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Dan Gohmanf17a25c2007-07-18 16:29:46 +00001//===- BugDriver.cpp - Top-Level BugPoint class implementation ------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner5f5a5732007-12-29 20:44:31 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This class contains all of the shared state and information that is used by
11// the BugPoint tool to track down errors in optimizations. This class is the
12// main driver class that invokes all sub-functionality.
13//
14//===----------------------------------------------------------------------===//
15
16#include "BugDriver.h"
17#include "ToolRunner.h"
18#include "llvm/Linker.h"
19#include "llvm/Module.h"
20#include "llvm/Pass.h"
21#include "llvm/Assembly/Parser.h"
22#include "llvm/Bitcode/ReaderWriter.h"
23#include "llvm/Support/CommandLine.h"
24#include "llvm/Support/FileUtilities.h"
25#include "llvm/Support/MemoryBuffer.h"
26#include <iostream>
27#include <memory>
28using namespace llvm;
29
30// Anonymous namespace to define command line options for debugging.
31//
32namespace {
33 // Output - The user can specify a file containing the expected output of the
34 // program. If this filename is set, it is used as the reference diff source,
35 // otherwise the raw input run through an interpreter is used as the reference
36 // source.
37 //
38 cl::opt<std::string>
39 OutputFile("output", cl::desc("Specify a reference program output "
40 "(for miscompilation detection)"));
41}
42
43/// setNewProgram - If we reduce or update the program somehow, call this method
44/// to update bugdriver with it. This deletes the old module and sets the
45/// specified one as the current program.
46void BugDriver::setNewProgram(Module *M) {
47 delete Program;
48 Program = M;
49}
50
51
52/// getPassesString - Turn a list of passes into a string which indicates the
53/// command line options that must be passed to add the passes.
54///
55std::string llvm::getPassesString(const std::vector<const PassInfo*> &Passes) {
56 std::string Result;
57 for (unsigned i = 0, e = Passes.size(); i != e; ++i) {
58 if (i) Result += " ";
59 Result += "-";
60 Result += Passes[i]->getPassArgument();
61 }
62 return Result;
63}
64
65BugDriver::BugDriver(const char *toolname, bool as_child, bool find_bugs,
66 unsigned timeout, unsigned memlimit)
67 : ToolName(toolname), ReferenceOutputFile(OutputFile),
Dan Gohman7fb02ed2008-12-08 04:02:47 +000068 Program(0), Interpreter(0), SafeInterpreter(0), gcc(0),
69 run_as_child(as_child),
Dan Gohmanf17a25c2007-07-18 16:29:46 +000070 run_find_bugs(find_bugs), Timeout(timeout), MemoryLimit(memlimit) {}
71
72
73/// ParseInputFile - Given a bitcode or assembly input filename, parse and
74/// return it, or return null if not possible.
75///
76Module *llvm::ParseInputFile(const std::string &Filename) {
77 std::auto_ptr<MemoryBuffer> Buffer(MemoryBuffer::getFileOrSTDIN(Filename));
78 Module *Result = 0;
79 if (Buffer.get())
80 Result = ParseBitcodeFile(Buffer.get());
81
82 ParseError Err;
83 if (!Result && !(Result = ParseAssemblyFile(Filename, &Err))) {
84 std::cerr << "bugpoint: " << Err.getMessage() << "\n";
85 Result = 0;
86 }
87
88 return Result;
89}
90
91// This method takes the specified list of LLVM input files, attempts to load
92// them, either as assembly or bitcode, then link them together. It returns
93// true on failure (if, for example, an input bitcode file could not be
94// parsed), and false on success.
95//
96bool BugDriver::addSources(const std::vector<std::string> &Filenames) {
97 assert(Program == 0 && "Cannot call addSources multiple times!");
98 assert(!Filenames.empty() && "Must specify at least on input filename!");
99
100 try {
101 // Load the first input file.
102 Program = ParseInputFile(Filenames[0]);
103 if (Program == 0) return true;
104
105 if (!run_as_child)
106 std::cout << "Read input file : '" << Filenames[0] << "'\n";
107
108 for (unsigned i = 1, e = Filenames.size(); i != e; ++i) {
109 std::auto_ptr<Module> M(ParseInputFile(Filenames[i]));
110 if (M.get() == 0) return true;
111
112 if (!run_as_child)
113 std::cout << "Linking in input file: '" << Filenames[i] << "'\n";
114 std::string ErrorMessage;
115 if (Linker::LinkModules(Program, M.get(), &ErrorMessage)) {
116 std::cerr << ToolName << ": error linking in '" << Filenames[i] << "': "
117 << ErrorMessage << '\n';
118 return true;
119 }
120 }
121 } catch (const std::string &Error) {
122 std::cerr << ToolName << ": error reading input '" << Error << "'\n";
123 return true;
124 }
125
126 if (!run_as_child)
127 std::cout << "*** All input ok\n";
128
129 // All input files read successfully!
130 return false;
131}
132
133
134
135/// run - The top level method that is invoked after all of the instance
136/// variables are set up from command line arguments.
137///
138bool BugDriver::run() {
139 // The first thing to do is determine if we're running as a child. If we are,
140 // then what to do is very narrow. This form of invocation is only called
141 // from the runPasses method to actually run those passes in a child process.
142 if (run_as_child) {
143 // Execute the passes
144 return runPassesAsChild(PassesToRun);
145 }
146
147 if (run_find_bugs) {
148 // Rearrange the passes and apply them to the program. Repeat this process
149 // until the user kills the program or we find a bug.
150 return runManyPasses(PassesToRun);
151 }
152
153 // If we're not running as a child, the first thing that we must do is
154 // determine what the problem is. Does the optimization series crash the
155 // compiler, or does it produce illegal code? We make the top-level
156 // decision by trying to run all of the passes on the the input program,
157 // which should generate a bitcode file. If it does generate a bitcode
158 // file, then we know the compiler didn't crash, so try to diagnose a
159 // miscompilation.
160 if (!PassesToRun.empty()) {
161 std::cout << "Running selected passes on program to test for crash: ";
162 if (runPasses(PassesToRun))
163 return debugOptimizerCrash();
164 }
165
166 // Set up the execution environment, selecting a method to run LLVM bitcode.
167 if (initializeExecutionEnvironment()) return true;
168
169 // Test to see if we have a code generator crash.
170 std::cout << "Running the code generator to test for a crash: ";
171 try {
172 compileProgram(Program);
173 std::cout << '\n';
174 } catch (ToolExecutionError &TEE) {
175 std::cout << TEE.what();
176 return debugCodeGeneratorCrash();
177 }
178
179
180 // Run the raw input to see where we are coming from. If a reference output
181 // was specified, make sure that the raw output matches it. If not, it's a
182 // problem in the front-end or the code generator.
183 //
184 bool CreatedOutput = false;
185 if (ReferenceOutputFile.empty()) {
186 std::cout << "Generating reference output from raw program: ";
187 if(!createReferenceFile(Program)){
Bill Wendling4d7b0492008-02-26 10:46:10 +0000188 return debugCodeGeneratorCrash();
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000189 }
190 CreatedOutput = true;
191 }
192
193 // Make sure the reference output file gets deleted on exit from this
194 // function, if appropriate.
195 sys::Path ROF(ReferenceOutputFile);
196 FileRemover RemoverInstance(ROF, CreatedOutput);
197
198 // Diff the output of the raw program against the reference output. If it
199 // matches, then we assume there is a miscompilation bug and try to
200 // diagnose it.
201 std::cout << "*** Checking the code generator...\n";
202 try {
203 if (!diffProgram()) {
204 std::cout << "\n*** Debugging miscompilation!\n";
205 return debugMiscompilation();
206 }
207 } catch (ToolExecutionError &TEE) {
208 std::cerr << TEE.what();
209 return debugCodeGeneratorCrash();
210 }
211
212 std::cout << "\n*** Input program does not match reference diff!\n";
213 std::cout << "Debugging code generator problem!\n";
214 try {
215 return debugCodeGenerator();
216 } catch (ToolExecutionError &TEE) {
217 std::cerr << TEE.what();
218 return debugCodeGeneratorCrash();
219 }
220}
221
222void llvm::PrintFunctionList(const std::vector<Function*> &Funcs) {
223 unsigned NumPrint = Funcs.size();
224 if (NumPrint > 10) NumPrint = 10;
225 for (unsigned i = 0; i != NumPrint; ++i)
226 std::cout << " " << Funcs[i]->getName();
227 if (NumPrint < Funcs.size())
228 std::cout << "... <" << Funcs.size() << " total>";
229 std::cout << std::flush;
230}
231
232void llvm::PrintGlobalVariableList(const std::vector<GlobalVariable*> &GVs) {
233 unsigned NumPrint = GVs.size();
234 if (NumPrint > 10) NumPrint = 10;
235 for (unsigned i = 0; i != NumPrint; ++i)
236 std::cout << " " << GVs[i]->getName();
237 if (NumPrint < GVs.size())
238 std::cout << "... <" << GVs.size() << " total>";
239 std::cout << std::flush;
240}