153 lines
		
	
	
		
			5.6 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			153 lines
		
	
	
		
			5.6 KiB
		
	
	
	
		
			C++
		
	
	
	
| //===-- asan_fake_stack_test.cc -------------------------------------------===//
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| //
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| //                     The LLVM Compiler Infrastructure
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| //
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| // This file is distributed under the University of Illinois Open Source
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| // License. See LICENSE.TXT for details.
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| //
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| //===----------------------------------------------------------------------===//
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| //
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| // This file is a part of AddressSanitizer, an address sanity checker.
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| //
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| // Tests for FakeStack.
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| // This test file should be compiled w/o asan instrumentation.
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| //===----------------------------------------------------------------------===//
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| 
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| #include "asan_fake_stack.h"
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| #include "asan_test_utils.h"
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| #include "sanitizer_common/sanitizer_common.h"
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| 
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| #include <assert.h>
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| #include <stdlib.h>
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| #include <stdio.h>
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| 
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| #include <map>
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| 
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| namespace __asan {
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| 
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| TEST(FakeStack, FlagsSize) {
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|   EXPECT_EQ(FakeStack::SizeRequiredForFlags(10), 1U << 5);
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|   EXPECT_EQ(FakeStack::SizeRequiredForFlags(11), 1U << 6);
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|   EXPECT_EQ(FakeStack::SizeRequiredForFlags(20), 1U << 15);
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| }
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| 
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| TEST(FakeStack, RequiredSize) {
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|   // for (int i = 15; i < 20; i++) {
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|   //  uptr alloc_size = FakeStack::RequiredSize(i);
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|   //  printf("%zdK ==> %zd\n", 1 << (i - 10), alloc_size);
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|   // }
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|   EXPECT_EQ(FakeStack::RequiredSize(15), 365568U);
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|   EXPECT_EQ(FakeStack::RequiredSize(16), 727040U);
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|   EXPECT_EQ(FakeStack::RequiredSize(17), 1449984U);
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|   EXPECT_EQ(FakeStack::RequiredSize(18), 2895872U);
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|   EXPECT_EQ(FakeStack::RequiredSize(19), 5787648U);
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| }
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| 
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| TEST(FakeStack, FlagsOffset) {
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|   for (uptr stack_size_log = 15; stack_size_log <= 20; stack_size_log++) {
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|     uptr stack_size = 1UL << stack_size_log;
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|     uptr offset = 0;
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|     for (uptr class_id = 0; class_id < FakeStack::kNumberOfSizeClasses;
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|          class_id++) {
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|       uptr frame_size = FakeStack::BytesInSizeClass(class_id);
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|       uptr num_flags = stack_size / frame_size;
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|       EXPECT_EQ(offset, FakeStack::FlagsOffset(stack_size_log, class_id));
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|       // printf("%zd: %zd => %zd %zd\n", stack_size_log, class_id, offset,
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|       //        FakeStack::FlagsOffset(stack_size_log, class_id));
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|       offset += num_flags;
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|     }
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|   }
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| }
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| 
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| #if !defined(_WIN32)  // FIXME: Fails due to OOM on Windows.
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| TEST(FakeStack, CreateDestroy) {
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|   for (int i = 0; i < 1000; i++) {
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|     for (uptr stack_size_log = 20; stack_size_log <= 22; stack_size_log++) {
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|       FakeStack *fake_stack = FakeStack::Create(stack_size_log);
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|       fake_stack->Destroy(0);
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|     }
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|   }
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| }
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| #endif
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| 
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| TEST(FakeStack, ModuloNumberOfFrames) {
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 0, 0), 0U);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 0, (1<<15)), 0U);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 0, (1<<10)), 0U);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 0, (1<<9)), 0U);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 0, (1<<8)), 1U<<8);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 0, (1<<15) + 1), 1U);
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| 
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 1, 0), 0U);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 1, 1<<9), 0U);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 1, 1<<8), 0U);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 1, 1<<7), 1U<<7);
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| 
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 5, 0), 0U);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 5, 1), 1U);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 5, 15), 15U);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 5, 16), 0U);
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|   EXPECT_EQ(FakeStack::ModuloNumberOfFrames(15, 5, 17), 1U);
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| }
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| 
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| TEST(FakeStack, GetFrame) {
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|   const uptr stack_size_log = 20;
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|   const uptr stack_size = 1 << stack_size_log;
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|   FakeStack *fs = FakeStack::Create(stack_size_log);
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|   u8 *base = fs->GetFrame(stack_size_log, 0, 0);
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|   EXPECT_EQ(base, reinterpret_cast<u8 *>(fs) +
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|                       fs->SizeRequiredForFlags(stack_size_log) + 4096);
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|   EXPECT_EQ(base + 0*stack_size + 64 * 7, fs->GetFrame(stack_size_log, 0, 7U));
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|   EXPECT_EQ(base + 1*stack_size + 128 * 3, fs->GetFrame(stack_size_log, 1, 3U));
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|   EXPECT_EQ(base + 2*stack_size + 256 * 5, fs->GetFrame(stack_size_log, 2, 5U));
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|   fs->Destroy(0);
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| }
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| 
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| TEST(FakeStack, Allocate) {
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|   const uptr stack_size_log = 19;
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|   FakeStack *fs = FakeStack::Create(stack_size_log);
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|   std::map<FakeFrame *, uptr> s;
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|   for (int iter = 0; iter < 2; iter++) {
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|     s.clear();
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|     for (uptr cid = 0; cid < FakeStack::kNumberOfSizeClasses; cid++) {
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|       uptr n = FakeStack::NumberOfFrames(stack_size_log, cid);
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|       uptr bytes_in_class = FakeStack::BytesInSizeClass(cid);
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|       for (uptr j = 0; j < n; j++) {
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|         FakeFrame *ff = fs->Allocate(stack_size_log, cid, 0);
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|         uptr x = reinterpret_cast<uptr>(ff);
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|         EXPECT_TRUE(s.insert(std::make_pair(ff, cid)).second);
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|         EXPECT_EQ(x, fs->AddrIsInFakeStack(x));
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|         EXPECT_EQ(x, fs->AddrIsInFakeStack(x + 1));
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|         EXPECT_EQ(x, fs->AddrIsInFakeStack(x + bytes_in_class - 1));
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|         EXPECT_NE(x, fs->AddrIsInFakeStack(x + bytes_in_class));
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|       }
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|       // We are out of fake stack, so Allocate should return 0.
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|       EXPECT_EQ(0UL, fs->Allocate(stack_size_log, cid, 0));
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|     }
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|     for (std::map<FakeFrame *, uptr>::iterator it = s.begin(); it != s.end();
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|          ++it) {
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|       fs->Deallocate(reinterpret_cast<uptr>(it->first), it->second);
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|     }
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|   }
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|   fs->Destroy(0);
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| }
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| 
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| static void RecursiveFunction(FakeStack *fs, int depth) {
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|   uptr class_id = depth / 3;
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|   FakeFrame *ff = fs->Allocate(fs->stack_size_log(), class_id, 0);
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|   if (depth) {
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|     RecursiveFunction(fs, depth - 1);
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|     RecursiveFunction(fs, depth - 1);
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|   }
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|   fs->Deallocate(reinterpret_cast<uptr>(ff), class_id);
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| }
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| 
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| TEST(FakeStack, RecursiveStressTest) {
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|   const uptr stack_size_log = 16;
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|   FakeStack *fs = FakeStack::Create(stack_size_log);
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|   RecursiveFunction(fs, 22);  // with 26 runs for 2-3 seconds.
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|   fs->Destroy(0);
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| }
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| 
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| }  // namespace __asan
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