ed0eeaebca
Since CodeSourceMaps are not serialized when non-symbolic stack traces are enabled, use a different CSM encoding in this mode. Here, we write out the line number as before and then the column as a separately written integer. Cq-Include-Trybots: luci.dart.try:vm-kernel-precomp-nnbd-linux-release-x64-try,vm-kernel-precomp-linux-release-x64-try,vm-kernel-precomp-linux-product-x64-try,vm-kernel-precomp-linux-debug-x64-try,vm-kernel-precomp-linux-release-simarm_x64-try Change-Id: If9aec2f52551d04eb45626744957e625bcc17d3d Bug: https://github.com/dart-lang/sdk/issues/42397 Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/151824 Commit-Queue: Tess Strickland <sstrickl@google.com> Reviewed-by: Daco Harkes <dacoharkes@google.com>
794 lines
28 KiB
C++
794 lines
28 KiB
C++
// Copyright (c) 2017, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#include "vm/dwarf.h"
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#include "vm/code_descriptors.h"
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#include "vm/elf.h"
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#include "vm/image_snapshot.h"
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#include "vm/object_store.h"
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namespace dart {
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#if defined(DART_PRECOMPILER)
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class DwarfPosition {
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public:
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// The DWARF standard uses 0 to denote missing line or column information.
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DwarfPosition(intptr_t line, intptr_t column)
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: line_(line > 0 ? line : 0), column_(column > 0 ? column : 0) {
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// Should only have no line information if also no column information.
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ASSERT(line_ > 0 || column_ == 0);
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}
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explicit DwarfPosition(intptr_t line) : DwarfPosition(line, 0) {}
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constexpr DwarfPosition() : line_(0), column_(0) {}
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intptr_t line() const { return line_; }
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intptr_t column() const { return column_; }
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private:
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intptr_t line_;
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intptr_t column_;
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};
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static constexpr auto kNoDwarfPositionInfo = DwarfPosition();
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class InliningNode : public ZoneAllocated {
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public:
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InliningNode(const Function& function,
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const DwarfPosition& position,
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int32_t start_pc_offset)
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: function(function),
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position(position),
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start_pc_offset(start_pc_offset),
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end_pc_offset(-1),
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children_head(NULL),
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children_tail(NULL),
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children_next(NULL) {
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RELEASE_ASSERT(!function.IsNull());
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RELEASE_ASSERT(function.IsNotTemporaryScopedHandle());
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}
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void AppendChild(InliningNode* child) {
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if (children_tail == NULL) {
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children_head = children_tail = child;
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} else {
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children_tail->children_next = child;
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children_tail = child;
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}
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}
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const Function& function;
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DwarfPosition position;
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int32_t start_pc_offset;
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int32_t end_pc_offset;
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InliningNode* children_head;
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InliningNode* children_tail;
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InliningNode* children_next;
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};
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template <typename T>
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Trie<T>* Trie<T>::AddString(Zone* zone,
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Trie<T>* trie,
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const char* key,
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const T* value) {
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ASSERT(key != nullptr);
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if (trie == nullptr) {
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trie = new (zone) Trie<T>();
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}
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if (*key == '\0') {
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ASSERT(trie->value_ == nullptr);
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trie->value_ = value;
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} else {
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auto const index = ChildIndex(*key);
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ASSERT(index >= 0 && index < kNumValidChars);
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trie->children_[index] =
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AddString(zone, trie->children_[index], key + 1, value);
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}
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return trie;
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}
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template <typename T>
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const T* Trie<T>::Lookup(const Trie<T>* trie, const char* key, intptr_t* end) {
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intptr_t i = 0;
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for (; key[i] != '\0'; i++) {
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auto const index = ChildIndex(key[i]);
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ASSERT(index < kNumValidChars);
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if (index < 0) {
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if (end == nullptr) return nullptr;
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break;
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}
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// Still find the longest valid trie prefix when no stored value.
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if (trie == nullptr) continue;
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trie = trie->children_[index];
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}
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if (end != nullptr) {
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*end = i;
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}
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if (trie == nullptr) return nullptr;
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return trie->value_;
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}
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Dwarf::Dwarf(Zone* zone)
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: zone_(zone),
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reverse_obfuscation_trie_(CreateReverseObfuscationTrie(zone)),
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codes_(zone, 1024),
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code_to_address_(zone),
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functions_(zone, 1024),
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function_to_index_(zone),
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scripts_(zone, 1024),
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script_to_index_(zone),
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temp_(0) {}
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SegmentRelativeOffset Dwarf::CodeAddress(const Code& code) const {
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const auto& pair = code_to_address_.LookupValue(&code);
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// This is only used by Elf::Finalize(), and the image writers always give a
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// text offset when calling AddCode() for an Elf object's Dwarf object. Thus,
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// we should have known code offsets for each code object in the map.
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ASSERT(pair.offset != SegmentRelativeOffset::kUnknownOffset);
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return pair;
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}
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intptr_t Dwarf::AddCode(const Code& orig_code,
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const SegmentRelativeOffset& offset) {
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ASSERT(!orig_code.IsNull());
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// We should never get the no-argument constructed version here.
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ASSERT(offset.offset != SegmentRelativeOffset::kInvalidOffset);
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// Generate an appropriately zoned ZoneHandle for storing.
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const auto& code = Code::ZoneHandle(zone_, orig_code.raw());
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// For now, we assume one of two flows for a given code object:
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// ELF: Calls to AddCode(code, vm, offset), vm and offset are the same over
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// all calls.
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// Assembly: An initial call to AddCode(code, vm) (assembly), possibly
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// followed by a later call to AddCode(code, vm, offset)
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// (separate debugging info ELF)
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if (offset.offset == SegmentRelativeOffset::kUnknownOffset) {
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// A call without an address should always come before any calls with
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// addresses.
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ASSERT(code_to_address_.Lookup(&code) == nullptr);
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// Insert a marker so on later calls, we know we've already added to codes_.
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code_to_address_.Insert(CodeAddressPair(&code, offset));
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} else {
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const auto& old_value = code_to_address_.LookupValue(&code);
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// ELF does not need to know the index. If we've already added this Code
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// object to codes_ in a previous call, don't bother scanning codes_ to find
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// the corresponding index, just return -1 instead.
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switch (old_value.offset) {
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case SegmentRelativeOffset::kInvalidOffset:
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code_to_address_.Insert(CodeAddressPair(&code, offset));
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break; // Still need to add to codes_.
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case SegmentRelativeOffset::kUnknownOffset:
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// Code objects should only be associated with either the VM or isolate.
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ASSERT_EQUAL(old_value.vm, offset.vm);
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code_to_address_.Update(CodeAddressPair(&code, offset));
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return -1;
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default:
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// The information for the code object shouldn't have changed since the
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// previous update.
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ASSERT(old_value == offset);
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return -1;
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}
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}
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const intptr_t index = codes_.length();
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codes_.Add(&code);
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if (code.IsFunctionCode()) {
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const Function& function = Function::Handle(zone_, code.function());
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AddFunction(function);
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}
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const Array& inline_functions =
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Array::Handle(zone_, code.inlined_id_to_function());
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if (!inline_functions.IsNull()) {
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Function& function = Function::Handle(zone_);
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for (intptr_t i = 0; i < inline_functions.Length(); i++) {
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function ^= inline_functions.At(i);
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AddFunction(function);
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}
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}
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return index;
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}
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intptr_t Dwarf::AddFunction(const Function& function) {
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RELEASE_ASSERT(!function.IsNull());
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FunctionIndexPair* pair = function_to_index_.Lookup(&function);
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if (pair != NULL) {
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return pair->index_;
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}
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intptr_t index = functions_.length();
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const Function& zone_func = Function::ZoneHandle(zone_, function.raw());
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function_to_index_.Insert(FunctionIndexPair(&zone_func, index));
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functions_.Add(&zone_func);
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const Script& script = Script::Handle(zone_, function.script());
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AddScript(script);
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return index;
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}
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intptr_t Dwarf::AddScript(const Script& script) {
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RELEASE_ASSERT(!script.IsNull());
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ScriptIndexPair* pair = script_to_index_.Lookup(&script);
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if (pair != NULL) {
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return pair->index_;
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}
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// DWARF file numbers start from 1.
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intptr_t index = scripts_.length() + 1;
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const Script& zone_script = Script::ZoneHandle(zone_, script.raw());
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script_to_index_.Insert(ScriptIndexPair(&zone_script, index));
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scripts_.Add(&zone_script);
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return index;
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}
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intptr_t Dwarf::LookupFunction(const Function& function) {
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RELEASE_ASSERT(!function.IsNull());
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FunctionIndexPair* pair = function_to_index_.Lookup(&function);
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if (pair == NULL) {
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FATAL1("Function detected too late during DWARF generation: %s",
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function.ToCString());
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}
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return pair->index_;
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}
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intptr_t Dwarf::LookupScript(const Script& script) {
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RELEASE_ASSERT(!script.IsNull());
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ScriptIndexPair* pair = script_to_index_.Lookup(&script);
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if (pair == NULL) {
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FATAL1("Script detected too late during DWARF generation: %s",
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script.ToCString());
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}
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return pair->index_;
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}
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void Dwarf::WriteAbbreviations(DwarfWriteStream* stream) {
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// Dwarf data mostly takes the form of a tree, whose nodes are called
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// DIEs. Each DIE begins with an abbreviation code, and the abbreviation
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// describes the attributes of that DIE and their representation.
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stream->uleb128(kCompilationUnit); // Abbrev code.
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stream->uleb128(DW_TAG_compile_unit); // Type.
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stream->u1(DW_CHILDREN_yes);
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stream->uleb128(DW_AT_name); // Start of attributes.
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stream->uleb128(DW_FORM_string);
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stream->uleb128(DW_AT_producer);
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stream->uleb128(DW_FORM_string);
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stream->uleb128(DW_AT_comp_dir);
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stream->uleb128(DW_FORM_string);
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stream->uleb128(DW_AT_low_pc);
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stream->uleb128(DW_FORM_addr);
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stream->uleb128(DW_AT_high_pc);
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stream->uleb128(DW_FORM_addr);
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stream->uleb128(DW_AT_stmt_list);
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stream->uleb128(DW_FORM_sec_offset);
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stream->uleb128(0);
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stream->uleb128(0); // End of attributes.
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stream->uleb128(kAbstractFunction); // Abbrev code.
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stream->uleb128(DW_TAG_subprogram); // Type.
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stream->u1(DW_CHILDREN_yes);
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stream->uleb128(DW_AT_name); // Start of attributes.
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stream->uleb128(DW_FORM_string);
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stream->uleb128(DW_AT_decl_file);
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stream->uleb128(DW_FORM_udata);
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stream->uleb128(DW_AT_inline);
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stream->uleb128(DW_FORM_udata);
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stream->uleb128(0);
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stream->uleb128(0); // End of attributes.
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stream->uleb128(kConcreteFunction); // Abbrev code.
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stream->uleb128(DW_TAG_subprogram); // Type.
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stream->u1(DW_CHILDREN_yes);
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stream->uleb128(DW_AT_abstract_origin); // Start of attributes.
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stream->uleb128(DW_FORM_ref4);
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stream->uleb128(DW_AT_low_pc);
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stream->uleb128(DW_FORM_addr);
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stream->uleb128(DW_AT_high_pc);
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stream->uleb128(DW_FORM_addr);
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stream->uleb128(0);
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stream->uleb128(0); // End of attributes.
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stream->uleb128(kInlinedFunction); // Abbrev code.
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stream->uleb128(DW_TAG_inlined_subroutine); // Type.
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stream->u1(DW_CHILDREN_yes);
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stream->uleb128(DW_AT_abstract_origin); // Start of attributes.
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stream->uleb128(DW_FORM_ref4);
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stream->uleb128(DW_AT_low_pc);
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stream->uleb128(DW_FORM_addr);
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stream->uleb128(DW_AT_high_pc);
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stream->uleb128(DW_FORM_addr);
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stream->uleb128(DW_AT_call_file);
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stream->uleb128(DW_FORM_udata);
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stream->uleb128(DW_AT_call_line);
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stream->uleb128(DW_FORM_udata);
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stream->uleb128(DW_AT_call_column);
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stream->uleb128(DW_FORM_udata);
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stream->uleb128(0);
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stream->uleb128(0); // End of attributes.
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stream->uleb128(0); // End of abbreviations.
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}
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void Dwarf::WriteDebugInfo(DwarfWriteStream* stream) {
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SnapshotTextObjectNamer namer(zone_);
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// 7.5.1.1 Compilation Unit Header
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// Unit length.
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auto const cu_prefix = "cu";
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intptr_t cu_start;
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intptr_t cu_size_fixup = stream->ReserveSize(cu_prefix, &cu_start);
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stream->u2(2); // DWARF version 2
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stream->u4(0); // debug_abbrev_offset
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stream->u1(compiler::target::kWordSize); // address_size
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// Compilation Unit DIE. We describe the entire Dart program as a single
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// compilation unit. Note we write attributes in the same order we declared
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// them in our abbreviation above in WriteAbbreviations.
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stream->uleb128(kCompilationUnit);
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const Library& root_library = Library::Handle(
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zone_, Isolate::Current()->object_store()->root_library());
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const String& root_uri = String::Handle(zone_, root_library.url());
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stream->string(root_uri.ToCString()); // DW_AT_name
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stream->string("Dart VM"); // DW_AT_producer
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stream->string(""); // DW_AT_comp_dir
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// DW_AT_low_pc
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// The lowest instruction address in this object file that is part of our
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// compilation unit. Dwarf consumers use this to quickly decide which
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// compilation unit DIE to consult for a given pc.
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stream->OffsetFromSymbol(kIsolateSnapshotInstructionsAsmSymbol, 0);
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// DW_AT_high_pc
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// The highest instruction address in this object file that is part of our
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// compilation unit. Dwarf consumers use this to quickly decide which
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// compilation unit DIE to consult for a given pc.
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intptr_t last_code_index = codes_.length() - 1;
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const Code& last_code = *(codes_[last_code_index]);
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auto const last_code_name = namer.SnapshotNameFor(last_code_index, last_code);
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stream->OffsetFromSymbol(last_code_name, last_code.Size());
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// DW_AT_stmt_list (offset into .debug_line)
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// Indicates which line number program is associated with this compilation
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// unit. We only emit a single line number program.
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stream->u4(0);
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WriteAbstractFunctions(stream);
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WriteConcreteFunctions(stream);
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stream->uleb128(0); // End of children.
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stream->uleb128(0); // End of entries.
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stream->SetSize(cu_size_fixup, cu_prefix, cu_start);
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}
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void Dwarf::WriteAbstractFunctions(DwarfWriteStream* stream) {
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Script& script = Script::Handle(zone_);
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String& name = String::Handle(zone_);
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stream->InitializeAbstractOrigins(functions_.length());
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// By the point we're creating DWARF information, scripts have already lost
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// their token stream and we can't look up their line number or column
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// information, hence the lack of DW_AT_decl_line and DW_AT_decl_column.
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for (intptr_t i = 0; i < functions_.length(); i++) {
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const Function& function = *(functions_[i]);
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name = function.QualifiedUserVisibleName();
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script = function.script();
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const intptr_t file = LookupScript(script);
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auto const name_cstr = Deobfuscate(name.ToCString());
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stream->RegisterAbstractOrigin(i);
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stream->uleb128(kAbstractFunction);
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stream->string(name_cstr); // DW_AT_name
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stream->uleb128(file); // DW_AT_decl_file
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stream->uleb128(DW_INL_inlined); // DW_AT_inline
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stream->uleb128(0); // End of children.
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}
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}
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void Dwarf::WriteConcreteFunctions(DwarfWriteStream* stream) {
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Function& function = Function::Handle(zone_);
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Script& script = Script::Handle(zone_);
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SnapshotTextObjectNamer namer(zone_);
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for (intptr_t i = 0; i < codes_.length(); i++) {
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const Code& code = *(codes_[i]);
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RELEASE_ASSERT(!code.IsNull());
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if (!code.IsFunctionCode()) {
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continue;
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}
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function = code.function();
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intptr_t function_index = LookupFunction(function);
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script = function.script();
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const char* asm_name = namer.SnapshotNameFor(i, code);
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stream->uleb128(kConcreteFunction);
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// DW_AT_abstract_origin
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// References a node written above in WriteAbstractFunctions.
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stream->AbstractOrigin(function_index);
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// DW_AT_low_pc
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stream->OffsetFromSymbol(asm_name, 0);
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// DW_AT_high_pc
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stream->OffsetFromSymbol(asm_name, code.Size());
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InliningNode* node = ExpandInliningTree(code);
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if (node != NULL) {
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for (InliningNode* child = node->children_head; child != NULL;
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child = child->children_next) {
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WriteInliningNode(stream, child, asm_name, script, &namer);
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}
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}
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stream->uleb128(0); // End of children.
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}
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}
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static DwarfPosition ReadPosition(ReadStream* stream) {
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const intptr_t line = stream->Read<int32_t>();
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if (!FLAG_dwarf_stack_traces_mode) {
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return DwarfPosition(line);
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}
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const intptr_t column = stream->Read<int32_t>();
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return DwarfPosition(line, column);
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}
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// Our state machine encodes position metadata such that we don't know the
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// end pc for an inlined function until it is popped, but DWARF DIEs encode
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// it where the function is pushed. We expand the state transitions into
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// an in-memory tree to do the conversion.
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InliningNode* Dwarf::ExpandInliningTree(const Code& code) {
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const CodeSourceMap& map =
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CodeSourceMap::Handle(zone_, code.code_source_map());
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if (map.IsNull()) {
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return NULL;
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}
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const Array& functions = Array::Handle(zone_, code.inlined_id_to_function());
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const Function& root_function = Function::ZoneHandle(zone_, code.function());
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if (root_function.IsNull()) {
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FATAL1("Wherefore art thou functionless code, %s?\n", code.ToCString());
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}
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GrowableArray<InliningNode*> node_stack(zone_, 4);
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GrowableArray<DwarfPosition> token_positions(zone_, 4);
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NoSafepointScope no_safepoint;
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ReadStream stream(map.Data(), map.Length());
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int32_t current_pc_offset = 0;
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token_positions.Add(kNoDwarfPositionInfo);
|
|
InliningNode* root_node =
|
|
new (zone_) InliningNode(root_function, token_positions.Last(), 0);
|
|
root_node->end_pc_offset = code.Size();
|
|
node_stack.Add(root_node);
|
|
|
|
while (stream.PendingBytes() > 0) {
|
|
uint8_t opcode = stream.Read<uint8_t>();
|
|
switch (opcode) {
|
|
case CodeSourceMapBuilder::kChangePosition: {
|
|
token_positions[token_positions.length() - 1] = ReadPosition(&stream);
|
|
break;
|
|
}
|
|
case CodeSourceMapBuilder::kAdvancePC: {
|
|
int32_t delta = stream.Read<int32_t>();
|
|
current_pc_offset += delta;
|
|
break;
|
|
}
|
|
case CodeSourceMapBuilder::kPushFunction: {
|
|
int32_t func = stream.Read<int32_t>();
|
|
const Function& child_func =
|
|
Function::ZoneHandle(zone_, Function::RawCast(functions.At(func)));
|
|
InliningNode* child_node = new (zone_)
|
|
InliningNode(child_func, token_positions.Last(), current_pc_offset);
|
|
node_stack.Last()->AppendChild(child_node);
|
|
node_stack.Add(child_node);
|
|
token_positions.Add(kNoDwarfPositionInfo);
|
|
break;
|
|
}
|
|
case CodeSourceMapBuilder::kPopFunction: {
|
|
// We never pop the root function.
|
|
ASSERT(node_stack.length() > 1);
|
|
ASSERT(token_positions.length() > 1);
|
|
node_stack.Last()->end_pc_offset = current_pc_offset;
|
|
node_stack.RemoveLast();
|
|
token_positions.RemoveLast();
|
|
break;
|
|
}
|
|
case CodeSourceMapBuilder::kNullCheck: {
|
|
stream.Read<int32_t>();
|
|
break;
|
|
}
|
|
default:
|
|
UNREACHABLE();
|
|
}
|
|
}
|
|
|
|
while (node_stack.length() > 1) {
|
|
node_stack.Last()->end_pc_offset = current_pc_offset;
|
|
node_stack.RemoveLast();
|
|
token_positions.RemoveLast();
|
|
}
|
|
ASSERT(node_stack[0] == root_node);
|
|
return root_node;
|
|
}
|
|
|
|
void Dwarf::WriteInliningNode(DwarfWriteStream* stream,
|
|
InliningNode* node,
|
|
const char* root_asm_name,
|
|
const Script& parent_script,
|
|
SnapshotTextObjectNamer* namer) {
|
|
intptr_t file = LookupScript(parent_script);
|
|
intptr_t function_index = LookupFunction(node->function);
|
|
const Script& script = Script::Handle(zone_, node->function.script());
|
|
|
|
stream->uleb128(kInlinedFunction);
|
|
// DW_AT_abstract_origin
|
|
// References a node written above in WriteAbstractFunctions.
|
|
stream->AbstractOrigin(function_index);
|
|
|
|
// DW_AT_low_pc
|
|
stream->OffsetFromSymbol(root_asm_name, node->start_pc_offset);
|
|
// DW_AT_high_pc
|
|
stream->OffsetFromSymbol(root_asm_name, node->end_pc_offset);
|
|
// DW_AT_call_file
|
|
stream->uleb128(file);
|
|
// DW_AT_call_line
|
|
stream->uleb128(node->position.line());
|
|
// DW_at_call_column
|
|
stream->uleb128(node->position.column());
|
|
|
|
for (InliningNode* child = node->children_head; child != NULL;
|
|
child = child->children_next) {
|
|
WriteInliningNode(stream, child, root_asm_name, script, namer);
|
|
}
|
|
|
|
stream->uleb128(0); // End of children.
|
|
}
|
|
|
|
void Dwarf::WriteLineNumberProgram(DwarfWriteStream* stream) {
|
|
// 6.2.4 The Line Number Program Header
|
|
|
|
// 1. unit_length. This encoding implies 32-bit DWARF.
|
|
auto const line_prefix = "line";
|
|
intptr_t line_start;
|
|
intptr_t line_size_fixup = stream->ReserveSize(line_prefix, &line_start);
|
|
|
|
stream->u2(2); // 2. DWARF version 2
|
|
|
|
// 3. header_length
|
|
auto const lineheader_prefix = "lineheader";
|
|
intptr_t lineheader_start;
|
|
intptr_t lineheader_size_fixup =
|
|
stream->ReserveSize(lineheader_prefix, &lineheader_start);
|
|
|
|
stream->u1(1); // 4. minimum_instruction_length
|
|
stream->u1(1); // 5. default_is_stmt (true for compatibility with dsymutil).
|
|
stream->u1(0); // 6. line_base
|
|
stream->u1(1); // 7. line_range
|
|
stream->u1(13); // 8. opcode_base (12 standard opcodes in Dwarf 2)
|
|
|
|
// 9. standard_opcode_lengths
|
|
stream->u1(0); // DW_LNS_copy, 0 operands
|
|
stream->u1(1); // DW_LNS_advance_pc, 1 operands
|
|
stream->u1(1); // DW_LNS_advance_list, 1 operands
|
|
stream->u1(1); // DW_LNS_set_file, 1 operands
|
|
stream->u1(1); // DW_LNS_set_column, 1 operands
|
|
stream->u1(0); // DW_LNS_negate_stmt, 0 operands
|
|
stream->u1(0); // DW_LNS_set_basic_block, 0 operands
|
|
stream->u1(0); // DW_LNS_const_add_pc, 0 operands
|
|
stream->u1(1); // DW_LNS_fixed_advance_pc, 1 operands
|
|
stream->u1(0); // DW_LNS_set_prolog_end, 0 operands
|
|
stream->u1(0); // DW_LNS_set_epligoue_begin, 0 operands
|
|
stream->u1(1); // DW_LNS_set_isa, 1 operands
|
|
|
|
// 10. include_directories (sequence of path names)
|
|
// We don't emit any because we use full paths below.
|
|
stream->u1(0);
|
|
|
|
// 11. file_names (sequence of file entries)
|
|
String& uri = String::Handle(zone_);
|
|
for (intptr_t i = 0; i < scripts_.length(); i++) {
|
|
const Script& script = *(scripts_[i]);
|
|
uri = script.url();
|
|
auto const uri_cstr = Deobfuscate(uri.ToCString());
|
|
RELEASE_ASSERT(strlen(uri_cstr) != 0);
|
|
|
|
stream->string(uri_cstr); // NOLINT
|
|
stream->uleb128(0); // Include directory index.
|
|
stream->uleb128(0); // File modification time.
|
|
stream->uleb128(0); // File length.
|
|
}
|
|
stream->u1(0); // End of file names.
|
|
stream->SetSize(lineheader_size_fixup, lineheader_prefix, lineheader_start);
|
|
|
|
// 6.2.5 The Line Number Program
|
|
|
|
// The initial values for the line number program state machine registers
|
|
// according to the DWARF standard.
|
|
intptr_t previous_pc_offset = 0;
|
|
intptr_t previous_file = 1;
|
|
intptr_t previous_line = 1;
|
|
intptr_t previous_column = 0;
|
|
// Other info not stored in the state machine registers.
|
|
const char* previous_asm_name = nullptr;
|
|
|
|
Function& root_function = Function::Handle(zone_);
|
|
Script& script = Script::Handle(zone_);
|
|
CodeSourceMap& map = CodeSourceMap::Handle(zone_);
|
|
Array& functions = Array::Handle(zone_);
|
|
GrowableArray<const Function*> function_stack(zone_, 8);
|
|
GrowableArray<DwarfPosition> token_positions(zone_, 8);
|
|
SnapshotTextObjectNamer namer(zone_);
|
|
|
|
for (intptr_t i = 0; i < codes_.length(); i++) {
|
|
const Code& code = *(codes_[i]);
|
|
auto const asm_name = namer.SnapshotNameFor(i, code);
|
|
|
|
map = code.code_source_map();
|
|
if (map.IsNull()) {
|
|
continue;
|
|
}
|
|
root_function = code.function();
|
|
functions = code.inlined_id_to_function();
|
|
|
|
NoSafepointScope no_safepoint;
|
|
ReadStream code_map_stream(map.Data(), map.Length());
|
|
|
|
function_stack.Clear();
|
|
token_positions.Clear();
|
|
|
|
int32_t current_pc_offset = 0;
|
|
function_stack.Add(&root_function);
|
|
token_positions.Add(kNoDwarfPositionInfo);
|
|
|
|
while (code_map_stream.PendingBytes() > 0) {
|
|
uint8_t opcode = code_map_stream.Read<uint8_t>();
|
|
switch (opcode) {
|
|
case CodeSourceMapBuilder::kChangePosition: {
|
|
token_positions[token_positions.length() - 1] =
|
|
ReadPosition(&code_map_stream);
|
|
break;
|
|
}
|
|
case CodeSourceMapBuilder::kAdvancePC: {
|
|
int32_t delta = code_map_stream.Read<int32_t>();
|
|
current_pc_offset += delta;
|
|
|
|
const Function& function = *(function_stack.Last());
|
|
script = function.script();
|
|
intptr_t file = LookupScript(script);
|
|
|
|
// 1. Update LNP file.
|
|
if (file != previous_file) {
|
|
stream->u1(DW_LNS_set_file);
|
|
stream->uleb128(file);
|
|
previous_file = file;
|
|
}
|
|
|
|
// 2. Update LNP line.
|
|
const intptr_t line = token_positions.Last().line();
|
|
const intptr_t column = token_positions.Last().column();
|
|
if (line != previous_line) {
|
|
stream->u1(DW_LNS_advance_line);
|
|
stream->sleb128(line - previous_line);
|
|
previous_line = line;
|
|
}
|
|
if (column != previous_column) {
|
|
stream->u1(DW_LNS_set_column);
|
|
stream->uleb128(column);
|
|
previous_column = column;
|
|
}
|
|
|
|
// 3. Emit LNP row if the address register has been updated to a
|
|
// non-zero value (dartbug.com/41756).
|
|
if (previous_asm_name != nullptr) {
|
|
stream->u1(DW_LNS_copy);
|
|
}
|
|
|
|
// 4. Update LNP pc.
|
|
if (previous_asm_name == nullptr) {
|
|
auto const instr_size = 1 + compiler::target::kWordSize;
|
|
stream->u1(0); // This is an extended opcode
|
|
stream->u1(instr_size); // that is 5 or 9 bytes long
|
|
stream->u1(DW_LNE_set_address);
|
|
stream->OffsetFromSymbol(asm_name, current_pc_offset);
|
|
} else {
|
|
stream->u1(DW_LNS_advance_pc);
|
|
stream->DistanceBetweenSymbolOffsets(asm_name, current_pc_offset,
|
|
previous_asm_name,
|
|
previous_pc_offset);
|
|
}
|
|
previous_asm_name = asm_name;
|
|
previous_pc_offset = current_pc_offset;
|
|
break;
|
|
}
|
|
case CodeSourceMapBuilder::kPushFunction: {
|
|
int32_t func_index = code_map_stream.Read<int32_t>();
|
|
const Function& child_func = Function::Handle(
|
|
zone_, Function::RawCast(functions.At(func_index)));
|
|
function_stack.Add(&child_func);
|
|
token_positions.Add(kNoDwarfPositionInfo);
|
|
break;
|
|
}
|
|
case CodeSourceMapBuilder::kPopFunction: {
|
|
// We never pop the root function.
|
|
ASSERT(function_stack.length() > 1);
|
|
ASSERT(token_positions.length() > 1);
|
|
function_stack.RemoveLast();
|
|
token_positions.RemoveLast();
|
|
break;
|
|
}
|
|
case CodeSourceMapBuilder::kNullCheck: {
|
|
code_map_stream.Read<int32_t>();
|
|
break;
|
|
}
|
|
default:
|
|
UNREACHABLE();
|
|
}
|
|
}
|
|
}
|
|
|
|
// Advance pc to end of the compilation unit if not already there.
|
|
const intptr_t last_code_index = codes_.length() - 1;
|
|
const Code& last_code = *(codes_[last_code_index]);
|
|
const intptr_t last_pc_offset = last_code.Size();
|
|
const char* last_asm_name = namer.SnapshotNameFor(last_code_index, last_code);
|
|
|
|
stream->u1(DW_LNS_advance_pc);
|
|
ASSERT(previous_asm_name != nullptr);
|
|
stream->DistanceBetweenSymbolOffsets(last_asm_name, last_pc_offset,
|
|
previous_asm_name, previous_pc_offset);
|
|
|
|
// End of contiguous machine code.
|
|
stream->u1(0); // This is an extended opcode
|
|
stream->u1(1); // that is 1 byte long
|
|
stream->u1(DW_LNE_end_sequence);
|
|
stream->SetSize(line_size_fixup, line_prefix, line_start);
|
|
}
|
|
|
|
const char* Dwarf::Deobfuscate(const char* cstr) {
|
|
if (reverse_obfuscation_trie_ == nullptr) return cstr;
|
|
TextBuffer buffer(256);
|
|
// Used to avoid Zone-allocating strings if no deobfuscation was performed.
|
|
bool changed = false;
|
|
intptr_t i = 0;
|
|
while (cstr[i] != '\0') {
|
|
intptr_t offset;
|
|
auto const value = reverse_obfuscation_trie_->Lookup(cstr + i, &offset);
|
|
if (offset == 0) {
|
|
// The first character was an invalid key element (that isn't the null
|
|
// terminator due to the while condition), copy it and skip to the next.
|
|
buffer.AddChar(cstr[i++]);
|
|
} else if (value != nullptr) {
|
|
changed = true;
|
|
buffer.AddString(value);
|
|
} else {
|
|
buffer.AddRaw(reinterpret_cast<const uint8_t*>(cstr + i), offset);
|
|
}
|
|
i += offset;
|
|
}
|
|
if (!changed) return cstr;
|
|
return OS::SCreate(zone_, "%s", buffer.buf());
|
|
}
|
|
|
|
Trie<const char>* Dwarf::CreateReverseObfuscationTrie(Zone* zone) {
|
|
auto const I = Thread::Current()->isolate();
|
|
auto const map_array = I->obfuscation_map();
|
|
if (map_array == nullptr) return nullptr;
|
|
|
|
Trie<const char>* trie = nullptr;
|
|
for (intptr_t i = 0; map_array[i] != nullptr; i += 2) {
|
|
auto const key = map_array[i];
|
|
auto const value = map_array[i + 1];
|
|
ASSERT(value != nullptr);
|
|
// Don't include identity mappings.
|
|
if (strcmp(key, value) == 0) continue;
|
|
// Otherwise, any value in the obfuscation map should be a valid key.
|
|
ASSERT(Trie<const char>::IsValidKey(value));
|
|
trie = Trie<const char>::AddString(zone, trie, value, key);
|
|
}
|
|
return trie;
|
|
}
|
|
|
|
#endif // DART_PRECOMPILER
|
|
|
|
} // namespace dart
|