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Andreas Gampe5a4fa822014-03-31 16:50:12 -07001/*
2 * Copyright (C) 2014 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#ifndef ART_COMPILER_UTILS_ASSEMBLER_TEST_H_
18#define ART_COMPILER_UTILS_ASSEMBLER_TEST_H_
19
20#include "assembler.h"
21
Andreas Gampe03b9ee42015-04-24 21:41:45 -070022#include "assembler_test_base.h"
Andreas Gampeb40c6a72014-05-02 14:25:12 -070023#include "common_runtime_test.h" // For ScratchFile
Andreas Gampe5a4fa822014-03-31 16:50:12 -070024
25#include <cstdio>
26#include <cstdlib>
27#include <fstream>
Andreas Gampe5a4fa822014-03-31 16:50:12 -070028#include <iterator>
29#include <sys/stat.h>
30
31namespace art {
32
Andreas Gampe851df202014-11-12 14:05:46 -080033// Helper for a constexpr string length.
34constexpr size_t ConstexprStrLen(char const* str, size_t count = 0) {
35 return ('\0' == str[0]) ? count : ConstexprStrLen(str+1, count+1);
36}
37
Andreas Gampe849cc5e2014-11-18 13:46:46 -080038enum class RegisterView { // private
39 kUsePrimaryName,
Chao-ying Fud23840d2015-04-07 16:03:04 -070040 kUseSecondaryName,
41 kUseTertiaryName,
42 kUseQuaternaryName,
Andreas Gampe849cc5e2014-11-18 13:46:46 -080043};
44
Andreas Gampe851df202014-11-12 14:05:46 -080045template<typename Ass, typename Reg, typename FPReg, typename Imm>
Andreas Gampe5a4fa822014-03-31 16:50:12 -070046class AssemblerTest : public testing::Test {
47 public:
48 Ass* GetAssembler() {
49 return assembler_.get();
50 }
51
Andreas Gampe851df202014-11-12 14:05:46 -080052 typedef std::string (*TestFn)(AssemblerTest* assembler_test, Ass* assembler);
Andreas Gampe5a4fa822014-03-31 16:50:12 -070053
54 void DriverFn(TestFn f, std::string test_name) {
Andreas Gampe03b9ee42015-04-24 21:41:45 -070055 DriverWrapper(f(this, assembler_.get()), test_name);
Andreas Gampe5a4fa822014-03-31 16:50:12 -070056 }
57
58 // This driver assumes the assembler has already been called.
59 void DriverStr(std::string assembly_string, std::string test_name) {
Andreas Gampe03b9ee42015-04-24 21:41:45 -070060 DriverWrapper(assembly_string, test_name);
Andreas Gampe5a4fa822014-03-31 16:50:12 -070061 }
62
63 std::string RepeatR(void (Ass::*f)(Reg), std::string fmt) {
Andreas Gampe851df202014-11-12 14:05:46 -080064 return RepeatTemplatedRegister<Reg>(f,
65 GetRegisters(),
66 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
67 fmt);
68 }
Andreas Gampe5a4fa822014-03-31 16:50:12 -070069
Andreas Gampe851df202014-11-12 14:05:46 -080070 std::string Repeatr(void (Ass::*f)(Reg), std::string fmt) {
71 return RepeatTemplatedRegister<Reg>(f,
72 GetRegisters(),
73 &AssemblerTest::GetRegName<RegisterView::kUseSecondaryName>,
74 fmt);
Andreas Gampe5a4fa822014-03-31 16:50:12 -070075 }
76
77 std::string RepeatRR(void (Ass::*f)(Reg, Reg), std::string fmt) {
Andreas Gampe851df202014-11-12 14:05:46 -080078 return RepeatTemplatedRegisters<Reg, Reg>(f,
79 GetRegisters(),
80 GetRegisters(),
81 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
82 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
83 fmt);
84 }
Andreas Gampe5a4fa822014-03-31 16:50:12 -070085
Chris Larsen51417632015-10-02 13:24:25 -070086 std::string RepeatRRNoDupes(void (Ass::*f)(Reg, Reg), std::string fmt) {
87 return RepeatTemplatedRegistersNoDupes<Reg, Reg>(f,
88 GetRegisters(),
89 GetRegisters(),
90 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
91 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
92 fmt);
93 }
94
Andreas Gampe851df202014-11-12 14:05:46 -080095 std::string Repeatrr(void (Ass::*f)(Reg, Reg), std::string fmt) {
96 return RepeatTemplatedRegisters<Reg, Reg>(f,
97 GetRegisters(),
98 GetRegisters(),
99 &AssemblerTest::GetRegName<RegisterView::kUseSecondaryName>,
100 &AssemblerTest::GetRegName<RegisterView::kUseSecondaryName>,
101 fmt);
102 }
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700103
Chris Larsendbce0d72015-09-17 13:34:00 -0700104 std::string RepeatRRR(void (Ass::*f)(Reg, Reg, Reg), std::string fmt) {
105 return RepeatTemplatedRegisters<Reg, Reg, Reg>(f,
106 GetRegisters(),
107 GetRegisters(),
108 GetRegisters(),
109 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
110 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
111 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
112 fmt);
113 }
114
Chao-ying Fud23840d2015-04-07 16:03:04 -0700115 std::string Repeatrb(void (Ass::*f)(Reg, Reg), std::string fmt) {
116 return RepeatTemplatedRegisters<Reg, Reg>(f,
117 GetRegisters(),
118 GetRegisters(),
119 &AssemblerTest::GetRegName<RegisterView::kUseSecondaryName>,
120 &AssemblerTest::GetRegName<RegisterView::kUseQuaternaryName>,
121 fmt);
122 }
123
Andreas Gampe851df202014-11-12 14:05:46 -0800124 std::string RepeatRr(void (Ass::*f)(Reg, Reg), std::string fmt) {
125 return RepeatTemplatedRegisters<Reg, Reg>(f,
126 GetRegisters(),
127 GetRegisters(),
128 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
129 &AssemblerTest::GetRegName<RegisterView::kUseSecondaryName>,
130 fmt);
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700131 }
132
133 std::string RepeatRI(void (Ass::*f)(Reg, const Imm&), size_t imm_bytes, std::string fmt) {
Andreas Gampe851df202014-11-12 14:05:46 -0800134 return RepeatRegisterImm<RegisterView::kUsePrimaryName>(f, imm_bytes, fmt);
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700135 }
136
Andreas Gampe851df202014-11-12 14:05:46 -0800137 std::string Repeatri(void (Ass::*f)(Reg, const Imm&), size_t imm_bytes, std::string fmt) {
138 return RepeatRegisterImm<RegisterView::kUseSecondaryName>(f, imm_bytes, fmt);
139 }
140
Goran Jakovljevic8c434dc2015-08-26 14:39:44 +0200141 template <typename Reg1, typename Reg2, typename ImmType>
142 std::string RepeatTemplatedRegistersImmBits(void (Ass::*f)(Reg1, Reg2, ImmType),
143 int imm_bits,
144 const std::vector<Reg1*> reg1_registers,
145 const std::vector<Reg2*> reg2_registers,
146 std::string (AssemblerTest::*GetName1)(const Reg1&),
147 std::string (AssemblerTest::*GetName2)(const Reg2&),
148 std::string fmt) {
Chris Larsendbce0d72015-09-17 13:34:00 -0700149 std::string str;
Alexey Frunzecd7b0ee2015-12-03 16:46:38 -0800150 std::vector<int64_t> imms = CreateImmediateValuesBits(abs(imm_bits), (imm_bits > 0));
Chris Larsendbce0d72015-09-17 13:34:00 -0700151
152 for (auto reg1 : reg1_registers) {
153 for (auto reg2 : reg2_registers) {
154 for (int64_t imm : imms) {
155 ImmType new_imm = CreateImmediate(imm);
156 (assembler_.get()->*f)(*reg1, *reg2, new_imm);
157 std::string base = fmt;
158
Goran Jakovljevic8c434dc2015-08-26 14:39:44 +0200159 std::string reg1_string = (this->*GetName1)(*reg1);
Chris Larsendbce0d72015-09-17 13:34:00 -0700160 size_t reg1_index;
161 while ((reg1_index = base.find(REG1_TOKEN)) != std::string::npos) {
162 base.replace(reg1_index, ConstexprStrLen(REG1_TOKEN), reg1_string);
163 }
164
Goran Jakovljevic8c434dc2015-08-26 14:39:44 +0200165 std::string reg2_string = (this->*GetName2)(*reg2);
Chris Larsendbce0d72015-09-17 13:34:00 -0700166 size_t reg2_index;
167 while ((reg2_index = base.find(REG2_TOKEN)) != std::string::npos) {
168 base.replace(reg2_index, ConstexprStrLen(REG2_TOKEN), reg2_string);
169 }
170
171 size_t imm_index = base.find(IMM_TOKEN);
172 if (imm_index != std::string::npos) {
173 std::ostringstream sreg;
174 sreg << imm;
175 std::string imm_string = sreg.str();
176 base.replace(imm_index, ConstexprStrLen(IMM_TOKEN), imm_string);
177 }
178
179 if (str.size() > 0) {
180 str += "\n";
181 }
182 str += base;
183 }
184 }
185 }
186 // Add a newline at the end.
187 str += "\n";
188 return str;
189 }
190
Alexey Frunzecd7b0ee2015-12-03 16:46:38 -0800191 template <typename ImmType, typename Reg1, typename Reg2>
192 std::string RepeatTemplatedImmBitsRegisters(void (Ass::*f)(ImmType, Reg1, Reg2),
193 const std::vector<Reg1*> reg1_registers,
194 const std::vector<Reg2*> reg2_registers,
195 std::string (AssemblerTest::*GetName1)(const Reg1&),
196 std::string (AssemblerTest::*GetName2)(const Reg2&),
197 int imm_bits,
198 std::string fmt) {
199 std::vector<int64_t> imms = CreateImmediateValuesBits(abs(imm_bits), (imm_bits > 0));
200
201 WarnOnCombinations(reg1_registers.size() * reg2_registers.size() * imms.size());
202
203 std::string str;
204 for (auto reg1 : reg1_registers) {
205 for (auto reg2 : reg2_registers) {
206 for (int64_t imm : imms) {
207 ImmType new_imm = CreateImmediate(imm);
208 (assembler_.get()->*f)(new_imm, *reg1, *reg2);
209 std::string base = fmt;
210
211 std::string reg1_string = (this->*GetName1)(*reg1);
212 size_t reg1_index;
213 while ((reg1_index = base.find(REG1_TOKEN)) != std::string::npos) {
214 base.replace(reg1_index, ConstexprStrLen(REG1_TOKEN), reg1_string);
215 }
216
217 std::string reg2_string = (this->*GetName2)(*reg2);
218 size_t reg2_index;
219 while ((reg2_index = base.find(REG2_TOKEN)) != std::string::npos) {
220 base.replace(reg2_index, ConstexprStrLen(REG2_TOKEN), reg2_string);
221 }
222
223 size_t imm_index = base.find(IMM_TOKEN);
224 if (imm_index != std::string::npos) {
225 std::ostringstream sreg;
226 sreg << imm;
227 std::string imm_string = sreg.str();
228 base.replace(imm_index, ConstexprStrLen(IMM_TOKEN), imm_string);
229 }
230
231 if (str.size() > 0) {
232 str += "\n";
233 }
234 str += base;
235 }
236 }
237 }
238 // Add a newline at the end.
239 str += "\n";
240 return str;
241 }
242
Goran Jakovljevic8c434dc2015-08-26 14:39:44 +0200243 template <typename RegType, typename ImmType>
244 std::string RepeatTemplatedRegisterImmBits(void (Ass::*f)(RegType, ImmType),
Alexey Frunzecd7b0ee2015-12-03 16:46:38 -0800245 int imm_bits,
246 const std::vector<Reg*> registers,
247 std::string (AssemblerTest::*GetName)(const RegType&),
248 std::string fmt) {
Goran Jakovljevic8c434dc2015-08-26 14:39:44 +0200249 std::string str;
Alexey Frunzecd7b0ee2015-12-03 16:46:38 -0800250 std::vector<int64_t> imms = CreateImmediateValuesBits(abs(imm_bits), (imm_bits > 0));
Goran Jakovljevic8c434dc2015-08-26 14:39:44 +0200251
252 for (auto reg : registers) {
253 for (int64_t imm : imms) {
254 ImmType new_imm = CreateImmediate(imm);
255 (assembler_.get()->*f)(*reg, new_imm);
256 std::string base = fmt;
257
258 std::string reg_string = (this->*GetName)(*reg);
259 size_t reg_index;
260 while ((reg_index = base.find(REG_TOKEN)) != std::string::npos) {
261 base.replace(reg_index, ConstexprStrLen(REG_TOKEN), reg_string);
262 }
263
264 size_t imm_index = base.find(IMM_TOKEN);
265 if (imm_index != std::string::npos) {
266 std::ostringstream sreg;
267 sreg << imm;
268 std::string imm_string = sreg.str();
269 base.replace(imm_index, ConstexprStrLen(IMM_TOKEN), imm_string);
270 }
271
272 if (str.size() > 0) {
273 str += "\n";
274 }
275 str += base;
276 }
277 }
278 // Add a newline at the end.
279 str += "\n";
280 return str;
281 }
282
283 template <typename ImmType>
284 std::string RepeatRRIb(void (Ass::*f)(Reg, Reg, ImmType), int imm_bits, std::string fmt) {
285 return RepeatTemplatedRegistersImmBits<Reg, Reg, ImmType>(f,
286 imm_bits,
287 GetRegisters(),
288 GetRegisters(),
289 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
290 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
291 fmt);
292 }
293
294 template <typename ImmType>
295 std::string RepeatRIb(void (Ass::*f)(Reg, ImmType), int imm_bits, std::string fmt) {
296 return RepeatTemplatedRegisterImmBits<Reg, ImmType>(f,
297 imm_bits,
298 GetRegisters(),
299 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
300 fmt);
301 }
302
303 template <typename ImmType>
304 std::string RepeatFRIb(void (Ass::*f)(FPReg, Reg, ImmType), int imm_bits, std::string fmt) {
305 return RepeatTemplatedRegistersImmBits<FPReg, Reg, ImmType>(f,
306 imm_bits,
307 GetFPRegisters(),
308 GetRegisters(),
309 &AssemblerTest::GetFPRegName,
310 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
311 fmt);
Chris Larsendbce0d72015-09-17 13:34:00 -0700312 }
313
Andreas Gampe851df202014-11-12 14:05:46 -0800314 std::string RepeatFF(void (Ass::*f)(FPReg, FPReg), std::string fmt) {
315 return RepeatTemplatedRegisters<FPReg, FPReg>(f,
316 GetFPRegisters(),
317 GetFPRegisters(),
318 &AssemblerTest::GetFPRegName,
319 &AssemblerTest::GetFPRegName,
320 fmt);
321 }
322
Chris Larsendbce0d72015-09-17 13:34:00 -0700323 std::string RepeatFFF(void (Ass::*f)(FPReg, FPReg, FPReg), std::string fmt) {
324 return RepeatTemplatedRegisters<FPReg, FPReg, FPReg>(f,
325 GetFPRegisters(),
326 GetFPRegisters(),
327 GetFPRegisters(),
328 &AssemblerTest::GetFPRegName,
329 &AssemblerTest::GetFPRegName,
330 &AssemblerTest::GetFPRegName,
331 fmt);
332 }
333
334 std::string RepeatFFI(void (Ass::*f)(FPReg, FPReg, const Imm&),
335 size_t imm_bytes,
336 std::string fmt) {
Mark Mendellfb8d2792015-03-31 22:16:59 -0400337 return RepeatTemplatedRegistersImm<FPReg, FPReg>(f,
Chris Larsendbce0d72015-09-17 13:34:00 -0700338 GetFPRegisters(),
339 GetFPRegisters(),
340 &AssemblerTest::GetFPRegName,
341 &AssemblerTest::GetFPRegName,
342 imm_bytes,
343 fmt);
Mark Mendellfb8d2792015-03-31 22:16:59 -0400344 }
345
Alexey Frunzecd7b0ee2015-12-03 16:46:38 -0800346 template <typename ImmType>
Alexey Frunzea8aaf5a2016-06-27 14:48:20 -0700347 std::string RepeatFFIb(void (Ass::*f)(FPReg, FPReg, ImmType), int imm_bits, std::string fmt) {
348 return RepeatTemplatedRegistersImmBits<FPReg, FPReg, ImmType>(f,
349 imm_bits,
350 GetFPRegisters(),
351 GetFPRegisters(),
352 &AssemblerTest::GetFPRegName,
353 &AssemblerTest::GetFPRegName,
354 fmt);
355 }
356
357 template <typename ImmType>
Alexey Frunzecd7b0ee2015-12-03 16:46:38 -0800358 std::string RepeatIbFF(void (Ass::*f)(ImmType, FPReg, FPReg), int imm_bits, std::string fmt) {
359 return RepeatTemplatedImmBitsRegisters<ImmType, FPReg, FPReg>(f,
360 GetFPRegisters(),
361 GetFPRegisters(),
362 &AssemblerTest::GetFPRegName,
363 &AssemblerTest::GetFPRegName,
364 imm_bits,
365 fmt);
366 }
367
Andreas Gampe851df202014-11-12 14:05:46 -0800368 std::string RepeatFR(void (Ass::*f)(FPReg, Reg), std::string fmt) {
369 return RepeatTemplatedRegisters<FPReg, Reg>(f,
370 GetFPRegisters(),
371 GetRegisters(),
372 &AssemblerTest::GetFPRegName,
373 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
374 fmt);
375 }
376
377 std::string RepeatFr(void (Ass::*f)(FPReg, Reg), std::string fmt) {
378 return RepeatTemplatedRegisters<FPReg, Reg>(f,
379 GetFPRegisters(),
380 GetRegisters(),
381 &AssemblerTest::GetFPRegName,
382 &AssemblerTest::GetRegName<RegisterView::kUseSecondaryName>,
383 fmt);
384 }
385
386 std::string RepeatRF(void (Ass::*f)(Reg, FPReg), std::string fmt) {
387 return RepeatTemplatedRegisters<Reg, FPReg>(f,
388 GetRegisters(),
389 GetFPRegisters(),
390 &AssemblerTest::GetRegName<RegisterView::kUsePrimaryName>,
391 &AssemblerTest::GetFPRegName,
392 fmt);
393 }
394
395 std::string RepeatrF(void (Ass::*f)(Reg, FPReg), std::string fmt) {
396 return RepeatTemplatedRegisters<Reg, FPReg>(f,
397 GetRegisters(),
398 GetFPRegisters(),
399 &AssemblerTest::GetRegName<RegisterView::kUseSecondaryName>,
400 &AssemblerTest::GetFPRegName,
401 fmt);
402 }
403
404 std::string RepeatI(void (Ass::*f)(const Imm&), size_t imm_bytes, std::string fmt,
405 bool as_uint = false) {
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700406 std::string str;
Andreas Gampe851df202014-11-12 14:05:46 -0800407 std::vector<int64_t> imms = CreateImmediateValues(imm_bytes, as_uint);
Andreas Gampe849cc5e2014-11-18 13:46:46 -0800408
409 WarnOnCombinations(imms.size());
410
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700411 for (int64_t imm : imms) {
Ian Rogerscf7f1912014-10-22 22:06:39 -0700412 Imm new_imm = CreateImmediate(imm);
413 (assembler_.get()->*f)(new_imm);
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700414 std::string base = fmt;
415
Andreas Gampe851df202014-11-12 14:05:46 -0800416 size_t imm_index = base.find(IMM_TOKEN);
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700417 if (imm_index != std::string::npos) {
418 std::ostringstream sreg;
419 sreg << imm;
420 std::string imm_string = sreg.str();
Andreas Gampe851df202014-11-12 14:05:46 -0800421 base.replace(imm_index, ConstexprStrLen(IMM_TOKEN), imm_string);
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700422 }
423
424 if (str.size() > 0) {
425 str += "\n";
426 }
427 str += base;
428 }
429 // Add a newline at the end.
430 str += "\n";
431 return str;
432 }
433
434 // This is intended to be run as a test.
435 bool CheckTools() {
Andreas Gampe03b9ee42015-04-24 21:41:45 -0700436 return test_helper_->CheckTools();
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700437 }
438
Andreas Gampe851df202014-11-12 14:05:46 -0800439 // The following functions are public so that TestFn can use them...
440
441 virtual std::vector<Reg*> GetRegisters() = 0;
442
443 virtual std::vector<FPReg*> GetFPRegisters() {
444 UNIMPLEMENTED(FATAL) << "Architecture does not support floating-point registers";
445 UNREACHABLE();
446 }
447
448 // Secondary register names are the secondary view on registers, e.g., 32b on 64b systems.
449 virtual std::string GetSecondaryRegisterName(const Reg& reg ATTRIBUTE_UNUSED) {
450 UNIMPLEMENTED(FATAL) << "Architecture does not support secondary registers";
451 UNREACHABLE();
452 }
453
Chao-ying Fud23840d2015-04-07 16:03:04 -0700454 // Tertiary register names are the tertiary view on registers, e.g., 16b on 64b systems.
455 virtual std::string GetTertiaryRegisterName(const Reg& reg ATTRIBUTE_UNUSED) {
456 UNIMPLEMENTED(FATAL) << "Architecture does not support tertiary registers";
457 UNREACHABLE();
458 }
459
460 // Quaternary register names are the quaternary view on registers, e.g., 8b on 64b systems.
461 virtual std::string GetQuaternaryRegisterName(const Reg& reg ATTRIBUTE_UNUSED) {
462 UNIMPLEMENTED(FATAL) << "Architecture does not support quaternary registers";
463 UNREACHABLE();
464 }
465
Calin Juravle9aec02f2014-11-18 23:06:35 +0000466 std::string GetRegisterName(const Reg& reg) {
467 return GetRegName<RegisterView::kUsePrimaryName>(reg);
468 }
469
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700470 protected:
Andreas Gampe851df202014-11-12 14:05:46 -0800471 explicit AssemblerTest() {}
472
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700473 void SetUp() OVERRIDE {
Vladimir Marko93205e32016-04-13 11:59:46 +0100474 arena_.reset(new ArenaAllocator(&pool_));
Chris Larsen3add9cb2016-04-14 14:01:33 -0700475 assembler_.reset(CreateAssembler(arena_.get()));
Andreas Gampe03b9ee42015-04-24 21:41:45 -0700476 test_helper_.reset(
477 new AssemblerTestInfrastructure(GetArchitectureString(),
478 GetAssemblerCmdName(),
479 GetAssemblerParameters(),
480 GetObjdumpCmdName(),
481 GetObjdumpParameters(),
482 GetDisassembleCmdName(),
483 GetDisassembleParameters(),
484 GetAssemblyHeader()));
Andreas Gampeb40c6a72014-05-02 14:25:12 -0700485
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700486 SetUpHelpers();
487 }
488
Andreas Gampe7747c8d2014-08-06 14:53:03 -0700489 void TearDown() OVERRIDE {
Andreas Gampe03b9ee42015-04-24 21:41:45 -0700490 test_helper_.reset(); // Clean up the helper.
Vladimir Marko93205e32016-04-13 11:59:46 +0100491 assembler_.reset();
492 arena_.reset();
Andreas Gampe7747c8d2014-08-06 14:53:03 -0700493 }
494
Chris Larsen3add9cb2016-04-14 14:01:33 -0700495 // Override this to set up any architecture-specific things, e.g., CPU revision.
496 virtual Ass* CreateAssembler(ArenaAllocator* arena) {
497 return new (arena) Ass(arena);
498 }
499
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700500 // Override this to set up any architecture-specific things, e.g., register vectors.
501 virtual void SetUpHelpers() {}
502
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700503 // Get the typically used name for this architecture, e.g., aarch64, x86_64, ...
504 virtual std::string GetArchitectureString() = 0;
505
506 // Get the name of the assembler, e.g., "as" by default.
507 virtual std::string GetAssemblerCmdName() {
508 return "as";
509 }
510
511 // Switches to the assembler command. Default none.
512 virtual std::string GetAssemblerParameters() {
513 return "";
514 }
515
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700516 // Get the name of the objdump, e.g., "objdump" by default.
517 virtual std::string GetObjdumpCmdName() {
518 return "objdump";
519 }
520
521 // Switches to the objdump command. Default is " -h".
522 virtual std::string GetObjdumpParameters() {
523 return " -h";
524 }
525
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700526 // Get the name of the objdump, e.g., "objdump" by default.
527 virtual std::string GetDisassembleCmdName() {
528 return "objdump";
529 }
530
531 // Switches to the objdump command. As it's a binary, one needs to push the architecture and
532 // such to objdump, so it's architecture-specific and there is no default.
533 virtual std::string GetDisassembleParameters() = 0;
534
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700535 // Create a couple of immediate values up to the number of bytes given.
Andreas Gampe851df202014-11-12 14:05:46 -0800536 virtual std::vector<int64_t> CreateImmediateValues(size_t imm_bytes, bool as_uint = false) {
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700537 std::vector<int64_t> res;
538 res.push_back(0);
Andreas Gampe851df202014-11-12 14:05:46 -0800539 if (!as_uint) {
540 res.push_back(-1);
541 } else {
542 res.push_back(0xFF);
543 }
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700544 res.push_back(0x12);
545 if (imm_bytes >= 2) {
546 res.push_back(0x1234);
Andreas Gampe851df202014-11-12 14:05:46 -0800547 if (!as_uint) {
548 res.push_back(-0x1234);
549 } else {
550 res.push_back(0xFFFF);
551 }
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700552 if (imm_bytes >= 4) {
553 res.push_back(0x12345678);
Andreas Gampe851df202014-11-12 14:05:46 -0800554 if (!as_uint) {
555 res.push_back(-0x12345678);
556 } else {
557 res.push_back(0xFFFFFFFF);
558 }
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700559 if (imm_bytes >= 6) {
560 res.push_back(0x123456789ABC);
Andreas Gampe851df202014-11-12 14:05:46 -0800561 if (!as_uint) {
562 res.push_back(-0x123456789ABC);
563 }
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700564 if (imm_bytes >= 8) {
565 res.push_back(0x123456789ABCDEF0);
Andreas Gampe851df202014-11-12 14:05:46 -0800566 if (!as_uint) {
567 res.push_back(-0x123456789ABCDEF0);
568 } else {
569 res.push_back(0xFFFFFFFFFFFFFFFF);
570 }
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700571 }
572 }
573 }
574 }
575 return res;
576 }
577
Chris Larsendbce0d72015-09-17 13:34:00 -0700578 const int kMaxBitsExhaustiveTest = 8;
579
580 // Create a couple of immediate values up to the number of bits given.
581 virtual std::vector<int64_t> CreateImmediateValuesBits(const int imm_bits, bool as_uint = false) {
582 CHECK_GT(imm_bits, 0);
583 CHECK_LE(imm_bits, 64);
584 std::vector<int64_t> res;
585
586 if (imm_bits <= kMaxBitsExhaustiveTest) {
587 if (as_uint) {
588 for (uint64_t i = MinInt<uint64_t>(imm_bits); i <= MaxInt<uint64_t>(imm_bits); i++) {
589 res.push_back(static_cast<int64_t>(i));
590 }
591 } else {
592 for (int64_t i = MinInt<int64_t>(imm_bits); i <= MaxInt<int64_t>(imm_bits); i++) {
593 res.push_back(i);
594 }
595 }
596 } else {
597 if (as_uint) {
598 for (uint64_t i = MinInt<uint64_t>(kMaxBitsExhaustiveTest);
599 i <= MaxInt<uint64_t>(kMaxBitsExhaustiveTest);
600 i++) {
601 res.push_back(static_cast<int64_t>(i));
602 }
603 for (int i = 0; i <= imm_bits; i++) {
604 uint64_t j = (MaxInt<uint64_t>(kMaxBitsExhaustiveTest) + 1) +
605 ((MaxInt<uint64_t>(imm_bits) -
606 (MaxInt<uint64_t>(kMaxBitsExhaustiveTest) + 1))
607 * i / imm_bits);
608 res.push_back(static_cast<int64_t>(j));
609 }
610 } else {
611 for (int i = 0; i <= imm_bits; i++) {
612 int64_t j = MinInt<int64_t>(imm_bits) +
613 ((((MinInt<int64_t>(kMaxBitsExhaustiveTest) - 1) -
614 MinInt<int64_t>(imm_bits))
615 * i) / imm_bits);
616 res.push_back(static_cast<int64_t>(j));
617 }
618 for (int64_t i = MinInt<int64_t>(kMaxBitsExhaustiveTest);
619 i <= MaxInt<int64_t>(kMaxBitsExhaustiveTest);
620 i++) {
621 res.push_back(static_cast<int64_t>(i));
622 }
623 for (int i = 0; i <= imm_bits; i++) {
624 int64_t j = (MaxInt<int64_t>(kMaxBitsExhaustiveTest) + 1) +
625 ((MaxInt<int64_t>(imm_bits) - (MaxInt<int64_t>(kMaxBitsExhaustiveTest) + 1))
626 * i / imm_bits);
627 res.push_back(static_cast<int64_t>(j));
628 }
629 }
630 }
631
632 return res;
633 }
634
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700635 // Create an immediate from the specific value.
Ian Rogerscf7f1912014-10-22 22:06:39 -0700636 virtual Imm CreateImmediate(int64_t imm_value) = 0;
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700637
Andreas Gampe851df202014-11-12 14:05:46 -0800638 template <typename RegType>
639 std::string RepeatTemplatedRegister(void (Ass::*f)(RegType),
640 const std::vector<RegType*> registers,
641 std::string (AssemblerTest::*GetName)(const RegType&),
642 std::string fmt) {
643 std::string str;
644 for (auto reg : registers) {
645 (assembler_.get()->*f)(*reg);
646 std::string base = fmt;
647
648 std::string reg_string = (this->*GetName)(*reg);
649 size_t reg_index;
650 if ((reg_index = base.find(REG_TOKEN)) != std::string::npos) {
651 base.replace(reg_index, ConstexprStrLen(REG_TOKEN), reg_string);
652 }
653
654 if (str.size() > 0) {
655 str += "\n";
656 }
657 str += base;
658 }
659 // Add a newline at the end.
660 str += "\n";
661 return str;
662 }
663
664 template <typename Reg1, typename Reg2>
665 std::string RepeatTemplatedRegisters(void (Ass::*f)(Reg1, Reg2),
666 const std::vector<Reg1*> reg1_registers,
667 const std::vector<Reg2*> reg2_registers,
668 std::string (AssemblerTest::*GetName1)(const Reg1&),
669 std::string (AssemblerTest::*GetName2)(const Reg2&),
670 std::string fmt) {
Andreas Gampe849cc5e2014-11-18 13:46:46 -0800671 WarnOnCombinations(reg1_registers.size() * reg2_registers.size());
672
Andreas Gampe851df202014-11-12 14:05:46 -0800673 std::string str;
674 for (auto reg1 : reg1_registers) {
675 for (auto reg2 : reg2_registers) {
676 (assembler_.get()->*f)(*reg1, *reg2);
677 std::string base = fmt;
678
679 std::string reg1_string = (this->*GetName1)(*reg1);
680 size_t reg1_index;
681 while ((reg1_index = base.find(REG1_TOKEN)) != std::string::npos) {
682 base.replace(reg1_index, ConstexprStrLen(REG1_TOKEN), reg1_string);
683 }
684
685 std::string reg2_string = (this->*GetName2)(*reg2);
686 size_t reg2_index;
687 while ((reg2_index = base.find(REG2_TOKEN)) != std::string::npos) {
688 base.replace(reg2_index, ConstexprStrLen(REG2_TOKEN), reg2_string);
689 }
690
691 if (str.size() > 0) {
692 str += "\n";
693 }
694 str += base;
695 }
696 }
697 // Add a newline at the end.
698 str += "\n";
699 return str;
700 }
701
Chris Larsen51417632015-10-02 13:24:25 -0700702 template <typename Reg1, typename Reg2>
703 std::string RepeatTemplatedRegistersNoDupes(void (Ass::*f)(Reg1, Reg2),
704 const std::vector<Reg1*> reg1_registers,
705 const std::vector<Reg2*> reg2_registers,
706 std::string (AssemblerTest::*GetName1)(const Reg1&),
707 std::string (AssemblerTest::*GetName2)(const Reg2&),
708 std::string fmt) {
709 WarnOnCombinations(reg1_registers.size() * reg2_registers.size());
710
711 std::string str;
712 for (auto reg1 : reg1_registers) {
713 for (auto reg2 : reg2_registers) {
714 if (reg1 == reg2) continue;
715 (assembler_.get()->*f)(*reg1, *reg2);
716 std::string base = fmt;
717
718 std::string reg1_string = (this->*GetName1)(*reg1);
719 size_t reg1_index;
720 while ((reg1_index = base.find(REG1_TOKEN)) != std::string::npos) {
721 base.replace(reg1_index, ConstexprStrLen(REG1_TOKEN), reg1_string);
722 }
723
724 std::string reg2_string = (this->*GetName2)(*reg2);
725 size_t reg2_index;
726 while ((reg2_index = base.find(REG2_TOKEN)) != std::string::npos) {
727 base.replace(reg2_index, ConstexprStrLen(REG2_TOKEN), reg2_string);
728 }
729
730 if (str.size() > 0) {
731 str += "\n";
732 }
733 str += base;
734 }
735 }
736 // Add a newline at the end.
737 str += "\n";
738 return str;
739 }
740
Chris Larsendbce0d72015-09-17 13:34:00 -0700741 template <typename Reg1, typename Reg2, typename Reg3>
742 std::string RepeatTemplatedRegisters(void (Ass::*f)(Reg1, Reg2, Reg3),
743 const std::vector<Reg1*> reg1_registers,
744 const std::vector<Reg2*> reg2_registers,
745 const std::vector<Reg3*> reg3_registers,
746 std::string (AssemblerTest::*GetName1)(const Reg1&),
747 std::string (AssemblerTest::*GetName2)(const Reg2&),
748 std::string (AssemblerTest::*GetName3)(const Reg3&),
749 std::string fmt) {
750 std::string str;
751 for (auto reg1 : reg1_registers) {
752 for (auto reg2 : reg2_registers) {
753 for (auto reg3 : reg3_registers) {
754 (assembler_.get()->*f)(*reg1, *reg2, *reg3);
755 std::string base = fmt;
756
757 std::string reg1_string = (this->*GetName1)(*reg1);
758 size_t reg1_index;
759 while ((reg1_index = base.find(REG1_TOKEN)) != std::string::npos) {
760 base.replace(reg1_index, ConstexprStrLen(REG1_TOKEN), reg1_string);
761 }
762
763 std::string reg2_string = (this->*GetName2)(*reg2);
764 size_t reg2_index;
765 while ((reg2_index = base.find(REG2_TOKEN)) != std::string::npos) {
766 base.replace(reg2_index, ConstexprStrLen(REG2_TOKEN), reg2_string);
767 }
768
769 std::string reg3_string = (this->*GetName3)(*reg3);
770 size_t reg3_index;
771 while ((reg3_index = base.find(REG3_TOKEN)) != std::string::npos) {
772 base.replace(reg3_index, ConstexprStrLen(REG3_TOKEN), reg3_string);
773 }
774
775 if (str.size() > 0) {
776 str += "\n";
777 }
778 str += base;
779 }
780 }
781 }
782 // Add a newline at the end.
783 str += "\n";
784 return str;
785 }
786
Mark Mendellfb8d2792015-03-31 22:16:59 -0400787 template <typename Reg1, typename Reg2>
788 std::string RepeatTemplatedRegistersImm(void (Ass::*f)(Reg1, Reg2, const Imm&),
789 const std::vector<Reg1*> reg1_registers,
790 const std::vector<Reg2*> reg2_registers,
791 std::string (AssemblerTest::*GetName1)(const Reg1&),
792 std::string (AssemblerTest::*GetName2)(const Reg2&),
793 size_t imm_bytes,
794 std::string fmt) {
795 std::vector<int64_t> imms = CreateImmediateValues(imm_bytes);
796 WarnOnCombinations(reg1_registers.size() * reg2_registers.size() * imms.size());
797
798 std::string str;
799 for (auto reg1 : reg1_registers) {
800 for (auto reg2 : reg2_registers) {
801 for (int64_t imm : imms) {
802 Imm new_imm = CreateImmediate(imm);
803 (assembler_.get()->*f)(*reg1, *reg2, new_imm);
804 std::string base = fmt;
805
806 std::string reg1_string = (this->*GetName1)(*reg1);
807 size_t reg1_index;
808 while ((reg1_index = base.find(REG1_TOKEN)) != std::string::npos) {
809 base.replace(reg1_index, ConstexprStrLen(REG1_TOKEN), reg1_string);
810 }
811
812 std::string reg2_string = (this->*GetName2)(*reg2);
813 size_t reg2_index;
814 while ((reg2_index = base.find(REG2_TOKEN)) != std::string::npos) {
815 base.replace(reg2_index, ConstexprStrLen(REG2_TOKEN), reg2_string);
816 }
817
818 size_t imm_index = base.find(IMM_TOKEN);
819 if (imm_index != std::string::npos) {
820 std::ostringstream sreg;
821 sreg << imm;
822 std::string imm_string = sreg.str();
823 base.replace(imm_index, ConstexprStrLen(IMM_TOKEN), imm_string);
824 }
825
826 if (str.size() > 0) {
827 str += "\n";
828 }
829 str += base;
830 }
831 }
832 }
833 // Add a newline at the end.
834 str += "\n";
835 return str;
836 }
837
Andreas Gampe851df202014-11-12 14:05:46 -0800838 template <RegisterView kRegView>
839 std::string GetRegName(const Reg& reg) {
840 std::ostringstream sreg;
841 switch (kRegView) {
842 case RegisterView::kUsePrimaryName:
843 sreg << reg;
844 break;
845
846 case RegisterView::kUseSecondaryName:
847 sreg << GetSecondaryRegisterName(reg);
848 break;
Chao-ying Fud23840d2015-04-07 16:03:04 -0700849
850 case RegisterView::kUseTertiaryName:
851 sreg << GetTertiaryRegisterName(reg);
852 break;
853
854 case RegisterView::kUseQuaternaryName:
855 sreg << GetQuaternaryRegisterName(reg);
856 break;
Andreas Gampe851df202014-11-12 14:05:46 -0800857 }
858 return sreg.str();
859 }
860
861 std::string GetFPRegName(const FPReg& reg) {
862 std::ostringstream sreg;
863 sreg << reg;
864 return sreg.str();
865 }
866
Andreas Gampe849cc5e2014-11-18 13:46:46 -0800867 // If the assembly file needs a header, return it in a sub-class.
868 virtual const char* GetAssemblyHeader() {
869 return nullptr;
870 }
871
872 void WarnOnCombinations(size_t count) {
873 if (count > kWarnManyCombinationsThreshold) {
874 GTEST_LOG_(WARNING) << "Many combinations (" << count << "), test generation might be slow.";
875 }
876 }
877
878 static constexpr const char* REG_TOKEN = "{reg}";
879 static constexpr const char* REG1_TOKEN = "{reg1}";
880 static constexpr const char* REG2_TOKEN = "{reg2}";
Chris Larsendbce0d72015-09-17 13:34:00 -0700881 static constexpr const char* REG3_TOKEN = "{reg3}";
Andreas Gampe849cc5e2014-11-18 13:46:46 -0800882 static constexpr const char* IMM_TOKEN = "{imm}";
883
884 private:
Andreas Gampe851df202014-11-12 14:05:46 -0800885 template <RegisterView kRegView>
886 std::string RepeatRegisterImm(void (Ass::*f)(Reg, const Imm&), size_t imm_bytes,
887 std::string fmt) {
888 const std::vector<Reg*> registers = GetRegisters();
889 std::string str;
890 std::vector<int64_t> imms = CreateImmediateValues(imm_bytes);
Andreas Gampe849cc5e2014-11-18 13:46:46 -0800891
892 WarnOnCombinations(registers.size() * imms.size());
893
Andreas Gampe851df202014-11-12 14:05:46 -0800894 for (auto reg : registers) {
895 for (int64_t imm : imms) {
896 Imm new_imm = CreateImmediate(imm);
897 (assembler_.get()->*f)(*reg, new_imm);
898 std::string base = fmt;
899
900 std::string reg_string = GetRegName<kRegView>(*reg);
901 size_t reg_index;
902 while ((reg_index = base.find(REG_TOKEN)) != std::string::npos) {
903 base.replace(reg_index, ConstexprStrLen(REG_TOKEN), reg_string);
904 }
905
906 size_t imm_index = base.find(IMM_TOKEN);
907 if (imm_index != std::string::npos) {
908 std::ostringstream sreg;
909 sreg << imm;
910 std::string imm_string = sreg.str();
911 base.replace(imm_index, ConstexprStrLen(IMM_TOKEN), imm_string);
912 }
913
914 if (str.size() > 0) {
915 str += "\n";
916 }
917 str += base;
918 }
919 }
920 // Add a newline at the end.
921 str += "\n";
922 return str;
923 }
924
Alexey Frunzea0e87b02015-09-24 22:57:20 -0700925 // Override this to pad the code with NOPs to a certain size if needed.
926 virtual void Pad(std::vector<uint8_t>& data ATTRIBUTE_UNUSED) {
927 }
928
Andreas Gampe03b9ee42015-04-24 21:41:45 -0700929 void DriverWrapper(std::string assembly_text, std::string test_name) {
Vladimir Markocf93a5c2015-06-16 11:33:24 +0000930 assembler_->FinalizeCode();
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700931 size_t cs = assembler_->CodeSize();
Ian Rogers700a4022014-05-19 16:49:03 -0700932 std::unique_ptr<std::vector<uint8_t>> data(new std::vector<uint8_t>(cs));
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700933 MemoryRegion code(&(*data)[0], data->size());
934 assembler_->FinalizeInstructions(code);
Alexey Frunzea0e87b02015-09-24 22:57:20 -0700935 Pad(*data);
Andreas Gampe03b9ee42015-04-24 21:41:45 -0700936 test_helper_->Driver(*data, assembly_text, test_name);
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700937 }
938
Andreas Gampe849cc5e2014-11-18 13:46:46 -0800939 static constexpr size_t kWarnManyCombinationsThreshold = 500;
Andreas Gampe851df202014-11-12 14:05:46 -0800940
Vladimir Marko93205e32016-04-13 11:59:46 +0100941 ArenaPool pool_;
942 std::unique_ptr<ArenaAllocator> arena_;
Ian Rogers700a4022014-05-19 16:49:03 -0700943 std::unique_ptr<Ass> assembler_;
Andreas Gampe03b9ee42015-04-24 21:41:45 -0700944 std::unique_ptr<AssemblerTestInfrastructure> test_helper_;
Andreas Gampe7747c8d2014-08-06 14:53:03 -0700945
Andreas Gampe851df202014-11-12 14:05:46 -0800946 DISALLOW_COPY_AND_ASSIGN(AssemblerTest);
Andreas Gampe5a4fa822014-03-31 16:50:12 -0700947};
948
949} // namespace art
950
951#endif // ART_COMPILER_UTILS_ASSEMBLER_TEST_H_