blob: e806acf8742f58ce3850ff6900b40f181ab76cf1 [file] [log] [blame]
David Srbecky3b9d57a2015-04-10 00:22:14 +01001/*
2 * Copyright (C) 2015 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include "elf_writer_debug.h"
18
David Srbecky626a1662015-04-12 13:12:26 +010019#include <unordered_set>
Vladimir Marko10c13562015-11-25 14:33:36 +000020#include <vector>
David Srbecky626a1662015-04-12 13:12:26 +010021
Andreas Gampee3d623e2015-05-01 16:11:04 -070022#include "base/casts.h"
David Srbecky04b05262015-11-09 18:05:48 +000023#include "base/stl_util.h"
David Srbecky3b9d57a2015-04-10 00:22:14 +010024#include "compiled_method.h"
25#include "driver/compiler_driver.h"
26#include "dex_file-inl.h"
David Srbecky04b05262015-11-09 18:05:48 +000027#include "dwarf/dedup_vector.h"
David Srbecky3b9d57a2015-04-10 00:22:14 +010028#include "dwarf/headers.h"
Vladimir Marko10c13562015-11-25 14:33:36 +000029#include "dwarf/method_debug_info.h"
David Srbecky3b9d57a2015-04-10 00:22:14 +010030#include "dwarf/register.h"
David Srbecky6d8c8f02015-10-26 10:57:09 +000031#include "elf_builder.h"
David Srbecky3b9d57a2015-04-10 00:22:14 +010032#include "oat_writer.h"
Vladimir Marko80afd022015-05-19 18:08:00 +010033#include "utils.h"
David Srbecky0fd295f2015-11-16 16:39:10 +000034#include "stack_map.h"
David Srbecky3b9d57a2015-04-10 00:22:14 +010035
36namespace art {
37namespace dwarf {
38
David Srbecky0fd295f2015-11-16 16:39:10 +000039static Reg GetDwarfCoreReg(InstructionSet isa, int machine_reg) {
40 switch (isa) {
41 case kArm:
42 case kThumb2:
43 return Reg::ArmCore(machine_reg);
44 case kArm64:
45 return Reg::Arm64Core(machine_reg);
46 case kX86:
47 return Reg::X86Core(machine_reg);
48 case kX86_64:
49 return Reg::X86_64Core(machine_reg);
50 case kMips:
51 return Reg::MipsCore(machine_reg);
52 case kMips64:
53 return Reg::Mips64Core(machine_reg);
54 default:
55 LOG(FATAL) << "Unknown instruction set: " << isa;
56 UNREACHABLE();
57 }
58}
59
60static Reg GetDwarfFpReg(InstructionSet isa, int machine_reg) {
61 switch (isa) {
62 case kArm:
63 case kThumb2:
64 return Reg::ArmFp(machine_reg);
65 case kArm64:
66 return Reg::Arm64Fp(machine_reg);
67 case kX86:
68 return Reg::X86Fp(machine_reg);
69 case kX86_64:
70 return Reg::X86_64Fp(machine_reg);
71 default:
72 LOG(FATAL) << "Unknown instruction set: " << isa;
73 UNREACHABLE();
74 }
75}
76
David Srbecky6d8c8f02015-10-26 10:57:09 +000077static void WriteCIE(InstructionSet isa,
78 CFIFormat format,
79 std::vector<uint8_t>* buffer) {
David Srbecky3b9d57a2015-04-10 00:22:14 +010080 // Scratch registers should be marked as undefined. This tells the
81 // debugger that its value in the previous frame is not recoverable.
82 bool is64bit = Is64BitInstructionSet(isa);
83 switch (isa) {
84 case kArm:
85 case kThumb2: {
86 DebugFrameOpCodeWriter<> opcodes;
87 opcodes.DefCFA(Reg::ArmCore(13), 0); // R13(SP).
88 // core registers.
89 for (int reg = 0; reg < 13; reg++) {
90 if (reg < 4 || reg == 12) {
91 opcodes.Undefined(Reg::ArmCore(reg));
92 } else {
93 opcodes.SameValue(Reg::ArmCore(reg));
94 }
95 }
96 // fp registers.
97 for (int reg = 0; reg < 32; reg++) {
98 if (reg < 16) {
99 opcodes.Undefined(Reg::ArmFp(reg));
100 } else {
101 opcodes.SameValue(Reg::ArmFp(reg));
102 }
103 }
David Srbecky527c9c72015-04-17 21:14:10 +0100104 auto return_reg = Reg::ArmCore(14); // R14(LR).
David Srbecky6d8c8f02015-10-26 10:57:09 +0000105 WriteCIE(is64bit, return_reg, opcodes, format, buffer);
David Srbecky3b9d57a2015-04-10 00:22:14 +0100106 return;
107 }
108 case kArm64: {
109 DebugFrameOpCodeWriter<> opcodes;
110 opcodes.DefCFA(Reg::Arm64Core(31), 0); // R31(SP).
111 // core registers.
112 for (int reg = 0; reg < 30; reg++) {
113 if (reg < 8 || reg == 16 || reg == 17) {
114 opcodes.Undefined(Reg::Arm64Core(reg));
115 } else {
116 opcodes.SameValue(Reg::Arm64Core(reg));
117 }
118 }
119 // fp registers.
120 for (int reg = 0; reg < 32; reg++) {
121 if (reg < 8 || reg >= 16) {
122 opcodes.Undefined(Reg::Arm64Fp(reg));
123 } else {
124 opcodes.SameValue(Reg::Arm64Fp(reg));
125 }
126 }
David Srbecky527c9c72015-04-17 21:14:10 +0100127 auto return_reg = Reg::Arm64Core(30); // R30(LR).
David Srbecky6d8c8f02015-10-26 10:57:09 +0000128 WriteCIE(is64bit, return_reg, opcodes, format, buffer);
David Srbecky3b9d57a2015-04-10 00:22:14 +0100129 return;
130 }
131 case kMips:
132 case kMips64: {
133 DebugFrameOpCodeWriter<> opcodes;
134 opcodes.DefCFA(Reg::MipsCore(29), 0); // R29(SP).
135 // core registers.
136 for (int reg = 1; reg < 26; reg++) {
137 if (reg < 16 || reg == 24 || reg == 25) { // AT, V*, A*, T*.
138 opcodes.Undefined(Reg::MipsCore(reg));
139 } else {
140 opcodes.SameValue(Reg::MipsCore(reg));
141 }
142 }
David Srbecky527c9c72015-04-17 21:14:10 +0100143 auto return_reg = Reg::MipsCore(31); // R31(RA).
David Srbecky6d8c8f02015-10-26 10:57:09 +0000144 WriteCIE(is64bit, return_reg, opcodes, format, buffer);
David Srbecky3b9d57a2015-04-10 00:22:14 +0100145 return;
146 }
147 case kX86: {
David Srbecky8a813f72015-04-20 16:43:52 +0100148 // FIXME: Add fp registers once libunwind adds support for them. Bug: 20491296
149 constexpr bool generate_opcodes_for_x86_fp = false;
David Srbecky3b9d57a2015-04-10 00:22:14 +0100150 DebugFrameOpCodeWriter<> opcodes;
151 opcodes.DefCFA(Reg::X86Core(4), 4); // R4(ESP).
152 opcodes.Offset(Reg::X86Core(8), -4); // R8(EIP).
153 // core registers.
154 for (int reg = 0; reg < 8; reg++) {
155 if (reg <= 3) {
156 opcodes.Undefined(Reg::X86Core(reg));
157 } else if (reg == 4) {
158 // Stack pointer.
159 } else {
160 opcodes.SameValue(Reg::X86Core(reg));
161 }
162 }
163 // fp registers.
David Srbecky8a813f72015-04-20 16:43:52 +0100164 if (generate_opcodes_for_x86_fp) {
165 for (int reg = 0; reg < 8; reg++) {
166 opcodes.Undefined(Reg::X86Fp(reg));
167 }
David Srbecky3b9d57a2015-04-10 00:22:14 +0100168 }
David Srbecky527c9c72015-04-17 21:14:10 +0100169 auto return_reg = Reg::X86Core(8); // R8(EIP).
David Srbecky6d8c8f02015-10-26 10:57:09 +0000170 WriteCIE(is64bit, return_reg, opcodes, format, buffer);
David Srbecky3b9d57a2015-04-10 00:22:14 +0100171 return;
172 }
173 case kX86_64: {
174 DebugFrameOpCodeWriter<> opcodes;
175 opcodes.DefCFA(Reg::X86_64Core(4), 8); // R4(RSP).
176 opcodes.Offset(Reg::X86_64Core(16), -8); // R16(RIP).
177 // core registers.
178 for (int reg = 0; reg < 16; reg++) {
179 if (reg == 4) {
180 // Stack pointer.
181 } else if (reg < 12 && reg != 3 && reg != 5) { // except EBX and EBP.
182 opcodes.Undefined(Reg::X86_64Core(reg));
183 } else {
184 opcodes.SameValue(Reg::X86_64Core(reg));
185 }
186 }
187 // fp registers.
188 for (int reg = 0; reg < 16; reg++) {
189 if (reg < 12) {
190 opcodes.Undefined(Reg::X86_64Fp(reg));
191 } else {
192 opcodes.SameValue(Reg::X86_64Fp(reg));
193 }
194 }
David Srbecky527c9c72015-04-17 21:14:10 +0100195 auto return_reg = Reg::X86_64Core(16); // R16(RIP).
David Srbecky6d8c8f02015-10-26 10:57:09 +0000196 WriteCIE(is64bit, return_reg, opcodes, format, buffer);
David Srbecky3b9d57a2015-04-10 00:22:14 +0100197 return;
198 }
199 case kNone:
200 break;
201 }
202 LOG(FATAL) << "Can not write CIE frame for ISA " << isa;
203 UNREACHABLE();
204}
205
David Srbecky6d8c8f02015-10-26 10:57:09 +0000206template<typename ElfTypes>
207void WriteCFISection(ElfBuilder<ElfTypes>* builder,
Vladimir Marko10c13562015-11-25 14:33:36 +0000208 const ArrayRef<const MethodDebugInfo>& method_infos,
David Srbecky6d8c8f02015-10-26 10:57:09 +0000209 CFIFormat format) {
210 CHECK(format == dwarf::DW_DEBUG_FRAME_FORMAT ||
211 format == dwarf::DW_EH_FRAME_FORMAT);
212 typedef typename ElfTypes::Addr Elf_Addr;
213
214 std::vector<uint32_t> binary_search_table;
215 std::vector<uintptr_t> patch_locations;
216 if (format == DW_EH_FRAME_FORMAT) {
217 binary_search_table.reserve(2 * method_infos.size());
218 } else {
219 patch_locations.reserve(method_infos.size());
220 }
David Srbecky527c9c72015-04-17 21:14:10 +0100221
David Srbeckyad5fa8c2015-05-06 18:27:35 +0100222 // Write .eh_frame/.debug_frame section.
David Srbecky6d8c8f02015-10-26 10:57:09 +0000223 auto* cfi_section = (format == dwarf::DW_DEBUG_FRAME_FORMAT
224 ? builder->GetDebugFrame()
225 : builder->GetEhFrame());
226 {
227 cfi_section->Start();
228 const bool is64bit = Is64BitInstructionSet(builder->GetIsa());
229 const Elf_Addr text_address = builder->GetText()->GetAddress();
230 const Elf_Addr cfi_address = cfi_section->GetAddress();
231 const Elf_Addr cie_address = cfi_address;
232 Elf_Addr buffer_address = cfi_address;
233 std::vector<uint8_t> buffer; // Small temporary buffer.
234 WriteCIE(builder->GetIsa(), format, &buffer);
235 cfi_section->WriteFully(buffer.data(), buffer.size());
236 buffer_address += buffer.size();
237 buffer.clear();
Vladimir Marko10c13562015-11-25 14:33:36 +0000238 for (const MethodDebugInfo& mi : method_infos) {
David Srbecky6d8c8f02015-10-26 10:57:09 +0000239 if (!mi.deduped_) { // Only one FDE per unique address.
240 ArrayRef<const uint8_t> opcodes = mi.compiled_method_->GetCFIInfo();
241 if (!opcodes.empty()) {
242 const Elf_Addr code_address = text_address + mi.low_pc_;
243 if (format == DW_EH_FRAME_FORMAT) {
244 binary_search_table.push_back(
245 dchecked_integral_cast<uint32_t>(code_address));
246 binary_search_table.push_back(
247 dchecked_integral_cast<uint32_t>(buffer_address));
248 }
249 WriteFDE(is64bit, cfi_address, cie_address,
250 code_address, mi.high_pc_ - mi.low_pc_,
251 opcodes, format, buffer_address, &buffer,
252 &patch_locations);
253 cfi_section->WriteFully(buffer.data(), buffer.size());
254 buffer_address += buffer.size();
255 buffer.clear();
256 }
David Srbecky6d73c9d2015-05-01 15:00:40 +0100257 }
David Srbecky8dc73242015-04-12 11:40:39 +0100258 }
David Srbecky6d8c8f02015-10-26 10:57:09 +0000259 cfi_section->End();
David Srbecky8dc73242015-04-12 11:40:39 +0100260 }
David Srbecky527c9c72015-04-17 21:14:10 +0100261
David Srbeckyad5fa8c2015-05-06 18:27:35 +0100262 if (format == DW_EH_FRAME_FORMAT) {
David Srbecky6d8c8f02015-10-26 10:57:09 +0000263 auto* header_section = builder->GetEhFrameHdr();
264 header_section->Start();
265 uint32_t header_address = dchecked_integral_cast<int32_t>(header_section->GetAddress());
David Srbeckyad5fa8c2015-05-06 18:27:35 +0100266 // Write .eh_frame_hdr section.
David Srbecky6d8c8f02015-10-26 10:57:09 +0000267 std::vector<uint8_t> buffer;
268 Writer<> header(&buffer);
David Srbeckyad5fa8c2015-05-06 18:27:35 +0100269 header.PushUint8(1); // Version.
270 // Encoding of .eh_frame pointer - libunwind does not honor datarel here,
271 // so we have to use pcrel which means relative to the pointer's location.
272 header.PushUint8(DW_EH_PE_pcrel | DW_EH_PE_sdata4);
273 // Encoding of binary search table size.
274 header.PushUint8(DW_EH_PE_udata4);
275 // Encoding of binary search table addresses - libunwind supports only this
276 // specific combination, which means relative to the start of .eh_frame_hdr.
277 header.PushUint8(DW_EH_PE_datarel | DW_EH_PE_sdata4);
David Srbecky6d8c8f02015-10-26 10:57:09 +0000278 // .eh_frame pointer
279 header.PushInt32(cfi_section->GetAddress() - (header_address + 4u));
David Srbeckyad5fa8c2015-05-06 18:27:35 +0100280 // Binary search table size (number of entries).
David Srbecky6d8c8f02015-10-26 10:57:09 +0000281 header.PushUint32(dchecked_integral_cast<uint32_t>(binary_search_table.size()/2));
282 header_section->WriteFully(buffer.data(), buffer.size());
David Srbeckyad5fa8c2015-05-06 18:27:35 +0100283 // Binary search table.
David Srbecky6d8c8f02015-10-26 10:57:09 +0000284 for (size_t i = 0; i < binary_search_table.size(); i++) {
285 // Make addresses section-relative since we know the header address now.
286 binary_search_table[i] -= header_address;
David Srbeckyad5fa8c2015-05-06 18:27:35 +0100287 }
David Srbecky6d8c8f02015-10-26 10:57:09 +0000288 header_section->WriteFully(binary_search_table.data(), binary_search_table.size());
289 header_section->End();
290 } else {
Vladimir Marko10c13562015-11-25 14:33:36 +0000291 builder->WritePatches(".debug_frame.oat_patches",
292 ArrayRef<const uintptr_t>(patch_locations));
David Srbecky033d7452015-04-30 19:57:35 +0100293 }
David Srbecky8dc73242015-04-12 11:40:39 +0100294}
295
David Srbecky996ed0b2015-11-27 10:27:11 +0000296namespace {
297 struct CompilationUnit {
298 std::vector<const MethodDebugInfo*> methods_;
299 size_t debug_line_offset_ = 0;
300 uint32_t low_pc_ = 0xFFFFFFFFU;
301 uint32_t high_pc_ = 0;
302 };
303
304 struct LocalVariable {
305 uint16_t vreg;
306 uint32_t dex_pc_low;
307 uint32_t dex_pc_high;
308 const char* name;
309 const char* type;
310 const char* sig;
311 };
312
313 struct DebugInfoCallback {
314 static void NewLocal(void* ctx,
315 uint16_t vreg,
316 uint32_t start,
317 uint32_t end,
318 const char* name,
319 const char* type,
320 const char* sig) {
321 auto* context = static_cast<DebugInfoCallback*>(ctx);
322 if (name != nullptr && type != nullptr) {
323 context->local_variables_.push_back({vreg, start, end, name, type, sig});
324 }
325 }
326 std::vector<LocalVariable> local_variables_;
327 };
328
329 std::vector<const char*> GetParamNames(const MethodDebugInfo* mi) {
330 std::vector<const char*> names;
331 const uint8_t* stream = mi->dex_file_->GetDebugInfoStream(mi->code_item_);
332 if (stream != nullptr) {
333 DecodeUnsignedLeb128(&stream); // line.
334 uint32_t parameters_size = DecodeUnsignedLeb128(&stream);
335 for (uint32_t i = 0; i < parameters_size; ++i) {
336 uint32_t id = DecodeUnsignedLeb128P1(&stream);
337 names.push_back(mi->dex_file_->StringDataByIdx(id));
338 }
339 }
340 return names;
341 }
342
343 struct VariableLocation {
344 uint32_t low_pc;
345 uint32_t high_pc;
346 DexRegisterLocation reg_lo; // May be None if the location is unknown.
347 DexRegisterLocation reg_hi; // Most significant bits of 64-bit value.
348 };
349
350 // Get the location of given dex register (e.g. stack or machine register).
351 // Note that the location might be different based on the current pc.
352 // The result will cover all ranges where the variable is in scope.
353 std::vector<VariableLocation> GetVariableLocations(const MethodDebugInfo* method_info,
354 uint16_t vreg,
355 bool is64bitValue,
356 uint32_t dex_pc_low,
357 uint32_t dex_pc_high) {
358 std::vector<VariableLocation> variable_locations;
359
360 // Get stack maps sorted by pc (they might not be sorted internally).
361 const CodeInfo code_info(method_info->compiled_method_->GetVmapTable().data());
362 const StackMapEncoding encoding = code_info.ExtractEncoding();
363 std::map<uint32_t, StackMap> stack_maps;
364 for (uint32_t s = 0; s < code_info.GetNumberOfStackMaps(); s++) {
365 StackMap stack_map = code_info.GetStackMapAt(s, encoding);
366 DCHECK(stack_map.IsValid());
367 const uint32_t low_pc = method_info->low_pc_ + stack_map.GetNativePcOffset(encoding);
368 DCHECK_LE(low_pc, method_info->high_pc_);
369 stack_maps.emplace(low_pc, stack_map);
370 }
371
372 // Create entries for the requested register based on stack map data.
373 for (auto it = stack_maps.begin(); it != stack_maps.end(); it++) {
374 const StackMap& stack_map = it->second;
375 const uint32_t low_pc = it->first;
376 auto next_it = it;
377 next_it++;
378 const uint32_t high_pc = next_it != stack_maps.end() ? next_it->first
379 : method_info->high_pc_;
380 DCHECK_LE(low_pc, high_pc);
381 if (low_pc == high_pc) {
382 continue; // Ignore if the address range is empty.
383 }
384
385 // Check that the stack map is in the requested range.
386 uint32_t dex_pc = stack_map.GetDexPc(encoding);
387 if (!(dex_pc_low <= dex_pc && dex_pc < dex_pc_high)) {
388 continue;
389 }
390
391 // Find the location of the dex register.
392 DexRegisterLocation reg_lo = DexRegisterLocation::None();
393 DexRegisterLocation reg_hi = DexRegisterLocation::None();
394 if (stack_map.HasDexRegisterMap(encoding)) {
395 DexRegisterMap dex_register_map = code_info.GetDexRegisterMapOf(
396 stack_map, encoding, method_info->code_item_->registers_size_);
397 reg_lo = dex_register_map.GetDexRegisterLocation(
398 vreg, method_info->code_item_->registers_size_, code_info, encoding);
399 if (is64bitValue) {
400 reg_hi = dex_register_map.GetDexRegisterLocation(
401 vreg + 1, method_info->code_item_->registers_size_, code_info, encoding);
402 }
403 }
404
405 // Add location entry for this address range.
406 if (!variable_locations.empty() &&
407 variable_locations.back().reg_lo == reg_lo &&
408 variable_locations.back().reg_hi == reg_hi &&
409 variable_locations.back().high_pc == low_pc) {
410 // Merge with the previous entry (extend its range).
411 variable_locations.back().high_pc = high_pc;
412 } else {
413 variable_locations.push_back({low_pc, high_pc, reg_lo, reg_hi});
414 }
415 }
416
417 return variable_locations;
418 }
David Srbeckyf71b3ad2015-12-08 15:05:08 +0000419
420 bool IsFromOptimizingCompiler(const MethodDebugInfo* method_info) {
421 return method_info->compiled_method_->GetQuickCode().size() > 0 &&
422 method_info->compiled_method_->GetVmapTable().size() > 0 &&
423 method_info->compiled_method_->GetGcMap().size() == 0 &&
424 method_info->code_item_ != nullptr;
425 }
David Srbecky996ed0b2015-11-27 10:27:11 +0000426} // namespace
David Srbecky04b05262015-11-09 18:05:48 +0000427
428// Helper class to write .debug_info and its supporting sections.
David Srbecky6d8c8f02015-10-26 10:57:09 +0000429template<typename ElfTypes>
David Srbeckyb851b492015-11-11 20:19:38 +0000430class DebugInfoWriter {
David Srbecky6d8c8f02015-10-26 10:57:09 +0000431 typedef typename ElfTypes::Addr Elf_Addr;
David Srbecky3b9d57a2015-04-10 00:22:14 +0100432
David Srbecky04b05262015-11-09 18:05:48 +0000433 // Helper class to write one compilation unit.
434 // It holds helper methods and temporary state.
435 class CompilationUnitWriter {
436 public:
437 explicit CompilationUnitWriter(DebugInfoWriter* owner)
438 : owner_(owner),
439 info_(Is64BitInstructionSet(owner_->builder_->GetIsa()), &debug_abbrev_) {
440 }
441
442 void Write(const CompilationUnit& compilation_unit) {
443 CHECK(!compilation_unit.methods_.empty());
444 const Elf_Addr text_address = owner_->builder_->GetText()->GetAddress();
445
446 info_.StartTag(DW_TAG_compile_unit);
447 info_.WriteStrp(DW_AT_producer, owner_->WriteString("Android dex2oat"));
448 info_.WriteData1(DW_AT_language, DW_LANG_Java);
Tamas Berghammer8c557122015-12-10 15:06:25 +0000449 info_.WriteStrp(DW_AT_comp_dir, owner_->WriteString("$JAVA_SRC_ROOT"));
David Srbecky04b05262015-11-09 18:05:48 +0000450 info_.WriteAddr(DW_AT_low_pc, text_address + compilation_unit.low_pc_);
David Srbecky0fd295f2015-11-16 16:39:10 +0000451 info_.WriteUdata(DW_AT_high_pc, compilation_unit.high_pc_ - compilation_unit.low_pc_);
452 info_.WriteSecOffset(DW_AT_stmt_list, compilation_unit.debug_line_offset_);
David Srbecky04b05262015-11-09 18:05:48 +0000453
454 const char* last_dex_class_desc = nullptr;
455 for (auto mi : compilation_unit.methods_) {
456 const DexFile* dex = mi->dex_file_;
457 const DexFile::MethodId& dex_method = dex->GetMethodId(mi->dex_method_index_);
458 const DexFile::ProtoId& dex_proto = dex->GetMethodPrototype(dex_method);
459 const DexFile::TypeList* dex_params = dex->GetProtoParameters(dex_proto);
460 const char* dex_class_desc = dex->GetMethodDeclaringClassDescriptor(dex_method);
David Srbecky996ed0b2015-11-27 10:27:11 +0000461 const bool is_static = (mi->access_flags_ & kAccStatic) != 0;
David Srbecky04b05262015-11-09 18:05:48 +0000462
463 // Enclose the method in correct class definition.
464 if (last_dex_class_desc != dex_class_desc) {
465 if (last_dex_class_desc != nullptr) {
466 EndClassTag(last_dex_class_desc);
467 }
468 size_t offset = StartClassTag(dex_class_desc);
469 type_cache_.emplace(dex_class_desc, offset);
470 // Check that each class is defined only once.
471 bool unique = owner_->defined_dex_classes_.insert(dex_class_desc).second;
472 CHECK(unique) << "Redefinition of " << dex_class_desc;
473 last_dex_class_desc = dex_class_desc;
474 }
475
David Srbecky996ed0b2015-11-27 10:27:11 +0000476 // Collect information about local variables and parameters.
477 DebugInfoCallback debug_info_callback;
David Srbecky04b05262015-11-09 18:05:48 +0000478 std::vector<const char*> param_names;
479 if (mi->code_item_ != nullptr) {
David Srbecky996ed0b2015-11-27 10:27:11 +0000480 dex->DecodeDebugInfo(mi->code_item_,
481 is_static,
482 mi->dex_method_index_,
483 nullptr,
484 DebugInfoCallback::NewLocal,
485 &debug_info_callback);
486 param_names = GetParamNames(mi);
David Srbecky04b05262015-11-09 18:05:48 +0000487 }
488
489 int start_depth = info_.Depth();
490 info_.StartTag(DW_TAG_subprogram);
491 WriteName(dex->GetMethodName(dex_method));
492 info_.WriteAddr(DW_AT_low_pc, text_address + mi->low_pc_);
David Srbecky0fd295f2015-11-16 16:39:10 +0000493 info_.WriteUdata(DW_AT_high_pc, mi->high_pc_ - mi->low_pc_);
494 uint8_t frame_base[] = { DW_OP_call_frame_cfa };
495 info_.WriteExprLoc(DW_AT_frame_base, &frame_base, sizeof(frame_base));
David Srbecky04b05262015-11-09 18:05:48 +0000496 WriteLazyType(dex->GetReturnTypeDescriptor(dex_proto));
David Srbecky996ed0b2015-11-27 10:27:11 +0000497 uint32_t vreg = mi->code_item_ == nullptr ? 0 :
498 mi->code_item_->registers_size_ - mi->code_item_->ins_size_;
499 if (!is_static) {
500 info_.StartTag(DW_TAG_formal_parameter);
501 WriteName("this");
502 info_.WriteFlag(DW_AT_artificial, true);
503 WriteLazyType(dex_class_desc);
504 const bool is64bitValue = false;
505 WriteRegLocation(mi, vreg, is64bitValue, compilation_unit.low_pc_);
506 vreg++;
507 info_.EndTag();
508 }
David Srbecky04b05262015-11-09 18:05:48 +0000509 if (dex_params != nullptr) {
510 for (uint32_t i = 0; i < dex_params->Size(); ++i) {
511 info_.StartTag(DW_TAG_formal_parameter);
512 // Parameter names may not be always available.
513 if (i < param_names.size() && param_names[i] != nullptr) {
514 WriteName(param_names[i]);
515 }
David Srbecky0fd295f2015-11-16 16:39:10 +0000516 // Write the type.
517 const char* type_desc = dex->StringByTypeIdx(dex_params->GetTypeItem(i).type_idx_);
518 WriteLazyType(type_desc);
519 // Write the stack location of the parameter.
520 const bool is64bitValue = type_desc[0] == 'D' || type_desc[0] == 'J';
521 WriteRegLocation(mi, vreg, is64bitValue, compilation_unit.low_pc_);
522 vreg += is64bitValue ? 2 : 1;
David Srbecky04b05262015-11-09 18:05:48 +0000523 info_.EndTag();
524 }
David Srbecky0fd295f2015-11-16 16:39:10 +0000525 if (mi->code_item_ != nullptr) {
526 CHECK_EQ(vreg, mi->code_item_->registers_size_);
527 }
David Srbecky04b05262015-11-09 18:05:48 +0000528 }
David Srbecky996ed0b2015-11-27 10:27:11 +0000529 for (const LocalVariable& var : debug_info_callback.local_variables_) {
530 const uint32_t first_arg = mi->code_item_->registers_size_ - mi->code_item_->ins_size_;
531 if (var.vreg < first_arg) {
532 info_.StartTag(DW_TAG_variable);
533 WriteName(var.name);
534 WriteLazyType(var.type);
535 bool is64bitValue = var.type[0] == 'D' || var.type[0] == 'J';
536 WriteRegLocation(mi, var.vreg, is64bitValue, compilation_unit.low_pc_,
537 var.dex_pc_low, var.dex_pc_high);
538 info_.EndTag();
539 }
540 }
David Srbecky04b05262015-11-09 18:05:48 +0000541 info_.EndTag();
542 CHECK_EQ(info_.Depth(), start_depth); // Balanced start/end.
543 }
544 if (last_dex_class_desc != nullptr) {
545 EndClassTag(last_dex_class_desc);
546 }
547 CHECK_EQ(info_.Depth(), 1);
548 FinishLazyTypes();
549 info_.EndTag(); // DW_TAG_compile_unit
550 std::vector<uint8_t> buffer;
551 buffer.reserve(info_.data()->size() + KB);
552 const size_t offset = owner_->builder_->GetDebugInfo()->GetSize();
553 const size_t debug_abbrev_offset =
554 owner_->debug_abbrev_.Insert(debug_abbrev_.data(), debug_abbrev_.size());
555 WriteDebugInfoCU(debug_abbrev_offset, info_, offset, &buffer, &owner_->debug_info_patches_);
556 owner_->builder_->GetDebugInfo()->WriteFully(buffer.data(), buffer.size());
557 }
558
David Srbecky0fd295f2015-11-16 16:39:10 +0000559 // Write table into .debug_loc which describes location of dex register.
560 // The dex register might be valid only at some points and it might
561 // move between machine registers and stack.
David Srbecky996ed0b2015-11-27 10:27:11 +0000562 void WriteRegLocation(const MethodDebugInfo* method_info,
563 uint16_t vreg,
564 bool is64bitValue,
565 uint32_t compilation_unit_low_pc,
566 uint32_t dex_pc_low = 0,
567 uint32_t dex_pc_high = 0xFFFFFFFF) {
David Srbecky0fd295f2015-11-16 16:39:10 +0000568 using Kind = DexRegisterLocation::Kind;
David Srbeckyf71b3ad2015-12-08 15:05:08 +0000569 if (!IsFromOptimizingCompiler(method_info)) {
David Srbecky0fd295f2015-11-16 16:39:10 +0000570 return;
571 }
572
David Srbecky996ed0b2015-11-27 10:27:11 +0000573 Writer<> debug_loc(&owner_->debug_loc_);
574 Writer<> debug_ranges(&owner_->debug_ranges_);
575 info_.WriteSecOffset(DW_AT_location, debug_loc.size());
576 info_.WriteSecOffset(DW_AT_start_scope, debug_ranges.size());
David Srbecky0fd295f2015-11-16 16:39:10 +0000577
David Srbecky996ed0b2015-11-27 10:27:11 +0000578 std::vector<VariableLocation> variable_locations = GetVariableLocations(
579 method_info,
580 vreg,
581 is64bitValue,
582 dex_pc_low,
583 dex_pc_high);
584
585 // Write .debug_loc entries.
David Srbecky0fd295f2015-11-16 16:39:10 +0000586 const InstructionSet isa = owner_->builder_->GetIsa();
587 const bool is64bit = Is64BitInstructionSet(isa);
David Srbecky996ed0b2015-11-27 10:27:11 +0000588 for (const VariableLocation& variable_location : variable_locations) {
David Srbecky0fd295f2015-11-16 16:39:10 +0000589 // Translate dex register location to DWARF expression.
590 // Note that 64-bit value might be split to two distinct locations.
591 // (for example, two 32-bit machine registers, or even stack and register)
592 uint8_t buffer[64];
593 uint8_t* pos = buffer;
David Srbecky996ed0b2015-11-27 10:27:11 +0000594 DexRegisterLocation reg_lo = variable_location.reg_lo;
595 DexRegisterLocation reg_hi = variable_location.reg_hi;
David Srbecky0fd295f2015-11-16 16:39:10 +0000596 for (int piece = 0; piece < (is64bitValue ? 2 : 1); piece++) {
597 DexRegisterLocation reg_loc = (piece == 0 ? reg_lo : reg_hi);
598 const Kind kind = reg_loc.GetKind();
599 const int32_t value = reg_loc.GetValue();
600 if (kind == Kind::kInStack) {
601 const size_t frame_size = method_info->compiled_method_->GetFrameSizeInBytes();
602 *(pos++) = DW_OP_fbreg;
603 // The stack offset is relative to SP. Make it relative to CFA.
604 pos = EncodeSignedLeb128(pos, value - frame_size);
605 if (piece == 0 && reg_hi.GetKind() == Kind::kInStack &&
606 reg_hi.GetValue() == value + 4) {
607 break; // the high word is correctly implied by the low word.
608 }
609 } else if (kind == Kind::kInRegister) {
610 pos = WriteOpReg(pos, GetDwarfCoreReg(isa, value).num());
611 if (piece == 0 && reg_hi.GetKind() == Kind::kInRegisterHigh &&
612 reg_hi.GetValue() == value) {
613 break; // the high word is correctly implied by the low word.
614 }
615 } else if (kind == Kind::kInFpuRegister) {
616 if ((isa == kArm || isa == kThumb2) &&
617 piece == 0 && reg_hi.GetKind() == Kind::kInFpuRegister &&
618 reg_hi.GetValue() == value + 1 && value % 2 == 0) {
619 // Translate S register pair to D register (e.g. S4+S5 to D2).
620 pos = WriteOpReg(pos, Reg::ArmDp(value / 2).num());
621 break;
622 }
David Srbecky3dd7e5a2015-11-27 13:31:16 +0000623 if (isa == kMips || isa == kMips64) {
624 // TODO: Find what the DWARF floating point register numbers are on MIPS.
625 break;
626 }
David Srbecky0fd295f2015-11-16 16:39:10 +0000627 pos = WriteOpReg(pos, GetDwarfFpReg(isa, value).num());
628 if (piece == 0 && reg_hi.GetKind() == Kind::kInFpuRegisterHigh &&
629 reg_hi.GetValue() == reg_lo.GetValue()) {
630 break; // the high word is correctly implied by the low word.
631 }
632 } else if (kind == Kind::kConstant) {
633 *(pos++) = DW_OP_consts;
634 pos = EncodeSignedLeb128(pos, value);
635 *(pos++) = DW_OP_stack_value;
636 } else if (kind == Kind::kNone) {
637 break;
638 } else {
639 // kInStackLargeOffset and kConstantLargeValue are hidden by GetKind().
640 // kInRegisterHigh and kInFpuRegisterHigh should be handled by
641 // the special cases above and they should not occur alone.
642 LOG(ERROR) << "Unexpected register location kind: "
643 << DexRegisterLocation::PrettyDescriptor(kind);
644 break;
645 }
646 if (is64bitValue) {
647 // Write the marker which is needed by split 64-bit values.
648 // This code is skipped by the special cases.
649 *(pos++) = DW_OP_piece;
650 pos = EncodeUnsignedLeb128(pos, 4);
651 }
652 }
653
David Srbecky996ed0b2015-11-27 10:27:11 +0000654 // Check that the buffer is large enough; keep half of it empty for safety.
655 DCHECK_LE(static_cast<size_t>(pos - buffer), sizeof(buffer) / 2);
David Srbecky0fd295f2015-11-16 16:39:10 +0000656 if (pos > buffer) {
David Srbecky0fd295f2015-11-16 16:39:10 +0000657 if (is64bit) {
David Srbecky996ed0b2015-11-27 10:27:11 +0000658 debug_loc.PushUint64(variable_location.low_pc - compilation_unit_low_pc);
659 debug_loc.PushUint64(variable_location.high_pc - compilation_unit_low_pc);
David Srbecky0fd295f2015-11-16 16:39:10 +0000660 } else {
David Srbecky996ed0b2015-11-27 10:27:11 +0000661 debug_loc.PushUint32(variable_location.low_pc - compilation_unit_low_pc);
662 debug_loc.PushUint32(variable_location.high_pc - compilation_unit_low_pc);
David Srbecky0fd295f2015-11-16 16:39:10 +0000663 }
664 // Write the expression.
David Srbecky996ed0b2015-11-27 10:27:11 +0000665 debug_loc.PushUint16(pos - buffer);
666 debug_loc.PushData(buffer, pos - buffer);
David Srbecky0fd295f2015-11-16 16:39:10 +0000667 } else {
David Srbecky996ed0b2015-11-27 10:27:11 +0000668 // Do not generate .debug_loc if the location is not known.
David Srbecky0fd295f2015-11-16 16:39:10 +0000669 }
670 }
671 // Write end-of-list entry.
672 if (is64bit) {
David Srbecky996ed0b2015-11-27 10:27:11 +0000673 debug_loc.PushUint64(0);
674 debug_loc.PushUint64(0);
David Srbecky0fd295f2015-11-16 16:39:10 +0000675 } else {
David Srbecky996ed0b2015-11-27 10:27:11 +0000676 debug_loc.PushUint32(0);
677 debug_loc.PushUint32(0);
678 }
679
680 // Write .debug_ranges entries.
681 // This includes ranges where the variable is in scope but the location is not known.
682 for (size_t i = 0; i < variable_locations.size(); i++) {
683 uint32_t low_pc = variable_locations[i].low_pc;
684 uint32_t high_pc = variable_locations[i].high_pc;
685 while (i + 1 < variable_locations.size() && variable_locations[i+1].low_pc == high_pc) {
686 // Merge address range with the next entry.
687 high_pc = variable_locations[++i].high_pc;
688 }
689 if (is64bit) {
690 debug_ranges.PushUint64(low_pc - compilation_unit_low_pc);
691 debug_ranges.PushUint64(high_pc - compilation_unit_low_pc);
692 } else {
693 debug_ranges.PushUint32(low_pc - compilation_unit_low_pc);
694 debug_ranges.PushUint32(high_pc - compilation_unit_low_pc);
695 }
696 }
697 // Write end-of-list entry.
698 if (is64bit) {
699 debug_ranges.PushUint64(0);
700 debug_ranges.PushUint64(0);
701 } else {
702 debug_ranges.PushUint32(0);
703 debug_ranges.PushUint32(0);
David Srbecky0fd295f2015-11-16 16:39:10 +0000704 }
705 }
706
David Srbecky04b05262015-11-09 18:05:48 +0000707 // Some types are difficult to define as we go since they need
708 // to be enclosed in the right set of namespaces. Therefore we
709 // just define all types lazily at the end of compilation unit.
710 void WriteLazyType(const char* type_descriptor) {
711 DCHECK(type_descriptor != nullptr);
712 if (type_descriptor[0] != 'V') {
713 lazy_types_.emplace(type_descriptor, info_.size());
714 info_.WriteRef4(DW_AT_type, 0);
715 }
716 }
717
718 void FinishLazyTypes() {
719 for (const auto& lazy_type : lazy_types_) {
720 info_.UpdateUint32(lazy_type.second, WriteType(lazy_type.first));
721 }
722 lazy_types_.clear();
723 }
724
725 private:
726 void WriteName(const char* name) {
727 info_.WriteStrp(DW_AT_name, owner_->WriteString(name));
728 }
729
David Srbecky0fd295f2015-11-16 16:39:10 +0000730 // Helper which writes DWARF expression referencing a register.
731 static uint8_t* WriteOpReg(uint8_t* buffer, uint32_t dwarf_reg_num) {
732 if (dwarf_reg_num < 32) {
733 *(buffer++) = DW_OP_reg0 + dwarf_reg_num;
734 } else {
735 *(buffer++) = DW_OP_regx;
736 buffer = EncodeUnsignedLeb128(buffer, dwarf_reg_num);
737 }
738 return buffer;
739 }
740
David Srbecky04b05262015-11-09 18:05:48 +0000741 // Convert dex type descriptor to DWARF.
742 // Returns offset in the compilation unit.
743 size_t WriteType(const char* desc) {
744 const auto& it = type_cache_.find(desc);
745 if (it != type_cache_.end()) {
746 return it->second;
747 }
748
749 size_t offset;
750 if (*desc == 'L') {
751 // Class type. For example: Lpackage/name;
752 offset = StartClassTag(desc);
753 info_.WriteFlag(DW_AT_declaration, true);
754 EndClassTag(desc);
755 } else if (*desc == '[') {
756 // Array type.
757 size_t element_type = WriteType(desc + 1);
758 offset = info_.StartTag(DW_TAG_array_type);
759 info_.WriteRef(DW_AT_type, element_type);
760 info_.EndTag();
761 } else {
762 // Primitive types.
763 const char* name;
David Srbecky0fd295f2015-11-16 16:39:10 +0000764 uint32_t encoding;
765 uint32_t byte_size;
David Srbecky04b05262015-11-09 18:05:48 +0000766 switch (*desc) {
David Srbecky0fd295f2015-11-16 16:39:10 +0000767 case 'B':
768 name = "byte";
769 encoding = DW_ATE_signed;
770 byte_size = 1;
771 break;
772 case 'C':
773 name = "char";
774 encoding = DW_ATE_UTF;
775 byte_size = 2;
776 break;
777 case 'D':
778 name = "double";
779 encoding = DW_ATE_float;
780 byte_size = 8;
781 break;
782 case 'F':
783 name = "float";
784 encoding = DW_ATE_float;
785 byte_size = 4;
786 break;
787 case 'I':
788 name = "int";
789 encoding = DW_ATE_signed;
790 byte_size = 4;
791 break;
792 case 'J':
793 name = "long";
794 encoding = DW_ATE_signed;
795 byte_size = 8;
796 break;
797 case 'S':
798 name = "short";
799 encoding = DW_ATE_signed;
800 byte_size = 2;
801 break;
802 case 'Z':
803 name = "boolean";
804 encoding = DW_ATE_boolean;
805 byte_size = 1;
806 break;
807 case 'V':
808 LOG(FATAL) << "Void type should not be encoded";
809 UNREACHABLE();
David Srbecky04b05262015-11-09 18:05:48 +0000810 default:
811 LOG(FATAL) << "Unknown dex type descriptor: " << desc;
812 UNREACHABLE();
813 }
814 offset = info_.StartTag(DW_TAG_base_type);
815 WriteName(name);
David Srbecky0fd295f2015-11-16 16:39:10 +0000816 info_.WriteData1(DW_AT_encoding, encoding);
817 info_.WriteData1(DW_AT_byte_size, byte_size);
David Srbecky04b05262015-11-09 18:05:48 +0000818 info_.EndTag();
819 }
820
821 type_cache_.emplace(desc, offset);
822 return offset;
823 }
824
825 // Start DW_TAG_class_type tag nested in DW_TAG_namespace tags.
826 // Returns offset of the class tag in the compilation unit.
827 size_t StartClassTag(const char* desc) {
828 DCHECK(desc != nullptr && desc[0] == 'L');
829 // Enclose the type in namespace tags.
830 const char* end;
831 for (desc = desc + 1; (end = strchr(desc, '/')) != nullptr; desc = end + 1) {
832 info_.StartTag(DW_TAG_namespace);
833 WriteName(std::string(desc, end - desc).c_str());
834 }
835 // Start the class tag.
836 size_t offset = info_.StartTag(DW_TAG_class_type);
837 end = strchr(desc, ';');
838 CHECK(end != nullptr);
839 WriteName(std::string(desc, end - desc).c_str());
840 return offset;
841 }
842
843 void EndClassTag(const char* desc) {
844 DCHECK(desc != nullptr && desc[0] == 'L');
845 // End the class tag.
846 info_.EndTag();
847 // Close namespace tags.
848 const char* end;
849 for (desc = desc + 1; (end = strchr(desc, '/')) != nullptr; desc = end + 1) {
850 info_.EndTag();
851 }
852 }
853
854 // For access to the ELF sections.
855 DebugInfoWriter<ElfTypes>* owner_;
856 // Debug abbrevs for this compilation unit only.
857 std::vector<uint8_t> debug_abbrev_;
858 // Temporary buffer to create and store the entries.
859 DebugInfoEntryWriter<> info_;
860 // Cache of already translated type descriptors.
861 std::map<const char*, size_t, CStringLess> type_cache_; // type_desc -> definition_offset.
862 // 32-bit references which need to be resolved to a type later.
863 std::multimap<const char*, size_t, CStringLess> lazy_types_; // type_desc -> patch_offset.
864 };
865
David Srbeckyb851b492015-11-11 20:19:38 +0000866 public:
867 explicit DebugInfoWriter(ElfBuilder<ElfTypes>* builder) : builder_(builder) {
David Srbecky626a1662015-04-12 13:12:26 +0100868 }
869
David Srbeckyb851b492015-11-11 20:19:38 +0000870 void Start() {
871 builder_->GetDebugInfo()->Start();
David Srbecky799b8c42015-04-14 01:57:43 +0100872 }
873
David Srbecky04b05262015-11-09 18:05:48 +0000874 void WriteCompilationUnit(const CompilationUnit& compilation_unit) {
875 CompilationUnitWriter writer(this);
876 writer.Write(compilation_unit);
David Srbeckyb851b492015-11-11 20:19:38 +0000877 }
David Srbecky3b9d57a2015-04-10 00:22:14 +0100878
David Srbeckyb851b492015-11-11 20:19:38 +0000879 void End() {
880 builder_->GetDebugInfo()->End();
Vladimir Marko10c13562015-11-25 14:33:36 +0000881 builder_->WritePatches(".debug_info.oat_patches",
882 ArrayRef<const uintptr_t>(debug_info_patches_));
David Srbecky04b05262015-11-09 18:05:48 +0000883 builder_->WriteSection(".debug_abbrev", &debug_abbrev_.Data());
884 builder_->WriteSection(".debug_str", &debug_str_.Data());
David Srbecky0fd295f2015-11-16 16:39:10 +0000885 builder_->WriteSection(".debug_loc", &debug_loc_);
David Srbecky996ed0b2015-11-27 10:27:11 +0000886 builder_->WriteSection(".debug_ranges", &debug_ranges_);
David Srbeckyb851b492015-11-11 20:19:38 +0000887 }
888
889 private:
David Srbecky04b05262015-11-09 18:05:48 +0000890 size_t WriteString(const char* str) {
891 return debug_str_.Insert(reinterpret_cast<const uint8_t*>(str), strlen(str) + 1);
892 }
893
David Srbeckyb851b492015-11-11 20:19:38 +0000894 ElfBuilder<ElfTypes>* builder_;
895 std::vector<uintptr_t> debug_info_patches_;
David Srbecky04b05262015-11-09 18:05:48 +0000896 DedupVector debug_abbrev_;
897 DedupVector debug_str_;
David Srbecky0fd295f2015-11-16 16:39:10 +0000898 std::vector<uint8_t> debug_loc_;
David Srbecky996ed0b2015-11-27 10:27:11 +0000899 std::vector<uint8_t> debug_ranges_;
David Srbecky04b05262015-11-09 18:05:48 +0000900
901 std::unordered_set<const char*> defined_dex_classes_; // For CHECKs only.
David Srbeckyb851b492015-11-11 20:19:38 +0000902};
903
904template<typename ElfTypes>
905class DebugLineWriter {
906 typedef typename ElfTypes::Addr Elf_Addr;
907
908 public:
909 explicit DebugLineWriter(ElfBuilder<ElfTypes>* builder) : builder_(builder) {
910 }
911
912 void Start() {
913 builder_->GetDebugLine()->Start();
914 }
915
916 // Write line table for given set of methods.
917 // Returns the number of bytes written.
David Srbecky04b05262015-11-09 18:05:48 +0000918 size_t WriteCompilationUnit(CompilationUnit& compilation_unit) {
David Srbeckyb851b492015-11-11 20:19:38 +0000919 const bool is64bit = Is64BitInstructionSet(builder_->GetIsa());
920 const Elf_Addr text_address = builder_->GetText()->GetAddress();
David Srbecky04b05262015-11-09 18:05:48 +0000921
922 compilation_unit.debug_line_offset_ = builder_->GetDebugLine()->GetSize();
David Srbeckyb851b492015-11-11 20:19:38 +0000923
David Srbecky799b8c42015-04-14 01:57:43 +0100924 std::vector<FileEntry> files;
925 std::unordered_map<std::string, size_t> files_map;
926 std::vector<std::string> directories;
927 std::unordered_map<std::string, size_t> directories_map;
928 int code_factor_bits_ = 0;
929 int dwarf_isa = -1;
David Srbeckyb851b492015-11-11 20:19:38 +0000930 switch (builder_->GetIsa()) {
David Srbecky799b8c42015-04-14 01:57:43 +0100931 case kArm: // arm actually means thumb2.
932 case kThumb2:
933 code_factor_bits_ = 1; // 16-bit instuctions
934 dwarf_isa = 1; // DW_ISA_ARM_thumb.
935 break;
936 case kArm64:
937 case kMips:
938 case kMips64:
939 code_factor_bits_ = 2; // 32-bit instructions
940 break;
941 case kNone:
942 case kX86:
943 case kX86_64:
944 break;
945 }
David Srbecky297ed222015-04-15 01:18:12 +0100946 DebugLineOpCodeWriter<> opcodes(is64bit, code_factor_bits_);
Vladimir Marko10c13562015-11-25 14:33:36 +0000947 for (const MethodDebugInfo* mi : compilation_unit.methods_) {
David Srbecky04b05262015-11-09 18:05:48 +0000948 // Ignore function if we have already generated line table for the same address.
949 // It would confuse the debugger and the DWARF specification forbids it.
950 if (mi->deduped_) {
951 continue;
952 }
953
David Srbeckyf71b3ad2015-12-08 15:05:08 +0000954 ArrayRef<const SrcMapElem> src_mapping_table;
955 std::vector<SrcMapElem> src_mapping_table_from_stack_maps;
956 if (IsFromOptimizingCompiler(mi)) {
957 // Use stack maps to create mapping table from pc to dex.
958 const CodeInfo code_info(mi->compiled_method_->GetVmapTable().data());
959 const StackMapEncoding encoding = code_info.ExtractEncoding();
960 for (uint32_t s = 0; s < code_info.GetNumberOfStackMaps(); s++) {
961 StackMap stack_map = code_info.GetStackMapAt(s, encoding);
962 DCHECK(stack_map.IsValid());
963 const uint32_t pc = stack_map.GetNativePcOffset(encoding);
964 const int32_t dex = stack_map.GetDexPc(encoding);
965 src_mapping_table_from_stack_maps.push_back({pc, dex});
966 }
967 std::sort(src_mapping_table_from_stack_maps.begin(),
968 src_mapping_table_from_stack_maps.end());
969 src_mapping_table = ArrayRef<const SrcMapElem>(src_mapping_table_from_stack_maps);
970 } else {
971 // Use the mapping table provided by the quick compiler.
972 src_mapping_table = mi->compiled_method_->GetSrcMappingTable();
973 }
974
975 if (src_mapping_table.empty()) {
976 continue;
977 }
978
979 // Create mapping table from dex to source line.
David Srbecky799b8c42015-04-14 01:57:43 +0100980 struct DebugInfoCallbacks {
981 static bool NewPosition(void* ctx, uint32_t address, uint32_t line) {
David Srbecky996ed0b2015-11-27 10:27:11 +0000982 auto* context = static_cast<DebugInfoCallbacks*>(ctx);
David Srbecky799b8c42015-04-14 01:57:43 +0100983 context->dex2line_.push_back({address, static_cast<int32_t>(line)});
984 return false;
David Srbecky3b9d57a2015-04-10 00:22:14 +0100985 }
David Srbecky799b8c42015-04-14 01:57:43 +0100986 DefaultSrcMap dex2line_;
987 } debug_info_callbacks;
988
David Srbecky6d8c8f02015-10-26 10:57:09 +0000989 Elf_Addr method_address = text_address + mi->low_pc_;
990
David Srbecky799b8c42015-04-14 01:57:43 +0100991 const DexFile* dex = mi->dex_file_;
992 if (mi->code_item_ != nullptr) {
993 dex->DecodeDebugInfo(mi->code_item_,
994 (mi->access_flags_ & kAccStatic) != 0,
995 mi->dex_method_index_,
996 DebugInfoCallbacks::NewPosition,
997 nullptr,
998 &debug_info_callbacks);
David Srbecky3b9d57a2015-04-10 00:22:14 +0100999 }
1000
David Srbeckyf71b3ad2015-12-08 15:05:08 +00001001 if (debug_info_callbacks.dex2line_.empty()) {
1002 continue;
1003 }
1004
1005 opcodes.SetAddress(method_address);
1006 if (dwarf_isa != -1) {
1007 opcodes.SetISA(dwarf_isa);
1008 }
1009
David Srbecky799b8c42015-04-14 01:57:43 +01001010 // Get and deduplicate directory and filename.
1011 int file_index = 0; // 0 - primary source file of the compilation.
1012 auto& dex_class_def = dex->GetClassDef(mi->class_def_index_);
1013 const char* source_file = dex->GetSourceFile(dex_class_def);
1014 if (source_file != nullptr) {
1015 std::string file_name(source_file);
1016 size_t file_name_slash = file_name.find_last_of('/');
1017 std::string class_name(dex->GetClassDescriptor(dex_class_def));
1018 size_t class_name_slash = class_name.find_last_of('/');
1019 std::string full_path(file_name);
David Srbecky3b9d57a2015-04-10 00:22:14 +01001020
David Srbecky799b8c42015-04-14 01:57:43 +01001021 // Guess directory from package name.
1022 int directory_index = 0; // 0 - current directory of the compilation.
1023 if (file_name_slash == std::string::npos && // Just filename.
1024 class_name.front() == 'L' && // Type descriptor for a class.
1025 class_name_slash != std::string::npos) { // Has package name.
1026 std::string package_name = class_name.substr(1, class_name_slash - 1);
1027 auto it = directories_map.find(package_name);
1028 if (it == directories_map.end()) {
1029 directory_index = 1 + directories.size();
1030 directories_map.emplace(package_name, directory_index);
1031 directories.push_back(package_name);
1032 } else {
1033 directory_index = it->second;
1034 }
1035 full_path = package_name + "/" + file_name;
1036 }
1037
1038 // Add file entry.
1039 auto it2 = files_map.find(full_path);
1040 if (it2 == files_map.end()) {
1041 file_index = 1 + files.size();
1042 files_map.emplace(full_path, file_index);
1043 files.push_back(FileEntry {
1044 file_name,
1045 directory_index,
1046 0, // Modification time - NA.
1047 0, // File size - NA.
1048 });
1049 } else {
1050 file_index = it2->second;
1051 }
1052 }
1053 opcodes.SetFile(file_index);
1054
1055 // Generate mapping opcodes from PC to Java lines.
1056 const DefaultSrcMap& dex2line_map = debug_info_callbacks.dex2line_;
David Srbecky799b8c42015-04-14 01:57:43 +01001057 if (file_index != 0 && !dex2line_map.empty()) {
1058 bool first = true;
David Srbeckyf71b3ad2015-12-08 15:05:08 +00001059 for (SrcMapElem pc2dex : src_mapping_table) {
David Srbecky799b8c42015-04-14 01:57:43 +01001060 uint32_t pc = pc2dex.from_;
1061 int dex_pc = pc2dex.to_;
1062 auto dex2line = dex2line_map.Find(static_cast<uint32_t>(dex_pc));
1063 if (dex2line.first) {
1064 int line = dex2line.second;
1065 if (first) {
1066 first = false;
1067 if (pc > 0) {
1068 // Assume that any preceding code is prologue.
1069 int first_line = dex2line_map.front().to_;
1070 // Prologue is not a sensible place for a breakpoint.
1071 opcodes.NegateStmt();
David Srbecky6d8c8f02015-10-26 10:57:09 +00001072 opcodes.AddRow(method_address, first_line);
David Srbecky799b8c42015-04-14 01:57:43 +01001073 opcodes.NegateStmt();
1074 opcodes.SetPrologueEnd();
1075 }
David Srbecky6d8c8f02015-10-26 10:57:09 +00001076 opcodes.AddRow(method_address + pc, line);
David Srbecky799b8c42015-04-14 01:57:43 +01001077 } else if (line != opcodes.CurrentLine()) {
David Srbecky6d8c8f02015-10-26 10:57:09 +00001078 opcodes.AddRow(method_address + pc, line);
David Srbecky3b9d57a2015-04-10 00:22:14 +01001079 }
David Srbecky3b9d57a2015-04-10 00:22:14 +01001080 }
1081 }
David Srbecky799b8c42015-04-14 01:57:43 +01001082 } else {
1083 // line 0 - instruction cannot be attributed to any source line.
David Srbecky6d8c8f02015-10-26 10:57:09 +00001084 opcodes.AddRow(method_address, 0);
David Srbecky3b9d57a2015-04-10 00:22:14 +01001085 }
David Srbeckyf71b3ad2015-12-08 15:05:08 +00001086
1087 opcodes.AdvancePC(text_address + mi->high_pc_);
1088 opcodes.EndSequence();
David Srbecky3b9d57a2015-04-10 00:22:14 +01001089 }
David Srbeckyb851b492015-11-11 20:19:38 +00001090 std::vector<uint8_t> buffer;
1091 buffer.reserve(opcodes.data()->size() + KB);
1092 size_t offset = builder_->GetDebugLine()->GetSize();
1093 WriteDebugLineTable(directories, files, opcodes, offset, &buffer, &debug_line_patches);
1094 builder_->GetDebugLine()->WriteFully(buffer.data(), buffer.size());
1095 return buffer.size();
David Srbecky3b9d57a2015-04-10 00:22:14 +01001096 }
David Srbeckyb851b492015-11-11 20:19:38 +00001097
1098 void End() {
1099 builder_->GetDebugLine()->End();
Vladimir Marko10c13562015-11-25 14:33:36 +00001100 builder_->WritePatches(".debug_line.oat_patches",
1101 ArrayRef<const uintptr_t>(debug_line_patches));
David Srbeckyb851b492015-11-11 20:19:38 +00001102 }
1103
1104 private:
1105 ElfBuilder<ElfTypes>* builder_;
1106 std::vector<uintptr_t> debug_line_patches;
1107};
1108
1109template<typename ElfTypes>
1110void WriteDebugSections(ElfBuilder<ElfTypes>* builder,
Vladimir Marko10c13562015-11-25 14:33:36 +00001111 const ArrayRef<const MethodDebugInfo>& method_infos) {
David Srbeckyb851b492015-11-11 20:19:38 +00001112 // Group the methods into compilation units based on source file.
1113 std::vector<CompilationUnit> compilation_units;
1114 const char* last_source_file = nullptr;
Vladimir Marko10c13562015-11-25 14:33:36 +00001115 for (const MethodDebugInfo& mi : method_infos) {
David Srbecky04b05262015-11-09 18:05:48 +00001116 auto& dex_class_def = mi.dex_file_->GetClassDef(mi.class_def_index_);
1117 const char* source_file = mi.dex_file_->GetSourceFile(dex_class_def);
1118 if (compilation_units.empty() || source_file != last_source_file) {
1119 compilation_units.push_back(CompilationUnit());
David Srbeckyb851b492015-11-11 20:19:38 +00001120 }
David Srbecky04b05262015-11-09 18:05:48 +00001121 CompilationUnit& cu = compilation_units.back();
1122 cu.methods_.push_back(&mi);
1123 cu.low_pc_ = std::min(cu.low_pc_, mi.low_pc_);
1124 cu.high_pc_ = std::max(cu.high_pc_, mi.high_pc_);
1125 last_source_file = source_file;
David Srbeckyb851b492015-11-11 20:19:38 +00001126 }
1127
1128 // Write .debug_line section.
1129 {
1130 DebugLineWriter<ElfTypes> line_writer(builder);
1131 line_writer.Start();
David Srbeckyb851b492015-11-11 20:19:38 +00001132 for (auto& compilation_unit : compilation_units) {
David Srbecky04b05262015-11-09 18:05:48 +00001133 line_writer.WriteCompilationUnit(compilation_unit);
David Srbeckyb851b492015-11-11 20:19:38 +00001134 }
1135 line_writer.End();
1136 }
1137
1138 // Write .debug_info section.
1139 {
1140 DebugInfoWriter<ElfTypes> info_writer(builder);
1141 info_writer.Start();
1142 for (const auto& compilation_unit : compilation_units) {
David Srbecky04b05262015-11-09 18:05:48 +00001143 info_writer.WriteCompilationUnit(compilation_unit);
David Srbeckyb851b492015-11-11 20:19:38 +00001144 }
1145 info_writer.End();
1146 }
David Srbecky3b9d57a2015-04-10 00:22:14 +01001147}
1148
David Srbecky6d8c8f02015-10-26 10:57:09 +00001149// Explicit instantiations
1150template void WriteCFISection<ElfTypes32>(
1151 ElfBuilder<ElfTypes32>* builder,
Vladimir Marko10c13562015-11-25 14:33:36 +00001152 const ArrayRef<const MethodDebugInfo>& method_infos,
David Srbecky6d8c8f02015-10-26 10:57:09 +00001153 CFIFormat format);
1154template void WriteCFISection<ElfTypes64>(
1155 ElfBuilder<ElfTypes64>* builder,
Vladimir Marko10c13562015-11-25 14:33:36 +00001156 const ArrayRef<const MethodDebugInfo>& method_infos,
David Srbecky6d8c8f02015-10-26 10:57:09 +00001157 CFIFormat format);
1158template void WriteDebugSections<ElfTypes32>(
1159 ElfBuilder<ElfTypes32>* builder,
Vladimir Marko10c13562015-11-25 14:33:36 +00001160 const ArrayRef<const MethodDebugInfo>& method_infos);
David Srbecky6d8c8f02015-10-26 10:57:09 +00001161template void WriteDebugSections<ElfTypes64>(
1162 ElfBuilder<ElfTypes64>* builder,
Vladimir Marko10c13562015-11-25 14:33:36 +00001163 const ArrayRef<const MethodDebugInfo>& method_infos);
David Srbecky6d8c8f02015-10-26 10:57:09 +00001164
David Srbecky3b9d57a2015-04-10 00:22:14 +01001165} // namespace dwarf
1166} // namespace art