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-rw-r--r-- | Documentation/kprobes.txt | 20 |
1 files changed, 20 insertions, 0 deletions
diff --git a/Documentation/kprobes.txt b/Documentation/kprobes.txt index cbb545910634..13d8efdb9718 100644 --- a/Documentation/kprobes.txt +++ b/Documentation/kprobes.txt @@ -80,6 +80,26 @@ After the instruction is single-stepped, Kprobes executes the "post_handler," if any, that is associated with the kprobe. Execution then continues with the instruction following the probepoint. +Changing Execution Path +----------------------- + +Since the kprobes can probe into a running kernel code, it can change +the register set, including instruction pointer. This operation +requires maximum attention, such as keeping the stack frame, recovering +execution path etc. Since it is operated on running kernel and need deep +knowladge of the archtecture and concurrent computing, you can easily +shot your foot. + +If you change the instruction pointer (and set up other related +registers) in pre_handler, you must return !0 so that the kprobes +stops single stepping and just returns to given address. +This also means post_handler should not be called anymore. + +Note that this operation may be harder on some architectures which +use TOC (Table of Contents) for function call, since you have to +setup new TOC for your function in your module, and recover old +one after back from it. + Return Probes ------------- |