2017-04-04 23:06:58 +02:00
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/*
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* Copyright (C) 2016 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <elf.h>
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#include <errno.h>
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#include <signal.h>
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#include <stdint.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/mman.h>
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#include <sys/ptrace.h>
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#include <sys/types.h>
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#include <time.h>
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#include <unistd.h>
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#include <vector>
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#include <android-base/file.h>
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#include <android-base/test_utils.h>
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#include <gtest/gtest.h>
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2017-07-14 19:37:19 +02:00
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#include <unwindstack/Memory.h>
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2017-04-04 23:06:58 +02:00
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#include "MemoryFake.h"
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#include "Symbols.h"
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2017-07-14 19:37:19 +02:00
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namespace unwindstack {
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2017-04-04 23:06:58 +02:00
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template <typename TypeParam>
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class SymbolsTest : public ::testing::Test {
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protected:
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void SetUp() override { memory_.Clear(); }
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void InitSym(TypeParam* sym, uint32_t st_value, uint32_t st_size, uint32_t st_name) {
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memset(sym, 0, sizeof(*sym));
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sym->st_info = STT_FUNC;
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sym->st_value = st_value;
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sym->st_size = st_size;
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sym->st_name = st_name;
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sym->st_shndx = SHN_COMMON;
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}
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MemoryFake memory_;
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};
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TYPED_TEST_CASE_P(SymbolsTest);
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TYPED_TEST_P(SymbolsTest, function_bounds_check) {
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Symbols symbols(0x1000, sizeof(TypeParam), sizeof(TypeParam), 0x2000, 0x100);
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TypeParam sym;
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this->InitSym(&sym, 0x5000, 0x10, 0x40);
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uint64_t offset = 0x1000;
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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std::string fake_name("fake_function");
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this->memory_.SetMemory(0x2040, fake_name.c_str(), fake_name.size() + 1);
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std::string name;
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uint64_t func_offset;
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x5000, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("fake_function", name);
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ASSERT_EQ(0U, func_offset);
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name.clear();
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x500f, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("fake_function", name);
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ASSERT_EQ(0xfU, func_offset);
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// Check one before and one after the function.
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ASSERT_FALSE(symbols.GetName<TypeParam>(0x4fff, 0, &this->memory_, &name, &func_offset));
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ASSERT_FALSE(symbols.GetName<TypeParam>(0x5010, 0, &this->memory_, &name, &func_offset));
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}
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TYPED_TEST_P(SymbolsTest, no_symbol) {
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Symbols symbols(0x1000, sizeof(TypeParam), sizeof(TypeParam), 0x2000, 0x100);
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TypeParam sym;
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this->InitSym(&sym, 0x5000, 0x10, 0x40);
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uint64_t offset = 0x1000;
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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std::string fake_name("fake_function");
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this->memory_.SetMemory(0x2040, fake_name.c_str(), fake_name.size() + 1);
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// First verify that we can get the name.
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std::string name;
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uint64_t func_offset;
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x5000, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("fake_function", name);
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ASSERT_EQ(0U, func_offset);
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// Now modify the info field so it's no longer a function.
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sym.st_info = 0;
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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// Clear the cache to force the symbol data to be re-read.
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symbols.ClearCache();
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ASSERT_FALSE(symbols.GetName<TypeParam>(0x5000, 0, &this->memory_, &name, &func_offset));
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// Set the function back, and set the shndx to UNDEF.
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sym.st_info = STT_FUNC;
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sym.st_shndx = SHN_UNDEF;
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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// Clear the cache to force the symbol data to be re-read.
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symbols.ClearCache();
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ASSERT_FALSE(symbols.GetName<TypeParam>(0x5000, 0, &this->memory_, &name, &func_offset));
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}
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TYPED_TEST_P(SymbolsTest, multiple_entries) {
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Symbols symbols(0x1000, sizeof(TypeParam) * 3, sizeof(TypeParam), 0x2000, 0x500);
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TypeParam sym;
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uint64_t offset = 0x1000;
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std::string fake_name;
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this->InitSym(&sym, 0x5000, 0x10, 0x40);
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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fake_name = "function_one";
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this->memory_.SetMemory(0x2040, fake_name.c_str(), fake_name.size() + 1);
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offset += sizeof(sym);
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this->InitSym(&sym, 0x3004, 0x200, 0x100);
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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fake_name = "function_two";
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this->memory_.SetMemory(0x2100, fake_name.c_str(), fake_name.size() + 1);
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offset += sizeof(sym);
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this->InitSym(&sym, 0xa010, 0x20, 0x230);
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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fake_name = "function_three";
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this->memory_.SetMemory(0x2230, fake_name.c_str(), fake_name.size() + 1);
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std::string name;
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uint64_t func_offset;
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x3005, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("function_two", name);
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ASSERT_EQ(1U, func_offset);
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name.clear();
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x5004, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("function_one", name);
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ASSERT_EQ(4U, func_offset);
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name.clear();
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ASSERT_TRUE(symbols.GetName<TypeParam>(0xa011, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("function_three", name);
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ASSERT_EQ(1U, func_offset);
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// Reget some of the others to verify getting one function name doesn't
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// affect any of the next calls.
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name.clear();
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x5008, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("function_one", name);
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ASSERT_EQ(8U, func_offset);
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name.clear();
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x3008, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("function_two", name);
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ASSERT_EQ(4U, func_offset);
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name.clear();
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ASSERT_TRUE(symbols.GetName<TypeParam>(0xa01a, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("function_three", name);
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ASSERT_EQ(0xaU, func_offset);
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}
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TYPED_TEST_P(SymbolsTest, multiple_entries_nonstandard_size) {
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uint64_t entry_size = sizeof(TypeParam) + 5;
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Symbols symbols(0x1000, entry_size * 3, entry_size, 0x2000, 0x500);
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TypeParam sym;
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uint64_t offset = 0x1000;
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std::string fake_name;
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this->InitSym(&sym, 0x5000, 0x10, 0x40);
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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fake_name = "function_one";
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this->memory_.SetMemory(0x2040, fake_name.c_str(), fake_name.size() + 1);
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offset += entry_size;
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this->InitSym(&sym, 0x3004, 0x200, 0x100);
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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fake_name = "function_two";
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this->memory_.SetMemory(0x2100, fake_name.c_str(), fake_name.size() + 1);
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offset += entry_size;
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this->InitSym(&sym, 0xa010, 0x20, 0x230);
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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fake_name = "function_three";
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this->memory_.SetMemory(0x2230, fake_name.c_str(), fake_name.size() + 1);
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std::string name;
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uint64_t func_offset;
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x3005, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("function_two", name);
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ASSERT_EQ(1U, func_offset);
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name.clear();
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x5004, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("function_one", name);
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ASSERT_EQ(4U, func_offset);
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name.clear();
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ASSERT_TRUE(symbols.GetName<TypeParam>(0xa011, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("function_three", name);
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ASSERT_EQ(1U, func_offset);
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}
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TYPED_TEST_P(SymbolsTest, load_bias) {
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Symbols symbols(0x1000, sizeof(TypeParam), sizeof(TypeParam), 0x2000, 0x100);
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TypeParam sym;
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this->InitSym(&sym, 0x5000, 0x10, 0x40);
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uint64_t offset = 0x1000;
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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std::string fake_name("fake_function");
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this->memory_.SetMemory(0x2040, fake_name.c_str(), fake_name.size() + 1);
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// Set a non-zero load_bias that should be a valid function offset.
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std::string name;
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uint64_t func_offset;
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x5004, 0x1000, &this->memory_, &name, &func_offset));
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ASSERT_EQ("fake_function", name);
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ASSERT_EQ(4U, func_offset);
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// Set a flag that should cause the load_bias to be ignored.
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sym.st_shndx = SHN_ABS;
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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// Clear the cache to force the symbol data to be re-read.
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symbols.ClearCache();
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ASSERT_FALSE(symbols.GetName<TypeParam>(0x5004, 0x1000, &this->memory_, &name, &func_offset));
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}
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TYPED_TEST_P(SymbolsTest, symtab_value_out_of_bounds) {
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Symbols symbols_end_at_100(0x1000, sizeof(TypeParam) * 2, sizeof(TypeParam), 0x2000, 0x100);
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Symbols symbols_end_at_200(0x1000, sizeof(TypeParam) * 2, sizeof(TypeParam), 0x2000, 0x200);
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TypeParam sym;
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uint64_t offset = 0x1000;
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this->InitSym(&sym, 0x5000, 0x10, 0xfb);
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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offset += sizeof(sym);
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this->InitSym(&sym, 0x3000, 0x10, 0x100);
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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// Put the name across the end of the tab.
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std::string fake_name("fake_function");
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this->memory_.SetMemory(0x20fb, fake_name.c_str(), fake_name.size() + 1);
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std::string name;
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uint64_t func_offset;
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// Verify that we can get the function name properly for both entries.
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ASSERT_TRUE(symbols_end_at_200.GetName<TypeParam>(0x5000, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("fake_function", name);
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ASSERT_EQ(0U, func_offset);
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ASSERT_TRUE(symbols_end_at_200.GetName<TypeParam>(0x3000, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("function", name);
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ASSERT_EQ(0U, func_offset);
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// Now use the symbol table that ends at 0x100.
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ASSERT_FALSE(
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symbols_end_at_100.GetName<TypeParam>(0x5000, 0, &this->memory_, &name, &func_offset));
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ASSERT_FALSE(
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symbols_end_at_100.GetName<TypeParam>(0x3000, 0, &this->memory_, &name, &func_offset));
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}
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// Verify the entire func table is cached.
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TYPED_TEST_P(SymbolsTest, symtab_read_cached) {
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Symbols symbols(0x1000, 3 * sizeof(TypeParam), sizeof(TypeParam), 0xa000, 0x1000);
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TypeParam sym;
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uint64_t offset = 0x1000;
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// Make sure that these entries are not in ascending order.
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this->InitSym(&sym, 0x5000, 0x10, 0x100);
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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offset += sizeof(sym);
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this->InitSym(&sym, 0x2000, 0x300, 0x200);
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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offset += sizeof(sym);
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this->InitSym(&sym, 0x1000, 0x100, 0x300);
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this->memory_.SetMemory(offset, &sym, sizeof(sym));
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offset += sizeof(sym);
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// Do call that should cache all of the entries (except the string data).
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std::string name;
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uint64_t func_offset;
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ASSERT_FALSE(symbols.GetName<TypeParam>(0x6000, 0, &this->memory_, &name, &func_offset));
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this->memory_.Clear();
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ASSERT_FALSE(symbols.GetName<TypeParam>(0x6000, 0, &this->memory_, &name, &func_offset));
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// Clear the memory and only put the symbol data string data in memory.
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this->memory_.Clear();
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std::string fake_name;
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fake_name = "first_entry";
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this->memory_.SetMemory(0xa100, fake_name.c_str(), fake_name.size() + 1);
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fake_name = "second_entry";
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this->memory_.SetMemory(0xa200, fake_name.c_str(), fake_name.size() + 1);
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fake_name = "third_entry";
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this->memory_.SetMemory(0xa300, fake_name.c_str(), fake_name.size() + 1);
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x5001, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("first_entry", name);
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ASSERT_EQ(1U, func_offset);
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x2002, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("second_entry", name);
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ASSERT_EQ(2U, func_offset);
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ASSERT_TRUE(symbols.GetName<TypeParam>(0x1003, 0, &this->memory_, &name, &func_offset));
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ASSERT_EQ("third_entry", name);
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ASSERT_EQ(3U, func_offset);
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}
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REGISTER_TYPED_TEST_CASE_P(SymbolsTest, function_bounds_check, no_symbol, multiple_entries,
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multiple_entries_nonstandard_size, load_bias, symtab_value_out_of_bounds,
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symtab_read_cached);
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typedef ::testing::Types<Elf32_Sym, Elf64_Sym> SymbolsTestTypes;
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INSTANTIATE_TYPED_TEST_CASE_P(, SymbolsTest, SymbolsTestTypes);
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2017-07-14 19:37:19 +02:00
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} // namespace unwindstack
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