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505 lines
17 KiB
C
505 lines
17 KiB
C
//
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// SMBBridge.c
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// Yattee
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//
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// C implementation of libsmbclient bridge for directory browsing using context-specific
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// function pointers. This provides complete isolation from other libsmbclient users
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// (e.g., FFmpeg in MPV) by avoiding smbc_set_context() which modifies global state.
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//
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#include "SMBBridge.h"
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#include "libsmbclient_minimal.h"
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#include <stdlib.h>
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#include <string.h>
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#include <errno.h>
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#include <stdio.h>
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#include <pthread.h>
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#include <fcntl.h>
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#include <unistd.h>
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// Context wrapper that bundles SMBCCTX with auth data
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struct SMBContextWrapper {
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SMBCCTX *ctx; // Isolated libsmbclient context
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char workgroup[128];
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char username[128];
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char password[128];
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SMBProtocolVersion version;
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pthread_mutex_t mutex; // Per-context mutex for thread safety
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};
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// Authentication callback for libsmbclient context (called during SMB operations)
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static void auth_fn_with_context(
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SMBCCTX *ctx,
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const char *server, const char *share,
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char *workgroup, int wgmaxlen,
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char *username, int unmaxlen,
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char *password, int pwmaxlen
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) {
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fprintf(stderr, "[SMBBridge] Auth callback invoked for server: %s, share: %s\n",
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server ? server : "(null)", share ? share : "(null)");
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// Get auth data from context's user data
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struct SMBContextWrapper *wrapper = (struct SMBContextWrapper *)smbc_getOptionUserData(ctx);
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if (wrapper) {
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fprintf(stderr, "[SMBBridge] Auth: using workgroup=%s, username=%s, has_password=%s\n",
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wrapper->workgroup,
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wrapper->username[0] ? wrapper->username : "(empty)",
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wrapper->password[0] ? "yes" : "no");
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if (wrapper->workgroup[0]) {
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strncpy(workgroup, wrapper->workgroup, wgmaxlen - 1);
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workgroup[wgmaxlen - 1] = '\0';
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}
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if (wrapper->username[0]) {
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strncpy(username, wrapper->username, unmaxlen - 1);
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username[unmaxlen - 1] = '\0';
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}
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if (wrapper->password[0]) {
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strncpy(password, wrapper->password, pwmaxlen - 1);
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password[pwmaxlen - 1] = '\0';
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}
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} else {
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fprintf(stderr, "[SMBBridge] Auth: WARNING - no wrapper found!\n");
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}
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}
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void* smb_init_context(const char *workgroup,
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const char *username,
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const char *password,
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SMBProtocolVersion version) {
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fprintf(stderr, "[SMBBridge] Creating new isolated SMB context\n");
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// Allocate context wrapper
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struct SMBContextWrapper *wrapper = (struct SMBContextWrapper *)calloc(1, sizeof(struct SMBContextWrapper));
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if (!wrapper) {
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fprintf(stderr, "[SMBBridge] Failed to allocate context wrapper\n");
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return NULL;
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}
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// Initialize mutex for this context
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pthread_mutexattr_t attr;
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pthread_mutexattr_init(&attr);
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pthread_mutexattr_settype(&attr, PTHREAD_MUTEX_RECURSIVE);
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pthread_mutex_init(&wrapper->mutex, &attr);
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pthread_mutexattr_destroy(&attr);
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// Copy credentials
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strncpy(wrapper->workgroup, workgroup ? workgroup : "WORKGROUP", sizeof(wrapper->workgroup) - 1);
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strncpy(wrapper->username, username ? username : "", sizeof(wrapper->username) - 1);
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strncpy(wrapper->password, password ? password : "", sizeof(wrapper->password) - 1);
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wrapper->version = version;
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// Create NEW isolated libsmbclient context
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wrapper->ctx = smbc_new_context();
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if (!wrapper->ctx) {
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fprintf(stderr, "[SMBBridge] Failed to create libsmbclient context\n");
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pthread_mutex_destroy(&wrapper->mutex);
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free(wrapper);
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return NULL;
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}
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// Configure THIS context only (does not affect global state or other contexts)
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smbc_setFunctionAuthDataWithContext(wrapper->ctx, auth_fn_with_context);
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smbc_setOptionUserData(wrapper->ctx, wrapper);
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smbc_setTimeout(wrapper->ctx, 10000); // 10 second timeout
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smbc_setWorkgroup(wrapper->ctx, wrapper->workgroup);
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if (wrapper->username[0]) {
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smbc_setUser(wrapper->ctx, wrapper->username);
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}
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// Set protocol version BEFORE initialization (must be set before smbc_init_context)
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// Note: We set min_proto to allow negotiation, and max_proto to limit the highest version
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if (wrapper->version != SMB_PROTOCOL_AUTO) {
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const char *min_proto = "NT1"; // Allow negotiation from SMB1
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const char *max_proto = NULL;
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switch (wrapper->version) {
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case SMB_PROTOCOL_SMB1:
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max_proto = "NT1";
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min_proto = "NT1"; // Force SMB1 only
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break;
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case SMB_PROTOCOL_SMB2:
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max_proto = "SMB2";
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break;
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case SMB_PROTOCOL_SMB3:
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max_proto = "SMB3";
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break;
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default:
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break;
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}
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if (max_proto) {
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fprintf(stderr, "[SMBBridge] Setting protocol range: %s to %s\n", min_proto, max_proto);
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smbc_bool result = smbc_setOptionProtocols(wrapper->ctx, min_proto, max_proto);
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fprintf(stderr, "[SMBBridge] smbc_setOptionProtocols returned: %d\n", result);
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}
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}
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// Initialize context AFTER all options are set
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if (smbc_init_context(wrapper->ctx) == NULL) {
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fprintf(stderr, "[SMBBridge] Failed to initialize libsmbclient context\n");
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smbc_free_context(wrapper->ctx, 0);
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pthread_mutex_destroy(&wrapper->mutex);
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free(wrapper);
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return NULL;
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}
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fprintf(stderr, "[SMBBridge] Successfully created isolated SMB context (workgroup: %s, user: %s)\n",
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wrapper->workgroup, wrapper->username[0] ? wrapper->username : "(guest)");
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return (void *)wrapper;
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}
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void smb_free_context(void *ctx_ptr) {
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if (!ctx_ptr) return;
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struct SMBContextWrapper *wrapper = (struct SMBContextWrapper *)ctx_ptr;
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fprintf(stderr, "[SMBBridge] Freeing SMB context\n");
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// Lock before cleanup
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pthread_mutex_lock(&wrapper->mutex);
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// Free libsmbclient context
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if (wrapper->ctx) {
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smbc_free_context(wrapper->ctx, 1); // shutdown_ctx = 1
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wrapper->ctx = NULL;
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}
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pthread_mutex_unlock(&wrapper->mutex);
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pthread_mutex_destroy(&wrapper->mutex);
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// Clear sensitive data
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memset(wrapper->password, 0, sizeof(wrapper->password));
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memset(wrapper->username, 0, sizeof(wrapper->username));
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free(wrapper);
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fprintf(stderr, "[SMBBridge] SMB context freed\n");
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}
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SMBFileInfo* smb_list_directory(void *ctx_ptr,
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const char *url,
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int *count,
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char **error) {
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*count = 0;
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*error = NULL;
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if (!ctx_ptr || !url) {
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if (error) {
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*error = strdup("Invalid parameters");
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}
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return NULL;
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}
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struct SMBContextWrapper *wrapper = (struct SMBContextWrapper *)ctx_ptr;
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// Lock THIS context's mutex for thread safety
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pthread_mutex_lock(&wrapper->mutex);
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fprintf(stderr, "[SMBBridge] Listing directory: %s\n", url);
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// Get context-specific function pointers (avoids smbc_set_context which conflicts with MPV/FFmpeg)
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smbc_opendir_fn opendir_fn = smbc_getFunctionOpendir(wrapper->ctx);
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smbc_readdir_fn readdir_fn = smbc_getFunctionReaddir(wrapper->ctx);
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smbc_closedir_fn closedir_fn = smbc_getFunctionClosedir(wrapper->ctx);
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smbc_lseekdir_fn lseekdir_fn = smbc_getFunctionLseekdir(wrapper->ctx);
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smbc_stat_fn stat_fn = smbc_getFunctionStat(wrapper->ctx);
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// Detect if we're listing shares at the server root
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// URL format: "smb://server/" - no path after server
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int is_listing_shares = 0;
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{
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const char *server_start = strstr(url, "://");
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if (server_start) {
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server_start += 3; // Skip "://"
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const char *first_slash = strchr(server_start, '/');
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if (first_slash) {
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const char *path_start = first_slash + 1;
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if (*path_start == '\0' || (*path_start == '/' && *(path_start + 1) == '\0')) {
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is_listing_shares = 1;
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}
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}
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}
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}
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fprintf(stderr, "[SMBBridge] Listing mode: %s\n", is_listing_shares ? "shares" : "files/dirs");
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// Open directory using context-specific function
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errno = 0;
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SMBCFILE *dir = opendir_fn(wrapper->ctx, url);
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int saved_errno = errno;
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if (!dir) {
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fprintf(stderr, "[SMBBridge] Failed to open directory: %s (errno: %d)\n",
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strerror(saved_errno), saved_errno);
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pthread_mutex_unlock(&wrapper->mutex);
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if (error) {
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char err_buf[256];
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snprintf(err_buf, sizeof(err_buf), "Failed to open directory: %s (errno: %d)",
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strerror(saved_errno), saved_errno);
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*error = strdup(err_buf);
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}
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return NULL;
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}
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// First pass: count valid entries
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struct smbc_dirent *dirent;
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int entry_count = 0;
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while ((dirent = readdir_fn(wrapper->ctx, dir)) != NULL) {
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// Skip . and ..
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if (strcmp(dirent->name, ".") == 0 || strcmp(dirent->name, "..") == 0) {
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continue;
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}
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if (is_listing_shares) {
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// When listing shares, only count SMBC_FILE_SHARE (type 3)
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if (dirent->smbc_type == SMBC_FILE_SHARE) {
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entry_count++;
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}
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} else {
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// When listing directory contents, count files and directories
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if (dirent->smbc_type == SMBC_DIR || dirent->smbc_type == SMBC_FILE) {
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entry_count++;
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}
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}
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}
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// Empty directory is valid (not an error)
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if (entry_count == 0) {
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fprintf(stderr, "[SMBBridge] Empty directory\n");
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closedir_fn(wrapper->ctx, dir);
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pthread_mutex_unlock(&wrapper->mutex);
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return NULL;
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}
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fprintf(stderr, "[SMBBridge] Found %d entries\n", entry_count);
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// Allocate result array
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SMBFileInfo *files = (SMBFileInfo *)calloc(entry_count, sizeof(SMBFileInfo));
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if (!files) {
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fprintf(stderr, "[SMBBridge] Out of memory\n");
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if (error) {
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*error = strdup("Out of memory");
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}
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closedir_fn(wrapper->ctx, dir);
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pthread_mutex_unlock(&wrapper->mutex);
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return NULL;
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}
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// Second pass: populate array (seek back to start)
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lseekdir_fn(wrapper->ctx, dir, 0);
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int i = 0;
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while ((dirent = readdir_fn(wrapper->ctx, dir)) != NULL && i < entry_count) {
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// Skip . and ..
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if (strcmp(dirent->name, ".") == 0 || strcmp(dirent->name, "..") == 0) {
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continue;
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}
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// Filter based on listing mode
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int should_include = 0;
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if (is_listing_shares) {
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should_include = (dirent->smbc_type == SMBC_FILE_SHARE);
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} else {
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should_include = (dirent->smbc_type == SMBC_DIR || dirent->smbc_type == SMBC_FILE);
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}
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if (!should_include) {
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continue;
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}
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// Copy name
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files[i].name = strdup(dirent->name);
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files[i].type = dirent->smbc_type;
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// Build full path for stat
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size_t url_len = strlen(url);
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size_t name_len = strlen(dirent->name);
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char *full_path = (char *)malloc(url_len + name_len + 2);
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if (full_path) {
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strcpy(full_path, url);
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if (url[url_len - 1] != '/') {
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strcat(full_path, "/");
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}
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strcat(full_path, dirent->name);
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// Get detailed file info using context-specific function
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struct stat st;
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if (stat_fn(wrapper->ctx, full_path, &st) == 0) {
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files[i].size = st.st_size;
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files[i].mtime = st.st_mtime;
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files[i].ctime = st.st_ctime;
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} else {
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// If stat fails, use defaults
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files[i].size = 0;
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files[i].mtime = 0;
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files[i].ctime = 0;
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}
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free(full_path);
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}
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i++;
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}
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closedir_fn(wrapper->ctx, dir);
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pthread_mutex_unlock(&wrapper->mutex);
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fprintf(stderr, "[SMBBridge] Directory listing complete. Count: %d\n", i);
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*count = i;
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return files;
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}
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void smb_free_file_list(SMBFileInfo *files, int count) {
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if (!files) return;
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for (int i = 0; i < count; i++) {
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if (files[i].name) {
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free(files[i].name);
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}
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}
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free(files);
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}
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int smb_test_connection(void *ctx_ptr, const char *url) {
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if (!ctx_ptr || !url) {
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return -EINVAL;
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}
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struct SMBContextWrapper *wrapper = (struct SMBContextWrapper *)ctx_ptr;
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// Lock context mutex
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pthread_mutex_lock(&wrapper->mutex);
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fprintf(stderr, "[SMBBridge] Testing connection to: %s\n", url);
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// Get context-specific function pointers (avoids smbc_set_context which conflicts with MPV/FFmpeg)
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smbc_opendir_fn opendir_fn = smbc_getFunctionOpendir(wrapper->ctx);
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smbc_closedir_fn closedir_fn = smbc_getFunctionClosedir(wrapper->ctx);
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// Try to open directory using context-specific function
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errno = 0;
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SMBCFILE *dir = opendir_fn(wrapper->ctx, url);
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int saved_errno = errno;
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if (!dir) {
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fprintf(stderr, "[SMBBridge] Connection test failed: %s (errno: %d)\n",
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strerror(saved_errno), saved_errno);
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pthread_mutex_unlock(&wrapper->mutex);
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return -saved_errno;
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}
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closedir_fn(wrapper->ctx, dir);
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pthread_mutex_unlock(&wrapper->mutex);
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fprintf(stderr, "[SMBBridge] Connection test succeeded\n");
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return 0;
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}
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int smb_download_file(void *ctx_ptr, const char *url, const char *local_path, char **error) {
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*error = NULL;
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if (!ctx_ptr || !url || !local_path) {
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if (error) {
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*error = strdup("Invalid parameters");
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}
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return -EINVAL;
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}
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struct SMBContextWrapper *wrapper = (struct SMBContextWrapper *)ctx_ptr;
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// Lock context mutex
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pthread_mutex_lock(&wrapper->mutex);
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fprintf(stderr, "[SMBBridge] Downloading file: %s -> %s\n", url, local_path);
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// Get context-specific function pointers (avoids smbc_set_context which conflicts with MPV/FFmpeg)
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smbc_open_fn open_fn = smbc_getFunctionOpen(wrapper->ctx);
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smbc_read_fn read_fn = smbc_getFunctionRead(wrapper->ctx);
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smbc_close_fn close_fn = smbc_getFunctionClose(wrapper->ctx);
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// Open remote file for reading using context-specific function
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errno = 0;
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SMBCFILE *file = open_fn(wrapper->ctx, url, O_RDONLY, 0);
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int saved_errno = errno;
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if (!file) {
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fprintf(stderr, "[SMBBridge] Failed to open SMB file: %s (errno: %d)\n",
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strerror(saved_errno), saved_errno);
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pthread_mutex_unlock(&wrapper->mutex);
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if (error) {
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char buf[256];
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snprintf(buf, sizeof(buf), "Failed to open SMB file: %s (errno: %d)",
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strerror(saved_errno), saved_errno);
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*error = strdup(buf);
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}
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return -saved_errno;
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}
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// Open local file for writing
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FILE *local_file = fopen(local_path, "wb");
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if (!local_file) {
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int local_errno = errno;
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fprintf(stderr, "[SMBBridge] Failed to create local file: %s (errno: %d)\n",
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strerror(local_errno), local_errno);
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close_fn(wrapper->ctx, file);
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pthread_mutex_unlock(&wrapper->mutex);
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if (error) {
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char buf[256];
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snprintf(buf, sizeof(buf), "Failed to create local file: %s (errno: %d)",
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strerror(local_errno), local_errno);
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*error = strdup(buf);
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}
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return -local_errno;
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}
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// Read from SMB and write to local file
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char buffer[8192];
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ssize_t bytes_read;
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size_t total_bytes = 0;
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while ((bytes_read = read_fn(wrapper->ctx, file, buffer, sizeof(buffer))) > 0) {
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size_t bytes_written = fwrite(buffer, 1, bytes_read, local_file);
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if (bytes_written != (size_t)bytes_read) {
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// Write error
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int local_errno = errno;
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fprintf(stderr, "[SMBBridge] Failed to write to local file (errno: %d)\n", local_errno);
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fclose(local_file);
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close_fn(wrapper->ctx, file);
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pthread_mutex_unlock(&wrapper->mutex);
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unlink(local_path); // Clean up partial file
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if (error) {
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*error = strdup("Failed to write to local file");
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}
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return -local_errno;
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}
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total_bytes += bytes_written;
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}
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// Check for read errors
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if (bytes_read < 0) {
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int read_errno = errno;
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fprintf(stderr, "[SMBBridge] Failed to read from SMB: %s\n", strerror(read_errno));
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fclose(local_file);
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close_fn(wrapper->ctx, file);
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pthread_mutex_unlock(&wrapper->mutex);
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unlink(local_path); // Clean up partial file
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if (error) {
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char buf[256];
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snprintf(buf, sizeof(buf), "Failed to read from SMB: %s", strerror(read_errno));
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*error = strdup(buf);
|
|
}
|
|
return -read_errno;
|
|
}
|
|
|
|
// Clean up
|
|
fclose(local_file);
|
|
close_fn(wrapper->ctx, file);
|
|
pthread_mutex_unlock(&wrapper->mutex);
|
|
|
|
fprintf(stderr, "[SMBBridge] Download complete: %zu bytes\n", total_bytes);
|
|
return 0;
|
|
}
|