76#include "llvm/ADT/STLExtras.h"
77#include "llvm/ADT/ScopeExit.h"
78#include "llvm/ADT/SetVector.h"
79#include "llvm/Support/ErrorExtras.h"
80#include "llvm/Support/ThreadPool.h"
93struct ExecutableInstaller {
96 : m_platform{platform}, m_module{module},
97 m_local_file{m_module->GetFileSpec()},
98 m_remote_file{m_module->GetRemoteInstallFileSpec()} {}
100 void setupRemoteFile()
const { m_module->SetPlatformFileSpec(m_remote_file); }
104 const FileSpec m_local_file;
105 const FileSpec m_remote_file;
108struct MainExecutableInstaller {
111 ProcessLaunchInfo &launch_info)
112 : m_platform{platform}, m_module{module},
113 m_local_file{m_module->GetFileSpec()},
115 getRemoteFileSpec(m_platform, target, m_module, m_local_file)},
116 m_launch_info{launch_info} {}
118 void setupRemoteFile()
const {
119 m_module->SetPlatformFileSpec(m_remote_file);
122 m_platform->SetFilePermissions(m_remote_file, 0700 );
127 const FileSpec m_local_file;
128 const FileSpec m_remote_file;
133 const FileSpec &local_file) {
134 FileSpec remote_file =
module->GetRemoteInstallFileSpec();
135 if (remote_file || !target->GetAutoInstallMainExecutable())
141 remote_file = platform->GetRemoteWorkingDirectory();
147 ProcessLaunchInfo &m_launch_info;
153template <
typename Installer>
155 if (!installer.m_local_file || !installer.m_remote_file)
158 Status error = installer.m_platform->Install(installer.m_local_file,
159 installer.m_remote_file);
163 installer.setupRemoteFile();
178 static constexpr llvm::StringLiteral class_name(
"lldb.target");
210 static_cast<void *
>(
this));
213 "Target::Target created with architecture {0} ({1})",
215 target_arch.
GetTriple().getTriple().c_str());
223 LLDB_LOG(log,
"{0} Target::~Target()",
static_cast<void *
>(
this));
235 if (breakpoint_sp->IsInternal())
249 elem.second->CopyIntoNewTarget(*
this);
250 if (new_override_up->Validate())
286 llvm::consumeError(
m_process_sp->FlushDelayedBreakpoints());
288 std::unique_lock<std::recursive_mutex> lock;
319 llvm::StringRef plugin_name,
326 listener_sp, crash_file, can_connect);
333 const char *repl_options,
bool can_create) {
341 language = *single_lang;
342 }
else if (repl_languages.
Empty()) {
344 "LLDB isn't configured with REPL support for any languages.");
348 "Multiple possible REPL languages. Please specify a language.");
353 REPLMap::iterator pos =
m_repl_map.find(language);
361 "Couldn't find an existing REPL for %s, and can't create a new one",
376 "Couldn't create a REPL for %s",
390 std::lock_guard<std::recursive_mutex> guard(
m_mutex);
397 const bool notify =
false;
421 return abi_sp->GetPluginName();
453 if (!main_module_sp) {
458 shared_lib_filter.
Append(main_module_sp->GetFileSpec());
459 llvm::SetVector<std::string, std::vector<std::string>,
460 std::unordered_set<std::string>>
469 if (!entryPointName.empty())
470 entryPointNamesSet.insert(entryPointName);
472 if (entryPointNamesSet.empty()) {
478 nullptr, entryPointNamesSet.takeVector(),
479 eFunctionNameTypeFull,
489 bp_sp->SetOneShot(
true);
496 const std::unordered_set<std::string> &function_names,
500 containingModules, source_file_spec_list));
504 nullptr, std::move(source_regex), function_names,
505 !
static_cast<bool>(move_to_nearest_code)));
511 const FileSpec &file, uint32_t line_no,
514 LazyBool skip_prologue,
bool internal,
518 std::optional<llvm::StringRef> removed_prefix_opt =
520 if (!removed_prefix_opt)
521 remapped_file = file;
525 switch (inline_strategy) {
546 compile_unit_list.
Append(remapped_file);
559 !
static_cast<bool>(move_to_nearest_code));
564 nullptr, offset, skip_prologue, location_spec, removed_prefix_opt));
591 std::make_shared<SearchFilterForUnconstrainedSearches>(
594 std::make_shared<BreakpointResolverAddress>(
nullptr, addr);
601 bool request_hardware) {
603 std::make_shared<SearchFilterForUnconstrainedSearches>(
606 std::make_shared<BreakpointResolverAddress>(
nullptr,
Address(file_addr),
614 const FileSpecList *containingSourceFiles,
const char *func_name,
615 FunctionNameType func_name_type_mask,
LanguageType language,
617 bool internal,
bool hardware) {
621 containingModules, containingSourceFiles));
630 offset, offset_is_insn_count, skip_prologue));
639 const std::vector<std::string> &func_names,
640 FunctionNameType func_name_type_mask,
642 LazyBool skip_prologue,
bool internal,
bool hardware) {
644 size_t num_names = func_names.size();
647 containingModules, containingSourceFiles));
655 new BreakpointResolverName(
nullptr, func_names, func_name_type_mask,
656 language, offset, skip_prologue));
665 const char *func_names[],
size_t num_names,
666 FunctionNameType func_name_type_mask,
668 LazyBool skip_prologue,
bool internal,
bool hardware) {
672 containingModules, containingSourceFiles));
684 nullptr, func_names, num_names, func_name_type_mask, language, offset,
686 resolver_sp->SetOffset(offset);
695 if (containingModule !=
nullptr) {
698 filter_sp = std::make_shared<SearchFilterByModule>(shared_from_this(),
703 std::make_shared<SearchFilterForUnconstrainedSearches>(
713 if (containingModules && containingModules->
GetSize() != 0) {
716 filter_sp = std::make_shared<SearchFilterByModuleList>(shared_from_this(),
721 std::make_shared<SearchFilterForUnconstrainedSearches>(
731 if (containingSourceFiles ==
nullptr || containingSourceFiles->
GetSize() == 0)
735 if (containingModules ==
nullptr) {
739 filter_sp = std::make_shared<SearchFilterByModuleListAndCU>(
740 shared_from_this(),
FileSpecList(), *containingSourceFiles);
742 filter_sp = std::make_shared<SearchFilterByModuleListAndCU>(
743 shared_from_this(), *containingModules, *containingSourceFiles);
752 bool internal,
bool hardware) {
754 containingModules, containingSourceFiles));
757 :
static_cast<bool>(skip_prologue);
759 nullptr, std::move(func_regex), requested_language, 0,
skip));
766 bool catch_bp,
bool throw_bp,
bool internal,
769 *
this, language, catch_bp, throw_bp, internal);
770 if (exc_bkpt_sp && additional_args) {
772 if (precondition_sp && additional_args) {
774 *
error = precondition_sp->ConfigurePrecondition(*additional_args);
776 precondition_sp->ConfigurePrecondition(*additional_args);
783 const llvm::StringRef class_name,
const FileSpecList *containingModules,
784 const FileSpecList *containingSourceFiles,
bool internal,
791 containingSourceFiles && containingSourceFiles->
GetSize() > 0;
792 bool has_modules = containingModules && containingModules->
GetSize() > 0;
794 if (has_files && has_modules) {
796 containingSourceFiles);
797 }
else if (has_files) {
800 }
else if (has_modules) {
803 filter_sp = std::make_shared<SearchFilterForUnconstrainedSearches>(
814 bool internal,
bool request_hardware,
815 bool resolve_indirect_symbols) {
817 if (filter_sp && resolver_sp) {
825 resolver_sp = overridden_sp;
828 bp_sp.reset(
new Breakpoint(*
this, filter_sp, resolver_sp, hardware,
829 resolve_indirect_symbols));
830 resolver_sp->SetBreakpoint(bp_sp);
848 LLDB_LOGF(log,
"Target::%s (internal = %s) => break_id = %s\n",
849 __FUNCTION__, bp_sp->IsInternal() ?
"yes" :
"no", s.
GetData());
852 bp_sp->ResolveBreakpoint();
883 bp_sp->AddName(name);
888 std::make_pair(bp_name->GetName(), std::move(bp_name)));
894 if (!
error.Success())
899 return iter->second.get();
904 "Breakpoint name \"{0}\" doesn't exist and can_create is false.", name);
910 std::make_pair(name, std::make_unique<BreakpointName>(name.str())))
911 .first->second.get();
920 bp_sp->RemoveName(name);
925 llvm::StringRef name) {
926 bp_sp->RemoveName(name);
938 llvm::Expected<std::vector<BreakpointSP>> expected_vector =
941 if (!expected_vector) {
943 llvm::toString(expected_vector.takeError()));
947 for (
auto bp_sp : *expected_vector)
954 names.push_back(bp_name_entry.first().str());
960 llvm::StringRef class_name, uint64_t type_mask,
962 if (class_name.empty())
963 return llvm::createStringError(llvm::inconvertibleErrorCode(),
967 return llvm::createStringErrorV(
968 llvm::inconvertibleErrorCode(),
969 "invalid breakpoint type mask: {0}, should be composed of the "
970 "elements of the BreakpointResolverType enum.",
978 type_mask, std::string(class_name),
980 llvm::Error
error = new_override_up->Validate();
992 std::vector<lldb::user_id_t> &idxs,
993 uint32_t output_width,
996 stream <<
"No overrides.\n";
1000 bool empty = idxs.empty();
1001 bool print_first =
true;
1003 auto idx_pos = llvm::find(idxs, elem.first);
1004 if (empty || idx_pos != idxs.end()) {
1008 output_width, use_color);
1010 output_width, use_color);
1011 print_first =
false;
1013 auto content = llvm::formatv(
"{0,4} {1,6} {2}\n", elem.first,
1014 elem.second->DescribeTypeMask(),
1015 elem.second->GetDescription())
1019 idxs.erase(idx_pos);
1031 if (!original_sp->ResolverTyInMask(elem.second->GetTypeMask()))
1034 elem.second->CheckForOverride(*
this, original_sp))
1035 return overriden_sp;
1041 std::optional<uint32_t> num_supported_hardware_watchpoints =
1046 if (!num_supported_hardware_watchpoints)
1049 if (*num_supported_hardware_watchpoints == 0) {
1051 "Target supports (%u) hardware watchpoint slots.\n",
1052 *num_supported_hardware_watchpoints);
1065 "Target::%s (addr = 0x%8.8" PRIx64
" size = %" PRIu64
1067 __FUNCTION__, addr, (uint64_t)size, kind);
1078 "cannot set a watchpoint with watch_size of 0");
1081 "invalid watch address: %" PRIu64, addr);
1097 const bool notify =
false;
1102 addr = abi->FixDataAddress(addr);
1116 std::unique_lock<std::recursive_mutex> lock;
1120 size_t old_size = matched_sp->GetByteSize();
1126 if (size == old_size && kind == old_type) {
1128 wp_sp->SetEnabled(
false, notify);
1137 wp_sp = std::make_shared<Watchpoint>(*
this, addr, size, type);
1138 wp_sp->SetWatchpointType(kind, notify);
1143 LLDB_LOGF(log,
"Target::%s (creation of watchpoint %s with id = %u)\n",
1144 __FUNCTION__,
error.Success() ?
"succeeded" :
"failed",
1159 LLDB_LOGF(log,
"Target::%s \n", __FUNCTION__);
1168 LLDB_LOGF(log,
"Target::%s (internal_also = %s)\n", __FUNCTION__,
1169 internal_also ?
"yes" :
"no");
1180 LLDB_LOGF(log,
"Target::%s (internal_also = %s)\n", __FUNCTION__,
1181 internal_also ?
"yes" :
"no");
1190 LLDB_LOGF(log,
"Target::%s", __FUNCTION__);
1197 LLDB_LOGF(log,
"Target::%s (internal_also = %s)\n", __FUNCTION__,
1198 internal_also ?
"yes" :
"no");
1207 LLDB_LOGF(log,
"Target::%s", __FUNCTION__);
1214 LLDB_LOGF(log,
"Target::%s (break_id = %i, internal = %s)\n", __FUNCTION__,
1234 LLDB_LOGF(log,
"Target::%s (break_id = %i, internal = %s)\n", __FUNCTION__,
1244 bp_sp->SetEnabled(
false);
1252 LLDB_LOGF(log,
"Target::%s (break_id = %i, internal = %s)\n", __FUNCTION__,
1263 bp_sp->SetEnabled(
true);
1283 std::string path(file.
GetPath());
1291 if (
error.Success()) {
1292 break_store_ptr = input_data_sp->GetAsArray();
1293 if (!break_store_ptr) {
1295 "Tried to append to invalid input file %s", path.c_str());
1301 if (!break_store_ptr) {
1302 break_store_sp = std::make_shared<StructuredData::Array>();
1303 break_store_ptr = break_store_sp.get();
1310 lldb::eFilePermissionsFileDefault);
1317 std::unique_lock<std::recursive_mutex> lock;
1323 size_t num_breakpoints = breakpoints.
GetSize();
1324 for (
size_t i = 0; i < num_breakpoints; i++) {
1329 break_store_ptr->
AddItem(bkpt_save_sp);
1333 std::unordered_set<lldb::break_id_t> processed_bkpts;
1334 const size_t count = bp_ids.
GetSize();
1335 for (
size_t i = 0; i < count; ++i) {
1341 std::pair<std::unordered_set<lldb::break_id_t>::iterator,
bool>
1342 insert_result = processed_bkpts.insert(bp_id);
1343 if (!insert_result.second)
1350 if (!bkpt_save_sp) {
1352 "Unable to serialize breakpoint %d", bp_id);
1355 break_store_ptr->
AddItem(bkpt_save_sp);
1360 break_store_ptr->
Dump(out_file,
false);
1367 std::vector<std::string> no_names;
1372 std::vector<std::string> &names,
1374 std::unique_lock<std::recursive_mutex> lock;
1380 if (!
error.Success()) {
1382 }
else if (!input_data_sp || !input_data_sp->IsValid()) {
1384 "Invalid JSON from input file: %s.", file.
GetPath().c_str());
1391 "Invalid breakpoint data from input file: %s.", file.
GetPath().c_str());
1395 size_t num_bkpts = bkpt_array->
GetSize();
1396 size_t num_names = names.size();
1398 for (
size_t i = 0; i < num_bkpts; i++) {
1404 "Invalid breakpoint data for element %zu from input file: %s.", i,
1415 shared_from_this(), bkpt_data_sp,
error);
1416 if (!
error.Success()) {
1418 "Error restoring breakpoint %zu from %s: %s.", i,
1434 LLDB_LOGF(log,
"Target::%s\n", __FUNCTION__);
1463 LLDB_LOGF(log,
"Target::%s\n", __FUNCTION__);
1490 LLDB_LOGF(log,
"Target::%s\n", __FUNCTION__);
1516 LLDB_LOGF(log,
"Target::%s\n", __FUNCTION__);
1522 wp_sp->ResetHitCount();
1530 LLDB_LOGF(log,
"Target::%s\n", __FUNCTION__);
1536 wp_sp->ResetHistoricValues();
1545 LLDB_LOGF(log,
"Target::%s\n", __FUNCTION__);
1554 wp_sp->SetIgnoreCount(ignore_count);
1562 LLDB_LOGF(log,
"Target::%s (watch_id = %i)\n", __FUNCTION__, watch_id);
1581 LLDB_LOGF(log,
"Target::%s (watch_id = %i)\n", __FUNCTION__, watch_id);
1600 LLDB_LOGF(log,
"Target::%s (watch_id = %i)\n", __FUNCTION__, watch_id);
1615 uint32_t ignore_count) {
1617 LLDB_LOGF(log,
"Target::%s (watch_id = %i)\n", __FUNCTION__, watch_id);
1624 wp_sp->SetIgnoreCount(ignore_count);
1631 std::lock_guard<std::recursive_mutex> lock(
m_images.GetMutex());
1644 if (executable_sp &&
1646 return executable_sp;
1655 std::lock_guard<std::recursive_mutex> lock(
m_images.GetMutex());
1680 if (executable_sp) {
1683 pid = proc->GetID();
1687 info->
uuid = executable_sp->GetUUID();
1689 info->
triple = executable_sp->GetArchitecture().GetTriple().getTriple();
1695 info->
uuid = executable_sp->GetUUID();
1701 "Target::RebuildModuleListWithExecutable (executable = '%s')",
1702 executable_sp->GetFileSpec().GetPath().c_str());
1704 const bool notify =
true;
1713 if (!
m_arch.GetSpec().IsValid()) {
1714 m_arch = executable_sp->GetArchitecture();
1716 "Target::RebuildModuleListWithExecutable setting architecture "
1718 "based on executable file",
1719 m_arch.GetSpec().GetArchitectureName(),
1720 m_arch.GetSpec().GetTriple().getTriple());
1723 ObjectFile *executable_objfile = executable_sp->GetObjectFile();
1724 bool load_dependents =
true;
1725 switch (load_dependent_files) {
1727 load_dependents = executable_sp->IsExecutable();
1730 load_dependents =
true;
1733 load_dependents =
false;
1737 if (executable_objfile && load_dependents) {
1740 std::mutex dependent_files_mutex;
1745 auto GetDependentModules = [&](
FileSpec dependent_file_spec) {
1746 FileSpec platform_dependent_file_spec;
1748 m_platform_sp->GetFileWithUUID(dependent_file_spec,
nullptr,
1749 platform_dependent_file_spec);
1751 platform_dependent_file_spec = dependent_file_spec;
1756 if (image_module_sp) {
1758 ObjectFile *objfile = image_module_sp->GetObjectFile();
1764 std::lock_guard<std::mutex> guard(dependent_files_mutex);
1765 dependent_files_copy = dependent_files;
1770 const size_t previous_dependent_files =
1771 dependent_files_copy.
GetSize();
1776 std::lock_guard<std::mutex> guard(dependent_files_mutex);
1777 for (
size_t i = previous_dependent_files;
1778 i < dependent_files_copy.
GetSize(); ++i)
1789 for (uint32_t i = 0; i < dependent_files.
GetSize(); i++) {
1795 std::lock_guard<std::mutex> guard(dependent_files_mutex);
1796 for (; i < dependent_files.
GetSize(); i++)
1797 task_group.async(GetDependentModules,
1810 bool missing_local_arch = !
m_arch.GetSpec().IsValid();
1811 bool replace_local_arch =
true;
1812 bool compatible_local_arch =
false;
1821 if (!platform_sp || !platform_sp->IsCompatibleArchitecture(
1825 GetDebugger().GetPlatformList().GetOrCreate(other, {},
1827 arch_platform_sp->SetLocateModuleCallback(
1828 platform_sp->GetLocateModuleCallback());
1831 other = platform_arch;
1837 if (!missing_local_arch) {
1838 if (merge &&
m_arch.GetSpec().IsCompatibleMatch(arch_spec)) {
1841 if (
m_arch.GetSpec().IsCompatibleMatch(other)) {
1842 compatible_local_arch =
true;
1845 replace_local_arch =
false;
1850 if (compatible_local_arch || missing_local_arch) {
1854 if (replace_local_arch)
1857 "Target::SetArchitecture merging compatible arch; arch "
1859 m_arch.GetSpec().GetArchitectureName(),
1860 m_arch.GetSpec().GetTriple().getTriple());
1868 "Target::SetArchitecture changing architecture to %s (%s) from %s (%s)",
1870 arch_spec.
GetTriple().getTriple().c_str(),
1871 m_arch.GetSpec().GetArchitectureName(),
1872 m_arch.GetSpec().GetTriple().getTriple().c_str());
1879 if (executable_sp) {
1881 "Target::SetArchitecture Trying to select executable file "
1882 "architecture %s (%s)",
1884 arch_spec.
GetTriple().getTriple().c_str());
1885 ModuleSpec module_spec(executable_sp->GetFileSpec(), other);
1886 module_spec.
SetTarget(shared_from_this());
1890 if (!
error.Fail() && executable_sp) {
1901 if (
m_arch.GetSpec().IsCompatibleMatch(arch_spec)) {
1906 "Target::MergeArchitecture target has arch %s, merging with "
1908 m_arch.GetSpec().GetTriple().getTriple().c_str(),
1909 arch_spec.
GetTriple().getTriple().c_str());
1930 my_module_list.
Append(module_sp);
1940 my_module_list.
Append(module_sp);
1953 old_module_sp, new_module_sp);
1965 const size_t num_images = module_list.
GetSize();
1967 std::list<Status> errors;
1969 for (
const auto &err : errors)
1972 for (
size_t idx = 0; idx < num_images; ++idx) {
1984 std::make_shared<TargetEventData>(shared_from_this(), module_list);
1993 runtime->SymbolsDidLoad(module_list);
2000 std::make_shared<TargetEventData>(shared_from_this(), module_list);
2009 std::make_shared<TargetEventData>(shared_from_this(), module_list);
2023 const bool should_flush_type_systems =
2025 auto *object_file =
module.GetObjectFile();
2030 auto type = object_file->GetType();
2034 return module.FileHasChanged() &&
2035 (type == ObjectFile::eTypeObjectFile ||
2036 type == ObjectFile::eTypeExecutable ||
2037 type == ObjectFile::eTypeSharedLibrary);
2040 if (should_flush_type_systems)
2048 const FileSpec &module_file_spec) {
2053 size_t num_modules = matchingModules.
GetSize();
2057 if (num_modules > 0) {
2058 for (
size_t i = 0; i < num_modules; i++) {
2073 return m_platform_sp->ModuleIsExcludedForUnconstrainedSearches(*
this,
2085 if (section_sp->IsEncrypted()) {
2089 ModuleSP module_sp(section_sp->GetModule());
2091 ObjectFile *objfile = section_sp->GetModule()->GetObjectFile();
2094 section_sp.get(), addr.
GetOffset(), dst, dst_len);
2099 "error reading data from section {0}", section_sp->GetName());
2106 "address doesn't contain a section that points to a "
2107 "section in a object file");
2115 bool *did_read_live_memory) {
2117 if (did_read_live_memory)
2118 *did_read_live_memory =
false;
2131 size_t bytes_read = 0;
2138 if (section_load_list.
IsEmpty()) {
2144 m_images.ResolveFileAddress(file_addr, resolved_addr);
2157 resolved_addr = fixed_addr;
2162 std::unique_ptr<uint8_t[]> file_cache_read_buffer;
2163 size_t file_cache_bytes_read = 0;
2169 auto permissions =
Flags(section_sp->GetPermissions());
2170 bool is_readonly = !permissions.Test(ePermissionsWritable) &&
2171 permissions.Test(ePermissionsReadable);
2173 file_cache_bytes_read =
2175 if (file_cache_bytes_read == dst_len)
2176 return file_cache_bytes_read;
2177 else if (file_cache_bytes_read > 0) {
2178 file_cache_read_buffer =
2179 std::make_unique<uint8_t[]>(file_cache_bytes_read);
2180 std::memcpy(file_cache_read_buffer.get(), dst, file_cache_bytes_read);
2192 if (addr_module_sp && addr_module_sp->GetFileSpec())
2194 "{0:F}[{1:x+}] can't be resolved, {0:F} is not currently loaded",
2198 "0x%" PRIx64
" can't be resolved", resolved_addr.
GetFileAddress());
2201 if (bytes_read != dst_len) {
2202 if (
error.Success()) {
2203 if (bytes_read == 0)
2205 "read memory from 0x%" PRIx64
" failed", load_addr);
2208 "only %" PRIu64
" of %" PRIu64
2209 " bytes were read from memory at 0x%" PRIx64,
2210 (uint64_t)bytes_read, (uint64_t)dst_len, load_addr);
2215 *load_addr_ptr = load_addr;
2216 if (did_read_live_memory)
2217 *did_read_live_memory =
true;
2223 if (file_cache_read_buffer && file_cache_bytes_read > 0) {
2226 std::memcpy(dst, file_cache_read_buffer.get(), file_cache_bytes_read);
2227 return file_cache_bytes_read;
2238 if (bytes_read > 0 && bytes_read != dst_len &&
error.Success() &&
2241 "only {0} of {1} bytes were read from the object file cache",
2242 bytes_read, dst_len);
2259 out_str.append(buf, length);
2262 if (length ==
sizeof(buf) - 1)
2263 curr_addr += length;
2268 return out_str.size();
2272 size_t dst_max_len,
Status &result_error,
2273 bool force_live_memory) {
2274 size_t total_cstr_len = 0;
2275 if (dst && dst_max_len) {
2276 result_error.
Clear();
2278 memset(dst, 0, dst_max_len);
2285 const size_t cache_line_size = 512;
2287 size_t bytes_left = dst_max_len - 1;
2288 char *curr_dst = dst;
2290 while (bytes_left > 0) {
2291 addr_t cache_line_bytes_left =
2292 cache_line_size - (curr_addr % cache_line_size);
2294 std::min<addr_t>(bytes_left, cache_line_bytes_left);
2296 size_t bytes_read =
ReadMemory(address, curr_dst, bytes_to_read,
error,
2299 if (bytes_read == 0) {
2300 result_error = std::move(
error);
2301 dst[total_cstr_len] =
'\0';
2304 const size_t len = strlen(curr_dst);
2306 total_cstr_len += len;
2308 if (len < bytes_to_read)
2311 curr_dst += bytes_read;
2312 curr_addr += bytes_read;
2313 bytes_left -= bytes_read;
2320 result_error.
Clear();
2322 return total_cstr_len;
2330 return cache_line_size - (load_addr % cache_line_size);
2340 size_t type_width,
bool force_live_memory) {
2341 if (!dst || !max_bytes || !type_width || max_bytes < type_width)
2344 size_t total_bytes_read = 0;
2348 memset(dst, 0, max_bytes);
2349 size_t bytes_left = max_bytes - type_width;
2351 const char terminator[4] = {
'\0',
'\0',
'\0',
'\0'};
2352 assert(
sizeof(terminator) >= type_width &&
"Attempting to validate a "
2353 "string with more than 4 bytes "
2357 char *curr_dst = dst;
2360 while (bytes_left > 0 &&
error.Success()) {
2364 ReadMemory(address, curr_dst, bytes_to_read,
error, force_live_memory);
2366 if (bytes_read == 0)
2371 size_t aligned_start = total_bytes_read - total_bytes_read % type_width;
2372 for (
size_t i = aligned_start;
2373 i + type_width <= total_bytes_read + bytes_read; i += type_width)
2374 if (::memcmp(&dst[i], terminator, type_width) == 0) {
2379 total_bytes_read += bytes_read;
2380 curr_dst += bytes_read;
2381 address.
Slide(bytes_read);
2382 bytes_left -= bytes_read;
2384 return total_bytes_read;
2388 bool is_signed,
Scalar &scalar,
2390 bool force_live_memory) {
2393 if (byte_size <=
sizeof(uval)) {
2396 if (bytes_read == byte_size) {
2398 m_arch.GetSpec().GetAddressByteSize());
2401 scalar = data.
GetMaxU32(&offset, byte_size);
2403 scalar = data.
GetMaxU64(&offset, byte_size);
2413 "byte size of %u is too large for integer scalar type", byte_size);
2419 size_t integer_byte_size,
2421 bool force_live_memory) {
2430 size_t integer_byte_size,
2432 bool force_live_memory) {
2442 bool force_live_memory) {
2445 false, scalar,
error, force_live_memory)) {
2449 if (section_load_list.
IsEmpty()) {
2452 m_images.ResolveFileAddress(pointer_vm_addr, pointer_addr);
2463 pointer_addr.
SetOffset(pointer_vm_addr);
2471 bool notify,
Status *error_ptr,
2472 bool invoke_symbol_locators) {
2479 module_spec.
SetTarget(shared_from_this());
2481 if (std::optional<FileSpec> remapped_obj_file =
2492 module_sp =
m_images.FindFirstModule(module_spec);
2495 llvm::SmallVector<ModuleSP, 1>
2498 bool did_create_module =
false;
2508 module_spec, module_sp, symbol_file_spec, &did_create_module);
2532 std::string transformed_dir;
2538 transformed_spec.
SetTarget(shared_from_this());
2540 transformed_spec, module_sp, &old_modules, &did_create_module,
2541 true, invoke_symbol_locators);
2558 module_spec, module_sp, &old_modules, &did_create_module,
2559 true, invoke_symbol_locators);
2562 if (!module_sp && invoke_symbol_locators) {
2567 module_spec, *
this, module_sp, &old_modules, &did_create_module);
2578 ObjectFile *objfile = module_sp->GetObjectFile();
2594 "debug info files aren't valid target "
2595 "modules, please specify an executable");
2602 "stub libraries aren't valid target "
2603 "modules, please specify an executable");
2608 "unsupported file type, please specify an executable");
2627 m_images.FindModules(module_spec_copy, found_modules);
2629 old_modules.push_back(found_module);
2636 if (symbol_file_spec)
2637 module_sp->SetSymbolFileFileSpec(symbol_file_spec);
2639 llvm::SmallVector<ModuleSP, 1> replaced_modules;
2640 for (
ModuleSP &old_module_sp : old_modules) {
2641 if (
m_images.GetIndexForModule(old_module_sp.get()) !=
2643 if (replaced_modules.empty())
2644 m_images.ReplaceModule(old_module_sp, module_sp);
2648 replaced_modules.push_back(std::move(old_module_sp));
2652 if (replaced_modules.size() > 1) {
2665 auto dump = [&message](
Module &dump_module) ->
void {
2666 UUID dump_uuid = dump_module.GetUUID();
2670 message <<
" (uuid ";
2673 dump_uuid.
Dump(message);
2675 message <<
"not specified";
2680 message <<
"New module ";
2683 << llvm::formatv(
" simultaneously replaced {0} old modules: ",
2684 replaced_modules.size());
2685 for (
ModuleSP &replaced_module_sp : replaced_modules)
2686 dump(*replaced_module_sp);
2692 if (replaced_modules.empty()) {
2693 if (!
m_images.AppendIfNeeded(module_sp, notify) && notify)
2697 for (
ModuleSP &old_module_sp : replaced_modules) {
2698 auto old_module_wp = old_module_sp->weak_from_this();
2699 old_module_sp.reset();
2707 *error_ptr = std::move(
error);
2736llvm::Expected<lldb::TypeSystemSP>
2738 bool create_on_demand) {
2740 return llvm::createStringError(
"invalid target");
2753 if (languages_for_expressions.
Empty())
2754 return llvm::createStringError(
2755 "No expression support for any languages");
2771std::vector<lldb::TypeSystemSP>
2784 llvm::SetVector<lldb::TypeSystemSP, std::vector<lldb::TypeSystemSP>,
2785 std::set<lldb::TypeSystemSP>>
2786 scratch_type_systems;
2791 for (
auto bit : languages_for_expressions.
bitvector.set_bits()) {
2793 auto type_system_or_err =
2795 if (!type_system_or_err)
2798 "Language '{1}' has expression support but no scratch type "
2799 "system available: {0}",
2801 else if (
auto ts = *type_system_or_err)
2802 scratch_type_systems.insert(ts);
2805 return scratch_type_systems.takeVector();
2812 if (
auto err = type_system_or_err.takeError()) {
2815 "Unable to get persistent expression state for language {1}: {0}",
2820 if (
auto ts = *type_system_or_err)
2821 return ts->GetPersistentExpressionState();
2824 "Unable to get persistent expression state for language {}:",
2830 llvm::StringRef expr, llvm::StringRef prefix,
SourceLanguage language,
2834 auto type_system_or_err =
2836 if (
auto err = type_system_or_err.takeError()) {
2838 "Could not find type system for language %s: %s",
2840 llvm::toString(std::move(err)).c_str());
2844 auto ts = *type_system_or_err;
2847 "Type system for language %s is no longer live",
2852 auto *user_expr = ts->GetUserExpression(expr, prefix, language, desired_type,
2856 "Could not create an expression for language %s",
2867 if (
auto err = type_system_or_err.takeError()) {
2869 "Could not find type system for language %s: %s",
2871 llvm::toString(std::move(err)).c_str());
2874 auto ts = *type_system_or_err;
2877 "Type system for language %s is no longer live",
2881 auto *persistent_fn = ts->GetFunctionCaller(return_type, function_address,
2882 arg_value_list, name);
2885 "Could not create an expression for language %s",
2888 return persistent_fn;
2891llvm::Expected<std::unique_ptr<UtilityFunction>>
2896 if (!type_system_or_err)
2897 return type_system_or_err.takeError();
2898 auto ts = *type_system_or_err;
2900 return llvm::createStringError(
2901 llvm::StringRef(
"Type system for language ") +
2903 llvm::StringRef(
" is no longer live"));
2904 std::unique_ptr<UtilityFunction> utility_fn =
2905 ts->CreateUtilityFunction(std::move(expression), std::move(name));
2907 return llvm::createStringError(
2908 llvm::StringRef(
"Could not create an expression for language") +
2912 if (!utility_fn->Install(diagnostics, exe_ctx))
2914 "Could not install utility function:");
2916 return std::move(utility_fn);
2937 "setting target's default architecture to {0} ({1})",
2944 if (llvm::to_integer(label, n))
2945 return llvm::createStringError(
"cannot use integer as target label");
2949 if (target_sp && target_sp->GetLabel() == label) {
2950 return llvm::createStringErrorV(
2951 "Cannot use label '{0}' since it's set in target #{1}.", label, i);
2956 return llvm::Error::success();
2965 Target *target =
nullptr;
2966 if (sc_ptr !=
nullptr)
2967 class="code hl_variable" href="classlldb__private_1_1SymbolContext.html#aa9de51ac84bfb107952a727b1e6a662f">target_sp.get();
2968 if (target ==
nullptr && exe_ctx_ptr)
2969 class="code hl_function" href="classlldb__private_1_1ExecutionContext.html#aa56dd2bb640899955473f8da752fa0d0">GetTargetPtr();
2978 result_valobj_sp.reset();
2983 m_stats.GetExpressionStats().NotifyFailure();
2984 return execution_results;
2990 llvm::scope_exit on_exit([
this, old_suppress_value]() {
3008 if (expr[0] ==
'$') {
3009 auto type_system_or_err =
3011 if (
auto err = type_system_or_err.takeError()) {
3013 "Unable to get scratch type system: {0}");
3015 auto ts = *type_system_or_err;
3018 "Scratch type system is no longer live: {0}");
3021 ts->GetPersistentExpressionState()->GetVariable(expr);
3024 if (persistent_var_sp) {
3025 result_valobj_sp = persistent_var_sp->GetValueObject();
3031 result_valobj_sp, fixed_expression, ctx_obj);
3035 m_stats.GetExpressionStats().NotifySuccess();
3037 m_stats.GetExpressionStats().NotifyFailure();
3038 return execution_results;
3044 [name, &variable_sp](
TypeSystemSP type_system) ->
bool {
3045 auto ts = type_system.get();
3049 ts->GetPersistentExpressionState()) {
3050 variable_sp = persistent_state->GetVariable(name);
3065 auto ts = type_system.get();
3070 ts->GetPersistentExpressionState()) {
3071 address = persistent_state->LookupSymbol(name);
3084 const bool has_primary_executable = exe_module && exe_module->
GetObjectFile();
3085 if (has_primary_executable) {
3092 const size_t num_images = modules.
GetSize();
3093 for (
size_t idx = 0; idx < num_images; ++idx) {
3095 if (!module_sp || !module_sp->GetObjectFile())
3098 Address entry_addr = module_sp->GetObjectFile()->GetEntryPointAddress();
3104 if (!has_primary_executable)
3105 return llvm::createStringError(
3106 "No primary executable found and could not find entry point address in "
3107 "any executable module");
3109 return llvm::createStringError(
3110 "Could not find entry point address for primary executable module \"" +
3118 ? arch_plugin->GetCallableLoadAddress(load_addr, addr_class)
3125 return arch_plugin ? arch_plugin->GetOpcodeLoadAddress(load_addr, addr_class)
3131 return arch_plugin ? arch_plugin->GetBreakableLoadAddress(addr, *
this) : addr;
3134llvm::Expected<lldb::DisassemblerSP>
3136 const char *flavor_string) {
3138 bool force_live_memory =
true;
3141 const size_t bytes_read =
3143 force_live_memory, &load_addr);
3146 return llvm::joinErrors(
3147 llvm::createStringErrorV(
3148 "Target::ReadInstructions failed to read memory at {:x}: ",
3154 if (!flavor_string || flavor_string[0] ==
'\0') {
3159 if (arch == llvm::Triple::x86 || arch == llvm::Triple::x86_64)
3187 stop_hook_sp.reset(
new StopHookCoded(shared_from_this(), new_uid));
3194 return stop_hook_sp;
3206 return (num_removed != 0);
3214 StopHookCollection::iterator specified_hook_iter;
3217 found_hook = (*specified_hook_iter).second;
3222 bool active_state) {
3223 StopHookCollection::iterator specified_hook_iter;
3228 (*specified_hook_iter).second->SetIsActive(active_state);
3233 StopHookCollection::iterator pos, end =
m_stop_hooks.end();
3235 (*pos).second->SetIsActive(active_state);
3244const std::vector<Target::StopHookSP>
3249 std::vector<StopHookSP> stop_hooks;
3251 stop_hooks.push_back(hook);
3269 auto is_active = [at_initial_stop](
StopHookSP hook) {
3270 bool should_run_now = (!at_initial_stop || hook->GetRunAtInitialStop());
3271 return hook->IsActive() && should_run_now;
3275 std::vector<StopHookSP> active_hooks;
3279 if (is_active(hook))
3280 active_hooks.push_back(hook);
3284 std::vector<HookSP> active_unified_hooks;
3285 for (
auto &[_, hook] :
m_hooks) {
3287 (!at_initial_stop || hook->GetRunAtInitialStop()))
3288 active_unified_hooks.push_back(hook);
3291 if (active_hooks.empty() && active_unified_hooks.empty())
3300 uint32_t last_natural_stop =
m_process_sp->GetModIDRef().GetLastNaturalStopID();
3304 std::vector<ExecutionContext> exc_ctx_with_reasons;
3307 size_t num_threads = cur_threadlist.
GetSize();
3308 for (
size_t i = 0; i < num_threads; i++) {
3310 if (cur_thread_sp->ThreadStoppedForAReason()) {
3312 exc_ctx_with_reasons.emplace_back(
m_process_sp.get(), cur_thread_sp.get(),
3313 cur_frame_sp.get());
3322 size_t num_exe_ctx = exc_ctx_with_reasons.size();
3323 if (num_exe_ctx == 0) {
3324 if (at_initial_stop && num_threads > 0) {
3326 exc_ctx_with_reasons.emplace_back(
3328 thread_to_use_sp->GetStackFrameAtIndex(0).get());
3338 llvm::scope_exit on_exit([output_sp] { output_sp->Flush(); });
3340 size_t num_hooks_with_output = llvm::count_if(
3341 active_hooks, [](
auto h) {
return !h->GetSuppressOutput(); });
3342 num_hooks_with_output += llvm::count_if(
3343 active_unified_hooks, [](
auto h) {
return !h->GetSuppressOutput(); });
3344 bool print_hook_header = (num_hooks_with_output > 1);
3345 bool print_thread_header = (num_exe_ctx > 1);
3346 bool should_stop =
false;
3347 bool requested_continue =
false;
3354 for (
auto cur_hook_sp : active_hooks) {
3355 bool any_thread_matched =
false;
3356 for (
auto exc_ctx : exc_ctx_with_reasons) {
3357 if (!cur_hook_sp->ExecutionContextPasses(exc_ctx))
3360 bool suppress_output = cur_hook_sp->GetSuppressOutput();
3361 if (print_hook_header && !any_thread_matched && !suppress_output) {
3365 output_sp->Printf(
"\n- Hook %" PRIu64
" (%s)\n", cur_hook_sp->GetID(),
3368 output_sp->Printf(
"\n- Hook %" PRIu64
"\n", cur_hook_sp->GetID());
3369 any_thread_matched =
true;
3372 if (print_thread_header && !suppress_output)
3373 output_sp->Printf(
"-- Thread %d\n",
3374 exc_ctx.GetThreadPtr()->GetIndexID());
3376 auto result = cur_hook_sp->HandleStop(exc_ctx, output_sp);
3379 if (cur_hook_sp->GetAutoContinue())
3380 requested_continue =
true;
3385 requested_continue =
true;
3394 output_sp->Printf(
"\nAborting stop hooks, hook %" PRIu64
3395 " set the program running.\n"
3396 " Consider using '-G true' to make "
3397 "stop hooks auto-continue.\n",
3398 cur_hook_sp->GetID());
3408 for (
auto cur_hook_sp : active_unified_hooks) {
3409 bool any_thread_matched =
false;
3410 for (
auto exc_ctx : exc_ctx_with_reasons) {
3411 if (!cur_hook_sp->ExecutionContextPasses(exc_ctx))
3414 bool suppress_output = cur_hook_sp->GetSuppressOutput();
3415 if (print_hook_header && !any_thread_matched && !suppress_output) {
3419 output_sp->Printf(
"\n- Hook %" PRIu64
" (%s)\n", cur_hook_sp->GetID(),
3422 output_sp->Printf(
"\n- Hook %" PRIu64
"\n", cur_hook_sp->GetID());
3423 any_thread_matched =
true;
3426 if (print_thread_header && !suppress_output)
3427 output_sp->Printf(
"-- Thread %d\n",
3428 exc_ctx.GetThreadPtr()->GetIndexID());
3430 auto result = cur_hook_sp->HandleStop(exc_ctx, output_sp);
3433 if (cur_hook_sp->GetAutoContinue())
3434 requested_continue =
true;
3439 requested_continue =
true;
3444 output_sp->Printf(
"\nAborting stop hooks, hook %" PRIu64
3445 " set the program running.\n"
3446 " Consider using '-G true' to make "
3447 "stop hooks auto-continue.\n",
3448 cur_hook_sp->GetID());
3456 if (requested_continue && !should_stop) {
3459 if (
error.Success()) {
3460 LLDB_LOG(log,
"Resuming from RunStopHooks");
3463 LLDB_LOG(log,
"Resuming from RunStopHooks failed: {0}",
error);
3476 return *g_settings_ptr;
3482 if (!platform_sp || !platform_sp->IsRemote() || !platform_sp->IsConnected())
3492 MainExecutableInstaller installer{platform_sp, module_sp,
3493 shared_from_this(), *launch_info};
3496 ExecutableInstaller installer{platform_sp, module_sp};
3508 uint32_t stop_id,
bool allow_section_end) {
3515 return m_images.ResolveFileAddress(file_addr, resolved_addr);
3519 addr_t new_section_load_addr,
3520 bool warn_multiple) {
3521 const addr_t old_section_load_addr =
3524 if (old_section_load_addr != new_section_load_addr) {
3525 uint32_t stop_id = 0;
3528 stop_id = process_sp->GetStopID();
3532 stop_id, section_sp, new_section_load_addr, warn_multiple))
3539 size_t section_unload_count = 0;
3540 size_t num_modules = module_list.
GetSize();
3541 for (
size_t i = 0; i < num_modules; ++i) {
3542 section_unload_count +=
3545 return section_unload_count;
3549 uint32_t stop_id = 0;
3552 stop_id = process_sp->GetStopID();
3555 SectionList *sections = module_sp->GetSectionList();
3556 size_t section_unload_count = 0;
3559 for (uint32_t i = 0; i < num_sections; ++i) {
3564 return section_unload_count;
3568 uint32_t stop_id = 0;
3571 stop_id = process_sp->GetStopID();
3579 uint32_t stop_id = 0;
3582 stop_id = process_sp->GetStopID();
3613 m_stats.SetLaunchOrAttachTime();
3617 LLDB_LOGF(log,
"Target::%s() called for %s", __FUNCTION__,
3629 state = process_sp->GetState();
3631 "Target::%s the process exists, and its current state is %s",
3634 LLDB_LOGF(log,
"Target::%s the process instance doesn't currently exist.",
3647 const bool synchronous_execution =
3655 if (launch_info.
GetFlags().
Test(eLaunchFlagLaunchInTTY))
3657 "can't launch in tty when launching through a remote connection");
3675 LLDB_LOGF(log,
"Target::%s asking the platform to debug the process",
3689 "Target::%s the platform doesn't know how to debug a "
3690 "process, getting a process plugin to do this for us.",
3709 if (!
error.Success())
3715 bool rebroadcast_first_stop =
3716 !synchronous_execution &&
3722 state =
m_process_sp->WaitForProcessToStop(std::nullopt, &first_stop_event_sp,
3723 rebroadcast_first_stop,
3727 if (rebroadcast_first_stop) {
3730 assert(first_stop_event_sp);
3739 if (launch_info.
GetFlags().
Test(eLaunchFlagStopAtEntry))
3741 if (synchronous_execution)
3748 if (!
error.Success()) {
3750 "process resume at entry point failed: %s",
error.AsCString());
3754 bool with_shell = !!launch_info.
GetShell();
3756 const char *exit_desc =
m_process_sp->GetExitDescription();
3758 if (exit_desc && exit_desc[0])
3759 desc =
" (" + std::string(exit_desc) +
')';
3762 "process exited with status %i%s\n"
3763 "'r' and 'run' are aliases that default to launching through a "
3765 "Try launching without going through a shell by using "
3766 "'process launch'.",
3767 exit_status, desc.c_str());
3770 "process exited with status %i%s", exit_status, desc.c_str());
3774 "initial process state wasn't stopped: %s",
StateAsCString(state));
3786 return llvm::createStringError(llvm::inconvertibleErrorCode(),
3787 "A process is required for tracing");
3789 return llvm::createStringError(llvm::inconvertibleErrorCode(),
3790 "A trace already exists for the target");
3792 llvm::Expected<TraceSupportedResponse> trace_type =
3795 return llvm::createStringError(
3796 llvm::inconvertibleErrorCode(),
"Tracing is not supported. %s",
3797 llvm::toString(trace_type.takeError()).c_str());
3798 if (llvm::Expected<TraceSP> trace_sp =
3802 return llvm::createStringError(
3803 llvm::inconvertibleErrorCode(),
3804 "Couldn't create a Trace object for the process. %s",
3805 llvm::toString(trace_sp.takeError()).c_str());
3816 Progress attach_progress(
"Waiting to attach to process");
3817 m_stats.SetLaunchOrAttachTime();
3821 state = process_sp->GetState();
3834 if (old_exec_module_sp)
3836 old_exec_module_sp->GetPlatformFileSpec().GetFilename());
3840 "no process specified, create a target with a file, or "
3841 "specify the --pid or --name");
3845 const auto platform_sp =
3848 const bool async = attach_info.
GetAsync();
3850 hijack_listener_sp =
3866 plugin_name,
nullptr,
false);
3869 "failed to create process using plugin '{0}'",
3870 plugin_name.empty() ?
"<empty>" : plugin_name);
3874 if (hijack_listener_sp)
3875 process_sp->HijackProcessEvents(hijack_listener_sp);
3876 error = process_sp->Attach(attach_info);
3879 if (
error.Success() && process_sp) {
3881 process_sp->RestoreProcessEvents();
3884 state = process_sp->WaitForProcessToStop(
3887 process_sp->RestoreProcessEvents();
3894 const char *exit_desc = process_sp->GetExitDescription();
3899 "process did not stop (no such process or permission problem?)");
3900 process_sp->Destroy(
false);
3910 return llvm::createStringError(
"invalid frame provider descriptor");
3912 llvm::StringRef name = descriptor.
GetName();
3914 return llvm::createStringError(
3915 "frame provider descriptor has no class name");
3918 std::unique_lock<std::recursive_mutex> guard(
3922 uint32_t descriptor_hash = descriptor.
GetHash();
3924 if (entry.second.GetHash() == descriptor_hash)
3926 llvm::formatv(
"frame provider idx={0} with the same class name and "
3927 "arguments is already registered",
3928 entry.second.GetID())
3934 new_descriptor.
SetID(descriptor_id);
3939 return descriptor_id;
3944 bool removed =
false;
3946 std::lock_guard<std::recursive_mutex> guard(
3958 std::lock_guard<std::recursive_mutex> guard(
3967const llvm::MapVector<uint32_t, ScriptedFrameProviderDescriptor> &
3969 std::lock_guard<std::recursive_mutex> guard(
3978 for (
ThreadSP thread_sp : process_sp->Threads()) {
3980 thread_sp->ClearScriptedFrameProvider();
3983 auto data_sp = std::make_shared<Thread::ThreadEventData>(thread_sp);
3995 const bool default_to_use_pty =
3999 "have platform={0}, platform_sp->IsHost()={1}, default_to_use_pty={2}",
4001 platform_sp ? (platform_sp->IsHost() ?
"true" :
"false") :
"n/a",
4002 default_to_use_pty);
4009 LLDB_LOG(log,
"at least one of stdin/stdout/stderr was not set, evaluating "
4010 "default handling");
4019 LLDB_LOG(log,
"eLaunchFlagDisableSTDIO set, adding suppression action "
4020 "for stdin, stdout and stderr");
4040 LLDB_LOG(log,
"target stdin='{0}', target stdout='{1}', stderr='{2}'",
4041 in_file_spec, out_file_spec, err_file_spec);
4045 LLDB_LOG(log,
"appended stdin open file action for {0}", in_file_spec);
4048 if (out_file_spec) {
4050 LLDB_LOG(log,
"appended stdout open file action for {0}",
4054 if (err_file_spec) {
4056 LLDB_LOG(log,
"appended stderr open file action for {0}",
4060 if (default_to_use_pty) {
4063 ::getenv(
"LLDB_LAUNCH_FLAG_USE_PIPES")) {
4064 llvm::Error Err = info.SetUpPipeRedirection();
4066 "SetUpPipeRedirection failed: {0}");
4071 "SetUpPtyRedirection failed: {0}");
4091 elem.notify = notify;
4101 = signals_sp->GetSignalNumberFromName(elem.first().str().c_str());
4106 signals_sp->SetShouldSuppress(signo,
false);
4108 signals_sp->SetShouldSuppress(signo,
true);
4111 signals_sp->SetShouldNotify(signo,
true);
4113 signals_sp->SetShouldNotify(signo,
false);
4116 signals_sp->SetShouldStop(signo,
true);
4118 signals_sp->SetShouldStop(signo,
false);
4127 = signals_sp->GetSignalNumberFromName(elem.first().str().c_str());
4133 signals_sp->ResetSignal(signo, do_stop, do_notify, do_pass);
4144 warning_stream_sp->Printf(
"Target signal '%s' not found in process\n",
4145 elem.first().str().c_str());
4158 signals_sp = process_sp->GetUnixSignals();
4161 const char *signal_name = entry.c_str();
4176 strm.
PutCString(
"=========== ======= ======= =======\n");
4178 auto str_for_lazy = [] (
LazyBool lazy) ->
const char * {
4184 llvm_unreachable(
"Fully covered switch above!");
4188 bool print_it =
false;
4189 for (
size_t idx = 0; idx < num_args; idx++) {
4196 strm.
Printf(
"%-11s ", elem.first().str().c_str());
4197 strm.
Printf(
"%s %s %s\n", str_for_lazy(elem.second.pass),
4198 str_for_lazy(elem.second.stop),
4199 str_for_lazy(elem.second.notify));
4230 bool will_run =
true;
4254 s.
Indent(
"State: enabled\n");
4256 s.
Indent(
"State: disabled\n");
4259 s.
Indent(
"AutoContinue on\n");
4289 uint32_t num_commands =
m_commands.GetSize();
4290 for (uint32_t i = 0; i < num_commands; i++) {
4302 const std::vector<std::string> &strings) {
4303 for (
auto string : strings)
4310 assert(exc_ctx.
GetTargetPtr() &&
"Can't call PerformAction on a context "
4348 GetTarget()->GetDebugger().GetScriptInterpreter();
4349 if (!script_interp) {
4357 "ScriptedStopHook::%s () - ERROR: %s", __FUNCTION__,
4358 "Script interpreter couldn't create Scripted Stop Hook Interface");
4369 if (!object_sp || !object_sp->IsValid()) {
4371 "ScriptedStopHook::%s () - ERROR: %s", __FUNCTION__,
4372 "Failed to create valid script object");
4387 llvm::formatv(
"{0} failed: {1}", what, llvm::toString(std::move(
error)))
4395 assert(exc_ctx.
GetTargetPtr() &&
"Can't call HandleStop on a context "
4401 lldb::StreamSP stream = std::make_shared<lldb_private::StreamString>();
4402 auto should_stop_or_err =
m_interface_sp->HandleStop(exc_ctx, stream);
4403 output_sp->PutCString(
4405 if (!should_stop_or_err) {
4407 llvm::formatv(
"stop hook {0}",
GetID()).str(),
4430 s.
Format(
"{0}\n", class_name);
4439 if (!as_dict || !as_dict->IsValid())
4442 uint32_t num_keys = as_dict->GetSize();
4449 auto print_one_element = [&s](llvm::StringRef key,
4452 s.
Format(
"{0} : {1}\n", key, object->GetStringValue());
4456 as_dict->ForEach(print_one_element);
4488 bool will_run =
true;
4509 std::string fires_on;
4513 if (!fires_on.empty())
4515 fires_on +=
"unload";
4518 if (!fires_on.empty())
4522 if (!fires_on.empty()) {
4524 s.
Printf(
"Triggers: %s\n", fires_on.c_str());
4537 s.
Indent(
"AutoContinue on\n");
4573 s.
Indent(
"Commands: \n");
4575 for (uint32_t i = 0; i <
m_commands.GetSize(); i++) {
4592 const std::vector<std::string> &strings) {
4593 for (
const auto &
string : strings)
4608 Debugger &debugger = target_sp->GetDebugger();
4611 if (target_sp->GetProcessSP())
4612 exe_ctx.
SetContext(target_sp->GetProcessSP());
4639 assert(exc_ctx.
GetTargetPtr() &&
"Can't call HandleStop on a context "
4675 GetTarget()->GetDebugger().GetScriptInterpreter();
4682 "ScriptedHook::%s () - ERROR: %s", __FUNCTION__,
4683 "Script interpreter couldn't create Scripted Hook Interface");
4691 if (!object_sp || !object_sp->IsValid())
4693 "ScriptedHook::%s () - ERROR: %s", __FUNCTION__,
4694 "Failed to create valid script object");
4701 "hook class implements none of the expected methods "
4702 "(handle_module_loaded, handle_module_unloaded, handle_stop)");
4704 if (methods.handle_module_loaded)
4706 if (methods.handle_module_unloaded)
4708 if (methods.handle_stop)
4722 StreamSP stream = std::make_shared<StreamString>();
4726 llvm::formatv(
"hook {0}",
GetID()).str(),
4727 target_sp->GetDebugger());
4738 StreamSP stream = std::make_shared<StreamString>();
4742 llvm::formatv(
"hook {0}",
GetID()).str(),
4743 target_sp->GetDebugger());
4749 assert(exc_ctx.
GetTargetPtr() &&
"Can't call HandleStop on a context "
4755 lldb::StreamSP stream = std::make_shared<lldb_private::StreamString>();
4756 auto should_stop_or_err =
m_interface_sp->HandleStop(exc_ctx, stream);
4758 if (!should_stop_or_err) {
4760 llvm::formatv(
"hook {0}",
GetID()).str(),
4788 s.
Format(
"{0}\n", class_name);
4794 if (as_dict && as_dict->IsValid() && as_dict->GetSize() > 0) {
4798 auto print_one_element = [&s](llvm::StringRef key,
4801 s.
Format(
"{0} : {1}\n", key, object->GetStringValue());
4805 as_dict->ForEach(print_one_element);
4823 hook_sp.reset(
new HookScripted(shared_from_this(), new_uid));
4838 size_t num_removed =
m_hooks.erase(uid);
4839 return (num_removed != 0);
4845 auto iter =
m_hooks.find(uid);
4848 return iter->second;
4855 std::advance(iter, index);
4856 return iter->second;
4860 auto iter =
m_hooks.find(uid);
4863 iter->second->SetIsEnabled(enabled);
4868 for (
auto &[_, hook] :
m_hooks)
4869 hook->SetIsEnabled(enabled);
4880 std::vector<HookSP> active_hooks;
4881 for (
auto &[_, hook_sp] :
m_hooks) {
4882 if (hook_sp->IsEnabled() && hook_sp->FiresOn(trigger))
4883 active_hooks.push_back(hook_sp);
4886 if (active_hooks.empty())
4891 for (
auto &hook_sp : active_hooks) {
4893 hook_sp->HandleModuleLoaded(output_sp);
4895 hook_sp->HandleModuleUnloaded(output_sp);
4904 "no-dynamic-values",
4905 "Don't calculate the dynamic type of values",
4910 "Calculate the dynamic type of values "
4911 "even if you have to run the target.",
4916 "Calculate the dynamic type of values, but don't run the target.",
4928 "Never look for inline breakpoint locations (fastest). This setting "
4929 "should only be used if you know that no inlining occurs in your"
4935 "Only check for inline breakpoint locations when setting breakpoints "
4936 "in header files, but not when setting breakpoint in implementation "
4937 "source files (default).",
4942 "Always look for inline breakpoint locations when setting file and "
4943 "line breakpoints (slower but most accurate).",
4957 "Disassembler default (currently att).",
4962 "Intel disassembler flavor.",
4967 "AT&T disassembler flavor.",
4975 "Use LLVM's MCJIT execution engine.",
4980 "Use LLVM's ORC execution engine.",
4988 "Never import the 'std' C++ module in the expression parser.",
4993 "Retry evaluating expressions with an imported 'std' C++ module if they"
4994 " failed to parse without the module. This allows evaluating more "
4995 "complex expressions involving C++ standard library types."
5000 "Always import the 'std' C++ module. This allows evaluating more "
5001 "complex expressions involving C++ standard library types. This feature"
5006static constexpr OptionEnumValueElement
5011 "Automatically determine the most appropriate method for the "
5015 "Prefer using the realized classes struct."},
5017 "Prefer using the CopyRealizedClassList API."},
5019 "Prefer using the GetRealizedClassList API."},
5026 "C-style (0xffff).",
5031 "Asm-style (0ffffh).",
5039 "Load debug scripts inside symbol files",
5044 "Do not load debug scripts inside symbol files.",
5049 "Warn about debug scripts inside symbol files but do not load them.",
5054 "Load debug scripts inside trusted symbol files, and warn about "
5055 "scripts from untrusted symbol files.",
5063 "Load .lldbinit files from current directory",
5068 "Do not load .lldbinit files from current directory",
5073 "Warn about loading .lldbinit files from current directory",
5081 "Load minimal information when loading modules from memory. Currently "
5082 "this setting loads sections only.",
5087 "Load partial information when loading modules from memory. Currently "
5088 "this setting loads sections and function bounds.",
5093 "Load complete information when loading modules from memory. Currently "
5094 "this setting loads sections and all symbols.",
5098#define LLDB_PROPERTIES_target
5099#include "TargetProperties.inc"
5102#define LLDB_PROPERTIES_target
5103#include "TargetPropertiesEnum.inc"
5108 :
public Cloneable<TargetOptionValueProperties, OptionValueProperties> {
5119 Target *target = exe_ctx->GetTargetPtr();
5124 if (
this != target_properties)
5133#define LLDB_PROPERTIES_target_experimental
5134#include "TargetProperties.inc"
5137#define LLDB_PROPERTIES_target_experimental
5138#include "TargetPropertiesEnum.inc"
5142 :
public Cloneable<TargetExperimentalOptionValueProperties,
5143 OptionValueProperties> {
5180 m_collection_sp->SetValueChangedCallback(ePropertyDetachOnError, [
this] {
5193 std::make_unique<TargetExperimentalProperties>();
5196 "Experimental settings - setting these won't produce "
5197 "errors if the setting is not present.",
5200 m_collection_sp = std::make_shared<TargetOptionValueProperties>(
"target");
5203 std::make_unique<TargetExperimentalProperties>();
5206 "Experimental settings - setting these won't produce "
5207 "errors if the setting is not present.",
5210 "process",
"Settings specific to processes.",
true,
5237 exp_property->
GetValue()->GetAsProperties();
5240 return std::nullopt;
5253 exp_property->
GetValue()->GetAsProperties();
5265 exp_property->
GetValue()->GetAsProperties();
5274 exp_property->
GetValue()->GetAsProperties();
5287 exp_property->
GetValue()->GetAsProperties();
5293 const uint32_t idx = ePropertyDefaultArch;
5298 const uint32_t idx = ePropertyDefaultArch;
5303 const uint32_t idx = ePropertyMoveToNearestCode;
5305 idx, g_target_properties[idx].default_uint_value != 0);
5309 const uint32_t idx = ePropertyPreferDynamic;
5312 g_target_properties[idx].default_uint_value));
5316 const uint32_t idx = ePropertyPreferDynamic;
5322 "Interrupted checking preload symbols")) {
5325 const uint32_t idx = ePropertyPreloadSymbols;
5327 idx, g_target_properties[idx].default_uint_value != 0);
5331 const uint32_t idx = ePropertyPreloadSymbols;
5336 const uint32_t idx = ePropertyDisableASLR;
5338 idx, g_target_properties[idx].default_uint_value != 0);
5342 const uint32_t idx = ePropertyDisableASLR;
5347 const uint32_t idx = ePropertyInheritTCC;
5349 idx, g_target_properties[idx].default_uint_value != 0);
5353 const uint32_t idx = ePropertyInheritTCC;
5358 const uint32_t idx = ePropertyDetachOnError;
5360 idx, g_target_properties[idx].default_uint_value != 0);
5364 const uint32_t idx = ePropertyDetachOnError;
5369 const uint32_t idx = ePropertyDisableSTDIO;
5371 idx, g_target_properties[idx].default_uint_value != 0);
5375 const uint32_t idx = ePropertyDisableSTDIO;
5379 const uint32_t idx = ePropertyLaunchWorkingDir;
5381 idx, g_target_properties[idx].default_cstr_value);
5385 const uint32_t idx = ePropertyParallelModuleLoad;
5387 idx, g_target_properties[idx].default_uint_value != 0);
5391 const uint32_t idx = ePropertyDisassemblyFlavor;
5392 const char *return_value;
5397 g_target_properties[idx].default_uint_value));
5400 return return_value;
5404 const uint32_t idx = ePropertyDisassemblyCPU;
5406 idx, g_target_properties[idx].default_cstr_value);
5407 return str.empty() ? nullptr : str.data();
5411 const uint32_t idx = ePropertyDisassemblyFeatures;
5413 idx, g_target_properties[idx].default_cstr_value);
5414 return str.empty() ? nullptr : str.data();
5418 const uint32_t idx = ePropertyInlineStrategy;
5421 static_cast<InlineStrategy>(g_target_properties[idx].default_uint_value));
5427 const uint32_t idx = ePropertySourceRealpathPrefixes;
5432 const uint32_t idx = ePropertyArg0;
5434 idx, g_target_properties[idx].default_cstr_value);
5438 const uint32_t idx = ePropertyArg0;
5444 const uint32_t idx = ePropertyRunArgs;
5449 const uint32_t idx = ePropertyRunArgs;
5459 ePropertyInheritEnv,
5460 g_target_properties[ePropertyInheritEnv].default_uint_value != 0)) {
5461 if (
auto platform_sp =
m_target->GetPlatform()) {
5462 Environment platform_env = platform_sp->GetEnvironment();
5463 for (
const auto &KV : platform_env)
5464 env[KV.first()] = KV.second;
5468 Args property_unset_env;
5470 property_unset_env);
5471 for (
const auto &var : property_unset_env)
5472 env.erase(var.ref());
5475 m_collection_sp->GetPropertyAtIndexAsArgs(ePropertyEnvVars, property_env);
5477 env[KV.first()] = KV.second;
5493 ePropertyInheritEnv,
5494 g_target_properties[ePropertyInheritEnv].default_uint_value != 0))
5498 if (platform_sp ==
nullptr)
5501 Environment platform_environment = platform_sp->GetEnvironment();
5502 for (
const auto &KV : platform_environment)
5503 environment[KV.first()] = KV.second;
5505 Args property_unset_environment;
5507 property_unset_environment);
5508 for (
const auto &var : property_unset_environment)
5509 environment.erase(var.ref());
5515 Args property_environment;
5517 property_environment);
5519 for (
const auto &KV :
Environment(property_environment))
5520 environment[KV.first()] = KV.second;
5527 const uint32_t idx = ePropertyEnvVars;
5532 const uint32_t idx = ePropertySkipPrologue;
5534 idx, g_target_properties[idx].default_uint_value != 0);
5538 const uint32_t idx = ePropertySourceMap;
5541 assert(option_value);
5546 const uint32_t idx = ePropertyObjectMap;
5549 assert(option_value);
5554 const uint32_t idx = ePropertyAutoSourceMapRelative;
5556 idx, g_target_properties[idx].default_uint_value != 0);
5560 const uint32_t idx = ePropertyExecutableSearchPaths;
5563 assert(option_value);
5568 const uint32_t idx = ePropertyExecutableSearchPaths;
5573 const uint32_t idx = ePropertyDebugFileSearchPaths;
5578 const uint32_t idx = ePropertyClangModuleSearchPaths;
5583 const uint32_t idx = ePropertyAutoImportClangModules;
5585 idx, g_target_properties[idx].default_uint_value != 0);
5589 const uint32_t idx = ePropertyImportStdModule;
5592 g_target_properties[idx].default_uint_value));
5596 const uint32_t idx = ePropertyDynamicClassInfoHelper;
5599 g_target_properties[idx].default_uint_value));
5603 const uint32_t idx = ePropertyAutoApplyFixIts;
5605 idx, g_target_properties[idx].default_uint_value != 0);
5609 const uint32_t idx = ePropertyRetriesWithFixIts;
5611 idx, g_target_properties[idx].default_uint_value);
5615 const uint32_t idx = ePropertyNotifyAboutFixIts;
5617 idx, g_target_properties[idx].default_uint_value != 0);
5621 const uint32_t idx = ePropertySaveObjectsDir;
5626 const uint32_t idx = ePropertyJITEngine;
5628 idx,
static_cast<JITEngine>(g_target_properties[idx].default_uint_value));
5637 bool exists = instance.
Exists(new_dir);
5638 bool is_directory = instance.
IsDirectory(new_dir);
5639 std::string path = new_dir.
GetPath(
true);
5640 bool writable = llvm::sys::fs::can_write(path);
5641 if (exists && is_directory && writable)
5649 llvm::raw_string_ostream os(buffer);
5650 os <<
"JIT object dir '" << path <<
"' ";
5652 os <<
"does not exist";
5653 else if (!is_directory)
5654 os <<
"is not a directory";
5656 os <<
"is not writable";
5658 std::optional<lldb::user_id_t> debugger_id;
5660 debugger_id =
m_target->GetDebugger().GetID();
5665 const uint32_t idx = ePropertyEnableSynthetic;
5667 idx, g_target_properties[idx].default_uint_value != 0);
5671 const uint32_t idx = ePropertyShowHexVariableValuesWithLeadingZeroes;
5673 idx, g_target_properties[idx].default_uint_value != 0);
5677 const uint32_t idx = ePropertyMaxZeroPaddingInFloatFormat;
5679 idx, g_target_properties[idx].default_uint_value);
5683 const uint32_t idx = ePropertyMaxChildrenCount;
5685 idx, g_target_properties[idx].default_uint_value);
5688std::pair<uint32_t, bool>
5690 const uint32_t idx = ePropertyMaxChildrenDepth;
5691 auto *option_value =
5693 bool is_default = !option_value->OptionWasSet();
5694 return {option_value->GetCurrentValue(), is_default};
5698 const uint32_t idx = ePropertyMaxSummaryLength;
5700 idx, g_target_properties[idx].default_uint_value);
5704 const uint32_t idx = ePropertyMaxMemReadSize;
5706 idx, g_target_properties[idx].default_uint_value);
5710 const uint32_t idx = ePropertyInputPath;
5715 const uint32_t idx = ePropertyInputPath;
5720 const uint32_t idx = ePropertyOutputPath;
5725 const uint32_t idx = ePropertyOutputPath;
5730 const uint32_t idx = ePropertyErrorPath;
5735 const uint32_t idx = ePropertyErrorPath;
5740 const uint32_t idx = ePropertyLanguage;
5745 const uint32_t idx = ePropertyExprPrefix;
5751 return llvm::StringRef(
5752 reinterpret_cast<const char *
>(data_sp->GetBytes()),
5753 data_sp->GetByteSize());
5759 const uint32_t idx = ePropertyExprErrorLimit;
5761 idx, g_target_properties[idx].default_uint_value);
5765 const uint32_t idx = ePropertyExprAllocAddress;
5767 idx, g_target_properties[idx].default_uint_value);
5771 const uint32_t idx = ePropertyExprAllocSize;
5773 idx, g_target_properties[idx].default_uint_value);
5777 const uint32_t idx = ePropertyExprAllocAlign;
5779 idx, g_target_properties[idx].default_uint_value);
5783 const uint32_t idx = ePropertyBreakpointUseAvoidList;
5785 idx, g_target_properties[idx].default_uint_value != 0);
5789 const uint32_t idx = ePropertyBreakpointsConditionMode;
5792 g_target_properties[idx].default_uint_value));
5796 const uint32_t idx = ePropertyUseHexImmediates;
5798 idx, g_target_properties[idx].default_uint_value != 0);
5802 const uint32_t idx = ePropertyUseFastStepping;
5804 idx, g_target_properties[idx].default_uint_value != 0);
5808 const uint32_t idx = ePropertyDisplayExpressionsInCrashlogs;
5810 idx, g_target_properties[idx].default_uint_value != 0);
5814 const uint32_t idx = ePropertyLoadScriptFromSymbolFile;
5817 g_target_properties[idx].default_uint_value));
5822 const uint32_t idx = ePropertyLoadScriptFromSymbolFile;
5827 const uint32_t idx = ePropertyLoadCWDlldbinitFile;
5830 g_target_properties[idx].default_uint_value));
5834 const uint32_t idx = ePropertyHexImmediateStyle;
5837 g_target_properties[idx].default_uint_value));
5841 const uint32_t idx = ePropertyMemoryModuleLoadLevel;
5844 g_target_properties[idx].default_uint_value));
5848 const uint32_t idx = ePropertyTrapHandlerNames;
5853 const uint32_t idx = ePropertyTrapHandlerNames;
5858 const uint32_t idx = ePropertyDisplayRuntimeSupportValues;
5860 idx, g_target_properties[idx].default_uint_value != 0);
5864 const uint32_t idx = ePropertyDisplayRuntimeSupportValues;
5869 const uint32_t idx = ePropertyDisplayRecognizedArguments;
5871 idx, g_target_properties[idx].default_uint_value != 0);
5875 const uint32_t idx = ePropertyDisplayRecognizedArguments;
5891 if (input_file_action) {
5896 if (output_file_action) {
5901 if (error_file_action) {
5907 launch_info.
GetFlags().
Test(lldb::eLaunchFlagInheritTCCFromParent));
5912 const uint32_t idx = ePropertyRequireHardwareBreakpoints;
5914 idx, g_target_properties[idx].default_uint_value != 0);
5918 const uint32_t idx = ePropertyRequireHardwareBreakpoints;
5923 const uint32_t idx = ePropertyAutoInstallMainExecutable;
5925 idx, g_target_properties[idx].default_uint_value != 0);
5959 m_launch_info.GetFlags().Set(lldb::eLaunchFlagDetachOnError);
5961 m_launch_info.GetFlags().Clear(lldb::eLaunchFlagDetachOnError);
5968 m_launch_info.GetFlags().Clear(lldb::eLaunchFlagDisableASLR);
5973 m_launch_info.GetFlags().Set(lldb::eLaunchFlagInheritTCCFromParent);
5975 m_launch_info.GetFlags().Clear(lldb::eLaunchFlagInheritTCCFromParent);
5980 m_launch_info.GetFlags().Set(lldb::eLaunchFlagDisableSTDIO);
5982 m_launch_info.GetFlags().Clear(lldb::eLaunchFlagDisableSTDIO);
5986 const uint32_t idx = ePropertyDebugUtilityExpression;
5988 idx, g_target_properties[idx].default_uint_value != 0);
5992 const uint32_t idx = ePropertyDebugUtilityExpression;
5997 const uint32_t idx = ePropertyCheckValueObjectOwnership;
5999 idx, g_target_properties[idx].default_uint_value != 0);
6003 const uint32_t idx = ePropertyCheckValueObjectOwnership;
6007std::optional<LoadScriptFromSymFile>
6009 llvm::StringRef module_name)
const {
6010 auto *dict =
m_collection_sp->GetPropertyAtIndexAsOptionValueDictionary(
6011 ePropertyAutoLoadScriptsForModules);
6013 return std::nullopt;
6017 return std::nullopt;
6024 auto *dict =
m_collection_sp->GetPropertyAtIndexAsOptionValueDictionary(
6025 ePropertyAutoLoadScriptsForModules);
6029 dict->SetValueForKey(module_name,
6030 std::make_shared<OptionValueEnumeration>(
6051 return "Target::TargetEventData";
6088 return created_target_sp;
6114 return m_stats.ToJSON(*
this, options);
6132 lldb::BreakpointEventType eventKind) {
6134 std::shared_ptr<Breakpoint::BreakpointEventData> data_sp =
6135 std::make_shared<Breakpoint::BreakpointEventData>(
6136 eventKind, bp.shared_from_this());
6152 if (
auto platform_fspecs_or_err =
6154 fspecs.
Append(*platform_fspecs_or_err);
6157 platform_fspecs_or_err.takeError(),
6158 "Skipping safe auto-load: {0}");
6163 for (
const auto &fspec :
6178 if (option_name.empty())
6179 return llvm::createStringError(
"can't set an option with an empty name");
6184 return llvm::createStringErrorV(
"trying to override existing option '{0}' "
6185 "of type '{1}' with a boolean value",
6186 option_name, existing_sp->GetType());
6190 return llvm::Error::success();
6194 llvm::StringRef option_name)
const {
6197 if (!opts.
HasKey(option_name))
6198 return llvm::createStringErrorV(
"option '{0}' does not exist", option_name);
6202 return llvm::createStringErrorV(
"failed to get option '{0}' as boolean",
6224 "c++-ignore-context-qualifiers";
6237 return llvm::cantFail(
static void dump(const StructuredData::Array &array, Stream &s)
static llvm::raw_ostream & error(Stream &strm)
#define INTERRUPT_REQUESTED(debugger,...)
This handy define will keep you from having to generate a report for the interruption by hand.
#define LLDB_LOG(log,...)
The LLDB_LOG* macros defined below are the way to emit log messages.
#define LLDB_LOGF(log,...)
#define LLDB_LOG_ERROR(log, error,...)
static void skip(TSLexer *lexer)
static double elapsed(const StatsTimepoint &start, const StatsTimepoint &end)
static Status installExecutable(const Installer &installer)
constexpr llvm::StringLiteral s_cpp_ignore_context_qualifiers_option
static constexpr OptionEnumValueElement g_dynamic_class_info_helper_value_types[]
static bool CheckIfWatchpointsSupported(Target *target, Status &error)
static constexpr OptionEnumValueElement g_jit_engine_value_types[]
static constexpr OptionEnumValueElement g_load_cwd_lldbinit_values[]
static constexpr OptionEnumValueElement g_dynamic_value_types[]
static constexpr OptionEnumValueElement g_memory_module_load_level_values[]
static constexpr OptionEnumValueElement g_load_script_from_sym_file_values[]
static std::atomic< lldb::user_id_t > g_target_unique_id
static constexpr OptionEnumValueElement g_x86_dis_flavor_value_types[]
static constexpr OptionEnumValueElement g_hex_immediate_style_values[]
static void ReportScriptedHookError(llvm::Error error, llvm::StringRef what, Debugger &debugger)
Hook callbacks have no caller to return an error to, so report a failure as a debugger diagnostic.
static constexpr OptionEnumValueElement g_inline_breakpoint_enums[]
static constexpr OptionEnumValueElement g_import_std_module_value_types[]
#define LLDB_SCOPED_TIMERF(...)
TargetExperimentalOptionValueProperties()
const Property * GetPropertyAtIndex(size_t idx, const ExecutionContext *exe_ctx=nullptr) const override
TargetOptionValueProperties(llvm::StringRef name)
static lldb::ABISP FindPlugin(lldb::ProcessSP process_sp, const ArchSpec &arch)
A section + offset based address class.
lldb::addr_t GetLoadAddress(Target *target) const
Get the load address.
bool SetLoadAddress(lldb::addr_t load_addr, Target *target, bool allow_section_end=false)
Set the address to represent load_addr.
lldb::SectionSP GetSection() const
Get const accessor for the section.
bool Slide(int64_t offset)
lldb::ModuleSP GetModule() const
Get accessor for the module for this address.
lldb::addr_t GetFileAddress() const
Get the file address.
lldb::addr_t GetOffset() const
Get the section relative offset value.
bool IsValid() const
Check if the object state is valid.
bool IsSectionOffset() const
Check if an address is section offset.
bool SetOffset(lldb::addr_t offset)
Set accessor for the offset.
An architecture specification class.
bool IsValid() const
Tests if this ArchSpec is valid.
llvm::Triple & GetTriple()
Architecture triple accessor.
void MergeFrom(const ArchSpec &other)
Merges fields from another ArchSpec into this ArchSpec.
const char * GetArchitectureName() const
Returns a static string representing the current architecture.
A command line argument class.
size_t GetArgumentCount() const
Gets the number of arguments left in this command object.
const char * GetArgumentAtIndex(size_t idx) const
Gets the null-terminated C string argument pointer for the argument at index idx.
bool AddBreakpointID(BreakpointID bp_id)
BreakpointID GetBreakpointIDAtIndex(size_t index) const
lldb::break_id_t GetBreakpointID() const
static bool StringIsBreakpointName(llvm::StringRef str, Status &error)
Takes an input string and checks to see whether it is a breakpoint name.
General Outline: Allows adding and removing breakpoints and find by ID and index.
BreakpointIterable Breakpoints()
void GetListMutex(std::unique_lock< std::recursive_mutex > &lock)
Sets the passed in Locker to hold the Breakpoint List mutex.
void ResetHitCounts()
Resets the hit count of all breakpoints.
size_t GetSize() const
Returns the number of elements in this breakpoint list.
lldb::BreakpointSP GetBreakpointAtIndex(size_t i) const
Returns a shared pointer to the breakpoint with index i.
void MergeInto(const Permissions &incoming)
llvm::StringRef GetName() const
Permissions & GetPermissions()
BreakpointOptions & GetOptions()
void ConfigureBreakpoint(lldb::BreakpointSP bp_sp)
"lldb/Breakpoint/BreakpointOptions.h" Class that manages the options on a breakpoint or breakpoint lo...
void CopyOverSetOptions(const BreakpointOptions &rhs)
Copy over only the options set in the incoming BreakpointOptions.
"lldb/Breakpoint/BreakpointResolverFileLine.h" This class sets breakpoints by file and line.
"lldb/Breakpoint/BreakpointResolverFileRegex.h" This class sets breakpoints by file and line.
"lldb/Breakpoint/BreakpointResolverName.h" This class sets breakpoints on a given function name,...
"lldb/Breakpoint/BreakpointResolverScripted.h" This class sets breakpoints on a given Address.
static bool TypeMaskIsValid(uint64_t mask)
static std::string DescribeMask(uint64_t mask)
General Outline: A breakpoint has four main parts, a filter, a resolver, the list of breakpoint locat...
virtual StructuredData::ObjectSP SerializeToStructuredData()
static lldb::BreakpointSP CreateFromStructuredData(lldb::TargetSP target_sp, StructuredData::ObjectSP &data_object_sp, Status &error)
static lldb::BreakpointSP CopyFromBreakpoint(lldb::TargetSP new_target, const Breakpoint &bp_to_copy_from)
static const char * GetSerializationKey()
static bool SerializedBreakpointMatchesNames(StructuredData::ObjectSP &bkpt_object_sp, std::vector< std::string > &names)
bool EventTypeHasListeners(uint32_t event_type)
Broadcaster(lldb::BroadcasterManagerSP manager_sp, std::string name)
Construct with a broadcaster with a name.
void SetEventName(uint32_t event_mask, const char *name)
Set the name for an event bit.
void BroadcastEvent(lldb::EventSP &event_sp)
Broadcast an event which has no associated data.
void CheckInWithManager()
A class that implements CRTP-based "virtual constructor" idiom.
void SetStopOnContinue(bool stop_on_continue)
void SetPrintErrors(bool print_errors)
void SetEchoCommands(bool echo_commands)
void SetAddToHistory(bool add_to_history)
void SetStopOnError(bool stop_on_error)
void SetPrintResults(bool print_results)
void HandleCommands(const StringList &commands, const ExecutionContext &context, const CommandInterpreterRunOptions &options, CommandReturnObject &result)
Execute a list of commands in sequence.
void SetImmediateErrorStream(const lldb::StreamSP &stream_sp)
void SetInteractive(bool b)
void SetImmediateOutputStream(const lldb::StreamSP &stream_sp)
lldb::ReturnStatus GetStatus() const
Generic representation of a type in a programming language.
A uniqued constant string class.
A subclass of DataBuffer that stores a data buffer on the heap.
lldb::offset_t GetByteSize() const override
Get the number of bytes in the data buffer.
A class to manage flag bits.
static const FileSpecList & GetDefaultSafeAutoLoadPaths()
void SetAsyncExecution(bool async)
CommandInterpreter & GetCommandInterpreter()
lldb::StreamUP GetAsyncErrorStream()
TargetList & GetTargetList()
Get accessor for the target list.
static void ReportWarning(std::string message, std::optional< lldb::user_id_t > debugger_id=std::nullopt, std::once_flag *once=nullptr)
Report warning events.
static llvm::ThreadPoolInterface & GetThreadPool()
Shared thread pool. Use only with ThreadPoolTaskGroup.
static void ReportError(std::string message, std::optional< lldb::user_id_t > debugger_id=std::nullopt, std::once_flag *once=nullptr)
Report error events.
PlatformList & GetPlatformList()
lldb::ListenerSP GetListener()
llvm::Error GetAsError(lldb::ExpressionResults result, llvm::Twine message={}) const
Returns an ExpressionError with arg as error code.
static lldb::DisassemblerSP DisassembleBytes(const ArchSpec &arch, const char *plugin_name, const char *flavor, const char *cpu, const char *features, const Address &start, const void *bytes, size_t length, uint32_t max_num_instructions, bool data_from_file)
A class that measures elapsed time in an exception safe way.
EvaluateExpressionOptions()
bool GetCppIgnoreContextQualifiers() const
void SetCppIgnoreContextQualifiers(bool value)
const StructuredData::Dictionary & GetLanguageOptions() const
llvm::Expected< bool > GetBooleanLanguageOption(llvm::StringRef option_name) const
Get the language-plugin specific boolean option called option_name.
llvm::Error SetBooleanLanguageOption(llvm::StringRef option_name, bool value)
Set language-plugin specific option called option_name to the specified boolean value.
StructuredData::DictionarySP m_language_options_sp
Dictionary mapping names of language-plugin specific options to values.
virtual llvm::StringRef GetFlavor() const =0
"lldb/Target/ExecutionContextScope.h" Inherit from this if your object can reconstruct its execution ...
virtual void CalculateExecutionContext(ExecutionContext &exe_ctx)=0
Reconstruct the object's execution context into sc.
"lldb/Target/ExecutionContext.h" A class that contains an execution context.
void Clear()
Clear the object's state.
void SetTargetPtr(Target *target)
Set accessor to set only the target shared pointer from a target pointer.
StackFrame * GetFramePtr() const
Returns a pointer to the frame object.
void SetContext(const lldb::TargetSP &target_sp, bool get_process)
Target * GetTargetPtr() const
Returns a pointer to the target object.
Thread & GetThreadRef() const
Returns a reference to the thread object.
Represents a file descriptor action to be performed during process launch.
const FileSpec & GetFileSpec() const
Get the file specification for open actions.
const FileSpec & GetFileSpecAtIndex(size_t idx) const
Get file at index.
void Append(const FileSpec &file)
Append a FileSpec object to the list.
size_t GetSize() const
Get the number of files in the file list.
bool AppendIfUnique(const FileSpec &file)
Append a FileSpec object if unique.
void AppendPathComponent(llvm::StringRef component)
void SetFilename(llvm::StringRef filename)
Filename string set accessor.
void SetPath(llvm::StringRef p)
Temporary helper for FileSystem change.
llvm::StringRef GetFilename() const
Filename string const get accessor.
llvm::StringRef GetDirectory() const
Directory string const get accessor.
size_t GetPath(char *path, size_t max_path_length, bool denormalize=true) const
Extract the full path to the file.
void SetDirectory(llvm::StringRef directory)
Directory string set accessor.
bool IsSourceImplementationFile() const
Returns true if the filespec represents an implementation source file (files with a "....
bool Exists(const FileSpec &file_spec) const
Returns whether the given file exists.
bool IsDirectory(const FileSpec &file_spec) const
Returns whether the given path is a directory.
static FileSystem & Instance()
bool IsValid() const override
IsValid.
bool Test(ValueType bit) const
Test a single flag bit.
ValueType Set(ValueType mask)
Set one or more flags by logical OR'ing mask with the current flags.
Encapsulates a function that can be called.
static lldb::BreakpointSP CreateExceptionBreakpoint(Target &target, lldb::LanguageType language, bool catch_bp, bool throw_bp, bool is_internal=false)
static LanguageSet GetLanguagesSupportingREPLs()
static Language * FindPlugin(lldb::LanguageType language)
static const char * GetNameForLanguageType(lldb::LanguageType language)
Returns the internal LLDB name for the specified language.
static LanguageSet GetLanguagesSupportingTypeSystemsForExpressions()
virtual llvm::StringRef GetUserEntryPointName() const
static std::set< lldb::LanguageType > GetSupportedLanguages()
static lldb::ListenerSP MakeListener(llvm::StringRef name)
A collection class for Module objects.
static Status GetSharedModule(const ModuleSpec &module_spec, lldb::ModuleSP &module_sp, llvm::SmallVectorImpl< lldb::ModuleSP > *old_modules, bool *did_create_ptr, bool invoke_locate_callback=true, bool invoke_symbol_locators=true)
bool AnyOf(std::function< bool(lldb_private::Module &module)> const &callback) const
Returns true if 'callback' returns true for one of the modules in this ModuleList.
static bool RemoveSharedModuleIfOrphaned(const lldb::ModuleWP module_ptr)
void PreloadSymbols(bool parallelize) const
For each module in this ModuleList, preload its symbols.
bool AppendIfNeeded(const lldb::ModuleSP &new_module, bool notify=true)
Append a module to the module list, if it is not already there.
void FindModules(const ModuleSpec &module_spec, ModuleList &matching_module_list) const
Finds modules whose file specification matches module_spec.
lldb::ModuleSP GetModuleAtIndex(size_t idx) const
Get the module shared pointer for the module at index idx.
void Append(const lldb::ModuleSP &module_sp, bool notify=true)
Append a module to the module list.
bool LoadScriptingResourcesInTarget(Target *target, std::list< Status > &errors, bool continue_on_error=true)
size_t GetSize() const
Gets the size of the module list.
void ForEach(std::function< IterationAction(const lldb::ModuleSP &module_sp)> const &callback) const
Applies 'callback' to each module in this ModuleList.
void SetTarget(lldb::TargetSP target)
Set the target to be used when resolving a module.
A class that describes an executable image and its associated object and symbol files.
virtual ObjectFile * GetObjectFile()
Get the object file representation for the current architecture.
const FileSpec & GetFileSpec() const
Get const accessor for the module file specification.
A plug-in interface definition class for object file parsers.
virtual uint32_t GetDependentModules(FileSpecList &file_list)=0
Extract the dependent modules from an object file.
virtual lldb_private::Address GetEntryPointAddress()
Returns the address of the Entry Point in this object file - if the object file doesn't have an entry...
@ eTypeExecutable
A normal executable.
@ eTypeDebugInfo
An object file that contains only debug information.
@ eTypeStubLibrary
A library that can be linked against but not used for execution.
@ eTypeObjectFile
An intermediate object file.
@ eTypeDynamicLinker
The platform's dynamic linker executable.
@ eTypeCoreFile
A core file that has a checkpoint of a program's execution state.
@ eTypeSharedLibrary
A shared library that can be used during execution.
virtual size_t ReadSectionData(Section *section, lldb::offset_t section_offset, void *dst, size_t dst_len)
void AppendCurrentValue(const FileSpec &value)
const lldb::DataBufferSP & GetFileContents()
PathMappingList & GetCurrentValue()
auto GetPropertyAtIndexAs(size_t idx, const ExecutionContext *exe_ctx=nullptr) const
Property * ProtectedGetPropertyAtIndex(size_t idx)
bool SetPropertyAtIndex(size_t idx, T t, const ExecutionContext *exe_ctx=nullptr) const
static lldb::OptionValuePropertiesSP CreateLocalCopy(const Properties &global_properties)
bool RemapPath(llvm::StringRef path, std::string &new_path) const
std::optional< llvm::StringRef > ReverseRemapPath(const FileSpec &file, FileSpec &fixed) const
Perform reverse source path remap for input file.
static std::unique_ptr< Architecture > CreateArchitectureInstance(const ArchSpec &arch)
static lldb::RegisterTypeBuilderSP GetRegisterTypeBuilder(Target &target)
static PolicyStack & Get()
bool ProcessInfoSpecified() const
lldb::ListenerSP GetListenerForProcess(Debugger &debugger)
llvm::StringRef GetProcessPluginName() const
void SetHijackListener(const lldb::ListenerSP &listener_sp)
void SetExecutableFile(const FileSpec &exe_file, bool add_exe_file_as_first_arg)
lldb::ScriptedMetadataSP GetScriptedMetadata() const
lldb::ListenerSP GetHijackListener() const
llvm::StringRef GetArg0() const
void SetScriptedMetadata(lldb::ScriptedMetadataSP metadata_sp)
FileSpec & GetExecutableFile()
lldb::ListenerSP GetListener() const
lldb::ListenerSP GetShadowListener() const
Environment & GetEnvironment()
bool IsScriptedProcess() const
ArchSpec & GetArchitecture()
llvm::StringRef GetProcessPluginName() const
const FileSpec & GetShell() const
llvm::Error SetUpPtyRedirection()
bool AppendOpenFileAction(int fd, const FileSpec &file_spec, bool read, bool write)
bool AppendSuppressFileAction(int fd, bool read, bool write)
const FileAction * GetFileActionForFD(int fd) const
void SetProcessPluginName(llvm::StringRef plugin)
static void SettingsInitialize()
static constexpr llvm::StringRef AttachSynchronousHijackListenerName
static lldb::ProcessSP FindPlugin(lldb::TargetSP target_sp, llvm::StringRef plugin_name, lldb::ListenerSP listener_sp, const FileSpec *crash_file_path, bool can_connect)
Find a Process plug-in that can debug module using the currently selected architecture.
static constexpr llvm::StringRef LaunchSynchronousHijackListenerName
static ProcessProperties & GetGlobalProperties()
static void SettingsTerminate()
A Progress indicator helper class.
lldb::OptionValuePropertiesSP m_collection_sp
T GetPropertyAtIndexAs(uint32_t idx, T default_value, const ExecutionContext *exe_ctx=nullptr) const
static llvm::StringRef GetExperimentalSettingsName()
bool SetPropertyAtIndex(uint32_t idx, T t, const ExecutionContext *exe_ctx=nullptr) const
lldb::OptionValuePropertiesSP GetValueProperties() const
const lldb::OptionValueSP & GetValue() const
static lldb::REPLSP Create(Status &Status, lldb::LanguageType language, Debugger *debugger, Target *target, const char *repl_options)
Get a REPL with an existing target (or, failing that, a debugger to use), and (optional) extra argume...
bool SignExtend(uint32_t bit_pos)
unsigned long long ULongLong(unsigned long long fail_value=0) const
long long SLongLong(long long fail_value=0) const
virtual lldb::ScriptedHookInterfaceSP CreateScriptedHookInterface()
size_t GetNumSections(uint32_t depth) const
lldb::SectionSP GetSectionAtIndex(size_t idx) const
void Dump(Stream &s, Target *target)
bool ResolveLoadAddress(lldb::addr_t load_addr, Address &so_addr, bool allow_section_end=false) const
lldb::addr_t GetSectionLoadAddress(const lldb::SectionSP §ion_sp) const
"lldb/Core/SourceLocationSpec.h" A source location specifier class.
Class that provides a registry of known stack frame recognizers.
virtual const SymbolContext & GetSymbolContext(lldb::SymbolContextItem resolve_scope)
Provide a SymbolContext for this StackFrame's current pc value.
void Clear()
Clear the object state.
static Status FromErrorStringWithFormat(const char *format,...) __attribute__((format(printf
static Status FromErrorString(const char *str)
bool Fail() const
Test for error condition.
static Status static Status FromErrorStringWithFormatv(const char *format, Args &&...args)
static Status FromError(llvm::Error error)
Avoid using this in new code. Migrate APIs to llvm::Expected instead.
bool Success() const
Test for success condition.
const char * GetData() const
llvm::StringRef GetString() const
A stream class that can stream formatted output to a file.
void Format(const char *format, Args &&... args)
Forwards the arguments to llvm::formatv and writes to the stream.
llvm::raw_ostream & AsRawOstream()
Returns a raw_ostream that forwards the data to this Stream object.
size_t Indent(llvm::StringRef s="")
Indent the current line in the stream.
size_t Printf(const char *format,...) __attribute__((format(printf
Output printf formatted output to the stream.
size_t PutCString(llvm::StringRef cstr)
Output a C string to the stream.
IndentScope MakeIndentScope(unsigned indent_amount=2)
Create an indentation scope that restores the original indent level when the object goes out of scope...
void IndentLess(unsigned amount=2)
Decrement the current indentation level.
void IndentMore(unsigned amount=2)
Increment the current indentation level.
void SetObjectSP(const StructuredData::ObjectSP &obj)
void AddItem(const ObjectSP &item)
ObjectSP GetItemAtIndex(size_t idx) const
bool GetValueForKeyAsBoolean(llvm::StringRef key, bool &result) const
ObjectSP GetValueForKey(llvm::StringRef key) const
bool HasKey(llvm::StringRef key) const
void Dump(lldb_private::Stream &s, bool pretty_print=true) const
A class which can hold structured data.
std::shared_ptr< Dictionary > DictionarySP
std::shared_ptr< Object > ObjectSP
std::shared_ptr< Array > ArraySP
static ObjectSP ParseJSONFromFile(const FileSpec &file, Status &error)
A class that wraps a std::map of SummaryStatistics objects behind a mutex.
bool SymbolContextMatches(const SymbolContext &sc)
Defines a symbol context baton that can be handed other debug core functions.
lldb::TargetSP target_sp
The Target for a given query.
TargetExperimentalProperties()
lldb::TargetSP GetTargetAtIndex(uint32_t index) const
size_t GetNumTargets() const
bool GetUseDILForCreatingValues() const
uint32_t GetMaximumSizeOfStringSummary() const
FileSpecList GetDebugFileSearchPaths()
llvm::StringRef GetLaunchWorkingDirectory() const
bool GetDisplayRecognizedArguments() const
ImportStdModule GetImportStdModule() const
bool GetDisableSTDIO() const
bool GetMoveToNearestCode() const
~TargetProperties() override
void AppendExecutableSearchPaths(const FileSpec &)
void SetInheritTCC(bool b)
bool GetEnableSyntheticValue() const
void UpdateLaunchInfoFromProperties()
ProcessLaunchInfo m_launch_info
bool GetCheckValueObjectOwnership() const
uint64_t GetExprAllocAlign() const
MemoryModuleLoadLevel GetMemoryModuleLoadLevel() const
llvm::StringRef GetArg0() const
uint32_t GetMaximumMemReadSize() const
void SetRunArguments(const Args &args)
FileSpec GetStandardErrorPath() const
void SetLoadScriptFromSymbolFile(LoadScriptFromSymFile load_style)
Set the target-wide target.load-script-from-symbol-file setting.
bool GetEnableNotifyAboutFixIts() const
bool SetPreferDynamicValue(lldb::DynamicValueType d)
void SetDisplayRecognizedArguments(bool b)
void SetUseDILForCreatingValues(bool b)
std::optional< bool > GetExperimentalPropertyValue(size_t prop_idx, ExecutionContext *exe_ctx=nullptr) const
bool GetDisableASLR() const
bool GetUseFastStepping() const
const ProcessLaunchInfo & GetProcessLaunchInfo() const
Environment ComputeEnvironment() const
void Arg0ValueChangedCallback()
bool GetUserSpecifiedTrapHandlerNames(Args &args) const
uint64_t GetExprErrorLimit() const
bool GetEnableAutoImportClangModules() const
bool GetDebugUtilityExpression() const
JITEngine GetJITEngine() const
void CheckJITObjectsDir()
bool GetSkipPrologue() const
DynamicClassInfoHelper GetDynamicClassInfoHelper() const
FileSpec GetStandardOutputPath() const
void InputPathValueChangedCallback()
void SetDisplayRuntimeSupportValues(bool b)
uint32_t GetMaximumNumberOfChildrenToDisplay() const
void SetRequireHardwareBreakpoints(bool b)
lldb::BreakpointConditionMode GetBreakpointsConditionMode() const
void SetDisableSTDIO(bool b)
bool GetAutoInstallMainExecutable() const
const char * GetDisassemblyFeatures() const
void SetAutoLoadScriptsForModule(llvm::StringRef module_name, LoadScriptFromSymFile load_style)
Set the LoadScriptFromSymFile for a module called module_name (excluding file extension).
RealpathPrefixes GetSourceRealpathPrefixes() const
void SetCheckValueObjectOwnership(bool check)
uint64_t GetNumberOfRetriesWithFixits() const
uint64_t GetExprAllocSize() const
std::optional< LoadScriptFromSymFile > GetAutoLoadScriptsForModule(llvm::StringRef module_name) const
llvm::StringRef GetExpressionPrefixContents()
PathMappingList & GetObjectPathMap() const
const char * GetDisassemblyFlavor() const
void SetPreloadSymbols(bool b)
FileSpec GetStandardInputPath() const
bool GetInheritTCC() const
void InheritTCCValueChangedCallback()
lldb::DynamicValueType GetPreferDynamicValue() const
void DisableSTDIOValueChangedCallback()
InlineStrategy GetInlineStrategy() const
Environment GetTargetEnvironment() const
bool GetDisplayRuntimeSupportValues() const
void SetDetachOnError(bool b)
void SetUserSpecifiedTrapHandlerNames(const Args &args)
bool GetUseHexImmediates() const
bool GetPreloadSymbols() const
uint32_t GetMaxZeroPaddingInFloatFormat() const
uint64_t GetExprAllocAddress() const
void DetachOnErrorValueChangedCallback()
LoadCWDlldbinitFile GetLoadCWDlldbinitFile() const
Environment GetInheritedEnvironment() const
void SetArg0(llvm::StringRef arg)
void EnvVarsValueChangedCallback()
bool GetInjectLocalVariables(ExecutionContext *exe_ctx) const
bool ShowHexVariableValuesWithLeadingZeroes() const
SourceLanguage GetLanguage() const
void OutputPathValueChangedCallback()
Environment GetEnvironment() const
void SetProcessLaunchInfo(const ProcessLaunchInfo &launch_info)
void RunArgsValueChangedCallback()
FileSpec GetSaveJITObjectsDir() const
void SetEnvironment(Environment env)
LoadScriptFromSymFile GetLoadScriptFromSymbolFile() const
const char * GetDisassemblyCPU() const
void SetStandardErrorPath(llvm::StringRef path)
bool GetRunArguments(Args &args) const
bool GetBreakpointsConsultPlatformAvoidList()
FileSpecList GetExecutableSearchPaths()
void SetDisableASLR(bool b)
ArchSpec GetDefaultArchitecture() const
Disassembler::HexImmediateStyle GetHexImmediateStyle() const
bool GetParallelModuleLoad() const
void SetUseDIL(ExecutionContext *exe_ctx, bool b)
std::unique_ptr< TargetExperimentalProperties > m_experimental_properties_up
FileSpecList GetClangModuleSearchPaths()
void SetStandardOutputPath(llvm::StringRef path)
void ErrorPathValueChangedCallback()
bool GetRequireHardwareBreakpoints() const
PathMappingList & GetSourcePathMap() const
bool GetAutoSourceMapRelative() const
bool GetUseDIL(ExecutionContext *exe_ctx) const
void SetDefaultArchitecture(const ArchSpec &arch)
void SetStandardInputPath(llvm::StringRef path)
TargetProperties(Target *target)
bool GetDisplayExpressionsInCrashlogs() const
void DisableASLRValueChangedCallback()
bool GetEnableAutoApplyFixIts() const
void SetDebugUtilityExpression(bool debug)
std::pair< uint32_t, bool > GetMaximumDepthOfChildrenToDisplay() const
Get the max depth value, augmented with a bool to indicate whether the depth is the default.
bool GetDetachOnError() const
std::unique_ptr< Architecture > m_plugin_up
const Arch & operator=(const ArchSpec &spec)
Arch(const ArchSpec &spec)
std::string DescribeTypeMask()
void GetDescription(Stream &s, lldb::DescriptionLevel level) const override
void SetActionFromString(const std::string &string)
Populate the command list by splitting a single string on newlines.
void SetActionFromStrings(const std::vector< std::string > &strings)
Populate the command list from a vector of individual command strings.
void HandleModuleLoaded(lldb::StreamSP output) override
StringList & GetCommands()
Return the list of commands that this hook runs.
StopHook::StopHookResult HandleStop(ExecutionContext &exe_ctx, lldb::StreamSP output) override
Called when the process stops.
void HandleModuleUnloaded(lldb::StreamSP output) override
llvm::StringRef GetScriptClassName() const
Status SetScriptCallback(const ScriptedMetadata &scripted_metadata)
void HandleModuleLoaded(lldb::StreamSP output) override
StopHook::StopHookResult HandleStop(ExecutionContext &exe_ctx, lldb::StreamSP output) override
Called when the process stops.
void GetDescription(Stream &s, lldb::DescriptionLevel level) const override
lldb::ScriptedHookInterfaceSP m_interface_sp
void HandleModuleUnloaded(lldb::StreamSP output) override
ThreadSpec * GetThreadSpecifier()
lldb::SymbolContextSpecifierSP m_sc_specifier_sp
bool ExecutionContextPasses(const ExecutionContext &exe_ctx)
Check if the execution context passes the specifier and thread spec filters.
void GetFilterDescription(Stream &s, lldb::DescriptionLevel level) const
Print the filter portion of the description (AutoContinue, Specifier, ThreadSpec).
lldb::TargetSP & GetTarget()
SymbolContextSpecifier * GetSCSpecifier()
lldb::TargetSP m_target_sp
virtual void GetDescription(Stream &s, lldb::DescriptionLevel level) const
void SetSCSpecifier(SymbolContextSpecifier *specifier)
Set the symbol context specifier. The hook takes ownership.
void SetThreadSpecifier(ThreadSpec *specifier)
Set the thread specifier. The hook takes ownership.
std::unique_ptr< ThreadSpec > m_thread_spec_up
StringList & GetCommands()
void SetActionFromString(const std::string &strings)
void SetActionFromStrings(const std::vector< std::string > &strings)
StopHookResult HandleStop(ExecutionContext &exc_ctx, lldb::StreamSP output_sp) override
void GetSubclassDescription(Stream &s, lldb::DescriptionLevel level) const override
lldb::ScriptedHookInterfaceSP m_interface_sp
StopHookResult HandleStop(ExecutionContext &exc_ctx, lldb::StreamSP output) override
Status SetScriptCallback(const ScriptedMetadata &scripted_metadata)
void GetSubclassDescription(Stream &s, lldb::DescriptionLevel level) const override
llvm::StringRef GetScriptClassName() const
SymbolContextSpecifier * GetSpecifier()
void SetSpecifier(SymbolContextSpecifier *specifier)
std::unique_ptr< ThreadSpec > m_thread_spec_up
void SetThreadSpecifier(ThreadSpec *specifier)
ThreadSpec * GetThreadSpecifier()
lldb::TargetSP m_target_sp
StopHook(const StopHook &rhs)
bool ExecutionContextPasses(const ExecutionContext &exe_ctx)
lldb::TargetSP & GetTarget()
lldb::SymbolContextSpecifierSP m_specifier_sp
virtual void GetSubclassDescription(Stream &s, lldb::DescriptionLevel level) const =0
void GetDescription(Stream &s, lldb::DescriptionLevel level) const
void Dump(Stream *s) const override
static llvm::StringRef GetFlavorString()
static lldb::TargetSP GetCreatedTargetFromEvent(const Event *event_ptr)
static ModuleList GetModuleListFromEvent(const Event *event_ptr)
~TargetEventData() override
static const TargetEventData * GetEventDataFromEvent(const Event *event_ptr)
lldb::TargetSP m_created_target_sp
TargetEventData(const lldb::TargetSP &target_sp)
lldb::TargetSP m_target_sp
static lldb::TargetSP GetTargetFromEvent(const Event *event_ptr)
void ModulesDidLoad(ModuleList &module_list)
This call may preload module symbols, and may do so in parallel depending on the following target set...
lldb::ThreadSP CalculateThread() override
llvm::Expected< uint32_t > AddScriptedFrameProviderDescriptor(const ScriptedFrameProviderDescriptor &descriptor)
Add or update a scripted frame provider descriptor for this target.
StopHookCollection m_stop_hooks
Module * GetExecutableModulePointer()
void Dump(Stream *s, lldb::DescriptionLevel description_level)
Dump a description of this object to a Stream.
bool m_suppress_stop_hooks
void DisableAllBreakpoints(bool internal_also=false)
lldb::ModuleWP m_executable_module_wp
The marked main executable. Weak, so it can't outlive its image.
bool RemoveHookByID(lldb::user_id_t uid)
lldb::WatchpointSP CreateWatchpoint(lldb::addr_t addr, size_t size, const CompilerType *type, uint32_t kind, Status &error)
void ApplyNameToBreakpoints(BreakpointName &bp_name)
lldb::user_id_t m_hook_next_id
std::recursive_mutex * GetAPIMutexForCurrentPolicy()
The mutex the calling thread must serialize on for its current policy, or nullptr when that policy by...
lldb::TraceSP GetTrace()
Get the Trace object containing processor trace information of this target.
PathMappingList & GetImageSearchPathList()
void FinalizeFileActions(ProcessLaunchInfo &info)
lldb::addr_t GetCallableLoadAddress(lldb::addr_t load_addr, AddressClass addr_class=AddressClass::eInvalid) const
Get load_addr as a callable code load address for this target.
lldb::addr_t GetOpcodeLoadAddress(lldb::addr_t load_addr, AddressClass addr_class=AddressClass::eInvalid) const
Get load_addr as an opcode for this target.
lldb::BreakpointSP CreateScriptedBreakpoint(const llvm::StringRef class_name, const FileSpecList *containingModules, const FileSpecList *containingSourceFiles, bool internal, bool request_hardware, StructuredData::ObjectSP extra_args_sp, Status *creation_error=nullptr)
static Target * GetTargetFromContexts(const ExecutionContext *exe_ctx_ptr, const SymbolContext *sc_ptr)
lldb::addr_t GetBreakableLoadAddress(lldb::addr_t addr)
void ClearDummySignals(Args &signal_names)
Clear the dummy signals in signal_names from the target, or all signals if signal_names is empty.
static void ImageSearchPathsChanged(const PathMappingList &path_list, void *baton)
llvm::Expected< lldb_private::Address > GetEntryPointAddress()
This method will return the address of the starting function for this binary, e.g.
bool IgnoreWatchpointByID(lldb::watch_id_t watch_id, uint32_t ignore_count)
lldb::BreakpointSP CreateFuncRegexBreakpoint(const FileSpecList *containingModules, const FileSpecList *containingSourceFiles, RegularExpression func_regexp, lldb::LanguageType requested_language, LazyBool skip_prologue, bool internal, bool request_hardware)
lldb::BreakpointSP GetBreakpointByID(lldb::break_id_t break_id)
std::shared_ptr< StopHook > StopHookSP
void SymbolsDidLoad(ModuleList &module_list)
bool ClearAllWatchpointHistoricValues()
void MarkExecutableModule(const lldb::ModuleSP &module_sp)
Make module_sp the main executable without clearing the other images, unlike RebuildModuleListWithExe...
const std::vector< StopHookSP > GetStopHooks(bool internal=false) const
void SetTrace(const lldb::TraceSP &trace_sp)
Set the Trace object containing processor trace information of this target.
BreakpointList & GetBreakpointList(bool internal=false)
uint32_t m_next_frame_provider_id
lldb_private::SummaryStatisticsCache & GetSummaryStatisticsCache()
const llvm::MapVector< uint32_t, ScriptedFrameProviderDescriptor > & GetScriptedFrameProviderDescriptors() const
Get all scripted frame provider descriptors for this target.
lldb::addr_t GetSectionLoadAddress(const lldb::SectionSP §ion_sp)
llvm::StringRef GetABIName() const
Returns the name of the target's ABI plugin.
SourceManager & GetSourceManager()
lldb::SearchFilterSP GetSearchFilterForModuleList(const FileSpecList *containingModuleList)
StopHookSP GetStopHookByID(lldb::user_id_t uid)
llvm::StringMap< DummySignalValues > m_dummy_signals
These are used to set the signal state when you don't have a process and more usefully in the Dummy t...
lldb::user_id_t AddBreakpointResolverOverride(BreakpointResolverOverrideUP override_up)
Add a breakpoint override resolver. This version can't fail.
lldb::ProcessSP m_process_sp
Debugger & GetDebugger() const
lldb::SearchFilterSP m_search_filter_sp
PersistentExpressionState * GetPersistentExpressionStateForLanguage(lldb::LanguageType language)
void UpdateSignalsFromDummy(lldb::UnixSignalsSP signals_sp, lldb::StreamSP warning_stream_sp)
Updates the signals in signals_sp using the stored dummy signals.
bool m_is_dummy_target
Used to not run stop hooks for expressions.
static bool UpdateSignalFromDummy(lldb::UnixSignalsSP signals_sp, const DummySignalElement &element)
PathMappingList m_image_search_paths
bool ModuleIsExcludedForUnconstrainedSearches(const FileSpec &module_spec)
Return whether this FileSpec corresponds to a module that should be considered for general searches.
lldb::StackFrameSP CalculateStackFrame() override
SectionLoadList & GetSectionLoadList()
lldb::addr_t GetPersistentSymbol(ConstString name)
TargetAPIMutex GetAPIMutex()
Returns a handle resolved to the mutex to serialize on before touching the target through the SB API.
void PrimeFromDummyTarget(Target &target)
bool RemoveScriptedFrameProviderDescriptor(uint32_t id)
Remove a scripted frame provider descriptor by id.
lldb::RegisterTypeBuilderSP m_register_type_builder_sp
static void SettingsTerminate()
bool EnableWatchpointByID(lldb::watch_id_t watch_id)
void DeleteBreakpointName(llvm::StringRef name)
HookSP CreateHook(Hook::HookKind kind)
bool ResolveFileAddress(lldb::addr_t load_addr, Address &so_addr)
bool ClearAllWatchpointHitCounts()
CompilerType GetRegisterType(const RegisterInfo ®_info)
size_t ReadMemoryFromFileCache(const Address &addr, void *dst, size_t dst_len, Status &error)
void ClearAllLoadedSections()
std::vector< lldb::TypeSystemSP > GetScratchTypeSystems(bool create_on_demand=true)
size_t ReadScalarIntegerFromMemory(const Address &addr, uint32_t byte_size, bool is_signed, Scalar &scalar, Status &error, bool force_live_memory=false)
void AddNameToBreakpoint(BreakpointID &id, llvm::StringRef name, Status &error)
void DumpSectionLoadList(Stream &s)
void DeleteCurrentProcess()
BreakpointList m_internal_breakpoint_list
int64_t ReadSignedIntegerFromMemory(const Address &addr, size_t integer_byte_size, int64_t fail_value, Status &error, bool force_live_memory=false)
friend class TargetAPIMutex
void DisableAllowedBreakpoints()
bool SetHookEnabledStateByID(lldb::user_id_t uid, bool enabled)
bool SetSectionUnloaded(const lldb::SectionSP §ion_sp)
lldb::TargetSP CalculateTarget() override
const lldb::ProcessSP & GetProcessSP() const
void ClearModules(bool delete_locations)
void RemoveNameFromBreakpoint(lldb::BreakpointSP &bp_sp, llvm::StringRef name)
BreakpointNameMap m_breakpoint_names
bool RemoveBreakpointByID(lldb::break_id_t break_id)
llvm::MapVector< uint32_t, ScriptedFrameProviderDescriptor > m_frame_provider_descriptors
Map of scripted frame provider descriptors for this target.
static bool ResetSignalFromDummy(lldb::UnixSignalsSP signals_sp, const DummySignalElement &element)
Architecture * GetArchitecturePlugin() const
lldb::ModuleSP GetOrCreateModule(const ModuleSpec &module_spec, bool notify, Status *error_ptr=nullptr, bool invoke_symbol_locators=true)
Find a binary on the system and return its Module, or return an existing Module that is already in th...
llvm::json::Value ReportStatistics(const lldb_private::StatisticsOptions &options)
Get metrics associated with this target in JSON format.
FunctionCaller * GetFunctionCallerForLanguage(lldb::LanguageType language, const CompilerType &return_type, const Address &function_address, const ValueList &arg_value_list, const char *name, Status &error)
void EnableAllBreakpoints(bool internal_also=false)
Status Launch(ProcessLaunchInfo &launch_info, Stream *stream)
bool DisableBreakpointByID(lldb::break_id_t break_id)
lldb::BreakpointSP CreateBreakpointAtUserEntry(Status &error)
llvm::Expected< lldb::TraceSP > CreateTrace()
Create a Trace object for the current target using the using the default supported tracing technology...
lldb::TraceSP m_trace_sp
An optional lldb_private::Trace object containing processor trace information of this target.
bool RemoveAllWatchpoints(bool end_to_end=true)
bool ReadPointerFromMemory(const Address &addr, Status &error, Address &pointer_addr, bool force_live_memory=false)
void UndoCreateStopHook(lldb::user_id_t uid)
If you tried to create a stop hook, and that failed, call this to remove the stop hook,...
WatchpointList m_watchpoint_list
BreakpointList m_breakpoint_list
void DescribeBreakpointOverrides(Stream &stream, std::vector< lldb::user_id_t > &idxs, uint32_t terminal_width, bool use_color)
Describe the breakpoint overrides.
lldb::SourceManagerUP m_source_manager_up
bool RemoveWatchpointByID(lldb::watch_id_t watch_id)
bool ResolveLoadAddress(lldb::addr_t load_addr, Address &so_addr, uint32_t stop_id=SectionLoadHistory::eStopIDNow, bool allow_section_end=false)
size_t ReadStringFromMemory(const Address &addr, char *dst, size_t max_bytes, Status &error, size_t type_width, bool force_live_memory=true)
Read a null-terminated string from memory.
HookSP GetHookByID(lldb::user_id_t uid)
void NotifyWillClearList(const ModuleList &module_list) override
bool SetArchitecture(const ArchSpec &arch_spec, bool set_platform=false, bool merge=true)
Set the architecture for this target.
void NotifyModuleAdded(const ModuleList &module_list, const lldb::ModuleSP &module_sp) override
Implementing of ModuleList::Notifier.
llvm::Expected< lldb::TypeSystemSP > GetScratchTypeSystemForLanguage(lldb::LanguageType language, bool create_on_demand=true)
void ConfigureBreakpointName(BreakpointName &bp_name, const BreakpointOptions &options, const BreakpointName::Permissions &permissions)
lldb_private::SummaryStatisticsSP GetSummaryStatisticsSPForProviderName(lldb_private::TypeSummaryImpl &summary_provider)
lldb::SearchFilterSP GetSearchFilterForModuleAndCUList(const FileSpecList *containingModules, const FileSpecList *containingSourceFiles)
lldb::ModuleSP GetExecutableModule()
Gets the module for the main executable.
bool SetStopHookActiveStateByID(lldb::user_id_t uid, bool active_state)
const lldb::ProcessSP & CreateProcess(lldb::ListenerSP listener_sp, llvm::StringRef plugin_name, const FileSpec *crash_file, bool can_connect)
void SetAllStopHooksActiveState(bool active_state)
std::vector< StopHookSP > m_internal_stop_hooks
lldb::ExpressionVariableSP GetPersistentVariable(ConstString name)
void NotifyModulesRemoved(lldb_private::ModuleList &module_list) override
StopHookSP CreateStopHook(StopHook::StopHookKind kind, bool internal=false)
Add an empty stop hook to the Target's stop hook list, and returns a shared pointer to the new hook.
size_t ReadCStringFromMemory(const Address &addr, std::string &out_str, Status &error, bool force_live_memory=false)
void SetAllHooksEnabledState(bool enabled)
std::recursive_mutex m_mutex
An API mutex that is used by the lldb::SB* classes make the SB interface thread safe.
std::recursive_mutex m_frame_provider_descriptors_mutex
lldb::user_id_t m_target_unique_id
The globally unique ID assigned to this target.
void ModulesDidUnload(ModuleList &module_list, bool delete_locations)
void CalculateExecutionContext(ExecutionContext &exe_ctx) override
Reconstruct the object's execution context into sc.
llvm::Expected< lldb::DisassemblerSP > ReadInstructions(const Address &start_addr, uint32_t count, const char *flavor_string=nullptr)
llvm::Expected< lldb::TraceSP > GetTraceOrCreate()
If a Trace object is present, this returns it, otherwise a new Trace is created with Trace::CreateTra...
void NotifyModuleUpdated(const ModuleList &module_list, const lldb::ModuleSP &old_module_sp, const lldb::ModuleSP &new_module_sp) override
SummaryStatisticsCache m_summary_statistics_cache
Status SerializeBreakpointsToFile(const FileSpec &file, const BreakpointIDList &bp_ids, bool append)
void DidExec()
Called as the last function in Process::DidExec().
void SaveScriptedLaunchInfo(lldb_private::ProcessInfo &process_info)
lldb::user_id_t m_stop_hook_next_id
void RemoveAllStopHooks()
static FileSpecList GetDefaultExecutableSearchPaths()
lldb::BreakpointSP CreateExceptionBreakpoint(enum lldb::LanguageType language, bool catch_bp, bool throw_bp, bool internal, Args *additional_args=nullptr, Status *additional_args_error=nullptr)
void NotifyBreakpointChanged(Breakpoint &bp, lldb::BreakpointEventType event_kind)
Sends a breakpoint notification event.
lldb::SearchFilterSP GetSearchFilterForModule(const FileSpec *containingModule)
llvm::StringMapEntry< DummySignalValues > DummySignalElement
static llvm::StringRef GetStaticBroadcasterClass()
static FileSpecList GetDefaultDebugFileSearchPaths()
void EnableAllowedBreakpoints()
virtual size_t ReadMemory(const Address &addr, void *dst, size_t dst_len, Status &error, bool force_live_memory=false, lldb::addr_t *load_addr_ptr=nullptr, bool *did_read_live_memory=nullptr)
llvm::Error SetLabel(llvm::StringRef label)
Set a label for a target.
uint32_t m_latest_stop_hook_id
void RunModuleHooks(bool is_load)
std::map< lldb::user_id_t, BreakpointResolverOverrideUP > m_breakpoint_overrides
void RemoveAllowedBreakpoints()
bool DisableAllWatchpoints(bool end_to_end=true)
bool RunStopHooks(bool at_initial_stop=false)
void ClearSectionLoadList()
lldb::addr_t GetReasonableReadSize(const Address &addr)
Return a recommended size for memory reads at addr, optimizing for cache usage.
lldb::PlatformSP m_platform_sp
The platform for this target.
void UndoCreateHook(lldb::user_id_t uid)
Removes the most recently created hook.
llvm::Expected< std::unique_ptr< UtilityFunction > > CreateUtilityFunction(std::string expression, std::string name, lldb::LanguageType language, ExecutionContext &exe_ctx)
Creates and installs a UtilityFunction for the given language.
FileSpecList GetSafeAutoLoadPaths() const
Get the list of paths that LLDB will consider automatically loading scripting resources from.
static TargetProperties & GetGlobalProperties()
Status Install(ProcessLaunchInfo *launch_info)
HookSP GetHookAtIndex(size_t index)
lldb::PlatformSP GetPlatform()
void NotifyModuleRemoved(const ModuleList &module_list, const lldb::ModuleSP &module_sp) override
lldb::BreakpointSP CreateAddressInModuleBreakpoint(lldb::addr_t file_addr, bool internal, const FileSpec &file_spec, bool request_hardware)
lldb::BreakpointSP CreateBreakpoint(const FileSpecList *containingModules, const FileSpec &file, uint32_t line_no, uint32_t column, lldb::addr_t offset, LazyBool check_inlines, LazyBool skip_prologue, bool internal, bool request_hardware, LazyBool move_to_nearest_code)
void RemoveAllBreakpoints(bool internal_also=false)
lldb::BreakpointSP CreateSourceRegexBreakpoint(const FileSpecList *containingModules, const FileSpecList *source_file_list, const std::unordered_set< std::string > &function_names, RegularExpression source_regex, bool internal, bool request_hardware, LazyBool move_to_nearest_code)
static ArchSpec GetDefaultArchitecture()
void ResetBreakpointHitCounts()
Resets the hit count of all breakpoints.
std::unique_ptr< BreakpointResolverOverride > BreakpointResolverOverrideUP
const ModuleList & GetImages() const
Get accessor for the images for this process.
const ArchSpec & GetArchitecture() const
WatchpointList & GetWatchpointList()
@ eBroadcastBitModulesLoaded
@ eBroadcastBitSymbolsLoaded
@ eBroadcastBitModulesUnloaded
@ eBroadcastBitWatchpointChanged
@ eBroadcastBitBreakpointChanged
@ eBroadcastBitNewTargetCreated
bool EnableBreakpointByID(lldb::break_id_t break_id)
uint64_t ReadUnsignedIntegerFromMemory(const Address &addr, size_t integer_byte_size, uint64_t fail_value, Status &error, bool force_live_memory=false)
void InvalidateThreadFrameProviders()
Invalidate all potentially cached frame providers for all threads and trigger a stack changed event f...
bool IgnoreAllWatchpoints(uint32_t ignore_count)
void AddBreakpoint(lldb::BreakpointSP breakpoint_sp, bool internal)
std::string m_target_session_name
The target session name for this target, used to name debugging sessions in DAP.
TypeSystemMap m_scratch_type_system_map
void AddBreakpointName(std::unique_ptr< BreakpointName > bp_name)
SectionLoadHistory m_section_load_history
lldb::BreakpointResolverSP CheckBreakpointOverrides(lldb::BreakpointResolverSP original_sp)
void GetBreakpointNames(std::vector< std::string > &names)
bool IsDummyTarget() const
Target(Debugger &debugger, const ArchSpec &target_arch, const lldb::PlatformSP &platform_sp, bool is_dummy_target)
Construct with optional file and arch.
size_t UnloadModuleSections(const lldb::ModuleSP &module_sp)
bool m_valid
This records the last natural stop at which we ran a stop-hook.
bool DisableWatchpointByID(lldb::watch_id_t watch_id)
void AddDummySignal(llvm::StringRef name, LazyBool pass, LazyBool print, LazyBool stop)
Add a signal to the Target's list of stored signals/actions.
void ClearScriptedFrameProviderDescriptors()
Clear all scripted frame provider descriptors for this target.
void RebuildModuleListWithExecutable(lldb::ModuleSP &module_sp, LoadDependentFiles load_dependent_files=eLoadDependentsDefault)
Clear the module list and rebuild it around a new main executable.
lldb::WatchpointSP m_last_created_watchpoint
Status CreateBreakpointsFromFile(const FileSpec &file, BreakpointIDList &new_bps)
void SetREPL(lldb::LanguageType language, lldb::REPLSP repl_sp)
lldb::StackFrameRecognizerManagerUP m_frame_recognizer_manager_up
Stores the frame recognizers of this target.
lldb::REPLSP GetREPL(Status &err, lldb::LanguageType language, const char *repl_options, bool can_create)
std::shared_ptr< Hook > HookSP
UserExpression * GetUserExpressionForLanguage(llvm::StringRef expr, llvm::StringRef prefix, SourceLanguage language, Expression::ResultType desired_type, const EvaluateExpressionOptions &options, ValueObject *ctx_obj, Status &error)
ModuleList m_images
The list of images for this process (shared libraries and anything dynamically loaded).
lldb::ProcessSP CalculateProcess() override
void PrintDummySignals(Stream &strm, Args &signals)
Print all the signals set in this target.
void SetPlatform(const lldb::PlatformSP &platform_sp)
bool SetSectionLoadAddress(const lldb::SectionSP §ion, lldb::addr_t load_addr, bool warn_multiple=false)
BreakpointName * FindBreakpointName(llvm::StringRef name, bool can_create, Status &error)
Status Attach(ProcessAttachInfo &attach_info, Stream *stream)
static void SetDefaultArchitecture(const ArchSpec &arch)
lldb::BreakpointSP m_last_created_breakpoint
bool RemoveStopHookByID(lldb::user_id_t uid)
static void SettingsInitialize()
bool EnableAllWatchpoints(bool end_to_end=true)
std::recursive_mutex m_private_mutex
When the private state thread calls SB API's - usually because it is running OS plugin or Python Thre...
lldb::ExpressionResults EvaluateExpression(llvm::StringRef expression, ExecutionContextScope *exe_scope, lldb::ValueObjectSP &result_valobj_sp, const EvaluateExpressionOptions &options=EvaluateExpressionOptions(), std::string *fixed_expression=nullptr, ValueObject *ctx_obj=nullptr)
bool MergeArchitecture(const ArchSpec &arch_spec)
uint32_t GetSize(bool can_update=true)
lldb::ThreadSP GetThreadAtIndex(uint32_t idx, bool can_update=true)
@ eBroadcastBitStackChanged
static llvm::Expected< lldb::TraceSP > FindPluginForLiveProcess(llvm::StringRef plugin_name, Process &process)
Find a trace plug-in to trace a live process.
Represents UUID's of various sizes.
void Dump(Stream &s) const
Encapsulates a one-time expression for use in lldb.
static lldb::ExpressionResults Evaluate(ExecutionContext &exe_ctx, const EvaluateExpressionOptions &options, llvm::StringRef expr_cstr, llvm::StringRef expr_prefix, lldb::ValueObjectSP &result_valobj_sp, std::string *fixed_expression=nullptr, ValueObject *ctx_obj=nullptr)
Evaluate one expression in the scratch context of the target passed in the exe_ctx and return its res...
void GetListMutex(std::unique_lock< std::recursive_mutex > &lock)
Sets the passed in Locker to hold the Watchpoint List mutex.
uint8_t * GetBytes()
Get a pointer to the data.
#define LLDB_WATCH_TYPE_WRITE
#define LLDB_INVALID_BREAK_ID
#define LLDB_INVALID_SIGNAL_NUMBER
#define LLDB_INVALID_INDEX32
#define LLDB_WATCH_TYPE_IS_VALID(type)
#define LLDB_BREAK_ID_IS_INTERNAL(bid)
#define LLDB_WATCH_TYPE_MODIFY
#define LLDB_WATCH_TYPE_READ
#define LLDB_INVALID_ADDRESS
#define LLDB_INVALID_PROCESS_ID
@ SelectMostRelevantFrame
void OutputWordWrappedLines(Stream &strm, llvm::StringRef text, uint32_t output_max_columns, bool use_color)
A class that represents a running process on the host machine.
@ eMemoryModuleLoadLevelPartial
@ eMemoryModuleLoadLevelComplete
@ eMemoryModuleLoadLevelMinimal
Log * GetLog(Cat mask)
Retrieve the Log object for the channel associated with the given log enum.
std::shared_ptr< SummaryStatistics > SummaryStatisticsSP
@ eLoadScriptFromSymFileTrue
@ eLoadScriptFromSymFileTrusted
@ eLoadScriptFromSymFileFalse
@ eLoadScriptFromSymFileWarn
static uint32_t bit(const uint32_t val, const uint32_t msbit)
@ eDynamicClassInfoHelperCopyRealizedClassList
@ eDynamicClassInfoHelperGetRealizedClassList
@ eDynamicClassInfoHelperAuto
@ eDynamicClassInfoHelperRealizedClassesStruct
OptionEnumValues GetDynamicValueTypes()
@ eImportStdModuleFallback
void LoadTypeSummariesForModule(lldb::ModuleSP module_sp)
Load type summaries embedded in the binary.
const char * StateAsCString(lldb::StateType state)
Converts a StateType to a C string.
llvm::ArrayRef< OptionEnumValueElement > OptionEnumValues
void LoadFormattersForModule(lldb::ModuleSP module_sp)
Load data formatters embedded in the binary.
@ eInlineBreakpointsNever
@ eInlineBreakpointsAlways
@ eInlineBreakpointsHeaders
std::shared_ptr< lldb_private::OptionValueProperties > OptionValuePropertiesSP
BreakpointConditionMode
Modes for evaluating breakpoint conditions.
std::shared_ptr< lldb_private::Trace > TraceSP
std::shared_ptr< lldb_private::TypeSystem > TypeSystemSP
std::shared_ptr< lldb_private::ABI > ABISP
std::shared_ptr< lldb_private::StackFrame > StackFrameSP
std::shared_ptr< lldb_private::SearchFilter > SearchFilterSP
std::shared_ptr< lldb_private::BreakpointResolver > BreakpointResolverSP
DescriptionLevel
Description levels for "void GetDescription(Stream *, DescriptionLevel)" calls.
@ eDescriptionLevelVerbose
std::shared_ptr< lldb_private::Thread > ThreadSP
std::shared_ptr< lldb_private::ValueObject > ValueObjectSP
std::shared_ptr< lldb_private::ExpressionVariable > ExpressionVariableSP
std::shared_ptr< lldb_private::UnixSignals > UnixSignalsSP
std::shared_ptr< lldb_private::Platform > PlatformSP
StateType
Process and Thread States.
@ eStateConnected
Process is connected to remote debug services, but not launched or attached to anything yet.
@ eStateStopped
Process or thread is stopped and can be examined.
@ eStateAttaching
Process is currently trying to attach.
@ eStateExited
Process has exited and can't be examined.
LanguageType
Programming language type.
@ eLanguageTypeMipsAssembler
Mips_Assembler.
@ eLanguageTypeUnknown
Unknown or invalid language value.
@ eLanguageTypeC
Non-standardized C, such as K&R.
std::shared_ptr< lldb_private::Stream > StreamSP
std::shared_ptr< lldb_private::Breakpoint > BreakpointSP
ExpressionResults
The results of expression evaluation.
std::shared_ptr< lldb_private::Process > ProcessSP
std::shared_ptr< lldb_private::BreakpointPrecondition > BreakpointPreconditionSP
std::shared_ptr< lldb_private::Event > EventSP
ReturnStatus
Command Return Status Types.
@ eReturnStatusSuccessContinuingResult
@ eReturnStatusSuccessContinuingNoResult
std::shared_ptr< lldb_private::Watchpoint > WatchpointSP
std::shared_ptr< lldb_private::Listener > ListenerSP
std::shared_ptr< lldb_private::DataBuffer > DataBufferSP
std::shared_ptr< lldb_private::Section > SectionSP
std::shared_ptr< lldb_private::Target > TargetSP
@ eStructuredDataTypeBoolean
std::shared_ptr< lldb_private::Module > ModuleSP
std::shared_ptr< lldb_private::OptionValue > OptionValueSP
std::shared_ptr< lldb_private::EventData > EventDataSP
std::shared_ptr< lldb_private::REPL > REPLSP
A SmallBitVector that represents a set of source languages (lldb::LanguageType).
llvm::SmallBitVector bitvector
std::optional< lldb::LanguageType > GetSingularLanguage()
If the set contains a single language only, return it.
bool can_bypass_target_api_mutex
Describes what view of the process a thread should see and what operations it is allowed to perform.
Capabilities capabilities
@ Private
Parent (unwinder) frames, private state, private run lock.
Every register is described in detail including its name, alternate name (optional),...
This struct contains the metadata needed to instantiate a frame provider and optional filters to cont...
llvm::StringRef GetName() const
Get the name of this descriptor (the scripted class name).
uint32_t GetHash() const
Get the content-based hash from ScriptedMetadata.
void SetID(uint32_t id)
Set the monotonically increasing ID for this descriptor.
bool IsValid() const
Check if this descriptor has valid metadata for script-based providers.
A type-erased pair of llvm::dwarf::SourceLanguageName and version.
lldb::LanguageType AsLanguageType() const
llvm::StringRef GetDescription() const
static TestingProperties & GetGlobalTestingProperties()
UserID(lldb::user_id_t uid=LLDB_INVALID_UID)
Construct with optional user ID.
lldb::user_id_t GetID() const
Get accessor for the user ID.
std::string triple
The triple of this executable module.
bool is_start_entry
If true, this entry was emitted at the beginning of an event (eg., before the executable is set).
UUID uuid
The same as the executable-module's UUID.
lldb::pid_t pid
PID of the process owned by this target.
Helper RAII class for collecting telemetry.
void DispatchOnExit(llvm::unique_function< void(Info *info)> final_callback)
void DispatchNow(llvm::unique_function< void(Info *info)> populate_fields_cb)