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buzbee311ca162013-02-28 15:56:43 -08001/*
2 * Copyright (C) 2013 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_MIR_GRAPH_H_
18#define ART_COMPILER_DEX_MIR_GRAPH_H_
buzbee311ca162013-02-28 15:56:43 -080019
Ian Rogers0f678472014-03-10 16:18:37 -070020#include <stdint.h>
21
buzbee311ca162013-02-28 15:56:43 -080022#include "dex_file.h"
23#include "dex_instruction.h"
24#include "compiler_ir.h"
Vladimir Markobe0e5462014-02-26 11:24:15 +000025#include "invoke_type.h"
Vladimir Markof096aad2014-01-23 15:51:58 +000026#include "mir_field_info.h"
27#include "mir_method_info.h"
Nicolas Geoffray0e336432014-02-26 18:24:38 +000028#include "utils/arena_bit_vector.h"
Nicolas Geoffray818f2102014-02-18 16:43:35 +000029#include "utils/growable_array.h"
Bill Buzbee00e1ec62014-02-27 23:44:13 +000030#include "reg_storage.h"
buzbee311ca162013-02-28 15:56:43 -080031
32namespace art {
33
buzbeeee17e0a2013-07-31 10:47:37 -070034enum InstructionAnalysisAttributePos {
35 kUninterestingOp = 0,
36 kArithmeticOp,
37 kFPOp,
38 kSingleOp,
39 kDoubleOp,
40 kIntOp,
41 kLongOp,
42 kBranchOp,
43 kInvokeOp,
44 kArrayOp,
45 kHeavyweightOp,
46 kSimpleConstOp,
buzbeefe9ca402013-08-21 09:48:11 -070047 kMoveOp,
48 kSwitch
buzbeeee17e0a2013-07-31 10:47:37 -070049};
50
51#define AN_NONE (1 << kUninterestingOp)
52#define AN_MATH (1 << kArithmeticOp)
53#define AN_FP (1 << kFPOp)
54#define AN_LONG (1 << kLongOp)
55#define AN_INT (1 << kIntOp)
56#define AN_SINGLE (1 << kSingleOp)
57#define AN_DOUBLE (1 << kDoubleOp)
58#define AN_FLOATMATH (1 << kFPOp)
59#define AN_BRANCH (1 << kBranchOp)
60#define AN_INVOKE (1 << kInvokeOp)
61#define AN_ARRAYOP (1 << kArrayOp)
62#define AN_HEAVYWEIGHT (1 << kHeavyweightOp)
63#define AN_SIMPLECONST (1 << kSimpleConstOp)
64#define AN_MOVE (1 << kMoveOp)
buzbeefe9ca402013-08-21 09:48:11 -070065#define AN_SWITCH (1 << kSwitch)
buzbeeee17e0a2013-07-31 10:47:37 -070066#define AN_COMPUTATIONAL (AN_MATH | AN_ARRAYOP | AN_MOVE | AN_SIMPLECONST)
67
buzbee311ca162013-02-28 15:56:43 -080068enum DataFlowAttributePos {
69 kUA = 0,
70 kUB,
71 kUC,
72 kAWide,
73 kBWide,
74 kCWide,
75 kDA,
76 kIsMove,
77 kSetsConst,
78 kFormat35c,
79 kFormat3rc,
80 kNullCheckSrc0, // Null check of uses[0].
81 kNullCheckSrc1, // Null check of uses[1].
82 kNullCheckSrc2, // Null check of uses[2].
83 kNullCheckOut0, // Null check out outgoing arg0.
84 kDstNonNull, // May assume dst is non-null.
85 kRetNonNull, // May assume retval is non-null.
86 kNullTransferSrc0, // Object copy src[0] -> dst.
87 kNullTransferSrcN, // Phi null check state transfer.
88 kRangeCheckSrc1, // Range check of uses[1].
89 kRangeCheckSrc2, // Range check of uses[2].
90 kRangeCheckSrc3, // Range check of uses[3].
91 kFPA,
92 kFPB,
93 kFPC,
94 kCoreA,
95 kCoreB,
96 kCoreC,
97 kRefA,
98 kRefB,
99 kRefC,
100 kUsesMethodStar, // Implicit use of Method*.
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000101 kUsesIField, // Accesses an instance field (IGET/IPUT).
102 kUsesSField, // Accesses a static field (SGET/SPUT).
buzbee1da1e2f2013-11-15 13:37:01 -0800103 kDoLVN, // Worth computing local value numbers.
buzbee311ca162013-02-28 15:56:43 -0800104};
105
Ian Rogers0f678472014-03-10 16:18:37 -0700106#define DF_NOP UINT64_C(0)
107#define DF_UA (UINT64_C(1) << kUA)
108#define DF_UB (UINT64_C(1) << kUB)
109#define DF_UC (UINT64_C(1) << kUC)
110#define DF_A_WIDE (UINT64_C(1) << kAWide)
111#define DF_B_WIDE (UINT64_C(1) << kBWide)
112#define DF_C_WIDE (UINT64_C(1) << kCWide)
113#define DF_DA (UINT64_C(1) << kDA)
114#define DF_IS_MOVE (UINT64_C(1) << kIsMove)
115#define DF_SETS_CONST (UINT64_C(1) << kSetsConst)
116#define DF_FORMAT_35C (UINT64_C(1) << kFormat35c)
117#define DF_FORMAT_3RC (UINT64_C(1) << kFormat3rc)
118#define DF_NULL_CHK_0 (UINT64_C(1) << kNullCheckSrc0)
119#define DF_NULL_CHK_1 (UINT64_C(1) << kNullCheckSrc1)
120#define DF_NULL_CHK_2 (UINT64_C(1) << kNullCheckSrc2)
121#define DF_NULL_CHK_OUT0 (UINT64_C(1) << kNullCheckOut0)
122#define DF_NON_NULL_DST (UINT64_C(1) << kDstNonNull)
123#define DF_NON_NULL_RET (UINT64_C(1) << kRetNonNull)
124#define DF_NULL_TRANSFER_0 (UINT64_C(1) << kNullTransferSrc0)
125#define DF_NULL_TRANSFER_N (UINT64_C(1) << kNullTransferSrcN)
126#define DF_RANGE_CHK_1 (UINT64_C(1) << kRangeCheckSrc1)
127#define DF_RANGE_CHK_2 (UINT64_C(1) << kRangeCheckSrc2)
128#define DF_RANGE_CHK_3 (UINT64_C(1) << kRangeCheckSrc3)
129#define DF_FP_A (UINT64_C(1) << kFPA)
130#define DF_FP_B (UINT64_C(1) << kFPB)
131#define DF_FP_C (UINT64_C(1) << kFPC)
132#define DF_CORE_A (UINT64_C(1) << kCoreA)
133#define DF_CORE_B (UINT64_C(1) << kCoreB)
134#define DF_CORE_C (UINT64_C(1) << kCoreC)
135#define DF_REF_A (UINT64_C(1) << kRefA)
136#define DF_REF_B (UINT64_C(1) << kRefB)
137#define DF_REF_C (UINT64_C(1) << kRefC)
138#define DF_UMS (UINT64_C(1) << kUsesMethodStar)
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000139#define DF_IFIELD (UINT64_C(1) << kUsesIField)
140#define DF_SFIELD (UINT64_C(1) << kUsesSField)
Ian Rogers0f678472014-03-10 16:18:37 -0700141#define DF_LVN (UINT64_C(1) << kDoLVN)
buzbee311ca162013-02-28 15:56:43 -0800142
143#define DF_HAS_USES (DF_UA | DF_UB | DF_UC)
144
145#define DF_HAS_DEFS (DF_DA)
146
147#define DF_HAS_NULL_CHKS (DF_NULL_CHK_0 | \
148 DF_NULL_CHK_1 | \
149 DF_NULL_CHK_2 | \
150 DF_NULL_CHK_OUT0)
151
152#define DF_HAS_RANGE_CHKS (DF_RANGE_CHK_1 | \
153 DF_RANGE_CHK_2 | \
154 DF_RANGE_CHK_3)
155
156#define DF_HAS_NR_CHKS (DF_HAS_NULL_CHKS | \
157 DF_HAS_RANGE_CHKS)
158
159#define DF_A_IS_REG (DF_UA | DF_DA)
160#define DF_B_IS_REG (DF_UB)
161#define DF_C_IS_REG (DF_UC)
162#define DF_IS_GETTER_OR_SETTER (DF_IS_GETTER | DF_IS_SETTER)
163#define DF_USES_FP (DF_FP_A | DF_FP_B | DF_FP_C)
Bill Buzbee0b1191c2013-10-28 22:11:59 +0000164#define DF_NULL_TRANSFER (DF_NULL_TRANSFER_0 | DF_NULL_TRANSFER_N)
buzbee1fd33462013-03-25 13:40:45 -0700165enum OatMethodAttributes {
166 kIsLeaf, // Method is leaf.
167 kHasLoop, // Method contains simple loop.
168};
169
170#define METHOD_IS_LEAF (1 << kIsLeaf)
171#define METHOD_HAS_LOOP (1 << kHasLoop)
172
173// Minimum field size to contain Dalvik v_reg number.
174#define VREG_NUM_WIDTH 16
175
176#define INVALID_SREG (-1)
177#define INVALID_VREG (0xFFFFU)
buzbee1fd33462013-03-25 13:40:45 -0700178#define INVALID_OFFSET (0xDEADF00FU)
179
buzbee1fd33462013-03-25 13:40:45 -0700180#define MIR_IGNORE_NULL_CHECK (1 << kMIRIgnoreNullCheck)
181#define MIR_NULL_CHECK_ONLY (1 << kMIRNullCheckOnly)
182#define MIR_IGNORE_RANGE_CHECK (1 << kMIRIgnoreRangeCheck)
183#define MIR_RANGE_CHECK_ONLY (1 << kMIRRangeCheckOnly)
Vladimir Markobfea9c22014-01-17 17:49:33 +0000184#define MIR_IGNORE_CLINIT_CHECK (1 << kMIRIgnoreClInitCheck)
buzbee1fd33462013-03-25 13:40:45 -0700185#define MIR_INLINED (1 << kMIRInlined)
186#define MIR_INLINED_PRED (1 << kMIRInlinedPred)
187#define MIR_CALLEE (1 << kMIRCallee)
188#define MIR_IGNORE_SUSPEND_CHECK (1 << kMIRIgnoreSuspendCheck)
189#define MIR_DUP (1 << kMIRDup)
190
buzbee862a7602013-04-05 10:58:54 -0700191#define BLOCK_NAME_LEN 80
192
buzbee0d829482013-10-11 15:24:55 -0700193typedef uint16_t BasicBlockId;
194static const BasicBlockId NullBasicBlockId = 0;
195
buzbee1fd33462013-03-25 13:40:45 -0700196/*
197 * In general, vreg/sreg describe Dalvik registers that originated with dx. However,
198 * it is useful to have compiler-generated temporary registers and have them treated
199 * in the same manner as dx-generated virtual registers. This struct records the SSA
200 * name of compiler-introduced temporaries.
201 */
202struct CompilerTemp {
Razvan A Lupusoruda7a69b2014-01-08 15:09:50 -0800203 int32_t v_reg; // Virtual register number for temporary.
204 int32_t s_reg_low; // SSA name for low Dalvik word.
205};
206
207enum CompilerTempType {
208 kCompilerTempVR, // A virtual register temporary.
209 kCompilerTempSpecialMethodPtr, // Temporary that keeps track of current method pointer.
buzbee1fd33462013-03-25 13:40:45 -0700210};
211
212// When debug option enabled, records effectiveness of null and range check elimination.
213struct Checkstats {
buzbee0d829482013-10-11 15:24:55 -0700214 int32_t null_checks;
215 int32_t null_checks_eliminated;
216 int32_t range_checks;
217 int32_t range_checks_eliminated;
buzbee1fd33462013-03-25 13:40:45 -0700218};
219
220// Dataflow attributes of a basic block.
221struct BasicBlockDataFlow {
222 ArenaBitVector* use_v;
223 ArenaBitVector* def_v;
224 ArenaBitVector* live_in_v;
225 ArenaBitVector* phi_v;
buzbee0d829482013-10-11 15:24:55 -0700226 int32_t* vreg_to_ssa_map;
Vladimir Markobfea9c22014-01-17 17:49:33 +0000227 ArenaBitVector* ending_check_v; // For null check and class init check elimination.
buzbee1fd33462013-03-25 13:40:45 -0700228};
229
230/*
231 * Normalized use/def for a MIR operation using SSA names rather than vregs. Note that
232 * uses/defs retain the Dalvik convention that long operations operate on a pair of 32-bit
233 * vregs. For example, "ADD_LONG v0, v2, v3" would have 2 defs (v0/v1) and 4 uses (v2/v3, v4/v5).
234 * Following SSA renaming, this is the primary struct used by code generators to locate
235 * operand and result registers. This is a somewhat confusing and unhelpful convention that
236 * we may want to revisit in the future.
237 */
238struct SSARepresentation {
buzbee0d829482013-10-11 15:24:55 -0700239 int16_t num_uses;
240 int16_t num_defs;
241 int32_t* uses;
buzbee1fd33462013-03-25 13:40:45 -0700242 bool* fp_use;
buzbee0d829482013-10-11 15:24:55 -0700243 int32_t* defs;
buzbee1fd33462013-03-25 13:40:45 -0700244 bool* fp_def;
245};
246
247/*
248 * The Midlevel Intermediate Representation node, which may be largely considered a
249 * wrapper around a Dalvik byte code.
250 */
251struct MIR {
buzbee0d829482013-10-11 15:24:55 -0700252 /*
253 * TODO: remove embedded DecodedInstruction to save space, keeping only opcode. Recover
254 * additional fields on as-needed basis. Question: how to support MIR Pseudo-ops; probably
255 * need to carry aux data pointer.
256 */
Ian Rogers29a26482014-05-02 15:27:29 -0700257 struct DecodedInstruction {
258 uint32_t vA;
259 uint32_t vB;
260 uint64_t vB_wide; /* for k51l */
261 uint32_t vC;
262 uint32_t arg[5]; /* vC/D/E/F/G in invoke or filled-new-array */
263 Instruction::Code opcode;
264 } dalvikInsn;
265
buzbee0d829482013-10-11 15:24:55 -0700266 uint16_t width; // Note: width can include switch table or fill array data.
267 NarrowDexOffset offset; // Offset of the instruction in code units.
268 uint16_t optimization_flags;
269 int16_t m_unit_index; // From which method was this MIR included
buzbee1fd33462013-03-25 13:40:45 -0700270 MIR* next;
271 SSARepresentation* ssa_rep;
buzbee1fd33462013-03-25 13:40:45 -0700272 union {
buzbee0d829482013-10-11 15:24:55 -0700273 // Incoming edges for phi node.
274 BasicBlockId* phi_incoming;
Vladimir Marko4376c872014-01-23 12:39:29 +0000275 // Establish link from check instruction (kMirOpCheck) to the actual throwing instruction.
buzbee1fd33462013-03-25 13:40:45 -0700276 MIR* throw_insn;
Vladimir Markoa1a70742014-03-03 10:28:05 +0000277 // Branch condition for fused cmp or select.
Vladimir Markoa8946072014-01-22 10:30:44 +0000278 ConditionCode ccode;
Vladimir Markobe0e5462014-02-26 11:24:15 +0000279 // IGET/IPUT lowering info index, points to MIRGraph::ifield_lowering_infos_. Due to limit on
280 // the number of code points (64K) and size of IGET/IPUT insn (2), this will never exceed 32K.
281 uint32_t ifield_lowering_info;
282 // SGET/SPUT lowering info index, points to MIRGraph::sfield_lowering_infos_. Due to limit on
283 // the number of code points (64K) and size of SGET/SPUT insn (2), this will never exceed 32K.
284 uint32_t sfield_lowering_info;
Vladimir Markof096aad2014-01-23 15:51:58 +0000285 // INVOKE data index, points to MIRGraph::method_lowering_infos_.
286 uint32_t method_lowering_info;
buzbee1fd33462013-03-25 13:40:45 -0700287 } meta;
288};
289
buzbee862a7602013-04-05 10:58:54 -0700290struct SuccessorBlockInfo;
291
buzbee1fd33462013-03-25 13:40:45 -0700292struct BasicBlock {
buzbee0d829482013-10-11 15:24:55 -0700293 BasicBlockId id;
294 BasicBlockId dfs_id;
295 NarrowDexOffset start_offset; // Offset in code units.
296 BasicBlockId fall_through;
297 BasicBlockId taken;
298 BasicBlockId i_dom; // Immediate dominator.
buzbee1fd33462013-03-25 13:40:45 -0700299 uint16_t nesting_depth;
buzbee0d829482013-10-11 15:24:55 -0700300 BBType block_type:4;
301 BlockListType successor_block_list_type:4;
302 bool visited:1;
303 bool hidden:1;
304 bool catch_entry:1;
305 bool explicit_throw:1;
306 bool conditional_branch:1;
buzbee1da1e2f2013-11-15 13:37:01 -0800307 bool terminated_by_return:1; // Block ends with a Dalvik return opcode.
308 bool dominates_return:1; // Is a member of return extended basic block.
309 bool use_lvn:1; // Run local value numbering on this block.
buzbee1fd33462013-03-25 13:40:45 -0700310 MIR* first_mir_insn;
311 MIR* last_mir_insn;
buzbee1fd33462013-03-25 13:40:45 -0700312 BasicBlockDataFlow* data_flow_info;
buzbee1fd33462013-03-25 13:40:45 -0700313 ArenaBitVector* dominators;
314 ArenaBitVector* i_dominated; // Set nodes being immediately dominated.
315 ArenaBitVector* dom_frontier; // Dominance frontier.
buzbee0d829482013-10-11 15:24:55 -0700316 GrowableArray<BasicBlockId>* predecessors;
317 GrowableArray<SuccessorBlockInfo*>* successor_blocks;
Jean Christophe Beylercdacac42014-03-13 14:54:59 -0700318
319 void AppendMIR(MIR* mir);
320 void PrependMIR(MIR* mir);
321 void InsertMIRAfter(MIR* current_mir, MIR* new_mir);
322
323 /**
324 * @brief Used to obtain the next MIR that follows unconditionally.
325 * @details The implementation does not guarantee that a MIR does not
326 * follow even if this method returns nullptr.
327 * @param mir_graph the MIRGraph.
328 * @param current The MIR for which to find an unconditional follower.
329 * @return Returns the following MIR if one can be found.
330 */
331 MIR* GetNextUnconditionalMir(MIRGraph* mir_graph, MIR* current);
buzbee1fd33462013-03-25 13:40:45 -0700332};
333
334/*
335 * The "blocks" field in "successor_block_list" points to an array of elements with the type
336 * "SuccessorBlockInfo". For catch blocks, key is type index for the exception. For swtich
337 * blocks, key is the case value.
338 */
339struct SuccessorBlockInfo {
buzbee0d829482013-10-11 15:24:55 -0700340 BasicBlockId block;
buzbee1fd33462013-03-25 13:40:45 -0700341 int key;
342};
343
344/*
345 * Whereas a SSA name describes a definition of a Dalvik vreg, the RegLocation describes
346 * the type of an SSA name (and, can also be used by code generators to record where the
347 * value is located (i.e. - physical register, frame, spill, etc.). For each SSA name (SReg)
348 * there is a RegLocation.
buzbee0d829482013-10-11 15:24:55 -0700349 * A note on SSA names:
350 * o SSA names for Dalvik vRegs v0..vN will be assigned 0..N. These represent the "vN_0"
351 * names. Negative SSA names represent special values not present in the Dalvik byte code.
352 * For example, SSA name -1 represents an invalid SSA name, and SSA name -2 represents the
353 * the Method pointer. SSA names < -2 are reserved for future use.
354 * o The vN_0 names for non-argument Dalvik should in practice never be used (as they would
355 * represent the read of an undefined local variable). The first definition of the
356 * underlying Dalvik vReg will result in a vN_1 name.
357 *
buzbee1fd33462013-03-25 13:40:45 -0700358 * FIXME: The orig_sreg field was added as a workaround for llvm bitcode generation. With
359 * the latest restructuring, we should be able to remove it and rely on s_reg_low throughout.
360 */
361struct RegLocation {
362 RegLocationType location:3;
363 unsigned wide:1;
364 unsigned defined:1; // Do we know the type?
365 unsigned is_const:1; // Constant, value in mir_graph->constant_values[].
366 unsigned fp:1; // Floating point?
367 unsigned core:1; // Non-floating point?
368 unsigned ref:1; // Something GC cares about.
Brian Carlstrom7934ac22013-07-26 10:54:15 -0700369 unsigned high_word:1; // High word of pair?
buzbee1fd33462013-03-25 13:40:45 -0700370 unsigned home:1; // Does this represent the home location?
Bill Buzbee00e1ec62014-02-27 23:44:13 +0000371 RegStorage reg; // Encoded physical registers.
buzbee0d829482013-10-11 15:24:55 -0700372 int16_t s_reg_low; // SSA name for low Dalvik word.
373 int16_t orig_sreg; // TODO: remove after Bitcode gen complete
374 // and consolidate usage w/ s_reg_low.
buzbee1fd33462013-03-25 13:40:45 -0700375};
376
377/*
378 * Collection of information describing an invoke, and the destination of
379 * the subsequent MOVE_RESULT (if applicable). Collected as a unit to enable
380 * more efficient invoke code generation.
381 */
382struct CallInfo {
383 int num_arg_words; // Note: word count, not arg count.
384 RegLocation* args; // One for each word of arguments.
385 RegLocation result; // Eventual target of MOVE_RESULT.
386 int opt_flags;
387 InvokeType type;
388 uint32_t dex_idx;
389 uint32_t index; // Method idx for invokes, type idx for FilledNewArray.
390 uintptr_t direct_code;
391 uintptr_t direct_method;
392 RegLocation target; // Target of following move_result.
393 bool skip_this;
394 bool is_range;
buzbee0d829482013-10-11 15:24:55 -0700395 DexOffset offset; // Offset in code units.
Vladimir Markof096aad2014-01-23 15:51:58 +0000396 MIR* mir;
buzbee1fd33462013-03-25 13:40:45 -0700397};
398
399
buzbee091cc402014-03-31 10:14:40 -0700400const RegLocation bad_loc = {kLocDalvikFrame, 0, 0, 0, 0, 0, 0, 0, 0, RegStorage(), INVALID_SREG,
401 INVALID_SREG};
buzbee311ca162013-02-28 15:56:43 -0800402
403class MIRGraph {
Ian Rogers71fe2672013-03-19 20:45:02 -0700404 public:
buzbee862a7602013-04-05 10:58:54 -0700405 MIRGraph(CompilationUnit* cu, ArenaAllocator* arena);
Ian Rogers6282dc12013-04-18 15:54:02 -0700406 ~MIRGraph();
buzbee311ca162013-02-28 15:56:43 -0800407
Ian Rogers71fe2672013-03-19 20:45:02 -0700408 /*
buzbeeee17e0a2013-07-31 10:47:37 -0700409 * Examine the graph to determine whether it's worthwile to spend the time compiling
410 * this method.
411 */
Brian Carlstrom6449c622014-02-10 23:48:36 -0800412 bool SkipCompilation();
buzbeeee17e0a2013-07-31 10:47:37 -0700413
414 /*
Dave Allison39c3bfb2014-01-28 18:33:52 -0800415 * Should we skip the compilation of this method based on its name?
416 */
417 bool SkipCompilation(const std::string& methodname);
418
419 /*
Ian Rogers71fe2672013-03-19 20:45:02 -0700420 * Parse dex method and add MIR at current insert point. Returns id (which is
421 * actually the index of the method in the m_units_ array).
422 */
423 void InlineMethod(const DexFile::CodeItem* code_item, uint32_t access_flags,
Ian Rogers8b2c0b92013-09-19 02:56:49 -0700424 InvokeType invoke_type, uint16_t class_def_idx,
Ian Rogers71fe2672013-03-19 20:45:02 -0700425 uint32_t method_idx, jobject class_loader, const DexFile& dex_file);
buzbee311ca162013-02-28 15:56:43 -0800426
Ian Rogers71fe2672013-03-19 20:45:02 -0700427 /* Find existing block */
buzbee0d829482013-10-11 15:24:55 -0700428 BasicBlock* FindBlock(DexOffset code_offset) {
Ian Rogers71fe2672013-03-19 20:45:02 -0700429 return FindBlock(code_offset, false, false, NULL);
430 }
buzbee311ca162013-02-28 15:56:43 -0800431
Ian Rogers71fe2672013-03-19 20:45:02 -0700432 const uint16_t* GetCurrentInsns() const {
433 return current_code_item_->insns_;
434 }
buzbee311ca162013-02-28 15:56:43 -0800435
Ian Rogers71fe2672013-03-19 20:45:02 -0700436 const uint16_t* GetInsns(int m_unit_index) const {
437 return m_units_[m_unit_index]->GetCodeItem()->insns_;
438 }
buzbee311ca162013-02-28 15:56:43 -0800439
Ian Rogers71fe2672013-03-19 20:45:02 -0700440 int GetNumBlocks() const {
441 return num_blocks_;
442 }
buzbee311ca162013-02-28 15:56:43 -0800443
buzbeeee17e0a2013-07-31 10:47:37 -0700444 size_t GetNumDalvikInsns() const {
445 return cu_->code_item->insns_size_in_code_units_;
446 }
447
Ian Rogers71fe2672013-03-19 20:45:02 -0700448 ArenaBitVector* GetTryBlockAddr() const {
449 return try_block_addr_;
450 }
buzbee311ca162013-02-28 15:56:43 -0800451
Ian Rogers71fe2672013-03-19 20:45:02 -0700452 BasicBlock* GetEntryBlock() const {
453 return entry_block_;
454 }
buzbee311ca162013-02-28 15:56:43 -0800455
Ian Rogers71fe2672013-03-19 20:45:02 -0700456 BasicBlock* GetExitBlock() const {
457 return exit_block_;
458 }
buzbee311ca162013-02-28 15:56:43 -0800459
Ian Rogers71fe2672013-03-19 20:45:02 -0700460 BasicBlock* GetBasicBlock(int block_id) const {
buzbee0d829482013-10-11 15:24:55 -0700461 return (block_id == NullBasicBlockId) ? NULL : block_list_.Get(block_id);
Ian Rogers71fe2672013-03-19 20:45:02 -0700462 }
buzbee311ca162013-02-28 15:56:43 -0800463
Ian Rogers71fe2672013-03-19 20:45:02 -0700464 size_t GetBasicBlockListCount() const {
buzbee862a7602013-04-05 10:58:54 -0700465 return block_list_.Size();
Ian Rogers71fe2672013-03-19 20:45:02 -0700466 }
buzbee311ca162013-02-28 15:56:43 -0800467
buzbee862a7602013-04-05 10:58:54 -0700468 GrowableArray<BasicBlock*>* GetBlockList() {
Ian Rogers71fe2672013-03-19 20:45:02 -0700469 return &block_list_;
470 }
buzbee311ca162013-02-28 15:56:43 -0800471
buzbee0d829482013-10-11 15:24:55 -0700472 GrowableArray<BasicBlockId>* GetDfsOrder() {
buzbee862a7602013-04-05 10:58:54 -0700473 return dfs_order_;
Ian Rogers71fe2672013-03-19 20:45:02 -0700474 }
buzbee311ca162013-02-28 15:56:43 -0800475
buzbee0d829482013-10-11 15:24:55 -0700476 GrowableArray<BasicBlockId>* GetDfsPostOrder() {
buzbee862a7602013-04-05 10:58:54 -0700477 return dfs_post_order_;
Ian Rogers71fe2672013-03-19 20:45:02 -0700478 }
buzbee311ca162013-02-28 15:56:43 -0800479
buzbee0d829482013-10-11 15:24:55 -0700480 GrowableArray<BasicBlockId>* GetDomPostOrder() {
buzbee862a7602013-04-05 10:58:54 -0700481 return dom_post_order_traversal_;
Ian Rogers71fe2672013-03-19 20:45:02 -0700482 }
buzbee311ca162013-02-28 15:56:43 -0800483
Ian Rogers71fe2672013-03-19 20:45:02 -0700484 int GetDefCount() const {
485 return def_count_;
486 }
buzbee311ca162013-02-28 15:56:43 -0800487
buzbee862a7602013-04-05 10:58:54 -0700488 ArenaAllocator* GetArena() {
489 return arena_;
490 }
491
Ian Rogers71fe2672013-03-19 20:45:02 -0700492 void EnableOpcodeCounting() {
Mathieu Chartierf6c4b3b2013-08-24 16:11:37 -0700493 opcode_count_ = static_cast<int*>(arena_->Alloc(kNumPackedOpcodes * sizeof(int),
Vladimir Marko83cc7ae2014-02-12 18:02:05 +0000494 kArenaAllocMisc));
Ian Rogers71fe2672013-03-19 20:45:02 -0700495 }
buzbee311ca162013-02-28 15:56:43 -0800496
Ian Rogers71fe2672013-03-19 20:45:02 -0700497 void ShowOpcodeStats();
buzbee311ca162013-02-28 15:56:43 -0800498
Ian Rogers71fe2672013-03-19 20:45:02 -0700499 DexCompilationUnit* GetCurrentDexCompilationUnit() const {
500 return m_units_[current_method_];
501 }
buzbee311ca162013-02-28 15:56:43 -0800502
Jean Christophe Beylerd0a51552014-01-10 14:18:31 -0800503 /**
504 * @brief Dump a CFG into a dot file format.
505 * @param dir_prefix the directory the file will be created in.
506 * @param all_blocks does the dumper use all the basic blocks or use the reachable blocks.
507 * @param suffix does the filename require a suffix or not (default = nullptr).
508 */
509 void DumpCFG(const char* dir_prefix, bool all_blocks, const char* suffix = nullptr);
buzbee311ca162013-02-28 15:56:43 -0800510
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000511 bool HasFieldAccess() const {
512 return (merged_df_flags_ & (DF_IFIELD | DF_SFIELD)) != 0u;
513 }
514
Vladimir Markobfea9c22014-01-17 17:49:33 +0000515 bool HasStaticFieldAccess() const {
516 return (merged_df_flags_ & DF_SFIELD) != 0u;
517 }
518
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000519 bool HasInvokes() const {
520 // NOTE: These formats include the rare filled-new-array/range.
521 return (merged_df_flags_ & (DF_FORMAT_35C | DF_FORMAT_3RC)) != 0u;
522 }
523
Vladimir Markobe0e5462014-02-26 11:24:15 +0000524 void DoCacheFieldLoweringInfo();
525
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000526 const MirIFieldLoweringInfo& GetIFieldLoweringInfo(MIR* mir) const {
Vladimir Markobe0e5462014-02-26 11:24:15 +0000527 DCHECK_LT(mir->meta.ifield_lowering_info, ifield_lowering_infos_.Size());
528 return ifield_lowering_infos_.GetRawStorage()[mir->meta.ifield_lowering_info];
529 }
530
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000531 const MirSFieldLoweringInfo& GetSFieldLoweringInfo(MIR* mir) const {
Vladimir Markobe0e5462014-02-26 11:24:15 +0000532 DCHECK_LT(mir->meta.sfield_lowering_info, sfield_lowering_infos_.Size());
533 return sfield_lowering_infos_.GetRawStorage()[mir->meta.sfield_lowering_info];
534 }
535
Vladimir Markof096aad2014-01-23 15:51:58 +0000536 void DoCacheMethodLoweringInfo();
537
538 const MirMethodLoweringInfo& GetMethodLoweringInfo(MIR* mir) {
539 DCHECK_LT(mir->meta.method_lowering_info, method_lowering_infos_.Size());
540 return method_lowering_infos_.GetRawStorage()[mir->meta.method_lowering_info];
541 }
542
Vladimir Marko9820b7c2014-01-02 16:40:37 +0000543 void ComputeInlineIFieldLoweringInfo(uint16_t field_idx, MIR* invoke, MIR* iget_or_iput);
544
buzbee1da1e2f2013-11-15 13:37:01 -0800545 void InitRegLocations();
546
547 void RemapRegLocations();
buzbee311ca162013-02-28 15:56:43 -0800548
Ian Rogers71fe2672013-03-19 20:45:02 -0700549 void DumpRegLocTable(RegLocation* table, int count);
buzbee311ca162013-02-28 15:56:43 -0800550
Ian Rogers71fe2672013-03-19 20:45:02 -0700551 void BasicBlockOptimization();
buzbee311ca162013-02-28 15:56:43 -0800552
Ian Rogers71fe2672013-03-19 20:45:02 -0700553 bool IsConst(int32_t s_reg) const {
buzbee862a7602013-04-05 10:58:54 -0700554 return is_constant_v_->IsBitSet(s_reg);
Ian Rogers71fe2672013-03-19 20:45:02 -0700555 }
buzbee311ca162013-02-28 15:56:43 -0800556
Ian Rogers71fe2672013-03-19 20:45:02 -0700557 bool IsConst(RegLocation loc) const {
Mark Mendell5bb149e2013-12-17 13:26:54 -0800558 return loc.orig_sreg < 0 ? false : IsConst(loc.orig_sreg);
Ian Rogers71fe2672013-03-19 20:45:02 -0700559 }
buzbee311ca162013-02-28 15:56:43 -0800560
Ian Rogers71fe2672013-03-19 20:45:02 -0700561 int32_t ConstantValue(RegLocation loc) const {
562 DCHECK(IsConst(loc));
563 return constant_values_[loc.orig_sreg];
564 }
buzbee311ca162013-02-28 15:56:43 -0800565
Ian Rogers71fe2672013-03-19 20:45:02 -0700566 int32_t ConstantValue(int32_t s_reg) const {
567 DCHECK(IsConst(s_reg));
568 return constant_values_[s_reg];
569 }
buzbee311ca162013-02-28 15:56:43 -0800570
Ian Rogers71fe2672013-03-19 20:45:02 -0700571 int64_t ConstantValueWide(RegLocation loc) const {
572 DCHECK(IsConst(loc));
573 return (static_cast<int64_t>(constant_values_[loc.orig_sreg + 1]) << 32) |
574 Low32Bits(static_cast<int64_t>(constant_values_[loc.orig_sreg]));
575 }
buzbee311ca162013-02-28 15:56:43 -0800576
Ian Rogers71fe2672013-03-19 20:45:02 -0700577 bool IsConstantNullRef(RegLocation loc) const {
578 return loc.ref && loc.is_const && (ConstantValue(loc) == 0);
579 }
buzbee311ca162013-02-28 15:56:43 -0800580
Ian Rogers71fe2672013-03-19 20:45:02 -0700581 int GetNumSSARegs() const {
582 return num_ssa_regs_;
583 }
buzbee311ca162013-02-28 15:56:43 -0800584
Ian Rogers71fe2672013-03-19 20:45:02 -0700585 void SetNumSSARegs(int new_num) {
buzbee0d829482013-10-11 15:24:55 -0700586 /*
587 * TODO: It's theoretically possible to exceed 32767, though any cases which did
588 * would be filtered out with current settings. When orig_sreg field is removed
589 * from RegLocation, expand s_reg_low to handle all possible cases and remove DCHECK().
590 */
591 DCHECK_EQ(new_num, static_cast<int16_t>(new_num));
Ian Rogers71fe2672013-03-19 20:45:02 -0700592 num_ssa_regs_ = new_num;
593 }
buzbee311ca162013-02-28 15:56:43 -0800594
buzbee862a7602013-04-05 10:58:54 -0700595 unsigned int GetNumReachableBlocks() const {
Ian Rogers71fe2672013-03-19 20:45:02 -0700596 return num_reachable_blocks_;
597 }
buzbee311ca162013-02-28 15:56:43 -0800598
Ian Rogers71fe2672013-03-19 20:45:02 -0700599 int GetUseCount(int vreg) const {
buzbee862a7602013-04-05 10:58:54 -0700600 return use_counts_.Get(vreg);
Ian Rogers71fe2672013-03-19 20:45:02 -0700601 }
buzbee311ca162013-02-28 15:56:43 -0800602
Ian Rogers71fe2672013-03-19 20:45:02 -0700603 int GetRawUseCount(int vreg) const {
buzbee862a7602013-04-05 10:58:54 -0700604 return raw_use_counts_.Get(vreg);
Ian Rogers71fe2672013-03-19 20:45:02 -0700605 }
buzbee311ca162013-02-28 15:56:43 -0800606
Ian Rogers71fe2672013-03-19 20:45:02 -0700607 int GetSSASubscript(int ssa_reg) const {
buzbee862a7602013-04-05 10:58:54 -0700608 return ssa_subscripts_->Get(ssa_reg);
Ian Rogers71fe2672013-03-19 20:45:02 -0700609 }
buzbee311ca162013-02-28 15:56:43 -0800610
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700611 RegLocation GetRawSrc(MIR* mir, int num) {
buzbee1fd33462013-03-25 13:40:45 -0700612 DCHECK(num < mir->ssa_rep->num_uses);
613 RegLocation res = reg_location_[mir->ssa_rep->uses[num]];
614 return res;
615 }
616
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700617 RegLocation GetRawDest(MIR* mir) {
buzbee1fd33462013-03-25 13:40:45 -0700618 DCHECK_GT(mir->ssa_rep->num_defs, 0);
619 RegLocation res = reg_location_[mir->ssa_rep->defs[0]];
620 return res;
621 }
622
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700623 RegLocation GetDest(MIR* mir) {
buzbee1fd33462013-03-25 13:40:45 -0700624 RegLocation res = GetRawDest(mir);
625 DCHECK(!res.wide);
626 return res;
627 }
628
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700629 RegLocation GetSrc(MIR* mir, int num) {
buzbee1fd33462013-03-25 13:40:45 -0700630 RegLocation res = GetRawSrc(mir, num);
631 DCHECK(!res.wide);
632 return res;
633 }
634
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700635 RegLocation GetDestWide(MIR* mir) {
buzbee1fd33462013-03-25 13:40:45 -0700636 RegLocation res = GetRawDest(mir);
637 DCHECK(res.wide);
638 return res;
639 }
640
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700641 RegLocation GetSrcWide(MIR* mir, int low) {
buzbee1fd33462013-03-25 13:40:45 -0700642 RegLocation res = GetRawSrc(mir, low);
643 DCHECK(res.wide);
644 return res;
645 }
646
647 RegLocation GetBadLoc() {
648 return bad_loc;
649 }
650
Razvan A Lupusoruda7a69b2014-01-08 15:09:50 -0800651 int GetMethodSReg() const {
buzbee1fd33462013-03-25 13:40:45 -0700652 return method_sreg_;
653 }
654
Razvan A Lupusoruda7a69b2014-01-08 15:09:50 -0800655 /**
656 * @brief Used to obtain the number of compiler temporaries being used.
657 * @return Returns the number of compiler temporaries.
658 */
659 size_t GetNumUsedCompilerTemps() const {
660 size_t total_num_temps = compiler_temps_.Size();
661 DCHECK_LE(num_non_special_compiler_temps_, total_num_temps);
662 return total_num_temps;
663 }
664
665 /**
666 * @brief Used to obtain the number of non-special compiler temporaries being used.
667 * @return Returns the number of non-special compiler temporaries.
668 */
669 size_t GetNumNonSpecialCompilerTemps() const {
670 return num_non_special_compiler_temps_;
671 }
672
673 /**
674 * @brief Used to set the total number of available non-special compiler temporaries.
675 * @details Can fail setting the new max if there are more temps being used than the new_max.
676 * @param new_max The new maximum number of non-special compiler temporaries.
677 * @return Returns true if the max was set and false if failed to set.
678 */
679 bool SetMaxAvailableNonSpecialCompilerTemps(size_t new_max) {
680 if (new_max < GetNumNonSpecialCompilerTemps()) {
681 return false;
682 } else {
683 max_available_non_special_compiler_temps_ = new_max;
684 return true;
685 }
686 }
687
688 /**
689 * @brief Provides the number of non-special compiler temps available.
690 * @details Even if this returns zero, special compiler temps are guaranteed to be available.
691 * @return Returns the number of available temps.
692 */
693 size_t GetNumAvailableNonSpecialCompilerTemps();
694
695 /**
696 * @brief Used to obtain an existing compiler temporary.
697 * @param index The index of the temporary which must be strictly less than the
698 * number of temporaries.
699 * @return Returns the temporary that was asked for.
700 */
701 CompilerTemp* GetCompilerTemp(size_t index) const {
702 return compiler_temps_.Get(index);
703 }
704
705 /**
706 * @brief Used to obtain the maximum number of compiler temporaries that can be requested.
707 * @return Returns the maximum number of compiler temporaries, whether used or not.
708 */
709 size_t GetMaxPossibleCompilerTemps() const {
710 return max_available_special_compiler_temps_ + max_available_non_special_compiler_temps_;
711 }
712
713 /**
714 * @brief Used to obtain a new unique compiler temporary.
715 * @param ct_type Type of compiler temporary requested.
716 * @param wide Whether we should allocate a wide temporary.
717 * @return Returns the newly created compiler temporary.
718 */
719 CompilerTemp* GetNewCompilerTemp(CompilerTempType ct_type, bool wide);
720
buzbee1fd33462013-03-25 13:40:45 -0700721 bool MethodIsLeaf() {
722 return attributes_ & METHOD_IS_LEAF;
723 }
724
725 RegLocation GetRegLocation(int index) {
Mark Mendell67c39c42014-01-31 17:28:00 -0800726 DCHECK((index >= 0) && (index < num_ssa_regs_));
buzbee1fd33462013-03-25 13:40:45 -0700727 return reg_location_[index];
728 }
729
730 RegLocation GetMethodLoc() {
731 return reg_location_[method_sreg_];
732 }
733
buzbee0d829482013-10-11 15:24:55 -0700734 bool IsBackedge(BasicBlock* branch_bb, BasicBlockId target_bb_id) {
735 return ((target_bb_id != NullBasicBlockId) &&
736 (GetBasicBlock(target_bb_id)->start_offset <= branch_bb->start_offset));
buzbee9329e6d2013-08-19 12:55:10 -0700737 }
738
739 bool IsBackwardsBranch(BasicBlock* branch_bb) {
740 return IsBackedge(branch_bb, branch_bb->taken) || IsBackedge(branch_bb, branch_bb->fall_through);
741 }
742
buzbee0d829482013-10-11 15:24:55 -0700743 void CountBranch(DexOffset target_offset) {
buzbeeb48819d2013-09-14 16:15:25 -0700744 if (target_offset <= current_offset_) {
745 backward_branches_++;
746 } else {
747 forward_branches_++;
748 }
749 }
750
751 int GetBranchCount() {
752 return backward_branches_ + forward_branches_;
753 }
754
755 bool IsPseudoMirOp(Instruction::Code opcode) {
756 return static_cast<int>(opcode) >= static_cast<int>(kMirOpFirst);
757 }
758
759 bool IsPseudoMirOp(int opcode) {
760 return opcode >= static_cast<int>(kMirOpFirst);
761 }
762
buzbeeb1f1d642014-02-27 12:55:32 -0800763 // Is this vreg in the in set?
764 bool IsInVReg(int vreg) {
765 return (vreg >= cu_->num_regs);
766 }
767
Ian Rogers71fe2672013-03-19 20:45:02 -0700768 void DumpCheckStats();
Ian Rogers71fe2672013-03-19 20:45:02 -0700769 MIR* FindMoveResult(BasicBlock* bb, MIR* mir);
770 int SRegToVReg(int ssa_reg) const;
771 void VerifyDataflow();
Ian Rogers71fe2672013-03-19 20:45:02 -0700772 void CheckForDominanceFrontier(BasicBlock* dom_bb, const BasicBlock* succ_bb);
Vladimir Markobfea9c22014-01-17 17:49:33 +0000773 void EliminateNullChecksAndInferTypesStart();
Jean Christophe Beyler4e97c532014-01-07 10:07:18 -0800774 bool EliminateNullChecksAndInferTypes(BasicBlock *bb);
Vladimir Markobfea9c22014-01-17 17:49:33 +0000775 void EliminateNullChecksAndInferTypesEnd();
776 bool EliminateClassInitChecksGate();
777 bool EliminateClassInitChecks(BasicBlock* bb);
778 void EliminateClassInitChecksEnd();
buzbee28c23002013-09-07 09:12:27 -0700779 /*
780 * Type inference handling helpers. Because Dalvik's bytecode is not fully typed,
781 * we have to do some work to figure out the sreg type. For some operations it is
782 * clear based on the opcode (i.e. ADD_FLOAT v0, v1, v2), but for others (MOVE), we
783 * may never know the "real" type.
784 *
785 * We perform the type inference operation by using an iterative walk over
786 * the graph, propagating types "defined" by typed opcodes to uses and defs in
787 * non-typed opcodes (such as MOVE). The Setxx(index) helpers are used to set defined
788 * types on typed opcodes (such as ADD_INT). The Setxx(index, is_xx) form is used to
789 * propagate types through non-typed opcodes such as PHI and MOVE. The is_xx flag
790 * tells whether our guess of the type is based on a previously typed definition.
791 * If so, the defined type takes precedence. Note that it's possible to have the same sreg
792 * show multiple defined types because dx treats constants as untyped bit patterns.
793 * The return value of the Setxx() helpers says whether or not the Setxx() action changed
794 * the current guess, and is used to know when to terminate the iterative walk.
795 */
buzbee1fd33462013-03-25 13:40:45 -0700796 bool SetFp(int index, bool is_fp);
buzbee28c23002013-09-07 09:12:27 -0700797 bool SetFp(int index);
buzbee1fd33462013-03-25 13:40:45 -0700798 bool SetCore(int index, bool is_core);
buzbee28c23002013-09-07 09:12:27 -0700799 bool SetCore(int index);
buzbee1fd33462013-03-25 13:40:45 -0700800 bool SetRef(int index, bool is_ref);
buzbee28c23002013-09-07 09:12:27 -0700801 bool SetRef(int index);
buzbee1fd33462013-03-25 13:40:45 -0700802 bool SetWide(int index, bool is_wide);
buzbee28c23002013-09-07 09:12:27 -0700803 bool SetWide(int index);
buzbee1fd33462013-03-25 13:40:45 -0700804 bool SetHigh(int index, bool is_high);
buzbee28c23002013-09-07 09:12:27 -0700805 bool SetHigh(int index);
806
buzbee1fd33462013-03-25 13:40:45 -0700807 char* GetDalvikDisassembly(const MIR* mir);
buzbee1fd33462013-03-25 13:40:45 -0700808 void ReplaceSpecialChars(std::string& str);
809 std::string GetSSAName(int ssa_reg);
810 std::string GetSSANameWithConst(int ssa_reg, bool singles_only);
811 void GetBlockName(BasicBlock* bb, char* name);
812 const char* GetShortyFromTargetIdx(int);
813 void DumpMIRGraph();
814 CallInfo* NewMemCallInfo(BasicBlock* bb, MIR* mir, InvokeType type, bool is_range);
buzbee862a7602013-04-05 10:58:54 -0700815 BasicBlock* NewMemBB(BBType block_type, int block_id);
buzbee0d829482013-10-11 15:24:55 -0700816 MIR* AdvanceMIR(BasicBlock** p_bb, MIR* mir);
817 BasicBlock* NextDominatedBlock(BasicBlock* bb);
818 bool LayoutBlocks(BasicBlock* bb);
buzbee311ca162013-02-28 15:56:43 -0800819
Vladimir Marko9820b7c2014-01-02 16:40:37 +0000820 bool InlineCallsGate();
821 void InlineCallsStart();
822 void InlineCalls(BasicBlock* bb);
823 void InlineCallsEnd();
824
Jean Christophe Beyler4e97c532014-01-07 10:07:18 -0800825 /**
826 * @brief Perform the initial preparation for the Method Uses.
827 */
828 void InitializeMethodUses();
829
830 /**
831 * @brief Perform the initial preparation for the Constant Propagation.
832 */
833 void InitializeConstantPropagation();
834
835 /**
836 * @brief Perform the initial preparation for the SSA Transformation.
837 */
838 void InitializeSSATransformation();
839
840 /**
841 * @brief Insert a the operands for the Phi nodes.
842 * @param bb the considered BasicBlock.
843 * @return true
844 */
845 bool InsertPhiNodeOperands(BasicBlock* bb);
846
847 /**
848 * @brief Perform constant propagation on a BasicBlock.
849 * @param bb the considered BasicBlock.
850 */
851 void DoConstantPropagation(BasicBlock* bb);
852
853 /**
854 * @brief Count the uses in the BasicBlock
855 * @param bb the BasicBlock
856 */
857 void CountUses(struct BasicBlock* bb);
858
Jean Christophe Beylercc794c32014-05-02 09:34:13 -0700859 static uint64_t GetDataFlowAttributes(Instruction::Code opcode);
860 static uint64_t GetDataFlowAttributes(MIR* mir);
861
Jean Christophe Beyler4e97c532014-01-07 10:07:18 -0800862 /**
Jean Christophe Beyler4e97c532014-01-07 10:07:18 -0800863 * @brief Combine BasicBlocks
864 * @param the BasicBlock we are considering
865 */
866 void CombineBlocks(BasicBlock* bb);
867
868 void ClearAllVisitedFlags();
Ian Rogers71fe2672013-03-19 20:45:02 -0700869 /*
870 * IsDebugBuild sanity check: keep track of the Dex PCs for catch entries so that later on
871 * we can verify that all catch entries have native PC entries.
872 */
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700873 std::set<uint32_t> catches_;
buzbee311ca162013-02-28 15:56:43 -0800874
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700875 // TODO: make these private.
876 RegLocation* reg_location_; // Map SSA names to location.
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700877 SafeMap<unsigned int, unsigned int> block_id_map_; // Block collapse lookup cache.
buzbee1fd33462013-03-25 13:40:45 -0700878
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700879 static const char* extended_mir_op_names_[kMirOpLast - kMirOpFirst];
buzbeeee17e0a2013-07-31 10:47:37 -0700880 static const uint32_t analysis_attributes_[kMirOpLast];
buzbee1fd33462013-03-25 13:40:45 -0700881
Ian Rogers71fe2672013-03-19 20:45:02 -0700882 private:
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700883 int FindCommonParent(int block1, int block2);
884 void ComputeSuccLineIn(ArenaBitVector* dest, const ArenaBitVector* src1,
885 const ArenaBitVector* src2);
886 void HandleLiveInUse(ArenaBitVector* use_v, ArenaBitVector* def_v,
887 ArenaBitVector* live_in_v, int dalvik_reg_id);
888 void HandleDef(ArenaBitVector* def_v, int dalvik_reg_id);
889 void CompilerInitializeSSAConversion();
890 bool DoSSAConversion(BasicBlock* bb);
891 bool InvokeUsesMethodStar(MIR* mir);
Ian Rogers29a26482014-05-02 15:27:29 -0700892 int ParseInsn(const uint16_t* code_ptr, MIR::DecodedInstruction* decoded_instruction);
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700893 bool ContentIsInsn(const uint16_t* code_ptr);
buzbee0d829482013-10-11 15:24:55 -0700894 BasicBlock* SplitBlock(DexOffset code_offset, BasicBlock* orig_block,
Ian Rogers71fe2672013-03-19 20:45:02 -0700895 BasicBlock** immed_pred_block_p);
buzbee0d829482013-10-11 15:24:55 -0700896 BasicBlock* FindBlock(DexOffset code_offset, bool split, bool create,
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700897 BasicBlock** immed_pred_block_p);
898 void ProcessTryCatchBlocks();
buzbee0d829482013-10-11 15:24:55 -0700899 BasicBlock* ProcessCanBranch(BasicBlock* cur_block, MIR* insn, DexOffset cur_offset, int width,
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700900 int flags, const uint16_t* code_ptr, const uint16_t* code_end);
buzbee17189ac2013-11-08 11:07:02 -0800901 BasicBlock* ProcessCanSwitch(BasicBlock* cur_block, MIR* insn, DexOffset cur_offset, int width,
902 int flags);
buzbee0d829482013-10-11 15:24:55 -0700903 BasicBlock* ProcessCanThrow(BasicBlock* cur_block, MIR* insn, DexOffset cur_offset, int width,
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700904 int flags, ArenaBitVector* try_block_addr, const uint16_t* code_ptr,
905 const uint16_t* code_end);
906 int AddNewSReg(int v_reg);
907 void HandleSSAUse(int* uses, int dalvik_reg, int reg_index);
908 void HandleSSADef(int* defs, int dalvik_reg, int reg_index);
909 void DataFlowSSAFormat35C(MIR* mir);
910 void DataFlowSSAFormat3RC(MIR* mir);
911 bool FindLocalLiveIn(BasicBlock* bb);
buzbee1da1e2f2013-11-15 13:37:01 -0800912 bool InferTypeAndSize(BasicBlock* bb, MIR* mir, bool changed);
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700913 bool VerifyPredInfo(BasicBlock* bb);
914 BasicBlock* NeedsVisit(BasicBlock* bb);
915 BasicBlock* NextUnvisitedSuccessor(BasicBlock* bb);
916 void MarkPreOrder(BasicBlock* bb);
917 void RecordDFSOrders(BasicBlock* bb);
918 void ComputeDFSOrders();
919 void ComputeDefBlockMatrix();
920 void ComputeDomPostOrderTraversal(BasicBlock* bb);
921 void ComputeDominators();
922 void InsertPhiNodes();
923 void DoDFSPreOrderSSARename(BasicBlock* block);
924 void SetConstant(int32_t ssa_reg, int value);
925 void SetConstantWide(int ssa_reg, int64_t value);
926 int GetSSAUseCount(int s_reg);
927 bool BasicBlockOpt(BasicBlock* bb);
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700928 bool BuildExtendedBBList(struct BasicBlock* bb);
929 bool FillDefBlockMatrix(BasicBlock* bb);
930 void InitializeDominationInfo(BasicBlock* bb);
931 bool ComputeblockIDom(BasicBlock* bb);
932 bool ComputeBlockDominators(BasicBlock* bb);
933 bool SetDominators(BasicBlock* bb);
934 bool ComputeBlockLiveIns(BasicBlock* bb);
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700935 bool ComputeDominanceFrontier(BasicBlock* bb);
Jean Christophe Beyler4e97c532014-01-07 10:07:18 -0800936
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700937 void CountChecks(BasicBlock* bb);
buzbeeee17e0a2013-07-31 10:47:37 -0700938 void AnalyzeBlock(BasicBlock* bb, struct MethodStats* stats);
939 bool ComputeSkipCompilation(struct MethodStats* stats, bool skip_default);
buzbee311ca162013-02-28 15:56:43 -0800940
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700941 CompilationUnit* const cu_;
942 GrowableArray<int>* ssa_base_vregs_;
943 GrowableArray<int>* ssa_subscripts_;
944 // Map original Dalvik virtual reg i to the current SSA name.
945 int* vreg_to_ssa_map_; // length == method->registers_size
946 int* ssa_last_defs_; // length == method->registers_size
947 ArenaBitVector* is_constant_v_; // length == num_ssa_reg
948 int* constant_values_; // length == num_ssa_reg
949 // Use counts of ssa names.
950 GrowableArray<uint32_t> use_counts_; // Weighted by nesting depth
951 GrowableArray<uint32_t> raw_use_counts_; // Not weighted
952 unsigned int num_reachable_blocks_;
buzbee0d829482013-10-11 15:24:55 -0700953 GrowableArray<BasicBlockId>* dfs_order_;
954 GrowableArray<BasicBlockId>* dfs_post_order_;
955 GrowableArray<BasicBlockId>* dom_post_order_traversal_;
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700956 int* i_dom_list_;
957 ArenaBitVector** def_block_matrix_; // num_dalvik_register x num_blocks.
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700958 ArenaBitVector* temp_dalvik_register_v_;
Vladimir Markobfea9c22014-01-17 17:49:33 +0000959 UniquePtr<ScopedArenaAllocator> temp_scoped_alloc_;
960 uint16_t* temp_insn_data_;
961 uint32_t temp_bit_vector_size_;
962 ArenaBitVector* temp_bit_vector_;
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700963 static const int kInvalidEntry = -1;
964 GrowableArray<BasicBlock*> block_list_;
965 ArenaBitVector* try_block_addr_;
966 BasicBlock* entry_block_;
967 BasicBlock* exit_block_;
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700968 int num_blocks_;
969 const DexFile::CodeItem* current_code_item_;
buzbeeb48819d2013-09-14 16:15:25 -0700970 GrowableArray<uint16_t> dex_pc_to_block_map_; // FindBlock lookup cache.
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700971 std::vector<DexCompilationUnit*> m_units_; // List of methods included in this graph
972 typedef std::pair<int, int> MIRLocation; // Insert point, (m_unit_ index, offset)
973 std::vector<MIRLocation> method_stack_; // Include stack
974 int current_method_;
buzbee0d829482013-10-11 15:24:55 -0700975 DexOffset current_offset_; // Offset in code units
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700976 int def_count_; // Used to estimate size of ssa name storage.
977 int* opcode_count_; // Dex opcode coverage stats.
978 int num_ssa_regs_; // Number of names following SSA transformation.
buzbee0d829482013-10-11 15:24:55 -0700979 std::vector<BasicBlockId> extended_basic_blocks_; // Heads of block "traces".
Brian Carlstrom6f485c62013-07-18 15:35:35 -0700980 int method_sreg_;
981 unsigned int attributes_;
982 Checkstats* checkstats_;
983 ArenaAllocator* arena_;
buzbeeb48819d2013-09-14 16:15:25 -0700984 int backward_branches_;
985 int forward_branches_;
Razvan A Lupusoruda7a69b2014-01-08 15:09:50 -0800986 GrowableArray<CompilerTemp*> compiler_temps_;
987 size_t num_non_special_compiler_temps_;
988 size_t max_available_non_special_compiler_temps_;
989 size_t max_available_special_compiler_temps_;
buzbeeb1f1d642014-02-27 12:55:32 -0800990 bool punt_to_interpreter_; // Difficult or not worthwhile - just interpret.
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000991 uint64_t merged_df_flags_;
Vladimir Markobe0e5462014-02-26 11:24:15 +0000992 GrowableArray<MirIFieldLoweringInfo> ifield_lowering_infos_;
993 GrowableArray<MirSFieldLoweringInfo> sfield_lowering_infos_;
Vladimir Markof096aad2014-01-23 15:51:58 +0000994 GrowableArray<MirMethodLoweringInfo> method_lowering_infos_;
Jean Christophe Beylercc794c32014-05-02 09:34:13 -0700995 static const uint64_t oat_data_flow_attributes_[kMirOpLast];
Vladimir Markof59f18b2014-02-17 15:53:57 +0000996
Vladimir Markobfea9c22014-01-17 17:49:33 +0000997 friend class ClassInitCheckEliminationTest;
Vladimir Markof59f18b2014-02-17 15:53:57 +0000998 friend class LocalValueNumberingTest;
buzbee311ca162013-02-28 15:56:43 -0800999};
1000
1001} // namespace art
1002
Brian Carlstromfc0e3212013-07-17 14:40:12 -07001003#endif // ART_COMPILER_DEX_MIR_GRAPH_H_