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722 lines
30 KiB
C++
722 lines
30 KiB
C++
// Copyright 2013 Google LLC
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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 LLC 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: Veljko Mihailovic <veljko.mihailovic@imgtec.com>
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// stackwalker_mips64_unittest.cc: Unit tests for StackwalkerMIPS class for
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// mips64 platforms.
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#ifdef HAVE_CONFIG_H
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#include <config.h> // Must come first
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#endif
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#include <string.h>
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#include <string>
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#include <vector>
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#include "breakpad_googletest_includes.h"
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#include "common/test_assembler.h"
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#include "common/using_std_string.h"
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#include "google_breakpad/common/minidump_format.h"
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#include "google_breakpad/processor/basic_source_line_resolver.h"
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#include "google_breakpad/processor/call_stack.h"
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#include "google_breakpad/processor/code_module.h"
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#include "google_breakpad/processor/source_line_resolver_interface.h"
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#include "google_breakpad/processor/stack_frame_cpu.h"
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#include "processor/stackwalker_unittest_utils.h"
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#include "processor/stackwalker_mips.h"
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#include "processor/windows_frame_info.h"
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using google_breakpad::BasicSourceLineResolver;
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using google_breakpad::CallStack;
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using google_breakpad::CodeModule;
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using google_breakpad::StackFrameSymbolizer;
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using google_breakpad::StackFrame;
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using google_breakpad::StackFrameMIPS;
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using google_breakpad::Stackwalker;
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using google_breakpad::StackwalkerMIPS;
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using google_breakpad::SystemInfo;
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using google_breakpad::WindowsFrameInfo;
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using google_breakpad::test_assembler::kLittleEndian;
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using google_breakpad::test_assembler::Label;
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using google_breakpad::test_assembler::Section;
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using std::vector;
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using testing::_;
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using testing::AnyNumber;
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using testing::DoAll;
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using testing::Return;
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using testing::SetArgumentPointee;
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using testing::Test;
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class StackwalkerMIPSFixture {
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public:
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StackwalkerMIPSFixture()
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: stack_section(kLittleEndian),
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// Give the two modules reasonable standard locations and names
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// for tests to play with.
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module1(0x00400000, 0x10000, "module1", "version1"),
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module2(0x00500000, 0x10000, "module2", "version2") {
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// Identify the system as a Linux system.
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system_info.os = "Linux";
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system_info.os_short = "linux";
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system_info.os_version = "Observant Opossum"; // Jealous Jellyfish
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system_info.cpu = "mips64";
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system_info.cpu_info = "";
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// Put distinctive values in the raw CPU context.
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BrandContext(&raw_context);
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// Create some modules with some stock debugging information.
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modules.Add(&module1);
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modules.Add(&module2);
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// By default, none of the modules have symbol info; call
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// SetModuleSymbols to override this.
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EXPECT_CALL(supplier, GetCStringSymbolData(_, _, _, _, _))
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.WillRepeatedly(Return(MockSymbolSupplier::NOT_FOUND));
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// Avoid GMOCK WARNING "Uninteresting mock function call - returning
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// directly" for FreeSymbolData().
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EXPECT_CALL(supplier, FreeSymbolData(_)).Times(AnyNumber());
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// Reset max_frames_scanned since it's static.
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Stackwalker::set_max_frames_scanned(1024);
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}
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// Set the Breakpad symbol information that supplier should return for
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// MODULE to INFO.
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void SetModuleSymbols(MockCodeModule* module, const string& info) {
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size_t buffer_size;
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char* buffer = supplier.CopySymbolDataAndOwnTheCopy(info, &buffer_size);
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EXPECT_CALL(supplier, GetCStringSymbolData(module, &system_info, _, _, _))
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.WillRepeatedly(DoAll(SetArgumentPointee<3>(buffer),
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SetArgumentPointee<4>(buffer_size),
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Return(MockSymbolSupplier::FOUND)));
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}
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// Populate stack_region with the contents of stack_section. Use
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// stack_section.start() as the region's starting address.
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void RegionFromSection() {
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string contents;
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ASSERT_TRUE(stack_section.GetContents(&contents));
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stack_region.Init(stack_section.start().Value(), contents);
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}
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// Fill RAW_CONTEXT with pseudo-random data, for round-trip checking.
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void BrandContext(MDRawContextMIPS* raw_context) {
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uint8_t x = 173;
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for (size_t i = 0; i < sizeof(*raw_context); ++i)
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reinterpret_cast<uint8_t*>(raw_context)[i] = (x += 17);
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}
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SystemInfo system_info;
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MDRawContextMIPS raw_context;
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Section stack_section;
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MockMemoryRegion stack_region;
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MockCodeModule module1;
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MockCodeModule module2;
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MockCodeModules modules;
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MockSymbolSupplier supplier;
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BasicSourceLineResolver resolver;
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CallStack call_stack;
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const vector<StackFrame*>* frames;
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};
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class SanityCheck: public StackwalkerMIPSFixture, public Test { };
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TEST_F(SanityCheck, NoResolver) {
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raw_context.context_flags =
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raw_context.context_flags | MD_CONTEXT_MIPS64_FULL;
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stack_section.start() = 0x80000000;
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stack_section.D64(0).D64(0x0);
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RegionFromSection();
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raw_context.epc = 0x00400020;
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raw_context.iregs[MD_CONTEXT_MIPS_REG_SP] = 0x80000000;
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StackFrameSymbolizer frame_symbolizer(NULL, NULL);
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StackwalkerMIPS walker(&system_info, &raw_context, &stack_region, &modules,
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&frame_symbolizer);
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// This should succeed, even without a resolver or supplier.
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vector<const CodeModule*> modules_without_symbols;
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vector<const CodeModule*> modules_with_corrupt_symbols;
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ASSERT_TRUE(walker.Walk(&call_stack, &modules_without_symbols,
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&modules_with_corrupt_symbols));
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ASSERT_EQ(1U, modules_without_symbols.size());
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ASSERT_EQ("module1", modules_without_symbols[0]->debug_file());
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ASSERT_EQ(0U, modules_with_corrupt_symbols.size());
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frames = call_stack.frames();
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ASSERT_EQ(1U, frames->size());
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StackFrameMIPS* frame = static_cast<StackFrameMIPS*>(frames->at(0));
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// Check that the values from the original raw context made it
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// through to the context in the stack frame.
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EXPECT_EQ(0, memcmp(&raw_context, &frame->context, sizeof(raw_context)));
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}
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class GetContextFrame: public StackwalkerMIPSFixture, public Test { };
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TEST_F(GetContextFrame, Simple) {
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raw_context.context_flags =
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raw_context.context_flags | MD_CONTEXT_MIPS64_FULL;
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stack_section.start() = 0x80000000;
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stack_section.D64(0).D64(0x0);
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RegionFromSection();
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raw_context.epc = 0x00400020;
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raw_context.iregs[MD_CONTEXT_MIPS_REG_SP] = 0x80000000;
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StackFrameSymbolizer frame_symbolizer(&supplier, &resolver);
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StackwalkerMIPS walker(&system_info, &raw_context, &stack_region, &modules,
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&frame_symbolizer);
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vector<const CodeModule*> modules_without_symbols;
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vector<const CodeModule*> modules_with_corrupt_symbols;
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ASSERT_TRUE(walker.Walk(&call_stack, &modules_without_symbols,
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&modules_with_corrupt_symbols));
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ASSERT_EQ(1U, modules_without_symbols.size());
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ASSERT_EQ("module1", modules_without_symbols[0]->debug_file());
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ASSERT_EQ(0U, modules_with_corrupt_symbols.size());
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frames = call_stack.frames();
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StackFrameMIPS* frame = static_cast<StackFrameMIPS*>(frames->at(0));
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// Check that the values from the original raw context made it
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// through to the context in the stack frame.
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EXPECT_EQ(0, memcmp(&raw_context, &frame->context, sizeof(raw_context)));
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}
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// The stackwalker should be able to produce the context frame even
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// without stack memory present.
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TEST_F(GetContextFrame, NoStackMemory) {
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raw_context.context_flags =
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raw_context.context_flags | MD_CONTEXT_MIPS64_FULL;
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raw_context.epc = 0x00400020;
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raw_context.iregs[MD_CONTEXT_MIPS_REG_SP] = 0x80000000;
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StackFrameSymbolizer frame_symbolizer(&supplier, &resolver);
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StackwalkerMIPS walker(&system_info, &raw_context, NULL, &modules,
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&frame_symbolizer);
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vector<const CodeModule*> modules_without_symbols;
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vector<const CodeModule*> modules_with_corrupt_symbols;
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ASSERT_TRUE(walker.Walk(&call_stack, &modules_without_symbols,
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&modules_with_corrupt_symbols));
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ASSERT_EQ(1U, modules_without_symbols.size());
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ASSERT_EQ("module1", modules_without_symbols[0]->debug_file());
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ASSERT_EQ(0U, modules_with_corrupt_symbols.size());
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frames = call_stack.frames();
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StackFrameMIPS* frame = static_cast<StackFrameMIPS*>(frames->at(0));
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// Check that the values from the original raw context made it
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// through to the context in the stack frame.
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EXPECT_EQ(0, memcmp(&raw_context, &frame->context, sizeof(raw_context)));
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}
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class GetCallerFrame: public StackwalkerMIPSFixture, public Test { };
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TEST_F(GetCallerFrame, ScanWithoutSymbols) {
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raw_context.context_flags =
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raw_context.context_flags | MD_CONTEXT_MIPS64_FULL;
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// When the stack walker resorts to scanning the stack,
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// only addresses located within loaded modules are
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// considered valid return addresses.
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// Force scanning through three frames to ensure that the
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// stack pointer is set properly in scan-recovered frames.
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stack_section.start() = 0x80000000;
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uint64_t return_address1 = 0x00400100;
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uint64_t return_address2 = 0x00400900;
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Label frame1_sp, frame2_sp;
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stack_section
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// frame 0
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.Append(32, 0) // space
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.D64(0x00490000) // junk that's not
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.D64(0x00600000) // a return address
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.D64(frame1_sp) // stack pointer
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.D64(return_address1) // actual return address
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// frame 1
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.Mark(&frame1_sp)
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.Append(32, 0) // space
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.D64(0xF0000000) // more junk
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.D64(0x0000000D)
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.D64(frame2_sp) // stack pointer
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.D64(return_address2) // actual return address
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// frame 2
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.Mark(&frame2_sp)
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.Append(64, 0); // end of stack
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RegionFromSection();
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raw_context.epc = 0x00405510;
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raw_context.iregs[MD_CONTEXT_MIPS_REG_SP] = stack_section.start().Value();
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raw_context.iregs[MD_CONTEXT_MIPS_REG_RA] = return_address1;
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StackFrameSymbolizer frame_symbolizer(&supplier, &resolver);
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StackwalkerMIPS walker(&system_info, &raw_context, &stack_region, &modules,
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&frame_symbolizer);
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vector<const CodeModule*> modules_without_symbols;
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vector<const CodeModule*> modules_with_corrupt_symbols;
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ASSERT_TRUE(walker.Walk(&call_stack, &modules_without_symbols,
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&modules_with_corrupt_symbols));
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ASSERT_EQ(1U, modules_without_symbols.size());
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ASSERT_EQ("module1", modules_without_symbols[0]->debug_file());
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ASSERT_EQ(0U, modules_with_corrupt_symbols.size());
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frames = call_stack.frames();
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ASSERT_EQ(3U, frames->size());
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StackFrameMIPS* frame0 = static_cast<StackFrameMIPS*>(frames->at(0));
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EXPECT_EQ(StackFrame::FRAME_TRUST_CONTEXT, frame0->trust);
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ASSERT_EQ(StackFrameMIPS::CONTEXT_VALID_ALL, frame0->context_validity);
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EXPECT_EQ(0, memcmp(&raw_context, &frame0->context, sizeof(raw_context)));
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StackFrameMIPS* frame1 = static_cast<StackFrameMIPS*>(frames->at(1));
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EXPECT_EQ(StackFrame::FRAME_TRUST_SCAN, frame1->trust);
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ASSERT_EQ((StackFrameMIPS::CONTEXT_VALID_PC |
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StackFrameMIPS::CONTEXT_VALID_SP |
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StackFrameMIPS::CONTEXT_VALID_FP |
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StackFrameMIPS::CONTEXT_VALID_RA),
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frame1->context_validity);
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EXPECT_EQ(return_address1 - 2 * sizeof(return_address1), frame1->context.epc);
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EXPECT_EQ(frame1_sp.Value(), frame1->context.iregs[MD_CONTEXT_MIPS_REG_SP]);
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StackFrameMIPS* frame2 = static_cast<StackFrameMIPS*>(frames->at(2));
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EXPECT_EQ(StackFrame::FRAME_TRUST_SCAN, frame2->trust);
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ASSERT_EQ((StackFrameMIPS::CONTEXT_VALID_PC |
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StackFrameMIPS::CONTEXT_VALID_SP |
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StackFrameMIPS::CONTEXT_VALID_FP |
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StackFrameMIPS::CONTEXT_VALID_RA),
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frame2->context_validity);
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EXPECT_EQ(return_address2 - 2 * sizeof(return_address2), frame2->context.epc);
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EXPECT_EQ(frame2_sp.Value(), frame2->context.iregs[MD_CONTEXT_MIPS_REG_SP]);
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}
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TEST_F(GetCallerFrame, ScanWithFunctionSymbols) {
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raw_context.context_flags =
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raw_context.context_flags | MD_CONTEXT_MIPS64_FULL;
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// During stack scanning, if a potential return address
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// is located within a loaded module that has symbols,
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// it is only considered a valid return address if it
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// lies within a function's bounds.
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stack_section.start() = 0x80000000;
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uint64_t return_address = 0x00500200;
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Label frame1_sp;
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stack_section
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// frame 0
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.Append(16, 0) // space
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.D64(0x00490000) // junk that's not
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.D64(0x00600000) // a return address
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.D64(0x00401000) // a couple of plausible addresses
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.D64(0x0050F000) // that are not within functions
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.D64(frame1_sp) // stack pointer
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.D64(return_address) // actual return address
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// frame 1
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.Mark(&frame1_sp)
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.Append(64, 0); // end of stack
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RegionFromSection();
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raw_context.epc = 0x00400200;
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raw_context.iregs[MD_CONTEXT_MIPS_REG_SP] = stack_section.start().Value();
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raw_context.iregs[MD_CONTEXT_MIPS_REG_RA] = return_address;
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SetModuleSymbols(&module1,
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// The youngest frame's function.
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"FUNC 100 400 10 monotreme\n");
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SetModuleSymbols(&module2,
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// The calling frame's function.
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"FUNC 100 400 10 marsupial\n");
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StackFrameSymbolizer frame_symbolizer(&supplier, &resolver);
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StackwalkerMIPS walker(&system_info, &raw_context, &stack_region, &modules,
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&frame_symbolizer);
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vector<const CodeModule*> modules_without_symbols;
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vector<const CodeModule*> modules_with_corrupt_symbols;
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ASSERT_TRUE(walker.Walk(&call_stack, &modules_without_symbols,
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&modules_with_corrupt_symbols));
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ASSERT_EQ(0U, modules_without_symbols.size());
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ASSERT_EQ(0U, modules_with_corrupt_symbols.size());
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frames = call_stack.frames();
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ASSERT_EQ(2U, frames->size());
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StackFrameMIPS* frame0 = static_cast<StackFrameMIPS*>(frames->at(0));
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EXPECT_EQ(StackFrame::FRAME_TRUST_CONTEXT, frame0->trust);
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ASSERT_EQ(StackFrameMIPS::CONTEXT_VALID_ALL, frame0->context_validity);
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EXPECT_EQ(0, memcmp(&raw_context, &frame0->context, sizeof(raw_context)));
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EXPECT_EQ("monotreme", frame0->function_name);
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EXPECT_EQ(0x00400100U, frame0->function_base);
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StackFrameMIPS* frame1 = static_cast<StackFrameMIPS*>(frames->at(1));
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EXPECT_EQ(StackFrame::FRAME_TRUST_SCAN, frame1->trust);
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ASSERT_EQ((StackFrameMIPS::CONTEXT_VALID_PC |
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StackFrameMIPS::CONTEXT_VALID_SP |
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StackFrameMIPS::CONTEXT_VALID_FP |
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StackFrameMIPS::CONTEXT_VALID_RA),
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frame1->context_validity);
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EXPECT_EQ(return_address - 2 * sizeof(return_address), frame1->context.epc);
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EXPECT_EQ(frame1_sp.Value(), frame1->context.iregs[MD_CONTEXT_MIPS_REG_SP]);
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EXPECT_EQ("marsupial", frame1->function_name);
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EXPECT_EQ(0x00500100U, frame1->function_base);
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}
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TEST_F(GetCallerFrame, CheckStackFrameSizeLimit) {
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raw_context.context_flags =
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raw_context.context_flags | MD_CONTEXT_MIPS64_FULL;
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// If the stackwalker resorts to stack scanning, it will scan only
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// 1024 bytes of stack which correspondes to maximum size of stack frame.
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stack_section.start() = 0x80000000;
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uint64_t return_address1 = 0x00500100;
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uint64_t return_address2 = 0x00500900;
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Label frame1_sp, frame2_sp;
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stack_section
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// frame 0
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.Append(32, 0) // space
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.D64(0x00490000) // junk that's not
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.D64(0x00600000) // a return address
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.Append(96, 0) // more space
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.D64(frame1_sp) // stack pointer
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.D64(return_address1) // actual return address
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// frame 1
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.Mark(&frame1_sp)
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.Append(128 * 4, 0) // space
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.D64(0x00F00000) // more junk
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.D64(0x0000000D)
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.Append(128 * 4, 0) // more space
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.D64(frame2_sp) // stack pointer
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.D64(return_address2) // actual return address
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// (won't be found)
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// frame 2
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.Mark(&frame2_sp)
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.Append(64, 0); // end of stack
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RegionFromSection();
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raw_context.epc = 0x00405510;
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raw_context.iregs[MD_CONTEXT_MIPS_REG_SP] = stack_section.start().Value();
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raw_context.iregs[MD_CONTEXT_MIPS_REG_RA] = return_address1;
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StackFrameSymbolizer frame_symbolizer(&supplier, &resolver);
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StackwalkerMIPS walker(&system_info, &raw_context, &stack_region, &modules,
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&frame_symbolizer);
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vector<const CodeModule*> modules_without_symbols;
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vector<const CodeModule*> modules_with_corrupt_symbols;
|
|
ASSERT_TRUE(walker.Walk(&call_stack, &modules_without_symbols,
|
|
&modules_with_corrupt_symbols));
|
|
ASSERT_EQ(2U, modules_without_symbols.size());
|
|
ASSERT_EQ("module1", modules_without_symbols[0]->debug_file());
|
|
ASSERT_EQ("module2", modules_without_symbols[1]->debug_file());
|
|
ASSERT_EQ(0U, modules_with_corrupt_symbols.size());
|
|
frames = call_stack.frames();
|
|
ASSERT_EQ(2U, frames->size());
|
|
|
|
StackFrameMIPS* frame0 = static_cast<StackFrameMIPS*>(frames->at(0));
|
|
EXPECT_EQ(StackFrame::FRAME_TRUST_CONTEXT, frame0->trust);
|
|
ASSERT_EQ(StackFrameMIPS::CONTEXT_VALID_ALL, frame0->context_validity);
|
|
EXPECT_EQ(0, memcmp(&raw_context, &frame0->context, sizeof(raw_context)));
|
|
|
|
StackFrameMIPS* frame1 = static_cast<StackFrameMIPS*>(frames->at(1));
|
|
EXPECT_EQ(StackFrame::FRAME_TRUST_SCAN, frame1->trust);
|
|
ASSERT_EQ((StackFrameMIPS::CONTEXT_VALID_PC |
|
|
StackFrameMIPS::CONTEXT_VALID_SP |
|
|
StackFrameMIPS::CONTEXT_VALID_FP |
|
|
StackFrameMIPS::CONTEXT_VALID_RA),
|
|
frame1->context_validity);
|
|
EXPECT_EQ(return_address1 - 2 * sizeof(return_address1), frame1->context.epc);
|
|
EXPECT_EQ(frame1_sp.Value(), frame1->context.iregs[MD_CONTEXT_MIPS_REG_SP]);
|
|
}
|
|
|
|
// Test that set_max_frames_scanned prevents using stack scanning
|
|
// to find caller frames.
|
|
TEST_F(GetCallerFrame, ScanningNotAllowed) {
|
|
raw_context.context_flags =
|
|
raw_context.context_flags | MD_CONTEXT_MIPS64_FULL;
|
|
// When the stack walker resorts to scanning the stack,
|
|
// only fixed number of frames are allowed to be scanned out from stack
|
|
stack_section.start() = 0x80000000;
|
|
uint64_t return_address1 = 0x00500100;
|
|
uint64_t return_address2 = 0x00500900;
|
|
Label frame1_sp, frame2_sp;
|
|
stack_section
|
|
// frame 0
|
|
.Append(32, 0) // space
|
|
|
|
.D64(0x00490000) // junk that's not
|
|
.D64(0x00600000) // a return address
|
|
|
|
.Append(96, 0) // more space
|
|
|
|
.D64(frame1_sp) // stack pointer
|
|
.D64(return_address1) // actual return address
|
|
// frame 1
|
|
.Mark(&frame1_sp)
|
|
.Append(128 * 4, 0) // space
|
|
|
|
.D64(0x00F00000) // more junk
|
|
.D64(0x0000000D)
|
|
|
|
.Append(128 * 4, 0) // more space
|
|
|
|
.D64(frame2_sp) // stack pointer
|
|
.D64(return_address2) // actual return address
|
|
// (won't be found)
|
|
// frame 2
|
|
.Mark(&frame2_sp)
|
|
.Append(64, 0); // end of stack
|
|
RegionFromSection();
|
|
|
|
raw_context.epc = 0x00405510;
|
|
raw_context.iregs[MD_CONTEXT_MIPS_REG_SP] = stack_section.start().Value();
|
|
raw_context.iregs[MD_CONTEXT_MIPS_REG_RA] = return_address1;
|
|
|
|
StackFrameSymbolizer frame_symbolizer(&supplier, &resolver);
|
|
StackwalkerMIPS walker(&system_info, &raw_context, &stack_region, &modules,
|
|
&frame_symbolizer);
|
|
Stackwalker::set_max_frames_scanned(0);
|
|
|
|
vector<const CodeModule*> modules_without_symbols;
|
|
vector<const CodeModule*> modules_with_corrupt_symbols;
|
|
ASSERT_TRUE(walker.Walk(&call_stack, &modules_without_symbols,
|
|
&modules_with_corrupt_symbols));
|
|
ASSERT_EQ(1U, modules_without_symbols.size());
|
|
ASSERT_EQ("module1", modules_without_symbols[0]->debug_file());
|
|
ASSERT_EQ(0U, modules_with_corrupt_symbols.size());
|
|
frames = call_stack.frames();
|
|
ASSERT_EQ(1U, frames->size());
|
|
|
|
StackFrameMIPS* frame0 = static_cast<StackFrameMIPS*>(frames->at(0));
|
|
EXPECT_EQ(StackFrame::FRAME_TRUST_CONTEXT, frame0->trust);
|
|
ASSERT_EQ(StackFrameMIPS::CONTEXT_VALID_ALL, frame0->context_validity);
|
|
EXPECT_EQ(0, memcmp(&raw_context, &frame0->context, sizeof(raw_context)));
|
|
}
|
|
|
|
struct CFIFixture: public StackwalkerMIPSFixture {
|
|
CFIFixture() {
|
|
// Provide some STACK CFI records;
|
|
SetModuleSymbols(&module1,
|
|
// The youngest frame's function.
|
|
"FUNC 4000 1000 0 enchiridion\n"
|
|
// Initially, nothing has been pushed on the stack,
|
|
// and the return address is still in the $ra register.
|
|
"STACK CFI INIT 4000 1000 .cfa: $sp 0 + .ra: $ra\n"
|
|
// Move stack pointer.
|
|
"STACK CFI 4004 .cfa: $sp 32 +\n"
|
|
// store $fp and ra
|
|
"STACK CFI 4008 $fp: .cfa -8 + ^ .ra: .cfa -4 + ^\n"
|
|
// restore $fp
|
|
"STACK CFI 400c .cfa: $fp 32 +\n"
|
|
// restore $sp
|
|
"STACK CFI 4018 .cfa: $sp 32 +\n"
|
|
|
|
"STACK CFI 4020 $fp: $fp .cfa: $sp 0 + .ra: .ra\n"
|
|
|
|
// The calling function.
|
|
"FUNC 5000 1000 0 epictetus\n"
|
|
// Mark it as end of stack.
|
|
"STACK CFI INIT 5000 8 .cfa: $sp 0 + .ra: $ra\n"
|
|
|
|
// A function whose CFI makes the stack pointer
|
|
// go backwards.
|
|
"FUNC 6000 1000 20 palinal\n"
|
|
"STACK CFI INIT 6000 1000 .cfa: $sp 4 - .ra: $ra\n"
|
|
|
|
// A function with CFI expressions that can't be
|
|
// evaluated.
|
|
"FUNC 7000 1000 20 rhetorical\n"
|
|
"STACK CFI INIT 7000 1000 .cfa: moot .ra: ambiguous\n"
|
|
);
|
|
|
|
// Provide some distinctive values for the caller's registers.
|
|
expected.epc = 0x00405500;
|
|
expected.iregs[MD_CONTEXT_MIPS_REG_S0] = 0x0;
|
|
expected.iregs[MD_CONTEXT_MIPS_REG_S1] = 0x1;
|
|
expected.iregs[MD_CONTEXT_MIPS_REG_S2] = 0x2;
|
|
expected.iregs[MD_CONTEXT_MIPS_REG_S3] = 0x3;
|
|
expected.iregs[MD_CONTEXT_MIPS_REG_S4] = 0x4;
|
|
expected.iregs[MD_CONTEXT_MIPS_REG_S5] = 0x5;
|
|
expected.iregs[MD_CONTEXT_MIPS_REG_S6] = 0x6;
|
|
expected.iregs[MD_CONTEXT_MIPS_REG_S7] = 0x7;
|
|
expected.iregs[MD_CONTEXT_MIPS_REG_SP] = 0x80000000;
|
|
expected.iregs[MD_CONTEXT_MIPS_REG_FP] = 0x80000000;
|
|
expected.iregs[MD_CONTEXT_MIPS_REG_RA] = 0x00405510;
|
|
|
|
// Expect CFI to recover all callee-save registers. Since CFI is the
|
|
// only stack frame construction technique we have, aside from the
|
|
// context frame itself, there's no way for us to have a set of valid
|
|
// registers smaller than this.
|
|
expected_validity = (StackFrameMIPS::CONTEXT_VALID_PC |
|
|
StackFrameMIPS::CONTEXT_VALID_S0 |
|
|
StackFrameMIPS::CONTEXT_VALID_S1 |
|
|
StackFrameMIPS::CONTEXT_VALID_S2 |
|
|
StackFrameMIPS::CONTEXT_VALID_S3 |
|
|
StackFrameMIPS::CONTEXT_VALID_S4 |
|
|
StackFrameMIPS::CONTEXT_VALID_S5 |
|
|
StackFrameMIPS::CONTEXT_VALID_S6 |
|
|
StackFrameMIPS::CONTEXT_VALID_S7 |
|
|
StackFrameMIPS::CONTEXT_VALID_SP |
|
|
StackFrameMIPS::CONTEXT_VALID_FP |
|
|
StackFrameMIPS::CONTEXT_VALID_GP |
|
|
StackFrameMIPS::CONTEXT_VALID_RA);
|
|
|
|
// By default, context frames provide all registers, as normal.
|
|
context_frame_validity = StackFrameMIPS::CONTEXT_VALID_ALL;
|
|
|
|
// By default, registers are unchanged.
|
|
raw_context = expected;
|
|
}
|
|
|
|
// Walk the stack, using stack_section as the contents of the stack
|
|
// and raw_context as the current register values. (Set the stack
|
|
// pointer to the stack's starting address.) Expect two stack
|
|
// frames; in the older frame, expect the callee-saves registers to
|
|
// have values matching those in 'expected'.
|
|
void CheckWalk() {
|
|
RegionFromSection();
|
|
raw_context.iregs[MD_CONTEXT_MIPS_REG_SP] = stack_section.start().Value();
|
|
|
|
StackFrameSymbolizer frame_symbolizer(&supplier, &resolver);
|
|
StackwalkerMIPS walker(&system_info, &raw_context, &stack_region,
|
|
&modules, &frame_symbolizer);
|
|
vector<const CodeModule*> modules_without_symbols;
|
|
vector<const CodeModule*> modules_with_corrupt_symbols;
|
|
ASSERT_TRUE(walker.Walk(&call_stack, &modules_without_symbols,
|
|
&modules_with_corrupt_symbols));
|
|
ASSERT_EQ(0U, modules_without_symbols.size());
|
|
ASSERT_EQ(0U, modules_with_corrupt_symbols.size());
|
|
frames = call_stack.frames();
|
|
ASSERT_EQ(2U, frames->size());
|
|
|
|
StackFrameMIPS* frame0 = static_cast<StackFrameMIPS*>(frames->at(0));
|
|
EXPECT_EQ(StackFrame::FRAME_TRUST_CONTEXT, frame0->trust);
|
|
ASSERT_EQ(StackFrameMIPS::CONTEXT_VALID_ALL, frame0->context_validity);
|
|
EXPECT_EQ("enchiridion", frame0->function_name);
|
|
EXPECT_EQ(0x00404000U, frame0->function_base);
|
|
|
|
StackFrameMIPS* frame1 = static_cast<StackFrameMIPS*>(frames->at(1));
|
|
EXPECT_EQ(StackFrame::FRAME_TRUST_CFI, frame1->trust);
|
|
ASSERT_EQ(expected_validity, frame1->context_validity);
|
|
EXPECT_EQ(expected.iregs[MD_CONTEXT_MIPS_REG_S0],
|
|
frame1->context.iregs[MD_CONTEXT_MIPS_REG_S0]);
|
|
EXPECT_EQ(expected.iregs[MD_CONTEXT_MIPS_REG_S1],
|
|
frame1->context.iregs[MD_CONTEXT_MIPS_REG_S1]);
|
|
EXPECT_EQ(expected.iregs[MD_CONTEXT_MIPS_REG_S2],
|
|
frame1->context.iregs[MD_CONTEXT_MIPS_REG_S2]);
|
|
EXPECT_EQ(expected.iregs[MD_CONTEXT_MIPS_REG_S3],
|
|
frame1->context.iregs[MD_CONTEXT_MIPS_REG_S3]);
|
|
EXPECT_EQ(expected.iregs[MD_CONTEXT_MIPS_REG_S4],
|
|
frame1->context.iregs[MD_CONTEXT_MIPS_REG_S4]);
|
|
EXPECT_EQ(expected.iregs[MD_CONTEXT_MIPS_REG_S5],
|
|
frame1->context.iregs[MD_CONTEXT_MIPS_REG_S5]);
|
|
EXPECT_EQ(expected.iregs[MD_CONTEXT_MIPS_REG_S6],
|
|
frame1->context.iregs[MD_CONTEXT_MIPS_REG_S6]);
|
|
EXPECT_EQ(expected.iregs[MD_CONTEXT_MIPS_REG_S7],
|
|
frame1->context.iregs[MD_CONTEXT_MIPS_REG_S7]);
|
|
EXPECT_EQ(expected.iregs[MD_CONTEXT_MIPS_REG_FP],
|
|
frame1->context.iregs[MD_CONTEXT_MIPS_REG_FP]);
|
|
EXPECT_EQ(expected.iregs[MD_CONTEXT_MIPS_REG_RA],
|
|
frame1->context.iregs[MD_CONTEXT_MIPS_REG_RA]);
|
|
EXPECT_EQ(expected.iregs[MD_CONTEXT_MIPS_REG_SP],
|
|
frame1->context.iregs[MD_CONTEXT_MIPS_REG_SP]);
|
|
EXPECT_EQ(expected.epc, frame1->context.epc);
|
|
EXPECT_EQ(expected.epc, frame1->instruction);
|
|
EXPECT_EQ("epictetus", frame1->function_name);
|
|
EXPECT_EQ(0x00405000U, frame1->function_base);
|
|
}
|
|
|
|
// The values we expect to find for the caller's registers. Forcibly
|
|
// default-init it, since it's POD and not all bits are always overwritten by
|
|
// the constructor.
|
|
MDRawContextMIPS expected{};
|
|
|
|
// The validity mask for expected.
|
|
int expected_validity;
|
|
|
|
// The validity mask to impose on the context frame.
|
|
int context_frame_validity;
|
|
};
|
|
|
|
class CFI: public CFIFixture, public Test { };
|
|
|
|
// TODO(gordanac): add CFI tests
|
|
|
|
TEST_F(CFI, At4004) {
|
|
raw_context.context_flags =
|
|
raw_context.context_flags | MD_CONTEXT_MIPS64_FULL;
|
|
Label frame1_sp = expected.iregs[MD_CONTEXT_MIPS_REG_SP];
|
|
stack_section
|
|
// frame0
|
|
.Append(16, 0) // space
|
|
.D64(frame1_sp) // stack pointer
|
|
.D64(0x00405510) // return address
|
|
.Mark(&frame1_sp); // This effectively sets stack_section.start().
|
|
raw_context.epc = 0x00404004;
|
|
CheckWalk();
|
|
}
|
|
|
|
// Check that we reject rules that would cause the stack pointer to
|
|
// move in the wrong direction.
|
|
TEST_F(CFI, RejectBackwards) {
|
|
raw_context.context_flags =
|
|
raw_context.context_flags | MD_CONTEXT_MIPS64_FULL;
|
|
raw_context.epc = 0x40005000;
|
|
raw_context.iregs[MD_CONTEXT_MIPS_REG_SP] = 0x80000000;
|
|
raw_context.iregs[MD_CONTEXT_MIPS_REG_RA] = 0x00405510;
|
|
|
|
StackFrameSymbolizer frame_symbolizer(&supplier, &resolver);
|
|
StackwalkerMIPS walker(&system_info, &raw_context, &stack_region, &modules,
|
|
&frame_symbolizer);
|
|
vector<const CodeModule*> modules_without_symbols;
|
|
vector<const CodeModule*> modules_with_corrupt_symbols;
|
|
ASSERT_TRUE(walker.Walk(&call_stack, &modules_without_symbols,
|
|
&modules_with_corrupt_symbols));
|
|
ASSERT_EQ(0U, modules_without_symbols.size());
|
|
ASSERT_EQ(0U, modules_with_corrupt_symbols.size());
|
|
frames = call_stack.frames();
|
|
ASSERT_EQ(1U, frames->size());
|
|
}
|
|
|
|
// Check that we reject rules whose expressions' evaluation fails.
|
|
TEST_F(CFI, RejectBadExpressions) {
|
|
raw_context.context_flags =
|
|
raw_context.context_flags | MD_CONTEXT_MIPS64_FULL;
|
|
raw_context.epc = 0x00407000;
|
|
raw_context.iregs[MD_CONTEXT_MIPS_REG_SP] = 0x80000000;
|
|
raw_context.iregs[MD_CONTEXT_MIPS_REG_RA] = 0x00405510;
|
|
|
|
StackFrameSymbolizer frame_symbolizer(&supplier, &resolver);
|
|
StackwalkerMIPS walker(&system_info, &raw_context, &stack_region, &modules,
|
|
&frame_symbolizer);
|
|
vector<const CodeModule*> modules_without_symbols;
|
|
vector<const CodeModule*> modules_with_corrupt_symbols;
|
|
ASSERT_TRUE(walker.Walk(&call_stack, &modules_without_symbols,
|
|
&modules_with_corrupt_symbols));
|
|
ASSERT_EQ(0U, modules_without_symbols.size());
|
|
ASSERT_EQ(0U, modules_with_corrupt_symbols.size());
|
|
frames = call_stack.frames();
|
|
ASSERT_EQ(1U, frames->size());
|
|
}
|