774 lines
27 KiB
C++
774 lines
27 KiB
C++
//===-- DWARFASTParserGo.cpp ---------------------------------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include "DWARFASTParserGo.h"
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#include "DWARFASTParserGo.h"
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#include "DWARFCompileUnit.h"
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#include "DWARFDIE.h"
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#include "DWARFDIECollection.h"
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#include "DWARFDebugInfo.h"
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#include "DWARFDeclContext.h"
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#include "DWARFDefines.h"
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#include "SymbolFileDWARF.h"
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#include "SymbolFileDWARFDebugMap.h"
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#include "UniqueDWARFASTType.h"
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#include "clang/Basic/Specifiers.h"
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#include "lldb/Core/Module.h"
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#include "lldb/Core/Value.h"
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#include "lldb/Symbol/CompileUnit.h"
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#include "lldb/Symbol/Function.h"
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#include "lldb/Symbol/ObjectFile.h"
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#include "lldb/Symbol/TypeList.h"
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//#define ENABLE_DEBUG_PRINTF // COMMENT OUT THIS LINE PRIOR TO CHECKIN
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#ifdef ENABLE_DEBUG_PRINTF
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#include <stdio.h>
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#define DEBUG_PRINTF(fmt, ...) printf(fmt, __VA_ARGS__)
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#else
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#define DEBUG_PRINTF(fmt, ...)
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#endif
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#define DW_AT_go_kind 0x2900
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#define DW_AT_go_key 0x2901
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#define DW_AT_go_elem 0x2902
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using namespace lldb;
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using namespace lldb_private;
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DWARFASTParserGo::DWARFASTParserGo(GoASTContext &ast) : m_ast(ast) {}
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DWARFASTParserGo::~DWARFASTParserGo() {}
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TypeSP DWARFASTParserGo::ParseTypeFromDWARF(
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const lldb_private::SymbolContext &sc, const DWARFDIE &die,
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lldb_private::Log *log, bool *type_is_new_ptr) {
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TypeSP type_sp;
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if (type_is_new_ptr)
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*type_is_new_ptr = false;
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if (die) {
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SymbolFileDWARF *dwarf = die.GetDWARF();
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if (log) {
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dwarf->GetObjectFile()->GetModule()->LogMessage(
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log, "DWARFASTParserGo::ParseTypeFromDWARF (die = 0x%8.8x) %s name = "
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"'%s')",
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die.GetOffset(), DW_TAG_value_to_name(die.Tag()), die.GetName());
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}
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Type *type_ptr = dwarf->m_die_to_type.lookup(die.GetDIE());
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TypeList *type_list = dwarf->GetTypeList();
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if (type_ptr == NULL) {
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if (type_is_new_ptr)
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*type_is_new_ptr = true;
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const dw_tag_t tag = die.Tag();
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bool is_forward_declaration = false;
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DWARFAttributes attributes;
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const char *type_name_cstr = NULL;
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ConstString type_name_const_str;
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Type::ResolveState resolve_state = Type::eResolveStateUnresolved;
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uint64_t byte_size = 0;
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uint64_t go_kind = 0;
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Declaration decl;
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Type::EncodingDataType encoding_data_type = Type::eEncodingIsUID;
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CompilerType compiler_type;
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DWARFFormValue form_value;
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dw_attr_t attr;
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switch (tag) {
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case DW_TAG_base_type:
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case DW_TAG_pointer_type:
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case DW_TAG_typedef:
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case DW_TAG_unspecified_type: {
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// Set a bit that lets us know that we are currently parsing this
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dwarf->m_die_to_type[die.GetDIE()] = DIE_IS_BEING_PARSED;
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const size_t num_attributes = die.GetAttributes(attributes);
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lldb::user_id_t encoding_uid = LLDB_INVALID_UID;
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if (num_attributes > 0) {
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uint32_t i;
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for (i = 0; i < num_attributes; ++i) {
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attr = attributes.AttributeAtIndex(i);
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if (attributes.ExtractFormValueAtIndex(i, form_value)) {
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switch (attr) {
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case DW_AT_name:
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type_name_cstr = form_value.AsCString();
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if (type_name_cstr)
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type_name_const_str.SetCString(type_name_cstr);
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break;
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case DW_AT_byte_size:
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byte_size = form_value.Unsigned();
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break;
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case DW_AT_encoding:
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// = form_value.Unsigned();
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break;
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case DW_AT_type:
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encoding_uid = form_value.Reference();
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break;
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case DW_AT_go_kind:
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go_kind = form_value.Unsigned();
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break;
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default:
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// Do we care about DW_AT_go_key or DW_AT_go_elem?
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break;
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}
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}
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}
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}
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DEBUG_PRINTF("0x%8.8" PRIx64 ": %s (\"%s\") type => 0x%8.8lx\n",
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die.GetID(), DW_TAG_value_to_name(tag), type_name_cstr,
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encoding_uid);
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switch (tag) {
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default:
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break;
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case DW_TAG_unspecified_type:
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resolve_state = Type::eResolveStateFull;
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compiler_type = m_ast.CreateVoidType(type_name_const_str);
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break;
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case DW_TAG_base_type:
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resolve_state = Type::eResolveStateFull;
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compiler_type =
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m_ast.CreateBaseType(go_kind, type_name_const_str, byte_size);
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break;
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case DW_TAG_pointer_type:
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encoding_data_type = Type::eEncodingIsPointerUID;
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break;
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case DW_TAG_typedef:
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encoding_data_type = Type::eEncodingIsTypedefUID;
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CompilerType impl;
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Type *type = dwarf->ResolveTypeUID(encoding_uid);
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if (type) {
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if (go_kind == 0 && type->GetName() == type_name_const_str) {
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// Go emits extra typedefs as a forward declaration. Ignore these.
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dwarf->m_die_to_type[die.GetDIE()] = type;
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return type->shared_from_this();
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}
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impl = type->GetForwardCompilerType();
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compiler_type =
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m_ast.CreateTypedefType(go_kind, type_name_const_str, impl);
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}
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break;
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}
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type_sp.reset(new Type(die.GetID(), dwarf, type_name_const_str,
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byte_size, NULL, encoding_uid,
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encoding_data_type, &decl, compiler_type,
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resolve_state));
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dwarf->m_die_to_type[die.GetDIE()] = type_sp.get();
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} break;
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case DW_TAG_structure_type: {
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// Set a bit that lets us know that we are currently parsing this
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dwarf->m_die_to_type[die.GetDIE()] = DIE_IS_BEING_PARSED;
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bool byte_size_valid = false;
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const size_t num_attributes = die.GetAttributes(attributes);
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if (num_attributes > 0) {
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uint32_t i;
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for (i = 0; i < num_attributes; ++i) {
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attr = attributes.AttributeAtIndex(i);
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if (attributes.ExtractFormValueAtIndex(i, form_value)) {
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switch (attr) {
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case DW_AT_name:
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type_name_cstr = form_value.AsCString();
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type_name_const_str.SetCString(type_name_cstr);
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break;
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case DW_AT_byte_size:
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byte_size = form_value.Unsigned();
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byte_size_valid = true;
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break;
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case DW_AT_go_kind:
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go_kind = form_value.Unsigned();
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break;
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// TODO: Should we use SLICETYPE's DW_AT_go_elem?
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default:
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break;
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}
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}
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}
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}
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// TODO(ribrdb): Do we need this?
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// UniqueDWARFASTType is large, so don't create a local variables on the
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// stack, put it on the heap. This function is often called recursively
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// and clang isn't good and sharing the stack space for variables in
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// different blocks.
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std::unique_ptr<UniqueDWARFASTType> unique_ast_entry_ap(
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new UniqueDWARFASTType());
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// Only try and unique the type if it has a name.
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if (type_name_const_str &&
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dwarf->GetUniqueDWARFASTTypeMap().Find(
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type_name_const_str, die, decl,
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byte_size_valid ? byte_size : -1, *unique_ast_entry_ap)) {
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// We have already parsed this type or from another
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// compile unit. GCC loves to use the "one definition
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// rule" which can result in multiple definitions
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// of the same class over and over in each compile
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// unit.
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type_sp = unique_ast_entry_ap->m_type_sp;
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if (type_sp) {
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dwarf->m_die_to_type[die.GetDIE()] = type_sp.get();
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return type_sp;
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}
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}
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DEBUG_PRINTF("0x%8.8" PRIx64 ": %s (\"%s\")\n", die.GetID(),
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DW_TAG_value_to_name(tag), type_name_cstr);
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bool compiler_type_was_created = false;
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compiler_type.SetCompilerType(
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&m_ast,
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dwarf->m_forward_decl_die_to_clang_type.lookup(die.GetDIE()));
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if (!compiler_type) {
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compiler_type_was_created = true;
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compiler_type =
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m_ast.CreateStructType(go_kind, type_name_const_str, byte_size);
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}
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type_sp.reset(new Type(die.GetID(), dwarf, type_name_const_str,
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byte_size, NULL, LLDB_INVALID_UID,
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Type::eEncodingIsUID, &decl, compiler_type,
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Type::eResolveStateForward));
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// Add our type to the unique type map so we don't
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// end up creating many copies of the same type over
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// and over in the ASTContext for our module
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unique_ast_entry_ap->m_type_sp = type_sp;
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unique_ast_entry_ap->m_die = die;
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unique_ast_entry_ap->m_declaration = decl;
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unique_ast_entry_ap->m_byte_size = byte_size;
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dwarf->GetUniqueDWARFASTTypeMap().Insert(type_name_const_str,
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*unique_ast_entry_ap);
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if (!is_forward_declaration) {
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// Always start the definition for a class type so that
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// if the class has child classes or types that require
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// the class to be created for use as their decl contexts
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// the class will be ready to accept these child definitions.
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if (die.HasChildren() == false) {
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// No children for this struct/union/class, lets finish it
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m_ast.CompleteStructType(compiler_type);
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} else if (compiler_type_was_created) {
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// Leave this as a forward declaration until we need
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// to know the details of the type. lldb_private::Type
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// will automatically call the SymbolFile virtual function
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// "SymbolFileDWARF::CompleteType(Type *)"
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// When the definition needs to be defined.
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dwarf->m_forward_decl_die_to_clang_type[die.GetDIE()] =
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compiler_type.GetOpaqueQualType();
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dwarf->m_forward_decl_clang_type_to_die[compiler_type
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.GetOpaqueQualType()] =
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die.GetDIERef();
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// SetHasExternalStorage (compiler_type.GetOpaqueQualType(), true);
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}
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}
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} break;
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case DW_TAG_subprogram:
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case DW_TAG_subroutine_type: {
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// Set a bit that lets us know that we are currently parsing this
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dwarf->m_die_to_type[die.GetDIE()] = DIE_IS_BEING_PARSED;
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bool is_variadic = false;
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clang::StorageClass storage =
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clang::SC_None; //, Extern, Static, PrivateExtern
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const size_t num_attributes = die.GetAttributes(attributes);
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if (num_attributes > 0) {
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uint32_t i;
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for (i = 0; i < num_attributes; ++i) {
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attr = attributes.AttributeAtIndex(i);
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if (attributes.ExtractFormValueAtIndex(i, form_value)) {
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switch (attr) {
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case DW_AT_name:
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type_name_cstr = form_value.AsCString();
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type_name_const_str.SetCString(type_name_cstr);
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break;
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case DW_AT_external:
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if (form_value.Unsigned()) {
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if (storage == clang::SC_None)
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storage = clang::SC_Extern;
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else
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storage = clang::SC_PrivateExtern;
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}
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break;
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case DW_AT_high_pc:
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case DW_AT_low_pc:
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break;
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}
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}
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}
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}
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DEBUG_PRINTF("0x%8.8" PRIx64 ": %s (\"%s\")\n", die.GetID(),
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DW_TAG_value_to_name(tag), type_name_cstr);
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std::vector<CompilerType> function_param_types;
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// Parse the function children for the parameters
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if (die.HasChildren()) {
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ParseChildParameters(sc, die, is_variadic, function_param_types);
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}
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// compiler_type will get the function prototype clang type after this
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// call
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compiler_type = m_ast.CreateFunctionType(
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type_name_const_str, function_param_types.data(),
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function_param_types.size(), is_variadic);
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type_sp.reset(new Type(die.GetID(), dwarf, type_name_const_str, 0, NULL,
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LLDB_INVALID_UID, Type::eEncodingIsUID, &decl,
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compiler_type, Type::eResolveStateFull));
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assert(type_sp.get());
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} break;
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case DW_TAG_array_type: {
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// Set a bit that lets us know that we are currently parsing this
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dwarf->m_die_to_type[die.GetDIE()] = DIE_IS_BEING_PARSED;
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lldb::user_id_t type_die_offset = DW_INVALID_OFFSET;
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int64_t first_index = 0;
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uint32_t byte_stride = 0;
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uint32_t bit_stride = 0;
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const size_t num_attributes = die.GetAttributes(attributes);
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if (num_attributes > 0) {
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uint32_t i;
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for (i = 0; i < num_attributes; ++i) {
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attr = attributes.AttributeAtIndex(i);
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if (attributes.ExtractFormValueAtIndex(i, form_value)) {
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switch (attr) {
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case DW_AT_name:
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type_name_cstr = form_value.AsCString();
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type_name_const_str.SetCString(type_name_cstr);
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break;
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case DW_AT_type:
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type_die_offset = form_value.Reference();
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break;
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case DW_AT_byte_size:
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break; // byte_size = form_value.Unsigned(); break;
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case DW_AT_go_kind:
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go_kind = form_value.Unsigned();
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break;
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default:
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break;
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}
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}
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}
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DEBUG_PRINTF("0x%8.8" PRIx64 ": %s (\"%s\")\n", die.GetID(),
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DW_TAG_value_to_name(tag), type_name_cstr);
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Type *element_type = dwarf->ResolveTypeUID(type_die_offset);
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if (element_type) {
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std::vector<uint64_t> element_orders;
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ParseChildArrayInfo(sc, die, first_index, element_orders,
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byte_stride, bit_stride);
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if (byte_stride == 0)
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byte_stride = element_type->GetByteSize();
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CompilerType array_element_type =
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element_type->GetForwardCompilerType();
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if (element_orders.size() > 0) {
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if (element_orders.size() > 1)
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printf("golang: unsupported multi-dimensional array %s\n",
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type_name_cstr);
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compiler_type = m_ast.CreateArrayType(
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type_name_const_str, array_element_type, element_orders[0]);
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} else {
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compiler_type = m_ast.CreateArrayType(type_name_const_str,
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array_element_type, 0);
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}
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type_sp.reset(new Type(die.GetID(), dwarf, type_name_const_str,
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byte_stride, NULL, type_die_offset,
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Type::eEncodingIsUID, &decl, compiler_type,
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Type::eResolveStateFull));
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type_sp->SetEncodingType(element_type);
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}
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}
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} break;
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default:
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dwarf->GetObjectFile()->GetModule()->ReportError(
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"{0x%8.8x}: unhandled type tag 0x%4.4x (%s), "
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"please file a bug and attach the file at the "
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"start of this error message",
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die.GetOffset(), tag, DW_TAG_value_to_name(tag));
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break;
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}
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if (type_sp.get()) {
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DWARFDIE sc_parent_die =
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SymbolFileDWARF::GetParentSymbolContextDIE(die);
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dw_tag_t sc_parent_tag = sc_parent_die.Tag();
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SymbolContextScope *symbol_context_scope = NULL;
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if (sc_parent_tag == DW_TAG_compile_unit) {
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symbol_context_scope = sc.comp_unit;
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} else if (sc.function != NULL && sc_parent_die) {
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symbol_context_scope =
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sc.function->GetBlock(true).FindBlockByID(sc_parent_die.GetID());
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if (symbol_context_scope == NULL)
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symbol_context_scope = sc.function;
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}
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if (symbol_context_scope != NULL) {
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type_sp->SetSymbolContextScope(symbol_context_scope);
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}
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// We are ready to put this type into the uniqued list up at the module
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// level
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type_list->Insert(type_sp);
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dwarf->m_die_to_type[die.GetDIE()] = type_sp.get();
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}
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} else if (type_ptr != DIE_IS_BEING_PARSED) {
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type_sp = type_ptr->shared_from_this();
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}
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}
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return type_sp;
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}
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size_t DWARFASTParserGo::ParseChildParameters(
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const SymbolContext &sc,
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const DWARFDIE &parent_die, bool &is_variadic,
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std::vector<CompilerType> &function_param_types) {
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if (!parent_die)
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return 0;
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size_t arg_idx = 0;
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for (DWARFDIE die = parent_die.GetFirstChild(); die.IsValid();
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die = die.GetSibling()) {
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dw_tag_t tag = die.Tag();
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switch (tag) {
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case DW_TAG_formal_parameter: {
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DWARFAttributes attributes;
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const size_t num_attributes = die.GetAttributes(attributes);
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if (num_attributes > 0) {
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Declaration decl;
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DWARFFormValue param_type_die_offset;
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uint32_t i;
|
|
for (i = 0; i < num_attributes; ++i) {
|
|
const dw_attr_t attr = attributes.AttributeAtIndex(i);
|
|
DWARFFormValue form_value;
|
|
if (attributes.ExtractFormValueAtIndex(i, form_value)) {
|
|
switch (attr) {
|
|
case DW_AT_name:
|
|
// = form_value.AsCString();
|
|
break;
|
|
case DW_AT_type:
|
|
param_type_die_offset = form_value;
|
|
break;
|
|
case DW_AT_location:
|
|
// if (form_value.BlockData())
|
|
// {
|
|
// const DWARFDataExtractor&
|
|
// debug_info_data =
|
|
// debug_info();
|
|
// uint32_t block_length =
|
|
// form_value.Unsigned();
|
|
// DWARFDataExtractor
|
|
// location(debug_info_data,
|
|
// form_value.BlockData() -
|
|
// debug_info_data.GetDataStart(),
|
|
// block_length);
|
|
// }
|
|
// else
|
|
// {
|
|
// }
|
|
// break;
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
Type *type = parent_die.ResolveTypeUID(DIERef(param_type_die_offset));
|
|
if (type) {
|
|
function_param_types.push_back(type->GetForwardCompilerType());
|
|
}
|
|
}
|
|
arg_idx++;
|
|
} break;
|
|
|
|
case DW_TAG_unspecified_parameters:
|
|
is_variadic = true;
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
return arg_idx;
|
|
}
|
|
|
|
void DWARFASTParserGo::ParseChildArrayInfo(
|
|
const SymbolContext &sc, const DWARFDIE &parent_die, int64_t &first_index,
|
|
std::vector<uint64_t> &element_orders, uint32_t &byte_stride,
|
|
uint32_t &bit_stride) {
|
|
if (!parent_die)
|
|
return;
|
|
|
|
for (DWARFDIE die = parent_die.GetFirstChild(); die.IsValid();
|
|
die = die.GetSibling()) {
|
|
const dw_tag_t tag = die.Tag();
|
|
switch (tag) {
|
|
case DW_TAG_subrange_type: {
|
|
DWARFAttributes attributes;
|
|
const size_t num_child_attributes = die.GetAttributes(attributes);
|
|
if (num_child_attributes > 0) {
|
|
uint64_t num_elements = 0;
|
|
uint32_t i;
|
|
for (i = 0; i < num_child_attributes; ++i) {
|
|
const dw_attr_t attr = attributes.AttributeAtIndex(i);
|
|
DWARFFormValue form_value;
|
|
if (attributes.ExtractFormValueAtIndex(i, form_value)) {
|
|
switch (attr) {
|
|
case DW_AT_count:
|
|
num_elements = form_value.Unsigned();
|
|
break;
|
|
|
|
default:
|
|
case DW_AT_type:
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
element_orders.push_back(num_elements);
|
|
}
|
|
} break;
|
|
}
|
|
}
|
|
}
|
|
|
|
bool DWARFASTParserGo::CompleteTypeFromDWARF(const DWARFDIE &die,
|
|
lldb_private::Type *type,
|
|
CompilerType &compiler_type) {
|
|
if (!die)
|
|
return false;
|
|
|
|
const dw_tag_t tag = die.Tag();
|
|
|
|
SymbolFileDWARF *dwarf = die.GetDWARF();
|
|
Log *log =
|
|
nullptr; // (LogChannelDWARF::GetLogIfAny(DWARF_LOG_DEBUG_INFO|DWARF_LOG_TYPE_COMPLETION));
|
|
if (log)
|
|
dwarf->GetObjectFile()->GetModule()->LogMessageVerboseBacktrace(
|
|
log, "0x%8.8" PRIx64 ": %s '%s' resolving forward declaration...",
|
|
die.GetID(), DW_TAG_value_to_name(tag), type->GetName().AsCString());
|
|
assert(compiler_type);
|
|
DWARFAttributes attributes;
|
|
|
|
switch (tag) {
|
|
case DW_TAG_structure_type: {
|
|
{
|
|
if (die.HasChildren()) {
|
|
SymbolContext sc(die.GetLLDBCompileUnit());
|
|
|
|
ParseChildMembers(sc, die, compiler_type);
|
|
}
|
|
}
|
|
m_ast.CompleteStructType(compiler_type);
|
|
return (bool)compiler_type;
|
|
}
|
|
|
|
default:
|
|
assert(false && "not a forward go type decl!");
|
|
break;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
size_t DWARFASTParserGo::ParseChildMembers(const SymbolContext &sc,
|
|
const DWARFDIE &parent_die,
|
|
CompilerType &class_compiler_type) {
|
|
size_t count = 0;
|
|
uint32_t member_idx = 0;
|
|
|
|
ModuleSP module_sp = parent_die.GetDWARF()->GetObjectFile()->GetModule();
|
|
GoASTContext *ast =
|
|
llvm::dyn_cast_or_null<GoASTContext>(class_compiler_type.GetTypeSystem());
|
|
if (ast == nullptr)
|
|
return 0;
|
|
|
|
for (DWARFDIE die = parent_die.GetFirstChild(); die.IsValid();
|
|
die = die.GetSibling()) {
|
|
dw_tag_t tag = die.Tag();
|
|
|
|
switch (tag) {
|
|
case DW_TAG_member: {
|
|
DWARFAttributes attributes;
|
|
const size_t num_attributes = die.GetAttributes(attributes);
|
|
if (num_attributes > 0) {
|
|
Declaration decl;
|
|
const char *name = NULL;
|
|
|
|
DWARFFormValue encoding_uid;
|
|
uint32_t member_byte_offset = UINT32_MAX;
|
|
uint32_t i;
|
|
for (i = 0; i < num_attributes; ++i) {
|
|
const dw_attr_t attr = attributes.AttributeAtIndex(i);
|
|
DWARFFormValue form_value;
|
|
if (attributes.ExtractFormValueAtIndex(i, form_value)) {
|
|
switch (attr) {
|
|
case DW_AT_name:
|
|
name = form_value.AsCString();
|
|
break;
|
|
case DW_AT_type:
|
|
encoding_uid = form_value;
|
|
break;
|
|
case DW_AT_data_member_location:
|
|
if (form_value.BlockData()) {
|
|
Value initialValue(0);
|
|
Value memberOffset(0);
|
|
const DWARFDataExtractor &debug_info_data =
|
|
die.GetDWARF()->get_debug_info_data();
|
|
uint32_t block_length = form_value.Unsigned();
|
|
uint32_t block_offset =
|
|
form_value.BlockData() - debug_info_data.GetDataStart();
|
|
if (DWARFExpression::Evaluate(
|
|
NULL, // ExecutionContext *
|
|
NULL, // RegisterContext *
|
|
module_sp, debug_info_data, die.GetCU(), block_offset,
|
|
block_length, eRegisterKindDWARF, &initialValue, NULL,
|
|
memberOffset, NULL)) {
|
|
member_byte_offset = memberOffset.ResolveValue(NULL).UInt();
|
|
}
|
|
} else {
|
|
// With DWARF 3 and later, if the value is an integer constant,
|
|
// this form value is the offset in bytes from the beginning
|
|
// of the containing entity.
|
|
member_byte_offset = form_value.Unsigned();
|
|
}
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
Type *member_type = die.ResolveTypeUID(DIERef(encoding_uid));
|
|
if (member_type) {
|
|
CompilerType member_go_type = member_type->GetFullCompilerType();
|
|
ConstString name_const_str(name);
|
|
m_ast.AddFieldToStruct(class_compiler_type, name_const_str,
|
|
member_go_type, member_byte_offset);
|
|
}
|
|
}
|
|
++member_idx;
|
|
} break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
|
|
return count;
|
|
}
|
|
|
|
Function *DWARFASTParserGo::ParseFunctionFromDWARF(const SymbolContext &sc,
|
|
const DWARFDIE &die) {
|
|
DWARFRangeList func_ranges;
|
|
const char *name = NULL;
|
|
const char *mangled = NULL;
|
|
int decl_file = 0;
|
|
int decl_line = 0;
|
|
int decl_column = 0;
|
|
int call_file = 0;
|
|
int call_line = 0;
|
|
int call_column = 0;
|
|
DWARFExpression frame_base(die.GetCU());
|
|
|
|
assert(die.Tag() == DW_TAG_subprogram);
|
|
|
|
if (die.Tag() != DW_TAG_subprogram)
|
|
return NULL;
|
|
|
|
if (die.GetDIENamesAndRanges(name, mangled, func_ranges, decl_file, decl_line,
|
|
decl_column, call_file, call_line, call_column,
|
|
&frame_base)) {
|
|
// Union of all ranges in the function DIE (if the function is
|
|
// discontiguous)
|
|
AddressRange func_range;
|
|
lldb::addr_t lowest_func_addr = func_ranges.GetMinRangeBase(0);
|
|
lldb::addr_t highest_func_addr = func_ranges.GetMaxRangeEnd(0);
|
|
if (lowest_func_addr != LLDB_INVALID_ADDRESS &&
|
|
lowest_func_addr <= highest_func_addr) {
|
|
ModuleSP module_sp(die.GetModule());
|
|
func_range.GetBaseAddress().ResolveAddressUsingFileSections(
|
|
lowest_func_addr, module_sp->GetSectionList());
|
|
if (func_range.GetBaseAddress().IsValid())
|
|
func_range.SetByteSize(highest_func_addr - lowest_func_addr);
|
|
}
|
|
|
|
if (func_range.GetBaseAddress().IsValid()) {
|
|
Mangled func_name;
|
|
func_name.SetValue(ConstString(name), false);
|
|
|
|
FunctionSP func_sp;
|
|
std::unique_ptr<Declaration> decl_ap;
|
|
if (decl_file != 0 || decl_line != 0 || decl_column != 0)
|
|
decl_ap.reset(new Declaration(
|
|
sc.comp_unit->GetSupportFiles().GetFileSpecAtIndex(decl_file),
|
|
decl_line, decl_column));
|
|
|
|
SymbolFileDWARF *dwarf = die.GetDWARF();
|
|
// Supply the type _only_ if it has already been parsed
|
|
Type *func_type = dwarf->m_die_to_type.lookup(die.GetDIE());
|
|
|
|
assert(func_type == NULL || func_type != DIE_IS_BEING_PARSED);
|
|
|
|
if (dwarf->FixupAddress(func_range.GetBaseAddress())) {
|
|
const user_id_t func_user_id = die.GetID();
|
|
func_sp.reset(new Function(sc.comp_unit,
|
|
func_user_id, // UserID is the DIE offset
|
|
func_user_id, func_name, func_type,
|
|
func_range)); // first address range
|
|
|
|
if (func_sp.get() != NULL) {
|
|
if (frame_base.IsValid())
|
|
func_sp->GetFrameBaseExpression() = frame_base;
|
|
sc.comp_unit->AddFunction(func_sp);
|
|
return func_sp.get();
|
|
}
|
|
}
|
|
}
|
|
}
|
|
return NULL;
|
|
}
|