mirror of
https://github.com/izzy2lost/xemu.git
synced 2026-07-06 00:20:22 -07:00
cpu: Turn cpu_handle_mmu_fault() into a CPUClass hook
Note that while such functions may exist both for *-user and softmmu, only *-user uses the CPUState hook, while softmmu reuses the prototype for calling it directly. Signed-off-by: Andreas Färber <afaerber@suse.de>
This commit is contained in:
@@ -83,6 +83,7 @@ struct TranslationBlock;
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* @set_pc: Callback for setting the Program Counter register.
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* @synchronize_from_tb: Callback for synchronizing state from a TCG
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* #TranslationBlock.
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* @handle_mmu_fault: Callback for handling an MMU fault.
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* @get_phys_page_debug: Callback for obtaining a physical address.
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* @gdb_read_register: Callback for letting GDB read a register.
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* @gdb_write_register: Callback for letting GDB write a register.
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@@ -117,6 +118,8 @@ typedef struct CPUClass {
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Error **errp);
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void (*set_pc)(CPUState *cpu, vaddr value);
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void (*synchronize_from_tb)(CPUState *cpu, struct TranslationBlock *tb);
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int (*handle_mmu_fault)(CPUState *cpu, vaddr address, int rw,
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int mmu_index);
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hwaddr (*get_phys_page_debug)(CPUState *cpu, vaddr addr);
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int (*gdb_read_register)(CPUState *cpu, uint8_t *buf, int reg);
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int (*gdb_write_register)(CPUState *cpu, uint8_t *buf, int reg);
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+3
-1
@@ -288,7 +288,9 @@ static void alpha_cpu_class_init(ObjectClass *oc, void *data)
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cc->set_pc = alpha_cpu_set_pc;
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cc->gdb_read_register = alpha_cpu_gdb_read_register;
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cc->gdb_write_register = alpha_cpu_gdb_write_register;
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#ifndef CONFIG_USER_ONLY
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#ifdef CONFIG_USER_ONLY
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cc->handle_mmu_fault = alpha_cpu_handle_mmu_fault;
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#else
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cc->do_unassigned_access = alpha_cpu_unassigned_access;
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cc->get_phys_page_debug = alpha_cpu_get_phys_page_debug;
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dc->vmsd = &vmstate_alpha_cpu;
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+2
-3
@@ -446,9 +446,8 @@ int cpu_alpha_exec(CPUAlphaState *s);
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is returned if the signal was handled by the virtual CPU. */
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int cpu_alpha_signal_handler(int host_signum, void *pinfo,
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void *puc);
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int cpu_alpha_handle_mmu_fault (CPUAlphaState *env, uint64_t address, int rw,
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int mmu_idx);
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#define cpu_handle_mmu_fault cpu_alpha_handle_mmu_fault
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int alpha_cpu_handle_mmu_fault(CPUState *cpu, vaddr address, int rw,
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int mmu_idx);
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void do_restore_state(CPUAlphaState *, uintptr_t retaddr);
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void QEMU_NORETURN dynamic_excp(CPUAlphaState *, uintptr_t, int, int);
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void QEMU_NORETURN arith_excp(CPUAlphaState *, uintptr_t, int, uint64_t);
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@@ -168,11 +168,13 @@ void helper_store_fpcr(CPUAlphaState *env, uint64_t val)
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}
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#if defined(CONFIG_USER_ONLY)
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int cpu_alpha_handle_mmu_fault(CPUAlphaState *env, target_ulong address,
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int alpha_cpu_handle_mmu_fault(CPUState *cs, vaddr address,
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int rw, int mmu_idx)
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{
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env->exception_index = EXCP_MMFAULT;
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env->trap_arg0 = address;
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AlphaCPU *cpu = ALPHA_CPU(cs);
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cpu->env.exception_index = EXCP_MMFAULT;
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cpu->env.trap_arg0 = address;
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return 1;
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}
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#else
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@@ -326,9 +328,11 @@ hwaddr alpha_cpu_get_phys_page_debug(CPUState *cs, vaddr addr)
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return (fail >= 0 ? -1 : phys);
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}
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int cpu_alpha_handle_mmu_fault(CPUAlphaState *env, target_ulong addr, int rw,
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int alpha_cpu_handle_mmu_fault(CPUState *cs, vaddr addr, int rw,
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int mmu_idx)
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{
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AlphaCPU *cpu = ALPHA_CPU(cs);
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CPUAlphaState *env = &cpu->env;
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target_ulong phys;
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int prot, fail;
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@@ -153,9 +153,10 @@ void alpha_cpu_unassigned_access(CPUState *cs, hwaddr addr,
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void tlb_fill(CPUAlphaState *env, target_ulong addr, int is_write,
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int mmu_idx, uintptr_t retaddr)
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{
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AlphaCPU *cpu = alpha_env_get_cpu(env);
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int ret;
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ret = cpu_alpha_handle_mmu_fault(env, addr, is_write, mmu_idx);
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ret = alpha_cpu_handle_mmu_fault(CPU(cpu), addr, is_write, mmu_idx);
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if (unlikely(ret != 0)) {
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if (retaddr) {
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cpu_restore_state(env, retaddr);
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+3
-1
@@ -1013,7 +1013,9 @@ static void arm_cpu_class_init(ObjectClass *oc, void *data)
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cc->set_pc = arm_cpu_set_pc;
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cc->gdb_read_register = arm_cpu_gdb_read_register;
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cc->gdb_write_register = arm_cpu_gdb_write_register;
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#ifndef CONFIG_USER_ONLY
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#ifdef CONFIG_USER_ONLY
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cc->handle_mmu_fault = arm_cpu_handle_mmu_fault;
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#else
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cc->get_phys_page_debug = arm_cpu_get_phys_page_debug;
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cc->vmsd = &vmstate_arm_cpu;
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#endif
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+2
-3
@@ -339,9 +339,8 @@ static inline bool is_a64(CPUARMState *env)
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is returned if the signal was handled by the virtual CPU. */
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int cpu_arm_signal_handler(int host_signum, void *pinfo,
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void *puc);
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int cpu_arm_handle_mmu_fault (CPUARMState *env, target_ulong address, int rw,
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int mmu_idx);
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#define cpu_handle_mmu_fault cpu_arm_handle_mmu_fault
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int arm_cpu_handle_mmu_fault(CPUState *cpu, vaddr address, int rw,
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int mmu_idx);
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/* SCTLR bit meanings. Several bits have been reused in newer
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* versions of the architecture; in that case we define constants
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+9
-4
@@ -2655,9 +2655,12 @@ void arm_cpu_do_interrupt(CPUState *cs)
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env->exception_index = -1;
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}
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int cpu_arm_handle_mmu_fault (CPUARMState *env, target_ulong address, int rw,
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int mmu_idx)
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int arm_cpu_handle_mmu_fault(CPUState *cs, vaddr address, int rw,
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int mmu_idx)
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{
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ARMCPU *cpu = ARM_CPU(cs);
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CPUARMState *env = &cpu->env;
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if (rw == 2) {
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env->exception_index = EXCP_PREFETCH_ABORT;
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env->cp15.c6_insn = address;
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@@ -3623,9 +3626,11 @@ static inline int get_phys_addr(CPUARMState *env, uint32_t address,
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}
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}
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int cpu_arm_handle_mmu_fault (CPUARMState *env, target_ulong address,
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int access_type, int mmu_idx)
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int arm_cpu_handle_mmu_fault(CPUState *cs, vaddr address,
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int access_type, int mmu_idx)
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{
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ARMCPU *cpu = ARM_CPU(cs);
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CPUARMState *env = &cpu->env;
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hwaddr phys_addr;
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target_ulong page_size;
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int prot;
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@@ -74,9 +74,10 @@ uint32_t HELPER(neon_tbl)(CPUARMState *env, uint32_t ireg, uint32_t def,
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void tlb_fill(CPUARMState *env, target_ulong addr, int is_write, int mmu_idx,
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uintptr_t retaddr)
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{
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ARMCPU *cpu = arm_env_get_cpu(env);
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int ret;
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ret = cpu_arm_handle_mmu_fault(env, addr, is_write, mmu_idx);
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ret = arm_cpu_handle_mmu_fault(CPU(cpu), addr, is_write, mmu_idx);
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if (unlikely(ret)) {
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if (retaddr) {
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/* now we have a real cpu fault */
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+3
-1
@@ -283,7 +283,9 @@ static void cris_cpu_class_init(ObjectClass *oc, void *data)
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cc->set_pc = cris_cpu_set_pc;
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cc->gdb_read_register = cris_cpu_gdb_read_register;
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cc->gdb_write_register = cris_cpu_gdb_write_register;
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#ifndef CONFIG_USER_ONLY
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#ifdef CONFIG_USER_ONLY
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cc->handle_mmu_fault = cris_cpu_handle_mmu_fault;
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#else
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cc->get_phys_page_debug = cris_cpu_get_phys_page_debug;
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#endif
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+1
-2
@@ -247,9 +247,8 @@ static inline int cpu_mmu_index (CPUCRISState *env)
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return !!(env->pregs[PR_CCS] & U_FLAG);
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}
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int cpu_cris_handle_mmu_fault(CPUCRISState *env, target_ulong address, int rw,
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int cris_cpu_handle_mmu_fault(CPUState *cpu, vaddr address, int rw,
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int mmu_idx);
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#define cpu_handle_mmu_fault cpu_cris_handle_mmu_fault
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/* Support function regs. */
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#define SFR_RW_GC_CFG 0][0
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+13
-11
@@ -50,14 +50,14 @@ void crisv10_cpu_do_interrupt(CPUState *cs)
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cris_cpu_do_interrupt(cs);
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}
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int cpu_cris_handle_mmu_fault(CPUCRISState * env, target_ulong address, int rw,
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int cris_cpu_handle_mmu_fault(CPUState *cs, vaddr address, int rw,
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int mmu_idx)
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{
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CRISCPU *cpu = cris_env_get_cpu(env);
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CRISCPU *cpu = CRIS_CPU(cs);
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env->exception_index = 0xaa;
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env->pregs[PR_EDA] = address;
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cpu_dump_state(CPU(cpu), stderr, fprintf, 0);
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cpu->env.exception_index = 0xaa;
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cpu->env.pregs[PR_EDA] = address;
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cpu_dump_state(cs, stderr, fprintf, 0);
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return 1;
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}
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@@ -73,23 +73,25 @@ static void cris_shift_ccs(CPUCRISState *env)
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env->pregs[PR_CCS] = ccs;
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}
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int cpu_cris_handle_mmu_fault(CPUCRISState *env, target_ulong address, int rw,
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int cris_cpu_handle_mmu_fault(CPUState *cs, vaddr address, int rw,
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int mmu_idx)
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{
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D(CPUState *cpu = CPU(cris_env_get_cpu(env)));
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CRISCPU *cpu = CRIS_CPU(cs);
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CPUCRISState *env = &cpu->env;
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struct cris_mmu_result res;
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int prot, miss;
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int r = -1;
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target_ulong phy;
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D(printf("%s addr=%x pc=%x rw=%x\n", __func__, address, env->pc, rw));
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D(printf("%s addr=%" VADDR_PRIx " pc=%x rw=%x\n",
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__func__, address, env->pc, rw));
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miss = cris_mmu_translate(&res, env, address & TARGET_PAGE_MASK,
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rw, mmu_idx, 0);
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if (miss) {
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if (env->exception_index == EXCP_BUSFAULT) {
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cpu_abort(env,
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"CRIS: Illegal recursive bus fault."
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"addr=%x rw=%d\n",
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"addr=%" VADDR_PRIx " rw=%d\n",
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address, rw);
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}
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@@ -109,8 +111,8 @@ int cpu_cris_handle_mmu_fault(CPUCRISState *env, target_ulong address, int rw,
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r = 0;
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}
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if (r > 0) {
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D_LOG("%s returns %d irqreq=%x addr=%x phy=%x vec=%x pc=%x\n",
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__func__, r, cpu->interrupt_request, address, res.phy,
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D_LOG("%s returns %d irqreq=%x addr=%" VADDR_PRIx " phy=%x vec=%x"
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" pc=%x\n", __func__, r, cs->interrupt_request, address, res.phy,
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res.bf_vec, env->pc);
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}
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return r;
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@@ -57,11 +57,12 @@
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void tlb_fill(CPUCRISState *env, target_ulong addr, int is_write, int mmu_idx,
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uintptr_t retaddr)
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{
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CRISCPU *cpu = cris_env_get_cpu(env);
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int ret;
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D_LOG("%s pc=%x tpc=%x ra=%p\n", __func__,
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env->pc, env->pregs[PR_EDA], (void *)retaddr);
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ret = cpu_cris_handle_mmu_fault(env, addr, is_write, mmu_idx);
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ret = cris_cpu_handle_mmu_fault(CPU(cpu), addr, is_write, mmu_idx);
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if (unlikely(ret)) {
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if (retaddr) {
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/* now we have a real cpu fault */
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+3
-1
@@ -2810,7 +2810,9 @@ static void x86_cpu_common_class_init(ObjectClass *oc, void *data)
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cc->gdb_write_register = x86_cpu_gdb_write_register;
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cc->get_arch_id = x86_cpu_get_arch_id;
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cc->get_paging_enabled = x86_cpu_get_paging_enabled;
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#ifndef CONFIG_USER_ONLY
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#ifdef CONFIG_USER_ONLY
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cc->handle_mmu_fault = x86_cpu_handle_mmu_fault;
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#else
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cc->get_memory_mapping = x86_cpu_get_memory_mapping;
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cc->get_phys_page_debug = x86_cpu_get_phys_page_debug;
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cc->write_elf64_note = x86_cpu_write_elf64_note;
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+1
-2
@@ -1067,9 +1067,8 @@ void host_cpuid(uint32_t function, uint32_t count,
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uint32_t *eax, uint32_t *ebx, uint32_t *ecx, uint32_t *edx);
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/* helper.c */
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int cpu_x86_handle_mmu_fault(CPUX86State *env, target_ulong addr,
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int x86_cpu_handle_mmu_fault(CPUState *cpu, vaddr addr,
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int is_write, int mmu_idx);
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#define cpu_handle_mmu_fault cpu_x86_handle_mmu_fault
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void x86_cpu_set_a20(X86CPU *cpu, int a20_state);
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static inline bool hw_local_breakpoint_enabled(unsigned long dr7, int index)
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+12
-8
@@ -485,9 +485,12 @@ void cpu_x86_update_cr4(CPUX86State *env, uint32_t new_cr4)
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#if defined(CONFIG_USER_ONLY)
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int cpu_x86_handle_mmu_fault(CPUX86State *env, target_ulong addr,
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int x86_cpu_handle_mmu_fault(CPUState *cs, vaddr addr,
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int is_write, int mmu_idx)
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{
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X86CPU *cpu = X86_CPU(cs);
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CPUX86State *env = &cpu->env;
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/* user mode only emulation */
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is_write &= 1;
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env->cr[2] = addr;
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@@ -508,14 +511,15 @@ int cpu_x86_handle_mmu_fault(CPUX86State *env, target_ulong addr,
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# endif
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/* return value:
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-1 = cannot handle fault
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0 = nothing more to do
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1 = generate PF fault
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*/
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int cpu_x86_handle_mmu_fault(CPUX86State *env, target_ulong addr,
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* -1 = cannot handle fault
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* 0 = nothing more to do
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* 1 = generate PF fault
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*/
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int x86_cpu_handle_mmu_fault(CPUState *cs, vaddr addr,
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int is_write1, int mmu_idx)
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{
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CPUState *cs = CPU(x86_env_get_cpu(env));
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X86CPU *cpu = X86_CPU(cs);
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CPUX86State *env = &cpu->env;
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uint64_t ptep, pte;
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target_ulong pde_addr, pte_addr;
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int error_code, is_dirty, prot, page_size, is_write, is_user;
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@@ -525,7 +529,7 @@ int cpu_x86_handle_mmu_fault(CPUX86State *env, target_ulong addr,
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is_user = mmu_idx == MMU_USER_IDX;
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#if defined(DEBUG_MMU)
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printf("MMU fault: addr=" TARGET_FMT_lx " w=%d u=%d eip=" TARGET_FMT_lx "\n",
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printf("MMU fault: addr=%" VADDR_PRIx " w=%d u=%d eip=" TARGET_FMT_lx "\n",
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addr, is_write1, is_user, env->eip);
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#endif
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is_write = is_write1 & 1;
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@@ -135,9 +135,10 @@ void helper_boundl(CPUX86State *env, target_ulong a0, int v)
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void tlb_fill(CPUX86State *env, target_ulong addr, int is_write, int mmu_idx,
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uintptr_t retaddr)
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{
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X86CPU *cpu = x86_env_get_cpu(env);
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int ret;
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ret = cpu_x86_handle_mmu_fault(env, addr, is_write, mmu_idx);
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ret = x86_cpu_handle_mmu_fault(CPU(cpu), addr, is_write, mmu_idx);
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if (ret) {
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if (retaddr) {
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/* now we have a real cpu fault */
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+3
-1
@@ -266,7 +266,9 @@ static void lm32_cpu_class_init(ObjectClass *oc, void *data)
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cc->set_pc = lm32_cpu_set_pc;
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cc->gdb_read_register = lm32_cpu_gdb_read_register;
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cc->gdb_write_register = lm32_cpu_gdb_write_register;
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#ifndef CONFIG_USER_ONLY
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#ifdef CONFIG_USER_ONLY
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cc->handle_mmu_fault = lm32_cpu_handle_mmu_fault;
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#else
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cc->get_phys_page_debug = lm32_cpu_get_phys_page_debug;
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cc->vmsd = &vmstate_lm32_cpu;
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#endif
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+1
-2
@@ -231,9 +231,8 @@ static inline CPULM32State *cpu_init(const char *cpu_model)
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#define cpu_gen_code cpu_lm32_gen_code
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#define cpu_signal_handler cpu_lm32_signal_handler
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int cpu_lm32_handle_mmu_fault(CPULM32State *env, target_ulong address, int rw,
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int lm32_cpu_handle_mmu_fault(CPUState *cpu, vaddr address, int rw,
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int mmu_idx);
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#define cpu_handle_mmu_fault cpu_lm32_handle_mmu_fault
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#include "exec/cpu-all.h"
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@@ -20,9 +20,11 @@
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#include "cpu.h"
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#include "qemu/host-utils.h"
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int cpu_lm32_handle_mmu_fault(CPULM32State *env, target_ulong address, int rw,
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int lm32_cpu_handle_mmu_fault(CPUState *cs, vaddr address, int rw,
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int mmu_idx)
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{
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LM32CPU *cpu = LM32_CPU(cs);
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CPULM32State *env = &cpu->env;
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int prot;
|
||||
|
||||
address &= TARGET_PAGE_MASK;
|
||||
|
||||
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Reference in New Issue
Block a user