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546 lines
16 KiB
546 lines
16 KiB
/* |
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* Copyright (C) 2013 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 <fcntl.h> |
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#include <memory> |
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#include <sys/mman.h> |
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#include <sys/stat.h> |
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#include <sys/types.h> |
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#include <linux/ion_test.h> |
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#include <gtest/gtest.h> |
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#include <ion/ion.h> |
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#include "ion_test_fixture.h" |
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#define ALIGN(x,y) (((x) + ((y) - 1)) & ~((y) - 1)) |
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class Device : public IonAllHeapsTest { |
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public: |
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virtual void SetUp(); |
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virtual void TearDown(); |
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int m_deviceFd; |
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void readDMA(int fd, void *buf, size_t size); |
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void writeDMA(int fd, void *buf, size_t size); |
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void readKernel(int fd, void *buf, size_t size); |
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void writeKernel(int fd, void *buf, size_t size); |
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void blowCache(); |
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void dirtyCache(void *ptr, size_t size); |
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}; |
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void Device::SetUp() |
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{ |
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IonAllHeapsTest::SetUp(); |
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m_deviceFd = open("/dev/ion-test", O_RDONLY); |
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ASSERT_GE(m_deviceFd, 0); |
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} |
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void Device::TearDown() |
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{ |
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ASSERT_EQ(0, close(m_deviceFd)); |
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IonAllHeapsTest::TearDown(); |
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} |
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void Device::readDMA(int fd, void *buf, size_t size) |
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{ |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_SET_FD, fd)); |
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struct ion_test_rw_data ion_test_rw_data = { |
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.ptr = (uint64_t)buf, |
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.offset = 0, |
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.size = size, |
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.write = 0, |
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}; |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_DMA_MAPPING, &ion_test_rw_data)); |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_SET_FD, -1)); |
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} |
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void Device::writeDMA(int fd, void *buf, size_t size) |
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{ |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_SET_FD, fd)); |
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struct ion_test_rw_data ion_test_rw_data = { |
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.ptr = (uint64_t)buf, |
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.offset = 0, |
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.size = size, |
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.write = 1, |
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}; |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_DMA_MAPPING, &ion_test_rw_data)); |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_SET_FD, -1)); |
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} |
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void Device::readKernel(int fd, void *buf, size_t size) |
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{ |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_SET_FD, fd)); |
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struct ion_test_rw_data ion_test_rw_data = { |
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.ptr = (uint64_t)buf, |
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.offset = 0, |
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.size = size, |
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.write = 0, |
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}; |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_KERNEL_MAPPING, &ion_test_rw_data)); |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_SET_FD, -1)); |
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} |
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void Device::writeKernel(int fd, void *buf, size_t size) |
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{ |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_SET_FD, fd)); |
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struct ion_test_rw_data ion_test_rw_data = { |
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.ptr = (uint64_t)buf, |
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.offset = 0, |
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.size = size, |
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.write = 1, |
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}; |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_KERNEL_MAPPING, &ion_test_rw_data)); |
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ASSERT_EQ(0, ioctl(m_deviceFd, ION_IOC_TEST_SET_FD, -1)); |
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} |
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void Device::blowCache() |
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{ |
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const size_t bigger_than_cache = 8*1024*1024; |
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void *buf1 = malloc(bigger_than_cache); |
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void *buf2 = malloc(bigger_than_cache); |
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memset(buf1, 0xaa, bigger_than_cache); |
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memcpy(buf2, buf1, bigger_than_cache); |
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free(buf1); |
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free(buf2); |
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} |
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void Device::dirtyCache(void *ptr, size_t size) |
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{ |
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/* try to dirty cache lines */ |
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for (size_t i = size-1; i > 0; i--) { |
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((volatile char *)ptr)[i]; |
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((char *)ptr)[i] = i; |
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} |
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} |
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TEST_F(Device, KernelReadCached) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = ION_FLAG_CACHED; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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for (int i = 0; i < 4096; i++) |
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((char *)ptr)[i] = i; |
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((char*)buf)[4096] = 0x12; |
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readKernel(map_fd, buf, 4096); |
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ASSERT_EQ(((char*)buf)[4096], 0x12); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)buf)[i]); |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, KernelWriteCached) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (int i = 0; i < 4096; i++) |
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((char *)buf)[i] = i; |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = ION_FLAG_CACHED; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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dirtyCache(ptr, 4096); |
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writeKernel(map_fd, buf, 4096); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)ptr)[i]) << i; |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, DMAReadCached) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = ION_FLAG_CACHED; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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for (int i = 0; i < 4096; i++) |
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((char *)ptr)[i] = i; |
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readDMA(map_fd, buf, 4096); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)buf)[i]); |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, DMAWriteCached) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (int i = 0; i < 4096; i++) |
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((char *)buf)[i] = i; |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = ION_FLAG_CACHED; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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dirtyCache(ptr, 4096); |
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writeDMA(map_fd, buf, 4096); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)ptr)[i]) << i; |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, KernelReadCachedNeedsSync) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = ION_FLAG_CACHED | ION_FLAG_CACHED_NEEDS_SYNC; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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for (int i = 0; i < 4096; i++) |
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((char *)ptr)[i] = i; |
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((char*)buf)[4096] = 0x12; |
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readKernel(map_fd, buf, 4096); |
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ASSERT_EQ(((char*)buf)[4096], 0x12); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)buf)[i]); |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, KernelWriteCachedNeedsSync) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (int i = 0; i < 4096; i++) |
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((char *)buf)[i] = i; |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = ION_FLAG_CACHED | ION_FLAG_CACHED_NEEDS_SYNC; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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dirtyCache(ptr, 4096); |
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writeKernel(map_fd, buf, 4096); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)ptr)[i]) << i; |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, DMAReadCachedNeedsSync) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = ION_FLAG_CACHED | ION_FLAG_CACHED_NEEDS_SYNC; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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for (int i = 0; i < 4096; i++) |
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((char *)ptr)[i] = i; |
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ion_sync_fd(m_ionFd, map_fd); |
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readDMA(map_fd, buf, 4096); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)buf)[i]); |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, DMAWriteCachedNeedsSync) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (int i = 0; i < 4096; i++) |
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((char *)buf)[i] = i; |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = ION_FLAG_CACHED | ION_FLAG_CACHED_NEEDS_SYNC; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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dirtyCache(ptr, 4096); |
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writeDMA(map_fd, buf, 4096); |
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ion_sync_fd(m_ionFd, map_fd); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)ptr)[i]) << i; |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, KernelRead) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = 0; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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for (int i = 0; i < 4096; i++) |
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((char *)ptr)[i] = i; |
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((char*)buf)[4096] = 0x12; |
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readKernel(map_fd, buf, 4096); |
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ASSERT_EQ(((char*)buf)[4096], 0x12); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)buf)[i]); |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, KernelWrite) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (int i = 0; i < 4096; i++) |
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((char *)buf)[i] = i; |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = 0; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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dirtyCache(ptr, 4096); |
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writeKernel(map_fd, buf, 4096); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)ptr)[i]) << i; |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, DMARead) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = 0; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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for (int i = 0; i < 4096; i++) |
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((char *)ptr)[i] = i; |
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readDMA(map_fd, buf, 4096); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)buf)[i]); |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, DMAWrite) |
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{ |
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auto alloc_ptr = std::make_unique<char[]>(8192 + 1024); |
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void *buf = (void *)(ALIGN((unsigned long)alloc_ptr.get(), 4096) + 1024); |
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for (int i = 0; i < 4096; i++) |
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((char *)buf)[i] = i; |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = 0; |
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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dirtyCache(ptr, 4096); |
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writeDMA(map_fd, buf, 4096); |
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for (int i = 0; i < 4096; i++) |
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ASSERT_EQ((char)i, ((char *)ptr)[i]) << i; |
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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} |
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TEST_F(Device, IsCached) |
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{ |
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auto buf_ptr = std::make_unique<char[]>(4096); |
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void *buf = buf_ptr.get(); |
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for (unsigned int heapMask : m_allHeaps) { |
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SCOPED_TRACE(::testing::Message() << "heap " << heapMask); |
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int map_fd = -1; |
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unsigned int flags = ION_FLAG_CACHED | ION_FLAG_CACHED_NEEDS_SYNC; |
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|
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ASSERT_EQ(0, ion_alloc_fd(m_ionFd, 4096, 0, heapMask, flags, &map_fd)); |
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ASSERT_GE(map_fd, 0); |
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|
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void *ptr; |
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ptr = mmap(NULL, 4096, PROT_READ | PROT_WRITE, MAP_SHARED, map_fd, 0); |
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ASSERT_TRUE(ptr != NULL); |
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|
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dirtyCache(ptr, 4096); |
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|
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readDMA(map_fd, buf, 4096); |
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|
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bool same = true; |
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for (int i = 4096-16; i >= 0; i -= 16) |
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if (((char *)buf)[i] != i) |
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same = false; |
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ASSERT_FALSE(same); |
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|
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ASSERT_EQ(0, munmap(ptr, 4096)); |
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ASSERT_EQ(0, close(map_fd)); |
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} |
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}
|
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