14#include "llvm/ADT/ScopeExit.h"
15#include "llvm/Support/Process.h"
16#include "llvm/Support/ScopedPrinter.h"
17#include "llvm/Support/Threading.h"
86using namespace std::chrono;
92 if (inserted || previous->second == action)
100 :
public Cloneable<ProcessOptionValueProperties, OptionValueProperties> {
116 if (
this != instance_properties)
128 "Continue tracing the parent process and detach the child.",
133 "Trace the child process and detach the parent.",
139#define LLDB_PROPERTIES_process
140#include "TargetProperties.inc"
143#define LLDB_PROPERTIES_process
144#include "TargetPropertiesEnum.inc"
147#define LLDB_PROPERTIES_process_experimental
148#include "TargetProperties.inc"
151#define LLDB_PROPERTIES_process_experimental
152#include "TargetPropertiesEnum.inc"
156 :
public Cloneable<ProcessExperimentalOptionValueProperties,
157 OptionValueProperties> {
173 if (process ==
nullptr) {
175 m_collection_sp = std::make_shared<ProcessOptionValueProperties>(
"process");
181 ePropertyMemCacheLineSize);
185 "thread",
"Settings specific to threads.",
true,
189 std::make_unique<ProcessExperimentalProperties>();
192 "Experimental settings - setting these won't produce "
193 "errors if the setting is not present.",
199 ePropertyPythonOSPluginPath,
200 [
this] {
m_process->LoadOperatingSystemPlugin(
true); });
202 ePropertyDisableLangRuntimeUnwindPlans,
205 ePropertyVirtualAddressableBits,
208 ePropertyHighmemVirtualAddressableBits,
216 const uint32_t idx = ePropertyDisableMemCache;
218 idx, g_process_properties[idx].default_uint_value != 0);
223 const uint32_t idx = ePropertyVerifyMemoryReads;
225 idx, g_process_properties[idx].default_uint_value != 0);
230 const uint32_t idx = ePropertyMemCacheLineSize;
232 idx, g_process_properties[idx].default_uint_value);
237 const uint32_t idx = ePropertyExtraStartCommand;
243 const uint32_t idx = ePropertyExtraStartCommand;
248 const uint32_t idx = ePropertyPythonOSPluginPath;
253 const uint32_t idx = ePropertyVirtualAddressableBits;
255 idx, g_process_properties[idx].default_uint_value);
259 const uint32_t idx = ePropertyVirtualAddressableBits;
264 const uint32_t idx = ePropertyHighmemVirtualAddressableBits;
266 idx, g_process_properties[idx].default_uint_value);
270 const uint32_t idx = ePropertyHighmemVirtualAddressableBits;
283 thread_sp->ClearStackFrames();
287 const uint32_t idx = ePropertyPythonOSPluginPath;
292 const uint32_t idx = ePropertyIgnoreBreakpointsInExpressions;
294 idx, g_process_properties[idx].default_uint_value != 0);
298 const uint32_t idx = ePropertyIgnoreBreakpointsInExpressions;
303 const uint32_t idx = ePropertyUnwindOnErrorInExpressions;
305 idx, g_process_properties[idx].default_uint_value != 0);
309 const uint32_t idx = ePropertyUnwindOnErrorInExpressions;
314 const uint32_t idx = ePropertyStopOnSharedLibraryEvents;
316 idx, g_process_properties[idx].default_uint_value != 0);
320 const uint32_t idx = ePropertyStopOnSharedLibraryEvents;
325 const uint32_t idx = ePropertyDisableLangRuntimeUnwindPlans;
327 idx, g_process_properties[idx].default_uint_value != 0);
331 const uint32_t idx = ePropertyDisableLangRuntimeUnwindPlans;
339 for (
auto thread_sp :
m_process->Threads()) {
340 thread_sp->ClearStackFrames();
341 thread_sp->DiscardThreadPlans(
true);
346 const uint32_t idx = ePropertyDetachKeepsStopped;
348 idx, g_process_properties[idx].default_uint_value != 0);
352 const uint32_t idx = ePropertyDetachKeepsStopped;
357 const uint32_t idx = ePropertyWarningOptimization;
359 idx, g_process_properties[idx].default_uint_value != 0);
363 const uint32_t idx = ePropertyWarningUnsupportedLanguage;
365 idx, g_process_properties[idx].default_uint_value != 0);
369 const uint32_t idx = ePropertyStopOnExec;
371 idx, g_process_properties[idx].default_uint_value != 0);
375 const uint32_t idx = ePropertyUseDelayedBreakpoints;
377 idx, g_process_properties[idx].default_uint_value != 0);
381 const uint32_t idx = ePropertyUtilityExpressionTimeout;
383 idx, g_process_properties[idx].default_uint_value);
384 return std::chrono::seconds(value);
388 const uint32_t idx = ePropertyInterruptTimeout;
390 idx, g_process_properties[idx].default_uint_value);
391 return std::chrono::seconds(value);
395 const uint32_t idx = ePropertySteppingRunsAllThreads;
397 idx, g_process_properties[idx].default_uint_value != 0);
402 const uint32_t idx = ePropertyAlwaysRunThreadNames;
415 const bool fail_value =
true;
421 .value_or(fail_value);
426 exp_values->SetPropertyAtIndex(ePropertyOSPluginReportsAllThreads,
431 const uint32_t idx = ePropertyFollowForkMode;
434 g_process_properties[idx].default_uint_value));
438 const uint32_t idx = ePropertyTrackMemoryCacheChanges;
440 idx, g_process_properties[idx].default_uint_value != 0);
444 llvm::StringRef plugin_name,
448 static std::atomic<uint32_t> g_process_unique_id{0};
452 if (!plugin_name.empty()) {
455 if (create_callback) {
456 process_sp = create_callback(target_sp, listener_sp, crash_file_path,
459 if (process_sp->CanDebug(target_sp,
true)) {
460 process_sp->m_process_unique_id = ++g_process_unique_id;
467 process_sp = create_callback(target_sp, listener_sp, crash_file_path,
470 if (process_sp->CanDebug(target_sp,
false)) {
471 process_sp->m_process_unique_id = ++g_process_unique_id;
482 static constexpr llvm::StringLiteral class_name(
"lldb.process");
495 Broadcaster((target_sp->GetDebugger().GetBroadcasterManager()),
499 "lldb.process.internal_state_broadcaster"),
501 nullptr,
"lldb.process.internal_state_control_broadcaster"),
503 Listener::MakeListener(
"lldb.process.internal_state_listener")),
529 LLDB_LOGF(log,
"%p Process::Process()",
static_cast<void *
>(
this));
567 uint64_t platform_cache_line_size =
568 target_sp->GetPlatform()->GetDefaultMemoryCacheLineSize();
569 if (!value_sp->OptionWasSet() && platform_cache_line_size != 0)
570 value_sp->SetValueAs(platform_cache_line_size);
580 LLDB_LOGF(log,
"%p Process::~Process()",
static_cast<void *
>(
this));
597 return *g_settings_ptr;
632 std::vector<Notifications> empty_notifications;
665 if (pos->baton == callbacks.
baton &&
676 std::vector<Notifications>::iterator notification_pos,
679 notification_pos != notification_end; ++notification_pos) {
680 if (notification_pos->process_state_changed)
681 notification_pos->process_state_changed(notification_pos->baton,
this,
700 std::chrono::seconds(0)) &&
714 auto Result =
m_iohandler_sync.WaitForValueNotEqualTo(iohandler_id, timeout);
720 "waited from m_iohandler_sync to change from {0}. New value is {1}.",
721 iohandler_id, *Result);
723 LLDB_LOG(log,
"timed out waiting for m_iohandler_sync to change from {0}.",
736 event_sp_ptr->reset();
744 LLDB_LOG(log,
"timeout = {0}", timeout);
749 "Process::%s returning without waiting for events; process "
750 "private and public states are already 'stopped'.",
754 if (hijack_listener_sp && use_run_lock)
762 if (event_sp_ptr && event_sp)
763 *event_sp_ptr = event_sp;
765 bool pop_process_io_handler = (hijack_listener_sp.get() !=
nullptr);
767 event_sp, stream, select_most_relevant, pop_process_io_handler);
776 if (hijack_listener_sp && use_run_lock)
785 if (hijack_listener_sp && use_run_lock)
799 bool &pop_process_io_handler) {
800 const bool handle_pop = pop_process_io_handler;
802 pop_process_io_handler =
false;
814 switch (event_state) {
822 stream->
Printf(
"Process %" PRIu64
" %s\n", process_sp->GetID(),
825 pop_process_io_handler =
true;
835 process_sp->GetStatus(*stream);
836 pop_process_io_handler =
true;
847 if (num_reasons > 0) {
850 if (num_reasons == 1) {
854 stream->
Printf(
"Process %" PRIu64
" stopped and restarted: %s\n",
856 reason ? reason :
"<UNKNOWN REASON>");
858 stream->
Printf(
"Process %" PRIu64
859 " stopped and restarted, reasons:\n",
860 process_sp->GetID());
862 for (
size_t i = 0; i < num_reasons; i++) {
866 stream->
Printf(
"\t%s\n", reason ? reason :
"<UNKNOWN REASON>");
876 ThreadList &thread_list = process_sp->GetThreadList();
877 std::lock_guard<std::recursive_mutex> guard(thread_list.
GetMutex());
881 if (curr_thread && curr_thread->IsValid())
882 curr_thread_stop_info_sp = curr_thread->GetStopInfo();
883 bool prefer_curr_thread = curr_thread_stop_info_sp &&
884 curr_thread_stop_info_sp->ShouldSelect();
886 if (!prefer_curr_thread) {
894 if (!stop_info || !stop_info->ShouldSelect())
896 StopReason thread_stop_reason = stop_info->GetStopReason();
899 plan_thread = thread;
900 }
else if (!other_thread) {
901 other_thread = thread;
906 else if (other_thread)
910 if (curr_thread && curr_thread->IsValid())
911 thread = curr_thread;
925 Debugger &debugger = process_sp->GetTarget().GetDebugger();
927 &process_sp->GetTarget()) {
928 ThreadSP thread_sp = process_sp->GetThreadList().GetSelectedThread();
930 if (!thread_sp || !thread_sp->IsValid())
933 const bool only_threads_with_stop_reason =
true;
934 const uint32_t start_frame =
935 thread_sp->GetSelectedFrameIndex(select_most_relevant);
936 const uint32_t num_frames = 1;
937 const uint32_t num_frames_with_source = 1;
938 const bool stop_format =
true;
940 process_sp->GetStatus(*stream);
941 process_sp->GetThreadStatus(*stream, only_threads_with_stop_reason,
942 start_frame, num_frames,
943 num_frames_with_source,
945 if (curr_thread_stop_info_sp) {
948 curr_thread_stop_info_sp, &crashing_address);
951 ValueObject::GetExpressionPathFormat::
952 eGetExpressionPathFormatHonorPointers;
954 valobj_sp->GetExpressionPath(*stream, format);
955 stream->
Printf(
" accessed 0x%" PRIx64
"\n", crashing_address);
960 process_sp->GetTarget().shared_from_this());
962 stream->
Printf(
"Target %d: (", target_idx);
964 stream->
PutCString(
"Target <unknown index>: (");
971 pop_process_io_handler =
true;
976 if (handle_pop && pop_process_io_handler)
977 process_sp->PopProcessIOHandler();
996 LLDB_LOG(log,
"timeout = {0}, event_sp)...", timeout);
1003 if (listener_sp->GetEventForBroadcasterWithType(
1009 LLDB_LOG(log,
"got no event or was interrupted.");
1012 LLDB_LOG(log,
"timeout = {0}, event_sp) => {1}", timeout, state);
1019 LLDB_LOGF(log,
"Process::%s...", __FUNCTION__);
1025 LLDB_LOGF(log,
"Process::%s (event_ptr) => %s", __FUNCTION__,
1028 LLDB_LOGF(log,
"Process::%s no events found", __FUNCTION__);
1036 LLDB_LOG(log,
"timeout = {0}, event_sp)...", timeout);
1046 LLDB_LOG(log,
"timeout = {0}, event_sp) => {1}", timeout,
1053 bool control_only) {
1055 LLDB_LOG(log,
"timeout = {0}, event_sp)...", timeout);
1088 LLDB_LOG(log,
"(plugin = {0} status = {1} ({1:x8}), description=\"{2}\")",
1095 "(plugin = {0}) ignoring exit status because state was already set "
1107 if (
ModuleSP mod = target_sp->GetExecutableModule())
1108 module_uuid = mod->GetUUID();
1115 info->
exit_desc = {status, exit_string.str()};
1125 if (!exit_string.empty())
1171 bool clear_unused_threads =
true;
1174 std::lock_guard<std::recursive_mutex> guard(
m_thread_list.GetMutex());
1194 size_t num_old_threads = old_thread_list.
GetSize(
false);
1195 for (
size_t i = 0; i < num_old_threads; ++i)
1228 new_thread_list = real_thread_list;
1269 bool internal,
bool condense_trivial,
1270 bool skip_unreported_plans) {
1272 strm, tid, desc_level, internal, condense_trivial, skip_unreported_plans);
1275 bool internal,
bool condense_trivial,
1276 bool skip_unreported_plans) {
1277 m_thread_plans.DumpPlans(strm, desc_level, internal, condense_trivial,
1278 skip_unreported_plans);
1311 auto [iterator, inserted] =
1316 return iterator->second;
1340 if (new_state_is_stopped) {
1351 LLDB_LOGF(log,
"(plugin = %s, state = %s, restarted = %i)",
1362 "(plugin = %s, state = %s) -- unlocking run lock for detach",
1367 if ((old_state_is_stopped != new_state_is_stopped)) {
1368 if (new_state_is_stopped && !restarted) {
1369 LLDB_LOGF(log,
"(plugin = %s, state = %s) -- unlocking run lock",
1382 LLDB_LOGF(log,
"(plugin = %s) -- SetRunning failed, not resuming.",
1385 "resume request failed - process already running");
1388 if (!
error.Success()) {
1397 LLDB_LOGF(log,
"Process::ResumeSynchronous -- locking run lock");
1399 LLDB_LOGF(log,
"Process::Resume: -- SetRunning failed, not resuming.");
1401 "resume request failed: process already running");
1409 if (
error.Success()) {
1413 const bool must_be_alive =
1417 "process not in stopped state after synchronous resume: %s",
1433 if (!hijacking_name.starts_with(
"lldb.internal"))
1462 bool state_changed =
false;
1467 std::lock_guard<std::recursive_mutex> thread_guard(
m_thread_list.GetMutex());
1471 state_changed = old_state != new_state;
1475 if (old_state_is_stopped != new_state_is_stopped) {
1476 if (new_state_is_stopped)
1482 if (state_changed) {
1503 if (!
m_mod_id.IsLastResumeForUserExpression())
1504 m_mod_id.SetStopEventForLastNaturalStopID(event_sp);
1507 LLDB_LOGF(log,
"(plugin = %s, state = %s, stop_id = %u",
1514 LLDB_LOGF(log,
"(plugin = %s, state = %s) state didn't change. Ignoring...",
1520 m_mod_id.SetRunningUserExpression(on);
1524 m_mod_id.SetRunningUtilityFunction(on);
1536 std::vector<LanguageRuntime *> language_runtimes;
1539 return language_runtimes;
1549 language_runtimes.emplace_back(runtime);
1552 return language_runtimes;
1562 LanguageRuntimeCollection::iterator pos;
1569 runtime = runtime_sp.get();
1571 runtime = pos->second.get();
1597 if (runtime->CouldHaveDynamicValue(in_value))
1627 if (
error.Success())
1642 "invalid breakpoint site ID: %" PRIu64, break_id);
1650 bool forbid_delay) {
1658 "eager breakpoint requested, but failed to flush breakpoints: {0}");
1660 auto site_sp = site.shared_from_this();
1665 return llvm::Error::success();
1669 return llvm::Error::success();
1682 llvm_unreachable(
"Unhandled BreakpointAction");
1694 "invalid breakpoint site ID: %" PRIu64, break_id);
1734 llvm_unreachable(
"unhandled process state");
1760 "warning: failed to resolve indirect function at 0x%" PRIx64
1761 " for breakpoint %i.%i: %s\n",
1763 constituent.
GetID(),
1764 error.AsCString() ?
error.AsCString() :
"unknown error");
1770 Address resolved_address(load_addr);
1794 llvm::Error
error = llvm::Error::success();
1795 for (
auto [site, action] : site_to_action) {
1806 bool use_hardware) {
1816 bp_site_sp->AddConstituent(constituent);
1817 constituent->SetBreakpointSite(bp_site_sp);
1818 return bp_site_sp->GetID();
1824 bool bp_from_address =
1825 constituent->GetBreakpoint().GetResolver()->GetResolverTy() ==
1827 bool forbid_delay = use_hardware || bp_from_address;
1831 if (
error.Success()) {
1832 constituent->SetBreakpointSite(bp_site_sp);
1839 "warning: failed to set breakpoint site at 0x%" PRIx64
1840 " for breakpoint %i.%i: %s\n",
1841 load_addr, constituent->GetBreakpoint().GetID(), constituent->GetID(),
1842 error.AsCString() ?
error.AsCString() :
"unknown error");
1850 uint32_t num_constituents =
1851 bp_site_sp->RemoveConstituent(constituent_id, constituent_loc_id);
1852 if (num_constituents == 0) {
1862 uint8_t *buf)
const {
1868 bp_sites_in_range.
ForEach([bp_addr, size,
1872 size_t intersect_size;
1873 size_t opcode_offset;
1875 &intersect_size, &opcode_offset)) {
1876 assert(bp_addr <= intersect_addr && intersect_addr < bp_addr + size);
1877 assert(bp_addr < intersect_addr + intersect_size &&
1878 intersect_addr + intersect_size <= bp_addr + size);
1879 assert(opcode_offset + intersect_size <= bp_site->GetByteSize());
1880 size_t buf_offset = intersect_addr - bp_addr;
1881 ::memcpy(buf + buf_offset,
1891 if (!data_buffer_sp || data_buffer_sp->GetByteSize() == 0)
1895 data_buffer_sp->GetBytes());
1902 return platform_sp->GetSoftwareBreakpointTrapOpcode(
GetTarget(), bp_site);
1908 assert(bp_site !=
nullptr);
1912 log,
"Process::EnableSoftwareBreakpoint (site_id = %d) addr = 0x%" PRIx64,
1913 bp_site->
GetID(), (uint64_t)bp_addr);
1917 "Process::EnableSoftwareBreakpoint (site_id = %d) addr = 0x%" PRIx64
1918 " -- already enabled",
1919 bp_site->
GetID(), (uint64_t)bp_addr);
1925 "BreakpointSite contains an invalid load address.");
1932 if (bp_opcode_size == 0) {
1934 "Process::GetSoftwareBreakpointTrapOpcode() "
1935 "returned zero, unable to get breakpoint "
1936 "trap for address 0x%" PRIx64,
1941 if (bp_opcode_bytes ==
nullptr) {
1943 "BreakpointSite doesn't contain a valid breakpoint trap opcode.");
1949 error) == bp_opcode_size) {
1953 uint8_t verify_bp_opcode_bytes[64];
1954 if (
DoReadMemory(bp_addr, verify_bp_opcode_bytes, bp_opcode_size,
1955 error) == bp_opcode_size) {
1956 if (::memcmp(bp_opcode_bytes, verify_bp_opcode_bytes,
1957 bp_opcode_size) == 0) {
1961 "Process::EnableSoftwareBreakpoint (site_id = %d) "
1962 "addr = 0x%" PRIx64
" -- SUCCESS",
1963 bp_site->
GetID(), (uint64_t)bp_addr);
1966 "failed to verify the breakpoint trap in memory.");
1969 "Unable to read memory to verify breakpoint trap.");
1972 "Unable to write breakpoint trap to memory.");
1975 "Unable to read memory at breakpoint address.");
1977 if (log &&
error.Fail())
1980 "Process::EnableSoftwareBreakpoint (site_id = %d) addr = 0x%" PRIx64
1982 bp_site->
GetID(), (uint64_t)bp_addr,
error.AsCString());
1988 assert(bp_site !=
nullptr);
1993 "Process::DisableSoftwareBreakpoint (breakID = %" PRIu64
1994 ") addr = 0x%" PRIx64,
1995 breakID, (uint64_t)bp_addr);
2001 const size_t break_op_size = bp_site->
GetByteSize();
2003 if (break_op_size > 0) {
2005 uint8_t curr_break_op[8];
2006 assert(break_op_size <=
sizeof(curr_break_op));
2007 bool break_op_found =
false;
2012 bool verify =
false;
2014 if (::memcmp(curr_break_op, break_op, break_op_size) == 0) {
2015 break_op_found =
true;
2019 break_op_size,
error) == break_op_size) {
2023 "Memory write failed when restoring original opcode.");
2026 "Original breakpoint trap is no longer in memory.");
2033 uint8_t verify_opcode[8];
2034 assert(break_op_size <
sizeof(verify_opcode));
2040 break_op_size) == 0) {
2044 "Process::DisableSoftwareBreakpoint (site_id = %d) "
2045 "addr = 0x%" PRIx64
" -- SUCCESS",
2046 bp_site->
GetID(), (uint64_t)bp_addr);
2051 "Failed to restore original opcode.");
2056 "breakpoint trap was restored.");
2060 "Unable to read memory that should contain the breakpoint trap.");
2065 "Process::DisableSoftwareBreakpoint (site_id = %d) addr = 0x%" PRIx64
2066 " -- already disabled",
2067 bp_site->
GetID(), (uint64_t)bp_addr);
2073 "Process::DisableSoftwareBreakpoint (site_id = %d) addr = 0x%" PRIx64
2075 bp_site->
GetID(), (uint64_t)bp_addr,
error.AsCString());
2081 size_t cache_bytes_read,
size_t size,
2082 const Status &cache_error) {
2085 const bool truncated = cache_error.
Fail();
2087 std::vector<uint8_t> verify_buf(size, 0);
2090 addr, verify_buf.data(), verify_buf.size(), verify_error);
2091 const size_t comparable = std::min(cache_bytes_read, verify_bytes_read);
2093 const char *mismatch =
nullptr;
2094 if (!truncated && cache_bytes_read != verify_bytes_read)
2095 mismatch =
"byte count";
2096 else if (memcmp(cache_buf, verify_buf.data(), comparable) != 0)
2097 mismatch =
"contents";
2098 else if (!truncated && cache_error.
Success() != verify_error.
Success())
2099 mismatch =
"status";
2105 "memory cache verification failed on {0}: read of {1} bytes at "
2106 "{2:x} returned {3} bytes ({4}) from the cache and {5} bytes ({6}) "
2108 mismatch, size, addr, cache_bytes_read, cache_error,
2109 verify_bytes_read, verify_error);
2110 assert(
false &&
"memory cache returned something the process did not");
2120 llvm::Expected<AddressSpaceInfo> info =
2131 addr = abi_sp->FixAnyAddress(addr);
2144llvm::SmallVector<llvm::MutableArrayRef<uint8_t>>
2146 llvm::MutableArrayRef<uint8_t> buffer) {
2147 llvm::SmallVector<Range<lldb::addr_t, size_t>> fixed_ranges;
2148 fixed_ranges.reserve(ranges.size());
2150 fixed_ranges.emplace_back(
FixAnyAddress(range.GetRangeBase()),
2151 range.GetByteSize());
2155 llvm::SmallVector<llvm::MutableArrayRef<uint8_t>> results =
2159 for (
auto [range, result] : llvm::zip(fixed_ranges, results)) {
2160 if (!result.empty()) {
2163 range.GetByteSize(),
error);
2171llvm::SmallVector<llvm::MutableArrayRef<uint8_t>>
2173 llvm::MutableArrayRef<uint8_t> buffer) {
2174 auto total_ranges_len = llvm::sum_of(
2175 llvm::map_range(ranges, [](
auto range) {
return range.size; }));
2179 assert(buffer.size() >= total_ranges_len &&
2180 "Process::DoReadMemoryRanges: provided buffer is too short");
2181 if (buffer.size() < total_ranges_len) {
2182 llvm::MutableArrayRef<uint8_t> empty;
2183 return {ranges.size(), empty};
2186 llvm::SmallVector<llvm::MutableArrayRef<uint8_t>> results;
2190 for (
auto [addr, range_len] : ranges) {
2192 size_t num_bytes_read =
2199 assert(num_bytes_read <= range_len &&
"read more than requested bytes");
2200 if (num_bytes_read > range_len) {
2203 results.emplace_back();
2207 results.push_back(buffer.take_front(num_bytes_read));
2209 buffer = buffer.drop_front(num_bytes_read);
2216 const uint8_t *buf,
size_t size,
2218 size_t max_matches) {
2220 assert(buf !=
nullptr);
2222 assert(alignment > 0);
2223 assert(max_matches > 0);
2226 assert(start_addr < end_addr);
2228 lldb::addr_t start = llvm::alignTo(start_addr, alignment);
2229 while (matches.size() < max_matches && (start + size) < end_addr) {
2234 if (found_addr % alignment) {
2237 start = llvm::alignTo(start + 1, alignment);
2241 matches.emplace_back(found_addr, size);
2242 start = found_addr + alignment;
2248 size_t alignment,
size_t max_matches,
2251 if (buf ==
nullptr) {
2259 if (ranges.empty()) {
2263 if (alignment == 0) {
2267 if (max_matches == 0) {
2272 int resolved_ranges = 0;
2274 for (
size_t i = 0; i < ranges.size(); ++i) {
2275 if (matches.size() >= max_matches)
2288 DoFindInMemory(start_addr, end_addr, buf, size, matches, alignment,
2292 if (resolved_ranges > 0)
2303 if (buf ==
nullptr) {
2315 if (alignment == 0) {
2330 DoFindInMemory(start_addr, end_addr, buf, size, matches, alignment, 1);
2331 if (matches.empty())
2335 return matches[0].GetBaseAddress().GetLoadAddress(&target);
2338llvm::SmallVector<std::optional<std::string>>
2340 llvm::SmallVector<std::optional<std::string>> output_strs(addresses.size(),
2342 llvm::SmallVector<Range<addr_t, size_t>> ranges{
2343 llvm::map_range(addresses, [=](
addr_t ptr) {
2348 uint64_t num_completed_strings = 0;
2350 while (num_completed_strings != addresses.size()) {
2351 llvm::SmallVector<llvm::MutableArrayRef<uint8_t>> read_results =
2357 for (
auto [range, read_result, output_str] :
2358 llvm::zip(ranges, read_results, output_strs)) {
2360 if (range.GetByteSize() == 0)
2364 if (read_result.empty()) {
2365 output_str = std::nullopt;
2366 range.SetByteSize(0);
2367 num_completed_strings++;
2372 auto read_result_str = llvm::toStringRef(read_result);
2374 const char *null_terminator_pos = llvm::find(read_result_str,
'\0');
2375 output_str->append(read_result_str.begin(), null_terminator_pos);
2378 if (null_terminator_pos != read_result_str.end()) {
2379 range.SetByteSize(0);
2380 num_completed_strings++;
2384 range.SetRangeBase(range.GetRangeBase() + read_result.size());
2401 out_str.append(buf, length);
2404 if (length ==
sizeof(buf) - 1)
2405 curr_addr += length;
2409 return out_str.size();
2417 size_t total_cstr_len = 0;
2418 if (dst && dst_max_len) {
2419 result_error.
Clear();
2421 memset(dst, 0, dst_max_len);
2423 const size_t cache_line_size =
m_memory_cache.GetMemoryCacheLineSize();
2424 size_t bytes_left = dst_max_len - 1;
2425 char *curr_dst = dst;
2427 while (bytes_left > 0) {
2428 addr_t cache_line_bytes_left =
2429 cache_line_size - (curr_addr % cache_line_size);
2431 std::min<addr_t>(bytes_left, cache_line_bytes_left);
2433 size_t bytes_read =
ReadMemory(curr_addr, curr_dst, bytes_to_read,
error);
2435 if (bytes_read == 0) {
2436 result_error = std::move(
error);
2437 dst[total_cstr_len] =
'\0';
2440 const size_t len = strlen(curr_dst);
2442 total_cstr_len += len;
2444 if (len < bytes_to_read)
2447 curr_dst += bytes_read;
2448 curr_addr += bytes_read;
2449 bytes_left -= bytes_read;
2455 result_error.
Clear();
2457 return total_cstr_len;
2465 addr = abi_sp->FixAnyAddress(addr);
2467 if (buf ==
nullptr || size == 0)
2470 size_t bytes_read = 0;
2471 uint8_t *bytes = (uint8_t *)buf;
2473 while (bytes_read < size) {
2474 const size_t curr_size = size - bytes_read;
2475 const size_t curr_bytes_read =
2477 bytes_read += curr_bytes_read;
2478 if (curr_bytes_read == curr_size || curr_bytes_read == 0)
2490 size_t integer_byte_size,
2491 uint64_t fail_value,
2500llvm::SmallVector<std::optional<uint64_t>>
2502 unsigned integer_byte_size) {
2503 if (addresses.empty())
2507 if (!llvm::is_contained({1u, 2u, 4u, 8u}, integer_byte_size))
2508 return llvm::SmallVector<std::optional<uint64_t>>(addresses.size(),
2511 llvm::SmallVector<Range<addr_t, size_t>> ranges{
2512 llvm::map_range(addresses, [=](
addr_t ptr) {
2516 std::vector<uint8_t> buffer(integer_byte_size * addresses.size(), 0);
2517 llvm::SmallVector<llvm::MutableArrayRef<uint8_t>> memory =
2520 llvm::SmallVector<std::optional<uint64_t>> result;
2521 result.reserve(addresses.size());
2525 for (llvm::MutableArrayRef<uint8_t> range : memory) {
2526 if (range.size() != integer_byte_size) {
2527 result.push_back(std::nullopt);
2531 DataExtractor data(range.data(), integer_byte_size, byte_order, addr_size);
2533 result.push_back(data.
GetMaxU64(&offset, integer_byte_size));
2534 assert(offset == integer_byte_size);
2540 size_t integer_byte_size,
2556 "a successful read always yields an integer");
2560 return error.ToError();
2561 return llvm::createStringError(
2562 "failed to read pointer from memory at 0x%" PRIx64, vm_addr);
2565llvm::SmallVector<std::optional<addr_t>>
2575 if (addr_byte_size <= 4)
2576 scalar = (uint32_t)ptr_value;
2585 size_t bytes_written = 0;
2586 const uint8_t *bytes = (
const uint8_t *)buf;
2588 while (bytes_written < size) {
2589 const size_t curr_size = size - bytes_written;
2591 addr + bytes_written, bytes + bytes_written, curr_size,
error);
2592 bytes_written += curr_bytes_written;
2593 if (curr_bytes_written == curr_size || curr_bytes_written == 0)
2596 return bytes_written;
2602 addr = abi_sp->FixAnyAddress(addr);
2606 if (buf ==
nullptr || size == 0)
2620 const uint8_t *ubuf = (
const uint8_t *)buf;
2621 uint64_t bytes_written = 0;
2623 bp_sites_in_range.
ForEach([
this, addr, size, &bytes_written, &ubuf,
2632 size_t intersect_size;
2633 size_t opcode_offset;
2635 addr, size, &intersect_addr, &intersect_size, &opcode_offset);
2638 assert(addr <= intersect_addr && intersect_addr < addr + size);
2639 assert(addr < intersect_addr + intersect_size &&
2640 intersect_addr + intersect_size <= addr + size);
2641 assert(opcode_offset + intersect_size <= bp->GetByteSize());
2644 const addr_t curr_addr = addr + bytes_written;
2645 if (intersect_addr > curr_addr) {
2648 size_t curr_size = intersect_addr - curr_addr;
2649 size_t curr_bytes_written =
2651 bytes_written += curr_bytes_written;
2652 if (curr_bytes_written != curr_size) {
2656 if (
error.Success())
2664 bytes_written += intersect_size;
2668 if (bytes_written < size)
2671 size - bytes_written,
error);
2673 return bytes_written;
2680 if (byte_size > 0) {
2682 const size_t mem_size =
2695 bool is_signed,
Scalar &scalar,
2698 if (byte_size == 0) {
2700 }
else if (byte_size & (byte_size - 1)) {
2702 "byte size %u is not a power of 2", byte_size);
2703 }
else if (byte_size <=
sizeof(uval)) {
2705 if (bytes_read == byte_size) {
2710 scalar = data.
GetMaxU32(&offset, byte_size);
2712 scalar = data.
GetMaxU64(&offset, byte_size);
2721 "byte size of %u is too large for integer scalar type", byte_size);
2728 for (
const auto &
Entry : entries) {
2731 if (!
error.Success())
2741 "cannot allocate memory while process is running");
2749 return alloced_addr;
2755 if (
error.Success()) {
2756 std::string buffer(size, 0);
2766 LLDB_LOGF(log,
"Process::%s pid %" PRIu64
" CanJIT () is %s", __FUNCTION__,
2787 "deallocation of memory at 0x%" PRIx64
" failed.", (uint64_t)ptr);
2794 return *subclass_override;
2796 bool reported_after =
true;
2799 return reported_after;
2802 if (triple.isMIPS() || triple.isPPC64() || triple.isRISCV() ||
2803 triple.isAArch64() || triple.isArmMClass() || triple.isARM() ||
2804 triple.isLoongArch())
2805 reported_after =
false;
2807 return reported_after;
2810llvm::Expected<ModuleSP>
2814 "Process::ReadModuleFromMemory reading %s binary from memory",
2818 return llvm::createStringError(
"failed to allocate module");
2821 std::unique_ptr<Progress> progress_up;
2826 progress_up = std::make_unique<Progress>(
"Reading binary from memory",
2829 if (module_sp->GetMemoryObjectFile(shared_from_this(), header_addr,
error,
2833 return error.takeError();
2837 uint32_t &permissions) {
2841 if (!
error.Success())
2899 LaunchPrivate(launch_info, state_after_launch, first_stop_event_sp);
2928 if (launch_info.
GetFlags().
Test(eLaunchFlagStopAtEntry))
2987 std::string local_exec_file_path = exe_spec_to_use.
GetPath();
2989 local_exec_file_path.c_str());
2992 const bool restarted =
false;
3002 const char *error_string =
error.AsCString();
3003 if (error_string ==
nullptr)
3004 error_string =
"launch failed";
3059 "Unexpected process state after the launch: %s, expected %s, "
3069 if (
error.Success()) {
3112 LLDB_LOGF(log,
"Process::Halt() failed to stop, state is: %s",
3115 "Did not get stopped event after loading the core file.");
3156 uint32_t exec_count)
3161 "Process::AttachCompletionHandler::%s process=%p, exec_count=%" PRIu32,
3162 __FUNCTION__,
static_cast<void *
>(process), exec_count);
3171 "Process::AttachCompletionHandler::%s called with state %s (%d)",
3195 "Process::AttachCompletionHandler::%s state %s: reduced "
3196 "remaining exec count to %" PRIu32
", requesting resume",
3203 "Process::AttachCompletionHandler::%s state %s: no more "
3204 "execs expected to start, continuing with attach",
3247 bool wait_for_launch) {
3269 sizeof(process_name))) {
3272 if (wait_for_launch) {
3274 if (
error.Success()) {
3282 if (
error.AsCString() ==
nullptr)
3296 "could not start private state thread.");
3309 platform_sp->FindProcesses(match_info, process_infos);
3310 const uint32_t num_matches = process_infos.size();
3311 if (num_matches == 1) {
3312 attach_pid = process_infos[0].GetProcessID();
3316 process_name,
sizeof(process_name));
3317 if (num_matches > 1) {
3320 for (
size_t i = 0; i < num_matches; i++) {
3321 process_infos[i].DumpAsTableRow(
3322 s, platform_sp->GetUserIDResolver(),
true,
false);
3325 "more than one process named %s:\n%s", process_name,
3329 "could not find a process named %s", process_name);
3333 "invalid platform, can't find processes by name");
3344 if (
error.Success()) {
3349 if (
error.Success()) {
3359 "could not start private state thread.");
3365 const char *error_string =
error.AsCString();
3366 if (error_string ==
nullptr)
3367 error_string =
"attach failed";
3378 LLDB_LOGF(log,
"Process::%s()", __FUNCTION__);
3387 "Process::{0} replacing process architecture with DidAttach() "
3388 "architecture: \"{1}\"",
3389 __FUNCTION__, process_arch.
GetTriple().getTriple());
3397 assert(platform_sp);
3401 if (target_arch.
IsValid() && !platform_sp->IsCompatibleArchitecture(
3402 target_arch, process_host_arch,
3406 target_arch, process_host_arch, &platform_arch);
3411 "switching platform to {0} and architecture to {1} based on "
3413 platform_sp->GetName(), platform_arch.
GetTriple().getTriple());
3415 }
else if (!process_arch.
IsValid()) {
3425 "Process::%s switching architecture to %s based on info "
3426 "the platform retrieved for pid %" PRIu64,
3427 __FUNCTION__, process_arch.
GetTriple().getTriple().c_str(),
3446 "after DynamicLoader::DidAttach(), target "
3447 "executable is {0} (using {1} plugin)",
3448 exe_module_sp ? exe_module_sp->GetFileSpec() :
FileSpec(),
3456 if (system_runtime) {
3461 "after SystemRuntime::DidAttach(), target "
3462 "executable is {0} (using {1} plugin)",
3463 exe_module_sp ? exe_module_sp->GetFileSpec() :
FileSpec(),
3484 if (module_sp && module_sp->IsExecutable()) {
3485 if (
GetTarget().GetExecutableModulePointer() != module_sp.get())
3486 new_executable_module_sp = module_sp;
3490 if (new_executable_module_sp) {
3493 if (
GetTarget().GetExecutableModulePointer())
3502 "Process::%s after looping through modules, target executable is %s",
3504 exe_module_sp ? exe_module_sp->GetFileSpec().GetPath().c_str()
3524 if (
error.Success()) {
3567 "Process::PrivateResume() m_stop_id = %u, public state: %s "
3568 "private state: %s",
3577 if (!
GetModID().IsLastResumeForUserExpression())
3582 if (
error.Success()) {
3592 LLDB_LOGF(log,
"Process::PrivateResume WillResume direction=%d",
3597 "Process::PrivateResume PreResumeActions failed, not resuming.");
3600 "Process::PrivateResume PreResumeActions failed, not resuming.");
3605 "Failed to update some delayed breakpoints: {0}");
3607 if (
error.Success()) {
3611 "Process::PrivateResume thinks the process has resumed.");
3613 LLDB_LOGF(log,
"Process::PrivateResume() DoResume failed.");
3623 "Process::PrivateResume() asked to simulate a start & stop.");
3629 LLDB_LOGF(log,
"Process::PrivateResume() got an error \"%s\".",
3630 error.AsCString(
"<unknown error>"));
3665 halt_listener_sp,
nullptr,
3666 use_run_lock, select_most_relevant);
3681 const uint8_t *buf,
size_t size) {
3682 const size_t region_size = high - low;
3684 if (region_size < size)
3688 std::vector<size_t> bad_char_heuristic(256, size);
3689 for (
size_t idx = 0; idx < size - 1; idx++) {
3690 decltype(bad_char_heuristic)::size_type bcu_idx = buf[idx];
3691 bad_char_heuristic[bcu_idx] = size - idx - 1;
3695 llvm::SmallVector<uint8_t, 0> mem;
3700 const size_t max_read_size = std::max<size_t>(size, 0x10000);
3702 for (
addr_t cur_addr = low; cur_addr <= (high - size);) {
3703 if (cur_addr + size > mem_pos + mem.size()) {
3709 mem.resize_for_overwrite(max_read_size);
3712 std::min<addr_t>(mem.size(), high - cur_addr),
3715 if (size > mem.size()) {
3725 int64_t j = size - 1;
3726 while (j >= 0 && buf[j] == mem[cur_addr + j - mem_pos])
3730 cur_addr += bad_char_heuristic[mem[cur_addr + size - 1 - mem_pos]];
3744 LLDB_LOGF(log,
"Process::%s() About to stop.", __FUNCTION__);
3754 &exit_event_sp,
true, listener_sp);
3764 LLDB_LOGF(log,
"Process::%s() Process exited while waiting to stop.",
3768 exit_event_sp.reset();
3771 LLDB_LOGF(log,
"Process::%s() failed to stop, state is: %s", __FUNCTION__,
3779 "Attempt to stop the target in order to detach timed out. "
3795 if (
error.Success()) {
3798 if (!
error.Success()) {
3801 }
else if (exit_event_sp) {
3815 "Failed to update some delayed breakpoints during detach: {0}");
3818 if (
error.Success()) {
3829 if (exit_event_sp) {
3864 bool keep_stopped =
false;
3871 if (
error.Success()) {
3888 "Failed to update some delayed breakpoints during destroy: {0}");
3892 if (
error.Success()) {
3911 if (exit_event_sp) {
3931 if (
error.Success()) {
3933 if (
error.Success())
3940 assert(signals_sp &&
"null signals_sp");
3960 bool return_value =
true;
3977 return_value =
true;
3981 return_value =
false;
3993 return_value =
true;
3999 return_value =
false;
4012 return_value =
true;
4015 return_value =
false;
4034 "Process::ShouldBroadcastEvent (%p) stopped due to an "
4035 "interrupt, state: %s",
4040 return_value =
true;
4043 bool should_resume =
false;
4055 "Process::ShouldBroadcastEvent: should_resume: %i state: "
4056 "%s was_restarted: %i report_stop_vote: %d.",
4060 switch (report_stop_vote) {
4062 return_value =
true;
4066 return_value =
false;
4070 if (!was_restarted) {
4072 "Process::ShouldBroadcastEvent (%p) Restarting process "
4079 return_value =
true;
4102 "Process::ShouldBroadcastEvent (%p) => new state: %s, last "
4103 "broadcast state: %s - %s",
4106 return_value ?
"YES" :
"NO");
4107 return return_value;
4111 llvm::Expected<HostThread> private_state_thread =
4116 if (!private_state_thread) {
4118 "failed to launch host thread: {0}");
4122 assert(private_state_thread->IsJoinable());
4142 std::shared_ptr<PrivateStateThread> *backup_ptr) {
4146 LLDB_LOGF(log,
"Process::%s()%s ", __FUNCTION__,
4147 already_running ?
" already running"
4148 :
" starting private state thread");
4150 if (backup_ptr ==
nullptr && already_running)
4155 char thread_name[1024];
4156 uint32_t max_len = llvm::get_max_thread_name_length();
4157 if (max_len > 0 && max_len <= 30) {
4160 if (already_running)
4161 snprintf(thread_name,
sizeof(thread_name),
"intern-state-OV");
4163 snprintf(thread_name,
sizeof(thread_name),
"intern-state");
4165 if (already_running)
4166 snprintf(thread_name,
sizeof(thread_name),
4167 "<lldb.process.internal-state-override(pid=%" PRIu64
")>",
4170 snprintf(thread_name,
sizeof(thread_name),
4171 "<lldb.process.internal-state(pid=%" PRIu64
")>",
GetID());
4180 PrivateStateThread::Purpose::RunningExpression));
4185 if (run_lock_is_running)
4211 "Went to stop the private state thread, but it was already invalid.");
4222 LLDB_LOGF(log,
"Process::%s (signal = %d)", __FUNCTION__, signal);
4231 LLDB_LOGF(log,
"Sending control event of type: %d.", signal);
4232 std::shared_ptr<EventDataReceipt> event_receipt_sp(
new EventDataReceipt());
4237 bool receipt_received =
false;
4239 while (!receipt_received) {
4244 if (!receipt_received) {
4259 "Private state thread already dead, no need to signal it to stop.");
4264 if (thread !=
nullptr)
4282#ifdef LLDB_SIMULATE_SLOW_STOPS
4289 std::this_thread::sleep_for(std::chrono::milliseconds(10));
4296 LLDB_LOGF(log,
"Ran next event action, result was %d.", action_result);
4298 switch (action_result) {
4324 if (should_broadcast) {
4327 "Process::%s (pid = %" PRIu64
4328 ") broadcasting new state %s (old state %s) to %s",
4336 if (!
GetTarget().GetDebugger().IsForwardingEvents() &&
4341 LLDB_LOGF(log,
"Process::%s updated m_iohandler_sync to %d",
4375 if (is_hijacked || !
GetTarget().GetDebugger().IsHandlingEvents())
4384 "Process::%s (pid = %" PRIu64
4385 ") suppressing state %s (old state %s): should_broadcast == false",
4414 bool control_only =
true;
4417 LLDB_LOGF(log,
"Process::%s (arg = %p, pid = %" PRIu64
") thread starting...",
4418 __FUNCTION__,
static_cast<void *
>(
this),
GetID());
4420 bool exit_now =
false;
4421 bool interrupt_requested =
false;
4427 "Process::%s (arg = %p, pid = %" PRIu64
4428 ") got a control event: %d",
4429 __FUNCTION__,
static_cast<void *
>(
this),
GetID(),
4430 event_sp->GetType());
4432 switch (event_sp->GetType()) {
4438 control_only =
true;
4442 control_only =
false;
4450 "Process::%s (arg = %p, pid = %" PRIu64
4451 ") woke up with an interrupt while attaching - "
4452 "forwarding interrupt.",
4453 __FUNCTION__,
static_cast<void *
>(
this),
GetID());
4464 "Process::%s (arg = %p, pid = %" PRIu64
4465 ") woke up with an interrupt - Halting.",
4466 __FUNCTION__,
static_cast<void *
>(
this),
GetID());
4468 if (
error.Fail() && log)
4470 "Process::%s (arg = %p, pid = %" PRIu64
4471 ") failed to halt the process: %s",
4472 __FUNCTION__,
static_cast<void *
>(
this),
GetID(),
4479 interrupt_requested =
true;
4488 "Process::%s ignoring interrupt as we have already stopped.",
4504 if (interrupt_requested) {
4514 interrupt_requested =
false;
4517 "Process::%s interrupt_requested, but a non-stopped "
4518 "state '%s' received.",
4529 "Process::%s (arg = %p, pid = %" PRIu64
4530 ") about to exit with internal state %s...",
4531 __FUNCTION__,
static_cast<void *
>(
this),
GetID(),
4539 LLDB_LOGF(log,
"Process::%s (arg = %p, pid = %" PRIu64
") thread exiting...",
4540 __FUNCTION__,
static_cast<void *
>(
this),
GetID());
4560 return "Process::ProcessEventData";
4568 bool &found_valid_stopinfo) {
4569 found_valid_stopinfo =
false;
4575 ThreadList &curr_thread_list = process_sp->GetThreadList();
4576 uint32_t num_threads = curr_thread_list.
GetSize();
4588 std::vector<std::pair<ThreadSP, size_t>> not_suspended_threads;
4589 for (uint32_t idx = 0; idx < num_threads; ++idx) {
4597 not_suspended_threads.emplace_back(thread_sp, thread_sp->GetIndexID());
4605 bool still_should_stop =
false;
4613 for (
auto [thread_sp, thread_index] : not_suspended_threads) {
4614 if (curr_thread_list.
GetSize() != num_threads) {
4618 "Number of threads changed from %u to %u while processing event.",
4619 num_threads, curr_thread_list.
GetSize());
4623 if (thread_sp->GetIndexID() != thread_index) {
4626 "The thread {0} changed from {1} to {2} while processing event.",
4627 thread_sp.get(), thread_index, thread_sp->GetIndexID());
4631 StopInfoSP stop_info_sp = thread_sp->GetStopInfo();
4632 if (stop_info_sp && stop_info_sp->IsValid()) {
4633 found_valid_stopinfo =
true;
4634 bool this_thread_wants_to_stop;
4635 if (stop_info_sp->GetOverrideShouldStop()) {
4636 this_thread_wants_to_stop =
4637 stop_info_sp->GetOverriddenShouldStopValue();
4639 stop_info_sp->PerformAction(event_ptr);
4652 thread_sp->ClearSelectedFrameIndex();
4655 if (stop_info_sp->HasTargetRunSinceMe()) {
4660 this_thread_wants_to_stop = stop_info_sp->ShouldStop(event_ptr);
4663 if (!still_should_stop)
4664 still_should_stop = this_thread_wants_to_stop;
4668 return still_should_stop;
4708 process_sp->SetPublicState(
4715 process_sp->WillPublicStop();
4730 bool does_anybody_have_an_opinion =
false;
4731 bool still_should_stop =
ShouldStop(event_ptr, does_anybody_have_an_opinion);
4737 if (!still_should_stop && does_anybody_have_an_opinion) {
4742 process_sp->PrivateResume();
4745 !process_sp->StateChangedIsHijackedForSynchronousResume();
4753 if (process_sp->GetTarget().RunStopHooks())
4763 s->
Printf(
" process = %p (pid = %" PRIu64
"), ",
4764 static_cast<void *
>(process_sp.get()), process_sp->GetID());
4793 if (data ==
nullptr)
4801 if (data ==
nullptr)
4811 if (data !=
nullptr)
4819 if (data !=
nullptr)
4830 if (data !=
nullptr)
4837 const char *reason) {
4840 if (data !=
nullptr)
4845 const Event *event_ptr) {
4847 if (data ==
nullptr)
4857 if (data !=
nullptr)
4900 auto event_data_sp =
4901 std::make_shared<ProcessEventData>(shared_from_this(),
GetState());
4902 return std::make_shared<Event>(event_type, event_data_sp);
4928 auto data_sp = std::make_shared<EventDataStructuredData>(
4929 shared_from_this(), object_sp, plugin_sp);
4937 return find_it->second;
4948 size_t bytes_available = one_profile_data.size();
4949 if (bytes_available > 0) {
4951 LLDB_LOGF(log,
"Process::GetProfileData (buf = %p, size = %" PRIu64
")",
4952 static_cast<void *
>(buf),
static_cast<uint64_t
>(buf_size));
4953 if (bytes_available > buf_size) {
4954 memcpy(buf, one_profile_data.c_str(), buf_size);
4955 one_profile_data.erase(0, buf_size);
4956 bytes_available = buf_size;
4958 memcpy(buf, one_profile_data.c_str(), bytes_available);
4962 return bytes_available;
4970 if (bytes_available > 0) {
4972 LLDB_LOGF(log,
"Process::GetSTDOUT (buf = %p, size = %" PRIu64
")",
4973 static_cast<void *
>(buf),
static_cast<uint64_t
>(buf_size));
4974 if (bytes_available > buf_size) {
4977 bytes_available = buf_size;
4983 return bytes_available;
4989 if (bytes_available > 0) {
4991 LLDB_LOGF(log,
"Process::GetSTDERR (buf = %p, size = %" PRIu64
")",
4992 static_cast<void *
>(buf),
static_cast<uint64_t
>(buf_size));
4993 if (bytes_available > buf_size) {
4996 bytes_available = buf_size;
5002 return bytes_available;
5008 process->
AppendSTDOUT(
static_cast<const char *
>(src), src_len);
5014 assert(!*stdio_secondary_fd &&
"process stdio is already set up");
5015 *stdio_secondary_fd = secondary_fd;
5020 std::make_unique<ConnectionFileDescriptor>(fd,
true));
5031 std::make_shared<IOHandlerProcessSTDIO>(
this, fd);
5045 "failed to open the secondary side of the inferior's "
5048 std::optional<int> secondary_fd;
5072 llvm::sys::Process::SafelyCloseFileDescriptor(*fd);
5086 if (io_handler_sp) {
5088 LLDB_LOGF(log,
"Process::%s pushing IO handler", __FUNCTION__);
5090 io_handler_sp->SetIsDone(
false);
5095 bool cancel_top_handler = !
m_mod_id.IsRunningUtilityFunction();
5097 cancel_top_handler);
5123class RestorePlanState {
5126 : m_thread_plan_sp(thread_plan_sp) {
5127 if (m_thread_plan_sp) {
5128 m_private = m_thread_plan_sp->GetPrivate();
5129 m_is_controlling = m_thread_plan_sp->IsControllingPlan();
5130 m_okay_to_discard = m_thread_plan_sp->OkayToDiscard();
5134 ~RestorePlanState() { Clean(); }
5137 if (!m_already_reset && m_thread_plan_sp) {
5138 m_already_reset =
true;
5139 m_thread_plan_sp->SetPrivate(m_private);
5140 m_thread_plan_sp->SetIsControllingPlan(m_is_controlling);
5141 m_thread_plan_sp->SetOkayToDiscard(m_okay_to_discard);
5147 bool m_already_reset =
false;
5148 bool m_private =
false;
5149 bool m_is_controlling =
false;
5150 bool m_okay_to_discard =
false;
5156 const milliseconds default_one_thread_timeout(250);
5161 : default_one_thread_timeout;
5170 return std::min<microseconds>(default_one_thread_timeout,
5174static Timeout<std::micro>
5176 bool before_first_timeout) {
5182 if (before_first_timeout)
5186 return std::nullopt;
5191static std::optional<ExpressionResults>
5193 RestorePlanState &restorer,
const EventSP &event_sp,
5194 EventSP &event_to_broadcast_sp,
5196 bool handle_interrupts) {
5199 ThreadSP thread_sp = thread_plan_sp->GetTarget()
5202 .FindThreadByID(thread_id);
5205 "The thread on which we were running the "
5206 "expression: tid = {0}, exited while "
5207 "the expression was running.",
5213 if (plan == thread_plan_sp && plan->PlanSucceeded()) {
5214 LLDB_LOG(log,
"execution completed successfully");
5222 StopInfoSP stop_info_sp = thread_sp->GetStopInfo();
5224 stop_info_sp->ShouldNotify(event_sp.get())) {
5225 LLDB_LOG(log,
"stopped for breakpoint: {0}.", stop_info_sp->GetDescription());
5232 thread_plan_sp->SetPrivate(
false);
5233 event_to_broadcast_sp = event_sp;
5238 if (!handle_interrupts &&
5240 return std::nullopt;
5242 LLDB_LOG(log,
"thread plan did not successfully complete");
5244 event_to_broadcast_sp = event_sp;
5257 if (!thread_plan_sp) {
5263 if (!thread_plan_sp->ValidatePlan(
nullptr)) {
5266 "RunThreadPlan called with an invalid thread plan.");
5272 "RunThreadPlan called on wrong process.");
5277 if (thread ==
nullptr) {
5279 "RunThreadPlan called with invalid thread.");
5297 "cannot run the process's other threads to evaluate this "
5298 "expression: the current context does not allow resuming them");
5306 "cannot retry this expression with the process's other threads "
5307 "running: the current context does not allow that fallback");
5315 RestorePlanState thread_plan_restorer(thread_plan_sp);
5322 thread_plan_sp->SetPrivate(
false);
5328 thread_plan_sp->SetIsControllingPlan(
true);
5329 thread_plan_sp->SetOkayToDiscard(
false);
5339 "RunThreadPlan called while the private state was not stopped.");
5344 const uint32_t thread_idx_id = thread->GetIndexID();
5347 if (!selected_frame_sp) {
5348 thread->SetSelectedFrame(
nullptr);
5350 if (!selected_frame_sp) {
5351 diagnostic_manager.
Printf(
5353 "RunThreadPlan called without a selected frame on thread %d",
5364 "RunThreadPlan called with one thread "
5365 "timeout greater than total timeout");
5375 : selected_frame_sp->GetStackID();
5383 uint32_t selected_tid;
5385 if (selected_thread_sp) {
5386 selected_tid = selected_thread_sp->GetIndexID();
5394 std::shared_ptr<PrivateStateThread> backup_private_state_thread;
5405 LLDB_LOGF(log,
"Running thread plan on private state thread, spinning up "
5406 "another state thread to handle the events.");
5416 thread->QueueThreadPlan(stopper_base_plan_sp,
false);
5424 &backup_private_state_thread);
5429 diagnostic_manager.
Printf(
5431 "could not spin up a thread to handle events for an expression"
5432 " run on the private state thread.");
5438 thread->QueueThreadPlan(
5439 thread_plan_sp,
false);
5472 "Process::RunThreadPlan(): Resuming thread %u - 0x%4.4" PRIx64
5473 " to run thread plan \"%s\".",
5474 thread_idx_id, expr_thread_id, s.
GetData());
5481 bool before_first_timeout =
true;
5483 bool do_resume =
true;
5484 bool handle_running_event =
true;
5487 uint32_t num_resumes = 0;
5493 before_first_timeout =
false;
5495 LLDB_LOGF(log,
"Stop others: %u, try all: %u, before_first: %u.\n",
5497 before_first_timeout);
5504 Event *other_events = listener_sp->PeekAtNextEvent();
5505 if (other_events !=
nullptr) {
5508 "RunThreadPlan called with pending events on the queue.");
5521#ifdef LLDB_RUN_THREAD_HALT_WITH_EVENT
5529 bool miss_first_event =
true;
5531 bool pending_stop_on_vfork_done =
false;
5535 std::optional<PolicyStack::Guard> policy_guard;
5536 if (backup_private_state_thread)
5546 "Top of while loop: do_resume: %i handle_running_event: %i "
5547 "before_first_timeout: %i.",
5548 do_resume, handle_running_event, before_first_timeout);
5550 if (do_resume || handle_running_event) {
5557 if (!resume_error.
Success()) {
5558 diagnostic_manager.
Printf(
5560 "couldn't resume inferior the %d time: \"%s\".", num_resumes,
5571 "Process::RunThreadPlan(): didn't get any event after "
5572 "resume %" PRIu32
", exiting.",
5576 "didn't get any event after resume %" PRIu32
5587 bool restarted =
false;
5594 "Process::RunThreadPlan(): didn't get running event after "
5595 "resume %d, got %s instead (restarted: %i, do_resume: %i, "
5596 "handle_running_event: %i).",
5598 handle_running_event);
5605 const bool clear_thread_plans =
false;
5606 const bool use_run_lock =
false;
5607 Halt(clear_thread_plans, use_run_lock);
5611 "didn't get running event after initial "
5612 "resume, got %s instead.",
5619 log->
PutCString(
"Process::RunThreadPlan(): resuming succeeded.");
5627 log->
PutCString(
"Process::RunThreadPlan(): waiting for next event.");
5631 handle_running_event =
true;
5640 auto now = system_clock::now();
5642 "Process::RunThreadPlan(): about to wait - now is %s - "
5644 llvm::to_string(now).c_str(),
5645 llvm::to_string(now + *timeout).c_str());
5647 LLDB_LOGF(log,
"Process::RunThreadPlan(): about to wait forever.");
5651#ifdef LLDB_RUN_THREAD_HALT_WITH_EVENT
5653 if (miss_first_event) {
5654 std::this_thread::sleep_for(std::chrono::milliseconds(1));
5655 miss_first_event =
false;
5659 got_event = listener_sp->GetEvent(event_sp, timeout);
5663 bool keep_going =
false;
5665 const bool clear_thread_plans =
false;
5666 const bool use_run_lock =
false;
5667 Halt(clear_thread_plans, use_run_lock);
5670 "execution halted by user interrupt.");
5671 LLDB_LOGF(log,
"Process::RunThreadPlan(): Got interrupted by "
5672 "eBroadcastBitInterrupted, exiting.");
5678 "Process::RunThreadPlan(): in while loop, got event: %s.",
5681 switch (stop_state) {
5687 LLDB_LOGF(log,
"Process::RunThreadPlan(): Got a stop and "
5688 "restart, so we'll continue waiting.");
5691 handle_running_event =
true;
5696 bool handled_fork =
false;
5699 if (
StopInfoSP stop_info_sp = fork_thread_sp->GetStopInfo()) {
5700 StopReason reason = stop_info_sp->GetStopReason();
5704 handled_fork =
true;
5709 LLDB_LOGF(log,
"Process::RunThreadPlan(): stopped for "
5710 "fork, stop-on-fork is set.");
5721 "Process::RunThreadPlan(): got vfork with "
5722 "stop-on-fork, deferring stop to "
5724 pending_stop_on_vfork_done =
true;
5727 handle_running_event =
true;
5729 pending_stop_on_vfork_done) {
5734 LLDB_LOGF(log,
"Process::RunThreadPlan(): vfork cycle "
5735 "complete, stop-on-fork is set.");
5736 pending_stop_on_vfork_done =
false;
5739 LLDB_LOGF(log,
"Process::RunThreadPlan(): got fork "
5740 "event, continuing.");
5743 handle_running_event =
true;
5749 if (!handled_fork) {
5750 const bool handle_interrupts =
true;
5752 expr_thread_id, thread_plan_sp, thread_plan_restorer,
5753 event_sp, event_to_broadcast_sp, options,
5767 handle_running_event =
false;
5772 "Process::RunThreadPlan(): execution stopped with "
5773 "unexpected state: %s.",
5777 event_to_broadcast_sp = event_sp;
5781 "execution stopped with unexpected state.");
5793 log->
PutCString(
"Process::RunThreadPlan(): got_event was true, but "
5794 "the event pointer was null. How odd...");
5806 if (before_first_timeout) {
5808 "Running function with one thread timeout timed out.");
5810 LLDB_LOG(log,
"Restarting function with all threads enabled and "
5811 "timeout: {0} timed out, abandoning execution.",
5814 LLDB_LOG(log,
"Running function with timeout: {0} timed out, "
5815 "abandoning execution.",
5828 bool back_to_top =
true;
5829 uint32_t try_halt_again = 0;
5830 bool do_halt =
true;
5831 const uint32_t num_retries = 5;
5832 while (try_halt_again < num_retries) {
5835 LLDB_LOGF(log,
"Process::RunThreadPlan(): Running Halt.");
5836 const bool clear_thread_plans =
false;
5837 const bool use_run_lock =
false;
5838 Halt(clear_thread_plans, use_run_lock);
5842 log->
PutCString(
"Process::RunThreadPlan(): Halt succeeded.");
5852 "Process::RunThreadPlan(): Stopped with event: %s",
5857 log->
PutCString(
" Event was the Halt interruption event.");
5864 log->
PutCString(
"Process::RunThreadPlan(): Went to halt "
5865 "but got a restarted event, there must be "
5866 "an un-restarted stopped event so try "
5868 "Exiting wait loop.");
5877 const bool handle_interrupts =
false;
5879 expr_thread_id, thread_plan_sp, thread_plan_restorer,
5880 event_sp, event_to_broadcast_sp, options,
5881 handle_interrupts)) {
5882 return_value = *result;
5883 back_to_top =
false;
5889 log->
PutCString(
"Process::RunThreadPlan(): try_all_threads "
5890 "was false, we stopped so now we're "
5893 back_to_top =
false;
5897 if (before_first_timeout) {
5900 before_first_timeout =
false;
5901 thread_plan_sp->SetStopOthers(
false);
5904 "Process::RunThreadPlan(): about to resume.");
5911 log->
PutCString(
"Process::RunThreadPlan(): running all "
5912 "threads timed out.");
5914 back_to_top =
false;
5920 log->
PutCString(
"Process::RunThreadPlan(): halt said it "
5921 "succeeded, but I got no event. "
5922 "I'm getting out of here passing Interrupted.");
5924 back_to_top =
false;
5933 if (!back_to_top || try_halt_again > num_retries)
5940 policy_guard.reset();
5944 if (backup_private_state_thread &&
5945 backup_private_state_thread->IsJoinable()) {
5949 if (stopper_base_plan_sp) {
5950 thread->DiscardThreadPlansUpToPlan(stopper_base_plan_sp);
5960 return return_value;
5966 s.
PutCString(
"Thread state after unsuccessful completion: \n");
5981 thread_plan_sp->RestoreThreadState();
5992 log->
PutCString(
"Process::RunThreadPlan(): Stop event that "
5993 "interrupted us is NULL.");
5998 const char *event_explanation =
nullptr;
6002 event_explanation =
"<no event>";
6005 event_explanation =
"<user interrupt>";
6013 event_explanation =
"<no event data>";
6020 event_explanation =
"<no process>";
6026 uint32_t num_threads = thread_list.
GetSize();
6027 uint32_t thread_index;
6029 ts.
Printf(
"<%u threads> ", num_threads);
6031 for (thread_index = 0; thread_index < num_threads; ++thread_index) {
6039 ts.
Printf(
"<0x%4.4" PRIx64
" ", thread->GetID());
6041 thread->GetRegisterContext().get();
6043 if (register_context)
6044 ts.
Printf(
"[ip 0x%" PRIx64
"] ", register_context->
GetPC());
6052 const char *stop_desc = stop_info_sp->GetDescription();
6059 event_explanation = ts.
GetData();
6063 if (event_explanation)
6065 "Process::RunThreadPlan(): execution interrupted: %s %s",
6066 s.
GetData(), event_explanation);
6068 LLDB_LOGF(log,
"Process::RunThreadPlan(): execution interrupted: %s",
6072 if (should_unwind) {
6074 "Process::RunThreadPlan: ExecutionInterrupted - "
6075 "discarding thread plans up to %p.",
6076 static_cast<void *
>(thread_plan_sp.get()));
6077 thread->DiscardThreadPlansUpToPlan(thread_plan_sp);
6080 "Process::RunThreadPlan: ExecutionInterrupted - for "
6081 "plan: %p not discarding.",
6082 static_cast<void *
>(thread_plan_sp.get()));
6086 log->
PutCString(
"Process::RunThreadPlan(): execution set up error.");
6089 thread->DiscardThreadPlansUpToPlan(thread_plan_sp);
6092 if (thread->IsThreadPlanDone(thread_plan_sp.get())) {
6094 log->
PutCString(
"Process::RunThreadPlan(): thread plan is done");
6096 }
else if (thread->WasThreadPlanDiscarded(thread_plan_sp.get())) {
6099 "Process::RunThreadPlan(): thread plan was discarded");
6104 "Process::RunThreadPlan(): thread plan stopped in mid course");
6107 log->
PutCString(
"Process::RunThreadPlan(): discarding thread plan "
6108 "'cause unwind_on_error is set.");
6109 thread->DiscardThreadPlansUpToPlan(thread_plan_sp);
6119 exe_ctx.
SetFrameSP(thread->GetFrameWithStackID(ctx_frame_id));
6126 if (
GetThreadList().SetSelectedThreadByIndexID(selected_tid) &&
6127 selected_stack_id.
IsValid()) {
6129 std::lock_guard<std::recursive_mutex> guard(
GetThreadList().GetMutex());
6135 old_frame_sp.get());
6142 if (event_to_broadcast_sp) {
6144 log->
PutCString(
"Process::RunThreadPlan(): rebroadcasting event.");
6148 return return_value;
6157 strm.
Printf(
"Process %" PRIu64
" exited with status = %i (0x%8.8x) %s\n",
6158 GetID(), exit_status, exit_status,
6159 exit_description ? exit_description :
"");
6162 strm.
PutCString(
"Connected to remote target.\n");
6166 core_args->Format(strm);
6170 strm.
Printf(
"Process %" PRIu64
" is running.\n",
GetID());
6175 bool only_threads_with_stop_reason,
6176 uint32_t start_frame, uint32_t num_frames,
6177 uint32_t num_frames_with_source,
6179 size_t num_thread_infos_dumped = 0;
6186 uint32_t num_threads;
6187 std::vector<lldb::tid_t> thread_id_array;
6190 std::lock_guard<std::recursive_mutex> guard(
GetThreadList().GetMutex());
6192 num_threads = curr_thread_list.
GetSize();
6194 thread_id_array.resize(num_threads);
6195 for (idx = 0; idx < num_threads; ++idx)
6199 for (uint32_t i = 0; i < num_threads; i++) {
6202 if (only_threads_with_stop_reason) {
6203 StopInfoSP stop_info_sp = thread_sp->GetStopInfo();
6204 if (!stop_info_sp || !stop_info_sp->ShouldShow())
6207 thread_sp->GetStatus(strm, start_frame, num_frames,
6208 num_frames_with_source, stop_format,
6210 ++num_thread_infos_dumped;
6213 LLDB_LOGF(log,
"Process::GetThreadStatus - thread 0x" PRIu64
6214 " vanished while running Thread::GetStatus.");
6217 return num_thread_infos_dumped;
6241 result = this_result;
6305 "Setting Process code address mask to {0:x}", code_address_mask);
6311 "Setting Process data address mask to {0:x}", data_address_mask);
6317 "Setting Process highmem code address mask to {0:x}",
6324 "Setting Process highmem data address mask to {0:x}",
6331 addr = abi_sp->FixCodeAddress(addr);
6337 addr = abi_sp->FixDataAddress(addr);
6343 addr = abi_sp->FixAnyAddress(addr);
6349 LLDB_LOGF(log,
"Process::%s()", __FUNCTION__);
6385 if (address ==
nullptr) {
6393 std::map<addr_t, addr_t>::const_iterator iter =
6396 function_addr = (*iter).second;
6401 "Unable to call resolver for indirect function %s",
6406 function_addr = abi_sp->FixCodeAddress(function_addr);
6408 std::pair<addr_t, addr_t>(addr, function_addr));
6411 return function_addr;
6427 runtime.second->ModulesDidLoad(module_list);
6433 runtime->ModulesDidLoad(module_list);
6444 pair.second->ModulesDidLoad(*
this, module_list);
6468 if (plugins[language])
6470 sc.
module_sp->ReportWarningUnsupportedLanguage(
6481 return platform_sp->GetProcessInfo(
GetID(), info);
6494 if (!memory_history) {
6498 threads = std::make_shared<ThreadCollection>(
6499 memory_history->GetHistoryThreads(addr));
6506 InstrumentationRuntimeCollection::iterator pos;
6511 return (*pos).second;
6516 module_spec.
Clear();
6543 Address retval = default_stop_addr;
6547 if (!default_stop_addr.
IsValid())
6550 const char *plugin_name =
nullptr;
6551 const char *flavor =
nullptr;
6552 const char *cpu =
nullptr;
6553 const char *features =
nullptr;
6557 if (disassembler_sp)
6558 insn_list = &disassembler_sp->GetInstructionList();
6560 if (insn_list ==
nullptr) {
6564 size_t insn_offset =
6571 insn_offset,
false ,
nullptr);
6576 if (branch_index > insn_offset) {
6577 Address next_branch_insn_address =
6579 if (next_branch_insn_address.
IsValid() &&
6581 retval = next_branch_insn_address;
6591 load_addr = abi->FixAnyAddress(load_addr);
6593 std::optional<MemoryRegionInfo> cached_region =
6595 if (cached_region) {
6596 range_info = *cached_region;
6601 if (
error.Success()) {
6618 region_list.clear();
6624 region_list.clear();
6635 region_list.push_back(std::move(region_info));
6643 !(abi && (abi->FixAnyAddress(range_end) != range_end)));
6662 if (supported_type_names.
GetSize() == 0) {
6663 LLDB_LOG(log,
"no structured data types supported");
6668 std::set<llvm::StringRef> type_names;
6671 "the process supports the following async structured data types:");
6680 const llvm::StringRef type_name =
object->GetStringValue();
6681 if (type_name.empty())
6684 type_names.insert(type_name);
6695 if (type_names.empty())
6707 std::vector<llvm::StringRef> names_to_remove;
6708 for (llvm::StringRef type_name : type_names) {
6709 if (plugin_sp->SupportsStructuredDataType(type_name)) {
6711 std::make_pair(type_name, plugin_sp));
6712 names_to_remove.push_back(type_name);
6713 LLDB_LOG(log,
"using plugin {0} for type name {1}",
6714 plugin_sp->GetPluginName(), type_name);
6719 for (llvm::StringRef type_name : names_to_remove)
6720 type_names.erase(type_name);
6737 llvm::StringRef type_name;
6749 find_it->second->HandleArrivalOfStructuredData(*
this, type_name, object_sp);
6761 llvm::function_ref<llvm::Expected<std::unique_ptr<UtilityFunction>>()>
6763 if (platform !=
GetTarget().GetPlatform().get())
6764 return llvm::createStringError(
6765 "the platform requesting the load-image utility function is not "
6766 "the target's platform");
6768 llvm::Expected<std::unique_ptr<UtilityFunction>> factory_result = factory();
6782 return llvm::createStringError(llvm::inconvertibleErrorCode(),
6783 "Can't trace a non-live process.");
6784 return llvm::make_error<UnimplementedError>();
6789 bool trap_exceptions) {
6791 if (thread ==
nullptr || address ==
nullptr)
6803 auto type_system_or_err =
6805 if (!type_system_or_err) {
6806 llvm::consumeError(type_system_or_err.takeError());
6809 auto ts = *type_system_or_err;
6815 *thread, *address, void_ptr_type, llvm::ArrayRef<addr_t>(), options));
6819 StackFrame *frame = thread->GetStackFrameAtIndex(0).get();
6827 call_plan_sp->GetReturnValueObject()->GetValueAsUnsigned(
6849 if (!arch || !tag_manager) {
6850 return llvm::createStringError(
6851 llvm::inconvertibleErrorCode(),
6852 "This architecture does not support memory tagging");
6856 return llvm::createStringError(llvm::inconvertibleErrorCode(),
6857 "Process does not support memory tagging");
6863llvm::Expected<std::vector<lldb::addr_t>>
6865 llvm::Expected<const MemoryTagManager *> tag_manager_or_err =
6867 if (!tag_manager_or_err)
6868 return tag_manager_or_err.takeError();
6871 llvm::Expected<std::vector<uint8_t>> tag_data =
6874 return tag_data.takeError();
6881 const std::vector<lldb::addr_t> &tags) {
6882 llvm::Expected<const MemoryTagManager *> tag_manager_or_err =
6884 if (!tag_manager_or_err)
6888 llvm::Expected<std::vector<uint8_t>> packed_tags =
6912 if (!dirty_page_list)
6918 llvm::AddressRange range(0, 0);
6919 for (
addr_t page_addr : *dirty_page_list) {
6920 if (range.empty()) {
6922 range = llvm::AddressRange(page_addr, page_addr + page_size);
6924 if (range.end() == page_addr) {
6926 range = llvm::AddressRange(range.start(), page_addr + page_size);
6930 ranges.
Append(range.start(), range.size(), {range, lldb_permissions});
6931 range = llvm::AddressRange(page_addr, page_addr + page_size);
6937 ranges.
Append(range.start(), range.size(), {range, lldb_permissions});
6967 std::set<addr_t> &stack_ends) {
6972 std::vector<lldb_private::MemoryRegionInfo> dynamic_loader_mem_regions;
6978 save_thread_predicate);
6979 for (
const auto ®ion : dynamic_loader_mem_regions) {
6982 if (stack_ends.count(region.GetRange().GetRangeEnd()) == 0)
6991 std::set<addr_t> &stack_ends) {
6992 const bool try_dirty_pages =
true;
7001 StackFrameSP frame_sp = thread_sp->GetStackFrameAtIndex(0);
7007 const addr_t sp = reg_ctx_sp->GetSP();
7008 const size_t red_zone = process.
GetABI()->GetRedZoneSize();
7011 const size_t stack_head = (
sp - red_zone);
7019 stack_ends.insert(range_end);
7023 AddRegion(sp_region, try_dirty_pages, ranges);
7034 std::set<addr_t> &stack_ends) {
7037 const bool try_dirty_pages =
false;
7038 for (
const auto ®ion : regions)
7039 if (stack_ends.count(region.GetRange().GetRangeEnd()) == 0)
7040 AddRegion(region, try_dirty_pages, ranges);
7050 std::set<addr_t> &stack_ends) {
7053 bool have_dirty_page_info =
false;
7054 for (
const auto ®ion : regions) {
7055 if (stack_ends.count(region.GetRange().GetRangeEnd()) == 0 &&
7057 have_dirty_page_info =
true;
7060 if (!have_dirty_page_info) {
7063 const bool try_dirty_pages =
false;
7064 for (
const auto ®ion : regions)
7065 if (stack_ends.count(region.GetRange().GetRangeEnd()) == 0 &&
7067 AddRegion(region, try_dirty_pages, ranges);
7082 std::set<addr_t> &stack_ends) {
7083 const bool try_dirty_pages =
true;
7087 for (
const auto ®ion : regions) {
7089 if (stack_ends.count(region.GetRange().GetRangeEnd()) == 0 &&
7091 AddRegion(region, try_dirty_pages, ranges);
7097static lldb_private::MemoryRegionInfo
7113 if (option_ranges.IsEmpty())
7116 for (
const auto &range : regions) {
7117 auto *entry = option_ranges.FindEntryThatIntersects(range.GetRange());
7119 if (*entry != range.GetRange()) {
7136 if (regions.empty())
7138 "failed to get any valid memory regions from the process");
7141 "callers must set the core_style to something other than "
7142 "eSaveCoreUnspecified");
7146 std::set<addr_t> stack_ends;
7158 switch (core_style) {
7181 "no valid address ranges found for core style");
7186std::vector<ThreadSP>
7188 std::vector<ThreadSP> thread_list;
7191 thread_list.push_back(thread_sp);
7202 if (low_memory_addr_bits == 0 && high_memory_addr_bits == 0)
7205 if (low_memory_addr_bits != 0) {
7212 if (high_memory_addr_bits != 0) {
7220llvm::Expected<AddressSpaceInfo>
7223 return llvm::createStringError(
"process doesn't support address spaces");
7226 if (address_space_name == info.name)
7230 std::string names = llvm::join(
7234 return llvm::createStringError(
7235 "invalid address space \"%s\", expected one of: %s",
7236 address_space_name.str().c_str(), names.c_str());
7239llvm::Expected<AddressSpaceInfo>
7242 return llvm::createStringError(
"process doesn't support address spaces");
7245 if (info.space_id == address_space_id)
7252 return std::to_string(info.
space_id);
7255 return llvm::createStringError(
"invalid address space id %" PRIu64
7256 ", expected one of: %s",
7257 address_space_id, ids.c_str());
static llvm::raw_ostream & error(Stream &strm)
#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 GetCoreFileSaveRangesFull(Process &process, const MemoryRegionInfos ®ions, CoreFileMemoryRanges &ranges, std::set< addr_t > &stack_ends)
static std::optional< ExpressionResults > HandleStoppedEvent(lldb::tid_t thread_id, const ThreadPlanSP &thread_plan_sp, RestorePlanState &restorer, const EventSP &event_sp, EventSP &event_to_broadcast_sp, const EvaluateExpressionOptions &options, bool handle_interrupts)
static void SaveDynamicLoaderSections(Process &process, const SaveCoreOptions &options, CoreFileMemoryRanges &ranges, std::set< addr_t > &stack_ends)
static CoreFileMemoryRange CreateCoreFileMemoryRange(const lldb_private::MemoryRegionInfo ®ion)
static constexpr unsigned g_string_read_width
static bool AddDirtyPages(const lldb_private::MemoryRegionInfo ®ion, CoreFileMemoryRanges &ranges)
static constexpr OptionEnumValueElement g_follow_fork_mode_values[]
static void GetUserSpecifiedCoreFileSaveRanges(Process &process, const MemoryRegionInfos ®ions, const SaveCoreOptions &options, CoreFileMemoryRanges &ranges)
static void GetCoreFileSaveRangesDirtyOnly(Process &process, const MemoryRegionInfos ®ions, CoreFileMemoryRanges &ranges, std::set< addr_t > &stack_ends)
static bool ShouldShowError(Process &process)
static void AddRegion(const lldb_private::MemoryRegionInfo ®ion, bool try_dirty_pages, CoreFileMemoryRanges &ranges)
static Timeout< std::micro > GetExpressionTimeout(const EvaluateExpressionOptions &options, bool before_first_timeout)
static microseconds GetOneThreadExpressionTimeout(const EvaluateExpressionOptions &options)
static addr_t ComputeConstituentLoadAddress(BreakpointLocation &constituent, Process &proc)
static lldb_private::MemoryRegionInfo Intersect(const lldb_private::MemoryRegionInfo &lhs, const lldb_private::MemoryRegionInfo::RangeType &rhs)
static void SaveOffRegionsWithStackPointers(Process &process, const SaveCoreOptions &core_options, const MemoryRegionInfos ®ions, CoreFileMemoryRanges &ranges, std::set< addr_t > &stack_ends)
static void GetCoreFileSaveRangesStackOnly(Process &process, const MemoryRegionInfos ®ions, CoreFileMemoryRanges &ranges, std::set< addr_t > &stack_ends)
#define LLDB_SCOPED_TIMER()
ProcessExperimentalOptionValueProperties()
const Property * GetPropertyAtIndex(size_t idx, const ExecutionContext *exe_ctx) const override
ProcessOptionValueProperties(llvm::StringRef name)
static lldb::ABISP FindPlugin(lldb::ProcessSP process_sp, const ArchSpec &arch)
A section + offset based address range class.
Address & GetBaseAddress()
Get accessor for the base address of the range.
bool ContainsFileAddress(const Address &so_addr) const
Check if a section offset address is contained in this range.
lldb::addr_t GetByteSize() const
Get accessor for the byte size of this range.
A section + offset based address class.
lldb::addr_t GetLoadAddress(Target *target) const
Get the load address.
lldb::addr_t GetOpcodeLoadAddress(Target *target, AddressClass addr_class=AddressClass::eInvalid) const
Get the load address as an opcode load address.
bool IsValid() const
Check if the object state is valid.
Symbol * CalculateSymbolContextSymbol() const
A class which holds the metadata from a remote stub/corefile note about how many bits are used for ad...
uint32_t GetHighmemAddressableBits() const
static lldb::addr_t AddressableBitToMask(uint32_t addressable_bits)
uint32_t GetLowmemAddressableBits() const
An architecture specification class.
uint32_t GetAddressByteSize() const
Returns the size in bytes of an address of the current architecture.
bool IsValid() const
Tests if this ArchSpec is valid.
llvm::Triple & GetTriple()
Architecture triple accessor.
bool IsCompatibleMatch(const ArchSpec &rhs) const
Shorthand for IsMatch(rhs, CompatibleMatch).
bool IsExactMatch(const ArchSpec &rhs) const
Shorthand for IsMatch(rhs, ExactMatch).
lldb::ByteOrder GetByteOrder() const
Returns the byte order for the architecture specification.
virtual const MemoryTagManager * GetMemoryTagManager() const
A command line argument class.
General Outline: A breakpoint location is defined by the breakpoint that produces it,...
void SetIsIndirect(bool is_indirect)
bool ShouldResolveIndirectFunctions()
Returns whether we should resolve Indirect functions in setting the breakpoint site for this location...
lldb::break_id_t GetID() const
Returns the breakpoint location ID.
Address & GetAddress()
Gets the Address for this breakpoint location.
Breakpoint & GetBreakpoint()
Gets the Breakpoint that created this breakpoint location.
Class that manages the actual breakpoint that will be inserted into the running program.
BreakpointSite::Type GetType() const
void SetType(BreakpointSite::Type type)
bool IntersectsRange(lldb::addr_t addr, size_t size, lldb::addr_t *intersect_addr, size_t *intersect_size, size_t *opcode_offset) const
Says whether addr and size size intersects with the address intersect_addr.
uint8_t * GetTrapOpcodeBytes()
Returns the Opcode Bytes for this breakpoint.
uint8_t * GetSavedOpcodeBytes()
Gets the original instruction bytes that were overwritten by the trap.
bool IsHardware() const override
bool m_enabled
Boolean indicating if this breakpoint site enabled or not.
Broadcaster(lldb::BroadcasterManagerSP manager_sp, std::string name)
Construct with a broadcaster with a name.
lldb::ListenerSP GetPrimaryListener()
void RestoreBroadcaster()
Restore the state of the Broadcaster from a previous hijack attempt.
void SetEventName(uint32_t event_mask, const char *name)
Set the name for an event bit.
bool HijackBroadcaster(const lldb::ListenerSP &listener_sp, uint32_t event_mask=UINT32_MAX)
Provides a simple mechanism to temporarily redirect events from broadcaster.
void BroadcastEventIfUnique(lldb::EventSP &event_sp)
void SetPrimaryListener(lldb::ListenerSP listener_sp)
const char * GetHijackingListenerName()
void BroadcastEvent(lldb::EventSP &event_sp)
Broadcast an event which has no associated data.
bool IsHijackedForEvent(uint32_t event_mask)
void CheckInWithManager()
A class that implements CRTP-based "virtual constructor" idiom.
Generic representation of a type in a programming language.
CompilerType GetBasicTypeFromAST(lldb::BasicType basic_type) const
Create related types using the current type's AST.
CompilerType GetPointerType() const
Return a new CompilerType that is a pointer to this type.
const char * AsCString(const char *value_if_empty) const
Get the string value as a C string.
Status FinalizeCoreFileSaveRanges()
Finalize and merge all overlapping ranges in this collection.
A class to manage flag bits.
lldb::StreamUP GetAsyncErrorStream()
TargetList & GetTargetList()
Get accessor for the target list.
bool IsTopIOHandler(const lldb::IOHandlerSP &reader_sp)
bool RemoveIOHandler(const lldb::IOHandlerSP &reader_sp)
Remove the given IO handler if it's currently active.
void FlushStatusLine()
Flush cached state (e.g. stale execution context in the statusline).
void RunIOHandlerAsync(const lldb::IOHandlerSP &reader_sp, bool cancel_top_handler=true)
Run the given IO handler and return immediately.
PlatformList & GetPlatformList()
lldb::ListenerSP GetListener()
size_t void PutString(lldb::Severity severity, llvm::StringRef str)
size_t Printf(lldb::Severity severity, const char *format,...) __attribute__((format(printf
static lldb::DisassemblerSP DisassembleRange(const ArchSpec &arch, const char *plugin_name, const char *flavor, const char *cpu, const char *features, Target &target, llvm::ArrayRef< AddressRange > disasm_ranges, bool force_live_memory=false)
Encapsulates dynamic check functions used by expressions.
A plug-in interface definition class for dynamic loaders.
virtual void DidAttach()=0
Called after attaching a process.
virtual void CalculateDynamicSaveCoreRanges(lldb_private::Process &process, std::vector< lldb_private::MemoryRegionInfo > &ranges, llvm::function_ref< bool(const lldb_private::Thread &)> save_thread_predicate)
Returns a list of memory ranges that should be saved in the core file, specific for this dynamic load...
virtual void DidLaunch()=0
Called after launching a process.
static DynamicLoader * FindPlugin(Process *process, llvm::StringRef plugin_name)
Find a dynamic loader plugin for a given process.
void SetUnwindOnError(bool unwind=false)
bool GetStopOthers() const
bool DoesIgnoreBreakpoints() const
bool IsForUtilityExpr() const
bool GetTryAllThreads() const
void SetTrapExceptions(bool b)
void SetTryAllThreads(bool try_others=true)
void SetTimeout(const Timeout< std::micro > &timeout)
void SetStopOthers(bool stop_others=true)
bool DoesUnwindOnError() const
const Timeout< std::micro > & GetTimeout() const
bool GetStopOnFork() const
void SetIgnoreBreakpoints(bool ignore=false)
const Timeout< std::micro > & GetOneThreadTimeout() const
virtual llvm::StringRef GetFlavor() const =0
"lldb/Target/ExecutionContext.h" A class that contains an execution context.
void SetFrameSP(const lldb::StackFrameSP &frame_sp)
Set accessor to set only the frame shared pointer.
void SetProcessPtr(Process *process)
Set accessor to set only the process shared pointer from a process pointer.
void SetThreadPtr(Thread *thread)
Set accessor to set only the thread shared pointer from a thread pointer.
void SetTargetPtr(Target *target)
Set accessor to set only the target shared pointer from a target pointer.
StackFrame & GetFrameRef() const
Returns a reference to the thread object.
bool HasFrameScope() const
Returns true the ExecutionContext object contains a valid target, process, thread and frame.
void SetFramePtr(StackFrame *frame)
Set accessor to set only the frame shared pointer from a frame pointer.
Process * GetProcessPtr() const
Returns a pointer to the process object.
Thread * GetThreadPtr() const
Returns a pointer to the thread object.
llvm::StringRef GetFilename() const
Filename 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.
static FileSystem & Instance()
bool Test(ValueType bit) const
Test a single flag bit.
bool GetIsOptimized()
Get whether compiler optimizations were enabled for this function.
static lldb::thread_t GetCurrentThread()
Get the thread token (the one returned by ThreadCreate when the thread was created) for the calling t...
uint32_t GetIndexOfInstructionAtAddress(const Address &addr)
lldb::InstructionSP GetInstructionAtIndex(size_t idx) const
uint32_t GetIndexOfNextBranchInstruction(uint32_t start, bool ignore_calls, bool *found_calls) const
Get the index of the next branch instruction.
static void ModulesDidLoad(lldb_private::ModuleList &module_list, Process *process, InstrumentationRuntimeCollection &runtimes)
Class used by the Process to hold a list of its JITLoaders.
void ModulesDidLoad(ModuleList &module_list)
static void LoadPlugins(Process *process, lldb_private::JITLoaderList &list)
Find a JIT loader plugin for a given process.
virtual lldb::LanguageType GetLanguageType() const =0
static LanguageRuntime * FindPlugin(Process *process, lldb::LanguageType language)
virtual bool CouldHaveDynamicValue(ValueObject &in_value)=0
static lldb::LanguageType GetPrimaryLanguage(lldb::LanguageType language)
static std::set< lldb::LanguageType > GetSupportedLanguages()
static lldb::ListenerSP MakeListener(llvm::StringRef name)
void PutCString(const char *cstr)
void PutString(llvm::StringRef str)
static lldb::MemoryHistorySP FindPlugin(const lldb::ProcessSP process)
LazyBool GetMapped() const
int GetPageSize() const
Get the target system's VM page size in bytes.
LazyBool GetReadable() const
LazyBool GetExecutable() const
uint32_t GetLLDBPermissions() const
Range< lldb::addr_t, lldb::addr_t > RangeType
const std::optional< std::vector< lldb::addr_t > > & GetDirtyPageList() const
Get a vector of target VM pages that are dirty – that have been modified – within this memory region.
LazyBool GetWritable() const
void SetLLDBPermissions(uint32_t permissions)
virtual llvm::Expected< std::vector< lldb::addr_t > > UnpackTagsData(const std::vector< uint8_t > &tags, size_t granules=0) const =0
virtual lldb::addr_t GetGranuleSize() const =0
virtual llvm::Expected< std::vector< uint8_t > > PackTags(const std::vector< lldb::addr_t > &tags) const =0
virtual int32_t GetAllocationTagType() const =0
A collection class for Module objects.
A class that describes an executable image and its associated object and symbol files.
const FileSpec & GetFileSpec() const
Get const accessor for the module file specification.
A plug-in interface definition class for halted OS helpers.
virtual lldb::ThreadSP CreateThread(lldb::tid_t tid, lldb::addr_t context)
static OperatingSystem * FindPlugin(Process *process, const char *plugin_name)
Find a halted OS plugin for a given process.
virtual bool UpdateThreadList(ThreadList &old_thread_list, ThreadList &real_thread_list, ThreadList &new_thread_list)=0
virtual bool DoesPluginReportAllThreads()=0
auto GetPropertyAtIndexAs(size_t idx, const ExecutionContext *exe_ctx=nullptr) const
Property * ProtectedGetPropertyAtIndex(size_t idx)
static lldb::OptionValuePropertiesSP CreateLocalCopy(const Properties &global_properties)
void SetMaximumValue(uint64_t v)
void SetMinimumValue(uint64_t v)
OptionValueProperties * GetAsProperties()
virtual llvm::StringRef GetPluginName()=0
static llvm::SmallVector< ProcessCreateInstance > GetProcessCreateCallbacks()
static ProcessCreateInstance GetProcessCreateCallbackForPluginName(llvm::StringRef name)
static llvm::SmallVector< StructuredDataPluginCallbacks > GetStructuredDataPluginCallbacks()
static LanguageSet GetAllTypeSystemSupportedLanguagesForTypes()
RAII guard that pops a policy on destruction.
Guard PushPrivateState(Policy::PrivateStatePurpose purpose=Policy::PrivateStatePurpose::Default)
All Push* methods delegate to the named static factories on Policy, which already inherit from Curren...
static PolicyStack & Get()
An address in a process, qualified by an address space.
lldb::addr_t GetValue() const
lldb::addr_space_t GetAddressSpace() const
bool IsInDefaultAddressSpace() const
uint32_t GetResumeCount() const
lldb::ListenerSP GetListenerForProcess(Debugger &debugger)
bool GetWaitForLaunch() const
ProcessExperimentalProperties()
lldb::pid_t GetProcessID() const
lldb::ListenerSP m_listener_sp
FileSpec & GetExecutableFile()
bool IsScriptedProcess() const
ArchSpec & GetArchitecture()
void SetNameMatchType(NameMatch name_match_type)
ProcessInstanceInfo & GetProcessInfo()
static void DumpTableHeader(Stream &s, bool show_args, bool verbose)
bool GetDetachKeepsStopped() const
bool TrackMemoryCacheChanges() const
bool GetSteppingRunsAllThreads() const
void SetStopOnSharedLibraryEvents(bool stop)
Args GetExtraStartupCommands() const
std::unique_ptr< ProcessExperimentalProperties > m_experimental_properties_up
FollowForkMode GetFollowForkMode() const
uint32_t GetVirtualAddressableBits() const
~ProcessProperties() override
void SetIgnoreBreakpointsInExpressions(bool ignore)
bool GetUnwindOnErrorInExpressions() const
Args GetAlwaysRunThreadNames() const
std::chrono::seconds GetInterruptTimeout() const
bool GetDisableLangRuntimeUnwindPlans() const
void SetDetachKeepsStopped(bool keep_stopped)
bool GetVerifyMemoryReads() const
void SetDisableLangRuntimeUnwindPlans(bool disable)
std::chrono::seconds GetUtilityExpressionTimeout() const
void AddressMaskChangedCallback()
void SetVirtualAddressableBits(uint32_t bits)
bool GetStopOnSharedLibraryEvents() const
void SetHighmemVirtualAddressableBits(uint32_t bits)
void SetOSPluginReportsAllThreads(bool does_report)
bool GetWarningsOptimization() const
void DisableLanguageRuntimeUnwindPlansCallback()
void SetUnwindOnErrorInExpressions(bool ignore)
bool GetDisableMemoryCache() const
bool GetUseDelayedBreakpoints() const
FileSpec GetPythonOSPluginPath() const
bool GetStopOnExec() const
void SetPythonOSPluginPath(const FileSpec &file)
void SetExtraStartupCommands(const Args &args)
bool GetOSPluginReportsAllThreads() const
bool GetWarningsUnsupportedLanguage() const
uint32_t GetHighmemVirtualAddressableBits() const
OptionValueProperties * GetExperimentalProperties() const
bool GetIgnoreBreakpointsInExpressions() const
uint64_t GetMemoryCacheLineSize() const
ProcessProperties(lldb_private::Process *process)
bool TryLock(ProcessRunLock *lock)
Try to acquire the read lock.
Read/write lock around the process running/stopped state.
EventActionResult HandleBeingInterrupted() override
const char * GetExitString() override
EventActionResult PerformAction(lldb::EventSP &event_sp) override
AttachCompletionHandler(Process *process, uint32_t exec_count)
std::string m_exit_string
NextEventAction(Process *process)
lldb::ProcessWP m_process_wp
static bool GetRestartedFromEvent(const Event *event_ptr)
virtual bool ShouldStop(Event *event_ptr, bool &found_valid_stopinfo)
void SetUpdateStateOnRemoval()
static void AddRestartedReason(Event *event_ptr, const char *reason)
void SetInterrupted(bool new_value)
lldb::ProcessSP GetProcessSP() const
void SetRestarted(bool new_value)
static void SetRestartedInEvent(Event *event_ptr, bool new_value)
static lldb::ProcessSP GetProcessFromEvent(const Event *event_ptr)
static void SetInterruptedInEvent(Event *event_ptr, bool new_value)
bool ForwardEventToPendingListeners(Event *event_ptr) override
This will be queried for a Broadcaster with a primary and some secondary listeners after the primary ...
llvm::StringRef GetFlavor() const override
~ProcessEventData() override
bool GetInterrupted() const
bool GetRestarted() const
size_t GetNumRestartedReasons()
static bool GetInterruptedFromEvent(const Event *event_ptr)
const char * GetRestartedReasonAtIndex(size_t idx)
static bool SetUpdateStateOnRemoval(Event *event_ptr)
static lldb::StateType GetStateFromEvent(const Event *event_ptr)
lldb::StateType GetState() const
static const Process::ProcessEventData * GetEventDataFromEvent(const Event *event_ptr)
static llvm::StringRef GetFlavorString()
void DoOnRemoval(Event *event_ptr) override
void Dump(Stream *s) const override
A plug-in interface definition class for debugging a process.
virtual Status EnableBreakpointSite(BreakpointSite *bp_site)
Status WillAttachToProcessWithName(const char *process_name, bool wait_for_launch)
Called before attaching to a process.
virtual llvm::Expected< TraceSupportedResponse > TraceSupported()
Get the processor tracing type supported for this process.
lldb::IOHandlerSP m_process_input_reader
friend class ProcessProperties
virtual Status DoSignal(int signal)
Sends a process a UNIX signal signal.
virtual Status WillResume()
Called before resuming to a process.
std::mutex m_process_input_reader_mutex
lldb::addr_t m_code_address_mask
Mask for code an data addresses.
StopPointSiteList< lldb_private::BreakpointSite > & GetBreakpointSiteList()
std::vector< lldb::addr_t > m_image_tokens
virtual Status DoHalt(bool &caused_stop)
Halts a running process.
virtual void DidLaunch()
Called after launching a process.
virtual Status DisableSoftwareBreakpoint(BreakpointSite *bp_site)
lldb::pid_t GetID() const
Returns the pid of the process or LLDB_INVALID_PROCESS_ID if there is no known pid.
lldb::break_id_t CreateBreakpointSite(const lldb::BreakpointLocationSP &owner, bool use_hardware)
virtual Status WillSignal()
Called before sending a signal to a process.
void ResetImageToken(size_t token)
lldb::JITLoaderListUP m_jit_loaders_up
lldb::addr_t CallocateMemory(size_t size, uint32_t permissions, Status &error)
The public interface to allocating memory in the process, this also clears the allocated memory.
void SetNextEventAction(Process::NextEventAction *next_event_action)
Status Destroy(bool force_kill)
Kills the process and shuts down all threads that were spawned to track and monitor the process.
virtual Status WillDetach()
Called before detaching from a process.
virtual Status DoLaunch(Module *exe_module, ProcessLaunchInfo &launch_info)
Launch a new process.
StopPointSiteList< lldb_private::BreakpointSite > m_breakpoint_site_list
This is the list of breakpoint locations we intend to insert in the target.
void ControlPrivateStateThread(uint32_t signal)
ThreadList & GetThreadList()
void SetAddressableBitMasks(AddressableBits bit_masks)
void ClearPreResumeActions()
virtual DataExtractor GetAuxvData()
Process(lldb::TargetSP target_sp, lldb::ListenerSP listener_sp)
Construct with a shared pointer to a target, and the Process listener.
void PrintWarningUnsupportedLanguage(const SymbolContext &sc)
Print a user-visible warning about a function written in a language that this version of LLDB doesn't...
Status LaunchPrivate(ProcessLaunchInfo &launch_info, lldb::StateType &state, lldb::EventSP &event_sp)
std::vector< std::string > m_profile_data
bool m_can_interpret_function_calls
Status Resume()
Resumes all of a process's threads as configured using the Thread run control functions.
void PruneThreadPlans()
Prune ThreadPlanStacks for all unreported threads.
MemoryRegionInfoCache m_memory_region_infos_cache
void SetUnixSignals(lldb::UnixSignalsSP &&signals_sp)
std::string m_stdout_data
Remember if stdin must be forwarded to remote debug server.
bool RemoveInvalidMemoryRange(const LoadRange ®ion)
DelayedBreakpointCache m_delayed_breakpoints
uint32_t GetNextThreadIndexID(uint64_t thread_id)
Status PrivateResume()
The "private" side of resuming a process.
void SetDynamicCheckers(DynamicCheckerFunctions *dynamic_checkers)
void SetSTDIOFileDescriptor(int file_descriptor, std::optional< int > secondary_fd=std::nullopt)
Associates a file descriptor with the process' STDIO handling and configures an asynchronous reading ...
void SendAsyncInterrupt(Thread *thread=nullptr)
Send an async interrupt request.
void AddInvalidMemoryRegion(const LoadRange ®ion)
virtual void ModulesDidLoad(ModuleList &module_list)
InstrumentationRuntimeCollection m_instrumentation_runtimes
llvm::Error ExecuteBreakpointSiteAction(BreakpointSite &site, Process::BreakpointAction action, bool forbid_delay)
Performs action on site.
std::atomic< bool > m_destructing
std::shared_ptr< PrivateStateThread > m_current_private_state_thread_sp
This is filled on construction with the "main" private state which will be exposed to clients of this...
virtual llvm::Error UpdateBreakpointSites(const BreakpointSiteToActionMap &site_to_action)
virtual Status DoGetMemoryRegionInfo(lldb::addr_t load_addr, MemoryRegionInfo &range_info)
DoGetMemoryRegionInfo is called by GetMemoryRegionInfo after it has removed non address bits from loa...
@ eBroadcastInternalStateControlResume
@ eBroadcastInternalStateControlStop
@ eBroadcastInternalStateControlPause
int GetExitStatus()
Get the exit status for a process.
OperatingSystem * GetOperatingSystem()
lldb::ExpressionResults RunThreadPlan(ExecutionContext &exe_ctx, lldb::ThreadPlanSP &thread_plan_sp, const EvaluateExpressionOptions &requested_options, DiagnosticManager &diagnostic_manager)
Status WillAttachToProcessWithID(lldb::pid_t pid)
Called before attaching to a process.
virtual Status DoDetach(bool keep_stopped)
Detaches from a running or stopped process.
std::unique_ptr< UtilityFunction > m_dlopen_utility_func_up
void SetRunningUtilityFunction(bool on)
void DisableAllBreakpointSites()
uint32_t m_process_unique_id
Each lldb_private::Process class that is created gets a unique integer ID that increments with each n...
int64_t ReadSignedIntegerFromMemory(lldb::addr_t load_addr, size_t byte_size, int64_t fail_value, Status &error)
Address AdvanceAddressToNextBranchInstruction(Address default_stop_addr, AddressRange range_bounds)
Find the next branch instruction to set a breakpoint on.
virtual bool GetLoadAddressPermissions(lldb::addr_t load_addr, uint32_t &permissions)
Attempt to get the attributes for a region of memory in the process.
static bool HandleProcessStateChangedEvent(const lldb::EventSP &event_sp, Stream *stream, SelectMostRelevant select_most_relevant, bool &pop_process_io_handler)
Centralize the code that handles and prints descriptions for process state changes.
bool SetPublicRunLockToRunning()
virtual size_t GetAsyncProfileData(char *buf, size_t buf_size, Status &error)
Get any available profile data.
void CloseSTDIOSecondaryFileDescriptor()
Close m_stdio_secondary_fd if it is still open.
lldb::addr_t FixDataAddress(lldb::addr_t pc)
lldb::addr_t AllocateMemory(size_t size, uint32_t permissions, Status &error)
The public interface to allocating memory in the process.
std::unique_ptr< NextEventAction > m_next_event_action_up
void SetHighmemDataAddressMask(lldb::addr_t data_address_mask)
bool PruneThreadPlansForTID(lldb::tid_t tid)
Prune ThreadPlanStacks for unreported threads.
virtual void DidDetach()
Called after detaching from a process.
void PausePrivateStateThread()
virtual llvm::SmallVector< llvm::MutableArrayRef< uint8_t > > DoReadMemoryRanges(llvm::ArrayRef< Range< lldb::addr_t, size_t > > ranges, llvm::MutableArrayRef< uint8_t > buffer)
Reads each range individually via ReadMemoryFromInferior, bypassing the memory cache.
Status EnableBreakpointSiteByID(lldb::user_id_t break_id)
ProcessModID GetModID() const
Get the Modification ID of the process.
size_t ReadMemoryFromInferior(lldb::addr_t vm_addr, void *buf, size_t size, Status &error)
Read of memory from a process.
size_t ReadScalarIntegerFromMemory(lldb::addr_t addr, uint32_t byte_size, bool is_signed, Scalar &scalar, Status &error)
virtual Status Launch(ProcessLaunchInfo &launch_info)
Launch a new process.
std::mutex m_run_thread_plan_lock
static void SettingsInitialize()
void BroadcastStructuredData(const StructuredData::ObjectSP &object_sp, const lldb::StructuredDataPluginSP &plugin_sp)
Broadcasts the given structured data object from the given plugin.
void Flush()
Flush all data in the process.
bool m_clear_thread_plans_on_stop
size_t ReadCStringFromMemory(lldb::addr_t vm_addr, char *cstr, size_t cstr_max_len, Status &error)
Read a null-terminated C string from memory.
void ResumePrivateStateThread()
void MapSupportedStructuredDataPlugins(const StructuredData::Array &supported_type_names)
Loads any plugins associated with asynchronous structured data and maps the relevant supported type n...
bool GetEventsPrivate(lldb::EventSP &event_sp, const Timeout< std::micro > &timeout, bool control_only)
lldb::ABISP m_abi_sp
This is the current signal set for this process.
virtual void DidSignal()
Called after sending a signal to a process.
virtual size_t ReadMemory(const ProcessAddress &process_addr, void *buf, size_t size, Status &error)
Read of memory from a process.
std::map< lldb::BreakpointSiteSP, BreakpointAction, SiteIDCmp > BreakpointSiteToActionMap
virtual SystemRuntime * GetSystemRuntime()
Get the system runtime plug-in for this process.
void RemoveBreakpointOpcodesFromBuffer(lldb::addr_t addr, size_t size, uint8_t *buf) const
std::map< uint64_t, uint32_t > m_thread_id_to_index_id_map
lldb::StateType GetPrivateState() const
void SetPrivateStateNoLock(lldb::StateType new_state)
bool DumpThreadPlansForTID(Stream &strm, lldb::tid_t tid, lldb::DescriptionLevel desc_level, bool internal, bool condense_trivial, bool skip_unreported_plans)
Dump the thread plans associated with thread with tid.
lldb::ListenerSP m_private_state_listener_sp
uint32_t m_extended_thread_stop_id
The natural stop id when extended_thread_list was last updated.
bool PreResumeActionCallback(void *)
lldb::RunDirection m_base_direction
ThreadPlanBase run direction.
Range< lldb::addr_t, lldb::addr_t > LoadRange
static constexpr llvm::StringRef ResumeSynchronousHijackListenerName
void SetBreakpointSiteEnabled(BreakpointSite &site, bool is_enabled=true)
bool WritePointerToMemory(lldb::addr_t vm_addr, lldb::addr_t ptr_value, Status &error)
QueueList m_queue_list
The list of libdispatch queues at a given stop point.
void ClearPreResumeAction(PreResumeActionCallback callback, void *baton)
virtual Status WillDestroy()
lldb::ThreadSP CreateOSPluginThread(lldb::tid_t tid, lldb::addr_t context)
std::vector< PreResumeCallbackAndBaton > m_pre_resume_actions
void SetCanJIT(bool can_jit)
Sets whether executing JIT-compiled code in this process is possible.
lldb::StateType GetStateChangedEventsPrivate(lldb::EventSP &event_sp, const Timeout< std::micro > &timeout)
void LoadOperatingSystemPlugin(bool flush)
lldb::StructuredDataPluginSP GetStructuredDataPlugin(llvm::StringRef type_name) const
Returns the StructuredDataPlugin associated with a given type name, if there is one.
lldb::DynamicLoaderUP m_dyld_up
friend class ProcessEventData
void ResetExtendedCrashInfoDict()
AddressRanges FindRangesInMemory(const uint8_t *buf, uint64_t size, const AddressRanges &ranges, size_t alignment, size_t max_matches, Status &error)
virtual bool GetModuleSpec(const FileSpec &module_file_spec, const ArchSpec &arch, ModuleSpec &module_spec)
Try to fetch the module specification for a module with the given file name and architecture.
virtual size_t DoWriteMemory(lldb::addr_t vm_addr, const void *buf, size_t size, Status &error)
Actually do the writing of memory to a process.
virtual Status WriteObjectFile(std::vector< ObjectFile::LoadableData > entries)
std::recursive_mutex m_stdio_communication_mutex
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.
StopPointSiteList< lldb_private::WatchpointResource > m_watchpoint_resource_list
Watchpoint resources currently in use.
Status DisableBreakpointSiteByID(lldb::user_id_t break_id)
llvm::Expected< const MemoryTagManager * > GetMemoryTagManager()
If this architecture and process supports memory tagging, return a tag manager that can be used to ma...
~Process() override
Destructor.
virtual Status DoWriteMemoryTags(lldb::addr_t addr, size_t len, int32_t type, const std::vector< uint8_t > &tags)
Does the final operation to write memory tags.
std::recursive_mutex m_profile_data_comm_mutex
bool IsBreakpointSitePhysicallyEnabled(const BreakpointSite &site)
std::vector< AddressSpaceInfo > m_address_spaces
A list of address spaces for this process.
lldb::InstrumentationRuntimeSP GetInstrumentationRuntime(lldb::InstrumentationRuntimeType type)
ProcessRunLock::ProcessRunLocker StopLocker
Status ResumeSynchronous(Stream *stream)
Resume a process, and wait for it to stop.
lldb::addr_t FixAnyAddress(lldb::addr_t pc)
Use this method when you do not know, or do not care what kind of address you are fixing.
virtual Status DoWillLaunch(Module *module)
Called before launching to a process.
virtual Status ConnectRemote(llvm::StringRef remote_url)
Attach to a remote system via a URL.
void AppendSTDOUT(const char *s, size_t len)
llvm::StringMap< lldb::StructuredDataPluginSP > m_structured_data_plugin_map
virtual Status DisableBreakpointSite(BreakpointSite *bp_site)
size_t GetThreadStatus(Stream &ostrm, bool only_threads_with_stop_reason, uint32_t start_frame, uint32_t num_frames, uint32_t num_frames_with_source, bool stop_format)
void CalculateExecutionContext(ExecutionContext &exe_ctx) override
Reconstruct the object's execution context into sc.
Event * PeekAtStateChangedEvents()
std::vector< Notifications > m_notifications
The list of notifications that this process can deliver.
bool HasAssignedIndexIDToThread(uint64_t sb_thread_id)
llvm::SmallVector< std::optional< uint64_t > > ReadUnsignedIntegersFromMemory(llvm::ArrayRef< lldb::addr_t > addresses, unsigned byte_size)
Use Process::ReadMemoryRanges to efficiently read multiple unsigned integers from memory at once.
void StopPrivateStateThread()
size_t AddImageToken(lldb::addr_t image_ptr)
llvm::Error FlushDelayedBreakpoints()
lldb::StateType GetPrivateStateNoLock() const
virtual void DoFindInMemory(lldb::addr_t start_addr, lldb::addr_t end_addr, const uint8_t *buf, size_t size, AddressRanges &matches, size_t alignment, size_t max_matches)
virtual bool DestroyRequiresHalt()
lldb::EventSP CreateEventFromProcessState(uint32_t event_type)
StructuredData::DictionarySP m_crash_info_dict_sp
A repository for extra crash information, consulted in GetExtendedCrashInformation.
Status CalculateCoreFileSaveRanges(const SaveCoreOptions &core_options, CoreFileMemoryRanges &ranges)
Helper function for Process::SaveCore(...) that calculates the address ranges that should be saved.
lldb::TargetSP CalculateTarget() override
bool SetPublicRunLockToStopped()
void SetHighmemCodeAddressMask(lldb::addr_t code_address_mask)
lldb::ByteOrder GetByteOrder() const
Status Detach(bool keep_stopped)
Detaches from a running or stopped process.
void UpdateThreadListIfNeeded()
virtual llvm::Expected< std::vector< lldb::addr_t > > ReadMemoryTags(lldb::addr_t addr, size_t len)
Read memory tags for the range addr to addr+len.
virtual void DidResume()
Called after resuming a process.
virtual void DidExec()
Called after a process re-execs itself.
void SetCodeAddressMask(lldb::addr_t code_address_mask)
AllocatedMemoryCache m_allocated_memory_cache
virtual Status LoadCore()
llvm::Expected< lldb::addr_t > ReadPointerFromMemory(lldb::addr_t vm_addr)
std::mutex m_exit_status_mutex
Mutex so m_exit_status m_exit_string can be safely accessed from multiple threads.
Status Signal(int signal)
Sends a process a UNIX signal signal.
void SetDynamicLoader(lldb::DynamicLoaderUP dyld)
ThreadPlanStackMap m_thread_plans
This is the list of thread plans for threads in m_thread_list, as well as threads we knew existed,...
std::recursive_mutex m_thread_mutex
virtual Status ConfigureStructuredData(llvm::StringRef type_name, const StructuredData::ObjectSP &config_sp)
Configure asynchronous structured data feature.
Guarded< std::optional< int >, std::mutex > m_stdio_secondary_fd
The secondary side of the pseudo terminal the inferior uses for stdio.
virtual Status DoWillAttachToProcessWithName(const char *process_name, bool wait_for_launch)
Called before attaching to a process.
bool m_currently_handling_do_on_removals
void HandlePrivateEvent(lldb::EventSP &event_sp)
void BroadcastAsyncProfileData(const std::string &one_profile_data)
lldb::StateType GetState()
Get accessor for the current process state.
virtual Status DoWillAttachToProcessWithID(lldb::pid_t pid)
Called before attaching to a process.
ProcessRunLock & GetRunLock()
virtual Status DoLoadCore()
Predicate< uint32_t > m_iohandler_sync
LanguageRuntimeCollection m_language_runtimes
Should we detach if the process object goes away with an explicit call to Kill or Detach?
virtual Status GetMemoryRegions(lldb_private::MemoryRegionInfos ®ion_list)
Obtain all the mapped memory regions within this process.
size_t WriteMemoryPrivate(lldb::addr_t addr, const void *buf, size_t size, Status &error)
void SetRunningUserExpression(bool on)
enum lldb_private::Process::@120260360120067272255351105340035202127223005263 m_can_jit
bool IsPossibleDynamicValue(ValueObject &in_value)
std::recursive_mutex m_delayed_breakpoints_mutex
llvm::Expected< lldb::ModuleSP > ReadModuleFromMemory(const FileSpec &file_spec, lldb::addr_t header_addr, size_t size_to_read=512)
Creates and populates a module using an in-memory object file.
Status m_dlopen_utility_func_error
The error from the one attempt to create m_dlopen_utility_func_up, set only if that attempt failed.
void RemoveConstituentFromBreakpointSite(lldb::user_id_t site_id, lldb::user_id_t constituent_id, lldb::BreakpointSiteSP &bp_site_sp)
void VerifyMemoryRead(lldb::addr_t addr, const void *cache_buf, size_t cache_bytes_read, size_t size, const Status &cache_error)
Re-read size bytes at addr and assert they match the cache.
lldb::addr_t FindInMemory(lldb::addr_t low, lldb::addr_t high, const uint8_t *buf, size_t size)
Find a pattern within a memory region.
lldb::OperatingSystemUP m_os_up
uint32_t GetLastNaturalStopID() const
lldb::StateType WaitForProcessToStop(const Timeout< std::micro > &timeout, lldb::EventSP *event_sp_ptr=nullptr, bool wait_always=true, lldb::ListenerSP hijack_listener=lldb::ListenerSP(), Stream *stream=nullptr, bool use_run_lock=true, SelectMostRelevant select_most_relevant=DoNoSelectMostRelevantFrame)
lldb::UnixSignalsSP m_unix_signals_sp
bool StateChangedIsHijackedForSynchronousResume()
const char * GetExitDescription()
Get a textual description of what the process exited.
void SetPublicState(lldb::StateType new_state, bool restarted)
lldb::tid_t m_interrupt_tid
void SetDataAddressMask(lldb::addr_t data_address_mask)
virtual Status DoConnectRemote(llvm::StringRef remote_url)
Attach to a remote system via a URL.
uint64_t ReadUnsignedIntegerFromMemory(lldb::addr_t load_addr, size_t byte_size, uint64_t fail_value, Status &error)
Reads an unsigned integer of the specified byte size from process memory.
llvm::once_flag m_dlopen_utility_func_flag_once
void AddCacheData(lldb::addr_t addr, const lldb::WritableDataBufferSP &data_buffer_sp)
Cache memory, restoring the original bytes under any breakpoint.
virtual void UpdateQueueListIfNeeded()
virtual Status UpdateAutomaticSignalFiltering()
virtual lldb::addr_t GetImageInfoAddress()
Get the image information address for the current process.
std::map< lldb::addr_t, lldb::addr_t > m_resolved_indirect_addresses
This helps with the Public event coalescing in ShouldBroadcastEvent.
virtual Status DoAttachToProcessWithID(lldb::pid_t pid, const ProcessAttachInfo &attach_info)
Attach to an existing process using a process ID.
llvm::SmallVector< std::optional< std::string > > ReadCStringsFromMemory(llvm::ArrayRef< lldb::addr_t > addresses)
void SetCanRunCode(bool can_run_code)
Sets whether executing code in this process is possible.
Status ClearBreakpointSiteByID(lldb::user_id_t break_id)
virtual Status EnableSoftwareBreakpoint(BreakpointSite *bp_site)
void AppendSTDERR(const char *s, size_t len)
bool GetShouldDetach() const
static llvm::StringRef GetStaticBroadcasterClass()
uint32_t m_thread_index_id
Each thread is created with a 1 based index that won't get re-used.
bool ProcessIOHandlerExists() const
virtual Status DoResume(lldb::RunDirection direction)
Resumes all of a process's threads as configured using the Thread run control functions.
bool RouteAsyncStructuredData(const StructuredData::ObjectSP object_sp)
Route the incoming structured data dictionary to the right plugin.
virtual void DidDestroy()
bool IsBreakpointSiteEnabled(const BreakpointSite &site)
Broadcaster m_private_state_control_broadcaster
lldb::addr_t GetHighmemCodeAddressMask()
The highmem masks are for targets where we may have different masks for low memory versus high memory...
bool PushProcessIOHandler()
Broadcaster m_private_state_broadcaster
virtual bool DetachRequiresHalt()
virtual bool IsAlive()
Check if a process is still alive.
bool m_destroy_in_process
ThreadList m_thread_list_real
The threads for this process as are known to the protocol we are debugging with.
lldb::addr_t m_data_address_mask
virtual ArchSpec GetSystemArchitecture()
Get the system architecture for this process.
Status DeallocateMemory(lldb::addr_t ptr)
The public interface to deallocating memory in the process.
virtual Status DisableWatchpoint(lldb::WatchpointSP wp_sp, bool notify=true)
void RegisterNotificationCallbacks(const Process::Notifications &callbacks)
Register for process and thread notifications.
virtual void DidAttach(ArchSpec &process_arch)
Called after attaching a process.
virtual lldb::addr_t ResolveIndirectFunction(const Address *address, Status &error)
Resolve dynamically loaded indirect functions.
lldb::StateType m_last_broadcast_state
LanguageRuntime * GetLanguageRuntime(lldb::LanguageType language)
ProcessModID m_mod_id
Tracks the state of the process over stops and other alterations.
virtual bool FindModuleUUID(ModuleSpec &spec)
Given a module spec, try to find the UUID information.
void SetID(lldb::pid_t new_pid)
Sets the stored pid.
virtual JITLoaderList & GetJITLoaders()
uint32_t AssignIndexIDToThread(uint64_t thread_id)
virtual bool SetExitStatus(int exit_status, llvm::StringRef exit_string)
Set accessor for the process exit status (return code).
uint32_t m_queue_list_stop_id
The natural stop id when queue list was last fetched.
void PrintWarningOptimization(const SymbolContext &sc)
Print a user-visible warning about a module being built with optimization.
virtual bool DoCanAllocateMemory()
Determines whether DoAllocateMemory is expected to succeed, without running code in the process.
@ eBroadcastBitStructuredData
@ eBroadcastBitStateChanged
@ eBroadcastBitProfileData
virtual std::optional< bool > DoGetWatchpointReportedAfter()
Provide an override value in the subclass for lldb's CPU-based logic for whether watchpoint exception...
static ProcessProperties & GetGlobalProperties()
void StopSTDIOMonitoring(bool drain)
Stop monitoring the process' stdio.
lldb::addr_t m_highmem_code_address_mask
lldb::addr_t GetImagePtrFromToken(size_t token) const
int m_exit_status
The exit status of the process, or -1 if not set.
std::vector< LanguageRuntime * > GetLanguageRuntimes()
void SetShouldDetach(bool b)
bool StartPrivateStateThread(lldb::StateType state, bool run_lock_is_running, std::shared_ptr< PrivateStateThread > *backup_ptr=nullptr)
MemoryCache m_memory_cache
static void STDIOReadThreadBytesReceived(void *baton, const void *src, size_t src_len)
virtual bool GetProcessInfo(ProcessInstanceInfo &info)
virtual void DidHalt()
Called after halting a process.
lldb::addr_t FixCodeAddress(lldb::addr_t pc)
Some targets might use bits in a code address to indicate a mode switch, ARM uses bit zero to signify...
lldb::StateType WaitForProcessStopPrivate(lldb::EventSP &event_sp, const Timeout< std::micro > &timeout)
void RestoreProcessEvents()
Restores the process event broadcasting to its normal state.
virtual bool SupportsMemoryTagging()
Check whether the process supports memory tagging.
bool SetPrivateRunLockToRunning()
void DumpThreadPlans(Stream &strm, lldb::DescriptionLevel desc_level, bool internal, bool condense_trivial, bool skip_unreported_plans)
Dump all the thread plans for this process.
uint32_t GetAddressByteSize() const
uint32_t GetStopID() const
void SetPrivateState(lldb::StateType state)
llvm::Expected< AddressSpaceInfo > GetAddressSpaceInfo(llvm::StringRef address_space_name)
lldb::addr_t m_highmem_data_address_mask
virtual Status DoDestroy()=0
Status StopForDestroyOrDetach(lldb::EventSP &exit_event_sp)
bool GetWatchpointReportedAfter()
Whether lldb will be notified about watchpoints after the instruction has completed executing,...
lldb::StateType GetNextEvent(lldb::EventSP &event_sp)
virtual bool DoUpdateThreadList(ThreadList &old_thread_list, ThreadList &new_thread_list)=0
Update the thread list following process plug-in's specific logic.
virtual llvm::Expected< std::vector< uint8_t > > DoReadMemoryTags(lldb::addr_t addr, size_t len, int32_t type)
Does the final operation to read memory tags.
bool StateChangedIsExternallyHijacked()
bool RunPreResumeActions()
lldb::StateType GetPublicState() const
bool PopProcessIOHandler()
virtual size_t GetSTDERR(char *buf, size_t buf_size, Status &error)
Get any available STDERR.
size_t WriteMemory(lldb::addr_t vm_addr, const void *buf, size_t size, Status &error)
Write memory to a process.
virtual llvm::Expected< bool > SaveCore(llvm::StringRef outfile)
Save core dump into the specified file.
bool ProcessIOHandlerIsActive()
Status DestroyImpl(bool force_kill)
bool m_force_next_event_delivery
void GetStatus(Stream &ostrm, bool is_verbose=false)
lldb::SystemRuntimeUP m_system_runtime_up
virtual Status WillHalt()
Called before halting to a process.
bool ShouldBroadcastEvent(Event *event_ptr)
This is the part of the event handling that for a process event.
virtual DynamicLoader * GetDynamicLoader()
Get the dynamic loader plug-in for this process.
std::string m_exit_string
A textual description of why a process exited.
lldb::DynamicCheckerFunctionsUP m_dynamic_checkers_up
The functions used by the expression parser to validate data that expressions use.
void SyncIOHandler(uint32_t iohandler_id, const Timeout< std::micro > &timeout)
Waits for the process state to be running within a given msec timeout.
void ForceNextEventDelivery()
ThreadPlanStack * FindThreadPlans(lldb::tid_t tid)
Find the thread plan stack associated with thread with tid.
virtual Status Attach(ProcessAttachInfo &attach_info)
Attach to an existing process using the process attach info.
virtual void Finalize(bool destructing)
This object is about to be destroyed, do any necessary cleanup.
lldb::addr_t GetDataAddressMask()
std::recursive_mutex & GetPrivateStateMutex()
virtual bool ShouldUseDelayedBreakpoints() const
Reports whether this process should delay physically enabling/disabling breakpoints until the process...
void SynchronouslyNotifyStateChanged(lldb::StateType state)
bool SetPrivateRunLockToStopped()
void SetSTDIOPseudoTerminal(PseudoTerminal &pty)
Associates the primary side of pty with the process' STDIO handling.
bool CanJIT()
Determines whether executing JIT-compiled code in this process is possible.
virtual Status DoAttachToProcessWithName(const char *process_name, const ProcessAttachInfo &attach_info)
Attach to an existing process using a partial process name.
ThreadList m_thread_list
The threads for this process as the user will see them.
bool UpdateThreadList(ThreadList &old_thread_list, ThreadList &new_thread_list)
Update the thread list.
const lldb::UnixSignalsSP & GetUnixSignals()
llvm::Expected< UtilityFunction & > GetLoadImageUtilityFunction(Platform *platform, llvm::function_ref< llvm::Expected< std::unique_ptr< UtilityFunction > >()> factory)
Get the cached UtilityFunction that assists in loading binary images into the process.
void SetBaseDirection(lldb::RunDirection direction)
Set the base run direction for the process.
Status WriteMemoryTags(lldb::addr_t addr, size_t len, const std::vector< lldb::addr_t > &tags)
Write memory tags for a range of memory.
virtual size_t DoReadMemory(const ProcessAddress &process_addr, void *buf, size_t size, Status &error)=0
Actually do the reading of memory from a process.
virtual std::optional< CoreArgs > GetCoreFileArgs()
Provide arguments of a command that triggered a core dump.
virtual bool IsLiveDebugSession() const
Check if a process is a live debug session, or a corefile/post-mortem.
std::weak_ptr< Target > m_target_wp
The target that owns this process.
virtual void DoDidExec()
Subclasses of Process should implement this function if they need to do anything after a process exec...
llvm::SmallVector< std::optional< lldb::addr_t > > ReadPointersFromMemory(llvm::ArrayRef< lldb::addr_t > ptr_locs)
Use Process::ReadMemoryRanges to efficiently read multiple pointers from memory at once.
virtual void RefreshStateAfterStop()=0
Currently called as part of ShouldStop.
llvm::SmallVector< llvm::MutableArrayRef< uint8_t > > ReadMemoryRanges(llvm::ArrayRef< Range< lldb::addr_t, size_t > > ranges, llvm::MutableArrayRef< uint8_t > buffer)
Read from multiple memory ranges and write the results into buffer.
lldb::addr_t GetCodeAddressMask()
Get the current address mask in the Process.
bool UnregisterNotificationCallbacks(const Process::Notifications &callbacks)
Unregister for process and thread notifications.
bool HijackProcessEvents(lldb::ListenerSP listener_sp)
If you need to ensure that you and only you will hear about some public event, then make a new listen...
Status GetMemoryRegionInfo(lldb::addr_t load_addr, MemoryRegionInfo &range_info)
Locate the memory region that contains load_addr.
friend class DynamicLoader
static void SettingsTerminate()
lldb::addr_t GetHighmemDataAddressMask()
ThreadList m_extended_thread_list
Constituent for extended threads that may be generated, cleared on natural stops.
bool CallVoidArgVoidPtrReturn(const Address *address, lldb::addr_t &returned_func, bool trap_exceptions=false)
void AddPreResumeAction(PreResumeActionCallback callback, void *baton)
size_t GetSoftwareBreakpointTrapOpcode(BreakpointSite *bp_site)
Status Halt(bool clear_thread_plans=false, bool use_run_lock=true)
Halts a running process.
const lldb::ABISP & GetABI()
Status WillLaunch(Module *module)
Called before launching to a process.
std::vector< lldb::ThreadSP > CalculateCoreFileThreadList(const SaveCoreOptions &core_options)
Helper function for Process::SaveCore(...) that calculates the thread list based upon options set wit...
size_t WriteScalarToMemory(lldb::addr_t vm_addr, const Scalar &scalar, size_t size, Status &error)
Write all or part of a scalar value to memory.
virtual size_t GetSTDOUT(char *buf, size_t buf_size, Status &error)
Get any available STDOUT.
lldb::ThreadCollectionSP GetHistoryThreads(lldb::addr_t addr)
bool PrivateStateThreadIsRunning() const
lldb::thread_result_t RunPrivateStateThread(PrivateStateThread::Purpose purpose)
lldb::StateType GetStateChangedEvents(lldb::EventSP &event_sp, const Timeout< std::micro > &timeout, lldb::ListenerSP hijack_listener)
ThreadedCommunication m_stdio_communication
std::atomic< bool > m_finalizing
The tid of the thread that issued the async interrupt, used by thread plan timeout.
std::recursive_mutex m_language_runtimes_mutex
std::string m_stderr_data
Target & GetTarget()
Get the target object pointer for this module.
virtual Status EnableWatchpoint(lldb::WatchpointSP wp_sp, bool notify=true)
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
A pseudo terminal helper class.
int ReleaseSecondaryFileDescriptor()
Release the secondary file descriptor.
llvm::Error OpenSecondary(int oflag)
Open the secondary for the current primary pseudo terminal.
@ invalid_fd
Invalid file descriptor value.
int ReleasePrimaryFileDescriptor()
Release the primary file descriptor.
void Append(const Entry &entry)
uint64_t GetPC(uint64_t fail_value=LLDB_INVALID_ADDRESS)
lldb::SaveCoreStyle GetStyle() const
bool HasSpecifiedThreads() const
const MemoryRanges & GetCoreFileMemoryRanges() const
bool ShouldThreadBeSaved(lldb::tid_t tid) const
size_t GetByteSize() const
bool SignExtend(uint32_t bit_pos)
unsigned long long ULongLong(unsigned long long fail_value=0) const
Scalar::Type GetType() const
size_t GetAsMemoryData(void *dst, size_t dst_len, lldb::ByteOrder dst_byte_order, Status &error) const
long long SLongLong(long long fail_value=0) const
This base class provides an interface to stack frames.
virtual StackID & GetStackID()
void CalculateExecutionContext(ExecutionContext &exe_ctx) override
Reconstruct the object's execution context into sc.
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.
const char * AsCString(const char *default_error_str="unknown error") const
Get the error string associated with the current error.
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.
static lldb::ValueObjectSP GetCrashingDereference(lldb::StopInfoSP &stop_info_sp, lldb::addr_t *crashing_address=nullptr)
void ForEach(std::function< void(StopPointSite *)> const &callback)
lldb::break_id_t GetID() const
virtual lldb::addr_t GetLoadAddress() const
uint32_t GetByteSize() const
lldb::break_id_t GetID() const
const char * GetData() const
llvm::StringRef GetString() const
A stream class that can stream formatted output to a file.
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.
bool ForEach(std::function< bool(Object *object)> const &foreach_callback) const
bool GetValueForKeyAsString(llvm::StringRef key, llvm::StringRef &result) const
A class which can hold structured data.
std::shared_ptr< Object > ObjectSP
Defines a symbol context baton that can be handed other debug core functions.
lldb::LanguageType GetLanguage() const
Function * function
The Function for a given query.
lldb::ModuleSP module_sp
The Module for a given query.
lldb::addr_t GetLoadAddress(Target *target) const
ConstString GetName() const
Address GetAddress() const
A plug-in interface definition class for system runtimes.
virtual void DidAttach()
Called after attaching to a process.
void ModulesDidLoad(const ModuleList &module_list) override
Called when modules have been loaded in the process.
virtual void DidLaunch()
Called after launching a process.
static SystemRuntime * FindPlugin(Process *process)
Find a system runtime plugin for a given process.
uint32_t GetIndexOfTarget(lldb::TargetSP target_sp) const
lldb::TargetSP GetSelectedTarget()
bool SetPreferDynamicValue(lldb::DynamicValueType d)
bool GetUseFastStepping() const
lldb::DynamicValueType GetPreferDynamicValue() const
void SetFirstPrivateStopTime()
void SetFirstPublicStopTime()
Module * GetExecutableModulePointer()
void MarkExecutableModule(const lldb::ModuleSP &module_sp)
Make module_sp the main executable without clearing the other images, unlike RebuildModuleListWithExe...
Debugger & GetDebugger() const
void UpdateSignalsFromDummy(lldb::UnixSignalsSP signals_sp, lldb::StreamSP warning_stream_sp)
Updates the signals in signals_sp using the stored dummy signals.
void ClearAllLoadedSections()
void ClearModules(bool delete_locations)
Architecture * GetArchitecturePlugin() const
TargetStats & GetStatistics()
bool SetArchitecture(const ArchSpec &arch_spec, bool set_platform=false, bool merge=true)
Set the architecture for this target.
llvm::Expected< lldb::TypeSystemSP > GetScratchTypeSystemForLanguage(lldb::LanguageType language, bool create_on_demand=true)
lldb::ModuleSP GetExecutableModule()
Gets the module for the main executable.
void DidExec()
Called as the last function in Process::DidExec().
bool RunStopHooks(bool at_initial_stop=false)
Status Install(ProcessLaunchInfo *launch_info)
lldb::PlatformSP GetPlatform()
const ArchSpec & GetArchitecture() const
void RebuildModuleListWithExecutable(lldb::ModuleSP &module_sp, LoadDependentFiles load_dependent_files=eLoadDependentsDefault)
Clear the module list and rebuild it around a new main executable.
void SetPlatform(const lldb::PlatformSP &platform_sp)
virtual ThreadIterable Threads()
static llvm::Expected< HostThread > LaunchThread(llvm::StringRef name, std::function< lldb::thread_result_t()> thread_function, size_t min_stack_byte_size=0)
lldb::ThreadSP GetSelectedThread()
uint32_t GetSize(bool can_update=true)
bool SetSelectedThreadByID(lldb::tid_t tid, bool notify=false)
lldb::ThreadSP FindThreadByIndexID(uint32_t index_id, bool can_update=true)
lldb::ThreadSP GetThreadAtIndex(uint32_t idx, bool can_update=true)
std::recursive_mutex & GetMutex() const override
lldb::ThreadSP GetExpressionExecutionThread()
static void SettingsInitialize()
static void SettingsTerminate()
static ThreadProperties & GetGlobalProperties()
Represents UUID's of various sizes.
RAII guard that should be acquired when an utility function is called within a given process.
lldb::LanguageType GetObjectRuntimeLanguage()
#define LLDB_INVALID_BREAK_ID
#define LLDB_INVALID_ADDRESS_MASK
Address Mask Bits not used for addressing are set to 1 in the mask; all mask bits set is an invalid v...
#define LLDB_INVALID_THREAD_ID
#define UNUSED_IF_ASSERT_DISABLED(x)
#define LLDB_INVALID_ADDRESS
#define LLDB_INVALID_PROCESS_ID
@ DoNoSelectMostRelevantFrame
@ SelectMostRelevantFrame
A class that represents a running process on the host machine.
Log * GetLog(Cat mask)
Retrieve the Log object for the channel associated with the given log enum.
bool StateIsStoppedState(lldb::StateType state, bool must_exist)
Check if a state represents a state where the process or thread is stopped.
void RegisterAssertFrameRecognizer(Process *process)
Registers the assert stack frame recognizer.
bool StateIsRunningState(lldb::StateType state)
Check if a state represents a state where the process or thread is running.
lldb::ProcessSP(* ProcessCreateInstance)(lldb::TargetSP target_sp, lldb::ListenerSP listener_sp, const FileSpec *crash_file_path, bool can_connect)
@ eBroadcastAlways
Always send a broadcast when the value is modified.
const char * StateAsCString(lldb::StateType state)
Converts a StateType to a C string.
std::vector< ProcessInstanceInfo > ProcessInstanceInfoList
static uint32_t bits(const uint32_t val, const uint32_t msbit, const uint32_t lsbit)
std::shared_ptr< lldb_private::OptionValueProperties > OptionValuePropertiesSP
std::shared_ptr< lldb_private::ThreadPlan > ThreadPlanSP
std::shared_ptr< lldb_private::ABI > ABISP
std::shared_ptr< lldb_private::StackFrame > StackFrameSP
std::shared_ptr< lldb_private::BreakpointSite > BreakpointSiteSP
std::shared_ptr< lldb_private::BreakpointLocation > BreakpointLocationSP
DescriptionLevel
Description levels for "void GetDescription(Stream *, DescriptionLevel)" calls.
@ eDescriptionLevelVerbose
RunDirection
Execution directions.
std::shared_ptr< lldb_private::IOHandler > IOHandlerSP
std::shared_ptr< lldb_private::Thread > ThreadSP
std::shared_ptr< lldb_private::ValueObject > ValueObjectSP
std::shared_ptr< lldb_private::UnixSignals > UnixSignalsSP
std::shared_ptr< lldb_private::Platform > PlatformSP
StateType
Process and Thread States.
@ eStateUnloaded
Process is object is valid, but not currently loaded.
@ eStateConnected
Process is connected to remote debug services, but not launched or attached to anything yet.
@ eStateDetached
Process has been detached and can't be examined.
@ eStateStopped
Process or thread is stopped and can be examined.
@ eStateSuspended
Process or thread is in a suspended state as far as the debugger is concerned while other processes o...
@ eStateRunning
Process or thread is running and can't be examined.
@ eStateLaunching
Process is in the process of launching.
@ eStateAttaching
Process is currently trying to attach.
@ eStateExited
Process has exited and can't be examined.
@ eStateStepping
Process or thread is in the process of stepping and can not be examined.
@ eStateCrashed
Process or thread has crashed and can 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::MemoryHistory > MemoryHistorySP
ExpressionResults
The results of expression evaluation.
@ eExpressionHitBreakpoint
@ eExpressionStoppedForDebug
@ eExpressionThreadVanished
std::shared_ptr< lldb_private::StructuredDataPlugin > StructuredDataPluginSP
std::shared_ptr< lldb_private::Process > ProcessSP
InstrumentationRuntimeType
std::shared_ptr< lldb_private::Disassembler > DisassemblerSP
std::shared_ptr< lldb_private::LanguageRuntime > LanguageRuntimeSP
std::shared_ptr< lldb_private::Event > EventSP
std::unique_ptr< lldb_private::DynamicLoader > DynamicLoaderUP
ByteOrder
Byte ordering definitions.
std::shared_ptr< lldb_private::Watchpoint > WatchpointSP
std::shared_ptr< lldb_private::Listener > ListenerSP
std::shared_ptr< lldb_private::StopInfo > StopInfoSP
std::shared_ptr< lldb_private::WritableDataBuffer > WritableDataBufferSP
StopReason
Thread stop reasons.
@ eStopReasonPlanComplete
std::shared_ptr< lldb_private::Target > TargetSP
std::shared_ptr< lldb_private::RegisterContext > RegisterContextSP
std::shared_ptr< lldb_private::InstrumentationRuntime > InstrumentationRuntimeSP
std::shared_ptr< lldb_private::Module > ModuleSP
std::shared_ptr< lldb_private::OptionValue > OptionValueSP
std::shared_ptr< lldb_private::ThreadCollection > ThreadCollectionSP
A single address space reported by a process.
lldb::addr_space_t space_id
A SmallBitVector that represents a set of source languages (lldb::LanguageType).
bool can_run_all_threads
Whether expression evaluation may resume all threads to avoid deadlocks (e.g.
bool can_try_all_threads
Whether the expression runner may fall back to running all threads after a single-thread attempt time...
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.
BreakpointSiteToActionMap m_site_to_action
void Enqueue(lldb::BreakpointSiteSP site, BreakpointAction action)
A notification structure that can be used by clients to listen for changes in a process's lifetime.
void(* process_state_changed)(void *baton, Process *process, lldb::StateType state)
void(* initialize)(void *baton, Process *process)
The PrivateStateThread struct gathers all the bits of state needed to manage handling Process events,...
ProcessRunLock m_public_run_lock
Process & m_process
The process state that we show to client code.
ProcessRunLock & GetRunLock()
Purpose m_purpose
This will be the thread name given to the Private State HostThread when it gets spun up.
HostThread m_private_state_thread
bool IsOnThread(const HostThread &thread) const
std::string m_thread_name
Policy::PrivateStatePurpose Purpose
Why this PST exists.
ProcessRunLock m_private_run_lock
bool Contains(BaseType r) const
BaseType GetRangeBase() const
SizeType GetByteSize() const
void SetRangeBase(BaseType b)
Set the start value for the range, and keep the same size.
BaseType GetRangeEnd() const
Range Intersect(const Range &rhs) const
void SetByteSize(SizeType s)
std::optional< ExitDescription > exit_desc
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)
void SetDebugger(Debugger *debugger)