class now implements the Host functionality for a lot of things that make
sense by default so that subclasses can check:
int
PlatformSubclass::Foo ()
{
if (IsHost())
return Platform::Foo (); // Let the platform base class do the host specific stuff
// Platform subclass specific code...
int result = ...
return result;
}
Added new functions to the platform:
virtual const char *Platform::GetUserName (uint32_t uid);
virtual const char *Platform::GetGroupName (uint32_t gid);
The user and group names are cached locally so that remote platforms can avoid
sending packets multiple times to resolve this information.
Added the parent process ID to the ProcessInfo class.
Added a new ProcessInfoMatch class which helps us to match processes up
and changed the Host layer over to using this new class. The new class allows
us to search for processs:
1 - by name (equal to, starts with, ends with, contains, and regex)
2 - by pid
3 - And further check for parent pid == value, uid == value, gid == value,
euid == value, egid == value, arch == value, parent == value.
This is all hookup up to the "platform process list" command which required
adding dumping routines to dump process information. If the Host class
implements the process lookup routines, you can now lists processes on
your local machine:
machine1.foo.com % lldb
(lldb) platform process list
PID PARENT USER GROUP EFF USER EFF GROUP TRIPLE NAME
====== ====== ========== ========== ========== ========== ======================== ============================
99538 1 username usergroup username usergroup x86_64-apple-darwin FileMerge
94943 1 username usergroup username usergroup x86_64-apple-darwin mdworker
94852 244 username usergroup username usergroup x86_64-apple-darwin Safari
94727 244 username usergroup username usergroup x86_64-apple-darwin Xcode
92742 92710 username usergroup username usergroup i386-apple-darwin debugserver
This of course also works remotely with the lldb-platform:
machine1.foo.com % lldb-platform --listen 1234
machine2.foo.com % lldb
(lldb) platform create remote-macosx
Platform: remote-macosx
Connected: no
(lldb) platform connect connect://localhost:1444
Platform: remote-macosx
Triple: x86_64-apple-darwin
OS Version: 10.6.7 (10J869)
Kernel: Darwin Kernel Version 10.7.0: Sat Jan 29 15:17:16 PST 2011; root:xnu-1504.9.37~1/RELEASE_I386
Hostname: machine1.foo.com
Connected: yes
(lldb) platform process list
PID PARENT USER GROUP EFF USER EFF GROUP TRIPLE NAME
====== ====== ========== ========== ========== ========== ======================== ============================
99556 244 username usergroup username usergroup x86_64-apple-darwin trustevaluation
99548 65539 username usergroup username usergroup x86_64-apple-darwin lldb
99538 1 username usergroup username usergroup x86_64-apple-darwin FileMerge
94943 1 username usergroup username usergroup x86_64-apple-darwin mdworker
94852 244 username usergroup username usergroup x86_64-apple-darwin Safari
The lldb-platform implements everything with the Host:: layer, so this should
"just work" for linux. I will probably be adding more stuff to the Host layer
for launching processes and attaching to processes so that this support should
eventually just work as well.
Modified the target to be able to be created with an architecture that differs
from the main executable. This is needed for iOS debugging since we can have
an "armv6" binary which can run on an "armv7" machine, so we want to be able
to do:
% lldb
(lldb) platform create remote-ios
(lldb) file --arch armv7 a.out
Where "a.out" is an armv6 executable. The platform then can correctly decide
to open all "armv7" images for all dependent shared libraries.
Modified the disassembly to show the current PC value. Example output:
(lldb) disassemble --frame
a.out`main:
0x1eb7: pushl %ebp
0x1eb8: movl %esp, %ebp
0x1eba: pushl %ebx
0x1ebb: subl $20, %esp
0x1ebe: calll 0x1ec3 ; main + 12 at test.c:18
0x1ec3: popl %ebx
-> 0x1ec4: calll 0x1f12 ; getpid
0x1ec9: movl %eax, 4(%esp)
0x1ecd: leal 199(%ebx), %eax
0x1ed3: movl %eax, (%esp)
0x1ed6: calll 0x1f18 ; printf
0x1edb: leal 213(%ebx), %eax
0x1ee1: movl %eax, (%esp)
0x1ee4: calll 0x1f1e ; puts
0x1ee9: calll 0x1f0c ; getchar
0x1eee: movl $20, (%esp)
0x1ef5: calll 0x1e6a ; sleep_loop at test.c:6
0x1efa: movl $12, %eax
0x1eff: addl $20, %esp
0x1f02: popl %ebx
0x1f03: leave
0x1f04: ret
This can be handy when dealing with the new --line options that was recently
added:
(lldb) disassemble --line
a.out`main + 13 at test.c:19
18 {
-> 19 printf("Process: %i\n\n", getpid());
20 puts("Press any key to continue..."); getchar();
-> 0x1ec4: calll 0x1f12 ; getpid
0x1ec9: movl %eax, 4(%esp)
0x1ecd: leal 199(%ebx), %eax
0x1ed3: movl %eax, (%esp)
0x1ed6: calll 0x1f18 ; printf
Modified the ModuleList to have a lookup based solely on a UUID. Since the
UUID is typically the MD5 checksum of a binary image, there is no need
to give the path and architecture when searching for a pre-existing
image in an image list.
Now that we support remote debugging a bit better, our lldb_private::Module
needs to be able to track what the original path for file was as the platform
knows it, as well as where the file is locally. The module has the two
following functions to retrieve both paths:
const FileSpec &Module::GetFileSpec () const;
const FileSpec &Module::GetPlatformFileSpec () const;
llvm-svn: 128563
390 lines
13 KiB
C++
390 lines
13 KiB
C++
//===-- CommandObjectExpression.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 "CommandObjectExpression.h"
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// C Includes
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// C++ Includes
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// Other libraries and framework includes
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// Project includes
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#include "CommandObjectThread.h" // For DisplayThreadInfo.
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#include "lldb/Interpreter/Args.h"
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#include "lldb/Core/Value.h"
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#include "lldb/Core/InputReader.h"
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#include "lldb/Core/ValueObjectVariable.h"
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#include "lldb/Expression/ClangExpressionVariable.h"
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#include "lldb/Expression/ClangUserExpression.h"
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#include "lldb/Expression/ClangFunction.h"
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#include "lldb/Expression/DWARFExpression.h"
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#include "lldb/Host/Host.h"
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#include "lldb/Core/Debugger.h"
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#include "lldb/Interpreter/CommandInterpreter.h"
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#include "lldb/Interpreter/CommandReturnObject.h"
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#include "lldb/Target/ObjCLanguageRuntime.h"
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#include "lldb/Symbol/ObjectFile.h"
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#include "lldb/Symbol/Variable.h"
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#include "lldb/Target/Process.h"
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#include "lldb/Target/StackFrame.h"
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#include "lldb/Target/Target.h"
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#include "llvm/ADT/StringRef.h"
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using namespace lldb;
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using namespace lldb_private;
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CommandObjectExpression::CommandOptions::CommandOptions () :
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Options()
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{
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// Keep only one place to reset the values to their defaults
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ResetOptionValues();
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}
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CommandObjectExpression::CommandOptions::~CommandOptions ()
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{
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}
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Error
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CommandObjectExpression::CommandOptions::SetOptionValue (int option_idx, const char *option_arg)
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{
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Error error;
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char short_option = (char) m_getopt_table[option_idx].val;
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switch (short_option)
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{
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//case 'l':
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//if (language.SetLanguageFromCString (option_arg) == false)
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//{
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// error.SetErrorStringWithFormat("Invalid language option argument '%s'.\n", option_arg);
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//}
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//break;
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case 'g':
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debug = true;
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break;
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case 'f':
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error = Args::StringToFormat(option_arg, format);
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break;
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case 'o':
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print_object = true;
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break;
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case 'u':
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bool success;
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unwind_on_error = Args::StringToBoolean(option_arg, true, &success);
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if (!success)
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error.SetErrorStringWithFormat("Could not convert \"%s\" to a boolean value.", option_arg);
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break;
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default:
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error.SetErrorStringWithFormat("Invalid short option character '%c'.\n", short_option);
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break;
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}
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return error;
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}
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void
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CommandObjectExpression::CommandOptions::ResetOptionValues ()
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{
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//language.Clear();
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debug = false;
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format = eFormatDefault;
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print_object = false;
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unwind_on_error = true;
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show_types = true;
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show_summary = true;
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}
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const OptionDefinition*
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CommandObjectExpression::CommandOptions::GetDefinitions ()
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{
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return g_option_table;
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}
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CommandObjectExpression::CommandObjectExpression (CommandInterpreter &interpreter) :
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CommandObject (interpreter,
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"expression",
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"Evaluate a C/ObjC/C++ expression in the current program context, using variables currently in scope.",
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NULL),
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m_expr_line_count (0),
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m_expr_lines ()
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{
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SetHelpLong(
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"Examples: \n\
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\n\
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expr my_struct->a = my_array[3] \n\
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expr -f bin -- (index * 8) + 5 \n\
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expr char c[] = \"foo\"; c[0]\n");
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CommandArgumentEntry arg;
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CommandArgumentData expression_arg;
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// Define the first (and only) variant of this arg.
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expression_arg.arg_type = eArgTypeExpression;
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expression_arg.arg_repetition = eArgRepeatPlain;
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// There is only one variant this argument could be; put it into the argument entry.
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arg.push_back (expression_arg);
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// Push the data for the first argument into the m_arguments vector.
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m_arguments.push_back (arg);
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}
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CommandObjectExpression::~CommandObjectExpression ()
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{
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}
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Options *
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CommandObjectExpression::GetOptions ()
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{
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return &m_options;
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}
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bool
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CommandObjectExpression::Execute
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(
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Args& command,
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CommandReturnObject &result
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)
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{
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return false;
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}
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size_t
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CommandObjectExpression::MultiLineExpressionCallback
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(
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void *baton,
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InputReader &reader,
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lldb::InputReaderAction notification,
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const char *bytes,
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size_t bytes_len
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)
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{
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CommandObjectExpression *cmd_object_expr = (CommandObjectExpression *) baton;
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switch (notification)
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{
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case eInputReaderActivate:
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reader.GetDebugger().GetOutputStream().Printf("%s\n", "Enter expressions, then terminate with an empty line to evaluate:");
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// Fall through
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case eInputReaderReactivate:
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//if (out_fh)
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// reader.GetDebugger().GetOutputStream().Printf ("%3u: ", cmd_object_expr->m_expr_line_count);
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break;
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case eInputReaderDeactivate:
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break;
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case eInputReaderGotToken:
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++cmd_object_expr->m_expr_line_count;
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if (bytes && bytes_len)
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{
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cmd_object_expr->m_expr_lines.append (bytes, bytes_len + 1);
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}
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if (bytes_len == 0)
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reader.SetIsDone(true);
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//else if (out_fh && !reader->IsDone())
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// ::fprintf (out_fh, "%3u: ", cmd_object_expr->m_expr_line_count);
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break;
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case eInputReaderInterrupt:
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cmd_object_expr->m_expr_lines.clear();
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reader.SetIsDone (true);
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reader.GetDebugger().GetOutputStream().Printf("%s\n", "Expression evaluation cancelled.");
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break;
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case eInputReaderEndOfFile:
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reader.SetIsDone (true);
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break;
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case eInputReaderDone:
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if (cmd_object_expr->m_expr_lines.size() > 0)
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{
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cmd_object_expr->EvaluateExpression (cmd_object_expr->m_expr_lines.c_str(),
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reader.GetDebugger().GetOutputStream(),
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reader.GetDebugger().GetErrorStream());
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}
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break;
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}
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return bytes_len;
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}
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bool
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CommandObjectExpression::EvaluateExpression
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(
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const char *expr,
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Stream &output_stream,
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Stream &error_stream,
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CommandReturnObject *result
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)
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{
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if (m_exe_ctx.target)
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{
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lldb::ValueObjectSP result_valobj_sp;
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ExecutionResults exe_results;
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bool keep_in_memory = true;
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exe_results = m_exe_ctx.target->EvaluateExpression(expr, m_exe_ctx.frame, m_options.unwind_on_error, keep_in_memory, result_valobj_sp);
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if (exe_results == eExecutionInterrupted && !m_options.unwind_on_error)
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{
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if (m_exe_ctx.thread)
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lldb_private::DisplayThreadInfo (m_interpreter, result->GetOutputStream(), m_exe_ctx.thread, false, true);
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else
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lldb_private::DisplayThreadsInfo (m_interpreter, &m_exe_ctx, *result, true, true);
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}
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if (result_valobj_sp)
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{
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if (result_valobj_sp->GetError().Success())
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{
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if (m_options.format != eFormatDefault)
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result_valobj_sp->SetFormat (m_options.format);
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ValueObject::DumpValueObject (output_stream,
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m_exe_ctx.GetBestExecutionContextScope(),
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result_valobj_sp.get(), // Variable object to dump
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result_valobj_sp->GetName().GetCString(),// Root object name
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0, // Pointer depth to traverse (zero means stop at pointers)
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0, // Current depth, this is the top most, so zero...
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UINT32_MAX, // Max depth to go when dumping concrete types, dump everything...
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m_options.show_types, // Show types when dumping?
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false, // Show locations of variables, no since this is a host address which we don't care to see
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m_options.print_object, // Print the objective C object?
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true, // Scope is already checked. Const results are always in scope.
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false); // Don't flatten output
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if (result)
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result->SetStatus (eReturnStatusSuccessFinishResult);
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}
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else
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{
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error_stream.PutCString(result_valobj_sp->GetError().AsCString());
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if (result)
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result->SetStatus (eReturnStatusFailed);
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}
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}
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}
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else
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{
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error_stream.Printf ("error: invalid execution context for expression\n");
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return false;
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}
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return true;
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}
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bool
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CommandObjectExpression::ExecuteRawCommandString
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(
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const char *command,
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CommandReturnObject &result
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)
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{
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m_exe_ctx = m_interpreter.GetDebugger().GetExecutionContext();
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m_options.Reset();
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const char * expr = NULL;
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if (command[0] == '\0')
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{
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m_expr_lines.clear();
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m_expr_line_count = 0;
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InputReaderSP reader_sp (new InputReader(m_interpreter.GetDebugger()));
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if (reader_sp)
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{
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Error err (reader_sp->Initialize (CommandObjectExpression::MultiLineExpressionCallback,
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this, // baton
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eInputReaderGranularityLine, // token size, to pass to callback function
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NULL, // end token
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NULL, // prompt
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true)); // echo input
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if (err.Success())
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{
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m_interpreter.GetDebugger().PushInputReader (reader_sp);
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result.SetStatus (eReturnStatusSuccessFinishNoResult);
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}
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else
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{
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result.AppendError (err.AsCString());
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result.SetStatus (eReturnStatusFailed);
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}
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}
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else
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{
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result.AppendError("out of memory");
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result.SetStatus (eReturnStatusFailed);
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}
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return result.Succeeded();
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}
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if (command[0] == '-')
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{
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// We have some options and these options MUST end with --.
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const char *end_options = NULL;
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const char *s = command;
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while (s && s[0])
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{
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end_options = ::strstr (s, "--");
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if (end_options)
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{
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end_options += 2; // Get past the "--"
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if (::isspace (end_options[0]))
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{
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expr = end_options;
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while (::isspace (*expr))
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++expr;
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break;
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}
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}
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s = end_options;
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}
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if (end_options)
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{
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Args args (command, end_options - command);
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if (!ParseOptions (args, result))
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return false;
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}
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}
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if (expr == NULL)
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expr = command;
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if (EvaluateExpression (expr, result.GetOutputStream(), result.GetErrorStream(), &result))
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return true;
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result.SetStatus (eReturnStatusFailed);
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return false;
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}
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OptionDefinition
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CommandObjectExpression::CommandOptions::g_option_table[] =
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{
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//{ LLDB_OPT_SET_ALL, false, "language", 'l', required_argument, NULL, 0, "[c|c++|objc|objc++]", "Sets the language to use when parsing the expression."},
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//{ LLDB_OPT_SET_1, false, "format", 'f', required_argument, NULL, 0, "[ [bool|b] | [bin] | [char|c] | [oct|o] | [dec|i|d|u] | [hex|x] | [float|f] | [cstr|s] ]", "Specify the format that the expression output should use."},
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{ LLDB_OPT_SET_1, false, "format", 'f', required_argument, NULL, 0, eArgTypeExprFormat, "Specify the format that the expression output should use."},
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{ LLDB_OPT_SET_2, false, "object-description", 'o', no_argument, NULL, 0, eArgTypeNone, "Print the object description of the value resulting from the expression."},
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{ LLDB_OPT_SET_ALL, false, "unwind-on-error", 'u', required_argument, NULL, 0, eArgTypeBoolean, "Clean up program state if the expression causes a crash, breakpoint hit or signal."},
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{ LLDB_OPT_SET_ALL, false, "debug", 'g', no_argument, NULL, 0, eArgTypeNone, "Enable verbose debug logging of the expression parsing and evaluation."},
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{ LLDB_OPT_SET_ALL, false, "use-ir", 'i', no_argument, NULL, 0, eArgTypeNone, "[Temporary] Instructs the expression evaluator to use IR instead of ASTs."},
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{ 0, false, NULL, 0, 0, NULL, NULL, eArgTypeNone, NULL }
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};
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