diff options
Diffstat (limited to 'arch/sparc64/kernel/kprobes.c')
| -rw-r--r-- | arch/sparc64/kernel/kprobes.c | 165 |
1 files changed, 82 insertions, 83 deletions
diff --git a/arch/sparc64/kernel/kprobes.c b/arch/sparc64/kernel/kprobes.c index 0d66d07c8c6e..96bd09b098f4 100644 --- a/arch/sparc64/kernel/kprobes.c +++ b/arch/sparc64/kernel/kprobes.c | |||
| @@ -38,6 +38,9 @@ | |||
| 38 | * - Mark that we are no longer actively in a kprobe. | 38 | * - Mark that we are no longer actively in a kprobe. |
| 39 | */ | 39 | */ |
| 40 | 40 | ||
| 41 | DEFINE_PER_CPU(struct kprobe *, current_kprobe) = NULL; | ||
| 42 | DEFINE_PER_CPU(struct kprobe_ctlblk, kprobe_ctlblk); | ||
| 43 | |||
| 41 | int __kprobes arch_prepare_kprobe(struct kprobe *p) | 44 | int __kprobes arch_prepare_kprobe(struct kprobe *p) |
| 42 | { | 45 | { |
| 43 | return 0; | 46 | return 0; |
| @@ -66,46 +69,39 @@ void __kprobes arch_remove_kprobe(struct kprobe *p) | |||
| 66 | { | 69 | { |
| 67 | } | 70 | } |
| 68 | 71 | ||
| 69 | static struct kprobe *current_kprobe; | 72 | static inline void save_previous_kprobe(struct kprobe_ctlblk *kcb) |
| 70 | static unsigned long current_kprobe_orig_tnpc; | ||
| 71 | static unsigned long current_kprobe_orig_tstate_pil; | ||
| 72 | static unsigned int kprobe_status; | ||
| 73 | static struct kprobe *kprobe_prev; | ||
| 74 | static unsigned long kprobe_orig_tnpc_prev; | ||
| 75 | static unsigned long kprobe_orig_tstate_pil_prev; | ||
| 76 | static unsigned int kprobe_status_prev; | ||
| 77 | |||
| 78 | static inline void save_previous_kprobe(void) | ||
| 79 | { | 73 | { |
| 80 | kprobe_status_prev = kprobe_status; | 74 | kcb->prev_kprobe.kp = kprobe_running(); |
| 81 | kprobe_orig_tnpc_prev = current_kprobe_orig_tnpc; | 75 | kcb->prev_kprobe.status = kcb->kprobe_status; |
| 82 | kprobe_orig_tstate_pil_prev = current_kprobe_orig_tstate_pil; | 76 | kcb->prev_kprobe.orig_tnpc = kcb->kprobe_orig_tnpc; |
| 83 | kprobe_prev = current_kprobe; | 77 | kcb->prev_kprobe.orig_tstate_pil = kcb->kprobe_orig_tstate_pil; |
| 84 | } | 78 | } |
| 85 | 79 | ||
| 86 | static inline void restore_previous_kprobe(void) | 80 | static inline void restore_previous_kprobe(struct kprobe_ctlblk *kcb) |
| 87 | { | 81 | { |
| 88 | kprobe_status = kprobe_status_prev; | 82 | __get_cpu_var(current_kprobe) = kcb->prev_kprobe.kp; |
| 89 | current_kprobe_orig_tnpc = kprobe_orig_tnpc_prev; | 83 | kcb->kprobe_status = kcb->prev_kprobe.status; |
| 90 | current_kprobe_orig_tstate_pil = kprobe_orig_tstate_pil_prev; | 84 | kcb->kprobe_orig_tnpc = kcb->prev_kprobe.orig_tnpc; |
| 91 | current_kprobe = kprobe_prev; | 85 | kcb->kprobe_orig_tstate_pil = kcb->prev_kprobe.orig_tstate_pil; |
| 92 | } | 86 | } |
| 93 | 87 | ||
| 94 | static inline void set_current_kprobe(struct kprobe *p, struct pt_regs *regs) | 88 | static inline void set_current_kprobe(struct kprobe *p, struct pt_regs *regs, |
| 89 | struct kprobe_ctlblk *kcb) | ||
| 95 | { | 90 | { |
| 96 | current_kprobe_orig_tnpc = regs->tnpc; | 91 | __get_cpu_var(current_kprobe) = p; |
| 97 | current_kprobe_orig_tstate_pil = (regs->tstate & TSTATE_PIL); | 92 | kcb->kprobe_orig_tnpc = regs->tnpc; |
| 98 | current_kprobe = p; | 93 | kcb->kprobe_orig_tstate_pil = (regs->tstate & TSTATE_PIL); |
| 99 | } | 94 | } |
| 100 | 95 | ||
| 101 | static inline void prepare_singlestep(struct kprobe *p, struct pt_regs *regs) | 96 | static inline void prepare_singlestep(struct kprobe *p, struct pt_regs *regs, |
| 97 | struct kprobe_ctlblk *kcb) | ||
| 102 | { | 98 | { |
| 103 | regs->tstate |= TSTATE_PIL; | 99 | regs->tstate |= TSTATE_PIL; |
| 104 | 100 | ||
| 105 | /*single step inline, if it a breakpoint instruction*/ | 101 | /*single step inline, if it a breakpoint instruction*/ |
| 106 | if (p->opcode == BREAKPOINT_INSTRUCTION) { | 102 | if (p->opcode == BREAKPOINT_INSTRUCTION) { |
| 107 | regs->tpc = (unsigned long) p->addr; | 103 | regs->tpc = (unsigned long) p->addr; |
| 108 | regs->tnpc = current_kprobe_orig_tnpc; | 104 | regs->tnpc = kcb->kprobe_orig_tnpc; |
| 109 | } else { | 105 | } else { |
| 110 | regs->tpc = (unsigned long) &p->ainsn.insn[0]; | 106 | regs->tpc = (unsigned long) &p->ainsn.insn[0]; |
| 111 | regs->tnpc = (unsigned long) &p->ainsn.insn[1]; | 107 | regs->tnpc = (unsigned long) &p->ainsn.insn[1]; |
| @@ -117,19 +113,21 @@ static int __kprobes kprobe_handler(struct pt_regs *regs) | |||
| 117 | struct kprobe *p; | 113 | struct kprobe *p; |
| 118 | void *addr = (void *) regs->tpc; | 114 | void *addr = (void *) regs->tpc; |
| 119 | int ret = 0; | 115 | int ret = 0; |
| 116 | struct kprobe_ctlblk *kcb; | ||
| 120 | 117 | ||
| 118 | /* | ||
| 119 | * We don't want to be preempted for the entire | ||
| 120 | * duration of kprobe processing | ||
| 121 | */ | ||
| 121 | preempt_disable(); | 122 | preempt_disable(); |
| 123 | kcb = get_kprobe_ctlblk(); | ||
| 122 | 124 | ||
| 123 | if (kprobe_running()) { | 125 | if (kprobe_running()) { |
| 124 | /* We *are* holding lock here, so this is safe. | ||
| 125 | * Disarm the probe we just hit, and ignore it. | ||
| 126 | */ | ||
| 127 | p = get_kprobe(addr); | 126 | p = get_kprobe(addr); |
| 128 | if (p) { | 127 | if (p) { |
| 129 | if (kprobe_status == KPROBE_HIT_SS) { | 128 | if (kcb->kprobe_status == KPROBE_HIT_SS) { |
| 130 | regs->tstate = ((regs->tstate & ~TSTATE_PIL) | | 129 | regs->tstate = ((regs->tstate & ~TSTATE_PIL) | |
| 131 | current_kprobe_orig_tstate_pil); | 130 | kcb->kprobe_orig_tstate_pil); |
| 132 | unlock_kprobes(); | ||
| 133 | goto no_kprobe; | 131 | goto no_kprobe; |
| 134 | } | 132 | } |
| 135 | /* We have reentered the kprobe_handler(), since | 133 | /* We have reentered the kprobe_handler(), since |
| @@ -138,25 +136,22 @@ static int __kprobes kprobe_handler(struct pt_regs *regs) | |||
| 138 | * just single step on the instruction of the new probe | 136 | * just single step on the instruction of the new probe |
| 139 | * without calling any user handlers. | 137 | * without calling any user handlers. |
| 140 | */ | 138 | */ |
| 141 | save_previous_kprobe(); | 139 | save_previous_kprobe(kcb); |
| 142 | set_current_kprobe(p, regs); | 140 | set_current_kprobe(p, regs, kcb); |
| 143 | p->nmissed++; | 141 | p->nmissed++; |
| 144 | kprobe_status = KPROBE_REENTER; | 142 | kcb->kprobe_status = KPROBE_REENTER; |
| 145 | prepare_singlestep(p, regs); | 143 | prepare_singlestep(p, regs, kcb); |
| 146 | return 1; | 144 | return 1; |
| 147 | } else { | 145 | } else { |
| 148 | p = current_kprobe; | 146 | p = __get_cpu_var(current_kprobe); |
| 149 | if (p->break_handler && p->break_handler(p, regs)) | 147 | if (p->break_handler && p->break_handler(p, regs)) |
| 150 | goto ss_probe; | 148 | goto ss_probe; |
| 151 | } | 149 | } |
| 152 | /* If it's not ours, can't be delete race, (we hold lock). */ | ||
| 153 | goto no_kprobe; | 150 | goto no_kprobe; |
| 154 | } | 151 | } |
| 155 | 152 | ||
| 156 | lock_kprobes(); | ||
| 157 | p = get_kprobe(addr); | 153 | p = get_kprobe(addr); |
| 158 | if (!p) { | 154 | if (!p) { |
| 159 | unlock_kprobes(); | ||
| 160 | if (*(u32 *)addr != BREAKPOINT_INSTRUCTION) { | 155 | if (*(u32 *)addr != BREAKPOINT_INSTRUCTION) { |
| 161 | /* | 156 | /* |
| 162 | * The breakpoint instruction was removed right | 157 | * The breakpoint instruction was removed right |
| @@ -171,14 +166,14 @@ static int __kprobes kprobe_handler(struct pt_regs *regs) | |||
| 171 | goto no_kprobe; | 166 | goto no_kprobe; |
| 172 | } | 167 | } |
| 173 | 168 | ||
| 174 | set_current_kprobe(p, regs); | 169 | set_current_kprobe(p, regs, kcb); |
| 175 | kprobe_status = KPROBE_HIT_ACTIVE; | 170 | kcb->kprobe_status = KPROBE_HIT_ACTIVE; |
| 176 | if (p->pre_handler && p->pre_handler(p, regs)) | 171 | if (p->pre_handler && p->pre_handler(p, regs)) |
| 177 | return 1; | 172 | return 1; |
| 178 | 173 | ||
| 179 | ss_probe: | 174 | ss_probe: |
| 180 | prepare_singlestep(p, regs); | 175 | prepare_singlestep(p, regs, kcb); |
| 181 | kprobe_status = KPROBE_HIT_SS; | 176 | kcb->kprobe_status = KPROBE_HIT_SS; |
| 182 | return 1; | 177 | return 1; |
| 183 | 178 | ||
| 184 | no_kprobe: | 179 | no_kprobe: |
| @@ -260,11 +255,12 @@ static void __kprobes retpc_fixup(struct pt_regs *regs, u32 insn, | |||
| 260 | * This function prepares to return from the post-single-step | 255 | * This function prepares to return from the post-single-step |
| 261 | * breakpoint trap. | 256 | * breakpoint trap. |
| 262 | */ | 257 | */ |
| 263 | static void __kprobes resume_execution(struct kprobe *p, struct pt_regs *regs) | 258 | static void __kprobes resume_execution(struct kprobe *p, |
| 259 | struct pt_regs *regs, struct kprobe_ctlblk *kcb) | ||
| 264 | { | 260 | { |
| 265 | u32 insn = p->ainsn.insn[0]; | 261 | u32 insn = p->ainsn.insn[0]; |
| 266 | 262 | ||
| 267 | regs->tpc = current_kprobe_orig_tnpc; | 263 | regs->tpc = kcb->kprobe_orig_tnpc; |
| 268 | regs->tnpc = relbranch_fixup(insn, | 264 | regs->tnpc = relbranch_fixup(insn, |
| 269 | (unsigned long) p->addr, | 265 | (unsigned long) p->addr, |
| 270 | (unsigned long) &p->ainsn.insn[0], | 266 | (unsigned long) &p->ainsn.insn[0], |
| @@ -272,44 +268,48 @@ static void __kprobes resume_execution(struct kprobe *p, struct pt_regs *regs) | |||
| 272 | retpc_fixup(regs, insn, (unsigned long) p->addr); | 268 | retpc_fixup(regs, insn, (unsigned long) p->addr); |
| 273 | 269 | ||
| 274 | regs->tstate = ((regs->tstate & ~TSTATE_PIL) | | 270 | regs->tstate = ((regs->tstate & ~TSTATE_PIL) | |
| 275 | current_kprobe_orig_tstate_pil); | 271 | kcb->kprobe_orig_tstate_pil); |
| 276 | } | 272 | } |
| 277 | 273 | ||
| 278 | static inline int post_kprobe_handler(struct pt_regs *regs) | 274 | static inline int post_kprobe_handler(struct pt_regs *regs) |
| 279 | { | 275 | { |
| 280 | if (!kprobe_running()) | 276 | struct kprobe *cur = kprobe_running(); |
| 277 | struct kprobe_ctlblk *kcb = get_kprobe_ctlblk(); | ||
| 278 | |||
| 279 | if (!cur) | ||
| 281 | return 0; | 280 | return 0; |
| 282 | 281 | ||
| 283 | if ((kprobe_status != KPROBE_REENTER) && current_kprobe->post_handler) { | 282 | if ((kcb->kprobe_status != KPROBE_REENTER) && cur->post_handler) { |
| 284 | kprobe_status = KPROBE_HIT_SSDONE; | 283 | kcb->kprobe_status = KPROBE_HIT_SSDONE; |
| 285 | current_kprobe->post_handler(current_kprobe, regs, 0); | 284 | cur->post_handler(cur, regs, 0); |
| 286 | } | 285 | } |
| 287 | 286 | ||
| 288 | resume_execution(current_kprobe, regs); | 287 | resume_execution(cur, regs, kcb); |
| 289 | 288 | ||
| 290 | /*Restore back the original saved kprobes variables and continue. */ | 289 | /*Restore back the original saved kprobes variables and continue. */ |
| 291 | if (kprobe_status == KPROBE_REENTER) { | 290 | if (kcb->kprobe_status == KPROBE_REENTER) { |
| 292 | restore_previous_kprobe(); | 291 | restore_previous_kprobe(kcb); |
| 293 | goto out; | 292 | goto out; |
| 294 | } | 293 | } |
| 295 | unlock_kprobes(); | 294 | reset_current_kprobe(); |
| 296 | out: | 295 | out: |
| 297 | preempt_enable_no_resched(); | 296 | preempt_enable_no_resched(); |
| 298 | 297 | ||
| 299 | return 1; | 298 | return 1; |
| 300 | } | 299 | } |
| 301 | 300 | ||
| 302 | /* Interrupts disabled, kprobe_lock held. */ | ||
| 303 | static inline int kprobe_fault_handler(struct pt_regs *regs, int trapnr) | 301 | static inline int kprobe_fault_handler(struct pt_regs *regs, int trapnr) |
| 304 | { | 302 | { |
| 305 | if (current_kprobe->fault_handler | 303 | struct kprobe *cur = kprobe_running(); |
| 306 | && current_kprobe->fault_handler(current_kprobe, regs, trapnr)) | 304 | struct kprobe_ctlblk *kcb = get_kprobe_ctlblk(); |
| 305 | |||
| 306 | if (cur->fault_handler && cur->fault_handler(cur, regs, trapnr)) | ||
| 307 | return 1; | 307 | return 1; |
| 308 | 308 | ||
| 309 | if (kprobe_status & KPROBE_HIT_SS) { | 309 | if (kcb->kprobe_status & KPROBE_HIT_SS) { |
| 310 | resume_execution(current_kprobe, regs); | 310 | resume_execution(cur, regs, kcb); |
| 311 | 311 | ||
| 312 | unlock_kprobes(); | 312 | reset_current_kprobe(); |
| 313 | preempt_enable_no_resched(); | 313 | preempt_enable_no_resched(); |
| 314 | } | 314 | } |
| 315 | return 0; | 315 | return 0; |
| @@ -322,29 +322,30 @@ int __kprobes kprobe_exceptions_notify(struct notifier_block *self, | |||
| 322 | unsigned long val, void *data) | 322 | unsigned long val, void *data) |
| 323 | { | 323 | { |
| 324 | struct die_args *args = (struct die_args *)data; | 324 | struct die_args *args = (struct die_args *)data; |
| 325 | int ret = NOTIFY_DONE; | ||
| 326 | |||
| 325 | switch (val) { | 327 | switch (val) { |
| 326 | case DIE_DEBUG: | 328 | case DIE_DEBUG: |
| 327 | if (kprobe_handler(args->regs)) | 329 | if (kprobe_handler(args->regs)) |
| 328 | return NOTIFY_STOP; | 330 | ret = NOTIFY_STOP; |
| 329 | break; | 331 | break; |
| 330 | case DIE_DEBUG_2: | 332 | case DIE_DEBUG_2: |
| 331 | if (post_kprobe_handler(args->regs)) | 333 | if (post_kprobe_handler(args->regs)) |
| 332 | return NOTIFY_STOP; | 334 | ret = NOTIFY_STOP; |
| 333 | break; | 335 | break; |
| 334 | case DIE_GPF: | 336 | case DIE_GPF: |
| 335 | if (kprobe_running() && | ||
| 336 | kprobe_fault_handler(args->regs, args->trapnr)) | ||
| 337 | return NOTIFY_STOP; | ||
| 338 | break; | ||
| 339 | case DIE_PAGE_FAULT: | 337 | case DIE_PAGE_FAULT: |
| 338 | /* kprobe_running() needs smp_processor_id() */ | ||
| 339 | preempt_disable(); | ||
| 340 | if (kprobe_running() && | 340 | if (kprobe_running() && |
| 341 | kprobe_fault_handler(args->regs, args->trapnr)) | 341 | kprobe_fault_handler(args->regs, args->trapnr)) |
| 342 | return NOTIFY_STOP; | 342 | ret = NOTIFY_STOP; |
| 343 | preempt_enable(); | ||
| 343 | break; | 344 | break; |
| 344 | default: | 345 | default: |
| 345 | break; | 346 | break; |
| 346 | } | 347 | } |
| 347 | return NOTIFY_DONE; | 348 | return ret; |
| 348 | } | 349 | } |
| 349 | 350 | ||
| 350 | asmlinkage void __kprobes kprobe_trap(unsigned long trap_level, | 351 | asmlinkage void __kprobes kprobe_trap(unsigned long trap_level, |
| @@ -368,24 +369,21 @@ asmlinkage void __kprobes kprobe_trap(unsigned long trap_level, | |||
| 368 | } | 369 | } |
| 369 | 370 | ||
| 370 | /* Jprobes support. */ | 371 | /* Jprobes support. */ |
| 371 | static struct pt_regs jprobe_saved_regs; | ||
| 372 | static struct pt_regs *jprobe_saved_regs_location; | ||
| 373 | static struct sparc_stackf jprobe_saved_stack; | ||
| 374 | |||
| 375 | int __kprobes setjmp_pre_handler(struct kprobe *p, struct pt_regs *regs) | 372 | int __kprobes setjmp_pre_handler(struct kprobe *p, struct pt_regs *regs) |
| 376 | { | 373 | { |
| 377 | struct jprobe *jp = container_of(p, struct jprobe, kp); | 374 | struct jprobe *jp = container_of(p, struct jprobe, kp); |
| 375 | struct kprobe_ctlblk *kcb = get_kprobe_ctlblk(); | ||
| 378 | 376 | ||
| 379 | jprobe_saved_regs_location = regs; | 377 | kcb->jprobe_saved_regs_location = regs; |
| 380 | memcpy(&jprobe_saved_regs, regs, sizeof(*regs)); | 378 | memcpy(&(kcb->jprobe_saved_regs), regs, sizeof(*regs)); |
| 381 | 379 | ||
| 382 | /* Save a whole stack frame, this gets arguments | 380 | /* Save a whole stack frame, this gets arguments |
| 383 | * pushed onto the stack after using up all the | 381 | * pushed onto the stack after using up all the |
| 384 | * arg registers. | 382 | * arg registers. |
| 385 | */ | 383 | */ |
| 386 | memcpy(&jprobe_saved_stack, | 384 | memcpy(&(kcb->jprobe_saved_stack), |
| 387 | (char *) (regs->u_regs[UREG_FP] + STACK_BIAS), | 385 | (char *) (regs->u_regs[UREG_FP] + STACK_BIAS), |
| 388 | sizeof(jprobe_saved_stack)); | 386 | sizeof(kcb->jprobe_saved_stack)); |
| 389 | 387 | ||
| 390 | regs->tpc = (unsigned long) jp->entry; | 388 | regs->tpc = (unsigned long) jp->entry; |
| 391 | regs->tnpc = ((unsigned long) jp->entry) + 0x4UL; | 389 | regs->tnpc = ((unsigned long) jp->entry) + 0x4UL; |
| @@ -396,7 +394,6 @@ int __kprobes setjmp_pre_handler(struct kprobe *p, struct pt_regs *regs) | |||
| 396 | 394 | ||
| 397 | void __kprobes jprobe_return(void) | 395 | void __kprobes jprobe_return(void) |
| 398 | { | 396 | { |
| 399 | preempt_enable_no_resched(); | ||
| 400 | __asm__ __volatile__( | 397 | __asm__ __volatile__( |
| 401 | ".globl jprobe_return_trap_instruction\n" | 398 | ".globl jprobe_return_trap_instruction\n" |
| 402 | "jprobe_return_trap_instruction:\n\t" | 399 | "jprobe_return_trap_instruction:\n\t" |
| @@ -410,14 +407,15 @@ extern void __show_regs(struct pt_regs * regs); | |||
| 410 | int __kprobes longjmp_break_handler(struct kprobe *p, struct pt_regs *regs) | 407 | int __kprobes longjmp_break_handler(struct kprobe *p, struct pt_regs *regs) |
| 411 | { | 408 | { |
| 412 | u32 *addr = (u32 *) regs->tpc; | 409 | u32 *addr = (u32 *) regs->tpc; |
| 410 | struct kprobe_ctlblk *kcb = get_kprobe_ctlblk(); | ||
| 413 | 411 | ||
| 414 | if (addr == (u32 *) jprobe_return_trap_instruction) { | 412 | if (addr == (u32 *) jprobe_return_trap_instruction) { |
| 415 | if (jprobe_saved_regs_location != regs) { | 413 | if (kcb->jprobe_saved_regs_location != regs) { |
| 416 | printk("JPROBE: Current regs (%p) does not match " | 414 | printk("JPROBE: Current regs (%p) does not match " |
| 417 | "saved regs (%p).\n", | 415 | "saved regs (%p).\n", |
| 418 | regs, jprobe_saved_regs_location); | 416 | regs, kcb->jprobe_saved_regs_location); |
| 419 | printk("JPROBE: Saved registers\n"); | 417 | printk("JPROBE: Saved registers\n"); |
| 420 | __show_regs(jprobe_saved_regs_location); | 418 | __show_regs(kcb->jprobe_saved_regs_location); |
| 421 | printk("JPROBE: Current registers\n"); | 419 | printk("JPROBE: Current registers\n"); |
| 422 | __show_regs(regs); | 420 | __show_regs(regs); |
| 423 | BUG(); | 421 | BUG(); |
| @@ -426,12 +424,13 @@ int __kprobes longjmp_break_handler(struct kprobe *p, struct pt_regs *regs) | |||
| 426 | * first so that UREG_FP is the original one for | 424 | * first so that UREG_FP is the original one for |
| 427 | * the stack frame restore. | 425 | * the stack frame restore. |
| 428 | */ | 426 | */ |
| 429 | memcpy(regs, &jprobe_saved_regs, sizeof(*regs)); | 427 | memcpy(regs, &(kcb->jprobe_saved_regs), sizeof(*regs)); |
| 430 | 428 | ||
| 431 | memcpy((char *) (regs->u_regs[UREG_FP] + STACK_BIAS), | 429 | memcpy((char *) (regs->u_regs[UREG_FP] + STACK_BIAS), |
| 432 | &jprobe_saved_stack, | 430 | &(kcb->jprobe_saved_stack), |
| 433 | sizeof(jprobe_saved_stack)); | 431 | sizeof(kcb->jprobe_saved_stack)); |
| 434 | 432 | ||
| 433 | preempt_enable_no_resched(); | ||
| 435 | return 1; | 434 | return 1; |
| 436 | } | 435 | } |
| 437 | return 0; | 436 | return 0; |
