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Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +00001/*
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
Nicolas Geoffray360231a2014-10-08 21:07:48 +010017#include <functional>
18
Ian Rogersd582fa42014-11-05 23:46:43 -080019#include "arch/instruction_set.h"
Alexandre Rames92730742014-10-01 12:55:56 +010020#include "base/macros.h"
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000021#include "builder.h"
Nicolas Geoffray8a16d972014-09-11 10:30:02 +010022#include "code_generator_arm.h"
Alexandre Rames5319def2014-10-23 10:03:10 +010023#include "code_generator_arm64.h"
Nicolas Geoffray8a16d972014-09-11 10:30:02 +010024#include "code_generator_x86.h"
25#include "code_generator_x86_64.h"
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000026#include "common_compiler_test.h"
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +000027#include "dex_file.h"
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000028#include "dex_instruction.h"
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000029#include "nodes.h"
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +000030#include "optimizing_unit_test.h"
Nicolas Geoffray360231a2014-10-08 21:07:48 +010031#include "prepare_for_register_allocation.h"
32#include "register_allocator.h"
33#include "ssa_liveness_analysis.h"
Roland Levillain55dcfb52014-10-24 18:09:09 +010034#include "utils.h"
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000035
36#include "gtest/gtest.h"
37
38namespace art {
39
Nicolas Geoffray787c3072014-03-17 10:20:19 +000040class InternalCodeAllocator : public CodeAllocator {
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000041 public:
Ian Rogersd582fa42014-11-05 23:46:43 -080042 InternalCodeAllocator() : size_(0) { }
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000043
44 virtual uint8_t* Allocate(size_t size) {
Nicolas Geoffray787c3072014-03-17 10:20:19 +000045 size_ = size;
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000046 memory_.reset(new uint8_t[size]);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000047 return memory_.get();
48 }
49
Nicolas Geoffray787c3072014-03-17 10:20:19 +000050 size_t GetSize() const { return size_; }
51 uint8_t* GetMemory() const { return memory_.get(); }
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000052
53 private:
Nicolas Geoffray787c3072014-03-17 10:20:19 +000054 size_t size_;
Ian Rogers700a4022014-05-19 16:49:03 -070055 std::unique_ptr<uint8_t[]> memory_;
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000056
Nicolas Geoffray787c3072014-03-17 10:20:19 +000057 DISALLOW_COPY_AND_ASSIGN(InternalCodeAllocator);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +000058};
59
Roland Levillain55dcfb52014-10-24 18:09:09 +010060template <typename Expected>
Nicolas Geoffray8d486732014-07-16 16:23:40 +010061static void Run(const InternalCodeAllocator& allocator,
62 const CodeGenerator& codegen,
63 bool has_result,
Roland Levillain55dcfb52014-10-24 18:09:09 +010064 Expected expected) {
65 typedef Expected (*fptr)();
Nicolas Geoffray9cf35522014-06-09 18:40:10 +010066 CommonCompilerTest::MakeExecutable(allocator.GetMemory(), allocator.GetSize());
Dave Allison20dfc792014-06-16 20:44:29 -070067 fptr f = reinterpret_cast<fptr>(allocator.GetMemory());
Nicolas Geoffray8d486732014-07-16 16:23:40 +010068 if (codegen.GetInstructionSet() == kThumb2) {
69 // For thumb we need the bottom bit set.
70 f = reinterpret_cast<fptr>(reinterpret_cast<uintptr_t>(f) + 1);
71 }
Roland Levillain55dcfb52014-10-24 18:09:09 +010072 Expected result = f();
Nicolas Geoffray9cf35522014-06-09 18:40:10 +010073 if (has_result) {
Nicolas Geoffray360231a2014-10-08 21:07:48 +010074 ASSERT_EQ(result, expected);
Nicolas Geoffray9cf35522014-06-09 18:40:10 +010075 }
76}
77
Roland Levillain55dcfb52014-10-24 18:09:09 +010078template <typename Expected>
79static void RunCodeBaseline(HGraph* graph, bool has_result, Expected expected) {
Nicolas Geoffray787c3072014-03-17 10:20:19 +000080 InternalCodeAllocator allocator;
Nicolas Geoffray9cf35522014-06-09 18:40:10 +010081
Nicolas Geoffray8a16d972014-09-11 10:30:02 +010082 x86::CodeGeneratorX86 codegenX86(graph);
Nicolas Geoffray73e80c32014-07-22 17:47:56 +010083 // We avoid doing a stack overflow check that requires the runtime being setup,
84 // by making sure the compiler knows the methods we are running are leaf methods.
Nicolas Geoffray8a16d972014-09-11 10:30:02 +010085 codegenX86.CompileBaseline(&allocator, true);
86 if (kRuntimeISA == kX86) {
87 Run(allocator, codegenX86, has_result, expected);
88 }
Nicolas Geoffray9cf35522014-06-09 18:40:10 +010089
Nicolas Geoffray8a16d972014-09-11 10:30:02 +010090 arm::CodeGeneratorARM codegenARM(graph);
91 codegenARM.CompileBaseline(&allocator, true);
92 if (kRuntimeISA == kArm || kRuntimeISA == kThumb2) {
93 Run(allocator, codegenARM, has_result, expected);
94 }
Nicolas Geoffray9cf35522014-06-09 18:40:10 +010095
Nicolas Geoffray8a16d972014-09-11 10:30:02 +010096 x86_64::CodeGeneratorX86_64 codegenX86_64(graph);
97 codegenX86_64.CompileBaseline(&allocator, true);
98 if (kRuntimeISA == kX86_64) {
99 Run(allocator, codegenX86_64, has_result, expected);
100 }
Alexandre Rames5319def2014-10-23 10:03:10 +0100101
102 arm64::CodeGeneratorARM64 codegenARM64(graph);
103 codegenARM64.CompileBaseline(&allocator, true);
104 if (kRuntimeISA == kArm64) {
105 Run(allocator, codegenARM64, has_result, expected);
106 }
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000107}
108
Roland Levillain55dcfb52014-10-24 18:09:09 +0100109template <typename Expected>
Nicolas Geoffray360231a2014-10-08 21:07:48 +0100110static void RunCodeOptimized(CodeGenerator* codegen,
111 HGraph* graph,
112 std::function<void(HGraph*)> hook_before_codegen,
113 bool has_result,
Roland Levillain55dcfb52014-10-24 18:09:09 +0100114 Expected expected) {
Nicolas Geoffray360231a2014-10-08 21:07:48 +0100115 SsaLivenessAnalysis liveness(*graph, codegen);
116 liveness.Analyze();
117
118 RegisterAllocator register_allocator(graph->GetArena(), codegen, liveness);
119 register_allocator.AllocateRegisters();
120 hook_before_codegen(graph);
121
122 InternalCodeAllocator allocator;
123 codegen->CompileOptimized(&allocator);
124 Run(allocator, *codegen, has_result, expected);
125}
126
Roland Levillain55dcfb52014-10-24 18:09:09 +0100127template <typename Expected>
Nicolas Geoffray360231a2014-10-08 21:07:48 +0100128static void RunCodeOptimized(HGraph* graph,
129 std::function<void(HGraph*)> hook_before_codegen,
130 bool has_result,
Roland Levillain55dcfb52014-10-24 18:09:09 +0100131 Expected expected) {
Nicolas Geoffray360231a2014-10-08 21:07:48 +0100132 if (kRuntimeISA == kX86) {
133 x86::CodeGeneratorX86 codegenX86(graph);
134 RunCodeOptimized(&codegenX86, graph, hook_before_codegen, has_result, expected);
135 } else if (kRuntimeISA == kArm || kRuntimeISA == kThumb2) {
136 arm::CodeGeneratorARM codegenARM(graph);
137 RunCodeOptimized(&codegenARM, graph, hook_before_codegen, has_result, expected);
138 } else if (kRuntimeISA == kX86_64) {
139 x86_64::CodeGeneratorX86_64 codegenX86_64(graph);
140 RunCodeOptimized(&codegenX86_64, graph, hook_before_codegen, has_result, expected);
141 }
142}
143
144static void TestCode(const uint16_t* data, bool has_result = false, int32_t expected = 0) {
145 ArenaPool pool;
146 ArenaAllocator arena(&pool);
147 HGraphBuilder builder(&arena);
148 const DexFile::CodeItem* item = reinterpret_cast<const DexFile::CodeItem*>(data);
149 HGraph* graph = builder.BuildGraph(*item);
Nicolas Geoffray360231a2014-10-08 21:07:48 +0100150 ASSERT_NE(graph, nullptr);
Calin Juravle039b6e22014-10-23 12:32:11 +0100151 // Remove suspend checks, they cannot be executed in this context.
Calin Juravle48dee042014-10-22 15:54:12 +0100152 RemoveSuspendChecks(graph);
Nicolas Geoffray360231a2014-10-08 21:07:48 +0100153 RunCodeBaseline(graph, has_result, expected);
154}
155
Roland Levillain55dcfb52014-10-24 18:09:09 +0100156static void TestCodeLong(const uint16_t* data, bool has_result, int64_t expected) {
157 ArenaPool pool;
158 ArenaAllocator arena(&pool);
159 HGraphBuilder builder(&arena, Primitive::kPrimLong);
160 const DexFile::CodeItem* item = reinterpret_cast<const DexFile::CodeItem*>(data);
161 HGraph* graph = builder.BuildGraph(*item);
162 ASSERT_NE(graph, nullptr);
163 // Remove suspend checks, they cannot be executed in this context.
164 RemoveSuspendChecks(graph);
165 RunCodeBaseline(graph, has_result, expected);
166}
167
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000168TEST(CodegenTest, ReturnVoid) {
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000169 const uint16_t data[] = ZERO_REGISTER_CODE_ITEM(Instruction::RETURN_VOID);
170 TestCode(data);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000171}
172
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +0000173TEST(CodegenTest, CFG1) {
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000174 const uint16_t data[] = ZERO_REGISTER_CODE_ITEM(
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000175 Instruction::GOTO | 0x100,
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000176 Instruction::RETURN_VOID);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000177
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000178 TestCode(data);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000179}
180
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +0000181TEST(CodegenTest, CFG2) {
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000182 const uint16_t data[] = ZERO_REGISTER_CODE_ITEM(
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000183 Instruction::GOTO | 0x100,
184 Instruction::GOTO | 0x100,
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000185 Instruction::RETURN_VOID);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000186
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000187 TestCode(data);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000188}
189
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +0000190TEST(CodegenTest, CFG3) {
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000191 const uint16_t data1[] = ZERO_REGISTER_CODE_ITEM(
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000192 Instruction::GOTO | 0x200,
193 Instruction::RETURN_VOID,
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000194 Instruction::GOTO | 0xFF00);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000195
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000196 TestCode(data1);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000197
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000198 const uint16_t data2[] = ZERO_REGISTER_CODE_ITEM(
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000199 Instruction::GOTO_16, 3,
200 Instruction::RETURN_VOID,
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000201 Instruction::GOTO_16, 0xFFFF);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000202
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000203 TestCode(data2);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000204
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000205 const uint16_t data3[] = ZERO_REGISTER_CODE_ITEM(
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000206 Instruction::GOTO_32, 4, 0,
207 Instruction::RETURN_VOID,
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000208 Instruction::GOTO_32, 0xFFFF, 0xFFFF);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000209
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000210 TestCode(data3);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000211}
212
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +0000213TEST(CodegenTest, CFG4) {
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000214 const uint16_t data[] = ZERO_REGISTER_CODE_ITEM(
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000215 Instruction::RETURN_VOID,
216 Instruction::GOTO | 0x100,
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000217 Instruction::GOTO | 0xFE00);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000218
Nicolas Geoffray3ff386a2014-03-04 14:46:47 +0000219 TestCode(data);
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000220}
221
Nicolas Geoffraybab4ed72014-03-11 17:53:17 +0000222TEST(CodegenTest, CFG5) {
223 const uint16_t data[] = ONE_REGISTER_CODE_ITEM(
224 Instruction::CONST_4 | 0 | 0,
225 Instruction::IF_EQ, 3,
226 Instruction::GOTO | 0x100,
227 Instruction::RETURN_VOID);
228
229 TestCode(data);
230}
231
232TEST(CodegenTest, IntConstant) {
233 const uint16_t data[] = ONE_REGISTER_CODE_ITEM(
234 Instruction::CONST_4 | 0 | 0,
235 Instruction::RETURN_VOID);
236
237 TestCode(data);
238}
239
240TEST(CodegenTest, Return1) {
241 const uint16_t data[] = ONE_REGISTER_CODE_ITEM(
242 Instruction::CONST_4 | 0 | 0,
243 Instruction::RETURN | 0);
244
245 TestCode(data, true, 0);
246}
247
248TEST(CodegenTest, Return2) {
249 const uint16_t data[] = TWO_REGISTERS_CODE_ITEM(
250 Instruction::CONST_4 | 0 | 0,
251 Instruction::CONST_4 | 0 | 1 << 8,
252 Instruction::RETURN | 1 << 8);
253
254 TestCode(data, true, 0);
255}
256
257TEST(CodegenTest, Return3) {
258 const uint16_t data[] = TWO_REGISTERS_CODE_ITEM(
259 Instruction::CONST_4 | 0 | 0,
260 Instruction::CONST_4 | 1 << 8 | 1 << 12,
261 Instruction::RETURN | 1 << 8);
262
263 TestCode(data, true, 1);
264}
265
266TEST(CodegenTest, ReturnIf1) {
267 const uint16_t data[] = TWO_REGISTERS_CODE_ITEM(
268 Instruction::CONST_4 | 0 | 0,
269 Instruction::CONST_4 | 1 << 8 | 1 << 12,
270 Instruction::IF_EQ, 3,
271 Instruction::RETURN | 0 << 8,
272 Instruction::RETURN | 1 << 8);
273
274 TestCode(data, true, 1);
275}
276
277TEST(CodegenTest, ReturnIf2) {
278 const uint16_t data[] = TWO_REGISTERS_CODE_ITEM(
279 Instruction::CONST_4 | 0 | 0,
280 Instruction::CONST_4 | 1 << 8 | 1 << 12,
281 Instruction::IF_EQ | 0 << 4 | 1 << 8, 3,
282 Instruction::RETURN | 0 << 8,
283 Instruction::RETURN | 1 << 8);
284
285 TestCode(data, true, 0);
286}
287
Roland Levillain1cc5f2512014-10-22 18:06:21 +0100288// Exercise bit-wise (one's complement) not-int instruction.
289#define NOT_INT_TEST(TEST_NAME, INPUT, EXPECTED_OUTPUT) \
290TEST(CodegenTest, TEST_NAME) { \
291 const int32_t input = INPUT; \
Roland Levillain55dcfb52014-10-24 18:09:09 +0100292 const uint16_t input_lo = Low16Bits(input); \
293 const uint16_t input_hi = High16Bits(input); \
Roland Levillain1cc5f2512014-10-22 18:06:21 +0100294 const uint16_t data[] = TWO_REGISTERS_CODE_ITEM( \
295 Instruction::CONST | 0 << 8, input_lo, input_hi, \
296 Instruction::NOT_INT | 1 << 8 | 0 << 12 , \
297 Instruction::RETURN | 1 << 8); \
298 \
299 TestCode(data, true, EXPECTED_OUTPUT); \
300}
301
302NOT_INT_TEST(ReturnNotIntMinus2, -2, 1)
303NOT_INT_TEST(ReturnNotIntMinus1, -1, 0)
304NOT_INT_TEST(ReturnNotInt0, 0, -1)
305NOT_INT_TEST(ReturnNotInt1, 1, -2)
Roland Levillain55dcfb52014-10-24 18:09:09 +0100306NOT_INT_TEST(ReturnNotIntINT32_MIN, -2147483648, 2147483647) // (2^31) - 1
307NOT_INT_TEST(ReturnNotIntINT32_MINPlus1, -2147483647, 2147483646) // (2^31) - 2
308NOT_INT_TEST(ReturnNotIntINT32_MAXMinus1, 2147483646, -2147483647) // -(2^31) - 1
309NOT_INT_TEST(ReturnNotIntINT32_MAX, 2147483647, -2147483648) // -(2^31)
Roland Levillain1cc5f2512014-10-22 18:06:21 +0100310
311#undef NOT_INT_TEST
312
Roland Levillain55dcfb52014-10-24 18:09:09 +0100313// Exercise bit-wise (one's complement) not-long instruction.
314#define NOT_LONG_TEST(TEST_NAME, INPUT, EXPECTED_OUTPUT) \
315TEST(CodegenTest, TEST_NAME) { \
316 const int64_t input = INPUT; \
317 const uint16_t word0 = Low16Bits(Low32Bits(input)); /* LSW. */ \
318 const uint16_t word1 = High16Bits(Low32Bits(input)); \
319 const uint16_t word2 = Low16Bits(High32Bits(input)); \
320 const uint16_t word3 = High16Bits(High32Bits(input)); /* MSW. */ \
321 const uint16_t data[] = FOUR_REGISTERS_CODE_ITEM( \
322 Instruction::CONST_WIDE | 0 << 8, word0, word1, word2, word3, \
323 Instruction::NOT_LONG | 2 << 8 | 0 << 12, \
324 Instruction::RETURN_WIDE | 2 << 8); \
325 \
326 TestCodeLong(data, true, EXPECTED_OUTPUT); \
327}
328
329NOT_LONG_TEST(ReturnNotLongMinus2, INT64_C(-2), INT64_C(1))
330NOT_LONG_TEST(ReturnNotLongMinus1, INT64_C(-1), INT64_C(0))
331NOT_LONG_TEST(ReturnNotLong0, INT64_C(0), INT64_C(-1))
332NOT_LONG_TEST(ReturnNotLong1, INT64_C(1), INT64_C(-2))
333
334NOT_LONG_TEST(ReturnNotLongINT32_MIN,
335 INT64_C(-2147483648),
336 INT64_C(2147483647)) // (2^31) - 1
337NOT_LONG_TEST(ReturnNotLongINT32_MINPlus1,
338 INT64_C(-2147483647),
339 INT64_C(2147483646)) // (2^31) - 2
340NOT_LONG_TEST(ReturnNotLongINT32_MAXMinus1,
341 INT64_C(2147483646),
342 INT64_C(-2147483647)) // -(2^31) - 1
343NOT_LONG_TEST(ReturnNotLongINT32_MAX,
344 INT64_C(2147483647),
345 INT64_C(-2147483648)) // -(2^31)
346
347// Note that the C++ compiler won't accept
348// INT64_C(-9223372036854775808) (that is, INT64_MIN) as a valid
349// int64_t literal, so we use INT64_C(-9223372036854775807)-1 instead.
350NOT_LONG_TEST(ReturnNotINT64_MIN,
351 INT64_C(-9223372036854775807)-1,
352 INT64_C(9223372036854775807)); // (2^63) - 1
353NOT_LONG_TEST(ReturnNotINT64_MINPlus1,
354 INT64_C(-9223372036854775807),
355 INT64_C(9223372036854775806)); // (2^63) - 2
356NOT_LONG_TEST(ReturnNotLongINT64_MAXMinus1,
357 INT64_C(9223372036854775806),
358 INT64_C(-9223372036854775807)); // -(2^63) - 1
359NOT_LONG_TEST(ReturnNotLongINT64_MAX,
360 INT64_C(9223372036854775807),
361 INT64_C(-9223372036854775807)-1); // -(2^63)
362
363#undef NOT_LONG_TEST
364
Roland Levillain946e1432014-11-11 17:35:19 +0000365#if defined(__aarch64__)
366TEST(CodegenTest, DISABLED_IntToLongOfLongToInt) {
367#else
368TEST(CodegenTest, IntToLongOfLongToInt) {
369#endif
370 const int64_t input = INT64_C(4294967296); // 2^32
371 const uint16_t word0 = Low16Bits(Low32Bits(input)); // LSW.
372 const uint16_t word1 = High16Bits(Low32Bits(input));
373 const uint16_t word2 = Low16Bits(High32Bits(input));
374 const uint16_t word3 = High16Bits(High32Bits(input)); // MSW.
375 const uint16_t data[] = FIVE_REGISTERS_CODE_ITEM(
376 Instruction::CONST_WIDE | 0 << 8, word0, word1, word2, word3,
377 Instruction::CONST_WIDE | 2 << 8, 1, 0, 0, 0,
378 Instruction::ADD_LONG | 0, 0 << 8 | 2, // v0 <- 2^32 + 1
379 Instruction::LONG_TO_INT | 4 << 8 | 0 << 12,
380 Instruction::INT_TO_LONG | 2 << 8 | 4 << 12,
381 Instruction::RETURN_WIDE | 2 << 8);
382
383 TestCodeLong(data, true, 1);
384}
385
Nicolas Geoffrayd8ee7372014-03-28 15:43:40 +0000386TEST(CodegenTest, ReturnAdd1) {
387 const uint16_t data[] = TWO_REGISTERS_CODE_ITEM(
388 Instruction::CONST_4 | 3 << 12 | 0,
389 Instruction::CONST_4 | 4 << 12 | 1 << 8,
390 Instruction::ADD_INT, 1 << 8 | 0,
391 Instruction::RETURN);
392
393 TestCode(data, true, 7);
394}
395
396TEST(CodegenTest, ReturnAdd2) {
397 const uint16_t data[] = TWO_REGISTERS_CODE_ITEM(
398 Instruction::CONST_4 | 3 << 12 | 0,
399 Instruction::CONST_4 | 4 << 12 | 1 << 8,
400 Instruction::ADD_INT_2ADDR | 1 << 12,
401 Instruction::RETURN);
402
403 TestCode(data, true, 7);
404}
405
406TEST(CodegenTest, ReturnAdd3) {
407 const uint16_t data[] = ONE_REGISTER_CODE_ITEM(
408 Instruction::CONST_4 | 4 << 12 | 0 << 8,
409 Instruction::ADD_INT_LIT8, 3 << 8 | 0,
410 Instruction::RETURN);
411
412 TestCode(data, true, 7);
413}
414
415TEST(CodegenTest, ReturnAdd4) {
416 const uint16_t data[] = ONE_REGISTER_CODE_ITEM(
417 Instruction::CONST_4 | 4 << 12 | 0 << 8,
418 Instruction::ADD_INT_LIT16, 3,
419 Instruction::RETURN);
420
421 TestCode(data, true, 7);
422}
423
Nicolas Geoffray360231a2014-10-08 21:07:48 +0100424TEST(CodegenTest, NonMaterializedCondition) {
425 ArenaPool pool;
426 ArenaAllocator allocator(&pool);
427
428 HGraph* graph = new (&allocator) HGraph(&allocator);
429 HBasicBlock* entry = new (&allocator) HBasicBlock(graph);
430 graph->AddBlock(entry);
431 graph->SetEntryBlock(entry);
432 entry->AddInstruction(new (&allocator) HGoto());
433
434 HBasicBlock* first_block = new (&allocator) HBasicBlock(graph);
435 graph->AddBlock(first_block);
436 entry->AddSuccessor(first_block);
437 HIntConstant* constant0 = new (&allocator) HIntConstant(0);
438 entry->AddInstruction(constant0);
439 HIntConstant* constant1 = new (&allocator) HIntConstant(1);
440 entry->AddInstruction(constant1);
441 HEqual* equal = new (&allocator) HEqual(constant0, constant0);
442 first_block->AddInstruction(equal);
443 first_block->AddInstruction(new (&allocator) HIf(equal));
444
445 HBasicBlock* then = new (&allocator) HBasicBlock(graph);
446 HBasicBlock* else_ = new (&allocator) HBasicBlock(graph);
447 HBasicBlock* exit = new (&allocator) HBasicBlock(graph);
448
449 graph->AddBlock(then);
450 graph->AddBlock(else_);
451 graph->AddBlock(exit);
452 first_block->AddSuccessor(then);
453 first_block->AddSuccessor(else_);
454 then->AddSuccessor(exit);
455 else_->AddSuccessor(exit);
456
457 exit->AddInstruction(new (&allocator) HExit());
458 then->AddInstruction(new (&allocator) HReturn(constant0));
459 else_->AddInstruction(new (&allocator) HReturn(constant1));
460
461 ASSERT_TRUE(equal->NeedsMaterialization());
462 graph->BuildDominatorTree();
463 PrepareForRegisterAllocation(graph).Run();
464 ASSERT_FALSE(equal->NeedsMaterialization());
465
Andreas Gampe277ccbd2014-11-03 21:36:10 -0800466 auto hook_before_codegen = [](HGraph* graph_in) {
467 HBasicBlock* block = graph_in->GetEntryBlock()->GetSuccessors().Get(0);
468 HParallelMove* move = new (graph_in->GetArena()) HParallelMove(graph_in->GetArena());
Nicolas Geoffray360231a2014-10-08 21:07:48 +0100469 block->InsertInstructionBefore(move, block->GetLastInstruction());
470 };
471
472 RunCodeOptimized(graph, hook_before_codegen, true, 0);
473}
474
Calin Juravle34bacdf2014-10-07 20:23:36 +0100475#define MUL_TEST(TYPE, TEST_NAME) \
476 TEST(CodegenTest, Return ## TEST_NAME) { \
477 const uint16_t data[] = TWO_REGISTERS_CODE_ITEM( \
478 Instruction::CONST_4 | 3 << 12 | 0, \
479 Instruction::CONST_4 | 4 << 12 | 1 << 8, \
480 Instruction::MUL_ ## TYPE, 1 << 8 | 0, \
481 Instruction::RETURN); \
482 \
483 TestCode(data, true, 12); \
484 } \
485 \
486 TEST(CodegenTest, Return ## TEST_NAME ## 2addr) { \
487 const uint16_t data[] = TWO_REGISTERS_CODE_ITEM( \
488 Instruction::CONST_4 | 3 << 12 | 0, \
489 Instruction::CONST_4 | 4 << 12 | 1 << 8, \
490 Instruction::MUL_ ## TYPE ## _2ADDR | 1 << 12, \
491 Instruction::RETURN); \
492 \
493 TestCode(data, true, 12); \
494 }
495
Alexandre Rames5319def2014-10-23 10:03:10 +0100496#if !defined(__aarch64__)
Calin Juravle34bacdf2014-10-07 20:23:36 +0100497MUL_TEST(INT, MulInt);
498MUL_TEST(LONG, MulLong);
Alexandre Rames5319def2014-10-23 10:03:10 +0100499#endif
Calin Juravle34bacdf2014-10-07 20:23:36 +0100500
501TEST(CodegenTest, ReturnMulIntLit8) {
502 const uint16_t data[] = ONE_REGISTER_CODE_ITEM(
503 Instruction::CONST_4 | 4 << 12 | 0 << 8,
504 Instruction::MUL_INT_LIT8, 3 << 8 | 0,
505 Instruction::RETURN);
506
507 TestCode(data, true, 12);
508}
509
510TEST(CodegenTest, ReturnMulIntLit16) {
511 const uint16_t data[] = ONE_REGISTER_CODE_ITEM(
512 Instruction::CONST_4 | 4 << 12 | 0 << 8,
513 Instruction::MUL_INT_LIT16, 3,
514 Instruction::RETURN);
515
516 TestCode(data, true, 12);
517}
518
Alexandre Rames92730742014-10-01 12:55:56 +0100519TEST(CodegenTest, MaterializedCondition1) {
520 // Check that condition are materialized correctly. A materialized condition
521 // should yield `1` if it evaluated to true, and `0` otherwise.
522 // We force the materialization of comparisons for different combinations of
523 // inputs and check the results.
524
525 int lhs[] = {1, 2, -1, 2, 0xabc};
526 int rhs[] = {2, 1, 2, -1, 0xabc};
527
528 for (size_t i = 0; i < arraysize(lhs); i++) {
529 ArenaPool pool;
530 ArenaAllocator allocator(&pool);
531 HGraph* graph = new (&allocator) HGraph(&allocator);
532
533 HBasicBlock* entry_block = new (&allocator) HBasicBlock(graph);
534 graph->AddBlock(entry_block);
535 graph->SetEntryBlock(entry_block);
536 entry_block->AddInstruction(new (&allocator) HGoto());
537 HBasicBlock* code_block = new (&allocator) HBasicBlock(graph);
538 graph->AddBlock(code_block);
539 HBasicBlock* exit_block = new (&allocator) HBasicBlock(graph);
540 graph->AddBlock(exit_block);
541 exit_block->AddInstruction(new (&allocator) HExit());
542
543 entry_block->AddSuccessor(code_block);
544 code_block->AddSuccessor(exit_block);
545 graph->SetExitBlock(exit_block);
546
547 HIntConstant cst_lhs(lhs[i]);
548 code_block->AddInstruction(&cst_lhs);
549 HIntConstant cst_rhs(rhs[i]);
550 code_block->AddInstruction(&cst_rhs);
551 HLessThan cmp_lt(&cst_lhs, &cst_rhs);
552 code_block->AddInstruction(&cmp_lt);
553 HReturn ret(&cmp_lt);
554 code_block->AddInstruction(&ret);
555
Andreas Gampe277ccbd2014-11-03 21:36:10 -0800556 auto hook_before_codegen = [](HGraph* graph_in) {
557 HBasicBlock* block = graph_in->GetEntryBlock()->GetSuccessors().Get(0);
558 HParallelMove* move = new (graph_in->GetArena()) HParallelMove(graph_in->GetArena());
Alexandre Rames92730742014-10-01 12:55:56 +0100559 block->InsertInstructionBefore(move, block->GetLastInstruction());
560 };
561
562 RunCodeOptimized(graph, hook_before_codegen, true, lhs[i] < rhs[i]);
563 }
564}
565
566TEST(CodegenTest, MaterializedCondition2) {
567 // Check that HIf correctly interprets a materialized condition.
568 // We force the materialization of comparisons for different combinations of
569 // inputs. An HIf takes the materialized combination as input and returns a
570 // value that we verify.
571
572 int lhs[] = {1, 2, -1, 2, 0xabc};
573 int rhs[] = {2, 1, 2, -1, 0xabc};
574
575
576 for (size_t i = 0; i < arraysize(lhs); i++) {
577 ArenaPool pool;
578 ArenaAllocator allocator(&pool);
579 HGraph* graph = new (&allocator) HGraph(&allocator);
580
581 HBasicBlock* entry_block = new (&allocator) HBasicBlock(graph);
582 graph->AddBlock(entry_block);
583 graph->SetEntryBlock(entry_block);
584 entry_block->AddInstruction(new (&allocator) HGoto());
585
586 HBasicBlock* if_block = new (&allocator) HBasicBlock(graph);
587 graph->AddBlock(if_block);
588 HBasicBlock* if_true_block = new (&allocator) HBasicBlock(graph);
589 graph->AddBlock(if_true_block);
590 HBasicBlock* if_false_block = new (&allocator) HBasicBlock(graph);
591 graph->AddBlock(if_false_block);
592 HBasicBlock* exit_block = new (&allocator) HBasicBlock(graph);
593 graph->AddBlock(exit_block);
594 exit_block->AddInstruction(new (&allocator) HExit());
595
596 graph->SetEntryBlock(entry_block);
597 entry_block->AddSuccessor(if_block);
598 if_block->AddSuccessor(if_true_block);
599 if_block->AddSuccessor(if_false_block);
600 if_true_block->AddSuccessor(exit_block);
601 if_false_block->AddSuccessor(exit_block);
602 graph->SetExitBlock(exit_block);
603
604 HIntConstant cst_lhs(lhs[i]);
605 if_block->AddInstruction(&cst_lhs);
606 HIntConstant cst_rhs(rhs[i]);
607 if_block->AddInstruction(&cst_rhs);
608 HLessThan cmp_lt(&cst_lhs, &cst_rhs);
609 if_block->AddInstruction(&cmp_lt);
610 // We insert a temporary to separate the HIf from the HLessThan and force
611 // the materialization of the condition.
612 HTemporary force_materialization(0);
613 if_block->AddInstruction(&force_materialization);
614 HIf if_lt(&cmp_lt);
615 if_block->AddInstruction(&if_lt);
616
617 HIntConstant cst_lt(1);
618 if_true_block->AddInstruction(&cst_lt);
619 HReturn ret_lt(&cst_lt);
620 if_true_block->AddInstruction(&ret_lt);
621 HIntConstant cst_ge(0);
622 if_false_block->AddInstruction(&cst_ge);
623 HReturn ret_ge(&cst_ge);
624 if_false_block->AddInstruction(&ret_ge);
625
Andreas Gampe277ccbd2014-11-03 21:36:10 -0800626 auto hook_before_codegen = [](HGraph* graph_in) {
627 HBasicBlock* block = graph_in->GetEntryBlock()->GetSuccessors().Get(0);
628 HParallelMove* move = new (graph_in->GetArena()) HParallelMove(graph_in->GetArena());
Alexandre Rames92730742014-10-01 12:55:56 +0100629 block->InsertInstructionBefore(move, block->GetLastInstruction());
630 };
631
632 RunCodeOptimized(graph, hook_before_codegen, true, lhs[i] < rhs[i]);
633 }
634}
Calin Juravle34bacdf2014-10-07 20:23:36 +0100635
Nicolas Geoffraycd2de0c2014-11-06 15:59:38 +0000636#if defined(__aarch64__)
637TEST(CodegenTest, DISABLED_ReturnDivIntLit8) {
638#else
Calin Juravled0d48522014-11-04 16:40:20 +0000639TEST(CodegenTest, ReturnDivIntLit8) {
Nicolas Geoffraycd2de0c2014-11-06 15:59:38 +0000640#endif
Calin Juravled0d48522014-11-04 16:40:20 +0000641 const uint16_t data[] = ONE_REGISTER_CODE_ITEM(
642 Instruction::CONST_4 | 4 << 12 | 0 << 8,
643 Instruction::DIV_INT_LIT8, 3 << 8 | 0,
644 Instruction::RETURN);
645
646 TestCode(data, true, 1);
647}
648
Calin Juravle865fc882014-11-06 17:09:03 +0000649#if defined(__aarch64__)
650TEST(CodegenTest, DISABLED_ReturnDivInt2Addr) {
651#else
652TEST(CodegenTest, ReturnDivInt2Addr) {
653#endif
654 const uint16_t data[] = TWO_REGISTERS_CODE_ITEM(
655 Instruction::CONST_4 | 4 << 12 | 0,
656 Instruction::CONST_4 | 2 << 12 | 1 << 8,
657 Instruction::DIV_INT_2ADDR | 1 << 12,
658 Instruction::RETURN);
659
660 TestCode(data, true, 2);
661}
662
Nicolas Geoffrayd4dd2552014-02-28 10:23:58 +0000663} // namespace art