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afl-unicorn-cpu-translate-inl.h
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afl-unicorn-cpu-translate-inl.h
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/*
american fuzzy lop++ - unicorn instrumentation
----------------------------------------------
Originally written by Andrew Griffiths <[email protected]> and
Michal Zalewski
Adapted for afl-unicorn by Dominik Maier <[email protected]>
CompareCoverage and NeverZero counters by Andrea Fioraldi
Copyright 2015, 2016, 2017 Google Inc. All rights reserved.
Copyright 2019 AFLplusplus Project. All rights reserved.
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at:
http://www.apache.org/licenses/LICENSE-2.0
This code is a shim patched into the separately-distributed source
code of Unicorn 1.0.1. It leverages the built-in QEMU tracing functionality
to implement AFL-style instrumentation and to take care of the remaining
parts of the AFL fork server logic.
The resulting libunicorn binary is essentially a standalone instrumentation
tool; for an example of how to leverage it for other purposes, you can
have a look at afl-showmap.c.
*/
#include "config.h"
#include "types.h"
/* These are executed on code generation. Execution is in afl-unicorn-tcg-runtime-inl.h */
/* Roughly afl_gen_maybe_log -> gen_afl_maybe_log -> emit HELPER(afl_maybe_log) -> call afl_maybe_log */
static void afl_gen_maybe_log(TCGContext *s, uint64_t cur_loc) {
if (!s->uc->afl_area_ptr) return;
/* "Hash" */
cur_loc = (cur_loc >> 4) ^ (cur_loc << 8);
cur_loc &= MAP_SIZE - 7;
/* Implement probabilistic instrumentation by looking at scrambled block
address. This keeps the instrumented locations stable across runs. */
if (cur_loc >= s->uc->afl_inst_rms) return;
gen_afl_maybe_log(s, cur_loc);
}
// Currently only arm32 and x86. We undefine it for others to silence unused func compiler warnings.
#if defined(ARCH_HAS_COMPCOV)
static void afl_gen_compcov(TCGContext *s, uint64_t cur_loc, TCGv arg1,
TCGv arg2, TCGMemOp ot, int is_imm) {
if (!s->uc->afl_compcov_level || !s->uc->afl_area_ptr) return;
if (!is_imm && s->uc->afl_compcov_level < 2) return;
cur_loc = (cur_loc >> 4) ^ (cur_loc << 8);
cur_loc &= MAP_SIZE - 7;
if (cur_loc >= s->uc->afl_inst_rms) return;
switch (ot) {
case MO_64: gen_afl_compcov_log_64(s, cur_loc, (TCGv_i64)arg1, (TCGv_i64)arg2); break;
case MO_32: gen_afl_compcov_log_32(s, cur_loc, (TCGv_i32)arg1, (TCGv_i32)arg2); break;
case MO_16: gen_afl_compcov_log_16(s, cur_loc, (TCGv_i32)arg1, (TCGv_i32)arg2); break;
default: return;
}
}
#endif