This patch removes the comments grouping header includes. They were added after running IWYU over the LLDB codebase. However they add little value, are often outdates and burdensome to maintain. llvm-svn: 346626
191 lines
6.9 KiB
C++
191 lines
6.9 KiB
C++
//===-- BreakpointResolverAddress.cpp ---------------------------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include "lldb/Breakpoint/BreakpointResolverAddress.h"
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#include "lldb/Breakpoint/BreakpointLocation.h"
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#include "lldb/Core/Module.h"
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#include "lldb/Core/Section.h"
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#include "lldb/Target/Process.h"
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#include "lldb/Target/Target.h"
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#include "lldb/Utility/Log.h"
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#include "lldb/Utility/StreamString.h"
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using namespace lldb;
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using namespace lldb_private;
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//----------------------------------------------------------------------
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// BreakpointResolverAddress:
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//----------------------------------------------------------------------
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BreakpointResolverAddress::BreakpointResolverAddress(
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Breakpoint *bkpt, const Address &addr, const FileSpec &module_spec)
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: BreakpointResolver(bkpt, BreakpointResolver::AddressResolver),
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m_addr(addr), m_resolved_addr(LLDB_INVALID_ADDRESS),
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m_module_filespec(module_spec) {}
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BreakpointResolverAddress::BreakpointResolverAddress(Breakpoint *bkpt,
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const Address &addr)
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: BreakpointResolver(bkpt, BreakpointResolver::AddressResolver),
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m_addr(addr), m_resolved_addr(LLDB_INVALID_ADDRESS), m_module_filespec() {
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}
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BreakpointResolverAddress::~BreakpointResolverAddress() {}
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BreakpointResolver *BreakpointResolverAddress::CreateFromStructuredData(
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Breakpoint *bkpt, const StructuredData::Dictionary &options_dict,
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Status &error) {
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llvm::StringRef module_name;
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lldb::addr_t addr_offset;
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FileSpec module_filespec;
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bool success;
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success = options_dict.GetValueForKeyAsInteger(
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GetKey(OptionNames::AddressOffset), addr_offset);
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if (!success) {
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error.SetErrorString("BRFL::CFSD: Couldn't find address offset entry.");
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return nullptr;
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}
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Address address(addr_offset);
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success = options_dict.HasKey(GetKey(OptionNames::ModuleName));
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if (success) {
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success = options_dict.GetValueForKeyAsString(
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GetKey(OptionNames::ModuleName), module_name);
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if (!success) {
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error.SetErrorString("BRA::CFSD: Couldn't read module name entry.");
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return nullptr;
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}
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module_filespec.SetFile(module_name, FileSpec::Style::native);
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}
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return new BreakpointResolverAddress(bkpt, address, module_filespec);
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}
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StructuredData::ObjectSP
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BreakpointResolverAddress::SerializeToStructuredData() {
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StructuredData::DictionarySP options_dict_sp(
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new StructuredData::Dictionary());
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SectionSP section_sp = m_addr.GetSection();
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if (section_sp) {
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ModuleSP module_sp = section_sp->GetModule();
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ConstString module_name;
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if (module_sp)
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module_name.SetCString(module_name.GetCString());
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options_dict_sp->AddStringItem(GetKey(OptionNames::ModuleName),
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module_name.GetCString());
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options_dict_sp->AddIntegerItem(GetKey(OptionNames::AddressOffset),
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m_addr.GetOffset());
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} else {
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options_dict_sp->AddIntegerItem(GetKey(OptionNames::AddressOffset),
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m_addr.GetOffset());
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if (m_module_filespec) {
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options_dict_sp->AddStringItem(GetKey(OptionNames::ModuleName),
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m_module_filespec.GetPath());
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}
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}
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return WrapOptionsDict(options_dict_sp);
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return StructuredData::ObjectSP();
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}
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void BreakpointResolverAddress::ResolveBreakpoint(SearchFilter &filter) {
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// If the address is not section relative, then we should not try to re-
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// resolve it, it is just some random address and we wouldn't know what to do
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// on reload. But if it is section relative, we need to re-resolve it since
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// the section it's in may have shifted on re-run.
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bool re_resolve = false;
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if (m_addr.GetSection() || m_module_filespec)
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re_resolve = true;
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else if (m_breakpoint->GetNumLocations() == 0)
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re_resolve = true;
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if (re_resolve)
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BreakpointResolver::ResolveBreakpoint(filter);
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}
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void BreakpointResolverAddress::ResolveBreakpointInModules(
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SearchFilter &filter, ModuleList &modules) {
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// See comment in ResolveBreakpoint.
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bool re_resolve = false;
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if (m_addr.GetSection())
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re_resolve = true;
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else if (m_breakpoint->GetNumLocations() == 0)
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re_resolve = true;
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if (re_resolve)
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BreakpointResolver::ResolveBreakpointInModules(filter, modules);
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}
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Searcher::CallbackReturn
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BreakpointResolverAddress::SearchCallback(SearchFilter &filter,
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SymbolContext &context, Address *addr,
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bool containing) {
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assert(m_breakpoint != NULL);
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if (filter.AddressPasses(m_addr)) {
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if (m_breakpoint->GetNumLocations() == 0) {
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// If the address is just an offset, and we're given a module, see if we
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// can find the appropriate module loaded in the binary, and fix up
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// m_addr to use that.
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if (!m_addr.IsSectionOffset() && m_module_filespec) {
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Target &target = m_breakpoint->GetTarget();
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ModuleSpec module_spec(m_module_filespec);
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ModuleSP module_sp = target.GetImages().FindFirstModule(module_spec);
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if (module_sp) {
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Address tmp_address;
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if (module_sp->ResolveFileAddress(m_addr.GetOffset(), tmp_address))
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m_addr = tmp_address;
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}
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}
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m_resolved_addr = m_addr.GetLoadAddress(&m_breakpoint->GetTarget());
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BreakpointLocationSP bp_loc_sp(AddLocation(m_addr));
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if (bp_loc_sp && !m_breakpoint->IsInternal()) {
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StreamString s;
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bp_loc_sp->GetDescription(&s, lldb::eDescriptionLevelVerbose);
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Log *log(
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lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_BREAKPOINTS));
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if (log)
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log->Printf("Added location: %s\n", s.GetData());
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}
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} else {
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BreakpointLocationSP loc_sp = m_breakpoint->GetLocationAtIndex(0);
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lldb::addr_t cur_load_location =
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m_addr.GetLoadAddress(&m_breakpoint->GetTarget());
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if (cur_load_location != m_resolved_addr) {
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m_resolved_addr = cur_load_location;
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loc_sp->ClearBreakpointSite();
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loc_sp->ResolveBreakpointSite();
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}
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}
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}
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return Searcher::eCallbackReturnStop;
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}
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lldb::SearchDepth BreakpointResolverAddress::GetDepth() {
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return lldb::eSearchDepthTarget;
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}
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void BreakpointResolverAddress::GetDescription(Stream *s) {
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s->PutCString("address = ");
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m_addr.Dump(s, m_breakpoint->GetTarget().GetProcessSP().get(),
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Address::DumpStyleModuleWithFileAddress,
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Address::DumpStyleLoadAddress);
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}
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void BreakpointResolverAddress::Dump(Stream *s) const {}
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lldb::BreakpointResolverSP
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BreakpointResolverAddress::CopyForBreakpoint(Breakpoint &breakpoint) {
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lldb::BreakpointResolverSP ret_sp(
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new BreakpointResolverAddress(&breakpoint, m_addr));
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return ret_sp;
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}
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