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Adding FindFirstGlobalVariable to SBModule and SBTarget These calls work like FindGlobalVariables but they only return the first match found and so they can return an SBValue instead of an SBValueList for added convenience of use llvm-svn: 172636
816 lines
26 KiB
C++
816 lines
26 KiB
C++
//===-- SWIG Interface for SBTarget -----------------------------*- 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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namespace lldb {
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class SBLaunchInfo
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{
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public:
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SBLaunchInfo (const char **argv);
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uint32_t
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GetUserID();
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uint32_t
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GetGroupID();
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bool
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UserIDIsValid ();
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bool
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GroupIDIsValid ();
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void
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SetUserID (uint32_t uid);
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void
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SetGroupID (uint32_t gid);
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uint32_t
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GetNumArguments ();
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const char *
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GetArgumentAtIndex (uint32_t idx);
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void
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SetArguments (const char **argv, bool append);
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uint32_t
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GetNumEnvironmentEntries ();
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const char *
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GetEnvironmentEntryAtIndex (uint32_t idx);
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void
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SetEnvironmentEntries (const char **envp, bool append);
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void
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Clear ();
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const char *
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GetWorkingDirectory () const;
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void
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SetWorkingDirectory (const char *working_dir);
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uint32_t
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GetLaunchFlags ();
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void
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SetLaunchFlags (uint32_t flags);
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const char *
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GetProcessPluginName ();
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void
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SetProcessPluginName (const char *plugin_name);
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const char *
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GetShell ();
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void
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SetShell (const char * path);
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uint32_t
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GetResumeCount ();
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void
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SetResumeCount (uint32_t c);
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bool
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AddCloseFileAction (int fd);
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bool
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AddDuplicateFileAction (int fd, int dup_fd);
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bool
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AddOpenFileAction (int fd, const char *path, bool read, bool write);
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bool
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AddSuppressFileAction (int fd, bool read, bool write);
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};
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class SBAttachInfo
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{
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public:
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SBAttachInfo ();
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SBAttachInfo (lldb::pid_t pid);
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SBAttachInfo (const char *path, bool wait_for);
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SBAttachInfo (const lldb::SBAttachInfo &rhs);
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lldb::pid_t
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GetProcessID ();
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void
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SetProcessID (lldb::pid_t pid);
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void
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SetExecutable (const char *path);
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void
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SetExecutable (lldb::SBFileSpec exe_file);
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bool
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GetWaitForLaunch ();
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void
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SetWaitForLaunch (bool b);
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bool
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GetIgnoreExisting ();
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void
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SetIgnoreExisting (bool b);
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uint32_t
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GetResumeCount ();
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void
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SetResumeCount (uint32_t c);
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const char *
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GetProcessPluginName ();
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void
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SetProcessPluginName (const char *plugin_name);
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uint32_t
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GetUserID();
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uint32_t
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GetGroupID();
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bool
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UserIDIsValid ();
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bool
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GroupIDIsValid ();
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void
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SetUserID (uint32_t uid);
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void
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SetGroupID (uint32_t gid);
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uint32_t
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GetEffectiveUserID();
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uint32_t
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GetEffectiveGroupID();
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bool
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EffectiveUserIDIsValid ();
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bool
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EffectiveGroupIDIsValid ();
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void
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SetEffectiveUserID (uint32_t uid);
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void
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SetEffectiveGroupID (uint32_t gid);
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lldb::pid_t
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GetParentProcessID ();
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void
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SetParentProcessID (lldb::pid_t pid);
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bool
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ParentProcessIDIsValid();
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};
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%feature("docstring",
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"Represents the target program running under the debugger.
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SBTarget supports module, breakpoint, and watchpoint iterations. For example,
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for m in target.module_iter():
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print m
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produces:
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(x86_64) /Volumes/data/lldb/svn/trunk/test/python_api/lldbutil/iter/a.out
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(x86_64) /usr/lib/dyld
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(x86_64) /usr/lib/libstdc++.6.dylib
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(x86_64) /usr/lib/libSystem.B.dylib
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(x86_64) /usr/lib/system/libmathCommon.A.dylib
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(x86_64) /usr/lib/libSystem.B.dylib(__commpage)
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and,
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for b in target.breakpoint_iter():
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print b
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produces:
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SBBreakpoint: id = 1, file ='main.cpp', line = 66, locations = 1
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SBBreakpoint: id = 2, file ='main.cpp', line = 85, locations = 1
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and,
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for wp_loc in target.watchpoint_iter():
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print wp_loc
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produces:
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Watchpoint 1: addr = 0x1034ca048 size = 4 state = enabled type = rw
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declare @ '/Volumes/data/lldb/svn/trunk/test/python_api/watchpoint/main.c:12'
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hw_index = 0 hit_count = 2 ignore_count = 0"
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) SBTarget;
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class SBTarget
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{
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public:
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//------------------------------------------------------------------
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// Broadcaster bits.
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//------------------------------------------------------------------
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enum
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{
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eBroadcastBitBreakpointChanged = (1 << 0),
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eBroadcastBitModulesLoaded = (1 << 1),
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eBroadcastBitModulesUnloaded = (1 << 2),
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eBroadcastBitWatchpointChanged = (1 << 3)
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};
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//------------------------------------------------------------------
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// Constructors
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//------------------------------------------------------------------
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SBTarget ();
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SBTarget (const lldb::SBTarget& rhs);
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//------------------------------------------------------------------
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// Destructor
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//------------------------------------------------------------------
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~SBTarget();
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static const char *
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GetBroadcasterClassName ();
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bool
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IsValid() const;
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lldb::SBProcess
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GetProcess ();
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%feature("docstring", "
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//------------------------------------------------------------------
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/// Launch a new process.
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///
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/// Launch a new process by spawning a new process using the
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/// target object's executable module's file as the file to launch.
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/// Arguments are given in \a argv, and the environment variables
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/// are in \a envp. Standard input and output files can be
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/// optionally re-directed to \a stdin_path, \a stdout_path, and
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/// \a stderr_path.
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///
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/// @param[in] listener
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/// An optional listener that will receive all process events.
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/// If \a listener is valid then \a listener will listen to all
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/// process events. If not valid, then this target's debugger
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/// (SBTarget::GetDebugger()) will listen to all process events.
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///
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/// @param[in] argv
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/// The argument array.
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///
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/// @param[in] envp
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/// The environment array.
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///
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/// @param[in] launch_flags
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/// Flags to modify the launch (@see lldb::LaunchFlags)
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///
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/// @param[in] stdin_path
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/// The path to use when re-directing the STDIN of the new
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/// process. If all stdXX_path arguments are NULL, a pseudo
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/// terminal will be used.
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///
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/// @param[in] stdout_path
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/// The path to use when re-directing the STDOUT of the new
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/// process. If all stdXX_path arguments are NULL, a pseudo
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/// terminal will be used.
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///
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/// @param[in] stderr_path
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/// The path to use when re-directing the STDERR of the new
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/// process. If all stdXX_path arguments are NULL, a pseudo
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/// terminal will be used.
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///
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/// @param[in] working_directory
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/// The working directory to have the child process run in
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///
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/// @param[in] launch_flags
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/// Some launch options specified by logical OR'ing
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/// lldb::LaunchFlags enumeration values together.
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///
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/// @param[in] stop_at_endtry
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/// If false do not stop the inferior at the entry point.
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///
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/// @param[out]
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/// An error object. Contains the reason if there is some failure.
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///
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/// @return
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/// A process object for the newly created process.
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//------------------------------------------------------------------
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For example,
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process = target.Launch(self.dbg.GetListener(), None, None,
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None, '/tmp/stdout.txt', None,
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None, 0, False, error)
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launches a new process by passing nothing for both the args and the envs
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and redirect the standard output of the inferior to the /tmp/stdout.txt
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file. It does not specify a working directory so that the debug server
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will use its idea of what the current working directory is for the
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inferior. Also, we ask the debugger not to stop the inferior at the
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entry point. If no breakpoint is specified for the inferior, it should
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run to completion if no user interaction is required.
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") Launch;
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lldb::SBProcess
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Launch (SBListener &listener,
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char const **argv,
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char const **envp,
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const char *stdin_path,
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const char *stdout_path,
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const char *stderr_path,
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const char *working_directory,
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uint32_t launch_flags, // See LaunchFlags
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bool stop_at_entry,
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lldb::SBError& error);
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%feature("docstring", "
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//------------------------------------------------------------------
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/// Launch a new process with sensible defaults.
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///
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/// @param[in] argv
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/// The argument array.
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///
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/// @param[in] envp
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/// The environment array.
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///
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/// @param[in] working_directory
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/// The working directory to have the child process run in
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///
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/// Default: listener
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/// Set to the target's debugger (SBTarget::GetDebugger())
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///
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/// Default: launch_flags
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/// Empty launch flags
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///
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/// Default: stdin_path
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/// Default: stdout_path
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/// Default: stderr_path
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/// A pseudo terminal will be used.
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///
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/// @return
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/// A process object for the newly created process.
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//------------------------------------------------------------------
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For example,
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process = target.LaunchSimple(['X', 'Y', 'Z'], None, os.getcwd())
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launches a new process by passing 'X', 'Y', 'Z' as the args to the
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executable.
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") LaunchSimple;
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lldb::SBProcess
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LaunchSimple (const char **argv,
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const char **envp,
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const char *working_directory);
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lldb::SBProcess
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Launch (lldb::SBLaunchInfo &launch_info, lldb::SBError& error);
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lldb::SBProcess
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Attach (lldb::SBAttachInfo &attach_info, lldb::SBError& error);
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%feature("docstring", "
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//------------------------------------------------------------------
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/// Attach to process with pid.
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///
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/// @param[in] listener
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/// An optional listener that will receive all process events.
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/// If \a listener is valid then \a listener will listen to all
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/// process events. If not valid, then this target's debugger
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/// (SBTarget::GetDebugger()) will listen to all process events.
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///
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/// @param[in] pid
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/// The process ID to attach to.
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///
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/// @param[out]
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/// An error explaining what went wrong if attach fails.
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///
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/// @return
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/// A process object for the attached process.
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//------------------------------------------------------------------
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") AttachToProcessWithID;
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lldb::SBProcess
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AttachToProcessWithID (SBListener &listener,
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lldb::pid_t pid,
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lldb::SBError& error);
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%feature("docstring", "
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//------------------------------------------------------------------
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/// Attach to process with name.
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///
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/// @param[in] listener
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/// An optional listener that will receive all process events.
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/// If \a listener is valid then \a listener will listen to all
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/// process events. If not valid, then this target's debugger
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/// (SBTarget::GetDebugger()) will listen to all process events.
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///
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/// @param[in] name
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/// Basename of process to attach to.
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///
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/// @param[in] wait_for
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/// If true wait for a new instance of 'name' to be launched.
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///
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/// @param[out]
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/// An error explaining what went wrong if attach fails.
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///
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/// @return
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/// A process object for the attached process.
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//------------------------------------------------------------------
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") AttachToProcessWithName;
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lldb::SBProcess
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AttachToProcessWithName (SBListener &listener,
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const char *name,
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bool wait_for,
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lldb::SBError& error);
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%feature("docstring", "
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//------------------------------------------------------------------
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/// Connect to a remote debug server with url.
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///
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/// @param[in] listener
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/// An optional listener that will receive all process events.
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/// If \a listener is valid then \a listener will listen to all
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/// process events. If not valid, then this target's debugger
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/// (SBTarget::GetDebugger()) will listen to all process events.
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///
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/// @param[in] url
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/// The url to connect to, e.g., 'connect://localhost:12345'.
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///
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/// @param[in] plugin_name
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/// The plugin name to be used; can be NULL.
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///
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/// @param[out]
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/// An error explaining what went wrong if the connect fails.
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///
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/// @return
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/// A process object for the connected process.
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//------------------------------------------------------------------
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") ConnectRemote;
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lldb::SBProcess
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ConnectRemote (SBListener &listener,
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const char *url,
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const char *plugin_name,
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SBError& error);
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lldb::SBFileSpec
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GetExecutable ();
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bool
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AddModule (lldb::SBModule &module);
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lldb::SBModule
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AddModule (const char *path,
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const char *triple,
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const char *uuid);
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lldb::SBModule
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AddModule (const char *path,
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const char *triple,
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const char *uuid_cstr,
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const char *symfile);
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uint32_t
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GetNumModules () const;
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lldb::SBModule
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GetModuleAtIndex (uint32_t idx);
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bool
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RemoveModule (lldb::SBModule module);
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lldb::SBDebugger
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GetDebugger() const;
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lldb::SBModule
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FindModule (const lldb::SBFileSpec &file_spec);
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lldb::ByteOrder
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GetByteOrder ();
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uint32_t
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GetAddressByteSize();
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const char *
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GetTriple ();
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lldb::SBError
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SetSectionLoadAddress (lldb::SBSection section,
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lldb::addr_t section_base_addr);
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lldb::SBError
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ClearSectionLoadAddress (lldb::SBSection section);
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lldb::SBError
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SetModuleLoadAddress (lldb::SBModule module,
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int64_t sections_offset);
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lldb::SBError
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ClearModuleLoadAddress (lldb::SBModule module);
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%feature("docstring", "
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//------------------------------------------------------------------
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/// Find functions by name.
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///
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/// @param[in] name
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/// The name of the function we are looking for.
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///
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/// @param[in] name_type_mask
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/// A logical OR of one or more FunctionNameType enum bits that
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/// indicate what kind of names should be used when doing the
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/// lookup. Bits include fully qualified names, base names,
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/// C++ methods, or ObjC selectors.
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/// See FunctionNameType for more details.
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///
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/// @return
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/// A lldb::SBSymbolContextList that gets filled in with all of
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/// the symbol contexts for all the matches.
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//------------------------------------------------------------------
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") FindFunctions;
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lldb::SBSymbolContextList
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FindFunctions (const char *name,
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uint32_t name_type_mask = lldb::eFunctionNameTypeAny);
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lldb::SBType
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FindFirstType (const char* type);
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lldb::SBTypeList
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FindTypes (const char* type);
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lldb::SBType
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GetBasicType(lldb::BasicType type);
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lldb::SBSourceManager
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GetSourceManager ();
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%feature("docstring", "
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//------------------------------------------------------------------
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/// Find global and static variables by name.
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///
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/// @param[in] name
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/// The name of the global or static variable we are looking
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/// for.
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///
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/// @param[in] max_matches
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/// Allow the number of matches to be limited to \a max_matches.
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///
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/// @return
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/// A list of matched variables in an SBValueList.
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//------------------------------------------------------------------
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") FindGlobalVariables;
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lldb::SBValueList
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FindGlobalVariables (const char *name,
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uint32_t max_matches);
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%feature("docstring", "
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//------------------------------------------------------------------
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/// Find the first global (or static) variable by name.
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///
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/// @param[in] name
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/// The name of the global or static variable we are looking
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/// for.
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///
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/// @return
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/// An SBValue that gets filled in with the found variable (if any).
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//------------------------------------------------------------------
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") FindFirstGlobalVariable;
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lldb::SBValue
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FindFirstGlobalVariable (const char* name);
|
|
|
|
void
|
|
Clear ();
|
|
|
|
lldb::SBAddress
|
|
ResolveLoadAddress (lldb::addr_t vm_addr);
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|
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|
SBSymbolContext
|
|
ResolveSymbolContextForAddress (const SBAddress& addr,
|
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uint32_t resolve_scope);
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lldb::SBBreakpoint
|
|
BreakpointCreateByLocation (const char *file, uint32_t line);
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|
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lldb::SBBreakpoint
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|
BreakpointCreateByLocation (const lldb::SBFileSpec &file_spec, uint32_t line);
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|
lldb::SBBreakpoint
|
|
BreakpointCreateByName (const char *symbol_name, const char *module_name = NULL);
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|
|
lldb::SBBreakpoint
|
|
BreakpointCreateByName (const char *symbol_name,
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|
uint32_t func_name_type, // Logical OR one or more FunctionNameType enum bits
|
|
const SBFileSpecList &module_list,
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const SBFileSpecList &comp_unit_list);
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|
|
|
lldb::SBBreakpoint
|
|
BreakpointCreateByNames (const char *symbol_name[],
|
|
uint32_t num_names,
|
|
uint32_t name_type_mask, // Logical OR one or more FunctionNameType enum bits
|
|
const SBFileSpecList &module_list,
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|
const SBFileSpecList &comp_unit_list);
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|
|
|
lldb::SBBreakpoint
|
|
BreakpointCreateByRegex (const char *symbol_name_regex, const char *module_name = NULL);
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|
|
lldb::SBBreakpoint
|
|
BreakpointCreateBySourceRegex (const char *source_regex, const lldb::SBFileSpec &source_file, const char *module_name = NULL);
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|
|
|
lldb::SBBreakpoint
|
|
BreakpointCreateForException (lldb::LanguageType language,
|
|
bool catch_bp,
|
|
bool throw_bp);
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|
|
|
lldb::SBBreakpoint
|
|
BreakpointCreateByAddress (addr_t address);
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|
|
|
uint32_t
|
|
GetNumBreakpoints () const;
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|
|
|
lldb::SBBreakpoint
|
|
GetBreakpointAtIndex (uint32_t idx) const;
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|
|
|
bool
|
|
BreakpointDelete (break_id_t break_id);
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|
|
|
lldb::SBBreakpoint
|
|
FindBreakpointByID (break_id_t break_id);
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|
|
bool
|
|
EnableAllBreakpoints ();
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|
|
|
bool
|
|
DisableAllBreakpoints ();
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|
|
|
bool
|
|
DeleteAllBreakpoints ();
|
|
|
|
uint32_t
|
|
GetNumWatchpoints () const;
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|
|
|
lldb::SBWatchpoint
|
|
GetWatchpointAtIndex (uint32_t idx) const;
|
|
|
|
bool
|
|
DeleteWatchpoint (lldb::watch_id_t watch_id);
|
|
|
|
lldb::SBWatchpoint
|
|
FindWatchpointByID (lldb::watch_id_t watch_id);
|
|
|
|
bool
|
|
EnableAllWatchpoints ();
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|
|
|
bool
|
|
DisableAllWatchpoints ();
|
|
|
|
bool
|
|
DeleteAllWatchpoints ();
|
|
|
|
lldb::SBWatchpoint
|
|
WatchAddress (lldb::addr_t addr,
|
|
size_t size,
|
|
bool read,
|
|
bool write,
|
|
SBError &error);
|
|
|
|
|
|
lldb::SBBroadcaster
|
|
GetBroadcaster () const;
|
|
|
|
lldb::SBInstructionList
|
|
ReadInstructions (lldb::SBAddress base_addr, uint32_t count);
|
|
|
|
lldb::SBInstructionList
|
|
GetInstructions (lldb::SBAddress base_addr, const void *buf, size_t size);
|
|
|
|
lldb::SBSymbolContextList
|
|
FindSymbols (const char *name, lldb::SymbolType type = eSymbolTypeAny);
|
|
|
|
bool
|
|
GetDescription (lldb::SBStream &description, lldb::DescriptionLevel description_level);
|
|
|
|
lldb::SBValue
|
|
EvaluateExpression (const char *expr, const lldb::SBExpressionOptions &options);
|
|
%pythoncode %{
|
|
class modules_access(object):
|
|
'''A helper object that will lazily hand out lldb.SBModule objects for a target when supplied an index, or by full or partial path.'''
|
|
def __init__(self, sbtarget):
|
|
self.sbtarget = sbtarget
|
|
|
|
def __len__(self):
|
|
if self.sbtarget:
|
|
return int(self.sbtarget.GetNumModules())
|
|
return 0
|
|
|
|
def __getitem__(self, key):
|
|
num_modules = self.sbtarget.GetNumModules()
|
|
if type(key) is int:
|
|
if key < num_modules:
|
|
return self.sbtarget.GetModuleAtIndex(key)
|
|
elif type(key) is str:
|
|
if key.find('/') == -1:
|
|
for idx in range(num_modules):
|
|
module = self.sbtarget.GetModuleAtIndex(idx)
|
|
if module.file.basename == key:
|
|
return module
|
|
else:
|
|
for idx in range(num_modules):
|
|
module = self.sbtarget.GetModuleAtIndex(idx)
|
|
if module.file.fullpath == key:
|
|
return module
|
|
# See if the string is a UUID
|
|
the_uuid = uuid.UUID(key)
|
|
if the_uuid:
|
|
for idx in range(num_modules):
|
|
module = self.sbtarget.GetModuleAtIndex(idx)
|
|
if module.uuid == the_uuid:
|
|
return module
|
|
elif type(key) is uuid.UUID:
|
|
for idx in range(num_modules):
|
|
module = self.sbtarget.GetModuleAtIndex(idx)
|
|
if module.uuid == key:
|
|
return module
|
|
elif type(key) is re.SRE_Pattern:
|
|
matching_modules = []
|
|
for idx in range(num_modules):
|
|
module = self.sbtarget.GetModuleAtIndex(idx)
|
|
re_match = key.search(module.path.fullpath)
|
|
if re_match:
|
|
matching_modules.append(module)
|
|
return matching_modules
|
|
else:
|
|
print "error: unsupported item type: %s" % type(key)
|
|
return None
|
|
|
|
def get_modules_access_object(self):
|
|
'''An accessor function that returns a modules_access() object which allows lazy module access from a lldb.SBTarget object.'''
|
|
return self.modules_access (self)
|
|
|
|
def get_modules_array(self):
|
|
'''An accessor function that returns a list() that contains all modules in a lldb.SBTarget object.'''
|
|
modules = []
|
|
for idx in range(self.GetNumModules()):
|
|
modules.append(self.GetModuleAtIndex(idx))
|
|
return modules
|
|
|
|
__swig_getmethods__["modules"] = get_modules_array
|
|
if _newclass: modules = property(get_modules_array, None, doc='''A read only property that returns a list() of lldb.SBModule objects contained in this target. This list is a list all modules that the target currently is tracking (the main executable and all dependent shared libraries).''')
|
|
|
|
__swig_getmethods__["module"] = get_modules_access_object
|
|
if _newclass: module = property(get_modules_access_object, None, doc=r'''A read only property that returns an object that implements python operator overloading with the square brackets().\n target.module[<int>] allows array access to any modules.\n target.module[<str>] allows access to modules by basename, full path, or uuid string value.\n target.module[uuid.UUID()] allows module access by UUID.\n target.module[re] allows module access using a regular expression that matches the module full path.''')
|
|
|
|
__swig_getmethods__["process"] = GetProcess
|
|
if _newclass: process = property(GetProcess, None, doc='''A read only property that returns an lldb object that represents the process (lldb.SBProcess) that this target owns.''')
|
|
|
|
__swig_getmethods__["executable"] = GetExecutable
|
|
if _newclass: executable = property(GetExecutable, None, doc='''A read only property that returns an lldb object that represents the main executable module (lldb.SBModule) for this target.''')
|
|
|
|
__swig_getmethods__["debugger"] = GetDebugger
|
|
if _newclass: debugger = property(GetDebugger, None, doc='''A read only property that returns an lldb object that represents the debugger (lldb.SBDebugger) that owns this target.''')
|
|
|
|
__swig_getmethods__["num_breakpoints"] = GetNumBreakpoints
|
|
if _newclass: num_breakpoints = property(GetNumBreakpoints, None, doc='''A read only property that returns the number of breakpoints that this target has as an integer.''')
|
|
|
|
__swig_getmethods__["num_watchpoints"] = GetNumWatchpoints
|
|
if _newclass: num_watchpoints = property(GetNumWatchpoints, None, doc='''A read only property that returns the number of watchpoints that this target has as an integer.''')
|
|
|
|
__swig_getmethods__["broadcaster"] = GetBroadcaster
|
|
if _newclass: broadcaster = property(GetBroadcaster, None, doc='''A read only property that an lldb object that represents the broadcaster (lldb.SBBroadcaster) for this target.''')
|
|
|
|
__swig_getmethods__["byte_order"] = GetByteOrder
|
|
if _newclass: byte_order = property(GetByteOrder, None, doc='''A read only property that returns an lldb enumeration value (lldb.eByteOrderLittle, lldb.eByteOrderBig, lldb.eByteOrderInvalid) that represents the byte order for this target.''')
|
|
|
|
__swig_getmethods__["addr_size"] = GetAddressByteSize
|
|
if _newclass: addr_size = property(GetAddressByteSize, None, doc='''A read only property that returns the size in bytes of an address for this target.''')
|
|
|
|
__swig_getmethods__["triple"] = GetTriple
|
|
if _newclass: triple = property(GetTriple, None, doc='''A read only property that returns the target triple (arch-vendor-os) for this target as a string.''')
|
|
%}
|
|
|
|
};
|
|
|
|
} // namespace lldb
|