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Craig Topperabfe07e2014-10-07 07:29:46 +00001//===-- X86DisassemblerDecoder.cpp - Disassembler decoder -----------------===//
Richard Smith89ee75d2014-04-20 21:07:34 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file is part of the X86 Disassembler.
11// It contains the implementation of the instruction decoder.
12// Documentation for the disassembler can be found in X86Disassembler.h.
13//
14//===----------------------------------------------------------------------===//
Sean Callanan04cc3072009-12-19 02:59:52 +000015
Craig Topperabfe07e2014-10-07 07:29:46 +000016#include <cstdarg> /* for va_*() */
17#include <cstdio> /* for vsnprintf() */
18#include <cstdlib> /* for exit() */
19#include <cstring> /* for memset() */
Sean Callanan04cc3072009-12-19 02:59:52 +000020
21#include "X86DisassemblerDecoder.h"
22
Richard Smith89ee75d2014-04-20 21:07:34 +000023using namespace llvm::X86Disassembler;
24
Richard Smithac15f1c2014-04-20 21:52:16 +000025/// Specifies whether a ModR/M byte is needed and (if so) which
26/// instruction each possible value of the ModR/M byte corresponds to. Once
27/// this information is known, we have narrowed down to a single instruction.
28struct ModRMDecision {
29 uint8_t modrm_type;
30 uint16_t instructionIDs;
31};
32
33/// Specifies which set of ModR/M->instruction tables to look at
34/// given a particular opcode.
35struct OpcodeDecision {
36 ModRMDecision modRMDecisions[256];
37};
38
39/// Specifies which opcode->instruction tables to look at given
40/// a particular context (set of attributes). Since there are many possible
41/// contexts, the decoder first uses CONTEXTS_SYM to determine which context
42/// applies given a specific set of attributes. Hence there are only IC_max
43/// entries in this table, rather than 2^(ATTR_max).
44struct ContextDecision {
45 OpcodeDecision opcodeDecisions[IC_max];
46};
47
Sean Callanan04cc3072009-12-19 02:59:52 +000048#include "X86GenDisassemblerTables.inc"
49
Sean Callanan010b3732010-04-02 21:23:51 +000050#ifndef NDEBUG
Richard Smith89ee75d2014-04-20 21:07:34 +000051#define debug(s) do { Debug(__FILE__, __LINE__, s); } while (0)
Sean Callanan010b3732010-04-02 21:23:51 +000052#else
53#define debug(s) do { } while (0)
54#endif
55
Sean Callanan04cc3072009-12-19 02:59:52 +000056
57/*
58 * contextForAttrs - Client for the instruction context table. Takes a set of
59 * attributes and returns the appropriate decode context.
60 *
61 * @param attrMask - Attributes, from the enumeration attributeBits.
62 * @return - The InstructionContext to use when looking up an
63 * an instruction with these attributes.
64 */
Elena Demikhovsky371e3632013-12-25 11:40:51 +000065static InstructionContext contextForAttrs(uint16_t attrMask) {
Richard Smith89ee75d2014-04-20 21:07:34 +000066 return static_cast<InstructionContext>(CONTEXTS_SYM[attrMask]);
Sean Callanan04cc3072009-12-19 02:59:52 +000067}
68
69/*
70 * modRMRequired - Reads the appropriate instruction table to determine whether
71 * the ModR/M byte is required to decode a particular instruction.
72 *
73 * @param type - The opcode type (i.e., how many bytes it has).
74 * @param insnContext - The context for the instruction, as returned by
75 * contextForAttrs.
76 * @param opcode - The last byte of the instruction's opcode, not counting
77 * ModR/M extensions and escapes.
Richard Smith5d5061032014-04-20 22:15:37 +000078 * @return - true if the ModR/M byte is required, false otherwise.
Sean Callanan04cc3072009-12-19 02:59:52 +000079 */
Sean Callanan588785c2009-12-22 22:51:40 +000080static int modRMRequired(OpcodeType type,
Craig Topper21c33652011-10-02 16:56:09 +000081 InstructionContext insnContext,
Elena Demikhovsky371e3632013-12-25 11:40:51 +000082 uint16_t opcode) {
Craig Toppere73658d2014-04-28 04:05:08 +000083 const struct ContextDecision* decision = nullptr;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +000084
Sean Callanan04cc3072009-12-19 02:59:52 +000085 switch (type) {
86 case ONEBYTE:
87 decision = &ONEBYTE_SYM;
88 break;
89 case TWOBYTE:
90 decision = &TWOBYTE_SYM;
91 break;
92 case THREEBYTE_38:
93 decision = &THREEBYTE38_SYM;
94 break;
95 case THREEBYTE_3A:
96 decision = &THREEBYTE3A_SYM;
97 break;
Craig Topper9e3e38a2013-10-03 05:17:48 +000098 case XOP8_MAP:
99 decision = &XOP8_MAP_SYM;
100 break;
101 case XOP9_MAP:
102 decision = &XOP9_MAP_SYM;
103 break;
104 case XOPA_MAP:
105 decision = &XOPA_MAP_SYM;
106 break;
Sean Callanan04cc3072009-12-19 02:59:52 +0000107 }
Ahmed Charles636a3d62012-02-19 11:37:01 +0000108
Sean Callanan04cc3072009-12-19 02:59:52 +0000109 return decision->opcodeDecisions[insnContext].modRMDecisions[opcode].
110 modrm_type != MODRM_ONEENTRY;
Sean Callanan04cc3072009-12-19 02:59:52 +0000111}
112
113/*
114 * decode - Reads the appropriate instruction table to obtain the unique ID of
115 * an instruction.
116 *
117 * @param type - See modRMRequired().
118 * @param insnContext - See modRMRequired().
119 * @param opcode - See modRMRequired().
120 * @param modRM - The ModR/M byte if required, or any value if not.
Sean Callanan010b3732010-04-02 21:23:51 +0000121 * @return - The UID of the instruction, or 0 on failure.
Sean Callanan04cc3072009-12-19 02:59:52 +0000122 */
Sean Callanan588785c2009-12-22 22:51:40 +0000123static InstrUID decode(OpcodeType type,
Sean Callanan010b3732010-04-02 21:23:51 +0000124 InstructionContext insnContext,
125 uint8_t opcode,
126 uint8_t modRM) {
Craig Toppere73658d2014-04-28 04:05:08 +0000127 const struct ModRMDecision* dec = nullptr;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000128
Sean Callanan04cc3072009-12-19 02:59:52 +0000129 switch (type) {
Sean Callanan04cc3072009-12-19 02:59:52 +0000130 case ONEBYTE:
131 dec = &ONEBYTE_SYM.opcodeDecisions[insnContext].modRMDecisions[opcode];
132 break;
133 case TWOBYTE:
134 dec = &TWOBYTE_SYM.opcodeDecisions[insnContext].modRMDecisions[opcode];
135 break;
136 case THREEBYTE_38:
137 dec = &THREEBYTE38_SYM.opcodeDecisions[insnContext].modRMDecisions[opcode];
138 break;
139 case THREEBYTE_3A:
140 dec = &THREEBYTE3A_SYM.opcodeDecisions[insnContext].modRMDecisions[opcode];
141 break;
Craig Topper9e3e38a2013-10-03 05:17:48 +0000142 case XOP8_MAP:
143 dec = &XOP8_MAP_SYM.opcodeDecisions[insnContext].modRMDecisions[opcode];
144 break;
145 case XOP9_MAP:
146 dec = &XOP9_MAP_SYM.opcodeDecisions[insnContext].modRMDecisions[opcode];
147 break;
148 case XOPA_MAP:
149 dec = &XOPA_MAP_SYM.opcodeDecisions[insnContext].modRMDecisions[opcode];
150 break;
Sean Callanan04cc3072009-12-19 02:59:52 +0000151 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000152
Sean Callanan04cc3072009-12-19 02:59:52 +0000153 switch (dec->modrm_type) {
154 default:
Sean Callanan010b3732010-04-02 21:23:51 +0000155 debug("Corrupt table! Unknown modrm_type");
156 return 0;
Sean Callanan04cc3072009-12-19 02:59:52 +0000157 case MODRM_ONEENTRY:
Craig Topper487e7442012-02-09 07:45:30 +0000158 return modRMTable[dec->instructionIDs];
Sean Callanan04cc3072009-12-19 02:59:52 +0000159 case MODRM_SPLITRM:
160 if (modFromModRM(modRM) == 0x3)
Craig Topper487e7442012-02-09 07:45:30 +0000161 return modRMTable[dec->instructionIDs+1];
162 return modRMTable[dec->instructionIDs];
Craig Toppera0cd9702012-02-09 08:58:07 +0000163 case MODRM_SPLITREG:
164 if (modFromModRM(modRM) == 0x3)
165 return modRMTable[dec->instructionIDs+((modRM & 0x38) >> 3)+8];
166 return modRMTable[dec->instructionIDs+((modRM & 0x38) >> 3)];
Craig Topper963305b2012-09-13 05:45:42 +0000167 case MODRM_SPLITMISC:
168 if (modFromModRM(modRM) == 0x3)
169 return modRMTable[dec->instructionIDs+(modRM & 0x3f)+8];
170 return modRMTable[dec->instructionIDs+((modRM & 0x38) >> 3)];
Sean Callanan04cc3072009-12-19 02:59:52 +0000171 case MODRM_FULL:
Craig Topper487e7442012-02-09 07:45:30 +0000172 return modRMTable[dec->instructionIDs+modRM];
Sean Callanan04cc3072009-12-19 02:59:52 +0000173 }
Sean Callanan04cc3072009-12-19 02:59:52 +0000174}
175
176/*
177 * specifierForUID - Given a UID, returns the name and operand specification for
178 * that instruction.
179 *
180 * @param uid - The unique ID for the instruction. This should be returned by
181 * decode(); specifierForUID will not check bounds.
182 * @return - A pointer to the specification for that instruction.
183 */
Benjamin Kramerde0a4fb2010-10-23 09:10:44 +0000184static const struct InstructionSpecifier *specifierForUID(InstrUID uid) {
Sean Callanan04cc3072009-12-19 02:59:52 +0000185 return &INSTRUCTIONS_SYM[uid];
186}
187
188/*
189 * consumeByte - Uses the reader function provided by the user to consume one
190 * byte from the instruction's memory and advance the cursor.
191 *
192 * @param insn - The instruction with the reader function to use. The cursor
193 * for this instruction is advanced.
194 * @param byte - A pointer to a pre-allocated memory buffer to be populated
195 * with the data read.
196 * @return - 0 if the read was successful; nonzero otherwise.
197 */
Sean Callanan588785c2009-12-22 22:51:40 +0000198static int consumeByte(struct InternalInstruction* insn, uint8_t* byte) {
Sean Callanan04cc3072009-12-19 02:59:52 +0000199 int ret = insn->reader(insn->readerArg, byte, insn->readerCursor);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000200
Sean Callanan04cc3072009-12-19 02:59:52 +0000201 if (!ret)
202 ++(insn->readerCursor);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000203
Sean Callanan04cc3072009-12-19 02:59:52 +0000204 return ret;
205}
206
207/*
208 * lookAtByte - Like consumeByte, but does not advance the cursor.
209 *
210 * @param insn - See consumeByte().
211 * @param byte - See consumeByte().
212 * @return - See consumeByte().
213 */
Sean Callanan588785c2009-12-22 22:51:40 +0000214static int lookAtByte(struct InternalInstruction* insn, uint8_t* byte) {
Sean Callanan04cc3072009-12-19 02:59:52 +0000215 return insn->reader(insn->readerArg, byte, insn->readerCursor);
216}
217
Sean Callanan588785c2009-12-22 22:51:40 +0000218static void unconsumeByte(struct InternalInstruction* insn) {
Sean Callanan04cc3072009-12-19 02:59:52 +0000219 insn->readerCursor--;
220}
221
Sean Callanan588785c2009-12-22 22:51:40 +0000222#define CONSUME_FUNC(name, type) \
223 static int name(struct InternalInstruction* insn, type* ptr) { \
224 type combined = 0; \
225 unsigned offset; \
226 for (offset = 0; offset < sizeof(type); ++offset) { \
227 uint8_t byte; \
228 int ret = insn->reader(insn->readerArg, \
229 &byte, \
230 insn->readerCursor + offset); \
231 if (ret) \
232 return ret; \
Richard Smith228e6d42012-08-24 23:29:28 +0000233 combined = combined | ((uint64_t)byte << (offset * 8)); \
Sean Callanan588785c2009-12-22 22:51:40 +0000234 } \
235 *ptr = combined; \
236 insn->readerCursor += sizeof(type); \
237 return 0; \
Sean Callanan04cc3072009-12-19 02:59:52 +0000238 }
239
240/*
241 * consume* - Use the reader function provided by the user to consume data
242 * values of various sizes from the instruction's memory and advance the
243 * cursor appropriately. These readers perform endian conversion.
244 *
245 * @param insn - See consumeByte().
246 * @param ptr - A pointer to a pre-allocated memory of appropriate size to
247 * be populated with the data read.
248 * @return - See consumeByte().
249 */
250CONSUME_FUNC(consumeInt8, int8_t)
251CONSUME_FUNC(consumeInt16, int16_t)
252CONSUME_FUNC(consumeInt32, int32_t)
253CONSUME_FUNC(consumeUInt16, uint16_t)
254CONSUME_FUNC(consumeUInt32, uint32_t)
255CONSUME_FUNC(consumeUInt64, uint64_t)
256
257/*
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000258 * dbgprintf - Uses the logging function provided by the user to log a single
Sean Callanan04cc3072009-12-19 02:59:52 +0000259 * message, typically without a carriage-return.
260 *
261 * @param insn - The instruction containing the logging function.
262 * @param format - See printf().
263 * @param ... - See printf().
264 */
Sean Callanan588785c2009-12-22 22:51:40 +0000265static void dbgprintf(struct InternalInstruction* insn,
266 const char* format,
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000267 ...) {
Sean Callanan04cc3072009-12-19 02:59:52 +0000268 char buffer[256];
269 va_list ap;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000270
Sean Callanan04cc3072009-12-19 02:59:52 +0000271 if (!insn->dlog)
272 return;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000273
Sean Callanan04cc3072009-12-19 02:59:52 +0000274 va_start(ap, format);
275 (void)vsnprintf(buffer, sizeof(buffer), format, ap);
276 va_end(ap);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000277
Sean Callanan04cc3072009-12-19 02:59:52 +0000278 insn->dlog(insn->dlogArg, buffer);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000279
Sean Callanan04cc3072009-12-19 02:59:52 +0000280 return;
281}
282
283/*
284 * setPrefixPresent - Marks that a particular prefix is present at a particular
285 * location.
286 *
287 * @param insn - The instruction to be marked as having the prefix.
288 * @param prefix - The prefix that is present.
289 * @param location - The location where the prefix is located (in the address
290 * space of the instruction's reader).
291 */
Sean Callanan588785c2009-12-22 22:51:40 +0000292static void setPrefixPresent(struct InternalInstruction* insn,
Sean Callanan04cc3072009-12-19 02:59:52 +0000293 uint8_t prefix,
294 uint64_t location)
295{
296 insn->prefixPresent[prefix] = 1;
297 insn->prefixLocations[prefix] = location;
298}
299
300/*
301 * isPrefixAtLocation - Queries an instruction to determine whether a prefix is
302 * present at a given location.
303 *
304 * @param insn - The instruction to be queried.
305 * @param prefix - The prefix.
306 * @param location - The location to query.
307 * @return - Whether the prefix is at that location.
308 */
Richard Smith5d5061032014-04-20 22:15:37 +0000309static bool isPrefixAtLocation(struct InternalInstruction* insn,
Sean Callanan588785c2009-12-22 22:51:40 +0000310 uint8_t prefix,
311 uint64_t location)
Sean Callanan04cc3072009-12-19 02:59:52 +0000312{
313 if (insn->prefixPresent[prefix] == 1 &&
314 insn->prefixLocations[prefix] == location)
Richard Smith5d5061032014-04-20 22:15:37 +0000315 return true;
Sean Callanan04cc3072009-12-19 02:59:52 +0000316 else
Richard Smith5d5061032014-04-20 22:15:37 +0000317 return false;
Sean Callanan04cc3072009-12-19 02:59:52 +0000318}
319
320/*
321 * readPrefixes - Consumes all of an instruction's prefix bytes, and marks the
322 * instruction as having them. Also sets the instruction's default operand,
323 * address, and other relevant data sizes to report operands correctly.
324 *
325 * @param insn - The instruction whose prefixes are to be read.
326 * @return - 0 if the instruction could be read until the end of the prefix
327 * bytes, and no prefixes conflicted; nonzero otherwise.
328 */
329static int readPrefixes(struct InternalInstruction* insn) {
Richard Smith5d5061032014-04-20 22:15:37 +0000330 bool isPrefix = true;
331 bool prefixGroups[4] = { false };
Sean Callanan04cc3072009-12-19 02:59:52 +0000332 uint64_t prefixLocation;
Ted Kremenek3c4408c2011-01-23 17:05:06 +0000333 uint8_t byte = 0;
Richard Mitton79917a92013-08-30 21:32:42 +0000334 uint8_t nextByte;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000335
Richard Smith5d5061032014-04-20 22:15:37 +0000336 bool hasAdSize = false;
337 bool hasOpSize = false;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000338
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000339 dbgprintf(insn, "readPrefixes()");
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000340
Sean Callanan04cc3072009-12-19 02:59:52 +0000341 while (isPrefix) {
342 prefixLocation = insn->readerCursor;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000343
Richard Mitton576ee002013-08-30 21:19:48 +0000344 /* If we fail reading prefixes, just stop here and let the opcode reader deal with it */
Sean Callanan04cc3072009-12-19 02:59:52 +0000345 if (consumeByte(insn, &byte))
Richard Mitton576ee002013-08-30 21:19:48 +0000346 break;
Kevin Enderby014e1cd2012-03-09 17:52:49 +0000347
Benjamin Krameradfc73d2012-03-10 15:10:06 +0000348 /*
Dave Zarzycki07fabee2013-03-25 18:59:38 +0000349 * If the byte is a LOCK/REP/REPNE prefix and not a part of the opcode, then
350 * break and let it be disassembled as a normal "instruction".
Benjamin Krameradfc73d2012-03-10 15:10:06 +0000351 */
Richard Mitton576ee002013-08-30 21:19:48 +0000352 if (insn->readerCursor - 1 == insn->startLocation && byte == 0xf0)
353 break;
354
Dave Zarzycki07fabee2013-03-25 18:59:38 +0000355 if (insn->readerCursor - 1 == insn->startLocation
Richard Mitton576ee002013-08-30 21:19:48 +0000356 && (byte == 0xf2 || byte == 0xf3)
357 && !lookAtByte(insn, &nextByte))
358 {
Kevin Enderby35fd7922013-06-20 22:32:18 +0000359 /*
360 * If the byte is 0xf2 or 0xf3, and any of the following conditions are
361 * met:
362 * - it is followed by a LOCK (0xf0) prefix
363 * - it is followed by an xchg instruction
364 * then it should be disassembled as a xacquire/xrelease not repne/rep.
365 */
366 if ((byte == 0xf2 || byte == 0xf3) &&
367 ((nextByte == 0xf0) |
368 ((nextByte & 0xfe) == 0x86 || (nextByte & 0xf8) == 0x90)))
Richard Smith5d5061032014-04-20 22:15:37 +0000369 insn->xAcquireRelease = true;
Kevin Enderby35fd7922013-06-20 22:32:18 +0000370 /*
371 * Also if the byte is 0xf3, and the following condition is met:
372 * - it is followed by a "mov mem, reg" (opcode 0x88/0x89) or
373 * "mov mem, imm" (opcode 0xc6/0xc7) instructions.
374 * then it should be disassembled as an xrelease not rep.
375 */
376 if (byte == 0xf3 &&
377 (nextByte == 0x88 || nextByte == 0x89 ||
378 nextByte == 0xc6 || nextByte == 0xc7))
Richard Smith5d5061032014-04-20 22:15:37 +0000379 insn->xAcquireRelease = true;
Dave Zarzycki07fabee2013-03-25 18:59:38 +0000380 if (insn->mode == MODE_64BIT && (nextByte & 0xf0) == 0x40) {
381 if (consumeByte(insn, &nextByte))
382 return -1;
383 if (lookAtByte(insn, &nextByte))
384 return -1;
385 unconsumeByte(insn);
386 }
387 if (nextByte != 0x0f && nextByte != 0x90)
388 break;
389 }
390
Sean Callanan04cc3072009-12-19 02:59:52 +0000391 switch (byte) {
392 case 0xf0: /* LOCK */
393 case 0xf2: /* REPNE/REPNZ */
394 case 0xf3: /* REP or REPE/REPZ */
395 if (prefixGroups[0])
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000396 dbgprintf(insn, "Redundant Group 1 prefix");
Richard Smith5d5061032014-04-20 22:15:37 +0000397 prefixGroups[0] = true;
Sean Callanan04cc3072009-12-19 02:59:52 +0000398 setPrefixPresent(insn, byte, prefixLocation);
399 break;
400 case 0x2e: /* CS segment override -OR- Branch not taken */
401 case 0x36: /* SS segment override -OR- Branch taken */
402 case 0x3e: /* DS segment override */
403 case 0x26: /* ES segment override */
404 case 0x64: /* FS segment override */
405 case 0x65: /* GS segment override */
406 switch (byte) {
407 case 0x2e:
408 insn->segmentOverride = SEG_OVERRIDE_CS;
409 break;
410 case 0x36:
411 insn->segmentOverride = SEG_OVERRIDE_SS;
412 break;
413 case 0x3e:
414 insn->segmentOverride = SEG_OVERRIDE_DS;
415 break;
416 case 0x26:
417 insn->segmentOverride = SEG_OVERRIDE_ES;
418 break;
419 case 0x64:
420 insn->segmentOverride = SEG_OVERRIDE_FS;
421 break;
422 case 0x65:
423 insn->segmentOverride = SEG_OVERRIDE_GS;
424 break;
425 default:
Sean Callanan010b3732010-04-02 21:23:51 +0000426 debug("Unhandled override");
427 return -1;
Sean Callanan04cc3072009-12-19 02:59:52 +0000428 }
429 if (prefixGroups[1])
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000430 dbgprintf(insn, "Redundant Group 2 prefix");
Richard Smith5d5061032014-04-20 22:15:37 +0000431 prefixGroups[1] = true;
Sean Callanan04cc3072009-12-19 02:59:52 +0000432 setPrefixPresent(insn, byte, prefixLocation);
433 break;
434 case 0x66: /* Operand-size override */
435 if (prefixGroups[2])
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000436 dbgprintf(insn, "Redundant Group 3 prefix");
Richard Smith5d5061032014-04-20 22:15:37 +0000437 prefixGroups[2] = true;
438 hasOpSize = true;
Sean Callanan04cc3072009-12-19 02:59:52 +0000439 setPrefixPresent(insn, byte, prefixLocation);
440 break;
441 case 0x67: /* Address-size override */
442 if (prefixGroups[3])
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000443 dbgprintf(insn, "Redundant Group 4 prefix");
Richard Smith5d5061032014-04-20 22:15:37 +0000444 prefixGroups[3] = true;
445 hasAdSize = true;
Sean Callanan04cc3072009-12-19 02:59:52 +0000446 setPrefixPresent(insn, byte, prefixLocation);
447 break;
448 default: /* Not a prefix byte */
Richard Smith5d5061032014-04-20 22:15:37 +0000449 isPrefix = false;
Sean Callanan04cc3072009-12-19 02:59:52 +0000450 break;
451 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000452
Sean Callanan04cc3072009-12-19 02:59:52 +0000453 if (isPrefix)
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000454 dbgprintf(insn, "Found prefix 0x%hhx", byte);
Sean Callanan04cc3072009-12-19 02:59:52 +0000455 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000456
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000457 insn->vectorExtensionType = TYPE_NO_VEX_XOP;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000458
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000459 if (byte == 0x62) {
460 uint8_t byte1, byte2;
461
462 if (consumeByte(insn, &byte1)) {
463 dbgprintf(insn, "Couldn't read second byte of EVEX prefix");
464 return -1;
465 }
466
467 if (lookAtByte(insn, &byte2)) {
468 dbgprintf(insn, "Couldn't read third byte of EVEX prefix");
469 return -1;
470 }
471
472 if ((insn->mode == MODE_64BIT || (byte1 & 0xc0) == 0xc0) &&
473 ((~byte1 & 0xc) == 0xc) && ((byte2 & 0x4) == 0x4)) {
474 insn->vectorExtensionType = TYPE_EVEX;
Craig Topper273515e2014-10-07 07:29:48 +0000475 } else {
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000476 unconsumeByte(insn); /* unconsume byte1 */
477 unconsumeByte(insn); /* unconsume byte */
478 insn->necessaryPrefixLocation = insn->readerCursor - 2;
479 }
480
481 if (insn->vectorExtensionType == TYPE_EVEX) {
482 insn->vectorExtensionPrefix[0] = byte;
483 insn->vectorExtensionPrefix[1] = byte1;
484 if (consumeByte(insn, &insn->vectorExtensionPrefix[2])) {
485 dbgprintf(insn, "Couldn't read third byte of EVEX prefix");
486 return -1;
487 }
488 if (consumeByte(insn, &insn->vectorExtensionPrefix[3])) {
489 dbgprintf(insn, "Couldn't read fourth byte of EVEX prefix");
490 return -1;
491 }
492
493 /* We simulate the REX prefix for simplicity's sake */
494 if (insn->mode == MODE_64BIT) {
495 insn->rexPrefix = 0x40
496 | (wFromEVEX3of4(insn->vectorExtensionPrefix[2]) << 3)
497 | (rFromEVEX2of4(insn->vectorExtensionPrefix[1]) << 2)
498 | (xFromEVEX2of4(insn->vectorExtensionPrefix[1]) << 1)
499 | (bFromEVEX2of4(insn->vectorExtensionPrefix[1]) << 0);
500 }
501
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000502 dbgprintf(insn, "Found EVEX prefix 0x%hhx 0x%hhx 0x%hhx 0x%hhx",
503 insn->vectorExtensionPrefix[0], insn->vectorExtensionPrefix[1],
504 insn->vectorExtensionPrefix[2], insn->vectorExtensionPrefix[3]);
505 }
Craig Topper273515e2014-10-07 07:29:48 +0000506 } else if (byte == 0xc4) {
Sean Callananc3fd5232011-03-15 01:23:15 +0000507 uint8_t byte1;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000508
Sean Callananc3fd5232011-03-15 01:23:15 +0000509 if (lookAtByte(insn, &byte1)) {
510 dbgprintf(insn, "Couldn't read second byte of VEX");
511 return -1;
512 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000513
Craig Topper45faba92011-09-26 05:12:43 +0000514 if (insn->mode == MODE_64BIT || (byte1 & 0xc0) == 0xc0) {
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000515 insn->vectorExtensionType = TYPE_VEX_3B;
Sean Callananc3fd5232011-03-15 01:23:15 +0000516 insn->necessaryPrefixLocation = insn->readerCursor - 1;
Craig Topper273515e2014-10-07 07:29:48 +0000517 } else {
Sean Callanan04cc3072009-12-19 02:59:52 +0000518 unconsumeByte(insn);
519 insn->necessaryPrefixLocation = insn->readerCursor - 1;
520 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000521
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000522 if (insn->vectorExtensionType == TYPE_VEX_3B) {
523 insn->vectorExtensionPrefix[0] = byte;
524 consumeByte(insn, &insn->vectorExtensionPrefix[1]);
525 consumeByte(insn, &insn->vectorExtensionPrefix[2]);
Sean Callananc3fd5232011-03-15 01:23:15 +0000526
527 /* We simulate the REX prefix for simplicity's sake */
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000528
Craig Topper31854ba2011-10-03 07:51:09 +0000529 if (insn->mode == MODE_64BIT) {
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000530 insn->rexPrefix = 0x40
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000531 | (wFromVEX3of3(insn->vectorExtensionPrefix[2]) << 3)
532 | (rFromVEX2of3(insn->vectorExtensionPrefix[1]) << 2)
533 | (xFromVEX2of3(insn->vectorExtensionPrefix[1]) << 1)
534 | (bFromVEX2of3(insn->vectorExtensionPrefix[1]) << 0);
Craig Topper31854ba2011-10-03 07:51:09 +0000535 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000536
Craig Topper9e3e38a2013-10-03 05:17:48 +0000537 dbgprintf(insn, "Found VEX prefix 0x%hhx 0x%hhx 0x%hhx",
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000538 insn->vectorExtensionPrefix[0], insn->vectorExtensionPrefix[1],
539 insn->vectorExtensionPrefix[2]);
Sean Callananc3fd5232011-03-15 01:23:15 +0000540 }
Craig Topper273515e2014-10-07 07:29:48 +0000541 } else if (byte == 0xc5) {
Sean Callananc3fd5232011-03-15 01:23:15 +0000542 uint8_t byte1;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000543
Sean Callananc3fd5232011-03-15 01:23:15 +0000544 if (lookAtByte(insn, &byte1)) {
545 dbgprintf(insn, "Couldn't read second byte of VEX");
546 return -1;
547 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000548
Craig Topper45faba92011-09-26 05:12:43 +0000549 if (insn->mode == MODE_64BIT || (byte1 & 0xc0) == 0xc0) {
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000550 insn->vectorExtensionType = TYPE_VEX_2B;
Craig Topper273515e2014-10-07 07:29:48 +0000551 } else {
Sean Callananc3fd5232011-03-15 01:23:15 +0000552 unconsumeByte(insn);
553 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000554
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000555 if (insn->vectorExtensionType == TYPE_VEX_2B) {
556 insn->vectorExtensionPrefix[0] = byte;
557 consumeByte(insn, &insn->vectorExtensionPrefix[1]);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000558
Craig Topper31854ba2011-10-03 07:51:09 +0000559 if (insn->mode == MODE_64BIT) {
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000560 insn->rexPrefix = 0x40
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000561 | (rFromVEX2of2(insn->vectorExtensionPrefix[1]) << 2);
Craig Topper31854ba2011-10-03 07:51:09 +0000562 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000563
Craig Topper273515e2014-10-07 07:29:48 +0000564 switch (ppFromVEX2of2(insn->vectorExtensionPrefix[1])) {
Sean Callananc3fd5232011-03-15 01:23:15 +0000565 default:
566 break;
567 case VEX_PREFIX_66:
Richard Smith5d5061032014-04-20 22:15:37 +0000568 hasOpSize = true;
Sean Callananc3fd5232011-03-15 01:23:15 +0000569 break;
570 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000571
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000572 dbgprintf(insn, "Found VEX prefix 0x%hhx 0x%hhx",
573 insn->vectorExtensionPrefix[0],
574 insn->vectorExtensionPrefix[1]);
Craig Topper9e3e38a2013-10-03 05:17:48 +0000575 }
Craig Topper273515e2014-10-07 07:29:48 +0000576 } else if (byte == 0x8f) {
Craig Topper9e3e38a2013-10-03 05:17:48 +0000577 uint8_t byte1;
578
579 if (lookAtByte(insn, &byte1)) {
580 dbgprintf(insn, "Couldn't read second byte of XOP");
581 return -1;
582 }
583
Craig Topper9eb88372013-10-03 06:29:59 +0000584 if ((byte1 & 0x38) != 0x0) { /* 0 in these 3 bits is a POP instruction. */
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000585 insn->vectorExtensionType = TYPE_XOP;
Craig Topper9e3e38a2013-10-03 05:17:48 +0000586 insn->necessaryPrefixLocation = insn->readerCursor - 1;
Craig Topper273515e2014-10-07 07:29:48 +0000587 } else {
Craig Topper9e3e38a2013-10-03 05:17:48 +0000588 unconsumeByte(insn);
589 insn->necessaryPrefixLocation = insn->readerCursor - 1;
590 }
591
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000592 if (insn->vectorExtensionType == TYPE_XOP) {
593 insn->vectorExtensionPrefix[0] = byte;
594 consumeByte(insn, &insn->vectorExtensionPrefix[1]);
595 consumeByte(insn, &insn->vectorExtensionPrefix[2]);
Craig Topper9e3e38a2013-10-03 05:17:48 +0000596
597 /* We simulate the REX prefix for simplicity's sake */
598
599 if (insn->mode == MODE_64BIT) {
600 insn->rexPrefix = 0x40
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000601 | (wFromXOP3of3(insn->vectorExtensionPrefix[2]) << 3)
602 | (rFromXOP2of3(insn->vectorExtensionPrefix[1]) << 2)
603 | (xFromXOP2of3(insn->vectorExtensionPrefix[1]) << 1)
604 | (bFromXOP2of3(insn->vectorExtensionPrefix[1]) << 0);
Craig Topper9e3e38a2013-10-03 05:17:48 +0000605 }
606
Craig Topper273515e2014-10-07 07:29:48 +0000607 switch (ppFromXOP3of3(insn->vectorExtensionPrefix[2])) {
Craig Topper9e3e38a2013-10-03 05:17:48 +0000608 default:
609 break;
610 case VEX_PREFIX_66:
Richard Smith5d5061032014-04-20 22:15:37 +0000611 hasOpSize = true;
Craig Topper9e3e38a2013-10-03 05:17:48 +0000612 break;
613 }
614
615 dbgprintf(insn, "Found XOP prefix 0x%hhx 0x%hhx 0x%hhx",
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000616 insn->vectorExtensionPrefix[0], insn->vectorExtensionPrefix[1],
617 insn->vectorExtensionPrefix[2]);
Sean Callananc3fd5232011-03-15 01:23:15 +0000618 }
Craig Topper273515e2014-10-07 07:29:48 +0000619 } else {
Sean Callananc3fd5232011-03-15 01:23:15 +0000620 if (insn->mode == MODE_64BIT) {
621 if ((byte & 0xf0) == 0x40) {
622 uint8_t opcodeByte;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000623
Sean Callananc3fd5232011-03-15 01:23:15 +0000624 if (lookAtByte(insn, &opcodeByte) || ((opcodeByte & 0xf0) == 0x40)) {
625 dbgprintf(insn, "Redundant REX prefix");
626 return -1;
627 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000628
Sean Callananc3fd5232011-03-15 01:23:15 +0000629 insn->rexPrefix = byte;
630 insn->necessaryPrefixLocation = insn->readerCursor - 2;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000631
Sean Callananc3fd5232011-03-15 01:23:15 +0000632 dbgprintf(insn, "Found REX prefix 0x%hhx", byte);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000633 } else {
Sean Callananc3fd5232011-03-15 01:23:15 +0000634 unconsumeByte(insn);
635 insn->necessaryPrefixLocation = insn->readerCursor - 1;
636 }
637 } else {
638 unconsumeByte(insn);
639 insn->necessaryPrefixLocation = insn->readerCursor - 1;
640 }
641 }
642
Sean Callanan04cc3072009-12-19 02:59:52 +0000643 if (insn->mode == MODE_16BIT) {
644 insn->registerSize = (hasOpSize ? 4 : 2);
645 insn->addressSize = (hasAdSize ? 4 : 2);
646 insn->displacementSize = (hasAdSize ? 4 : 2);
647 insn->immediateSize = (hasOpSize ? 4 : 2);
648 } else if (insn->mode == MODE_32BIT) {
649 insn->registerSize = (hasOpSize ? 2 : 4);
650 insn->addressSize = (hasAdSize ? 2 : 4);
651 insn->displacementSize = (hasAdSize ? 2 : 4);
Sean Callanan9f6c6222010-10-22 01:24:11 +0000652 insn->immediateSize = (hasOpSize ? 2 : 4);
Sean Callanan04cc3072009-12-19 02:59:52 +0000653 } else if (insn->mode == MODE_64BIT) {
654 if (insn->rexPrefix && wFromREX(insn->rexPrefix)) {
655 insn->registerSize = 8;
656 insn->addressSize = (hasAdSize ? 4 : 8);
657 insn->displacementSize = 4;
658 insn->immediateSize = 4;
659 } else if (insn->rexPrefix) {
660 insn->registerSize = (hasOpSize ? 2 : 4);
661 insn->addressSize = (hasAdSize ? 4 : 8);
662 insn->displacementSize = (hasOpSize ? 2 : 4);
663 insn->immediateSize = (hasOpSize ? 2 : 4);
664 } else {
665 insn->registerSize = (hasOpSize ? 2 : 4);
666 insn->addressSize = (hasAdSize ? 4 : 8);
667 insn->displacementSize = (hasOpSize ? 2 : 4);
668 insn->immediateSize = (hasOpSize ? 2 : 4);
669 }
670 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000671
Sean Callanan04cc3072009-12-19 02:59:52 +0000672 return 0;
673}
674
675/*
676 * readOpcode - Reads the opcode (excepting the ModR/M byte in the case of
677 * extended or escape opcodes).
678 *
679 * @param insn - The instruction whose opcode is to be read.
680 * @return - 0 if the opcode could be read successfully; nonzero otherwise.
681 */
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000682static int readOpcode(struct InternalInstruction* insn) {
Sean Callanan04cc3072009-12-19 02:59:52 +0000683 /* Determine the length of the primary opcode */
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000684
Sean Callanan04cc3072009-12-19 02:59:52 +0000685 uint8_t current;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000686
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000687 dbgprintf(insn, "readOpcode()");
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000688
Sean Callanan04cc3072009-12-19 02:59:52 +0000689 insn->opcodeType = ONEBYTE;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000690
Craig Topper273515e2014-10-07 07:29:48 +0000691 if (insn->vectorExtensionType == TYPE_EVEX) {
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000692 switch (mmFromEVEX2of4(insn->vectorExtensionPrefix[1])) {
Sean Callananc3fd5232011-03-15 01:23:15 +0000693 default:
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000694 dbgprintf(insn, "Unhandled mm field for instruction (0x%hhx)",
695 mmFromEVEX2of4(insn->vectorExtensionPrefix[1]));
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000696 return -1;
Sean Callananc3fd5232011-03-15 01:23:15 +0000697 case VEX_LOB_0F:
Sean Callananc3fd5232011-03-15 01:23:15 +0000698 insn->opcodeType = TWOBYTE;
699 return consumeByte(insn, &insn->opcode);
700 case VEX_LOB_0F38:
Sean Callananc3fd5232011-03-15 01:23:15 +0000701 insn->opcodeType = THREEBYTE_38;
702 return consumeByte(insn, &insn->opcode);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000703 case VEX_LOB_0F3A:
Sean Callananc3fd5232011-03-15 01:23:15 +0000704 insn->opcodeType = THREEBYTE_3A;
705 return consumeByte(insn, &insn->opcode);
706 }
Craig Topper273515e2014-10-07 07:29:48 +0000707 } else if (insn->vectorExtensionType == TYPE_VEX_3B) {
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000708 switch (mmmmmFromVEX2of3(insn->vectorExtensionPrefix[1])) {
709 default:
710 dbgprintf(insn, "Unhandled m-mmmm field for instruction (0x%hhx)",
711 mmmmmFromVEX2of3(insn->vectorExtensionPrefix[1]));
712 return -1;
713 case VEX_LOB_0F:
714 insn->opcodeType = TWOBYTE;
715 return consumeByte(insn, &insn->opcode);
716 case VEX_LOB_0F38:
717 insn->opcodeType = THREEBYTE_38;
718 return consumeByte(insn, &insn->opcode);
719 case VEX_LOB_0F3A:
720 insn->opcodeType = THREEBYTE_3A;
721 return consumeByte(insn, &insn->opcode);
722 }
Craig Topper273515e2014-10-07 07:29:48 +0000723 } else if (insn->vectorExtensionType == TYPE_VEX_2B) {
Sean Callananc3fd5232011-03-15 01:23:15 +0000724 insn->opcodeType = TWOBYTE;
725 return consumeByte(insn, &insn->opcode);
Craig Topper273515e2014-10-07 07:29:48 +0000726 } else if (insn->vectorExtensionType == TYPE_XOP) {
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000727 switch (mmmmmFromXOP2of3(insn->vectorExtensionPrefix[1])) {
Craig Topper9e3e38a2013-10-03 05:17:48 +0000728 default:
729 dbgprintf(insn, "Unhandled m-mmmm field for instruction (0x%hhx)",
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000730 mmmmmFromVEX2of3(insn->vectorExtensionPrefix[1]));
Craig Topper9e3e38a2013-10-03 05:17:48 +0000731 return -1;
732 case XOP_MAP_SELECT_8:
733 insn->opcodeType = XOP8_MAP;
734 return consumeByte(insn, &insn->opcode);
735 case XOP_MAP_SELECT_9:
736 insn->opcodeType = XOP9_MAP;
737 return consumeByte(insn, &insn->opcode);
738 case XOP_MAP_SELECT_A:
739 insn->opcodeType = XOPA_MAP;
740 return consumeByte(insn, &insn->opcode);
741 }
742 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000743
Sean Callanan04cc3072009-12-19 02:59:52 +0000744 if (consumeByte(insn, &current))
745 return -1;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000746
Sean Callanan04cc3072009-12-19 02:59:52 +0000747 if (current == 0x0f) {
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000748 dbgprintf(insn, "Found a two-byte escape prefix (0x%hhx)", current);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000749
Sean Callanan04cc3072009-12-19 02:59:52 +0000750 if (consumeByte(insn, &current))
751 return -1;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000752
Sean Callanan04cc3072009-12-19 02:59:52 +0000753 if (current == 0x38) {
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000754 dbgprintf(insn, "Found a three-byte escape prefix (0x%hhx)", current);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000755
Sean Callanan04cc3072009-12-19 02:59:52 +0000756 if (consumeByte(insn, &current))
757 return -1;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000758
Sean Callanan04cc3072009-12-19 02:59:52 +0000759 insn->opcodeType = THREEBYTE_38;
760 } else if (current == 0x3a) {
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000761 dbgprintf(insn, "Found a three-byte escape prefix (0x%hhx)", current);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000762
Sean Callanan04cc3072009-12-19 02:59:52 +0000763 if (consumeByte(insn, &current))
764 return -1;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000765
Sean Callanan04cc3072009-12-19 02:59:52 +0000766 insn->opcodeType = THREEBYTE_3A;
767 } else {
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000768 dbgprintf(insn, "Didn't find a three-byte escape prefix");
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000769
Sean Callanan04cc3072009-12-19 02:59:52 +0000770 insn->opcodeType = TWOBYTE;
771 }
772 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000773
Sean Callanan04cc3072009-12-19 02:59:52 +0000774 /*
775 * At this point we have consumed the full opcode.
776 * Anything we consume from here on must be unconsumed.
777 */
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000778
Sean Callanan04cc3072009-12-19 02:59:52 +0000779 insn->opcode = current;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000780
Sean Callanan04cc3072009-12-19 02:59:52 +0000781 return 0;
782}
783
784static int readModRM(struct InternalInstruction* insn);
785
786/*
787 * getIDWithAttrMask - Determines the ID of an instruction, consuming
788 * the ModR/M byte as appropriate for extended and escape opcodes,
789 * and using a supplied attribute mask.
790 *
791 * @param instructionID - A pointer whose target is filled in with the ID of the
792 * instruction.
793 * @param insn - The instruction whose ID is to be determined.
794 * @param attrMask - The attribute mask to search.
795 * @return - 0 if the ModR/M could be read when needed or was not
796 * needed; nonzero otherwise.
797 */
798static int getIDWithAttrMask(uint16_t* instructionID,
799 struct InternalInstruction* insn,
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000800 uint16_t attrMask) {
Richard Smith5d5061032014-04-20 22:15:37 +0000801 bool hasModRMExtension;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000802
Richard Smith89ee75d2014-04-20 21:07:34 +0000803 InstructionContext instructionClass = contextForAttrs(attrMask);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000804
Sean Callanan04cc3072009-12-19 02:59:52 +0000805 hasModRMExtension = modRMRequired(insn->opcodeType,
806 instructionClass,
807 insn->opcode);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000808
Sean Callanan04cc3072009-12-19 02:59:52 +0000809 if (hasModRMExtension) {
Rafael Espindola9f9a1062011-01-06 16:48:42 +0000810 if (readModRM(insn))
811 return -1;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000812
Sean Callanan04cc3072009-12-19 02:59:52 +0000813 *instructionID = decode(insn->opcodeType,
814 instructionClass,
815 insn->opcode,
816 insn->modRM);
817 } else {
818 *instructionID = decode(insn->opcodeType,
819 instructionClass,
820 insn->opcode,
821 0);
822 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000823
Sean Callanan04cc3072009-12-19 02:59:52 +0000824 return 0;
825}
826
827/*
828 * is16BitEquivalent - Determines whether two instruction names refer to
829 * equivalent instructions but one is 16-bit whereas the other is not.
830 *
831 * @param orig - The instruction that is not 16-bit
832 * @param equiv - The instruction that is 16-bit
833 */
Richard Smith5d5061032014-04-20 22:15:37 +0000834static bool is16BitEquivalent(const char* orig, const char* equiv) {
Sean Callanan04cc3072009-12-19 02:59:52 +0000835 off_t i;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000836
Sean Callanan010b3732010-04-02 21:23:51 +0000837 for (i = 0;; i++) {
838 if (orig[i] == '\0' && equiv[i] == '\0')
Richard Smith5d5061032014-04-20 22:15:37 +0000839 return true;
Sean Callanan010b3732010-04-02 21:23:51 +0000840 if (orig[i] == '\0' || equiv[i] == '\0')
Richard Smith5d5061032014-04-20 22:15:37 +0000841 return false;
Sean Callanan010b3732010-04-02 21:23:51 +0000842 if (orig[i] != equiv[i]) {
843 if ((orig[i] == 'Q' || orig[i] == 'L') && equiv[i] == 'W')
Sean Callanan04cc3072009-12-19 02:59:52 +0000844 continue;
Sean Callanan010b3732010-04-02 21:23:51 +0000845 if ((orig[i] == '6' || orig[i] == '3') && equiv[i] == '1')
Sean Callanan04cc3072009-12-19 02:59:52 +0000846 continue;
Sean Callanan010b3732010-04-02 21:23:51 +0000847 if ((orig[i] == '4' || orig[i] == '2') && equiv[i] == '6')
Sean Callanan04cc3072009-12-19 02:59:52 +0000848 continue;
Richard Smith5d5061032014-04-20 22:15:37 +0000849 return false;
Sean Callanan04cc3072009-12-19 02:59:52 +0000850 }
851 }
852}
853
854/*
Craig Topper0676b902014-10-07 07:29:50 +0000855 * is64Bit - Determines whether this instruction is a 64-bit instruction.
856 *
857 * @param name - The instruction that is not 16-bit
858 */
859static bool is64Bit(const char* name) {
860 off_t i;
861
862 for (i = 0;; ++i) {
863 if (name[i] == '\0')
864 return false;
865 if (name[i] == '6' && name[i+1] == '4')
866 return true;
867 }
868}
869
870/*
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000871 * getID - Determines the ID of an instruction, consuming the ModR/M byte as
872 * appropriate for extended and escape opcodes. Determines the attributes and
Sean Callanan04cc3072009-12-19 02:59:52 +0000873 * context for the instruction before doing so.
874 *
875 * @param insn - The instruction whose ID is to be determined.
876 * @return - 0 if the ModR/M could be read when needed or was not needed;
877 * nonzero otherwise.
878 */
Roman Divacky67923802012-09-05 21:17:34 +0000879static int getID(struct InternalInstruction* insn, const void *miiArg) {
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000880 uint16_t attrMask;
Sean Callanan04cc3072009-12-19 02:59:52 +0000881 uint16_t instructionID;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000882
Nuno Lopes3ed6d602009-12-19 12:07:00 +0000883 dbgprintf(insn, "getID()");
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000884
Sean Callanan04cc3072009-12-19 02:59:52 +0000885 attrMask = ATTR_NONE;
Sean Callananc3fd5232011-03-15 01:23:15 +0000886
Sean Callanan04cc3072009-12-19 02:59:52 +0000887 if (insn->mode == MODE_64BIT)
888 attrMask |= ATTR_64BIT;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000889
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000890 if (insn->vectorExtensionType != TYPE_NO_VEX_XOP) {
891 attrMask |= (insn->vectorExtensionType == TYPE_EVEX) ? ATTR_EVEX : ATTR_VEX;
Sean Callananc3fd5232011-03-15 01:23:15 +0000892
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000893 if (insn->vectorExtensionType == TYPE_EVEX) {
894 switch (ppFromEVEX3of4(insn->vectorExtensionPrefix[2])) {
Sean Callananc3fd5232011-03-15 01:23:15 +0000895 case VEX_PREFIX_66:
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000896 attrMask |= ATTR_OPSIZE;
Sean Callananc3fd5232011-03-15 01:23:15 +0000897 break;
898 case VEX_PREFIX_F3:
899 attrMask |= ATTR_XS;
900 break;
901 case VEX_PREFIX_F2:
902 attrMask |= ATTR_XD;
903 break;
904 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000905
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000906 if (zFromEVEX4of4(insn->vectorExtensionPrefix[3]))
907 attrMask |= ATTR_EVEXKZ;
908 if (bFromEVEX4of4(insn->vectorExtensionPrefix[3]))
909 attrMask |= ATTR_EVEXB;
910 if (aaaFromEVEX4of4(insn->vectorExtensionPrefix[3]))
911 attrMask |= ATTR_EVEXK;
912 if (lFromEVEX4of4(insn->vectorExtensionPrefix[3]))
913 attrMask |= ATTR_EVEXL;
914 if (l2FromEVEX4of4(insn->vectorExtensionPrefix[3]))
915 attrMask |= ATTR_EVEXL2;
Craig Topper273515e2014-10-07 07:29:48 +0000916 } else if (insn->vectorExtensionType == TYPE_VEX_3B) {
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000917 switch (ppFromVEX3of3(insn->vectorExtensionPrefix[2])) {
918 case VEX_PREFIX_66:
919 attrMask |= ATTR_OPSIZE;
920 break;
921 case VEX_PREFIX_F3:
922 attrMask |= ATTR_XS;
923 break;
924 case VEX_PREFIX_F2:
925 attrMask |= ATTR_XD;
926 break;
927 }
928
929 if (lFromVEX3of3(insn->vectorExtensionPrefix[2]))
Sean Callananc3fd5232011-03-15 01:23:15 +0000930 attrMask |= ATTR_VEXL;
Craig Topper273515e2014-10-07 07:29:48 +0000931 } else if (insn->vectorExtensionType == TYPE_VEX_2B) {
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000932 switch (ppFromVEX2of2(insn->vectorExtensionPrefix[1])) {
Sean Callananc3fd5232011-03-15 01:23:15 +0000933 case VEX_PREFIX_66:
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000934 attrMask |= ATTR_OPSIZE;
Sean Callananc3fd5232011-03-15 01:23:15 +0000935 break;
936 case VEX_PREFIX_F3:
937 attrMask |= ATTR_XS;
938 break;
939 case VEX_PREFIX_F2:
940 attrMask |= ATTR_XD;
941 break;
942 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +0000943
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000944 if (lFromVEX2of2(insn->vectorExtensionPrefix[1]))
Craig Topper9e3e38a2013-10-03 05:17:48 +0000945 attrMask |= ATTR_VEXL;
Craig Topper273515e2014-10-07 07:29:48 +0000946 } else if (insn->vectorExtensionType == TYPE_XOP) {
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000947 switch (ppFromXOP3of3(insn->vectorExtensionPrefix[2])) {
Craig Topper9e3e38a2013-10-03 05:17:48 +0000948 case VEX_PREFIX_66:
949 attrMask |= ATTR_OPSIZE;
950 break;
951 case VEX_PREFIX_F3:
952 attrMask |= ATTR_XS;
953 break;
954 case VEX_PREFIX_F2:
955 attrMask |= ATTR_XD;
956 break;
957 }
958
Elena Demikhovsky371e3632013-12-25 11:40:51 +0000959 if (lFromXOP3of3(insn->vectorExtensionPrefix[2]))
Sean Callananc3fd5232011-03-15 01:23:15 +0000960 attrMask |= ATTR_VEXL;
Craig Topper273515e2014-10-07 07:29:48 +0000961 } else {
Sean Callananc3fd5232011-03-15 01:23:15 +0000962 return -1;
963 }
Craig Topper273515e2014-10-07 07:29:48 +0000964 } else {
David Woodhouse5cf4c672014-01-20 12:02:35 +0000965 if (insn->mode != MODE_16BIT && isPrefixAtLocation(insn, 0x66, insn->necessaryPrefixLocation))
Sean Callananc3fd5232011-03-15 01:23:15 +0000966 attrMask |= ATTR_OPSIZE;
Craig Topper6491c802012-02-27 01:54:29 +0000967 else if (isPrefixAtLocation(insn, 0x67, insn->necessaryPrefixLocation))
968 attrMask |= ATTR_ADSIZE;
Sean Callananc3fd5232011-03-15 01:23:15 +0000969 else if (isPrefixAtLocation(insn, 0xf3, insn->necessaryPrefixLocation))
970 attrMask |= ATTR_XS;
971 else if (isPrefixAtLocation(insn, 0xf2, insn->necessaryPrefixLocation))
972 attrMask |= ATTR_XD;
Sean Callananc3fd5232011-03-15 01:23:15 +0000973 }
974
Craig Topperf18c8962011-10-04 06:30:42 +0000975 if (insn->rexPrefix & 0x08)
976 attrMask |= ATTR_REXW;
Craig Topperf01f1b52011-11-06 23:04:08 +0000977
Sean Callanan010b3732010-04-02 21:23:51 +0000978 if (getIDWithAttrMask(&instructionID, insn, attrMask))
Sean Callanan04cc3072009-12-19 02:59:52 +0000979 return -1;
Craig Topperf01f1b52011-11-06 23:04:08 +0000980
David Woodhouse9c74fdb2014-01-20 12:02:48 +0000981 /*
982 * JCXZ/JECXZ need special handling for 16-bit mode because the meaning
983 * of the AdSize prefix is inverted w.r.t. 32-bit mode.
984 */
985 if (insn->mode == MODE_16BIT && insn->opcode == 0xE3) {
986 const struct InstructionSpecifier *spec;
987 spec = specifierForUID(instructionID);
988
989 /*
990 * Check for Ii8PCRel instructions. We could alternatively do a
991 * string-compare on the names, but this is probably cheaper.
992 */
993 if (x86OperandSets[spec->operands][0].type == TYPE_REL8) {
994 attrMask ^= ATTR_ADSIZE;
995 if (getIDWithAttrMask(&instructionID, insn, attrMask))
996 return -1;
997 }
998 }
999
Sean Callanan04cc3072009-12-19 02:59:52 +00001000 /* The following clauses compensate for limitations of the tables. */
Craig Topperf01f1b52011-11-06 23:04:08 +00001001
Craig Topper0676b902014-10-07 07:29:50 +00001002 if (insn->mode != MODE_64BIT &&
1003 insn->vectorExtensionType != TYPE_NO_VEX_XOP) {
1004 /*
1005 * The tables can't distinquish between cases where the W-bit is used to
1006 * select register size and cases where its a required part of the opcode.
1007 */
1008 if ((insn->vectorExtensionType == TYPE_EVEX &&
1009 wFromEVEX3of4(insn->vectorExtensionPrefix[2])) ||
1010 (insn->vectorExtensionType == TYPE_VEX_3B &&
1011 wFromVEX3of3(insn->vectorExtensionPrefix[2])) ||
1012 (insn->vectorExtensionType == TYPE_XOP &&
1013 wFromXOP3of3(insn->vectorExtensionPrefix[2]))) {
1014
1015 uint16_t instructionIDWithREXW;
1016 if (getIDWithAttrMask(&instructionIDWithREXW,
1017 insn, attrMask | ATTR_REXW)) {
1018 insn->instructionID = instructionID;
1019 insn->spec = specifierForUID(instructionID);
1020 return 0;
1021 }
1022
1023 const char *SpecName = GetInstrName(instructionIDWithREXW, miiArg);
1024 // If not a 64-bit instruction. Switch the opcode.
1025 if (!is64Bit(SpecName)) {
1026 insn->instructionID = instructionIDWithREXW;
1027 insn->spec = specifierForUID(instructionIDWithREXW);
1028 return 0;
1029 }
1030 }
1031 }
1032
David Woodhouse5cf4c672014-01-20 12:02:35 +00001033 if ((insn->mode == MODE_16BIT || insn->prefixPresent[0x66]) &&
1034 !(attrMask & ATTR_OPSIZE)) {
Sean Callanan04cc3072009-12-19 02:59:52 +00001035 /*
1036 * The instruction tables make no distinction between instructions that
1037 * allow OpSize anywhere (i.e., 16-bit operations) and that need it in a
1038 * particular spot (i.e., many MMX operations). In general we're
1039 * conservative, but in the specific case where OpSize is present but not
1040 * in the right place we check if there's a 16-bit operation.
1041 */
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001042
Benjamin Kramerde0a4fb2010-10-23 09:10:44 +00001043 const struct InstructionSpecifier *spec;
Sean Callanan04cc3072009-12-19 02:59:52 +00001044 uint16_t instructionIDWithOpsize;
Benjamin Kramer915e3d92012-02-11 16:01:02 +00001045 const char *specName, *specWithOpSizeName;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001046
Sean Callanan04cc3072009-12-19 02:59:52 +00001047 spec = specifierForUID(instructionID);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001048
Sean Callanan04cc3072009-12-19 02:59:52 +00001049 if (getIDWithAttrMask(&instructionIDWithOpsize,
1050 insn,
1051 attrMask | ATTR_OPSIZE)) {
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001052 /*
Sean Callanan04cc3072009-12-19 02:59:52 +00001053 * ModRM required with OpSize but not present; give up and return version
1054 * without OpSize set
1055 */
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001056
Sean Callanan04cc3072009-12-19 02:59:52 +00001057 insn->instructionID = instructionID;
1058 insn->spec = spec;
1059 return 0;
1060 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001061
Richard Smith89ee75d2014-04-20 21:07:34 +00001062 specName = GetInstrName(instructionID, miiArg);
1063 specWithOpSizeName = GetInstrName(instructionIDWithOpsize, miiArg);
Benjamin Kramer478e8de2012-02-11 14:50:54 +00001064
David Woodhouse5cf4c672014-01-20 12:02:35 +00001065 if (is16BitEquivalent(specName, specWithOpSizeName) &&
1066 (insn->mode == MODE_16BIT) ^ insn->prefixPresent[0x66]) {
Sean Callanan04cc3072009-12-19 02:59:52 +00001067 insn->instructionID = instructionIDWithOpsize;
Benjamin Kramer915e3d92012-02-11 16:01:02 +00001068 insn->spec = specifierForUID(instructionIDWithOpsize);
Sean Callanan04cc3072009-12-19 02:59:52 +00001069 } else {
1070 insn->instructionID = instructionID;
1071 insn->spec = spec;
1072 }
1073 return 0;
1074 }
Craig Topper21c33652011-10-02 16:56:09 +00001075
1076 if (insn->opcodeType == ONEBYTE && insn->opcode == 0x90 &&
1077 insn->rexPrefix & 0x01) {
1078 /*
1079 * NOOP shouldn't decode as NOOP if REX.b is set. Instead
1080 * it should decode as XCHG %r8, %eax.
1081 */
1082
1083 const struct InstructionSpecifier *spec;
1084 uint16_t instructionIDWithNewOpcode;
1085 const struct InstructionSpecifier *specWithNewOpcode;
1086
1087 spec = specifierForUID(instructionID);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001088
Craig Topperb58a9662011-10-05 03:29:32 +00001089 /* Borrow opcode from one of the other XCHGar opcodes */
Craig Topper21c33652011-10-02 16:56:09 +00001090 insn->opcode = 0x91;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001091
Craig Topper21c33652011-10-02 16:56:09 +00001092 if (getIDWithAttrMask(&instructionIDWithNewOpcode,
1093 insn,
1094 attrMask)) {
1095 insn->opcode = 0x90;
1096
1097 insn->instructionID = instructionID;
1098 insn->spec = spec;
1099 return 0;
1100 }
1101
1102 specWithNewOpcode = specifierForUID(instructionIDWithNewOpcode);
1103
Craig Topperb58a9662011-10-05 03:29:32 +00001104 /* Change back */
Craig Topper21c33652011-10-02 16:56:09 +00001105 insn->opcode = 0x90;
1106
1107 insn->instructionID = instructionIDWithNewOpcode;
1108 insn->spec = specWithNewOpcode;
1109
1110 return 0;
1111 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001112
Sean Callanan04cc3072009-12-19 02:59:52 +00001113 insn->instructionID = instructionID;
1114 insn->spec = specifierForUID(insn->instructionID);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001115
Sean Callanan04cc3072009-12-19 02:59:52 +00001116 return 0;
1117}
1118
1119/*
1120 * readSIB - Consumes the SIB byte to determine addressing information for an
1121 * instruction.
1122 *
1123 * @param insn - The instruction whose SIB byte is to be read.
1124 * @return - 0 if the SIB byte was successfully read; nonzero otherwise.
1125 */
1126static int readSIB(struct InternalInstruction* insn) {
Richard Smith89ee75d2014-04-20 21:07:34 +00001127 SIBIndex sibIndexBase = SIB_INDEX_NONE;
1128 SIBBase sibBaseBase = SIB_BASE_NONE;
Sean Callanan04cc3072009-12-19 02:59:52 +00001129 uint8_t index, base;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001130
Nuno Lopes3ed6d602009-12-19 12:07:00 +00001131 dbgprintf(insn, "readSIB()");
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001132
Sean Callanan04cc3072009-12-19 02:59:52 +00001133 if (insn->consumedSIB)
1134 return 0;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001135
Richard Smith5d5061032014-04-20 22:15:37 +00001136 insn->consumedSIB = true;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001137
Sean Callanan04cc3072009-12-19 02:59:52 +00001138 switch (insn->addressSize) {
1139 case 2:
Nuno Lopes3ed6d602009-12-19 12:07:00 +00001140 dbgprintf(insn, "SIB-based addressing doesn't work in 16-bit mode");
Sean Callanan04cc3072009-12-19 02:59:52 +00001141 return -1;
Sean Callanan04cc3072009-12-19 02:59:52 +00001142 case 4:
1143 sibIndexBase = SIB_INDEX_EAX;
1144 sibBaseBase = SIB_BASE_EAX;
1145 break;
1146 case 8:
1147 sibIndexBase = SIB_INDEX_RAX;
1148 sibBaseBase = SIB_BASE_RAX;
1149 break;
1150 }
1151
1152 if (consumeByte(insn, &insn->sib))
1153 return -1;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001154
Sean Callanan04cc3072009-12-19 02:59:52 +00001155 index = indexFromSIB(insn->sib) | (xFromREX(insn->rexPrefix) << 3);
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001156 if (insn->vectorExtensionType == TYPE_EVEX)
1157 index |= v2FromEVEX4of4(insn->vectorExtensionPrefix[3]) << 4;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001158
Sean Callanan04cc3072009-12-19 02:59:52 +00001159 switch (index) {
1160 case 0x4:
1161 insn->sibIndex = SIB_INDEX_NONE;
1162 break;
1163 default:
Benjamin Kramer25bddae2011-02-27 18:13:53 +00001164 insn->sibIndex = (SIBIndex)(sibIndexBase + index);
Sean Callanan04cc3072009-12-19 02:59:52 +00001165 if (insn->sibIndex == SIB_INDEX_sib ||
1166 insn->sibIndex == SIB_INDEX_sib64)
1167 insn->sibIndex = SIB_INDEX_NONE;
1168 break;
1169 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001170
Sean Callanan04cc3072009-12-19 02:59:52 +00001171 switch (scaleFromSIB(insn->sib)) {
1172 case 0:
1173 insn->sibScale = 1;
1174 break;
1175 case 1:
1176 insn->sibScale = 2;
1177 break;
1178 case 2:
1179 insn->sibScale = 4;
1180 break;
1181 case 3:
1182 insn->sibScale = 8;
1183 break;
1184 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001185
Sean Callanan04cc3072009-12-19 02:59:52 +00001186 base = baseFromSIB(insn->sib) | (bFromREX(insn->rexPrefix) << 3);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001187
Sean Callanan04cc3072009-12-19 02:59:52 +00001188 switch (base) {
1189 case 0x5:
Craig Topperfae5ac22014-02-17 10:03:43 +00001190 case 0xd:
Sean Callanan04cc3072009-12-19 02:59:52 +00001191 switch (modFromModRM(insn->modRM)) {
1192 case 0x0:
1193 insn->eaDisplacement = EA_DISP_32;
1194 insn->sibBase = SIB_BASE_NONE;
1195 break;
1196 case 0x1:
1197 insn->eaDisplacement = EA_DISP_8;
Craig Topperfae5ac22014-02-17 10:03:43 +00001198 insn->sibBase = (SIBBase)(sibBaseBase + base);
Sean Callanan04cc3072009-12-19 02:59:52 +00001199 break;
1200 case 0x2:
1201 insn->eaDisplacement = EA_DISP_32;
Craig Topperfae5ac22014-02-17 10:03:43 +00001202 insn->sibBase = (SIBBase)(sibBaseBase + base);
Sean Callanan04cc3072009-12-19 02:59:52 +00001203 break;
1204 case 0x3:
Sean Callanan010b3732010-04-02 21:23:51 +00001205 debug("Cannot have Mod = 0b11 and a SIB byte");
1206 return -1;
Sean Callanan04cc3072009-12-19 02:59:52 +00001207 }
1208 break;
1209 default:
Benjamin Kramer25bddae2011-02-27 18:13:53 +00001210 insn->sibBase = (SIBBase)(sibBaseBase + base);
Sean Callanan04cc3072009-12-19 02:59:52 +00001211 break;
1212 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001213
Sean Callanan04cc3072009-12-19 02:59:52 +00001214 return 0;
1215}
1216
1217/*
1218 * readDisplacement - Consumes the displacement of an instruction.
1219 *
1220 * @param insn - The instruction whose displacement is to be read.
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001221 * @return - 0 if the displacement byte was successfully read; nonzero
Sean Callanan04cc3072009-12-19 02:59:52 +00001222 * otherwise.
1223 */
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001224static int readDisplacement(struct InternalInstruction* insn) {
Sean Callanan04cc3072009-12-19 02:59:52 +00001225 int8_t d8;
1226 int16_t d16;
1227 int32_t d32;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001228
Nuno Lopes3ed6d602009-12-19 12:07:00 +00001229 dbgprintf(insn, "readDisplacement()");
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001230
Sean Callanan04cc3072009-12-19 02:59:52 +00001231 if (insn->consumedDisplacement)
1232 return 0;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001233
Richard Smith5d5061032014-04-20 22:15:37 +00001234 insn->consumedDisplacement = true;
Kevin Enderby6fbcd8d2012-02-23 18:18:17 +00001235 insn->displacementOffset = insn->readerCursor - insn->startLocation;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001236
Sean Callanan04cc3072009-12-19 02:59:52 +00001237 switch (insn->eaDisplacement) {
1238 case EA_DISP_NONE:
Richard Smith5d5061032014-04-20 22:15:37 +00001239 insn->consumedDisplacement = false;
Sean Callanan04cc3072009-12-19 02:59:52 +00001240 break;
1241 case EA_DISP_8:
1242 if (consumeInt8(insn, &d8))
1243 return -1;
1244 insn->displacement = d8;
1245 break;
1246 case EA_DISP_16:
1247 if (consumeInt16(insn, &d16))
1248 return -1;
1249 insn->displacement = d16;
1250 break;
1251 case EA_DISP_32:
1252 if (consumeInt32(insn, &d32))
1253 return -1;
1254 insn->displacement = d32;
1255 break;
1256 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001257
Richard Smith5d5061032014-04-20 22:15:37 +00001258 insn->consumedDisplacement = true;
Sean Callanan04cc3072009-12-19 02:59:52 +00001259 return 0;
1260}
1261
1262/*
1263 * readModRM - Consumes all addressing information (ModR/M byte, SIB byte, and
1264 * displacement) for an instruction and interprets it.
1265 *
1266 * @param insn - The instruction whose addressing information is to be read.
1267 * @return - 0 if the information was successfully read; nonzero otherwise.
1268 */
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001269static int readModRM(struct InternalInstruction* insn) {
Sean Callanan04cc3072009-12-19 02:59:52 +00001270 uint8_t mod, rm, reg;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001271
Nuno Lopes3ed6d602009-12-19 12:07:00 +00001272 dbgprintf(insn, "readModRM()");
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001273
Sean Callanan04cc3072009-12-19 02:59:52 +00001274 if (insn->consumedModRM)
1275 return 0;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001276
Rafael Espindola9f9a1062011-01-06 16:48:42 +00001277 if (consumeByte(insn, &insn->modRM))
1278 return -1;
Richard Smith5d5061032014-04-20 22:15:37 +00001279 insn->consumedModRM = true;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001280
Sean Callanan04cc3072009-12-19 02:59:52 +00001281 mod = modFromModRM(insn->modRM);
1282 rm = rmFromModRM(insn->modRM);
1283 reg = regFromModRM(insn->modRM);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001284
Sean Callanan04cc3072009-12-19 02:59:52 +00001285 /*
1286 * This goes by insn->registerSize to pick the correct register, which messes
1287 * up if we're using (say) XMM or 8-bit register operands. That gets fixed in
1288 * fixupReg().
1289 */
1290 switch (insn->registerSize) {
1291 case 2:
Sean Callanan2f9443f2009-12-22 02:07:42 +00001292 insn->regBase = MODRM_REG_AX;
Sean Callanan04cc3072009-12-19 02:59:52 +00001293 insn->eaRegBase = EA_REG_AX;
1294 break;
1295 case 4:
Sean Callanan2f9443f2009-12-22 02:07:42 +00001296 insn->regBase = MODRM_REG_EAX;
Sean Callanan04cc3072009-12-19 02:59:52 +00001297 insn->eaRegBase = EA_REG_EAX;
1298 break;
1299 case 8:
Sean Callanan2f9443f2009-12-22 02:07:42 +00001300 insn->regBase = MODRM_REG_RAX;
Sean Callanan04cc3072009-12-19 02:59:52 +00001301 insn->eaRegBase = EA_REG_RAX;
1302 break;
1303 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001304
Sean Callanan04cc3072009-12-19 02:59:52 +00001305 reg |= rFromREX(insn->rexPrefix) << 3;
1306 rm |= bFromREX(insn->rexPrefix) << 3;
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001307 if (insn->vectorExtensionType == TYPE_EVEX) {
1308 reg |= r2FromEVEX2of4(insn->vectorExtensionPrefix[1]) << 4;
1309 rm |= xFromEVEX2of4(insn->vectorExtensionPrefix[1]) << 4;
1310 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001311
Sean Callanan04cc3072009-12-19 02:59:52 +00001312 insn->reg = (Reg)(insn->regBase + reg);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001313
Sean Callanan04cc3072009-12-19 02:59:52 +00001314 switch (insn->addressSize) {
1315 case 2:
1316 insn->eaBaseBase = EA_BASE_BX_SI;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001317
Sean Callanan04cc3072009-12-19 02:59:52 +00001318 switch (mod) {
1319 case 0x0:
1320 if (rm == 0x6) {
1321 insn->eaBase = EA_BASE_NONE;
1322 insn->eaDisplacement = EA_DISP_16;
Sean Callanan010b3732010-04-02 21:23:51 +00001323 if (readDisplacement(insn))
Sean Callanan04cc3072009-12-19 02:59:52 +00001324 return -1;
1325 } else {
1326 insn->eaBase = (EABase)(insn->eaBaseBase + rm);
1327 insn->eaDisplacement = EA_DISP_NONE;
1328 }
1329 break;
1330 case 0x1:
1331 insn->eaBase = (EABase)(insn->eaBaseBase + rm);
1332 insn->eaDisplacement = EA_DISP_8;
Craig Topper399e39e2014-01-25 22:48:43 +00001333 insn->displacementSize = 1;
Sean Callanan010b3732010-04-02 21:23:51 +00001334 if (readDisplacement(insn))
Sean Callanan04cc3072009-12-19 02:59:52 +00001335 return -1;
1336 break;
1337 case 0x2:
1338 insn->eaBase = (EABase)(insn->eaBaseBase + rm);
1339 insn->eaDisplacement = EA_DISP_16;
Sean Callanan010b3732010-04-02 21:23:51 +00001340 if (readDisplacement(insn))
Sean Callanan04cc3072009-12-19 02:59:52 +00001341 return -1;
1342 break;
1343 case 0x3:
1344 insn->eaBase = (EABase)(insn->eaRegBase + rm);
Sean Callanan010b3732010-04-02 21:23:51 +00001345 if (readDisplacement(insn))
Sean Callanan04cc3072009-12-19 02:59:52 +00001346 return -1;
1347 break;
1348 }
1349 break;
1350 case 4:
1351 case 8:
1352 insn->eaBaseBase = (insn->addressSize == 4 ? EA_BASE_EAX : EA_BASE_RAX);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001353
Sean Callanan04cc3072009-12-19 02:59:52 +00001354 switch (mod) {
1355 case 0x0:
1356 insn->eaDisplacement = EA_DISP_NONE; /* readSIB may override this */
1357 switch (rm) {
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001358 case 0x14:
Sean Callanan04cc3072009-12-19 02:59:52 +00001359 case 0x4:
1360 case 0xc: /* in case REXW.b is set */
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001361 insn->eaBase = (insn->addressSize == 4 ?
Sean Callanan04cc3072009-12-19 02:59:52 +00001362 EA_BASE_sib : EA_BASE_sib64);
Craig Topper38afbfd2014-03-20 05:56:00 +00001363 if (readSIB(insn) || readDisplacement(insn))
Sean Callanan04cc3072009-12-19 02:59:52 +00001364 return -1;
1365 break;
1366 case 0x5:
1367 insn->eaBase = EA_BASE_NONE;
1368 insn->eaDisplacement = EA_DISP_32;
Sean Callanan010b3732010-04-02 21:23:51 +00001369 if (readDisplacement(insn))
Sean Callanan04cc3072009-12-19 02:59:52 +00001370 return -1;
1371 break;
1372 default:
1373 insn->eaBase = (EABase)(insn->eaBaseBase + rm);
1374 break;
1375 }
1376 break;
1377 case 0x1:
Craig Topper399e39e2014-01-25 22:48:43 +00001378 insn->displacementSize = 1;
Alp Toker771f7652014-01-26 18:44:34 +00001379 /* FALLTHROUGH */
Sean Callanan04cc3072009-12-19 02:59:52 +00001380 case 0x2:
1381 insn->eaDisplacement = (mod == 0x1 ? EA_DISP_8 : EA_DISP_32);
1382 switch (rm) {
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001383 case 0x14:
Sean Callanan04cc3072009-12-19 02:59:52 +00001384 case 0x4:
1385 case 0xc: /* in case REXW.b is set */
1386 insn->eaBase = EA_BASE_sib;
Craig Topper38afbfd2014-03-20 05:56:00 +00001387 if (readSIB(insn) || readDisplacement(insn))
Sean Callanan04cc3072009-12-19 02:59:52 +00001388 return -1;
1389 break;
1390 default:
1391 insn->eaBase = (EABase)(insn->eaBaseBase + rm);
Sean Callanan010b3732010-04-02 21:23:51 +00001392 if (readDisplacement(insn))
Sean Callanan04cc3072009-12-19 02:59:52 +00001393 return -1;
1394 break;
1395 }
1396 break;
1397 case 0x3:
1398 insn->eaDisplacement = EA_DISP_NONE;
1399 insn->eaBase = (EABase)(insn->eaRegBase + rm);
1400 break;
1401 }
1402 break;
1403 } /* switch (insn->addressSize) */
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001404
Sean Callanan04cc3072009-12-19 02:59:52 +00001405 return 0;
1406}
1407
1408#define GENERIC_FIXUP_FUNC(name, base, prefix) \
1409 static uint8_t name(struct InternalInstruction *insn, \
1410 OperandType type, \
1411 uint8_t index, \
1412 uint8_t *valid) { \
1413 *valid = 1; \
1414 switch (type) { \
1415 default: \
Sean Callanan010b3732010-04-02 21:23:51 +00001416 debug("Unhandled register type"); \
1417 *valid = 0; \
1418 return 0; \
Sean Callanan04cc3072009-12-19 02:59:52 +00001419 case TYPE_Rv: \
1420 return base + index; \
1421 case TYPE_R8: \
Sean Callanan010b3732010-04-02 21:23:51 +00001422 if (insn->rexPrefix && \
Sean Callanan04cc3072009-12-19 02:59:52 +00001423 index >= 4 && index <= 7) { \
1424 return prefix##_SPL + (index - 4); \
1425 } else { \
1426 return prefix##_AL + index; \
1427 } \
1428 case TYPE_R16: \
1429 return prefix##_AX + index; \
1430 case TYPE_R32: \
1431 return prefix##_EAX + index; \
1432 case TYPE_R64: \
1433 return prefix##_RAX + index; \
Elena Demikhovsky003e7d72013-07-28 08:28:38 +00001434 case TYPE_XMM512: \
1435 return prefix##_ZMM0 + index; \
Sean Callananc3fd5232011-03-15 01:23:15 +00001436 case TYPE_XMM256: \
1437 return prefix##_YMM0 + index; \
Sean Callanan04cc3072009-12-19 02:59:52 +00001438 case TYPE_XMM128: \
1439 case TYPE_XMM64: \
1440 case TYPE_XMM32: \
1441 case TYPE_XMM: \
1442 return prefix##_XMM0 + index; \
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001443 case TYPE_VK1: \
1444 case TYPE_VK8: \
1445 case TYPE_VK16: \
1446 return prefix##_K0 + index; \
Sean Callanan04cc3072009-12-19 02:59:52 +00001447 case TYPE_MM64: \
1448 case TYPE_MM32: \
1449 case TYPE_MM: \
Craig Topperd5b39232014-12-26 18:19:44 +00001450 return prefix##_MM0 + (index & 0x7); \
Sean Callanan04cc3072009-12-19 02:59:52 +00001451 case TYPE_SEGMENTREG: \
Sean Callanan010b3732010-04-02 21:23:51 +00001452 if (index > 5) \
Sean Callanan04cc3072009-12-19 02:59:52 +00001453 *valid = 0; \
1454 return prefix##_ES + index; \
1455 case TYPE_DEBUGREG: \
Sean Callanan010b3732010-04-02 21:23:51 +00001456 if (index > 7) \
Sean Callanan04cc3072009-12-19 02:59:52 +00001457 *valid = 0; \
1458 return prefix##_DR0 + index; \
Sean Callanane7e1cf92010-05-06 20:59:00 +00001459 case TYPE_CONTROLREG: \
Sean Callanane7e1cf92010-05-06 20:59:00 +00001460 return prefix##_CR0 + index; \
Sean Callanan04cc3072009-12-19 02:59:52 +00001461 } \
1462 }
1463
1464/*
1465 * fixup*Value - Consults an operand type to determine the meaning of the
1466 * reg or R/M field. If the operand is an XMM operand, for example, an
1467 * operand would be XMM0 instead of AX, which readModRM() would otherwise
1468 * misinterpret it as.
1469 *
1470 * @param insn - The instruction containing the operand.
1471 * @param type - The operand type.
1472 * @param index - The existing value of the field as reported by readModRM().
1473 * @param valid - The address of a uint8_t. The target is set to 1 if the
1474 * field is valid for the register class; 0 if not.
Sean Callanan010b3732010-04-02 21:23:51 +00001475 * @return - The proper value.
Sean Callanan04cc3072009-12-19 02:59:52 +00001476 */
Sean Callanan2f9443f2009-12-22 02:07:42 +00001477GENERIC_FIXUP_FUNC(fixupRegValue, insn->regBase, MODRM_REG)
Sean Callanan04cc3072009-12-19 02:59:52 +00001478GENERIC_FIXUP_FUNC(fixupRMValue, insn->eaRegBase, EA_REG)
1479
1480/*
1481 * fixupReg - Consults an operand specifier to determine which of the
1482 * fixup*Value functions to use in correcting readModRM()'ss interpretation.
1483 *
1484 * @param insn - See fixup*Value().
1485 * @param op - The operand specifier.
1486 * @return - 0 if fixup was successful; -1 if the register returned was
1487 * invalid for its class.
1488 */
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001489static int fixupReg(struct InternalInstruction *insn,
Benjamin Kramerde0a4fb2010-10-23 09:10:44 +00001490 const struct OperandSpecifier *op) {
Sean Callanan04cc3072009-12-19 02:59:52 +00001491 uint8_t valid;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001492
Nuno Lopes3ed6d602009-12-19 12:07:00 +00001493 dbgprintf(insn, "fixupReg()");
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001494
Sean Callanan04cc3072009-12-19 02:59:52 +00001495 switch ((OperandEncoding)op->encoding) {
1496 default:
Sean Callanan010b3732010-04-02 21:23:51 +00001497 debug("Expected a REG or R/M encoding in fixupReg");
1498 return -1;
Sean Callananc3fd5232011-03-15 01:23:15 +00001499 case ENCODING_VVVV:
1500 insn->vvvv = (Reg)fixupRegValue(insn,
1501 (OperandType)op->type,
1502 insn->vvvv,
1503 &valid);
1504 if (!valid)
1505 return -1;
1506 break;
Sean Callanan04cc3072009-12-19 02:59:52 +00001507 case ENCODING_REG:
1508 insn->reg = (Reg)fixupRegValue(insn,
1509 (OperandType)op->type,
1510 insn->reg - insn->regBase,
1511 &valid);
1512 if (!valid)
1513 return -1;
1514 break;
Adam Nemet5933c2f2014-07-17 17:04:56 +00001515 CASE_ENCODING_RM:
Sean Callanan04cc3072009-12-19 02:59:52 +00001516 if (insn->eaBase >= insn->eaRegBase) {
1517 insn->eaBase = (EABase)fixupRMValue(insn,
1518 (OperandType)op->type,
1519 insn->eaBase - insn->eaRegBase,
1520 &valid);
1521 if (!valid)
1522 return -1;
1523 }
1524 break;
1525 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001526
Sean Callanan04cc3072009-12-19 02:59:52 +00001527 return 0;
1528}
1529
1530/*
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001531 * readOpcodeRegister - Reads an operand from the opcode field of an
Sean Callanan04cc3072009-12-19 02:59:52 +00001532 * instruction and interprets it appropriately given the operand width.
1533 * Handles AddRegFrm instructions.
1534 *
Craig Topper91551182014-01-01 15:29:32 +00001535 * @param insn - the instruction whose opcode field is to be read.
Sean Callanan04cc3072009-12-19 02:59:52 +00001536 * @param size - The width (in bytes) of the register being specified.
1537 * 1 means AL and friends, 2 means AX, 4 means EAX, and 8 means
1538 * RAX.
Sean Callanan010b3732010-04-02 21:23:51 +00001539 * @return - 0 on success; nonzero otherwise.
Sean Callanan04cc3072009-12-19 02:59:52 +00001540 */
Sean Callanan010b3732010-04-02 21:23:51 +00001541static int readOpcodeRegister(struct InternalInstruction* insn, uint8_t size) {
Nuno Lopes3ed6d602009-12-19 12:07:00 +00001542 dbgprintf(insn, "readOpcodeRegister()");
Sean Callanan04cc3072009-12-19 02:59:52 +00001543
Sean Callanan04cc3072009-12-19 02:59:52 +00001544 if (size == 0)
1545 size = insn->registerSize;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001546
Sean Callanan04cc3072009-12-19 02:59:52 +00001547 switch (size) {
1548 case 1:
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001549 insn->opcodeRegister = (Reg)(MODRM_REG_AL + ((bFromREX(insn->rexPrefix) << 3)
Craig Topper91551182014-01-01 15:29:32 +00001550 | (insn->opcode & 7)));
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001551 if (insn->rexPrefix &&
Sean Callanan010b3732010-04-02 21:23:51 +00001552 insn->opcodeRegister >= MODRM_REG_AL + 0x4 &&
1553 insn->opcodeRegister < MODRM_REG_AL + 0x8) {
Sean Callanan2f9443f2009-12-22 02:07:42 +00001554 insn->opcodeRegister = (Reg)(MODRM_REG_SPL
1555 + (insn->opcodeRegister - MODRM_REG_AL - 4));
Sean Callanan04cc3072009-12-19 02:59:52 +00001556 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001557
Sean Callanan04cc3072009-12-19 02:59:52 +00001558 break;
1559 case 2:
Sean Callanan2f9443f2009-12-22 02:07:42 +00001560 insn->opcodeRegister = (Reg)(MODRM_REG_AX
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001561 + ((bFromREX(insn->rexPrefix) << 3)
Craig Topper91551182014-01-01 15:29:32 +00001562 | (insn->opcode & 7)));
Sean Callanan04cc3072009-12-19 02:59:52 +00001563 break;
1564 case 4:
Sean Callanan010b3732010-04-02 21:23:51 +00001565 insn->opcodeRegister = (Reg)(MODRM_REG_EAX
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001566 + ((bFromREX(insn->rexPrefix) << 3)
Craig Topper91551182014-01-01 15:29:32 +00001567 | (insn->opcode & 7)));
Sean Callanan04cc3072009-12-19 02:59:52 +00001568 break;
1569 case 8:
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001570 insn->opcodeRegister = (Reg)(MODRM_REG_RAX
1571 + ((bFromREX(insn->rexPrefix) << 3)
Craig Topper91551182014-01-01 15:29:32 +00001572 | (insn->opcode & 7)));
Sean Callanan04cc3072009-12-19 02:59:52 +00001573 break;
1574 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001575
Sean Callanan010b3732010-04-02 21:23:51 +00001576 return 0;
Sean Callanan04cc3072009-12-19 02:59:52 +00001577}
1578
1579/*
1580 * readImmediate - Consumes an immediate operand from an instruction, given the
1581 * desired operand size.
1582 *
1583 * @param insn - The instruction whose operand is to be read.
1584 * @param size - The width (in bytes) of the operand.
1585 * @return - 0 if the immediate was successfully consumed; nonzero
1586 * otherwise.
1587 */
1588static int readImmediate(struct InternalInstruction* insn, uint8_t size) {
1589 uint8_t imm8;
1590 uint16_t imm16;
1591 uint32_t imm32;
1592 uint64_t imm64;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001593
Nuno Lopes3ed6d602009-12-19 12:07:00 +00001594 dbgprintf(insn, "readImmediate()");
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001595
Sean Callanan010b3732010-04-02 21:23:51 +00001596 if (insn->numImmediatesConsumed == 2) {
1597 debug("Already consumed two immediates");
1598 return -1;
1599 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001600
Sean Callanan04cc3072009-12-19 02:59:52 +00001601 if (size == 0)
1602 size = insn->immediateSize;
1603 else
1604 insn->immediateSize = size;
Kevin Enderby6fbcd8d2012-02-23 18:18:17 +00001605 insn->immediateOffset = insn->readerCursor - insn->startLocation;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001606
Sean Callanan04cc3072009-12-19 02:59:52 +00001607 switch (size) {
1608 case 1:
1609 if (consumeByte(insn, &imm8))
1610 return -1;
1611 insn->immediates[insn->numImmediatesConsumed] = imm8;
1612 break;
1613 case 2:
1614 if (consumeUInt16(insn, &imm16))
1615 return -1;
1616 insn->immediates[insn->numImmediatesConsumed] = imm16;
1617 break;
1618 case 4:
1619 if (consumeUInt32(insn, &imm32))
1620 return -1;
1621 insn->immediates[insn->numImmediatesConsumed] = imm32;
1622 break;
1623 case 8:
1624 if (consumeUInt64(insn, &imm64))
1625 return -1;
1626 insn->immediates[insn->numImmediatesConsumed] = imm64;
1627 break;
1628 }
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001629
Sean Callanan04cc3072009-12-19 02:59:52 +00001630 insn->numImmediatesConsumed++;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001631
Sean Callanan04cc3072009-12-19 02:59:52 +00001632 return 0;
1633}
1634
1635/*
Craig Topper8dd7bbc2011-09-13 07:37:44 +00001636 * readVVVV - Consumes vvvv from an instruction if it has a VEX prefix.
Sean Callananc3fd5232011-03-15 01:23:15 +00001637 *
1638 * @param insn - The instruction whose operand is to be read.
Craig Topper8dd7bbc2011-09-13 07:37:44 +00001639 * @return - 0 if the vvvv was successfully consumed; nonzero
Sean Callananc3fd5232011-03-15 01:23:15 +00001640 * otherwise.
1641 */
1642static int readVVVV(struct InternalInstruction* insn) {
1643 dbgprintf(insn, "readVVVV()");
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001644
Richard Smith89ee75d2014-04-20 21:07:34 +00001645 int vvvv;
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001646 if (insn->vectorExtensionType == TYPE_EVEX)
Adam Nemet8ae70502014-06-24 01:42:32 +00001647 vvvv = (v2FromEVEX4of4(insn->vectorExtensionPrefix[3]) << 4 |
1648 vvvvFromEVEX3of4(insn->vectorExtensionPrefix[2]));
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001649 else if (insn->vectorExtensionType == TYPE_VEX_3B)
Richard Smith89ee75d2014-04-20 21:07:34 +00001650 vvvv = vvvvFromVEX3of3(insn->vectorExtensionPrefix[2]);
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001651 else if (insn->vectorExtensionType == TYPE_VEX_2B)
Richard Smith89ee75d2014-04-20 21:07:34 +00001652 vvvv = vvvvFromVEX2of2(insn->vectorExtensionPrefix[1]);
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001653 else if (insn->vectorExtensionType == TYPE_XOP)
Richard Smith89ee75d2014-04-20 21:07:34 +00001654 vvvv = vvvvFromXOP3of3(insn->vectorExtensionPrefix[2]);
Sean Callananc3fd5232011-03-15 01:23:15 +00001655 else
1656 return -1;
1657
Craig Topper0d0be472011-10-03 08:14:29 +00001658 if (insn->mode != MODE_64BIT)
Richard Smith89ee75d2014-04-20 21:07:34 +00001659 vvvv &= 0x7;
Craig Topper0d0be472011-10-03 08:14:29 +00001660
Richard Smith89ee75d2014-04-20 21:07:34 +00001661 insn->vvvv = static_cast<Reg>(vvvv);
Sean Callananc3fd5232011-03-15 01:23:15 +00001662 return 0;
1663}
1664
1665/*
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001666 * readMaskRegister - Reads an mask register from the opcode field of an
1667 * instruction.
1668 *
1669 * @param insn - The instruction whose opcode field is to be read.
1670 * @return - 0 on success; nonzero otherwise.
1671 */
1672static int readMaskRegister(struct InternalInstruction* insn) {
1673 dbgprintf(insn, "readMaskRegister()");
1674
1675 if (insn->vectorExtensionType != TYPE_EVEX)
1676 return -1;
1677
Richard Smith89ee75d2014-04-20 21:07:34 +00001678 insn->writemask =
1679 static_cast<Reg>(aaaFromEVEX4of4(insn->vectorExtensionPrefix[3]));
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001680 return 0;
1681}
1682
1683/*
Sean Callanan04cc3072009-12-19 02:59:52 +00001684 * readOperands - Consults the specifier for an instruction and consumes all
1685 * operands for that instruction, interpreting them as it goes.
1686 *
1687 * @param insn - The instruction whose operands are to be read and interpreted.
1688 * @return - 0 if all operands could be read; nonzero otherwise.
1689 */
1690static int readOperands(struct InternalInstruction* insn) {
Craig Topper8dd7bbc2011-09-13 07:37:44 +00001691 int hasVVVV, needVVVV;
Craig Topper2ba766a2011-12-30 06:23:39 +00001692 int sawRegImm = 0;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001693
Nuno Lopes3ed6d602009-12-19 12:07:00 +00001694 dbgprintf(insn, "readOperands()");
Craig Topper8dd7bbc2011-09-13 07:37:44 +00001695
1696 /* If non-zero vvvv specified, need to make sure one of the operands
1697 uses it. */
1698 hasVVVV = !readVVVV(insn);
1699 needVVVV = hasVVVV && (insn->vvvv != 0);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001700
Patrik Hagglund31998382014-04-28 12:12:27 +00001701 for (const auto &Op : x86OperandSets[insn->spec->operands]) {
1702 switch (Op.encoding) {
Sean Callanan04cc3072009-12-19 02:59:52 +00001703 case ENCODING_NONE:
David Woodhouse2ef8d9c2014-01-22 15:08:08 +00001704 case ENCODING_SI:
David Woodhouseb33c2ef2014-01-22 15:08:21 +00001705 case ENCODING_DI:
Sean Callanan04cc3072009-12-19 02:59:52 +00001706 break;
1707 case ENCODING_REG:
Adam Nemet5933c2f2014-07-17 17:04:56 +00001708 CASE_ENCODING_RM:
Sean Callanan04cc3072009-12-19 02:59:52 +00001709 if (readModRM(insn))
1710 return -1;
Patrik Hagglund31998382014-04-28 12:12:27 +00001711 if (fixupReg(insn, &Op))
Sean Callanan04cc3072009-12-19 02:59:52 +00001712 return -1;
Adam Nemet5933c2f2014-07-17 17:04:56 +00001713 // Apply the AVX512 compressed displacement scaling factor.
1714 if (Op.encoding != ENCODING_REG && insn->eaDisplacement == EA_DISP_8)
1715 insn->displacement *= 1 << (Op.encoding - ENCODING_RM);
Sean Callanan04cc3072009-12-19 02:59:52 +00001716 break;
1717 case ENCODING_CB:
1718 case ENCODING_CW:
1719 case ENCODING_CD:
1720 case ENCODING_CP:
1721 case ENCODING_CO:
1722 case ENCODING_CT:
Nuno Lopes3ed6d602009-12-19 12:07:00 +00001723 dbgprintf(insn, "We currently don't hande code-offset encodings");
Sean Callanan04cc3072009-12-19 02:59:52 +00001724 return -1;
1725 case ENCODING_IB:
Craig Topper2ba766a2011-12-30 06:23:39 +00001726 if (sawRegImm) {
Benjamin Kramer9c48f262012-01-04 22:06:45 +00001727 /* Saw a register immediate so don't read again and instead split the
1728 previous immediate. FIXME: This is a hack. */
Benjamin Kramer47aecca2012-01-01 17:55:36 +00001729 insn->immediates[insn->numImmediatesConsumed] =
1730 insn->immediates[insn->numImmediatesConsumed - 1] & 0xf;
1731 ++insn->numImmediatesConsumed;
Craig Topper2ba766a2011-12-30 06:23:39 +00001732 break;
1733 }
Sean Callanan04cc3072009-12-19 02:59:52 +00001734 if (readImmediate(insn, 1))
1735 return -1;
Patrik Hagglund31998382014-04-28 12:12:27 +00001736 if (Op.type == TYPE_XMM128 ||
1737 Op.type == TYPE_XMM256)
Craig Topper2ba766a2011-12-30 06:23:39 +00001738 sawRegImm = 1;
Sean Callanan04cc3072009-12-19 02:59:52 +00001739 break;
1740 case ENCODING_IW:
1741 if (readImmediate(insn, 2))
1742 return -1;
1743 break;
1744 case ENCODING_ID:
1745 if (readImmediate(insn, 4))
1746 return -1;
1747 break;
1748 case ENCODING_IO:
1749 if (readImmediate(insn, 8))
1750 return -1;
1751 break;
1752 case ENCODING_Iv:
Sean Callanan010b3732010-04-02 21:23:51 +00001753 if (readImmediate(insn, insn->immediateSize))
1754 return -1;
Chris Lattnerd4758fc2010-04-16 21:15:15 +00001755 break;
Sean Callanan04cc3072009-12-19 02:59:52 +00001756 case ENCODING_Ia:
Sean Callanan010b3732010-04-02 21:23:51 +00001757 if (readImmediate(insn, insn->addressSize))
1758 return -1;
Sean Callanan04cc3072009-12-19 02:59:52 +00001759 break;
1760 case ENCODING_RB:
Sean Callanan010b3732010-04-02 21:23:51 +00001761 if (readOpcodeRegister(insn, 1))
1762 return -1;
Sean Callanan04cc3072009-12-19 02:59:52 +00001763 break;
1764 case ENCODING_RW:
Sean Callanan010b3732010-04-02 21:23:51 +00001765 if (readOpcodeRegister(insn, 2))
1766 return -1;
Sean Callanan04cc3072009-12-19 02:59:52 +00001767 break;
1768 case ENCODING_RD:
Sean Callanan010b3732010-04-02 21:23:51 +00001769 if (readOpcodeRegister(insn, 4))
1770 return -1;
Sean Callanan04cc3072009-12-19 02:59:52 +00001771 break;
1772 case ENCODING_RO:
Sean Callanan010b3732010-04-02 21:23:51 +00001773 if (readOpcodeRegister(insn, 8))
1774 return -1;
Sean Callanan04cc3072009-12-19 02:59:52 +00001775 break;
1776 case ENCODING_Rv:
Sean Callanan010b3732010-04-02 21:23:51 +00001777 if (readOpcodeRegister(insn, 0))
1778 return -1;
Sean Callanan04cc3072009-12-19 02:59:52 +00001779 break;
Craig Topper623b0d62014-01-01 14:22:37 +00001780 case ENCODING_FP:
Sean Callananc3fd5232011-03-15 01:23:15 +00001781 break;
1782 case ENCODING_VVVV:
Craig Topper8dd7bbc2011-09-13 07:37:44 +00001783 needVVVV = 0; /* Mark that we have found a VVVV operand. */
1784 if (!hasVVVV)
Sean Callananc3fd5232011-03-15 01:23:15 +00001785 return -1;
Patrik Hagglund31998382014-04-28 12:12:27 +00001786 if (fixupReg(insn, &Op))
Sean Callananc3fd5232011-03-15 01:23:15 +00001787 return -1;
1788 break;
Elena Demikhovsky371e3632013-12-25 11:40:51 +00001789 case ENCODING_WRITEMASK:
1790 if (readMaskRegister(insn))
1791 return -1;
1792 break;
Sean Callanan04cc3072009-12-19 02:59:52 +00001793 case ENCODING_DUP:
1794 break;
1795 default:
Nuno Lopes3ed6d602009-12-19 12:07:00 +00001796 dbgprintf(insn, "Encountered an operand with an unknown encoding.");
Sean Callanan04cc3072009-12-19 02:59:52 +00001797 return -1;
1798 }
1799 }
Craig Topper8dd7bbc2011-09-13 07:37:44 +00001800
1801 /* If we didn't find ENCODING_VVVV operand, but non-zero vvvv present, fail */
1802 if (needVVVV) return -1;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001803
Sean Callanan04cc3072009-12-19 02:59:52 +00001804 return 0;
1805}
1806
1807/*
1808 * decodeInstruction - Reads and interprets a full instruction provided by the
1809 * user.
1810 *
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001811 * @param insn - A pointer to the instruction to be populated. Must be
Sean Callanan04cc3072009-12-19 02:59:52 +00001812 * pre-allocated.
1813 * @param reader - The function to be used to read the instruction's bytes.
1814 * @param readerArg - A generic argument to be passed to the reader to store
1815 * any internal state.
1816 * @param logger - If non-NULL, the function to be used to write log messages
1817 * and warnings.
1818 * @param loggerArg - A generic argument to be passed to the logger to store
1819 * any internal state.
1820 * @param startLoc - The address (in the reader's address space) of the first
1821 * byte in the instruction.
1822 * @param mode - The mode (real mode, IA-32e, or IA-32e in 64-bit mode) to
1823 * decode the instruction in.
1824 * @return - 0 if the instruction's memory could be read; nonzero if
1825 * not.
1826 */
Richard Smith89ee75d2014-04-20 21:07:34 +00001827int llvm::X86Disassembler::decodeInstruction(
1828 struct InternalInstruction *insn, byteReader_t reader,
1829 const void *readerArg, dlog_t logger, void *loggerArg, const void *miiArg,
1830 uint64_t startLoc, DisassemblerMode mode) {
Daniel Dunbarc745a622009-12-19 03:31:50 +00001831 memset(insn, 0, sizeof(struct InternalInstruction));
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001832
Sean Callanan04cc3072009-12-19 02:59:52 +00001833 insn->reader = reader;
1834 insn->readerArg = readerArg;
1835 insn->dlog = logger;
1836 insn->dlogArg = loggerArg;
1837 insn->startLocation = startLoc;
1838 insn->readerCursor = startLoc;
1839 insn->mode = mode;
1840 insn->numImmediatesConsumed = 0;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001841
Sean Callanan04cc3072009-12-19 02:59:52 +00001842 if (readPrefixes(insn) ||
1843 readOpcode(insn) ||
Benjamin Kramer478e8de2012-02-11 14:50:54 +00001844 getID(insn, miiArg) ||
Sean Callanan04cc3072009-12-19 02:59:52 +00001845 insn->instructionID == 0 ||
1846 readOperands(insn))
1847 return -1;
Craig Topperb8aec082012-08-01 07:39:18 +00001848
Patrik Hagglund31998382014-04-28 12:12:27 +00001849 insn->operands = x86OperandSets[insn->spec->operands];
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001850
Sean Callanan04cc3072009-12-19 02:59:52 +00001851 insn->length = insn->readerCursor - insn->startLocation;
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001852
Benjamin Kramer4f672272010-03-18 12:18:36 +00001853 dbgprintf(insn, "Read from 0x%llx to 0x%llx: length %zu",
1854 startLoc, insn->readerCursor, insn->length);
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001855
Sean Callanan04cc3072009-12-19 02:59:52 +00001856 if (insn->length > 15)
Nuno Lopes3ed6d602009-12-19 12:07:00 +00001857 dbgprintf(insn, "Instruction exceeds 15-byte limit");
NAKAMURA Takumidde7fa82013-03-25 20:55:43 +00001858
Sean Callanan04cc3072009-12-19 02:59:52 +00001859 return 0;
1860}