_highest_el = cpu_isar_feature(aa64_aa32_el3, cpu); + } else if (arm_feature(&cpu->env, ARM_FEATURE_EL2)) { + aa32_at_highest_el = cpu_isar_feature(aa64_aa32_el2, cpu); + } else { + aa32_at_highest_el = cpu_isar_feature(aa64_aa32_el1, cpu); + } + + if (!aa32_at_highest_el) { + error_setg(errp, "'aarch64' feature cannot be disabled for " + "this TCG CPU because it does not support 32-bit " + "execution at its highest implemented exception " + "level"); + return; + } +#endif + } else { + error_setg(errp, "'aarch64' feature cannot be disabled for " + "this accelerator"); return; } unset_feature(&cpu->env, ARM_FEATURE_AARCH64); diff --git a/tests/qtest/arm-cpu-features.c b/tests/qtest/arm-cpu-features.c index XXXXXXX..XXXXXXX 100644 --- a/tests/qtest/arm-cpu-features.c +++ b/tests/qtest/arm-cpu-features.c @@ -XXX,XX +XXX,XX @@ static void test_query_cpu_model_expansion(const void *data) sve_tests_default(qts, "max"); pauth_tests_default(qts, "max"); - /* Test that features that depend on KVM generate errors without. */ - assert_error(qts, "max", - "'aarch64' feature cannot be disabled " - "unless KVM is enabled and 32-bit EL1 " - "is supported", - "{ 'aarch64': false }"); + /* TCG allows us to turn off AArch64 on the 'max' CPU type */ + assert_set_feature(qts, "max", "aarch64", false); } qtest_quit(qts); -- 2.43.0
Add a basic test of the TCG 'aarch64=off' functionality; this is the same as our existing arm/test_virt test, but it runs the AArch32 guest kernel on qemu-system-aarch64 with -cpu max,aarch64=off. Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Philippe Mathieu-Daudé <philmd@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Tested-by: Philippe Mathieu-Daudé <philmd@linaro.org> Message-id: 20260416165353.589569-4-peter.maydell@linaro.org --- tests/functional/aarch64/meson.build | 1 + .../aarch64/test_virt_aarch64_off.py | 37 +++++++++++++++++++ 2 files changed, 38 insertions(+) create mode 100755 tests/functional/aarch64/test_virt_aarch64_off.py diff --git a/tests/functional/aarch64/meson.build b/tests/functional/aarch64/meson.build index XXXXXXX..XXXXXXX 100644 --- a/tests/functional/aarch64/meson.build +++ b/tests/functional/aarch64/meson.build @@ -XXX,XX +XXX,XX @@ tests_aarch64_system_thorough = [ 'tcg_plugins', 'tuxrun', 'virt', + 'virt_aarch64_off', 'virt_gpu', 'virt_vbsa', 'xen', diff --git a/tests/functional/aarch64/test_virt_aarch64_off.py b/tests/functional/aarch64/test_virt_aarch64_off.py new file mode 100755 index XXXXXXX..XXXXXXX --- /dev/null +++ b/tests/functional/aarch64/test_virt_aarch64_off.py @@ -XXX,XX +XXX,XX @@ +#!/usr/bin/env python3 +# +# Functional test that boots an AArch32 Linux kernel and checks the console +# on a TCG aarch64 CPU with aarch64=off. This is the same image etc +# as we use in tests/functional/arm/test_virt.py. +# +# SPDX-License-Identifier: GPL-2.0-or-later + +from qemu_test import LinuxKernelTest, Asset + +class ArmVirtMachine(LinuxKernelTest): + + ASSET_KERNEL = Asset( + ('https://archives.fedoraproject.org/pub/archive/fedora/linux/' + 'releases/29/Everything/armhfp/os/images/pxeboot/vmlinuz'), + '18dd5f1a9a28bd539f9d047f7c0677211bae528e8712b40ca5a229a4ad8e2591') + + def test_arm_virt(self): + self.set_machine('virt') + # KVM aarch64=off requires a host CPU that supports it, so + # restrict the test to TCG only + self.require_accelerator('tcg') + self.vm.add_args('-cpu', 'max,aarch64=off') + + kernel_path = self.ASSET_KERNEL.fetch() + + self.vm.set_console() + kernel_command_line = (self.KERNEL_COMMON_COMMAND_LINE + + 'console=ttyAMA0') + self.vm.add_args('-kernel', kernel_path, + '-append', kernel_command_line) + self.vm.launch() + console_pattern = 'Kernel command line: %s' % kernel_command_line + self.wait_for_console_pattern(console_pattern) + +if __name__ == '__main__': + LinuxKernelTest.main() -- 2.43.0
From: Eric Auger <eric.auger@redhat.com> We introduce a datatype for a tolerance with respect to a given cpreg migration issue. The tolerance applies to a given cpreg kvm index, and can be of different types: a) mismatch in cpreg indexes - ToleranceNotOnBothEnds (cpreg index is allowed to be only present on one end) - ToleranceOnlySrcTestValue (cpreg index is allowed to be only present in source if its value @mask field matches @value) b) mismatch in cpreg values - ToleranceDiffInMask (value differences are allowed only within a mask) - ToleranceFieldLT (incoming field value must be less than a given value) - ToleranceFieldGT (incoming field value must be greater than a given value) A QLIST of such tolerances can be populated using a new helper: arm_register_cpreg_mig_tolerance() and arm_cpu_match_cpreg_mig_tolerance() allows to check whether a tolerance exists for a given kvm index and its criterion is matched. callers for those helpers will be introduced in subsequent patches. Only registration of migration tolerances related to cpreg index mismatch is currently allowed. Signed-off-by: Eric Auger <eric.auger@redhat.com> Message-id: 20260420140552.104369-2-eric.auger@redhat.com Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/cpu.c | 82 ++++++++++++++++++++++++++++++++++++++++++ target/arm/cpu.h | 1 + target/arm/internals.h | 54 ++++++++++++++++++++++++++++ 3 files changed, 137 insertions(+) diff --git a/target/arm/cpu.c b/target/arm/cpu.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/cpu.c +++ b/target/arm/cpu.c @@ -XXX,XX +XXX,XX @@ void arm_register_el_change_hook(ARMCPU *cpu, ARMELChangeHookFn *hook, QLIST_INSERT_HEAD(&cpu->el_change_hooks, entry, node); } +static ARMCPRegMigTolerance *find_mig_tolerance(ARMCPU *cpu, uint64_t kvmidx) +{ + ARMCPRegMigTolerance *t; + QLIST_FOREACH(t, &cpu->cpreg_mig_tolerances, node) { + if (t->kvmidx == kvmidx) { + return t; + } + } + return NULL; +} + +void arm_register_cpreg_mig_tolerance(ARMCPU *cpu, uint64_t kvmidx, + uint64_t mask, uint64_t value, + ARMCPRegMigToleranceType type) +{ + ARMCPRegMigTolerance *entry; + + /* make sure the kvmidx has not tolerance already registered */ + assert(!find_mig_tolerance(cpu, kvmidx)); + + assert(type == ToleranceNotOnBothEnds || + type == ToleranceOnlySrcTestValue); + + entry = g_new0(ARMCPRegMigTolerance, 1); + + entry->kvmidx = kvmidx; + entry->mask = mask; + entry->value = value; + entry->type = type; + + QLIST_INSERT_HEAD(&cpu->cpreg_mig_tolerances, entry, node); +} + +bool arm_cpu_match_cpreg_mig_tolerance(ARMCPU *cpu, uint64_t kvmidx, + uint64_t vmstate_value, uint64_t local_value, + ARMCPRegMigToleranceType type) +{ + ARMCPRegMigTolerance *t = find_mig_tolerance(cpu, kvmidx); + uint64_t diff, diff_outside_mask, field; + + if (!t || t->type != type) { + return false; + } + + if (type == ToleranceNotOnBothEnds) { + return true; + } + + if (type == ToleranceOnlySrcTestValue && + ((vmstate_value & t->mask) == t->value)) { + return true; + } + + /* Need to check the mask */ + diff = vmstate_value ^ local_value; + diff_outside_mask = diff & ~t->mask; + + if (diff_outside_mask) { + /* there are differences outside of the mask */ + return false; + } + if (type == ToleranceDiffInMask) { + /* differences only in the field, tolerance matched */ + return true; + } + /* need to compare field value against authorized ones */ + field = vmstate_value & t->mask; + if (type == ToleranceFieldLT && (field < t->value)) { + return true; + } + if (type == ToleranceFieldGT && (field > t->value)) { + return true; + } + return false; +} + static void cp_reg_reset(gpointer key, gpointer value, gpointer opaque) { /* Reset a single ARMCPRegInfo register */ @@ -XXX,XX +XXX,XX @@ static void arm_cpu_initfn(Object *obj) QLIST_INIT(&cpu->pre_el_change_hooks); QLIST_INIT(&cpu->el_change_hooks); + QLIST_INIT(&cpu->cpreg_mig_tolerances); #ifdef CONFIG_USER_ONLY # ifdef TARGET_AARCH64 @@ -XXX,XX +XXX,XX @@ static void arm_cpu_finalizefn(Object *obj) { ARMCPU *cpu = ARM_CPU(obj); ARMELChangeHook *hook, *next; + ARMCPRegMigTolerance *t, *n; g_hash_table_destroy(cpu->cp_regs); @@ -XXX,XX +XXX,XX @@ static void arm_cpu_finalizefn(Object *obj) QLIST_REMOVE(hook, node); g_free(hook); } + QLIST_FOREACH_SAFE(t, &cpu->cpreg_mig_tolerances, node, n) { + QLIST_REMOVE(t, node); + g_free(t); + } #ifndef CONFIG_USER_ONLY if (cpu->pmu_timer) { timer_free(cpu->pmu_timer); diff --git a/target/arm/cpu.h b/target/arm/cpu.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/cpu.h +++ b/target/arm/cpu.h @@ -XXX,XX +XXX,XX @@ struct ArchCPU { QLIST_HEAD(, ARMELChangeHook) pre_el_change_hooks; QLIST_HEAD(, ARMELChangeHook) el_change_hooks; + QLIST_HEAD(, ARMCPRegMigTolerance) cpreg_mig_tolerances; int32_t node_id; /* NUMA node this CPU belongs to */ diff --git a/target/arm/internals.h b/target/arm/internals.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/internals.h +++ b/target/arm/internals.h @@ -XXX,XX +XXX,XX @@ int compare_u64(const void *a, const void *b); /* Used in FEAT_MEC to set the MECIDWidthm1 field in the MECIDR_EL2 register. */ #define MECID_WIDTH 16 +typedef enum { + ToleranceNotOnBothEnds, + ToleranceOnlySrcTestValue, + ToleranceDiffInMask, + ToleranceFieldLT, + ToleranceFieldGT, +} ARMCPRegMigToleranceType; + +typedef struct ARMCPRegMigTolerance { + uint64_t kvmidx; + uint64_t mask; + uint64_t value; + ARMCPRegMigToleranceType type; + QLIST_ENTRY(ARMCPRegMigTolerance) node; +} ARMCPRegMigTolerance; + +/** + * arm_register_cpreg_mig_tolerance: + * Register a migration tolerance wrt one given cpreg identified by its + * @kvmidx. Calling this function twice for the same @kvmidx is a + * programming error and will cause an assertion failure. + * + * @cpu: vcpu to apply the migration tolerance on + * @kvmidx: kvm index of the cpreg the tolerance applies to + * @mask: bitmask where a difference is tolerated + * (relevant with ToleranceDiffInMask) + * @value: value the bitmask field is compared with + * (relevant with ToleranceFieldLT and ToleranceFieldGT) + * @type: type of the migration tolerance: + * - ToleranceNotOnBothEnds (cpreg index is allowed to be only present + * on one end) + * - ToleranceOnlySrcTestValue (cpreg index is allowed to be only + * present in source if its value @mask field matches @value) + * - ToleranceDiffInMask (mismatch in cpreg values are only tolerated + * if differences are within @mask) + * - ToleranceFieldLT (mismatch in cpreg values are only tolerated + * if incoming @bitmask field value is less than @value) + * - ToleranceFieldGT (mismatch in cpreg values are only tolerated + * if incoming @bitmask field value is greater than @value) + */ +void arm_register_cpreg_mig_tolerance(ARMCPU *cpu, uint64_t kvmidx, + uint64_t mask, uint64_t value, + ARMCPRegMigToleranceType type); + +/** + * arm_cpu_match_cpreg_mig_tolerance: + * Check whether a tolerance of type @type exists for a given @kvmidx + * and the tolerance criterion is satisfied + */ +bool arm_cpu_match_cpreg_mig_tolerance(ARMCPU *cpu, uint64_t kvmidx, + uint64_t vmstate_value, uint64_t local_value, + ARMCPRegMigToleranceType type); + + #endif -- 2.43.0
From: Eric Auger <eric.auger@redhat.com> If there is a mismatch between the cpreg indexes found on both ends, check whether a tolerance was registered for the given kvmidx. If any, silence warning/errors. Signed-off-by: Eric Auger <eric.auger@redhat.com> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Message-id: 20260420140552.104369-3-eric.auger@redhat.com Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/machine.c | 21 +++++++++++++++------ target/arm/trace-events | 2 ++ 2 files changed, 17 insertions(+), 6 deletions(-) diff --git a/target/arm/machine.c b/target/arm/machine.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/machine.c +++ b/target/arm/machine.c @@ -XXX,XX +XXX,XX @@ static void handle_cpreg_missing_in_incoming_stream(ARMCPU *cpu, uint64_t kvmidx { g_autofree gchar *name = print_register_name(kvmidx); + if (arm_cpu_match_cpreg_mig_tolerance(cpu, kvmidx, + 0, 0, ToleranceNotOnBothEnds)) { + trace_tolerate_cpreg_missing_in_incoming_stream(name); + return; + } warn_report("%s: %s " "expected by the destination but not in the incoming stream: " "skip it", __func__, name); } /* - * Handle the situation where @kvmidx is in the incoming stream - * but not on destination. This currently fails the migration but - * we plan to accomodate some exceptions, hence the boolean returned value. + * Handle the situation where @kvmidx is in the incoming + * stream but not on destination. This fails the migration if + * no cpreg mig tolerance is matched for this @kvmidx + * Return true if the migration should eventually fail */ static bool handle_cpreg_only_in_incoming_stream(ARMCPU *cpu, uint64_t kvmidx) { g_autofree gchar *name = print_register_name(kvmidx); - bool fail = true; + if (arm_cpu_match_cpreg_mig_tolerance(cpu, kvmidx, + 0, 0, ToleranceNotOnBothEnds)) { + trace_tolerate_cpreg_only_in_incoming_stream(name); + return false; + } error_report("%s: %s in the incoming stream but unknown on the " "destination: fail migration", __func__, name); - - return fail; + return true; } static int cpu_post_load(void *opaque, int version_id) diff --git a/target/arm/trace-events b/target/arm/trace-events index XXXXXXX..XXXXXXX 100644 --- a/target/arm/trace-events +++ b/target/arm/trace-events @@ -XXX,XX +XXX,XX @@ arm_psci_call(uint64_t x0, uint64_t x1, uint64_t x2, uint64_t x3, uint32_t cpuid # machine.c cpu_post_load(uint32_t cpreg_vmstate_array_len, uint32_t cpreg_array_len) "cpreg_vmstate_array_len=%d cpreg_array_len=%d" +tolerate_cpreg_missing_in_incoming_stream(char *name) "%s is missing in incoming stream but this is explicitly tolerated" +tolerate_cpreg_only_in_incoming_stream(char *name) "%s is in incoming stream but not on destination but this is explicitly tolerated" -- 2.43.0
From: Eric Auger <eric.auger@redhat.com> Pass the value of the incoming register to handle_cpreg_only_in_incoming_stream and check whether there is a matching ToleranceOnlySrcTestValue tolerance. Signed-off-by: Eric Auger <eric.auger@redhat.com> Message-id: 20260420140552.104369-4-eric.auger@redhat.com Signed-off-by: Peter Maydell <peter.maydell@linaro.org> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/machine.c | 14 ++++++++++---- 1 file changed, 10 insertions(+), 4 deletions(-) diff --git a/target/arm/machine.c b/target/arm/machine.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/machine.c +++ b/target/arm/machine.c @@ -XXX,XX +XXX,XX @@ static void handle_cpreg_missing_in_incoming_stream(ARMCPU *cpu, uint64_t kvmidx * no cpreg mig tolerance is matched for this @kvmidx * Return true if the migration should eventually fail */ -static bool handle_cpreg_only_in_incoming_stream(ARMCPU *cpu, uint64_t kvmidx) +static bool +handle_cpreg_only_in_incoming_stream(ARMCPU *cpu, uint64_t kvmidx, uint64_t value) { g_autofree gchar *name = print_register_name(kvmidx); if (arm_cpu_match_cpreg_mig_tolerance(cpu, kvmidx, - 0, 0, ToleranceNotOnBothEnds)) { + 0, 0, ToleranceNotOnBothEnds) || + arm_cpu_match_cpreg_mig_tolerance(cpu, kvmidx, + value, 0, ToleranceOnlySrcTestValue)) { trace_tolerate_cpreg_only_in_incoming_stream(name); return false; } @@ -XXX,XX +XXX,XX @@ static int cpu_post_load(void *opaque, int version_id) } if (cpu->cpreg_vmstate_indexes[v] < cpu->cpreg_indexes[i]) { fail = handle_cpreg_only_in_incoming_stream(cpu, - cpu->cpreg_vmstate_indexes[v++]); + cpu->cpreg_vmstate_indexes[v], + cpu->cpreg_vmstate_values[v]); + v++; continue; } /* matching register, copy the value over */ @@ -XXX,XX +XXX,XX @@ static int cpu_post_load(void *opaque, int version_id) */ for ( ; v < cpu->cpreg_vmstate_array_len; v++) { fail = handle_cpreg_only_in_incoming_stream(cpu, - cpu->cpreg_vmstate_indexes[v]); + cpu->cpreg_vmstate_indexes[v], + cpu->cpreg_vmstate_values[v]); } if (fail) { return -1; -- 2.43.0
From: Eric Auger <eric.auger@redhat.com> Before linux v6.13 those registers were erroneously unconditionally exposed and this was fixed by commits: - 0fcb4eea5345 ("KVM: arm64: Hide TCR2_EL1 from userspace when disabled for guests") - a68cddbe47ef ("KVM: arm64: Hide S1PIE registers from userspace when disabled for guests") in v6.13. This means if we migrate from an old kernel host to a >= 6.13 kernel host, migration currently fails. Declare cpreg migration tolerance for those registers. Signed-off-by: Eric Auger <eric.auger@redhat.com> Reviewed-by: Sebastian Ott <sebott@redhat.com> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Message-id: 20260420140552.104369-5-eric.auger@redhat.com Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/cpu64.c | 28 ++++++++++++++++++++++++++++ 1 file changed, 28 insertions(+) diff --git a/target/arm/cpu64.c b/target/arm/cpu64.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/cpu64.c +++ b/target/arm/cpu64.c @@ -XXX,XX +XXX,XX @@ static void aarch64_a53_initfn(Object *obj) define_cortex_a72_a57_a53_cp_reginfo(cpu); } +#if defined(CONFIG_KVM) +static void kvm_arm_set_cpreg_mig_tolerances(ARMCPU *cpu) +{ + /* + * Registers that may be in the incoming stream and not exposed + * on the destination + */ + + /* + * TCR_EL1 was erroneously unconditionnally exposed before linux v6.13. + * See commit 0fcb4eea5345 ("KVM: arm64: Hide TCR2_EL1 from userspace + * when disabled for guests") + */ + arm_register_cpreg_mig_tolerance(cpu, ARM64_SYS_REG(3, 0, 2, 0, 3), + 0, 0, ToleranceNotOnBothEnds); + /* + * PIRE0_EL1 and PIR_EL1 were erroneously unconditionnally exposed + * before linux v6.13. See commit a68cddbe47ef ("KVM: arm64: Hide + * S1PIE registers from userspace when disabled for guests") + */ + arm_register_cpreg_mig_tolerance(cpu, ARM64_SYS_REG(3, 0, 10, 2, 2), + 0, 0, ToleranceNotOnBothEnds); + arm_register_cpreg_mig_tolerance(cpu, ARM64_SYS_REG(3, 0, 10, 2, 3), + 0, 0, ToleranceNotOnBothEnds); +} +#endif + static void aarch64_host_initfn(Object *obj) { ARMCPU *cpu = ARM_CPU(obj); @@ -XXX,XX +XXX,XX @@ static void aarch64_host_initfn(Object *obj) #endif #if defined(CONFIG_KVM) + kvm_arm_set_cpreg_mig_tolerances(cpu); kvm_arm_set_cpu_features_from_host(cpu); aarch64_add_sve_properties(obj); #elif defined(CONFIG_HVF) -- 2.43.0
From: Eric Auger <eric.auger@redhat.com> KVM_REG_ARM_VENDOR_HYP_BMAP_2 pseudo FW register is exposed from v6.15 onwards. Backward migration from a >= v6.15 to an older kernel would fail without cpreg migration tolerance definition for this register. If the register is present on source but not on destination, its value must be checked to make sure it matches the reset value, ie. 0, meaning no service is exposed to the guest, hence the choice of a ToleranceOnlySrcTestValue migration tolerance. Signed-off-by: Eric Auger <eric.auger@redhat.com> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Message-id: 20260420140552.104369-6-eric.auger@redhat.com Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/cpu64.c | 11 +++++++++++ 1 file changed, 11 insertions(+) diff --git a/target/arm/cpu64.c b/target/arm/cpu64.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/cpu64.c +++ b/target/arm/cpu64.c @@ -XXX,XX +XXX,XX @@ static void kvm_arm_set_cpreg_mig_tolerances(ARMCPU *cpu) 0, 0, ToleranceNotOnBothEnds); arm_register_cpreg_mig_tolerance(cpu, ARM64_SYS_REG(3, 0, 10, 2, 3), 0, 0, ToleranceNotOnBothEnds); + + /* + * KVM_REG_ARM_VENDOR_HYP_BMAP_2 pseudo FW register is exposed + * from v6.15 onwards. Backward migration from a >= v6.15 to an older + * kernel would fail without cpreg migration tolerance definition. + * If the register is present on source but not on destination, make + * sure it has its reset value, ie. 0, meaning no service is exposed + * to the guest. + */ + arm_register_cpreg_mig_tolerance(cpu, KVM_REG_ARM_FW_FEAT_BMAP_REG(3), + UINT64_MAX, 0, ToleranceOnlySrcTestValue); } #endif -- 2.43.0
From: Eric Auger <eric.auger@redhat.com> We want to remove AArch32 DBGDTRTX which was erroneously exposed. This was attempted by 655659a74a36b ("target/arm: Correct encoding of Debug Communications Channel registers") but it was discovered that the removal of this debug register broke forward migration on TCG. Now we have the cpreg migration tolerance infrastructure, we can declare one for the DBGDTRTX. This allow to revert the reinstate patch. Signed-off-by: Eric Auger <eric.auger@redhat.com> Reviewed-by: Sebastian Ott <sebott@redhat.com> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Message-id: 20260420140552.104369-7-eric.auger@redhat.com [PMM: revised comment, included note about when we can drop the workaround] Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/helper.c | 23 +++++++++++++++++++++++ 1 file changed, 23 insertions(+) diff --git a/target/arm/helper.c b/target/arm/helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/helper.c +++ b/target/arm/helper.c @@ -XXX,XX +XXX,XX @@ void register_cp_regs_for_features(ARMCPU *cpu) .fgt = FGT_CLIDR_EL1, .resetvalue = GET_IDREG(isar, CLIDR) }; + uint64_t dbgtr_el0_kvmidx = + cpreg_to_kvm_id(ENCODE_CP_REG(14, 0, 1, 0, 5, 3, 0)); + define_one_arm_cp_reg(cpu, &clidr); define_arm_cp_regs(cpu, v7_cp_reginfo); define_debug_regs(cpu); + /* + * We used to incorrectly expose a non-existent AArch32 "DBGDTRTX" + * register with this encoding. This has been fixed by commit + * 655659a74a36 ("target/arm: Correct encoding of Debug + * Communications Channel registers") by the introduction of correct + * separate cpreg definitions for AA64 and AA32 versions. However, + * the old cpreg definition couldn't be removed without breaking + * migration, so commit 4f2b82f604 reinstated the bogus encoding + * for migration data only. + * + * Now that we have migration tolerance infrastructure, we can use + * this to allow forward migration from the buggy QEMU versions, + * accepting and ignoring the bogus register if it is in the + * source data. QEMU 11.0 was the last version that sent the + * bogus encoding, so this workaround can be removed at the point + * where we no longer care about migration from that version + * (i.e. when we remove the "virt-11.0" machine type). + */ + arm_register_cpreg_mig_tolerance(cpu, dbgtr_el0_kvmidx, + 0, 0, ToleranceNotOnBothEnds); } else { define_arm_cp_regs(cpu, not_v7_cp_reginfo); } -- 2.43.0
From: Eric Auger <eric.auger@redhat.com> This reverts commit 4f2b82f60431 ("target/arm: Reinstate bogus AArch32 DBGDTRTX register for migration compat). We don't need that commit anymore as the AArch32 DBGDTRTX register is declared to be safe to ignore in the incoming migration stream. Signed-off-by: Eric Auger <eric.auger@redhat.com> Reviewed-by: Sebastian Ott <sebott@redhat.com> Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Message-id: 20260420140552.104369-8-eric.auger@redhat.com Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/debug_helper.c | 29 ----------------------------- 1 file changed, 29 deletions(-) diff --git a/target/arm/debug_helper.c b/target/arm/debug_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/debug_helper.c +++ b/target/arm/debug_helper.c @@ -XXX,XX +XXX,XX @@ static void dbgclaimclr_write(CPUARMState *env, const ARMCPRegInfo *ri, env->cp15.dbgclaim &= ~(value & 0xFF); } -static CPAccessResult access_bogus(CPUARMState *env, const ARMCPRegInfo *ri, - bool isread) -{ - /* Always UNDEF, as if this cpreg didn't exist */ - return CP_ACCESS_UNDEFINED; -} - static const ARMCPRegInfo debug_cp_reginfo[] = { /* * DBGDRAR, DBGDSAR: always RAZ since we don't implement memory mapped @@ -XXX,XX +XXX,XX @@ static const ARMCPRegInfo debug_cp_reginfo[] = { .opc0 = 2, .opc1 = 3, .crn = 0, .crm = 4, .opc2 = 0, .access = PL0_RW, .accessfn = access_tdcc, .type = ARM_CP_CONST, .resetvalue = 0 }, - /* - * This is not a real AArch32 register. We used to incorrectly expose - * this due to a QEMU bug; to avoid breaking migration compatibility we - * need to continue to provide it so that we don't fail the inbound - * migration when it tells us about a sysreg that we don't have. - * We set an always-fails .accessfn, which means that the guest doesn't - * actually see this register (it will always UNDEF, identically to if - * there were no cpreg definition for it other than that we won't print - * a LOG_UNIMP message about it), and we set the ARM_CP_NO_GDB flag so the - * gdbstub won't see it either. - * (We can't just set .access = 0, because add_cpreg_to_hashtable() - * helpfully ignores cpregs which aren't accessible to the highest - * implemented EL.) - * - * TODO: implement a system for being able to describe "this register - * can be ignored if it appears in the inbound stream"; then we can - * remove this temporary hack. - */ - { .name = "BOGUS_DBGDTR_EL0", .state = ARM_CP_STATE_AA32, - .cp = 14, .opc1 = 3, .crn = 0, .crm = 5, .opc2 = 0, - .access = PL0_RW, .accessfn = access_bogus, - .type = ARM_CP_CONST | ARM_CP_NO_GDB, .resetvalue = 0 }, /* * OSECCR_EL1 provides a mechanism for an operating system * to access the contents of EDECCR. EDECCR is not implemented though, -- 2.43.0
From: Osama Abdelkader <osama.abdelkader@gmail.com> fdt_node_offset_by_compatible(fdt, -1, compat) only finds the first match. If the blob has more than one node with the same compatible string, extra nodes will remain active. Remove all the matching nodes, using the same loop as imx8mp-evk.c does for this purpose. Signed-off-by: Osama Abdelkader <osama.abdelkader@gmail.com> Message-id: 20260420162114.308519-1-osama.abdelkader@gmail.com Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/raspi4b.c | 10 ++++++---- 1 file changed, 6 insertions(+), 4 deletions(-) diff --git a/hw/arm/raspi4b.c b/hw/arm/raspi4b.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/raspi4b.c +++ b/hw/arm/raspi4b.c @@ -XXX,XX +XXX,XX @@ static void raspi4_modify_dtb(const struct arm_boot_info *info, void *fdt) for (int i = 0; i < ARRAY_SIZE(nodes_to_remove); i++) { const char *dev_str = nodes_to_remove[i]; + int offset; - int offset = fdt_node_offset_by_compatible(fdt, -1, dev_str); - if (offset >= 0) { - if (!fdt_nop_node(fdt, offset)) { - warn_report("bcm2711 dtc: %s has been disabled!", dev_str); + offset = fdt_node_offset_by_compatible(fdt, -1, dev_str); + while (offset >= 0) { + if (fdt_nop_node(fdt, offset) == 0) { + warn_report("bcm2711 dtb: %s has been disabled!", dev_str); } + offset = fdt_node_offset_by_compatible(fdt, offset, dev_str); } } -- 2.43.0
From: Yucai Liu <1486344514@qq.com> Implement a basic i.MX6UL LCDIF controller model with MMIO registers, frame-done interrupt behavior, and framebuffer-backed display updates for RGB565 and XRGB8888 input formats. Place the LCDIF device under hw/display and build it via a dedicated CONFIG_IMX6UL_LCDIF symbol. Model register fields with registerfields.h helpers and provide migration support via vmstate. Signed-off-by: Yucai Liu <1486344514@qq.com> Message-id: 20260412110240.93116-2-yangyanglan718@gmail.com Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- MAINTAINERS | 2 + hw/display/Kconfig | 4 + hw/display/imx6ul_lcdif.c | 453 ++++++++++++++++++++++++++++++ hw/display/meson.build | 1 + include/hw/display/imx6ul_lcdif.h | 37 +++ 5 files changed, 497 insertions(+) create mode 100644 hw/display/imx6ul_lcdif.c create mode 100644 include/hw/display/imx6ul_lcdif.h diff --git a/MAINTAINERS b/MAINTAINERS index XXXXXXX..XXXXXXX 100644 --- a/MAINTAINERS +++ b/MAINTAINERS @@ -XXX,XX +XXX,XX @@ L: qemu-arm@nongnu.org S: Odd Fixes F: hw/arm/mcimx6ul-evk.c F: hw/arm/fsl-imx6ul.c +F: hw/display/imx6ul_lcdif.c F: hw/misc/imx6ul_ccm.c F: include/hw/arm/fsl-imx6ul.h +F: include/hw/display/imx6ul_lcdif.h F: include/hw/misc/imx6ul_ccm.h F: docs/system/arm/mcimx6ul-evk.rst diff --git a/hw/display/Kconfig b/hw/display/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/display/Kconfig +++ b/hw/display/Kconfig @@ -XXX,XX +XXX,XX @@ config PL110 bool select FRAMEBUFFER +config IMX6UL_LCDIF + bool + select FRAMEBUFFER + config SII9022 bool depends on I2C diff --git a/hw/display/imx6ul_lcdif.c b/hw/display/imx6ul_lcdif.c new file mode 100644 index XXXXXXX..XXXXXXX --- /dev/null +++ b/hw/display/imx6ul_lcdif.c @@ -XXX,XX +XXX,XX @@ +/* + * SPDX-License-Identifier: GPL-2.0-or-later + * + * i.MX6UL LCDIF controller + * + * Copyright (c) 2026 Yucai Liu <1486344514@qq.com> + */ + +#include "qemu/osdep.h" +#include "hw/display/imx6ul_lcdif.h" +#include "hw/core/irq.h" +#include "hw/core/registerfields.h" +#include "hw/display/framebuffer.h" +#include "migration/vmstate.h" +#include "system/address-spaces.h" +#include "qemu/module.h" +#include "qemu/units.h" +#include "ui/pixel_ops.h" + +#define LCDIF_MMIO_SIZE (16 * KiB) +#define LCDIF_RESET_CTRL1 0x000f0000 + +REG32(CTRL, 0x00) + FIELD(CTRL, RUN, 0, 1) + FIELD(CTRL, WORD_LENGTH, 8, 2) +REG32(CTRL1, 0x10) + FIELD(CTRL1, CUR_FRAME_DONE_IRQ, 9, 1) + FIELD(CTRL1, CUR_FRAME_DONE_IRQ_EN, 13, 1) + FIELD(CTRL1, BYTE_PACKING_FORMAT, 16, 4) +REG32(V4_TRANSFER_COUNT, 0x30) + FIELD(V4_TRANSFER_COUNT, H_COUNT, 0, 16) + FIELD(V4_TRANSFER_COUNT, V_COUNT, 16, 16) +REG32(V4_CUR_BUF, 0x40) +REG32(V4_NEXT_BUF, 0x50) +REG32(AS_NEXT_BUF, 0x230) + +#define REG_SET 0x4 +#define REG_CLR 0x8 +#define REG_TOG 0xc + +#define CTRL_WORD_LENGTH_16 0 +#define CTRL_WORD_LENGTH_24 3 + +#define FRAME_PERIOD_NS (16 * 1000 * 1000ULL) + +enum IMX6ULLCDIFReg { + IMX6UL_LCDIF_REG_CTRL = A_CTRL >> 4, + IMX6UL_LCDIF_REG_CTRL1 = A_CTRL1 >> 4, + IMX6UL_LCDIF_REG_V4_TRANSFER_COUNT = A_V4_TRANSFER_COUNT >> 4, + IMX6UL_LCDIF_REG_V4_CUR_BUF = A_V4_CUR_BUF >> 4, + IMX6UL_LCDIF_REG_V4_NEXT_BUF = A_V4_NEXT_BUF >> 4, + IMX6UL_LCDIF_REG_AS_NEXT_BUF = A_AS_NEXT_BUF >> 4, +}; + +static inline bool imx6ul_lcdif_reg_exists(hwaddr reg) +{ + return (reg >> 4) < IMX6UL_LCDIF_REGS_NUM; +} + +static inline bool imx6ul_lcdif_reg_has_setclr(hwaddr reg) +{ + switch (reg) { + case A_CTRL: + case A_CTRL1: + return true; + default: + return false; + } +} + +static inline bool imx6ul_lcdif_is_running(IMX6ULLCDIFState *s) +{ + uint32_t ctrl = s->regs[IMX6UL_LCDIF_REG_CTRL]; + + return FIELD_EX32(ctrl, CTRL, RUN); +} + +static inline bool imx6ul_lcdif_frame_done_pending(IMX6ULLCDIFState *s) +{ + uint32_t ctrl1 = s->regs[IMX6UL_LCDIF_REG_CTRL1]; + + return FIELD_EX32(ctrl1, CTRL1, CUR_FRAME_DONE_IRQ); +} + +static void imx6ul_lcdif_schedule_frame(IMX6ULLCDIFState *s) +{ + int64_t now = qemu_clock_get_ns(QEMU_CLOCK_VIRTUAL); + + timer_mod(s->frame_timer, now + FRAME_PERIOD_NS); +} + +static void imx6ul_lcdif_maybe_schedule_frame(IMX6ULLCDIFState *s) +{ + if (imx6ul_lcdif_is_running(s) && !imx6ul_lcdif_frame_done_pending(s)) { + imx6ul_lcdif_schedule_frame(s); + } else { + timer_del(s->frame_timer); + } +} + +static void imx6ul_lcdif_update_irq(IMX6ULLCDIFState *s) +{ + uint32_t ctrl1 = s->regs[IMX6UL_LCDIF_REG_CTRL1]; + bool level = FIELD_EX32(ctrl1, CTRL1, CUR_FRAME_DONE_IRQ_EN) && + FIELD_EX32(ctrl1, CTRL1, CUR_FRAME_DONE_IRQ); + + qemu_set_irq(s->irq, level); +} + +static void imx6ul_lcdif_frame_done(IMX6ULLCDIFState *s) +{ + uint32_t ctrl1 = s->regs[IMX6UL_LCDIF_REG_CTRL1]; + + ctrl1 = FIELD_DP32(ctrl1, CTRL1, CUR_FRAME_DONE_IRQ, 1); + s->regs[IMX6UL_LCDIF_REG_CTRL1] = ctrl1; + imx6ul_lcdif_update_irq(s); +} + +static void imx6ul_lcdif_draw_line_rgb565(void *opaque, uint8_t *dst, + const uint8_t *src, int width, + int dststep) +{ + uint32_t *dst32 = (uint32_t *)dst; + int i; + + for (i = 0; i < width; i++) { + uint16_t pixel = lduw_le_p(src); + uint8_t r = ((pixel >> 11) & 0x1f) << 3; + uint8_t g = ((pixel >> 5) & 0x3f) << 2; + uint8_t b = (pixel & 0x1f) << 3; + + *dst32++ = rgb_to_pixel32(r, g, b); + src += 2; + } +} + +static void imx6ul_lcdif_draw_line_xrgb8888(void *opaque, uint8_t *dst, + const uint8_t *src, int width, + int dststep) +{ + uint32_t *dst32 = (uint32_t *)dst; + int i; + + for (i = 0; i < width; i++) { + uint32_t pixel = ldl_le_p(src); + uint8_t r = (pixel >> 16) & 0xff; + uint8_t g = (pixel >> 8) & 0xff; + uint8_t b = pixel & 0xff; + + *dst32++ = rgb_to_pixel32(r, g, b); + src += 4; + } +} + +static void imx6ul_lcdif_update_display(void *opaque) +{ + IMX6ULLCDIFState *s = opaque; + DisplaySurface *surface = qemu_console_surface(s->con); + uint32_t transfer_count = s->regs[IMX6UL_LCDIF_REG_V4_TRANSFER_COUNT]; + uint32_t width = FIELD_EX32(transfer_count, V4_TRANSFER_COUNT, H_COUNT); + uint32_t height = FIELD_EX32(transfer_count, V4_TRANSFER_COUNT, V_COUNT); + uint32_t ctrl = s->regs[IMX6UL_LCDIF_REG_CTRL]; + uint32_t frame_base = s->regs[IMX6UL_LCDIF_REG_V4_CUR_BUF]; + drawfn fn; + int first = 0; + int last = 0; + int src_width; + + if (!imx6ul_lcdif_is_running(s) || width == 0 || height == 0) { + return; + } + + switch (FIELD_EX32(ctrl, CTRL, WORD_LENGTH)) { + case CTRL_WORD_LENGTH_16: + s->src_bpp = 2; + fn = imx6ul_lcdif_draw_line_rgb565; + break; + case CTRL_WORD_LENGTH_24: + s->src_bpp = 4; + fn = imx6ul_lcdif_draw_line_xrgb8888; + break; + default: + return; + } + + if (surface_width(surface) != width || surface_height(surface) != height) { + qemu_console_resize(s->con, width, height); + surface = qemu_console_surface(s->con); + s->invalidate = true; + } + + src_width = width * s->src_bpp; + if (s->invalidate || s->fb_base != frame_base || + s->src_width != src_width || s->rows != height) { + framebuffer_update_memory_section(&s->fbsection, get_system_memory(), + frame_base, height, src_width); + s->fb_base = frame_base; + s->src_width = src_width; + s->rows = height; + } + + framebuffer_update_display(surface, &s->fbsection, width, height, + src_width, surface_stride(surface), 0, + s->invalidate, fn, s, &first, &last); + if (first >= 0) { + dpy_gfx_update(s->con, 0, first, width, last - first + 1); + } + + s->invalidate = false; +} + +static void imx6ul_lcdif_invalidate_display(void *opaque) +{ + IMX6ULLCDIFState *s = opaque; + + s->invalidate = true; +} + +static const GraphicHwOps imx6ul_lcdif_graphic_ops = { + .invalidate = imx6ul_lcdif_invalidate_display, + .gfx_update = imx6ul_lcdif_update_display, +}; + +static void imx6ul_lcdif_frame_timer_cb(void *opaque) +{ + IMX6ULLCDIFState *s = opaque; + + if (!imx6ul_lcdif_is_running(s) || imx6ul_lcdif_frame_done_pending(s)) { + return; + } + + imx6ul_lcdif_frame_done(s); +} + +static uint64_t imx6ul_lcdif_read(void *opaque, hwaddr offset, unsigned size) +{ + IMX6ULLCDIFState *s = opaque; + hwaddr reg = offset & ~0xf; + uint32_t idx; + + assert(size == 4); + assert(!(offset & 0x3)); + assert(offset < LCDIF_MMIO_SIZE); + + idx = reg >> 4; + if (idx >= ARRAY_SIZE(s->regs)) { + return 0; + } + + return s->regs[idx]; +} + +static void imx6ul_lcdif_write(void *opaque, hwaddr offset, + uint64_t value, unsigned size) +{ + IMX6ULLCDIFState *s = opaque; + hwaddr reg = offset & ~0xf; + uint32_t idx; + uint32_t oldv; + + assert(size == 4); + assert(!(offset & 0x3)); + assert(offset < LCDIF_MMIO_SIZE); + + if (!imx6ul_lcdif_reg_exists(reg)) { + return; + } + + idx = reg >> 4; + oldv = s->regs[idx]; + + switch (offset & 0xf) { + case 0: + s->regs[idx] = (uint32_t)value; + break; + case REG_SET: + if (!imx6ul_lcdif_reg_has_setclr(reg)) { + return; + } + s->regs[idx] = oldv | (uint32_t)value; + break; + case REG_CLR: + if (!imx6ul_lcdif_reg_has_setclr(reg)) { + return; + } + s->regs[idx] = oldv & ~(uint32_t)value; + break; + case REG_TOG: + if (!imx6ul_lcdif_reg_has_setclr(reg)) { + return; + } + s->regs[idx] = oldv ^ (uint32_t)value; + break; + default: + g_assert_not_reached(); + } + + switch (reg) { + case A_CTRL: + if (!FIELD_EX32(oldv, CTRL, RUN) && + FIELD_EX32(s->regs[idx], CTRL, RUN)) { + s->invalidate = true; + graphic_hw_invalidate(s->con); + imx6ul_lcdif_maybe_schedule_frame(s); + break; + } + if (FIELD_EX32(oldv, CTRL, RUN) && + !FIELD_EX32(s->regs[idx], CTRL, RUN)) { + timer_del(s->frame_timer); + } + break; + case A_CTRL1: + if (FIELD_EX32(oldv, CTRL1, CUR_FRAME_DONE_IRQ) && + !FIELD_EX32(s->regs[idx], CTRL1, CUR_FRAME_DONE_IRQ)) { + imx6ul_lcdif_maybe_schedule_frame(s); + } + break; + case A_V4_TRANSFER_COUNT: + s->invalidate = true; + graphic_hw_invalidate(s->con); + break; + case A_V4_CUR_BUF: + s->invalidate = true; + graphic_hw_invalidate(s->con); + break; + case A_V4_NEXT_BUF: + s->regs[IMX6UL_LCDIF_REG_V4_CUR_BUF] = s->regs[idx]; + imx6ul_lcdif_frame_done(s); + s->invalidate = true; + graphic_hw_invalidate(s->con); + imx6ul_lcdif_maybe_schedule_frame(s); + return; + case A_AS_NEXT_BUF: + imx6ul_lcdif_frame_done(s); + imx6ul_lcdif_maybe_schedule_frame(s); + return; + default: + break; + } + + imx6ul_lcdif_update_irq(s); +} + +static const MemoryRegionOps imx6ul_lcdif_ops = { + .read = imx6ul_lcdif_read, + .write = imx6ul_lcdif_write, + .endianness = DEVICE_LITTLE_ENDIAN, + .valid = { + .min_access_size = 4, + .max_access_size = 4, + .unaligned = false, + }, +}; + +static void imx6ul_lcdif_reset(DeviceState *dev) +{ + IMX6ULLCDIFState *s = IMX6UL_LCDIF(dev); + + memset(s->regs, 0, sizeof(s->regs)); + s->regs[IMX6UL_LCDIF_REG_CTRL1] = LCDIF_RESET_CTRL1; + s->fb_base = 0; + s->src_width = 0; + s->rows = 0; + s->src_bpp = 0; + s->invalidate = true; + timer_del(s->frame_timer); + imx6ul_lcdif_update_irq(s); +} + +static int imx6ul_lcdif_post_load(void *opaque, int version_id) +{ + IMX6ULLCDIFState *s = opaque; + + s->fb_base = 0; + s->src_width = 0; + s->rows = 0; + s->src_bpp = 0; + s->invalidate = true; + + imx6ul_lcdif_update_irq(s); + if (imx6ul_lcdif_is_running(s) && + !imx6ul_lcdif_frame_done_pending(s) && + !timer_pending(s->frame_timer)) { + imx6ul_lcdif_schedule_frame(s); + } + + return 0; +} + +static const VMStateDescription vmstate_imx6ul_lcdif = { + .name = TYPE_IMX6UL_LCDIF, + .version_id = 1, + .minimum_version_id = 1, + .post_load = imx6ul_lcdif_post_load, + .fields = (const VMStateField[]) { + VMSTATE_UINT32_ARRAY(regs, IMX6ULLCDIFState, IMX6UL_LCDIF_REGS_NUM), + VMSTATE_TIMER_PTR(frame_timer, IMX6ULLCDIFState), + VMSTATE_END_OF_LIST() + }, +}; + +static void imx6ul_lcdif_realize(DeviceState *dev, Error **errp) +{ + IMX6ULLCDIFState *s = IMX6UL_LCDIF(dev); + + s->frame_timer = timer_new_ns(QEMU_CLOCK_VIRTUAL, + imx6ul_lcdif_frame_timer_cb, s); + s->invalidate = true; + memory_region_init_io(&s->iomem, OBJECT(dev), &imx6ul_lcdif_ops, s, + TYPE_IMX6UL_LCDIF, LCDIF_MMIO_SIZE); + sysbus_init_mmio(SYS_BUS_DEVICE(dev), &s->iomem); + sysbus_init_irq(SYS_BUS_DEVICE(dev), &s->irq); + s->con = graphic_console_init(dev, 0, &imx6ul_lcdif_graphic_ops, s); +} + +static void imx6ul_lcdif_unrealize(DeviceState *dev) +{ + IMX6ULLCDIFState *s = IMX6UL_LCDIF(dev); + + timer_del(s->frame_timer); + timer_free(s->frame_timer); + s->frame_timer = NULL; + + if (s->con) { + graphic_console_close(s->con); + s->con = NULL; + } +} + +static void imx6ul_lcdif_class_init(ObjectClass *klass, const void *data) +{ + DeviceClass *dc = DEVICE_CLASS(klass); + + dc->realize = imx6ul_lcdif_realize; + dc->unrealize = imx6ul_lcdif_unrealize; + dc->vmsd = &vmstate_imx6ul_lcdif; + device_class_set_legacy_reset(dc, imx6ul_lcdif_reset); + dc->desc = "i.MX6UL LCDIF"; +} + +static const TypeInfo imx6ul_lcdif_info = { + .name = TYPE_IMX6UL_LCDIF, + .parent = TYPE_SYS_BUS_DEVICE, + .instance_size = sizeof(IMX6ULLCDIFState), + .class_init = imx6ul_lcdif_class_init, +}; + +static void imx6ul_lcdif_register_types(void) +{ + type_register_static(&imx6ul_lcdif_info); +} + +type_init(imx6ul_lcdif_register_types) diff --git a/hw/display/meson.build b/hw/display/meson.build index XXXXXXX..XXXXXXX 100644 --- a/hw/display/meson.build +++ b/hw/display/meson.build @@ -XXX,XX +XXX,XX @@ system_ss.add(when: ['CONFIG_VGA_CIRRUS', 'CONFIG_VGA_ISA'], if_true: files('cir system_ss.add(when: 'CONFIG_G364FB', if_true: files('g364fb.c')) system_ss.add(when: 'CONFIG_JAZZ_LED', if_true: files('jazz_led.c')) system_ss.add(when: 'CONFIG_PL110', if_true: files('pl110.c')) +system_ss.add(when: 'CONFIG_IMX6UL_LCDIF', if_true: files('imx6ul_lcdif.c')) system_ss.add(when: 'CONFIG_SII9022', if_true: files('sii9022.c')) system_ss.add(when: 'CONFIG_SSD0303', if_true: files('ssd0303.c')) system_ss.add(when: 'CONFIG_SSD0323', if_true: files('ssd0323.c')) diff --git a/include/hw/display/imx6ul_lcdif.h b/include/hw/display/imx6ul_lcdif.h new file mode 100644 index XXXXXXX..XXXXXXX --- /dev/null +++ b/include/hw/display/imx6ul_lcdif.h @@ -XXX,XX +XXX,XX @@ +/* + * SPDX-License-Identifier: GPL-2.0-or-later + * + * i.MX6UL LCDIF controller + * + * Copyright (c) 2026 Yucai Liu <1486344514@qq.com> + */ + +#ifndef IMX6UL_LCDIF_H +#define IMX6UL_LCDIF_H + +#include "hw/core/sysbus.h" +#include "qom/object.h" +#include "qemu/timer.h" +#include "ui/console.h" + +#define TYPE_IMX6UL_LCDIF "imx6ul-lcdif" +#define IMX6UL_LCDIF_REGS_NUM ((0x230 >> 4) + 1) +OBJECT_DECLARE_SIMPLE_TYPE(IMX6ULLCDIFState, IMX6UL_LCDIF) + +struct IMX6ULLCDIFState { + SysBusDevice parent_obj; + + MemoryRegion iomem; + MemoryRegionSection fbsection; + qemu_irq irq; + QemuConsole *con; + QEMUTimer *frame_timer; + uint32_t fb_base; + uint32_t src_width; + uint32_t rows; + uint8_t src_bpp; + bool invalidate; + uint32_t regs[IMX6UL_LCDIF_REGS_NUM]; +}; + +#endif /* IMX6UL_LCDIF_H */ -- 2.43.0
From: Yucai Liu <1486344514@qq.com> Instantiate LCDIF as a child object of the i.MX6UL SoC in init and realize it in the SoC realize path before MMIO/IRQ hookup. Also make FSL_IMX6UL select CONFIG_IMX6UL_LCDIF and map the LCDIF region with a 16 KiB size to match the SoC memory map. Signed-off-by: Yucai Liu <1486344514@qq.com> Message-id: 20260412110240.93116-3-yangyanglan718@gmail.com Reviewed-by: Peter Maydell <peter.maydell@linaro.org> Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- hw/arm/Kconfig | 1 + hw/arm/fsl-imx6ul.c | 12 ++++++++++-- include/hw/arm/fsl-imx6ul.h | 4 +++- 3 files changed, 14 insertions(+), 3 deletions(-) diff --git a/hw/arm/Kconfig b/hw/arm/Kconfig index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/Kconfig +++ b/hw/arm/Kconfig @@ -XXX,XX +XXX,XX @@ config FSL_IMX6UL imply I2C_DEVICES select A15MPCORE select IMX + select IMX6UL_LCDIF select IMX_FEC select IMX_I2C select IMX_USBPHY diff --git a/hw/arm/fsl-imx6ul.c b/hw/arm/fsl-imx6ul.c index XXXXXXX..XXXXXXX 100644 --- a/hw/arm/fsl-imx6ul.c +++ b/hw/arm/fsl-imx6ul.c @@ -XXX,XX +XXX,XX @@ #include "qemu/osdep.h" #include "qapi/error.h" #include "hw/arm/fsl-imx6ul.h" +#include "hw/display/imx6ul_lcdif.h" #include "hw/misc/unimp.h" #include "hw/usb/imx-usb-phy.h" #include "hw/core/boards.h" @@ -XXX,XX +XXX,XX @@ static void fsl_imx6ul_init(Object *obj) object_initialize_child(obj, name, &s->usb[i], TYPE_CHIPIDEA); } + /* + * LCDIF + */ + object_initialize_child(obj, "lcdif", &s->lcdif, TYPE_IMX6UL_LCDIF); + /* * SDHCIs */ @@ -XXX,XX +XXX,XX @@ static void fsl_imx6ul_realize(DeviceState *dev, Error **errp) /* * LCD */ - create_unimplemented_device("lcdif", FSL_IMX6UL_LCDIF_ADDR, - FSL_IMX6UL_LCDIF_SIZE); + sysbus_realize(SYS_BUS_DEVICE(&s->lcdif), &error_abort); + sysbus_mmio_map(SYS_BUS_DEVICE(&s->lcdif), 0, FSL_IMX6UL_LCDIF_ADDR); + sysbus_connect_irq(SYS_BUS_DEVICE(&s->lcdif), 0, + qdev_get_gpio_in(gic, FSL_IMX6UL_LCDIF_IRQ)); /* * CSU diff --git a/include/hw/arm/fsl-imx6ul.h b/include/hw/arm/fsl-imx6ul.h index XXXXXXX..XXXXXXX 100644 --- a/include/hw/arm/fsl-imx6ul.h +++ b/include/hw/arm/fsl-imx6ul.h @@ -XXX,XX +XXX,XX @@ #include "hw/net/imx_fec.h" #include "hw/usb/chipidea.h" #include "hw/usb/imx-usb-phy.h" +#include "hw/display/imx6ul_lcdif.h" #include "system/memory.h" #include "target/arm/cpu.h" #include "qom/object.h" @@ -XXX,XX +XXX,XX @@ struct FslIMX6ULState { IMX2WdtState wdt[FSL_IMX6UL_NUM_WDTS]; IMXUSBPHYState usbphy[FSL_IMX6UL_NUM_USB_PHYS]; ChipideaState usb[FSL_IMX6UL_NUM_USBS]; + IMX6ULLCDIFState lcdif; MemoryRegion rom; MemoryRegion caam; MemoryRegion ocram; @@ -XXX,XX +XXX,XX @@ enum FslIMX6ULMemoryMap { FSL_IMX6UL_PXP_SIZE = (16 * KiB), FSL_IMX6UL_LCDIF_ADDR = 0x021C8000, - FSL_IMX6UL_LCDIF_SIZE = 0x100, + FSL_IMX6UL_LCDIF_SIZE = (16 * KiB), FSL_IMX6UL_CSI_ADDR = 0x021C4000, FSL_IMX6UL_CSI_SIZE = 0x100, -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> We have a registerfields interface which we can use for defining fields alongside helpers to access them. Define the basic syndrome layout and convert the helpers that take the imm16 data directly. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-2-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 75 ++++++++++++++++++++++++++++++++----------- 1 file changed, 57 insertions(+), 18 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ #ifndef TARGET_ARM_SYNDROME_H #define TARGET_ARM_SYNDROME_H -#include "qemu/bitops.h" +#include "hw/core/registerfields.h" /* Valid Syndrome Register EC field values */ enum arm_exception_class { @@ -XXX,XX +XXX,XX @@ enum arm_exception_class { EC_AA64_BKPT = 0x3c, }; +/* Generic syndrome encoding layout for HSR and lower 32 bits of ESR_EL2 */ +FIELD(SYNDROME, EC, 26, 6) +FIELD(SYNDROME, IL, 25, 1) +FIELD(SYNDROME, ISS, 0, 25) + typedef enum { SME_ET_AccessTrap, SME_ET_Streaming, @@ -XXX,XX +XXX,XX @@ typedef enum { static inline uint32_t syn_get_ec(uint32_t syn) { - return syn >> ARM_EL_EC_SHIFT; + return FIELD_EX32(syn, SYNDROME, EC); } static inline uint32_t syn_set_ec(uint32_t syn, uint32_t ec) { - return deposit32(syn, ARM_EL_EC_SHIFT, ARM_EL_EC_LENGTH, ec); + return FIELD_DP32(syn, SYNDROME, EC, ec); } /* @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_set_ec(uint32_t syn, uint32_t ec) */ static inline uint32_t syn_uncategorized(void) { - return (EC_UNCATEGORIZED << ARM_EL_EC_SHIFT) | ARM_EL_IL; + uint32_t res = syn_set_ec(0, EC_UNCATEGORIZED); + res = FIELD_DP32(res, SYNDROME, IL, 1); + return res; } +FIELD(ISS_IMM16, IMM16, 0, 16) + static inline uint32_t syn_aa64_svc(uint32_t imm16) { - return (EC_AA64_SVC << ARM_EL_EC_SHIFT) | ARM_EL_IL | (imm16 & 0xffff); + uint32_t res = syn_set_ec(0, EC_AA64_SVC); + res = FIELD_DP32(res, SYNDROME, IL, 1); + res = FIELD_DP32(res, ISS_IMM16, IMM16, imm16); + return res; } static inline uint32_t syn_aa64_hvc(uint32_t imm16) { - return (EC_AA64_HVC << ARM_EL_EC_SHIFT) | ARM_EL_IL | (imm16 & 0xffff); + uint32_t res = syn_set_ec(0, EC_AA64_HVC); + res = FIELD_DP32(res, SYNDROME, IL, 1); + res = FIELD_DP32(res, ISS_IMM16, IMM16, imm16); + return res; } static inline uint32_t syn_aa64_smc(uint32_t imm16) { - return (EC_AA64_SMC << ARM_EL_EC_SHIFT) | ARM_EL_IL | (imm16 & 0xffff); + uint32_t res = syn_set_ec(0, EC_AA64_SMC); + res = FIELD_DP32(res, SYNDROME, IL, 1); + res = FIELD_DP32(res, ISS_IMM16, IMM16, imm16); + return res; } static inline uint32_t syn_aa32_svc(uint32_t imm16, bool is_16bit) { - return (EC_AA32_SVC << ARM_EL_EC_SHIFT) | (imm16 & 0xffff) - | (is_16bit ? 0 : ARM_EL_IL); + uint32_t res = syn_set_ec(0, EC_AA32_SVC); + res = FIELD_DP32(res, SYNDROME, IL, is_16bit ? 0 : 1); + res = FIELD_DP32(res, ISS_IMM16, IMM16, imm16); + return res; } static inline uint32_t syn_aa32_hvc(uint32_t imm16) { - return (EC_AA32_HVC << ARM_EL_EC_SHIFT) | ARM_EL_IL | (imm16 & 0xffff); + uint32_t res = syn_set_ec(0, EC_AA32_HVC); + res = FIELD_DP32(res, SYNDROME, IL, 1); + res = FIELD_DP32(res, ISS_IMM16, IMM16, imm16); + return res; } static inline uint32_t syn_aa32_smc(void) { - return (EC_AA32_SMC << ARM_EL_EC_SHIFT) | ARM_EL_IL; + uint32_t res = syn_set_ec(0, EC_AA32_SMC); + res = FIELD_DP32(res, SYNDROME, IL, 1); + return res; } static inline uint32_t syn_aa64_bkpt(uint32_t imm16) { - return (EC_AA64_BKPT << ARM_EL_EC_SHIFT) | ARM_EL_IL | (imm16 & 0xffff); + uint32_t res = syn_set_ec(0, EC_AA64_BKPT); + res = FIELD_DP32(res, SYNDROME, IL, 1); + res = FIELD_DP32(res, ISS_IMM16, IMM16, imm16); + return res; } static inline uint32_t syn_aa32_bkpt(uint32_t imm16, bool is_16bit) { - return (EC_AA32_BKPT << ARM_EL_EC_SHIFT) | (imm16 & 0xffff) - | (is_16bit ? 0 : ARM_EL_IL); + uint32_t res = syn_set_ec(0, EC_AA32_BKPT); + res = FIELD_DP32(res, SYNDROME, IL, is_16bit ? 0 : 1); + res = FIELD_DP32(res, ISS_IMM16, IMM16, imm16); + return res; } static inline uint32_t syn_aa64_sysregtrap(int op0, int op1, int op2, @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_simd_access_trap(int cv, int cond, bool is_16bit) static inline uint32_t syn_sve_access_trap(void) { - return (EC_SVEACCESSTRAP << ARM_EL_EC_SHIFT) | ARM_EL_IL; + uint32_t res = syn_set_ec(0, EC_SVEACCESSTRAP); + res = FIELD_DP32(res, SYNDROME, IL, 1); + return res; } /* @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_wfx(int cv, int cond, int ti, bool is_16bit) static inline uint32_t syn_illegalstate(void) { - return (EC_ILLEGALSTATE << ARM_EL_EC_SHIFT) | ARM_EL_IL; + uint32_t res = syn_set_ec(0, EC_ILLEGALSTATE); + res = FIELD_DP32(res, SYNDROME, IL, 1); + return res; } static inline uint32_t syn_pcalignment(void) { - return (EC_PCALIGNMENT << ARM_EL_EC_SHIFT) | ARM_EL_IL; + uint32_t res = syn_set_ec(0, EC_PCALIGNMENT); + res = FIELD_DP32(res, SYNDROME, IL, 1); + return res; } static inline uint32_t syn_gcs_data_check(GCSInstructionType it, int rn) @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_gcs_gcsstr(int ra, int rn) static inline uint32_t syn_serror(uint32_t extra) { - return (EC_SERROR << ARM_EL_EC_SHIFT) | ARM_EL_IL | extra; + uint32_t res = syn_set_ec(0, EC_SERROR); + res = FIELD_DP32(res, SYNDROME, IL, 1); + res = FIELD_DP32(res, SYNDROME, ISS, extra); + return res; } static inline uint32_t syn_mop(bool is_set, bool is_setg, int options, -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Migrate syn_aa64_sysregtrap and co-processor register trap syndromes to the registerfields API. The co-processor syndromes are split between single and duel register moves. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-3-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 124 ++++++++++++++++++++++++++++++++++-------- 1 file changed, 102 insertions(+), 22 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ enum arm_exception_class { /* Generic syndrome encoding layout for HSR and lower 32 bits of ESR_EL2 */ FIELD(SYNDROME, EC, 26, 6) -FIELD(SYNDROME, IL, 25, 1) +FIELD(SYNDROME, IL, 25, 1) /* IL=1 for 32 bit instructions */ FIELD(SYNDROME, ISS, 0, 25) typedef enum { @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_aa64_smc(uint32_t imm16) static inline uint32_t syn_aa32_svc(uint32_t imm16, bool is_16bit) { uint32_t res = syn_set_ec(0, EC_AA32_SVC); - res = FIELD_DP32(res, SYNDROME, IL, is_16bit ? 0 : 1); + res = FIELD_DP32(res, SYNDROME, IL, !is_16bit); res = FIELD_DP32(res, ISS_IMM16, IMM16, imm16); return res; } @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_aa64_bkpt(uint32_t imm16) static inline uint32_t syn_aa32_bkpt(uint32_t imm16, bool is_16bit) { uint32_t res = syn_set_ec(0, EC_AA32_BKPT); - res = FIELD_DP32(res, SYNDROME, IL, is_16bit ? 0 : 1); + res = FIELD_DP32(res, SYNDROME, IL, !is_16bit); res = FIELD_DP32(res, ISS_IMM16, IMM16, imm16); return res; } +/* + * ISS encoding for an exception from MSR, MRS, or System instruction + * in AArch64 state. + */ +FIELD(SYSREG_ISS, ISREAD, 0, 1) /* Direction, 1 is read */ +FIELD(SYSREG_ISS, CRM, 1, 4) +FIELD(SYSREG_ISS, RT, 5, 5) +FIELD(SYSREG_ISS, CRN, 10, 4) +FIELD(SYSREG_ISS, OP1, 14, 3) +FIELD(SYSREG_ISS, OP2, 17, 3) +FIELD(SYSREG_ISS, OP0, 20, 2) + static inline uint32_t syn_aa64_sysregtrap(int op0, int op1, int op2, int crn, int crm, int rt, int isread) { - return (EC_SYSTEMREGISTERTRAP << ARM_EL_EC_SHIFT) | ARM_EL_IL - | (op0 << 20) | (op2 << 17) | (op1 << 14) | (crn << 10) | (rt << 5) - | (crm << 1) | isread; + uint32_t res = syn_set_ec(0, EC_SYSTEMREGISTERTRAP); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, SYSREG_ISS, OP0, op0); + res = FIELD_DP32(res, SYSREG_ISS, OP2, op2); + res = FIELD_DP32(res, SYSREG_ISS, OP1, op1); + res = FIELD_DP32(res, SYSREG_ISS, CRN, crn); + res = FIELD_DP32(res, SYSREG_ISS, RT, rt); + res = FIELD_DP32(res, SYSREG_ISS, CRM, crm); + res = FIELD_DP32(res, SYSREG_ISS, ISREAD, isread); + + return res; } +/* + * ISS encoding for an exception from an MCR or MRC access + * (move to/from co-processor) + */ +FIELD(COPROC_ISS, ISREAD, 0, 1) +FIELD(COPROC_ISS, CRM, 1, 4) +FIELD(COPROC_ISS, RT, 5, 5) +FIELD(COPROC_ISS, CRN, 10, 4) +FIELD(COPROC_ISS, OP1, 14, 3) +FIELD(COPROC_ISS, OP2, 17, 3) +FIELD(COPROC_ISS, COND, 20, 4) +FIELD(COPROC_ISS, CV, 24, 1) + static inline uint32_t syn_cp14_rt_trap(int cv, int cond, int opc1, int opc2, int crn, int crm, int rt, int isread, bool is_16bit) { - return (EC_CP14RTTRAP << ARM_EL_EC_SHIFT) - | (is_16bit ? 0 : ARM_EL_IL) - | (cv << 24) | (cond << 20) | (opc2 << 17) | (opc1 << 14) - | (crn << 10) | (rt << 5) | (crm << 1) | isread; + uint32_t res = syn_set_ec(0, EC_CP14RTTRAP); + res = FIELD_DP32(res, SYNDROME, IL, !is_16bit); + + res = FIELD_DP32(res, COPROC_ISS, CV, cv); + res = FIELD_DP32(res, COPROC_ISS, COND, cond); + res = FIELD_DP32(res, COPROC_ISS, OP2, opc2); + res = FIELD_DP32(res, COPROC_ISS, OP1, opc1); + res = FIELD_DP32(res, COPROC_ISS, CRN, crn); + res = FIELD_DP32(res, COPROC_ISS, RT, rt); + res = FIELD_DP32(res, COPROC_ISS, CRM, crm); + res = FIELD_DP32(res, COPROC_ISS, ISREAD, isread); + + return res; } static inline uint32_t syn_cp15_rt_trap(int cv, int cond, int opc1, int opc2, int crn, int crm, int rt, int isread, bool is_16bit) { - return (EC_CP15RTTRAP << ARM_EL_EC_SHIFT) - | (is_16bit ? 0 : ARM_EL_IL) - | (cv << 24) | (cond << 20) | (opc2 << 17) | (opc1 << 14) - | (crn << 10) | (rt << 5) | (crm << 1) | isread; + uint32_t res = syn_set_ec(0, EC_CP15RTTRAP); + res = FIELD_DP32(res, SYNDROME, IL, !is_16bit); + + res = FIELD_DP32(res, COPROC_ISS, CV, cv); + res = FIELD_DP32(res, COPROC_ISS, COND, cond); + res = FIELD_DP32(res, COPROC_ISS, OP2, opc2); + res = FIELD_DP32(res, COPROC_ISS, OP1, opc1); + res = FIELD_DP32(res, COPROC_ISS, CRN, crn); + res = FIELD_DP32(res, COPROC_ISS, RT, rt); + res = FIELD_DP32(res, COPROC_ISS, CRM, crm); + res = FIELD_DP32(res, COPROC_ISS, ISREAD, isread); + + return res; } +/* + * ISS encoding for an exception from an MCRR or MRRC access + * (move to/from co-processor with 2 regs) + */ +FIELD(COPROC_R2_ISS, ISREAD, 0, 1) +FIELD(COPROC_R2_ISS, CRM, 1, 4) +FIELD(COPROC_R2_ISS, RT, 5, 5) +FIELD(COPROC_R2_ISS, RT2, 10, 5) +FIELD(COPROC_R2_ISS, OP1, 16, 4) +FIELD(COPROC_R2_ISS, COND, 20, 4) +FIELD(COPROC_R2_ISS, CV, 24, 1) + static inline uint32_t syn_cp14_rrt_trap(int cv, int cond, int opc1, int crm, int rt, int rt2, int isread, bool is_16bit) { - return (EC_CP14RRTTRAP << ARM_EL_EC_SHIFT) - | (is_16bit ? 0 : ARM_EL_IL) - | (cv << 24) | (cond << 20) | (opc1 << 16) - | (rt2 << 10) | (rt << 5) | (crm << 1) | isread; + uint32_t res = syn_set_ec(0, EC_CP14RRTTRAP); + res = FIELD_DP32(res, SYNDROME, IL, !is_16bit); + + res = FIELD_DP32(res, COPROC_R2_ISS, CV, cv); + res = FIELD_DP32(res, COPROC_R2_ISS, COND, cond); + res = FIELD_DP32(res, COPROC_R2_ISS, OP1, opc1); + res = FIELD_DP32(res, COPROC_R2_ISS, RT2, rt2); + res = FIELD_DP32(res, COPROC_R2_ISS, RT, rt); + res = FIELD_DP32(res, COPROC_R2_ISS, CRM, crm); + res = FIELD_DP32(res, COPROC_R2_ISS, ISREAD, isread); + + return res; } static inline uint32_t syn_cp15_rrt_trap(int cv, int cond, int opc1, int crm, int rt, int rt2, int isread, bool is_16bit) { - return (EC_CP15RRTTRAP << ARM_EL_EC_SHIFT) - | (is_16bit ? 0 : ARM_EL_IL) - | (cv << 24) | (cond << 20) | (opc1 << 16) - | (rt2 << 10) | (rt << 5) | (crm << 1) | isread; + uint32_t res = syn_set_ec(0, EC_CP15RRTTRAP); + res = FIELD_DP32(res, SYNDROME, IL, !is_16bit); + + res = FIELD_DP32(res, COPROC_R2_ISS, CV, cv); + res = FIELD_DP32(res, COPROC_R2_ISS, COND, cond); + res = FIELD_DP32(res, COPROC_R2_ISS, OP1, opc1); + res = FIELD_DP32(res, COPROC_R2_ISS, RT2, rt2); + res = FIELD_DP32(res, COPROC_R2_ISS, RT, rt); + res = FIELD_DP32(res, COPROC_R2_ISS, CRM, crm); + res = FIELD_DP32(res, COPROC_R2_ISS, ISREAD, isread); + + return res; } static inline uint32_t syn_fp_access_trap(int cv, int cond, bool is_16bit, -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> The syn_simd_access trap was never used so remove it. We should only see the COPROC encoding on v7 architectures. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-4-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 25 +++++++++++++++---------- 1 file changed, 15 insertions(+), 10 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_cp15_rrt_trap(int cv, int cond, int opc1, int crm, return res; } +/* + * ISS encoding for an exception from an access to a register of + * instruction resulting from the FPEN or TFP traps. + */ +FIELD(FP_ISS, COPROC, 0, 4) /* ARMv7 only */ +FIELD(FP_ISS, COND, 20, 4) +FIELD(FP_ISS, CV, 24, 1) + static inline uint32_t syn_fp_access_trap(int cv, int cond, bool is_16bit, int coproc) { /* AArch32 FP trap or any AArch64 FP/SIMD trap: TA == 0 */ - return (EC_ADVSIMDFPACCESSTRAP << ARM_EL_EC_SHIFT) - | (is_16bit ? 0 : ARM_EL_IL) - | (cv << 24) | (cond << 20) | coproc; -} + uint32_t res = syn_set_ec(0, EC_ADVSIMDFPACCESSTRAP); + res = FIELD_DP32(res, SYNDROME, IL, !is_16bit); -static inline uint32_t syn_simd_access_trap(int cv, int cond, bool is_16bit) -{ - /* AArch32 SIMD trap: TA == 1 coproc == 0 */ - return (EC_ADVSIMDFPACCESSTRAP << ARM_EL_EC_SHIFT) - | (is_16bit ? 0 : ARM_EL_IL) - | (cv << 24) | (cond << 20) | (1 << 5); + res = FIELD_DP32(res, FP_ISS, CV, cv); + res = FIELD_DP32(res, FP_ISS, COND, cond); + res = FIELD_DP32(res, FP_ISS, COPROC, coproc); + + return res; } static inline uint32_t syn_sve_access_trap(void) -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> For simplicity keep the OP as a two bit field rather than the two interlinked fields in the docs (ERET/ERETA). Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-5-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 11 ++++++++++- 1 file changed, 10 insertions(+), 1 deletion(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_sve_access_trap(void) } /* + * ISS encoding for an exception from an ERET, ERETAA or ERETAB + * instructions. + * * eret_op is bits [1:0] of the ERET instruction, so: * 0 for ERET, 2 for ERETAA, 3 for ERETAB. */ +FIELD(ERET_ISS, OP, 0, 2) + static inline uint32_t syn_erettrap(int eret_op) { - return (EC_ERETTRAP << ARM_EL_EC_SHIFT) | ARM_EL_IL | eret_op; + uint32_t res = syn_set_ec(0, EC_ERETTRAP); + res = FIELD_DP32(res, SYNDROME, IL, 1); + res = FIELD_DP32(res, ERET_ISS, OP, eret_op); + + return res; } static inline uint32_t syn_smetrap(SMEExceptionType etype, bool is_16bit) -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-6-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 12 ++++++++++-- 1 file changed, 10 insertions(+), 2 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_erettrap(int eret_op) return res; } +/* + * ISS encoding for an exception due to SME functionality + */ +FIELD(SME_ISS, SMTC, 0, 2) + static inline uint32_t syn_smetrap(SMEExceptionType etype, bool is_16bit) { - return (EC_SMETRAP << ARM_EL_EC_SHIFT) - | (is_16bit ? 0 : ARM_EL_IL) | etype; + uint32_t res = syn_set_ec(0, EC_SMETRAP); + res = FIELD_DP32(res, SYNDROME, IL, !is_16bit); + res = FIELD_DP32(res, SME_ISS, SMTC, etype); + + return res; } static inline uint32_t syn_pacfail(bool data, int keynumber) -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> syn_pactrap is fairly simple as the ISS is all RES0. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-7-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 23 ++++++++++++++++++++--- 1 file changed, 20 insertions(+), 3 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_smetrap(SMEExceptionType etype, bool is_16bit) return res; } +/* + * ISS encoding for a PAC Fail exceptions + */ +FIELD(PACFAIL_ISS, BnA, 0, 1) /* B key or A key */ +FIELD(PACFAIL_ISS, DnI, 1, 1) /* Data or Instruction */ + static inline uint32_t syn_pacfail(bool data, int keynumber) { - int error_code = (data << 1) | keynumber; - return (EC_PACFAIL << ARM_EL_EC_SHIFT) | ARM_EL_IL | error_code; + uint32_t res = syn_set_ec(0, EC_PACFAIL); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, PACFAIL_ISS, DnI, data); + res = FIELD_DP32(res, PACFAIL_ISS, BnA, keynumber); + + return res; } +/* + * ISS encoding for an exception from a trapped Pointer + * Authentication instruction is RES0 + */ static inline uint32_t syn_pactrap(void) { - return (EC_PACTRAP << ARM_EL_EC_SHIFT) | ARM_EL_IL; + uint32_t res = syn_set_ec(0, EC_PACTRAP); + res = FIELD_DP32(res, SYNDROME, IL, 1); + return res; } static inline uint32_t syn_btitrap(int btype) -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-8-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 11 ++++++++++- 1 file changed, 10 insertions(+), 1 deletion(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_pactrap(void) return res; } +/* + * ISS encoding for an exception from a Branch Target Identification + * instruction. + */ +FIELD(BTI_ISS, BTYPE, 0, 2) + static inline uint32_t syn_btitrap(int btype) { - return (EC_BTITRAP << ARM_EL_EC_SHIFT) | ARM_EL_IL | btype; + uint32_t res = syn_set_ec(0, EC_BTITRAP); + res = FIELD_DP32(res, SYNDROME, IL, 1); + res = FIELD_DP32(res, BTI_ISS, BTYPE, btype); + return res; } static inline uint32_t syn_bxjtrap(int cv, int cond, int rm) -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> This is an Armv7 specific syndrome for chips with Jazelle functionality. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-9-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 20 ++++++++++++++++++-- 1 file changed, 18 insertions(+), 2 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_btitrap(int btype) return res; } +/* + * ISS encoding for trapped BXJ execution + * + * This is an Armv7 encoding. + */ +FIELD(BXJ_ISS, RM, 0, 4) +/* bits 4:19 are Reserved, UNK/SBZP */ +FIELD(BXJ_ISS, COND, 20, 4) +FIELD(BXJ_ISS, CV, 24, 1) + static inline uint32_t syn_bxjtrap(int cv, int cond, int rm) { - return (EC_BXJTRAP << ARM_EL_EC_SHIFT) | ARM_EL_IL | - (cv << 24) | (cond << 20) | rm; + uint32_t res = syn_set_ec(0, EC_BXJTRAP); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, BXJ_ISS, CV, cv); + res = FIELD_DP32(res, BXJ_ISS, COND, cond); + res = FIELD_DP32(res, BXJ_ISS, RM, rm); + + return res; } static inline uint32_t syn_gpc(int s2ptw, int ind, int gpcsc, int vncr, -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-10-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 30 +++++++++++++++++++++++++++--- 1 file changed, 27 insertions(+), 3 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_bxjtrap(int cv, int cond, int rm) return res; } +/* + * ISS encoding for a Granule Protection Check exception + * + * These are only reported to EL3 + */ +FIELD(GPC_ISS, xFSC, 0, 6) +FIELD(GPC_ISS, WnR, 6, 1) /* Write not Read */ +FIELD(GPC_ISS, S1PTW, 7, 1) +FIELD(GPC_ISS, CM, 8, 1) +FIELD(GPC_ISS, VNCR, 13, 1) +FIELD(GPC_ISS, GPCSC, 14, 6) +FIELD(GPC_ISS, InD, 20, 1) /* Instruction not Data access */ +FIELD(GPC_ISS, S2PTW, 21, 1) + static inline uint32_t syn_gpc(int s2ptw, int ind, int gpcsc, int vncr, int cm, int s1ptw, int wnr, int fsc) { - return (EC_GPC << ARM_EL_EC_SHIFT) | ARM_EL_IL | (s2ptw << 21) - | (ind << 20) | (gpcsc << 14) | (vncr << 13) | (cm << 8) - | (s1ptw << 7) | (wnr << 6) | fsc; + uint32_t res = syn_set_ec(0, EC_GPC); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, GPC_ISS, S2PTW, s2ptw); + res = FIELD_DP32(res, GPC_ISS, InD, ind); + res = FIELD_DP32(res, GPC_ISS, GPCSC, gpcsc); + res = FIELD_DP32(res, GPC_ISS, VNCR, vncr); + res = FIELD_DP32(res, GPC_ISS, CM, cm); + res = FIELD_DP32(res, GPC_ISS, S1PTW, s1ptw); + res = FIELD_DP32(res, GPC_ISS, WnR, wnr); + res = FIELD_DP32(res, GPC_ISS, xFSC, fsc); + + return res; } static inline uint32_t syn_insn_abort(int same_el, int ea, int s1ptw, int fsc) -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Migrate syn_insn_abort and syn_data_abort_* to the registerfields API. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Tested-by: Philippe Mathieu-Daudé <philmd@linaro.org> Message-id: 20260422125250.1303100-11-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 87 ++++++++++++++++++++++++++++++++++++------- 1 file changed, 74 insertions(+), 13 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_gpc(int s2ptw, int ind, int gpcsc, int vncr, return res; } +/* + * ISS encoding for an exception from an Instruction Abort + * + * (aka instruction abort) + */ +FIELD(IABORT_ISS, IFSC, 0, 6) +FIELD(IABORT_ISS, S1PTW, 7, 1) +FIELD(IABORT_ISS, EA, 9, 1) +FIELD(IABORT_ISS, FnV, 10, 1) /* FAR not Valid */ +FIELD(IABORT_ISS, SET, 11, 2) +FIELD(IABORT_ISS, PFV, 14, 1) +FIELD(IABORT_ISS, TopLevel, 21, 1) /* FEAT_THE */ + static inline uint32_t syn_insn_abort(int same_el, int ea, int s1ptw, int fsc) { - return (EC_INSNABORT << ARM_EL_EC_SHIFT) | (same_el << ARM_EL_EC_SHIFT) - | ARM_EL_IL | (ea << 9) | (s1ptw << 7) | fsc; + uint32_t res = syn_set_ec(0, EC_INSNABORT + same_el); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, IABORT_ISS, EA, ea); + res = FIELD_DP32(res, IABORT_ISS, S1PTW, s1ptw); + res = FIELD_DP32(res, IABORT_ISS, IFSC, fsc); + + return res; } +/* + * ISS encoding for an exception from a Data Abort + */ +FIELD(DABORT_ISS, DFSC, 0, 6) +FIELD(DABORT_ISS, WNR, 6, 1) +FIELD(DABORT_ISS, S1PTW, 7, 1) +FIELD(DABORT_ISS, CM, 8, 1) +FIELD(DABORT_ISS, EA, 9, 1) +FIELD(DABORT_ISS, FnV, 10, 1) +FIELD(DABORT_ISS, LST, 11, 2) +FIELD(DABORT_ISS, VNCR, 13, 1) +FIELD(DABORT_ISS, AR, 14, 1) +FIELD(DABORT_ISS, SF, 15, 1) +FIELD(DABORT_ISS, SRT, 16, 5) +FIELD(DABORT_ISS, SSE, 21, 1) +FIELD(DABORT_ISS, SAS, 22, 2) +FIELD(DABORT_ISS, ISV, 24, 1) + static inline uint32_t syn_data_abort_no_iss(int same_el, int fnv, int ea, int cm, int s1ptw, int wnr, int fsc) { - return (EC_DATAABORT << ARM_EL_EC_SHIFT) | (same_el << ARM_EL_EC_SHIFT) - | ARM_EL_IL - | (fnv << 10) | (ea << 9) | (cm << 8) | (s1ptw << 7) - | (wnr << 6) | fsc; + uint32_t res = syn_set_ec(0, EC_DATAABORT + same_el); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, DABORT_ISS, FnV, fnv); + res = FIELD_DP32(res, DABORT_ISS, EA, ea); + res = FIELD_DP32(res, DABORT_ISS, CM, cm); + res = FIELD_DP32(res, DABORT_ISS, S1PTW, s1ptw); + res = FIELD_DP32(res, DABORT_ISS, WNR, wnr); + res = FIELD_DP32(res, DABORT_ISS, DFSC, fsc); + + return res; } static inline uint32_t syn_data_abort_with_iss(int same_el, @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_data_abort_with_iss(int same_el, int wnr, int fsc, bool is_16bit) { - return (EC_DATAABORT << ARM_EL_EC_SHIFT) | (same_el << ARM_EL_EC_SHIFT) - | (is_16bit ? 0 : ARM_EL_IL) - | ARM_EL_ISV | (sas << 22) | (sse << 21) | (srt << 16) - | (sf << 15) | (ar << 14) - | (ea << 9) | (cm << 8) | (s1ptw << 7) | (wnr << 6) | fsc; + uint32_t res = syn_set_ec(0, EC_DATAABORT + same_el); + res = FIELD_DP32(res, SYNDROME, IL, !is_16bit); + + res = FIELD_DP32(res, DABORT_ISS, ISV, 1); + res = FIELD_DP32(res, DABORT_ISS, SAS, sas); + res = FIELD_DP32(res, DABORT_ISS, SSE, sse); + res = FIELD_DP32(res, DABORT_ISS, SRT, srt); + res = FIELD_DP32(res, DABORT_ISS, SF, sf); + res = FIELD_DP32(res, DABORT_ISS, AR, ar); + res = FIELD_DP32(res, DABORT_ISS, EA, ea); + res = FIELD_DP32(res, DABORT_ISS, CM, cm); + res = FIELD_DP32(res, DABORT_ISS, S1PTW, s1ptw); + res = FIELD_DP32(res, DABORT_ISS, WNR, wnr); + res = FIELD_DP32(res, DABORT_ISS, DFSC, fsc); + + return res; } /* @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_data_abort_with_iss(int same_el, */ static inline uint32_t syn_data_abort_vncr(int ea, int wnr, int fsc) { - return (EC_DATAABORT << ARM_EL_EC_SHIFT) | (1 << ARM_EL_EC_SHIFT) - | ARM_EL_IL | ARM_EL_VNCR | (wnr << 6) | fsc; + uint32_t res = syn_set_ec(0, EC_DATAABORT_SAME_EL); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, DABORT_ISS, VNCR, 1); + res = FIELD_DP32(res, DABORT_ISS, WNR, wnr); + res = FIELD_DP32(res, DABORT_ISS, DFSC, fsc); + + return res; } static inline uint32_t syn_swstep(int same_el, int isv, int ex) -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Migrate syn_swstep, syn_watchpoint and syn_breakpoint to the registerfields API. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-12-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 54 ++++++++++++++++++++++++++++++++++++++----- 1 file changed, 48 insertions(+), 6 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_data_abort_vncr(int ea, int wnr, int fsc) return res; } +/* + * ISS encoding for an exception from a Software Step exception. + */ +FIELD(SOFTSTEP_ISS, IFSC, 0, 6) +FIELD(SOFTSTEP_ISS, EX, 6, 1) +FIELD(SOFTSTEP_ISS, ISV, 24, 1) + static inline uint32_t syn_swstep(int same_el, int isv, int ex) { - return (EC_SOFTWARESTEP << ARM_EL_EC_SHIFT) | (same_el << ARM_EL_EC_SHIFT) - | ARM_EL_IL | (isv << 24) | (ex << 6) | 0x22; + uint32_t res = syn_set_ec(0, EC_SOFTWARESTEP + same_el); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, SOFTSTEP_ISS, ISV, isv); + res = FIELD_DP32(res, SOFTSTEP_ISS, EX, ex); + res = FIELD_DP32(res, SOFTSTEP_ISS, IFSC, 0x22); + + return res; } +/* + * ISS encoding for an exception from a Watchpoint exception + */ +FIELD(WATCHPOINT_ISS, DFSC, 0, 6) +FIELD(WATCHPOINT_ISS, WNR, 6, 1) +FIELD(WATCHPOINT_ISS, CM, 8, 1) +FIELD(WATCHPOINT_ISS, FnV, 10, 1) +FIELD(WATCHPOINT_ISS, VNCR, 13, 1) /* FEAT_NV2 */ +FIELD(WATCHPOINT_ISS, FnP, 15, 1) +FIELD(WATCHPOINT_ISS, WPF, 16, 1) +/* bellow mandatory from FEAT_Debugv8p9 */ +FIELD(WATCHPOINT_ISS, WPTV, 17, 1) /* FEAT_Debugv8p2 - WPT valid */ +FIELD(WATCHPOINT_ISS, WPT, 18, 6) /* FEAT_Debugv8p2 - missing WP number */ + static inline uint32_t syn_watchpoint(int same_el, int cm, int wnr) { - return (EC_WATCHPOINT << ARM_EL_EC_SHIFT) | (same_el << ARM_EL_EC_SHIFT) - | ARM_EL_IL | (cm << 8) | (wnr << 6) | 0x22; + uint32_t res = syn_set_ec(0, EC_WATCHPOINT + same_el); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, WATCHPOINT_ISS, CM, cm); + res = FIELD_DP32(res, WATCHPOINT_ISS, WNR, wnr); + res = FIELD_DP32(res, WATCHPOINT_ISS, DFSC, 0x22); + + return res; } +/* + * ISS encoding for an exception from a Breakpoint or a Vector Catch + * debug exception. + */ +FIELD(BREAKPOINT_ISS, IFSC, 0, 6) + static inline uint32_t syn_breakpoint(int same_el) { - return (EC_BREAKPOINT << ARM_EL_EC_SHIFT) | (same_el << ARM_EL_EC_SHIFT) - | ARM_EL_IL | 0x22; + uint32_t res = syn_set_ec(0, EC_BREAKPOINT + same_el); + res = FIELD_DP32(res, SYNDROME, IL, 1); + res = FIELD_DP32(res, BREAKPOINT_ISS, IFSC, 0x22); + + return res; } static inline uint32_t syn_wfx(int cv, int cond, int ti, bool is_16bit) -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> This will help later when we expand the fields we report. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-13-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 20 +++++++++++++++++--- 1 file changed, 17 insertions(+), 3 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_breakpoint(int same_el) return res; } +/* + * ISS encoding for an exception from a WF* instruction + */ +FIELD(WFX_ISS, TI, 0, 2) +FIELD(WFX_ISS, RV, 2, 1) +FIELD(WFX_ISS, RN, 5, 5) +FIELD(WFX_ISS, COND, 20, 4) +FIELD(WFX_ISS, CV, 24, 1) + static inline uint32_t syn_wfx(int cv, int cond, int ti, bool is_16bit) { - return (EC_WFX_TRAP << ARM_EL_EC_SHIFT) | - (is_16bit ? 0 : (1 << ARM_EL_IL_SHIFT)) | - (cv << 24) | (cond << 20) | ti; + uint32_t res = syn_set_ec(0, EC_WFX_TRAP); + res = FIELD_DP32(res, SYNDROME, IL, !is_16bit); + + res = FIELD_DP32(res, WFX_ISS, CV, cv); + res = FIELD_DP32(res, WFX_ISS, COND, cond); + res = FIELD_DP32(res, WFX_ISS, TI, ti); + + return res; } static inline uint32_t syn_illegalstate(void) -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Tweak arg names to make it clear raddr is the data address register number. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-14-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 39 +++++++++++++++++++++++++++++++++------ 1 file changed, 33 insertions(+), 6 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_pcalignment(void) return res; } +/* + * ISS encoding for a GCS exception + * + * Field validity depends on EXTYPE + */ +FIELD(GCS_ISS, IT, 0, 5) +FIELD(GCS_ISS, RN, 5, 5) /* only for non EXLOCK exceptions */ +FIELD(GCS_ISS, RADDR, 10, 5) /* only for GCSSTR/GCSSTTR traps */ +FIELD(GCS_ISS, EXTYPE, 20, 4) + static inline uint32_t syn_gcs_data_check(GCSInstructionType it, int rn) { - return ((EC_GCS << ARM_EL_EC_SHIFT) | ARM_EL_IL | - (GCS_ET_DataCheck << 20) | (rn << 5) | it); + uint32_t res = syn_set_ec(0, EC_GCS); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, GCS_ISS, EXTYPE, GCS_ET_DataCheck); + res = FIELD_DP32(res, GCS_ISS, RN, rn); + res = FIELD_DP32(res, GCS_ISS, IT, it); + + return res; } static inline uint32_t syn_gcs_exlock(void) { - return (EC_GCS << ARM_EL_EC_SHIFT) | ARM_EL_IL | (GCS_ET_EXLOCK << 20); + uint32_t res = syn_set_ec(0, EC_GCS); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, GCS_ISS, EXTYPE, GCS_ET_EXLOCK); + + return res; } -static inline uint32_t syn_gcs_gcsstr(int ra, int rn) +static inline uint32_t syn_gcs_gcsstr(int raddr, int rn) { - return ((EC_GCS << ARM_EL_EC_SHIFT) | ARM_EL_IL | - (GCS_ET_GCSSTR_GCSSTTR << 20) | (ra << 10) | (rn << 5)); + uint32_t res = syn_set_ec(0, EC_GCS); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, GCS_ISS, EXTYPE, GCS_ET_GCSSTR_GCSSTTR); + res = FIELD_DP32(res, GCS_ISS, RADDR, raddr); + res = FIELD_DP32(res, GCS_ISS, RN, rn); + + return res; } static inline uint32_t syn_serror(uint32_t extra) -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-15-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 33 +++++++++++++++++++++++++++++---- 1 file changed, 29 insertions(+), 4 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_serror(uint32_t extra) return res; } +/* + * ISS encoding for an exception from the Memory Copy and Memory Set + * instructions. + */ +FIELD(MOP_ISS, SIZEREG, 0, 5) +FIELD(MOP_ISS, SRCREG, 5, 5) +FIELD(MOP_ISS, DESTREG, 10, 5) +FIELD(MOP_ISS, FORMATOPT, 16, 2) +FIELD(MOP_ISS, OPT_A, 16, 1) +FIELD(MOP_ISS, WRONG_OPT, 17, 1) +FIELD(MOP_ISS, EPILOGUE, 18, 1) +FIELD(MOP_ISS, OPTIONS, 19, 4) +FIELD(MOP_ISS, IS_SETG, 23, 1) +FIELD(MOP_ISS, MEMINST, 24, 1) + static inline uint32_t syn_mop(bool is_set, bool is_setg, int options, bool epilogue, bool wrong_option, bool option_a, int destreg, int srcreg, int sizereg) { - return (EC_MOP << ARM_EL_EC_SHIFT) | ARM_EL_IL | - (is_set << 24) | (is_setg << 23) | (options << 19) | - (epilogue << 18) | (wrong_option << 17) | (option_a << 16) | - (destreg << 10) | (srcreg << 5) | sizereg; + uint32_t res = syn_set_ec(0, EC_MOP); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, MOP_ISS, MEMINST, is_set); + res = FIELD_DP32(res, MOP_ISS, IS_SETG, is_setg); + res = FIELD_DP32(res, MOP_ISS, OPTIONS, options); + res = FIELD_DP32(res, MOP_ISS, EPILOGUE, epilogue); + res = FIELD_DP32(res, MOP_ISS, WRONG_OPT, wrong_option); + res = FIELD_DP32(res, MOP_ISS, OPT_A, option_a); + res = FIELD_DP32(res, MOP_ISS, DESTREG, destreg); + res = FIELD_DP32(res, MOP_ISS, SRCREG, srcreg); + res = FIELD_DP32(res, MOP_ISS, SIZEREG, sizereg); + + return res; } -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> It shares the same COPROC_ISS encoding as the other CP traps although not all the fields are used. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-16-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 16 ++++++++++++++++ target/arm/tcg/vfp_helper.c | 5 +---- 2 files changed, 17 insertions(+), 4 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ FIELD(COPROC_ISS, OP2, 17, 3) FIELD(COPROC_ISS, COND, 20, 4) FIELD(COPROC_ISS, CV, 24, 1) +static inline uint32_t syn_cp10_rt_trap(int cv, int cond, int opc1, + int crn, int rt, int isread) +{ + uint32_t res = syn_set_ec(0, EC_FPIDTRAP); + res = FIELD_DP32(res, SYNDROME, IL, 1); + + res = FIELD_DP32(res, COPROC_ISS, CV, cv); + res = FIELD_DP32(res, COPROC_ISS, COND, cond); + res = FIELD_DP32(res, COPROC_ISS, OP1, opc1); + res = FIELD_DP32(res, COPROC_ISS, CRN, crn); + res = FIELD_DP32(res, COPROC_ISS, RT, rt); + res = FIELD_DP32(res, COPROC_ISS, ISREAD, isread); + + return res; +} + static inline uint32_t syn_cp14_rt_trap(int cv, int cond, int opc1, int opc2, int crn, int crm, int rt, int isread, bool is_16bit) diff --git a/target/arm/tcg/vfp_helper.c b/target/arm/tcg/vfp_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/vfp_helper.c +++ b/target/arm/tcg/vfp_helper.c @@ -XXX,XX +XXX,XX @@ void HELPER(check_hcr_el2_trap)(CPUARMState *env, uint32_t rt, uint32_t reg) g_assert_not_reached(); } - syndrome = ((EC_FPIDTRAP << ARM_EL_EC_SHIFT) - | ARM_EL_IL - | (1 << 24) | (0xe << 20) | (7 << 14) - | (reg << 10) | (rt << 5) | 1); + syndrome = syn_cp10_rt_trap(1, 0xe, 7, reg, rt, 1); raise_exception(env, EXCP_HYP_TRAP, syndrome, 2); } -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> One more step towards dropping the old #defines. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-17-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/helper.c | 4 ++-- 1 file changed, 2 insertions(+), 2 deletions(-) diff --git a/target/arm/helper.c b/target/arm/helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/helper.c +++ b/target/arm/helper.c @@ -XXX,XX +XXX,XX @@ static void arm_cpu_do_interrupt_aarch32_hyp(CPUState *cs) */ if (cs->exception_index == EXCP_PREFETCH_ABORT || (cs->exception_index == EXCP_DATA_ABORT && - !(env->exception.syndrome & ARM_EL_ISV)) || + !FIELD_EX32(env->exception.syndrome, SYNDROME, IL)) || syn_get_ec(env->exception.syndrome) == EC_UNCATEGORIZED) { - env->exception.syndrome &= ~ARM_EL_IL; + env->exception.syndrome = FIELD_DP32(env->exception.syndrome, SYNDROME, IL, 0); } } env->cp15.esr_el[2] = env->exception.syndrome; -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> This removes the last use of ARM_EL_EC_SHIFT. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-18-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 1 - target/arm/tcg/debug.c | 2 +- 2 files changed, 1 insertion(+), 2 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ typedef enum { } GCSInstructionType; #define ARM_EL_EC_LENGTH 6 -#define ARM_EL_EC_SHIFT 26 #define ARM_EL_IL_SHIFT 25 #define ARM_EL_ISV_SHIFT 24 #define ARM_EL_IL (1 << ARM_EL_IL_SHIFT) diff --git a/target/arm/tcg/debug.c b/target/arm/tcg/debug.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/debug.c +++ b/target/arm/tcg/debug.c @@ -XXX,XX +XXX,XX @@ raise_exception_debug(CPUARMState *env, uint32_t excp, uint32_t syndrome) * Similarly for watchpoint and breakpoint matches. */ assert(debug_el >= cur_el); - syndrome |= (debug_el == cur_el) << ARM_EL_EC_SHIFT; + syndrome |= (debug_el == cur_el) << R_SYNDROME_EC_SHIFT; raise_exception(env, excp, syndrome, debug_el); } -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Rather than open coding a bunch of shifts and masks we can use the syndrome definitions. While we are at it assert it really is a EC_DATAABORT. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-19-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/whpx/whpx-all.c | 13 +++++++------ 1 file changed, 7 insertions(+), 6 deletions(-) diff --git a/target/arm/whpx/whpx-all.c b/target/arm/whpx/whpx-all.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/whpx/whpx-all.c +++ b/target/arm/whpx/whpx-all.c @@ -XXX,XX +XXX,XX @@ static int whpx_handle_mmio(CPUState *cpu, WHV_MEMORY_ACCESS_CONTEXT *ctx) { uint64_t syndrome = ctx->Syndrome; - bool isv = syndrome & ARM_EL_ISV; - bool iswrite = (syndrome >> 6) & 1; - bool sse = (syndrome >> 21) & 1; - uint32_t sas = (syndrome >> 22) & 3; + bool isv = FIELD_EX32(syndrome, DABORT_ISS, ISV); + bool iswrite = FIELD_EX32(syndrome, DABORT_ISS, WNR); + bool sse = FIELD_EX32(syndrome, DABORT_ISS, SSE); + uint32_t sas = FIELD_EX32(syndrome, DABORT_ISS, SAS); uint32_t len = 1 << sas; - uint32_t srt = (syndrome >> 16) & 0x1f; - uint32_t cm = (syndrome >> 8) & 0x1; + uint32_t srt = FIELD_EX32(syndrome, DABORT_ISS, SRT); + uint32_t cm = FIELD_EX32(syndrome, DABORT_ISS, CM); uint64_t val = 0; + assert(syn_get_ec(syndrome) == EC_DATAABORT); assert(!cm); assert(isv); -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Rather than open coding a bunch of shifts and masks we can use the syndrome definitions. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Tested-by: Philippe Mathieu-Daudé <philmd@linaro.org> Message-id: 20260422125250.1303100-20-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/hvf/hvf.c | 14 +++++++------- 1 file changed, 7 insertions(+), 7 deletions(-) diff --git a/target/arm/hvf/hvf.c b/target/arm/hvf/hvf.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/hvf/hvf.c +++ b/target/arm/hvf/hvf.c @@ -XXX,XX +XXX,XX @@ static int hvf_handle_exception(CPUState *cpu, hv_vcpu_exit_exception_t *excp) break; } case EC_DATAABORT: { - bool isv = syndrome & ARM_EL_ISV; - bool iswrite = (syndrome >> 6) & 1; - bool s1ptw = (syndrome >> 7) & 1; - bool sse = (syndrome >> 21) & 1; - uint32_t sas = (syndrome >> 22) & 3; + bool isv = FIELD_EX32(syndrome, DABORT_ISS, ISV); + bool iswrite = FIELD_EX32(syndrome, DABORT_ISS, WNR); + bool s1ptw = FIELD_EX32(syndrome, DABORT_ISS, S1PTW); + bool sse = FIELD_EX32(syndrome, DABORT_ISS, SSE); + uint32_t sas = FIELD_EX32(syndrome, DABORT_ISS, SAS); uint32_t len = 1 << sas; - uint32_t srt = (syndrome >> 16) & 0x1f; - uint32_t cm = (syndrome >> 8) & 0x1; + uint32_t srt = FIELD_EX32(syndrome, DABORT_ISS, SRT); + uint32_t cm = FIELD_EX32(syndrome, DABORT_ISS, CM); uint64_t val = 0; uint64_t ipa = excp->physical_address; AddressSpace *as = cpu_get_address_space(cpu, ARMASIdx_NS); -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> One more step to removing the old defines. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-21-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/tcg/tlb_helper.c | 2 +- 1 file changed, 1 insertion(+), 1 deletion(-) diff --git a/target/arm/tcg/tlb_helper.c b/target/arm/tcg/tlb_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/tlb_helper.c +++ b/target/arm/tcg/tlb_helper.c @@ -XXX,XX +XXX,XX @@ static inline uint64_t merge_syn_data_abort(uint32_t template_syn, */ assert(!fi->stage2); syn = syn_data_abort_vncr(fi->ea, is_write, fsc); - } else if (!(template_syn & ARM_EL_ISV) || target_el != 2 + } else if (!FIELD_EX32(template_syn, DABORT_ISS, ISV) || target_el != 2 || fi->s1ptw || !fi->stage2) { syn = syn_data_abort_no_iss(same_el, 0, fi->ea, 0, fi->s1ptw, is_write, fsc); -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> These are only valid for data abort syndromes. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-22-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/tcg/tlb_helper.c | 4 ++-- 1 file changed, 2 insertions(+), 2 deletions(-) diff --git a/target/arm/tcg/tlb_helper.c b/target/arm/tcg/tlb_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/tlb_helper.c +++ b/target/arm/tcg/tlb_helper.c @@ -XXX,XX +XXX,XX @@ static inline uint64_t merge_syn_data_abort(uint32_t template_syn, * ST64BV, or ST64BV0 insns report syndrome info even for stage-1 * faults and regardless of the target EL. */ - if (template_syn & ARM_EL_VNCR) { + if (FIELD_EX32(template_syn, DABORT_ISS, VNCR)) { /* * FEAT_NV2 faults on accesses via VNCR_EL2 are a special case: * they are always reported as "same EL", even though we are going @@ -XXX,XX +XXX,XX @@ void arm_deliver_fault(ARMCPU *cpu, vaddr addr, * because we masked that out in disas_set_insn_syndrome()) */ bool is_vncr = (access_type != MMU_INST_FETCH) && - (env->exception.syndrome & ARM_EL_VNCR); + FIELD_EX32(env->exception.syndrome, DABORT_ISS, VNCR); if (is_vncr) { /* FEAT_NV2 faults on accesses via VNCR_EL2 go to EL2 */ -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Now everything is defined with registerfields we can drop the old defines. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-23-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 9 --------- 1 file changed, 9 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ typedef enum { GCS_IT_GCSPOPX = 9, } GCSInstructionType; -#define ARM_EL_EC_LENGTH 6 -#define ARM_EL_IL_SHIFT 25 -#define ARM_EL_ISV_SHIFT 24 -#define ARM_EL_IL (1 << ARM_EL_IL_SHIFT) -#define ARM_EL_ISV (1 << ARM_EL_ISV_SHIFT) - -/* In the Data Abort syndrome */ -#define ARM_EL_VNCR (1 << 13) - static inline uint32_t syn_get_ec(uint32_t syn) { return FIELD_EX32(syn, SYNDROME, EC); -- 2.43.0
From: Alex Bennée <alex.bennee@linaro.org> Pass the register number (rd) to the wfit helper and report it in the syndrome ISS. Reviewed-by: Richard Henderson <richard.henderson@linaro.org> Signed-off-by: Alex Bennée <alex.bennee@linaro.org> Message-id: 20260422125250.1303100-24-alex.bennee@linaro.org Signed-off-by: Peter Maydell <peter.maydell@linaro.org> --- target/arm/syndrome.h | 11 ++++++++++- target/arm/tcg/helper-defs.h | 2 +- target/arm/tcg/op_helper.c | 7 ++++--- target/arm/tcg/translate-a64.c | 2 +- 4 files changed, 16 insertions(+), 6 deletions(-) diff --git a/target/arm/syndrome.h b/target/arm/syndrome.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/syndrome.h +++ b/target/arm/syndrome.h @@ -XXX,XX +XXX,XX @@ FIELD(WFX_ISS, RN, 5, 5) FIELD(WFX_ISS, COND, 20, 4) FIELD(WFX_ISS, CV, 24, 1) -static inline uint32_t syn_wfx(int cv, int cond, int ti, bool is_16bit) +typedef enum { + WFI = 0b00, + WFE = 0b01, + WFIT = 0b10, + WFET = 0xb11 +} wfx_ti; + +static inline uint32_t syn_wfx(int cv, int cond, int rn, bool rv, wfx_ti ti, bool is_16bit) { uint32_t res = syn_set_ec(0, EC_WFX_TRAP); res = FIELD_DP32(res, SYNDROME, IL, !is_16bit); @@ -XXX,XX +XXX,XX @@ static inline uint32_t syn_wfx(int cv, int cond, int ti, bool is_16bit) res = FIELD_DP32(res, WFX_ISS, CV, cv); res = FIELD_DP32(res, WFX_ISS, COND, cond); res = FIELD_DP32(res, WFX_ISS, TI, ti); + res = FIELD_DP32(res, WFX_ISS, RN, rn); + res = FIELD_DP32(res, WFX_ISS, RV, rv); return res; } diff --git a/target/arm/tcg/helper-defs.h b/target/arm/tcg/helper-defs.h index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/helper-defs.h +++ b/target/arm/tcg/helper-defs.h @@ -XXX,XX +XXX,XX @@ DEF_HELPER_2(exception_pc_alignment, noreturn, env, vaddr) DEF_HELPER_1(setend, void, env) DEF_HELPER_2(wfi, void, env, i32) DEF_HELPER_1(wfe, void, env) -DEF_HELPER_2(wfit, void, env, i64) +DEF_HELPER_2(wfit, void, env, i32) DEF_HELPER_1(yield, void, env) DEF_HELPER_1(pre_hvc, void, env) DEF_HELPER_2(pre_smc, void, env, i32) diff --git a/target/arm/tcg/op_helper.c b/target/arm/tcg/op_helper.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/op_helper.c +++ b/target/arm/tcg/op_helper.c @@ -XXX,XX +XXX,XX @@ void HELPER(wfi)(CPUARMState *env, uint32_t insn_len) env->regs[15] -= insn_len; } - raise_exception(env, excp, syn_wfx(1, 0xe, 0, insn_len == 2), + raise_exception(env, excp, syn_wfx(1, 0xe, 0, false, WFI, insn_len == 2), target_el); } @@ -XXX,XX +XXX,XX @@ void HELPER(wfi)(CPUARMState *env, uint32_t insn_len) #endif } -void HELPER(wfit)(CPUARMState *env, uint64_t timeout) +void HELPER(wfit)(CPUARMState *env, uint32_t rd) { #ifdef CONFIG_USER_ONLY /* @@ -XXX,XX +XXX,XX @@ void HELPER(wfit)(CPUARMState *env, uint64_t timeout) int target_el = check_wfx_trap(env, false, &excp); /* The WFIT should time out when CNTVCT_EL0 >= the specified value. */ uint64_t cntval = gt_get_countervalue(env); + uint64_t timeout = env->xregs[rd]; /* * We want the value that we would get if we read CNTVCT_EL0 from * the current exception level, so the direct_access offset, not @@ -XXX,XX +XXX,XX @@ void HELPER(wfit)(CPUARMState *env, uint64_t timeout) if (target_el) { env->pc -= 4; - raise_exception(env, excp, syn_wfx(1, 0xe, 2, false), target_el); + raise_exception(env, excp, syn_wfx(1, 0xe, rd, true, WFIT, false), target_el); } if (uadd64_overflow(timeout, offset, &nexttick)) { diff --git a/target/arm/tcg/translate-a64.c b/target/arm/tcg/translate-a64.c index XXXXXXX..XXXXXXX 100644 --- a/target/arm/tcg/translate-a64.c +++ b/target/arm/tcg/translate-a64.c @@ -XXX,XX +XXX,XX @@ static bool trans_WFIT(DisasContext *s, arg_WFIT *a) } gen_a64_update_pc(s, 4); - gen_helper_wfit(tcg_env, cpu_reg(s, a->rd)); + gen_helper_wfit(tcg_env, tcg_constant_i32(a->rd)); /* Go back to the main loop to check for interrupts */ s->base.is_jmp = DISAS_EXIT; return true; -- 2.43.0