blob: 51fe8f1c81f240e5946aa63769f69abc1d564e83 [file] [log] [blame]
Brian Carlstrom7940e442013-07-12 13:46:57 -07001/*
2 * Copyright (C) 2012 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
Brian Carlstromfc0e3212013-07-17 14:40:12 -070017#ifndef ART_COMPILER_DEX_QUICK_MIR_TO_LIR_H_
18#define ART_COMPILER_DEX_QUICK_MIR_TO_LIR_H_
Brian Carlstrom7940e442013-07-12 13:46:57 -070019
20#include "invoke_type.h"
21#include "compiled_method.h"
22#include "dex/compiler_enums.h"
23#include "dex/compiler_ir.h"
Bill Buzbee00e1ec62014-02-27 23:44:13 +000024#include "dex/reg_storage.h"
Brian Carlstrom7940e442013-07-12 13:46:57 -070025#include "dex/backend.h"
Brian Carlstrom7940e442013-07-12 13:46:57 -070026#include "driver/compiler_driver.h"
Brian Carlstroma1ce1fe2014-02-24 23:23:58 -080027#include "leb128.h"
Brian Carlstrom7940e442013-07-12 13:46:57 -070028#include "safe_map.h"
Nicolas Geoffray818f2102014-02-18 16:43:35 +000029#include "utils/arena_allocator.h"
30#include "utils/growable_array.h"
Brian Carlstrom7940e442013-07-12 13:46:57 -070031
32namespace art {
33
buzbee0d829482013-10-11 15:24:55 -070034/*
35 * TODO: refactoring pass to move these (and other) typdefs towards usage style of runtime to
36 * add type safety (see runtime/offsets.h).
37 */
38typedef uint32_t DexOffset; // Dex offset in code units.
39typedef uint16_t NarrowDexOffset; // For use in structs, Dex offsets range from 0 .. 0xffff.
40typedef uint32_t CodeOffset; // Native code offset in bytes.
41
Brian Carlstrom7940e442013-07-12 13:46:57 -070042// Set to 1 to measure cost of suspend check.
43#define NO_SUSPEND 0
44
45#define IS_BINARY_OP (1ULL << kIsBinaryOp)
46#define IS_BRANCH (1ULL << kIsBranch)
47#define IS_IT (1ULL << kIsIT)
48#define IS_LOAD (1ULL << kMemLoad)
49#define IS_QUAD_OP (1ULL << kIsQuadOp)
50#define IS_QUIN_OP (1ULL << kIsQuinOp)
51#define IS_SEXTUPLE_OP (1ULL << kIsSextupleOp)
52#define IS_STORE (1ULL << kMemStore)
53#define IS_TERTIARY_OP (1ULL << kIsTertiaryOp)
54#define IS_UNARY_OP (1ULL << kIsUnaryOp)
55#define NEEDS_FIXUP (1ULL << kPCRelFixup)
56#define NO_OPERAND (1ULL << kNoOperand)
57#define REG_DEF0 (1ULL << kRegDef0)
58#define REG_DEF1 (1ULL << kRegDef1)
Razvan A Lupusoru99ad7232014-02-25 17:41:08 -080059#define REG_DEF2 (1ULL << kRegDef2)
Brian Carlstrom7940e442013-07-12 13:46:57 -070060#define REG_DEFA (1ULL << kRegDefA)
61#define REG_DEFD (1ULL << kRegDefD)
62#define REG_DEF_FPCS_LIST0 (1ULL << kRegDefFPCSList0)
63#define REG_DEF_FPCS_LIST2 (1ULL << kRegDefFPCSList2)
64#define REG_DEF_LIST0 (1ULL << kRegDefList0)
65#define REG_DEF_LIST1 (1ULL << kRegDefList1)
66#define REG_DEF_LR (1ULL << kRegDefLR)
67#define REG_DEF_SP (1ULL << kRegDefSP)
68#define REG_USE0 (1ULL << kRegUse0)
69#define REG_USE1 (1ULL << kRegUse1)
70#define REG_USE2 (1ULL << kRegUse2)
71#define REG_USE3 (1ULL << kRegUse3)
72#define REG_USE4 (1ULL << kRegUse4)
73#define REG_USEA (1ULL << kRegUseA)
74#define REG_USEC (1ULL << kRegUseC)
75#define REG_USED (1ULL << kRegUseD)
Vladimir Marko70b797d2013-12-03 15:25:24 +000076#define REG_USEB (1ULL << kRegUseB)
Brian Carlstrom7940e442013-07-12 13:46:57 -070077#define REG_USE_FPCS_LIST0 (1ULL << kRegUseFPCSList0)
78#define REG_USE_FPCS_LIST2 (1ULL << kRegUseFPCSList2)
79#define REG_USE_LIST0 (1ULL << kRegUseList0)
80#define REG_USE_LIST1 (1ULL << kRegUseList1)
81#define REG_USE_LR (1ULL << kRegUseLR)
82#define REG_USE_PC (1ULL << kRegUsePC)
83#define REG_USE_SP (1ULL << kRegUseSP)
84#define SETS_CCODES (1ULL << kSetsCCodes)
85#define USES_CCODES (1ULL << kUsesCCodes)
Serguei Katkove90501d2014-03-12 15:56:54 +070086#define USE_FP_STACK (1ULL << kUseFpStack)
Brian Carlstrom7940e442013-07-12 13:46:57 -070087
88// Common combo register usage patterns.
89#define REG_DEF01 (REG_DEF0 | REG_DEF1)
90#define REG_DEF01_USE2 (REG_DEF0 | REG_DEF1 | REG_USE2)
91#define REG_DEF0_USE01 (REG_DEF0 | REG_USE01)
92#define REG_DEF0_USE0 (REG_DEF0 | REG_USE0)
93#define REG_DEF0_USE12 (REG_DEF0 | REG_USE12)
Vladimir Marko3e5af822013-11-21 15:01:20 +000094#define REG_DEF0_USE123 (REG_DEF0 | REG_USE123)
Brian Carlstrom7940e442013-07-12 13:46:57 -070095#define REG_DEF0_USE1 (REG_DEF0 | REG_USE1)
96#define REG_DEF0_USE2 (REG_DEF0 | REG_USE2)
97#define REG_DEFAD_USEAD (REG_DEFAD_USEA | REG_USED)
98#define REG_DEFAD_USEA (REG_DEFA_USEA | REG_DEFD)
99#define REG_DEFA_USEA (REG_DEFA | REG_USEA)
100#define REG_USE012 (REG_USE01 | REG_USE2)
101#define REG_USE014 (REG_USE01 | REG_USE4)
102#define REG_USE01 (REG_USE0 | REG_USE1)
103#define REG_USE02 (REG_USE0 | REG_USE2)
104#define REG_USE12 (REG_USE1 | REG_USE2)
105#define REG_USE23 (REG_USE2 | REG_USE3)
Vladimir Marko3e5af822013-11-21 15:01:20 +0000106#define REG_USE123 (REG_USE1 | REG_USE2 | REG_USE3)
Brian Carlstrom7940e442013-07-12 13:46:57 -0700107
108struct BasicBlock;
109struct CallInfo;
110struct CompilationUnit;
Vladimir Marko5816ed42013-11-27 17:04:20 +0000111struct InlineMethod;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700112struct MIR;
buzbeeb48819d2013-09-14 16:15:25 -0700113struct LIR;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700114struct RegLocation;
115struct RegisterInfo;
Vladimir Marko5c96e6b2013-11-14 15:34:17 +0000116class DexFileMethodInliner;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700117class MIRGraph;
118class Mir2Lir;
119
120typedef int (*NextCallInsn)(CompilationUnit*, CallInfo*, int,
121 const MethodReference& target_method,
122 uint32_t method_idx, uintptr_t direct_code,
123 uintptr_t direct_method, InvokeType type);
124
125typedef std::vector<uint8_t> CodeBuffer;
126
buzbeeb48819d2013-09-14 16:15:25 -0700127struct UseDefMasks {
128 uint64_t use_mask; // Resource mask for use.
129 uint64_t def_mask; // Resource mask for def.
130};
131
132struct AssemblyInfo {
133 LIR* pcrel_next; // Chain of LIR nodes needing pc relative fixups.
134 uint8_t bytes[16]; // Encoded instruction bytes.
135};
Brian Carlstrom7940e442013-07-12 13:46:57 -0700136
137struct LIR {
buzbee0d829482013-10-11 15:24:55 -0700138 CodeOffset offset; // Offset of this instruction.
139 NarrowDexOffset dalvik_offset; // Offset of Dalvik opcode in code units (16-bit words).
buzbeeb48819d2013-09-14 16:15:25 -0700140 int16_t opcode;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700141 LIR* next;
142 LIR* prev;
143 LIR* target;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700144 struct {
buzbeeb48819d2013-09-14 16:15:25 -0700145 unsigned int alias_info:17; // For Dalvik register disambiguation.
146 bool is_nop:1; // LIR is optimized away.
147 unsigned int size:4; // Note: size of encoded instruction is in bytes.
148 bool use_def_invalid:1; // If true, masks should not be used.
149 unsigned int generation:1; // Used to track visitation state during fixup pass.
150 unsigned int fixup:8; // Fixup kind.
Brian Carlstrom7940e442013-07-12 13:46:57 -0700151 } flags;
buzbeeb48819d2013-09-14 16:15:25 -0700152 union {
buzbee0d829482013-10-11 15:24:55 -0700153 UseDefMasks m; // Use & Def masks used during optimization.
154 AssemblyInfo a; // Instruction encoding used during assembly phase.
buzbeeb48819d2013-09-14 16:15:25 -0700155 } u;
buzbee0d829482013-10-11 15:24:55 -0700156 int32_t operands[5]; // [0..4] = [dest, src1, src2, extra, extra2].
Brian Carlstrom7940e442013-07-12 13:46:57 -0700157};
158
159// Target-specific initialization.
160Mir2Lir* ArmCodeGenerator(CompilationUnit* const cu, MIRGraph* const mir_graph,
161 ArenaAllocator* const arena);
162Mir2Lir* MipsCodeGenerator(CompilationUnit* const cu, MIRGraph* const mir_graph,
163 ArenaAllocator* const arena);
164Mir2Lir* X86CodeGenerator(CompilationUnit* const cu, MIRGraph* const mir_graph,
165 ArenaAllocator* const arena);
166
167// Utility macros to traverse the LIR list.
168#define NEXT_LIR(lir) (lir->next)
169#define PREV_LIR(lir) (lir->prev)
170
171// Defines for alias_info (tracks Dalvik register references).
172#define DECODE_ALIAS_INFO_REG(X) (X & 0xffff)
buzbeeb48819d2013-09-14 16:15:25 -0700173#define DECODE_ALIAS_INFO_WIDE_FLAG (0x10000)
Brian Carlstrom7940e442013-07-12 13:46:57 -0700174#define DECODE_ALIAS_INFO_WIDE(X) ((X & DECODE_ALIAS_INFO_WIDE_FLAG) ? 1 : 0)
175#define ENCODE_ALIAS_INFO(REG, ISWIDE) (REG | (ISWIDE ? DECODE_ALIAS_INFO_WIDE_FLAG : 0))
176
177// Common resource macros.
178#define ENCODE_CCODE (1ULL << kCCode)
179#define ENCODE_FP_STATUS (1ULL << kFPStatus)
180
181// Abstract memory locations.
182#define ENCODE_DALVIK_REG (1ULL << kDalvikReg)
183#define ENCODE_LITERAL (1ULL << kLiteral)
184#define ENCODE_HEAP_REF (1ULL << kHeapRef)
185#define ENCODE_MUST_NOT_ALIAS (1ULL << kMustNotAlias)
186
187#define ENCODE_ALL (~0ULL)
188#define ENCODE_MEM (ENCODE_DALVIK_REG | ENCODE_LITERAL | \
189 ENCODE_HEAP_REF | ENCODE_MUST_NOT_ALIAS)
buzbeec729a6b2013-09-14 16:04:31 -0700190
Razvan A Lupusoru3bc01742014-02-06 13:18:43 -0800191#define ENCODE_REG_PAIR(low_reg, high_reg) ((low_reg & 0xff) | ((high_reg & 0xff) << 8))
192#define DECODE_REG_PAIR(both_regs, low_reg, high_reg) \
193 do { \
194 low_reg = both_regs & 0xff; \
195 high_reg = (both_regs >> 8) & 0xff; \
196 } while (false)
197
buzbeec729a6b2013-09-14 16:04:31 -0700198// Mask to denote sreg as the start of a double. Must not interfere with low 16 bits.
199#define STARTING_DOUBLE_SREG 0x10000
200
Brian Carlstrom7934ac22013-07-26 10:54:15 -0700201// TODO: replace these macros
Brian Carlstrom7940e442013-07-12 13:46:57 -0700202#define SLOW_FIELD_PATH (cu_->enable_debug & (1 << kDebugSlowFieldPath))
203#define SLOW_INVOKE_PATH (cu_->enable_debug & (1 << kDebugSlowInvokePath))
204#define SLOW_STRING_PATH (cu_->enable_debug & (1 << kDebugSlowStringPath))
205#define SLOW_TYPE_PATH (cu_->enable_debug & (1 << kDebugSlowTypePath))
206#define EXERCISE_SLOWEST_STRING_PATH (cu_->enable_debug & (1 << kDebugSlowestStringPath))
Brian Carlstrom7940e442013-07-12 13:46:57 -0700207
208class Mir2Lir : public Backend {
Brian Carlstrom7940e442013-07-12 13:46:57 -0700209 public:
buzbee0d829482013-10-11 15:24:55 -0700210 /*
211 * Auxiliary information describing the location of data embedded in the Dalvik
212 * byte code stream.
213 */
214 struct EmbeddedData {
215 CodeOffset offset; // Code offset of data block.
216 const uint16_t* table; // Original dex data.
217 DexOffset vaddr; // Dalvik offset of parent opcode.
Brian Carlstrom7940e442013-07-12 13:46:57 -0700218 };
219
buzbee0d829482013-10-11 15:24:55 -0700220 struct FillArrayData : EmbeddedData {
221 int32_t size;
222 };
223
224 struct SwitchTable : EmbeddedData {
225 LIR* anchor; // Reference instruction for relative offsets.
226 LIR** targets; // Array of case targets.
Brian Carlstrom7940e442013-07-12 13:46:57 -0700227 };
228
229 /* Static register use counts */
230 struct RefCounts {
231 int count;
232 int s_reg;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700233 };
234
235 /*
236 * Data structure tracking the mapping between a Dalvik register (pair) and a
237 * native register (pair). The idea is to reuse the previously loaded value
238 * if possible, otherwise to keep the value in a native register as long as
239 * possible.
240 */
241 struct RegisterInfo {
242 int reg; // Reg number
243 bool in_use; // Has it been allocated?
244 bool is_temp; // Can allocate as temp?
245 bool pair; // Part of a register pair?
246 int partner; // If pair, other reg of pair.
247 bool live; // Is there an associated SSA name?
248 bool dirty; // If live, is it dirty?
249 int s_reg; // Name of live value.
250 LIR *def_start; // Starting inst in last def sequence.
251 LIR *def_end; // Ending inst in last def sequence.
252 };
253
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700254 struct RegisterPool {
255 int num_core_regs;
256 RegisterInfo *core_regs;
257 int next_core_reg;
258 int num_fp_regs;
259 RegisterInfo *FPRegs;
260 int next_fp_reg;
261 };
Brian Carlstrom7940e442013-07-12 13:46:57 -0700262
263 struct PromotionMap {
264 RegLocationType core_location:3;
265 uint8_t core_reg;
266 RegLocationType fp_location:3;
267 uint8_t FpReg;
268 bool first_in_pair;
269 };
270
Dave Allisonbcec6fb2014-01-17 12:52:22 -0800271 //
272 // Slow paths. This object is used generate a sequence of code that is executed in the
273 // slow path. For example, resolving a string or class is slow as it will only be executed
274 // once (after that it is resolved and doesn't need to be done again). We want slow paths
275 // to be placed out-of-line, and not require a (mispredicted, probably) conditional forward
276 // branch over them.
277 //
278 // If you want to create a slow path, declare a class derived from LIRSlowPath and provide
279 // the Compile() function that will be called near the end of the code generated by the
280 // method.
281 //
282 // The basic flow for a slow path is:
283 //
284 // CMP reg, #value
285 // BEQ fromfast
286 // cont:
287 // ...
288 // fast path code
289 // ...
290 // more code
291 // ...
292 // RETURN
293 ///
294 // fromfast:
295 // ...
296 // slow path code
297 // ...
298 // B cont
299 //
300 // So you see we need two labels and two branches. The first branch (called fromfast) is
301 // the conditional branch to the slow path code. The second label (called cont) is used
302 // as an unconditional branch target for getting back to the code after the slow path
303 // has completed.
304 //
305
306 class LIRSlowPath {
307 public:
308 LIRSlowPath(Mir2Lir* m2l, const DexOffset dexpc, LIR* fromfast,
309 LIR* cont = nullptr) :
310 m2l_(m2l), current_dex_pc_(dexpc), fromfast_(fromfast), cont_(cont) {
311 }
312 virtual ~LIRSlowPath() {}
313 virtual void Compile() = 0;
314
315 static void* operator new(size_t size, ArenaAllocator* arena) {
Vladimir Marko83cc7ae2014-02-12 18:02:05 +0000316 return arena->Alloc(size, kArenaAllocData);
Dave Allisonbcec6fb2014-01-17 12:52:22 -0800317 }
318
319 protected:
320 LIR* GenerateTargetLabel();
321
322 Mir2Lir* const m2l_;
323 const DexOffset current_dex_pc_;
324 LIR* const fromfast_;
325 LIR* const cont_;
326 };
327
Brian Carlstrom9b7085a2013-07-18 15:15:21 -0700328 virtual ~Mir2Lir() {}
Brian Carlstrom7940e442013-07-12 13:46:57 -0700329
330 int32_t s4FromSwitchData(const void* switch_data) {
331 return *reinterpret_cast<const int32_t*>(switch_data);
332 }
333
334 RegisterClass oat_reg_class_by_size(OpSize size) {
335 return (size == kUnsignedHalf || size == kSignedHalf || size == kUnsignedByte ||
Brian Carlstromdf629502013-07-17 22:39:56 -0700336 size == kSignedByte) ? kCoreReg : kAnyReg;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700337 }
338
339 size_t CodeBufferSizeInBytes() {
340 return code_buffer_.size() / sizeof(code_buffer_[0]);
341 }
342
buzbee409fe942013-10-11 10:49:56 -0700343 bool IsPseudoLirOp(int opcode) {
344 return (opcode < 0);
345 }
346
buzbee0d829482013-10-11 15:24:55 -0700347 /*
348 * LIR operands are 32-bit integers. Sometimes, (especially for managing
349 * instructions which require PC-relative fixups), we need the operands to carry
350 * pointers. To do this, we assign these pointers an index in pointer_storage_, and
351 * hold that index in the operand array.
352 * TUNING: If use of these utilities becomes more common on 32-bit builds, it
353 * may be worth conditionally-compiling a set of identity functions here.
354 */
355 uint32_t WrapPointer(void* pointer) {
356 uint32_t res = pointer_storage_.Size();
357 pointer_storage_.Insert(pointer);
358 return res;
359 }
360
361 void* UnwrapPointer(size_t index) {
362 return pointer_storage_.Get(index);
363 }
364
365 // strdup(), but allocates from the arena.
366 char* ArenaStrdup(const char* str) {
367 size_t len = strlen(str) + 1;
Vladimir Marko83cc7ae2014-02-12 18:02:05 +0000368 char* res = reinterpret_cast<char*>(arena_->Alloc(len, kArenaAllocMisc));
buzbee0d829482013-10-11 15:24:55 -0700369 if (res != NULL) {
370 strncpy(res, str, len);
371 }
372 return res;
373 }
374
Brian Carlstrom7940e442013-07-12 13:46:57 -0700375 // Shared by all targets - implemented in codegen_util.cc
376 void AppendLIR(LIR* lir);
377 void InsertLIRBefore(LIR* current_lir, LIR* new_lir);
378 void InsertLIRAfter(LIR* current_lir, LIR* new_lir);
379
Razvan A Lupusoruda7a69b2014-01-08 15:09:50 -0800380 /**
381 * @brief Provides the maximum number of compiler temporaries that the backend can/wants
382 * to place in a frame.
383 * @return Returns the maximum number of compiler temporaries.
384 */
385 size_t GetMaxPossibleCompilerTemps() const;
386
387 /**
388 * @brief Provides the number of bytes needed in frame for spilling of compiler temporaries.
389 * @return Returns the size in bytes for space needed for compiler temporary spill region.
390 */
391 size_t GetNumBytesForCompilerTempSpillRegion();
392
Dave Allisonbcec6fb2014-01-17 12:52:22 -0800393 DexOffset GetCurrentDexPc() const {
394 return current_dalvik_offset_;
395 }
396
Brian Carlstrom7940e442013-07-12 13:46:57 -0700397 int ComputeFrameSize();
398 virtual void Materialize();
399 virtual CompiledMethod* GetCompiledMethod();
400 void MarkSafepointPC(LIR* inst);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700401 void SetupResourceMasks(LIR* lir);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700402 void SetMemRefType(LIR* lir, bool is_load, int mem_type);
403 void AnnotateDalvikRegAccess(LIR* lir, int reg_id, bool is_load, bool is64bit);
404 void SetupRegMask(uint64_t* mask, int reg);
405 void DumpLIRInsn(LIR* arg, unsigned char* base_addr);
406 void DumpPromotionMap();
407 void CodegenDump();
buzbee0d829482013-10-11 15:24:55 -0700408 LIR* RawLIR(DexOffset dalvik_offset, int opcode, int op0 = 0, int op1 = 0,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700409 int op2 = 0, int op3 = 0, int op4 = 0, LIR* target = NULL);
410 LIR* NewLIR0(int opcode);
411 LIR* NewLIR1(int opcode, int dest);
412 LIR* NewLIR2(int opcode, int dest, int src1);
Razvan A Lupusoru614c2b42014-01-28 17:05:21 -0800413 LIR* NewLIR2NoDest(int opcode, int src, int info);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700414 LIR* NewLIR3(int opcode, int dest, int src1, int src2);
415 LIR* NewLIR4(int opcode, int dest, int src1, int src2, int info);
416 LIR* NewLIR5(int opcode, int dest, int src1, int src2, int info1, int info2);
417 LIR* ScanLiteralPool(LIR* data_target, int value, unsigned int delta);
418 LIR* ScanLiteralPoolWide(LIR* data_target, int val_lo, int val_hi);
419 LIR* AddWordData(LIR* *constant_list_p, int value);
420 LIR* AddWideData(LIR* *constant_list_p, int val_lo, int val_hi);
421 void ProcessSwitchTables();
422 void DumpSparseSwitchTable(const uint16_t* table);
423 void DumpPackedSwitchTable(const uint16_t* table);
buzbee0d829482013-10-11 15:24:55 -0700424 void MarkBoundary(DexOffset offset, const char* inst_str);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700425 void NopLIR(LIR* lir);
buzbee252254b2013-09-08 16:20:53 -0700426 void UnlinkLIR(LIR* lir);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700427 bool EvaluateBranch(Instruction::Code opcode, int src1, int src2);
428 bool IsInexpensiveConstant(RegLocation rl_src);
429 ConditionCode FlipComparisonOrder(ConditionCode before);
Vladimir Markoa1a70742014-03-03 10:28:05 +0000430 ConditionCode NegateComparison(ConditionCode before);
Mark Mendell55d0eac2014-02-06 11:02:52 -0800431 virtual void InstallLiteralPools();
Brian Carlstrom7940e442013-07-12 13:46:57 -0700432 void InstallSwitchTables();
433 void InstallFillArrayData();
434 bool VerifyCatchEntries();
435 void CreateMappingTables();
436 void CreateNativeGcMap();
buzbee0d829482013-10-11 15:24:55 -0700437 int AssignLiteralOffset(CodeOffset offset);
438 int AssignSwitchTablesOffset(CodeOffset offset);
439 int AssignFillArrayDataOffset(CodeOffset offset);
440 LIR* InsertCaseLabel(DexOffset vaddr, int keyVal);
441 void MarkPackedCaseLabels(Mir2Lir::SwitchTable* tab_rec);
442 void MarkSparseCaseLabels(Mir2Lir::SwitchTable* tab_rec);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700443
444 // Shared by all targets - implemented in local_optimizations.cc
445 void ConvertMemOpIntoMove(LIR* orig_lir, int dest, int src);
446 void ApplyLoadStoreElimination(LIR* head_lir, LIR* tail_lir);
447 void ApplyLoadHoisting(LIR* head_lir, LIR* tail_lir);
448 void ApplyLocalOptimizations(LIR* head_lir, LIR* tail_lir);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700449
450 // Shared by all targets - implemented in ralloc_util.cc
451 int GetSRegHi(int lowSreg);
452 bool oat_live_out(int s_reg);
453 int oatSSASrc(MIR* mir, int num);
454 void SimpleRegAlloc();
455 void ResetRegPool();
456 void CompilerInitPool(RegisterInfo* regs, int* reg_nums, int num);
457 void DumpRegPool(RegisterInfo* p, int num_regs);
458 void DumpCoreRegPool();
459 void DumpFpRegPool();
460 /* Mark a temp register as dead. Does not affect allocation state. */
461 void Clobber(int reg) {
462 ClobberBody(GetRegInfo(reg));
463 }
464 void ClobberSRegBody(RegisterInfo* p, int num_regs, int s_reg);
465 void ClobberSReg(int s_reg);
466 int SRegToPMap(int s_reg);
467 void RecordCorePromotion(int reg, int s_reg);
468 int AllocPreservedCoreReg(int s_reg);
469 void RecordFpPromotion(int reg, int s_reg);
buzbeec729a6b2013-09-14 16:04:31 -0700470 int AllocPreservedSingle(int s_reg);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700471 int AllocPreservedDouble(int s_reg);
buzbeec729a6b2013-09-14 16:04:31 -0700472 int AllocTempBody(RegisterInfo* p, int num_regs, int* next_temp, bool required);
Bill Buzbeed61ba4b2014-01-13 21:44:01 +0000473 virtual int AllocTempDouble();
Brian Carlstrom7940e442013-07-12 13:46:57 -0700474 int AllocFreeTemp();
475 int AllocTemp();
476 int AllocTempFloat();
477 RegisterInfo* AllocLiveBody(RegisterInfo* p, int num_regs, int s_reg);
478 RegisterInfo* AllocLive(int s_reg, int reg_class);
479 void FreeTemp(int reg);
480 RegisterInfo* IsLive(int reg);
481 RegisterInfo* IsTemp(int reg);
482 RegisterInfo* IsPromoted(int reg);
483 bool IsDirty(int reg);
484 void LockTemp(int reg);
485 void ResetDef(int reg);
486 void NullifyRange(LIR *start, LIR *finish, int s_reg1, int s_reg2);
487 void MarkDef(RegLocation rl, LIR *start, LIR *finish);
488 void MarkDefWide(RegLocation rl, LIR *start, LIR *finish);
489 RegLocation WideToNarrow(RegLocation rl);
490 void ResetDefLoc(RegLocation rl);
Bill Buzbeed61ba4b2014-01-13 21:44:01 +0000491 virtual void ResetDefLocWide(RegLocation rl);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700492 void ResetDefTracking();
493 void ClobberAllRegs();
Razvan A Lupusoru614c2b42014-01-28 17:05:21 -0800494 void FlushSpecificReg(RegisterInfo* info);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700495 void FlushAllRegsBody(RegisterInfo* info, int num_regs);
496 void FlushAllRegs();
497 bool RegClassMatches(int reg_class, int reg);
498 void MarkLive(int reg, int s_reg);
499 void MarkTemp(int reg);
500 void UnmarkTemp(int reg);
501 void MarkPair(int low_reg, int high_reg);
502 void MarkClean(RegLocation loc);
503 void MarkDirty(RegLocation loc);
504 void MarkInUse(int reg);
505 void CopyRegInfo(int new_reg, int old_reg);
506 bool CheckCorePoolSanity();
507 RegLocation UpdateLoc(RegLocation loc);
Bill Buzbeed61ba4b2014-01-13 21:44:01 +0000508 virtual RegLocation UpdateLocWide(RegLocation loc);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700509 RegLocation UpdateRawLoc(RegLocation loc);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800510
511 /**
512 * @brief Used to load register location into a typed temporary or pair of temporaries.
513 * @see EvalLoc
514 * @param loc The register location to load from.
515 * @param reg_class Type of register needed.
516 * @param update Whether the liveness information should be updated.
517 * @return Returns the properly typed temporary in physical register pairs.
518 */
Bill Buzbeed61ba4b2014-01-13 21:44:01 +0000519 virtual RegLocation EvalLocWide(RegLocation loc, int reg_class, bool update);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800520
521 /**
522 * @brief Used to load register location into a typed temporary.
523 * @param loc The register location to load from.
524 * @param reg_class Type of register needed.
525 * @param update Whether the liveness information should be updated.
526 * @return Returns the properly typed temporary in physical register.
527 */
Bill Buzbeed61ba4b2014-01-13 21:44:01 +0000528 virtual RegLocation EvalLoc(RegLocation loc, int reg_class, bool update);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800529
buzbeec729a6b2013-09-14 16:04:31 -0700530 void CountRefs(RefCounts* core_counts, RefCounts* fp_counts, size_t num_regs);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700531 void DumpCounts(const RefCounts* arr, int size, const char* msg);
532 void DoPromotion();
533 int VRegOffset(int v_reg);
534 int SRegOffset(int s_reg);
535 RegLocation GetReturnWide(bool is_double);
536 RegLocation GetReturn(bool is_float);
buzbeebd663de2013-09-10 15:41:31 -0700537 RegisterInfo* GetRegInfo(int reg);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700538
539 // Shared by all targets - implemented in gen_common.cc.
Vladimir Marko3bc86152014-03-13 14:11:28 +0000540 void AddIntrinsicLaunchpad(CallInfo* info, LIR* branch, LIR* resume = nullptr);
buzbee11b63d12013-08-27 07:34:17 -0700541 bool HandleEasyDivRem(Instruction::Code dalvik_opcode, bool is_div,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700542 RegLocation rl_src, RegLocation rl_dest, int lit);
543 bool HandleEasyMultiply(RegLocation rl_src, RegLocation rl_dest, int lit);
544 void HandleSuspendLaunchPads();
Brian Carlstrom7940e442013-07-12 13:46:57 -0700545 void HandleThrowLaunchPads();
Dave Allisonbcec6fb2014-01-17 12:52:22 -0800546 void HandleSlowPaths();
Brian Carlstrom7940e442013-07-12 13:46:57 -0700547 void GenBarrier();
548 LIR* GenCheck(ConditionCode c_code, ThrowKind kind);
549 LIR* GenImmedCheck(ConditionCode c_code, int reg, int imm_val,
550 ThrowKind kind);
Dave Allisonb373e092014-02-20 16:06:36 -0800551 LIR* GenNullCheck(int m_reg, int opt_flags);
552 void MarkPossibleNullPointerException(int opt_flags);
553 void MarkPossibleStackOverflowException();
554 void ForceImplicitNullCheck(int reg, int opt_flags);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700555 LIR* GenRegRegCheck(ConditionCode c_code, int reg1, int reg2,
556 ThrowKind kind);
557 void GenCompareAndBranch(Instruction::Code opcode, RegLocation rl_src1,
558 RegLocation rl_src2, LIR* taken, LIR* fall_through);
559 void GenCompareZeroAndBranch(Instruction::Code opcode, RegLocation rl_src,
560 LIR* taken, LIR* fall_through);
561 void GenIntToLong(RegLocation rl_dest, RegLocation rl_src);
562 void GenIntNarrowing(Instruction::Code opcode, RegLocation rl_dest,
563 RegLocation rl_src);
564 void GenNewArray(uint32_t type_idx, RegLocation rl_dest,
565 RegLocation rl_src);
566 void GenFilledNewArray(CallInfo* info);
Vladimir Markobe0e5462014-02-26 11:24:15 +0000567 void GenSput(MIR* mir, RegLocation rl_src,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700568 bool is_long_or_double, bool is_object);
Vladimir Markobe0e5462014-02-26 11:24:15 +0000569 void GenSget(MIR* mir, RegLocation rl_dest,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700570 bool is_long_or_double, bool is_object);
Vladimir Markobe0e5462014-02-26 11:24:15 +0000571 void GenIGet(MIR* mir, int opt_flags, OpSize size,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700572 RegLocation rl_dest, RegLocation rl_obj, bool is_long_or_double, bool is_object);
Vladimir Markobe0e5462014-02-26 11:24:15 +0000573 void GenIPut(MIR* mir, int opt_flags, OpSize size,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700574 RegLocation rl_src, RegLocation rl_obj, bool is_long_or_double, bool is_object);
Ian Rogersa9a82542013-10-04 11:17:26 -0700575 void GenArrayObjPut(int opt_flags, RegLocation rl_array, RegLocation rl_index,
576 RegLocation rl_src);
577
Brian Carlstrom7940e442013-07-12 13:46:57 -0700578 void GenConstClass(uint32_t type_idx, RegLocation rl_dest);
579 void GenConstString(uint32_t string_idx, RegLocation rl_dest);
580 void GenNewInstance(uint32_t type_idx, RegLocation rl_dest);
581 void GenThrow(RegLocation rl_src);
582 void GenInstanceof(uint32_t type_idx, RegLocation rl_dest,
583 RegLocation rl_src);
584 void GenCheckCast(uint32_t insn_idx, uint32_t type_idx,
585 RegLocation rl_src);
586 void GenLong3Addr(OpKind first_op, OpKind second_op, RegLocation rl_dest,
587 RegLocation rl_src1, RegLocation rl_src2);
588 void GenShiftOpLong(Instruction::Code opcode, RegLocation rl_dest,
589 RegLocation rl_src1, RegLocation rl_shift);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700590 void GenArithOpIntLit(Instruction::Code opcode, RegLocation rl_dest,
591 RegLocation rl_src, int lit);
592 void GenArithOpLong(Instruction::Code opcode, RegLocation rl_dest,
593 RegLocation rl_src1, RegLocation rl_src2);
Ian Rogers468532e2013-08-05 10:56:33 -0700594 void GenConversionCall(ThreadOffset func_offset, RegLocation rl_dest,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700595 RegLocation rl_src);
596 void GenSuspendTest(int opt_flags);
597 void GenSuspendTestAndBranch(int opt_flags, LIR* target);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -0800598
Bill Buzbeed61ba4b2014-01-13 21:44:01 +0000599 // This will be overridden by x86 implementation.
600 virtual void GenConstWide(RegLocation rl_dest, int64_t value);
Mark Mendellfeb2b4e2014-01-28 12:59:49 -0800601 virtual void GenArithOpInt(Instruction::Code opcode, RegLocation rl_dest,
602 RegLocation rl_src1, RegLocation rl_src2);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700603
604 // Shared by all targets - implemented in gen_invoke.cc.
Ian Rogers468532e2013-08-05 10:56:33 -0700605 int CallHelperSetup(ThreadOffset helper_offset);
Brian Carlstrom60d7a652014-03-13 18:10:08 -0700606 LIR* CallHelper(int r_tgt, ThreadOffset helper_offset, bool safepoint_pc, bool use_link = true);
Ian Rogers468532e2013-08-05 10:56:33 -0700607 void CallRuntimeHelperImm(ThreadOffset helper_offset, int arg0, bool safepoint_pc);
608 void CallRuntimeHelperReg(ThreadOffset helper_offset, int arg0, bool safepoint_pc);
609 void CallRuntimeHelperRegLocation(ThreadOffset helper_offset, RegLocation arg0,
610 bool safepoint_pc);
611 void CallRuntimeHelperImmImm(ThreadOffset helper_offset, int arg0, int arg1,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700612 bool safepoint_pc);
Ian Rogers468532e2013-08-05 10:56:33 -0700613 void CallRuntimeHelperImmRegLocation(ThreadOffset helper_offset, int arg0,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700614 RegLocation arg1, bool safepoint_pc);
Ian Rogers468532e2013-08-05 10:56:33 -0700615 void CallRuntimeHelperRegLocationImm(ThreadOffset helper_offset, RegLocation arg0,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700616 int arg1, bool safepoint_pc);
Ian Rogers468532e2013-08-05 10:56:33 -0700617 void CallRuntimeHelperImmReg(ThreadOffset helper_offset, int arg0, int arg1,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700618 bool safepoint_pc);
Ian Rogers468532e2013-08-05 10:56:33 -0700619 void CallRuntimeHelperRegImm(ThreadOffset helper_offset, int arg0, int arg1,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700620 bool safepoint_pc);
Ian Rogers468532e2013-08-05 10:56:33 -0700621 void CallRuntimeHelperImmMethod(ThreadOffset helper_offset, int arg0,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700622 bool safepoint_pc);
Hiroshi Yamauchibe1ca552014-01-15 11:46:48 -0800623 void CallRuntimeHelperRegMethod(ThreadOffset helper_offset, int arg0, bool safepoint_pc);
Hiroshi Yamauchibb8f0ab2014-01-27 16:50:29 -0800624 void CallRuntimeHelperRegMethodRegLocation(ThreadOffset helper_offset, int arg0,
625 RegLocation arg2, bool safepoint_pc);
Ian Rogers468532e2013-08-05 10:56:33 -0700626 void CallRuntimeHelperRegLocationRegLocation(ThreadOffset helper_offset,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700627 RegLocation arg0, RegLocation arg1,
628 bool safepoint_pc);
Ian Rogers468532e2013-08-05 10:56:33 -0700629 void CallRuntimeHelperRegReg(ThreadOffset helper_offset, int arg0, int arg1,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700630 bool safepoint_pc);
Ian Rogers468532e2013-08-05 10:56:33 -0700631 void CallRuntimeHelperRegRegImm(ThreadOffset helper_offset, int arg0, int arg1,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700632 int arg2, bool safepoint_pc);
Ian Rogers468532e2013-08-05 10:56:33 -0700633 void CallRuntimeHelperImmMethodRegLocation(ThreadOffset helper_offset, int arg0,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700634 RegLocation arg2, bool safepoint_pc);
Ian Rogers468532e2013-08-05 10:56:33 -0700635 void CallRuntimeHelperImmMethodImm(ThreadOffset helper_offset, int arg0, int arg2,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700636 bool safepoint_pc);
Ian Rogers468532e2013-08-05 10:56:33 -0700637 void CallRuntimeHelperImmRegLocationRegLocation(ThreadOffset helper_offset,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700638 int arg0, RegLocation arg1, RegLocation arg2,
639 bool safepoint_pc);
Ian Rogersa9a82542013-10-04 11:17:26 -0700640 void CallRuntimeHelperRegLocationRegLocationRegLocation(ThreadOffset helper_offset,
641 RegLocation arg0, RegLocation arg1,
642 RegLocation arg2,
643 bool safepoint_pc);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700644 void GenInvoke(CallInfo* info);
Vladimir Marko3bc86152014-03-13 14:11:28 +0000645 void GenInvokeNoInline(CallInfo* info);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700646 void FlushIns(RegLocation* ArgLocs, RegLocation rl_method);
647 int GenDalvikArgsNoRange(CallInfo* info, int call_state, LIR** pcrLabel,
648 NextCallInsn next_call_insn,
649 const MethodReference& target_method,
650 uint32_t vtable_idx,
651 uintptr_t direct_code, uintptr_t direct_method, InvokeType type,
652 bool skip_this);
653 int GenDalvikArgsRange(CallInfo* info, int call_state, LIR** pcrLabel,
654 NextCallInsn next_call_insn,
655 const MethodReference& target_method,
656 uint32_t vtable_idx,
657 uintptr_t direct_code, uintptr_t direct_method, InvokeType type,
658 bool skip_this);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800659
660 /**
661 * @brief Used to determine the register location of destination.
662 * @details This is needed during generation of inline intrinsics because it finds destination of return,
663 * either the physical register or the target of move-result.
664 * @param info Information about the invoke.
665 * @return Returns the destination location.
666 */
Brian Carlstrom7940e442013-07-12 13:46:57 -0700667 RegLocation InlineTarget(CallInfo* info);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800668
669 /**
670 * @brief Used to determine the wide register location of destination.
671 * @see InlineTarget
672 * @param info Information about the invoke.
673 * @return Returns the destination location.
674 */
Brian Carlstrom7940e442013-07-12 13:46:57 -0700675 RegLocation InlineTargetWide(CallInfo* info);
676
677 bool GenInlinedCharAt(CallInfo* info);
678 bool GenInlinedStringIsEmptyOrLength(CallInfo* info, bool is_empty);
Vladimir Marko6bdf1ff2013-10-29 17:40:46 +0000679 bool GenInlinedReverseBytes(CallInfo* info, OpSize size);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700680 bool GenInlinedAbsInt(CallInfo* info);
681 bool GenInlinedAbsLong(CallInfo* info);
Yixin Shoudbb17e32014-02-07 05:09:30 -0800682 bool GenInlinedAbsFloat(CallInfo* info);
683 bool GenInlinedAbsDouble(CallInfo* info);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700684 bool GenInlinedFloatCvt(CallInfo* info);
685 bool GenInlinedDoubleCvt(CallInfo* info);
Mark Mendell4028a6c2014-02-19 20:06:20 -0800686 virtual bool GenInlinedIndexOf(CallInfo* info, bool zero_based);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700687 bool GenInlinedStringCompareTo(CallInfo* info);
688 bool GenInlinedCurrentThread(CallInfo* info);
689 bool GenInlinedUnsafeGet(CallInfo* info, bool is_long, bool is_volatile);
690 bool GenInlinedUnsafePut(CallInfo* info, bool is_long, bool is_object,
691 bool is_volatile, bool is_ordered);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700692 int LoadArgRegs(CallInfo* info, int call_state,
693 NextCallInsn next_call_insn,
694 const MethodReference& target_method,
695 uint32_t vtable_idx,
696 uintptr_t direct_code, uintptr_t direct_method, InvokeType type,
697 bool skip_this);
698
699 // Shared by all targets - implemented in gen_loadstore.cc.
700 RegLocation LoadCurrMethod();
701 void LoadCurrMethodDirect(int r_tgt);
702 LIR* LoadConstant(int r_dest, int value);
703 LIR* LoadWordDisp(int rBase, int displacement, int r_dest);
704 RegLocation LoadValue(RegLocation rl_src, RegisterClass op_kind);
705 RegLocation LoadValueWide(RegLocation rl_src, RegisterClass op_kind);
706 void LoadValueDirect(RegLocation rl_src, int r_dest);
707 void LoadValueDirectFixed(RegLocation rl_src, int r_dest);
708 void LoadValueDirectWide(RegLocation rl_src, int reg_lo, int reg_hi);
709 void LoadValueDirectWideFixed(RegLocation rl_src, int reg_lo, int reg_hi);
710 LIR* StoreWordDisp(int rBase, int displacement, int r_src);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800711
712 /**
713 * @brief Used to do the final store in the destination as per bytecode semantics.
714 * @param rl_dest The destination dalvik register location.
715 * @param rl_src The source register location. Can be either physical register or dalvik register.
716 */
Brian Carlstrom7940e442013-07-12 13:46:57 -0700717 void StoreValue(RegLocation rl_dest, RegLocation rl_src);
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800718
719 /**
720 * @brief Used to do the final store in a wide destination as per bytecode semantics.
721 * @see StoreValue
722 * @param rl_dest The destination dalvik register location.
723 * @param rl_src The source register location. Can be either physical register or dalvik register.
724 */
Brian Carlstrom7940e442013-07-12 13:46:57 -0700725 void StoreValueWide(RegLocation rl_dest, RegLocation rl_src);
726
Mark Mendelle02d48f2014-01-15 11:19:23 -0800727 /**
Mark Mendellfeb2b4e2014-01-28 12:59:49 -0800728 * @brief Used to do the final store to a destination as per bytecode semantics.
729 * @see StoreValue
730 * @param rl_dest The destination dalvik register location.
731 * @param rl_src The source register location. It must be kLocPhysReg
732 *
733 * This is used for x86 two operand computations, where we have computed the correct
734 * register value that now needs to be properly registered. This is used to avoid an
735 * extra register copy that would result if StoreValue was called.
736 */
737 void StoreFinalValue(RegLocation rl_dest, RegLocation rl_src);
738
739 /**
Mark Mendelle02d48f2014-01-15 11:19:23 -0800740 * @brief Used to do the final store in a wide destination as per bytecode semantics.
741 * @see StoreValueWide
742 * @param rl_dest The destination dalvik register location.
743 * @param rl_src The source register location. It must be kLocPhysReg
744 *
745 * This is used for x86 two operand computations, where we have computed the correct
746 * register values that now need to be properly registered. This is used to avoid an
747 * extra pair of register copies that would result if StoreValueWide was called.
748 */
749 void StoreFinalValueWide(RegLocation rl_dest, RegLocation rl_src);
750
Brian Carlstrom7940e442013-07-12 13:46:57 -0700751 // Shared by all targets - implemented in mir_to_lir.cc.
752 void CompileDalvikInstruction(MIR* mir, BasicBlock* bb, LIR* label_list);
753 void HandleExtendedMethodMIR(BasicBlock* bb, MIR* mir);
754 bool MethodBlockCodeGen(BasicBlock* bb);
Razvan A Lupusoru3bc01742014-02-06 13:18:43 -0800755 bool SpecialMIR2LIR(const InlineMethod& special);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700756 void MethodMIR2LIR();
757
Mark Mendell55d0eac2014-02-06 11:02:52 -0800758 /*
759 * @brief Load the address of the dex method into the register.
Jeff Hao49161ce2014-03-12 11:05:25 -0700760 * @param target_method The MethodReference of the method to be invoked.
Mark Mendell55d0eac2014-02-06 11:02:52 -0800761 * @param type How the method will be invoked.
762 * @param register that will contain the code address.
763 * @note register will be passed to TargetReg to get physical register.
764 */
Jeff Hao49161ce2014-03-12 11:05:25 -0700765 void LoadCodeAddress(const MethodReference& target_method, InvokeType type,
Mark Mendell55d0eac2014-02-06 11:02:52 -0800766 SpecialTargetRegister symbolic_reg);
767
768 /*
769 * @brief Load the Method* of a dex method into the register.
Jeff Hao49161ce2014-03-12 11:05:25 -0700770 * @param target_method The MethodReference of the method to be invoked.
Mark Mendell55d0eac2014-02-06 11:02:52 -0800771 * @param type How the method will be invoked.
772 * @param register that will contain the code address.
773 * @note register will be passed to TargetReg to get physical register.
774 */
Jeff Hao49161ce2014-03-12 11:05:25 -0700775 virtual void LoadMethodAddress(const MethodReference& target_method, InvokeType type,
Mark Mendell55d0eac2014-02-06 11:02:52 -0800776 SpecialTargetRegister symbolic_reg);
777
778 /*
779 * @brief Load the Class* of a Dex Class type into the register.
780 * @param type How the method will be invoked.
781 * @param register that will contain the code address.
782 * @note register will be passed to TargetReg to get physical register.
783 */
784 virtual void LoadClassType(uint32_t type_idx, SpecialTargetRegister symbolic_reg);
785
Mark Mendell766e9292014-01-27 07:55:47 -0800786 // Routines that work for the generic case, but may be overriden by target.
787 /*
788 * @brief Compare memory to immediate, and branch if condition true.
789 * @param cond The condition code that when true will branch to the target.
790 * @param temp_reg A temporary register that can be used if compare to memory is not
791 * supported by the architecture.
792 * @param base_reg The register holding the base address.
793 * @param offset The offset from the base.
794 * @param check_value The immediate to compare to.
795 * @returns The branch instruction that was generated.
796 */
797 virtual LIR* OpCmpMemImmBranch(ConditionCode cond, int temp_reg, int base_reg,
798 int offset, int check_value, LIR* target);
Brian Carlstrom7940e442013-07-12 13:46:57 -0700799
800 // Required for target - codegen helpers.
buzbee11b63d12013-08-27 07:34:17 -0700801 virtual bool SmallLiteralDivRem(Instruction::Code dalvik_opcode, bool is_div,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700802 RegLocation rl_src, RegLocation rl_dest, int lit) = 0;
Ian Rogers468532e2013-08-05 10:56:33 -0700803 virtual int LoadHelper(ThreadOffset offset) = 0;
Dave Allisonb373e092014-02-20 16:06:36 -0800804 virtual LIR* CheckSuspendUsingLoad() = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700805 virtual LIR* LoadBaseDisp(int rBase, int displacement, int r_dest, OpSize size, int s_reg) = 0;
806 virtual LIR* LoadBaseDispWide(int rBase, int displacement, int r_dest_lo, int r_dest_hi,
807 int s_reg) = 0;
808 virtual LIR* LoadBaseIndexed(int rBase, int r_index, int r_dest, int scale, OpSize size) = 0;
809 virtual LIR* LoadBaseIndexedDisp(int rBase, int r_index, int scale, int displacement,
810 int r_dest, int r_dest_hi, OpSize size, int s_reg) = 0;
811 virtual LIR* LoadConstantNoClobber(int r_dest, int value) = 0;
812 virtual LIR* LoadConstantWide(int r_dest_lo, int r_dest_hi, int64_t value) = 0;
813 virtual LIR* StoreBaseDisp(int rBase, int displacement, int r_src, OpSize size) = 0;
814 virtual LIR* StoreBaseDispWide(int rBase, int displacement, int r_src_lo, int r_src_hi) = 0;
815 virtual LIR* StoreBaseIndexed(int rBase, int r_index, int r_src, int scale, OpSize size) = 0;
816 virtual LIR* StoreBaseIndexedDisp(int rBase, int r_index, int scale, int displacement,
817 int r_src, int r_src_hi, OpSize size, int s_reg) = 0;
818 virtual void MarkGCCard(int val_reg, int tgt_addr_reg) = 0;
819
820 // Required for target - register utilities.
821 virtual bool IsFpReg(int reg) = 0;
822 virtual bool SameRegType(int reg1, int reg2) = 0;
823 virtual int AllocTypedTemp(bool fp_hint, int reg_class) = 0;
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000824 virtual RegStorage AllocTypedTempWide(bool fp_hint, int reg_class) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700825 virtual int S2d(int low_reg, int high_reg) = 0;
826 virtual int TargetReg(SpecialTargetRegister reg) = 0;
Razvan A Lupusoru3bc01742014-02-06 13:18:43 -0800827 virtual int GetArgMappingToPhysicalReg(int arg_num) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700828 virtual RegLocation GetReturnAlt() = 0;
829 virtual RegLocation GetReturnWideAlt() = 0;
830 virtual RegLocation LocCReturn() = 0;
831 virtual RegLocation LocCReturnDouble() = 0;
832 virtual RegLocation LocCReturnFloat() = 0;
833 virtual RegLocation LocCReturnWide() = 0;
834 virtual uint32_t FpRegMask() = 0;
835 virtual uint64_t GetRegMaskCommon(int reg) = 0;
836 virtual void AdjustSpillMask() = 0;
Vladimir Marko31c2aac2013-12-09 16:31:19 +0000837 virtual void ClobberCallerSave() = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700838 virtual void FlushReg(int reg) = 0;
839 virtual void FlushRegWide(int reg1, int reg2) = 0;
840 virtual void FreeCallTemps() = 0;
841 virtual void FreeRegLocTemps(RegLocation rl_keep, RegLocation rl_free) = 0;
842 virtual void LockCallTemps() = 0;
843 virtual void MarkPreservedSingle(int v_reg, int reg) = 0;
844 virtual void CompilerInitializeRegAlloc() = 0;
845
846 // Required for target - miscellaneous.
buzbeeb48819d2013-09-14 16:15:25 -0700847 virtual void AssembleLIR() = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700848 virtual void DumpResourceMask(LIR* lir, uint64_t mask, const char* prefix) = 0;
buzbeeb48819d2013-09-14 16:15:25 -0700849 virtual void SetupTargetResourceMasks(LIR* lir, uint64_t flags) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700850 virtual const char* GetTargetInstFmt(int opcode) = 0;
851 virtual const char* GetTargetInstName(int opcode) = 0;
852 virtual std::string BuildInsnString(const char* fmt, LIR* lir, unsigned char* base_addr) = 0;
853 virtual uint64_t GetPCUseDefEncoding() = 0;
854 virtual uint64_t GetTargetInstFlags(int opcode) = 0;
855 virtual int GetInsnSize(LIR* lir) = 0;
856 virtual bool IsUnconditionalBranch(LIR* lir) = 0;
857
858 // Required for target - Dalvik-level generators.
859 virtual void GenArithImmOpLong(Instruction::Code opcode, RegLocation rl_dest,
860 RegLocation rl_src1, RegLocation rl_src2) = 0;
Mark Mendelle02d48f2014-01-15 11:19:23 -0800861 virtual void GenMulLong(Instruction::Code,
862 RegLocation rl_dest, RegLocation rl_src1,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700863 RegLocation rl_src2) = 0;
Mark Mendelle02d48f2014-01-15 11:19:23 -0800864 virtual void GenAddLong(Instruction::Code,
865 RegLocation rl_dest, RegLocation rl_src1,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700866 RegLocation rl_src2) = 0;
Mark Mendelle02d48f2014-01-15 11:19:23 -0800867 virtual void GenAndLong(Instruction::Code,
868 RegLocation rl_dest, RegLocation rl_src1,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700869 RegLocation rl_src2) = 0;
870 virtual void GenArithOpDouble(Instruction::Code opcode,
871 RegLocation rl_dest, RegLocation rl_src1,
872 RegLocation rl_src2) = 0;
873 virtual void GenArithOpFloat(Instruction::Code opcode, RegLocation rl_dest,
874 RegLocation rl_src1, RegLocation rl_src2) = 0;
875 virtual void GenCmpFP(Instruction::Code opcode, RegLocation rl_dest,
876 RegLocation rl_src1, RegLocation rl_src2) = 0;
877 virtual void GenConversion(Instruction::Code opcode, RegLocation rl_dest,
878 RegLocation rl_src) = 0;
Vladimir Marko1c282e22013-11-21 14:49:47 +0000879 virtual bool GenInlinedCas(CallInfo* info, bool is_long, bool is_object) = 0;
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800880
881 /**
882 * @brief Used to generate code for intrinsic java\.lang\.Math methods min and max.
883 * @details This is also applicable for java\.lang\.StrictMath since it is a simple algorithm
884 * that applies on integers. The generated code will write the smallest or largest value
885 * directly into the destination register as specified by the invoke information.
886 * @param info Information about the invoke.
887 * @param is_min If true generates code that computes minimum. Otherwise computes maximum.
888 * @return Returns true if successfully generated
889 */
Brian Carlstrom7940e442013-07-12 13:46:57 -0700890 virtual bool GenInlinedMinMaxInt(CallInfo* info, bool is_min) = 0;
Razvan A Lupusorubd288c22013-12-20 17:27:23 -0800891
Brian Carlstrom7940e442013-07-12 13:46:57 -0700892 virtual bool GenInlinedSqrt(CallInfo* info) = 0;
Vladimir Markoe508a202013-11-04 15:24:22 +0000893 virtual bool GenInlinedPeek(CallInfo* info, OpSize size) = 0;
894 virtual bool GenInlinedPoke(CallInfo* info, OpSize size) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700895 virtual void GenNegLong(RegLocation rl_dest, RegLocation rl_src) = 0;
Mark Mendelle02d48f2014-01-15 11:19:23 -0800896 virtual void GenOrLong(Instruction::Code,
897 RegLocation rl_dest, RegLocation rl_src1,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700898 RegLocation rl_src2) = 0;
Mark Mendelle02d48f2014-01-15 11:19:23 -0800899 virtual void GenSubLong(Instruction::Code,
900 RegLocation rl_dest, RegLocation rl_src1,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700901 RegLocation rl_src2) = 0;
Mark Mendelle02d48f2014-01-15 11:19:23 -0800902 virtual void GenXorLong(Instruction::Code,
903 RegLocation rl_dest, RegLocation rl_src1,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700904 RegLocation rl_src2) = 0;
905 virtual LIR* GenRegMemCheck(ConditionCode c_code, int reg1, int base,
906 int offset, ThrowKind kind) = 0;
907 virtual RegLocation GenDivRem(RegLocation rl_dest, int reg_lo, int reg_hi,
908 bool is_div) = 0;
909 virtual RegLocation GenDivRemLit(RegLocation rl_dest, int reg_lo, int lit,
910 bool is_div) = 0;
Mark Mendell2bf31e62014-01-23 12:13:40 -0800911 /*
912 * @brief Generate an integer div or rem operation by a literal.
913 * @param rl_dest Destination Location.
914 * @param rl_src1 Numerator Location.
915 * @param rl_src2 Divisor Location.
916 * @param is_div 'true' if this is a division, 'false' for a remainder.
917 * @param check_zero 'true' if an exception should be generated if the divisor is 0.
918 */
919 virtual RegLocation GenDivRem(RegLocation rl_dest, RegLocation rl_src1,
920 RegLocation rl_src2, bool is_div, bool check_zero) = 0;
921 /*
922 * @brief Generate an integer div or rem operation by a literal.
923 * @param rl_dest Destination Location.
924 * @param rl_src Numerator Location.
925 * @param lit Divisor.
926 * @param is_div 'true' if this is a division, 'false' for a remainder.
927 */
928 virtual RegLocation GenDivRemLit(RegLocation rl_dest, RegLocation rl_src1,
929 int lit, bool is_div) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700930 virtual void GenCmpLong(RegLocation rl_dest, RegLocation rl_src1,
931 RegLocation rl_src2) = 0;
Razvan A Lupusoru090dd442013-12-20 14:35:03 -0800932
933 /**
934 * @brief Used for generating code that throws ArithmeticException if both registers are zero.
935 * @details This is used for generating DivideByZero checks when divisor is held in two separate registers.
936 * @param reg_lo The register holding the lower 32-bits.
937 * @param reg_hi The register holding the upper 32-bits.
938 */
Brian Carlstrom7940e442013-07-12 13:46:57 -0700939 virtual void GenDivZeroCheck(int reg_lo, int reg_hi) = 0;
Razvan A Lupusoru090dd442013-12-20 14:35:03 -0800940
Brian Carlstrom7940e442013-07-12 13:46:57 -0700941 virtual void GenEntrySequence(RegLocation* ArgLocs,
942 RegLocation rl_method) = 0;
943 virtual void GenExitSequence() = 0;
buzbee0d829482013-10-11 15:24:55 -0700944 virtual void GenFillArrayData(DexOffset table_offset,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700945 RegLocation rl_src) = 0;
946 virtual void GenFusedFPCmpBranch(BasicBlock* bb, MIR* mir, bool gt_bias,
947 bool is_double) = 0;
948 virtual void GenFusedLongCmpBranch(BasicBlock* bb, MIR* mir) = 0;
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800949
950 /**
951 * @brief Lowers the kMirOpSelect MIR into LIR.
952 * @param bb The basic block in which the MIR is from.
953 * @param mir The MIR whose opcode is kMirOpSelect.
954 */
Brian Carlstrom7940e442013-07-12 13:46:57 -0700955 virtual void GenSelect(BasicBlock* bb, MIR* mir) = 0;
Razvan A Lupusorue27b3bf2014-01-23 09:41:45 -0800956
Razvan A Lupusoru99ad7232014-02-25 17:41:08 -0800957 /**
958 * @brief Used to generate a memory barrier in an architecture specific way.
959 * @details The last generated LIR will be considered for use as barrier. Namely,
960 * if the last LIR can be updated in a way where it will serve the semantics of
961 * barrier, then it will be used as such. Otherwise, a new LIR will be generated
962 * that can keep the semantics.
963 * @param barrier_kind The kind of memory barrier to generate.
964 */
Brian Carlstrom7940e442013-07-12 13:46:57 -0700965 virtual void GenMemBarrier(MemBarrierKind barrier_kind) = 0;
Razvan A Lupusoru99ad7232014-02-25 17:41:08 -0800966
Brian Carlstrom7940e442013-07-12 13:46:57 -0700967 virtual void GenMoveException(RegLocation rl_dest) = 0;
968 virtual void GenMultiplyByTwoBitMultiplier(RegLocation rl_src,
969 RegLocation rl_result, int lit, int first_bit,
970 int second_bit) = 0;
971 virtual void GenNegDouble(RegLocation rl_dest, RegLocation rl_src) = 0;
972 virtual void GenNegFloat(RegLocation rl_dest, RegLocation rl_src) = 0;
buzbee0d829482013-10-11 15:24:55 -0700973 virtual void GenPackedSwitch(MIR* mir, DexOffset table_offset,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700974 RegLocation rl_src) = 0;
buzbee0d829482013-10-11 15:24:55 -0700975 virtual void GenSparseSwitch(MIR* mir, DexOffset table_offset,
Brian Carlstrom7940e442013-07-12 13:46:57 -0700976 RegLocation rl_src) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700977 virtual void GenArrayGet(int opt_flags, OpSize size, RegLocation rl_array,
978 RegLocation rl_index, RegLocation rl_dest, int scale) = 0;
979 virtual void GenArrayPut(int opt_flags, OpSize size, RegLocation rl_array,
Ian Rogersa9a82542013-10-04 11:17:26 -0700980 RegLocation rl_index, RegLocation rl_src, int scale,
981 bool card_mark) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700982 virtual void GenShiftImmOpLong(Instruction::Code opcode,
983 RegLocation rl_dest, RegLocation rl_src1,
984 RegLocation rl_shift) = 0;
985
986 // Required for target - single operation generators.
987 virtual LIR* OpUnconditionalBranch(LIR* target) = 0;
buzbee0d829482013-10-11 15:24:55 -0700988 virtual LIR* OpCmpBranch(ConditionCode cond, int src1, int src2, LIR* target) = 0;
989 virtual LIR* OpCmpImmBranch(ConditionCode cond, int reg, int check_value, LIR* target) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700990 virtual LIR* OpCondBranch(ConditionCode cc, LIR* target) = 0;
buzbee0d829482013-10-11 15:24:55 -0700991 virtual LIR* OpDecAndBranch(ConditionCode c_code, int reg, LIR* target) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -0700992 virtual LIR* OpFpRegCopy(int r_dest, int r_src) = 0;
993 virtual LIR* OpIT(ConditionCode cond, const char* guide) = 0;
994 virtual LIR* OpMem(OpKind op, int rBase, int disp) = 0;
995 virtual LIR* OpPcRelLoad(int reg, LIR* target) = 0;
996 virtual LIR* OpReg(OpKind op, int r_dest_src) = 0;
997 virtual LIR* OpRegCopy(int r_dest, int r_src) = 0;
998 virtual LIR* OpRegCopyNoInsert(int r_dest, int r_src) = 0;
999 virtual LIR* OpRegImm(OpKind op, int r_dest_src1, int value) = 0;
1000 virtual LIR* OpRegMem(OpKind op, int r_dest, int rBase, int offset) = 0;
1001 virtual LIR* OpRegReg(OpKind op, int r_dest_src1, int r_src2) = 0;
Razvan A Lupusorubd288c22013-12-20 17:27:23 -08001002
1003 /**
Razvan A Lupusoru2c498d12014-01-29 16:02:57 -08001004 * @brief Used to generate an LIR that does a load from mem to reg.
1005 * @param r_dest The destination physical register.
1006 * @param r_base The base physical register for memory operand.
1007 * @param offset The displacement for memory operand.
1008 * @param move_type Specification on the move desired (size, alignment, register kind).
1009 * @return Returns the generate move LIR.
1010 */
1011 virtual LIR* OpMovRegMem(int r_dest, int r_base, int offset, MoveType move_type) = 0;
1012
1013 /**
1014 * @brief Used to generate an LIR that does a store from reg to mem.
1015 * @param r_base The base physical register for memory operand.
1016 * @param offset The displacement for memory operand.
1017 * @param r_src The destination physical register.
1018 * @param bytes_to_move The number of bytes to move.
1019 * @param is_aligned Whether the memory location is known to be aligned.
1020 * @return Returns the generate move LIR.
1021 */
1022 virtual LIR* OpMovMemReg(int r_base, int offset, int r_src, MoveType move_type) = 0;
1023
1024 /**
Razvan A Lupusorubd288c22013-12-20 17:27:23 -08001025 * @brief Used for generating a conditional register to register operation.
1026 * @param op The opcode kind.
1027 * @param cc The condition code that when true will perform the opcode.
1028 * @param r_dest The destination physical register.
1029 * @param r_src The source physical register.
1030 * @return Returns the newly created LIR or null in case of creation failure.
1031 */
1032 virtual LIR* OpCondRegReg(OpKind op, ConditionCode cc, int r_dest, int r_src) = 0;
1033
Brian Carlstrom7940e442013-07-12 13:46:57 -07001034 virtual LIR* OpRegRegImm(OpKind op, int r_dest, int r_src1, int value) = 0;
buzbee0d829482013-10-11 15:24:55 -07001035 virtual LIR* OpRegRegReg(OpKind op, int r_dest, int r_src1, int r_src2) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -07001036 virtual LIR* OpTestSuspend(LIR* target) = 0;
Ian Rogers468532e2013-08-05 10:56:33 -07001037 virtual LIR* OpThreadMem(OpKind op, ThreadOffset thread_offset) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -07001038 virtual LIR* OpVldm(int rBase, int count) = 0;
1039 virtual LIR* OpVstm(int rBase, int count) = 0;
buzbee0d829482013-10-11 15:24:55 -07001040 virtual void OpLea(int rBase, int reg1, int reg2, int scale, int offset) = 0;
1041 virtual void OpRegCopyWide(int dest_lo, int dest_hi, int src_lo, int src_hi) = 0;
Ian Rogers468532e2013-08-05 10:56:33 -07001042 virtual void OpTlsCmp(ThreadOffset offset, int val) = 0;
Brian Carlstrom7940e442013-07-12 13:46:57 -07001043 virtual bool InexpensiveConstantInt(int32_t value) = 0;
1044 virtual bool InexpensiveConstantFloat(int32_t value) = 0;
1045 virtual bool InexpensiveConstantLong(int64_t value) = 0;
1046 virtual bool InexpensiveConstantDouble(int64_t value) = 0;
1047
Ian Rogersd9c4fc92013-10-01 19:45:43 -07001048 // May be optimized by targets.
1049 virtual void GenMonitorEnter(int opt_flags, RegLocation rl_src);
1050 virtual void GenMonitorExit(int opt_flags, RegLocation rl_src);
1051
Brian Carlstrom7940e442013-07-12 13:46:57 -07001052 // Temp workaround
1053 void Workaround7250540(RegLocation rl_dest, int value);
1054
1055 protected:
1056 Mir2Lir(CompilationUnit* cu, MIRGraph* mir_graph, ArenaAllocator* arena);
1057
1058 CompilationUnit* GetCompilationUnit() {
1059 return cu_;
1060 }
Mark Mendell4708dcd2014-01-22 09:05:18 -08001061 /*
1062 * @brief Returns the index of the lowest set bit in 'x'.
1063 * @param x Value to be examined.
1064 * @returns The bit number of the lowest bit set in the value.
1065 */
1066 int32_t LowestSetBit(uint64_t x);
1067 /*
1068 * @brief Is this value a power of two?
1069 * @param x Value to be examined.
1070 * @returns 'true' if only 1 bit is set in the value.
1071 */
1072 bool IsPowerOfTwo(uint64_t x);
1073 /*
1074 * @brief Do these SRs overlap?
1075 * @param rl_op1 One RegLocation
1076 * @param rl_op2 The other RegLocation
1077 * @return 'true' if the VR pairs overlap
1078 *
1079 * Check to see if a result pair has a misaligned overlap with an operand pair. This
1080 * is not usual for dx to generate, but it is legal (for now). In a future rev of
1081 * dex, we'll want to make this case illegal.
1082 */
1083 bool BadOverlap(RegLocation rl_op1, RegLocation rl_op2);
Brian Carlstrom7940e442013-07-12 13:46:57 -07001084
Mark Mendelle02d48f2014-01-15 11:19:23 -08001085 /*
1086 * @brief Force a location (in a register) into a temporary register
1087 * @param loc location of result
1088 * @returns update location
1089 */
1090 RegLocation ForceTemp(RegLocation loc);
1091
1092 /*
1093 * @brief Force a wide location (in registers) into temporary registers
1094 * @param loc location of result
1095 * @returns update location
1096 */
1097 RegLocation ForceTempWide(RegLocation loc);
1098
Mark Mendelldf8ee2e2014-01-27 16:37:47 -08001099 virtual void GenInstanceofFinal(bool use_declaring_class, uint32_t type_idx,
1100 RegLocation rl_dest, RegLocation rl_src);
1101
Dave Allisonbcec6fb2014-01-17 12:52:22 -08001102 void AddSlowPath(LIRSlowPath* slowpath);
1103
Mark Mendell6607d972014-02-10 06:54:18 -08001104 virtual void GenInstanceofCallingHelper(bool needs_access_check, bool type_known_final,
1105 bool type_known_abstract, bool use_declaring_class,
1106 bool can_assume_type_is_in_dex_cache,
1107 uint32_t type_idx, RegLocation rl_dest,
1108 RegLocation rl_src);
Mark Mendellae9fd932014-02-10 16:14:35 -08001109 /*
1110 * @brief Generate the debug_frame FDE information if possible.
1111 * @returns pointer to vector containg CFE information, or NULL.
1112 */
1113 virtual std::vector<uint8_t>* ReturnCallFrameInformation();
Brian Carlstrom7940e442013-07-12 13:46:57 -07001114
Razvan A Lupusoru3bc01742014-02-06 13:18:43 -08001115 /**
1116 * @brief Used to insert marker that can be used to associate MIR with LIR.
1117 * @details Only inserts marker if verbosity is enabled.
1118 * @param mir The mir that is currently being generated.
1119 */
1120 void GenPrintLabel(MIR* mir);
1121
1122 /**
1123 * @brief Used to generate return sequence when there is no frame.
1124 * @details Assumes that the return registers have already been populated.
1125 */
1126 virtual void GenSpecialExitSequence() = 0;
1127
1128 /**
1129 * @brief Used to generate code for special methods that are known to be
1130 * small enough to work in frameless mode.
1131 * @param bb The basic block of the first MIR.
1132 * @param mir The first MIR of the special method.
1133 * @param special Information about the special method.
1134 * @return Returns whether or not this was handled successfully. Returns false
1135 * if caller should punt to normal MIR2LIR conversion.
1136 */
1137 virtual bool GenSpecialCase(BasicBlock* bb, MIR* mir, const InlineMethod& special);
1138
Mark Mendell6607d972014-02-10 06:54:18 -08001139 private:
Brian Carlstrom7940e442013-07-12 13:46:57 -07001140 void ClobberBody(RegisterInfo* p);
1141 void ResetDefBody(RegisterInfo* p) {
1142 p->def_start = NULL;
1143 p->def_end = NULL;
1144 }
1145
Dave Allisonbcec6fb2014-01-17 12:52:22 -08001146 void SetCurrentDexPc(DexOffset dexpc) {
1147 current_dalvik_offset_ = dexpc;
1148 }
1149
Razvan A Lupusoru3bc01742014-02-06 13:18:43 -08001150 /**
1151 * @brief Used to lock register if argument at in_position was passed that way.
1152 * @details Does nothing if the argument is passed via stack.
1153 * @param in_position The argument number whose register to lock.
1154 * @param wide Whether the argument is wide.
1155 */
1156 void LockArg(int in_position, bool wide = false);
1157
1158 /**
1159 * @brief Used to load VR argument to a physical register.
1160 * @details The load is only done if the argument is not already in physical register.
1161 * LockArg must have been previously called.
1162 * @param in_position The argument number to load.
1163 * @param wide Whether the argument is 64-bit or not.
1164 * @return Returns the register (or register pair) for the loaded argument.
1165 */
1166 int LoadArg(int in_position, bool wide = false);
1167
1168 /**
1169 * @brief Used to load a VR argument directly to a specified register location.
1170 * @param in_position The argument number to place in register.
1171 * @param rl_dest The register location where to place argument.
1172 */
1173 void LoadArgDirect(int in_position, RegLocation rl_dest);
1174
1175 /**
1176 * @brief Used to generate LIR for special getter method.
1177 * @param mir The mir that represents the iget.
1178 * @param special Information about the special getter method.
1179 * @return Returns whether LIR was successfully generated.
1180 */
1181 bool GenSpecialIGet(MIR* mir, const InlineMethod& special);
1182
1183 /**
1184 * @brief Used to generate LIR for special setter method.
1185 * @param mir The mir that represents the iput.
1186 * @param special Information about the special setter method.
1187 * @return Returns whether LIR was successfully generated.
1188 */
1189 bool GenSpecialIPut(MIR* mir, const InlineMethod& special);
1190
1191 /**
1192 * @brief Used to generate LIR for special return-args method.
1193 * @param mir The mir that represents the return of argument.
1194 * @param special Information about the special return-args method.
1195 * @return Returns whether LIR was successfully generated.
1196 */
1197 bool GenSpecialIdentity(MIR* mir, const InlineMethod& special);
1198
Dave Allisonbcec6fb2014-01-17 12:52:22 -08001199
Brian Carlstrom7940e442013-07-12 13:46:57 -07001200 public:
1201 // TODO: add accessors for these.
1202 LIR* literal_list_; // Constants.
1203 LIR* method_literal_list_; // Method literals requiring patching.
Hiroshi Yamauchibe1ca552014-01-15 11:46:48 -08001204 LIR* class_literal_list_; // Class literals requiring patching.
Brian Carlstrom7940e442013-07-12 13:46:57 -07001205 LIR* code_literal_list_; // Code literals requiring patching.
buzbeeb48819d2013-09-14 16:15:25 -07001206 LIR* first_fixup_; // Doubly-linked list of LIR nodes requiring fixups.
Brian Carlstrom7940e442013-07-12 13:46:57 -07001207
1208 protected:
1209 CompilationUnit* const cu_;
1210 MIRGraph* const mir_graph_;
1211 GrowableArray<SwitchTable*> switch_tables_;
1212 GrowableArray<FillArrayData*> fill_array_data_;
1213 GrowableArray<LIR*> throw_launchpads_;
1214 GrowableArray<LIR*> suspend_launchpads_;
buzbeebd663de2013-09-10 15:41:31 -07001215 GrowableArray<RegisterInfo*> tempreg_info_;
1216 GrowableArray<RegisterInfo*> reginfo_map_;
buzbee0d829482013-10-11 15:24:55 -07001217 GrowableArray<void*> pointer_storage_;
buzbee0d829482013-10-11 15:24:55 -07001218 CodeOffset current_code_offset_; // Working byte offset of machine instructons.
1219 CodeOffset data_offset_; // starting offset of literal pool.
1220 size_t total_size_; // header + code size.
Brian Carlstrom7940e442013-07-12 13:46:57 -07001221 LIR* block_label_list_;
1222 PromotionMap* promotion_map_;
1223 /*
1224 * TODO: The code generation utilities don't have a built-in
1225 * mechanism to propagate the original Dalvik opcode address to the
1226 * associated generated instructions. For the trace compiler, this wasn't
1227 * necessary because the interpreter handled all throws and debugging
1228 * requests. For now we'll handle this by placing the Dalvik offset
1229 * in the CompilationUnit struct before codegen for each instruction.
1230 * The low-level LIR creation utilites will pull it from here. Rework this.
1231 */
buzbee0d829482013-10-11 15:24:55 -07001232 DexOffset current_dalvik_offset_;
1233 size_t estimated_native_code_size_; // Just an estimate; used to reserve code_buffer_ size.
Brian Carlstrom7940e442013-07-12 13:46:57 -07001234 RegisterPool* reg_pool_;
1235 /*
1236 * Sanity checking for the register temp tracking. The same ssa
1237 * name should never be associated with one temp register per
1238 * instruction compilation.
1239 */
1240 int live_sreg_;
1241 CodeBuffer code_buffer_;
Ian Rogers96faf5b2013-08-09 22:05:32 -07001242 // The encoding mapping table data (dex -> pc offset and pc offset -> dex) with a size prefix.
Vladimir Marko06606b92013-12-02 15:31:08 +00001243 std::vector<uint8_t> encoded_mapping_table_;
Brian Carlstrom7940e442013-07-12 13:46:57 -07001244 std::vector<uint32_t> core_vmap_table_;
1245 std::vector<uint32_t> fp_vmap_table_;
1246 std::vector<uint8_t> native_gc_map_;
1247 int num_core_spills_;
1248 int num_fp_spills_;
1249 int frame_size_;
1250 unsigned int core_spill_mask_;
1251 unsigned int fp_spill_mask_;
1252 LIR* first_lir_insn_;
1253 LIR* last_lir_insn_;
Dave Allisonbcec6fb2014-01-17 12:52:22 -08001254
1255 GrowableArray<LIRSlowPath*> slow_paths_;
Brian Carlstrom7940e442013-07-12 13:46:57 -07001256}; // Class Mir2Lir
1257
1258} // namespace art
1259
Brian Carlstromfc0e3212013-07-17 14:40:12 -07001260#endif // ART_COMPILER_DEX_QUICK_MIR_TO_LIR_H_