
This adds new protocol types for the 'variables' request. While implementing this, I removed the '$__lldb_extension' field we returned on the 'variables' request, since I think all the data can be retrieved from other DAP requests. --------- Co-authored-by: Jonas Devlieghere <jonas@devlieghere.com>
308 lines
11 KiB
C++
308 lines
11 KiB
C++
//===-- ProtocolUtils.cpp -------------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "ProtocolUtils.h"
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#include "JSONUtils.h"
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#include "LLDBUtils.h"
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#include "lldb/API/SBDebugger.h"
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#include "lldb/API/SBDeclaration.h"
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#include "lldb/API/SBFormat.h"
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#include "lldb/API/SBMutex.h"
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#include "lldb/API/SBStream.h"
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#include "lldb/API/SBTarget.h"
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#include "lldb/API/SBThread.h"
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#include "lldb/Host/PosixApi.h" // Adds PATH_MAX for windows
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#include <iomanip>
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#include <optional>
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#include <sstream>
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using namespace lldb_dap::protocol;
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namespace lldb_dap {
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static bool ShouldDisplayAssemblySource(
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lldb::SBAddress address,
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lldb::StopDisassemblyType stop_disassembly_display) {
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if (stop_disassembly_display == lldb::eStopDisassemblyTypeNever)
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return false;
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if (stop_disassembly_display == lldb::eStopDisassemblyTypeAlways)
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return true;
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// A line entry of 0 indicates the line is compiler generated i.e. no source
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// file is associated with the frame.
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auto line_entry = address.GetLineEntry();
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auto file_spec = line_entry.GetFileSpec();
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if (!file_spec.IsValid() || line_entry.GetLine() == 0 ||
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line_entry.GetLine() == LLDB_INVALID_LINE_NUMBER)
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return true;
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if (stop_disassembly_display == lldb::eStopDisassemblyTypeNoSource &&
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!file_spec.Exists()) {
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return true;
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}
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return false;
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}
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static uint64_t GetDebugInfoSizeInSection(lldb::SBSection section) {
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uint64_t debug_info_size = 0;
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const llvm::StringRef section_name(section.GetName());
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if (section_name.starts_with(".debug") ||
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section_name.starts_with("__debug") ||
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section_name.starts_with(".apple") || section_name.starts_with("__apple"))
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debug_info_size += section.GetFileByteSize();
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const size_t num_sub_sections = section.GetNumSubSections();
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for (size_t i = 0; i < num_sub_sections; i++)
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debug_info_size +=
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GetDebugInfoSizeInSection(section.GetSubSectionAtIndex(i));
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return debug_info_size;
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}
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static uint64_t GetDebugInfoSize(lldb::SBModule module) {
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uint64_t debug_info_size = 0;
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const size_t num_sections = module.GetNumSections();
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for (size_t i = 0; i < num_sections; i++)
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debug_info_size += GetDebugInfoSizeInSection(module.GetSectionAtIndex(i));
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return debug_info_size;
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}
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std::string ConvertDebugInfoSizeToString(uint64_t debug_size) {
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std::ostringstream oss;
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oss << std::fixed << std::setprecision(1);
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if (debug_size < 1024) {
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oss << debug_size << "B";
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} else if (debug_size < static_cast<uint64_t>(1024 * 1024)) {
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double kb = double(debug_size) / 1024.0;
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oss << kb << "KB";
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} else if (debug_size < 1024 * 1024 * 1024) {
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double mb = double(debug_size) / (1024.0 * 1024.0);
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oss << mb << "MB";
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} else {
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double gb = double(debug_size) / (1024.0 * 1024.0 * 1024.0);
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oss << gb << "GB";
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}
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return oss.str();
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}
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std::optional<protocol::Module> CreateModule(const lldb::SBTarget &target,
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lldb::SBModule &module,
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bool id_only) {
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if (!target.IsValid() || !module.IsValid())
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return std::nullopt;
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const llvm::StringRef uuid = module.GetUUIDString();
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if (uuid.empty())
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return std::nullopt;
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protocol::Module p_module;
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p_module.id = uuid;
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if (id_only)
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return p_module;
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std::array<char, PATH_MAX> path_buffer{};
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if (const lldb::SBFileSpec file_spec = module.GetFileSpec()) {
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p_module.name = file_spec.GetFilename();
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const uint32_t path_size =
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file_spec.GetPath(path_buffer.data(), path_buffer.size());
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p_module.path = std::string(path_buffer.data(), path_size);
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}
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if (const uint32_t num_compile_units = module.GetNumCompileUnits();
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num_compile_units > 0) {
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p_module.symbolStatus = "Symbols loaded.";
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p_module.debugInfoSizeBytes = GetDebugInfoSize(module);
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if (const lldb::SBFileSpec symbol_fspec = module.GetSymbolFileSpec()) {
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const uint32_t path_size =
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symbol_fspec.GetPath(path_buffer.data(), path_buffer.size());
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p_module.symbolFilePath = std::string(path_buffer.data(), path_size);
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}
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} else {
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p_module.symbolStatus = "Symbols not found.";
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}
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const auto load_address = module.GetObjectFileHeaderAddress();
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if (const lldb::addr_t raw_address = load_address.GetLoadAddress(target);
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raw_address != LLDB_INVALID_ADDRESS)
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p_module.addressRange = llvm::formatv("{0:x}", raw_address);
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std::array<uint32_t, 3> version_nums{};
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const uint32_t num_versions =
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module.GetVersion(version_nums.data(), version_nums.size());
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if (num_versions > 0) {
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p_module.version = llvm::formatv(
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"{:$[.]}", llvm::make_range(version_nums.begin(),
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version_nums.begin() + num_versions));
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}
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return p_module;
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}
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std::optional<protocol::Source> CreateSource(const lldb::SBFileSpec &file) {
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if (!file.IsValid())
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return std::nullopt;
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protocol::Source source;
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if (const char *name = file.GetFilename())
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source.name = name;
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char path[PATH_MAX] = "";
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if (file.GetPath(path, sizeof(path)) &&
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lldb::SBFileSpec::ResolvePath(path, path, PATH_MAX))
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source.path = path;
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return source;
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}
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bool IsAssemblySource(const protocol::Source &source) {
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// According to the specification, a source must have either `path` or
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// `sourceReference` specified. We use `path` for sources with known source
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// code, and `sourceReferences` when falling back to assembly.
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return source.sourceReference.value_or(LLDB_DAP_INVALID_SRC_REF) >
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LLDB_DAP_INVALID_SRC_REF;
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}
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bool DisplayAssemblySource(lldb::SBDebugger &debugger,
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lldb::SBAddress address) {
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const lldb::StopDisassemblyType stop_disassembly_display =
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GetStopDisassemblyDisplay(debugger);
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return ShouldDisplayAssemblySource(address, stop_disassembly_display);
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}
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std::string GetLoadAddressString(const lldb::addr_t addr) {
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return "0x" + llvm::utohexstr(addr, false, 16);
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}
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protocol::Thread CreateThread(lldb::SBThread &thread, lldb::SBFormat &format) {
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std::string name;
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lldb::SBStream stream;
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if (format && thread.GetDescriptionWithFormat(format, stream).Success()) {
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name = stream.GetData();
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} else {
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llvm::StringRef thread_name(thread.GetName());
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llvm::StringRef queue_name(thread.GetQueueName());
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if (!thread_name.empty()) {
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name = thread_name.str();
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} else if (!queue_name.empty()) {
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auto kind = thread.GetQueue().GetKind();
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std::string queue_kind_label = "";
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if (kind == lldb::eQueueKindSerial)
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queue_kind_label = " (serial)";
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else if (kind == lldb::eQueueKindConcurrent)
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queue_kind_label = " (concurrent)";
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name = llvm::formatv("Thread {0} Queue: {1}{2}", thread.GetIndexID(),
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queue_name, queue_kind_label)
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.str();
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} else {
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name = llvm::formatv("Thread {0}", thread.GetIndexID()).str();
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}
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}
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return protocol::Thread{thread.GetThreadID(), name};
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}
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std::vector<protocol::Thread> GetThreads(lldb::SBProcess process,
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lldb::SBFormat &format) {
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lldb::SBMutex lock = process.GetTarget().GetAPIMutex();
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std::lock_guard<lldb::SBMutex> guard(lock);
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std::vector<protocol::Thread> threads;
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const uint32_t num_threads = process.GetNumThreads();
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threads.reserve(num_threads);
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for (uint32_t thread_idx = 0; thread_idx < num_threads; ++thread_idx) {
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lldb::SBThread thread = process.GetThreadAtIndex(thread_idx);
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threads.emplace_back(CreateThread(thread, format));
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}
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return threads;
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}
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ExceptionBreakpointsFilter
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CreateExceptionBreakpointFilter(const ExceptionBreakpoint &bp) {
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ExceptionBreakpointsFilter filter;
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filter.filter = bp.GetFilter();
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filter.label = bp.GetLabel();
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filter.description = bp.GetLabel();
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filter.defaultState = ExceptionBreakpoint::kDefaultValue;
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filter.supportsCondition = true;
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return filter;
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}
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Variable CreateVariable(lldb::SBValue v, int64_t var_ref, bool format_hex,
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bool auto_variable_summaries,
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bool synthetic_child_debugging, bool is_name_duplicated,
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std::optional<std::string> custom_name) {
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VariableDescription desc(v, auto_variable_summaries, format_hex,
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is_name_duplicated, custom_name);
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Variable var;
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var.name = desc.name;
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var.value = desc.display_value;
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var.type = desc.display_type_name;
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if (!desc.evaluate_name.empty())
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var.evaluateName = desc.evaluate_name;
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// If we have a type with many children, we would like to be able to
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// give a hint to the IDE that the type has indexed children so that the
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// request can be broken up in grabbing only a few children at a time. We
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// want to be careful and only call "v.GetNumChildren()" if we have an array
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// type or if we have a synthetic child provider producing indexed children.
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// We don't want to call "v.GetNumChildren()" on all objects as class, struct
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// and union types don't need to be completed if they are never expanded. So
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// we want to avoid calling this to only cases where we it makes sense to keep
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// performance high during normal debugging.
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// If we have an array type, say that it is indexed and provide the number
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// of children in case we have a huge array. If we don't do this, then we
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// might take a while to produce all children at onces which can delay your
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// debug session.
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if (desc.type_obj.IsArrayType()) {
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var.indexedVariables = v.GetNumChildren();
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} else if (v.IsSynthetic()) {
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// For a type with a synthetic child provider, the SBType of "v" won't tell
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// us anything about what might be displayed. Instead, we check if the first
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// child's name is "[0]" and then say it is indexed. We call
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// GetNumChildren() only if the child name matches to avoid a potentially
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// expensive operation.
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if (lldb::SBValue first_child = v.GetChildAtIndex(0)) {
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llvm::StringRef first_child_name = first_child.GetName();
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if (first_child_name == "[0]") {
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size_t num_children = v.GetNumChildren();
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// If we are creating a "[raw]" fake child for each synthetic type, we
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// have to account for it when returning indexed variables.
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if (synthetic_child_debugging)
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++num_children;
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var.indexedVariables = num_children;
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}
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}
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}
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if (v.MightHaveChildren())
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var.variablesReference = var_ref;
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if (v.GetDeclaration().IsValid())
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var.declarationLocationReference = PackLocation(var_ref, false);
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if (ValuePointsToCode(v))
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var.valueLocationReference = PackLocation(var_ref, true);
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if (lldb::addr_t addr = v.GetLoadAddress(); addr != LLDB_INVALID_ADDRESS)
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var.memoryReference = addr;
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return var;
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}
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} // namespace lldb_dap
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