6ee9beab32
git-subtree-dir: externals/zydis git-subtree-split: 25193db008e8799ff59fd655c2a26b2ffd79d40d
330 lines
12 KiB
C
330 lines
12 KiB
C
/***************************************************************************************************
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Zyan Disassembler Library (Zydis)
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Original Author : Joel Hoener
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in all
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* copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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***************************************************************************************************/
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// NOTE: This file must be valid C AND C++ as well for OSS-Fuzz!
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/**
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* @file
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*
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* This file implements a tool that is supposed to be fed as input for fuzzers like AFL, reading a
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* control block from `stdin`, allowing the fuzzer to reach every possible code-path, testing any
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* possible combination of disassembler configurations.
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*/
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#include <stdio.h>
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#include <Zycore/LibC.h>
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#include <Zydis/Zydis.h>
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#ifdef ZYAN_WINDOWS
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# include <fcntl.h>
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# include <io.h>
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#endif
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/* ============================================================================================== */
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/* Enums and types */
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/* ============================================================================================== */
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/**
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* Main fuzzer control block data structure.
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*/
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typedef struct ZydisFuzzControlBlock_
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{
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ZydisMachineMode machine_mode;
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ZydisAddressWidth address_width;
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ZyanBool decoder_mode[ZYDIS_DECODER_MODE_MAX_VALUE + 1];
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ZydisFormatterStyle formatter_style;
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ZyanU64 u64; // u64 used for all kind of non-overlapping purposes
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ZyanUPointer formatter_properties[ZYDIS_FORMATTER_PROP_MAX_VALUE + 1];
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char string[16];
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ZyanU16 formatter_max_len;
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} ZydisFuzzControlBlock;
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/* ============================================================================================== */
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/* Macros */
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/* ============================================================================================== */
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// Limit maximum amount of bytes
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#define ZYDIS_FUZZ_MAX_BYTES (1024 * 10 /* 10 KiB */)
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#if defined(ZYDIS_FUZZ_AFL_FAST) || defined(ZYDIS_LIBFUZZER)
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# define ZYDIS_MAYBE_FPUTS(x, y)
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#else
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# define ZYDIS_MAYBE_FPUTS(x, y) fputs(x, y)
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#endif
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/* ============================================================================================== */
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/* Stream reading abstraction */
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/* ============================================================================================== */
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typedef ZyanUSize (*ZydisStreamRead)(void* ctx, ZyanU8* buf, ZyanUSize max_len);
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ZyanUSize ZydisStdinRead(void *ctx, ZyanU8* buf, ZyanUSize max_len)
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{
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ZYAN_UNUSED(ctx);
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return fread(buf, 1, max_len, ZYAN_STDIN);
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}
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#ifdef ZYDIS_LIBFUZZER
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typedef struct
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{
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ZyanU8 *buf;
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ZyanISize buf_len;
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ZyanISize read_offs;
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} ZydisLibFuzzerContext;
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ZyanUSize ZydisLibFuzzerRead(void* ctx, ZyanU8* buf, ZyanUSize max_len)
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{
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ZydisLibFuzzerContext* c = (ZydisLibFuzzerContext*)ctx;
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ZyanUSize len = ZYAN_MIN(c->buf_len - c->read_offs, max_len);
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// printf("buf_len: %ld, read_offs: %ld, len: %ld, max_len: %ld, ptr: %p\n",
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// c->buf_len, c->read_offs, len, max_len, c->buf + c->read_offs);
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if (!len)
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{
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return 0;
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}
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ZYAN_MEMCPY(buf, c->buf + c->read_offs, len);
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c->read_offs += len;
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return len;
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}
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#endif // ZYDIS_LIBFUZZER
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/* ============================================================================================== */
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/* Main iteration */
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/* ============================================================================================== */
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// We disable enum sanitization here because we actually want Zydis to be tested with
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// possibly invalid enum values in mind, thus need to be able to create them here.
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ZYAN_NO_SANITIZE("enum")
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static int ZydisFuzzIteration(ZydisStreamRead read_fn, void* stream_ctx)
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{
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ZydisFuzzControlBlock control_block;
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#ifdef ZYAN_WINDOWS
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// The `stdin` pipe uses text-mode on Windows platforms by default. We need it to be opened in
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// binary mode
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(void)_setmode(_fileno(ZYAN_STDIN), _O_BINARY);
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#endif
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if (read_fn(
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stream_ctx, (ZyanU8*)&control_block, sizeof(control_block)) != sizeof(control_block))
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{
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ZYDIS_MAYBE_FPUTS("Not enough bytes to fuzz\n", ZYAN_STDERR);
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return EXIT_SUCCESS;
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}
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control_block.string[ZYAN_ARRAY_LENGTH(control_block.string) - 1] = 0;
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ZydisDecoder decoder;
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if (!ZYAN_SUCCESS(ZydisDecoderInit(&decoder, control_block.machine_mode,
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control_block.address_width)))
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{
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ZYDIS_MAYBE_FPUTS("Failed to initialize decoder\n", ZYAN_STDERR);
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return EXIT_FAILURE;
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}
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for (int mode = 0; mode <= ZYDIS_DECODER_MODE_MAX_VALUE; ++mode)
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{
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if (!ZYAN_SUCCESS(ZydisDecoderEnableMode(&decoder, (ZydisDecoderMode)mode,
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control_block.decoder_mode[mode] ? 1 : 0)))
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{
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ZYDIS_MAYBE_FPUTS("Failed to adjust decoder-mode\n", ZYAN_STDERR);
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return EXIT_FAILURE;
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}
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}
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ZydisFormatter formatter;
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if (!ZYAN_SUCCESS(ZydisFormatterInit(&formatter, control_block.formatter_style)))
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{
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ZYDIS_MAYBE_FPUTS("Failed to initialize formatter\n", ZYAN_STDERR);
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return EXIT_FAILURE;
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}
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for (int prop = 0; prop <= ZYDIS_FORMATTER_PROP_MAX_VALUE; ++prop)
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{
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switch (prop)
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{
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case ZYDIS_FORMATTER_PROP_DEC_PREFIX:
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case ZYDIS_FORMATTER_PROP_DEC_SUFFIX:
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case ZYDIS_FORMATTER_PROP_HEX_PREFIX:
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case ZYDIS_FORMATTER_PROP_HEX_SUFFIX:
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control_block.formatter_properties[prop] =
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control_block.formatter_properties[prop] ? (ZyanUPointer)&control_block.string : 0;
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break;
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default:
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break;
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}
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if (!ZYAN_SUCCESS(ZydisFormatterSetProperty(&formatter, (ZydisFormatterProperty)prop,
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control_block.formatter_properties[prop])))
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{
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ZYDIS_MAYBE_FPUTS("Failed to set formatter-attribute\n", ZYAN_STDERR);
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return EXIT_FAILURE;
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}
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}
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ZyanU8 buffer[32];
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ZyanUSize input_len = read_fn(stream_ctx, buffer, sizeof(buffer));
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ZydisDecodedInstruction instruction;
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// Fuzz decoder.
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ZyanStatus status = ZydisDecoderDecodeBuffer(&decoder, buffer, input_len, &instruction);
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if (!ZYAN_SUCCESS(status))
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{
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return EXIT_FAILURE;
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}
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// Fuzz formatter.
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char format_buffer[256];
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// Allow the control block to artificially restrict the buffer size.
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ZyanUSize output_len = ZYAN_MIN(sizeof(format_buffer), control_block.formatter_max_len);
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ZydisFormatterFormatInstruction(&formatter, &instruction, format_buffer, output_len,
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control_block.u64);
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// Fuzz tokenizer.
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const ZydisFormatterToken* token;
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status = ZydisFormatterTokenizeInstruction(&formatter, &instruction, format_buffer, output_len,
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control_block.u64, &token);
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// Walk tokens.
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while (ZYAN_SUCCESS(status))
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{
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ZydisTokenType type;
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ZyanConstCharPointer value;
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if (!ZYAN_SUCCESS(status = ZydisFormatterTokenGetValue(token, &type, &value)))
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{
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ZYDIS_MAYBE_FPUTS("Failed to get token value\n", ZYAN_STDERR);
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break;
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}
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status = ZydisFormatterTokenNext(&token);
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}
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if (instruction.operand_count > 0)
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{
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// Fuzz single operand formatting. We reuse rt-address for operand selection.
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// It's casted to u8 because modulo is way cheaper on that.
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ZyanU8 op_idx = (ZyanU8)control_block.u64 % instruction.operand_count;
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ZydisFormatterFormatOperand(&formatter, &instruction, op_idx, format_buffer, output_len,
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control_block.u64);
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// Fuzz single operand tokenization.
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ZydisFormatterTokenizeOperand(&formatter, &instruction, op_idx, format_buffer, output_len,
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control_block.u64, &token);
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// Address translation helper.
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ZyanU64 abs_addr;
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ZydisCalcAbsoluteAddress(&instruction, &instruction.operands[op_idx],
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control_block.u64, &abs_addr);
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}
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// Mnemonic helpers.
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ZydisMnemonicGetString((ZydisMnemonic)control_block.u64);
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ZydisMnemonicGetStringWrapped((ZydisMnemonic)control_block.u64);
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// Flag helpers.
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ZydisCPUFlagAction flag_action = (ZydisCPUFlagAction)control_block.u64;
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ZydisCPUFlags flags;
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ZydisGetAccessedFlagsByAction(&instruction, flag_action, &flags);
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// Instruction segment helper.
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ZydisInstructionSegments segments;
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ZydisGetInstructionSegments(&instruction, &segments);
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// Feature enable check helper.
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ZydisIsFeatureEnabled((ZydisFeature)control_block.u64);
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// Register helpers.
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ZydisRegisterEncode((ZydisRegisterClass)(control_block.u64 >> 8), (ZyanU8)control_block.u64);
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ZydisRegisterGetId((ZydisRegister)control_block.u64);
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ZydisRegisterGetClass((ZydisRegister)control_block.u64);
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ZydisRegisterGetWidth(control_block.machine_mode, (ZydisRegister)control_block.u64);
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ZydisRegisterGetLargestEnclosing(control_block.machine_mode, (ZydisRegister)control_block.u64);
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ZydisRegisterGetString((ZydisRegister)control_block.u64);
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ZydisRegisterGetStringWrapped((ZydisRegister)control_block.u64);
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ZydisRegisterClassGetWidth(control_block.machine_mode, (ZydisRegisterClass)control_block.u64);
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return EXIT_SUCCESS;
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}
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/* ============================================================================================== */
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/* Entry point */
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/* ============================================================================================== */
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#ifdef ZYDIS_LIBFUZZER
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#ifdef __cplusplus
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extern "C" {
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#endif
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int LLVMFuzzerInitialize(int *argc, char ***argv)
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{
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ZYAN_UNUSED(argc);
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ZYAN_UNUSED(argv);
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if (ZydisGetVersion() != ZYDIS_VERSION)
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{
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fputs("Invalid zydis version\n", ZYAN_STDERR);
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return EXIT_FAILURE;
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}
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return EXIT_SUCCESS;
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}
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int LLVMFuzzerTestOneInput(ZyanU8 *buf, ZyanUSize len)
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{
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ZydisLibFuzzerContext ctx;
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ctx.buf = buf;
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ctx.buf_len = len;
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ctx.read_offs = 0;
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ZydisFuzzIteration(&ZydisLibFuzzerRead, &ctx);
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return 0;
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}
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#ifdef __cplusplus
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} // extern "C"
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#endif
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#else // !ZYDIS_LIBFUZZER
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int main(void)
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{
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if (ZydisGetVersion() != ZYDIS_VERSION)
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{
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fputs("Invalid zydis version\n", ZYAN_STDERR);
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return EXIT_FAILURE;
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}
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#ifdef ZYDIS_FUZZ_AFL_FAST
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while (__AFL_LOOP(1000))
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{
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ZydisFuzzIteration(&ZydisStdinRead, ZYAN_NULL);
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}
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return EXIT_SUCCESS;
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#else
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return ZydisFuzzIteration(&ZydisStdinRead, ZYAN_NULL);
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#endif
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}
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#endif // ZYDIS_LIBFUZZER
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/* ============================================================================================== */
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