Revert "Merge pull request 'Fix logic/correctness bugs (#73, #68, #67, #66, #59, #58, #54, #48, #53)' (#82) from fix/logic-correctness into main"
This reverts commit28d076fc28, reversing changes made todf0f52ce39.
This commit is contained in:
@@ -9,18 +9,6 @@
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Data* data_compress(Data* data_to_compress, int compression_level) {
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log_message(LOG_LEVEL_DEBUG, "Starting to compress data");
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/* Clamp compression level to valid zstd range [1, 22] */
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if (compression_level < 1) {
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log_message(LOG_LEVEL_WARNING, "compression_level %d out of range [1,22], using 1",
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compression_level);
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compression_level = 1;
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} else if (compression_level > 22) {
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log_message(LOG_LEVEL_WARNING, "compression_level %d out of range [1,22], using 22",
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compression_level);
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compression_level = 22;
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}
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size_t dst_size = ZSTD_compressBound(data_to_compress->size);
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Data* compressed_data = data_create_empty(dst_size);
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if (compressed_data == NULL)
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+42
-43
@@ -155,43 +155,6 @@ static void* old_data_from_path(const char* full_path, unsigned long long old_si
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return data;
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}
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/**
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* Helper: receive data from wire, optionally decompress, and store in file.
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* On success, returns the received Data* (caller owns it). On failure, returns NULL.
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* If `file_data` is received via receive_data(fd), this function handles decompression
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* when config->use_compression is set.
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*/
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static Data* receive_and_decompress(int fd, const Config* config) {
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Data* file_data = receive_data(fd);
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if (file_data == NULL)
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return NULL;
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if (config->use_compression) {
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Data* uncompressed = data_decompress(file_data);
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data_destroy(file_data);
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if (uncompressed == NULL)
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return NULL;
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file_data = uncompressed;
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}
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return file_data;
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}
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/**
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* Helper: receive metadata from wire and assign to file.
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* Returns true on success (metadata may be NULL if absent), false on I/O error.
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*/
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static bool receive_and_assign_metadata(int fd, const Config* config, File* file) {
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if (!config->use_metadata)
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return true;
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int meta_ok = 1;
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file->metadata = metadata_receive(fd, &meta_ok);
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if (!meta_ok) {
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file_destroy(file);
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send_status(fd, STATUS_ERROR);
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return false;
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}
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return true;
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}
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static File* receive_delta_file(int fd, const Config* config, const char* check_path,
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void* old_data, unsigned long long old_size) {
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if (!old_data)
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@@ -307,16 +270,34 @@ static File* receive_delta_file(int fd, const Config* config, const char* check_
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return NULL;
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}
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if (!receive_and_assign_metadata(fd, config, file))
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return NULL;
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if (config->use_metadata) {
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int meta_ok = 1;
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file->metadata = metadata_receive(fd, &meta_ok);
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if (!meta_ok) {
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file_destroy(file);
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send_status(fd, STATUS_ERROR);
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return NULL;
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}
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}
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Data* file_data = receive_and_decompress(fd, config);
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Data* file_data = receive_data(fd);
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if (file_data == NULL) {
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file_destroy(file);
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send_status(fd, STATUS_ERROR);
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return NULL;
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}
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if (config->use_compression) {
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Data* uncompressed = data_decompress(file_data);
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data_destroy(file_data);
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if (uncompressed == NULL) {
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file_destroy(file);
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send_status(fd, STATUS_ERROR);
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return NULL;
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}
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file_data = uncompressed;
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}
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data_destroy(file->data);
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file->data = file_data;
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return file;
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@@ -394,16 +375,34 @@ File* receive_incremental_check(int fd, const Config* config, bool* skipped) {
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return NULL;
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}
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if (!receive_and_assign_metadata(fd, config, file))
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return NULL;
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if (config->use_metadata) {
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int meta_ok = 1;
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file->metadata = metadata_receive(fd, &meta_ok);
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if (!meta_ok) {
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file_destroy(file);
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send_status(fd, STATUS_ERROR);
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return NULL;
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}
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}
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Data* file_data = receive_and_decompress(fd, config);
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Data* file_data = receive_data(fd);
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if (file_data == NULL) {
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file_destroy(file);
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send_status(fd, STATUS_ERROR);
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return NULL;
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}
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if (config->use_compression) {
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Data* uncompressed = data_decompress(file_data);
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data_destroy(file_data);
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if (uncompressed == NULL) {
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file_destroy(file);
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send_status(fd, STATUS_ERROR);
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return NULL;
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}
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file_data = uncompressed;
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}
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data_destroy(file->data);
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file->data = file_data;
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return file;
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+1
-1
@@ -10,7 +10,7 @@ void set_log_level(LogLevel level) {
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current_log_level = level;
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}
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void log_message(LogLevel log_level, const char* format, ...) {
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void log_message(LogLevel log_level, char* format, ...) {
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if (log_level < current_log_level)
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return;
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time_t now = time(NULL);
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+1
-1
@@ -3,7 +3,7 @@
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typedef enum { LOG_LEVEL_DEBUG, LOG_LEVEL_INFO, LOG_LEVEL_WARNING, LOG_LEVEL_ERROR } LogLevel;
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void log_message(LogLevel log_level, const char* message, ...);
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void log_message(LogLevel log_level, char* message, ...);
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void set_log_level(LogLevel level);
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#endif
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+4
-20
@@ -1,7 +1,6 @@
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#include "protocol.h"
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#include "log.h"
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#include <errno.h>
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#include <openssl/err.h>
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#include <openssl/ssl.h>
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#include <stdio.h>
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#include <stdlib.h>
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@@ -35,14 +34,11 @@ static void bw_throttle(size_t bytes_written) {
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struct timespec now;
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clock_gettime(CLOCK_MONOTONIC, &now);
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/* Use unsigned long long for elapsed_ns to avoid overflow in multiplication.
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* time_t differences fit comfortably in 64-bit for any practical runtime. */
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unsigned long long elapsed_ns =
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(unsigned long long)(now.tv_sec - bw_last_refill.tv_sec) * 1000000000ULL +
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(unsigned long long)(now.tv_nsec - bw_last_refill.tv_nsec);
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long long elapsed_ns =
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(now.tv_sec - bw_last_refill.tv_sec) * 1000000000LL + (now.tv_nsec - bw_last_refill.tv_nsec);
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bw_last_refill = now;
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long long tokens_to_add = (long long)((double)io_bwlimit * (double)elapsed_ns / 1000000000.0);
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long long tokens_to_add = (long long)((double)io_bwlimit * elapsed_ns / 1000000000.0);
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bw_tokens += tokens_to_add;
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if (bw_tokens > (long long)io_bwlimit)
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bw_tokens = (long long)io_bwlimit;
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@@ -50,9 +46,7 @@ static void bw_throttle(size_t bytes_written) {
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bw_tokens -= (long long)bytes_written;
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if (bw_tokens < 0) {
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long long deficit_ns = (long long)((double)(-bw_tokens) / (double)io_bwlimit * 1000000000.0);
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if (deficit_ns < 0)
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deficit_ns = 0;
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long long deficit_ns = (long long)((double)(-bw_tokens) / io_bwlimit * 1000000000.0);
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struct timespec sleep_time, remaining;
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sleep_time.tv_sec = deficit_ns / 1000000000LL;
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sleep_time.tv_nsec = deficit_ns % 1000000000LL;
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@@ -85,11 +79,6 @@ bool send_n_data(int file_descriptor, const void* data, size_t data_size) {
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else
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bytes_send = write(fd, (const char*)data + total_bytes_send, chunk);
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if (bytes_send <= 0) {
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if (io_ssl) {
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int ssl_err = SSL_get_error(io_ssl, (int)bytes_send);
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if (ssl_err == SSL_ERROR_WANT_WRITE || ssl_err == SSL_ERROR_WANT_READ)
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continue;
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}
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log_message(LOG_LEVEL_ERROR, "Could not send data");
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return false;
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}
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@@ -113,11 +102,6 @@ bool receive_n_data(int file_descriptor, void* data, size_t data_size) {
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bytes_received =
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read(fd, (char*)data + total_bytes_received, data_size - total_bytes_received);
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if (bytes_received <= 0) {
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if (io_ssl) {
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int ssl_err = SSL_get_error(io_ssl, (int)bytes_received);
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if (ssl_err == SSL_ERROR_WANT_READ || ssl_err == SSL_ERROR_WANT_WRITE)
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continue;
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}
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if (bytes_received == 0)
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log_message(LOG_LEVEL_ERROR, "Connection closed while receiving data");
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else
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+1
-27
@@ -70,23 +70,6 @@ char* str_dup(const char* string) {
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bool glob_match(const char* pattern, const char* str) {
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while (*pattern) {
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if (*pattern == '*') {
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/* Check for double-star (globstar) pattern */
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if (*(pattern + 1) == '*') {
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pattern += 2;
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/* Trailing double-star matches everything */
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if (*pattern == '\0')
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return true;
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/* double-star slash: match at any depth */
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if (*pattern == '/')
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pattern++;
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while (*str) {
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if (glob_match(pattern, str))
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return true;
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str++;
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}
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return glob_match(pattern, str);
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}
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/* Single * — does not cross / boundaries */
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pattern++;
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while (*str && *str != '/') {
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if (glob_match(pattern, str))
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@@ -100,17 +83,8 @@ bool glob_match(const char* pattern, const char* str) {
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pattern++;
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str++;
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} else {
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if (*pattern != *str) {
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/* If pattern has a '/' followed by '**', allow zero path components */
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if (*pattern == '/' && *(pattern + 1) == '*' && *(pattern + 2) == '*') {
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/* Skip over slash-double-star and try to match rest against current str */
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const char* rest = pattern + 3;
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if (*rest == '/')
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rest++;
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return glob_match(rest, str);
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}
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if (*pattern != *str)
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return false;
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}
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pattern++;
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str++;
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}
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