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It's possible to imagine an implementation of google_breakpad::Module in which calling SetLoadAddress at different times as the Module is populated would produce different output. For the Mac dumper, we'd like to depend on its current behavior --- that the load address is subtracted off only when writing the symbol file, and can be set at any time prior to that. This patch makes that promise part of Module's contract, and adjusts the test suite to verify that that promise is met. a=jimblandy, r=thestig git-svn-id: http://google-breakpad.googlecode.com/svn/trunk@588 4c0a9323-5329-0410-9bdc-e9ce6186880e
398 lines
15 KiB
C++
398 lines
15 KiB
C++
// Copyright (c) 2010 Google Inc.
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are
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// met:
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//
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// * Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// * Redistributions in binary form must reproduce the above
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// copyright notice, this list of conditions and the following disclaimer
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// in the documentation and/or other materials provided with the
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// distribution.
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// * Neither the name of Google Inc. nor the names of its
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// contributors may be used to endorse or promote products derived from
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// this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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// Original author: Jim Blandy <jimb@mozilla.com> <jimb@red-bean.com>
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// module_unittest.cc: Unit tests for google_breakpad::Module.
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#include <cerrno>
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#include <cstdio>
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#include <cstdlib>
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#include <cstring>
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#include <algorithm>
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#include <string>
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#include "breakpad_googletest_includes.h"
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#include "common/module.h"
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using google_breakpad::Module;
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using std::string;
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using std::vector;
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using testing::ContainerEq;
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// Return a FILE * referring to a temporary file that will be deleted
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// automatically when the stream is closed or the program exits.
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FILE *checked_tmpfile() {
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FILE *f = tmpfile();
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if (!f) {
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fprintf(stderr, "error creating temporary file: %s\n", strerror(errno));
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exit(1);
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}
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return f;
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}
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// Read from STREAM until end of file, and return the contents as a
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// string.
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string checked_read(FILE *stream) {
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string contents;
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int c;
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while ((c = getc(stream)) != EOF)
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contents.push_back(c);
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if (ferror(stream)) {
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fprintf(stderr, "error reading temporary file contents: %s\n",
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strerror(errno));
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exit(1);
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}
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return contents;
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}
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// Apply 'fflush' to STREAM, and check for errors.
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void checked_fflush(FILE *stream) {
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if (fflush(stream) == EOF) {
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fprintf(stderr, "error flushing temporary file stream: %s\n",
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strerror(errno));
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exit(1);
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}
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}
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// Apply 'fclose' to STREAM, and check for errors.
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void checked_fclose(FILE *stream) {
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if (fclose(stream) == EOF) {
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fprintf(stderr, "error closing temporary file stream: %s\n",
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strerror(errno));
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exit(1);
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}
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}
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#define MODULE_NAME "name with spaces"
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#define MODULE_OS "os-name"
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#define MODULE_ARCH "architecture"
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#define MODULE_ID "id-string"
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TEST(Write, Header) {
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FILE *f = checked_tmpfile();
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Module m(MODULE_NAME, MODULE_OS, MODULE_ARCH, MODULE_ID);
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m.Write(f);
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checked_fflush(f);
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rewind(f);
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string contents = checked_read(f);
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checked_fclose(f);
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EXPECT_STREQ("MODULE os-name architecture id-string name with spaces\n",
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contents.c_str());
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}
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TEST(Write, OneLineFunc) {
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FILE *f = checked_tmpfile();
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Module m(MODULE_NAME, MODULE_OS, MODULE_ARCH, MODULE_ID);
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Module::File *file = m.FindFile("file_name.cc");
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Module::Function *function = new(Module::Function);
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function->name = "function_name";
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function->address = 0xe165bf8023b9d9abLL;
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function->size = 0x1e4bb0eb1cbf5b09LL;
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function->parameter_size = 0x772beee89114358aLL;
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Module::Line line = { 0xe165bf8023b9d9abLL, 0x1e4bb0eb1cbf5b09LL,
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file, 67519080 };
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function->lines.push_back(line);
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m.AddFunction(function);
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m.Write(f);
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checked_fflush(f);
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rewind(f);
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string contents = checked_read(f);
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checked_fclose(f);
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EXPECT_STREQ("MODULE os-name architecture id-string name with spaces\n"
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"FILE 0 file_name.cc\n"
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"FUNC e165bf8023b9d9ab 1e4bb0eb1cbf5b09 772beee89114358a"
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" function_name\n"
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"e165bf8023b9d9ab 1e4bb0eb1cbf5b09 67519080 0\n",
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contents.c_str());
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}
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TEST(Write, RelativeLoadAddress) {
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FILE *f = checked_tmpfile();
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Module m(MODULE_NAME, MODULE_OS, MODULE_ARCH, MODULE_ID);
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// Some source files. We will expect to see them in lexicographic order.
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Module::File *file1 = m.FindFile("filename-b.cc");
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Module::File *file2 = m.FindFile("filename-a.cc");
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// A function.
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Module::Function *function = new(Module::Function);
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function->name = "A_FLIBBERTIJIBBET::a_will_o_the_wisp(a clown)";
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function->address = 0xbec774ea5dd935f3LL;
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function->size = 0x2922088f98d3f6fcLL;
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function->parameter_size = 0xe5e9aa008bd5f0d0LL;
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// Some source lines. The module should not sort these.
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Module::Line line1 = { 0xbec774ea5dd935f3LL, 0x1c2be6d6c5af2611LL,
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file1, 41676901 };
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Module::Line line2 = { 0xdaf35bc123885c04LL, 0xcf621b8d324d0ebLL,
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file2, 67519080 };
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function->lines.push_back(line2);
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function->lines.push_back(line1);
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m.AddFunction(function);
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// Some stack information.
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Module::StackFrameEntry *entry = new Module::StackFrameEntry();
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entry->address = 0x30f9e5c83323973dULL;
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entry->size = 0x49fc9ca7c7c13dc2ULL;
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entry->initial_rules[".cfa"] = "he was a handsome man";
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entry->initial_rules["and"] = "what i want to know is";
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entry->rule_changes[0x30f9e5c83323973eULL]["how"] =
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"do you like your blueeyed boy";
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entry->rule_changes[0x30f9e5c83323973eULL]["Mister"] = "Death";
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m.AddStackFrameEntry(entry);
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// Set the load address. Doing this after adding all the data to
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// the module must work fine.
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m.SetLoadAddress(0x2ab698b0b6407073LL);
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m.Write(f);
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checked_fflush(f);
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rewind(f);
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string contents = checked_read(f);
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checked_fclose(f);
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EXPECT_STREQ("MODULE os-name architecture id-string name with spaces\n"
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"FILE 0 filename-a.cc\n"
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"FILE 1 filename-b.cc\n"
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"FUNC 9410dc39a798c580 2922088f98d3f6fc e5e9aa008bd5f0d0"
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" A_FLIBBERTIJIBBET::a_will_o_the_wisp(a clown)\n"
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"b03cc3106d47eb91 cf621b8d324d0eb 67519080 0\n"
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"9410dc39a798c580 1c2be6d6c5af2611 41676901 1\n"
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"STACK CFI INIT 6434d177ce326ca 49fc9ca7c7c13dc2"
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" .cfa: he was a handsome man"
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" and: what i want to know is\n"
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"STACK CFI 6434d177ce326cb"
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" Mister: Death"
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" how: do you like your blueeyed boy\n",
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contents.c_str());
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}
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TEST(Write, OmitUnusedFiles) {
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Module m(MODULE_NAME, MODULE_OS, MODULE_ARCH, MODULE_ID);
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// Create some source files.
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Module::File *file1 = m.FindFile("filename1");
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m.FindFile("filename2"); // not used by any line
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Module::File *file3 = m.FindFile("filename3");
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// Create a function.
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Module::Function *function = new(Module::Function);
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function->name = "function_name";
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function->address = 0x9b926d464f0b9384LL;
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function->size = 0x4f524a4ba795e6a6LL;
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function->parameter_size = 0xbbe8133a6641c9b7LL;
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// Source files that refer to some files, but not others.
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Module::Line line1 = { 0x595fa44ebacc1086LL, 0x1e1e0191b066c5b3LL,
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file1, 137850127 };
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Module::Line line2 = { 0x401ce8c8a12d25e3LL, 0x895751c41b8d2ce2LL,
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file3, 28113549 };
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function->lines.push_back(line1);
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function->lines.push_back(line2);
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m.AddFunction(function);
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m.AssignSourceIds();
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vector<Module::File *> vec;
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m.GetFiles(&vec);
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EXPECT_EQ((size_t) 3, vec.size());
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EXPECT_STREQ("filename1", vec[0]->name.c_str());
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EXPECT_NE(-1, vec[0]->source_id);
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// Expect filename2 not to be used.
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EXPECT_STREQ("filename2", vec[1]->name.c_str());
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EXPECT_EQ(-1, vec[1]->source_id);
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EXPECT_STREQ("filename3", vec[2]->name.c_str());
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EXPECT_NE(-1, vec[2]->source_id);
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FILE *f = checked_tmpfile();
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m.Write(f);
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checked_fflush(f);
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rewind(f);
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string contents = checked_read(f);
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checked_fclose(f);
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EXPECT_STREQ("MODULE os-name architecture id-string name with spaces\n"
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"FILE 0 filename1\n"
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"FILE 1 filename3\n"
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"FUNC 9b926d464f0b9384 4f524a4ba795e6a6 bbe8133a6641c9b7"
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" function_name\n"
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"595fa44ebacc1086 1e1e0191b066c5b3 137850127 0\n"
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"401ce8c8a12d25e3 895751c41b8d2ce2 28113549 1\n",
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contents.c_str());
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}
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TEST(Construct, AddFunctions) {
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FILE *f = checked_tmpfile();
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Module m(MODULE_NAME, MODULE_OS, MODULE_ARCH, MODULE_ID);
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// Two functions.
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Module::Function *function1 = new(Module::Function);
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function1->name = "_without_form";
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function1->address = 0xd35024aa7ca7da5cLL;
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function1->size = 0x200b26e605f99071LL;
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function1->parameter_size = 0xf14ac4fed48c4a99LL;
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Module::Function *function2 = new(Module::Function);
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function2->name = "_and_void";
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function2->address = 0x2987743d0b35b13fLL;
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function2->size = 0xb369db048deb3010LL;
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function2->parameter_size = 0x938e556cb5a79988LL;
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// Put them in a vector.
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vector<Module::Function *> vec;
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vec.push_back(function1);
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vec.push_back(function2);
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m.AddFunctions(vec.begin(), vec.end());
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m.Write(f);
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checked_fflush(f);
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rewind(f);
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string contents = checked_read(f);
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checked_fclose(f);
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EXPECT_STREQ("MODULE os-name architecture id-string name with spaces\n"
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"FUNC d35024aa7ca7da5c 200b26e605f99071 f14ac4fed48c4a99"
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" _without_form\n"
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"FUNC 2987743d0b35b13f b369db048deb3010 938e556cb5a79988"
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" _and_void\n",
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contents.c_str());
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// Check that m.GetFunctions returns the functions we expect.
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vec.clear();
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m.GetFunctions(&vec, vec.end());
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EXPECT_TRUE(vec.end() != find(vec.begin(), vec.end(), function1));
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EXPECT_TRUE(vec.end() != find(vec.begin(), vec.end(), function2));
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EXPECT_EQ((size_t) 2, vec.size());
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}
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TEST(Construct, AddFrames) {
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FILE *f = checked_tmpfile();
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Module m(MODULE_NAME, MODULE_OS, MODULE_ARCH, MODULE_ID);
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// First STACK CFI entry, with no initial rules or deltas.
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Module::StackFrameEntry *entry1 = new Module::StackFrameEntry();
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entry1->address = 0xddb5f41285aa7757ULL;
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entry1->size = 0x1486493370dc5073ULL;
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m.AddStackFrameEntry(entry1);
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// Second STACK CFI entry, with initial rules but no deltas.
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Module::StackFrameEntry *entry2 = new Module::StackFrameEntry();
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entry2->address = 0x8064f3af5e067e38ULL;
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entry2->size = 0x0de2a5ee55509407ULL;
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entry2->initial_rules[".cfa"] = "I think that I shall never see";
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entry2->initial_rules["stromboli"] = "a poem lovely as a tree";
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entry2->initial_rules["cannoli"] = "a tree whose hungry mouth is prest";
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m.AddStackFrameEntry(entry2);
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// Third STACK CFI entry, with initial rules and deltas.
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Module::StackFrameEntry *entry3 = new Module::StackFrameEntry();
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entry3->address = 0x5e8d0db0a7075c6cULL;
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entry3->size = 0x1c7edb12a7aea229ULL;
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entry3->initial_rules[".cfa"] = "Whose woods are these";
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entry3->rule_changes[0x47ceb0f63c269d7fULL]["calzone"] =
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"the village though";
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entry3->rule_changes[0x47ceb0f63c269d7fULL]["cannoli"] =
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"he will not see me stopping here";
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entry3->rule_changes[0x36682fad3763ffffULL]["stromboli"] =
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"his house is in";
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entry3->rule_changes[0x36682fad3763ffffULL][".cfa"] =
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"I think I know";
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m.AddStackFrameEntry(entry3);
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// Check that Write writes STACK CFI records properly.
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m.Write(f);
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checked_fflush(f);
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rewind(f);
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string contents = checked_read(f);
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checked_fclose(f);
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EXPECT_STREQ("MODULE os-name architecture id-string name with spaces\n"
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"STACK CFI INIT ddb5f41285aa7757 1486493370dc5073 \n"
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"STACK CFI INIT 8064f3af5e067e38 de2a5ee55509407"
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" .cfa: I think that I shall never see"
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" cannoli: a tree whose hungry mouth is prest"
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" stromboli: a poem lovely as a tree\n"
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"STACK CFI INIT 5e8d0db0a7075c6c 1c7edb12a7aea229"
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" .cfa: Whose woods are these\n"
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"STACK CFI 36682fad3763ffff"
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" .cfa: I think I know"
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" stromboli: his house is in\n"
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"STACK CFI 47ceb0f63c269d7f"
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" calzone: the village though"
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" cannoli: he will not see me stopping here\n",
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contents.c_str());
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// Check that GetStackFrameEntries works.
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vector<Module::StackFrameEntry *> entries;
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m.GetStackFrameEntries(&entries);
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ASSERT_EQ(3U, entries.size());
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// Check first entry.
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EXPECT_EQ(0xddb5f41285aa7757ULL, entries[0]->address);
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EXPECT_EQ(0x1486493370dc5073ULL, entries[0]->size);
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ASSERT_EQ(0U, entries[0]->initial_rules.size());
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ASSERT_EQ(0U, entries[0]->rule_changes.size());
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// Check second entry.
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EXPECT_EQ(0x8064f3af5e067e38ULL, entries[1]->address);
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EXPECT_EQ(0x0de2a5ee55509407ULL, entries[1]->size);
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ASSERT_EQ(3U, entries[1]->initial_rules.size());
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Module::RuleMap entry2_initial;
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entry2_initial[".cfa"] = "I think that I shall never see";
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entry2_initial["stromboli"] = "a poem lovely as a tree";
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entry2_initial["cannoli"] = "a tree whose hungry mouth is prest";
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EXPECT_THAT(entries[1]->initial_rules, ContainerEq(entry2_initial));
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ASSERT_EQ(0U, entries[1]->rule_changes.size());
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// Check third entry.
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EXPECT_EQ(0x5e8d0db0a7075c6cULL, entries[2]->address);
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EXPECT_EQ(0x1c7edb12a7aea229ULL, entries[2]->size);
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Module::RuleMap entry3_initial;
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entry3_initial[".cfa"] = "Whose woods are these";
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EXPECT_THAT(entries[2]->initial_rules, ContainerEq(entry3_initial));
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Module::RuleChangeMap entry3_changes;
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entry3_changes[0x36682fad3763ffffULL][".cfa"] = "I think I know";
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entry3_changes[0x36682fad3763ffffULL]["stromboli"] = "his house is in";
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entry3_changes[0x47ceb0f63c269d7fULL]["calzone"] = "the village though";
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entry3_changes[0x47ceb0f63c269d7fULL]["cannoli"] =
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"he will not see me stopping here";
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EXPECT_THAT(entries[2]->rule_changes, ContainerEq(entry3_changes));
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}
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TEST(Construct, UniqueFiles) {
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Module m(MODULE_NAME, MODULE_OS, MODULE_ARCH, MODULE_ID);
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Module::File *file1 = m.FindFile("foo");
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Module::File *file2 = m.FindFile(string("bar"));
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Module::File *file3 = m.FindFile(string("foo"));
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Module::File *file4 = m.FindFile("bar");
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EXPECT_NE(file1, file2);
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EXPECT_EQ(file1, file3);
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EXPECT_EQ(file2, file4);
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EXPECT_EQ(file1, m.FindExistingFile("foo"));
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EXPECT_TRUE(m.FindExistingFile("baz") == NULL);
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}
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