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kprobes: Use text_poke_smp_batch for optimizing
Use text_poke_smp_batch() in optimization path for reducing the number of stop_machine() issues. If the number of optimizing probes is more than MAX_OPTIMIZE_PROBES(=256), kprobes optimizes first MAX_OPTIMIZE_PROBES probes and kicks optimizer for remaining probes. Changes in v5: - Use kick_kprobe_optimizer() instead of directly calling schedule_delayed_work(). - Rescheduling optimizer outside of kprobe mutex lock. Changes in v2: - Allocate code buffer and parameters in arch_init_kprobes() instead of using static arraies. - Merge previous max optimization limit patch into this patch. So, this patch introduces upper limit of optimization at once. Signed-off-by: Masami Hiramatsu <mhiramat@redhat.com> Cc: Rusty Russell <rusty@rustcorp.com.au> Cc: Frederic Weisbecker <fweisbec@gmail.com> Cc: Ananth N Mavinakayanahalli <ananth@in.ibm.com> Cc: Jason Baron <jbaron@redhat.com> Cc: Mathieu Desnoyers <mathieu.desnoyers@efficios.com> Cc: 2nddept-manager@sdl.hitachi.co.jp Cc: Peter Zijlstra <a.p.zijlstra@chello.nl> Cc: Steven Rostedt <rostedt@goodmis.org> LKML-Reference: <20101203095428.2961.8994.stgit@ltc236.sdl.hitachi.co.jp> Signed-off-by: Ingo Molnar <mingo@elte.hu>
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@ -1405,10 +1405,16 @@ int __kprobes arch_prepare_optimized_kprobe(struct optimized_kprobe *op)
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return 0;
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}
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/* Replace a breakpoint (int3) with a relative jump. */
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int __kprobes arch_optimize_kprobe(struct optimized_kprobe *op)
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#define MAX_OPTIMIZE_PROBES 256
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static struct text_poke_param *jump_poke_params;
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static struct jump_poke_buffer {
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u8 buf[RELATIVEJUMP_SIZE];
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} *jump_poke_bufs;
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static void __kprobes setup_optimize_kprobe(struct text_poke_param *tprm,
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u8 *insn_buf,
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struct optimized_kprobe *op)
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{
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unsigned char jmp_code[RELATIVEJUMP_SIZE];
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s32 rel = (s32)((long)op->optinsn.insn -
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((long)op->kp.addr + RELATIVEJUMP_SIZE));
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@ -1416,16 +1422,39 @@ int __kprobes arch_optimize_kprobe(struct optimized_kprobe *op)
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memcpy(op->optinsn.copied_insn, op->kp.addr + INT3_SIZE,
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RELATIVE_ADDR_SIZE);
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jmp_code[0] = RELATIVEJUMP_OPCODE;
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*(s32 *)(&jmp_code[1]) = rel;
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insn_buf[0] = RELATIVEJUMP_OPCODE;
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*(s32 *)(&insn_buf[1]) = rel;
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tprm->addr = op->kp.addr;
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tprm->opcode = insn_buf;
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tprm->len = RELATIVEJUMP_SIZE;
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}
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/*
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* Replace breakpoints (int3) with relative jumps.
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* Caller must call with locking kprobe_mutex and text_mutex.
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*/
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void __kprobes arch_optimize_kprobes(struct list_head *oplist)
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{
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struct optimized_kprobe *op, *tmp;
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int c = 0;
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list_for_each_entry_safe(op, tmp, oplist, list) {
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WARN_ON(kprobe_disabled(&op->kp));
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/* Setup param */
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setup_optimize_kprobe(&jump_poke_params[c],
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jump_poke_bufs[c].buf, op);
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list_del_init(&op->list);
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if (++c >= MAX_OPTIMIZE_PROBES)
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break;
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}
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/*
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* text_poke_smp doesn't support NMI/MCE code modifying.
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* However, since kprobes itself also doesn't support NMI/MCE
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* code probing, it's not a problem.
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*/
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text_poke_smp(op->kp.addr, jmp_code, RELATIVEJUMP_SIZE);
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return 0;
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text_poke_smp_batch(jump_poke_params, c);
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}
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/* Replace a relative jump with a breakpoint (int3). */
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@ -1457,11 +1486,35 @@ static int __kprobes setup_detour_execution(struct kprobe *p,
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}
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return 0;
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}
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static int __kprobes init_poke_params(void)
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{
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/* Allocate code buffer and parameter array */
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jump_poke_bufs = kmalloc(sizeof(struct jump_poke_buffer) *
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MAX_OPTIMIZE_PROBES, GFP_KERNEL);
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if (!jump_poke_bufs)
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return -ENOMEM;
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jump_poke_params = kmalloc(sizeof(struct text_poke_param) *
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MAX_OPTIMIZE_PROBES, GFP_KERNEL);
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if (!jump_poke_params) {
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kfree(jump_poke_bufs);
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jump_poke_bufs = NULL;
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return -ENOMEM;
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}
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return 0;
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}
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#else /* !CONFIG_OPTPROBES */
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static int __kprobes init_poke_params(void)
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{
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return 0;
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}
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#endif
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int __init arch_init_kprobes(void)
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{
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return 0;
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return init_poke_params();
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}
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int __kprobes arch_trampoline_kprobe(struct kprobe *p)
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@ -275,7 +275,7 @@ extern int arch_prepared_optinsn(struct arch_optimized_insn *optinsn);
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extern int arch_check_optimized_kprobe(struct optimized_kprobe *op);
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extern int arch_prepare_optimized_kprobe(struct optimized_kprobe *op);
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extern void arch_remove_optimized_kprobe(struct optimized_kprobe *op);
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extern int arch_optimize_kprobe(struct optimized_kprobe *op);
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extern void arch_optimize_kprobes(struct list_head *oplist);
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extern void arch_unoptimize_kprobe(struct optimized_kprobe *op);
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extern kprobe_opcode_t *get_optinsn_slot(void);
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extern void free_optinsn_slot(kprobe_opcode_t *slot, int dirty);
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@ -480,8 +480,6 @@ static DECLARE_COMPLETION(optimizer_comp);
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*/
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static __kprobes void do_optimize_kprobes(void)
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{
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struct optimized_kprobe *op, *tmp;
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/* Optimization never be done when disarmed */
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if (kprobes_all_disarmed || !kprobes_allow_optimization ||
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list_empty(&optimizing_list))
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@ -499,12 +497,7 @@ static __kprobes void do_optimize_kprobes(void)
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*/
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get_online_cpus();
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mutex_lock(&text_mutex);
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list_for_each_entry_safe(op, tmp, &optimizing_list, list) {
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WARN_ON(kprobe_disabled(&op->kp));
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if (arch_optimize_kprobe(op) < 0)
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op->kp.flags &= ~KPROBE_FLAG_OPTIMIZED;
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list_del_init(&op->list);
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}
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arch_optimize_kprobes(&optimizing_list);
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mutex_unlock(&text_mutex);
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put_online_cpus();
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}
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@ -598,8 +591,12 @@ static __kprobes void kprobe_optimizer(struct work_struct *work)
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mutex_unlock(&kprobe_mutex);
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mutex_unlock(&module_mutex);
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/* Wake up all waiters */
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complete_all(&optimizer_comp);
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/* Step 5: Kick optimizer again if needed */
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if (!list_empty(&optimizing_list))
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kick_kprobe_optimizer();
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else
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/* Wake up all waiters */
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complete_all(&optimizer_comp);
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}
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/* Wait for completing optimization and unoptimization */
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