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444 lines
11 KiB
444 lines
11 KiB
/* |
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* Copyright (C) 2015 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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#undef NDEBUG |
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#define _LARGEFILE64_SOURCE |
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extern "C" { |
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#include <fec.h> |
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} |
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#include <assert.h> |
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#include <android-base/file.h> |
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#include <errno.h> |
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#include <fcntl.h> |
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#include <getopt.h> |
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#include <openssl/sha.h> |
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#include <pthread.h> |
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#include <stdbool.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include <sys/ioctl.h> |
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#include <sys/mman.h> |
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#include <sparse/sparse.h> |
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#include "image.h" |
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#if defined(__linux__) |
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#include <linux/fs.h> |
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#elif defined(__APPLE__) |
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#include <sys/disk.h> |
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#define BLKGETSIZE64 DKIOCGETBLOCKCOUNT |
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#define O_LARGEFILE 0 |
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#endif |
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void image_init(image *ctx) |
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{ |
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memset(ctx, 0, sizeof(*ctx)); |
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} |
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void image_free(image *ctx) |
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{ |
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assert(ctx->input == ctx->output); |
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if (ctx->input) { |
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delete[] ctx->input; |
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} |
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if (ctx->fec) { |
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delete[] ctx->fec; |
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} |
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image_init(ctx); |
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} |
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static void calculate_rounds(uint64_t size, image *ctx) |
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{ |
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if (!size) { |
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FATAL("empty file?\n"); |
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} else if (size % FEC_BLOCKSIZE) { |
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FATAL("file size %" PRIu64 " is not a multiple of %u bytes\n", |
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size, FEC_BLOCKSIZE); |
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} |
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ctx->inp_size = size; |
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ctx->blocks = fec_div_round_up(ctx->inp_size, FEC_BLOCKSIZE); |
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ctx->rounds = fec_div_round_up(ctx->blocks, ctx->rs_n); |
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} |
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static int process_chunk(void *priv, const void *data, int len) |
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{ |
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image *ctx = (image *)priv; |
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assert(len % FEC_BLOCKSIZE == 0); |
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if (data) { |
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memcpy(&ctx->input[ctx->pos], data, len); |
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} |
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ctx->pos += len; |
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return 0; |
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} |
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static void file_image_load(const std::vector<int>& fds, image *ctx) |
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{ |
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uint64_t size = 0; |
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std::vector<struct sparse_file *> files; |
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for (auto fd : fds) { |
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uint64_t len = 0; |
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struct sparse_file *file; |
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if (ctx->sparse) { |
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file = sparse_file_import(fd, false, false); |
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} else { |
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file = sparse_file_import_auto(fd, false, ctx->verbose); |
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} |
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if (!file) { |
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FATAL("failed to read file %s\n", ctx->fec_filename); |
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} |
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len = sparse_file_len(file, false, false); |
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files.push_back(file); |
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size += len; |
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} |
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calculate_rounds(size, ctx); |
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if (ctx->verbose) { |
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INFO("allocating %" PRIu64 " bytes of memory\n", ctx->inp_size); |
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} |
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ctx->input = new uint8_t[ctx->inp_size]; |
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if (!ctx->input) { |
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FATAL("failed to allocate memory\n"); |
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} |
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memset(ctx->input, 0, ctx->inp_size); |
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ctx->output = ctx->input; |
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ctx->pos = 0; |
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for (auto file : files) { |
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sparse_file_callback(file, false, false, process_chunk, ctx); |
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sparse_file_destroy(file); |
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} |
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for (auto fd : fds) { |
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close(fd); |
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} |
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} |
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bool image_load(const std::vector<std::string>& filenames, image *ctx) |
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{ |
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assert(ctx->roots > 0 && ctx->roots < FEC_RSM); |
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ctx->rs_n = FEC_RSM - ctx->roots; |
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int flags = O_RDONLY; |
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if (ctx->inplace) { |
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flags = O_RDWR; |
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} |
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std::vector<int> fds; |
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for (const auto& fn : filenames) { |
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int fd = TEMP_FAILURE_RETRY(open(fn.c_str(), flags | O_LARGEFILE)); |
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if (fd < 0) { |
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FATAL("failed to open file '%s': %s\n", fn.c_str(), strerror(errno)); |
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} |
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fds.push_back(fd); |
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} |
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file_image_load(fds, ctx); |
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return true; |
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} |
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bool image_save(const std::string& filename, image *ctx) |
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{ |
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/* TODO: support saving as a sparse file */ |
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int fd = TEMP_FAILURE_RETRY(open(filename.c_str(), |
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O_WRONLY | O_CREAT | O_TRUNC, 0666)); |
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if (fd < 0) { |
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FATAL("failed to open file '%s: %s'\n", filename.c_str(), |
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strerror(errno)); |
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} |
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if (!android::base::WriteFully(fd, ctx->output, ctx->inp_size)) { |
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FATAL("failed to write to output: %s\n", strerror(errno)); |
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} |
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close(fd); |
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return true; |
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} |
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bool image_ecc_new(const std::string& filename, image *ctx) |
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{ |
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assert(ctx->rounds > 0); /* image_load should be called first */ |
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ctx->fec_filename = filename.c_str(); |
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ctx->fec_size = ctx->rounds * ctx->roots * FEC_BLOCKSIZE; |
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if (ctx->verbose) { |
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INFO("allocating %u bytes of memory\n", ctx->fec_size); |
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} |
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ctx->fec = new uint8_t[ctx->fec_size]; |
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if (!ctx->fec) { |
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FATAL("failed to allocate %u bytes\n", ctx->fec_size); |
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} |
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return true; |
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} |
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bool image_ecc_load(const std::string& filename, image *ctx) |
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{ |
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int fd = TEMP_FAILURE_RETRY(open(filename.c_str(), O_RDONLY)); |
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if (fd < 0) { |
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FATAL("failed to open file '%s': %s\n", filename.c_str(), |
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strerror(errno)); |
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} |
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if (lseek64(fd, -FEC_BLOCKSIZE, SEEK_END) < 0) { |
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FATAL("failed to seek to header in '%s': %s\n", filename.c_str(), |
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strerror(errno)); |
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} |
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assert(sizeof(fec_header) <= FEC_BLOCKSIZE); |
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uint8_t header[FEC_BLOCKSIZE]; |
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fec_header *p = (fec_header *)header; |
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if (!android::base::ReadFully(fd, header, sizeof(header))) { |
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FATAL("failed to read %zd bytes from '%s': %s\n", sizeof(header), |
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filename.c_str(), strerror(errno)); |
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} |
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if (p->magic != FEC_MAGIC) { |
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FATAL("invalid magic in '%s': %08x\n", filename.c_str(), p->magic); |
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} |
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if (p->version != FEC_VERSION) { |
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FATAL("unsupported version in '%s': %u\n", filename.c_str(), |
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p->version); |
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} |
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if (p->size != sizeof(fec_header)) { |
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FATAL("unexpected header size in '%s': %u\n", filename.c_str(), |
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p->size); |
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} |
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if (p->roots == 0 || p->roots >= FEC_RSM) { |
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FATAL("invalid roots in '%s': %u\n", filename.c_str(), p->roots); |
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} |
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if (p->fec_size % p->roots || p->fec_size % FEC_BLOCKSIZE) { |
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FATAL("invalid length in '%s': %u\n", filename.c_str(), p->fec_size); |
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} |
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ctx->roots = (int)p->roots; |
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ctx->rs_n = FEC_RSM - ctx->roots; |
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calculate_rounds(p->inp_size, ctx); |
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if (!image_ecc_new(filename, ctx)) { |
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FATAL("failed to allocate ecc\n"); |
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} |
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if (p->fec_size != ctx->fec_size) { |
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FATAL("inconsistent header in '%s'\n", filename.c_str()); |
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} |
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if (lseek64(fd, 0, SEEK_SET) < 0) { |
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FATAL("failed to rewind '%s': %s", filename.c_str(), strerror(errno)); |
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} |
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if (!android::base::ReadFully(fd, ctx->fec, ctx->fec_size)) { |
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FATAL("failed to read %u bytes from '%s': %s\n", ctx->fec_size, |
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filename.c_str(), strerror(errno)); |
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} |
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close(fd); |
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uint8_t hash[SHA256_DIGEST_LENGTH]; |
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SHA256(ctx->fec, ctx->fec_size, hash); |
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if (memcmp(hash, p->hash, SHA256_DIGEST_LENGTH) != 0) { |
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FATAL("invalid ecc data\n"); |
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} |
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return true; |
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} |
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bool image_ecc_save(image *ctx) |
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{ |
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assert(2 * sizeof(fec_header) <= FEC_BLOCKSIZE); |
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uint8_t header[FEC_BLOCKSIZE] = {0}; |
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fec_header *f = (fec_header *)header; |
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f->magic = FEC_MAGIC; |
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f->version = FEC_VERSION; |
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f->size = sizeof(fec_header); |
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f->roots = ctx->roots; |
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f->fec_size = ctx->fec_size; |
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f->inp_size = ctx->inp_size; |
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SHA256(ctx->fec, ctx->fec_size, f->hash); |
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/* store a copy of the fec_header at the end of the header block */ |
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memcpy(&header[sizeof(header) - sizeof(fec_header)], header, |
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sizeof(fec_header)); |
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assert(ctx->fec_filename); |
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int fd = TEMP_FAILURE_RETRY(open(ctx->fec_filename, |
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O_WRONLY | O_CREAT | O_TRUNC, 0666)); |
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if (fd < 0) { |
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FATAL("failed to open file '%s': %s\n", ctx->fec_filename, |
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strerror(errno)); |
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} |
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if (!android::base::WriteFully(fd, ctx->fec, ctx->fec_size)) { |
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FATAL("failed to write to output: %s\n", strerror(errno)); |
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} |
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if (ctx->padding > 0) { |
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uint8_t padding[FEC_BLOCKSIZE] = {0}; |
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for (uint32_t i = 0; i < ctx->padding; i += FEC_BLOCKSIZE) { |
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if (!android::base::WriteFully(fd, padding, FEC_BLOCKSIZE)) { |
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FATAL("failed to write padding: %s\n", strerror(errno)); |
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} |
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} |
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} |
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if (!android::base::WriteFully(fd, header, sizeof(header))) { |
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FATAL("failed to write to header: %s\n", strerror(errno)); |
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} |
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close(fd); |
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return true; |
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} |
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static void * process(void *cookie) |
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{ |
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image_proc_ctx *ctx = (image_proc_ctx *)cookie; |
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ctx->func(ctx); |
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return NULL; |
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} |
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bool image_process(image_proc_func func, image *ctx) |
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{ |
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int threads = ctx->threads; |
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if (threads < IMAGE_MIN_THREADS) { |
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threads = sysconf(_SC_NPROCESSORS_ONLN); |
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if (threads < IMAGE_MIN_THREADS) { |
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threads = IMAGE_MIN_THREADS; |
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} |
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} |
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assert(ctx->rounds > 0); |
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if ((uint64_t)threads > ctx->rounds) { |
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threads = (int)ctx->rounds; |
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} |
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if (threads > IMAGE_MAX_THREADS) { |
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threads = IMAGE_MAX_THREADS; |
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} |
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if (ctx->verbose) { |
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INFO("starting %d threads to compute RS(255, %d)\n", threads, |
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ctx->rs_n); |
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} |
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pthread_t pthreads[threads]; |
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image_proc_ctx args[threads]; |
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uint64_t current = 0; |
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uint64_t end = ctx->rounds * ctx->rs_n * FEC_BLOCKSIZE; |
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uint64_t rs_blocks_per_thread = |
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fec_div_round_up(ctx->rounds * FEC_BLOCKSIZE, threads); |
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if (ctx->verbose) { |
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INFO("computing %" PRIu64 " codes per thread\n", rs_blocks_per_thread); |
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} |
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for (int i = 0; i < threads; ++i) { |
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args[i].func = func; |
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args[i].id = i; |
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args[i].ctx = ctx; |
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args[i].rv = 0; |
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args[i].fec_pos = current * ctx->roots; |
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args[i].start = current * ctx->rs_n; |
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args[i].end = (current + rs_blocks_per_thread) * ctx->rs_n; |
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args[i].rs = init_rs_char(FEC_PARAMS(ctx->roots)); |
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if (!args[i].rs) { |
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FATAL("failed to initialize encoder for thread %d\n", i); |
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} |
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if (args[i].end > end) { |
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args[i].end = end; |
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} else if (i == threads && args[i].end + rs_blocks_per_thread * |
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ctx->rs_n > end) { |
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args[i].end = end; |
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} |
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if (ctx->verbose) { |
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INFO("thread %d: [%" PRIu64 ", %" PRIu64 ")\n", |
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i, args[i].start, args[i].end); |
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} |
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assert(args[i].start < args[i].end); |
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assert((args[i].end - args[i].start) % ctx->rs_n == 0); |
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if (pthread_create(&pthreads[i], NULL, process, &args[i]) != 0) { |
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FATAL("failed to create thread %d\n", i); |
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} |
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current += rs_blocks_per_thread; |
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} |
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ctx->rv = 0; |
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for (int i = 0; i < threads; ++i) { |
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if (pthread_join(pthreads[i], NULL) != 0) { |
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FATAL("failed to join thread %d: %s\n", i, strerror(errno)); |
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} |
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ctx->rv += args[i].rv; |
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if (args[i].rs) { |
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free_rs_char(args[i].rs); |
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args[i].rs = NULL; |
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} |
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} |
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return true; |
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}
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