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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
Nicolas Geoffrayf3e2cc42014-02-18 18:37:26 +000017#include "mir_graph.h"
18
19#include <inttypes.h>
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -070020#include <queue>
Andreas Gampecee97e52014-12-19 15:30:11 -080021#include <unistd.h>
Nicolas Geoffrayf3e2cc42014-02-18 18:37:26 +000022
Ian Rogerse77493c2014-08-20 15:08:45 -070023#include "base/bit_vector-inl.h"
Andreas Gampe0b9203e2015-01-22 20:39:27 -080024#include "base/logging.h"
Ian Rogers6282dc12013-04-18 15:54:02 -070025#include "base/stl_util.h"
Andreas Gampe0b9203e2015-01-22 20:39:27 -080026#include "base/stringprintf.h"
Mathieu Chartierb666f482015-02-18 14:33:14 -080027#include "base/scoped_arena_containers.h"
Andreas Gampe0b9203e2015-01-22 20:39:27 -080028#include "compiler_ir.h"
buzbee311ca162013-02-28 15:56:43 -080029#include "dex_file-inl.h"
Andreas Gampe0b9203e2015-01-22 20:39:27 -080030#include "dex_flags.h"
Ian Rogers29a26482014-05-02 15:27:29 -070031#include "dex_instruction-inl.h"
Andreas Gampe0b9203e2015-01-22 20:39:27 -080032#include "driver/compiler_driver.h"
33#include "driver/dex_compilation_unit.h"
Mathieu Chartier5bdab122015-01-26 18:30:19 -080034#include "dex/quick/quick_compiler.h"
Nicolas Geoffrayf3e2cc42014-02-18 18:37:26 +000035#include "leb128.h"
Jean Christophe Beyler2469e602014-05-06 20:36:55 -070036#include "pass_driver_me_post_opt.h"
Andreas Gampe53c913b2014-08-12 23:19:23 -070037#include "stack.h"
Vladimir Marko5816ed42013-11-27 17:04:20 +000038
buzbee311ca162013-02-28 15:56:43 -080039namespace art {
40
41#define MAX_PATTERN_LEN 5
42
buzbee1fd33462013-03-25 13:40:45 -070043const char* MIRGraph::extended_mir_op_names_[kMirOpLast - kMirOpFirst] = {
44 "Phi",
45 "Copy",
46 "FusedCmplFloat",
47 "FusedCmpgFloat",
48 "FusedCmplDouble",
49 "FusedCmpgDouble",
50 "FusedCmpLong",
51 "Nop",
52 "OpNullCheck",
53 "OpRangeCheck",
54 "OpDivZeroCheck",
55 "Check1",
56 "Check2",
57 "Select",
Mark Mendelld65c51a2014-04-29 16:55:20 -040058 "ConstVector",
59 "MoveVector",
60 "PackedMultiply",
61 "PackedAddition",
62 "PackedSubtract",
63 "PackedShiftLeft",
64 "PackedSignedShiftRight",
65 "PackedUnsignedShiftRight",
66 "PackedAnd",
67 "PackedOr",
68 "PackedXor",
69 "PackedAddReduce",
70 "PackedReduce",
71 "PackedSet",
Udayan Banerji60bfe7b2014-07-08 19:59:43 -070072 "ReserveVectorRegisters",
73 "ReturnVectorRegisters",
Jean Christophe Beylerb5bce7c2014-07-25 12:32:18 -070074 "MemBarrier",
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -070075 "PackedArrayGet",
76 "PackedArrayPut",
Ningsheng Jiana262f772014-11-25 16:48:07 +080077 "MaddInt",
78 "MsubInt",
79 "MaddLong",
80 "MsubLong",
buzbee1fd33462013-03-25 13:40:45 -070081};
82
buzbee862a7602013-04-05 10:58:54 -070083MIRGraph::MIRGraph(CompilationUnit* cu, ArenaAllocator* arena)
Mathieu Chartier2cebb242015-04-21 16:50:40 -070084 : reg_location_(nullptr),
Vladimir Marko8081d2b2014-07-31 15:33:43 +010085 block_id_map_(std::less<unsigned int>(), arena->Adapter()),
buzbee1fd33462013-03-25 13:40:45 -070086 cu_(cu),
Vladimir Markoe39c54e2014-09-22 14:50:02 +010087 ssa_base_vregs_(arena->Adapter(kArenaAllocSSAToDalvikMap)),
88 ssa_subscripts_(arena->Adapter(kArenaAllocSSAToDalvikMap)),
Mathieu Chartier2cebb242015-04-21 16:50:40 -070089 vreg_to_ssa_map_(nullptr),
90 ssa_last_defs_(nullptr),
91 is_constant_v_(nullptr),
92 constant_values_(nullptr),
Vladimir Markoe39c54e2014-09-22 14:50:02 +010093 use_counts_(arena->Adapter()),
94 raw_use_counts_(arena->Adapter()),
buzbee311ca162013-02-28 15:56:43 -080095 num_reachable_blocks_(0),
Jean Christophe Beyler4896d7b2014-05-01 15:36:22 -070096 max_num_reachable_blocks_(0),
Vladimir Marko312eb252014-10-07 15:01:57 +010097 dfs_orders_up_to_date_(false),
Vladimir Markoffda4992014-12-18 17:05:58 +000098 domination_up_to_date_(false),
99 mir_ssa_rep_up_to_date_(false),
100 topological_order_up_to_date_(false),
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100101 dfs_order_(arena->Adapter(kArenaAllocDfsPreOrder)),
102 dfs_post_order_(arena->Adapter(kArenaAllocDfsPostOrder)),
103 dom_post_order_traversal_(arena->Adapter(kArenaAllocDomPostOrder)),
104 topological_order_(arena->Adapter(kArenaAllocTopologicalSortOrder)),
105 topological_order_loop_ends_(arena->Adapter(kArenaAllocTopologicalSortOrder)),
106 topological_order_indexes_(arena->Adapter(kArenaAllocTopologicalSortOrder)),
107 topological_order_loop_head_stack_(arena->Adapter(kArenaAllocTopologicalSortOrder)),
Vladimir Marko415ac882014-09-30 18:09:14 +0100108 max_nested_loops_(0u),
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700109 i_dom_list_(nullptr),
Vladimir Markobfea9c22014-01-17 17:49:33 +0000110 temp_scoped_alloc_(),
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100111 block_list_(arena->Adapter(kArenaAllocBBList)),
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700112 try_block_addr_(nullptr),
113 entry_block_(nullptr),
114 exit_block_(nullptr),
115 current_code_item_(nullptr),
Vladimir Marko8081d2b2014-07-31 15:33:43 +0100116 m_units_(arena->Adapter()),
117 method_stack_(arena->Adapter()),
buzbee311ca162013-02-28 15:56:43 -0800118 current_method_(kInvalidEntry),
119 current_offset_(kInvalidEntry),
120 def_count_(0),
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700121 opcode_count_(nullptr),
buzbee1fd33462013-03-25 13:40:45 -0700122 num_ssa_regs_(0),
Vladimir Marko8081d2b2014-07-31 15:33:43 +0100123 extended_basic_blocks_(arena->Adapter()),
buzbee1fd33462013-03-25 13:40:45 -0700124 method_sreg_(0),
buzbee862a7602013-04-05 10:58:54 -0700125 attributes_(METHOD_IS_LEAF), // Start with leaf assumption, change on encountering invoke.
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700126 checkstats_(nullptr),
buzbeeb48819d2013-09-14 16:15:25 -0700127 arena_(arena),
128 backward_branches_(0),
Razvan A Lupusoruda7a69b2014-01-08 15:09:50 -0800129 forward_branches_(0),
Razvan A Lupusoruda7a69b2014-01-08 15:09:50 -0800130 num_non_special_compiler_temps_(0),
Razvan A Lupusoru8d0d03e2014-06-06 17:04:52 -0700131 max_available_special_compiler_temps_(1), // We only need the method ptr as a special temp for now.
132 requested_backend_temp_(false),
133 compiler_temps_committed_(false),
Vladimir Markobe0e5462014-02-26 11:24:15 +0000134 punt_to_interpreter_(false),
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000135 merged_df_flags_(0u),
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100136 ifield_lowering_infos_(arena->Adapter(kArenaAllocLoweringInfo)),
137 sfield_lowering_infos_(arena->Adapter(kArenaAllocLoweringInfo)),
138 method_lowering_infos_(arena->Adapter(kArenaAllocLoweringInfo)),
Vladimir Marko8b858e12014-11-27 14:52:37 +0000139 suspend_checks_in_loops_(nullptr) {
Vladimir Markof585e542014-11-21 13:41:32 +0000140 memset(&temp_, 0, sizeof(temp_));
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100141 use_counts_.reserve(256);
142 raw_use_counts_.reserve(256);
143 block_list_.reserve(100);
buzbee862a7602013-04-05 10:58:54 -0700144 try_block_addr_ = new (arena_) ArenaBitVector(arena_, 0, true /* expandable */);
Razvan A Lupusoru8d0d03e2014-06-06 17:04:52 -0700145
146
147 if (cu_->instruction_set == kX86 || cu_->instruction_set == kX86_64) {
148 // X86 requires a temp to keep track of the method address.
149 // TODO For x86_64, addressing can be done with RIP. When that is implemented,
150 // this needs to be updated to reserve 0 temps for BE.
151 max_available_non_special_compiler_temps_ = cu_->target64 ? 2 : 1;
152 reserved_temps_for_backend_ = max_available_non_special_compiler_temps_;
153 } else {
154 // Other architectures do not have a known lower bound for non-special temps.
155 // We allow the update of the max to happen at BE initialization stage and simply set 0 for now.
156 max_available_non_special_compiler_temps_ = 0;
157 reserved_temps_for_backend_ = 0;
158 }
buzbee311ca162013-02-28 15:56:43 -0800159}
160
Ian Rogers6282dc12013-04-18 15:54:02 -0700161MIRGraph::~MIRGraph() {
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100162 STLDeleteElements(&block_list_);
Ian Rogers6282dc12013-04-18 15:54:02 -0700163 STLDeleteElements(&m_units_);
164}
165
buzbee311ca162013-02-28 15:56:43 -0800166/*
167 * Parse an instruction, return the length of the instruction
168 */
Ian Rogers29a26482014-05-02 15:27:29 -0700169int MIRGraph::ParseInsn(const uint16_t* code_ptr, MIR::DecodedInstruction* decoded_instruction) {
170 const Instruction* inst = Instruction::At(code_ptr);
171 decoded_instruction->opcode = inst->Opcode();
172 decoded_instruction->vA = inst->HasVRegA() ? inst->VRegA() : 0;
173 decoded_instruction->vB = inst->HasVRegB() ? inst->VRegB() : 0;
174 decoded_instruction->vB_wide = inst->HasWideVRegB() ? inst->WideVRegB() : 0;
175 decoded_instruction->vC = inst->HasVRegC() ? inst->VRegC() : 0;
176 if (inst->HasVarArgs()) {
177 inst->GetVarArgs(decoded_instruction->arg);
178 }
179 return inst->SizeInCodeUnits();
buzbee311ca162013-02-28 15:56:43 -0800180}
181
182
183/* Split an existing block from the specified code offset into two */
buzbee0d829482013-10-11 15:24:55 -0700184BasicBlock* MIRGraph::SplitBlock(DexOffset code_offset,
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700185 BasicBlock* orig_block, BasicBlock** immed_pred_block_p) {
buzbee0d829482013-10-11 15:24:55 -0700186 DCHECK_GT(code_offset, orig_block->start_offset);
buzbee311ca162013-02-28 15:56:43 -0800187 MIR* insn = orig_block->first_mir_insn;
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700188 MIR* prev = nullptr; // Will be set to instruction before split.
buzbee311ca162013-02-28 15:56:43 -0800189 while (insn) {
190 if (insn->offset == code_offset) break;
buzbee0d829482013-10-11 15:24:55 -0700191 prev = insn;
buzbee311ca162013-02-28 15:56:43 -0800192 insn = insn->next;
193 }
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700194 if (insn == nullptr) {
buzbee311ca162013-02-28 15:56:43 -0800195 LOG(FATAL) << "Break split failed";
196 }
Mathew Zaleski33c17022014-09-15 09:44:14 -0400197 // Now insn is at the instruction where we want to split, namely
198 // insn will be the first instruction of the "bottom" block.
199 // Similarly, prev will be the last instruction of the "top" block
200
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100201 BasicBlock* bottom_block = CreateNewBB(kDalvikByteCode);
buzbee311ca162013-02-28 15:56:43 -0800202
203 bottom_block->start_offset = code_offset;
204 bottom_block->first_mir_insn = insn;
205 bottom_block->last_mir_insn = orig_block->last_mir_insn;
206
Junmo Park90223cc2014-08-04 18:51:21 +0900207 /* If this block was terminated by a return, conditional branch or throw,
208 * the flag needs to go with the bottom block
209 */
buzbee311ca162013-02-28 15:56:43 -0800210 bottom_block->terminated_by_return = orig_block->terminated_by_return;
211 orig_block->terminated_by_return = false;
212
Junmo Park90223cc2014-08-04 18:51:21 +0900213 bottom_block->conditional_branch = orig_block->conditional_branch;
214 orig_block->conditional_branch = false;
215
216 bottom_block->explicit_throw = orig_block->explicit_throw;
217 orig_block->explicit_throw = false;
218
buzbee311ca162013-02-28 15:56:43 -0800219 /* Handle the taken path */
220 bottom_block->taken = orig_block->taken;
buzbee0d829482013-10-11 15:24:55 -0700221 if (bottom_block->taken != NullBasicBlockId) {
222 orig_block->taken = NullBasicBlockId;
223 BasicBlock* bb_taken = GetBasicBlock(bottom_block->taken);
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100224 bb_taken->ErasePredecessor(orig_block->id);
225 bb_taken->predecessors.push_back(bottom_block->id);
buzbee311ca162013-02-28 15:56:43 -0800226 }
227
228 /* Handle the fallthrough path */
229 bottom_block->fall_through = orig_block->fall_through;
buzbee0d829482013-10-11 15:24:55 -0700230 orig_block->fall_through = bottom_block->id;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100231 bottom_block->predecessors.push_back(orig_block->id);
buzbee0d829482013-10-11 15:24:55 -0700232 if (bottom_block->fall_through != NullBasicBlockId) {
233 BasicBlock* bb_fall_through = GetBasicBlock(bottom_block->fall_through);
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100234 bb_fall_through->ErasePredecessor(orig_block->id);
235 bb_fall_through->predecessors.push_back(bottom_block->id);
buzbee311ca162013-02-28 15:56:43 -0800236 }
237
238 /* Handle the successor list */
buzbee0d829482013-10-11 15:24:55 -0700239 if (orig_block->successor_block_list_type != kNotUsed) {
240 bottom_block->successor_block_list_type = orig_block->successor_block_list_type;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100241 bottom_block->successor_blocks.swap(orig_block->successor_blocks);
buzbee0d829482013-10-11 15:24:55 -0700242 orig_block->successor_block_list_type = kNotUsed;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100243 DCHECK(orig_block->successor_blocks.empty()); // Empty after the swap() above.
244 for (SuccessorBlockInfo* successor_block_info : bottom_block->successor_blocks) {
Jean Christophe Beyler85127582014-05-11 23:36:41 -0700245 BasicBlock* bb = GetBasicBlock(successor_block_info->block);
Niranjan Kumar989367a2014-06-12 12:15:48 -0700246 if (bb != nullptr) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100247 bb->ErasePredecessor(orig_block->id);
248 bb->predecessors.push_back(bottom_block->id);
Niranjan Kumar989367a2014-06-12 12:15:48 -0700249 }
buzbee311ca162013-02-28 15:56:43 -0800250 }
251 }
252
buzbee0d829482013-10-11 15:24:55 -0700253 orig_block->last_mir_insn = prev;
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -0700254 prev->next = nullptr;
buzbee311ca162013-02-28 15:56:43 -0800255
buzbee311ca162013-02-28 15:56:43 -0800256 /*
257 * Update the immediate predecessor block pointer so that outgoing edges
258 * can be applied to the proper block.
259 */
260 if (immed_pred_block_p) {
261 DCHECK_EQ(*immed_pred_block_p, orig_block);
262 *immed_pred_block_p = bottom_block;
263 }
buzbeeb48819d2013-09-14 16:15:25 -0700264
265 // Associate dex instructions in the bottom block with the new container.
Vladimir Marko4376c872014-01-23 12:39:29 +0000266 DCHECK(insn != nullptr);
267 DCHECK(insn != orig_block->first_mir_insn);
268 DCHECK(insn == bottom_block->first_mir_insn);
269 DCHECK_EQ(insn->offset, bottom_block->start_offset);
Mathew Zaleski33c17022014-09-15 09:44:14 -0400270 // Scan the "bottom" instructions, remapping them to the
271 // newly created "bottom" block.
Vladimir Marko4376c872014-01-23 12:39:29 +0000272 MIR* p = insn;
Mathew Zaleski33c17022014-09-15 09:44:14 -0400273 p->bb = bottom_block->id;
Vladimir Marko4376c872014-01-23 12:39:29 +0000274 while (p != bottom_block->last_mir_insn) {
275 p = p->next;
276 DCHECK(p != nullptr);
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -0700277 p->bb = bottom_block->id;
buzbeeb48819d2013-09-14 16:15:25 -0700278 }
279
buzbee311ca162013-02-28 15:56:43 -0800280 return bottom_block;
281}
282
283/*
284 * Given a code offset, find out the block that starts with it. If the offset
285 * is in the middle of an existing block, split it into two. If immed_pred_block_p
286 * is not non-null and is the block being split, update *immed_pred_block_p to
287 * point to the bottom block so that outgoing edges can be set up properly
288 * (by the caller)
289 * Utilizes a map for fast lookup of the typical cases.
290 */
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700291BasicBlock* MIRGraph::FindBlock(DexOffset code_offset, bool create,
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800292 BasicBlock** immed_pred_block_p,
293 ScopedArenaVector<uint16_t>* dex_pc_to_block_map) {
Razvan A Lupusoru09ae0222014-07-07 16:29:37 -0700294 if (code_offset >= current_code_item_->insns_size_in_code_units_) {
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700295 return nullptr;
buzbee311ca162013-02-28 15:56:43 -0800296 }
buzbeeb48819d2013-09-14 16:15:25 -0700297
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800298 int block_id = (*dex_pc_to_block_map)[code_offset];
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100299 BasicBlock* bb = GetBasicBlock(block_id);
buzbeeb48819d2013-09-14 16:15:25 -0700300
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700301 if ((bb != nullptr) && (bb->start_offset == code_offset)) {
buzbeeb48819d2013-09-14 16:15:25 -0700302 // Does this containing block start with the desired instruction?
buzbeebd663de2013-09-10 15:41:31 -0700303 return bb;
304 }
buzbee311ca162013-02-28 15:56:43 -0800305
buzbeeb48819d2013-09-14 16:15:25 -0700306 // No direct hit.
307 if (!create) {
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700308 return nullptr;
buzbee311ca162013-02-28 15:56:43 -0800309 }
310
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700311 if (bb != nullptr) {
buzbeeb48819d2013-09-14 16:15:25 -0700312 // The target exists somewhere in an existing block.
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800313 BasicBlock* bottom_block = SplitBlock(code_offset, bb, bb == *immed_pred_block_p ? immed_pred_block_p : nullptr);
314 DCHECK(bottom_block != nullptr);
315 MIR* p = bottom_block->first_mir_insn;
316 BasicBlock* orig_block = bb;
317 DCHECK_EQ((*dex_pc_to_block_map)[p->offset], orig_block->id);
318 // Scan the "bottom" instructions, remapping them to the
319 // newly created "bottom" block.
320 (*dex_pc_to_block_map)[p->offset] = bottom_block->id;
321 while (p != bottom_block->last_mir_insn) {
322 p = p->next;
323 DCHECK(p != nullptr);
324 int opcode = p->dalvikInsn.opcode;
325 /*
326 * Some messiness here to ensure that we only enter real opcodes and only the
327 * first half of a potentially throwing instruction that has been split into
328 * CHECK and work portions. Since the 2nd half of a split operation is always
329 * the first in a BasicBlock, we can't hit it here.
330 */
331 if ((opcode == kMirOpCheck) || !MIR::DecodedInstruction::IsPseudoMirOp(opcode)) {
332 BasicBlockId mapped_id = (*dex_pc_to_block_map)[p->offset];
333 // At first glance the instructions should all be mapped to orig_block.
334 // However, multiple instructions may correspond to the same dex, hence an earlier
335 // instruction may have already moved the mapping for dex to bottom_block.
336 DCHECK((mapped_id == orig_block->id) || (mapped_id == bottom_block->id));
337 (*dex_pc_to_block_map)[p->offset] = bottom_block->id;
338 }
339 }
340 return bottom_block;
buzbeeb48819d2013-09-14 16:15:25 -0700341 }
342
343 // Create a new block.
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100344 bb = CreateNewBB(kDalvikByteCode);
buzbee311ca162013-02-28 15:56:43 -0800345 bb->start_offset = code_offset;
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800346 (*dex_pc_to_block_map)[bb->start_offset] = bb->id;
buzbee311ca162013-02-28 15:56:43 -0800347 return bb;
348}
349
buzbeeb48819d2013-09-14 16:15:25 -0700350
buzbee311ca162013-02-28 15:56:43 -0800351/* Identify code range in try blocks and set up the empty catch blocks */
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800352void MIRGraph::ProcessTryCatchBlocks(ScopedArenaVector<uint16_t>* dex_pc_to_block_map) {
buzbee311ca162013-02-28 15:56:43 -0800353 int tries_size = current_code_item_->tries_size_;
buzbee0d829482013-10-11 15:24:55 -0700354 DexOffset offset;
buzbee311ca162013-02-28 15:56:43 -0800355
356 if (tries_size == 0) {
357 return;
358 }
359
360 for (int i = 0; i < tries_size; i++) {
361 const DexFile::TryItem* pTry =
362 DexFile::GetTryItems(*current_code_item_, i);
buzbee0d829482013-10-11 15:24:55 -0700363 DexOffset start_offset = pTry->start_addr_;
364 DexOffset end_offset = start_offset + pTry->insn_count_;
buzbee311ca162013-02-28 15:56:43 -0800365 for (offset = start_offset; offset < end_offset; offset++) {
buzbee862a7602013-04-05 10:58:54 -0700366 try_block_addr_->SetBit(offset);
buzbee311ca162013-02-28 15:56:43 -0800367 }
368 }
369
Jean Christophe Beyler85127582014-05-11 23:36:41 -0700370 // Iterate over each of the handlers to enqueue the empty Catch blocks.
Ian Rogers13735952014-10-08 12:43:28 -0700371 const uint8_t* handlers_ptr = DexFile::GetCatchHandlerData(*current_code_item_, 0);
buzbee311ca162013-02-28 15:56:43 -0800372 uint32_t handlers_size = DecodeUnsignedLeb128(&handlers_ptr);
373 for (uint32_t idx = 0; idx < handlers_size; idx++) {
374 CatchHandlerIterator iterator(handlers_ptr);
375 for (; iterator.HasNext(); iterator.Next()) {
376 uint32_t address = iterator.GetHandlerAddress();
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800377 FindBlock(address, true /*create*/, /* immed_pred_block_p */ nullptr, dex_pc_to_block_map);
buzbee311ca162013-02-28 15:56:43 -0800378 }
379 handlers_ptr = iterator.EndDataPointer();
380 }
381}
382
Vladimir Markoe8ae8142014-07-08 18:06:45 +0100383bool MIRGraph::IsBadMonitorExitCatch(NarrowDexOffset monitor_exit_offset,
384 NarrowDexOffset catch_offset) {
385 // Catches for monitor-exit during stack unwinding have the pattern
386 // move-exception (move)* (goto)? monitor-exit throw
387 // In the currently generated dex bytecode we see these catching a bytecode range including
388 // either its own or an identical monitor-exit, http://b/15745363 . This function checks if
389 // it's the case for a given monitor-exit and catch block so that we can ignore it.
390 // (We don't want to ignore all monitor-exit catches since one could enclose a synchronized
391 // block in a try-block and catch the NPE, Error or Throwable and we should let it through;
392 // even though a throwing monitor-exit certainly indicates a bytecode error.)
Razvan A Lupusoru09ae0222014-07-07 16:29:37 -0700393 const Instruction* monitor_exit = Instruction::At(current_code_item_->insns_ + monitor_exit_offset);
Vladimir Markoe8ae8142014-07-08 18:06:45 +0100394 DCHECK(monitor_exit->Opcode() == Instruction::MONITOR_EXIT);
395 int monitor_reg = monitor_exit->VRegA_11x();
Razvan A Lupusoru09ae0222014-07-07 16:29:37 -0700396 const Instruction* check_insn = Instruction::At(current_code_item_->insns_ + catch_offset);
Vladimir Markoe8ae8142014-07-08 18:06:45 +0100397 DCHECK(check_insn->Opcode() == Instruction::MOVE_EXCEPTION);
398 if (check_insn->VRegA_11x() == monitor_reg) {
399 // Unexpected move-exception to the same register. Probably not the pattern we're looking for.
400 return false;
401 }
402 check_insn = check_insn->Next();
403 while (true) {
404 int dest = -1;
405 bool wide = false;
406 switch (check_insn->Opcode()) {
407 case Instruction::MOVE_WIDE:
408 wide = true;
Ian Rogersfc787ec2014-10-09 21:56:44 -0700409 FALLTHROUGH_INTENDED;
Vladimir Markoe8ae8142014-07-08 18:06:45 +0100410 case Instruction::MOVE_OBJECT:
411 case Instruction::MOVE:
412 dest = check_insn->VRegA_12x();
413 break;
414
415 case Instruction::MOVE_WIDE_FROM16:
416 wide = true;
Ian Rogersfc787ec2014-10-09 21:56:44 -0700417 FALLTHROUGH_INTENDED;
Vladimir Markoe8ae8142014-07-08 18:06:45 +0100418 case Instruction::MOVE_OBJECT_FROM16:
419 case Instruction::MOVE_FROM16:
420 dest = check_insn->VRegA_22x();
421 break;
422
423 case Instruction::MOVE_WIDE_16:
424 wide = true;
Ian Rogersfc787ec2014-10-09 21:56:44 -0700425 FALLTHROUGH_INTENDED;
Vladimir Markoe8ae8142014-07-08 18:06:45 +0100426 case Instruction::MOVE_OBJECT_16:
427 case Instruction::MOVE_16:
428 dest = check_insn->VRegA_32x();
429 break;
430
431 case Instruction::GOTO:
432 case Instruction::GOTO_16:
433 case Instruction::GOTO_32:
434 check_insn = check_insn->RelativeAt(check_insn->GetTargetOffset());
Ian Rogersfc787ec2014-10-09 21:56:44 -0700435 FALLTHROUGH_INTENDED;
Vladimir Markoe8ae8142014-07-08 18:06:45 +0100436 default:
437 return check_insn->Opcode() == Instruction::MONITOR_EXIT &&
438 check_insn->VRegA_11x() == monitor_reg;
439 }
440
441 if (dest == monitor_reg || (wide && dest + 1 == monitor_reg)) {
442 return false;
443 }
444
445 check_insn = check_insn->Next();
446 }
447}
448
buzbee311ca162013-02-28 15:56:43 -0800449/* Process instructions with the kBranch flag */
buzbee0d829482013-10-11 15:24:55 -0700450BasicBlock* MIRGraph::ProcessCanBranch(BasicBlock* cur_block, MIR* insn, DexOffset cur_offset,
451 int width, int flags, const uint16_t* code_ptr,
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800452 const uint16_t* code_end,
453 ScopedArenaVector<uint16_t>* dex_pc_to_block_map) {
buzbee0d829482013-10-11 15:24:55 -0700454 DexOffset target = cur_offset;
buzbee311ca162013-02-28 15:56:43 -0800455 switch (insn->dalvikInsn.opcode) {
456 case Instruction::GOTO:
457 case Instruction::GOTO_16:
458 case Instruction::GOTO_32:
459 target += insn->dalvikInsn.vA;
460 break;
461 case Instruction::IF_EQ:
462 case Instruction::IF_NE:
463 case Instruction::IF_LT:
464 case Instruction::IF_GE:
465 case Instruction::IF_GT:
466 case Instruction::IF_LE:
467 cur_block->conditional_branch = true;
468 target += insn->dalvikInsn.vC;
469 break;
470 case Instruction::IF_EQZ:
471 case Instruction::IF_NEZ:
472 case Instruction::IF_LTZ:
473 case Instruction::IF_GEZ:
474 case Instruction::IF_GTZ:
475 case Instruction::IF_LEZ:
476 cur_block->conditional_branch = true;
477 target += insn->dalvikInsn.vB;
478 break;
479 default:
480 LOG(FATAL) << "Unexpected opcode(" << insn->dalvikInsn.opcode << ") with kBranch set";
481 }
buzbeeb48819d2013-09-14 16:15:25 -0700482 CountBranch(target);
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700483 BasicBlock* taken_block = FindBlock(target, /* create */ true,
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800484 /* immed_pred_block_p */ &cur_block,
485 dex_pc_to_block_map);
buzbee0d829482013-10-11 15:24:55 -0700486 cur_block->taken = taken_block->id;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100487 taken_block->predecessors.push_back(cur_block->id);
buzbee311ca162013-02-28 15:56:43 -0800488
489 /* Always terminate the current block for conditional branches */
490 if (flags & Instruction::kContinue) {
Jean Christophe Beyler2469e602014-05-06 20:36:55 -0700491 BasicBlock* fallthrough_block = FindBlock(cur_offset + width,
buzbee311ca162013-02-28 15:56:43 -0800492 /* create */
493 true,
494 /* immed_pred_block_p */
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800495 &cur_block,
496 dex_pc_to_block_map);
buzbee0d829482013-10-11 15:24:55 -0700497 cur_block->fall_through = fallthrough_block->id;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100498 fallthrough_block->predecessors.push_back(cur_block->id);
buzbee311ca162013-02-28 15:56:43 -0800499 } else if (code_ptr < code_end) {
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800500 FindBlock(cur_offset + width, /* create */ true, /* immed_pred_block_p */ nullptr, dex_pc_to_block_map);
buzbee311ca162013-02-28 15:56:43 -0800501 }
502 return cur_block;
503}
504
505/* Process instructions with the kSwitch flag */
buzbee17189ac2013-11-08 11:07:02 -0800506BasicBlock* MIRGraph::ProcessCanSwitch(BasicBlock* cur_block, MIR* insn, DexOffset cur_offset,
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800507 int width, int flags,
508 ScopedArenaVector<uint16_t>* dex_pc_to_block_map) {
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700509 UNUSED(flags);
buzbee311ca162013-02-28 15:56:43 -0800510 const uint16_t* switch_data =
511 reinterpret_cast<const uint16_t*>(GetCurrentInsns() + cur_offset + insn->dalvikInsn.vB);
512 int size;
513 const int* keyTable;
514 const int* target_table;
515 int i;
516 int first_key;
517
518 /*
519 * Packed switch data format:
520 * ushort ident = 0x0100 magic value
521 * ushort size number of entries in the table
522 * int first_key first (and lowest) switch case value
523 * int targets[size] branch targets, relative to switch opcode
524 *
525 * Total size is (4+size*2) 16-bit code units.
526 */
527 if (insn->dalvikInsn.opcode == Instruction::PACKED_SWITCH) {
528 DCHECK_EQ(static_cast<int>(switch_data[0]),
529 static_cast<int>(Instruction::kPackedSwitchSignature));
530 size = switch_data[1];
531 first_key = switch_data[2] | (switch_data[3] << 16);
532 target_table = reinterpret_cast<const int*>(&switch_data[4]);
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700533 keyTable = nullptr; // Make the compiler happy.
buzbee311ca162013-02-28 15:56:43 -0800534 /*
535 * Sparse switch data format:
536 * ushort ident = 0x0200 magic value
537 * ushort size number of entries in the table; > 0
538 * int keys[size] keys, sorted low-to-high; 32-bit aligned
539 * int targets[size] branch targets, relative to switch opcode
540 *
541 * Total size is (2+size*4) 16-bit code units.
542 */
543 } else {
544 DCHECK_EQ(static_cast<int>(switch_data[0]),
545 static_cast<int>(Instruction::kSparseSwitchSignature));
546 size = switch_data[1];
547 keyTable = reinterpret_cast<const int*>(&switch_data[2]);
548 target_table = reinterpret_cast<const int*>(&switch_data[2 + size*2]);
Jean Christophe Beyler85127582014-05-11 23:36:41 -0700549 first_key = 0; // To make the compiler happy.
buzbee311ca162013-02-28 15:56:43 -0800550 }
551
buzbee0d829482013-10-11 15:24:55 -0700552 if (cur_block->successor_block_list_type != kNotUsed) {
buzbee311ca162013-02-28 15:56:43 -0800553 LOG(FATAL) << "Successor block list already in use: "
buzbee0d829482013-10-11 15:24:55 -0700554 << static_cast<int>(cur_block->successor_block_list_type);
buzbee311ca162013-02-28 15:56:43 -0800555 }
buzbee0d829482013-10-11 15:24:55 -0700556 cur_block->successor_block_list_type =
557 (insn->dalvikInsn.opcode == Instruction::PACKED_SWITCH) ? kPackedSwitch : kSparseSwitch;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100558 cur_block->successor_blocks.reserve(size);
buzbee311ca162013-02-28 15:56:43 -0800559
560 for (i = 0; i < size; i++) {
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700561 BasicBlock* case_block = FindBlock(cur_offset + target_table[i], /* create */ true,
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800562 /* immed_pred_block_p */ &cur_block,
563 dex_pc_to_block_map);
Jean Christophe Beyler85127582014-05-11 23:36:41 -0700564 SuccessorBlockInfo* successor_block_info =
Mathieu Chartierf6c4b3b2013-08-24 16:11:37 -0700565 static_cast<SuccessorBlockInfo*>(arena_->Alloc(sizeof(SuccessorBlockInfo),
Vladimir Marko83cc7ae2014-02-12 18:02:05 +0000566 kArenaAllocSuccessor));
buzbee0d829482013-10-11 15:24:55 -0700567 successor_block_info->block = case_block->id;
buzbee311ca162013-02-28 15:56:43 -0800568 successor_block_info->key =
569 (insn->dalvikInsn.opcode == Instruction::PACKED_SWITCH) ?
570 first_key + i : keyTable[i];
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100571 cur_block->successor_blocks.push_back(successor_block_info);
572 case_block->predecessors.push_back(cur_block->id);
buzbee311ca162013-02-28 15:56:43 -0800573 }
574
575 /* Fall-through case */
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700576 BasicBlock* fallthrough_block = FindBlock(cur_offset + width, /* create */ true,
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800577 /* immed_pred_block_p */ nullptr,
578 dex_pc_to_block_map);
buzbee0d829482013-10-11 15:24:55 -0700579 cur_block->fall_through = fallthrough_block->id;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100580 fallthrough_block->predecessors.push_back(cur_block->id);
buzbee17189ac2013-11-08 11:07:02 -0800581 return cur_block;
buzbee311ca162013-02-28 15:56:43 -0800582}
583
584/* Process instructions with the kThrow flag */
buzbee0d829482013-10-11 15:24:55 -0700585BasicBlock* MIRGraph::ProcessCanThrow(BasicBlock* cur_block, MIR* insn, DexOffset cur_offset,
586 int width, int flags, ArenaBitVector* try_block_addr,
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800587 const uint16_t* code_ptr, const uint16_t* code_end,
588 ScopedArenaVector<uint16_t>* dex_pc_to_block_map) {
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700589 UNUSED(flags);
buzbee862a7602013-04-05 10:58:54 -0700590 bool in_try_block = try_block_addr->IsBitSet(cur_offset);
buzbee17189ac2013-11-08 11:07:02 -0800591 bool is_throw = (insn->dalvikInsn.opcode == Instruction::THROW);
buzbee311ca162013-02-28 15:56:43 -0800592
593 /* In try block */
594 if (in_try_block) {
595 CatchHandlerIterator iterator(*current_code_item_, cur_offset);
596
buzbee0d829482013-10-11 15:24:55 -0700597 if (cur_block->successor_block_list_type != kNotUsed) {
buzbee311ca162013-02-28 15:56:43 -0800598 LOG(INFO) << PrettyMethod(cu_->method_idx, *cu_->dex_file);
599 LOG(FATAL) << "Successor block list already in use: "
buzbee0d829482013-10-11 15:24:55 -0700600 << static_cast<int>(cur_block->successor_block_list_type);
buzbee311ca162013-02-28 15:56:43 -0800601 }
602
Brian Carlstrom02c8cc62013-07-18 15:54:44 -0700603 for (; iterator.HasNext(); iterator.Next()) {
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700604 BasicBlock* catch_block = FindBlock(iterator.GetHandlerAddress(), false /* create */,
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800605 nullptr /* immed_pred_block_p */,
606 dex_pc_to_block_map);
Vladimir Markoe8ae8142014-07-08 18:06:45 +0100607 if (insn->dalvikInsn.opcode == Instruction::MONITOR_EXIT &&
608 IsBadMonitorExitCatch(insn->offset, catch_block->start_offset)) {
609 // Don't allow monitor-exit to catch its own exception, http://b/15745363 .
610 continue;
611 }
612 if (cur_block->successor_block_list_type == kNotUsed) {
613 cur_block->successor_block_list_type = kCatch;
Vladimir Markoe8ae8142014-07-08 18:06:45 +0100614 }
buzbee311ca162013-02-28 15:56:43 -0800615 catch_block->catch_entry = true;
616 if (kIsDebugBuild) {
617 catches_.insert(catch_block->start_offset);
618 }
Jean Christophe Beyler85127582014-05-11 23:36:41 -0700619 SuccessorBlockInfo* successor_block_info = reinterpret_cast<SuccessorBlockInfo*>
Vladimir Marko83cc7ae2014-02-12 18:02:05 +0000620 (arena_->Alloc(sizeof(SuccessorBlockInfo), kArenaAllocSuccessor));
buzbee0d829482013-10-11 15:24:55 -0700621 successor_block_info->block = catch_block->id;
buzbee311ca162013-02-28 15:56:43 -0800622 successor_block_info->key = iterator.GetHandlerTypeIndex();
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100623 cur_block->successor_blocks.push_back(successor_block_info);
624 catch_block->predecessors.push_back(cur_block->id);
buzbee311ca162013-02-28 15:56:43 -0800625 }
Vladimir Markoe8ae8142014-07-08 18:06:45 +0100626 in_try_block = (cur_block->successor_block_list_type != kNotUsed);
627 }
Vladimir Markoe767f6c2014-10-01 17:38:02 +0100628 bool build_all_edges =
629 (cu_->disable_opt & (1 << kSuppressExceptionEdges)) || is_throw || in_try_block;
Vladimir Markoe8ae8142014-07-08 18:06:45 +0100630 if (!in_try_block && build_all_edges) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100631 BasicBlock* eh_block = CreateNewBB(kExceptionHandling);
buzbee0d829482013-10-11 15:24:55 -0700632 cur_block->taken = eh_block->id;
buzbee311ca162013-02-28 15:56:43 -0800633 eh_block->start_offset = cur_offset;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100634 eh_block->predecessors.push_back(cur_block->id);
buzbee311ca162013-02-28 15:56:43 -0800635 }
636
buzbee17189ac2013-11-08 11:07:02 -0800637 if (is_throw) {
buzbee311ca162013-02-28 15:56:43 -0800638 cur_block->explicit_throw = true;
buzbee27247762013-07-28 12:03:58 -0700639 if (code_ptr < code_end) {
Jean Christophe Beyler85127582014-05-11 23:36:41 -0700640 // Force creation of new block following THROW via side-effect.
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800641 FindBlock(cur_offset + width, /* create */ true, /* immed_pred_block_p */ nullptr, dex_pc_to_block_map);
buzbee311ca162013-02-28 15:56:43 -0800642 }
643 if (!in_try_block) {
644 // Don't split a THROW that can't rethrow - we're done.
645 return cur_block;
646 }
647 }
648
buzbee17189ac2013-11-08 11:07:02 -0800649 if (!build_all_edges) {
650 /*
651 * Even though there is an exception edge here, control cannot return to this
652 * method. Thus, for the purposes of dataflow analysis and optimization, we can
653 * ignore the edge. Doing this reduces compile time, and increases the scope
654 * of the basic-block level optimization pass.
655 */
656 return cur_block;
657 }
658
buzbee311ca162013-02-28 15:56:43 -0800659 /*
660 * Split the potentially-throwing instruction into two parts.
661 * The first half will be a pseudo-op that captures the exception
662 * edges and terminates the basic block. It always falls through.
663 * Then, create a new basic block that begins with the throwing instruction
664 * (minus exceptions). Note: this new basic block must NOT be entered into
665 * the block_map. If the potentially-throwing instruction is the target of a
666 * future branch, we need to find the check psuedo half. The new
667 * basic block containing the work portion of the instruction should
668 * only be entered via fallthrough from the block containing the
669 * pseudo exception edge MIR. Note also that this new block is
670 * not automatically terminated after the work portion, and may
671 * contain following instructions.
buzbeeb48819d2013-09-14 16:15:25 -0700672 *
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800673 * Note also that the dex_pc_to_block_map entry for the potentially
buzbeeb48819d2013-09-14 16:15:25 -0700674 * throwing instruction will refer to the original basic block.
buzbee311ca162013-02-28 15:56:43 -0800675 */
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100676 BasicBlock* new_block = CreateNewBB(kDalvikByteCode);
buzbee311ca162013-02-28 15:56:43 -0800677 new_block->start_offset = insn->offset;
buzbee0d829482013-10-11 15:24:55 -0700678 cur_block->fall_through = new_block->id;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100679 new_block->predecessors.push_back(cur_block->id);
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -0700680 MIR* new_insn = NewMIR();
buzbee311ca162013-02-28 15:56:43 -0800681 *new_insn = *insn;
buzbee35ba7f32014-05-31 08:59:01 -0700682 insn->dalvikInsn.opcode = static_cast<Instruction::Code>(kMirOpCheck);
Jean Christophe Beyler85127582014-05-11 23:36:41 -0700683 // Associate the two halves.
buzbee311ca162013-02-28 15:56:43 -0800684 insn->meta.throw_insn = new_insn;
Jean Christophe Beylercdacac42014-03-13 14:54:59 -0700685 new_block->AppendMIR(new_insn);
buzbee311ca162013-02-28 15:56:43 -0800686 return new_block;
687}
688
689/* Parse a Dex method and insert it into the MIRGraph at the current insert point. */
690void MIRGraph::InlineMethod(const DexFile::CodeItem* code_item, uint32_t access_flags,
Vladimir Marko20f85592015-03-19 10:07:02 +0000691 InvokeType invoke_type ATTRIBUTE_UNUSED, uint16_t class_def_idx,
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700692 uint32_t method_idx, jobject class_loader, const DexFile& dex_file) {
buzbee311ca162013-02-28 15:56:43 -0800693 current_code_item_ = code_item;
694 method_stack_.push_back(std::make_pair(current_method_, current_offset_));
695 current_method_ = m_units_.size();
696 current_offset_ = 0;
697 // TODO: will need to snapshot stack image and use that as the mir context identification.
Vladimir Markoc91df2d2015-04-23 09:29:21 +0000698 m_units_.push_back(new (arena_) DexCompilationUnit(
699 cu_, class_loader, Runtime::Current()->GetClassLinker(), dex_file,
700 current_code_item_, class_def_idx, method_idx, access_flags,
701 cu_->compiler_driver->GetVerifiedMethod(&dex_file, method_idx)));
buzbee311ca162013-02-28 15:56:43 -0800702 const uint16_t* code_ptr = current_code_item_->insns_;
703 const uint16_t* code_end =
704 current_code_item_->insns_ + current_code_item_->insns_size_in_code_units_;
705
706 // TODO: need to rework expansion of block list & try_block_addr when inlining activated.
buzbeeb48819d2013-09-14 16:15:25 -0700707 // TUNING: use better estimate of basic blocks for following resize.
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100708 block_list_.reserve(block_list_.size() + current_code_item_->insns_size_in_code_units_);
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800709 // FindBlock lookup cache.
710 ScopedArenaAllocator allocator(&cu_->arena_stack);
711 ScopedArenaVector<uint16_t> dex_pc_to_block_map(allocator.Adapter());
712 dex_pc_to_block_map.resize(dex_pc_to_block_map.size() +
713 current_code_item_->insns_size_in_code_units_);
buzbeebd663de2013-09-10 15:41:31 -0700714
buzbee311ca162013-02-28 15:56:43 -0800715 // TODO: replace with explicit resize routine. Using automatic extension side effect for now.
buzbee862a7602013-04-05 10:58:54 -0700716 try_block_addr_->SetBit(current_code_item_->insns_size_in_code_units_);
717 try_block_addr_->ClearBit(current_code_item_->insns_size_in_code_units_);
buzbee311ca162013-02-28 15:56:43 -0800718
719 // If this is the first method, set up default entry and exit blocks.
720 if (current_method_ == 0) {
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700721 DCHECK(entry_block_ == nullptr);
722 DCHECK(exit_block_ == nullptr);
Vladimir Markoffda4992014-12-18 17:05:58 +0000723 DCHECK_EQ(GetNumBlocks(), 0U);
buzbee0d829482013-10-11 15:24:55 -0700724 // Use id 0 to represent a null block.
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100725 BasicBlock* null_block = CreateNewBB(kNullBlock);
buzbee0d829482013-10-11 15:24:55 -0700726 DCHECK_EQ(null_block->id, NullBasicBlockId);
727 null_block->hidden = true;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100728 entry_block_ = CreateNewBB(kEntryBlock);
729 exit_block_ = CreateNewBB(kExitBlock);
buzbee311ca162013-02-28 15:56:43 -0800730 } else {
731 UNIMPLEMENTED(FATAL) << "Nested inlining not implemented.";
732 /*
733 * Will need to manage storage for ins & outs, push prevous state and update
734 * insert point.
735 */
736 }
737
738 /* Current block to record parsed instructions */
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100739 BasicBlock* cur_block = CreateNewBB(kDalvikByteCode);
buzbee0d829482013-10-11 15:24:55 -0700740 DCHECK_EQ(current_offset_, 0U);
buzbee311ca162013-02-28 15:56:43 -0800741 cur_block->start_offset = current_offset_;
buzbee0d829482013-10-11 15:24:55 -0700742 // TODO: for inlining support, insert at the insert point rather than entry block.
743 entry_block_->fall_through = cur_block->id;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100744 cur_block->predecessors.push_back(entry_block_->id);
buzbee311ca162013-02-28 15:56:43 -0800745
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000746 /* Identify code range in try blocks and set up the empty catch blocks */
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800747 ProcessTryCatchBlocks(&dex_pc_to_block_map);
buzbee311ca162013-02-28 15:56:43 -0800748
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000749 uint64_t merged_df_flags = 0u;
750
buzbee311ca162013-02-28 15:56:43 -0800751 /* Parse all instructions and put them into containing basic blocks */
752 while (code_ptr < code_end) {
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -0700753 MIR *insn = NewMIR();
buzbee311ca162013-02-28 15:56:43 -0800754 insn->offset = current_offset_;
755 insn->m_unit_index = current_method_;
756 int width = ParseInsn(code_ptr, &insn->dalvikInsn);
buzbee311ca162013-02-28 15:56:43 -0800757 Instruction::Code opcode = insn->dalvikInsn.opcode;
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700758 if (opcode_count_ != nullptr) {
buzbee311ca162013-02-28 15:56:43 -0800759 opcode_count_[static_cast<int>(opcode)]++;
760 }
761
Jean Christophe Beylerfb0ea2d2014-07-29 13:20:42 -0700762 int flags = insn->dalvikInsn.FlagsOf();
buzbeeb1f1d642014-02-27 12:55:32 -0800763 int verify_flags = Instruction::VerifyFlagsOf(insn->dalvikInsn.opcode);
buzbee311ca162013-02-28 15:56:43 -0800764
Jean Christophe Beylercc794c32014-05-02 09:34:13 -0700765 uint64_t df_flags = GetDataFlowAttributes(insn);
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000766 merged_df_flags |= df_flags;
buzbee311ca162013-02-28 15:56:43 -0800767
768 if (df_flags & DF_HAS_DEFS) {
769 def_count_ += (df_flags & DF_A_WIDE) ? 2 : 1;
770 }
771
buzbee1da1e2f2013-11-15 13:37:01 -0800772 if (df_flags & DF_LVN) {
773 cur_block->use_lvn = true; // Run local value numbering on this basic block.
774 }
775
Jean Christophe Beyler85127582014-05-11 23:36:41 -0700776 // Check for inline data block signatures.
buzbee27247762013-07-28 12:03:58 -0700777 if (opcode == Instruction::NOP) {
778 // A simple NOP will have a width of 1 at this point, embedded data NOP > 1.
779 if ((width == 1) && ((current_offset_ & 0x1) == 0x1) && ((code_end - code_ptr) > 1)) {
780 // Could be an aligning nop. If an embedded data NOP follows, treat pair as single unit.
781 uint16_t following_raw_instruction = code_ptr[1];
782 if ((following_raw_instruction == Instruction::kSparseSwitchSignature) ||
783 (following_raw_instruction == Instruction::kPackedSwitchSignature) ||
784 (following_raw_instruction == Instruction::kArrayDataSignature)) {
785 width += Instruction::At(code_ptr + 1)->SizeInCodeUnits();
786 }
787 }
788 if (width == 1) {
789 // It is a simple nop - treat normally.
Jean Christophe Beylercdacac42014-03-13 14:54:59 -0700790 cur_block->AppendMIR(insn);
buzbee27247762013-07-28 12:03:58 -0700791 } else {
buzbee0d829482013-10-11 15:24:55 -0700792 DCHECK(cur_block->fall_through == NullBasicBlockId);
793 DCHECK(cur_block->taken == NullBasicBlockId);
buzbee6489d222014-11-25 10:52:19 -0800794 // Unreachable instruction, mark for no continuation and end basic block.
buzbee27247762013-07-28 12:03:58 -0700795 flags &= ~Instruction::kContinue;
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800796 FindBlock(current_offset_ + width, /* create */ true,
797 /* immed_pred_block_p */ nullptr, &dex_pc_to_block_map);
buzbee27247762013-07-28 12:03:58 -0700798 }
799 } else {
Jean Christophe Beylercdacac42014-03-13 14:54:59 -0700800 cur_block->AppendMIR(insn);
buzbee27247762013-07-28 12:03:58 -0700801 }
802
buzbeeb48819d2013-09-14 16:15:25 -0700803 // Associate the starting dex_pc for this opcode with its containing basic block.
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800804 dex_pc_to_block_map[insn->offset] = cur_block->id;
buzbeeb48819d2013-09-14 16:15:25 -0700805
buzbee27247762013-07-28 12:03:58 -0700806 code_ptr += width;
807
buzbee311ca162013-02-28 15:56:43 -0800808 if (flags & Instruction::kBranch) {
809 cur_block = ProcessCanBranch(cur_block, insn, current_offset_,
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800810 width, flags, code_ptr, code_end, &dex_pc_to_block_map);
buzbee311ca162013-02-28 15:56:43 -0800811 } else if (flags & Instruction::kReturn) {
812 cur_block->terminated_by_return = true;
buzbee0d829482013-10-11 15:24:55 -0700813 cur_block->fall_through = exit_block_->id;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100814 exit_block_->predecessors.push_back(cur_block->id);
buzbee311ca162013-02-28 15:56:43 -0800815 /*
816 * Terminate the current block if there are instructions
817 * afterwards.
818 */
819 if (code_ptr < code_end) {
820 /*
821 * Create a fallthrough block for real instructions
822 * (incl. NOP).
823 */
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800824 FindBlock(current_offset_ + width, /* create */ true,
825 /* immed_pred_block_p */ nullptr, &dex_pc_to_block_map);
buzbee311ca162013-02-28 15:56:43 -0800826 }
827 } else if (flags & Instruction::kThrow) {
828 cur_block = ProcessCanThrow(cur_block, insn, current_offset_, width, flags, try_block_addr_,
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800829 code_ptr, code_end, &dex_pc_to_block_map);
buzbee311ca162013-02-28 15:56:43 -0800830 } else if (flags & Instruction::kSwitch) {
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800831 cur_block = ProcessCanSwitch(cur_block, insn, current_offset_, width,
832 flags, &dex_pc_to_block_map);
buzbee311ca162013-02-28 15:56:43 -0800833 }
Alexei Zavjalov688e7c52014-07-16 02:17:58 +0700834 if (verify_flags & Instruction::kVerifyVarArgRange ||
835 verify_flags & Instruction::kVerifyVarArgRangeNonZero) {
buzbeeb1f1d642014-02-27 12:55:32 -0800836 /*
837 * The Quick backend's runtime model includes a gap between a method's
838 * argument ("in") vregs and the rest of its vregs. Handling a range instruction
839 * which spans the gap is somewhat complicated, and should not happen
840 * in normal usage of dx. Punt to the interpreter.
841 */
842 int first_reg_in_range = insn->dalvikInsn.vC;
843 int last_reg_in_range = first_reg_in_range + insn->dalvikInsn.vA - 1;
844 if (IsInVReg(first_reg_in_range) != IsInVReg(last_reg_in_range)) {
845 punt_to_interpreter_ = true;
846 }
847 }
buzbee311ca162013-02-28 15:56:43 -0800848 current_offset_ += width;
Ian Rogers6a3c1fc2014-10-31 00:33:20 -0700849 BasicBlock* next_block = FindBlock(current_offset_, /* create */ false,
Chao-ying Fu72f53af2014-11-11 16:48:40 -0800850 /* immed_pred_block_p */ nullptr,
851 &dex_pc_to_block_map);
buzbee311ca162013-02-28 15:56:43 -0800852 if (next_block) {
853 /*
854 * The next instruction could be the target of a previously parsed
855 * forward branch so a block is already created. If the current
856 * instruction is not an unconditional branch, connect them through
857 * the fall-through link.
858 */
buzbee0d829482013-10-11 15:24:55 -0700859 DCHECK(cur_block->fall_through == NullBasicBlockId ||
860 GetBasicBlock(cur_block->fall_through) == next_block ||
861 GetBasicBlock(cur_block->fall_through) == exit_block_);
buzbee311ca162013-02-28 15:56:43 -0800862
buzbee0d829482013-10-11 15:24:55 -0700863 if ((cur_block->fall_through == NullBasicBlockId) && (flags & Instruction::kContinue)) {
864 cur_block->fall_through = next_block->id;
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100865 next_block->predecessors.push_back(cur_block->id);
buzbee311ca162013-02-28 15:56:43 -0800866 }
867 cur_block = next_block;
868 }
869 }
Vladimir Marko3d73ba22014-03-06 15:18:04 +0000870 merged_df_flags_ = merged_df_flags;
Vladimir Marko5816ed42013-11-27 17:04:20 +0000871
buzbee311ca162013-02-28 15:56:43 -0800872 if (cu_->enable_debug & (1 << kDebugDumpCFG)) {
873 DumpCFG("/sdcard/1_post_parse_cfg/", true);
874 }
875
876 if (cu_->verbose) {
buzbee1fd33462013-03-25 13:40:45 -0700877 DumpMIRGraph();
buzbee311ca162013-02-28 15:56:43 -0800878 }
879}
880
Brian Carlstrom2ce745c2013-07-17 17:44:30 -0700881void MIRGraph::ShowOpcodeStats() {
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700882 DCHECK(opcode_count_ != nullptr);
buzbee311ca162013-02-28 15:56:43 -0800883 LOG(INFO) << "Opcode Count";
884 for (int i = 0; i < kNumPackedOpcodes; i++) {
885 if (opcode_count_[i] != 0) {
886 LOG(INFO) << "-C- " << Instruction::Name(static_cast<Instruction::Code>(i))
887 << " " << opcode_count_[i];
888 }
889 }
890}
891
Jean Christophe Beylercc794c32014-05-02 09:34:13 -0700892uint64_t MIRGraph::GetDataFlowAttributes(Instruction::Code opcode) {
893 DCHECK_LT((size_t) opcode, (sizeof(oat_data_flow_attributes_) / sizeof(oat_data_flow_attributes_[0])));
894 return oat_data_flow_attributes_[opcode];
895}
896
897uint64_t MIRGraph::GetDataFlowAttributes(MIR* mir) {
898 DCHECK(mir != nullptr);
899 Instruction::Code opcode = mir->dalvikInsn.opcode;
900 return GetDataFlowAttributes(opcode);
901}
902
Andreas Gampecee97e52014-12-19 15:30:11 -0800903// The path can easily surpass FS limits because of parameters etc. Use pathconf to get FS
904// restrictions here. Note that a successful invocation will return an actual value. If the path
905// is too long for some reason, the return will be ENAMETOOLONG. Then cut off part of the name.
906//
907// It's possible the path is not valid, or some other errors appear. In that case return false.
908static bool CreateDumpFile(std::string& fname, const char* dir_prefix, NarrowDexOffset start_offset,
909 const char *suffix, int nr, std::string* output) {
910 std::string dir = StringPrintf("./%s", dir_prefix);
911 int64_t max_name_length = pathconf(dir.c_str(), _PC_NAME_MAX);
912 if (max_name_length <= 0) {
913 PLOG(ERROR) << "Could not get file name restrictions for " << dir;
914 return false;
915 }
916
917 std::string name = StringPrintf("%s%x%s_%d.dot", fname.c_str(), start_offset,
918 suffix == nullptr ? "" : suffix, nr);
919 std::string fpath;
920 if (static_cast<int64_t>(name.size()) > max_name_length) {
921 std::string suffix_str = StringPrintf("_%d.dot", nr);
922 name = name.substr(0, static_cast<size_t>(max_name_length) - suffix_str.size()) + suffix_str;
923 }
924 // Sanity check.
925 DCHECK_LE(name.size(), static_cast<size_t>(max_name_length));
926
927 *output = StringPrintf("%s%s", dir_prefix, name.c_str());
928 return true;
929}
930
buzbee311ca162013-02-28 15:56:43 -0800931// TODO: use a configurable base prefix, and adjust callers to supply pass name.
932/* Dump the CFG into a DOT graph */
Jean Christophe Beylerd0a51552014-01-10 14:18:31 -0800933void MIRGraph::DumpCFG(const char* dir_prefix, bool all_blocks, const char *suffix) {
buzbee311ca162013-02-28 15:56:43 -0800934 FILE* file;
Jean Christophe Beylera8869e62014-06-19 09:34:51 -0700935 static AtomicInteger cnt(0);
936
937 // Increment counter to get a unique file number.
938 cnt++;
Andreas Gampecee97e52014-12-19 15:30:11 -0800939 int nr = cnt.LoadRelaxed();
Jean Christophe Beylera8869e62014-06-19 09:34:51 -0700940
buzbee311ca162013-02-28 15:56:43 -0800941 std::string fname(PrettyMethod(cu_->method_idx, *cu_->dex_file));
942 ReplaceSpecialChars(fname);
Andreas Gampecee97e52014-12-19 15:30:11 -0800943 std::string fpath;
944 if (!CreateDumpFile(fname, dir_prefix, GetBasicBlock(GetEntryBlock()->fall_through)->start_offset,
945 suffix, nr, &fpath)) {
946 LOG(ERROR) << "Could not create dump file name for " << fname;
947 return;
948 }
949 file = fopen(fpath.c_str(), "w");
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700950 if (file == nullptr) {
Andreas Gampecee97e52014-12-19 15:30:11 -0800951 PLOG(ERROR) << "Could not open " << fpath << " for DumpCFG.";
buzbee311ca162013-02-28 15:56:43 -0800952 return;
953 }
954 fprintf(file, "digraph G {\n");
955
956 fprintf(file, " rankdir=TB\n");
957
958 int num_blocks = all_blocks ? GetNumBlocks() : num_reachable_blocks_;
959 int idx;
960
961 for (idx = 0; idx < num_blocks; idx++) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +0100962 int block_idx = all_blocks ? idx : dfs_order_[idx];
Jean Christophe Beyler85127582014-05-11 23:36:41 -0700963 BasicBlock* bb = GetBasicBlock(block_idx);
Mathieu Chartier2cebb242015-04-21 16:50:40 -0700964 if (bb == nullptr) continue;
buzbee311ca162013-02-28 15:56:43 -0800965 if (bb->block_type == kDead) continue;
Jean Christophe Beylera8869e62014-06-19 09:34:51 -0700966 if (bb->hidden) continue;
buzbee311ca162013-02-28 15:56:43 -0800967 if (bb->block_type == kEntryBlock) {
968 fprintf(file, " entry_%d [shape=Mdiamond];\n", bb->id);
969 } else if (bb->block_type == kExitBlock) {
970 fprintf(file, " exit_%d [shape=Mdiamond];\n", bb->id);
971 } else if (bb->block_type == kDalvikByteCode) {
972 fprintf(file, " block%04x_%d [shape=record,label = \"{ \\\n",
973 bb->start_offset, bb->id);
Jean Christophe Beyler85127582014-05-11 23:36:41 -0700974 const MIR* mir;
buzbee311ca162013-02-28 15:56:43 -0800975 fprintf(file, " {block id %d\\l}%s\\\n", bb->id,
976 bb->first_mir_insn ? " | " : " ");
977 for (mir = bb->first_mir_insn; mir; mir = mir->next) {
978 int opcode = mir->dalvikInsn.opcode;
Razvan A Lupusorue0951142014-11-14 14:36:55 -0800979 fprintf(file, " {%04x %s %s %s %s %s %s %s %s %s\\l}%s\\\n", mir->offset,
Mark Mendelld65c51a2014-04-29 16:55:20 -0400980 mir->ssa_rep ? GetDalvikDisassembly(mir) :
Jean Christophe Beyler2ab40eb2014-06-02 09:03:14 -0700981 !MIR::DecodedInstruction::IsPseudoMirOp(opcode) ?
982 Instruction::Name(mir->dalvikInsn.opcode) :
Mark Mendelld65c51a2014-04-29 16:55:20 -0400983 extended_mir_op_names_[opcode - kMirOpFirst],
984 (mir->optimization_flags & MIR_IGNORE_RANGE_CHECK) != 0 ? " no_rangecheck" : " ",
985 (mir->optimization_flags & MIR_IGNORE_NULL_CHECK) != 0 ? " no_nullcheck" : " ",
Udayan Banerji60bfe7b2014-07-08 19:59:43 -0700986 (mir->optimization_flags & MIR_IGNORE_SUSPEND_CHECK) != 0 ? " no_suspendcheck" : " ",
Jean Christophe Beylerb5bce7c2014-07-25 12:32:18 -0700987 (mir->optimization_flags & MIR_STORE_NON_TEMPORAL) != 0 ? " non_temporal" : " ",
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -0700988 (mir->optimization_flags & MIR_CALLEE) != 0 ? " inlined" : " ",
Vladimir Marko66c6d7b2014-10-16 15:41:48 +0100989 (mir->optimization_flags & MIR_CLASS_IS_INITIALIZED) != 0 ? " cl_inited" : " ",
990 (mir->optimization_flags & MIR_CLASS_IS_IN_DEX_CACHE) != 0 ? " cl_in_cache" : " ",
Razvan A Lupusorue0951142014-11-14 14:36:55 -0800991 (mir->optimization_flags & MIR_IGNORE_DIV_ZERO_CHECK) != 0 ? " no_div_check" : " ",
Mark Mendelld65c51a2014-04-29 16:55:20 -0400992 mir->next ? " | " : " ");
buzbee311ca162013-02-28 15:56:43 -0800993 }
994 fprintf(file, " }\"];\n\n");
995 } else if (bb->block_type == kExceptionHandling) {
996 char block_name[BLOCK_NAME_LEN];
997
998 GetBlockName(bb, block_name);
999 fprintf(file, " %s [shape=invhouse];\n", block_name);
1000 }
1001
1002 char block_name1[BLOCK_NAME_LEN], block_name2[BLOCK_NAME_LEN];
1003
buzbee0d829482013-10-11 15:24:55 -07001004 if (bb->taken != NullBasicBlockId) {
buzbee311ca162013-02-28 15:56:43 -08001005 GetBlockName(bb, block_name1);
buzbee0d829482013-10-11 15:24:55 -07001006 GetBlockName(GetBasicBlock(bb->taken), block_name2);
buzbee311ca162013-02-28 15:56:43 -08001007 fprintf(file, " %s:s -> %s:n [style=dotted]\n",
1008 block_name1, block_name2);
1009 }
buzbee0d829482013-10-11 15:24:55 -07001010 if (bb->fall_through != NullBasicBlockId) {
buzbee311ca162013-02-28 15:56:43 -08001011 GetBlockName(bb, block_name1);
buzbee0d829482013-10-11 15:24:55 -07001012 GetBlockName(GetBasicBlock(bb->fall_through), block_name2);
buzbee311ca162013-02-28 15:56:43 -08001013 fprintf(file, " %s:s -> %s:n\n", block_name1, block_name2);
1014 }
1015
buzbee0d829482013-10-11 15:24:55 -07001016 if (bb->successor_block_list_type != kNotUsed) {
buzbee311ca162013-02-28 15:56:43 -08001017 fprintf(file, " succ%04x_%d [shape=%s,label = \"{ \\\n",
1018 bb->start_offset, bb->id,
buzbee0d829482013-10-11 15:24:55 -07001019 (bb->successor_block_list_type == kCatch) ? "Mrecord" : "record");
buzbee311ca162013-02-28 15:56:43 -08001020
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001021 int last_succ_id = static_cast<int>(bb->successor_blocks.size() - 1u);
buzbee311ca162013-02-28 15:56:43 -08001022 int succ_id = 0;
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001023 for (SuccessorBlockInfo* successor_block_info : bb->successor_blocks) {
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001024 BasicBlock* dest_block = GetBasicBlock(successor_block_info->block);
buzbee311ca162013-02-28 15:56:43 -08001025 fprintf(file, " {<f%d> %04x: %04x\\l}%s\\\n",
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001026 succ_id,
buzbee311ca162013-02-28 15:56:43 -08001027 successor_block_info->key,
1028 dest_block->start_offset,
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001029 (succ_id != last_succ_id) ? " | " : " ");
1030 ++succ_id;
buzbee311ca162013-02-28 15:56:43 -08001031 }
1032 fprintf(file, " }\"];\n\n");
1033
1034 GetBlockName(bb, block_name1);
1035 fprintf(file, " %s:s -> succ%04x_%d:n [style=dashed]\n",
1036 block_name1, bb->start_offset, bb->id);
1037
Razvan A Lupusoru25bc2792014-03-19 14:27:59 -07001038 // Link the successor pseudo-block with all of its potential targets.
Razvan A Lupusoru25bc2792014-03-19 14:27:59 -07001039 succ_id = 0;
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001040 for (SuccessorBlockInfo* successor_block_info : bb->successor_blocks) {
Razvan A Lupusoru25bc2792014-03-19 14:27:59 -07001041 BasicBlock* dest_block = GetBasicBlock(successor_block_info->block);
buzbee311ca162013-02-28 15:56:43 -08001042
Razvan A Lupusoru25bc2792014-03-19 14:27:59 -07001043 GetBlockName(dest_block, block_name2);
1044 fprintf(file, " succ%04x_%d:f%d:e -> %s:n\n", bb->start_offset,
1045 bb->id, succ_id++, block_name2);
buzbee311ca162013-02-28 15:56:43 -08001046 }
1047 }
1048 fprintf(file, "\n");
1049
1050 if (cu_->verbose) {
1051 /* Display the dominator tree */
1052 GetBlockName(bb, block_name1);
1053 fprintf(file, " cfg%s [label=\"%s\", shape=none];\n",
1054 block_name1, block_name1);
1055 if (bb->i_dom) {
buzbee0d829482013-10-11 15:24:55 -07001056 GetBlockName(GetBasicBlock(bb->i_dom), block_name2);
buzbee311ca162013-02-28 15:56:43 -08001057 fprintf(file, " cfg%s:s -> cfg%s:n\n\n", block_name2, block_name1);
1058 }
1059 }
1060 }
1061 fprintf(file, "}\n");
1062 fclose(file);
1063}
1064
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07001065/* Insert an MIR instruction to the end of a basic block. */
Jean Christophe Beylercdacac42014-03-13 14:54:59 -07001066void BasicBlock::AppendMIR(MIR* mir) {
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001067 // Insert it after the last MIR.
1068 InsertMIRListAfter(last_mir_insn, mir, mir);
buzbee1fd33462013-03-25 13:40:45 -07001069}
1070
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001071void BasicBlock::AppendMIRList(MIR* first_list_mir, MIR* last_list_mir) {
1072 // Insert it after the last MIR.
1073 InsertMIRListAfter(last_mir_insn, first_list_mir, last_list_mir);
1074}
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07001075
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001076void BasicBlock::AppendMIRList(const std::vector<MIR*>& insns) {
1077 for (std::vector<MIR*>::const_iterator it = insns.begin(); it != insns.end(); it++) {
1078 MIR* new_mir = *it;
1079
1080 // Add a copy of each MIR.
1081 InsertMIRListAfter(last_mir_insn, new_mir, new_mir);
1082 }
buzbee1fd33462013-03-25 13:40:45 -07001083}
1084
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07001085/* Insert a MIR instruction after the specified MIR. */
Jean Christophe Beylercdacac42014-03-13 14:54:59 -07001086void BasicBlock::InsertMIRAfter(MIR* current_mir, MIR* new_mir) {
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001087 InsertMIRListAfter(current_mir, new_mir, new_mir);
1088}
buzbee1fd33462013-03-25 13:40:45 -07001089
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001090void BasicBlock::InsertMIRListAfter(MIR* insert_after, MIR* first_list_mir, MIR* last_list_mir) {
1091 // If no MIR, we are done.
1092 if (first_list_mir == nullptr || last_list_mir == nullptr) {
1093 return;
buzbee1fd33462013-03-25 13:40:45 -07001094 }
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07001095
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001096 // If insert_after is null, assume BB is empty.
1097 if (insert_after == nullptr) {
1098 first_mir_insn = first_list_mir;
1099 last_mir_insn = last_list_mir;
1100 last_list_mir->next = nullptr;
1101 } else {
1102 MIR* after_list = insert_after->next;
1103 insert_after->next = first_list_mir;
1104 last_list_mir->next = after_list;
1105 if (after_list == nullptr) {
1106 last_mir_insn = last_list_mir;
1107 }
1108 }
1109
1110 // Set this BB to be the basic block of the MIRs.
1111 MIR* last = last_list_mir->next;
1112 for (MIR* mir = first_list_mir; mir != last; mir = mir->next) {
1113 mir->bb = id;
1114 }
1115}
1116
1117/* Insert an MIR instruction to the head of a basic block. */
1118void BasicBlock::PrependMIR(MIR* mir) {
1119 InsertMIRListBefore(first_mir_insn, mir, mir);
1120}
1121
1122void BasicBlock::PrependMIRList(MIR* first_list_mir, MIR* last_list_mir) {
1123 // Insert it before the first MIR.
1124 InsertMIRListBefore(first_mir_insn, first_list_mir, last_list_mir);
1125}
1126
1127void BasicBlock::PrependMIRList(const std::vector<MIR*>& to_add) {
1128 for (std::vector<MIR*>::const_iterator it = to_add.begin(); it != to_add.end(); it++) {
1129 MIR* mir = *it;
1130
1131 InsertMIRListBefore(first_mir_insn, mir, mir);
1132 }
1133}
1134
1135/* Insert a MIR instruction before the specified MIR. */
1136void BasicBlock::InsertMIRBefore(MIR* current_mir, MIR* new_mir) {
1137 // Insert as a single element list.
1138 return InsertMIRListBefore(current_mir, new_mir, new_mir);
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07001139}
1140
1141MIR* BasicBlock::FindPreviousMIR(MIR* mir) {
1142 MIR* current = first_mir_insn;
1143
1144 while (current != nullptr) {
1145 MIR* next = current->next;
1146
1147 if (next == mir) {
1148 return current;
1149 }
1150
1151 current = next;
1152 }
1153
1154 return nullptr;
1155}
1156
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001157void BasicBlock::InsertMIRListBefore(MIR* insert_before, MIR* first_list_mir, MIR* last_list_mir) {
1158 // If no MIR, we are done.
1159 if (first_list_mir == nullptr || last_list_mir == nullptr) {
1160 return;
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07001161 }
1162
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001163 // If insert_before is null, assume BB is empty.
1164 if (insert_before == nullptr) {
1165 first_mir_insn = first_list_mir;
1166 last_mir_insn = last_list_mir;
1167 last_list_mir->next = nullptr;
1168 } else {
1169 if (first_mir_insn == insert_before) {
1170 last_list_mir->next = first_mir_insn;
1171 first_mir_insn = first_list_mir;
1172 } else {
1173 // Find the preceding MIR.
1174 MIR* before_list = FindPreviousMIR(insert_before);
1175 DCHECK(before_list != nullptr);
1176 before_list->next = first_list_mir;
1177 last_list_mir->next = insert_before;
1178 }
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07001179 }
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001180
1181 // Set this BB to be the basic block of the MIRs.
1182 for (MIR* mir = first_list_mir; mir != last_list_mir->next; mir = mir->next) {
1183 mir->bb = id;
1184 }
1185}
1186
1187bool BasicBlock::RemoveMIR(MIR* mir) {
1188 // Remove as a single element list.
1189 return RemoveMIRList(mir, mir);
1190}
1191
1192bool BasicBlock::RemoveMIRList(MIR* first_list_mir, MIR* last_list_mir) {
1193 if (first_list_mir == nullptr) {
1194 return false;
1195 }
1196
1197 // Try to find the MIR.
1198 MIR* before_list = nullptr;
1199 MIR* after_list = nullptr;
1200
1201 // If we are removing from the beginning of the MIR list.
1202 if (first_mir_insn == first_list_mir) {
1203 before_list = nullptr;
1204 } else {
1205 before_list = FindPreviousMIR(first_list_mir);
1206 if (before_list == nullptr) {
1207 // We did not find the mir.
1208 return false;
1209 }
1210 }
1211
Jean Christophe Beylera4307ac2014-06-02 09:04:32 -07001212 // Remove the BB information and also find the after_list.
Chao-ying Fu590c6a42014-09-23 14:54:32 -07001213 for (MIR* mir = first_list_mir; mir != last_list_mir->next; mir = mir->next) {
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001214 mir->bb = NullBasicBlockId;
1215 }
1216
1217 after_list = last_list_mir->next;
1218
Jean Christophe Beylera4307ac2014-06-02 09:04:32 -07001219 // If there is nothing before the list, after_list is the first_mir.
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001220 if (before_list == nullptr) {
1221 first_mir_insn = after_list;
Jean Christophe Beylera4307ac2014-06-02 09:04:32 -07001222 } else {
1223 before_list->next = after_list;
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001224 }
1225
Jean Christophe Beylera4307ac2014-06-02 09:04:32 -07001226 // If there is nothing after the list, before_list is last_mir.
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001227 if (after_list == nullptr) {
1228 last_mir_insn = before_list;
1229 }
1230
1231 return true;
buzbee1fd33462013-03-25 13:40:45 -07001232}
1233
Vladimir Marko26e7d452014-11-24 14:09:46 +00001234MIR* BasicBlock::GetFirstNonPhiInsn() {
1235 MIR* mir = first_mir_insn;
1236 while (mir != nullptr && static_cast<int>(mir->dalvikInsn.opcode) == kMirOpPhi) {
1237 mir = mir->next;
1238 }
1239 return mir;
1240}
1241
Jean Christophe Beylercdacac42014-03-13 14:54:59 -07001242MIR* BasicBlock::GetNextUnconditionalMir(MIRGraph* mir_graph, MIR* current) {
Razvan A Lupusoru3bc01742014-02-06 13:18:43 -08001243 MIR* next_mir = nullptr;
1244
1245 if (current != nullptr) {
1246 next_mir = current->next;
1247 }
1248
1249 if (next_mir == nullptr) {
1250 // Only look for next MIR that follows unconditionally.
Jean Christophe Beylercdacac42014-03-13 14:54:59 -07001251 if ((taken == NullBasicBlockId) && (fall_through != NullBasicBlockId)) {
1252 next_mir = mir_graph->GetBasicBlock(fall_through)->first_mir_insn;
Razvan A Lupusoru3bc01742014-02-06 13:18:43 -08001253 }
1254 }
1255
1256 return next_mir;
1257}
1258
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001259static void FillTypeSizeString(uint32_t type_size, std::string* decoded_mir) {
1260 DCHECK(decoded_mir != nullptr);
1261 OpSize type = static_cast<OpSize>(type_size >> 16);
1262 uint16_t vect_size = (type_size & 0xFFFF);
1263
1264 // Now print the type and vector size.
1265 std::stringstream ss;
1266 ss << " (type:";
1267 ss << type;
1268 ss << " vectsize:";
1269 ss << vect_size;
1270 ss << ")";
1271
1272 decoded_mir->append(ss.str());
1273}
1274
1275void MIRGraph::DisassembleExtendedInstr(const MIR* mir, std::string* decoded_mir) {
1276 DCHECK(decoded_mir != nullptr);
1277 int opcode = mir->dalvikInsn.opcode;
1278 SSARepresentation* ssa_rep = mir->ssa_rep;
1279 int defs = (ssa_rep != nullptr) ? ssa_rep->num_defs : 0;
1280 int uses = (ssa_rep != nullptr) ? ssa_rep->num_uses : 0;
1281
Vladimirf41b92c2014-10-13 13:41:38 +07001282 if (opcode < kMirOpFirst) {
1283 return; // It is not an extended instruction.
1284 }
1285
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001286 decoded_mir->append(extended_mir_op_names_[opcode - kMirOpFirst]);
1287
1288 switch (opcode) {
1289 case kMirOpPhi: {
1290 if (defs > 0 && uses > 0) {
1291 BasicBlockId* incoming = mir->meta.phi_incoming;
1292 decoded_mir->append(StringPrintf(" %s = (%s",
1293 GetSSANameWithConst(ssa_rep->defs[0], true).c_str(),
1294 GetSSANameWithConst(ssa_rep->uses[0], true).c_str()));
1295 decoded_mir->append(StringPrintf(":%d", incoming[0]));
1296 for (int i = 1; i < uses; i++) {
1297 decoded_mir->append(StringPrintf(", %s:%d", GetSSANameWithConst(ssa_rep->uses[i], true).c_str(), incoming[i]));
1298 }
1299 decoded_mir->append(")");
1300 }
1301 break;
1302 }
1303 case kMirOpCopy:
1304 if (ssa_rep != nullptr) {
1305 decoded_mir->append(" ");
1306 decoded_mir->append(GetSSANameWithConst(ssa_rep->defs[0], false));
1307 if (defs > 1) {
1308 decoded_mir->append(", ");
1309 decoded_mir->append(GetSSANameWithConst(ssa_rep->defs[1], false));
1310 }
1311 decoded_mir->append(" = ");
1312 decoded_mir->append(GetSSANameWithConst(ssa_rep->uses[0], false));
1313 if (uses > 1) {
1314 decoded_mir->append(", ");
1315 decoded_mir->append(GetSSANameWithConst(ssa_rep->uses[1], false));
1316 }
1317 } else {
1318 decoded_mir->append(StringPrintf(" v%d = v%d", mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1319 }
1320 break;
1321 case kMirOpFusedCmplFloat:
1322 case kMirOpFusedCmpgFloat:
1323 case kMirOpFusedCmplDouble:
1324 case kMirOpFusedCmpgDouble:
1325 case kMirOpFusedCmpLong:
1326 if (ssa_rep != nullptr) {
1327 decoded_mir->append(" ");
1328 decoded_mir->append(GetSSANameWithConst(ssa_rep->uses[0], false));
1329 for (int i = 1; i < uses; i++) {
1330 decoded_mir->append(", ");
1331 decoded_mir->append(GetSSANameWithConst(ssa_rep->uses[i], false));
1332 }
1333 } else {
1334 decoded_mir->append(StringPrintf(" v%d, v%d", mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1335 }
1336 break;
1337 case kMirOpMoveVector:
1338 decoded_mir->append(StringPrintf(" vect%d = vect%d", mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1339 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1340 break;
1341 case kMirOpPackedAddition:
1342 decoded_mir->append(StringPrintf(" vect%d = vect%d + vect%d", mir->dalvikInsn.vA, mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1343 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1344 break;
1345 case kMirOpPackedMultiply:
1346 decoded_mir->append(StringPrintf(" vect%d = vect%d * vect%d", mir->dalvikInsn.vA, mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1347 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1348 break;
1349 case kMirOpPackedSubtract:
1350 decoded_mir->append(StringPrintf(" vect%d = vect%d - vect%d", mir->dalvikInsn.vA, mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1351 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1352 break;
1353 case kMirOpPackedAnd:
1354 decoded_mir->append(StringPrintf(" vect%d = vect%d & vect%d", mir->dalvikInsn.vA, mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1355 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1356 break;
1357 case kMirOpPackedOr:
1358 decoded_mir->append(StringPrintf(" vect%d = vect%d \\| vect%d", mir->dalvikInsn.vA, mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1359 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1360 break;
1361 case kMirOpPackedXor:
1362 decoded_mir->append(StringPrintf(" vect%d = vect%d ^ vect%d", mir->dalvikInsn.vA, mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1363 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1364 break;
1365 case kMirOpPackedShiftLeft:
1366 decoded_mir->append(StringPrintf(" vect%d = vect%d \\<\\< %d", mir->dalvikInsn.vA, mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1367 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1368 break;
1369 case kMirOpPackedUnsignedShiftRight:
1370 decoded_mir->append(StringPrintf(" vect%d = vect%d \\>\\>\\> %d", mir->dalvikInsn.vA, mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1371 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1372 break;
1373 case kMirOpPackedSignedShiftRight:
1374 decoded_mir->append(StringPrintf(" vect%d = vect%d \\>\\> %d", mir->dalvikInsn.vA, mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1375 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1376 break;
1377 case kMirOpConstVector:
1378 decoded_mir->append(StringPrintf(" vect%d = %x, %x, %x, %x", mir->dalvikInsn.vA, mir->dalvikInsn.arg[0],
1379 mir->dalvikInsn.arg[1], mir->dalvikInsn.arg[2], mir->dalvikInsn.arg[3]));
1380 break;
1381 case kMirOpPackedSet:
1382 if (ssa_rep != nullptr) {
1383 decoded_mir->append(StringPrintf(" vect%d = %s", mir->dalvikInsn.vA,
1384 GetSSANameWithConst(ssa_rep->uses[0], false).c_str()));
1385 if (uses > 1) {
1386 decoded_mir->append(", ");
1387 decoded_mir->append(GetSSANameWithConst(ssa_rep->uses[1], false));
1388 }
1389 } else {
1390 decoded_mir->append(StringPrintf(" vect%d = v%d", mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1391 }
1392 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1393 break;
1394 case kMirOpPackedAddReduce:
1395 if (ssa_rep != nullptr) {
1396 decoded_mir->append(" ");
1397 decoded_mir->append(GetSSANameWithConst(ssa_rep->defs[0], false));
1398 if (defs > 1) {
1399 decoded_mir->append(", ");
1400 decoded_mir->append(GetSSANameWithConst(ssa_rep->defs[1], false));
1401 }
1402 decoded_mir->append(StringPrintf(" = vect%d + %s", mir->dalvikInsn.vB,
1403 GetSSANameWithConst(ssa_rep->uses[0], false).c_str()));
1404 if (uses > 1) {
1405 decoded_mir->append(", ");
1406 decoded_mir->append(GetSSANameWithConst(ssa_rep->uses[1], false));
1407 }
1408 } else {
1409 decoded_mir->append(StringPrintf("v%d = vect%d + v%d", mir->dalvikInsn.vA, mir->dalvikInsn.vB, mir->dalvikInsn.vA));
1410 }
1411 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1412 break;
1413 case kMirOpPackedReduce:
1414 if (ssa_rep != nullptr) {
1415 decoded_mir->append(" ");
1416 decoded_mir->append(GetSSANameWithConst(ssa_rep->defs[0], false));
1417 if (defs > 1) {
1418 decoded_mir->append(", ");
1419 decoded_mir->append(GetSSANameWithConst(ssa_rep->defs[1], false));
1420 }
Razvan A Lupusorub72c7232014-10-28 19:29:52 -07001421 decoded_mir->append(StringPrintf(" = vect%d (extr_idx:%d)", mir->dalvikInsn.vB, mir->dalvikInsn.arg[0]));
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001422 } else {
Razvan A Lupusorub72c7232014-10-28 19:29:52 -07001423 decoded_mir->append(StringPrintf(" v%d = vect%d (extr_idx:%d)", mir->dalvikInsn.vA,
1424 mir->dalvikInsn.vB, mir->dalvikInsn.arg[0]));
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001425 }
1426 FillTypeSizeString(mir->dalvikInsn.vC, decoded_mir);
1427 break;
1428 case kMirOpReserveVectorRegisters:
1429 case kMirOpReturnVectorRegisters:
1430 decoded_mir->append(StringPrintf(" vect%d - vect%d", mir->dalvikInsn.vA, mir->dalvikInsn.vB));
1431 break;
1432 case kMirOpMemBarrier: {
1433 decoded_mir->append(" type:");
1434 std::stringstream ss;
1435 ss << static_cast<MemBarrierKind>(mir->dalvikInsn.vA);
1436 decoded_mir->append(ss.str());
1437 break;
1438 }
Lupusoru, Razvan Ab3a84e22014-07-28 14:11:01 -07001439 case kMirOpPackedArrayGet:
1440 case kMirOpPackedArrayPut:
1441 decoded_mir->append(StringPrintf(" vect%d", mir->dalvikInsn.vA));
1442 if (ssa_rep != nullptr) {
1443 decoded_mir->append(StringPrintf(", %s[%s]",
1444 GetSSANameWithConst(ssa_rep->uses[0], false).c_str(),
1445 GetSSANameWithConst(ssa_rep->uses[1], false).c_str()));
1446 } else {
1447 decoded_mir->append(StringPrintf(", v%d[v%d]", mir->dalvikInsn.vB, mir->dalvikInsn.vC));
1448 }
1449 FillTypeSizeString(mir->dalvikInsn.arg[0], decoded_mir);
1450 break;
Ningsheng Jiana262f772014-11-25 16:48:07 +08001451 case kMirOpMaddInt:
1452 case kMirOpMsubInt:
1453 case kMirOpMaddLong:
1454 case kMirOpMsubLong:
1455 if (ssa_rep != nullptr) {
1456 decoded_mir->append(" ");
1457 decoded_mir->append(GetSSANameWithConst(ssa_rep->defs[0], false));
1458 if (defs > 1) {
1459 decoded_mir->append(", ");
1460 decoded_mir->append(GetSSANameWithConst(ssa_rep->defs[1], false));
1461 }
1462 for (int i = 0; i < uses; i++) {
1463 decoded_mir->append(", ");
1464 decoded_mir->append(GetSSANameWithConst(ssa_rep->uses[i], false));
1465 }
1466 } else {
1467 decoded_mir->append(StringPrintf(" v%d, v%d, v%d, v%d",
1468 mir->dalvikInsn.vA, mir->dalvikInsn.vB,
1469 mir->dalvikInsn.vC, mir->dalvikInsn.arg[0]));
1470 }
1471 break;
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001472 default:
1473 break;
1474 }
1475}
1476
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001477char* MIRGraph::GetDalvikDisassembly(const MIR* mir) {
Ian Rogers29a26482014-05-02 15:27:29 -07001478 MIR::DecodedInstruction insn = mir->dalvikInsn;
buzbee1fd33462013-03-25 13:40:45 -07001479 std::string str;
1480 int flags = 0;
1481 int opcode = insn.opcode;
1482 char* ret;
1483 bool nop = false;
1484 SSARepresentation* ssa_rep = mir->ssa_rep;
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001485 Instruction::Format dalvik_format = Instruction::k10x; // Default to no-operand format.
buzbee1fd33462013-03-25 13:40:45 -07001486
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001487 // Handle special cases that recover the original dalvik instruction.
buzbee1fd33462013-03-25 13:40:45 -07001488 if ((opcode == kMirOpCheck) || (opcode == kMirOpCheckPart2)) {
1489 str.append(extended_mir_op_names_[opcode - kMirOpFirst]);
1490 str.append(": ");
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001491 // Recover the original Dex instruction.
buzbee1fd33462013-03-25 13:40:45 -07001492 insn = mir->meta.throw_insn->dalvikInsn;
1493 ssa_rep = mir->meta.throw_insn->ssa_rep;
buzbee1fd33462013-03-25 13:40:45 -07001494 opcode = insn.opcode;
1495 } else if (opcode == kMirOpNop) {
1496 str.append("[");
Razvan A Lupusoru75035972014-09-11 15:24:59 -07001497 if (mir->offset < current_code_item_->insns_size_in_code_units_) {
1498 // Recover original opcode.
1499 insn.opcode = Instruction::At(current_code_item_->insns_ + mir->offset)->Opcode();
1500 opcode = insn.opcode;
1501 }
buzbee1fd33462013-03-25 13:40:45 -07001502 nop = true;
1503 }
Mathieu Chartier2cebb242015-04-21 16:50:40 -07001504 int defs = (ssa_rep != nullptr) ? ssa_rep->num_defs : 0;
1505 int uses = (ssa_rep != nullptr) ? ssa_rep->num_uses : 0;
buzbee1fd33462013-03-25 13:40:45 -07001506
Jean Christophe Beyler2ab40eb2014-06-02 09:03:14 -07001507 if (MIR::DecodedInstruction::IsPseudoMirOp(opcode)) {
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001508 // Note that this does not check the MIR's opcode in all cases. In cases where it
1509 // recovered dalvik instruction, it uses opcode of that instead of the extended one.
1510 DisassembleExtendedInstr(mir, &str);
buzbee1fd33462013-03-25 13:40:45 -07001511 } else {
1512 dalvik_format = Instruction::FormatOf(insn.opcode);
Jean Christophe Beylerfb0ea2d2014-07-29 13:20:42 -07001513 flags = insn.FlagsOf();
buzbee1fd33462013-03-25 13:40:45 -07001514 str.append(Instruction::Name(insn.opcode));
buzbee1fd33462013-03-25 13:40:45 -07001515
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001516 // For invokes-style formats, treat wide regs as a pair of singles.
buzbee1fd33462013-03-25 13:40:45 -07001517 bool show_singles = ((dalvik_format == Instruction::k35c) ||
1518 (dalvik_format == Instruction::k3rc));
1519 if (defs != 0) {
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001520 str.append(" ");
1521 str.append(GetSSANameWithConst(ssa_rep->defs[0], false));
1522 if (defs > 1) {
1523 str.append(", ");
1524 str.append(GetSSANameWithConst(ssa_rep->defs[1], false));
1525 }
buzbee1fd33462013-03-25 13:40:45 -07001526 if (uses != 0) {
1527 str.append(", ");
1528 }
1529 }
1530 for (int i = 0; i < uses; i++) {
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001531 str.append(" ");
1532 str.append(GetSSANameWithConst(ssa_rep->uses[i], show_singles));
Mathieu Chartier2cebb242015-04-21 16:50:40 -07001533 if (!show_singles && (reg_location_ != nullptr) && reg_location_[i].wide) {
buzbee1fd33462013-03-25 13:40:45 -07001534 // For the listing, skip the high sreg.
1535 i++;
1536 }
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001537 if (i != (uses - 1)) {
buzbee1fd33462013-03-25 13:40:45 -07001538 str.append(",");
1539 }
1540 }
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001541
buzbee1fd33462013-03-25 13:40:45 -07001542 switch (dalvik_format) {
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001543 case Instruction::k11n: // Add one immediate from vB.
buzbee1fd33462013-03-25 13:40:45 -07001544 case Instruction::k21s:
1545 case Instruction::k31i:
1546 case Instruction::k21h:
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001547 str.append(StringPrintf(", #0x%x", insn.vB));
buzbee1fd33462013-03-25 13:40:45 -07001548 break;
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001549 case Instruction::k51l: // Add one wide immediate.
Ian Rogers23b03b52014-01-24 11:10:03 -08001550 str.append(StringPrintf(", #%" PRId64, insn.vB_wide));
buzbee1fd33462013-03-25 13:40:45 -07001551 break;
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001552 case Instruction::k21c: // One register, one string/type/method index.
buzbee1fd33462013-03-25 13:40:45 -07001553 case Instruction::k31c:
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001554 str.append(StringPrintf(", index #0x%x", insn.vB));
buzbee1fd33462013-03-25 13:40:45 -07001555 break;
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001556 case Instruction::k22c: // Two registers, one string/type/method index.
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001557 str.append(StringPrintf(", index #0x%x", insn.vC));
buzbee1fd33462013-03-25 13:40:45 -07001558 break;
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001559 case Instruction::k22s: // Add one immediate from vC.
buzbee1fd33462013-03-25 13:40:45 -07001560 case Instruction::k22b:
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001561 str.append(StringPrintf(", #0x%x", insn.vC));
buzbee1fd33462013-03-25 13:40:45 -07001562 break;
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001563 default:
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001564 // Nothing left to print.
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001565 break;
Brian Carlstrom02c8cc62013-07-18 15:54:44 -07001566 }
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001567
Serguei Katkov0f3e4982014-08-21 16:43:54 +07001568 if ((flags & Instruction::kBranch) != 0) {
1569 // For branches, decode the instructions to print out the branch targets.
1570 int offset = 0;
1571 switch (dalvik_format) {
1572 case Instruction::k21t:
1573 offset = insn.vB;
1574 break;
1575 case Instruction::k22t:
1576 offset = insn.vC;
1577 break;
1578 case Instruction::k10t:
1579 case Instruction::k20t:
1580 case Instruction::k30t:
1581 offset = insn.vA;
1582 break;
1583 default:
1584 LOG(FATAL) << "Unexpected branch format " << dalvik_format << " from " << insn.opcode;
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001585 break;
Serguei Katkov0f3e4982014-08-21 16:43:54 +07001586 }
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001587 str.append(StringPrintf(", 0x%x (%c%x)", mir->offset + offset,
Serguei Katkov0f3e4982014-08-21 16:43:54 +07001588 offset > 0 ? '+' : '-', offset > 0 ? offset : -offset));
1589 }
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001590
1591 if (nop) {
1592 str.append("]--optimized away");
1593 }
buzbee1fd33462013-03-25 13:40:45 -07001594 }
1595 int length = str.length() + 1;
Vladimir Markoe4fcc5b2015-02-13 10:28:29 +00001596 ret = arena_->AllocArray<char>(length, kArenaAllocDFInfo);
buzbee1fd33462013-03-25 13:40:45 -07001597 strncpy(ret, str.c_str(), length);
1598 return ret;
1599}
1600
1601/* Turn method name into a legal Linux file name */
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001602void MIRGraph::ReplaceSpecialChars(std::string& str) {
Brian Carlstrom9b7085a2013-07-18 15:15:21 -07001603 static const struct { const char before; const char after; } match[] = {
1604 {'/', '-'}, {';', '#'}, {' ', '#'}, {'$', '+'},
1605 {'(', '@'}, {')', '@'}, {'<', '='}, {'>', '='}
1606 };
buzbee1fd33462013-03-25 13:40:45 -07001607 for (unsigned int i = 0; i < sizeof(match)/sizeof(match[0]); i++) {
1608 std::replace(str.begin(), str.end(), match[i].before, match[i].after);
1609 }
1610}
1611
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001612std::string MIRGraph::GetSSAName(int ssa_reg) {
Andreas Gampec7399c82015-04-07 19:58:03 -07001613 // TODO: This value is needed for debugging. Currently, we compute this and then copy to the
1614 // arena. We should be smarter and just place straight into the arena, or compute the
Ian Rogers39ebcb82013-05-30 16:57:23 -07001615 // value more lazily.
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001616 int vreg = SRegToVReg(ssa_reg);
1617 if (vreg >= static_cast<int>(GetFirstTempVR())) {
1618 return StringPrintf("t%d_%d", SRegToVReg(ssa_reg), GetSSASubscript(ssa_reg));
1619 } else {
1620 return StringPrintf("v%d_%d", SRegToVReg(ssa_reg), GetSSASubscript(ssa_reg));
1621 }
buzbee1fd33462013-03-25 13:40:45 -07001622}
1623
1624// Similar to GetSSAName, but if ssa name represents an immediate show that as well.
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001625std::string MIRGraph::GetSSANameWithConst(int ssa_reg, bool singles_only) {
Mathieu Chartier2cebb242015-04-21 16:50:40 -07001626 if (reg_location_ == nullptr) {
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001627 // Pre-SSA - just use the standard name.
buzbee1fd33462013-03-25 13:40:45 -07001628 return GetSSAName(ssa_reg);
1629 }
1630 if (IsConst(reg_location_[ssa_reg])) {
Mark Mendell9944b3b2014-10-06 10:58:54 -04001631 if (!singles_only && reg_location_[ssa_reg].wide &&
1632 !reg_location_[ssa_reg].high_word) {
Ian Rogers23b03b52014-01-24 11:10:03 -08001633 return StringPrintf("v%d_%d#0x%" PRIx64, SRegToVReg(ssa_reg), GetSSASubscript(ssa_reg),
buzbee1fd33462013-03-25 13:40:45 -07001634 ConstantValueWide(reg_location_[ssa_reg]));
1635 } else {
Brian Carlstromb1eba212013-07-17 18:07:19 -07001636 return StringPrintf("v%d_%d#0x%x", SRegToVReg(ssa_reg), GetSSASubscript(ssa_reg),
buzbee1fd33462013-03-25 13:40:45 -07001637 ConstantValue(reg_location_[ssa_reg]));
1638 }
1639 } else {
Razvan A Lupusoru1500e6f2014-08-22 15:39:50 -07001640 int vreg = SRegToVReg(ssa_reg);
1641 if (vreg >= static_cast<int>(GetFirstTempVR())) {
1642 return StringPrintf("t%d_%d", SRegToVReg(ssa_reg), GetSSASubscript(ssa_reg));
1643 } else {
1644 return StringPrintf("v%d_%d", SRegToVReg(ssa_reg), GetSSASubscript(ssa_reg));
1645 }
buzbee1fd33462013-03-25 13:40:45 -07001646 }
1647}
1648
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001649void MIRGraph::GetBlockName(BasicBlock* bb, char* name) {
buzbee1fd33462013-03-25 13:40:45 -07001650 switch (bb->block_type) {
1651 case kEntryBlock:
1652 snprintf(name, BLOCK_NAME_LEN, "entry_%d", bb->id);
1653 break;
1654 case kExitBlock:
1655 snprintf(name, BLOCK_NAME_LEN, "exit_%d", bb->id);
1656 break;
1657 case kDalvikByteCode:
1658 snprintf(name, BLOCK_NAME_LEN, "block%04x_%d", bb->start_offset, bb->id);
1659 break;
1660 case kExceptionHandling:
1661 snprintf(name, BLOCK_NAME_LEN, "exception%04x_%d", bb->start_offset,
1662 bb->id);
1663 break;
1664 default:
1665 snprintf(name, BLOCK_NAME_LEN, "_%d", bb->id);
1666 break;
1667 }
1668}
1669
Serguei Katkov717a3e42014-11-13 17:19:42 +06001670const char* MIRGraph::GetShortyFromMethodReference(const MethodReference& target_method) {
1671 const DexFile::MethodId& method_id =
1672 target_method.dex_file->GetMethodId(target_method.dex_method_index);
1673 return target_method.dex_file->GetShorty(method_id.proto_idx_);
1674}
1675
buzbee1fd33462013-03-25 13:40:45 -07001676/* Debug Utility - dump a compilation unit */
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001677void MIRGraph::DumpMIRGraph() {
buzbee1fd33462013-03-25 13:40:45 -07001678 const char* block_type_names[] = {
buzbee17189ac2013-11-08 11:07:02 -08001679 "Null Block",
buzbee1fd33462013-03-25 13:40:45 -07001680 "Entry Block",
1681 "Code Block",
1682 "Exit Block",
1683 "Exception Handling",
1684 "Catch Block"
1685 };
1686
1687 LOG(INFO) << "Compiling " << PrettyMethod(cu_->method_idx, *cu_->dex_file);
Razvan A Lupusoru8d0d03e2014-06-06 17:04:52 -07001688 LOG(INFO) << GetInsns(0) << " insns";
buzbee1fd33462013-03-25 13:40:45 -07001689 LOG(INFO) << GetNumBlocks() << " blocks in total";
buzbee1fd33462013-03-25 13:40:45 -07001690
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001691 for (BasicBlock* bb : block_list_) {
buzbee1fd33462013-03-25 13:40:45 -07001692 LOG(INFO) << StringPrintf("Block %d (%s) (insn %04x - %04x%s)",
1693 bb->id,
1694 block_type_names[bb->block_type],
1695 bb->start_offset,
1696 bb->last_mir_insn ? bb->last_mir_insn->offset : bb->start_offset,
1697 bb->last_mir_insn ? "" : " empty");
buzbee0d829482013-10-11 15:24:55 -07001698 if (bb->taken != NullBasicBlockId) {
1699 LOG(INFO) << " Taken branch: block " << bb->taken
1700 << "(0x" << std::hex << GetBasicBlock(bb->taken)->start_offset << ")";
buzbee1fd33462013-03-25 13:40:45 -07001701 }
buzbee0d829482013-10-11 15:24:55 -07001702 if (bb->fall_through != NullBasicBlockId) {
1703 LOG(INFO) << " Fallthrough : block " << bb->fall_through
1704 << " (0x" << std::hex << GetBasicBlock(bb->fall_through)->start_offset << ")";
buzbee1fd33462013-03-25 13:40:45 -07001705 }
1706 }
1707}
1708
1709/*
1710 * Build an array of location records for the incoming arguments.
1711 * Note: one location record per word of arguments, with dummy
1712 * high-word loc for wide arguments. Also pull up any following
1713 * MOVE_RESULT and incorporate it into the invoke.
1714 */
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001715CallInfo* MIRGraph::NewMemCallInfo(BasicBlock* bb, MIR* mir, InvokeType type, bool is_range) {
Mathieu Chartierf6c4b3b2013-08-24 16:11:37 -07001716 CallInfo* info = static_cast<CallInfo*>(arena_->Alloc(sizeof(CallInfo),
Vladimir Marko83cc7ae2014-02-12 18:02:05 +00001717 kArenaAllocMisc));
buzbee1fd33462013-03-25 13:40:45 -07001718 MIR* move_result_mir = FindMoveResult(bb, mir);
Mathieu Chartier2cebb242015-04-21 16:50:40 -07001719 if (move_result_mir == nullptr) {
buzbee1fd33462013-03-25 13:40:45 -07001720 info->result.location = kLocInvalid;
1721 } else {
1722 info->result = GetRawDest(move_result_mir);
buzbee1fd33462013-03-25 13:40:45 -07001723 move_result_mir->dalvikInsn.opcode = static_cast<Instruction::Code>(kMirOpNop);
1724 }
1725 info->num_arg_words = mir->ssa_rep->num_uses;
Vladimir Markoe4fcc5b2015-02-13 10:28:29 +00001726 info->args = (info->num_arg_words == 0) ? nullptr :
1727 arena_->AllocArray<RegLocation>(info->num_arg_words, kArenaAllocMisc);
Vladimir Marko6ce3eba2015-02-16 13:05:59 +00001728 for (size_t i = 0; i < info->num_arg_words; i++) {
buzbee1fd33462013-03-25 13:40:45 -07001729 info->args[i] = GetRawSrc(mir, i);
1730 }
1731 info->opt_flags = mir->optimization_flags;
1732 info->type = type;
1733 info->is_range = is_range;
Mathieu Chartiere5f13e52015-02-24 09:37:21 -08001734 if (IsInstructionQuickInvoke(mir->dalvikInsn.opcode)) {
1735 const auto& method_info = GetMethodLoweringInfo(mir);
1736 info->method_ref = method_info.GetTargetMethod();
1737 } else {
1738 info->method_ref = MethodReference(GetCurrentDexCompilationUnit()->GetDexFile(),
1739 mir->dalvikInsn.vB);
1740 }
buzbee1fd33462013-03-25 13:40:45 -07001741 info->index = mir->dalvikInsn.vB;
1742 info->offset = mir->offset;
Vladimir Markof096aad2014-01-23 15:51:58 +00001743 info->mir = mir;
buzbee1fd33462013-03-25 13:40:45 -07001744 return info;
1745}
1746
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07001747// Allocate a new MIR.
1748MIR* MIRGraph::NewMIR() {
1749 MIR* mir = new (arena_) MIR();
1750 return mir;
1751}
1752
buzbee862a7602013-04-05 10:58:54 -07001753// Allocate a new basic block.
Brian Carlstrom2ce745c2013-07-17 17:44:30 -07001754BasicBlock* MIRGraph::NewMemBB(BBType block_type, int block_id) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001755 BasicBlock* bb = new (arena_) BasicBlock(block_id, block_type, arena_);
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001756
buzbee862a7602013-04-05 10:58:54 -07001757 // TUNING: better estimate of the exit block predecessors?
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001758 bb->predecessors.reserve((block_type == kExitBlock) ? 2048 : 2);
buzbee862a7602013-04-05 10:58:54 -07001759 block_id_map_.Put(block_id, block_id);
1760 return bb;
1761}
buzbee1fd33462013-03-25 13:40:45 -07001762
Jean Christophe Beyler4e97c532014-01-07 10:07:18 -08001763void MIRGraph::InitializeConstantPropagation() {
1764 is_constant_v_ = new (arena_) ArenaBitVector(arena_, GetNumSSARegs(), false);
Vladimir Markoe4fcc5b2015-02-13 10:28:29 +00001765 constant_values_ = arena_->AllocArray<int>(GetNumSSARegs(), kArenaAllocDFInfo);
Jean Christophe Beyler4e97c532014-01-07 10:07:18 -08001766}
1767
1768void MIRGraph::InitializeMethodUses() {
Jean Christophe Beyler85127582014-05-11 23:36:41 -07001769 // The gate starts by initializing the use counts.
Jean Christophe Beyler4e97c532014-01-07 10:07:18 -08001770 int num_ssa_regs = GetNumSSARegs();
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001771 use_counts_.clear();
1772 use_counts_.reserve(num_ssa_regs + 32);
1773 use_counts_.resize(num_ssa_regs, 0u);
1774 raw_use_counts_.clear();
1775 raw_use_counts_.reserve(num_ssa_regs + 32);
1776 raw_use_counts_.resize(num_ssa_regs, 0u);
Jean Christophe Beyler4e97c532014-01-07 10:07:18 -08001777}
1778
Vladimir Markoa5b8fde2014-05-23 15:16:44 +01001779void MIRGraph::SSATransformationStart() {
1780 DCHECK(temp_scoped_alloc_.get() == nullptr);
1781 temp_scoped_alloc_.reset(ScopedArenaAllocator::Create(&cu_->arena_stack));
Vladimir Markof585e542014-11-21 13:41:32 +00001782 temp_.ssa.num_vregs = GetNumOfCodeAndTempVRs();
1783 temp_.ssa.work_live_vregs = new (temp_scoped_alloc_.get()) ArenaBitVector(
1784 temp_scoped_alloc_.get(), temp_.ssa.num_vregs, false, kBitMapRegisterV);
Jean Christophe Beyler4e97c532014-01-07 10:07:18 -08001785}
1786
Vladimir Markoa5b8fde2014-05-23 15:16:44 +01001787void MIRGraph::SSATransformationEnd() {
1788 // Verify the dataflow information after the pass.
1789 if (cu_->enable_debug & (1 << kDebugVerifyDataflow)) {
1790 VerifyDataflow();
1791 }
1792
Vladimir Markof585e542014-11-21 13:41:32 +00001793 temp_.ssa.num_vregs = 0u;
1794 temp_.ssa.work_live_vregs = nullptr;
Vladimir Marko6a8946b2015-02-09 12:35:05 +00001795 DCHECK(temp_.ssa.def_block_matrix == nullptr);
1796 temp_.ssa.phi_node_blocks = nullptr;
Vladimir Markoa5b8fde2014-05-23 15:16:44 +01001797 DCHECK(temp_scoped_alloc_.get() != nullptr);
1798 temp_scoped_alloc_.reset();
Johnny Qiuc029c982014-06-04 07:23:49 +00001799
1800 // Update the maximum number of reachable blocks.
1801 max_num_reachable_blocks_ = num_reachable_blocks_;
Vladimir Markoffda4992014-12-18 17:05:58 +00001802
1803 // Mark MIR SSA representations as up to date.
1804 mir_ssa_rep_up_to_date_ = true;
Vladimir Markoa5b8fde2014-05-23 15:16:44 +01001805}
1806
Razvan A Lupusoru75035972014-09-11 15:24:59 -07001807size_t MIRGraph::GetNumDalvikInsns() const {
1808 size_t cumulative_size = 0u;
1809 bool counted_current_item = false;
1810 const uint8_t size_for_null_code_item = 2u;
1811
1812 for (auto it : m_units_) {
1813 const DexFile::CodeItem* code_item = it->GetCodeItem();
1814 // Even if the code item is null, we still count non-zero value so that
1815 // each m_unit is counted as having impact.
1816 cumulative_size += (code_item == nullptr ?
1817 size_for_null_code_item : code_item->insns_size_in_code_units_);
1818 if (code_item == current_code_item_) {
1819 counted_current_item = true;
1820 }
1821 }
1822
1823 // If the current code item was not counted yet, count it now.
1824 // This can happen for example in unit tests where some fields like m_units_
1825 // are not initialized.
1826 if (counted_current_item == false) {
1827 cumulative_size += (current_code_item_ == nullptr ?
1828 size_for_null_code_item : current_code_item_->insns_size_in_code_units_);
1829 }
1830
1831 return cumulative_size;
1832}
1833
Vladimir Marko55fff042014-07-10 12:42:52 +01001834static BasicBlock* SelectTopologicalSortOrderFallBack(
1835 MIRGraph* mir_graph, const ArenaBitVector* current_loop,
1836 const ScopedArenaVector<size_t>* visited_cnt_values, ScopedArenaAllocator* allocator,
1837 ScopedArenaVector<BasicBlockId>* tmp_stack) {
1838 // No true loop head has been found but there may be true loop heads after the mess we need
1839 // to resolve. To avoid taking one of those, pick the candidate with the highest number of
1840 // reachable unvisited nodes. That candidate will surely be a part of a loop.
1841 BasicBlock* fall_back = nullptr;
1842 size_t fall_back_num_reachable = 0u;
1843 // Reuse the same bit vector for each candidate to mark reachable unvisited blocks.
1844 ArenaBitVector candidate_reachable(allocator, mir_graph->GetNumBlocks(), false, kBitMapMisc);
1845 AllNodesIterator iter(mir_graph);
1846 for (BasicBlock* candidate = iter.Next(); candidate != nullptr; candidate = iter.Next()) {
1847 if (candidate->hidden || // Hidden, or
1848 candidate->visited || // already processed, or
1849 (*visited_cnt_values)[candidate->id] == 0u || // no processed predecessors, or
1850 (current_loop != nullptr && // outside current loop.
1851 !current_loop->IsBitSet(candidate->id))) {
1852 continue;
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -07001853 }
Vladimir Marko55fff042014-07-10 12:42:52 +01001854 DCHECK(tmp_stack->empty());
1855 tmp_stack->push_back(candidate->id);
1856 candidate_reachable.ClearAllBits();
1857 size_t num_reachable = 0u;
1858 while (!tmp_stack->empty()) {
1859 BasicBlockId current_id = tmp_stack->back();
1860 tmp_stack->pop_back();
1861 BasicBlock* current_bb = mir_graph->GetBasicBlock(current_id);
1862 DCHECK(current_bb != nullptr);
1863 ChildBlockIterator child_iter(current_bb, mir_graph);
1864 BasicBlock* child_bb = child_iter.Next();
1865 for ( ; child_bb != nullptr; child_bb = child_iter.Next()) {
1866 DCHECK(!child_bb->hidden);
1867 if (child_bb->visited || // Already processed, or
1868 (current_loop != nullptr && // outside current loop.
1869 !current_loop->IsBitSet(child_bb->id))) {
1870 continue;
1871 }
1872 if (!candidate_reachable.IsBitSet(child_bb->id)) {
1873 candidate_reachable.SetBit(child_bb->id);
1874 tmp_stack->push_back(child_bb->id);
1875 num_reachable += 1u;
1876 }
1877 }
1878 }
1879 if (fall_back_num_reachable < num_reachable) {
1880 fall_back_num_reachable = num_reachable;
1881 fall_back = candidate;
1882 }
1883 }
1884 return fall_back;
1885}
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -07001886
Vladimir Marko55fff042014-07-10 12:42:52 +01001887// Compute from which unvisited blocks is bb_id reachable through unvisited blocks.
1888static void ComputeUnvisitedReachableFrom(MIRGraph* mir_graph, BasicBlockId bb_id,
1889 ArenaBitVector* reachable,
1890 ScopedArenaVector<BasicBlockId>* tmp_stack) {
1891 // NOTE: Loop heads indicated by the "visited" flag.
1892 DCHECK(tmp_stack->empty());
1893 reachable->ClearAllBits();
1894 tmp_stack->push_back(bb_id);
1895 while (!tmp_stack->empty()) {
1896 BasicBlockId current_id = tmp_stack->back();
1897 tmp_stack->pop_back();
1898 BasicBlock* current_bb = mir_graph->GetBasicBlock(current_id);
1899 DCHECK(current_bb != nullptr);
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001900 for (BasicBlockId pred_id : current_bb->predecessors) {
1901 BasicBlock* pred_bb = mir_graph->GetBasicBlock(pred_id);
1902 DCHECK(pred_bb != nullptr);
Vladimir Marko55fff042014-07-10 12:42:52 +01001903 if (!pred_bb->visited && !reachable->IsBitSet(pred_bb->id)) {
1904 reachable->SetBit(pred_bb->id);
1905 tmp_stack->push_back(pred_bb->id);
1906 }
1907 }
1908 }
1909}
1910
1911void MIRGraph::ComputeTopologicalSortOrder() {
1912 ScopedArenaAllocator allocator(&cu_->arena_stack);
1913 unsigned int num_blocks = GetNumBlocks();
1914
1915 ScopedArenaQueue<BasicBlock*> q(allocator.Adapter());
1916 ScopedArenaVector<size_t> visited_cnt_values(num_blocks, 0u, allocator.Adapter());
1917 ScopedArenaVector<BasicBlockId> loop_head_stack(allocator.Adapter());
1918 size_t max_nested_loops = 0u;
1919 ArenaBitVector loop_exit_blocks(&allocator, num_blocks, false, kBitMapMisc);
1920 loop_exit_blocks.ClearAllBits();
1921
1922 // Count the number of blocks to process and add the entry block(s).
Vladimir Marko55fff042014-07-10 12:42:52 +01001923 unsigned int num_blocks_to_process = 0u;
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001924 for (BasicBlock* bb : block_list_) {
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -07001925 if (bb->hidden == true) {
1926 continue;
1927 }
1928
Vladimir Marko55fff042014-07-10 12:42:52 +01001929 num_blocks_to_process += 1u;
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -07001930
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001931 if (bb->predecessors.size() == 0u) {
Vladimir Marko55fff042014-07-10 12:42:52 +01001932 // Add entry block to the queue.
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -07001933 q.push(bb);
1934 }
1935 }
1936
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001937 // Clear the topological order arrays.
1938 topological_order_.clear();
1939 topological_order_.reserve(num_blocks);
1940 topological_order_loop_ends_.clear();
1941 topological_order_loop_ends_.resize(num_blocks, 0u);
1942 topological_order_indexes_.clear();
1943 topological_order_indexes_.resize(num_blocks, static_cast<uint16_t>(-1));
Vladimir Marko55fff042014-07-10 12:42:52 +01001944
1945 // Mark all blocks as unvisited.
1946 ClearAllVisitedFlags();
1947
1948 // For loop heads, keep track from which blocks they are reachable not going through other
1949 // loop heads. Other loop heads are excluded to detect the heads of nested loops. The children
1950 // in this set go into the loop body, the other children are jumping over the loop.
1951 ScopedArenaVector<ArenaBitVector*> loop_head_reachable_from(allocator.Adapter());
1952 loop_head_reachable_from.resize(num_blocks, nullptr);
1953 // Reuse the same temp stack whenever calculating a loop_head_reachable_from[loop_head_id].
1954 ScopedArenaVector<BasicBlockId> tmp_stack(allocator.Adapter());
1955
1956 while (num_blocks_to_process != 0u) {
Vladimir Marko622bdbe2014-06-19 14:59:05 +01001957 BasicBlock* bb = nullptr;
1958 if (!q.empty()) {
Vladimir Marko55fff042014-07-10 12:42:52 +01001959 num_blocks_to_process -= 1u;
Vladimir Marko622bdbe2014-06-19 14:59:05 +01001960 // Get top.
1961 bb = q.front();
1962 q.pop();
Vladimir Marko55fff042014-07-10 12:42:52 +01001963 if (bb->visited) {
1964 // Loop head: it was already processed, mark end and copy exit blocks to the queue.
1965 DCHECK(q.empty()) << PrettyMethod(cu_->method_idx, *cu_->dex_file);
Vladimir Markoe39c54e2014-09-22 14:50:02 +01001966 uint16_t idx = static_cast<uint16_t>(topological_order_.size());
1967 topological_order_loop_ends_[topological_order_indexes_[bb->id]] = idx;
Vladimir Marko55fff042014-07-10 12:42:52 +01001968 DCHECK_EQ(loop_head_stack.back(), bb->id);
1969 loop_head_stack.pop_back();
1970 ArenaBitVector* reachable =
1971 loop_head_stack.empty() ? nullptr : loop_head_reachable_from[loop_head_stack.back()];
1972 for (BasicBlockId candidate_id : loop_exit_blocks.Indexes()) {
1973 if (reachable == nullptr || reachable->IsBitSet(candidate_id)) {
1974 q.push(GetBasicBlock(candidate_id));
1975 // NOTE: The BitVectorSet::IndexIterator will not check the pointed-to bit again,
1976 // so clearing the bit has no effect on the iterator.
1977 loop_exit_blocks.ClearBit(candidate_id);
Vladimir Marko622bdbe2014-06-19 14:59:05 +01001978 }
1979 }
Vladimir Marko55fff042014-07-10 12:42:52 +01001980 continue;
Vladimir Marko622bdbe2014-06-19 14:59:05 +01001981 }
Vladimir Marko55fff042014-07-10 12:42:52 +01001982 } else {
1983 // Find the new loop head.
1984 AllNodesIterator iter(this);
1985 while (true) {
1986 BasicBlock* candidate = iter.Next();
1987 if (candidate == nullptr) {
1988 // We did not find a true loop head, fall back to a reachable block in any loop.
1989 ArenaBitVector* current_loop =
1990 loop_head_stack.empty() ? nullptr : loop_head_reachable_from[loop_head_stack.back()];
1991 bb = SelectTopologicalSortOrderFallBack(this, current_loop, &visited_cnt_values,
1992 &allocator, &tmp_stack);
1993 DCHECK(bb != nullptr) << PrettyMethod(cu_->method_idx, *cu_->dex_file);
1994 if (kIsDebugBuild && cu_->dex_file != nullptr) {
1995 LOG(INFO) << "Topological sort order: Using fall-back in "
1996 << PrettyMethod(cu_->method_idx, *cu_->dex_file) << " BB #" << bb->id
1997 << " @0x" << std::hex << bb->start_offset
1998 << ", num_blocks = " << std::dec << num_blocks;
1999 }
2000 break;
2001 }
2002 if (candidate->hidden || // Hidden, or
2003 candidate->visited || // already processed, or
2004 visited_cnt_values[candidate->id] == 0u || // no processed predecessors, or
2005 (!loop_head_stack.empty() && // outside current loop.
2006 !loop_head_reachable_from[loop_head_stack.back()]->IsBitSet(candidate->id))) {
2007 continue;
2008 }
2009
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002010 for (BasicBlockId pred_id : candidate->predecessors) {
2011 BasicBlock* pred_bb = GetBasicBlock(pred_id);
2012 DCHECK(pred_bb != nullptr);
Vladimir Marko55fff042014-07-10 12:42:52 +01002013 if (pred_bb != candidate && !pred_bb->visited &&
2014 !pred_bb->dominators->IsBitSet(candidate->id)) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002015 candidate = nullptr; // Set candidate to null to indicate failure.
2016 break;
Vladimir Marko55fff042014-07-10 12:42:52 +01002017 }
2018 }
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002019 if (candidate != nullptr) {
Vladimir Marko55fff042014-07-10 12:42:52 +01002020 bb = candidate;
2021 break;
2022 }
2023 }
2024 // Compute blocks from which the loop head is reachable and process those blocks first.
2025 ArenaBitVector* reachable =
2026 new (&allocator) ArenaBitVector(&allocator, num_blocks, false, kBitMapMisc);
2027 loop_head_reachable_from[bb->id] = reachable;
2028 ComputeUnvisitedReachableFrom(this, bb->id, reachable, &tmp_stack);
2029 // Now mark as loop head. (Even if it's only a fall back when we don't find a true loop.)
2030 loop_head_stack.push_back(bb->id);
2031 max_nested_loops = std::max(max_nested_loops, loop_head_stack.size());
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -07002032 }
2033
Vladimir Marko622bdbe2014-06-19 14:59:05 +01002034 DCHECK_EQ(bb->hidden, false);
2035 DCHECK_EQ(bb->visited, false);
Vladimir Marko622bdbe2014-06-19 14:59:05 +01002036 bb->visited = true;
Vladimir Marko8b858e12014-11-27 14:52:37 +00002037 bb->nesting_depth = loop_head_stack.size();
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -07002038
Vladimir Marko622bdbe2014-06-19 14:59:05 +01002039 // Now add the basic block.
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002040 uint16_t idx = static_cast<uint16_t>(topological_order_.size());
2041 topological_order_indexes_[bb->id] = idx;
2042 topological_order_.push_back(bb->id);
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -07002043
Vladimir Marko55fff042014-07-10 12:42:52 +01002044 // Update visited_cnt_values for children.
Vladimir Marko622bdbe2014-06-19 14:59:05 +01002045 ChildBlockIterator succIter(bb, this);
2046 BasicBlock* successor = succIter.Next();
2047 for ( ; successor != nullptr; successor = succIter.Next()) {
Vladimir Marko55fff042014-07-10 12:42:52 +01002048 if (successor->hidden) {
Vladimir Marko622bdbe2014-06-19 14:59:05 +01002049 continue;
2050 }
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -07002051
Vladimir Marko55fff042014-07-10 12:42:52 +01002052 // One more predecessor was visited.
2053 visited_cnt_values[successor->id] += 1u;
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002054 if (visited_cnt_values[successor->id] == successor->predecessors.size()) {
Vladimir Marko55fff042014-07-10 12:42:52 +01002055 if (loop_head_stack.empty() ||
2056 loop_head_reachable_from[loop_head_stack.back()]->IsBitSet(successor->id)) {
2057 q.push(successor);
2058 } else {
2059 DCHECK(!loop_exit_blocks.IsBitSet(successor->id));
2060 loop_exit_blocks.SetBit(successor->id);
2061 }
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -07002062 }
2063 }
2064 }
Vladimir Marko55fff042014-07-10 12:42:52 +01002065
2066 // Prepare the loop head stack for iteration.
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002067 topological_order_loop_head_stack_.clear();
2068 topological_order_loop_head_stack_.reserve(max_nested_loops);
Vladimir Marko415ac882014-09-30 18:09:14 +01002069 max_nested_loops_ = max_nested_loops;
Vladimir Markoffda4992014-12-18 17:05:58 +00002070 topological_order_up_to_date_ = true;
Jean Christophe Beyler44e5bde2014-04-29 14:40:41 -07002071}
2072
2073bool BasicBlock::IsExceptionBlock() const {
2074 if (block_type == kExceptionHandling) {
2075 return true;
2076 }
2077 return false;
2078}
2079
Jean Christophe Beylerf8c762b2014-05-02 12:54:37 -07002080ChildBlockIterator::ChildBlockIterator(BasicBlock* bb, MIRGraph* mir_graph)
2081 : basic_block_(bb), mir_graph_(mir_graph), visited_fallthrough_(false),
2082 visited_taken_(false), have_successors_(false) {
2083 // Check if we actually do have successors.
2084 if (basic_block_ != 0 && basic_block_->successor_block_list_type != kNotUsed) {
2085 have_successors_ = true;
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002086 successor_iter_ = basic_block_->successor_blocks.cbegin();
Jean Christophe Beylerf8c762b2014-05-02 12:54:37 -07002087 }
2088}
2089
2090BasicBlock* ChildBlockIterator::Next() {
2091 // We check if we have a basic block. If we don't we cannot get next child.
2092 if (basic_block_ == nullptr) {
2093 return nullptr;
2094 }
2095
2096 // If we haven't visited fallthrough, return that.
2097 if (visited_fallthrough_ == false) {
2098 visited_fallthrough_ = true;
2099
2100 BasicBlock* result = mir_graph_->GetBasicBlock(basic_block_->fall_through);
2101 if (result != nullptr) {
2102 return result;
2103 }
2104 }
2105
2106 // If we haven't visited taken, return that.
2107 if (visited_taken_ == false) {
2108 visited_taken_ = true;
2109
2110 BasicBlock* result = mir_graph_->GetBasicBlock(basic_block_->taken);
2111 if (result != nullptr) {
2112 return result;
2113 }
2114 }
2115
2116 // We visited both taken and fallthrough. Now check if we have successors we need to visit.
2117 if (have_successors_ == true) {
2118 // Get information about next successor block.
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002119 auto end = basic_block_->successor_blocks.cend();
2120 while (successor_iter_ != end) {
2121 SuccessorBlockInfo* successor_block_info = *successor_iter_;
2122 ++successor_iter_;
Niranjan Kumar989367a2014-06-12 12:15:48 -07002123 // If block was replaced by zero block, take next one.
2124 if (successor_block_info->block != NullBasicBlockId) {
2125 return mir_graph_->GetBasicBlock(successor_block_info->block);
2126 }
Jean Christophe Beylerf8c762b2014-05-02 12:54:37 -07002127 }
2128 }
2129
2130 // We do not have anything.
2131 return nullptr;
2132}
2133
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002134BasicBlock* BasicBlock::Copy(CompilationUnit* c_unit) {
2135 MIRGraph* mir_graph = c_unit->mir_graph.get();
2136 return Copy(mir_graph);
2137}
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07002138
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002139BasicBlock* BasicBlock::Copy(MIRGraph* mir_graph) {
2140 BasicBlock* result_bb = mir_graph->CreateNewBB(block_type);
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07002141
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002142 // We don't do a memcpy style copy here because it would lead to a lot of things
2143 // to clean up. Let us do it by hand instead.
2144 // Copy in taken and fallthrough.
2145 result_bb->fall_through = fall_through;
2146 result_bb->taken = taken;
2147
2148 // Copy successor links if needed.
2149 ArenaAllocator* arena = mir_graph->GetArena();
2150
2151 result_bb->successor_block_list_type = successor_block_list_type;
2152 if (result_bb->successor_block_list_type != kNotUsed) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002153 result_bb->successor_blocks.reserve(successor_blocks.size());
2154 for (SuccessorBlockInfo* sbi_old : successor_blocks) {
2155 SuccessorBlockInfo* sbi_new = static_cast<SuccessorBlockInfo*>(
2156 arena->Alloc(sizeof(SuccessorBlockInfo), kArenaAllocSuccessor));
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002157 memcpy(sbi_new, sbi_old, sizeof(SuccessorBlockInfo));
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002158 result_bb->successor_blocks.push_back(sbi_new);
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07002159 }
2160 }
2161
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002162 // Copy offset, method.
2163 result_bb->start_offset = start_offset;
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07002164
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002165 // Now copy instructions.
2166 for (MIR* mir = first_mir_insn; mir != 0; mir = mir->next) {
2167 // Get a copy first.
2168 MIR* copy = mir->Copy(mir_graph);
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07002169
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002170 // Append it.
2171 result_bb->AppendMIR(copy);
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07002172 }
2173
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002174 return result_bb;
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07002175}
2176
2177MIR* MIR::Copy(MIRGraph* mir_graph) {
2178 MIR* res = mir_graph->NewMIR();
2179 *res = *this;
2180
2181 // Remove links
2182 res->next = nullptr;
2183 res->bb = NullBasicBlockId;
2184 res->ssa_rep = nullptr;
2185
2186 return res;
2187}
2188
2189MIR* MIR::Copy(CompilationUnit* c_unit) {
2190 return Copy(c_unit->mir_graph.get());
2191}
2192
2193uint32_t SSARepresentation::GetStartUseIndex(Instruction::Code opcode) {
2194 // Default result.
2195 int res = 0;
2196
2197 // We are basically setting the iputs to their igets counterparts.
2198 switch (opcode) {
2199 case Instruction::IPUT:
2200 case Instruction::IPUT_OBJECT:
2201 case Instruction::IPUT_BOOLEAN:
2202 case Instruction::IPUT_BYTE:
2203 case Instruction::IPUT_CHAR:
2204 case Instruction::IPUT_SHORT:
2205 case Instruction::IPUT_QUICK:
2206 case Instruction::IPUT_OBJECT_QUICK:
Fred Shih37f05ef2014-07-16 18:38:08 -07002207 case Instruction::IPUT_BOOLEAN_QUICK:
2208 case Instruction::IPUT_BYTE_QUICK:
2209 case Instruction::IPUT_CHAR_QUICK:
2210 case Instruction::IPUT_SHORT_QUICK:
Jean Christophe Beyler3aa57732014-04-17 12:47:24 -07002211 case Instruction::APUT:
2212 case Instruction::APUT_OBJECT:
2213 case Instruction::APUT_BOOLEAN:
2214 case Instruction::APUT_BYTE:
2215 case Instruction::APUT_CHAR:
2216 case Instruction::APUT_SHORT:
2217 case Instruction::SPUT:
2218 case Instruction::SPUT_OBJECT:
2219 case Instruction::SPUT_BOOLEAN:
2220 case Instruction::SPUT_BYTE:
2221 case Instruction::SPUT_CHAR:
2222 case Instruction::SPUT_SHORT:
2223 // Skip the VR containing what to store.
2224 res = 1;
2225 break;
2226 case Instruction::IPUT_WIDE:
2227 case Instruction::IPUT_WIDE_QUICK:
2228 case Instruction::APUT_WIDE:
2229 case Instruction::SPUT_WIDE:
2230 // Skip the two VRs containing what to store.
2231 res = 2;
2232 break;
2233 default:
2234 // Do nothing in the general case.
2235 break;
2236 }
2237
2238 return res;
2239}
2240
Jean Christophe Beylerc3db20b2014-05-05 21:09:40 -07002241/**
2242 * @brief Given a decoded instruction, it checks whether the instruction
2243 * sets a constant and if it does, more information is provided about the
2244 * constant being set.
2245 * @param ptr_value pointer to a 64-bit holder for the constant.
2246 * @param wide Updated by function whether a wide constant is being set by bytecode.
2247 * @return Returns false if the decoded instruction does not represent a constant bytecode.
2248 */
2249bool MIR::DecodedInstruction::GetConstant(int64_t* ptr_value, bool* wide) const {
2250 bool sets_const = true;
2251 int64_t value = vB;
2252
2253 DCHECK(ptr_value != nullptr);
2254 DCHECK(wide != nullptr);
2255
2256 switch (opcode) {
2257 case Instruction::CONST_4:
2258 case Instruction::CONST_16:
2259 case Instruction::CONST:
2260 *wide = false;
2261 value <<= 32; // In order to get the sign extend.
2262 value >>= 32;
2263 break;
2264 case Instruction::CONST_HIGH16:
2265 *wide = false;
2266 value <<= 48; // In order to get the sign extend.
2267 value >>= 32;
2268 break;
2269 case Instruction::CONST_WIDE_16:
2270 case Instruction::CONST_WIDE_32:
2271 *wide = true;
2272 value <<= 32; // In order to get the sign extend.
2273 value >>= 32;
2274 break;
2275 case Instruction::CONST_WIDE:
2276 *wide = true;
2277 value = vB_wide;
2278 break;
2279 case Instruction::CONST_WIDE_HIGH16:
2280 *wide = true;
2281 value <<= 48; // In order to get the sign extend.
2282 break;
2283 default:
2284 sets_const = false;
2285 break;
2286 }
2287
2288 if (sets_const) {
2289 *ptr_value = value;
2290 }
2291
2292 return sets_const;
2293}
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002294
2295void BasicBlock::ResetOptimizationFlags(uint16_t reset_flags) {
2296 // Reset flags for all MIRs in bb.
Mathieu Chartier2cebb242015-04-21 16:50:40 -07002297 for (MIR* mir = first_mir_insn; mir != nullptr; mir = mir->next) {
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002298 mir->optimization_flags &= (~reset_flags);
2299 }
2300}
2301
Vladimir Markocb873d82014-12-08 15:16:54 +00002302void BasicBlock::Kill(MIRGraph* mir_graph) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002303 for (BasicBlockId pred_id : predecessors) {
2304 BasicBlock* pred_bb = mir_graph->GetBasicBlock(pred_id);
2305 DCHECK(pred_bb != nullptr);
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002306
2307 // Sadly we have to go through the children by hand here.
2308 pred_bb->ReplaceChild(id, NullBasicBlockId);
2309 }
Vladimir Markocb873d82014-12-08 15:16:54 +00002310 predecessors.clear();
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002311
Vladimir Marko312eb252014-10-07 15:01:57 +01002312 // Mark as dead and hidden.
2313 block_type = kDead;
2314 hidden = true;
2315
2316 // Detach it from its MIRs so we don't generate code for them. Also detached MIRs
2317 // are updated to know that they no longer have a parent.
2318 for (MIR* mir = first_mir_insn; mir != nullptr; mir = mir->next) {
2319 mir->bb = NullBasicBlockId;
2320 }
2321 first_mir_insn = nullptr;
2322 last_mir_insn = nullptr;
2323
2324 data_flow_info = nullptr;
2325
2326 // Erase this bb from all children's predecessors and kill unreachable children.
2327 ChildBlockIterator iter(this, mir_graph);
2328 for (BasicBlock* succ_bb = iter.Next(); succ_bb != nullptr; succ_bb = iter.Next()) {
2329 succ_bb->ErasePredecessor(id);
Vladimir Marko312eb252014-10-07 15:01:57 +01002330 }
2331
2332 // Remove links to children.
2333 fall_through = NullBasicBlockId;
2334 taken = NullBasicBlockId;
2335 successor_block_list_type = kNotUsed;
2336
2337 if (kIsDebugBuild) {
2338 if (catch_entry) {
2339 DCHECK_EQ(mir_graph->catches_.count(start_offset), 1u);
2340 mir_graph->catches_.erase(start_offset);
2341 }
2342 }
2343}
2344
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002345bool BasicBlock::IsSSALiveOut(const CompilationUnit* c_unit, int ssa_reg) {
2346 // In order to determine if the ssa reg is live out, we scan all the MIRs. We remember
2347 // the last SSA number of the same dalvik register. At the end, if it is different than ssa_reg,
2348 // then it is not live out of this BB.
2349 int dalvik_reg = c_unit->mir_graph->SRegToVReg(ssa_reg);
2350
2351 int last_ssa_reg = -1;
2352
2353 // Walk through the MIRs backwards.
2354 for (MIR* mir = first_mir_insn; mir != nullptr; mir = mir->next) {
2355 // Get ssa rep.
2356 SSARepresentation *ssa_rep = mir->ssa_rep;
2357
2358 // Go through the defines for this MIR.
2359 for (int i = 0; i < ssa_rep->num_defs; i++) {
2360 DCHECK(ssa_rep->defs != nullptr);
2361
2362 // Get the ssa reg.
2363 int def_ssa_reg = ssa_rep->defs[i];
2364
2365 // Get dalvik reg.
2366 int def_dalvik_reg = c_unit->mir_graph->SRegToVReg(def_ssa_reg);
2367
2368 // Compare dalvik regs.
2369 if (dalvik_reg == def_dalvik_reg) {
2370 // We found a def of the register that we are being asked about.
2371 // Remember it.
2372 last_ssa_reg = def_ssa_reg;
2373 }
2374 }
2375 }
2376
2377 if (last_ssa_reg == -1) {
2378 // If we get to this point we couldn't find a define of register user asked about.
2379 // Let's assume the user knows what he's doing so we can be safe and say that if we
2380 // couldn't find a def, it is live out.
2381 return true;
2382 }
2383
2384 // If it is not -1, we found a match, is it ssa_reg?
2385 return (ssa_reg == last_ssa_reg);
2386}
2387
2388bool BasicBlock::ReplaceChild(BasicBlockId old_bb, BasicBlockId new_bb) {
2389 // We need to check taken, fall_through, and successor_blocks to replace.
2390 bool found = false;
2391 if (taken == old_bb) {
2392 taken = new_bb;
2393 found = true;
2394 }
2395
2396 if (fall_through == old_bb) {
2397 fall_through = new_bb;
2398 found = true;
2399 }
2400
2401 if (successor_block_list_type != kNotUsed) {
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002402 for (SuccessorBlockInfo* successor_block_info : successor_blocks) {
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002403 if (successor_block_info->block == old_bb) {
2404 successor_block_info->block = new_bb;
2405 found = true;
2406 }
2407 }
2408 }
2409
2410 return found;
2411}
2412
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002413void BasicBlock::ErasePredecessor(BasicBlockId old_pred) {
2414 auto pos = std::find(predecessors.begin(), predecessors.end(), old_pred);
2415 DCHECK(pos != predecessors.end());
Vladimir Marko312eb252014-10-07 15:01:57 +01002416 // It's faster to move the back() to *pos than erase(pos).
2417 *pos = predecessors.back();
2418 predecessors.pop_back();
2419 size_t idx = std::distance(predecessors.begin(), pos);
2420 for (MIR* mir = first_mir_insn; mir != nullptr; mir = mir->next) {
2421 if (static_cast<int>(mir->dalvikInsn.opcode) != kMirOpPhi) {
2422 break;
2423 }
2424 DCHECK_EQ(mir->ssa_rep->num_uses - 1u, predecessors.size());
2425 DCHECK_EQ(mir->meta.phi_incoming[idx], old_pred);
2426 mir->meta.phi_incoming[idx] = mir->meta.phi_incoming[predecessors.size()];
2427 mir->ssa_rep->uses[idx] = mir->ssa_rep->uses[predecessors.size()];
2428 mir->ssa_rep->num_uses = predecessors.size();
2429 }
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002430}
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002431
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002432void BasicBlock::UpdatePredecessor(BasicBlockId old_pred, BasicBlockId new_pred) {
2433 DCHECK_NE(new_pred, NullBasicBlockId);
2434 auto pos = std::find(predecessors.begin(), predecessors.end(), old_pred);
Vladimir Marko312eb252014-10-07 15:01:57 +01002435 DCHECK(pos != predecessors.end());
2436 *pos = new_pred;
2437 size_t idx = std::distance(predecessors.begin(), pos);
2438 for (MIR* mir = first_mir_insn; mir != nullptr; mir = mir->next) {
2439 if (static_cast<int>(mir->dalvikInsn.opcode) != kMirOpPhi) {
2440 break;
2441 }
2442 DCHECK_EQ(mir->meta.phi_incoming[idx], old_pred);
2443 mir->meta.phi_incoming[idx] = new_pred;
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002444 }
2445}
2446
2447// Create a new basic block with block_id as num_blocks_ that is
2448// post-incremented.
2449BasicBlock* MIRGraph::CreateNewBB(BBType block_type) {
Vladimir Markoffda4992014-12-18 17:05:58 +00002450 BasicBlockId id = static_cast<BasicBlockId>(block_list_.size());
2451 BasicBlock* res = NewMemBB(block_type, id);
Vladimir Markoe39c54e2014-09-22 14:50:02 +01002452 block_list_.push_back(res);
Jean Christophe Beyler85127582014-05-11 23:36:41 -07002453 return res;
2454}
2455
Nicolas Geoffray216eaa22015-03-17 17:09:30 +00002456void MIRGraph::CalculateBasicBlockInformation(const PassManager* const post_opt_pass_manager) {
Mathieu Chartier5bdab122015-01-26 18:30:19 -08002457 /* Create the pass driver and launch it */
Nicolas Geoffray216eaa22015-03-17 17:09:30 +00002458 PassDriverMEPostOpt driver(post_opt_pass_manager, cu_);
Jean Christophe Beyler2469e602014-05-06 20:36:55 -07002459 driver.Launch();
2460}
2461
Jean Christophe Beylerfb0ea2d2014-07-29 13:20:42 -07002462int MIR::DecodedInstruction::FlagsOf() const {
2463 // Calculate new index.
2464 int idx = static_cast<int>(opcode) - kNumPackedOpcodes;
2465
2466 // Check if it is an extended or not.
2467 if (idx < 0) {
2468 return Instruction::FlagsOf(opcode);
2469 }
2470
2471 // For extended, we use a switch.
2472 switch (static_cast<int>(opcode)) {
2473 case kMirOpPhi:
2474 return Instruction::kContinue;
2475 case kMirOpCopy:
2476 return Instruction::kContinue;
2477 case kMirOpFusedCmplFloat:
2478 return Instruction::kContinue | Instruction::kBranch;
2479 case kMirOpFusedCmpgFloat:
2480 return Instruction::kContinue | Instruction::kBranch;
2481 case kMirOpFusedCmplDouble:
2482 return Instruction::kContinue | Instruction::kBranch;
2483 case kMirOpFusedCmpgDouble:
2484 return Instruction::kContinue | Instruction::kBranch;
2485 case kMirOpFusedCmpLong:
2486 return Instruction::kContinue | Instruction::kBranch;
2487 case kMirOpNop:
2488 return Instruction::kContinue;
2489 case kMirOpNullCheck:
2490 return Instruction::kContinue | Instruction::kThrow;
2491 case kMirOpRangeCheck:
2492 return Instruction::kContinue | Instruction::kThrow;
2493 case kMirOpDivZeroCheck:
2494 return Instruction::kContinue | Instruction::kThrow;
2495 case kMirOpCheck:
Udayan Banerjib7fc6292014-09-09 16:49:34 -07002496 return Instruction::kContinue | Instruction::kThrow;
Jean Christophe Beylerfb0ea2d2014-07-29 13:20:42 -07002497 case kMirOpCheckPart2:
Udayan Banerjib7fc6292014-09-09 16:49:34 -07002498 return Instruction::kContinue;
Jean Christophe Beylerfb0ea2d2014-07-29 13:20:42 -07002499 case kMirOpSelect:
2500 return Instruction::kContinue;
2501 case kMirOpConstVector:
2502 return Instruction::kContinue;
2503 case kMirOpMoveVector:
2504 return Instruction::kContinue;
2505 case kMirOpPackedMultiply:
2506 return Instruction::kContinue;
2507 case kMirOpPackedAddition:
2508 return Instruction::kContinue;
2509 case kMirOpPackedSubtract:
2510 return Instruction::kContinue;
2511 case kMirOpPackedShiftLeft:
2512 return Instruction::kContinue;
2513 case kMirOpPackedSignedShiftRight:
2514 return Instruction::kContinue;
2515 case kMirOpPackedUnsignedShiftRight:
2516 return Instruction::kContinue;
2517 case kMirOpPackedAnd:
2518 return Instruction::kContinue;
2519 case kMirOpPackedOr:
2520 return Instruction::kContinue;
2521 case kMirOpPackedXor:
2522 return Instruction::kContinue;
2523 case kMirOpPackedAddReduce:
2524 return Instruction::kContinue;
2525 case kMirOpPackedReduce:
2526 return Instruction::kContinue;
2527 case kMirOpPackedSet:
2528 return Instruction::kContinue;
2529 case kMirOpReserveVectorRegisters:
2530 return Instruction::kContinue;
2531 case kMirOpReturnVectorRegisters:
2532 return Instruction::kContinue;
Udayan Banerjib7fc6292014-09-09 16:49:34 -07002533 case kMirOpMemBarrier:
2534 return Instruction::kContinue;
2535 case kMirOpPackedArrayGet:
2536 return Instruction::kContinue | Instruction::kThrow;
2537 case kMirOpPackedArrayPut:
2538 return Instruction::kContinue | Instruction::kThrow;
Ningsheng Jiana262f772014-11-25 16:48:07 +08002539 case kMirOpMaddInt:
2540 case kMirOpMsubInt:
2541 case kMirOpMaddLong:
2542 case kMirOpMsubLong:
2543 return Instruction::kContinue;
Jean Christophe Beylerfb0ea2d2014-07-29 13:20:42 -07002544 default:
2545 LOG(WARNING) << "ExtendedFlagsOf: Unhandled case: " << static_cast<int> (opcode);
2546 return 0;
2547 }
2548}
Andreas Gampe0b9203e2015-01-22 20:39:27 -08002549
2550const uint16_t* MIRGraph::GetInsns(int m_unit_index) const {
2551 return m_units_[m_unit_index]->GetCodeItem()->insns_;
2552}
2553
Vladimir Marko7a01dc22015-01-02 17:00:44 +00002554void MIRGraph::SetPuntToInterpreter(bool val) {
2555 punt_to_interpreter_ = val;
2556 if (val) {
2557 // Disable all subsequent optimizations. They may not be safe to run. (For example,
2558 // LVN/GVN assumes there are no conflicts found by the type inference pass.)
2559 cu_->disable_opt = ~static_cast<decltype(cu_->disable_opt)>(0);
2560 }
2561}
2562
Brian Carlstrom7934ac22013-07-26 10:54:15 -07002563} // namespace art