Author SHA1 Message Date
TapTap 2f07895fae docs: update existing compatibility status
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2026-09-03 22:02:51 +02:00
TapTap f75db195bd Add rsync-compatible existing option
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2026-09-03 17:11:33 +02:00
TapTap 190fc5d300 Merge pull request 'fix: harden network security boundaries' (#213) from security-fixes into dev
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2026-09-01 20:52:55 +02:00
TapTap 8ae5f82013 style: clang-format file_receive.c
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2026-09-01 20:49:39 +02:00
TapTap 0c4855e344 merge: resolve dev (quality refactor) into security-fixes
- file.c split layout retained; security-hardened secure-fs helpers
  (open_secure_parent/to_disk_secure/rename_secure/stat_secure) now live in
  file.c with file_ prefix and are shared with file_receive.c
- file_receive.c takes the security branch's bounded allocations
  (receive_data_limited, data_decompress_limited, size checks) and
  STATUS_ERROR signaling
- file_send.c gains the data consistency check on file->data
- client_validation.c: stricter --tls requiring --ca, log_message style
- utils.c: hardened openat/mkdirat mkdir_r from security branch
2026-09-01 20:46:07 +02:00
TapTap 265f0c0c09 Merge pull request 'refactor: quality cleanup — table-driven CLI, file.c split, scanner helpers, unified error reporting' (#216) from refactor/quality-cleanup into dev
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2026-09-01 20:39:31 +02:00
TapTap 047a9a1906 style: apply clang-format 18
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2026-08-30 14:20:33 +02:00
TapTap 6d82967c68 refactor: standardize error reporting on the log module
- Add log_perror() helper (context + strerror(errno)) to the log module
- Replace all bare perror() calls with log_perror() so errors are routed
  through the unified logger (stderr sink + optional --log-file sink)
- Convert fprintf(stderr, "Error:/Warning: ...") in client code to
  log_message(); raw fprintf kept only for progress/stats output
2026-08-30 14:06:48 +02:00
TapTap ae95211a05 refactor: unify send_files cleanup and share progress printing
- Extract print_transfer_progress() shared by single-threaded loop and
  the multithreaded progress thread
- Route all send_files() exits through a single send_fail cleanup path
- Fix pre-existing manifest leak on success without --delete
2026-08-30 14:02:12 +02:00
TapTap d639dfdc07 refactor: split file.c into file_send.c and file_receive.c
- file.c: File/FileMetadata lifecycle and local disk helpers (~110 lines)
- file_send.c: client-side send path (file_send_single_calls, file_send_sendfile)
- file_receive.c: server-side receive/save path (file_receive, receive_incremental_check,
  receive_manifest, file_save_to_disk)
- file_types.h holds shared struct definitions; file.h remains an umbrella header
  so existing includes are unaffected
Completes the transfer/protocol separation started in PR #212
2026-08-30 13:59:43 +02:00
TapTap 3fa3e150ce refactor: split parallel_scanner_create_with_options into focused helpers
- parallel_scanner_init(): result queue + sync primitive setup with unwinding
- batch_files(): root-file chunk batching, reusable by other scan paths
- scan_root_directory()/scan_root_entry(): root-dir scanning
- spawn_parallel_workers(): worker thread creation with per-thread arg setup
Main function reduced from ~230 to ~40 lines
2026-08-30 13:56:27 +02:00
TapTap e3e766ba3d refactor: table-driven CLI option parsing in client_cli
- Add OPTION_TABLE for options that map directly to Config fields
  (flag/string/pos-int/nonneg-int/ull kinds)
- Extract parse_ull_arg() replacing 5 duplicated strtoull blocks
- Extract config_add_pattern() replacing duplicated --exclude/--include
  append logic, also reused by read_patterns_from_file()
- parse_args() reduced from ~275 to ~160 lines
2026-08-30 13:53:59 +02:00
TapTap f2917eb163 refactor: remove dead API, rename to_disk/config_is_remote_dest, fix perror newlines
- Delete unused public array_list_extend (made static)
- Delete legacy 16-parameter parallel_scanner_create wrapper; migrate test to parallel_scanner_create_with_options
- Rename to_disk -> file_write_to_disk and is_remote_dest -> config_is_remote_dest for module_action naming convention
- Remove stray newlines in perror calls (perror already appends one)
2026-08-30 13:50:42 +02:00
TapTap 6c4d0246bc merge: resolve origin dev refactor conflicts
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2026-08-16 09:56:15 +02:00
TapTap 1391564ce7 test: harden allocation checks
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2026-08-16 09:37:28 +02:00
TapTap d102622e28 fix: close remaining PR review gaps
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2026-08-16 09:35:26 +02:00
TapTap 1abc17142f Merge pull request 'refactor: split transfer and protocol responsibilities' (#212) from refactor/codebase-structure into dev
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Reviewed-on: #212
2026-08-16 09:11:58 +02:00
TapTap 059dc2ac75 fix: close remaining PR review gaps
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2026-08-15 20:38:04 +02:00
TapTap 7cffff0b8b fix: fail closed on authorization setup failure
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2026-08-15 20:02:09 +02:00
TapTap d3b4c62f51 Merge branch 'dev' into refactor/codebase-structure
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2026-08-15 15:09:00 +02:00
TapTap 2f804ecfdd fix: address remaining PR 212 review issues
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2026-08-15 13:52:38 +02:00
TapTap 0c24136052 Merge pull request 'docs: clarify rsync compatibility roadmap' (#215) from docs/rsync-compatible-readme-clean into dev
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Reviewed-on: #215
2026-08-15 13:48:01 +02:00
TapTap d19fc68803 Merge branch 'dev' into docs/rsync-compatible-readme-clean
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2026-08-15 13:47:55 +02:00
TapTap 78876b110e fix: harden remaining review findings
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2026-08-15 13:44:31 +02:00
TapTap b3a724afc8 fix: preserve scanner file ownership on failure
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2026-08-15 13:40:31 +02:00
TapTap daf662cc2d fix: address remaining PR review findings
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2026-08-15 13:24:13 +02:00
TapTap 98f833980d fix: handle pipeline cancellation failures
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2026-08-15 13:20:50 +02:00
TapTap 298bfe0d0f fix: address delegated review findings
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2026-08-15 13:13:57 +02:00
TapTap 604a14f0be fix: close remaining PR review gaps
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2026-08-15 13:13:50 +02:00
TapTap 6f8847899c fix: validate remaining wire booleans
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2026-08-15 12:49:30 +02:00
TapTap 09454413d4 fix: address PR 212 review issues
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2026-08-15 12:48:31 +02:00
TapTap ff189aeef2 fix: harden network security boundaries
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2026-08-15 12:34:41 +02:00
TapTap 298976aefb fix: link receiver into fuzz targets
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2026-08-15 12:34:19 +02:00
TapTap 3b7f97853c fix: satisfy cppcheck const analysis
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2026-08-15 12:30:52 +02:00
TapTap 8cca891b9a refactor: split transfer and protocol responsibilities
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2026-08-15 12:27:18 +02:00
TapTap 41b624db5a Merge pull request 'fix: satisfy clang-format in CLI test' (#211) from fix/dev-ci-clang-format into dev
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Reviewed-on: #211
2026-08-15 11:55:41 +02:00
TapTap 786e686563 fix: satisfy clang-format in CLI test
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2026-08-15 11:52:05 +02:00
68 changed files with 3950 additions and 2513 deletions
+51 -91
View File
@@ -8,30 +8,34 @@ set(CMAKE_C_STANDARD_REQUIRED ON)
add_compile_options(-Wall -g -O3) add_compile_options(-Wall -g -O3)
# --- Sanitizer option ---
set(SANITIZER "none" CACHE STRING "Sanitizer to enable (address, thread, undefined, none)") set(SANITIZER "none" CACHE STRING "Sanitizer to enable (address, thread, undefined, none)")
set_property(CACHE SANITIZER PROPERTY STRINGS address thread undefined none) set_property(CACHE SANITIZER PROPERTY STRINGS address thread undefined none)
if(SANITIZER STREQUAL "address") if(SANITIZER STREQUAL "address")
add_compile_options(-fsanitize=address -fno-omit-frame-pointer -g) add_compile_options(-fsanitize=address -fno-omit-frame-pointer -g)
add_link_options(-fsanitize=address) add_link_options(-fsanitize=address)
elseif(SANITIZER STREQUAL "thread") elseif(SANITIZER STREQUAL "thread")
add_compile_options(-fsanitize=thread -fno-omit-frame-pointer -g) add_compile_options(-fsanitize=thread -fno-omit-frame-pointer -g)
add_link_options(-fsanitize=thread) add_link_options(-fsanitize=thread)
elseif(SANITIZER STREQUAL "undefined") elseif(SANITIZER STREQUAL "undefined")
add_compile_options(-fsanitize=undefined -fno-omit-frame-pointer -g) add_compile_options(-fsanitize=undefined -fno-omit-frame-pointer -g)
add_link_options(-fsanitize=undefined) add_link_options(-fsanitize=undefined)
elseif(NOT SANITIZER STREQUAL "none") elseif(NOT SANITIZER STREQUAL "none")
message(FATAL_ERROR "Unknown sanitizer: ${SANITIZER}. Supported values: address, thread, undefined, none") message(FATAL_ERROR "Unknown sanitizer: ${SANITIZER}. Supported values: address, thread, undefined, none")
endif() endif()
# --- Strict warnings option ---
option(STRICT_WARNINGS "Enable strict warnings (Wextra, Wpedantic, Werror)" OFF) option(STRICT_WARNINGS "Enable strict warnings (Wextra, Wpedantic, Werror)" OFF)
if(STRICT_WARNINGS) if(STRICT_WARNINGS)
add_compile_options(-Wextra -Wpedantic -Werror) add_compile_options(-Wextra -Wpedantic -Werror)
endif() endif()
# --- Coverage option ---
option(ENABLE_COVERAGE "Enable gcov coverage" OFF) option(ENABLE_COVERAGE "Enable gcov coverage" OFF)
if(ENABLE_COVERAGE) if(ENABLE_COVERAGE)
add_compile_options(--coverage -fprofile-arcs -ftest-coverage -O0 -g) add_compile_options(--coverage -fprofile-arcs -ftest-coverage -O0 -g)
add_link_options(--coverage) add_link_options(--coverage)
endif() endif()
include(FetchContent) include(FetchContent)
@@ -45,102 +49,58 @@ FetchContent_MakeAvailable(xxhash)
set(THREADS_PREFER_PTHREAD_FLAG ON) set(THREADS_PREFER_PTHREAD_FLAG ON)
find_package(Threads REQUIRED) find_package(Threads REQUIRED)
find_library(ZSTD_LIBRARY zstd) find_library(ZSTD_LIBRARY zstd)
if(NOT ZSTD_LIBRARY) if(NOT ZSTD_LIBRARY)
message(FATAL_ERROR "zstd library not found. Ensure it is in your nix-shell!") message(FATAL_ERROR "zstd library not found. Ensure it is in your nix-shell!")
endif() endif()
find_package(OpenSSL REQUIRED) find_package(OpenSSL REQUIRED)
set(SHARED_SRCS file(GLOB SHARED_SRCS "src/shared/*.c")
src/shared/array_list.c set(FILE_STORE_SRCS "${CMAKE_CURRENT_SOURCE_DIR}/src/shared/file_store.c")
src/shared/chunk.c list(REMOVE_ITEM SHARED_SRCS ${FILE_STORE_SRCS})
src/shared/compression.c file(GLOB SERVER_SRCS "src/server/*.c")
src/shared/config.c set(SERVER_RECEIVER_SRCS src/server/receiver.c)
src/shared/data.c file(GLOB CLIENT_SRCS "src/client/*.c")
src/shared/delta.c
src/shared/file.c
src/shared/log.c
src/shared/metadata.c
src/shared/multiprocessing.c
src/shared/protocol.c
src/shared/queue.c
src/shared/transport_ssh.c
src/shared/transport_tcp.c
src/shared/transport_tls.c
src/shared/utils.c
)
set(SERVER_SRCS src/server/server.c)
set(CLIENT_SRCS
src/client/client_cli.c
src/client/client_send.c
src/client/scanner.c
src/client/usage.c
)
function(configure_fastsync_target target) # --- Main executables ---
target_include_directories(${target} PRIVATE src/shared src/server src/client) add_executable(server ${SERVER_SRCS} ${SHARED_SRCS} ${FILE_STORE_SRCS})
target_link_libraries(${target} PRIVATE Threads::Threads ${ZSTD_LIBRARY} OpenSSL::SSL OpenSSL::Crypto xxhash) target_include_directories(server PRIVATE src/shared src/server src/client)
endfunction() target_link_libraries(server PRIVATE Threads::Threads ${ZSTD_LIBRARY} OpenSSL::SSL OpenSSL::Crypto xxhash)
add_executable(server ${SERVER_SRCS} ${SHARED_SRCS}) add_executable(client ${CLIENT_SRCS} ${SHARED_SRCS} ${FILE_STORE_SRCS} ${SERVER_RECEIVER_SRCS})
configure_fastsync_target(server) target_include_directories(client PRIVATE src/shared src/server src/client)
add_executable(client ${CLIENT_SRCS} ${SHARED_SRCS}) target_link_libraries(client PRIVATE Threads::Threads ${ZSTD_LIBRARY} OpenSSL::SSL OpenSSL::Crypto xxhash)
configure_fastsync_target(client)
# --- Testing ---
enable_testing() enable_testing()
set(TEST_SRCS
tests/runner.c # Common test libraries
tests/test_array_list.c set(TEST_LIBS Threads::Threads ${ZSTD_LIBRARY} OpenSSL::SSL OpenSSL::Crypto xxhash)
tests/test_chunk.c set(TEST_INCLUDES tests src/shared src/server src/client)
tests/test_client_cli.c
tests/test_compression.c # Monolithic test binary (backward compatible)
tests/test_config.c file(GLOB TEST_SRCS "tests/test_*.c" "tests/runner.c")
tests/test_data.c add_executable(tests ${TEST_SRCS} ${SHARED_SRCS} ${FILE_STORE_SRCS} ${SERVER_RECEIVER_SRCS} src/client/scanner.c src/client/client_cli.c src/client/client_validation.c src/client/usage.c)
tests/test_delta.c target_include_directories(tests PRIVATE ${TEST_INCLUDES})
tests/test_file.c
tests/test_file_sendfile.c
tests/test_fuzz_smoke.c
tests/test_glob.c
tests/test_log.c
tests/test_metadata.c
tests/test_multiprocessing.c
tests/test_property.c
tests/test_protocol.c
tests/test_queue.c
tests/test_robustness.c
tests/test_scanner.c
tests/test_server.c
tests/test_shared_utils.c
tests/test_stress.c
tests/test_transport_ssh.c
tests/test_transport_tcp.c
tests/test_transport_tls.c
)
add_executable(tests ${TEST_SRCS} ${SHARED_SRCS} src/client/scanner.c src/client/client_cli.c)
configure_fastsync_target(tests)
target_include_directories(tests PRIVATE tests)
target_compile_definitions(tests PRIVATE FASTSYNC_TEST_BUILD) target_compile_definitions(tests PRIVATE FASTSYNC_TEST_BUILD)
target_link_libraries(tests PRIVATE ${TEST_LIBS})
add_test(NAME unit_all COMMAND tests) add_test(NAME unit_all COMMAND tests)
# --- Fuzz targets (requires clang) ---
option(ENABLE_FUZZ "Build fuzz targets (requires clang)" OFF) option(ENABLE_FUZZ "Build fuzz targets (requires clang)" OFF)
if(ENABLE_FUZZ) if(ENABLE_FUZZ)
if(NOT CMAKE_C_COMPILER_ID MATCHES "Clang") if(NOT CMAKE_C_COMPILER_ID MATCHES "Clang")
message(FATAL_ERROR "ENABLE_FUZZ requires Clang (compiler is ${CMAKE_C_COMPILER_ID})") message(FATAL_ERROR "ENABLE_FUZZ requires Clang (compiler is ${CMAKE_C_COMPILER_ID})")
endif() endif()
set(FUZZ_SRCS file(GLOB FUZZ_SRCS "tests/fuzz/*.c")
tests/fuzz/fuzz_chunk_deserialize.c foreach(FUZZ_SRC ${FUZZ_SRCS})
tests/fuzz/fuzz_compress_decompress.c get_filename_component(FUZZ_NAME ${FUZZ_SRC} NAME_WE)
tests/fuzz/fuzz_delta_deserialize.c add_executable(${FUZZ_NAME} ${FUZZ_SRC} ${SHARED_SRCS} ${FILE_STORE_SRCS} ${SERVER_RECEIVER_SRCS})
tests/fuzz/fuzz_delta_signature_deserialize.c target_include_directories(${FUZZ_NAME} PRIVATE ${TEST_INCLUDES})
tests/fuzz/fuzz_glob_match.c target_compile_options(${FUZZ_NAME} PRIVATE -fsanitize=fuzzer,address,undefined -fno-omit-frame-pointer)
tests/fuzz/fuzz_metadata_from_buf.c target_link_options(${FUZZ_NAME} PRIVATE -fsanitize=fuzzer,address,undefined)
) target_link_libraries(${FUZZ_NAME} PRIVATE ${TEST_LIBS})
foreach(FUZZ_SRC ${FUZZ_SRCS}) endforeach()
get_filename_component(FUZZ_NAME ${FUZZ_SRC} NAME_WE)
add_executable(${FUZZ_NAME} ${FUZZ_SRC} ${SHARED_SRCS})
configure_fastsync_target(${FUZZ_NAME})
target_include_directories(${FUZZ_NAME} PRIVATE tests)
target_compile_options(${FUZZ_NAME} PRIVATE -fsanitize=fuzzer,address,undefined -fno-omit-frame-pointer)
target_link_options(${FUZZ_NAME} PRIVATE -fsanitize=fuzzer,address,undefined)
endforeach()
endif() endif()
+190 -26
View File
@@ -1,4 +1,4 @@
# FastSync #FastSync
FastSync is a high-performance file synchronization tool designed to become a FastSync is a high-performance file synchronization tool designed to become a
drop-in replacement for common `rsync` workflows. It keeps the familiar drop-in replacement for common `rsync` workflows. It keeps the familiar
@@ -79,10 +79,167 @@ partial, alternate, and planned behavior.
### Build ### Build
Requirements: C11 compiler, CMake 3.22 or newer, xxHash, zstd, OpenSSL, ### Client
pthreads, and an SSH client for SSH transport. The first CMake configure fetches
xxHash from GitHub, so network access is required unless the dependency is | Argument | Description |
already cached. |----------|-------------|
| Positional | `<source> <dest>` — automatic SSH detection if dest contains `:` |
| `-c [level]` | Compression with optional level (1–22, default 5) |
| `-z [level]` | Alias for `-c` |
| `-a, --archive` | Archive mode: enables `-c -m -M` (no `-s`) |
| `-m` | Multithreading mode |
| `-s` | Chunk serialization (batch all files per chunk) |
| `-f, --sendfile` | Sendfile zero-copy. Incompatible with `-c` / `-s`. TCP only. |
| `-M, --preserve` | Preserve supported file metadata (mode and mtime; ownership and atime are unsupported) |
| `-n, --dry-run` | Scan and print what would be transferred |
| `-p <port>` | SSH port (default: 22) |
| `-v, --verbose` | Enable debug logging |
| `--progress` | Show real-time transfer speed |
| `--delete` | Delete files on receiver not present in source |
| `--exclude <pattern>` | Exclude files matching glob pattern (repeatable) |
| `--exclude-from <file>` | Read exclude patterns from a file (one per line) |
| `--include <pattern>` | Only transfer files matching glob pattern (repeatable, whitelist) |
| `--max-size <n>` | Skip files larger than n bytes |
| `--min-size <n>` | Skip files smaller than n bytes |
| `--incremental` | Skip files unchanged since last transfer (size + mtime). Auto-enables `--preserve`. Incompatible with `-s`. |
| `--existing` | Skip files not already present at the destination; update existing files normally. |
| `--bwlimit <KB/s>` | Bandwidth limit in kilobytes per second |
| `--chunk-size <n>` | Chunk size in bytes (default: 10485760) |
| `--timeout <sec>` | I/O timeout in seconds (default: 30) |
| `--contimeout <sec>` | Connection timeout in seconds (default: 10) |
| `--backup` | Backup existing destination files before overwriting |
| `--backup-dir <dir>` | Target directory for backups (requires `--backup`) |
| `--stats` | Print transfer statistics at end (bytes, files, timing) |
| `--max-depth <n>` | Maximum directory depth to recurse (0 = unlimited, default: 0) |
| `--log-file <path>` | Write log messages to file instead of stderr |
| `--source-dir <path>` | Source directory (overrides `FASTSYNC_SOURCE_DIR`) |
| `--dest-dir <path>` | Server destination directory (overrides `FASTSYNC_DEST_DIR`) |
| `--save-to-disk` | Write received files to disk |
| `--server-host <ip>` | Server IP address (default: `127.0.0.1`) |
| `--server-port <n>` | Server port (default: `8080`) |
| `--tls` | Enable TLS encryption |
| `--cert <path>` | TLS certificate file (PEM) |
| `--key <path>` | TLS private key file (PEM) |
| `--ca <path>` | TLS CA certificate file for verification (PEM) |
| `--client-cn <name>` | Required TLS client certificate common name |
### Server
| Argument | Description |
|----------|-------------|
| `--stdio` | Run in stdio mode (for SSH transport; single connection then exits) |
| `-p <port>` | TCP listen port (default: 8080, range: 1–65535) |
| `--tls` | Enable TLS encryption |
| `--cert <path>` | TLS certificate file (PEM) |
| `--key <path>` | TLS private key file (PEM) |
| `--ca <path>` | TLS CA certificate file for verification (PEM) |
| `--destination-root <path>` | Authorized destination root (default: `.`) |
| `--allow-delete` | Permit manifest deletion |
| `--allow-unauthenticated` | Permit plaintext TCP clients |
| `-v, --verbose` | Enable debug logging |
| `--help` | Show help |
## Environment Variables
| Variable | Default | Description |
|----------|---------|-------------|
| `FASTSYNC_SOURCE_DIR` | — | Source directory fallback |
| `FASTSYNC_DEST_DIR` | — | Destination directory fallback |
| `FASTSYNC_SAVE_TO_DISK` | `false` | Disk persistence fallback |
| `FASTSYNC_SSH_PORT` | `22` | Default SSH port |
| `FASTSYNC_SERVER_HOST` | `127.0.0.1` | Default server host |
| `FASTSYNC_SERVER_PORT` | `8080` | Default server port |
| `FASTSYNC_TLS_CERT` | — | Default TLS certificate path |
| `FASTSYNC_TLS_KEY` | — | Default TLS private key path |
| `FASTSYNC_TLS_CA` | — | Default TLS CA certificate path |
## Implementation Details
### Data Structures
1. **Chunk** — collection of files (~10 MB total by default)
2. **File** — path, content (`Data`), optional `FileMetadata` pointer
3. **FileMetadata** — `mode`, `uid`, `gid`, `mtime_sec`, `mtime_nsec`;
uid / gid are advisory wire fields and are never applied by the receiver;
atime is unsupported
4. **Config** — runtime parameters (transported over wire, TLS settings excluded). Includes `timeout`, `contimeout`, `quiet`, `backup`, `backup_dir`, `stats`, `max_depth`, `log_file`, `queue_size`.
5. **Queue** — thread-safe bounded queue with condition variables
6. **DirectoryScanner** — recursive BFS traversal with exclude and include pattern support, max-depth enforcement
### Key Algorithms
1. **File scanning** — BFS directory traversal;
entries matched against exclude and include patterns,
max - depth enforced 2. * *Chunking ** — files accumulated until `chunk_size` threshold,
then flushed 3. *
*Compression ** — streaming zstd
via `ZSTD_compressStream2` / `ZSTD_decompressStream` 4. *
*Network protocol ** — status -
code - driven exchange with metadata packing,
keep - alive,
and abort support 5. * *Incremental check ** — client sends `STATUS_CHECK` + path + size +
mtime and,
with `--checksum`, XXH64 content checksum; server compares against destination. Can be batched via `STATUS_CHECK_BATCH` for reduced round-trips.
6. **Bandwidth limiting** — token-bucket algorithm with `nanosleep` throttling on 64 KB write chunks
7. **Metadata restoration** — `chmod()`, `chown()`, `utimensat()` on the receiving side
8. **`--delete`** — sender tracks all sent paths;
receiver walks destination tree and removes unlisted files / directories 9. *
*SSH transport *
* — `socketpair()` + `fork()` + `execvp("ssh",
...)` with `ControlMaster` and port support
10. *
*TLS transport ** — OpenSSL `SSL_CTX` with TLS
1.2 minimum,
mutual CA verification,
transparent `SSL_read`/`SSL_write` via `io_set_ssl()` 11. *
*Path traversal protection ** — `has_path_traversal()` rejects any file path
containing `..` components,
preventing directory escape attacks 12. *
*Connection limiting ** — server tracks active connections and rejects
new ones beyond `max_connections` (default 100)13. *
*Keep
- alive ** — idle connections receive periodic `STATUS_KEEPALIVE` to detect half
- open TCP connections 14. * *Abort handling ** — `SIGINT` sets an abort flag; the next protocol operation sends `STATUS_ABORT` for clean server cleanup
15. **Atomic writes** — files are written to a `.tmp` suffix then atomically renamed via `rename()`, preventing partial files
16. **Backup** — before overwriting, existing files are moved to `--backup-dir` (or same directory with `~` suffix) preserving the original
## Security Features
### Path Traversal Protection
All received file paths are validated by `has_path_traversal()` before any disk operation. Any path containing `..` components is rejected with `STATUS_ERROR`, preventing directory escape attacks.
### TLS Certificate Verification
TLS requires `--ca` and performs mutual TLS verification (`SSL_VERIFY_PEER` with depth 4). Connections without certificate verification are rejected.
### Connection Limits
The server enforces a maximum of 100 concurrent connections (configurable via `max_connections` in `Server`). When the limit is reached, new connections are immediately rejected and closed.
### Abort Handling
If the client receives `SIGINT` (Ctrl+C) during a transfer, it sends `STATUS_ABORT` to the server. The server then cleans up temporary files and exits the child process, preventing incomplete files from remaining on disk.
### Atomic Writes
Received files are written to a temporary path (suffixed with `.tmp`) and then atomically renamed to the final filename via `rename()`. This prevents partial or corrupted files from appearing at the destination if the transfer is interrupted.
## Build Requirements
- C11 compiler
- CMake >= 3.22
- zstd library
- OpenSSL (development headers and libraries)
- pthreads
- SSH client (for SSH transport mode only)
### Installing Dependencies
**Ubuntu/Debian:**
```bash
sudo apt install cmake build-essential libzstd-dev libssl-dev openssh-client
```
**Nix:**
```bash
nix-shell # provides zstd, openssl, cmake, gcc
```
## Building
```bash ```bash
cmake -B build -S . cmake -B build -S .
@@ -105,6 +262,7 @@ working directory, so use a destination below that directory unless the
remote server is otherwise configured with a matching authorized root. remote server is otherwise configured with a matching authorized root.
```bash ```bash
ssh user@host 'mkdir -p destination'
./build/client /path/to/source user@host:destination ./build/client /path/to/source user@host:destination
``` ```
@@ -124,8 +282,10 @@ Then run the client:
--save-to-disk --save-to-disk
``` ```
### TLS transfer Plain TCP requires the explicit `--allow-unauthenticated` server option. Use TLS for
authenticated network connections.
### TLS transfer
```bash ```bash
./build/server --destination-root /path/to --tls --cert server.pem --key server-key.pem -p 8443 ./build/server --destination-root /path/to --tls --cert server.pem --key server-key.pem -p 8443
./build/client --tls --cert client.pem --key client-key.pem --ca ca.pem \ ./build/client --tls --cert client.pem --key client-key.pem --ca ca.pem \
@@ -140,32 +300,32 @@ These examples show the intended rsync-style workflow. Options marked as
FastSync-native are optional performance or transport extensions. FastSync-native are optional performance or transport extensions.
```bash ```bash
# Basic synchronization #Basic synchronization
./build/client /source/ /destination/ ./build/client /source/ /destination/
# Archive-style synchronization (current FastSync archive behavior) #Archive - style synchronization(current FastSync archive behavior)
./build/client -a /source/ user@host:destination/ ./build/client -a /source/ user@host:destination/
# Preview a transfer without changing the destination #Preview a transfer without changing the destination
./build/client -n /source/ /destination/ ./build/client -n /source/ /destination/
# Exclude temporary and object files #Exclude temporary and object files
./build/client --exclude '*.tmp' --exclude '*.o' \ ./build/client --exclude '*.tmp' --exclude '*.o' \
/source/ user@host:destination/ /source/ user@host:destination/
# Remove destination entries not present in the source #Remove destination entries not present in the source
./build/client --delete /source/ user@host:destination/ ./build/client --delete /source/ user@host:destination/
# Skip unchanged files using size and modification time #Skip unchanged files using size and modification time
./build/client --incremental /source/ user@host:destination/ ./build/client --incremental /source/ user@host:destination/
# Verify content when size and time are not sufficient #Verify content when size and time are not sufficient
./build/client --incremental --checksum /source/ user@host:destination/ ./build/client --incremental --checksum /source/ user@host:destination/
# Preserve supported mode and timestamp metadata #Preserve supported mode and timestamp metadata
./build/client -M /source/ user@host:destination/ ./build/client -M /source/ user@host:destination/
# Keep backups of overwritten destination files #Keep backups of overwritten destination files
./build/client --backup --backup-dir backups \ ./build/client --backup --backup-dir backups \
/source/ user@host:destination/ /source/ user@host:destination/
``` ```
@@ -215,14 +375,16 @@ before FastSync can claim full rsync CLI compatibility.
| `--include-from <file>` | Read include patterns from a file. | | `--include-from <file>` | Read include patterns from a file. |
| `--max-size <bytes>` | Skip files larger than the limit. | | `--max-size <bytes>` | Skip files larger than the limit. |
| `--min-size <bytes>` | Skip files smaller than the limit. | | `--min-size <bytes>` | Skip files smaller than the limit. |
| `--max-depth <n>` | Limit recursive scanning depth; zero means unlimited. | | `--max-depth <n>` | Limit recursive scanning depth;
| `--incremental` | Skip files matching destination size and mtime. | zero means unlimited.| | `--incremental` | Skip files matching destination size and mtime.|
| `--checksum` | Include xxHash64 content checks in incremental comparisons. | | `--checksum` | Include xxHash64 content checks in incremental comparisons.| | `--backup` |
| `--backup` | Back up overwritten files. | Back up overwritten files.| | `--backup - dir<dir>` | Store backups under a separate directory.|
| `--backup-dir <dir>` | Store backups under a separate directory. | | `--suffix<suffix>` | Set the backup filename suffix.| | `--partial` |
| `--suffix <suffix>` | Set the backup filename suffix. | Select partial - transfer handling.With `--partial - dir`,
| `--partial` | Select partial-transfer handling. With `--partial-dir`, completed files are written there; resumable transfers are not implemented. | completed files are written there;
| `--partial-dir <dir>` | Set a relative partial-transfer directory below the server destination root; use with `--partial`. | resumable transfers are not implemented.| | `--partial - dir<dir>` |
Set a relative partial - transfer directory below the server destination root;
use with `--partial`. |
| `--inplace` | Write directly to the destination instead of using a temporary file. | | `--inplace` | Write directly to the destination instead of using a temporary file. |
### Metadata and links ### Metadata and links
@@ -230,7 +392,8 @@ before FastSync can claim full rsync CLI compatibility.
| Option | Description | | Option | Description |
|---|---| |---|---|
| `-M`, `--preserve` | Preserve supported file metadata, currently mode and modification time. | | `-M`, `--preserve` | Preserve supported file metadata, currently mode and modification time. |
| `-l`, `--links` | Request symlink preservation; link-target transfer remains incomplete. | | `-l`, `--links` | Request symlink preservation;
link-target transfer remains incomplete. |
| `--copy-links` | Copy symlink referents. | | `--copy-links` | Copy symlink referents. |
| `--safe-links` | Skip symlinks that point outside the transfer tree. | | `--safe-links` | Skip symlinks that point outside the transfer tree. |
| `--copy-unsafe-links` | Copy unsafe symlink referents. | | `--copy-unsafe-links` | Copy unsafe symlink referents. |
@@ -273,7 +436,8 @@ before FastSync can claim full rsync CLI compatibility.
| `--cert <path>` | TLS certificate file. | | `--cert <path>` | TLS certificate file. |
| `--key <path>` | TLS private key file. | | `--key <path>` | TLS private key file. |
| `--ca <path>` | CA file for peer verification. | | `--ca <path>` | CA file for peer verification. |
| `--destination-root <path>` | Confine received files to this server-side root; defaults to the current directory. | | `--destination-root <path>` | Confine received files to this server-side root;
defaults to the current directory. |
| `--allow-delete` | Permit client delete manifests. Deletion is refused by default. | | `--allow-delete` | Permit client delete manifests. Deletion is refused by default. |
| `-v`, `--verbose` | Enable debug logging. | | `-v`, `--verbose` | Enable debug logging. |
| `--help` | Print server usage. | | `--help` | Print server usage. |
@@ -302,7 +466,7 @@ before FastSync can claim full rsync CLI compatibility.
## Protocol and Security ## Protocol and Security
FastSync protocol version `2.2.0` is shared by the client and server. The FastSync protocol version `2.3.0` is shared by the client and server. The
current protocol is sender-driven and includes configuration negotiation, current protocol is sender-driven and includes configuration negotiation,
incremental checks, checksums, manifests, keep-alives, abort handling, and incremental checks, checksums, manifests, keep-alives, abort handling, and
FastSync-native delta messages. Client and server versions must currently FastSync-native delta messages. Client and server versions must currently
+6 -6
View File
@@ -6,11 +6,11 @@ This document maps rsync's full feature set to FastSync's current implementation
| Status | Count | Description | | Status | Count | Description |
|--------|-------|-------------| |--------|-------|-------------|
| ✅ Implemented | 34 | Feature works end-to-end | | ✅ Implemented | 35 | Feature works end-to-end |
| 🔀 Alt Arg | 3 | Functionality exists but under different flag/semantics | | 🔀 Alt Arg | 3 | Functionality exists but under different flag/semantics |
| ⚠️ Partial | 1 | Flag parsed/stored but behavior incomplete | | ⚠️ Partial | 3 | Flag parsed/stored but behavior incomplete |
| ❌ Not Implemented | 98 | Flag not recognized or no behavior | | ❌ Not Implemented | 97 | Flag not recognized or no behavior |
| **Total** | **136** | | | **Total** | **138** | |
--- ---
@@ -60,7 +60,7 @@ This document maps rsync's full feature set to FastSync's current implementation
| `-I`, `--ignore-times` | Don't skip files matching size+time | ❌ Not Implemented | | | `-I`, `--ignore-times` | Don't skip files matching size+time | ❌ Not Implemented | |
| `--size-only` | Skip based on size only | ❌ Not Implemented | | | `--size-only` | Skip based on size only | ❌ Not Implemented | |
| `-@`, `--modify-window=NUM` | Mod-time comparison accuracy | ❌ Not Implemented | | | `-@`, `--modify-window=NUM` | Mod-time comparison accuracy | ❌ Not Implemented | |
| `--existing` | Skip creating new files on receiver | ❌ Not Implemented | | | `--existing` | Skip creating new files on receiver | ✅ Implemented | Existing destination files continue through normal update handling |
| `--ignore-existing` | Skip updating existing files | ❌ Not Implemented | | | `--ignore-existing` | Skip updating existing files | ❌ Not Implemented | |
| `--remove-source-files` | Sender removes synced files | ❌ Not Implemented | | | `--remove-source-files` | Sender removes synced files | ❌ Not Implemented | |
@@ -247,7 +247,7 @@ Ranked by user demand, implementation complexity, and interoperability impact:
| 1 | `--whole-file` / `-W` | Low | High — users expect opt-out of delta | | 1 | `--whole-file` / `-W` | Low | High — users expect opt-out of delta |
| 2 | `--ignore-times` / `-I` | Low | Medium — useful for forcing re-transfer | | 2 | `--ignore-times` / `-I` | Low | Medium — useful for forcing re-transfer |
| 3 | `--size-only` | Low | Medium — common migration scenario | | 3 | `--size-only` | Low | Medium — common migration scenario |
| 4 | `--existing` / `--ignore-existing` | Low | Medium — common sync patterns | | 4 | `--ignore-existing` | Low | Medium — common sync patterns |
| 5 | `--remove-source-files` | Low | High — common for moves/backup | | 5 | `--remove-source-files` | Low | High — common for moves/backup |
| 6 | `--delete-during` | Medium | High — performance improvement | | 6 | `--delete-during` | Medium | High — performance improvement |
| 7 | `--delay-updates` | Medium | High — atomic updates | | 7 | `--delay-updates` | Medium | High — atomic updates |
+200 -246
View File
@@ -1,18 +1,20 @@
#include "client_send.h" #include "client_send.h"
#include "client_validation.h"
#include "config.h" #include "config.h"
#include "delta.h" #include "delta.h"
#include "log.h" #include "log.h"
#include "protocol.h" #include "protocol.h"
#include "transport_tcp.h" #include "transport_tcp.h"
#include "transport_tls.h" #include "transport_tls.h"
#include "usage.h"
#include "utils.h" #include "utils.h"
#include <errno.h> #include <errno.h>
#include <limits.h> #include <limits.h>
#include <stdbool.h> #include <stdbool.h>
#include <stddef.h>
#include <stdio.h> #include <stdio.h>
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
#include "usage.c"
#ifndef FASTSYNC_TEST_BUILD #ifndef FASTSYNC_TEST_BUILD
/* Parse environment variables for source/destination directories and save-to-disk flag. */ /* Parse environment variables for source/destination directories and save-to-disk flag. */
@@ -58,7 +60,7 @@ static bool parse_positive_int(const char* s, int* out_val) {
static int set_string_option(char** dest, const char* value, const char* option_name) { static int set_string_option(char** dest, const char* value, const char* option_name) {
char* dup = str_dup(value); char* dup = str_dup(value);
if (!dup) { if (!dup) {
fprintf(stderr, "Error: memory allocation failed for %s\n", option_name); log_message(LOG_LEVEL_ERROR, "memory allocation failed for %s", option_name);
return -1; return -1;
} }
free(*dest); free(*dest);
@@ -69,7 +71,7 @@ static int set_string_option(char** dest, const char* value, const char* option_
/* Parse a string as a positive integer into *dest. Returns true on success, false on error. */ /* Parse a string as a positive integer into *dest. Returns true on success, false on error. */
static int set_positive_int_option(int* dest, const char* value, const char* option_name) { static int set_positive_int_option(int* dest, const char* value, const char* option_name) {
if (!parse_positive_int(value, dest)) { if (!parse_positive_int(value, dest)) {
fprintf(stderr, "Error: %s must be a positive integer\n", option_name); log_message(LOG_LEVEL_ERROR, "%s must be a positive integer", option_name);
return -1; return -1;
} }
return 0; return 0;
@@ -78,7 +80,7 @@ static int set_positive_int_option(int* dest, const char* value, const char* opt
/* Parse a string as a non-negative integer into *dest. Returns true on success, false on error. */ /* Parse a string as a non-negative integer into *dest. Returns true on success, false on error. */
static int set_nonneg_int_option(int* dest, const char* value, const char* option_name) { static int set_nonneg_int_option(int* dest, const char* value, const char* option_name) {
if (!parse_nonneg_int(value, dest)) { if (!parse_nonneg_int(value, dest)) {
fprintf(stderr, "Error: %s must be a non-negative integer\n", option_name); log_message(LOG_LEVEL_ERROR, "%s must be a non-negative integer", option_name);
return -1; return -1;
} }
return 0; return 0;
@@ -86,105 +88,188 @@ static int set_nonneg_int_option(int* dest, const char* value, const char* optio
static int read_patterns_from_file(const char* filepath, char*** patterns, int* count); static int read_patterns_from_file(const char* filepath, char*** patterns, int* count);
/* Parse a string as an unsigned long long. Returns 0 on success, -1 on error. */
static int parse_ull_arg(const char* val, unsigned long long* out, const char* optname) {
char* end;
errno = 0;
unsigned long long v = strtoull(val, &end, 10);
if (errno != 0 || *end != '\0') {
log_message(LOG_LEVEL_ERROR, "%s must be a non-negative integer", optname);
return -1;
}
*out = v;
return 0;
}
/* Append a duplicated pattern to a growable pattern array. Returns 0 on success, -1 on error. */
static int config_add_pattern(char*** patterns, int* count, const char* value,
const char* optname) {
char** tmp = realloc(*patterns, (*count + 1) * sizeof(char*));
if (!tmp) {
log_message(LOG_LEVEL_ERROR, "memory allocation failed for %s", optname);
return -1;
}
*patterns = tmp;
char* dup = str_dup(value);
if (!dup) {
log_message(LOG_LEVEL_ERROR, "memory allocation failed for %s", optname);
return -1;
}
(*patterns)[(*count)++] = dup;
return 0;
}
typedef enum {
OPT_FLAG,
OPT_STRING,
OPT_POS_INT,
OPT_NONNEG_INT,
OPT_ULL,
} OptKind;
typedef struct {
const char* name;
const char* alias;
OptKind kind;
size_t offset; /* offsetof of the target field in Config */
} OptionEntry;
/* Options that map directly onto a Config field with no side effects. */
static const OptionEntry OPTION_TABLE[] = {
{"--dry-run", "-n", OPT_FLAG, offsetof(Config, dry_run)},
{"--delete", NULL, OPT_FLAG, offsetof(Config, use_delete)},
{"--incremental", NULL, OPT_FLAG, offsetof(Config, use_incremental)},
{"--delta", NULL, OPT_FLAG, offsetof(Config, use_delta)},
{"--save-to-disk", NULL, OPT_FLAG, offsetof(Config, save_to_disk)},
{"--progress", NULL, OPT_FLAG, offsetof(Config, show_progress)},
{"--tls", NULL, OPT_FLAG, offsetof(Config, use_tls)},
{"--backup", NULL, OPT_FLAG, offsetof(Config, backup)},
{"--stats", NULL, OPT_FLAG, offsetof(Config, stats)},
{"--partial", NULL, OPT_FLAG, offsetof(Config, partial)},
{"--links", "-l", OPT_FLAG, offsetof(Config, follow_symlinks)},
{"--copy-links", NULL, OPT_FLAG, offsetof(Config, copy_links)},
{"--safe-links", NULL, OPT_FLAG, offsetof(Config, safe_links)},
{"--copy-unsafe-links", NULL, OPT_FLAG, offsetof(Config, copy_unsafe_links)},
{"--sparse", "-S", OPT_FLAG, offsetof(Config, preserve_sparse)},
{"--inplace", NULL, OPT_FLAG, offsetof(Config, inplace)},
{"--checksum", NULL, OPT_FLAG, offsetof(Config, checksum)},
{"--existing", NULL, OPT_FLAG, offsetof(Config, existing)},
{"--source-dir", NULL, OPT_STRING, offsetof(Config, send_directory)},
{"--dest-dir", NULL, OPT_STRING, offsetof(Config, receive_root_directory)},
{"--server-host", NULL, OPT_STRING, offsetof(Config, server_host)},
{"--cert", NULL, OPT_STRING, offsetof(Config, tls_cert)},
{"--key", NULL, OPT_STRING, offsetof(Config, tls_key)},
{"--ca", NULL, OPT_STRING, offsetof(Config, tls_ca)},
{"--backup-dir", NULL, OPT_STRING, offsetof(Config, backup_dir)},
{"--fastsync-server-path", NULL, OPT_STRING, offsetof(Config, fastsync_server_path)},
{"--partial-dir", NULL, OPT_STRING, offsetof(Config, partial_dir)},
{"--suffix", NULL, OPT_STRING, offsetof(Config, suffix)},
{"--timeout", NULL, OPT_POS_INT, offsetof(Config, timeout)},
{"--contimeout", NULL, OPT_POS_INT, offsetof(Config, contimeout)},
{"--max-depth", NULL, OPT_NONNEG_INT, offsetof(Config, max_depth)},
{"--max-size", NULL, OPT_ULL, offsetof(Config, max_size)},
{"--min-size", NULL, OPT_ULL, offsetof(Config, min_size)},
};
static bool opt_is(const char* arg, const char* name, const char* alias) {
return strcmp(arg, name) == 0 || (alias && strcmp(arg, alias) == 0);
}
static const OptionEntry* find_table_option(const char* arg) {
for (size_t i = 0; i < sizeof(OPTION_TABLE) / sizeof(OPTION_TABLE[0]); i++)
if (opt_is(arg, OPTION_TABLE[i].name, OPTION_TABLE[i].alias))
return &OPTION_TABLE[i];
return NULL;
}
static int apply_table_option(Config* config, const OptionEntry* entry, const char* value) {
void* field = (char*)config + entry->offset;
switch (entry->kind) {
case OPT_FLAG:
*(bool*)field = true;
return 0;
case OPT_STRING:
return set_string_option((char**)field, value, entry->name);
case OPT_POS_INT:
return set_positive_int_option((int*)field, value, entry->name);
case OPT_NONNEG_INT:
return set_nonneg_int_option((int*)field, value, entry->name);
case OPT_ULL: {
unsigned long long v;
if (parse_ull_arg(value, &v, entry->name) != 0)
return -1;
*(unsigned long long*)field = v;
return 0;
}
}
return -1;
}
/* Parse CLI arguments into config. Returns 0 on success, -1 on error, 1 for help/clean-exit. */ /* Parse CLI arguments into config. Returns 0 on success, -1 on error, 1 for help/clean-exit. */
int parse_args(Config* config, int argc, char* argv[], int* positional_args, int parse_args(Config* config, int argc, char* argv[], int* positional_args,
int* positional_count) { int* positional_count) {
for (int i = 1; i < argc; i++) { for (int i = 1; i < argc; i++) {
if (strcmp(argv[i], "--help") == 0) { const OptionEntry* entry = find_table_option(argv[i]);
if (entry) {
if (entry->kind != OPT_FLAG) {
if (i + 1 >= argc) {
log_message(LOG_LEVEL_ERROR, "missing argument for %s", entry->name);
return -1;
}
if (apply_table_option(config, entry, argv[++i]) != 0)
return -1;
} else if (apply_table_option(config, entry, NULL) != 0) {
return -1;
}
continue;
}
if (opt_is(argv[i], "--help", NULL)) {
print_usage(); print_usage();
return 1; return 1;
} else if (strcmp(argv[i], "-V") == 0 || strcmp(argv[i], "--version") == 0) { } else if (opt_is(argv[i], "-V", "--version")) {
printf("fastsync version %s\n", PROTOCOL_VERSION); printf("fastsync version %s\n", PROTOCOL_VERSION);
return 1; return 1;
} else if (strcmp(argv[i], "-a") == 0 || strcmp(argv[i], "--archive") == 0) { } else if (opt_is(argv[i], "-a", "--archive")) {
config->use_compression = true; config->use_compression = true;
config->use_multithreading = true; config->use_multithreading = true;
config->use_metadata = true; config->use_metadata = true;
log_message(LOG_LEVEL_INFO, "Enabled archive mode (-c -m -M)"); log_message(LOG_LEVEL_INFO, "Enabled archive mode (-c -m -M)");
} else if (strcmp(argv[i], "-n") == 0 || strcmp(argv[i], "--dry-run") == 0) { } else if (opt_is(argv[i], "-p", NULL) && i + 1 < argc) {
config->dry_run = true;
} else if (strcmp(argv[i], "-p") == 0 && i + 1 < argc) {
if (set_positive_int_option(&config->ssh_port, argv[++i], "-p") != 0) if (set_positive_int_option(&config->ssh_port, argv[++i], "-p") != 0)
return -1; return -1;
if (config->ssh_port > 65535) { if (config->ssh_port > 65535) {
log_message(LOG_LEVEL_ERROR, "SSH port must be 1-65535\n"); log_message(LOG_LEVEL_ERROR, "SSH port must be 1-65535");
return -1; return -1;
} }
} else if (strcmp(argv[i], "--delete") == 0) { } else if (opt_is(argv[i], "--exclude", NULL) && i + 1 < argc) {
config->use_delete = true; if (config_add_pattern(&config->exclude_patterns, &config->exclude_count, argv[++i],
} else if (strcmp(argv[i], "--exclude") == 0 && i + 1 < argc) { "--exclude") != 0)
char** tmp = realloc(config->exclude_patterns, (config->exclude_count + 1) * sizeof(char*));
if (!tmp) {
fprintf(stderr, "Error: memory allocation failed for --exclude\n");
return -1; return -1;
} } else if (opt_is(argv[i], "--include", NULL) && i + 1 < argc) {
config->exclude_patterns = tmp; if (config_add_pattern(&config->include_patterns, &config->include_count, argv[++i],
char* dup = str_dup(argv[++i]); "--include") != 0)
if (!dup) {
fprintf(stderr, "Error: memory allocation failed for --exclude\n");
return -1; return -1;
} } else if (opt_is(argv[i], "--delta-block", NULL) && i + 1 < argc) {
config->exclude_patterns[config->exclude_count++] = dup; unsigned long long val;
} else if (strcmp(argv[i], "--include") == 0 && i + 1 < argc) { if (parse_ull_arg(argv[++i], &val, "--delta-block") != 0)
char** tmp = realloc(config->include_patterns, (config->include_count + 1) * sizeof(char*));
if (!tmp) {
fprintf(stderr, "Error: memory allocation failed for --include\n");
return -1; return -1;
}
config->include_patterns = tmp;
char* dup = str_dup(argv[++i]);
if (!dup) {
fprintf(stderr, "Error: memory allocation failed for --include\n");
return -1;
}
config->include_patterns[config->include_count++] = dup;
} else if (strcmp(argv[i], "--max-size") == 0 && i + 1 < argc) {
char* end;
errno = 0;
unsigned long long val = strtoull(argv[++i], &end, 10);
if (errno != 0 || *end != '\0') {
fprintf(stderr, "Error: --max-size must be a non-negative integer\n");
return -1;
}
config->max_size = val;
} else if (strcmp(argv[i], "--min-size") == 0 && i + 1 < argc) {
char* end;
errno = 0;
unsigned long long val = strtoull(argv[++i], &end, 10);
if (errno != 0 || *end != '\0') {
fprintf(stderr, "Error: --min-size must be a non-negative integer\n");
return -1;
}
config->min_size = val;
} else if (strcmp(argv[i], "--incremental") == 0) {
config->use_incremental = true;
} else if (strcmp(argv[i], "--delta") == 0) {
config->use_delta = true;
} else if (strcmp(argv[i], "--delta-block") == 0 && i + 1 < argc) {
char* end;
errno = 0;
unsigned long long val = strtoull(argv[++i], &end, 10);
if (errno != 0 || *end != '\0') {
fprintf(stderr, "Error: --delta-block must be a positive integer\n");
return -1;
}
if (val >= DELTA_BLOCK_SIZE_MIN && val <= DELTA_BLOCK_SIZE_MAX) if (val >= DELTA_BLOCK_SIZE_MIN && val <= DELTA_BLOCK_SIZE_MAX)
config->delta_block_size = (uint32_t)val; config->delta_block_size = (uint32_t)val;
else else
fprintf(stderr, "Warning: --delta-block value %llu out of range, using default\n", val); log_message(LOG_LEVEL_WARNING, "--delta-block value %llu out of range, using default", val);
} else if (strcmp(argv[i], "--delta-max") == 0 && i + 1 < argc) { } else if (opt_is(argv[i], "--delta-max", NULL) && i + 1 < argc) {
char* end; unsigned long long val;
errno = 0; if (parse_ull_arg(argv[++i], &val, "--delta-max") != 0)
unsigned long long val = strtoull(argv[++i], &end, 10);
if (errno != 0 || *end != '\0') {
fprintf(stderr, "Error: --delta-max must be a positive integer\n");
return -1; return -1;
}
if (val >= DELTA_MIN_FILE_SIZE) if (val >= DELTA_MIN_FILE_SIZE)
config->delta_max_file_size = val; config->delta_max_file_size = val;
else else
fprintf(stderr, "Warning: --delta-max value %llu too small, using default\n", val); log_message(LOG_LEVEL_WARNING, "--delta-max value %llu too small, using default", val);
} else if (strcmp(argv[i], "-c") == 0 || strcmp(argv[i], "-z") == 0) { } else if (opt_is(argv[i], "-c", "-z")) {
config->use_compression = true; config->use_compression = true;
log_message(LOG_LEVEL_INFO, "Enabled Compression"); log_message(LOG_LEVEL_INFO, "Enabled Compression");
if (i + 1 < argc) { if (i + 1 < argc) {
@@ -192,7 +277,7 @@ int parse_args(Config* config, int argc, char* argv[], int* positional_args,
long level = strtol(argv[i + 1], &end_ptr, 10); long level = strtol(argv[i + 1], &end_ptr, 10);
if (*end_ptr == '\0') { if (*end_ptr == '\0') {
if (level < 1 || level > 22) { if (level < 1 || level > 22) {
fprintf(stderr, "Error: compression level must be 1-22\n"); log_message(LOG_LEVEL_ERROR, "compression level must be 1-22");
return -1; return -1;
} }
config->compression_level = (int)level; config->compression_level = (int)level;
@@ -200,91 +285,51 @@ int parse_args(Config* config, int argc, char* argv[], int* positional_args,
i++; i++;
} }
} }
} else if (strcmp(argv[i], "--source-dir") == 0 && i + 1 < argc) { } else if (opt_is(argv[i], "-M", "--preserve")) {
if (set_string_option(&config->send_directory, argv[++i], "--source-dir") != 0)
return -1;
} else if (strcmp(argv[i], "--dest-dir") == 0 && i + 1 < argc) {
if (set_string_option(&config->receive_root_directory, argv[++i], "--dest-dir") != 0)
return -1;
} else if (strcmp(argv[i], "--save-to-disk") == 0) {
config->save_to_disk = true;
} else if (strcmp(argv[i], "-M") == 0 || strcmp(argv[i], "--preserve") == 0) {
config->use_metadata = true; config->use_metadata = true;
log_message(LOG_LEVEL_INFO, "Enabled metadata preservation"); log_message(LOG_LEVEL_INFO, "Enabled metadata preservation");
} else if (strcmp(argv[i], "-f") == 0 || strcmp(argv[i], "--sendfile") == 0) { } else if (opt_is(argv[i], "-f", "--sendfile")) {
config->use_sendfile = true; config->use_sendfile = true;
log_message(LOG_LEVEL_INFO, "Enabled sendfile"); log_message(LOG_LEVEL_INFO, "Enabled sendfile");
} else if (strcmp(argv[i], "-m") == 0) { } else if (opt_is(argv[i], "-m", NULL)) {
config->use_multithreading = true; config->use_multithreading = true;
log_message(LOG_LEVEL_INFO, "Enabled Multithreading"); log_message(LOG_LEVEL_INFO, "Enabled Multithreading");
} else if (strcmp(argv[i], "-s") == 0) { } else if (opt_is(argv[i], "-s", NULL)) {
config->use_chunk_serialization = true; config->use_chunk_serialization = true;
log_message(LOG_LEVEL_INFO, "Enabled Chunk Serialization"); log_message(LOG_LEVEL_INFO, "Enabled Chunk Serialization");
} else if (strcmp(argv[i], "--server-host") == 0 && i + 1 < argc) { } else if (opt_is(argv[i], "--server-port", NULL) && i + 1 < argc) {
if (set_string_option(&config->server_host, argv[++i], "--server-host") != 0)
return -1;
} else if (strcmp(argv[i], "--server-port") == 0 && i + 1 < argc) {
if (!parse_positive_int(argv[++i], &config->server_port)) { if (!parse_positive_int(argv[++i], &config->server_port)) {
fprintf(stderr, "Error: invalid --server-port value: %s\n", argv[i]); log_message(LOG_LEVEL_ERROR, "invalid --server-port value: %s", argv[i]);
return -1; return -1;
} }
if (config->server_port > 65535) { if (config->server_port > 65535) {
fprintf(stderr, "Error: server port must be 1-65535\n"); log_message(LOG_LEVEL_ERROR, "server port must be 1-65535");
return -1; return -1;
} }
} else if (strcmp(argv[i], "--bwlimit") == 0 && i + 1 < argc) { } else if (opt_is(argv[i], "--bwlimit", NULL) && i + 1 < argc) {
char* end; unsigned long long kbps;
errno = 0; if (parse_ull_arg(argv[++i], &kbps, "--bwlimit") != 0)
unsigned long long kbps = strtoull(argv[++i], &end, 10); return -1;
if (errno != 0 || *end != '\0' || kbps == 0) { if (kbps == 0) {
fprintf(stderr, "Error: --bwlimit must be a positive integer\n"); log_message(LOG_LEVEL_ERROR, "--bwlimit must be a positive integer");
return -1; return -1;
} }
if (kbps > ULLONG_MAX / 1024) { if (kbps > ULLONG_MAX / 1024) {
fprintf(stderr, "Error: --bwlimit value too large\n"); log_message(LOG_LEVEL_ERROR, "--bwlimit value too large");
return -1; return -1;
} }
io_set_bwlimit(kbps * 1024); io_set_bwlimit(kbps * 1024);
log_message(LOG_LEVEL_INFO, "Set bandwidth limit to %llu KB/s", kbps); log_message(LOG_LEVEL_INFO, "Set bandwidth limit to %llu KB/s", kbps);
} else if (strcmp(argv[i], "--progress") == 0) { } else if (opt_is(argv[i], "--chunk-size", NULL) && i + 1 < argc) {
config->show_progress = true; unsigned long long val;
} else if (strcmp(argv[i], "--chunk-size") == 0 && i + 1 < argc) { if (parse_ull_arg(argv[++i], &val, "--chunk-size") != 0)
char* end; return -1;
errno = 0; if (val == 0) {
unsigned long long val = strtoull(argv[++i], &end, 10); log_message(LOG_LEVEL_ERROR, "--chunk-size must be a positive integer");
if (errno != 0 || *end != '\0' || val == 0) {
fprintf(stderr, "Error: --chunk-size must be a positive integer\n");
return -1; return -1;
} }
config->chunk_size = val; config->chunk_size = val;
} else if (strcmp(argv[i], "--tls") == 0) { } else if (opt_is(argv[i], "--log-file", NULL) && i + 1 < argc) {
config->use_tls = true;
} else if (strcmp(argv[i], "--cert") == 0 && i + 1 < argc) {
if (set_string_option(&config->tls_cert, argv[++i], "--cert") != 0)
return -1;
} else if (strcmp(argv[i], "--key") == 0 && i + 1 < argc) {
if (set_string_option(&config->tls_key, argv[++i], "--key") != 0)
return -1;
} else if (strcmp(argv[i], "--ca") == 0 && i + 1 < argc) {
if (set_string_option(&config->tls_ca, argv[++i], "--ca") != 0)
return -1;
} else if (strcmp(argv[i], "--timeout") == 0 && i + 1 < argc) {
if (set_positive_int_option(&config->timeout, argv[++i], "--timeout") != 0)
return -1;
} else if (strcmp(argv[i], "--contimeout") == 0 && i + 1 < argc) {
if (set_positive_int_option(&config->contimeout, argv[++i], "--contimeout") != 0)
return -1;
} else if (strcmp(argv[i], "--backup") == 0) {
config->backup = true;
} else if (strcmp(argv[i], "--backup-dir") == 0 && i + 1 < argc) {
if (set_string_option(&config->backup_dir, argv[++i], "--backup-dir") != 0)
return -1;
} else if (strcmp(argv[i], "--stats") == 0) {
config->stats = true;
} else if (strcmp(argv[i], "--max-depth") == 0 && i + 1 < argc) {
if (set_nonneg_int_option(&config->max_depth, argv[++i], "--max-depth") != 0)
return -1;
} else if (strcmp(argv[i], "--log-file") == 0 && i + 1 < argc) {
if (config->log_file) { if (config->log_file) {
fclose(config->log_file); fclose(config->log_file);
config->log_file = NULL; config->log_file = NULL;
@@ -292,55 +337,29 @@ int parse_args(Config* config, int argc, char* argv[], int* positional_args,
} }
FILE* lf = fopen(argv[++i], "a"); FILE* lf = fopen(argv[++i], "a");
if (!lf) { if (!lf) {
fprintf(stderr, "Error: could not open log file '%s': %s\n", argv[i], strerror(errno)); log_message(LOG_LEVEL_ERROR, "could not open log file '%s': %s", argv[i], strerror(errno));
return -1; return -1;
} }
config->log_file = lf; config->log_file = lf;
log_set_file(lf); log_set_file(lf);
} else if (strcmp(argv[i], "--exclude-from") == 0 && i + 1 < argc) { } else if (opt_is(argv[i], "--exclude-from", NULL) && i + 1 < argc) {
if (read_patterns_from_file(argv[++i], &config->exclude_patterns, &config->exclude_count) != if (read_patterns_from_file(argv[++i], &config->exclude_patterns, &config->exclude_count) !=
0) 0)
return -1; return -1;
} else if (strcmp(argv[i], "--include-from") == 0 && i + 1 < argc) { } else if (opt_is(argv[i], "--include-from", NULL) && i + 1 < argc) {
if (read_patterns_from_file(argv[++i], &config->include_patterns, &config->include_count) != if (read_patterns_from_file(argv[++i], &config->include_patterns, &config->include_count) !=
0) 0)
return -1; return -1;
} else if (strcmp(argv[i], "--partial") == 0) { } else if (opt_is(argv[i], "-v", "--verbose")) {
config->partial = true;
} else if (strcmp(argv[i], "--fastsync-server-path") == 0 && i + 1 < argc) {
if (set_string_option(&config->fastsync_server_path, argv[++i], "--fastsync-server-path") !=
0)
return -1;
} else if (strcmp(argv[i], "-v") == 0 || strcmp(argv[i], "--verbose") == 0) {
set_log_level(LOG_LEVEL_DEBUG); set_log_level(LOG_LEVEL_DEBUG);
} else if (strcmp(argv[i], "-l") == 0 || strcmp(argv[i], "--links") == 0) { } else if (opt_is(argv[i], "-T", NULL) && i + 1 < argc) {
config->follow_symlinks = true;
} else if (strcmp(argv[i], "--copy-links") == 0) {
config->copy_links = true;
} else if (strcmp(argv[i], "--safe-links") == 0) {
config->safe_links = true;
} else if (strcmp(argv[i], "--copy-unsafe-links") == 0) {
config->copy_unsafe_links = true;
} else if (strcmp(argv[i], "-S") == 0 || strcmp(argv[i], "--sparse") == 0) {
config->preserve_sparse = true;
} else if (strcmp(argv[i], "--inplace") == 0) {
config->inplace = true;
} else if (strcmp(argv[i], "--partial-dir") == 0 && i + 1 < argc) {
if (set_string_option(&config->partial_dir, argv[++i], "--partial-dir") != 0)
return -1;
} else if (strcmp(argv[i], "--suffix") == 0 && i + 1 < argc) {
if (set_string_option(&config->suffix, argv[++i], "--suffix") != 0)
return -1;
} else if (strcmp(argv[i], "-T") == 0 && i + 1 < argc) {
if (set_positive_int_option(&config->timeout, argv[++i], "-T") != 0) if (set_positive_int_option(&config->timeout, argv[++i], "-T") != 0)
return -1; return -1;
} else if (strcmp(argv[i], "--checksum") == 0) { } else if (opt_is(argv[i], "--compress-level", NULL) && i + 1 < argc) {
config->checksum = true;
} else if (strcmp(argv[i], "--compress-level") == 0 && i + 1 < argc) {
if (set_positive_int_option(&config->compression_level, argv[++i], "--compress-level") != 0) if (set_positive_int_option(&config->compression_level, argv[++i], "--compress-level") != 0)
return -1; return -1;
if (config->compression_level < 1 || config->compression_level > 22) { if (config->compression_level < 1 || config->compression_level > 22) {
fprintf(stderr, "Error: --compress-level must be between 1 and 22\n"); log_message(LOG_LEVEL_ERROR, "--compress-level must be between 1 and 22");
return -1; return -1;
} }
} else if (argv[i][0] == '-') { } else if (argv[i][0] == '-') {
@@ -360,59 +379,10 @@ int parse_args(Config* config, int argc, char* argv[], int* positional_args,
return 0; return 0;
} }
#ifndef FASTSYNC_TEST_BUILD
/* Validate config after parsing. Returns true if valid. */
static bool validate_config(const Config* config) {
if (!config->send_directory || !config->receive_root_directory) {
fprintf(stderr, "Error: source and destination directories are required\n");
print_usage();
return false;
}
if (config->use_sendfile && (config->use_chunk_serialization || config->use_compression)) {
fprintf(stderr, "Error: -f/--sendfile cannot be combined with -c (compression) or -s (chunk "
"serialization)\n");
return false;
}
if (config->transport == TRANSPORT_SSH && config->use_sendfile) {
fprintf(stderr, "Error: -f/--sendfile is not supported with SSH transport\n");
return false;
}
if (config->use_incremental && config->use_chunk_serialization) {
fprintf(stderr, "Error: --incremental is not supported with -s (chunk serialization)\n");
return false;
}
if (config->use_delta && !config->use_incremental) {
fprintf(stderr, "Error: --delta requires --incremental\n");
return false;
}
if (config->use_delta && config->use_chunk_serialization) {
fprintf(stderr, "Error: --delta cannot be combined with -s (chunk serialization)\n");
return false;
}
if (config->use_delta && config->use_sendfile) {
fprintf(stderr, "Error: --delta cannot be combined with -f (sendfile)\n");
return false;
}
if (config->append || config->append_verify) {
fprintf(
stderr,
"Error: --append and --append-verify are not supported yet; refusing to ignore option\n");
return false;
}
if (config->use_tls) {
if (!config->tls_cert || !config->tls_key) {
fprintf(stderr, "Error: --tls requires --cert and --key\n");
return false;
}
}
return true;
}
#endif /* FASTSYNC_TEST_BUILD */
static int read_patterns_from_file(const char* filepath, char*** patterns, int* count) { static int read_patterns_from_file(const char* filepath, char*** patterns, int* count) {
FILE* fp = fopen(filepath, "r"); FILE* fp = fopen(filepath, "r");
if (!fp) { if (!fp) {
fprintf(stderr, "Error: could not open pattern file '%s': %s\n", filepath, strerror(errno)); log_message(LOG_LEVEL_ERROR, "could not open pattern file '%s': %s", filepath, strerror(errno));
return -1; return -1;
} }
char* line = NULL; char* line = NULL;
@@ -429,22 +399,11 @@ static int read_patterns_from_file(const char* filepath, char*** patterns, int*
p[--len] = '\0'; p[--len] = '\0';
if (len == 0) if (len == 0)
continue; continue;
char** tmp = realloc(*patterns, (*count + 1) * sizeof(char*)); if (config_add_pattern(patterns, count, p, "pattern file") != 0) {
if (!tmp) {
fprintf(stderr, "Error: memory allocation failed for pattern file\n");
free(line); free(line);
fclose(fp); fclose(fp);
return -1; return -1;
} }
*patterns = tmp;
char* dup = str_dup(p);
if (!dup) {
fprintf(stderr, "Error: memory allocation failed for pattern file\n");
free(line);
fclose(fp);
return -1;
}
(*patterns)[(*count)++] = dup;
} }
free(line); free(line);
fclose(fp); fclose(fp);
@@ -459,10 +418,9 @@ int main(int argc, char* argv[]) {
parse_environment(&env_source, &env_dest, &save_to_disk); parse_environment(&env_source, &env_dest, &save_to_disk);
int exit_code = 0; int exit_code = 0;
bool config_owned_by_pipeline = false;
Config* config = config_create(); Config* config = config_create();
if (!config) { if (!config) {
fprintf(stderr, "Error: failed to allocate config\n"); log_message(LOG_LEVEL_ERROR, "failed to allocate config");
return 1; return 1;
} }
config->save_to_disk = save_to_disk; config->save_to_disk = save_to_disk;
@@ -483,20 +441,20 @@ int main(int argc, char* argv[]) {
free(config->receive_root_directory); free(config->receive_root_directory);
config->send_directory = str_dup(argv[positional_args[0]]); config->send_directory = str_dup(argv[positional_args[0]]);
if (!config->send_directory) { if (!config->send_directory) {
fprintf(stderr, "Error: memory allocation failed\n"); log_message(LOG_LEVEL_ERROR, "memory allocation failed");
exit_code = 1; exit_code = 1;
goto cleanup; goto cleanup;
} }
config->receive_root_directory = str_dup(argv[positional_args[1]]); config->receive_root_directory = str_dup(argv[positional_args[1]]);
if (!config->receive_root_directory) { if (!config->receive_root_directory) {
fprintf(stderr, "Error: memory allocation failed\n"); log_message(LOG_LEVEL_ERROR, "memory allocation failed");
exit_code = 1; exit_code = 1;
goto cleanup; goto cleanup;
} }
config->save_to_disk = true; config->save_to_disk = true;
config_parse_ssh_dest(config); config_parse_ssh_dest(config);
} else if (positional_count == 1) { } else if (positional_count == 1) {
fprintf(stderr, "Error: missing destination argument\n"); log_message(LOG_LEVEL_ERROR, "missing destination argument");
print_usage(); print_usage();
exit_code = 1; exit_code = 1;
goto cleanup; goto cleanup;
@@ -504,7 +462,7 @@ int main(int argc, char* argv[]) {
if (!config->send_directory && env_source) { if (!config->send_directory && env_source) {
config->send_directory = str_dup(env_source); config->send_directory = str_dup(env_source);
if (!config->send_directory) { if (!config->send_directory) {
fprintf(stderr, "Error: memory allocation failed\n"); log_message(LOG_LEVEL_ERROR, "memory allocation failed");
exit_code = 1; exit_code = 1;
goto cleanup; goto cleanup;
} }
@@ -512,7 +470,7 @@ int main(int argc, char* argv[]) {
if (!config->receive_root_directory && env_dest) { if (!config->receive_root_directory && env_dest) {
config->receive_root_directory = str_dup(env_dest); config->receive_root_directory = str_dup(env_dest);
if (!config->receive_root_directory) { if (!config->receive_root_directory) {
fprintf(stderr, "Error: memory allocation failed\n"); log_message(LOG_LEVEL_ERROR, "memory allocation failed");
exit_code = 1; exit_code = 1;
goto cleanup; goto cleanup;
} }
@@ -542,18 +500,14 @@ int main(int argc, char* argv[]) {
/* Execute transfer */ /* Execute transfer */
if (config->use_multithreading) { if (config->use_multithreading) {
config_owned_by_pipeline = true; exit_code = send_files_multithreaded(&config);
exit_code = send_files_multithreaded(config);
} else { } else {
exit_code = send_files(config); exit_code = send_files(config);
} }
cleanup: cleanup:
if (config) { if (config) {
if (config->log_file) config_delete(config);
fclose(config->log_file);
if (!config_owned_by_pipeline)
config_delete(config);
} }
return exit_code; return exit_code;
} }
+221 -216
View File
@@ -28,6 +28,88 @@
/* Forward declaration for progress-reporting thread used in multithreaded send. */ /* Forward declaration for progress-reporting thread used in multithreaded send. */
static int progress_thread_fn(void* arg); static int progress_thread_fn(void* arg);
static ScannerOptions scanner_options_from_config(const Config* config, int num_threads) {
ScannerOptions options = {
config->use_metadata, config->chunk_size, config->exclude_patterns,
config->exclude_count, config->include_patterns, config->include_count,
config->max_size, config->min_size, config->max_depth,
num_threads, config->follow_symlinks, config->copy_links,
config->safe_links, config->copy_unsafe_links, config->checksum};
return options;
}
/* Select the configured transport for both transfer execution paths. */
static Client* connect_transfer_client(const Config* config) {
if (config->transport == TRANSPORT_SSH) {
if (config->use_sendfile) {
log_message(LOG_LEVEL_ERROR, "-f/--sendfile is not supported with SSH transport");
return NULL;
}
return client_connect_ssh(config->ssh_destination, config->ssh_port,
config->fastsync_server_path);
}
Client* client = client_create();
if (!client)
return NULL;
bool connected;
if (config->use_tls) {
connected = client_connect_tls(client, config->server_host, config->server_port,
config->tls_cert, config->tls_key, config->tls_ca);
} else {
connected = client_connect(client, config->server_host, config->server_port);
}
if (!connected) {
client_disconnect(client);
client_delete(client);
return NULL;
}
return client;
}
static void disconnect_transfer_client(Client* client) {
if (!client)
return;
client_disconnect(client);
client_delete(client);
}
static ArrayList* create_transfer_manifest(const Config* config) {
return config->use_delete ? array_list_create(free) : NULL;
}
static bool add_chunk_to_manifest(ArrayList* manifest, const Chunk* chunk) {
if (!manifest)
return true;
for (int i = 0; i < chunk->element_count; i++) {
const char* path = chunk->items[i]->path;
if (*path == '/')
path++;
char* entry = str_dup(path);
if (!entry) {
log_message(LOG_LEVEL_ERROR, "Failed to allocate manifest entry");
return false;
}
if (!array_list_add(manifest, entry)) {
free(entry);
return false;
}
}
return true;
}
static bool finalize_transfer(Client* client) {
Status status;
return send_status(client->file_descriptor, STATUS_FINISHED) &&
receive_status(client->file_descriptor, &status) && status == STATUS_OK;
}
static void mark_sender_done(PipelineContextSender* context) {
mtx_lock(&context->mutex_progress);
context->sender_done = true;
mtx_unlock(&context->mutex_progress);
}
static void pipeline_cancel(PipelineContextSender* context) { static void pipeline_cancel(PipelineContextSender* context) {
mtx_lock(&context->mutex_scanner); mtx_lock(&context->mutex_scanner);
mtx_lock(&context->mutex_loader); mtx_lock(&context->mutex_loader);
@@ -43,12 +125,10 @@ static void pipeline_cancel(PipelineContextSender* context) {
} }
/* Print dry-run manifest showing files that would be transferred. Returns 0 on success. */ /* Print dry-run manifest showing files that would be transferred. Returns 0 on success. */
static int send_dry_run_manifest(Config* config) { static int send_dry_run_manifest(const Config* config) {
DirectoryScanner* scanner = directory_scanner_create( ScannerOptions options = scanner_options_from_config(config, 0);
config->send_directory, config->use_metadata, config->chunk_size, config->exclude_patterns, DirectoryScanner* scanner =
config->exclude_count, config->include_patterns, config->include_count, config->max_size, directory_scanner_create_with_options(config->send_directory, &options);
config->min_size, config->max_depth, config->follow_symlinks, config->copy_links,
config->safe_links, config->copy_unsafe_links, config->checksum);
if (!scanner) if (!scanner)
return -1; return -1;
Chunk* chunk; Chunk* chunk;
@@ -70,6 +150,8 @@ static int send_dry_run_manifest(Config* config) {
/* Send the delete manifest (list of files) to the server. Returns 0 on success, -1 on failure. */ /* Send the delete manifest (list of files) to the server. Returns 0 on success, -1 on failure. */
static int send_delete_manifest(int fd, ArrayList* manifest) { static int send_delete_manifest(int fd, ArrayList* manifest) {
if (!manifest)
return -1;
if (!send_status(fd, STATUS_MANIFEST)) if (!send_status(fd, STATUS_MANIFEST))
return -1; return -1;
if (!send_int(fd, manifest->size)) if (!send_int(fd, manifest->size))
@@ -111,17 +193,22 @@ static int incremental_check(Client* client, File* file, const Config* config,
return 1; return 1;
if (s == STATUS_DELTA_SIGNATURE) { if (s == STATUS_DELTA_SIGNATURE) {
Data* sig_data = receive_data(client->file_descriptor); Data* sig_data = receive_data(client->file_descriptor);
if (!sig_data) if (!sig_data) {
send_status(client->file_descriptor, STATUS_ERROR);
return -1; return -1;
}
DeltaSignature* sig = delta_signature_deserialize(sig_data); DeltaSignature* sig = delta_signature_deserialize(sig_data);
data_destroy(sig_data); data_destroy(sig_data);
if (!sig) if (!sig) {
send_status(client->file_descriptor, STATUS_ERROR);
return -1; return -1;
}
*out_sig = sig; *out_sig = sig;
return 2; return 2;
} }
if (s != STATUS_NEXT) { if (s != STATUS_NEXT) {
log_message(LOG_LEVEL_ERROR, "Unexpected server status"); log_message(LOG_LEVEL_ERROR, "Unexpected server status");
send_status(client->file_descriptor, STATUS_ERROR);
return -1; return -1;
} }
return 0; return 0;
@@ -129,8 +216,10 @@ static int incremental_check(Client* client, File* file, const Config* config,
static int send_delta(Client* client, File* file, DeltaSignature* sig, Config* config) { static int send_delta(Client* client, File* file, DeltaSignature* sig, Config* config) {
Delta* delta = delta_compute(file->data->data, file->data->size, sig, config->delta_block_size); Delta* delta = delta_compute(file->data->data, file->data->size, sig, config->delta_block_size);
/* The receiver is blocked after sending the signature. Every local
fallback therefore needs the explicit NEXT response before full data. */
if (!delta) if (!delta)
return 1; return send_status(client->file_descriptor, STATUS_NEXT) ? 1 : -1;
if (!delta_is_worthwhile(delta, file->data->size)) { if (!delta_is_worthwhile(delta, file->data->size)) {
delta_destroy(delta); delta_destroy(delta);
@@ -142,14 +231,14 @@ static int send_delta(Client* client, File* file, DeltaSignature* sig, Config* c
Data* delta_data = delta_serialize(delta); Data* delta_data = delta_serialize(delta);
delta_destroy(delta); delta_destroy(delta);
if (!delta_data) if (!delta_data)
return -1; return send_status(client->file_descriptor, STATUS_NEXT) ? 1 : -1;
Data* to_send = delta_data; Data* to_send = delta_data;
if (config->use_compression) { if (config->use_compression) {
to_send = data_compress(delta_data, config->compression_level); to_send = data_compress(delta_data, config->compression_level);
data_destroy(delta_data); data_destroy(delta_data);
if (!to_send) if (!to_send)
return -1; return send_status(client->file_descriptor, STATUS_NEXT) ? 1 : -1;
} }
bool ok = send_status(client->file_descriptor, STATUS_DELTA_DATA) && bool ok = send_status(client->file_descriptor, STATUS_DELTA_DATA) &&
@@ -279,7 +368,8 @@ int send_chunk(Client* client, Chunk* chunk, Config* config) {
if (f == NULL) if (f == NULL)
continue; continue;
bool stream = f->data->data == NULL && f->data->size > 0; bool stream = f->data->data == NULL && f->data->size > 0;
bool use_sendfile = (config->use_sendfile && !config->use_compression) || stream; bool use_sendfile =
(config->use_sendfile && !config->use_compression) || (stream && !config->use_compression);
int rc = send_single_file(client, f, config, config->use_incremental, use_sendfile); int rc = send_single_file(client, f, config, config->use_incremental, use_sendfile);
if (rc == 1) if (rc == 1)
continue; continue;
@@ -291,49 +381,24 @@ int send_chunk(Client* client, Chunk* chunk, Config* config) {
static int send_chunks_multithreaded(void* pipeline_context) { static int send_chunks_multithreaded(void* pipeline_context) {
PipelineContextSender* context = (PipelineContextSender*)pipeline_context; PipelineContextSender* context = (PipelineContextSender*)pipeline_context;
Client* client; Client* client = connect_transfer_client(context->config);
if (context->config->transport == TRANSPORT_SSH) { if (!client) {
if (context->config->use_sendfile) { if (context->config->transport == TRANSPORT_TCP)
fprintf(stderr, "Error: -f/--sendfile is not supported with SSH transport\n"); log_message(LOG_LEVEL_ERROR, "could not connect to server%s",
mtx_lock(&context->mutex_progress); context->config->use_tls ? " via TLS" : "");
context->sender_done = true; pipeline_cancel(context);
mtx_unlock(&context->mutex_progress); mark_sender_done(context);
return 1; return thrd_error;
}
client = client_connect_ssh(context->config->ssh_destination, context->config->ssh_port,
context->config->fastsync_server_path);
} else if (context->config->use_tls) {
client = client_create();
if (!client || !client_connect_tls(client, context->config->server_host,
context->config->server_port, context->config->tls_cert,
context->config->tls_key, context->config->tls_ca)) {
if (client)
client_delete(client);
fprintf(stderr, "Error: could not connect to server via TLS\n");
mtx_lock(&context->mutex_progress);
context->sender_done = true;
mtx_unlock(&context->mutex_progress);
return thrd_error;
}
} else {
client = client_create();
if (!client ||
!client_connect(client, context->config->server_host, context->config->server_port)) {
if (client)
client_delete(client);
fprintf(stderr, "Error: could not connect to server\n");
mtx_lock(&context->mutex_progress);
context->sender_done = true;
mtx_unlock(&context->mutex_progress);
return thrd_error;
}
} }
ProtocolSession session;
protocol_session_init(&session, client->file_descriptor, client->file_descriptor);
protocol_session_set_ssl(&session, (SSL*)client->ssl);
protocol_session_bind(&session);
if (!config_send(client->file_descriptor, context->config)) { if (!config_send(client->file_descriptor, context->config)) {
client_disconnect(client); pipeline_cancel(context);
client_delete(client); disconnect_transfer_client(client);
mtx_lock(&context->mutex_progress); mark_sender_done(context);
context->sender_done = true; protocol_session_unbind();
mtx_unlock(&context->mutex_progress);
return thrd_error; return thrd_error;
} }
@@ -342,39 +407,37 @@ static int send_chunks_multithreaded(void* pipeline_context) {
context->queue_loader, &context->mutex_loader, &context->condition_not_empty_loader, context->queue_loader, &context->mutex_loader, &context->condition_not_empty_loader,
&context->condition_not_full_loader, &context->loader_done); &context->condition_not_full_loader, &context->loader_done);
if (current_chunk == NULL) { if (current_chunk == NULL) {
if (atomic_load(&context->cancelled)) {
pipeline_cancel(context);
disconnect_transfer_client(client);
mark_sender_done(context);
protocol_session_unbind();
return thrd_error;
}
if (context->config->use_delete) { if (context->config->use_delete) {
if (send_delete_manifest(client->file_descriptor, context->manifest) != 0) if (send_delete_manifest(client->file_descriptor, context->manifest) != 0)
goto send_fail; goto send_fail;
} }
if (!send_status(client->file_descriptor, STATUS_FINISHED)) bool ok = finalize_transfer(client);
goto send_fail; disconnect_transfer_client(client);
Status s; mark_sender_done(context);
int ok = receive_status(client->file_descriptor, &s) && s == STATUS_OK; protocol_session_unbind();
client_disconnect(client);
client_delete(client);
mtx_lock(&context->mutex_progress);
context->sender_done = true;
mtx_unlock(&context->mutex_progress);
return ok ? thrd_success : thrd_error; return ok ? thrd_success : thrd_error;
send_fail: send_fail:
pipeline_cancel(context); pipeline_cancel(context);
client_disconnect(client); disconnect_transfer_client(client);
client_delete(client); mark_sender_done(context);
mtx_lock(&context->mutex_progress); protocol_session_unbind();
context->sender_done = true;
mtx_unlock(&context->mutex_progress);
return thrd_error; return thrd_error;
} }
if (send_chunk(client, current_chunk, context->config) != 0) { if (send_chunk(client, current_chunk, context->config) != 0) {
fprintf(stderr, "Error: unexpected error while sending chunk\n"); log_message(LOG_LEVEL_ERROR, "unexpected error while sending chunk");
chunk_destroy(current_chunk); chunk_destroy(current_chunk);
pipeline_cancel(context); pipeline_cancel(context);
client_disconnect(client); disconnect_transfer_client(client);
client_delete(client); mark_sender_done(context);
mtx_lock(&context->mutex_progress); protocol_session_unbind();
context->sender_done = true;
mtx_unlock(&context->mutex_progress);
return thrd_error; return thrd_error;
} }
if (context->config->show_progress) { if (context->config->show_progress) {
@@ -393,13 +456,9 @@ static int send_chunks_multithreaded(void* pipeline_context) {
static int scan_directory_multithreaded(void* pipeline_context) { static int scan_directory_multithreaded(void* pipeline_context) {
PipelineContextSender* context = (PipelineContextSender*)pipeline_context; PipelineContextSender* context = (PipelineContextSender*)pipeline_context;
ParallelScanner* scanner = parallel_scanner_create( ScannerOptions options = scanner_options_from_config(context->config, 4);
context->config->send_directory, context->config->use_metadata, context->config->chunk_size, ParallelScanner* scanner =
context->config->exclude_patterns, context->config->exclude_count, parallel_scanner_create_with_options(context->config->send_directory, &options);
context->config->include_patterns, context->config->include_count, context->config->max_size,
context->config->min_size, context->config->max_depth, 4, context->config->follow_symlinks,
context->config->copy_links, context->config->safe_links, context->config->copy_unsafe_links,
context->config->checksum);
Chunk* current_chunk; Chunk* current_chunk;
if (scanner == NULL) { if (scanner == NULL) {
@@ -410,28 +469,14 @@ static int scan_directory_multithreaded(void* pipeline_context) {
while ((current_chunk = parallel_scanner_next(scanner)) != NULL) { while ((current_chunk = parallel_scanner_next(scanner)) != NULL) {
if (context->config->use_delete) { if (context->config->use_delete) {
mtx_lock(&context->mutex_scanner); mtx_lock(&context->mutex_scanner);
for (int i = 0; i < current_chunk->element_count; i++) { bool manifest_ok = add_chunk_to_manifest(context->manifest, current_chunk);
const char* p = current_chunk->items[i]->path;
if (*p == '/')
p++;
char* manifest_entry = str_dup(p);
if (!manifest_entry) {
log_message(LOG_LEVEL_ERROR, "Failed to allocate manifest entry");
mtx_unlock(&context->mutex_scanner);
pipeline_cancel(context);
parallel_scanner_destroy(scanner);
return thrd_error;
}
if (!array_list_add(context->manifest, manifest_entry)) {
free(manifest_entry);
mtx_unlock(&context->mutex_scanner);
pipeline_cancel(context);
chunk_destroy(current_chunk);
parallel_scanner_destroy(scanner);
return thrd_error;
}
}
mtx_unlock(&context->mutex_scanner); mtx_unlock(&context->mutex_scanner);
if (!manifest_ok) {
pipeline_cancel(context);
chunk_destroy(current_chunk);
parallel_scanner_destroy(scanner);
return thrd_error;
}
} }
if (!queue_enqueue_multithreaded_cancel( if (!queue_enqueue_multithreaded_cancel(
context->queue_scanner, current_chunk, &context->mutex_scanner, context->queue_scanner, current_chunk, &context->mutex_scanner,
@@ -478,12 +523,13 @@ static int load_files_multithreaded(void* pipeline_context) {
if (!context->config->use_sendfile) { if (!context->config->use_sendfile) {
for (int i = 0; i < chunk->element_count; i++) { for (int i = 0; i < chunk->element_count; i++) {
File* f = chunk->items[i]; File* f = chunk->items[i];
if (f->data->size > STREAM_THRESHOLD) if (f->data->size > STREAM_THRESHOLD && !context->config->use_compression)
continue; continue;
if (!file_load_data(f)) { if (!file_load_data(f)) {
log_message(LOG_LEVEL_ERROR, "Failed to load file data, skipping"); log_message(LOG_LEVEL_ERROR, "Failed to load file data");
file_destroy(f); chunk_destroy(chunk);
chunk->items[i] = NULL; pipeline_cancel(context);
return thrd_error;
} }
} }
} }
@@ -492,14 +538,23 @@ static int load_files_multithreaded(void* pipeline_context) {
&context->condition_not_full_loader, &context->condition_not_full_loader,
&context->cancelled)) { &context->cancelled)) {
chunk_destroy(chunk); chunk_destroy(chunk);
atomic_store(&context->cancelled, true); pipeline_cancel(context);
cnd_broadcast(&context->condition_not_full_loader);
cnd_broadcast(&context->condition_not_empty_loader);
return thrd_error; return thrd_error;
} }
} }
} }
/* Print a one-line transfer progress report to stderr. `suffix` ends the
line (e.g. "Done.\n") or is "" for in-place refresh. Shared by the
single-threaded loop and the multithreaded progress thread. */
static void print_transfer_progress(unsigned long long total_bytes, time_t start,
const char* suffix) {
double elapsed = difftime(time(NULL), start);
double rate = elapsed > 0.0 ? total_bytes / (1048576.0 * elapsed) : 0.0;
fprintf(stderr, "\rSent %.1f MB (%.1f MB/s) %s", total_bytes / 1048576.0, rate, suffix);
fflush(stderr);
}
/* Progress-reporting thread for multithreaded send. Runs in parallel with /* Progress-reporting thread for multithreaded send. Runs in parallel with
the scanner/loader/sender threads and prints periodic progress to stderr. */ the scanner/loader/sender threads and prints periodic progress to stderr. */
static int progress_thread_fn(void* arg) { static int progress_thread_fn(void* arg) {
@@ -514,20 +569,14 @@ static int progress_thread_fn(void* arg) {
mtx_unlock(&context->mutex_progress); mtx_unlock(&context->mutex_progress);
if (done) { if (done) {
time_t now = time(NULL); print_transfer_progress(total, start, "Done.\n");
double elapsed = difftime(now, start);
double rate = elapsed > 0.0 ? total / (1048576.0 * elapsed) : 0.0;
fprintf(stderr, "\rSent %.1f MB (%.1f MB/s) Done.\n", total / 1048576.0, rate);
break; break;
} }
time_t now = time(NULL); time_t now = time(NULL);
if (now - last_progress >= 1) { if (now - last_progress >= 1) {
last_progress = now; last_progress = now;
double elapsed = difftime(now, start); print_transfer_progress(total, start, "");
double rate = elapsed > 0.0 ? total / (1048576.0 * elapsed) : 0.0;
fprintf(stderr, "\rSent %.1f MB (%.1f MB/s) ", total / 1048576.0, rate);
fflush(stderr);
} }
struct timespec ts = {0, 100 * 1000000L}; /* 100 ms */ struct timespec ts = {0, 100 * 1000000L}; /* 100 ms */
@@ -540,103 +589,58 @@ int send_files(Config* config) {
if (config->dry_run) if (config->dry_run)
return send_dry_run_manifest(config); return send_dry_run_manifest(config);
Client* client; Client* client = connect_transfer_client(config);
if (config->transport == TRANSPORT_SSH) { if (!client) {
if (config->use_sendfile) { if (config->transport == TRANSPORT_TCP)
fprintf(stderr, "Error: -f/--sendfile is not supported with SSH transport\n"); log_message(LOG_LEVEL_ERROR, "could not connect to server%s",
return 1; config->use_tls ? " via TLS" : "");
}
client =
client_connect_ssh(config->ssh_destination, config->ssh_port, config->fastsync_server_path);
if (!client)
return 1;
} else if (config->use_tls) {
client = client_create();
if (!client || !client_connect_tls(client, config->server_host, config->server_port,
config->tls_cert, config->tls_key, config->tls_ca)) {
if (client) {
client_disconnect(client);
client_delete(client);
}
fprintf(stderr, "Error: could not connect to server via TLS\n");
return 1;
}
} else {
client = client_create();
if (!client || !client_connect(client, config->server_host, config->server_port)) {
if (client) {
client_disconnect(client);
client_delete(client);
}
fprintf(stderr, "Error: could not connect to server\n");
return 1;
}
}
if (!config_send(client->file_descriptor, config)) {
client_disconnect(client);
client_delete(client);
return 1; return 1;
} }
DirectoryScanner* scanner = directory_scanner_create( ProtocolSession session;
config->send_directory, config->use_metadata, config->chunk_size, config->exclude_patterns, protocol_session_init(&session, client->file_descriptor, client->file_descriptor);
config->exclude_count, config->include_patterns, config->include_count, config->max_size, protocol_session_set_ssl(&session, (SSL*)client->ssl);
config->min_size, config->max_depth, config->follow_symlinks, config->copy_links, protocol_session_bind(&session);
config->safe_links, config->copy_unsafe_links, config->checksum); int ret = 1;
DirectoryScanner* scanner = NULL;
ArrayList* manifest = NULL;
if (!config_send(client->file_descriptor, config))
goto send_fail;
ScannerOptions scanner_options = scanner_options_from_config(config, 0);
scanner = directory_scanner_create_with_options(config->send_directory, &scanner_options);
manifest = create_transfer_manifest(config);
if (!scanner || (config->use_delete && !manifest))
goto send_fail;
Chunk* current_chunk; Chunk* current_chunk;
unsigned long long total_bytes = 0; unsigned long long total_bytes = 0;
int total_files = 0; int total_files = 0;
time_t last_progress = 0; time_t last_progress = 0;
time_t start = time(NULL); time_t start = time(NULL);
ArrayList* manifest = config->use_delete ? array_list_create(free) : NULL;
if (!scanner || (config->use_delete && !manifest)) {
if (scanner)
directory_scanner_destroy(scanner);
if (manifest)
array_list_delete(manifest);
client_disconnect(client);
client_delete(client);
return 1;
}
while ((current_chunk = directory_scanner_next(scanner)) != NULL) { while ((current_chunk = directory_scanner_next(scanner)) != NULL) {
unsigned long long chunk_bytes = 0; unsigned long long chunk_bytes = 0;
for (int i = 0; i < current_chunk->element_count; i++) { for (int i = 0; i < current_chunk->element_count; i++) {
chunk_bytes += current_chunk->items[i]->data->size; chunk_bytes += current_chunk->items[i]->data->size;
total_files++; total_files++;
if (manifest) { }
const char* p = current_chunk->items[i]->path; if (!add_chunk_to_manifest(manifest, current_chunk)) {
if (*p == '/') chunk_destroy(current_chunk);
p++; goto send_fail;
char* manifest_entry = str_dup(p);
if (!manifest_entry) {
log_message(LOG_LEVEL_ERROR, "Failed to allocate manifest entry");
chunk_destroy(current_chunk);
array_list_delete(manifest);
directory_scanner_destroy(scanner);
client_disconnect(client);
client_delete(client);
return 1;
}
if (!array_list_add(manifest, manifest_entry)) {
free(manifest_entry);
chunk_destroy(current_chunk);
array_list_delete(manifest);
directory_scanner_destroy(scanner);
client_disconnect(client);
client_delete(client);
return 1;
}
}
} }
if (!config->use_sendfile) { if (!config->use_sendfile) {
bool load_ok = true;
for (int i = 0; i < current_chunk->element_count; i++) { for (int i = 0; i < current_chunk->element_count; i++) {
File* f = current_chunk->items[i]; File* f = current_chunk->items[i];
if (f->data->size > STREAM_THRESHOLD) if (f->data->size > STREAM_THRESHOLD && !config->use_compression)
continue; continue;
if (!file_load_data(f)) { if (!file_load_data(f)) {
log_message(LOG_LEVEL_ERROR, "Failed to load file data"); log_message(LOG_LEVEL_ERROR, "Failed to load file data");
continue; load_ok = false;
break;
} }
} }
if (!load_ok) {
chunk_destroy(current_chunk);
goto send_fail;
}
} }
if (send_chunk(client, current_chunk, config) != 0) { if (send_chunk(client, current_chunk, config) != 0) {
log_message(LOG_LEVEL_ERROR, "Failed to send chunk"); log_message(LOG_LEVEL_ERROR, "Failed to send chunk");
@@ -651,10 +655,7 @@ int send_files(Config* config) {
time_t now = time(NULL); time_t now = time(NULL);
if (now - last_progress >= 1) { if (now - last_progress >= 1) {
last_progress = now; last_progress = now;
double elapsed = difftime(now, start); print_transfer_progress(total_bytes, start, "");
double rate = elapsed > 0 ? total_bytes / (1048576.0 * elapsed) : 0;
fprintf(stderr, "\rSent %.1f MB (%.1f MB/s) ", total_bytes / 1048576.0, rate);
fflush(stderr);
} }
} }
chunk_destroy(current_chunk); chunk_destroy(current_chunk);
@@ -664,40 +665,39 @@ int send_files(Config* config) {
if (config->use_delete) { if (config->use_delete) {
if (send_delete_manifest(client->file_descriptor, manifest) != 0) { if (send_delete_manifest(client->file_descriptor, manifest) != 0) {
array_list_delete(manifest); array_list_delete(manifest);
manifest = NULL;
goto send_fail; goto send_fail;
} }
array_list_delete(manifest); array_list_delete(manifest);
manifest = NULL; manifest = NULL;
} }
if (!send_status(client->file_descriptor, STATUS_FINISHED)) bool ok = finalize_transfer(client);
goto send_fail; if (config->show_progress)
Status s; print_transfer_progress(total_bytes, start, "Done.\n");
int ok = receive_status(client->file_descriptor, &s) && s == STATUS_OK;
double elapsed_total = difftime(time(NULL), start);
if (config->show_progress) {
double rate = elapsed_total > 0 ? total_bytes / (1048576.0 * elapsed_total) : 0;
fprintf(stderr, "\rSent %.1f MB (%.1f MB/s) Done.\n", total_bytes / 1048576.0, rate);
}
if (config->stats) { if (config->stats) {
double elapsed_total = difftime(time(NULL), start);
double rate = elapsed_total > 0 ? total_bytes / (1048576.0 * elapsed_total) : 0; double rate = elapsed_total > 0 ? total_bytes / (1048576.0 * elapsed_total) : 0;
fprintf(stderr, "Stats: %d files, %.1f MB, %.1f MB/s\n", total_files, total_bytes / 1048576.0, fprintf(stderr, "Stats: %d files, %.1f MB, %.1f MB/s\n", total_files, total_bytes / 1048576.0,
rate); rate);
} }
directory_scanner_destroy(scanner); ret = ok ? 0 : 1;
client_disconnect(client);
client_delete(client);
return ok ? 0 : 1;
send_fail: send_fail:
/* Single cleanup path for all exits. The manifest is intentionally deleted
here even on success without --delete, fixing a pre-existing leak. */
if (manifest) if (manifest)
array_list_delete(manifest); array_list_delete(manifest);
directory_scanner_destroy(scanner); if (scanner)
client_disconnect(client); directory_scanner_destroy(scanner);
client_delete(client); disconnect_transfer_client(client);
return 1; protocol_session_unbind();
return ret;
} }
int send_files_multithreaded(Config* config) { int send_files_multithreaded(Config** config_ptr) {
if (!config_ptr || !*config_ptr)
return 1;
Config* config = *config_ptr;
if (config->dry_run) if (config->dry_run)
return send_dry_run_manifest(config); return send_dry_run_manifest(config);
@@ -728,8 +728,13 @@ int send_files_multithreaded(Config* config) {
queue_destroy(q2); queue_destroy(q2);
return 1; return 1;
} }
*config_ptr = NULL; /* context now owns config through all remaining paths */
if (config->use_delete) if (config->use_delete)
context->manifest = array_list_create(free); context->manifest = array_list_create(free);
if (config->use_delete && !context->manifest) {
pipeline_context_sender_destroy(context);
return 1;
}
thrd_t scanner, loader, sender; thrd_t scanner, loader, sender;
bool scanner_created = false; bool scanner_created = false;
@@ -743,7 +748,7 @@ int send_files_multithreaded(Config* config) {
sender_created = (thrd_create(&sender, send_chunks_multithreaded, context) == thrd_success); sender_created = (thrd_create(&sender, send_chunks_multithreaded, context) == thrd_success);
if (!scanner_created || !loader_created || !sender_created) { if (!scanner_created || !loader_created || !sender_created) {
perror("Error creating threads.\n"); log_perror("Error creating threads");
pipeline_cancel(context); pipeline_cancel(context);
mtx_lock(&context->mutex_progress); mtx_lock(&context->mutex_progress);
context->sender_done = true; context->sender_done = true;
@@ -763,7 +768,7 @@ int send_files_multithreaded(Config* config) {
if (config->show_progress) { if (config->show_progress) {
progress_created = (thrd_create(&progress, progress_thread_fn, context) == thrd_success); progress_created = (thrd_create(&progress, progress_thread_fn, context) == thrd_success);
if (!progress_created) { if (!progress_created) {
perror("Error creating progress thread.\n"); log_perror("Error creating progress thread");
/* Non-fatal; continue without progress reporting */ /* Non-fatal; continue without progress reporting */
} }
} }
+2 -1
View File
@@ -7,6 +7,7 @@
int send_chunk(Client* client, Chunk* chunk, Config* config); int send_chunk(Client* client, Chunk* chunk, Config* config);
int send_files(Config* config); int send_files(Config* config);
int send_files_multithreaded(Config* config); /* Takes ownership only when *config is set to NULL on return. */
int send_files_multithreaded(Config** config);
#endif #endif
+51
View File
@@ -0,0 +1,51 @@
#include "client_validation.h"
#include "log.h"
#include "usage.h"
#include <stdio.h>
/* Validate config after parsing. Returns true if valid. */
bool validate_config(const Config* config) {
if (!config->send_directory || !config->receive_root_directory) {
log_message(LOG_LEVEL_ERROR, "source and destination directories are required");
print_usage();
return false;
}
if (config->use_sendfile && (config->use_chunk_serialization || config->use_compression)) {
log_message(LOG_LEVEL_ERROR, "-f/--sendfile cannot be combined with -c (compression) or -s "
"(chunk serialization)");
return false;
}
if (config->transport == TRANSPORT_SSH && config->use_sendfile) {
log_message(LOG_LEVEL_ERROR, "-f/--sendfile is not supported with SSH transport");
return false;
}
if (config->use_incremental && config->use_chunk_serialization) {
log_message(LOG_LEVEL_ERROR, "--incremental is not supported with -s (chunk serialization)");
return false;
}
if (config->use_delta && !config->use_incremental) {
log_message(LOG_LEVEL_ERROR, "--delta requires --incremental");
return false;
}
if (config->use_delta && config->use_chunk_serialization) {
log_message(LOG_LEVEL_ERROR, "--delta cannot be combined with -s (chunk serialization)");
return false;
}
if (config->use_delta && config->use_sendfile) {
log_message(LOG_LEVEL_ERROR, "--delta cannot be combined with -f (sendfile)");
return false;
}
if (config->append || config->append_verify) {
fprintf(
stderr,
"Error: --append and --append-verify are not supported yet; refusing to ignore option\n");
return false;
}
if (config->use_tls) {
if (!config->tls_cert || !config->tls_key || !config->tls_ca) {
log_message(LOG_LEVEL_ERROR, "--tls requires --cert, --key, and --ca");
return false;
}
}
return true;
}
+9
View File
@@ -0,0 +1,9 @@
#ifndef CLIENT_VALIDATION_H
#define CLIENT_VALIDATION_H
#include "config.h"
#include <stdbool.h>
bool validate_config(const Config* config);
#endif
+367 -411
View File
@@ -1,3 +1,4 @@
#include "log.h"
#include "scanner.h" #include "scanner.h"
#include "array_list.h" #include "array_list.h"
#include "chunk.h" #include "chunk.h"
@@ -52,13 +53,84 @@ static bool safe_relative_link(const char* source_root, const char* containing_d
return safe; return safe;
} }
DirectoryScanner* directory_scanner_create(const char* root_directory, bool use_metadata, typedef struct {
unsigned long long chunk_size, char** exclude_patterns, char* path;
int exclude_count, char** include_patterns, struct stat stats;
int include_count, unsigned long long max_size, bool is_directory;
unsigned long long min_size, int max_depth, } ScannerEntry;
bool follow_symlinks, bool copy_links, bool safe_links,
bool copy_unsafe_links, bool checksum) { /* Inspect symlinks, resolve the entry type, and apply file filters once for both scanners. */
static int scanner_inspect_entry(const ScannerOptions* options, const char* source_root,
const char* containing_dir, const char* name,
ScannerEntry* entry) {
entry->path = path_cat(containing_dir, name);
if (!entry->path)
return -1;
struct stat link_stats;
if (lstat(entry->path, &link_stats) != 0) {
free(entry->path);
return 0;
}
bool is_symlink = S_ISLNK(link_stats.st_mode);
if (is_symlink && !options->follow_symlinks && !options->copy_links && !options->safe_links &&
!options->copy_unsafe_links)
goto skip;
if (is_symlink && options->safe_links) {
char link_target[4096];
ssize_t length = readlink(entry->path, link_target, sizeof(link_target) - 1);
if (length < 0)
goto skip;
link_target[length] = '\0';
if (link_target[0] == '/' || !safe_relative_link(source_root, containing_dir, link_target))
goto skip;
}
if (is_symlink && options->copy_unsafe_links && !options->copy_links) {
char link_target[4096];
ssize_t length = readlink(entry->path, link_target, sizeof(link_target) - 1);
if (length < 0)
goto skip;
link_target[length] = '\0';
if (link_target[0] != '/')
goto skip;
}
if (is_symlink && options->follow_symlinks && !options->copy_links)
entry->stats = link_stats;
else if (stat(entry->path, &entry->stats) != 0)
goto skip;
entry->is_directory = S_ISDIR(entry->stats.st_mode);
if (entry->is_directory)
return 1;
for (int i = 0; i < options->exclude_count; i++)
if (glob_match(options->exclude_patterns[i], name))
goto skip;
if (options->include_count > 0) {
bool included = false;
for (int i = 0; i < options->include_count; i++)
if (glob_match(options->include_patterns[i], name))
included = true;
if (!included)
goto skip;
}
if ((options->max_size > 0 && (unsigned long long)entry->stats.st_size > options->max_size) ||
(options->min_size > 0 && (unsigned long long)entry->stats.st_size < options->min_size))
goto skip;
return 1;
skip:
free(entry->path);
entry->path = NULL;
return 0;
}
DirectoryScanner* directory_scanner_create_with_options(const char* root_directory,
const ScannerOptions* options) {
if (!root_directory || !options)
return NULL;
DirectoryScanner* scanner = calloc(1, sizeof(DirectoryScanner)); DirectoryScanner* scanner = calloc(1, sizeof(DirectoryScanner));
if (scanner == NULL) if (scanner == NULL)
return NULL; return NULL;
@@ -69,21 +141,21 @@ DirectoryScanner* directory_scanner_create(const char* root_directory, bool use_
} }
scanner->current_dir = NULL; scanner->current_dir = NULL;
scanner->current_path = NULL; scanner->current_path = NULL;
scanner->use_metadata = use_metadata; scanner->use_metadata = options->use_metadata;
scanner->chunk_size = chunk_size > 0 ? chunk_size : DESIRED_CHUNK_SIZE; scanner->chunk_size = options->chunk_size > 0 ? options->chunk_size : DESIRED_CHUNK_SIZE;
scanner->exclude_patterns = exclude_patterns; scanner->exclude_patterns = options->exclude_patterns;
scanner->exclude_count = exclude_count; scanner->exclude_count = options->exclude_count;
scanner->include_patterns = include_patterns; scanner->include_patterns = options->include_patterns;
scanner->include_count = include_count; scanner->include_count = options->include_count;
scanner->max_size = max_size; scanner->max_size = options->max_size;
scanner->min_size = min_size; scanner->min_size = options->min_size;
scanner->max_depth = max_depth; scanner->max_depth = options->max_depth;
scanner->current_depth = 0; scanner->current_depth = 0;
scanner->follow_symlinks = follow_symlinks; scanner->follow_symlinks = options->follow_symlinks;
scanner->copy_links = copy_links; scanner->copy_links = options->copy_links;
scanner->safe_links = safe_links; scanner->safe_links = options->safe_links;
scanner->copy_unsafe_links = copy_unsafe_links; scanner->copy_unsafe_links = options->copy_unsafe_links;
scanner->checksum = checksum; scanner->checksum = options->checksum;
scanner->failed = false; scanner->failed = false;
DirEntry* root = dir_entry_create(root_directory, 0); DirEntry* root = dir_entry_create(root_directory, 0);
if (!root) { if (!root) {
@@ -100,6 +172,20 @@ DirectoryScanner* directory_scanner_create(const char* root_directory, bool use_
return scanner; return scanner;
} }
DirectoryScanner* directory_scanner_create(const char* root_directory, bool use_metadata,
unsigned long long chunk_size, char** exclude_patterns,
int exclude_count, char** include_patterns,
int include_count, unsigned long long max_size,
unsigned long long min_size, int max_depth,
bool follow_symlinks, bool copy_links, bool safe_links,
bool copy_unsafe_links, bool checksum) {
ScannerOptions options = {
use_metadata, chunk_size, exclude_patterns, exclude_count, include_patterns,
include_count, max_size, min_size, max_depth, 0,
follow_symlinks, copy_links, safe_links, copy_unsafe_links, checksum};
return directory_scanner_create_with_options(root_directory, &options);
}
void directory_scanner_destroy(DirectoryScanner* scanner) { void directory_scanner_destroy(DirectoryScanner* scanner) {
if (scanner == NULL) if (scanner == NULL)
return; return;
@@ -141,7 +227,7 @@ static int open_next_directory(DirectoryScanner* scanner) {
free(de); free(de);
scanner->current_dir = opendir(scanner->current_path); scanner->current_dir = opendir(scanner->current_path);
if (scanner->current_dir == NULL) { if (scanner->current_dir == NULL) {
perror("Could not open directory"); log_perror("Could not open directory");
free(scanner->current_path); free(scanner->current_path);
scanner->current_path = NULL; scanner->current_path = NULL;
scanner->failed = true; scanner->failed = true;
@@ -167,7 +253,7 @@ Chunk* directory_scanner_next(DirectoryScanner* scanner) {
break; break;
} }
struct dirent* entry = readdir(scanner->current_dir); const struct dirent* entry = readdir(scanner->current_dir);
if (entry == NULL) { if (entry == NULL) {
closedir(scanner->current_dir); closedir(scanner->current_dir);
scanner->current_dir = NULL; scanner->current_dir = NULL;
@@ -179,67 +265,27 @@ Chunk* directory_scanner_next(DirectoryScanner* scanner) {
if (strcmp(entry->d_name, ".") == 0 || strcmp(entry->d_name, "..") == 0) if (strcmp(entry->d_name, ".") == 0 || strcmp(entry->d_name, "..") == 0)
continue; continue;
char* cur_path = path_cat(scanner->current_path, entry->d_name); ScannerOptions options = {scanner->use_metadata, scanner->chunk_size,
if (!cur_path) { scanner->exclude_patterns, scanner->exclude_count,
scanner->include_patterns, scanner->include_count,
scanner->max_size, scanner->min_size,
scanner->max_depth, 0,
scanner->follow_symlinks, scanner->copy_links,
scanner->safe_links, scanner->copy_unsafe_links,
scanner->checksum};
ScannerEntry inspected;
int inspection = scanner_inspect_entry(&options, scanner->current_path, scanner->current_path,
entry->d_name, &inspected);
if (inspection < 0) {
scanner->failed = true; scanner->failed = true;
break; break;
} }
struct stat stats; if (inspection == 0)
struct stat lstats;
bool is_symlink = false;
if (lstat(cur_path, &lstats) != 0) {
free(cur_path);
continue; continue;
} char* cur_path = inspected.path;
is_symlink = S_ISLNK(lstats.st_mode); struct stat stats = inspected.stats;
if (is_symlink && !scanner->follow_symlinks && !scanner->copy_links && !scanner->safe_links && if (inspected.is_directory) {
!scanner->copy_unsafe_links) {
free(cur_path);
continue;
}
if (is_symlink && scanner->safe_links) {
char link_target[4096];
ssize_t len = readlink(cur_path, link_target, sizeof(link_target) - 1);
if (len < 0) {
free(cur_path);
continue;
}
link_target[len] = '\0';
if (link_target[0] == '/' ||
!safe_relative_link(scanner->current_path, scanner->current_path, link_target)) {
free(cur_path);
continue;
}
}
if (is_symlink && scanner->copy_unsafe_links && !scanner->copy_links) {
char link_target[4096];
ssize_t len = readlink(cur_path, link_target, sizeof(link_target) - 1);
if (len < 0) {
free(cur_path);
continue;
}
link_target[len] = '\0';
bool unsafe = (link_target[0] == '/');
if (!unsafe) {
free(cur_path);
continue;
}
}
bool use_lstat = is_symlink && scanner->follow_symlinks && !scanner->copy_links;
if (use_lstat) {
stats = lstats;
} else {
if (stat(cur_path, &stats) != 0) {
free(cur_path);
continue;
}
}
if (S_ISDIR(stats.st_mode)) {
int next_depth = scanner->current_depth + 1; int next_depth = scanner->current_depth + 1;
if (scanner->max_depth <= 0 || next_depth < scanner->max_depth) { if (scanner->max_depth <= 0 || next_depth < scanner->max_depth) {
DirEntry* de = dir_entry_create(cur_path, next_depth); DirEntry* de = dir_entry_create(cur_path, next_depth);
@@ -254,38 +300,6 @@ Chunk* directory_scanner_next(DirectoryScanner* scanner) {
free(cur_path); free(cur_path);
continue; continue;
} }
bool excluded = false;
for (int i = 0; i < scanner->exclude_count; i++) {
if (glob_match(scanner->exclude_patterns[i], entry->d_name)) {
excluded = true;
break;
}
}
if (excluded) {
free(cur_path);
continue;
}
if (scanner->include_count > 0) {
bool included = false;
for (int i = 0; i < scanner->include_count; i++) {
if (glob_match(scanner->include_patterns[i], entry->d_name)) {
included = true;
break;
}
}
if (!included) {
free(cur_path);
continue;
}
}
if ((scanner->max_size > 0 && (unsigned long long)stats.st_size > scanner->max_size) ||
(scanner->min_size > 0 && (unsigned long long)stats.st_size < scanner->min_size)) {
free(cur_path);
continue;
}
File* file = file_create(cur_path); File* file = file_create(cur_path);
if (file == NULL) { if (file == NULL) {
free(cur_path); free(cur_path);
@@ -336,29 +350,13 @@ typedef struct {
ParallelScanner* ps; ParallelScanner* ps;
char** dirs; char** dirs;
int dir_count; int dir_count;
bool use_metadata; ScannerOptions options;
unsigned long long chunk_size;
char** exclude_patterns;
int exclude_count;
char** include_patterns;
int include_count;
unsigned long long max_size;
unsigned long long min_size;
int max_depth;
bool follow_symlinks;
bool copy_links;
bool safe_links;
bool copy_unsafe_links;
bool checksum;
} ParallelWorkerArg; } ParallelWorkerArg;
static int parallel_worker_thread(void* arg) { static int parallel_worker_thread(void* arg) {
ParallelWorkerArg* wa = (ParallelWorkerArg*)arg; ParallelWorkerArg* wa = (ParallelWorkerArg*)arg;
for (int i = 0; i < wa->dir_count; i++) { for (int i = 0; i < wa->dir_count; i++) {
DirectoryScanner* ds = directory_scanner_create( DirectoryScanner* ds = directory_scanner_create_with_options(wa->dirs[i], &wa->options);
wa->dirs[i], wa->use_metadata, wa->chunk_size, wa->exclude_patterns, wa->exclude_count,
wa->include_patterns, wa->include_count, wa->max_size, wa->min_size, wa->max_depth,
wa->follow_symlinks, wa->copy_links, wa->safe_links, wa->copy_unsafe_links, wa->checksum);
if (!ds) { if (!ds) {
mtx_lock(&wa->ps->result_mutex); mtx_lock(&wa->ps->result_mutex);
wa->ps->failed = true; wa->ps->failed = true;
@@ -366,6 +364,8 @@ static int parallel_worker_thread(void* arg) {
cnd_broadcast(&wa->ps->result_not_empty); cnd_broadcast(&wa->ps->result_not_empty);
cnd_broadcast(&wa->ps->result_not_full); cnd_broadcast(&wa->ps->result_not_full);
mtx_unlock(&wa->ps->result_mutex); mtx_unlock(&wa->ps->result_mutex);
for (int j = i; j < wa->dir_count; j++)
free(wa->dirs[j]);
break; break;
} }
Chunk* chunk; Chunk* chunk;
@@ -401,21 +401,23 @@ static int parallel_worker_thread(void* arg) {
return thrd_success; return thrd_success;
} }
ParallelScanner* parallel_scanner_create(char* root_directory, bool use_metadata, static void parallel_scanner_creation_failed(ParallelScanner* ps) {
unsigned long long chunk_size, char** exclude_patterns, mtx_lock(&ps->result_mutex);
int exclude_count, char** include_patterns, ps->failed = true;
int include_count, unsigned long long max_size, atomic_store(&ps->cancelled, true);
unsigned long long min_size, int max_depth, ps->expected_threads = ps->created_threads;
int num_threads, bool follow_symlinks, bool copy_links, if (ps->completed >= ps->expected_threads)
bool safe_links, bool copy_unsafe_links, bool checksum) { ps->done = true;
ParallelScanner* ps = calloc(1, sizeof(ParallelScanner)); cnd_broadcast(&ps->result_not_empty);
if (!ps) cnd_broadcast(&ps->result_not_full);
return NULL; mtx_unlock(&ps->result_mutex);
}
/* Initialize result queue and synchronization primitives. Returns true on success. */
static bool parallel_scanner_init(ParallelScanner* ps) {
ps->result_queue = queue_create(100, chunk_destroy); ps->result_queue = queue_create(100, chunk_destroy);
if (!ps->result_queue) { if (!ps->result_queue)
free(ps); return false;
return NULL;
}
atomic_init(&ps->cancelled, false); atomic_init(&ps->cancelled, false);
int init = 0; int init = 0;
bool ok = true; bool ok = true;
@@ -440,14 +442,220 @@ ParallelScanner* parallel_scanner_create(char* root_directory, bool use_metadata
if (init >= 1) if (init >= 1)
mtx_destroy(&ps->result_mutex); mtx_destroy(&ps->result_mutex);
queue_destroy(ps->result_queue); queue_destroy(ps->result_queue);
free(ps); ps->result_queue = NULL;
return false;
}
return true;
}
/* Split files into chunks of roughly chunk_size bytes. Returns the first chunk (also stored
* chunks beyond the first are enqueued on `queue`). Nulls out consumed entries in `files`.
* Sets *failed on allocation/enqueue errors. */
static Chunk* batch_files(ArrayList* files, unsigned long long chunk_size, Queue* queue,
bool* failed) {
Chunk* first = NULL;
if (files->size <= 0)
return NULL;
ArrayList* batch = array_list_create(NULL);
if (!batch) {
*failed = true;
return NULL; return NULL;
} }
unsigned long long batch_size = 0;
for (int i = 0; i < files->size; i++) {
File* f = (File*)files->items[i];
if (!array_list_add(batch, f)) {
*failed = true;
break;
}
batch_size += f->data->size;
if (batch_size >= chunk_size || i == files->size - 1) {
void** items = array_list_to_array(batch);
if (!items) {
*failed = true;
array_list_delete(batch);
batch = NULL;
break;
}
Chunk* c = chunk_create((File**)items, batch->size);
free(items);
if (!c) {
*failed = true;
array_list_delete(batch);
batch = NULL;
break;
}
int batch_start = i - batch->size + 1;
for (int j = batch_start; j <= i; j++)
files->items[j] = NULL;
batch->item_destroyer = NULL;
array_list_delete(batch);
batch = NULL;
if (!first) {
first = c;
} else {
if (!queue_enqueue(queue, c)) {
chunk_destroy(c);
*failed = true;
}
}
if (i < files->size - 1) {
batch = array_list_create(NULL);
if (!batch) {
*failed = true;
break;
}
batch_size = 0;
}
}
}
if (batch) {
batch->item_destroyer = NULL;
array_list_delete(batch);
}
return first;
}
/* Scan one root-directory entry into either the subdirs or files list. */
static void scan_root_entry(const ScannerOptions* options, const char* root_directory,
const struct dirent* entry, ArrayList* root_files, ArrayList* subdirs,
ParallelScanner* ps) {
ScannerEntry inspected;
int inspection =
scanner_inspect_entry(options, root_directory, root_directory, entry->d_name, &inspected);
if (inspection < 0) {
ps->failed = true;
return;
}
if (inspection == 0)
return;
char* cur_path = inspected.path;
struct stat st = inspected.stats;
if (inspected.is_directory) {
if (!array_list_add(subdirs, cur_path)) {
free(cur_path);
ps->failed = true;
}
return;
}
File* file = file_create(cur_path);
free(cur_path);
if (!file) {
ps->failed = true;
return;
}
file->data->size = st.st_size;
if (options->use_metadata)
file->metadata = file_metadata_create(&st);
if (options->use_metadata && !file->metadata) {
file_destroy(file);
ps->failed = true;
return;
}
if (!array_list_add(root_files, file)) {
file_destroy(file);
ps->failed = true;
}
}
/* Scan the root directory itself, collecting root files and subdirectories.
* Returns false if the root directory could not be opened. */
static bool scan_root_directory(ParallelScanner* ps, const char* root_directory,
const ScannerOptions* options, ArrayList* root_files,
ArrayList* subdirs) {
DIR* dir = opendir(root_directory); DIR* dir = opendir(root_directory);
if (!dir) { if (!dir) {
perror("Could not open root directory for parallel scan"); log_perror("Could not open root directory for parallel scan");
parallel_scanner_destroy(ps); return false;
}
const struct dirent* entry;
while ((entry = readdir(dir)) != NULL) {
if (strcmp(entry->d_name, ".") == 0 || strcmp(entry->d_name, "..") == 0)
continue;
scan_root_entry(options, root_directory, entry, root_files, subdirs, ps);
}
closedir(dir);
return true;
}
/* Spawn worker threads, one per group of subdirectories. */
static void spawn_parallel_workers(ParallelScanner* ps, ArrayList* subdirs,
const ScannerOptions* options, unsigned long long cs) {
if (subdirs->size <= 0)
return;
int n = options->num_threads > 0 ? options->num_threads : 4;
if (n > subdirs->size)
n = subdirs->size;
ps->num_threads = n;
ps->expected_threads = n;
ps->threads = calloc(n, sizeof(thrd_t));
if (!ps->threads) {
ps->num_threads = 0;
ps->expected_threads = 0;
ps->failed = true;
return;
}
int dirs_per_thread = subdirs->size / n;
int remainder = subdirs->size % n;
int start = 0;
ps->num_threads = 0;
for (int t = 0; t < n; t++) {
int count = dirs_per_thread + (t < remainder ? 1 : 0);
if (count == 0)
break;
ParallelWorkerArg* wa = calloc(1, sizeof(ParallelWorkerArg));
if (!wa) {
parallel_scanner_creation_failed(ps);
break;
}
wa->ps = ps;
wa->dirs = calloc(count, sizeof(char*));
if (!wa->dirs) {
free(wa);
parallel_scanner_creation_failed(ps);
break;
}
bool dup_ok = true;
for (int j = 0; j < count; j++) {
wa->dirs[j] = str_dup((char*)subdirs->items[start + j]);
if (!wa->dirs[j])
dup_ok = false;
}
if (!dup_ok) {
for (int j = 0; j < count; j++)
free(wa->dirs[j]);
free(wa->dirs);
free(wa);
parallel_scanner_creation_failed(ps);
break;
}
wa->dir_count = count;
wa->options = *options;
wa->options.chunk_size = cs;
start += count;
if (thrd_create(&ps->threads[t], parallel_worker_thread, wa) != thrd_success) {
for (int j = 0; j < count; j++)
free(wa->dirs[j]);
free(wa->dirs);
free(wa);
parallel_scanner_creation_failed(ps);
break;
}
ps->num_threads++;
ps->created_threads++;
}
}
ParallelScanner* parallel_scanner_create_with_options(const char* root_directory,
const ScannerOptions* options) {
if (!root_directory || !options)
return NULL;
ParallelScanner* ps = calloc(1, sizeof(ParallelScanner));
if (!ps)
return NULL;
if (!parallel_scanner_init(ps)) {
free(ps);
return NULL; return NULL;
} }
@@ -456,279 +664,22 @@ ParallelScanner* parallel_scanner_create(char* root_directory, bool use_metadata
if (!root_files || !subdirs) { if (!root_files || !subdirs) {
array_list_delete(root_files); array_list_delete(root_files);
array_list_delete(subdirs); array_list_delete(subdirs);
closedir(dir);
parallel_scanner_destroy(ps); parallel_scanner_destroy(ps);
return NULL; return NULL;
} }
struct dirent* entry;
while ((entry = readdir(dir)) != NULL) {
if (strcmp(entry->d_name, ".") == 0 || strcmp(entry->d_name, "..") == 0)
continue;
char* cur_path = path_cat(root_directory, entry->d_name);
if (!cur_path)
continue;
struct stat lstats;
if (lstat(cur_path, &lstats) != 0) {
free(cur_path);
continue;
}
bool is_symlink = S_ISLNK(lstats.st_mode);
// Skip symlinks unless the user explicitly enabled following/copying them. if (!scan_root_directory(ps, root_directory, options, root_files, subdirs)) {
if (is_symlink && !follow_symlinks && !copy_links && !safe_links && !copy_unsafe_links) { array_list_delete(root_files);
free(cur_path); array_list_delete(subdirs);
continue; parallel_scanner_destroy(ps);
} return NULL;
// --safe-links: reject symlinks pointing outside the source tree.
if (is_symlink && safe_links) {
char link_target[4096];
ssize_t len = readlink(cur_path, link_target, sizeof(link_target) - 1);
if (len < 0) {
free(cur_path);
continue;
}
link_target[len] = 0;
if (link_target[0] == '/' ||
!safe_relative_link(root_directory, root_directory, link_target)) {
free(cur_path);
continue;
}
}
// --copy-unsafe-links (without --copy-links): only copy absolute symlinks.
if (is_symlink && copy_unsafe_links && !copy_links) {
char link_target[4096];
ssize_t len = readlink(cur_path, link_target, sizeof(link_target) - 1);
if (len < 0) {
free(cur_path);
continue;
}
link_target[len] = 0;
bool unsafe = (link_target[0] == '/');
if (!unsafe) {
free(cur_path);
continue;
}
}
// Determine whether to use lstat or stat results for the entry.
struct stat st;
bool use_lstat_res = is_symlink && follow_symlinks && !copy_links;
if (use_lstat_res) {
st = lstats;
} else {
if (stat(cur_path, &st) != 0) {
free(cur_path);
continue;
}
}
if (S_ISDIR(st.st_mode)) {
if (!array_list_add(subdirs, cur_path)) {
free(cur_path);
ps->failed = true;
}
} else {
bool excluded = false;
for (int i = 0; i < exclude_count; i++) {
if (glob_match(exclude_patterns[i], entry->d_name)) {
excluded = true;
break;
}
}
if (excluded) {
free(cur_path);
continue;
}
if (include_count > 0) {
bool included = false;
for (int i = 0; i < include_count; i++) {
if (glob_match(include_patterns[i], entry->d_name)) {
included = true;
break;
}
}
if (!included) {
free(cur_path);
continue;
}
}
if ((max_size > 0 && (unsigned long long)st.st_size > max_size) ||
(min_size > 0 && (unsigned long long)st.st_size < min_size)) {
free(cur_path);
continue;
}
File* file = file_create(cur_path);
free(cur_path);
if (!file) {
ps->failed = true;
continue;
}
file->data->size = st.st_size;
if (use_metadata)
file->metadata = file_metadata_create(&st);
if (use_metadata && !file->metadata) {
file_destroy(file);
ps->failed = true;
continue;
}
if (!array_list_add(root_files, file)) {
file_destroy(file);
ps->failed = true;
}
}
} }
closedir(dir);
unsigned long long cs = chunk_size > 0 ? chunk_size : DESIRED_CHUNK_SIZE; unsigned long long cs = options->chunk_size > 0 ? options->chunk_size : DESIRED_CHUNK_SIZE;
if (root_files->size > 0) { ps->initial_chunk = batch_files(root_files, cs, ps->result_queue, &ps->failed);
ArrayList* batch = array_list_create(NULL);
if (!batch) {
ps->failed = true;
array_list_delete(root_files);
array_list_delete(subdirs);
parallel_scanner_destroy(ps);
return NULL;
}
unsigned long long batch_size = 0;
Chunk* first = NULL;
for (int i = 0; i < root_files->size; i++) {
File* f = (File*)root_files->items[i];
if (!array_list_add(batch, f)) {
ps->failed = true;
break;
}
batch_size += f->data->size;
if (batch_size >= cs || i == root_files->size - 1) {
void** items = array_list_to_array(batch);
if (!items) {
ps->failed = true;
batch->item_destroyer = file_destroy;
array_list_delete(batch);
batch = NULL;
break;
}
Chunk* c = chunk_create((File**)items, batch->size);
free(items);
if (!c) {
ps->failed = true;
batch->item_destroyer = file_destroy;
array_list_delete(batch);
batch = NULL;
break;
}
batch->item_destroyer = NULL;
array_list_delete(batch);
batch = NULL;
if (!first) {
first = c;
} else {
if (!queue_enqueue(ps->result_queue, c)) {
chunk_destroy(c);
ps->failed = true;
}
}
if (i < root_files->size - 1) {
batch = array_list_create(NULL);
if (!batch) {
ps->failed = true;
break;
}
batch_size = 0;
}
}
}
if (batch) {
batch->item_destroyer = NULL;
array_list_delete(batch);
}
ps->initial_chunk = first;
root_files->item_destroyer = NULL;
}
array_list_delete(root_files); array_list_delete(root_files);
int n = num_threads > 0 ? num_threads : 4; spawn_parallel_workers(ps, subdirs, options, cs);
if (n > subdirs->size)
n = subdirs->size > 0 ? subdirs->size : 1;
if (subdirs->size > 0) {
ps->num_threads = n;
ps->expected_threads = n;
ps->threads = calloc(n, sizeof(thrd_t));
if (!ps->threads) {
array_list_delete(subdirs);
parallel_scanner_destroy(ps);
return NULL;
}
int dirs_per_thread = subdirs->size / n;
int remainder = subdirs->size % n;
int start = 0;
ps->num_threads = 0;
for (int t = 0; t < n; t++) {
int count = dirs_per_thread + (t < remainder ? 1 : 0);
if (count == 0)
break;
ParallelWorkerArg* wa = calloc(1, sizeof(ParallelWorkerArg));
if (!wa) {
ps->failed = true;
break;
}
wa->ps = ps;
wa->dirs = calloc(count, sizeof(char*));
if (!wa->dirs) {
free(wa);
ps->failed = true;
break;
}
bool dup_ok = true;
for (int j = 0; j < count; j++) {
wa->dirs[j] = str_dup((char*)subdirs->items[start + j]);
if (!wa->dirs[j])
dup_ok = false;
}
if (!dup_ok) {
for (int j = 0; j < count; j++)
free(wa->dirs[j]);
free(wa->dirs);
free(wa);
ps->failed = true;
break;
}
wa->dir_count = count;
wa->use_metadata = use_metadata;
wa->chunk_size = cs;
wa->exclude_patterns = exclude_patterns;
wa->exclude_count = exclude_count;
wa->include_patterns = include_patterns;
wa->include_count = include_count;
wa->max_size = max_size;
wa->min_size = min_size;
wa->max_depth = max_depth;
wa->follow_symlinks = follow_symlinks;
wa->copy_links = copy_links;
wa->safe_links = safe_links;
wa->copy_unsafe_links = copy_unsafe_links;
wa->checksum = checksum;
start += count;
if (thrd_create(&ps->threads[t], parallel_worker_thread, wa) != thrd_success) {
for (int j = 0; j < count; j++)
free(wa->dirs[j]);
free(wa->dirs);
free(wa);
ps->failed = true;
atomic_store(&ps->cancelled, true);
ps->expected_threads = ps->created_threads;
mtx_lock(&ps->result_mutex);
cnd_broadcast(&ps->result_not_empty);
cnd_broadcast(&ps->result_not_full);
mtx_unlock(&ps->result_mutex);
break;
}
ps->num_threads++;
ps->created_threads++;
}
}
array_list_delete(subdirs); array_list_delete(subdirs);
return ps; return ps;
} }
@@ -741,6 +692,11 @@ Chunk* parallel_scanner_next(ParallelScanner* ps) {
} }
if (ps->num_threads == 0) { if (ps->num_threads == 0) {
mtx_lock(&ps->result_mutex); mtx_lock(&ps->result_mutex);
if (!queue_is_empty(ps->result_queue)) {
Chunk* chunk = queue_dequeue(ps->result_queue);
mtx_unlock(&ps->result_mutex);
return chunk;
}
ps->done = true; ps->done = true;
mtx_unlock(&ps->result_mutex); mtx_unlock(&ps->result_mutex);
return NULL; return NULL;
+22 -7
View File
@@ -8,6 +8,24 @@
#include <threads.h> #include <threads.h>
#include <stdatomic.h> #include <stdatomic.h>
typedef struct {
bool use_metadata;
unsigned long long chunk_size;
char** exclude_patterns;
int exclude_count;
char** include_patterns;
int include_count;
unsigned long long max_size;
unsigned long long min_size;
int max_depth;
int num_threads;
bool follow_symlinks;
bool copy_links;
bool safe_links;
bool copy_unsafe_links;
bool checksum;
} ScannerOptions;
typedef struct { typedef struct {
Queue* directories; Queue* directories;
DIR* current_dir; DIR* current_dir;
@@ -53,17 +71,14 @@ DirectoryScanner* directory_scanner_create(const char* root_directory, bool use_
unsigned long long min_size, int max_depth, unsigned long long min_size, int max_depth,
bool follow_symlinks, bool copy_links, bool safe_links, bool follow_symlinks, bool copy_links, bool safe_links,
bool copy_unsafe_links, bool checksum); bool copy_unsafe_links, bool checksum);
DirectoryScanner* directory_scanner_create_with_options(const char* root_directory,
const ScannerOptions* options);
Chunk* directory_scanner_next(DirectoryScanner* scanner); Chunk* directory_scanner_next(DirectoryScanner* scanner);
bool directory_scanner_failed(const DirectoryScanner* scanner); bool directory_scanner_failed(const DirectoryScanner* scanner);
void directory_scanner_destroy(DirectoryScanner* scanner); void directory_scanner_destroy(DirectoryScanner* scanner);
ParallelScanner* parallel_scanner_create(char* root_directory, bool use_metadata, ParallelScanner* parallel_scanner_create_with_options(const char* root_directory,
unsigned long long chunk_size, char** exclude_patterns, const ScannerOptions* options);
int exclude_count, char** include_patterns,
int include_count, unsigned long long max_size,
unsigned long long min_size, int max_depth,
int num_threads, bool follow_symlinks, bool copy_links,
bool safe_links, bool copy_unsafe_links, bool checksum);
Chunk* parallel_scanner_next(ParallelScanner* scanner); Chunk* parallel_scanner_next(ParallelScanner* scanner);
bool parallel_scanner_failed(const ParallelScanner* scanner); bool parallel_scanner_failed(const ParallelScanner* scanner);
void parallel_scanner_destroy(ParallelScanner* scanner); void parallel_scanner_destroy(ParallelScanner* scanner);
+4 -2
View File
@@ -1,8 +1,9 @@
#include "stdio.h" #include "usage.h"
#include <stdio.h>
#include <delta.h> #include <delta.h>
#include <chunk.h> #include <chunk.h>
static __attribute__((unused)) void print_usage() { void print_usage(void) {
printf("Usage:\n"); printf("Usage:\n");
printf(" fastsync [options] <source> <destination>\n"); printf(" fastsync [options] <source> <destination>\n");
printf(" fastsync [options] --source-dir <src> --dest-dir <dst>\n"); printf(" fastsync [options] --source-dir <src> --dest-dir <dst>\n");
@@ -27,6 +28,7 @@ static __attribute__((unused)) void print_usage() {
printf(" --max-size <n> Skip files larger than n bytes\n"); printf(" --max-size <n> Skip files larger than n bytes\n");
printf(" --min-size <n> Skip files smaller than n bytes\n"); printf(" --min-size <n> Skip files smaller than n bytes\n");
printf(" --incremental Skip files unchanged since last transfer\n"); printf(" --incremental Skip files unchanged since last transfer\n");
printf(" --existing Skip files not already present at destination\n");
printf(" --delta Delta transfer for changed files (requires --incremental)\n"); printf(" --delta Delta transfer for changed files (requires --incremental)\n");
printf(" --delta-block <n> Delta block size in bytes (default: %d)\n", printf(" --delta-block <n> Delta block size in bytes (default: %d)\n",
DELTA_BLOCK_SIZE_DEFAULT); DELTA_BLOCK_SIZE_DEFAULT);
+6
View File
@@ -0,0 +1,6 @@
#ifndef USAGE_H
#define USAGE_H
void print_usage(void);
#endif
+142
View File
@@ -0,0 +1,142 @@
#include "receiver.h"
#include "chunk.h"
#include "log.h"
#include "protocol.h"
#include "utils.h"
#include <stdlib.h>
#include <sys/stat.h>
static bool receiver_process_chunk(Chunk* chunk, const ReceiverSink* sink) {
if (!chunk || !sink || !sink->store_file)
return false;
for (int i = 0; i < chunk->element_count; i++) {
File* file = chunk->items[i];
if (!file) {
chunk_destroy(chunk);
return false;
}
chunk->items[i] = NULL;
if (!sink->store_file(file, sink->context)) {
chunk_destroy(chunk);
return false;
}
}
chunk_destroy(chunk);
return true;
}
static bool receiver_process_batch(Config* config, int file_descriptor) {
int count;
if (config->checksum || !receive_int(file_descriptor, &count) || count < 0 ||
count > MAX_MANIFEST_ENTRIES)
return false;
for (int i = 0; i < count; i++) {
char* check_path = receive_str(file_descriptor);
if (!check_path)
return false;
unsigned long long check_size;
long long check_mtime;
if (!receive_n_data(file_descriptor, &check_size, sizeof(check_size)) ||
!receive_n_data(file_descriptor, &check_mtime, sizeof(check_mtime))) {
free(check_path);
return false;
}
if (!utils_valid_batch_path(check_path)) {
free(check_path);
send_status(file_descriptor, STATUS_ERROR);
return false;
}
if (check_size > MAX_RECEIVE_FILE_SIZE) {
free(check_path);
send_status(file_descriptor, STATUS_ERROR);
return false;
}
char* full_path = path_cat(config->receive_root_directory, check_path);
if (!full_path) {
free(check_path);
send_status(file_descriptor, STATUS_ERROR);
return false;
}
struct stat st;
bool has_old = file_stat_secure(full_path, &st);
bool match = has_old && (unsigned long long)st.st_size == check_size &&
(long long)st.st_mtime == check_mtime;
bool sent = send_status(file_descriptor, match ? STATUS_OK : STATUS_NEXT);
free(full_path);
free(check_path);
if (!sent)
return false;
}
return true;
}
int receiver_process(Config* config, int file_descriptor, const ReceiverSink* sink) {
Status status;
if (!receive_status(file_descriptor, &status))
return -1;
while (status == STATUS_NEXT || status == STATUS_CHUNK || status == STATUS_CHECK ||
status == STATUS_KEEPALIVE || status == STATUS_ABORT || status == STATUS_CHECK_BATCH) {
if (status == STATUS_KEEPALIVE) {
if (!send_status(file_descriptor, STATUS_KEEPALIVE))
return -1;
goto next;
}
if (status == STATUS_ABORT) {
log_message(LOG_LEVEL_INFO, "Received abort from client, cleaning up");
return -1;
}
if (status == STATUS_CHECK) {
bool skipped;
File* file = receive_incremental_check(file_descriptor, config, &skipped);
if (!skipped && (!file || !sink->store_file(file, sink->context)))
goto receive_error;
} else if (status == STATUS_CHUNK) {
Chunk* chunk = receive_chunk_data(file_descriptor, config);
if (!chunk || !receiver_process_chunk(chunk, sink))
goto receive_error;
} else if (status == STATUS_CHECK_BATCH) {
if (!receiver_process_batch(config, file_descriptor))
return -1;
goto next;
} else {
File* file = file_receive(config, file_descriptor);
if (!file) {
log_message(LOG_LEVEL_ERROR, "Failed to receive file");
goto receive_error;
}
if (!sink->store_file(file, sink->context))
goto receive_error;
}
next:
if (!receive_status(file_descriptor, &status))
goto receive_error;
}
if (status == STATUS_MANIFEST && receive_manifest(file_descriptor, config, &status) != 0)
return -1;
if (status != STATUS_FINISHED) {
log_message(LOG_LEVEL_ERROR, "Did not receive FINISHED Status");
goto receive_error;
}
if (sink->send_success && !send_status(file_descriptor, STATUS_OK))
return -1;
return 0;
receive_error:
if (sink->send_error)
send_status(file_descriptor, STATUS_ERROR);
return -1;
}
static bool receiver_save_file(File* file, void* context) {
Config* config = context;
bool success =
!config->save_to_disk || file_save_to_disk(config->receive_root_directory, file, config);
file_destroy(file);
return success;
}
int receiver_receive_files(Config* config, int file_descriptor) {
ReceiverSink sink = {receiver_save_file, config, true, true};
return receiver_process(config, file_descriptor, &sink);
}
+19
View File
@@ -0,0 +1,19 @@
#ifndef RECEIVER_H
#define RECEIVER_H
#include "config.h"
#include "file.h"
typedef bool (*ReceiverFileSink)(File* file, void* context);
typedef struct {
ReceiverFileSink store_file;
void* context;
bool send_error;
bool send_success;
} ReceiverSink;
int receiver_process(Config* config, int file_descriptor, const ReceiverSink* sink);
int receiver_receive_files(Config* config, int file_descriptor);
#endif
+249 -60
View File
@@ -1,96 +1,279 @@
#include "config.h" #include "config.h"
#include "chunk.h"
#include "file.h" #include "file.h"
#include "log.h" #include "log.h"
#include "multiprocessing.h" #include "multiprocessing.h"
#include "protocol.h"
#include "queue.h" #include "queue.h"
#include "receiver.h"
#include "transport_tcp.h" #include "transport_tcp.h"
#include "transport_tls.h" #include "transport_tls.h"
#include "unistd.h" #include "unistd.h"
#include "utils.h" #include "utils.h"
#include <fcntl.h>
#include <limits.h>
#include <signal.h> #include <signal.h>
#include <stdio.h> #include <stdio.h>
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
#include <limits.h>
#include <fcntl.h>
#include <sys/stat.h> #include <sys/stat.h>
#include <unistd.h> #include <unistd.h>
#include <openssl/x509.h>
static char* authorized_root; static char* authorized_root;
static int authorized_root_fd = -1; static int authorized_root_fd = -1;
static bool allow_delete; static bool allow_delete;
static bool allow_unauthenticated;
static const char* required_client_cn;
static bool tls_client_identity_allowed(SSL* ssl) {
if (!ssl || !required_client_cn)
return false;
X509* certificate = SSL_get1_peer_certificate(ssl);
if (!certificate)
return false;
char common_name[256];
int length = X509_NAME_get_text_by_NID(X509_get_subject_name(certificate), NID_commonName,
common_name, sizeof(common_name));
size_t required_length = strlen(required_client_cn);
bool allowed = length >= 0 && (size_t)length == required_length &&
required_length < sizeof(common_name) &&
memcmp(common_name, required_client_cn, required_length) == 0;
X509_free(certificate);
return allowed;
}
static void release_authorization(void) {
file_set_authorized_root(-1, NULL);
utils_set_authorized_root_fd(-1);
if (authorized_root_fd >= 0)
close(authorized_root_fd);
authorized_root_fd = -1;
free(authorized_root);
authorized_root = NULL;
}
static bool path_is_within(const char* root, const char* path) { static bool path_is_within(const char* root, const char* path) {
size_t n = strlen(root); size_t n = strlen(root);
return strncmp(root, path, n) == 0 && (path[n] == '\0' || path[n] == '/'); return strncmp(root, path, n) == 0 && (path[n] == '\0' || path[n] == '/');
} }
static bool save_received_file(File* file, void* context) {
Config* config = context;
if (config->save_to_disk && !file_save_to_disk(config->receive_root_directory, file, config))
return false;
file_destroy(file);
return true;
}
static bool __attribute__((unused)) configure_authorization(const char* root) { static bool __attribute__((unused)) configure_authorization(const char* root) {
char resolved[PATH_MAX]; char resolved[PATH_MAX];
if (!root || !realpath(root, resolved)) if (!root) {
file_set_authorized_root(-1, NULL);
utils_set_authorized_root(-1, NULL);
return false; return false;
}
int root_fd = open(root, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC);
if (root_fd < 0) {
file_set_authorized_root(-1, NULL);
utils_set_authorized_root(-1, NULL);
return false;
}
char fd_path[64];
int fd_path_length = snprintf(fd_path, sizeof(fd_path), "/proc/self/fd/%d", root_fd);
if (fd_path_length < 0 || (size_t)fd_path_length >= sizeof(fd_path) ||
!realpath(fd_path, resolved)) {
close(root_fd);
file_set_authorized_root(-1, NULL);
utils_set_authorized_root(-1, NULL);
return false;
}
authorized_root = str_dup(resolved); authorized_root = str_dup(resolved);
if (!authorized_root) if (!authorized_root) {
close(root_fd);
file_set_authorized_root(-1, NULL);
utils_set_authorized_root(-1, NULL);
return false; return false;
authorized_root_fd = open(resolved, O_RDONLY | O_DIRECTORY | O_CLOEXEC); }
if (authorized_root_fd < 0) { authorized_root_fd = root_fd;
if (!file_set_authorized_root(authorized_root_fd, authorized_root) ||
!utils_set_authorized_root(authorized_root_fd, authorized_root)) {
file_set_authorized_root(-1, NULL);
utils_set_authorized_root(-1, NULL);
close(authorized_root_fd);
authorized_root_fd = -1;
free(authorized_root); free(authorized_root);
authorized_root = NULL; authorized_root = NULL;
return false; return false;
} }
file_set_authorized_root(authorized_root_fd, authorized_root);
utils_set_authorized_root_fd(authorized_root_fd);
return true; return true;
} }
int receive_files(Config* config, int fd) { int receive_files(Config* config, int fd) {
return receive_files_common(config, fd, save_received_file, config, true); Status status;
if (!receive_status(fd, &status))
return -1;
while (status == STATUS_NEXT || status == STATUS_CHUNK || status == STATUS_CHECK ||
status == STATUS_KEEPALIVE || status == STATUS_ABORT || status == STATUS_CHECK_BATCH) {
if (status == STATUS_KEEPALIVE) {
send_status(fd, STATUS_KEEPALIVE);
goto next;
}
if (status == STATUS_ABORT) {
log_message(LOG_LEVEL_INFO, "Received abort from client, cleaning up");
return -1;
}
if (status == STATUS_CHECK) {
bool skipped;
File* file = receive_incremental_check(fd, config, &skipped);
if (skipped)
goto next;
if (file == NULL && !skipped)
return -1;
if (config->save_to_disk &&
!file_save_to_disk(config->receive_root_directory, file, config)) {
file_destroy(file);
send_status(fd, STATUS_ERROR);
return -1;
}
file_destroy(file);
} else if (status == STATUS_CHUNK) {
Chunk* chunk = receive_chunk_data(fd, config);
if (chunk == NULL) {
send_status(fd, STATUS_ERROR);
return -1;
}
for (int i = 0; i < chunk->element_count; i++) {
if (config->save_to_disk &&
!file_save_to_disk(config->receive_root_directory, chunk->items[i], config)) {
chunk_destroy(chunk);
send_status(fd, STATUS_ERROR);
return -1;
}
}
chunk_destroy(chunk);
} else if (status == STATUS_CHECK_BATCH) {
int count;
/* Batch framing has no checksum field yet; never silently downgrade a
checksum-enabled transfer into mtime-only matching. */
if (config->checksum || !receive_int(fd, &count) || count < 0 || count > MAX_MANIFEST_ENTRIES)
return -1;
for (int i = 0; i < count; i++) {
char* check_path = receive_str(fd);
if (!check_path)
return -1;
unsigned long long check_size;
long long check_mtime;
if (!receive_n_data(fd, &check_size, sizeof(check_size)) ||
!receive_n_data(fd, &check_mtime, sizeof(check_mtime))) {
free(check_path);
return -1;
}
if (!utils_valid_batch_path(check_path)) {
free(check_path);
send_status(fd, STATUS_ERROR);
return -1;
}
struct stat st;
char* full_path = path_cat(config->receive_root_directory, check_path);
if (!full_path) {
free(check_path);
send_status(fd, STATUS_ERROR);
return -1;
}
bool has_old = full_path && file_stat_secure(full_path, &st);
bool match = has_old && (unsigned long long)st.st_size == check_size &&
(long long)st.st_mtime == check_mtime;
bool sent = send_status(fd, match ? STATUS_OK : STATUS_NEXT);
free(full_path);
free(check_path);
if (!sent)
return -1;
}
goto next;
} else {
File* file = file_receive(config, fd);
if (file == NULL) {
log_message(LOG_LEVEL_ERROR, "Failed to receive file");
send_status(fd, STATUS_ERROR);
return -1;
}
if (config->save_to_disk &&
!file_save_to_disk(config->receive_root_directory, file, config)) {
file_destroy(file);
send_status(fd, STATUS_ERROR);
return -1;
}
file_destroy(file);
}
next:
if (!receive_status(fd, &status)) {
send_status(fd, STATUS_ERROR);
return -1;
}
}
if (status == STATUS_MANIFEST) {
if (receive_manifest(fd, config, &status) != 0) {
return -1;
}
}
if (status != STATUS_FINISHED) {
log_message(LOG_LEVEL_ERROR, "Did not receive FINISHED Status");
send_status(fd, STATUS_ERROR);
return -1;
}
send_status(fd, STATUS_OK);
return 0;
} }
void handler(int file_descriptor) { void handler(int file_descriptor) {
SSL* ssl = io_get_ssl(); SSL* ssl = io_get_ssl();
ProtocolSession session;
protocol_session_init(&session, file_descriptor, file_descriptor);
protocol_session_set_ssl(&session, ssl);
protocol_session_bind(&session);
Config* config = config_receive(file_descriptor); Config* config = config_receive(file_descriptor);
if (config == NULL) { if (config == NULL) {
log_message(LOG_LEVEL_ERROR, "Failed to receive config"); log_message(LOG_LEVEL_ERROR, "Failed to receive config");
close(file_descriptor); close(file_descriptor);
protocol_session_unbind();
return; return;
} }
if (!authorized_root) { if (!authorized_root) {
log_message(LOG_LEVEL_ERROR, "No server-side destination root configured"); log_message(LOG_LEVEL_ERROR, "No server-side destination root configured");
config_delete(config); config_delete(config);
close(file_descriptor); close(file_descriptor);
protocol_session_unbind();
return; return;
} }
char resolved_destination[PATH_MAX]; if (!allow_unauthenticated && ssl == NULL) {
char* canonical_destination = realpath(config->receive_root_directory, NULL); log_message(LOG_LEVEL_ERROR, "Rejected unauthenticated plaintext connection");
const char* destination = config_delete(config);
canonical_destination ? canonical_destination : config->receive_root_directory; close(file_descriptor);
if (has_path_traversal(destination) || !path_is_within(authorized_root, destination)) { protocol_session_unbind();
log_message(LOG_LEVEL_ERROR, "Rejected destination outside authorized root"); return;
free(canonical_destination); }
if (ssl && required_client_cn && !tls_client_identity_allowed(ssl)) {
log_message(LOG_LEVEL_ERROR, "Rejected TLS client with unauthorized identity");
config_delete(config); config_delete(config);
close(file_descriptor); close(file_descriptor);
return; return;
} }
if (canonical_destination) char* destination = config->receive_root_directory;
snprintf(resolved_destination, sizeof(resolved_destination), "%s", canonical_destination); char* joined_destination = NULL;
else if (destination && destination[0] != '/')
snprintf(resolved_destination, sizeof(resolved_destination), "%s", destination); joined_destination = path_cat(authorized_root, destination);
free(canonical_destination); if (joined_destination)
free(config->receive_root_directory); destination = joined_destination;
config->receive_root_directory = str_dup(resolved_destination); if (!destination || has_path_traversal(destination) ||
!path_is_within(authorized_root, destination)) {
log_message(LOG_LEVEL_ERROR, "Rejected destination outside authorized root");
free(joined_destination);
config_delete(config);
close(file_descriptor);
return;
}
if (joined_destination) {
free(config->receive_root_directory);
config->receive_root_directory = joined_destination;
}
if (!config->receive_root_directory) { if (!config->receive_root_directory) {
config_delete(config); config_delete(config);
close(file_descriptor); close(file_descriptor);
protocol_session_unbind();
return; return;
} }
config->use_delete = config->use_delete && allow_delete; config->use_delete = config->use_delete && allow_delete;
@@ -99,6 +282,7 @@ void handler(int file_descriptor) {
if (q == NULL) { if (q == NULL) {
config_delete(config); config_delete(config);
close(file_descriptor); close(file_descriptor);
protocol_session_unbind();
return; return;
} }
PipelineContextReceiver* context = PipelineContextReceiver* context =
@@ -107,16 +291,17 @@ void handler(int file_descriptor) {
queue_destroy(q); queue_destroy(q);
config_delete(config); config_delete(config);
close(file_descriptor); close(file_descriptor);
protocol_session_unbind();
return; return;
} }
context->session.total_allocated_bytes = session.total_allocated_bytes;
thrd_t receiver, writer; thrd_t receiver, writer;
bool receiver_created = false; bool receiver_created = thrd_create(&receiver, receive_thread, context) == thrd_success;
bool writer_created = false; bool writer_created = false;
receiver_created = (thrd_create(&receiver, receive_thread, context) == thrd_success);
if (receiver_created) if (receiver_created)
writer_created = (thrd_create(&writer, write_thread, context) == thrd_success); writer_created = thrd_create(&writer, write_thread, context) == thrd_success;
if (!receiver_created || !writer_created) { if (!receiver_created || !writer_created) {
perror("Error creating Threads"); log_perror("Error creating Threads");
if (receiver_created) { if (receiver_created) {
mtx_lock(&context->mutex); mtx_lock(&context->mutex);
atomic_store(&context->cancelled, true); atomic_store(&context->cancelled, true);
@@ -131,22 +316,23 @@ void handler(int file_descriptor) {
if (writer_created) if (writer_created)
thrd_join(writer, NULL); thrd_join(writer, NULL);
pipeline_context_receiver_destroy(context); pipeline_context_receiver_destroy(context);
protocol_session_unbind();
return; return;
} }
int receiver_result; int receiver_result;
int writer_result; int writer_result;
thrd_join(receiver, &receiver_result); thrd_join(receiver, &receiver_result);
thrd_join(writer, &writer_result); thrd_join(writer, &writer_result);
if (receiver_result == thrd_success && writer_result == thrd_success) send_status(file_descriptor, receiver_result == thrd_success && writer_result == thrd_success
send_status(file_descriptor, STATUS_OK); ? STATUS_OK
else : STATUS_ERROR);
send_status(file_descriptor, STATUS_ERROR);
pipeline_context_receiver_destroy(context); pipeline_context_receiver_destroy(context);
} else { } else {
if (receive_files(config, file_descriptor) != 0) if (receiver_receive_files(config, file_descriptor) != 0)
log_message(LOG_LEVEL_ERROR, "Transfer failed"); log_message(LOG_LEVEL_ERROR, "Transfer failed");
config_delete(config); config_delete(config);
} }
protocol_session_unbind();
close(file_descriptor); close(file_descriptor);
} }
@@ -155,16 +341,14 @@ static Server* g_server = NULL;
static void cleanup(int sig) { static void cleanup(int sig) {
(void)sig; (void)sig;
if (g_server) { if (g_server)
server_delete(&g_server); server_delete(&g_server);
}
_exit(0); _exit(0);
} }
static void print_server_usage(void) { static void print_server_usage(void) {
printf("FastSync Server\n"); printf("FastSync Server\n");
printf("Usage: fastsync-server [options]\n"); printf("Usage: fastsync-server [options]\n\n");
printf("\n");
printf("Options:\n"); printf("Options:\n");
printf(" --stdio Run in stdio mode (SSH transport)\n"); printf(" --stdio Run in stdio mode (SSH transport)\n");
printf(" -p <port> TCP port (default: 8080, range: 1-65535)\n"); printf(" -p <port> TCP port (default: 8080, range: 1-65535)\n");
@@ -172,17 +356,17 @@ static void print_server_usage(void) {
printf(" --cert <path> TLS certificate file (PEM)\n"); printf(" --cert <path> TLS certificate file (PEM)\n");
printf(" --key <path> TLS private key file (PEM)\n"); printf(" --key <path> TLS private key file (PEM)\n");
printf(" --ca <path> TLS CA certificate file (PEM)\n"); printf(" --ca <path> TLS CA certificate file (PEM)\n");
printf(" --client-cn <name> Required TLS client certificate CN\n");
printf(" --destination-root <path> Authorized destination root (default: .)\n"); printf(" --destination-root <path> Authorized destination root (default: .)\n");
printf(" --allow-delete Permit manifest deletion\n"); printf(" --allow-delete Permit manifest deletion\n");
printf(" --allow-unauthenticated Allow plaintext/anonymous network clients\n");
printf(" -v, --verbose Enable debug logging\n"); printf(" -v, --verbose Enable debug logging\n");
printf(" --help Show this help\n"); printf(" --help Show this help\n");
} }
int main(int argc, char* argv[]) { int main(int argc, char* argv[]) {
bool use_tls = false; bool use_tls = false;
char* tls_cert = NULL; char *tls_cert = NULL, *tls_key = NULL, *tls_ca = NULL;
char* tls_key = NULL;
char* tls_ca = NULL;
int port = 8080; int port = 8080;
const char* destination_root = "."; const char* destination_root = ".";
bool stdio_mode = false; bool stdio_mode = false;
@@ -204,10 +388,14 @@ int main(int argc, char* argv[]) {
tls_key = argv[++i]; tls_key = argv[++i];
} else if (strcmp(argv[i], "--ca") == 0 && i + 1 < argc) { } else if (strcmp(argv[i], "--ca") == 0 && i + 1 < argc) {
tls_ca = argv[++i]; tls_ca = argv[++i];
} else if (strcmp(argv[i], "--client-cn") == 0 && i + 1 < argc) {
required_client_cn = argv[++i];
} else if (strcmp(argv[i], "--destination-root") == 0 && i + 1 < argc) { } else if (strcmp(argv[i], "--destination-root") == 0 && i + 1 < argc) {
destination_root = argv[++i]; destination_root = argv[++i];
} else if (strcmp(argv[i], "--allow-delete") == 0) { } else if (strcmp(argv[i], "--allow-delete") == 0) {
allow_delete = true; allow_delete = true;
} else if (strcmp(argv[i], "--allow-unauthenticated") == 0) {
allow_unauthenticated = true;
} else if (strcmp(argv[i], "-p") == 0 && i + 1 < argc) { } else if (strcmp(argv[i], "-p") == 0 && i + 1 < argc) {
char* end; char* end;
long p = strtol(argv[++i], &end, 10); long p = strtol(argv[++i], &end, 10);
@@ -222,11 +410,8 @@ int main(int argc, char* argv[]) {
return 1; return 1;
} }
} }
if (tls_ca && !use_tls)
if (tls_ca && !use_tls) {
log_message(LOG_LEVEL_WARNING, "--ca has no effect without --tls"); log_message(LOG_LEVEL_WARNING, "--ca has no effect without --tls");
}
signal(SIGINT, cleanup); signal(SIGINT, cleanup);
signal(SIGTERM, cleanup); signal(SIGTERM, cleanup);
if (!configure_authorization(destination_root)) { if (!configure_authorization(destination_root)) {
@@ -234,35 +419,39 @@ int main(int argc, char* argv[]) {
return 1; return 1;
} }
if (stdio_mode) { if (stdio_mode) {
/* SSH authenticates the stdio transport outside of FastSync. */
allow_unauthenticated = true;
io_set_fds(STDIN_FILENO, STDOUT_FILENO); io_set_fds(STDIN_FILENO, STDOUT_FILENO);
handler(STDIN_FILENO); handler(STDIN_FILENO);
file_set_authorized_root(-1, NULL); release_authorization();
utils_set_authorized_root_fd(-1);
close(authorized_root_fd);
free(authorized_root);
return 0; return 0;
} }
g_server = server_create(port); g_server = server_create(port);
if (g_server == NULL) { if (!g_server) {
log_message(LOG_LEVEL_ERROR, "Failed to create server"); log_message(LOG_LEVEL_ERROR, "Failed to create server");
release_authorization();
return 1; return 1;
} }
if (use_tls) { if (use_tls) {
if (!tls_cert || !tls_key) { if (!tls_cert || !tls_key || !tls_ca || !required_client_cn) {
fprintf(stderr, "Error: --tls requires --cert and --key\n"); fprintf(stderr, "Error: --tls requires --cert, --key, --ca, and --client-cn\n");
server_delete(&g_server); server_delete(&g_server);
release_authorization();
return 1; return 1;
} }
tls_global_init(); tls_global_init();
if (!server_create_tls(g_server, tls_cert, tls_key, tls_ca)) { if (!server_create_tls(g_server, tls_cert, tls_key, tls_ca)) {
log_message(LOG_LEVEL_ERROR, "Failed to set up TLS"); log_message(LOG_LEVEL_ERROR, "Failed to set up TLS");
server_delete(&g_server); server_delete(&g_server);
release_authorization();
return 1; return 1;
} }
server_listen_tls(g_server, handler); server_listen_tls(g_server, handler);
} else { } else {
server_listen(g_server, handler); server_listen(g_server, handler);
} }
server_delete(&g_server);
release_authorization();
return 0; return 0;
} }
#endif /* !FASTSYNC_SERVER_AS_LIB */ #endif
+5 -4
View File
@@ -1,3 +1,4 @@
#include "log.h"
#include "array_list.h" #include "array_list.h"
#include <stdio.h> #include <stdio.h>
#include <stdlib.h> #include <stdlib.h>
@@ -6,7 +7,7 @@
ArrayList* array_list_create(void (*item_destroyer)(void* item)) { ArrayList* array_list_create(void (*item_destroyer)(void* item)) {
ArrayList* list = (ArrayList*)malloc(sizeof(ArrayList)); ArrayList* list = (ArrayList*)malloc(sizeof(ArrayList));
if (list == NULL) { if (list == NULL) {
perror("ERROR: Could not allocate memory for array list struct"); log_perror("ERROR: Could not allocate memory for array list struct");
return NULL; return NULL;
} }
@@ -34,7 +35,7 @@ void array_list_delete(ArrayList* array_list) {
free(array_list); free(array_list);
} }
bool array_list_extend(ArrayList* array_list) { static bool array_list_extend(ArrayList* array_list) {
if (array_list == NULL) if (array_list == NULL)
return false; return false;
int new_capacity = array_list->capacity * 2; int new_capacity = array_list->capacity * 2;
@@ -42,7 +43,7 @@ bool array_list_extend(ArrayList* array_list) {
new_capacity = INITIAL_ARRAY_SIZE; new_capacity = INITIAL_ARRAY_SIZE;
void* new_items = realloc(array_list->items, new_capacity * sizeof(void*)); void* new_items = realloc(array_list->items, new_capacity * sizeof(void*));
if (new_items == NULL) { if (new_items == NULL) {
perror("ERROR: Could not reallocate memory for array list items"); log_perror("ERROR: Could not reallocate memory for array list items");
return false; return false;
} }
array_list->items = new_items; array_list->items = new_items;
@@ -68,7 +69,7 @@ void** array_list_to_array(const ArrayList* array_list) {
} }
void** array = malloc(array_list->size * sizeof(void*)); void** array = malloc(array_list->size * sizeof(void*));
if (array == NULL) { if (array == NULL) {
perror("Could not malloc space for array from array list!"); log_perror("Could not malloc space for array from array list!");
return NULL; return NULL;
} }
memcpy(array, array_list->items, array_list->size * sizeof(void*)); memcpy(array, array_list->items, array_list->size * sizeof(void*));
-1
View File
@@ -14,7 +14,6 @@ typedef struct ArrayList {
ArrayList* array_list_create(void (*item_destroyer)(void* item)); ArrayList* array_list_create(void (*item_destroyer)(void* item));
void array_list_delete(ArrayList* array_list); void array_list_delete(ArrayList* array_list);
bool array_list_extend(ArrayList* array_list);
bool array_list_add(ArrayList* array_list, void* item); bool array_list_add(ArrayList* array_list, void* item);
void** array_list_to_array(const ArrayList* array_list); void** array_list_to_array(const ArrayList* array_list);
+115 -19
View File
@@ -1,4 +1,6 @@
#include <stddef.h> #include <stddef.h>
#include <stdint.h>
#include <limits.h>
#include <stdio.h> #include <stdio.h>
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
@@ -11,21 +13,33 @@
#include "log.h" #include "log.h"
#include "metadata.h" #include "metadata.h"
#include "protocol.h" #include "protocol.h"
#include "utils.h"
/* Maximum individual file data size within a chunk (64 MB) */ /* Maximum individual file data size within a chunk (64 MB) */
#define MAX_FILE_DATA_SIZE (64ULL * 1024 * 1024) #define MAX_FILE_DATA_SIZE (64ULL * 1024 * 1024)
#define MAX_FILES_PER_CHUNK 65536U
Chunk* chunk_create(File** items, int element_count) { Chunk* chunk_create(File** items, int element_count) {
if (element_count < 0 || (element_count > 0 && items == NULL))
return NULL;
Chunk* chunk = (Chunk*)malloc(sizeof(Chunk)); Chunk* chunk = (Chunk*)malloc(sizeof(Chunk));
if (chunk == NULL) { if (chunk == NULL) {
perror("ERROR: Could not allocate memory for chunk structure"); log_perror("ERROR: Could not allocate memory for chunk structure");
return NULL; return NULL;
} }
chunk->items = (File**)malloc(element_count * sizeof(File*)); if (element_count == 0) {
if (chunk->items == NULL) { chunk->items = NULL;
free(chunk); } else {
return NULL; if ((size_t)element_count > SIZE_MAX / sizeof(File*)) {
free(chunk);
return NULL;
}
chunk->items = (File**)malloc((size_t)element_count * sizeof(File*));
if (chunk->items == NULL) {
free(chunk);
return NULL;
}
} }
for (int i = 0; i < element_count; i++) { for (int i = 0; i < element_count; i++) {
@@ -50,15 +64,37 @@ void chunk_destroy(void* item) {
} }
static unsigned long long per_file_serialize_size(File* file, bool use_metadata) { static unsigned long long per_file_serialize_size(File* file, bool use_metadata) {
return sizeof(size_t) + strlen(file->path) + unsigned long long size = sizeof(size_t);
(use_metadata ? sizeof(int) + (file->metadata ? FILE_METADATA_WIRE_SIZE : 0) : 0) + size_t path_len = strlen(file->path);
sizeof(size_t) + file->data->size; unsigned long long metadata_size =
use_metadata ? sizeof(int) + (file->metadata ? FILE_METADATA_WIRE_SIZE : 0) : 0;
if ((unsigned long long)path_len > ULLONG_MAX - size)
return 0;
size += path_len;
if (metadata_size > ULLONG_MAX - size)
return 0;
size += metadata_size;
if (sizeof(size_t) > ULLONG_MAX - size)
return 0;
size += sizeof(size_t);
if ((unsigned long long)file->data->size > ULLONG_MAX - size)
return 0;
return size + file->data->size;
} }
Data* chunk_serialize(Chunk* chunk, bool use_metadata) { Data* chunk_serialize(Chunk* chunk, bool use_metadata) {
if (!chunk || chunk->element_count < 0 || (chunk->element_count > 0 && chunk->items == NULL))
return NULL;
unsigned long long data_size = 0; unsigned long long data_size = 0;
for (int i = 0; i < chunk->element_count; i++) { for (int i = 0; i < chunk->element_count; i++) {
data_size += per_file_serialize_size(chunk->items[i], use_metadata); if (!chunk->items[i] || !chunk->items[i]->path || !chunk->items[i]->data ||
(chunk->items[i]->data->size > 0 && !chunk->items[i]->data->data) ||
chunk->items[i]->path[0] == '\0' || has_path_traversal(chunk->items[i]->path))
return NULL;
unsigned long long file_size = per_file_serialize_size(chunk->items[i], use_metadata);
if (file_size == 0 || file_size > ULLONG_MAX - data_size || data_size + file_size > SIZE_MAX)
return NULL;
data_size += file_size;
} }
Data* data = data_create_empty(data_size); Data* data = data_create_empty(data_size);
if (data == NULL) { if (data == NULL) {
@@ -87,11 +123,20 @@ Data* chunk_serialize(Chunk* chunk, bool use_metadata) {
} }
Chunk* chunk_deserialize(Data* data, bool use_metadata) { Chunk* chunk_deserialize(Data* data, bool use_metadata) {
if (!data || (!data->data && data->size != 0))
return NULL;
ArrayList* files = array_list_create(file_destroy); ArrayList* files = array_list_create(file_destroy);
if (files == NULL)
return NULL;
char* data_pointer = data->data; char* data_pointer = data->data;
size_t remaining_size = data->size; size_t remaining_size = data->size;
while (remaining_size > 0) { while (remaining_size > 0) {
if ((unsigned int)files->size >= MAX_FILES_PER_CHUNK) {
log_message(LOG_LEVEL_ERROR, "Chunk contains too many files");
array_list_delete(files);
return NULL;
}
if (remaining_size < sizeof(size_t)) { if (remaining_size < sizeof(size_t)) {
log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for path length"); log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for path length");
array_list_delete(files); array_list_delete(files);
@@ -103,48 +148,77 @@ Chunk* chunk_deserialize(Data* data, bool use_metadata) {
data_pointer += sizeof(size_t); data_pointer += sizeof(size_t);
remaining_size -= sizeof(size_t); remaining_size -= sizeof(size_t);
if (remaining_size < path_len) { if (path_len > SIZE_MAX - 1 || remaining_size < path_len) {
log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for path"); log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for path");
array_list_delete(files); array_list_delete(files);
return NULL; return NULL;
} }
if (path_len == SIZE_MAX) {
array_list_delete(files);
return NULL;
}
char* path = malloc(path_len + 1); char* path = malloc(path_len + 1);
if (path == NULL) { if (path == NULL) {
perror("Could not allocate memory for file path"); log_perror("Could not allocate memory for file path");
array_list_delete(files); array_list_delete(files);
return NULL; return NULL;
} }
memcpy(path, data_pointer, path_len); memcpy(path, data_pointer, path_len);
path[path_len] = '\0'; path[path_len] = '\0';
if (memchr(path, '\0', path_len) != NULL) {
free(path);
array_list_delete(files);
return NULL;
}
data_pointer += path_len; data_pointer += path_len;
remaining_size -= path_len; remaining_size -= path_len;
if (path_len == 0 || has_path_traversal(path)) {
free(path);
array_list_delete(files);
return NULL;
}
File* file = file_create(path); File* file = file_create(path);
free(path); free(path);
if (file == NULL) {
array_list_delete(files);
return NULL;
}
if (use_metadata) { if (use_metadata) {
if (remaining_size < sizeof(int)) { if (remaining_size < sizeof(int)) {
log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for metadata"); log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for metadata");
file_destroy(file);
array_list_delete(files); array_list_delete(files);
return NULL; return NULL;
} }
// Peek at present flag to determine total size needed before reading // Peek at present flag to determine total size needed before reading
int present_flag; int present_flag;
memcpy(&present_flag, data_pointer, sizeof(int)); memcpy(&present_flag, data_pointer, sizeof(int));
if (present_flag && remaining_size < sizeof(int) + FILE_METADATA_WIRE_SIZE) { if ((present_flag != 0 && present_flag != 1) ||
(present_flag == 1 && remaining_size < sizeof(int) + FILE_METADATA_WIRE_SIZE)) {
log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for metadata body"); log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for metadata body");
file_destroy(file);
array_list_delete(files); array_list_delete(files);
return NULL; return NULL;
} }
file->metadata = metadata_from_buf(&data_pointer); file->metadata = metadata_from_buf(&data_pointer);
remaining_size -= sizeof(int); remaining_size -= sizeof(int);
if (file->metadata) if (present_flag == 1) {
if (file->metadata == NULL) {
file_destroy(file);
array_list_delete(files);
return NULL;
}
remaining_size -= FILE_METADATA_WIRE_SIZE; remaining_size -= FILE_METADATA_WIRE_SIZE;
}
} }
if (remaining_size < sizeof(size_t)) { if (remaining_size < sizeof(size_t)) {
log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for data size"); log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for data size");
file_destroy(file);
array_list_delete(files); array_list_delete(files);
return NULL; return NULL;
} }
@@ -156,6 +230,7 @@ Chunk* chunk_deserialize(Data* data, bool use_metadata) {
if (remaining_size < file_data_size) { if (remaining_size < file_data_size) {
log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for file content"); log_message(LOG_LEVEL_ERROR, "Invalid chunk format: not enough data for file content");
file_destroy(file);
array_list_delete(files); array_list_delete(files);
return NULL; return NULL;
} }
@@ -164,29 +239,50 @@ Chunk* chunk_deserialize(Data* data, bool use_metadata) {
if (file_data_size > MAX_FILE_DATA_SIZE) { if (file_data_size > MAX_FILE_DATA_SIZE) {
log_message(LOG_LEVEL_ERROR, "File data size %zu exceeds maximum %llu", file_data_size, log_message(LOG_LEVEL_ERROR, "File data size %zu exceeds maximum %llu", file_data_size,
(unsigned long long)MAX_FILE_DATA_SIZE); (unsigned long long)MAX_FILE_DATA_SIZE);
file_destroy(file);
array_list_delete(files); array_list_delete(files);
return NULL; return NULL;
} }
void* file_data = malloc(file_data_size); size_t allocation_size = file_data_size > 0 ? file_data_size : 1;
void* file_data = malloc(allocation_size);
if (file_data == NULL) { if (file_data == NULL) {
perror("Could not allocate memory for file data"); log_perror("Could not allocate memory for file data");
file_destroy(file);
array_list_delete(files); array_list_delete(files);
return NULL; return NULL;
} }
memcpy(file_data, data_pointer, file_data_size); memcpy(file_data, data_pointer, file_data_size);
Data* replacement = data_create(file_data, file_data_size);
if (replacement == NULL) {
file_destroy(file);
array_list_delete(files);
return NULL;
}
data_destroy(file->data); data_destroy(file->data);
file->data = data_create(file_data, file_data_size); file->data = replacement;
data_pointer += file_data_size; data_pointer += file_data_size;
remaining_size -= file_data_size; remaining_size -= file_data_size;
array_list_add(files, file); if (!array_list_add(files, file)) {
file_destroy(file);
array_list_delete(files);
return NULL;
}
} }
File** file_array = (File**)array_list_to_array(files); File** file_array = (File**)array_list_to_array(files);
if (files->size > 0 && file_array == NULL) {
array_list_delete(files);
return NULL;
}
Chunk* chunk = chunk_create(file_array, files->size); Chunk* chunk = chunk_create(file_array, files->size);
free(file_array); free(file_array);
if (chunk == NULL) {
array_list_delete(files);
return NULL;
}
files->item_destroyer = NULL; files->item_destroyer = NULL;
array_list_delete(files); array_list_delete(files);
@@ -207,14 +303,14 @@ Data* chunk_compress(Chunk* chunk, int compression_level, bool use_metadata) {
} }
Chunk* receive_chunk_data(int fd, const Config* config) { Chunk* receive_chunk_data(int fd, const Config* config) {
Data* chunk_data = receive_data(fd); Data* chunk_data = receive_data_limited(fd, MAX_CHUNK_SIZE);
if (chunk_data == NULL) { if (chunk_data == NULL) {
log_message(LOG_LEVEL_ERROR, "Failed to receive chunk data"); log_message(LOG_LEVEL_ERROR, "Failed to receive chunk data");
return NULL; return NULL;
} }
Data* data_to_process = chunk_data; Data* data_to_process = chunk_data;
if (config->use_compression) { if (config->use_compression) {
data_to_process = data_decompress(chunk_data); data_to_process = data_decompress_limited(chunk_data, MAX_CHUNK_SIZE);
data_destroy(chunk_data); data_destroy(chunk_data);
if (data_to_process == NULL) { if (data_to_process == NULL) {
log_message(LOG_LEVEL_ERROR, "Failed to decompress chunk"); log_message(LOG_LEVEL_ERROR, "Failed to decompress chunk");
+21 -9
View File
@@ -2,6 +2,8 @@
#include "data.h" #include "data.h"
#include "log.h" #include "log.h"
#include <stdlib.h> #include <stdlib.h>
#include <limits.h>
#include <stdint.h>
#include <string.h> #include <string.h>
#include <strings.h> #include <strings.h>
#include <zstd.h> #include <zstd.h>
@@ -69,7 +71,10 @@ Data* data_compress(Data* data_to_compress, int compression_level) {
return compressed_data; return compressed_data;
} }
Data* data_decompress(Data* compressed_data) { Data* data_decompress_limited(Data* compressed_data, size_t maximum_size) {
if (!compressed_data || (!compressed_data->data && compressed_data->size != 0) ||
maximum_size == 0)
return NULL;
log_message(LOG_LEVEL_DEBUG, "Start to decompress data"); log_message(LOG_LEVEL_DEBUG, "Start to decompress data");
unsigned long long dst_size = unsigned long long dst_size =
ZSTD_getFrameContentSize(compressed_data->data, compressed_data->size); ZSTD_getFrameContentSize(compressed_data->data, compressed_data->size);
@@ -82,15 +87,16 @@ Data* data_decompress(Data* compressed_data) {
// ZSTD_CONTENTSIZE_UNKNOWN (~2^64) can cause massive allocation; // ZSTD_CONTENTSIZE_UNKNOWN (~2^64) can cause massive allocation;
// fall back to a conservative estimate (3x compressed size) when unknown. // fall back to a conservative estimate (3x compressed size) when unknown.
if (dst_size == ZSTD_CONTENTSIZE_UNKNOWN) { if (dst_size == ZSTD_CONTENTSIZE_UNKNOWN) {
if (compressed_data->size > ULLONG_MAX / 3)
return NULL;
dst_size = compressed_data->size * 3; dst_size = compressed_data->size * 3;
if (dst_size < INITIAL_DECOMPRESS_BUF_SIZE) if (dst_size < INITIAL_DECOMPRESS_BUF_SIZE)
dst_size = INITIAL_DECOMPRESS_BUF_SIZE; dst_size = INITIAL_DECOMPRESS_BUF_SIZE;
if (dst_size > MAX_DECOMPRESSED_SIZE)
dst_size = MAX_DECOMPRESSED_SIZE;
} }
if (dst_size > MAX_DECOMPRESSED_SIZE) { unsigned long long hard_limit =
log_message(LOG_LEVEL_ERROR, "Declared decompressed size exceeds %llu bytes", maximum_size < MAX_DECOMPRESSED_SIZE ? maximum_size : MAX_DECOMPRESSED_SIZE;
(unsigned long long)MAX_DECOMPRESSED_SIZE); if (dst_size > hard_limit) {
log_message(LOG_LEVEL_ERROR, "Declared decompressed size exceeds %llu bytes", hard_limit);
return NULL; return NULL;
} }
@@ -101,6 +107,8 @@ Data* data_decompress(Data* compressed_data) {
} }
size_t buf_size = (dst_size > 0) ? (size_t)dst_size : INITIAL_DECOMPRESS_BUF_SIZE; size_t buf_size = (dst_size > 0) ? (size_t)dst_size : INITIAL_DECOMPRESS_BUF_SIZE;
if (buf_size > maximum_size)
buf_size = maximum_size;
Data* uncompressed_data = data_create_empty(buf_size); Data* uncompressed_data = data_create_empty(buf_size);
if (!uncompressed_data) { if (!uncompressed_data) {
log_message(LOG_LEVEL_ERROR, "Failed to allocate decompression buffer"); log_message(LOG_LEVEL_ERROR, "Failed to allocate decompression buffer");
@@ -121,7 +129,7 @@ Data* data_decompress(Data* compressed_data) {
return NULL; return NULL;
} }
if (ret > 0 && output.pos == output.size) { if (ret > 0 && output.pos == output.size) {
if (buf_size >= MAX_DECOMPRESSED_SIZE) { if (buf_size >= hard_limit || buf_size > SIZE_MAX / 2) {
log_message(LOG_LEVEL_ERROR, "Decompressed data exceeds %llu bytes", log_message(LOG_LEVEL_ERROR, "Decompressed data exceeds %llu bytes",
(unsigned long long)MAX_DECOMPRESSED_SIZE); (unsigned long long)MAX_DECOMPRESSED_SIZE);
ZSTD_freeDCtx(dctx); ZSTD_freeDCtx(dctx);
@@ -129,8 +137,8 @@ Data* data_decompress(Data* compressed_data) {
return NULL; return NULL;
} }
buf_size *= 2; buf_size *= 2;
if (buf_size > MAX_DECOMPRESSED_SIZE) if (buf_size > hard_limit)
buf_size = MAX_DECOMPRESSED_SIZE; buf_size = (size_t)hard_limit;
void* new_data = realloc(uncompressed_data->data, buf_size); void* new_data = realloc(uncompressed_data->data, buf_size);
if (!new_data) { if (!new_data) {
log_message(LOG_LEVEL_ERROR, "Failed to grow decompression buffer"); log_message(LOG_LEVEL_ERROR, "Failed to grow decompression buffer");
@@ -150,3 +158,7 @@ Data* data_decompress(Data* compressed_data) {
log_message(LOG_LEVEL_DEBUG, "Decompressed data successfully"); log_message(LOG_LEVEL_DEBUG, "Decompressed data successfully");
return uncompressed_data; return uncompressed_data;
} }
Data* data_decompress(Data* compressed_data) {
return data_decompress_limited(compressed_data, MAX_DECOMPRESSED_SIZE);
}
+1
View File
@@ -6,6 +6,7 @@
Data* data_compress(Data* data_to_compress, int compression_level); Data* data_compress(Data* data_to_compress, int compression_level);
Data* data_decompress(Data* compressed_data); Data* data_decompress(Data* compressed_data);
Data* data_decompress_limited(Data* compressed_data, size_t maximum_size);
bool compression_should_skip(const char* path); bool compression_should_skip(const char* path);
#endif #endif
+190 -89
View File
@@ -68,6 +68,7 @@ static void config_set_defaults(Config* config) {
config->debug_level = 0; config->debug_level = 0;
config->list_only = false; config->list_only = false;
config->human_readable = false; config->human_readable = false;
config->existing = false;
config->update = false; config->update = false;
config->inplace = false; config->inplace = false;
config->append = false; config->append = false;
@@ -100,6 +101,44 @@ static void config_set_defaults(Config* config) {
config->compress_choice = NULL; config->compress_choice = NULL;
} }
static bool valid_wire_bool(int value) {
return value == 0 || value == 1;
}
static bool receive_wire_bool(int fd, bool* value) {
int wire_value;
if (!receive_int(fd, &wire_value) || !valid_wire_bool(wire_value))
return false;
*value = wire_value != 0;
return true;
}
static bool validate_received_config(const Config* config) {
return valid_wire_bool(config->save_to_disk) && valid_wire_bool(config->use_multithreading) &&
valid_wire_bool(config->use_chunk_serialization) &&
valid_wire_bool(config->use_compression) && valid_wire_bool(config->use_metadata) &&
valid_wire_bool(config->use_sendfile) && valid_wire_bool(config->use_delete) &&
valid_wire_bool(config->use_incremental) && valid_wire_bool(config->use_delta) &&
valid_wire_bool(config->backup) && valid_wire_bool(config->follow_symlinks) &&
valid_wire_bool(config->copy_links) && valid_wire_bool(config->safe_links) &&
valid_wire_bool(config->copy_unsafe_links) &&
valid_wire_bool(config->preserve_hard_links) && valid_wire_bool(config->preserve_acls) &&
valid_wire_bool(config->preserve_xattrs) && valid_wire_bool(config->preserve_devices) &&
valid_wire_bool(config->preserve_sparse) && valid_wire_bool(config->existing) &&
valid_wire_bool(config->update) && valid_wire_bool(config->inplace) &&
valid_wire_bool(config->append) && valid_wire_bool(config->append_verify) &&
valid_wire_bool(config->delete_excluded) && valid_wire_bool(config->delete_after) &&
valid_wire_bool(config->relative) && valid_wire_bool(config->prune_empty_dirs) &&
valid_wire_bool(config->partial) && valid_wire_bool(config->delete_before) &&
valid_wire_bool(config->checksum) &&
(!config->use_compression ||
(config->compression_level >= 1 && config->compression_level <= 22)) &&
config->chunk_size > 0 && config->chunk_size <= MAX_CHUNK_SIZE &&
config->delta_block_size >= DELTA_BLOCK_SIZE_MIN &&
config->delta_block_size <= DELTA_BLOCK_SIZE_MAX &&
config->delta_max_file_size <= DELTA_MAX_FILE_SIZE && config->max_delete >= 0;
}
Config* config_create(void) { Config* config_create(void) {
Config* config = malloc(sizeof(Config)); Config* config = malloc(sizeof(Config));
if (!config) if (!config)
@@ -108,7 +147,7 @@ Config* config_create(void) {
return config; return config;
} }
bool is_remote_dest(const char* s) { bool config_is_remote_dest(const char* s) {
if (s == NULL) if (s == NULL)
return false; return false;
const char* colon = strchr(s, ':'); const char* colon = strchr(s, ':');
@@ -124,7 +163,7 @@ bool is_remote_dest(const char* s) {
} }
void config_parse_ssh_dest(Config* config) { void config_parse_ssh_dest(Config* config) {
if (!is_remote_dest(config->receive_root_directory)) if (!config_is_remote_dest(config->receive_root_directory))
return; return;
config->transport = TRANSPORT_SSH; config->transport = TRANSPORT_SSH;
config->ssh_destination = str_dup(config->receive_root_directory); config->ssh_destination = str_dup(config->receive_root_directory);
@@ -137,6 +176,10 @@ void config_parse_ssh_dest(Config* config) {
void config_delete(Config* config) { void config_delete(Config* config) {
if (config == NULL) if (config == NULL)
return; return;
if (config->log_file) {
fclose(config->log_file);
config->log_file = NULL;
}
free(config->version); free(config->version);
free(config->send_directory); free(config->send_directory);
free(config->receive_root_directory); free(config->receive_root_directory);
@@ -173,39 +216,132 @@ void config_delete(Config* config) {
free(config); free(config);
} }
static bool config_send_string(int file_descriptor, const char* value, bool optional) { /* Each helper is deliberately ordered to match the wire format. Keep the
return send_str(file_descriptor, value ? value : (optional ? "" : NULL)); * helper call order in config_send and config_receive unchanged when adding
* fields. */
static bool send_core_fields(int fd, const Config* c) {
return send_str(fd, c->version) && send_str(fd, c->send_directory) &&
send_str(fd, c->receive_root_directory) && send_int(fd, c->save_to_disk) &&
send_int(fd, c->use_multithreading) && send_int(fd, c->use_chunk_serialization) &&
send_int(fd, c->use_compression) && send_int(fd, c->use_metadata) &&
send_int(fd, c->compression_level) &&
send_n_data(fd, &c->chunk_size, sizeof(c->chunk_size)) && send_int(fd, c->use_sendfile);
} }
#define CONFIG_SEND_VERSION(field) \ static bool send_delta_fields(int fd, const Config* c) {
do { \ return send_int(fd, c->use_delete) && send_int(fd, c->use_incremental) &&
if (!config_send_string(file_descriptor, config->field, false)) \ send_int(fd, c->use_delta) &&
return false; \ send_n_data(fd, &c->delta_block_size, sizeof(c->delta_block_size)) &&
} while (0); send_n_data(fd, &c->delta_max_file_size, sizeof(unsigned long long));
#define CONFIG_SEND_STRING(field) \ }
do { \
if (!config_send_string(file_descriptor, config->field, false)) \ static bool send_file_options(int fd, const Config* c) {
return false; \ return send_int(fd, c->backup) && send_str(fd, c->backup_dir ? c->backup_dir : "") &&
} while (0); send_int(fd, c->follow_symlinks) && send_int(fd, c->copy_links) &&
#define CONFIG_SEND_OPTIONAL_STRING(field) \ send_int(fd, c->safe_links) && send_int(fd, c->copy_unsafe_links) &&
do { \ send_int(fd, c->preserve_hard_links) && send_int(fd, c->preserve_acls) &&
if (!config_send_string(file_descriptor, config->field, true)) \ send_int(fd, c->preserve_xattrs) && send_int(fd, c->preserve_devices) &&
return false; \ send_int(fd, c->preserve_sparse);
} while (0); }
#define CONFIG_SEND_INTEGER(field) \
do { \ static bool send_selection_options(int fd, const Config* c) {
if (!send_int(file_descriptor, config->field)) \ return send_int(fd, c->existing) && send_int(fd, c->update) && send_int(fd, c->inplace) &&
return false; \ send_int(fd, c->append) && send_int(fd, c->append_verify) &&
} while (0); send_int(fd, c->delete_excluded) && send_int(fd, c->delete_after) &&
#define CONFIG_SEND_DATA(field) \ send_n_data(fd, &c->max_delete, sizeof(c->max_delete)) && send_int(fd, c->relative) &&
do { \ send_int(fd, c->prune_empty_dirs);
if (!send_n_data(file_descriptor, &config->field, sizeof(config->field))) \ }
return false; \
} while (0); static bool send_resume_options(int fd, const Config* c) {
return send_str(fd, c->temp_dir ? c->temp_dir : "") && send_int(fd, c->partial) &&
send_str(fd, c->partial_dir ? c->partial_dir : "") &&
send_str(fd, c->suffix ? c->suffix : "") && send_int(fd, c->delete_before) &&
send_int(fd, c->checksum) && send_str(fd, c->compress_choice ? c->compress_choice : "");
}
static bool receive_core_fields(int fd, Config* c) {
int value;
c->send_directory = receive_str(fd);
c->receive_root_directory = receive_str(fd);
if (!c->send_directory || !c->receive_root_directory)
return false;
if (!receive_wire_bool(fd, &c->save_to_disk) || !receive_wire_bool(fd, &c->use_multithreading) ||
!receive_wire_bool(fd, &c->use_chunk_serialization) ||
!receive_wire_bool(fd, &c->use_compression) || !receive_wire_bool(fd, &c->use_metadata))
return false;
if (!receive_int(fd, &value))
return false;
c->compression_level = value;
if (!receive_n_data(fd, &c->chunk_size, sizeof(c->chunk_size)))
return false;
if (!receive_wire_bool(fd, &c->use_sendfile))
return false;
return true;
}
static bool receive_delta_fields(int fd, Config* c) {
if (!receive_wire_bool(fd, &c->use_delete))
return false;
if (!receive_wire_bool(fd, &c->use_incremental))
return false;
if (!receive_wire_bool(fd, &c->use_delta))
return false;
return receive_n_data(fd, &c->delta_block_size, sizeof(c->delta_block_size)) &&
receive_n_data(fd, &c->delta_max_file_size, sizeof(unsigned long long));
}
static bool receive_file_options(int fd, Config* c) {
if (!receive_wire_bool(fd, &c->backup))
return false;
c->backup_dir = receive_str(fd);
if (!c->backup_dir)
return false;
bool* flags[] = {&c->follow_symlinks, &c->copy_links, &c->safe_links,
&c->copy_unsafe_links, &c->preserve_hard_links, &c->preserve_acls,
&c->preserve_xattrs, &c->preserve_devices, &c->preserve_sparse};
for (size_t i = 0; i < sizeof(flags) / sizeof(flags[0]); i++) {
if (!receive_wire_bool(fd, flags[i]))
return false;
}
return true;
}
static bool receive_selection_options(int fd, Config* c) {
bool* flags[] = {&c->existing, &c->update, &c->inplace, &c->append,
&c->append_verify, &c->delete_excluded, &c->delete_after};
for (size_t i = 0; i < sizeof(flags) / sizeof(flags[0]); i++) {
if (!receive_wire_bool(fd, flags[i]))
return false;
}
if (!receive_n_data(fd, &c->max_delete, sizeof(c->max_delete)))
return false;
if (!receive_wire_bool(fd, &c->relative))
return false;
if (!receive_wire_bool(fd, &c->prune_empty_dirs))
return false;
return true;
}
static bool receive_resume_options(int fd, Config* c) {
c->temp_dir = receive_str(fd);
if (!c->temp_dir || !receive_wire_bool(fd, &c->partial))
return false;
c->partial_dir = receive_str(fd);
c->suffix = c->partial_dir ? receive_str(fd) : NULL;
if (!c->partial_dir || !c->suffix || !receive_wire_bool(fd, &c->delete_before))
return false;
if (!receive_wire_bool(fd, &c->checksum))
return false;
c->compress_choice = receive_str(fd);
return c->compress_choice != NULL;
}
bool config_send(int file_descriptor, const Config* config) { bool config_send(int file_descriptor, const Config* config) {
CONFIG_WIRE_FIELDS(CONFIG_SEND_VERSION, CONFIG_SEND_STRING, CONFIG_SEND_OPTIONAL_STRING, if (!send_core_fields(file_descriptor, config) || !send_delta_fields(file_descriptor, config) ||
CONFIG_SEND_INTEGER, CONFIG_SEND_DATA) !send_file_options(file_descriptor, config) ||
!send_selection_options(file_descriptor, config) ||
!send_resume_options(file_descriptor, config))
return false;
Status status; Status status;
if (!receive_status(file_descriptor, &status)) if (!receive_status(file_descriptor, &status))
return false; return false;
@@ -216,66 +352,37 @@ bool config_send(int file_descriptor, const Config* config) {
return true; return true;
} }
#undef CONFIG_SEND_VERSION
#undef CONFIG_SEND_STRING
#undef CONFIG_SEND_OPTIONAL_STRING
#undef CONFIG_SEND_INTEGER
#undef CONFIG_SEND_DATA
static bool config_receive_string(int file_descriptor, char** destination) {
char* value = receive_str(file_descriptor);
if (!value)
return false;
*destination = value;
return true;
}
#define CONFIG_RECEIVE_VERSION(field) \
do { \
free(config->field); \
config->field = receive_str(file_descriptor); \
if (!config->field) \
goto error; \
if (strcmp(config->field, PROTOCOL_VERSION) != 0) { \
fprintf(stderr, "Protocol version mismatch: client=%s, server=%s\n", config->field, \
PROTOCOL_VERSION); \
config_delete(config); \
send_status(file_descriptor, STATUS_ERROR); \
return NULL; \
} \
} while (0);
#define CONFIG_RECEIVE_STRING(field) \
do { \
if (!config_receive_string(file_descriptor, &config->field)) \
goto error; \
} while (0);
#define CONFIG_RECEIVE_OPTIONAL_STRING(field) CONFIG_RECEIVE_STRING(field)
#define CONFIG_RECEIVE_INTEGER(field) \
do { \
if (!receive_int(file_descriptor, &tmp)) \
goto error; \
config->field = tmp; \
} while (0);
#define CONFIG_RECEIVE_DATA(field) \
do { \
if (!receive_n_data(file_descriptor, &config->field, sizeof(config->field))) \
goto error; \
} while (0);
Config* config_receive(int file_descriptor) { Config* config_receive(int file_descriptor) {
Config* config = (Config*)malloc(sizeof(Config)); Config* config = config_create();
if (config == NULL) if (!config)
return NULL; return NULL;
config_set_defaults(config); free(config->version);
int tmp; config->version = receive_str(file_descriptor);
CONFIG_WIRE_FIELDS(CONFIG_RECEIVE_VERSION, CONFIG_RECEIVE_STRING, CONFIG_RECEIVE_OPTIONAL_STRING, if (!config->version)
CONFIG_RECEIVE_INTEGER, CONFIG_RECEIVE_DATA) goto error;
if (strcmp(config->version, PROTOCOL_VERSION) != 0) {
fprintf(stderr, "Protocol version mismatch: client=%s, server=%s\n", config->version,
PROTOCOL_VERSION);
send_status(file_descriptor, STATUS_ERROR);
goto error;
}
if (!receive_core_fields(file_descriptor, config) ||
!receive_delta_fields(file_descriptor, config) ||
!receive_file_options(file_descriptor, config) ||
!receive_selection_options(file_descriptor, config) ||
!receive_resume_options(file_descriptor, config))
goto error;
if (config->compress_choice[0] != '\0' && strcmp(config->compress_choice, "zstd") != 0 && if (config->compress_choice[0] != '\0' && strcmp(config->compress_choice, "zstd") != 0 &&
strcmp(config->compress_choice, "none") != 0) { strcmp(config->compress_choice, "none") != 0) {
fprintf(stderr, "Unsupported compression choice: %s\n", config->compress_choice); fprintf(stderr, "Unsupported compression choice: %s\n", config->compress_choice);
send_status(file_descriptor, STATUS_ERROR); send_status(file_descriptor, STATUS_ERROR);
goto error; goto error;
} }
if (!validate_received_config(config)) {
fprintf(stderr, "Invalid configuration received from client\n");
send_status(file_descriptor, STATUS_ERROR);
goto error;
}
if (!send_status(file_descriptor, STATUS_OK)) if (!send_status(file_descriptor, STATUS_OK))
goto error; goto error;
return config; return config;
@@ -284,9 +391,3 @@ error:
config_delete(config); config_delete(config);
return NULL; return NULL;
} }
#undef CONFIG_RECEIVE_VERSION
#undef CONFIG_RECEIVE_STRING
#undef CONFIG_RECEIVE_OPTIONAL_STRING
#undef CONFIG_RECEIVE_INTEGER
#undef CONFIG_RECEIVE_DATA
+3 -49
View File
@@ -76,6 +76,7 @@ typedef struct Config {
bool human_readable; bool human_readable;
// Issue #127: Transfer modes // Issue #127: Transfer modes
bool existing;
bool update; bool update;
bool inplace; bool inplace;
bool append; bool append;
@@ -128,61 +129,14 @@ typedef struct Config {
char* compress_choice; char* compress_choice;
} Config; } Config;
/* Keep the on-wire field order in one place. The first three strings require #define PROTOCOL_VERSION "2.3.0"
* values when sent; optional strings are encoded as empty strings when NULL. */
#define CONFIG_WIRE_FIELDS(VERSION, STRING, OPTIONAL_STRING, INTEGER, DATA) \
VERSION(version) \
STRING(send_directory) \
STRING(receive_root_directory) \
INTEGER(save_to_disk) \
INTEGER(use_multithreading) \
INTEGER(use_chunk_serialization) \
INTEGER(use_compression) \
INTEGER(use_metadata) \
INTEGER(compression_level) \
DATA(chunk_size) \
INTEGER(use_sendfile) \
INTEGER(use_delete) \
INTEGER(use_incremental) \
INTEGER(use_delta) \
DATA(delta_block_size) \
DATA(delta_max_file_size) \
INTEGER(backup) \
OPTIONAL_STRING(backup_dir) \
INTEGER(follow_symlinks) \
INTEGER(copy_links) \
INTEGER(safe_links) \
INTEGER(copy_unsafe_links) \
INTEGER(preserve_hard_links) \
INTEGER(preserve_acls) \
INTEGER(preserve_xattrs) \
INTEGER(preserve_devices) \
INTEGER(preserve_sparse) \
INTEGER(update) \
INTEGER(inplace) \
INTEGER(append) \
INTEGER(append_verify) \
INTEGER(delete_excluded) \
INTEGER(delete_after) \
DATA(max_delete) \
INTEGER(relative) \
INTEGER(prune_empty_dirs) \
OPTIONAL_STRING(temp_dir) \
INTEGER(partial) \
OPTIONAL_STRING(partial_dir) \
OPTIONAL_STRING(suffix) \
INTEGER(delete_before) \
INTEGER(checksum) \
OPTIONAL_STRING(compress_choice)
#define PROTOCOL_VERSION "2.2.0"
#define DEFAULT_CHUNK_SIZE (10 * 1024 * 1024) #define DEFAULT_CHUNK_SIZE (10 * 1024 * 1024)
Config* config_create(void); Config* config_create(void);
void config_delete(Config* config); void config_delete(Config* config);
bool config_send(int file_descriptor, const Config* config); bool config_send(int file_descriptor, const Config* config);
Config* config_receive(int file_descriptor); Config* config_receive(int file_descriptor);
bool is_remote_dest(const char* s); bool config_is_remote_dest(const char* s);
void config_parse_ssh_dest(Config* config); void config_parse_ssh_dest(Config* config);
#endif #endif
+4
View File
@@ -21,6 +21,7 @@ Data* data_create_reserve(size_t size) {
} }
d->data = NULL; d->data = NULL;
d->size = size; d->size = size;
d->protocol_charge = 0;
return d; return d;
} }
@@ -33,12 +34,15 @@ Data* data_create(void* data, size_t data_size) {
} }
new_data->data = data; new_data->data = data;
new_data->size = data_size; new_data->size = data_size;
new_data->protocol_charge = 0;
return new_data; return new_data;
} }
void data_destroy(Data* data) { void data_destroy(Data* data) {
if (data == NULL) if (data == NULL)
return; return;
if (data->protocol_charge != 0)
protocol_release_memory(data->protocol_charge);
free(data->data); free(data->data);
free(data); free(data);
} }
+3
View File
@@ -6,11 +6,14 @@
typedef struct { typedef struct {
void* data; void* data;
size_t size; size_t size;
/* Non-zero only for a buffer charged to the protocol connection budget. */
size_t protocol_charge;
} Data; } Data;
Data* data_create_empty(size_t data_size); Data* data_create_empty(size_t data_size);
Data* data_create_reserve(size_t size); Data* data_create_reserve(size_t size);
Data* data_create(void* data, size_t data_size); Data* data_create(void* data, size_t data_size);
void data_destroy(Data* data); void data_destroy(Data* data);
void protocol_release_memory(size_t charge);
#endif #endif
+85 -56
View File
@@ -1,6 +1,7 @@
#include "delta.h" #include "delta.h"
#include "log.h" #include "log.h"
#include <stdint.h> #include <stdint.h>
#include <limits.h>
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
@@ -36,6 +37,10 @@ DeltaSignature* delta_signature_create(const void* old_file_data, uint64_t old_f
if (old_file_data == NULL || old_file_size == 0 || block_size == 0) if (old_file_data == NULL || old_file_size == 0 || block_size == 0)
return NULL; return NULL;
if (old_file_size > DELTA_MAX_FILE_SIZE || block_size > DELTA_BLOCK_SIZE_MAX ||
old_file_size > UINT32_MAX * (uint64_t)block_size)
return NULL;
uint32_t block_count = (uint32_t)((old_file_size + block_size - 1) / block_size); uint32_t block_count = (uint32_t)((old_file_size + block_size - 1) / block_size);
DeltaSignature* sig = malloc(sizeof(DeltaSignature)); DeltaSignature* sig = malloc(sizeof(DeltaSignature));
@@ -45,7 +50,11 @@ DeltaSignature* delta_signature_create(const void* old_file_data, uint64_t old_f
sig->file_size = old_file_size; sig->file_size = old_file_size;
sig->block_size = block_size; sig->block_size = block_size;
sig->block_count = block_count; sig->block_count = block_count;
sig->blocks = malloc(block_count * sizeof(DeltaBlockSig)); if (block_count == 0) {
free(sig);
return NULL;
}
sig->blocks = malloc((size_t)block_count * sizeof(DeltaBlockSig));
if (!sig->blocks) { if (!sig->blocks) {
free(sig); free(sig);
return NULL; return NULL;
@@ -67,8 +76,11 @@ Data* delta_signature_serialize(const DeltaSignature* sig) {
if (!sig) if (!sig)
return NULL; return NULL;
uint64_t total = sizeof(uint64_t) + sizeof(uint32_t) + sizeof(uint32_t) + uint64_t block_bytes = (uint64_t)sig->block_count * (sizeof(uint32_t) + sizeof(uint32_t));
(uint64_t)sig->block_count * (sizeof(uint32_t) + sizeof(uint32_t)); uint64_t total = sizeof(uint64_t) + sizeof(uint32_t) + sizeof(uint32_t) + block_bytes;
if (block_bytes > UINT64_MAX - (sizeof(uint64_t) + sizeof(uint32_t) + sizeof(uint32_t)) ||
total > SIZE_MAX)
return NULL;
uint8_t* buf = malloc((size_t)total); uint8_t* buf = malloc((size_t)total);
if (!buf) if (!buf)
@@ -118,6 +130,13 @@ DeltaSignature* delta_signature_deserialize(const Data* data) {
return NULL; return NULL;
} }
if (sig->block_size == 0 || sig->block_size > DELTA_BLOCK_SIZE_MAX ||
sig->file_size > DELTA_MAX_FILE_SIZE || sig->file_size == 0 ||
(sig->file_size + sig->block_size - 1) / sig->block_size != sig->block_count) {
free(sig);
return NULL;
}
uint64_t expected = sizeof(uint64_t) + sizeof(uint32_t) + sizeof(uint32_t) + uint64_t expected = sizeof(uint64_t) + sizeof(uint32_t) + sizeof(uint32_t) +
(uint64_t)sig->block_count * (sizeof(uint32_t) + sizeof(uint32_t)); (uint64_t)sig->block_count * (sizeof(uint32_t) + sizeof(uint32_t));
if (data->size < expected) { if (data->size < expected) {
@@ -156,8 +175,10 @@ void delta_signature_destroy(DeltaSignature* sig) {
static bool ensure_capacity(DeltaInstruction** instrs, uint32_t* capacity, uint32_t count) { static bool ensure_capacity(DeltaInstruction** instrs, uint32_t* capacity, uint32_t count) {
if (count < *capacity) if (count < *capacity)
return true; return true;
if (*capacity > MAX_DELTA_INSTRUCTIONS / 2)
return false;
uint32_t new_cap = *capacity * 2; uint32_t new_cap = *capacity * 2;
DeltaInstruction* tmp = realloc(*instrs, new_cap * sizeof(DeltaInstruction)); DeltaInstruction* tmp = realloc(*instrs, (size_t)new_cap * sizeof(DeltaInstruction));
if (!tmp) if (!tmp)
return false; return false;
*instrs = tmp; *instrs = tmp;
@@ -169,6 +190,8 @@ static bool flush_literal(DeltaInstruction** instrs, uint32_t* capacity, uint32_
const uint8_t* data, uint64_t start, uint64_t end) { const uint8_t* data, uint64_t start, uint64_t end) {
if (start >= end) if (start >= end)
return true; return true;
if (end - start > UINT32_MAX || *count >= MAX_DELTA_INSTRUCTIONS)
return false;
uint32_t lit_len = (uint32_t)(end - start); uint32_t lit_len = (uint32_t)(end - start);
if (!ensure_capacity(instrs, capacity, *count)) if (!ensure_capacity(instrs, capacity, *count))
return false; return false;
@@ -183,16 +206,26 @@ static bool flush_literal(DeltaInstruction** instrs, uint32_t* capacity, uint32_
return true; return true;
} }
static void free_instructions(DeltaInstruction* instrs, uint32_t count) {
if (!instrs)
return;
for (uint32_t i = 0; i < count; i++)
if (instrs[i].type == DELTA_INSTR_LITERAL)
free(instrs[i].literal.data);
free(instrs);
}
Delta* delta_compute(const void* new_file_data, uint64_t new_file_size, const DeltaSignature* sig, Delta* delta_compute(const void* new_file_data, uint64_t new_file_size, const DeltaSignature* sig,
uint32_t block_size) { uint32_t block_size) {
if (!new_file_data || !sig || new_file_size == 0 || block_size == 0) if (!new_file_data || !sig || !sig->blocks || new_file_size == 0 || block_size == 0 ||
block_size > DELTA_BLOCK_SIZE_MAX || sig->block_size != block_size)
return NULL; return NULL;
const uint8_t* new_data = (const uint8_t*)new_file_data; const uint8_t* new_data = (const uint8_t*)new_file_data;
uint32_t capacity = 64; uint32_t capacity = 64;
uint32_t count = 0; uint32_t count = 0;
DeltaInstruction* instrs = malloc(capacity * sizeof(DeltaInstruction)); DeltaInstruction* instrs = malloc((size_t)capacity * sizeof(DeltaInstruction));
if (!instrs) if (!instrs)
return NULL; return NULL;
@@ -236,14 +269,14 @@ Delta* delta_compute(const void* new_file_data, uint64_t new_file_size, const De
if (xxh == sig->blocks[j].xxhash) { if (xxh == sig->blocks[j].xxhash) {
if (has_literal) { if (has_literal) {
if (!flush_literal(&instrs, &capacity, &count, new_data, literal_start, i)) { if (!flush_literal(&instrs, &capacity, &count, new_data, literal_start, i)) {
free(instrs); free_instructions(instrs, count);
return NULL; return NULL;
} }
has_literal = false; has_literal = false;
} }
if (!ensure_capacity(&instrs, &capacity, count)) { if (!ensure_capacity(&instrs, &capacity, count)) {
free(instrs); free_instructions(instrs, count);
return NULL; return NULL;
} }
instrs[count].type = DELTA_INSTR_BLOCK_MATCH; instrs[count].type = DELTA_INSTR_BLOCK_MATCH;
@@ -271,18 +304,14 @@ Delta* delta_compute(const void* new_file_data, uint64_t new_file_size, const De
if (has_literal) { if (has_literal) {
if (!flush_literal(&instrs, &capacity, &count, new_data, literal_start, new_file_size)) { if (!flush_literal(&instrs, &capacity, &count, new_data, literal_start, new_file_size)) {
free(instrs); free_instructions(instrs, count);
return NULL; return NULL;
} }
} }
Delta* delta = malloc(sizeof(Delta)); Delta* delta = malloc(sizeof(Delta));
if (!delta) { if (!delta) {
for (uint32_t k = 0; k < count; k++) { free_instructions(instrs, count);
if (instrs[k].type == DELTA_INSTR_LITERAL)
free(instrs[k].literal.data);
}
free(instrs);
return NULL; return NULL;
} }
@@ -292,11 +321,24 @@ Delta* delta_compute(const void* new_file_data, uint64_t new_file_size, const De
delta->delta_size = 0; delta->delta_size = 0;
for (uint32_t k = 0; k < count; k++) { for (uint32_t k = 0; k < count; k++) {
if (delta->delta_size == UINT64_MAX) {
delta_destroy(delta);
return NULL;
}
delta->delta_size += 1; delta->delta_size += 1;
if (instrs[k].type == DELTA_INSTR_BLOCK_MATCH) { if (instrs[k].type == DELTA_INSTR_BLOCK_MATCH) {
if (delta->delta_size > UINT64_MAX - sizeof(uint32_t) * 3) {
delta_destroy(delta);
return NULL;
}
delta->delta_size += sizeof(uint32_t) * 3; delta->delta_size += sizeof(uint32_t) * 3;
} else { } else {
delta->delta_size += sizeof(uint32_t) + instrs[k].literal.length; uint64_t extra = sizeof(uint32_t) + instrs[k].literal.length;
if (delta->delta_size > UINT64_MAX - extra) {
delta_destroy(delta);
return NULL;
}
delta->delta_size += extra;
} }
} }
@@ -307,7 +349,12 @@ Data* delta_serialize(const Delta* delta) {
if (!delta) if (!delta)
return NULL; return NULL;
uint64_t total = sizeof(uint64_t) + sizeof(uint32_t) + delta->delta_size; if (delta->instruction_count > 0 && !delta->instructions)
return NULL;
uint64_t header_size = sizeof(uint64_t) + sizeof(uint32_t);
if (delta->delta_size > UINT64_MAX - header_size || header_size + delta->delta_size > SIZE_MAX)
return NULL;
uint64_t total = header_size + delta->delta_size;
uint8_t* buf = malloc((size_t)total); uint8_t* buf = malloc((size_t)total);
if (!buf) if (!buf)
return NULL; return NULL;
@@ -365,8 +412,10 @@ Delta* delta_deserialize(const Data* data) {
return NULL; return NULL;
} }
delta->instructions = malloc(delta->instruction_count * sizeof(DeltaInstruction)); delta->instructions = delta->instruction_count == 0
if (!delta->instructions) { ? NULL
: malloc((size_t)delta->instruction_count * sizeof(DeltaInstruction));
if (delta->instruction_count > 0 && !delta->instructions) {
free(delta); free(delta);
return NULL; return NULL;
} }
@@ -375,11 +424,7 @@ Delta* delta_deserialize(const Data* data) {
for (uint32_t i = 0; i < delta->instruction_count; i++) { for (uint32_t i = 0; i < delta->instruction_count; i++) {
if (pos >= data->size) { if (pos >= data->size) {
for (uint32_t k = 0; k < i; k++) { free_instructions(delta->instructions, i);
if (delta->instructions[k].type == DELTA_INSTR_LITERAL)
free(delta->instructions[k].literal.data);
}
free(delta->instructions);
free(delta); free(delta);
return NULL; return NULL;
} }
@@ -391,12 +436,8 @@ Delta* delta_deserialize(const Data* data) {
delta->delta_size += 1; delta->delta_size += 1;
if (type == DELTA_OP_BLOCK_MATCH) { if (type == DELTA_OP_BLOCK_MATCH) {
if (pos + sizeof(uint32_t) * 3 > data->size) { if (data->size - pos < sizeof(uint32_t) * 3) {
for (uint32_t k = 0; k < i; k++) { free_instructions(delta->instructions, i);
if (delta->instructions[k].type == DELTA_INSTR_LITERAL)
free(delta->instructions[k].literal.data);
}
free(delta->instructions);
free(delta); free(delta);
return NULL; return NULL;
} }
@@ -409,12 +450,8 @@ Delta* delta_deserialize(const Data* data) {
pos += sizeof(uint32_t); pos += sizeof(uint32_t);
delta->delta_size += sizeof(uint32_t) * 3; delta->delta_size += sizeof(uint32_t) * 3;
} else if (type == DELTA_OP_LITERAL) { } else if (type == DELTA_OP_LITERAL) {
if (pos + sizeof(uint32_t) > data->size) { if (data->size - pos < sizeof(uint32_t)) {
for (uint32_t k = 0; k < i; k++) { free_instructions(delta->instructions, i);
if (delta->instructions[k].type == DELTA_INSTR_LITERAL)
free(delta->instructions[k].literal.data);
}
free(delta->instructions);
free(delta); free(delta);
return NULL; return NULL;
} }
@@ -423,23 +460,15 @@ Delta* delta_deserialize(const Data* data) {
pos += sizeof(uint32_t); pos += sizeof(uint32_t);
uint32_t lit_len = delta->instructions[i].literal.length; uint32_t lit_len = delta->instructions[i].literal.length;
if (pos + lit_len > data->size) { if (lit_len > data->size - pos) {
for (uint32_t k = 0; k < i; k++) { free_instructions(delta->instructions, i);
if (delta->instructions[k].type == DELTA_INSTR_LITERAL)
free(delta->instructions[k].literal.data);
}
free(delta->instructions);
free(delta); free(delta);
return NULL; return NULL;
} }
delta->instructions[i].literal.data = malloc(lit_len); delta->instructions[i].literal.data = malloc(lit_len ? lit_len : 1);
if (!delta->instructions[i].literal.data) { if (!delta->instructions[i].literal.data) {
log_message(LOG_LEVEL_ERROR, "Failed to allocate %u bytes for literal data", lit_len); log_message(LOG_LEVEL_ERROR, "Failed to allocate %u bytes for literal data", lit_len);
for (uint32_t k = 0; k < i; k++) { free_instructions(delta->instructions, i);
if (delta->instructions[k].type == DELTA_INSTR_LITERAL)
free(delta->instructions[k].literal.data);
}
free(delta->instructions);
free(delta); free(delta);
return NULL; return NULL;
} }
@@ -447,11 +476,7 @@ Delta* delta_deserialize(const Data* data) {
pos += lit_len; pos += lit_len;
delta->delta_size += sizeof(uint32_t) + lit_len; delta->delta_size += sizeof(uint32_t) + lit_len;
} else { } else {
for (uint32_t k = 0; k < i; k++) { free_instructions(delta->instructions, i);
if (delta->instructions[k].type == DELTA_INSTR_LITERAL)
free(delta->instructions[k].literal.data);
}
free(delta->instructions);
free(delta); free(delta);
return NULL; return NULL;
} }
@@ -463,10 +488,11 @@ Delta* delta_deserialize(const Data* data) {
void* delta_apply(const void* old_data, uint64_t old_size, const Delta* delta, void* delta_apply(const void* old_data, uint64_t old_size, const Delta* delta,
uint32_t block_size) { uint32_t block_size) {
if (!old_data || !delta || (delta->new_file_size > 0 && delta->instructions == NULL) || if (!old_data || !delta || (delta->new_file_size > 0 && delta->instructions == NULL) ||
(delta->instruction_count > 0 && block_size == 0)) (delta->instruction_count > 0 && block_size == 0) ||
delta->new_file_size > DELTA_MAX_FILE_SIZE || delta->new_file_size > SIZE_MAX)
return NULL; return NULL;
void* output = malloc((size_t)delta->new_file_size); void* output = malloc(delta->new_file_size ? (size_t)delta->new_file_size : 1);
if (!output) if (!output)
return NULL; return NULL;
@@ -491,7 +517,7 @@ void* delta_apply(const void* old_data, uint64_t old_size, const Delta* delta,
} }
memcpy(out + out_pos, old + src_offset, len); memcpy(out + out_pos, old + src_offset, len);
out_pos += len; out_pos += len;
} else { } else if (delta->instructions[i].type == DELTA_INSTR_LITERAL) {
uint32_t len = delta->instructions[i].literal.length; uint32_t len = delta->instructions[i].literal.length;
if (out_pos > delta->new_file_size || (uint64_t)len > delta->new_file_size - out_pos) { if (out_pos > delta->new_file_size || (uint64_t)len > delta->new_file_size - out_pos) {
free(output); free(output);
@@ -499,6 +525,9 @@ void* delta_apply(const void* old_data, uint64_t old_size, const Delta* delta,
} }
memcpy(out + out_pos, delta->instructions[i].literal.data, len); memcpy(out + out_pos, delta->instructions[i].literal.data, len);
out_pos += len; out_pos += len;
} else {
free(output);
return NULL;
} }
} }
@@ -534,7 +563,7 @@ bool delta_should_attempt(uint64_t old_size, uint64_t new_size, uint64_t max_fil
} }
bool delta_is_worthwhile(const Delta* delta, uint64_t new_file_size) { bool delta_is_worthwhile(const Delta* delta, uint64_t new_file_size) {
if (!delta || delta->instruction_count == 0) if (!delta || delta->instruction_count == 0 || new_file_size == 0)
return false; return false;
bool has_match = false; bool has_match = false;
+122 -841
View File
File diff suppressed because it is too large Load Diff
+20 -29
View File
@@ -1,45 +1,36 @@
#ifndef FILE_H #ifndef FILE_H
#define FILE_H #define FILE_H
#include "config.h" #include "file_send.h"
#include "data.h" #include "file_receive.h"
#include "file_types.h"
#include <stdbool.h> #include <stdbool.h>
#include <stdint.h>
#include <sys/stat.h> #include <sys/stat.h>
typedef enum { FILE_TYPE_REGULAR, FILE_TYPE_SYMLINK, FILE_TYPE_DIR } FileType; /* File/FileMetadata lifecycle, local disk helpers, and secure filesystem
primitives shared by the send/receive pipelines. */
typedef struct {
mode_t mode;
uid_t uid;
gid_t gid;
time_t mtime_sec;
long mtime_nsec;
} FileMetadata;
typedef struct {
char* path;
Data* data;
FileMetadata* metadata;
bool skip;
} File;
File* file_create(const char* path); File* file_create(const char* path);
void file_destroy(void* item); void file_destroy(void* item);
bool file_load_data(File* file); bool file_load_data(File* file);
bool file_checksum(File* file, uint64_t* checksum); bool file_checksum(File* file, uint64_t* checksum);
File* file_receive(const Config* config, int file_descriptor);
bool file_send_single_calls(File* file, int file_descriptor, bool use_metadata,
int compression_level, bool send_path);
bool file_send_sendfile(File* file, int file_descriptor, bool use_metadata, int compression_level,
bool send_path);
size_t file_content_to_buffer(File* file); size_t file_content_to_buffer(File* file);
FileMetadata* file_metadata_create(const struct stat* stats); FileMetadata* file_metadata_create(const struct stat* stats);
void file_metadata_destroy(void* metadata); void file_metadata_destroy(void* metadata);
bool to_disk(const char* path, const void* data, unsigned long long data_size, bool inplace, bool file_write_to_disk(const char* path, const void* data, unsigned long long data_size,
bool sparse); bool inplace, bool sparse);
bool file_save_to_disk(const char* root_directory, const File* file, const Config* config);
void file_set_authorized_root(int fd, const char* canonical_path); /* A configured fd without a canonical identity deliberately rejects paths. */
File* receive_incremental_check(int fd, const Config* config, bool* skipped); bool file_set_authorized_root(int fd, const char* canonical_path);
int receive_manifest(int fd, const Config* config, int* next_status);
/* Secure path/filesystem primitives (symlink-safe, O_NOFOLLOW, root-confined). */
bool file_path_exists_secure(const char* path);
bool file_stat_secure(const char* path, struct stat* st);
int file_open_secure_parent(const char* path, char** leaf_out, bool create_dirs);
bool file_ensure_directory_secure(const char* path);
bool file_rename_secure(const char* old_path, const char* new_path);
bool file_to_disk_secure(const char* path, const void* data, unsigned long long data_size,
bool inplace, bool sparse, const FileMetadata* metadata);
#endif #endif
+594
View File
@@ -0,0 +1,594 @@
#include <errno.h>
#include <fcntl.h>
#include <libgen.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/stat.h>
#include <unistd.h>
#include "array_list.h"
#include "compression.h"
#include "config.h"
#include "data.h"
#include "delta.h"
#include "file.h"
#include "log.h"
#include "metadata.h"
#include "protocol.h"
#include "utils.h"
#define MAX_SERVER_DELETE_COUNT 100000U
#define MAX_FILE_DATA_SIZE MAX_RECEIVE_FILE_SIZE
bool file_save_to_disk(const char* root_directory, const File* file, const Config* config) {
bool backup_enabled = config && config->backup;
bool inplace = config && config->inplace;
bool sparse = config && config->preserve_sparse;
const char* backup_suffix = (config && config->suffix) ? config->suffix : "~";
const char* backup_dir = (config && config->backup_dir) ? config->backup_dir : NULL;
const char* partial_dir = (config && config->partial_dir) ? config->partial_dir : NULL;
char *confined_backup = NULL, *confined_partial = NULL, *disk_path = NULL;
char* destination_path = NULL;
char *backup_path = NULL, *parent_copy = NULL;
if (!file || !file->path || !file->data || (file->data->size != 0 && !file->data->data) ||
has_path_traversal(file->path) ||
(backup_enabled &&
(!backup_suffix || backup_suffix[0] == '\0' || strchr(backup_suffix, '/') != NULL ||
strcmp(backup_suffix, ".") == 0 || strcmp(backup_suffix, "..") == 0))) {
log_message(LOG_LEVEL_ERROR, "Invalid file or path received");
return false;
}
/* These options arrive from the client. They are names below the server
root, never independent filesystem roots. */
if ((backup_dir && (backup_dir[0] == '/' || has_path_traversal(backup_dir))) ||
(partial_dir && (partial_dir[0] == '/' || has_path_traversal(partial_dir))))
return false;
if (backup_dir && !(confined_backup = path_cat(root_directory, backup_dir)))
return false;
if (partial_dir && !(confined_partial = path_cat(root_directory, partial_dir))) {
free(confined_backup);
return false;
}
const char* actual_root =
(partial_dir && config && config->partial) ? confined_partial : root_directory;
destination_path = path_cat(root_directory, file->path);
disk_path = path_cat(actual_root, file->path);
if (destination_path == NULL || disk_path == NULL) {
free(confined_backup);
free(confined_partial);
free(destination_path);
free(disk_path);
return false;
}
/* --existing checks the final destination, not a temporary partial path. */
if (config && config->existing && !file_path_exists_secure(destination_path)) {
free(confined_backup);
free(confined_partial);
free(destination_path);
free(disk_path);
return true;
}
free(destination_path);
destination_path = NULL;
/* --update is receiver-side policy: never replace a newer destination. */
if (config && config->update) {
struct stat destination_stat;
if (file_stat_secure(disk_path, &destination_stat) && file->metadata &&
destination_stat.st_mtime > file->metadata->mtime_sec) {
free(confined_backup);
free(confined_partial);
free(destination_path);
free(disk_path);
return true;
}
}
if (backup_enabled) {
struct stat backup_stat;
if (file_stat_secure(disk_path, &backup_stat)) {
if (backup_dir) {
backup_path = path_cat(confined_backup, file->path);
} else {
size_t path_len = strlen(disk_path);
size_t suffix_len = strlen(backup_suffix);
if (path_len > SIZE_MAX - suffix_len - 1)
goto fail;
backup_path = malloc(path_len + suffix_len + 1);
if (backup_path) {
memcpy(backup_path, disk_path, path_len);
memcpy(backup_path + path_len, backup_suffix, suffix_len + 1);
}
}
if (!backup_path)
goto fail;
parent_copy = str_dup(backup_path);
if (!parent_copy || !file_ensure_directory_secure(dirname(parent_copy)))
goto fail;
free(parent_copy);
parent_copy = NULL;
if (!file_rename_secure(disk_path, backup_path))
goto fail;
free(backup_path);
backup_path = NULL;
}
}
bool ok = file_to_disk_secure(disk_path, file->data->data, file->data->size, inplace, sparse,
file->metadata);
free(parent_copy);
free(backup_path);
free(confined_backup);
free(confined_partial);
free(destination_path);
free(disk_path);
return ok;
fail:
free(parent_copy);
free(backup_path);
free(confined_backup);
free(confined_partial);
free(destination_path);
free(disk_path);
return false;
}
static File* receive_delta_file(int fd, const Config* config, const char* check_path,
void* old_data, unsigned long long old_size, bool* failed) {
if (!old_data)
return NULL;
DeltaSignature* sig = delta_signature_create(old_data, old_size, config->delta_block_size);
if (!sig) {
free(old_data);
*failed = true;
return NULL;
}
Data* sig_data = delta_signature_serialize(sig);
if (!sig_data) {
delta_signature_destroy(sig);
free(old_data);
*failed = true;
return NULL;
}
bool sig_sent = send_status(fd, STATUS_DELTA_SIGNATURE) && send_data(fd, sig_data);
data_destroy(sig_data);
if (!sig_sent) {
delta_signature_destroy(sig);
free(old_data);
*failed = true;
return NULL;
}
Status resp;
if (!receive_status(fd, &resp)) {
delta_signature_destroy(sig);
free(old_data);
*failed = true;
return NULL;
}
if (resp == STATUS_DELTA_DATA) {
Data* delta_data = receive_data_limited(fd, MAX_RECEIVE_FILE_SIZE);
if (!delta_data) {
delta_signature_destroy(sig);
free(old_data);
*failed = true;
return NULL;
}
Data* raw_delta = delta_data;
if (config->use_compression) {
raw_delta = data_decompress_limited(delta_data, MAX_RECEIVE_FILE_SIZE);
data_destroy(delta_data);
if (!raw_delta) {
free(old_data);
delta_signature_destroy(sig);
*failed = true;
return NULL;
}
}
Delta* delta = delta_deserialize(raw_delta);
data_destroy(raw_delta);
if (!delta) {
free(old_data);
delta_signature_destroy(sig);
*failed = true;
return NULL;
}
uint64_t new_size = delta->new_file_size;
if (new_size > MAX_RECEIVE_FILE_SIZE || new_size > SIZE_MAX) {
delta_destroy(delta);
free(old_data);
delta_signature_destroy(sig);
send_status(fd, STATUS_ERROR);
return NULL;
}
void* new_data = delta_apply(old_data, old_size, delta, config->delta_block_size);
delta_destroy(delta);
if (!new_data) {
free(old_data);
delta_signature_destroy(sig);
*failed = true;
return NULL;
}
File* file = file_create(check_path);
if (!file) {
free(new_data);
free(old_data);
delta_signature_destroy(sig);
*failed = true;
return NULL;
}
if (config->use_metadata) {
int meta_ok = 1;
file->metadata = metadata_receive(fd, &meta_ok);
if (!meta_ok) {
file_destroy(file);
free(new_data);
free(old_data);
delta_signature_destroy(sig);
*failed = true;
return NULL;
}
}
Data* replacement = data_create(new_data, (size_t)new_size);
if (replacement == NULL) {
file_destroy(file);
free(old_data);
delta_signature_destroy(sig);
send_status(fd, STATUS_ERROR);
return NULL;
}
data_destroy(file->data);
file->data = replacement;
free(old_data);
delta_signature_destroy(sig);
return file;
}
if (resp == STATUS_NEXT) {
delta_signature_destroy(sig);
free(old_data);
File* file = file_create(check_path);
if (!file) {
*failed = true;
return NULL;
}
if (config->use_metadata) {
int meta_ok = 1;
file->metadata = metadata_receive(fd, &meta_ok);
if (!meta_ok) {
file_destroy(file);
*failed = true;
return NULL;
}
}
Data* file_data = receive_data_limited(fd, MAX_RECEIVE_FILE_SIZE);
if (file_data == NULL) {
file_destroy(file);
*failed = true;
return NULL;
}
if (config->use_compression) {
Data* uncompressed = data_decompress_limited(file_data, MAX_RECEIVE_FILE_SIZE);
data_destroy(file_data);
if (uncompressed == NULL) {
file_destroy(file);
*failed = true;
return NULL;
}
if (uncompressed->size > MAX_FILE_DATA_SIZE) {
data_destroy(uncompressed);
file_destroy(file);
send_status(fd, STATUS_ERROR);
return NULL;
}
file_data = uncompressed;
}
data_destroy(file->data);
file->data = file_data;
return file;
}
delta_signature_destroy(sig);
free(old_data);
send_status(fd, STATUS_ERROR);
*failed = true;
return NULL;
}
File* receive_incremental_check(int fd, const Config* config, bool* skipped) {
if (!config || !skipped) {
send_status(fd, STATUS_ERROR);
return NULL;
}
*skipped = false;
char* check_path = receive_str(fd);
if (check_path == NULL) {
return NULL;
}
unsigned long long check_size;
long long check_mtime;
uint64_t check_checksum = 0;
if (!receive_n_data(fd, &check_size, sizeof(check_size)) ||
!receive_n_data(fd, &check_mtime, sizeof(check_mtime))) {
free(check_path);
return NULL;
}
if (config->checksum && !receive_n_data(fd, &check_checksum, sizeof(check_checksum))) {
free(check_path);
return NULL;
}
if (check_size > MAX_RECEIVE_FILE_SIZE) {
free(check_path);
send_status(fd, STATUS_ERROR);
return NULL;
}
if (has_path_traversal(check_path)) {
log_message(LOG_LEVEL_ERROR, "Path traversal detected: %s", check_path);
free(check_path);
return NULL;
}
char* full_path = path_cat(config->receive_root_directory, check_path);
if (!full_path) {
free(check_path);
send_status(fd, STATUS_ERROR);
return NULL;
}
struct stat st;
bool has_old_file = false;
int old_fd = -1;
char* leaf = NULL;
int parent_fd = file_open_secure_parent(full_path, &leaf, false);
if (parent_fd >= 0) {
old_fd = openat(parent_fd, leaf, O_RDONLY | O_CLOEXEC | O_NOFOLLOW);
free(leaf);
close(parent_fd);
has_old_file = old_fd >= 0 && fstat(old_fd, &st) == 0 && S_ISREG(st.st_mode);
}
unsigned long long old_size = has_old_file ? (unsigned long long)st.st_size : 0;
void* old_data = NULL;
if (has_old_file && old_size > 0 && old_size <= MAX_RECEIVE_FILE_SIZE && old_size <= SIZE_MAX) {
old_data = malloc((size_t)old_size);
if (old_data) {
size_t got = 0;
while (got < (size_t)old_size) {
ssize_t n = read(old_fd, (char*)old_data + got, (size_t)old_size - got);
if (n <= 0) {
free(old_data);
old_data = NULL;
break;
}
got += (size_t)n;
}
}
}
if (old_fd >= 0) {
close(old_fd);
}
bool match = has_old_file && (unsigned long long)st.st_size == check_size;
if (match && config->checksum) {
uint64_t old_checksum = old_size == 0 ? delta_xxhash64("", 0) : 0;
if (old_data)
old_checksum = delta_xxhash64(old_data, (size_t)old_size);
match = (old_size == 0 || old_data) && old_checksum == check_checksum;
free(old_data);
old_data = NULL;
} else if (match) {
match = (long long)st.st_mtime == check_mtime;
}
if (match) {
free(old_data);
if (!send_status(fd, STATUS_OK)) {
free(full_path);
free(check_path);
return NULL;
}
free(full_path);
free(check_path);
*skipped = true;
return NULL;
}
bool try_delta = config->use_delta && has_old_file && old_data != NULL &&
delta_should_attempt(old_size, check_size, config->delta_max_file_size);
if (try_delta) {
bool delta_failed = false;
File* delta_file =
receive_delta_file(fd, config, check_path, old_data, old_size, &delta_failed);
old_data = NULL; /* receive_delta_file consumes the snapshot on every path */
if (delta_file) {
free(full_path);
free(check_path);
return delta_file;
}
if (delta_failed) {
free(full_path);
free(check_path);
return NULL;
}
free(old_data);
old_data = NULL;
try_delta = false;
}
if (!try_delta) {
if (!send_status(fd, STATUS_NEXT)) {
free(full_path);
free(check_path);
return NULL;
}
}
File* file = file_create(check_path);
free(check_path);
free(full_path);
if (file == NULL) {
return NULL;
}
if (config->use_metadata) {
int meta_ok = 1;
file->metadata = metadata_receive(fd, &meta_ok);
if (!meta_ok) {
file_destroy(file);
return NULL;
}
}
Data* file_data = receive_data_limited(fd, MAX_RECEIVE_FILE_SIZE);
if (file_data == NULL) {
file_destroy(file);
return NULL;
}
if (config->use_compression) {
Data* uncompressed = data_decompress_limited(file_data, MAX_RECEIVE_FILE_SIZE);
data_destroy(file_data);
if (uncompressed == NULL) {
file_destroy(file);
return NULL;
}
if (uncompressed->size > MAX_FILE_DATA_SIZE) {
data_destroy(uncompressed);
file_destroy(file);
send_status(fd, STATUS_ERROR);
return NULL;
}
file_data = uncompressed;
}
data_destroy(file->data);
file->data = file_data;
return file;
}
File* file_receive(const Config* config, int file_descriptor) {
char* path = receive_str(file_descriptor);
if (path == NULL)
return NULL;
if (path[0] == '\0' || has_path_traversal(path)) {
log_message(LOG_LEVEL_ERROR, "Invalid received file path: %s", path);
free(path);
return NULL;
}
File* file = file_create(path);
free(path);
if (file == NULL)
return NULL;
if (config->use_metadata) {
int meta_ok = 1;
file->metadata = metadata_receive(file_descriptor, &meta_ok);
if (!meta_ok) {
file_destroy(file);
return NULL;
}
}
Data* file_data = receive_data_limited(file_descriptor, MAX_RECEIVE_FILE_SIZE);
if (file_data == NULL) {
file_destroy(file);
return NULL;
}
if (config->use_compression && !compression_should_skip(file->path)) {
Data* file_data_uncompressed = data_decompress_limited(file_data, MAX_RECEIVE_FILE_SIZE);
data_destroy(file_data);
if (file_data_uncompressed == NULL) {
file_destroy(file);
return NULL;
}
if (file_data_uncompressed->size > MAX_FILE_DATA_SIZE) {
data_destroy(file_data_uncompressed);
file_destroy(file);
return NULL;
}
file_data = file_data_uncompressed;
}
data_destroy(file->data);
file->data = file_data;
return file;
}
int receive_manifest(int fd, const Config* config, int* next_status) {
if (!config) {
send_status(fd, STATUS_ERROR);
return -1;
}
int received_status = STATUS_ERROR;
int* status_out = next_status ? next_status : &received_status;
int count;
if (!receive_int(fd, &count)) {
send_status(fd, STATUS_ERROR);
return -1;
}
if (count < 0 || count > MAX_MANIFEST_ENTRIES) {
send_status(fd, STATUS_ERROR);
return -1;
}
ArrayList* manifest = array_list_create(free);
if (!manifest) {
send_status(fd, STATUS_ERROR);
return -1;
}
size_t manifest_bytes = 0;
for (int i = 0; i < count; i++) {
char* s = receive_str(fd);
size_t entry_size = s ? strlen(s) : 0;
if (!s || s[0] == '\0' || s[0] == '/' || has_path_traversal(s) ||
entry_size > MAX_MANIFEST_BYTES - manifest_bytes ||
(manifest_bytes += entry_size) > MAX_MANIFEST_BYTES || !array_list_add(manifest, s)) {
free(s);
array_list_delete(manifest);
send_status(fd, STATUS_ERROR);
return -1;
}
}
if (!receive_status(fd, status_out)) {
array_list_delete(manifest);
send_status(fd, STATUS_ERROR);
return -1;
}
/* Deletion is a commit operation: never perform it until the sender has
completed the manifest frame successfully. */
if (*status_out != STATUS_FINISHED || !config->use_delete) {
array_list_delete(manifest);
if (*status_out != STATUS_FINISHED)
send_status(fd, STATUS_ERROR);
return *status_out == STATUS_FINISHED ? 0 : -1;
}
fprintf(stderr, "Deleting files not in manifest...\n");
bool deletion_ok =
delete_extras_limited(config->receive_root_directory, manifest, MAX_SERVER_DELETE_COUNT);
array_list_delete(manifest);
if (!deletion_ok)
send_status(fd, STATUS_ERROR);
return deletion_ok ? 0 : -1;
}
+15
View File
@@ -0,0 +1,15 @@
#ifndef FILE_RECEIVE_H
#define FILE_RECEIVE_H
#include "config.h"
#include "file_types.h"
#include <stdbool.h>
/* Server-side file receive/save path. */
File* file_receive(const Config* config, int file_descriptor);
File* receive_incremental_check(int fd, const Config* config, bool* skipped);
int receive_manifest(int fd, const Config* config, int* next_status);
bool file_save_to_disk(const char* root_directory, const File* file, const Config* config);
#endif
+136
View File
@@ -0,0 +1,136 @@
#include <errno.h>
#include <fcntl.h>
#include <limits.h>
#include <poll.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/sendfile.h>
#include <sys/stat.h>
#include <time.h>
#include <unistd.h>
#include "compression.h"
#include "data.h"
#include "file.h"
#include "log.h"
#include "metadata.h"
#include "protocol.h"
bool file_send_single_calls(File* file, int file_descriptor, bool use_metadata,
int compression_level, bool send_path) {
if (!file || !file->path || !file->data || (file->data->size != 0 && !file->data->data))
return false;
const Data* data_to_send = file->data;
Data* compressed_data = NULL;
if (compression_level > 0 && !compression_should_skip(file->path)) {
compressed_data = data_compress(file->data, compression_level);
if (compressed_data == NULL) {
log_message(LOG_LEVEL_ERROR, "Failed to compress file data");
return false;
}
data_to_send = compressed_data;
}
if (send_path && !send_str(file_descriptor, file->path)) {
data_destroy(compressed_data);
return false;
}
if (use_metadata && !metadata_send(file_descriptor, file->metadata)) {
data_destroy(compressed_data);
return false;
}
if (!send_data(file_descriptor, data_to_send)) {
data_destroy(compressed_data);
return false;
}
data_destroy(compressed_data);
return true;
}
bool file_send_sendfile(File* file, int file_descriptor, bool use_metadata, int compression_level,
bool send_path) {
if (!file || !file->path || !file->data)
return false;
if (compression_level > 0)
return file_send_single_calls(file, file_descriptor, use_metadata, compression_level,
send_path);
if (send_path && !send_str(file_descriptor, file->path))
return false;
if (use_metadata && !metadata_send(file_descriptor, file->metadata))
return false;
int fd = open(file->path, O_RDONLY);
if (fd == -1) {
log_perror("Could not open file for sendfile");
return false;
}
unsigned long long file_size = file->data->size;
struct stat source_stat;
if (fstat(fd, &source_stat) != 0 || !S_ISREG(source_stat.st_mode) ||
(unsigned long long)source_stat.st_size < file_size) {
close(fd);
return false;
}
if (!send_n_data(file_descriptor, &file_size, sizeof(unsigned long long))) {
close(fd);
return false;
}
/* sendfile cannot encrypt TLS records. Keep the framing identical but
route encrypted transfers through the deadline-aware IO layer. */
if (io_get_ssl() != NULL) {
unsigned char buffer[64 * 1024];
unsigned long long remaining = file_size;
bool ok = true;
while (remaining > 0) {
size_t want = remaining > sizeof(buffer) ? sizeof(buffer) : (size_t)remaining;
ssize_t got = read(fd, buffer, want);
if (got <= 0 || !send_n_data(file_descriptor, buffer, (size_t)got)) {
ok = false;
break;
}
remaining -= (unsigned long long)got;
}
close(fd);
return ok;
}
off_t offset = 0;
struct timespec deadline;
clock_gettime(CLOCK_MONOTONIC, &deadline);
deadline.tv_sec += 60;
while ((unsigned long long)offset < file_size) {
struct timespec now;
clock_gettime(CLOCK_MONOTONIC, &now);
long long remaining = (long long)(deadline.tv_sec - now.tv_sec) * 1000LL +
(deadline.tv_nsec - now.tv_nsec) / 1000000LL;
if (remaining <= 0) {
close(fd);
return false;
}
struct pollfd pfd = {.fd = file_descriptor, .events = POLLOUT};
int timeout = remaining > INT_MAX ? INT_MAX : (int)remaining;
int polled = poll(&pfd, 1, timeout);
if (polled <= 0 || (pfd.revents & (POLLERR | POLLHUP | POLLNVAL))) {
close(fd);
return false;
}
ssize_t sent = sendfile(file_descriptor, fd, &offset, file_size - offset);
if (sent == -1) {
if (errno == EAGAIN || errno == EINTR)
continue;
log_perror("sendfile failed");
close(fd);
return false;
}
if (sent == 0) {
close(fd);
return false;
}
}
close(fd);
return true;
}
+14
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@@ -0,0 +1,14 @@
#ifndef FILE_SEND_H
#define FILE_SEND_H
#include "file_types.h"
#include <stdbool.h>
/* Client-side file send path. */
bool file_send_single_calls(File* file, int file_descriptor, bool use_metadata,
int compression_level, bool send_path);
bool file_send_sendfile(File* file, int file_descriptor, bool use_metadata, int compression_level,
bool send_path);
#endif
+197
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@@ -0,0 +1,197 @@
#include <errno.h>
#include <fcntl.h>
#include <libgen.h>
#include <limits.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#include "file_store.h"
#include "metadata.h"
#include "utils.h"
static int authorized_root_fd = -1;
static char* authorized_root_path;
static bool path_is_within_root(const char* root, const char* path) {
size_t root_length = strlen(root);
return strncmp(root, path, root_length) == 0 &&
(path[root_length] == '\0' || path[root_length] == '/');
}
bool file_store_set_authorized_root(int fd, const char* canonical_path) {
char* new_path = canonical_path ? str_dup(canonical_path) : NULL;
if (canonical_path && !new_path) {
authorized_root_fd = -1;
free(authorized_root_path);
authorized_root_path = NULL;
return false;
}
free(authorized_root_path);
authorized_root_path = new_path;
authorized_root_fd = fd;
return true;
}
int file_store_open_secure_parent(const char* path, char** leaf_out) {
char* copy = str_dup(path);
if (!copy)
return -1;
char* parent = dirname(copy);
const char* slash = strrchr(path, '/');
char* leaf = str_dup(slash ? slash + 1 : path);
if (!leaf) {
free(copy);
return -1;
}
int fd;
if (authorized_root_fd >= 0) {
if (!authorized_root_path || path[0] != '/' ||
!path_is_within_root(authorized_root_path, path)) {
free(copy);
free(leaf);
return -1;
}
fd = dup(authorized_root_fd);
if (fd < 0) {
free(copy);
free(leaf);
return -1;
}
size_t root_length = strlen(authorized_root_path);
char* relative = str_dup(path + root_length);
if (!relative) {
free(copy);
free(leaf);
close(fd);
return -1;
}
free(copy);
copy = relative;
parent = dirname(copy);
} else {
fd = (parent[0] == '/') ? open("/", O_RDONLY | O_DIRECTORY | O_CLOEXEC)
: open(".", O_RDONLY | O_DIRECTORY | O_CLOEXEC);
}
if (fd < 0) {
free(copy);
free(leaf);
return -1;
}
char* save = NULL;
char* component = strtok_r(parent, "/", &save);
while (component) {
if (strcmp(component, "..") == 0) {
close(fd);
free(copy);
free(leaf);
return -1;
}
if (strcmp(component, ".") != 0) {
int next = openat(fd, component, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC);
if (next < 0 && errno == ENOENT) {
if (mkdirat(fd, component, 0755) == 0 || errno == EEXIST)
next = openat(fd, component, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC);
}
if (next < 0) {
close(fd);
free(copy);
free(leaf);
return -1;
}
close(fd);
fd = next;
}
component = strtok_r(NULL, "/", &save);
}
free(copy);
*leaf_out = leaf;
return fd;
}
bool file_store_rename_secure(const char* old_path, const char* new_path) {
char *old_leaf = NULL, *new_leaf = NULL;
int old_parent = file_store_open_secure_parent(old_path, &old_leaf);
int new_parent = file_store_open_secure_parent(new_path, &new_leaf);
bool ok = old_parent >= 0 && new_parent >= 0 &&
renameat(old_parent, old_leaf, new_parent, new_leaf) == 0;
if (old_parent >= 0)
close(old_parent);
if (new_parent >= 0)
close(new_parent);
free(old_leaf);
free(new_leaf);
return ok;
}
static bool write_all(int fd, const void* data, unsigned long long size) {
const unsigned char* p = data;
unsigned long long done = 0;
while (done < size) {
ssize_t n = write(fd, p + done, (size_t)(size - done));
if (n < 0 && errno == EINTR)
continue;
if (n <= 0)
return false;
done += (unsigned long long)n;
}
return true;
}
bool file_store_write_secure(const char* path, const void* data, unsigned long long data_size,
bool inplace, bool sparse, const FileMetadata* metadata) {
char* leaf = NULL;
int dirfd = file_store_open_secure_parent(path, &leaf);
if (dirfd < 0)
return false;
int fd = -1;
bool ok = false;
if (inplace) {
fd = openat(dirfd, leaf, O_WRONLY | O_CREAT | O_TRUNC | O_CLOEXEC | O_NOFOLLOW, 0644);
if (fd >= 0) {
if (!sparse || data_size == 0 || ftruncate(fd, (off_t)data_size) == 0)
ok = write_all(fd, data, data_size);
if (ok && metadata)
ok = file_restore_metadata_fd(fd, metadata);
}
} else {
int tmp_size = snprintf(NULL, 0, ".%s.tmp.%ld.%u", leaf, (long)getpid(), 99U);
if (tmp_size < 0) {
close(dirfd);
free(leaf);
return false;
}
char* tmp = malloc((size_t)tmp_size + 1);
if (!tmp) {
close(dirfd);
free(leaf);
return false;
}
for (unsigned int i = 0; i < 100 && !ok; ++i) {
snprintf(tmp, (size_t)tmp_size + 1, ".%s.tmp.%ld.%u", leaf, (long)getpid(), i);
fd = openat(dirfd, tmp, O_WRONLY | O_CREAT | O_EXCL | O_CLOEXEC | O_NOFOLLOW, 0600);
if (fd < 0)
continue;
if (sparse && data_size > 0)
ok = ftruncate(fd, (off_t)data_size) == 0;
if (ok || (!sparse || data_size == 0))
ok = write_all(fd, data, data_size);
if (ok && metadata)
ok = file_restore_metadata_fd(fd, metadata);
if (close(fd) != 0)
ok = false;
fd = -1;
if (ok && renameat(dirfd, tmp, dirfd, leaf) != 0)
ok = false;
if (!ok)
unlinkat(dirfd, tmp, 0);
}
free(tmp);
}
if (fd >= 0)
close(fd);
close(dirfd);
free(leaf);
return ok;
}
+13
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@@ -0,0 +1,13 @@
#ifndef FILE_STORE_H
#define FILE_STORE_H
#include "file.h"
#include <stdbool.h>
bool file_store_set_authorized_root(int fd, const char* canonical_path);
int file_store_open_secure_parent(const char* path, char** leaf_out);
bool file_store_rename_secure(const char* old_path, const char* new_path);
bool file_store_write_secure(const char* path, const void* data, unsigned long long data_size,
bool inplace, bool sparse, const FileMetadata* metadata);
#endif
+25
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@@ -0,0 +1,25 @@
#ifndef FILE_TYPES_H
#define FILE_TYPES_H
#include "data.h"
#include <stdbool.h>
#include <sys/stat.h>
typedef enum { FILE_TYPE_REGULAR, FILE_TYPE_SYMLINK, FILE_TYPE_DIR } FileType;
typedef struct {
mode_t mode;
uid_t uid;
gid_t gid;
time_t mtime_sec;
long mtime_nsec;
} FileMetadata;
typedef struct {
char* path;
Data* data;
FileMetadata* metadata;
bool skip;
} File;
#endif
+6
View File
@@ -1,6 +1,8 @@
#include "log.h" #include "log.h"
#include <errno.h>
#include <stdarg.h> #include <stdarg.h>
#include <stdio.h> #include <stdio.h>
#include <string.h>
#include <time.h> #include <time.h>
static const char* log_level_strings[] = {"DEBUG", "INFO", "WARN", "ERROR"}; static const char* log_level_strings[] = {"DEBUG", "INFO", "WARN", "ERROR"};
@@ -50,3 +52,7 @@ void log_message(LogLevel log_level, const char* format, ...) {
va_end(args); va_end(args);
} }
} }
void log_perror(const char* context) {
log_message(LOG_LEVEL_ERROR, "%s: %s", context, strerror(errno));
}
+1
View File
@@ -6,6 +6,7 @@
typedef enum { LOG_LEVEL_DEBUG, LOG_LEVEL_INFO, LOG_LEVEL_WARNING, LOG_LEVEL_ERROR } LogLevel; typedef enum { LOG_LEVEL_DEBUG, LOG_LEVEL_INFO, LOG_LEVEL_WARNING, LOG_LEVEL_ERROR } LogLevel;
void log_message(LogLevel log_level, const char* message, ...); void log_message(LogLevel log_level, const char* message, ...);
void log_perror(const char* context);
void set_log_level(LogLevel level); void set_log_level(LogLevel level);
void log_set_file(FILE* fp); void log_set_file(FILE* fp);
+12 -3
View File
@@ -51,6 +51,8 @@ FileMetadata* metadata_from_buf(char** buf) {
int32_t present; int32_t present;
memcpy(&present, *buf, sizeof(present)); memcpy(&present, *buf, sizeof(present));
*buf += sizeof(present); *buf += sizeof(present);
if (present != 0 && present != 1)
return NULL;
if (!present) if (!present)
return NULL; return NULL;
FileMetadata* m = malloc(sizeof(FileMetadata)); FileMetadata* m = malloc(sizeof(FileMetadata));
@@ -76,10 +78,15 @@ FileMetadata* metadata_from_buf(char** buf) {
memcpy(&mtime_nsec, *buf, sizeof(mtime_nsec)); memcpy(&mtime_nsec, *buf, sizeof(mtime_nsec));
*buf += sizeof(mtime_nsec); *buf += sizeof(mtime_nsec);
m->mtime_nsec = (long)mtime_nsec; m->mtime_nsec = (long)mtime_nsec;
if (present != 1 || mtime_nsec < 0 || mtime_nsec >= 1000000000LL || mode < 0 || uid < 0 ||
gid < 0) {
free(m);
return NULL;
}
return m; return m;
} }
bool metadata_send(int file_descriptor, FileMetadata* m) { bool metadata_send(int file_descriptor, const FileMetadata* m) {
if (m == NULL) { if (m == NULL) {
int32_t zero = 0; int32_t zero = 0;
return send_n_data(file_descriptor, &zero, sizeof(zero)); return send_n_data(file_descriptor, &zero, sizeof(zero));
@@ -175,7 +182,8 @@ FileMetadata* metadata_receive(int file_descriptor, int* ok) {
void file_restore_metadata(const char* path, const FileMetadata* metadata) { void file_restore_metadata(const char* path, const FileMetadata* metadata) {
if (metadata == NULL) if (metadata == NULL)
return; return;
if (chmod(path, metadata->mode & 07777 & ~(S_ISUID | S_ISGID)) != 0) mode_t safe_mode = metadata->mode & 0777 & ~(S_IWGRP | S_IWOTH);
if (chmod(path, safe_mode) != 0)
log_message(LOG_LEVEL_WARNING, "Failed to chmod %s: %s", path, strerror(errno)); log_message(LOG_LEVEL_WARNING, "Failed to chmod %s: %s", path, strerror(errno));
/* Never apply client-supplied ownership. The descriptor API below is the /* Never apply client-supplied ownership. The descriptor API below is the
receiver write path; retain this legacy API only for compatibility. */ receiver write path; retain this legacy API only for compatibility. */
@@ -192,7 +200,8 @@ bool file_restore_metadata_fd(int fd, const FileMetadata* metadata) {
if (fd < 0 || metadata == NULL) if (fd < 0 || metadata == NULL)
return metadata == NULL; return metadata == NULL;
bool ok = true; bool ok = true;
if (fchmod(fd, metadata->mode & 07777 & ~(S_ISUID | S_ISGID)) != 0) mode_t safe_mode = metadata->mode & 0777 & ~(S_IWGRP | S_IWOTH);
if (fchmod(fd, safe_mode) != 0)
ok = false; ok = false;
/* Client uid/gid values are deliberately not authoritative. */ /* Client uid/gid values are deliberately not authoritative. */
struct timespec times[2] = {{.tv_sec = 0, .tv_nsec = UTIME_OMIT}, struct timespec times[2] = {{.tv_sec = 0, .tv_nsec = UTIME_OMIT},
+1 -1
View File
@@ -27,7 +27,7 @@
void metadata_to_buf(char** buf, const FileMetadata* m); void metadata_to_buf(char** buf, const FileMetadata* m);
FileMetadata* metadata_from_buf(char** buf); FileMetadata* metadata_from_buf(char** buf);
bool metadata_send(int file_descriptor, FileMetadata* m); bool metadata_send(int file_descriptor, const FileMetadata* m);
FileMetadata* metadata_receive(int file_descriptor, int* ok); FileMetadata* metadata_receive(int file_descriptor, int* ok);
void file_restore_metadata(const char* path, const FileMetadata* metadata); void file_restore_metadata(const char* path, const FileMetadata* metadata);
bool file_restore_metadata_fd(int fd, const FileMetadata* metadata); bool file_restore_metadata_fd(int fd, const FileMetadata* metadata);
+40 -116
View File
@@ -1,4 +1,5 @@
#include "multiprocessing.h" #include "multiprocessing.h"
#include "receiver.h"
#include "array_list.h" #include "array_list.h"
#include "chunk.h" #include "chunk.h"
@@ -13,106 +14,6 @@
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
#include <threads.h> #include <threads.h>
#include <sys/stat.h>
static bool valid_batch_path(const char* path) {
return path && path[0] != '\0' && path[0] != '/' && !has_path_traversal(path);
}
static bool handle_batch_checks(int file_descriptor, const Config* config) {
int count;
if (config->checksum || !receive_int(file_descriptor, &count) || count < 0 ||
count > MAX_MANIFEST_ENTRIES)
return false;
for (int i = 0; i < count; i++) {
char* check_path = receive_str(file_descriptor);
if (!check_path)
return false;
unsigned long long check_size;
long long check_mtime;
bool received = receive_n_data(file_descriptor, &check_size, sizeof(check_size)) &&
receive_n_data(file_descriptor, &check_mtime, sizeof(check_mtime));
if (!received || !valid_batch_path(check_path)) {
free(check_path);
if (received)
send_status(file_descriptor, STATUS_ERROR);
return false;
}
char* full_path = path_cat(config->receive_root_directory, check_path);
struct stat st;
bool has_old = full_path && lstat(full_path, &st) == 0;
bool match = has_old && (unsigned long long)st.st_size == check_size &&
(long long)st.st_mtime == check_mtime;
bool sent = send_status(file_descriptor, match ? STATUS_OK : STATUS_NEXT);
free(full_path);
free(check_path);
if (!sent)
return false;
}
return true;
}
int receive_files_common(const Config* config, int file_descriptor, ReceivedFileHandler handler,
void* context, bool send_completion_status) {
Status status;
if (!receive_status(file_descriptor, &status))
return -1;
while (status == STATUS_NEXT || status == STATUS_CHUNK || status == STATUS_CHECK ||
status == STATUS_KEEPALIVE || status == STATUS_ABORT || status == STATUS_CHECK_BATCH) {
if (status == STATUS_KEEPALIVE) {
if (!send_status(file_descriptor, STATUS_KEEPALIVE))
return -1;
} else if (status == STATUS_ABORT) {
log_message(LOG_LEVEL_INFO, "Received abort from client, cleaning up");
return -1;
} else if (status == STATUS_CHECK_BATCH) {
if (!handle_batch_checks(file_descriptor, config))
return -1;
} else {
if (status == STATUS_CHUNK) {
Chunk* chunk = receive_chunk_data(file_descriptor, config);
if (!chunk)
return -1;
for (int i = 0; i < chunk->element_count; i++) {
File* file = chunk->items[i];
chunk->items[i] = NULL;
if (!handler(file, context)) {
file_destroy(file);
chunk_destroy(chunk);
return -1;
}
}
chunk_destroy(chunk);
} else {
bool skipped = false;
File* file = status == STATUS_CHECK
? receive_incremental_check(file_descriptor, config, &skipped)
: file_receive(config, file_descriptor);
if (!skipped) {
if (!file || !handler(file, context)) {
file_destroy(file);
if (status == STATUS_NEXT)
log_message(LOG_LEVEL_ERROR, "Failed to receive file");
return -1;
}
}
}
}
if (!receive_status(file_descriptor, &status))
return -1;
}
if (status == STATUS_MANIFEST && receive_manifest(file_descriptor, config, &status) != 0)
return -1;
if (status != STATUS_FINISHED) {
log_message(LOG_LEVEL_ERROR, "Did not receive FINISHED Status");
if (send_completion_status)
send_status(file_descriptor, STATUS_ERROR);
return -1;
}
if (send_completion_status && !send_status(file_descriptor, STATUS_OK))
return -1;
return 0;
}
PipelineContextSender* pipeline_context_sender_create(Config* config, Queue* queue_scanner, PipelineContextSender* pipeline_context_sender_create(Config* config, Queue* queue_scanner,
Queue* queue_loader) { Queue* queue_loader) {
@@ -154,7 +55,7 @@ PipelineContextSender* pipeline_context_sender_create(Config* config, Queue* que
return context; return context;
fail: fail:
perror("Error initializing synchronization objects"); log_perror("Error initializing synchronization objects");
if (init >= 6) if (init >= 6)
cnd_destroy(&context->condition_not_empty_loader); cnd_destroy(&context->condition_not_empty_loader);
if (init >= 5) if (init >= 5)
@@ -197,6 +98,8 @@ PipelineContextReceiver* pipeline_context_receiver_create(Config* config, Queue*
context->queue = queue; context->queue = queue;
context->file_descriptor = file_descriptor; context->file_descriptor = file_descriptor;
context->ssl = ssl; context->ssl = ssl;
protocol_session_init(&context->session, file_descriptor, file_descriptor);
protocol_session_set_ssl(&context->session, ssl);
context->receiver_done = false; context->receiver_done = false;
atomic_init(&context->cancelled, false); atomic_init(&context->cancelled, false);
int init = 0; int init = 0;
@@ -213,7 +116,7 @@ PipelineContextReceiver* pipeline_context_receiver_create(Config* config, Queue*
return context; return context;
fail: fail:
perror("Error initializing synchronization objects"); log_perror("Error initializing synchronization objects");
if (init >= 3) if (init >= 3)
cnd_destroy(&context->condition_not_empty); cnd_destroy(&context->condition_not_empty);
if (init >= 2) if (init >= 2)
@@ -233,41 +136,62 @@ void pipeline_context_receiver_destroy(PipelineContextReceiver* context) {
free(context); free(context);
} }
static bool enqueue_received_file(File* file, void* context) { static bool receiver_enqueue_file(File* file, void* context_pointer) {
PipelineContextReceiver* receiver = context; PipelineContextReceiver* context = context_pointer;
return queue_enqueue_multithreaded_cancel(receiver->queue, file, &receiver->mutex, if (queue_enqueue_multithreaded_cancel(context->queue, file, &context->mutex,
&receiver->condition_not_empty, &context->condition_not_empty,
&receiver->condition_not_full, &receiver->cancelled); &context->condition_not_full, &context->cancelled))
return true;
file_destroy(file);
return false;
}
static void receiver_thread_fail(PipelineContextReceiver* context) {
mtx_lock(&context->mutex);
atomic_store(&context->cancelled, true);
context->receiver_done = true;
cnd_broadcast(&context->condition_not_empty);
cnd_broadcast(&context->condition_not_full);
mtx_unlock(&context->mutex);
} }
int receive_thread(void* pipeline_context) { int receive_thread(void* pipeline_context) {
PipelineContextReceiver* context = (PipelineContextReceiver*)pipeline_context; PipelineContextReceiver* context = (PipelineContextReceiver*)pipeline_context;
if (context->ssl) protocol_session_bind(&context->session);
io_set_ssl(context->ssl);
mtx_lock(&context->mutex); mtx_lock(&context->mutex);
int file_descriptor = context->file_descriptor; int file_descriptor = context->file_descriptor;
const Config* config = context->config; const Config* config = context->config;
mtx_unlock(&context->mutex); mtx_unlock(&context->mutex);
int result = receive_files_common(config, file_descriptor, enqueue_received_file, context, false); ReceiverSink sink = {receiver_enqueue_file, context, false, false};
if (receiver_process((Config*)config, file_descriptor, &sink) != 0) {
receiver_thread_fail(context);
protocol_session_unbind();
return thrd_error;
}
mtx_lock(&context->mutex); mtx_lock(&context->mutex);
if (result != 0)
atomic_store(&context->cancelled, true);
context->receiver_done = true; context->receiver_done = true;
cnd_signal(&context->condition_not_empty); cnd_signal(&context->condition_not_empty);
cnd_broadcast(&context->condition_not_full);
mtx_unlock(&context->mutex); mtx_unlock(&context->mutex);
return result == 0 ? thrd_success : thrd_error; protocol_session_unbind();
return thrd_success;
} }
int write_thread(void* pipeline_context) { int write_thread(void* pipeline_context) {
PipelineContextReceiver* context = (PipelineContextReceiver*)pipeline_context; PipelineContextReceiver* context = (PipelineContextReceiver*)pipeline_context;
if (context->ssl)
io_set_ssl(context->ssl);
mtx_lock(&context->mutex); mtx_lock(&context->mutex);
bool save_to_disk = context->config->save_to_disk; bool save_to_disk = context->config->save_to_disk;
char* root_directory = str_dup(context->config->receive_root_directory); char* root_directory = str_dup(context->config->receive_root_directory);
mtx_unlock(&context->mutex); mtx_unlock(&context->mutex);
if (save_to_disk && !root_directory) {
mtx_lock(&context->mutex);
atomic_store(&context->cancelled, true);
context->receiver_done = true;
cnd_broadcast(&context->condition_not_full);
cnd_broadcast(&context->condition_not_empty);
mtx_unlock(&context->mutex);
return thrd_error;
}
while (true) { while (true) {
File* file = File* file =
+1 -5
View File
@@ -35,6 +35,7 @@ typedef struct PipelineContextReceiver {
Config* config; Config* config;
int file_descriptor; int file_descriptor;
SSL* ssl; SSL* ssl;
ProtocolSession session;
mtx_t mutex; mtx_t mutex;
cnd_t condition_not_full; cnd_t condition_not_full;
cnd_t condition_not_empty; cnd_t condition_not_empty;
@@ -42,11 +43,6 @@ typedef struct PipelineContextReceiver {
atomic_bool cancelled; atomic_bool cancelled;
} PipelineContextReceiver; } PipelineContextReceiver;
typedef bool (*ReceivedFileHandler)(File* file, void* context);
int receive_files_common(const Config* config, int file_descriptor, ReceivedFileHandler handler,
void* context, bool send_completion_status);
PipelineContextSender* pipeline_context_sender_create(Config* config, Queue* queue_scanner, PipelineContextSender* pipeline_context_sender_create(Config* config, Queue* queue_scanner,
Queue* queue_loader); Queue* queue_loader);
void pipeline_context_sender_destroy(PipelineContextSender* context); void pipeline_context_sender_destroy(PipelineContextSender* context);
+219 -86
View File
@@ -13,75 +13,130 @@
#define RECEIVE_TIMEOUT_SEC 60 /* 60 second per-message timeout */ #define RECEIVE_TIMEOUT_SEC 60 /* 60 second per-message timeout */
#define SEND_TIMEOUT_SEC 60 #define SEND_TIMEOUT_SEC 60
#define MAX_CONNECTION_MEMORY (1024ULL * 1024 * 1024) /* 1 GB total per connection */ #define MAX_CONNECTION_MEMORY (256ULL * 1024 * 1024) /* bounded cumulative receive budget */
static __thread int io_read_fd = -1; static __thread int io_read_fd = -1;
static __thread int io_write_fd = -1; static __thread int io_write_fd = -1;
static __thread SSL* io_ssl; static __thread SSL* io_ssl;
static __thread ProtocolSession* bound_session;
static __thread ProtocolSession legacy_io_session = {.read_fd = -1, .write_fd = -1};
static unsigned long long io_bwlimit = 0; static unsigned long long io_bwlimit = 0;
static long long bw_tokens = 0;
static struct timespec bw_last_refill = {0, 0};
static mtx_t bw_mutex; static mtx_t bw_mutex;
static once_flag bw_mutex_once = ONCE_FLAG_INIT; static once_flag bw_mutex_once = ONCE_FLAG_INIT;
static __thread unsigned long long total_allocated_bytes = 0; static unsigned long long global_bwlimit(void);
void protocol_release_memory(size_t charge) {
ProtocolSession* session = bound_session ? bound_session : &legacy_io_session;
if ((unsigned long long)charge >= session->total_allocated_bytes)
session->total_allocated_bytes = 0;
else
session->total_allocated_bytes -= charge;
}
void io_set_fds(int read_fd, int write_fd) { void io_set_fds(int read_fd, int write_fd) {
bound_session = NULL;
io_read_fd = read_fd; io_read_fd = read_fd;
io_write_fd = write_fd; io_write_fd = write_fd;
/* A descriptor switch starts a new transport; never reuse a TLS object /* A descriptor switch starts a new transport; never reuse a TLS object
belonging to a previous connection or test pipe. */ belonging to a previous connection or test pipe. */
io_ssl = NULL; io_ssl = NULL;
total_allocated_bytes = 0; legacy_io_session.read_fd = read_fd;
legacy_io_session.write_fd = write_fd;
legacy_io_session.ssl = NULL;
legacy_io_session.total_allocated_bytes = 0;
protocol_session_set_bwlimit(&legacy_io_session, global_bwlimit());
}
void protocol_session_init(ProtocolSession* session, int read_fd, int write_fd) {
if (!session)
return;
memset(session, 0, sizeof(*session));
session->read_fd = read_fd;
session->write_fd = write_fd;
protocol_session_set_bwlimit(session, global_bwlimit());
}
void protocol_session_bind(ProtocolSession* session) {
bound_session = session;
}
void protocol_session_unbind(void) {
bound_session = NULL;
}
void protocol_session_set_ssl(ProtocolSession* session, SSL* ssl) {
if (session)
session->ssl = ssl;
} }
static void bw_mutex_init(void) { static void bw_mutex_init(void) {
mtx_init(&bw_mutex, mtx_plain); mtx_init(&bw_mutex, mtx_plain);
} }
static unsigned long long global_bwlimit(void) {
unsigned long long limit;
call_once(&bw_mutex_once, bw_mutex_init);
mtx_lock(&bw_mutex);
limit = io_bwlimit;
mtx_unlock(&bw_mutex);
return limit;
}
void io_set_bwlimit(unsigned long long bytes_per_sec) { void io_set_bwlimit(unsigned long long bytes_per_sec) {
call_once(&bw_mutex_once, bw_mutex_init); call_once(&bw_mutex_once, bw_mutex_init);
mtx_lock(&bw_mutex); mtx_lock(&bw_mutex);
io_bwlimit = bytes_per_sec; io_bwlimit =
bw_tokens = (long long)io_bwlimit; bytes_per_sec > (unsigned long long)LLONG_MAX ? (unsigned long long)LLONG_MAX : bytes_per_sec;
clock_gettime(CLOCK_MONOTONIC, &bw_last_refill);
mtx_unlock(&bw_mutex); mtx_unlock(&bw_mutex);
} }
static void bw_throttle(size_t bytes_written) { void protocol_session_set_bwlimit(ProtocolSession* session, unsigned long long bytes_per_sec) {
if (io_bwlimit == 0) if (!session)
return;
session->bwlimit =
bytes_per_sec > (unsigned long long)LLONG_MAX ? (unsigned long long)LLONG_MAX : bytes_per_sec;
session->bw_tokens = (long long)session->bwlimit;
struct timespec now;
clock_gettime(CLOCK_MONOTONIC, &now);
session->bw_last_refill_sec = now.tv_sec;
session->bw_last_refill_nsec = now.tv_nsec;
}
static void bw_throttle_session(ProtocolSession* session, size_t bytes_written) {
if (session->bwlimit == 0)
return; return;
call_once(&bw_mutex_once, bw_mutex_init);
mtx_lock(&bw_mutex);
struct timespec now; struct timespec now;
clock_gettime(CLOCK_MONOTONIC, &now); clock_gettime(CLOCK_MONOTONIC, &now);
long long elapsed_ns = long long elapsed_ns = (now.tv_sec - session->bw_last_refill_sec) * 1000000000LL +
(now.tv_sec - bw_last_refill.tv_sec) * 1000000000LL + (now.tv_nsec - bw_last_refill.tv_nsec); (now.tv_nsec - session->bw_last_refill_nsec);
bw_last_refill = now; session->bw_last_refill_sec = now.tv_sec;
session->bw_last_refill_nsec = now.tv_nsec;
long long tokens_to_add = (long long)((double)io_bwlimit * elapsed_ns / 1000000000.0); long long tokens_to_add = (long long)((double)session->bwlimit * elapsed_ns / 1000000000.0);
bw_tokens += tokens_to_add; session->bw_tokens += tokens_to_add;
if (bw_tokens > (long long)io_bwlimit) if (session->bw_tokens > (long long)session->bwlimit)
bw_tokens = (long long)io_bwlimit; session->bw_tokens = (long long)session->bwlimit;
bw_tokens -= (long long)bytes_written; session->bw_tokens -= bytes_written;
if (bw_tokens < 0) { if (session->bw_tokens < 0) {
long long deficit_us = (long long)((double)(-bw_tokens) / io_bwlimit * 1000000.0); long long deficit_us =
(long long)((double)(-session->bw_tokens) / session->bwlimit * 1000000.0);
if (deficit_us >= 1000) if (deficit_us >= 1000)
poll(NULL, 0, (int)(deficit_us / 1000)); poll(NULL, 0, (int)(deficit_us / 1000));
else else
usleep((useconds_t)deficit_us); usleep((useconds_t)deficit_us);
bw_tokens = 0; session->bw_tokens = 0;
clock_gettime(CLOCK_MONOTONIC, &bw_last_refill); session->bw_last_refill_sec = now.tv_sec;
session->bw_last_refill_nsec = now.tv_nsec;
} }
mtx_unlock(&bw_mutex);
} }
void io_set_ssl(SSL* ssl) { void io_set_ssl(SSL* ssl) {
bound_session = NULL;
io_ssl = ssl; io_ssl = ssl;
} }
@@ -89,8 +144,30 @@ SSL* io_get_ssl(void) {
return io_ssl; return io_ssl;
} }
static int io_fd(int dir_fd, int file_descriptor) { static ProtocolSession* legacy_session(int read_fd, int write_fd) {
return (dir_fd != -1) ? dir_fd : file_descriptor; if (bound_session)
return bound_session;
int target_read_fd = io_read_fd != -1 ? io_read_fd : read_fd;
int target_write_fd = io_write_fd != -1 ? io_write_fd : write_fd;
if (legacy_io_session.read_fd != target_read_fd ||
legacy_io_session.write_fd != target_write_fd) {
legacy_io_session.read_fd = target_read_fd;
legacy_io_session.write_fd = target_write_fd;
legacy_io_session.total_allocated_bytes = 0;
protocol_session_set_bwlimit(&legacy_io_session, global_bwlimit());
} else if (legacy_io_session.bwlimit != global_bwlimit()) {
protocol_session_set_bwlimit(&legacy_io_session, global_bwlimit());
}
legacy_io_session.ssl = io_ssl;
return &legacy_io_session;
}
bool send_n_data(int file_descriptor, const void* data, size_t data_size) {
return protocol_send_n_data(legacy_session(-1, file_descriptor), data, data_size);
}
bool receive_n_data(int file_descriptor, void* data, size_t data_size) {
return protocol_receive_n_data(legacy_session(file_descriptor, -1), data, data_size);
} }
static int deadline_remaining_ms(const struct timespec* deadline) { static int deadline_remaining_ms(const struct timespec* deadline) {
@@ -104,9 +181,13 @@ static int deadline_remaining_ms(const struct timespec* deadline) {
return ms > INT_MAX ? INT_MAX : (int)ms; return ms > INT_MAX ? INT_MAX : (int)ms;
} }
bool send_n_data(int file_descriptor, const void* data, size_t data_size) { bool protocol_send_n_data(ProtocolSession* session, const void* data, size_t data_size) {
if (!data && data_size != 0)
return false;
log_message(LOG_LEVEL_DEBUG, " Sending n Data: %zu", data_size); log_message(LOG_LEVEL_DEBUG, " Sending n Data: %zu", data_size);
int fd = io_fd(io_write_fd, file_descriptor); if (!session)
return false;
int fd = session->write_fd;
struct timespec deadline; struct timespec deadline;
clock_gettime(CLOCK_MONOTONIC, &deadline); clock_gettime(CLOCK_MONOTONIC, &deadline);
deadline.tv_sec += SEND_TIMEOUT_SEC; deadline.tv_sec += SEND_TIMEOUT_SEC;
@@ -114,7 +195,7 @@ bool send_n_data(int file_descriptor, const void* data, size_t data_size) {
ssize_t total_bytes_send = 0; ssize_t total_bytes_send = 0;
while ((size_t)total_bytes_send < data_size) { while ((size_t)total_bytes_send < data_size) {
size_t chunk = data_size - total_bytes_send; size_t chunk = data_size - total_bytes_send;
if (io_bwlimit > 0 && chunk > 65536) if (session->bwlimit > 0 && chunk > 65536)
chunk = 65536; chunk = 65536;
struct pollfd pfd = {.fd = fd, .events = wait_events}; struct pollfd pfd = {.fd = fd, .events = wait_events};
int poll_result = poll(&pfd, 1, deadline_remaining_ms(&deadline)); int poll_result = poll(&pfd, 1, deadline_remaining_ms(&deadline));
@@ -127,13 +208,13 @@ bool send_n_data(int file_descriptor, const void* data, size_t data_size) {
if (pfd.revents & (POLLERR | POLLNVAL)) if (pfd.revents & (POLLERR | POLLNVAL))
return false; return false;
ssize_t bytes_send; ssize_t bytes_send;
if (io_ssl) if (session->ssl)
bytes_send = SSL_write(io_ssl, (const char*)data + total_bytes_send, chunk); bytes_send = SSL_write(session->ssl, (const char*)data + total_bytes_send, chunk);
else else
bytes_send = write(fd, (const char*)data + total_bytes_send, chunk); bytes_send = write(fd, (const char*)data + total_bytes_send, chunk);
if (bytes_send <= 0) { if (bytes_send <= 0) {
if (io_ssl) { if (session->ssl) {
int ssl_err = SSL_get_error(io_ssl, (int)bytes_send); int ssl_err = SSL_get_error(session->ssl, (int)bytes_send);
if (ssl_err == SSL_ERROR_WANT_WRITE || ssl_err == SSL_ERROR_WANT_READ) { if (ssl_err == SSL_ERROR_WANT_WRITE || ssl_err == SSL_ERROR_WANT_READ) {
wait_events = ssl_err == SSL_ERROR_WANT_WRITE ? POLLOUT : POLLIN; wait_events = ssl_err == SSL_ERROR_WANT_WRITE ? POLLOUT : POLLIN;
continue; continue;
@@ -142,16 +223,20 @@ bool send_n_data(int file_descriptor, const void* data, size_t data_size) {
log_message(LOG_LEVEL_ERROR, "Could not send data"); log_message(LOG_LEVEL_ERROR, "Could not send data");
return false; return false;
} }
bw_throttle((size_t)bytes_send); bw_throttle_session(session, (size_t)bytes_send);
total_bytes_send += bytes_send; total_bytes_send += bytes_send;
if (session->ssl)
wait_events = POLLOUT;
} }
log_message(LOG_LEVEL_DEBUG, " Send n Data: %zu", total_bytes_send); log_message(LOG_LEVEL_DEBUG, " Send n Data: %zu", total_bytes_send);
return true; return true;
} }
bool receive_n_data(int file_descriptor, void* data, size_t data_size) { bool protocol_receive_n_data(ProtocolSession* session, void* data, size_t data_size) {
log_message(LOG_LEVEL_DEBUG, " Receiving n Data: %zu", data_size); log_message(LOG_LEVEL_DEBUG, " Receiving n Data: %zu", data_size);
int fd = io_fd(io_read_fd, file_descriptor); if (!session)
return false;
int fd = session->read_fd;
struct timespec deadline; struct timespec deadline;
clock_gettime(CLOCK_MONOTONIC, &deadline); clock_gettime(CLOCK_MONOTONIC, &deadline);
@@ -160,31 +245,33 @@ bool receive_n_data(int file_descriptor, void* data, size_t data_size) {
size_t total_bytes_received = 0; size_t total_bytes_received = 0;
short wait_events = POLLIN; short wait_events = POLLIN;
while (total_bytes_received < data_size) { while (total_bytes_received < data_size) {
struct pollfd pfd = {.fd = fd, .events = wait_events}; if (!session->ssl || SSL_pending(session->ssl) == 0) {
int poll_result = poll(&pfd, 1, deadline_remaining_ms(&deadline)); struct pollfd pfd = {.fd = fd, .events = wait_events};
if (poll_result == 0) { int poll_result = poll(&pfd, 1, deadline_remaining_ms(&deadline));
log_message(LOG_LEVEL_ERROR, "Receive timeout after %ds", RECEIVE_TIMEOUT_SEC); if (poll_result == 0) {
return false; log_message(LOG_LEVEL_ERROR, "Receive timeout after %ds", RECEIVE_TIMEOUT_SEC);
return false;
}
if (poll_result < 0) {
if (errno == EINTR)
continue;
return false;
}
/* POLLHUP may accompany the final readable bytes on pipes/sockets. */
if (pfd.revents & (POLLERR | POLLNVAL))
return false;
} }
if (poll_result < 0) {
if (errno == EINTR)
continue;
return false;
}
/* POLLHUP may accompany the final readable bytes on pipes/sockets. */
if (pfd.revents & (POLLERR | POLLNVAL))
return false;
ssize_t bytes_received; ssize_t bytes_received;
if (io_ssl) if (session->ssl)
bytes_received = bytes_received = SSL_read(session->ssl, (char*)data + total_bytes_received,
SSL_read(io_ssl, (char*)data + total_bytes_received, data_size - total_bytes_received); data_size - total_bytes_received);
else else
bytes_received = bytes_received =
read(fd, (char*)data + total_bytes_received, data_size - total_bytes_received); read(fd, (char*)data + total_bytes_received, data_size - total_bytes_received);
if (bytes_received <= 0) { if (bytes_received <= 0) {
if (io_ssl) { if (session->ssl) {
int ssl_err = SSL_get_error(io_ssl, (int)bytes_received); int ssl_err = SSL_get_error(session->ssl, (int)bytes_received);
if (ssl_err == SSL_ERROR_WANT_WRITE || ssl_err == SSL_ERROR_WANT_READ) { if (ssl_err == SSL_ERROR_WANT_WRITE || ssl_err == SSL_ERROR_WANT_READ) {
wait_events = ssl_err == SSL_ERROR_WANT_WRITE ? POLLOUT : POLLIN; wait_events = ssl_err == SSL_ERROR_WANT_WRITE ? POLLOUT : POLLIN;
continue; continue;
@@ -196,7 +283,9 @@ bool receive_n_data(int file_descriptor, void* data, size_t data_size) {
log_message(LOG_LEVEL_ERROR, "Could not receive bytes"); log_message(LOG_LEVEL_ERROR, "Could not receive bytes");
return false; return false;
} }
total_bytes_received += bytes_received; total_bytes_received += (size_t)bytes_received;
if (session->ssl)
wait_events = POLLIN;
} }
log_message(LOG_LEVEL_DEBUG, " Received n Data: %zu", total_bytes_received); log_message(LOG_LEVEL_DEBUG, " Received n Data: %zu", total_bytes_received);
return true; return true;
@@ -231,24 +320,24 @@ static const char* status_to_string(Status status) {
} }
} }
bool send_str(int file_descriptor, const char* data) { bool protocol_send_str(ProtocolSession* session, const char* data) {
if (data == NULL) if (data == NULL)
return false; return false;
size_t size = strlen(data); size_t size = strlen(data);
if (!send_n_data(file_descriptor, &size, sizeof(size_t))) if (!protocol_send_n_data(session, &size, sizeof(size_t)))
return false; return false;
if (!send_n_data(file_descriptor, data, size)) if (!protocol_send_n_data(session, data, size))
return false; return false;
log_message(LOG_LEVEL_DEBUG, "Send String: %s", data); log_message(LOG_LEVEL_DEBUG, "Send String: %s", data);
return true; return true;
} }
char* receive_str(int file_descriptor) { char* protocol_receive_str(ProtocolSession* session) {
size_t size; size_t size;
if (!receive_n_data(file_descriptor, &size, sizeof(size_t))) if (!protocol_receive_n_data(session, &size, sizeof(size_t)))
return NULL; return NULL;
if (size > MAX_STRING_SIZE || size > SIZE_MAX - 1 || if (size > MAX_STRING_SIZE || size > SIZE_MAX - 1 ||
size + 1 > MAX_CONNECTION_MEMORY - total_allocated_bytes) { size + 1 > MAX_CONNECTION_MEMORY - session->total_allocated_bytes) {
log_message(LOG_LEVEL_ERROR, "String size %zu exceeds maximum %llu", size, log_message(LOG_LEVEL_ERROR, "String size %zu exceeds maximum %llu", size,
(unsigned long long)MAX_STRING_SIZE); (unsigned long long)MAX_STRING_SIZE);
return NULL; return NULL;
@@ -256,83 +345,127 @@ char* receive_str(int file_descriptor) {
char* data = (char*)malloc(size + 1); char* data = (char*)malloc(size + 1);
if (data == NULL) if (data == NULL)
return NULL; return NULL;
if (!receive_n_data(file_descriptor, data, size)) { if (!protocol_receive_n_data(session, data, size)) {
free(data); free(data);
return NULL; return NULL;
} }
if (memchr(data, '\0', size) != NULL) {
free(data);
log_message(LOG_LEVEL_ERROR, "Received string contains an embedded NUL");
return NULL;
}
data[size] = '\0'; data[size] = '\0';
total_allocated_bytes += size + 1; session->total_allocated_bytes += size + 1;
log_message(LOG_LEVEL_DEBUG, "Received String: %s", data); log_message(LOG_LEVEL_DEBUG, "Received String: %s", data);
return data; return data;
} }
bool send_data(int file_descriptor, const Data* data) { bool protocol_send_data(ProtocolSession* session, const Data* data) {
unsigned long long data_size = data->size; if (!data || (!data->data && data->size != 0))
if (!send_n_data(file_descriptor, &data_size, sizeof(unsigned long long)))
return false; return false;
if (!send_n_data(file_descriptor, data->data, data_size)) if (!session)
return false;
unsigned long long data_size = data->size;
if (!protocol_send_n_data(session, &data_size, sizeof(unsigned long long)))
return false;
if (!protocol_send_n_data(session, data->data, data_size))
return false; return false;
log_message(LOG_LEVEL_DEBUG, "Send %lld data", data_size); log_message(LOG_LEVEL_DEBUG, "Send %lld data", data_size);
return true; return true;
} }
Data* receive_data(int file_descriptor) { Data* protocol_receive_data_limited(ProtocolSession* session, unsigned long long maximum_size) {
unsigned long long size = 0; if (!session)
if (!receive_n_data(file_descriptor, &size, sizeof(unsigned long long)))
return NULL; return NULL;
if (size > MAX_DATA_PAYLOAD_SIZE) { unsigned long long size = 0;
if (!protocol_receive_n_data(session, &size, sizeof(unsigned long long)))
return NULL;
if (size > MAX_DATA_PAYLOAD_SIZE || size > maximum_size) {
log_message(LOG_LEVEL_ERROR, "Data size %llu exceeds maximum %llu", size, log_message(LOG_LEVEL_ERROR, "Data size %llu exceeds maximum %llu", size,
(unsigned long long)MAX_DATA_PAYLOAD_SIZE); (unsigned long long)MAX_DATA_PAYLOAD_SIZE);
return NULL; return NULL;
} }
size_t allocation_size = size == 0 ? 1 : (size_t)size; size_t allocation_size = size == 0 ? 1 : (size_t)size;
if (allocation_size > MAX_CONNECTION_MEMORY - total_allocated_bytes) { if (allocation_size > MAX_CONNECTION_MEMORY - session->total_allocated_bytes) {
log_message(LOG_LEVEL_ERROR, "Per-connection memory limit exceeded (%llu + %llu > %llu)", log_message(LOG_LEVEL_ERROR, "Per-connection memory limit exceeded (%llu + %llu > %llu)",
(unsigned long long)total_allocated_bytes, size, (unsigned long long)session->total_allocated_bytes, size,
(unsigned long long)MAX_CONNECTION_MEMORY); (unsigned long long)MAX_CONNECTION_MEMORY);
return NULL; return NULL;
} }
void* data = malloc(allocation_size); void* data = malloc(allocation_size);
if (data == NULL) if (data == NULL)
return NULL; return NULL;
if (!receive_n_data(file_descriptor, data, (size_t)size)) { if (!protocol_receive_n_data(session, data, (size_t)size)) {
free(data); free(data);
return NULL; return NULL;
} }
total_allocated_bytes += allocation_size; session->total_allocated_bytes += allocation_size;
log_message(LOG_LEVEL_DEBUG, "Received %lld data", size); log_message(LOG_LEVEL_DEBUG, "Received %lld data", size);
Data* result = data_create(data, (size_t)size); Data* result = data_create(data, (size_t)size);
if (!result) { if (!result) {
free(data); session->total_allocated_bytes -= allocation_size;
total_allocated_bytes -= allocation_size; return NULL;
} }
result->protocol_charge = allocation_size;
return result; return result;
} }
bool send_int(int file_descriptor, int data) { Data* protocol_receive_data(ProtocolSession* session) {
if (!send_n_data(file_descriptor, &data, sizeof(int))) return protocol_receive_data_limited(session, MAX_DATA_PAYLOAD_SIZE);
}
bool protocol_send_int(ProtocolSession* session, int data) {
if (!protocol_send_n_data(session, &data, sizeof(int)))
return false; return false;
log_message(LOG_LEVEL_DEBUG, "Send Int: %d", data); log_message(LOG_LEVEL_DEBUG, "Send Int: %d", data);
return true; return true;
} }
bool receive_int(int file_descriptor, int* data) { bool protocol_receive_int(ProtocolSession* session, int* data) {
if (!receive_n_data(file_descriptor, data, sizeof(int))) if (!protocol_receive_n_data(session, data, sizeof(int)))
return false; return false;
log_message(LOG_LEVEL_DEBUG, "Received Int: %d", *data); log_message(LOG_LEVEL_DEBUG, "Received Int: %d", *data);
return true; return true;
} }
bool send_status(int file_descriptor, Status status) { bool protocol_send_status(ProtocolSession* session, Status status) {
if (!send_n_data(file_descriptor, &status, sizeof(Status))) if (!protocol_send_n_data(session, &status, sizeof(Status)))
return false; return false;
log_message(LOG_LEVEL_DEBUG, "Send Status: %s", status_to_string(status)); log_message(LOG_LEVEL_DEBUG, "Send Status: %s", status_to_string(status));
return true; return true;
} }
bool receive_status(int file_descriptor, Status* status) { bool protocol_receive_status(ProtocolSession* session, Status* status) {
if (!receive_n_data(file_descriptor, status, sizeof(Status))) if (!protocol_receive_n_data(session, status, sizeof(Status)))
return false; return false;
log_message(LOG_LEVEL_DEBUG, "Received Status: %s", status_to_string(*status)); log_message(LOG_LEVEL_DEBUG, "Received Status: %s", status_to_string(*status));
return true; return true;
} }
bool send_str(int fd, const char* data) {
return protocol_send_str(legacy_session(-1, fd), data);
}
char* receive_str(int fd) {
return protocol_receive_str(legacy_session(fd, -1));
}
bool send_data(int fd, const Data* data) {
return protocol_send_data(legacy_session(-1, fd), data);
}
Data* receive_data(int fd) {
return protocol_receive_data_limited(legacy_session(fd, -1), MAX_DATA_PAYLOAD_SIZE);
}
Data* receive_data_limited(int fd, unsigned long long maximum_size) {
return protocol_receive_data_limited(legacy_session(fd, -1), maximum_size);
}
bool send_int(int fd, int data) {
return protocol_send_int(legacy_session(-1, fd), data);
}
bool receive_int(int fd, int* data) {
return protocol_receive_int(legacy_session(fd, -1), data);
}
bool send_status(int fd, Status status) {
return protocol_send_status(legacy_session(-1, fd), status);
}
bool receive_status(int fd, Status* status) {
return protocol_receive_status(legacy_session(fd, -1), status);
}
+38
View File
@@ -10,6 +10,8 @@
/* Maximum allowed data payload size for receive_data (100 MB) */ /* Maximum allowed data payload size for receive_data (100 MB) */
#define MAX_DATA_PAYLOAD_SIZE (100ULL * 1024 * 1024) #define MAX_DATA_PAYLOAD_SIZE (100ULL * 1024 * 1024)
/* Maximum uncompressed file payload accepted by the receiver. */
#define MAX_RECEIVE_FILE_SIZE (64ULL * 1024 * 1024)
/* Maximum chunk size (64 MB) — prevents unbounded allocation from the wire */ /* Maximum chunk size (64 MB) — prevents unbounded allocation from the wire */
#define MAX_CHUNK_SIZE (64ULL * 1024 * 1024) #define MAX_CHUNK_SIZE (64ULL * 1024 * 1024)
@@ -19,6 +21,23 @@
typedef struct ssl_st SSL; typedef struct ssl_st SSL;
/*
* Explicit owner of protocol I/O. A session does not own the descriptors or
* SSL object; it only describes the transport used by a transfer. This makes
* it safe to pass the transport to a worker without relying on inherited
* thread-local state.
*/
typedef struct ProtocolSession {
int read_fd;
int write_fd;
SSL* ssl;
unsigned long long bwlimit;
long long bw_tokens;
long long bw_last_refill_sec;
long bw_last_refill_nsec;
unsigned long long total_allocated_bytes;
} ProtocolSession;
typedef int Status; typedef int Status;
enum NET_STATUS { enum NET_STATUS {
STATUS_OK, STATUS_OK,
@@ -39,6 +58,24 @@ void io_set_fds(int read_fd, int write_fd);
void io_set_bwlimit(unsigned long long bytes_per_sec); void io_set_bwlimit(unsigned long long bytes_per_sec);
void io_set_ssl(SSL* ssl); void io_set_ssl(SSL* ssl);
SSL* io_get_ssl(void); SSL* io_get_ssl(void);
void protocol_session_init(ProtocolSession* session, int read_fd, int write_fd);
/* Transitional bridge for helpers whose signatures still carry only an fd. */
void protocol_session_bind(ProtocolSession* session);
void protocol_session_unbind(void);
void protocol_session_set_ssl(ProtocolSession* session, SSL* ssl);
void protocol_session_set_bwlimit(ProtocolSession* session, unsigned long long bytes_per_sec);
bool protocol_send_n_data(ProtocolSession* session, const void* data, size_t data_size);
bool protocol_receive_n_data(ProtocolSession* session, void* data, size_t data_size);
bool protocol_send_str(ProtocolSession* session, const char* data);
char* protocol_receive_str(ProtocolSession* session);
bool protocol_send_data(ProtocolSession* session, const Data* data);
Data* protocol_receive_data(ProtocolSession* session);
Data* protocol_receive_data_limited(ProtocolSession* session, unsigned long long maximum_size);
bool protocol_send_int(ProtocolSession* session, int data);
bool protocol_receive_int(ProtocolSession* session, int* data);
bool protocol_send_status(ProtocolSession* session, Status status);
bool protocol_receive_status(ProtocolSession* session, Status* status);
bool send_n_data(int file_descriptor, const void* data, size_t data_size); bool send_n_data(int file_descriptor, const void* data, size_t data_size);
bool receive_n_data(int file_descriptor, void* data, size_t data_size); bool receive_n_data(int file_descriptor, void* data, size_t data_size);
@@ -46,6 +83,7 @@ bool send_str(int file_descriptor, const char* data);
char* receive_str(int file_descriptor); char* receive_str(int file_descriptor);
bool send_data(int file_descriptor, const Data* data); bool send_data(int file_descriptor, const Data* data);
Data* receive_data(int file_descriptor); Data* receive_data(int file_descriptor);
Data* receive_data_limited(int file_descriptor, unsigned long long maximum_size);
bool send_int(int file_descriptor, int data); bool send_int(int file_descriptor, int data);
bool receive_int(int file_descriptor, int* data); bool receive_int(int file_descriptor, int* data);
bool send_status(int file_descriptor, Status status); bool send_status(int file_descriptor, Status status);
+4 -3
View File
@@ -1,3 +1,4 @@
#include "log.h"
#include <stdbool.h> #include <stdbool.h>
#include <limits.h> #include <limits.h>
#include <stdio.h> #include <stdio.h>
@@ -13,7 +14,7 @@ Queue* queue_create(int capacity, void (*destroyer)(void* item)) {
Queue* queue = (Queue*)malloc(sizeof(Queue)); Queue* queue = (Queue*)malloc(sizeof(Queue));
if (queue == NULL) { if (queue == NULL) {
perror("ERROR: Could not allocate memory for queue structure"); log_perror("ERROR: Could not allocate memory for queue structure");
return NULL; return NULL;
} }
@@ -72,7 +73,7 @@ static bool queue_double_capacity(Queue* queue) {
new_capacity = 100; new_capacity = 100;
void** new_items = malloc(new_capacity * sizeof(void*)); void** new_items = malloc(new_capacity * sizeof(void*));
if (new_items == NULL) { if (new_items == NULL) {
perror("ERROR: Could not allocate memory for doubling capacity of queue."); log_perror("ERROR: Could not allocate memory for doubling capacity of queue.");
return false; return false;
} }
for (int i = 0; i < queue->size; i++) for (int i = 0; i < queue->size; i++)
@@ -127,7 +128,7 @@ bool queue_enqueue_multithreaded_cancel(Queue* queue, void* item, mtx_t* mutex,
void* queue_dequeue(Queue* queue) { void* queue_dequeue(Queue* queue) {
if (queue == NULL || queue_is_empty(queue)) { if (queue == NULL || queue_is_empty(queue)) {
perror("ERROR: Could not dequeue from null or empty queue."); log_perror("ERROR: Could not dequeue from null or empty queue.");
return NULL; return NULL;
} }
+5 -4
View File
@@ -1,3 +1,4 @@
#include "log.h"
#include "transport_ssh.h" #include "transport_ssh.h"
#include "utils.h" #include "utils.h"
#include <fcntl.h> #include <fcntl.h>
@@ -76,7 +77,7 @@ Client* client_connect_ssh(const char* destination, int port, const char* server
int sv[2]; int sv[2];
if (socketpair(AF_UNIX, SOCK_STREAM, 0, sv) < 0) { if (socketpair(AF_UNIX, SOCK_STREAM, 0, sv) < 0) {
perror("socketpair failed"); log_perror("socketpair failed");
remote_dest_destroy(&r); remote_dest_destroy(&r);
return NULL; return NULL;
} }
@@ -89,7 +90,7 @@ Client* client_connect_ssh(const char* destination, int port, const char* server
int exec_pipe[2]; int exec_pipe[2];
if (pipe(exec_pipe) < 0) { if (pipe(exec_pipe) < 0) {
perror("pipe failed"); log_perror("pipe failed");
close(sv[0]); close(sv[0]);
close(sv[1]); close(sv[1]);
remote_dest_destroy(&r); remote_dest_destroy(&r);
@@ -98,7 +99,7 @@ Client* client_connect_ssh(const char* destination, int port, const char* server
pid_t pid = fork(); pid_t pid = fork();
if (pid < 0) { if (pid < 0) {
perror("fork failed"); log_perror("fork failed");
close(sv[0]); close(sv[0]);
close(sv[1]); close(sv[1]);
close(exec_pipe[0]); close(exec_pipe[0]);
@@ -151,7 +152,7 @@ Client* client_connect_ssh(const char* destination, int port, const char* server
ssh_argv[ac++] = "--stdio"; ssh_argv[ac++] = "--stdio";
ssh_argv[ac] = NULL; ssh_argv[ac] = NULL;
execvp("ssh", ssh_argv); execvp("ssh", ssh_argv);
perror("exec of ssh failed"); log_perror("exec of ssh failed");
ssize_t wret = write(exec_pipe[1], "x", 1); ssize_t wret = write(exec_pipe[1], "x", 1);
(void)wret; (void)wret;
_exit(1); _exit(1);
+16 -10
View File
@@ -30,20 +30,20 @@ static void sigchld_handler(int sig) {
Server* server_create(int port) { Server* server_create(int port) {
Server* server = (Server*)malloc(sizeof(Server)); Server* server = (Server*)malloc(sizeof(Server));
if (server == NULL) { if (server == NULL) {
perror("Could not allocate space for Server"); log_perror("Could not allocate space for Server");
return NULL; return NULL;
} }
int file_descriptor = socket(AF_INET, SOCK_STREAM, 0); int file_descriptor = socket(AF_INET, SOCK_STREAM, 0);
if (file_descriptor < 0) { if (file_descriptor < 0) {
perror("Could not create Socket!"); log_perror("Could not create Socket!");
free(server); free(server);
return NULL; return NULL;
} }
server->file_descriptor = file_descriptor; server->file_descriptor = file_descriptor;
int opt = 1; int opt = 1;
if (setsockopt(server->file_descriptor, SOL_SOCKET, SO_REUSEADDR, &opt, sizeof(opt))) { if (setsockopt(server->file_descriptor, SOL_SOCKET, SO_REUSEADDR, &opt, sizeof(opt))) {
perror("Error setting a socket option!"); log_perror("Error setting a socket option!");
close(server->file_descriptor); close(server->file_descriptor);
free(server); free(server);
return NULL; return NULL;
@@ -59,7 +59,7 @@ Server* server_create(int port) {
if (bind(server->file_descriptor, (struct sockaddr*)&server->address, server->address_length) < if (bind(server->file_descriptor, (struct sockaddr*)&server->address, server->address_length) <
0) { 0) {
perror("Could not bind server"); log_perror("Could not bind server");
close(server->file_descriptor); close(server->file_descriptor);
free(server); free(server);
return NULL; return NULL;
@@ -83,7 +83,7 @@ void server_delete(Server** server) {
static void accept_loop(Server* server, void (*child_fn)(int, void*), void* child_ctx, static void accept_loop(Server* server, void (*child_fn)(int, void*), void* child_ctx,
const char* log_fmt) { const char* log_fmt) {
if (listen(server->file_descriptor, SOMAXCONN) < 0) { if (listen(server->file_descriptor, SOMAXCONN) < 0) {
perror("Could not listen on port!"); log_perror("Could not listen on port!");
return; return;
} }
signal(SIGCHLD, sigchld_handler); signal(SIGCHLD, sigchld_handler);
@@ -92,7 +92,7 @@ static void accept_loop(Server* server, void (*child_fn)(int, void*), void* chil
socklen_t client_len = sizeof(client_addr); socklen_t client_len = sizeof(client_addr);
int fd = accept(server->file_descriptor, (struct sockaddr*)&client_addr, &client_len); int fd = accept(server->file_descriptor, (struct sockaddr*)&client_addr, &client_len);
if (fd < 0) { if (fd < 0) {
perror("Could not accept the connection"); log_perror("Could not accept the connection");
continue; continue;
} }
tcp_apply_socket_timeout(fd); tcp_apply_socket_timeout(fd);
@@ -151,6 +151,10 @@ int tcp_get_contimeout_sec(void) {
return g_contimeout_sec; return g_contimeout_sec;
} }
int tcp_get_timeout_sec(void) {
return g_timeout_sec;
}
static void tcp_apply_socket_timeout(int fd) { static void tcp_apply_socket_timeout(int fd) {
struct timeval tv; struct timeval tv;
tv.tv_sec = g_timeout_sec; tv.tv_sec = g_timeout_sec;
@@ -173,7 +177,7 @@ Client* client_create() {
return client; return client;
} }
bool tcp_connect_socket(Client* client, const char* host, int port) { bool tcp_connect_socket(Client* client, char* host, int port) {
struct addrinfo hints; struct addrinfo hints;
struct addrinfo* result; struct addrinfo* result;
memset(&hints, 0, sizeof(hints)); memset(&hints, 0, sizeof(hints));
@@ -218,16 +222,18 @@ bool tcp_connect_socket(Client* client, const char* host, int port) {
freeaddrinfo(result); freeaddrinfo(result);
if (!connected) { if (!connected) {
perror("Could not connect to Server!"); log_perror("Could not connect to Server!");
return false; return false;
} }
tcp_apply_socket_timeout(client->file_descriptor);
return true; return true;
} }
bool client_connect(Client* client, char* host, int port) { bool client_connect(Client* client, char* host, int port) {
return tcp_connect_socket(client, host, port); if (!tcp_connect_socket(client, host, port))
return false;
tcp_apply_socket_timeout(client->file_descriptor);
return true;
} }
void client_disconnect(Client* client) { void client_disconnect(Client* client) {
+2 -1
View File
@@ -29,11 +29,12 @@ void server_accept_loop(Server* server, void (*child_fn)(int, void*), void* chil
const char* log_fmt); const char* log_fmt);
void server_delete(Server** server); void server_delete(Server** server);
Client* client_create(); Client* client_create();
bool tcp_connect_socket(Client* client, const char* host, int port);
bool client_connect(Client* client, char* host, int port); bool client_connect(Client* client, char* host, int port);
bool tcp_connect_socket(Client* client, char* host, int port);
void client_disconnect(Client* client); void client_disconnect(Client* client);
void client_delete(Client* client); void client_delete(Client* client);
void tcp_set_timeouts(int timeout_sec, int contimeout_sec); void tcp_set_timeouts(int timeout_sec, int contimeout_sec);
int tcp_get_contimeout_sec(void); int tcp_get_contimeout_sec(void);
int tcp_get_timeout_sec(void);
#endif #endif
+47 -7
View File
@@ -2,6 +2,7 @@
#include "log.h" #include "log.h"
#include "protocol.h" #include "protocol.h"
#include "transport_tcp.h" #include "transport_tcp.h"
#include <arpa/inet.h>
#include <openssl/err.h> #include <openssl/err.h>
#include <openssl/ssl.h> #include <openssl/ssl.h>
#include <signal.h> #include <signal.h>
@@ -9,7 +10,9 @@
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
#include <sys/socket.h> #include <sys/socket.h>
#include <sys/stat.h>
#include <sys/wait.h> #include <sys/wait.h>
#include <time.h>
#include <unistd.h> #include <unistd.h>
bool tls_global_init(void) { bool tls_global_init(void) {
@@ -32,6 +35,10 @@ static void log_ssl_errors(void) {
static SSL_CTX* create_ssl_ctx(bool is_server, const char* cert, const char* key, static SSL_CTX* create_ssl_ctx(bool is_server, const char* cert, const char* key,
const char* ca_path) { const char* ca_path) {
if (!is_server && !ca_path) {
log_message(LOG_LEVEL_ERROR, "TLS clients require a CA certificate path");
return NULL;
}
const SSL_METHOD* method = is_server ? TLS_server_method() : TLS_client_method(); const SSL_METHOD* method = is_server ? TLS_server_method() : TLS_client_method();
SSL_CTX* ctx = SSL_CTX_new(method); SSL_CTX* ctx = SSL_CTX_new(method);
if (!ctx) { if (!ctx) {
@@ -40,9 +47,23 @@ static SSL_CTX* create_ssl_ctx(bool is_server, const char* cert, const char* key
return NULL; return NULL;
} }
SSL_CTX_set_min_proto_version(ctx, TLS1_2_VERSION); if (SSL_CTX_set_min_proto_version(ctx, TLS1_2_VERSION) != 1) {
SSL_CTX_free(ctx);
return NULL;
}
if (SSL_CTX_set_cipher_list(ctx, "HIGH:!aNULL:!eNULL:!MD5:!RC4:!3DES") != 1) {
SSL_CTX_free(ctx);
return NULL;
}
if (cert && key) { if (cert && key) {
struct stat key_stat;
if (stat(key, &key_stat) != 0 || !S_ISREG(key_stat.st_mode) || key_stat.st_uid != geteuid() ||
(key_stat.st_mode & (S_IRGRP | S_IWGRP | S_IROTH | S_IWOTH))) {
log_message(LOG_LEVEL_ERROR, "TLS private key must be owned by the current user and private");
SSL_CTX_free(ctx);
return NULL;
}
if (SSL_CTX_use_certificate_file(ctx, cert, SSL_FILETYPE_PEM) <= 0) { if (SSL_CTX_use_certificate_file(ctx, cert, SSL_FILETYPE_PEM) <= 0) {
log_message(LOG_LEVEL_ERROR, "Failed to load certificate: %s", cert); log_message(LOG_LEVEL_ERROR, "Failed to load certificate: %s", cert);
log_ssl_errors(); log_ssl_errors();
@@ -84,15 +105,22 @@ static SSL* wrap_fd_with_ssl(int fd, SSL_CTX* ctx, bool is_server, const char* h
log_message(LOG_LEVEL_ERROR, "Failed to create SSL object"); log_message(LOG_LEVEL_ERROR, "Failed to create SSL object");
return NULL; return NULL;
} }
SSL_set_fd(ssl, fd); if (SSL_set_fd(ssl, fd) != 1) {
SSL_free(ssl);
return NULL;
}
// Enable hostname verification for client connections when a hostname is provided. // Enable hostname verification for client connections when a hostname is provided.
// Must be done before SSL_connect to take effect during the handshake. // Must be done before SSL_connect to take effect during the handshake.
if (!is_server && hostname) { if (!is_server && hostname) {
SSL_set1_host(ssl, hostname); if (SSL_set1_host(ssl, hostname) != 1) {
SSL_free(ssl);
return NULL;
}
} }
// Retry SSL_accept/SSL_connect on WANT_READ/WANT_WRITE (non-blocking handshake) // Retry SSL_accept/SSL_connect on WANT_READ/WANT_WRITE (non-blocking handshake)
time_t deadline = time(NULL) + (is_server ? tcp_get_timeout_sec() : tcp_get_contimeout_sec());
int ret; int ret;
do { do {
if (is_server) if (is_server)
@@ -102,7 +130,8 @@ static SSL* wrap_fd_with_ssl(int fd, SSL_CTX* ctx, bool is_server, const char* h
if (ret <= 0) { if (ret <= 0) {
int ssl_err = SSL_get_error(ssl, ret); int ssl_err = SSL_get_error(ssl, ret);
if (ssl_err == SSL_ERROR_WANT_READ || ssl_err == SSL_ERROR_WANT_WRITE) if ((ssl_err == SSL_ERROR_WANT_READ || ssl_err == SSL_ERROR_WANT_WRITE) &&
time(NULL) < deadline)
continue; continue;
log_message(LOG_LEVEL_ERROR, "SSL %s failed", is_server ? "accept" : "connect"); log_message(LOG_LEVEL_ERROR, "SSL %s failed", is_server ? "accept" : "connect");
log_ssl_errors(); log_ssl_errors();
@@ -130,8 +159,10 @@ struct tls_child_ctx {
static void tls_child_fn(int fd, void* arg) { static void tls_child_fn(int fd, void* arg) {
struct tls_child_ctx* ctx = (struct tls_child_ctx*)arg; struct tls_child_ctx* ctx = (struct tls_child_ctx*)arg;
SSL* ssl = wrap_fd_with_ssl(fd, ctx->ssl_ctx, true, NULL); SSL* ssl = wrap_fd_with_ssl(fd, ctx->ssl_ctx, true, NULL);
if (!ssl) if (!ssl) {
io_set_ssl(NULL);
return; return;
}
io_set_ssl(ssl); io_set_ssl(ssl);
ctx->handler(fd); ctx->handler(fd);
SSL_shutdown(ssl); SSL_shutdown(ssl);
@@ -147,12 +178,19 @@ bool server_listen_tls(Server* server, void (*handler)(int file_descriptor)) {
bool client_connect_tls(Client* client, char* host, int port, const char* cert_path, bool client_connect_tls(Client* client, char* host, int port, const char* cert_path,
const char* key_path, const char* ca_path) { const char* key_path, const char* ca_path) {
if (!tcp_connect_socket(client, host, port)) if (!tcp_connect_socket(client, host, port)) {
if (client->file_descriptor >= 0)
close(client->file_descriptor);
client->file_descriptor = -1;
return false; return false;
}
SSL_CTX* ctx = create_ssl_ctx(false, cert_path, key_path, ca_path); SSL_CTX* ctx = create_ssl_ctx(false, cert_path, key_path, ca_path);
if (!ctx) if (!ctx) {
close(client->file_descriptor);
client->file_descriptor = -1;
return false; return false;
}
client->ssl_ctx = ctx; client->ssl_ctx = ctx;
// Pass the server hostname for TLS hostname verification (SSL_set1_host // Pass the server hostname for TLS hostname verification (SSL_set1_host
@@ -162,6 +200,8 @@ bool client_connect_tls(Client* client, char* host, int port, const char* cert_p
if (!ssl) { if (!ssl) {
SSL_CTX_free(ctx); SSL_CTX_free(ctx);
client->ssl_ctx = NULL; client->ssl_ctx = NULL;
close(client->file_descriptor);
client->file_descriptor = -1;
return false; return false;
} }
+152 -54
View File
@@ -7,62 +7,117 @@
#include <stdio.h> #include <stdio.h>
#include <stdlib.h> #include <stdlib.h>
#include <string.h> #include <string.h>
#include <stdint.h>
#include <sys/stat.h> #include <sys/stat.h>
#include <unistd.h> #include <unistd.h>
static int authorized_root_fd = -1; static int authorized_root_fd = -1;
static char* authorized_root_path;
bool utils_set_authorized_root(int fd, const char* canonical_path) {
char* path_copy = canonical_path ? str_dup(canonical_path) : NULL;
if (canonical_path && !path_copy) {
authorized_root_fd = -1;
free(authorized_root_path);
authorized_root_path = NULL;
return false;
}
authorized_root_fd = fd;
free(authorized_root_path);
authorized_root_path = path_copy;
return true;
}
void utils_set_authorized_root_fd(int fd) { void utils_set_authorized_root_fd(int fd) {
authorized_root_fd = fd; (void)utils_set_authorized_root(fd, NULL);
}
static bool path_is_within_root(const char* root, const char* path) {
size_t root_len = strlen(root);
return strncmp(root, path, root_len) == 0 && (path[root_len] == '\0' || path[root_len] == '/');
}
static int open_authorized_destination(const char* dest_root) {
if (authorized_root_fd < 0 || !authorized_root_path || !dest_root ||
!path_is_within_root(authorized_root_path, dest_root))
return -1;
int dirfd = dup(authorized_root_fd);
if (dirfd < 0)
return -1;
const char* relative_path = dest_root + strlen(authorized_root_path);
while (*relative_path == '/')
relative_path++;
char* relative = str_dup(*relative_path ? relative_path : ".");
if (!relative) {
close(dirfd);
return -1;
}
char* saveptr = NULL;
char* component = strtok_r(relative, "/", &saveptr);
while (component) {
if (strcmp(component, "..") == 0) {
free(relative);
close(dirfd);
return -1;
}
if (strcmp(component, ".") == 0) {
component = strtok_r(NULL, "/", &saveptr);
continue;
}
int next = openat(dirfd, component, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC);
if (next < 0) {
free(relative);
close(dirfd);
return -1;
}
close(dirfd);
dirfd = next;
component = strtok_r(NULL, "/", &saveptr);
}
free(relative);
return dirfd;
} }
bool mkdir_r(const char* path) { bool mkdir_r(const char* path) {
size_t path_len = strlen(path); if (!path || *path == '\0')
char* path_duplicate = malloc(path_len + 1);
if (!path_duplicate)
return false; return false;
memcpy(path_duplicate, path, path_len + 1); char* duplicate = str_dup(path);
size_t capacity = path_len + 2; if (!duplicate)
char* path_current = (char*)malloc(capacity * sizeof(char)); return false;
if (!path_current) { int dirfd = open(path[0] == '/' ? "/" : ".", O_RDONLY | O_DIRECTORY | O_CLOEXEC | O_NOFOLLOW);
free(path_duplicate); if (dirfd < 0) {
free(duplicate);
return false; return false;
} }
char* path_current_position = path_current;
if (path[0] == '/') {
path_current[0] = '/';
path_current[1] = '\0';
path_current_position += 1;
} else {
path_current[0] = '\0';
}
const char* delimiter = "/";
char* saveptr;
const char* part = strtok_r(path_duplicate, delimiter, &saveptr);
bool ok = true; bool ok = true;
while (part != NULL) { char* saveptr = NULL;
size_t part_len = strlen(part); char* component = strtok_r(duplicate, "/", &saveptr);
if ((size_t)(path_current_position - path_current) + part_len + 2 > capacity) { while (component) {
if (strcmp(component, "..") == 0) {
ok = false; ok = false;
break; break;
} }
memcpy(path_current_position, part, part_len); if (strcmp(component, ".") != 0) {
path_current_position += part_len; int next = openat(dirfd, component, O_RDONLY | O_DIRECTORY | O_CLOEXEC | O_NOFOLLOW);
path_current_position[0] = '/'; if (next < 0 && errno == ENOENT) {
path_current_position[1] = '\0'; if (mkdirat(dirfd, component, 0755) == 0 || errno == EEXIST)
path_current_position++; next = openat(dirfd, component, O_RDONLY | O_DIRECTORY | O_CLOEXEC | O_NOFOLLOW);
struct stat st; }
if (stat(path_current, &st) != 0) { if (next < 0) {
if (mkdir(path_current, 0755) != 0) {
perror("Could not create directory");
ok = false; ok = false;
break; break;
} }
close(dirfd);
dirfd = next;
} }
part = strtok_r(NULL, delimiter, &saveptr); component = strtok_r(NULL, "/", &saveptr);
} }
free(path_duplicate); close(dirfd);
free(path_current); free(duplicate);
return ok; return ok;
} }
@@ -143,7 +198,8 @@ static bool is_dir_in_manifest(const char* rel_path, ArrayList* manifest) {
return false; return false;
} }
static bool delete_extras_fd(int dirfd, const char* rel_path, ArrayList* manifest) { static bool delete_extras_fd(int dirfd, const char* rel_path, ArrayList* manifest,
size_t max_delete, size_t* deleted_count) {
int scanfd = dup(dirfd); int scanfd = dup(dirfd);
if (scanfd < 0) if (scanfd < 0)
return false; return false;
@@ -152,15 +208,20 @@ static bool delete_extras_fd(int dirfd, const char* rel_path, ArrayList* manifes
close(scanfd); close(scanfd);
return false; return false;
} }
bool all_removed = true;
bool operation_ok = true; bool operation_ok = true;
const struct dirent* entry; const struct dirent* entry;
while ((entry = readdir(dir)) != NULL) { while ((entry = readdir(dir)) != NULL) {
if (strcmp(entry->d_name, ".") == 0 || strcmp(entry->d_name, "..") == 0) if (strcmp(entry->d_name, ".") == 0 || strcmp(entry->d_name, "..") == 0)
continue; continue;
char* child_rel = path_cat((char*)rel_path, entry->d_name); char* child_rel = path_cat((char*)rel_path, entry->d_name);
if (!child_rel) {
operation_ok = false;
continue;
}
struct stat st; struct stat st;
if (fstatat(dirfd, entry->d_name, &st, AT_SYMLINK_NOFOLLOW) != 0) { if (fstatat(dirfd, entry->d_name, &st, AT_SYMLINK_NOFOLLOW) != 0) {
if (errno != ENOENT)
operation_ok = false;
free(child_rel); free(child_rel);
continue; continue;
} }
@@ -173,14 +234,24 @@ static bool delete_extras_fd(int dirfd, const char* rel_path, ArrayList* manifes
int childfd = openat(dirfd, entry->d_name, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC); int childfd = openat(dirfd, entry->d_name, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC);
bool child_removed = false; bool child_removed = false;
if (childfd >= 0) { if (childfd >= 0) {
child_removed = delete_extras_fd(childfd, child_rel, manifest); child_removed = delete_extras_fd(childfd, child_rel, manifest, max_delete, deleted_count);
if (!child_removed)
operation_ok = false;
close(childfd); close(childfd);
} } else if (errno != ENOENT) {
if (child_removed && !is_dir_in_manifest(child_rel, manifest) &&
unlinkat(dirfd, entry->d_name, AT_REMOVEDIR) != 0 && errno != ENOENT) {
operation_ok = false; operation_ok = false;
} else if (!child_removed) { }
all_removed = false; if (child_removed && !is_dir_in_manifest(child_rel, manifest)) {
if (*deleted_count >= max_delete) {
operation_ok = false;
} else {
if (unlinkat(dirfd, entry->d_name, AT_REMOVEDIR) != 0) {
if (errno != ENOENT)
operation_ok = false;
} else {
(*deleted_count)++;
}
}
} }
} else { } else {
// Check if relative path is in manifest // Check if relative path is in manifest
@@ -192,38 +263,59 @@ static bool delete_extras_fd(int dirfd, const char* rel_path, ArrayList* manifes
} }
} }
if (!found) { if (!found) {
if (unlinkat(dirfd, entry->d_name, 0) != 0 && errno != ENOENT) if (*deleted_count >= max_delete) {
operation_ok = false; operation_ok = false;
free(child_rel);
continue;
}
if (unlinkat(dirfd, entry->d_name, 0) != 0) {
if (errno != ENOENT)
operation_ok = false;
} else {
(*deleted_count)++;
}
fprintf(stderr, " Deleted: %s\n", child_rel); fprintf(stderr, " Deleted: %s\n", child_rel);
} else {
all_removed = false;
} }
} }
free(child_rel); free(child_rel);
} }
closedir(dir); closedir(dir);
(void)all_removed;
return operation_ok; return operation_ok;
} }
bool delete_extras(const char* dest_root, ArrayList* manifest) { bool delete_extras_limited(const char* dest_root, ArrayList* manifest, size_t max_delete) {
int rootfd = authorized_root_fd >= 0 if (!manifest)
? dup(authorized_root_fd) return false;
: open(dest_root, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC); int rootfd;
if (authorized_root_fd >= 0) {
if (authorized_root_path)
rootfd = open_authorized_destination(dest_root);
else if (dest_root == NULL)
rootfd = dup(authorized_root_fd);
else
rootfd = -1;
} else {
rootfd = open(dest_root, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC);
}
if (rootfd < 0) if (rootfd < 0)
return false; return false;
bool ok = delete_extras_fd(rootfd, "", manifest); size_t deleted_count = 0;
bool ok = delete_extras_fd(rootfd, "", manifest, max_delete, &deleted_count);
if (close(rootfd) != 0) if (close(rootfd) != 0)
ok = false; ok = false;
return ok; return ok;
} }
bool delete_extras(const char* dest_root, ArrayList* manifest) {
return delete_extras_limited(dest_root, manifest, SIZE_MAX);
}
bool has_path_traversal(const char* path) { bool has_path_traversal(const char* path) {
if (!path) if (!path)
return false; return true;
char* dup = str_dup(path); char* dup = str_dup(path);
if (!dup) if (!dup)
return false; return true;
char* saveptr; char* saveptr;
const char* part = strtok_r(dup, "/", &saveptr); const char* part = strtok_r(dup, "/", &saveptr);
while (part) { while (part) {
@@ -237,6 +329,10 @@ bool has_path_traversal(const char* path) {
return false; return false;
} }
bool utils_valid_batch_path(const char* path) {
return path && path[0] != '\0' && path[0] != '/' && !has_path_traversal(path);
}
char* path_cat(const char* path1, const char* path2) { char* path_cat(const char* path1, const char* path2) {
if (path1 == NULL || *path1 == '\0') if (path1 == NULL || *path1 == '\0')
return str_dup(path2); return str_dup(path2);
@@ -251,6 +347,8 @@ char* path_cat(const char* path1, const char* path2) {
offset = 1; offset = 1;
path2_len -= 1; path2_len -= 1;
} }
if (path1_len > SIZE_MAX - path2_len - 2)
return NULL;
char* new_path = malloc(path1_len + path2_len + 2); char* new_path = malloc(path1_len + path2_len + 2);
if (new_path == NULL) if (new_path == NULL)
return NULL; return NULL;
+6
View File
@@ -2,6 +2,7 @@
#define UTILS_H #define UTILS_H
#include "array_list.h" #include "array_list.h"
#include <stddef.h>
#include <stdbool.h> #include <stdbool.h>
bool mkdir_r(const char* path); bool mkdir_r(const char* path);
@@ -9,7 +10,12 @@ char* str_dup(const char* string);
char* path_cat(const char* path1, const char* path2); char* path_cat(const char* path1, const char* path2);
bool glob_match(const char* pattern, const char* str); bool glob_match(const char* pattern, const char* str);
bool delete_extras(const char* dest_root, ArrayList* manifest); bool delete_extras(const char* dest_root, ArrayList* manifest);
bool delete_extras_limited(const char* dest_root, ArrayList* manifest, size_t max_delete);
bool utils_set_authorized_root(int fd, const char* canonical_path);
/* The fd-only compatibility form is fail-closed for path-based operations;
* callers should use utils_set_authorized_root with the canonical identity. */
void utils_set_authorized_root_fd(int fd); void utils_set_authorized_root_fd(int fd);
bool has_path_traversal(const char* path); bool has_path_traversal(const char* path);
bool utils_valid_batch_path(const char* path);
#endif #endif
+3 -1
View File
@@ -25,7 +25,9 @@ class ServerManager:
def start(self, extra_args=None): def start(self, extra_args=None):
self.stop() self.stop()
self._port = _find_free_port() self._port = _find_free_port()
cmd = SERVER_CMD + ["-p", str(self._port)] # Plain TCP is intentionally explicit in the server; integration tests
# exercise that opt-in mode rather than relying on the secure default.
cmd = SERVER_CMD + ["-p", str(self._port), "--allow-unauthenticated"]
if extra_args: if extra_args:
cmd += extra_args cmd += extra_args
self._proc = subprocess.Popen(cmd, stdout=subprocess.DEVNULL, stderr=subprocess.DEVNULL) self._proc = subprocess.Popen(cmd, stdout=subprocess.DEVNULL, stderr=subprocess.DEVNULL)
+28
View File
@@ -214,6 +214,34 @@ class TestIncremental:
assert f.read() == b"hello world\n" assert f.read() == b"hello world\n"
class TestExisting:
def test_existing_updates_existing_and_skips_new(self, shared_server):
clean_dir(DEST_DIR)
result, _ = run_client(SOURCE_DIR, DEST_DIR, flags=["-M"], port=shared_server.port)
assert result.returncode == 0, f"Initial sync failed: {(result.stderr or result.stdout)[:200]}"
received = get_dest_received_dir(DEST_DIR, SOURCE_DIR)
source_file = os.path.join(SOURCE_DIR, "small.txt")
new_source_file = os.path.join(SOURCE_DIR, "new-existing-test.txt")
with open(source_file, "wb") as f:
f.write(b"updated existing content\n")
with open(new_source_file, "wb") as f:
f.write(b"this file must not be created\n")
try:
result, _ = run_client(SOURCE_DIR, DEST_DIR,
flags=["-M", "--existing"], port=shared_server.port)
assert result.returncode == 0, f"--existing sync failed: {(result.stderr or result.stdout)[:200]}"
with open(os.path.join(received, "small.txt"), "rb") as f:
assert f.read() == b"updated existing content\n"
assert not os.path.exists(os.path.join(received, "new-existing-test.txt"))
finally:
os.unlink(new_source_file)
with open(source_file, "wb") as f:
f.write(b"hello world\n")
class TestDelete: class TestDelete:
def test_delete_removes_extra_files(self, shared_server): def test_delete_removes_extra_files(self, shared_server):
clean_dir(DEST_DIR) clean_dir(DEST_DIR)
+3
View File
@@ -102,6 +102,7 @@ class TestTLSBasic:
with ServerManager() as server: with ServerManager() as server:
server.start(extra_args=[ server.start(extra_args=[
"--tls", "--cert", certs["server_cert"], "--key", certs["server_key"], "--tls", "--cert", certs["server_cert"], "--key", certs["server_key"],
"--ca", certs["ca"], "--client-cn", "fastsync-client",
]) ])
result, dur = run_client( result, dur = run_client(
SOURCE_DIR, DEST_DIR, SOURCE_DIR, DEST_DIR,
@@ -125,6 +126,7 @@ class TestTLSBasic:
with ServerManager() as server: with ServerManager() as server:
server.start(extra_args=[ server.start(extra_args=[
"--tls", "--cert", certs["server_cert"], "--key", certs["server_key"], "--tls", "--cert", certs["server_cert"], "--key", certs["server_key"],
"--ca", certs["ca"], "--client-cn", "fastsync-client",
]) ])
result, dur = run_client( result, dur = run_client(
SOURCE_DIR, DEST_DIR, SOURCE_DIR, DEST_DIR,
@@ -149,6 +151,7 @@ class TestTLSBasic:
with ServerManager() as server: with ServerManager() as server:
server.start(extra_args=[ server.start(extra_args=[
"--tls", "--cert", certs["server_cert"], "--key", certs["server_key"], "--tls", "--cert", certs["server_cert"], "--key", certs["server_key"],
"--ca", certs["ca"], "--client-cn", "fastsync-client",
]) ])
result, dur = run_client( result, dur = run_client(
SOURCE_DIR, DEST_DIR, SOURCE_DIR, DEST_DIR,
+4
View File
@@ -17,6 +17,8 @@ void test_array_list() {
// Test adding // Test adding
int* val1 = malloc(sizeof(int)); int* val1 = malloc(sizeof(int));
if (!val1)
return;
*val1 = 42; *val1 = 42;
array_list_add(list, val1); array_list_add(list, val1);
EXPECT_EQ_INT(list->size, 1); EXPECT_EQ_INT(list->size, 1);
@@ -26,6 +28,8 @@ void test_array_list() {
// Initial capacity is 100. Let's add 105 elements. // Initial capacity is 100. Let's add 105 elements.
for (int i = 0; i < 105; i++) { for (int i = 0; i < 105; i++) {
int* val = malloc(sizeof(int)); int* val = malloc(sizeof(int));
if (!val)
return;
*val = i; *val = i;
array_list_add(list, val); array_list_add(list, val);
} }
+3 -3
View File
@@ -11,7 +11,7 @@ static void test_file_operations() {
char* test_content = "Hello, Chunk System!"; char* test_content = "Hello, Chunk System!";
unsigned long long test_len = strlen(test_content); unsigned long long test_len = strlen(test_content);
to_disk(test_path, test_content, test_len, false, false); file_write_to_disk(test_path, test_content, test_len, false, false);
File* f = file_create(test_path); File* f = file_create(test_path);
EXPECT_NOT_NULL(f); EXPECT_NOT_NULL(f);
@@ -43,8 +43,8 @@ static void test_chunk_operations() {
char* content2 = "chunk item number 2"; char* content2 = "chunk item number 2";
unsigned long long len2 = strlen(content2); unsigned long long len2 = strlen(content2);
to_disk(path1, content1, len1, false, false); file_write_to_disk(path1, content1, len1, false, false);
to_disk(path2, content2, len2, false, false); file_write_to_disk(path2, content2, len2, false, false);
struct stat st1, st2; struct stat st1, st2;
stat(path1, &st1); stat(path1, &st1);
+71 -2
View File
@@ -1,4 +1,5 @@
#include "test_client_cli.h" #include "test_client_cli.h"
#include "client_validation.h"
#include "config.h" #include "config.h"
#include "test_utils.h" #include "test_utils.h"
#include "utils.h" #include "utils.h"
@@ -9,6 +10,58 @@
/* Declaration of parse_args from client_cli.c */ /* Declaration of parse_args from client_cli.c */
int parse_args(Config* config, int argc, char* argv[], int* positional_args, int* positional_count); int parse_args(Config* config, int argc, char* argv[], int* positional_args, int* positional_count);
static Config* valid_client_config() {
Config* cfg = config_create();
if (!cfg)
return NULL;
cfg->send_directory = str_dup("/src");
cfg->receive_root_directory = str_dup("/dst");
return cfg;
}
static void test_validate_config_required_paths() {
Config* cfg = config_create();
EXPECT_FALSE(validate_config(cfg));
cfg->send_directory = str_dup("/src");
EXPECT_FALSE(validate_config(cfg));
config_delete(cfg);
}
static void test_validate_config_incompatible_options() {
Config* cfg = valid_client_config();
cfg->use_sendfile = true;
cfg->use_compression = true;
EXPECT_FALSE(validate_config(cfg));
cfg->use_compression = false;
cfg->use_incremental = true;
cfg->use_chunk_serialization = true;
EXPECT_FALSE(validate_config(cfg));
config_delete(cfg);
}
static void test_validate_config_tls_requirements() {
Config* cfg = valid_client_config();
cfg->use_tls = true;
EXPECT_FALSE(validate_config(cfg));
cfg->tls_cert = str_dup("cert.pem");
EXPECT_FALSE(validate_config(cfg));
cfg->tls_key = str_dup("key.pem");
EXPECT_FALSE(validate_config(cfg));
cfg->tls_ca = str_dup("ca.pem");
EXPECT_TRUE(validate_config(cfg));
config_delete(cfg);
}
static void test_validate_config_delta_sendfile_constraints() {
Config* cfg = valid_client_config();
cfg->use_delta = true;
EXPECT_FALSE(validate_config(cfg));
cfg->use_incremental = true;
cfg->use_sendfile = true;
EXPECT_FALSE(validate_config(cfg));
config_delete(cfg);
}
/* Test main() with --help flag (early return path, no server connection needed) */ /* Test main() with --help flag (early return path, no server connection needed) */
static void test_cli_help() { static void test_cli_help() {
/* We can't easily call main() because it calls send_files which needs a server. /* We can't easily call main() because it calls send_files which needs a server.
@@ -256,8 +309,8 @@ static void test_parse_args_rejects_unimplemented_options() {
"--ipv4", "--ipv4",
"--daemon", "--daemon",
"--config", "--config",
"--server", "--server",
"--compress-choice"}; "--compress-choice"};
for (size_t i = 0; i < sizeof(options) / sizeof(options[0]); i++) { for (size_t i = 0; i < sizeof(options) / sizeof(options[0]); i++) {
Config* cfg = config_create(); Config* cfg = config_create();
@@ -286,7 +339,22 @@ static void test_parse_args_archive() {
config_delete(cfg); config_delete(cfg);
} }
static void test_parse_args_existing() {
Config* cfg = config_create();
char* argv[] = {"fastsync", "--existing", "/src", "/dst"};
int positional_args[2];
int positional_count = 0;
EXPECT_EQ_INT(parse_args(cfg, 4, argv, positional_args, &positional_count), 0);
EXPECT_TRUE(cfg->existing);
config_delete(cfg);
}
void test_client_cli() { void test_client_cli() {
test_validate_config_required_paths();
test_validate_config_incompatible_options();
test_validate_config_tls_requirements();
test_validate_config_delta_sendfile_constraints();
test_cli_help(); test_cli_help();
test_cli_archive_flags(); test_cli_archive_flags();
test_cli_dry_run(); test_cli_dry_run();
@@ -303,4 +371,5 @@ void test_client_cli() {
test_parse_args_unknown_option(); test_parse_args_unknown_option();
test_parse_args_rejects_unimplemented_options(); test_parse_args_rejects_unimplemented_options();
test_parse_args_archive(); test_parse_args_archive();
test_parse_args_existing();
} }
+4 -2
View File
@@ -13,6 +13,8 @@ static void test_data_compress_decompress_roundtrip() {
size_t len = strlen(original); size_t len = strlen(original);
char* buf = malloc(len); char* buf = malloc(len);
if (!buf)
return;
memcpy(buf, original, len); memcpy(buf, original, len);
Data* original_data = data_create(buf, len); Data* original_data = data_create(buf, len);
EXPECT_NOT_NULL(original_data); EXPECT_NOT_NULL(original_data);
@@ -62,8 +64,8 @@ static void test_chunk_compress_decompress_roundtrip() {
char* content2 = "chunk compression test file 2 with more data"; char* content2 = "chunk compression test file 2 with more data";
unsigned long long len2 = strlen(content2); unsigned long long len2 = strlen(content2);
to_disk(path1, content1, len1, false, false); file_write_to_disk(path1, content1, len1, false, false);
to_disk(path2, content2, len2, false, false); file_write_to_disk(path2, content2, len2, false, false);
struct stat st1, st2; struct stat st1, st2;
EXPECT_EQ_INT(stat(path1, &st1), 0); EXPECT_EQ_INT(stat(path1, &st1), 0);
+39 -15
View File
@@ -126,6 +126,7 @@ static void test_config_send_receive() {
send_cfg->use_metadata = true; send_cfg->use_metadata = true;
send_cfg->compression_level = 5; send_cfg->compression_level = 5;
send_cfg->chunk_size = 1024; send_cfg->chunk_size = 1024;
send_cfg->existing = true;
/* Use socketpair for bidirectional communication */ /* Use socketpair for bidirectional communication */
int p[2]; int p[2];
@@ -160,6 +161,8 @@ static void test_config_send_receive() {
ok = false; ok = false;
if (recv_cfg->chunk_size != 1024) if (recv_cfg->chunk_size != 1024)
ok = false; ok = false;
if (!recv_cfg->existing)
ok = false;
} }
config_delete(recv_cfg); config_delete(recv_cfg);
close(p[0]); close(p[0]);
@@ -224,26 +227,46 @@ static void test_config_send_receive_version_mismatch() {
} }
} }
static void test_is_remote_dest() { static void test_config_receive_truncated() {
int p[2];
EXPECT_EQ_INT(socketpair(AF_UNIX, SOCK_STREAM, 0, p), 0);
io_set_fds(p[0], p[0]);
io_set_bwlimit(0);
/* A valid prefix exercises cleanup after allocated wire strings and a
* partially received scalar field. */
EXPECT_TRUE(send_str(p[1], PROTOCOL_VERSION));
EXPECT_TRUE(send_str(p[1], "/src"));
EXPECT_TRUE(send_str(p[1], "/dst"));
EXPECT_TRUE(send_int(p[1], 1));
shutdown(p[1], SHUT_WR);
const Config* cfg = config_receive(p[0]);
EXPECT_NULL(cfg);
close(p[0]);
close(p[1]);
}
static void test_config_is_remote_dest() {
/* Valid SSH-style destinations */ /* Valid SSH-style destinations */
EXPECT_TRUE(is_remote_dest("user@host:/path")); EXPECT_TRUE(config_is_remote_dest("user@host:/path"));
EXPECT_TRUE(is_remote_dest("host:/path")); EXPECT_TRUE(config_is_remote_dest("host:/path"));
EXPECT_TRUE(is_remote_dest("user@192.168.1.1:/remote/path")); EXPECT_TRUE(config_is_remote_dest("user@192.168.1.1:/remote/path"));
/* Invalid destinations */ /* Invalid destinations */
EXPECT_FALSE(is_remote_dest(NULL)); EXPECT_FALSE(config_is_remote_dest(NULL));
EXPECT_FALSE(is_remote_dest("")); EXPECT_FALSE(config_is_remote_dest(""));
EXPECT_FALSE(is_remote_dest(":")); EXPECT_FALSE(config_is_remote_dest(":"));
EXPECT_FALSE(is_remote_dest("/local/path")); EXPECT_FALSE(config_is_remote_dest("/local/path"));
EXPECT_FALSE(is_remote_dest("relative/path")); EXPECT_FALSE(config_is_remote_dest("relative/path"));
/* C:/windows/path is treated as remote (colon with no preceding slash) */ /* C:/windows/path is treated as remote (colon with no preceding slash) */
EXPECT_TRUE(is_remote_dest("C:/windows/path")); EXPECT_TRUE(config_is_remote_dest("C:/windows/path"));
/* Edge cases */ /* Edge cases */
EXPECT_FALSE(is_remote_dest("noslash")); EXPECT_FALSE(config_is_remote_dest("noslash"));
EXPECT_FALSE(is_remote_dest("/")); EXPECT_FALSE(config_is_remote_dest("/"));
EXPECT_TRUE(is_remote_dest("host:")); EXPECT_TRUE(config_is_remote_dest("host:"));
EXPECT_TRUE(is_remote_dest("user@host:")); EXPECT_TRUE(config_is_remote_dest("user@host:"));
} }
void test_config() { void test_config() {
@@ -256,6 +279,7 @@ void test_config() {
if (!is_running_under_valgrind()) { if (!is_running_under_valgrind()) {
test_config_send_receive(); test_config_send_receive();
test_config_send_receive_version_mismatch(); test_config_send_receive_version_mismatch();
test_config_receive_truncated();
} }
test_is_remote_dest(); test_config_is_remote_dest();
} }
+68 -20
View File
@@ -34,7 +34,8 @@ static void test_file_destroy_normal() {
static void test_file_load_data() { static void test_file_load_data() {
const char* content = "Hello Load Test"; const char* content = "Hello Load Test";
EXPECT_TRUE(to_disk("test_file_load_data.txt", content, strlen(content), false, false)); EXPECT_TRUE(
file_write_to_disk("test_file_load_data.txt", content, strlen(content), false, false));
struct stat st; struct stat st;
EXPECT_EQ_INT(stat("test_file_load_data.txt", &st), 0); EXPECT_EQ_INT(stat("test_file_load_data.txt", &st), 0);
@@ -87,15 +88,60 @@ static void test_file_save_to_disk() {
rmdir("test_save_tmp"); rmdir("test_save_tmp");
} }
static void test_to_disk_basic() { static void test_file_save_to_disk_existing() {
const char* content = "Basic to_disk test"; const char* root = "test_existing_tmp";
EXPECT_TRUE(to_disk("test_to_disk_basic.txt", content, strlen(content), false, false)); const char* existing_path = "test_existing_tmp/existing.txt";
const char* missing_path = "test_existing_tmp/missing.txt";
EXPECT_TRUE(file_write_to_disk(existing_path, "old", 3, false, false));
Config* cfg = config_create();
EXPECT_NOT_NULL(cfg);
cfg->existing = true;
File* existing = file_create("existing.txt");
EXPECT_NOT_NULL(existing);
existing->data->data = malloc(3);
EXPECT_NOT_NULL(existing->data->data);
memcpy(existing->data->data, "new", 3);
existing->data->size = 3;
EXPECT_TRUE(file_save_to_disk(root, existing, cfg));
file_destroy(existing);
File* missing = file_create("missing.txt");
EXPECT_NOT_NULL(missing);
missing->data->data = malloc(7);
EXPECT_NOT_NULL(missing->data->data);
memcpy(missing->data->data, "skipped", 7);
missing->data->size = 7;
EXPECT_TRUE(file_save_to_disk(root, missing, cfg));
file_destroy(missing);
FILE* fp = fopen(existing_path, "rb");
char content[4] = {0};
EXPECT_NOT_NULL(fp);
// cppcheck-suppress knownConditionTrueFalse
if (fp) {
EXPECT_EQ_INT((int)fread(content, 1, 3, fp), 3);
fclose(fp);
}
EXPECT_EQ_STR(content, "new");
EXPECT_EQ_INT(access(missing_path, F_OK), -1);
config_delete(cfg);
unlink(existing_path);
rmdir(root);
}
static void test_file_write_to_disk_basic() {
const char* content = "Basic file_write_to_disk test";
EXPECT_TRUE(file_write_to_disk("test_file_write_to_disk_basic.txt", content, strlen(content),
false, false));
struct stat st; struct stat st;
EXPECT_EQ_INT(stat("test_to_disk_basic.txt", &st), 0); EXPECT_EQ_INT(stat("test_file_write_to_disk_basic.txt", &st), 0);
EXPECT_EQ_INT((int)st.st_size, (int)strlen(content)); EXPECT_EQ_INT((int)st.st_size, (int)strlen(content));
FILE* fp = fopen("test_to_disk_basic.txt", "rb"); FILE* fp = fopen("test_file_write_to_disk_basic.txt", "rb");
EXPECT_NOT_NULL(fp); EXPECT_NOT_NULL(fp);
char buf[100]; char buf[100];
size_t nread = fread(buf, 1, sizeof(buf), fp); size_t nread = fread(buf, 1, sizeof(buf), fp);
@@ -103,12 +149,13 @@ static void test_to_disk_basic() {
EXPECT_EQ_INT((int)nread, (int)strlen(content)); EXPECT_EQ_INT((int)nread, (int)strlen(content));
EXPECT_EQ_INT(memcmp(buf, content, strlen(content)), 0); EXPECT_EQ_INT(memcmp(buf, content, strlen(content)), 0);
unlink("test_to_disk_basic.txt"); unlink("test_file_write_to_disk_basic.txt");
} }
static void test_to_disk_creates_dirs() { static void test_file_write_to_disk_creates_dirs() {
const char* content = "Nested dir test"; const char* content = "Nested dir test";
EXPECT_TRUE(to_disk("test_nested_tmp/nested/file.txt", content, strlen(content), false, false)); EXPECT_TRUE(file_write_to_disk("test_nested_tmp/nested/file.txt", content, strlen(content), false,
false));
struct stat st; struct stat st;
EXPECT_EQ_INT(stat("test_nested_tmp/nested/file.txt", &st), 0); EXPECT_EQ_INT(stat("test_nested_tmp/nested/file.txt", &st), 0);
@@ -126,15 +173,15 @@ static void test_to_disk_creates_dirs() {
rmdir("test_nested_tmp"); rmdir("test_nested_tmp");
} }
static void test_to_disk_does_not_follow_symlink() { static void test_file_write_to_disk_does_not_follow_symlink() {
const char* outside = "test_to_disk_outside.txt"; const char* outside = "test_file_write_to_disk_outside.txt";
const char* link = "test_to_disk_link.txt"; const char* link = "test_file_write_to_disk_link.txt";
const char* content = "confined"; const char* content = "confined";
unlink(outside); unlink(outside);
unlink(link); unlink(link);
EXPECT_TRUE(to_disk(outside, "outside", 7, false, false)); EXPECT_TRUE(file_write_to_disk(outside, "outside", 7, false, false));
EXPECT_EQ_INT(symlink(outside, link), 0); EXPECT_EQ_INT(symlink(outside, link), 0);
EXPECT_TRUE(to_disk(link, content, strlen(content), false, false)); EXPECT_TRUE(file_write_to_disk(link, content, strlen(content), false, false));
FILE* fp = fopen(outside, "rb"); FILE* fp = fopen(outside, "rb");
char buf[16] = {0}; char buf[16] = {0};
EXPECT_NOT_NULL(fp); EXPECT_NOT_NULL(fp);
@@ -151,7 +198,7 @@ static void test_to_disk_does_not_follow_symlink() {
static void test_file_content_to_buffer() { static void test_file_content_to_buffer() {
const char* content = "Buffer content test"; const char* content = "Buffer content test";
EXPECT_TRUE(to_disk("test_buffer_file.txt", content, strlen(content), false, false)); EXPECT_TRUE(file_write_to_disk("test_buffer_file.txt", content, strlen(content), false, false));
File* f = file_create("test_buffer_file.txt"); File* f = file_create("test_buffer_file.txt");
EXPECT_NOT_NULL(f); EXPECT_NOT_NULL(f);
@@ -273,7 +320,7 @@ static void test_file_send_no_path() {
} }
static void test_file_metadata_create() { static void test_file_metadata_create() {
EXPECT_TRUE(to_disk("test_meta_file.txt", "metadata test", 13, false, false)); EXPECT_TRUE(file_write_to_disk("test_meta_file.txt", "metadata test", 13, false, false));
struct stat st; struct stat st;
EXPECT_EQ_INT(stat("test_meta_file.txt", &st), 0); EXPECT_EQ_INT(stat("test_meta_file.txt", &st), 0);
@@ -382,7 +429,7 @@ static void test_file_send_single_calls_metadata_and_path() {
/* Create a real file on disk so we can have metadata */ /* Create a real file on disk so we can have metadata */
const char* content = "File with metadata"; const char* content = "File with metadata";
size_t len = strlen(content); size_t len = strlen(content);
EXPECT_TRUE(to_disk("test_meta_send.txt", content, len, false, false)); EXPECT_TRUE(file_write_to_disk("test_meta_send.txt", content, len, false, false));
struct stat st; struct stat st;
EXPECT_EQ_INT(stat("test_meta_send.txt", &st), 0); EXPECT_EQ_INT(stat("test_meta_send.txt", &st), 0);
@@ -455,9 +502,10 @@ void test_file() {
test_file_load_data(); test_file_load_data();
test_file_load_data_missing_file(); test_file_load_data_missing_file();
test_file_save_to_disk(); test_file_save_to_disk();
test_to_disk_basic(); test_file_save_to_disk_existing();
test_to_disk_creates_dirs(); test_file_write_to_disk_basic();
test_to_disk_does_not_follow_symlink(); test_file_write_to_disk_creates_dirs();
test_file_write_to_disk_does_not_follow_symlink();
test_file_content_to_buffer(); test_file_content_to_buffer();
test_file_save_to_disk_path_traversal(); test_file_save_to_disk_path_traversal();
test_file_save_to_disk_deep_traversal(); test_file_save_to_disk_deep_traversal();
+4 -4
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@@ -15,7 +15,7 @@
static void test_sendfile_basic() { static void test_sendfile_basic() {
const char* content = "Hello from sendfile test!"; const char* content = "Hello from sendfile test!";
size_t len = strlen(content); size_t len = strlen(content);
EXPECT_TRUE(to_disk("test_sendfile_basic.txt", content, len, false, false)); EXPECT_TRUE(file_write_to_disk("test_sendfile_basic.txt", content, len, false, false));
File* file = file_create("test_sendfile_basic.txt"); File* file = file_create("test_sendfile_basic.txt");
EXPECT_NOT_NULL(file); EXPECT_NOT_NULL(file);
@@ -77,7 +77,7 @@ static void test_sendfile_basic() {
static void test_sendfile_empty_file() { static void test_sendfile_empty_file() {
const char* content = ""; const char* content = "";
size_t len = 0; size_t len = 0;
EXPECT_TRUE(to_disk("test_sendfile_empty.txt", content, len, false, false)); EXPECT_TRUE(file_write_to_disk("test_sendfile_empty.txt", content, len, false, false));
File* file = file_create("test_sendfile_empty.txt"); File* file = file_create("test_sendfile_empty.txt");
EXPECT_NOT_NULL(file); EXPECT_NOT_NULL(file);
@@ -156,7 +156,7 @@ static void test_sendfile_missing_file() {
static void test_sendfile_compression_fallback() { static void test_sendfile_compression_fallback() {
const char* content = "Compression fallback content"; const char* content = "Compression fallback content";
size_t len = strlen(content); size_t len = strlen(content);
EXPECT_TRUE(to_disk("test_sendfile_comp.txt", content, len, false, false)); EXPECT_TRUE(file_write_to_disk("test_sendfile_comp.txt", content, len, false, false));
struct stat st; struct stat st;
EXPECT_EQ_INT(stat("test_sendfile_comp.txt", &st), 0); EXPECT_EQ_INT(stat("test_sendfile_comp.txt", &st), 0);
@@ -222,7 +222,7 @@ static void test_sendfile_compression_fallback() {
static void test_sendfile_no_path() { static void test_sendfile_no_path() {
const char* content = "No path sendfile test"; const char* content = "No path sendfile test";
size_t len = strlen(content); size_t len = strlen(content);
EXPECT_TRUE(to_disk("test_sendfile_nopath.txt", content, len, false, false)); EXPECT_TRUE(file_write_to_disk("test_sendfile_nopath.txt", content, len, false, false));
File* file = file_create("test_sendfile_nopath.txt"); File* file = file_create("test_sendfile_nopath.txt");
EXPECT_NOT_NULL(file); EXPECT_NOT_NULL(file);
+1 -1
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@@ -101,7 +101,7 @@ static void test_fuzz_delta_deserialize() {
/* Smoke test for metadata_from_buf fuzz target */ /* Smoke test for metadata_from_buf fuzz target */
static void test_fuzz_metadata_from_buf() { static void test_fuzz_metadata_from_buf() {
/* Create a real file to get metadata from */ /* Create a real file to get metadata from */
EXPECT_TRUE(to_disk("fuzz_meta_test.txt", "metadata test", 13, false, false)); EXPECT_TRUE(file_write_to_disk("fuzz_meta_test.txt", "metadata test", 13, false, false));
struct stat st; struct stat st;
EXPECT_EQ_INT(stat("fuzz_meta_test.txt", &st), 0); EXPECT_EQ_INT(stat("fuzz_meta_test.txt", &st), 0);
+1 -1
View File
@@ -125,7 +125,7 @@ static void test_metadata_rejects_invalid_values() {
static void test_file_restore_metadata() { static void test_file_restore_metadata() {
const char* path = "temp_meta_restore_test.txt"; const char* path = "temp_meta_restore_test.txt";
const char* content = "test content"; const char* content = "test content";
EXPECT_TRUE(to_disk(path, content, strlen(content), false, false)); EXPECT_TRUE(file_write_to_disk(path, content, strlen(content), false, false));
FileMetadata m; FileMetadata m;
m.mode = 0644; m.mode = 0644;
+5 -1
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@@ -14,6 +14,8 @@
static Data* random_data(int min_size, int max_size) { static Data* random_data(int min_size, int max_size) {
int size = min_size + rand() % (max_size - min_size + 1); int size = min_size + rand() % (max_size - min_size + 1);
char* buf = malloc(size); char* buf = malloc(size);
if (!buf)
return NULL;
for (int i = 0; i < size; i++) for (int i = 0; i < size; i++)
buf[i] = (char)(rand() % 256); buf[i] = (char)(rand() % 256);
return data_create(buf, size); return data_create(buf, size);
@@ -81,10 +83,12 @@ static void test_property_chunk_roundtrip() {
int content_len = 1 + rand() % 4096; int content_len = 1 + rand() % 4096;
char* content = malloc(content_len); char* content = malloc(content_len);
if (!content)
return;
for (int i = 0; i < content_len; i++) for (int i = 0; i < content_len; i++)
content[i] = (char)(rand() % 256); content[i] = (char)(rand() % 256);
to_disk(path, content, content_len, false, false); file_write_to_disk(path, content, content_len, false, false);
struct stat st; struct stat st;
stat(path, &st); stat(path, &st);
+18
View File
@@ -38,6 +38,23 @@ static void test_send_receive_n_data_zero() {
close(p[1]); close(p[1]);
} }
static void test_explicit_session_context() {
int p[2];
EXPECT_EQ_INT(pipe(p), 0);
ProtocolSession session;
protocol_session_init(&session, p[0], p[1]);
protocol_session_set_bwlimit(&session, 0);
const char payload[] = "explicit context";
char received[sizeof(payload)] = {0};
EXPECT_TRUE(protocol_send_n_data(&session, payload, sizeof(payload)));
EXPECT_TRUE(protocol_receive_n_data(&session, received, sizeof(received)));
EXPECT_EQ_INT(memcmp(payload, received, sizeof(payload)), 0);
close(p[0]);
close(p[1]);
}
static void test_send_receive_str() { static void test_send_receive_str() {
int p[2]; int p[2];
EXPECT_EQ_INT(pipe(p), 0); EXPECT_EQ_INT(pipe(p), 0);
@@ -173,6 +190,7 @@ static void test_receive_str_truncated() {
void test_protocol() { void test_protocol() {
test_send_receive_n_data(); test_send_receive_n_data();
test_send_receive_n_data_zero(); test_send_receive_n_data_zero();
test_explicit_session_context();
test_send_receive_str(); test_send_receive_str();
test_send_receive_str_normal(); test_send_receive_str_normal();
test_send_receive_data(); test_send_receive_data();
+4
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@@ -122,6 +122,8 @@ static void test_queue_destroyer() {
for (int i = 0; i < 3; i++) { for (int i = 0; i < 3; i++) {
int* val = malloc(sizeof(int)); int* val = malloc(sizeof(int));
if (!val)
break;
*val = i; *val = i;
queue_enqueue(q, val); queue_enqueue(q, val);
} }
@@ -181,6 +183,8 @@ static void test_queue_multithreaded() {
for (int i = 1; i <= 100; i++) { for (int i = 1; i <= 100; i++) {
int* val = malloc(sizeof(int)); int* val = malloc(sizeof(int));
if (!val)
break;
*val = i; *val = i;
queue_enqueue_multithreaded(q, val, &mutex, &cnd_empty, &cnd_full); queue_enqueue_multithreaded(q, val, &mutex, &cnd_empty, &cnd_full);
} }
+1 -1
View File
@@ -13,7 +13,7 @@
static void test_chunk_deserialize_truncated() { static void test_chunk_deserialize_truncated() {
char* path = "test_rob_trunc.txt"; char* path = "test_rob_trunc.txt";
char* content = "hello"; char* content = "hello";
to_disk(path, content, strlen(content), false, false); file_write_to_disk(path, content, strlen(content), false, false);
struct stat st; struct stat st;
stat(path, &st); stat(path, &st);
+31 -1
View File
@@ -7,7 +7,7 @@
#include <unistd.h> #include <unistd.h>
static void create_test_file(const char* path, const char* content) { static void create_test_file(const char* path, const char* content) {
(void)to_disk(path, content, strlen(content), false, false); (void)file_write_to_disk(path, content, strlen(content), false, false);
} }
static void test_scanner_single_file() { static void test_scanner_single_file() {
@@ -385,6 +385,35 @@ static void test_scanner_no_patterns() {
rmdir(dir); rmdir(dir);
} }
static void test_parallel_scanner_root_chunks_without_workers() {
const char* dir = "test_parallel_scan_root";
const char* file1 = "test_parallel_scan_root/a.txt";
const char* file2 = "test_parallel_scan_root/b.txt";
EXPECT_EQ_INT(mkdir(dir, 0755), 0);
create_test_file(file1, "a");
create_test_file(file2, "b");
ScannerOptions options = {false, 1, NULL, 0, NULL, 0, 0, 0,
0, 0, false, false, false, false, false};
ParallelScanner* scanner = parallel_scanner_create_with_options(dir, &options);
EXPECT_NOT_NULL(scanner);
int total_files = 0;
Chunk* chunk;
while ((chunk = parallel_scanner_next(scanner)) != NULL) {
total_files += chunk->element_count;
chunk_destroy(chunk);
}
EXPECT_EQ_INT(total_files, 2);
EXPECT_FALSE(parallel_scanner_failed(scanner));
parallel_scanner_destroy(scanner);
unlink(file1);
unlink(file2);
rmdir(dir);
}
void test_scanner() { void test_scanner() {
test_scanner_single_file(); test_scanner_single_file();
test_scanner_multiple_files(); test_scanner_multiple_files();
@@ -399,4 +428,5 @@ void test_scanner() {
test_scanner_size_range(); test_scanner_size_range();
test_scanner_mixed_patterns(); test_scanner_mixed_patterns();
test_scanner_no_patterns(); test_scanner_no_patterns();
test_parallel_scanner_root_chunks_without_workers();
} }
+4 -8
View File
@@ -11,11 +11,7 @@
#include <sys/wait.h> #include <sys/wait.h>
#include <unistd.h> #include <unistd.h>
/* Include server.c but rename main to avoid conflict with test runner's main */ #include "receiver.h"
#define main server_main_
#define FASTSYNC_SERVER_AS_LIB
#include "server.c"
#undef main
/* Test receive_files with immediate FINISHED status */ /* Test receive_files with immediate FINISHED status */
static void test_receive_files_finished() { static void test_receive_files_finished() {
@@ -36,7 +32,7 @@ static void test_receive_files_finished() {
/* Child: use p[0] for both read and write */ /* Child: use p[0] for both read and write */
close(p[1]); close(p[1]);
io_set_fds(p[0], p[0]); io_set_fds(p[0], p[0]);
int ret = receive_files(cfg, p[0]); int ret = receiver_receive_files(cfg, p[0]);
close(p[0]); close(p[0]);
config_delete(cfg); config_delete(cfg);
_exit(ret == 0 ? 0 : 1); _exit(ret == 0 ? 0 : 1);
@@ -88,7 +84,7 @@ static void test_receive_files_single_file() {
/* Child: use p[0] for both read and write */ /* Child: use p[0] for both read and write */
close(p[1]); close(p[1]);
io_set_fds(p[0], p[0]); io_set_fds(p[0], p[0]);
int ret = receive_files(cfg, p[0]); int ret = receiver_receive_files(cfg, p[0]);
close(p[0]); close(p[0]);
config_delete(cfg); config_delete(cfg);
_exit(ret == 0 ? 0 : 1); _exit(ret == 0 ? 0 : 1);
@@ -149,7 +145,7 @@ static void test_receive_files_abort() {
if (pid == 0) { if (pid == 0) {
close(p[1]); close(p[1]);
io_set_fds(p[0], p[0]); io_set_fds(p[0], p[0]);
int ret = receive_files(cfg, p[0]); int ret = receiver_receive_files(cfg, p[0]);
close(p[0]); close(p[0]);
config_delete(cfg); config_delete(cfg);
/* Should return -1 on abort */ /* Should return -1 on abort */
+6
View File
@@ -32,6 +32,8 @@ static int mpmc_producer_func(void* arg) {
ProducerCtx* ctx = (ProducerCtx*)arg; ProducerCtx* ctx = (ProducerCtx*)arg;
for (int i = 1; i <= ITEMS_PER_PRODUCER; i++) { for (int i = 1; i <= ITEMS_PER_PRODUCER; i++) {
int* val = malloc(sizeof(int)); int* val = malloc(sizeof(int));
if (!val)
return thrd_error;
*val = ctx->producer_id * ITEMS_PER_PRODUCER + i; *val = ctx->producer_id * ITEMS_PER_PRODUCER + i;
queue_enqueue_multithreaded(ctx->q, val, ctx->mutex, ctx->cnd_empty, ctx->cnd_full); queue_enqueue_multithreaded(ctx->q, val, ctx->mutex, ctx->cnd_empty, ctx->cnd_full);
} }
@@ -121,6 +123,8 @@ static int bp_producer_func(void* arg) {
BackpressureCtx* ctx = (BackpressureCtx*)arg; BackpressureCtx* ctx = (BackpressureCtx*)arg;
for (int i = 0; i < 5; i++) { for (int i = 0; i < 5; i++) {
int* val = malloc(sizeof(int)); int* val = malloc(sizeof(int));
if (!val)
return thrd_error;
*val = i + 1; *val = i + 1;
queue_enqueue_multithreaded(ctx->q, val, ctx->mutex, ctx->cnd_empty, ctx->cnd_full); queue_enqueue_multithreaded(ctx->q, val, ctx->mutex, ctx->cnd_empty, ctx->cnd_full);
ctx->items_sent++; ctx->items_sent++;
@@ -194,6 +198,8 @@ static void test_queue_rapid_create_destroy() {
for (int j = 0; j < 3; j++) { for (int j = 0; j < 3; j++) {
int* val = malloc(sizeof(int)); int* val = malloc(sizeof(int));
if (!val)
break;
*val = j; *val = j;
queue_enqueue(q, val); queue_enqueue(q, val);
} }