3d95d88b14
Use SO_SNDBUF which doesn't require CAP_NET_ADMIN instead. Change the value of kFuseMaxWrite to 128KB. In the kernel code, there is a constant FUSE_MAX_PAGES_PER_REQ which limits the size of requests to 128KB. Bug: 74725300 Test: atest android.os.storage.cts.StorageManagerTest Change-Id: Ic3a8f1a7378d027a6c0ee054cedc2c9f4b7509ad
267 lines
9 KiB
C++
267 lines
9 KiB
C++
/*
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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 specic language governing permissions and
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* limitations under the License.
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*/
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#include "libappfuse/FuseBuffer.h"
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#include <inttypes.h>
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#include <string.h>
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#include <unistd.h>
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#include <algorithm>
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#include <type_traits>
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#include <sys/socket.h>
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#include <sys/uio.h>
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#include <android-base/file.h>
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#include <android-base/logging.h>
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#include <android-base/macros.h>
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namespace android {
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namespace fuse {
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namespace {
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constexpr useconds_t kRetrySleepForWriting = 1000; // 1 ms
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template <typename T>
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bool CheckHeaderLength(const FuseMessage<T>* self, const char* name, size_t max_size) {
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const auto& header = static_cast<const T*>(self)->header;
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if (header.len >= sizeof(header) && header.len <= max_size) {
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return true;
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} else {
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LOG(ERROR) << "Invalid header length is found in " << name << ": " << header.len;
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return false;
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}
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}
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template <typename T>
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ResultOrAgain ReadInternal(FuseMessage<T>* self, int fd, int sockflag) {
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char* const buf = reinterpret_cast<char*>(self);
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const ssize_t result = sockflag ? TEMP_FAILURE_RETRY(recv(fd, buf, sizeof(T), sockflag))
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: TEMP_FAILURE_RETRY(read(fd, buf, sizeof(T)));
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switch (result) {
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case 0:
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// Expected EOF.
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return ResultOrAgain::kFailure;
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case -1:
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if (errno == EAGAIN) {
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return ResultOrAgain::kAgain;
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}
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PLOG(ERROR) << "Failed to read a FUSE message";
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return ResultOrAgain::kFailure;
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}
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const auto& header = static_cast<const T*>(self)->header;
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if (result < static_cast<ssize_t>(sizeof(header))) {
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LOG(ERROR) << "Read bytes " << result << " are shorter than header size " << sizeof(header);
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return ResultOrAgain::kFailure;
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}
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if (!CheckHeaderLength<T>(self, "Read", sizeof(T))) {
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return ResultOrAgain::kFailure;
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}
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if (static_cast<uint32_t>(result) != header.len) {
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LOG(ERROR) << "Read bytes " << result << " are different from header.len " << header.len;
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return ResultOrAgain::kFailure;
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}
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return ResultOrAgain::kSuccess;
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}
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template <typename T>
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ResultOrAgain WriteInternal(const FuseMessage<T>* self, int fd, int sockflag, const void* data,
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size_t max_size) {
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if (!CheckHeaderLength<T>(self, "Write", max_size)) {
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return ResultOrAgain::kFailure;
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}
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const char* const buf = reinterpret_cast<const char*>(self);
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const auto& header = static_cast<const T*>(self)->header;
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while (true) {
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int result;
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if (sockflag) {
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CHECK(data == nullptr);
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result = TEMP_FAILURE_RETRY(send(fd, buf, header.len, sockflag));
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} else if (data) {
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const struct iovec vec[] = {{const_cast<char*>(buf), sizeof(header)},
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{const_cast<void*>(data), header.len - sizeof(header)}};
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result = TEMP_FAILURE_RETRY(writev(fd, vec, arraysize(vec)));
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} else {
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result = TEMP_FAILURE_RETRY(write(fd, buf, header.len));
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}
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if (result == -1) {
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switch (errno) {
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case ENOBUFS:
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// When returning ENOBUFS, epoll still reports the FD is writable. Just usleep
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// and retry again.
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usleep(kRetrySleepForWriting);
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continue;
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case EAGAIN:
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return ResultOrAgain::kAgain;
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default:
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PLOG(ERROR) << "Failed to write a FUSE message: "
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<< "fd=" << fd << " "
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<< "sockflag=" << sockflag << " "
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<< "data=" << data;
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return ResultOrAgain::kFailure;
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}
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}
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if (static_cast<unsigned int>(result) != header.len) {
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LOG(ERROR) << "Written bytes " << result << " is different from length in header "
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<< header.len;
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return ResultOrAgain::kFailure;
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}
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return ResultOrAgain::kSuccess;
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}
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}
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}
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static_assert(std::is_standard_layout<FuseBuffer>::value,
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"FuseBuffer must be standard layout union.");
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bool SetupMessageSockets(base::unique_fd (*result)[2]) {
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base::unique_fd fds[2];
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{
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int raw_fds[2];
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if (socketpair(AF_UNIX, SOCK_SEQPACKET, 0, raw_fds) == -1) {
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PLOG(ERROR) << "Failed to create sockets for proxy";
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return false;
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}
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fds[0].reset(raw_fds[0]);
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fds[1].reset(raw_fds[1]);
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}
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constexpr int kMaxMessageSize = sizeof(FuseBuffer);
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if (setsockopt(fds[0], SOL_SOCKET, SO_SNDBUF, &kMaxMessageSize, sizeof(int)) != 0 ||
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setsockopt(fds[1], SOL_SOCKET, SO_SNDBUF, &kMaxMessageSize, sizeof(int)) != 0) {
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PLOG(ERROR) << "Failed to update buffer size for socket";
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return false;
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}
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(*result)[0] = std::move(fds[0]);
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(*result)[1] = std::move(fds[1]);
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return true;
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}
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template <typename T>
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bool FuseMessage<T>::Read(int fd) {
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return ReadInternal(this, fd, 0) == ResultOrAgain::kSuccess;
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}
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template <typename T>
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ResultOrAgain FuseMessage<T>::ReadOrAgain(int fd) {
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return ReadInternal(this, fd, MSG_DONTWAIT);
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}
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template <typename T>
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bool FuseMessage<T>::Write(int fd) const {
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return WriteInternal(this, fd, 0, nullptr, sizeof(T)) == ResultOrAgain::kSuccess;
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}
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template <typename T>
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bool FuseMessage<T>::WriteWithBody(int fd, size_t max_size, const void* data) const {
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CHECK(data != nullptr);
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return WriteInternal(this, fd, 0, data, max_size) == ResultOrAgain::kSuccess;
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}
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template <typename T>
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ResultOrAgain FuseMessage<T>::WriteOrAgain(int fd) const {
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return WriteInternal(this, fd, MSG_DONTWAIT, nullptr, sizeof(T));
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}
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void FuseRequest::Reset(
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uint32_t data_length, uint32_t opcode, uint64_t unique) {
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memset(this, 0, sizeof(fuse_in_header) + data_length);
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header.len = sizeof(fuse_in_header) + data_length;
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header.opcode = opcode;
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header.unique = unique;
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}
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template <size_t N>
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void FuseResponseBase<N>::ResetHeader(uint32_t data_length, int32_t error, uint64_t unique) {
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CHECK_LE(error, 0) << "error should be zero or negative.";
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header.len = sizeof(fuse_out_header) + data_length;
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header.error = error;
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header.unique = unique;
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}
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template <size_t N>
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void FuseResponseBase<N>::Reset(uint32_t data_length, int32_t error, uint64_t unique) {
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memset(this, 0, sizeof(fuse_out_header) + data_length);
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ResetHeader(data_length, error, unique);
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}
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void FuseBuffer::HandleInit() {
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const fuse_init_in* const in = &request.init_in;
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// Before writing |out|, we need to copy data from |in|.
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const uint64_t unique = request.header.unique;
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const uint32_t minor = in->minor;
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const uint32_t max_readahead = in->max_readahead;
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// Kernel 2.6.16 is the first stable kernel with struct fuse_init_out
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// defined (fuse version 7.6). The structure is the same from 7.6 through
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// 7.22. Beginning with 7.23, the structure increased in size and added
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// new parameters.
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if (in->major != FUSE_KERNEL_VERSION || in->minor < 6) {
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LOG(ERROR) << "Fuse kernel version mismatch: Kernel version " << in->major
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<< "." << in->minor << " Expected at least " << FUSE_KERNEL_VERSION
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<< ".6";
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response.Reset(0, -EPERM, unique);
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return;
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}
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// We limit ourselves to minor=15 because we don't handle BATCH_FORGET yet.
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// Thus we need to use FUSE_COMPAT_22_INIT_OUT_SIZE.
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#if defined(FUSE_COMPAT_22_INIT_OUT_SIZE)
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// FUSE_KERNEL_VERSION >= 23.
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const size_t response_size = FUSE_COMPAT_22_INIT_OUT_SIZE;
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#else
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const size_t response_size = sizeof(fuse_init_out);
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#endif
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response.Reset(response_size, kFuseSuccess, unique);
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fuse_init_out* const out = &response.init_out;
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out->major = FUSE_KERNEL_VERSION;
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out->minor = std::min(minor, 15u);
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out->max_readahead = max_readahead;
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out->flags = FUSE_ATOMIC_O_TRUNC | FUSE_BIG_WRITES;
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out->max_background = 32;
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out->congestion_threshold = 32;
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out->max_write = kFuseMaxWrite;
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}
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void FuseBuffer::HandleNotImpl() {
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LOG(VERBOSE) << "NOTIMPL op=" << request.header.opcode << " uniq="
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<< request.header.unique << " nid=" << request.header.nodeid;
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// Add volatile as a workaround for compiler issue which removes the temporary
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// variable.
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const volatile uint64_t unique = request.header.unique;
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response.Reset(0, -ENOSYS, unique);
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}
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template class FuseMessage<FuseRequest>;
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template class FuseMessage<FuseResponse>;
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template class FuseMessage<FuseSimpleResponse>;
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template struct FuseResponseBase<0u>;
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template struct FuseResponseBase<kFuseMaxRead>;
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} // namespace fuse
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} // namespace android
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