zlib: initialize git_zstream in git_deflate_init{,_gzip,_raw}
[git] / http-push.c
1 #include "cache.h"
2 #include "commit.h"
3 #include "tag.h"
4 #include "blob.h"
5 #include "http.h"
6 #include "refs.h"
7 #include "diff.h"
8 #include "revision.h"
9 #include "exec_cmd.h"
10 #include "remote.h"
11 #include "list-objects.h"
12 #include "sigchain.h"
13
14 #ifdef EXPAT_NEEDS_XMLPARSE_H
15 #include <xmlparse.h>
16 #else
17 #include <expat.h>
18 #endif
19
20 static const char http_push_usage[] =
21 "git http-push [--all] [--dry-run] [--force] [--verbose] <remote> [<head>...]\n";
22
23 #ifndef XML_STATUS_OK
24 enum XML_Status {
25   XML_STATUS_OK = 1,
26   XML_STATUS_ERROR = 0
27 };
28 #define XML_STATUS_OK    1
29 #define XML_STATUS_ERROR 0
30 #endif
31
32 #define PREV_BUF_SIZE 4096
33
34 /* DAV methods */
35 #define DAV_LOCK "LOCK"
36 #define DAV_MKCOL "MKCOL"
37 #define DAV_MOVE "MOVE"
38 #define DAV_PROPFIND "PROPFIND"
39 #define DAV_PUT "PUT"
40 #define DAV_UNLOCK "UNLOCK"
41 #define DAV_DELETE "DELETE"
42
43 /* DAV lock flags */
44 #define DAV_PROP_LOCKWR (1u << 0)
45 #define DAV_PROP_LOCKEX (1u << 1)
46 #define DAV_LOCK_OK (1u << 2)
47
48 /* DAV XML properties */
49 #define DAV_CTX_LOCKENTRY ".multistatus.response.propstat.prop.supportedlock.lockentry"
50 #define DAV_CTX_LOCKTYPE_WRITE ".multistatus.response.propstat.prop.supportedlock.lockentry.locktype.write"
51 #define DAV_CTX_LOCKTYPE_EXCLUSIVE ".multistatus.response.propstat.prop.supportedlock.lockentry.lockscope.exclusive"
52 #define DAV_ACTIVELOCK_OWNER ".prop.lockdiscovery.activelock.owner.href"
53 #define DAV_ACTIVELOCK_TIMEOUT ".prop.lockdiscovery.activelock.timeout"
54 #define DAV_ACTIVELOCK_TOKEN ".prop.lockdiscovery.activelock.locktoken.href"
55 #define DAV_PROPFIND_RESP ".multistatus.response"
56 #define DAV_PROPFIND_NAME ".multistatus.response.href"
57 #define DAV_PROPFIND_COLLECTION ".multistatus.response.propstat.prop.resourcetype.collection"
58
59 /* DAV request body templates */
60 #define PROPFIND_SUPPORTEDLOCK_REQUEST "<?xml version=\"1.0\" encoding=\"utf-8\" ?>\n<D:propfind xmlns:D=\"DAV:\">\n<D:prop xmlns:R=\"%s\">\n<D:supportedlock/>\n</D:prop>\n</D:propfind>"
61 #define PROPFIND_ALL_REQUEST "<?xml version=\"1.0\" encoding=\"utf-8\" ?>\n<D:propfind xmlns:D=\"DAV:\">\n<D:allprop/>\n</D:propfind>"
62 #define LOCK_REQUEST "<?xml version=\"1.0\" encoding=\"utf-8\" ?>\n<D:lockinfo xmlns:D=\"DAV:\">\n<D:lockscope><D:exclusive/></D:lockscope>\n<D:locktype><D:write/></D:locktype>\n<D:owner>\n<D:href>mailto:%s</D:href>\n</D:owner>\n</D:lockinfo>"
63
64 #define LOCK_TIME 600
65 #define LOCK_REFRESH 30
66
67 /* Remember to update object flag allocation in object.h */
68 #define LOCAL    (1u<<16)
69 #define REMOTE   (1u<<17)
70 #define FETCHING (1u<<18)
71 #define PUSHING  (1u<<19)
72
73 /* We allow "recursive" symbolic refs. Only within reason, though */
74 #define MAXDEPTH 5
75
76 static int pushing;
77 static int aborted;
78 static signed char remote_dir_exists[256];
79
80 static int push_verbosely;
81 static int push_all = MATCH_REFS_NONE;
82 static int force_all;
83 static int dry_run;
84 static int helper_status;
85
86 static struct object_list *objects;
87
88 struct repo {
89         char *url;
90         char *path;
91         int path_len;
92         int has_info_refs;
93         int can_update_info_refs;
94         int has_info_packs;
95         struct packed_git *packs;
96         struct remote_lock *locks;
97 };
98
99 static struct repo *repo;
100
101 enum transfer_state {
102         NEED_FETCH,
103         RUN_FETCH_LOOSE,
104         RUN_FETCH_PACKED,
105         NEED_PUSH,
106         RUN_MKCOL,
107         RUN_PUT,
108         RUN_MOVE,
109         ABORTED,
110         COMPLETE
111 };
112
113 struct transfer_request {
114         struct object *obj;
115         char *url;
116         char *dest;
117         struct remote_lock *lock;
118         struct curl_slist *headers;
119         struct buffer buffer;
120         enum transfer_state state;
121         CURLcode curl_result;
122         char errorstr[CURL_ERROR_SIZE];
123         long http_code;
124         void *userData;
125         struct active_request_slot *slot;
126         struct transfer_request *next;
127 };
128
129 static struct transfer_request *request_queue_head;
130
131 struct xml_ctx {
132         char *name;
133         int len;
134         char *cdata;
135         void (*userFunc)(struct xml_ctx *ctx, int tag_closed);
136         void *userData;
137 };
138
139 struct remote_lock {
140         char *url;
141         char *owner;
142         char *token;
143         char tmpfile_suffix[41];
144         time_t start_time;
145         long timeout;
146         int refreshing;
147         struct remote_lock *next;
148 };
149
150 /* Flags that control remote_ls processing */
151 #define PROCESS_FILES (1u << 0)
152 #define PROCESS_DIRS  (1u << 1)
153 #define RECURSIVE     (1u << 2)
154
155 /* Flags that remote_ls passes to callback functions */
156 #define IS_DIR (1u << 0)
157
158 struct remote_ls_ctx {
159         char *path;
160         void (*userFunc)(struct remote_ls_ctx *ls);
161         void *userData;
162         int flags;
163         char *dentry_name;
164         int dentry_flags;
165         struct remote_ls_ctx *parent;
166 };
167
168 /* get_dav_token_headers options */
169 enum dav_header_flag {
170         DAV_HEADER_IF = (1u << 0),
171         DAV_HEADER_LOCK = (1u << 1),
172         DAV_HEADER_TIMEOUT = (1u << 2)
173 };
174
175 static char *xml_entities(const char *s)
176 {
177         struct strbuf buf = STRBUF_INIT;
178         strbuf_addstr_xml_quoted(&buf, s);
179         return strbuf_detach(&buf, NULL);
180 }
181
182 static void curl_setup_http_get(CURL *curl, const char *url,
183                 const char *custom_req)
184 {
185         curl_easy_setopt(curl, CURLOPT_HTTPGET, 1);
186         curl_easy_setopt(curl, CURLOPT_URL, url);
187         curl_easy_setopt(curl, CURLOPT_CUSTOMREQUEST, custom_req);
188         curl_easy_setopt(curl, CURLOPT_WRITEFUNCTION, fwrite_null);
189 }
190
191 static void curl_setup_http(CURL *curl, const char *url,
192                 const char *custom_req, struct buffer *buffer,
193                 curl_write_callback write_fn)
194 {
195         curl_easy_setopt(curl, CURLOPT_PUT, 1);
196         curl_easy_setopt(curl, CURLOPT_URL, url);
197         curl_easy_setopt(curl, CURLOPT_INFILE, buffer);
198         curl_easy_setopt(curl, CURLOPT_INFILESIZE, buffer->buf.len);
199         curl_easy_setopt(curl, CURLOPT_READFUNCTION, fread_buffer);
200 #ifndef NO_CURL_IOCTL
201         curl_easy_setopt(curl, CURLOPT_IOCTLFUNCTION, ioctl_buffer);
202         curl_easy_setopt(curl, CURLOPT_IOCTLDATA, buffer);
203 #endif
204         curl_easy_setopt(curl, CURLOPT_WRITEFUNCTION, write_fn);
205         curl_easy_setopt(curl, CURLOPT_NOBODY, 0);
206         curl_easy_setopt(curl, CURLOPT_CUSTOMREQUEST, custom_req);
207         curl_easy_setopt(curl, CURLOPT_UPLOAD, 1);
208 }
209
210 static struct curl_slist *get_dav_token_headers(struct remote_lock *lock, enum dav_header_flag options)
211 {
212         struct strbuf buf = STRBUF_INIT;
213         struct curl_slist *dav_headers = NULL;
214
215         if (options & DAV_HEADER_IF) {
216                 strbuf_addf(&buf, "If: (<%s>)", lock->token);
217                 dav_headers = curl_slist_append(dav_headers, buf.buf);
218                 strbuf_reset(&buf);
219         }
220         if (options & DAV_HEADER_LOCK) {
221                 strbuf_addf(&buf, "Lock-Token: <%s>", lock->token);
222                 dav_headers = curl_slist_append(dav_headers, buf.buf);
223                 strbuf_reset(&buf);
224         }
225         if (options & DAV_HEADER_TIMEOUT) {
226                 strbuf_addf(&buf, "Timeout: Second-%ld", lock->timeout);
227                 dav_headers = curl_slist_append(dav_headers, buf.buf);
228                 strbuf_reset(&buf);
229         }
230         strbuf_release(&buf);
231
232         return dav_headers;
233 }
234
235 static void finish_request(struct transfer_request *request);
236 static void release_request(struct transfer_request *request);
237
238 static void process_response(void *callback_data)
239 {
240         struct transfer_request *request =
241                 (struct transfer_request *)callback_data;
242
243         finish_request(request);
244 }
245
246 #ifdef USE_CURL_MULTI
247
248 static void start_fetch_loose(struct transfer_request *request)
249 {
250         struct active_request_slot *slot;
251         struct http_object_request *obj_req;
252
253         obj_req = new_http_object_request(repo->url, request->obj->sha1);
254         if (obj_req == NULL) {
255                 request->state = ABORTED;
256                 return;
257         }
258
259         slot = obj_req->slot;
260         slot->callback_func = process_response;
261         slot->callback_data = request;
262         request->slot = slot;
263         request->userData = obj_req;
264
265         /* Try to get the request started, abort the request on error */
266         request->state = RUN_FETCH_LOOSE;
267         if (!start_active_slot(slot)) {
268                 fprintf(stderr, "Unable to start GET request\n");
269                 repo->can_update_info_refs = 0;
270                 release_http_object_request(obj_req);
271                 release_request(request);
272         }
273 }
274
275 static void start_mkcol(struct transfer_request *request)
276 {
277         char *hex = sha1_to_hex(request->obj->sha1);
278         struct active_request_slot *slot;
279
280         request->url = get_remote_object_url(repo->url, hex, 1);
281
282         slot = get_active_slot();
283         slot->callback_func = process_response;
284         slot->callback_data = request;
285         curl_setup_http_get(slot->curl, request->url, DAV_MKCOL);
286         curl_easy_setopt(slot->curl, CURLOPT_ERRORBUFFER, request->errorstr);
287
288         if (start_active_slot(slot)) {
289                 request->slot = slot;
290                 request->state = RUN_MKCOL;
291         } else {
292                 request->state = ABORTED;
293                 free(request->url);
294                 request->url = NULL;
295         }
296 }
297 #endif
298
299 static void start_fetch_packed(struct transfer_request *request)
300 {
301         struct packed_git *target;
302
303         struct transfer_request *check_request = request_queue_head;
304         struct http_pack_request *preq;
305
306         target = find_sha1_pack(request->obj->sha1, repo->packs);
307         if (!target) {
308                 fprintf(stderr, "Unable to fetch %s, will not be able to update server info refs\n", sha1_to_hex(request->obj->sha1));
309                 repo->can_update_info_refs = 0;
310                 release_request(request);
311                 return;
312         }
313
314         fprintf(stderr, "Fetching pack %s\n", sha1_to_hex(target->sha1));
315         fprintf(stderr, " which contains %s\n", sha1_to_hex(request->obj->sha1));
316
317         preq = new_http_pack_request(target, repo->url);
318         if (preq == NULL) {
319                 release_http_pack_request(preq);
320                 repo->can_update_info_refs = 0;
321                 return;
322         }
323         preq->lst = &repo->packs;
324
325         /* Make sure there isn't another open request for this pack */
326         while (check_request) {
327                 if (check_request->state == RUN_FETCH_PACKED &&
328                     !strcmp(check_request->url, preq->url)) {
329                         release_http_pack_request(preq);
330                         release_request(request);
331                         return;
332                 }
333                 check_request = check_request->next;
334         }
335
336         preq->slot->callback_func = process_response;
337         preq->slot->callback_data = request;
338         request->slot = preq->slot;
339         request->userData = preq;
340
341         /* Try to get the request started, abort the request on error */
342         request->state = RUN_FETCH_PACKED;
343         if (!start_active_slot(preq->slot)) {
344                 fprintf(stderr, "Unable to start GET request\n");
345                 release_http_pack_request(preq);
346                 repo->can_update_info_refs = 0;
347                 release_request(request);
348         }
349 }
350
351 static void start_put(struct transfer_request *request)
352 {
353         char *hex = sha1_to_hex(request->obj->sha1);
354         struct active_request_slot *slot;
355         struct strbuf buf = STRBUF_INIT;
356         enum object_type type;
357         char hdr[50];
358         void *unpacked;
359         unsigned long len;
360         int hdrlen;
361         ssize_t size;
362         git_zstream stream;
363
364         unpacked = read_sha1_file(request->obj->sha1, &type, &len);
365         hdrlen = sprintf(hdr, "%s %lu", typename(type), len) + 1;
366
367         /* Set it up */
368         git_deflate_init(&stream, zlib_compression_level);
369         size = git_deflate_bound(&stream, len + hdrlen);
370         strbuf_init(&request->buffer.buf, size);
371         request->buffer.posn = 0;
372
373         /* Compress it */
374         stream.next_out = (unsigned char *)request->buffer.buf.buf;
375         stream.avail_out = size;
376
377         /* First header.. */
378         stream.next_in = (void *)hdr;
379         stream.avail_in = hdrlen;
380         while (git_deflate(&stream, 0) == Z_OK)
381                 ; /* nothing */
382
383         /* Then the data itself.. */
384         stream.next_in = unpacked;
385         stream.avail_in = len;
386         while (git_deflate(&stream, Z_FINISH) == Z_OK)
387                 ; /* nothing */
388         git_deflate_end(&stream);
389         free(unpacked);
390
391         request->buffer.buf.len = stream.total_out;
392
393         strbuf_addstr(&buf, "Destination: ");
394         append_remote_object_url(&buf, repo->url, hex, 0);
395         request->dest = strbuf_detach(&buf, NULL);
396
397         append_remote_object_url(&buf, repo->url, hex, 0);
398         strbuf_add(&buf, request->lock->tmpfile_suffix, 41);
399         request->url = strbuf_detach(&buf, NULL);
400
401         slot = get_active_slot();
402         slot->callback_func = process_response;
403         slot->callback_data = request;
404         curl_setup_http(slot->curl, request->url, DAV_PUT,
405                         &request->buffer, fwrite_null);
406
407         if (start_active_slot(slot)) {
408                 request->slot = slot;
409                 request->state = RUN_PUT;
410         } else {
411                 request->state = ABORTED;
412                 free(request->url);
413                 request->url = NULL;
414         }
415 }
416
417 static void start_move(struct transfer_request *request)
418 {
419         struct active_request_slot *slot;
420         struct curl_slist *dav_headers = NULL;
421
422         slot = get_active_slot();
423         slot->callback_func = process_response;
424         slot->callback_data = request;
425         curl_setup_http_get(slot->curl, request->url, DAV_MOVE);
426         dav_headers = curl_slist_append(dav_headers, request->dest);
427         dav_headers = curl_slist_append(dav_headers, "Overwrite: T");
428         curl_easy_setopt(slot->curl, CURLOPT_HTTPHEADER, dav_headers);
429
430         if (start_active_slot(slot)) {
431                 request->slot = slot;
432                 request->state = RUN_MOVE;
433         } else {
434                 request->state = ABORTED;
435                 free(request->url);
436                 request->url = NULL;
437         }
438 }
439
440 static int refresh_lock(struct remote_lock *lock)
441 {
442         struct active_request_slot *slot;
443         struct slot_results results;
444         struct curl_slist *dav_headers;
445         int rc = 0;
446
447         lock->refreshing = 1;
448
449         dav_headers = get_dav_token_headers(lock, DAV_HEADER_IF | DAV_HEADER_TIMEOUT);
450
451         slot = get_active_slot();
452         slot->results = &results;
453         curl_setup_http_get(slot->curl, lock->url, DAV_LOCK);
454         curl_easy_setopt(slot->curl, CURLOPT_HTTPHEADER, dav_headers);
455
456         if (start_active_slot(slot)) {
457                 run_active_slot(slot);
458                 if (results.curl_result != CURLE_OK) {
459                         fprintf(stderr, "LOCK HTTP error %ld\n",
460                                 results.http_code);
461                 } else {
462                         lock->start_time = time(NULL);
463                         rc = 1;
464                 }
465         }
466
467         lock->refreshing = 0;
468         curl_slist_free_all(dav_headers);
469
470         return rc;
471 }
472
473 static void check_locks(void)
474 {
475         struct remote_lock *lock = repo->locks;
476         time_t current_time = time(NULL);
477         int time_remaining;
478
479         while (lock) {
480                 time_remaining = lock->start_time + lock->timeout -
481                         current_time;
482                 if (!lock->refreshing && time_remaining < LOCK_REFRESH) {
483                         if (!refresh_lock(lock)) {
484                                 fprintf(stderr,
485                                         "Unable to refresh lock for %s\n",
486                                         lock->url);
487                                 aborted = 1;
488                                 return;
489                         }
490                 }
491                 lock = lock->next;
492         }
493 }
494
495 static void release_request(struct transfer_request *request)
496 {
497         struct transfer_request *entry = request_queue_head;
498
499         if (request == request_queue_head) {
500                 request_queue_head = request->next;
501         } else {
502                 while (entry->next != NULL && entry->next != request)
503                         entry = entry->next;
504                 if (entry->next == request)
505                         entry->next = entry->next->next;
506         }
507
508         free(request->url);
509         free(request);
510 }
511
512 static void finish_request(struct transfer_request *request)
513 {
514         struct http_pack_request *preq;
515         struct http_object_request *obj_req;
516
517         request->curl_result = request->slot->curl_result;
518         request->http_code = request->slot->http_code;
519         request->slot = NULL;
520
521         /* Keep locks active */
522         check_locks();
523
524         if (request->headers != NULL)
525                 curl_slist_free_all(request->headers);
526
527         /* URL is reused for MOVE after PUT */
528         if (request->state != RUN_PUT) {
529                 free(request->url);
530                 request->url = NULL;
531         }
532
533         if (request->state == RUN_MKCOL) {
534                 if (request->curl_result == CURLE_OK ||
535                     request->http_code == 405) {
536                         remote_dir_exists[request->obj->sha1[0]] = 1;
537                         start_put(request);
538                 } else {
539                         fprintf(stderr, "MKCOL %s failed, aborting (%d/%ld)\n",
540                                 sha1_to_hex(request->obj->sha1),
541                                 request->curl_result, request->http_code);
542                         request->state = ABORTED;
543                         aborted = 1;
544                 }
545         } else if (request->state == RUN_PUT) {
546                 if (request->curl_result == CURLE_OK) {
547                         start_move(request);
548                 } else {
549                         fprintf(stderr, "PUT %s failed, aborting (%d/%ld)\n",
550                                 sha1_to_hex(request->obj->sha1),
551                                 request->curl_result, request->http_code);
552                         request->state = ABORTED;
553                         aborted = 1;
554                 }
555         } else if (request->state == RUN_MOVE) {
556                 if (request->curl_result == CURLE_OK) {
557                         if (push_verbosely)
558                                 fprintf(stderr, "    sent %s\n",
559                                         sha1_to_hex(request->obj->sha1));
560                         request->obj->flags |= REMOTE;
561                         release_request(request);
562                 } else {
563                         fprintf(stderr, "MOVE %s failed, aborting (%d/%ld)\n",
564                                 sha1_to_hex(request->obj->sha1),
565                                 request->curl_result, request->http_code);
566                         request->state = ABORTED;
567                         aborted = 1;
568                 }
569         } else if (request->state == RUN_FETCH_LOOSE) {
570                 obj_req = (struct http_object_request *)request->userData;
571
572                 if (finish_http_object_request(obj_req) == 0)
573                         if (obj_req->rename == 0)
574                                 request->obj->flags |= (LOCAL | REMOTE);
575
576                 /* Try fetching packed if necessary */
577                 if (request->obj->flags & LOCAL) {
578                         release_http_object_request(obj_req);
579                         release_request(request);
580                 } else
581                         start_fetch_packed(request);
582
583         } else if (request->state == RUN_FETCH_PACKED) {
584                 int fail = 1;
585                 if (request->curl_result != CURLE_OK) {
586                         fprintf(stderr, "Unable to get pack file %s\n%s",
587                                 request->url, curl_errorstr);
588                 } else {
589                         preq = (struct http_pack_request *)request->userData;
590
591                         if (preq) {
592                                 if (finish_http_pack_request(preq) == 0)
593                                         fail = 0;
594                                 release_http_pack_request(preq);
595                         }
596                 }
597                 if (fail)
598                         repo->can_update_info_refs = 0;
599                 release_request(request);
600         }
601 }
602
603 #ifdef USE_CURL_MULTI
604 static int is_running_queue;
605 static int fill_active_slot(void *unused)
606 {
607         struct transfer_request *request;
608
609         if (aborted || !is_running_queue)
610                 return 0;
611
612         for (request = request_queue_head; request; request = request->next) {
613                 if (request->state == NEED_FETCH) {
614                         start_fetch_loose(request);
615                         return 1;
616                 } else if (pushing && request->state == NEED_PUSH) {
617                         if (remote_dir_exists[request->obj->sha1[0]] == 1) {
618                                 start_put(request);
619                         } else {
620                                 start_mkcol(request);
621                         }
622                         return 1;
623                 }
624         }
625         return 0;
626 }
627 #endif
628
629 static void get_remote_object_list(unsigned char parent);
630
631 static void add_fetch_request(struct object *obj)
632 {
633         struct transfer_request *request;
634
635         check_locks();
636
637         /*
638          * Don't fetch the object if it's known to exist locally
639          * or is already in the request queue
640          */
641         if (remote_dir_exists[obj->sha1[0]] == -1)
642                 get_remote_object_list(obj->sha1[0]);
643         if (obj->flags & (LOCAL | FETCHING))
644                 return;
645
646         obj->flags |= FETCHING;
647         request = xmalloc(sizeof(*request));
648         request->obj = obj;
649         request->url = NULL;
650         request->lock = NULL;
651         request->headers = NULL;
652         request->state = NEED_FETCH;
653         request->next = request_queue_head;
654         request_queue_head = request;
655
656 #ifdef USE_CURL_MULTI
657         fill_active_slots();
658         step_active_slots();
659 #endif
660 }
661
662 static int add_send_request(struct object *obj, struct remote_lock *lock)
663 {
664         struct transfer_request *request;
665         struct packed_git *target;
666
667         /* Keep locks active */
668         check_locks();
669
670         /*
671          * Don't push the object if it's known to exist on the remote
672          * or is already in the request queue
673          */
674         if (remote_dir_exists[obj->sha1[0]] == -1)
675                 get_remote_object_list(obj->sha1[0]);
676         if (obj->flags & (REMOTE | PUSHING))
677                 return 0;
678         target = find_sha1_pack(obj->sha1, repo->packs);
679         if (target) {
680                 obj->flags |= REMOTE;
681                 return 0;
682         }
683
684         obj->flags |= PUSHING;
685         request = xmalloc(sizeof(*request));
686         request->obj = obj;
687         request->url = NULL;
688         request->lock = lock;
689         request->headers = NULL;
690         request->state = NEED_PUSH;
691         request->next = request_queue_head;
692         request_queue_head = request;
693
694 #ifdef USE_CURL_MULTI
695         fill_active_slots();
696         step_active_slots();
697 #endif
698
699         return 1;
700 }
701
702 static int fetch_indices(void)
703 {
704         int ret;
705
706         if (push_verbosely)
707                 fprintf(stderr, "Getting pack list\n");
708
709         switch (http_get_info_packs(repo->url, &repo->packs)) {
710         case HTTP_OK:
711         case HTTP_MISSING_TARGET:
712                 ret = 0;
713                 break;
714         default:
715                 ret = -1;
716         }
717
718         return ret;
719 }
720
721 static void one_remote_object(const char *hex)
722 {
723         unsigned char sha1[20];
724         struct object *obj;
725
726         if (get_sha1_hex(hex, sha1) != 0)
727                 return;
728
729         obj = lookup_object(sha1);
730         if (!obj)
731                 obj = parse_object(sha1);
732
733         /* Ignore remote objects that don't exist locally */
734         if (!obj)
735                 return;
736
737         obj->flags |= REMOTE;
738         if (!object_list_contains(objects, obj))
739                 object_list_insert(obj, &objects);
740 }
741
742 static void handle_lockprop_ctx(struct xml_ctx *ctx, int tag_closed)
743 {
744         int *lock_flags = (int *)ctx->userData;
745
746         if (tag_closed) {
747                 if (!strcmp(ctx->name, DAV_CTX_LOCKENTRY)) {
748                         if ((*lock_flags & DAV_PROP_LOCKEX) &&
749                             (*lock_flags & DAV_PROP_LOCKWR)) {
750                                 *lock_flags |= DAV_LOCK_OK;
751                         }
752                         *lock_flags &= DAV_LOCK_OK;
753                 } else if (!strcmp(ctx->name, DAV_CTX_LOCKTYPE_WRITE)) {
754                         *lock_flags |= DAV_PROP_LOCKWR;
755                 } else if (!strcmp(ctx->name, DAV_CTX_LOCKTYPE_EXCLUSIVE)) {
756                         *lock_flags |= DAV_PROP_LOCKEX;
757                 }
758         }
759 }
760
761 static void handle_new_lock_ctx(struct xml_ctx *ctx, int tag_closed)
762 {
763         struct remote_lock *lock = (struct remote_lock *)ctx->userData;
764         git_SHA_CTX sha_ctx;
765         unsigned char lock_token_sha1[20];
766
767         if (tag_closed && ctx->cdata) {
768                 if (!strcmp(ctx->name, DAV_ACTIVELOCK_OWNER)) {
769                         lock->owner = xmalloc(strlen(ctx->cdata) + 1);
770                         strcpy(lock->owner, ctx->cdata);
771                 } else if (!strcmp(ctx->name, DAV_ACTIVELOCK_TIMEOUT)) {
772                         if (starts_with(ctx->cdata, "Second-"))
773                                 lock->timeout =
774                                         strtol(ctx->cdata + 7, NULL, 10);
775                 } else if (!strcmp(ctx->name, DAV_ACTIVELOCK_TOKEN)) {
776                         lock->token = xmalloc(strlen(ctx->cdata) + 1);
777                         strcpy(lock->token, ctx->cdata);
778
779                         git_SHA1_Init(&sha_ctx);
780                         git_SHA1_Update(&sha_ctx, lock->token, strlen(lock->token));
781                         git_SHA1_Final(lock_token_sha1, &sha_ctx);
782
783                         lock->tmpfile_suffix[0] = '_';
784                         memcpy(lock->tmpfile_suffix + 1, sha1_to_hex(lock_token_sha1), 40);
785                 }
786         }
787 }
788
789 static void one_remote_ref(const char *refname);
790
791 static void
792 xml_start_tag(void *userData, const char *name, const char **atts)
793 {
794         struct xml_ctx *ctx = (struct xml_ctx *)userData;
795         const char *c = strchr(name, ':');
796         int new_len;
797
798         if (c == NULL)
799                 c = name;
800         else
801                 c++;
802
803         new_len = strlen(ctx->name) + strlen(c) + 2;
804
805         if (new_len > ctx->len) {
806                 ctx->name = xrealloc(ctx->name, new_len);
807                 ctx->len = new_len;
808         }
809         strcat(ctx->name, ".");
810         strcat(ctx->name, c);
811
812         free(ctx->cdata);
813         ctx->cdata = NULL;
814
815         ctx->userFunc(ctx, 0);
816 }
817
818 static void
819 xml_end_tag(void *userData, const char *name)
820 {
821         struct xml_ctx *ctx = (struct xml_ctx *)userData;
822         const char *c = strchr(name, ':');
823         char *ep;
824
825         ctx->userFunc(ctx, 1);
826
827         if (c == NULL)
828                 c = name;
829         else
830                 c++;
831
832         ep = ctx->name + strlen(ctx->name) - strlen(c) - 1;
833         *ep = 0;
834 }
835
836 static void
837 xml_cdata(void *userData, const XML_Char *s, int len)
838 {
839         struct xml_ctx *ctx = (struct xml_ctx *)userData;
840         free(ctx->cdata);
841         ctx->cdata = xmemdupz(s, len);
842 }
843
844 static struct remote_lock *lock_remote(const char *path, long timeout)
845 {
846         struct active_request_slot *slot;
847         struct slot_results results;
848         struct buffer out_buffer = { STRBUF_INIT, 0 };
849         struct strbuf in_buffer = STRBUF_INIT;
850         char *url;
851         char *ep;
852         char timeout_header[25];
853         struct remote_lock *lock = NULL;
854         struct curl_slist *dav_headers = NULL;
855         struct xml_ctx ctx;
856         char *escaped;
857
858         url = xmalloc(strlen(repo->url) + strlen(path) + 1);
859         sprintf(url, "%s%s", repo->url, path);
860
861         /* Make sure leading directories exist for the remote ref */
862         ep = strchr(url + strlen(repo->url) + 1, '/');
863         while (ep) {
864                 char saved_character = ep[1];
865                 ep[1] = '\0';
866                 slot = get_active_slot();
867                 slot->results = &results;
868                 curl_setup_http_get(slot->curl, url, DAV_MKCOL);
869                 if (start_active_slot(slot)) {
870                         run_active_slot(slot);
871                         if (results.curl_result != CURLE_OK &&
872                             results.http_code != 405) {
873                                 fprintf(stderr,
874                                         "Unable to create branch path %s\n",
875                                         url);
876                                 free(url);
877                                 return NULL;
878                         }
879                 } else {
880                         fprintf(stderr, "Unable to start MKCOL request\n");
881                         free(url);
882                         return NULL;
883                 }
884                 ep[1] = saved_character;
885                 ep = strchr(ep + 1, '/');
886         }
887
888         escaped = xml_entities(ident_default_email());
889         strbuf_addf(&out_buffer.buf, LOCK_REQUEST, escaped);
890         free(escaped);
891
892         sprintf(timeout_header, "Timeout: Second-%ld", timeout);
893         dav_headers = curl_slist_append(dav_headers, timeout_header);
894         dav_headers = curl_slist_append(dav_headers, "Content-Type: text/xml");
895
896         slot = get_active_slot();
897         slot->results = &results;
898         curl_setup_http(slot->curl, url, DAV_LOCK, &out_buffer, fwrite_buffer);
899         curl_easy_setopt(slot->curl, CURLOPT_HTTPHEADER, dav_headers);
900         curl_easy_setopt(slot->curl, CURLOPT_FILE, &in_buffer);
901
902         lock = xcalloc(1, sizeof(*lock));
903         lock->timeout = -1;
904
905         if (start_active_slot(slot)) {
906                 run_active_slot(slot);
907                 if (results.curl_result == CURLE_OK) {
908                         XML_Parser parser = XML_ParserCreate(NULL);
909                         enum XML_Status result;
910                         ctx.name = xcalloc(10, 1);
911                         ctx.len = 0;
912                         ctx.cdata = NULL;
913                         ctx.userFunc = handle_new_lock_ctx;
914                         ctx.userData = lock;
915                         XML_SetUserData(parser, &ctx);
916                         XML_SetElementHandler(parser, xml_start_tag,
917                                               xml_end_tag);
918                         XML_SetCharacterDataHandler(parser, xml_cdata);
919                         result = XML_Parse(parser, in_buffer.buf,
920                                            in_buffer.len, 1);
921                         free(ctx.name);
922                         if (result != XML_STATUS_OK) {
923                                 fprintf(stderr, "XML error: %s\n",
924                                         XML_ErrorString(
925                                                 XML_GetErrorCode(parser)));
926                                 lock->timeout = -1;
927                         }
928                         XML_ParserFree(parser);
929                 }
930         } else {
931                 fprintf(stderr, "Unable to start LOCK request\n");
932         }
933
934         curl_slist_free_all(dav_headers);
935         strbuf_release(&out_buffer.buf);
936         strbuf_release(&in_buffer);
937
938         if (lock->token == NULL || lock->timeout <= 0) {
939                 free(lock->token);
940                 free(lock->owner);
941                 free(url);
942                 free(lock);
943                 lock = NULL;
944         } else {
945                 lock->url = url;
946                 lock->start_time = time(NULL);
947                 lock->next = repo->locks;
948                 repo->locks = lock;
949         }
950
951         return lock;
952 }
953
954 static int unlock_remote(struct remote_lock *lock)
955 {
956         struct active_request_slot *slot;
957         struct slot_results results;
958         struct remote_lock *prev = repo->locks;
959         struct curl_slist *dav_headers;
960         int rc = 0;
961
962         dav_headers = get_dav_token_headers(lock, DAV_HEADER_LOCK);
963
964         slot = get_active_slot();
965         slot->results = &results;
966         curl_setup_http_get(slot->curl, lock->url, DAV_UNLOCK);
967         curl_easy_setopt(slot->curl, CURLOPT_HTTPHEADER, dav_headers);
968
969         if (start_active_slot(slot)) {
970                 run_active_slot(slot);
971                 if (results.curl_result == CURLE_OK)
972                         rc = 1;
973                 else
974                         fprintf(stderr, "UNLOCK HTTP error %ld\n",
975                                 results.http_code);
976         } else {
977                 fprintf(stderr, "Unable to start UNLOCK request\n");
978         }
979
980         curl_slist_free_all(dav_headers);
981
982         if (repo->locks == lock) {
983                 repo->locks = lock->next;
984         } else {
985                 while (prev && prev->next != lock)
986                         prev = prev->next;
987                 if (prev)
988                         prev->next = prev->next->next;
989         }
990
991         free(lock->owner);
992         free(lock->url);
993         free(lock->token);
994         free(lock);
995
996         return rc;
997 }
998
999 static void remove_locks(void)
1000 {
1001         struct remote_lock *lock = repo->locks;
1002
1003         fprintf(stderr, "Removing remote locks...\n");
1004         while (lock) {
1005                 struct remote_lock *next = lock->next;
1006                 unlock_remote(lock);
1007                 lock = next;
1008         }
1009 }
1010
1011 static void remove_locks_on_signal(int signo)
1012 {
1013         remove_locks();
1014         sigchain_pop(signo);
1015         raise(signo);
1016 }
1017
1018 static void remote_ls(const char *path, int flags,
1019                       void (*userFunc)(struct remote_ls_ctx *ls),
1020                       void *userData);
1021
1022 static void process_ls_object(struct remote_ls_ctx *ls)
1023 {
1024         unsigned int *parent = (unsigned int *)ls->userData;
1025         char *path = ls->dentry_name;
1026         char *obj_hex;
1027
1028         if (!strcmp(ls->path, ls->dentry_name) && (ls->flags & IS_DIR)) {
1029                 remote_dir_exists[*parent] = 1;
1030                 return;
1031         }
1032
1033         if (strlen(path) != 49)
1034                 return;
1035         path += 8;
1036         obj_hex = xmalloc(strlen(path));
1037         /* NB: path is not null-terminated, can not use strlcpy here */
1038         memcpy(obj_hex, path, 2);
1039         strcpy(obj_hex + 2, path + 3);
1040         one_remote_object(obj_hex);
1041         free(obj_hex);
1042 }
1043
1044 static void process_ls_ref(struct remote_ls_ctx *ls)
1045 {
1046         if (!strcmp(ls->path, ls->dentry_name) && (ls->dentry_flags & IS_DIR)) {
1047                 fprintf(stderr, "  %s\n", ls->dentry_name);
1048                 return;
1049         }
1050
1051         if (!(ls->dentry_flags & IS_DIR))
1052                 one_remote_ref(ls->dentry_name);
1053 }
1054
1055 static void handle_remote_ls_ctx(struct xml_ctx *ctx, int tag_closed)
1056 {
1057         struct remote_ls_ctx *ls = (struct remote_ls_ctx *)ctx->userData;
1058
1059         if (tag_closed) {
1060                 if (!strcmp(ctx->name, DAV_PROPFIND_RESP) && ls->dentry_name) {
1061                         if (ls->dentry_flags & IS_DIR) {
1062
1063                                 /* ensure collection names end with slash */
1064                                 str_end_url_with_slash(ls->dentry_name, &ls->dentry_name);
1065
1066                                 if (ls->flags & PROCESS_DIRS) {
1067                                         ls->userFunc(ls);
1068                                 }
1069                                 if (strcmp(ls->dentry_name, ls->path) &&
1070                                     ls->flags & RECURSIVE) {
1071                                         remote_ls(ls->dentry_name,
1072                                                   ls->flags,
1073                                                   ls->userFunc,
1074                                                   ls->userData);
1075                                 }
1076                         } else if (ls->flags & PROCESS_FILES) {
1077                                 ls->userFunc(ls);
1078                         }
1079                 } else if (!strcmp(ctx->name, DAV_PROPFIND_NAME) && ctx->cdata) {
1080                         char *path = ctx->cdata;
1081                         if (*ctx->cdata == 'h') {
1082                                 path = strstr(path, "//");
1083                                 if (path) {
1084                                         path = strchr(path+2, '/');
1085                                 }
1086                         }
1087                         if (path) {
1088                                 const char *url = repo->url;
1089                                 if (repo->path)
1090                                         url = repo->path;
1091                                 if (strncmp(path, url, repo->path_len))
1092                                         error("Parsed path '%s' does not match url: '%s'",
1093                                               path, url);
1094                                 else {
1095                                         path += repo->path_len;
1096                                         ls->dentry_name = xstrdup(path);
1097                                 }
1098                         }
1099                 } else if (!strcmp(ctx->name, DAV_PROPFIND_COLLECTION)) {
1100                         ls->dentry_flags |= IS_DIR;
1101                 }
1102         } else if (!strcmp(ctx->name, DAV_PROPFIND_RESP)) {
1103                 free(ls->dentry_name);
1104                 ls->dentry_name = NULL;
1105                 ls->dentry_flags = 0;
1106         }
1107 }
1108
1109 /*
1110  * NEEDSWORK: remote_ls() ignores info/refs on the remote side.  But it
1111  * should _only_ heed the information from that file, instead of trying to
1112  * determine the refs from the remote file system (badly: it does not even
1113  * know about packed-refs).
1114  */
1115 static void remote_ls(const char *path, int flags,
1116                       void (*userFunc)(struct remote_ls_ctx *ls),
1117                       void *userData)
1118 {
1119         char *url = xmalloc(strlen(repo->url) + strlen(path) + 1);
1120         struct active_request_slot *slot;
1121         struct slot_results results;
1122         struct strbuf in_buffer = STRBUF_INIT;
1123         struct buffer out_buffer = { STRBUF_INIT, 0 };
1124         struct curl_slist *dav_headers = NULL;
1125         struct xml_ctx ctx;
1126         struct remote_ls_ctx ls;
1127
1128         ls.flags = flags;
1129         ls.path = xstrdup(path);
1130         ls.dentry_name = NULL;
1131         ls.dentry_flags = 0;
1132         ls.userData = userData;
1133         ls.userFunc = userFunc;
1134
1135         sprintf(url, "%s%s", repo->url, path);
1136
1137         strbuf_addf(&out_buffer.buf, PROPFIND_ALL_REQUEST);
1138
1139         dav_headers = curl_slist_append(dav_headers, "Depth: 1");
1140         dav_headers = curl_slist_append(dav_headers, "Content-Type: text/xml");
1141
1142         slot = get_active_slot();
1143         slot->results = &results;
1144         curl_setup_http(slot->curl, url, DAV_PROPFIND,
1145                         &out_buffer, fwrite_buffer);
1146         curl_easy_setopt(slot->curl, CURLOPT_HTTPHEADER, dav_headers);
1147         curl_easy_setopt(slot->curl, CURLOPT_FILE, &in_buffer);
1148
1149         if (start_active_slot(slot)) {
1150                 run_active_slot(slot);
1151                 if (results.curl_result == CURLE_OK) {
1152                         XML_Parser parser = XML_ParserCreate(NULL);
1153                         enum XML_Status result;
1154                         ctx.name = xcalloc(10, 1);
1155                         ctx.len = 0;
1156                         ctx.cdata = NULL;
1157                         ctx.userFunc = handle_remote_ls_ctx;
1158                         ctx.userData = &ls;
1159                         XML_SetUserData(parser, &ctx);
1160                         XML_SetElementHandler(parser, xml_start_tag,
1161                                               xml_end_tag);
1162                         XML_SetCharacterDataHandler(parser, xml_cdata);
1163                         result = XML_Parse(parser, in_buffer.buf,
1164                                            in_buffer.len, 1);
1165                         free(ctx.name);
1166
1167                         if (result != XML_STATUS_OK) {
1168                                 fprintf(stderr, "XML error: %s\n",
1169                                         XML_ErrorString(
1170                                                 XML_GetErrorCode(parser)));
1171                         }
1172                         XML_ParserFree(parser);
1173                 }
1174         } else {
1175                 fprintf(stderr, "Unable to start PROPFIND request\n");
1176         }
1177
1178         free(ls.path);
1179         free(url);
1180         strbuf_release(&out_buffer.buf);
1181         strbuf_release(&in_buffer);
1182         curl_slist_free_all(dav_headers);
1183 }
1184
1185 static void get_remote_object_list(unsigned char parent)
1186 {
1187         char path[] = "objects/XX/";
1188         static const char hex[] = "0123456789abcdef";
1189         unsigned int val = parent;
1190
1191         path[8] = hex[val >> 4];
1192         path[9] = hex[val & 0xf];
1193         remote_dir_exists[val] = 0;
1194         remote_ls(path, (PROCESS_FILES | PROCESS_DIRS),
1195                   process_ls_object, &val);
1196 }
1197
1198 static int locking_available(void)
1199 {
1200         struct active_request_slot *slot;
1201         struct slot_results results;
1202         struct strbuf in_buffer = STRBUF_INIT;
1203         struct buffer out_buffer = { STRBUF_INIT, 0 };
1204         struct curl_slist *dav_headers = NULL;
1205         struct xml_ctx ctx;
1206         int lock_flags = 0;
1207         char *escaped;
1208
1209         escaped = xml_entities(repo->url);
1210         strbuf_addf(&out_buffer.buf, PROPFIND_SUPPORTEDLOCK_REQUEST, escaped);
1211         free(escaped);
1212
1213         dav_headers = curl_slist_append(dav_headers, "Depth: 0");
1214         dav_headers = curl_slist_append(dav_headers, "Content-Type: text/xml");
1215
1216         slot = get_active_slot();
1217         slot->results = &results;
1218         curl_setup_http(slot->curl, repo->url, DAV_PROPFIND,
1219                         &out_buffer, fwrite_buffer);
1220         curl_easy_setopt(slot->curl, CURLOPT_HTTPHEADER, dav_headers);
1221         curl_easy_setopt(slot->curl, CURLOPT_FILE, &in_buffer);
1222
1223         if (start_active_slot(slot)) {
1224                 run_active_slot(slot);
1225                 if (results.curl_result == CURLE_OK) {
1226                         XML_Parser parser = XML_ParserCreate(NULL);
1227                         enum XML_Status result;
1228                         ctx.name = xcalloc(10, 1);
1229                         ctx.len = 0;
1230                         ctx.cdata = NULL;
1231                         ctx.userFunc = handle_lockprop_ctx;
1232                         ctx.userData = &lock_flags;
1233                         XML_SetUserData(parser, &ctx);
1234                         XML_SetElementHandler(parser, xml_start_tag,
1235                                               xml_end_tag);
1236                         result = XML_Parse(parser, in_buffer.buf,
1237                                            in_buffer.len, 1);
1238                         free(ctx.name);
1239
1240                         if (result != XML_STATUS_OK) {
1241                                 fprintf(stderr, "XML error: %s\n",
1242                                         XML_ErrorString(
1243                                                 XML_GetErrorCode(parser)));
1244                                 lock_flags = 0;
1245                         }
1246                         XML_ParserFree(parser);
1247                         if (!lock_flags)
1248                                 error("no DAV locking support on %s",
1249                                       repo->url);
1250
1251                 } else {
1252                         error("Cannot access URL %s, return code %d",
1253                               repo->url, results.curl_result);
1254                         lock_flags = 0;
1255                 }
1256         } else {
1257                 error("Unable to start PROPFIND request on %s", repo->url);
1258         }
1259
1260         strbuf_release(&out_buffer.buf);
1261         strbuf_release(&in_buffer);
1262         curl_slist_free_all(dav_headers);
1263
1264         return lock_flags;
1265 }
1266
1267 static struct object_list **add_one_object(struct object *obj, struct object_list **p)
1268 {
1269         struct object_list *entry = xmalloc(sizeof(struct object_list));
1270         entry->item = obj;
1271         entry->next = *p;
1272         *p = entry;
1273         return &entry->next;
1274 }
1275
1276 static struct object_list **process_blob(struct blob *blob,
1277                                          struct object_list **p,
1278                                          struct name_path *path,
1279                                          const char *name)
1280 {
1281         struct object *obj = &blob->object;
1282
1283         obj->flags |= LOCAL;
1284
1285         if (obj->flags & (UNINTERESTING | SEEN))
1286                 return p;
1287
1288         obj->flags |= SEEN;
1289         return add_one_object(obj, p);
1290 }
1291
1292 static struct object_list **process_tree(struct tree *tree,
1293                                          struct object_list **p,
1294                                          struct name_path *path,
1295                                          const char *name)
1296 {
1297         struct object *obj = &tree->object;
1298         struct tree_desc desc;
1299         struct name_entry entry;
1300         struct name_path me;
1301
1302         obj->flags |= LOCAL;
1303
1304         if (obj->flags & (UNINTERESTING | SEEN))
1305                 return p;
1306         if (parse_tree(tree) < 0)
1307                 die("bad tree object %s", sha1_to_hex(obj->sha1));
1308
1309         obj->flags |= SEEN;
1310         name = xstrdup(name);
1311         p = add_one_object(obj, p);
1312         me.up = path;
1313         me.elem = name;
1314         me.elem_len = strlen(name);
1315
1316         init_tree_desc(&desc, tree->buffer, tree->size);
1317
1318         while (tree_entry(&desc, &entry))
1319                 switch (object_type(entry.mode)) {
1320                 case OBJ_TREE:
1321                         p = process_tree(lookup_tree(entry.sha1), p, &me, name);
1322                         break;
1323                 case OBJ_BLOB:
1324                         p = process_blob(lookup_blob(entry.sha1), p, &me, name);
1325                         break;
1326                 default:
1327                         /* Subproject commit - not in this repository */
1328                         break;
1329                 }
1330
1331         free_tree_buffer(tree);
1332         return p;
1333 }
1334
1335 static int get_delta(struct rev_info *revs, struct remote_lock *lock)
1336 {
1337         int i;
1338         struct commit *commit;
1339         struct object_list **p = &objects;
1340         int count = 0;
1341
1342         while ((commit = get_revision(revs)) != NULL) {
1343                 p = process_tree(commit->tree, p, NULL, "");
1344                 commit->object.flags |= LOCAL;
1345                 if (!(commit->object.flags & UNINTERESTING))
1346                         count += add_send_request(&commit->object, lock);
1347         }
1348
1349         for (i = 0; i < revs->pending.nr; i++) {
1350                 struct object_array_entry *entry = revs->pending.objects + i;
1351                 struct object *obj = entry->item;
1352                 const char *name = entry->name;
1353
1354                 if (obj->flags & (UNINTERESTING | SEEN))
1355                         continue;
1356                 if (obj->type == OBJ_TAG) {
1357                         obj->flags |= SEEN;
1358                         p = add_one_object(obj, p);
1359                         continue;
1360                 }
1361                 if (obj->type == OBJ_TREE) {
1362                         p = process_tree((struct tree *)obj, p, NULL, name);
1363                         continue;
1364                 }
1365                 if (obj->type == OBJ_BLOB) {
1366                         p = process_blob((struct blob *)obj, p, NULL, name);
1367                         continue;
1368                 }
1369                 die("unknown pending object %s (%s)", sha1_to_hex(obj->sha1), name);
1370         }
1371
1372         while (objects) {
1373                 if (!(objects->item->flags & UNINTERESTING))
1374                         count += add_send_request(objects->item, lock);
1375                 objects = objects->next;
1376         }
1377
1378         return count;
1379 }
1380
1381 static int update_remote(unsigned char *sha1, struct remote_lock *lock)
1382 {
1383         struct active_request_slot *slot;
1384         struct slot_results results;
1385         struct buffer out_buffer = { STRBUF_INIT, 0 };
1386         struct curl_slist *dav_headers;
1387
1388         dav_headers = get_dav_token_headers(lock, DAV_HEADER_IF);
1389
1390         strbuf_addf(&out_buffer.buf, "%s\n", sha1_to_hex(sha1));
1391
1392         slot = get_active_slot();
1393         slot->results = &results;
1394         curl_setup_http(slot->curl, lock->url, DAV_PUT,
1395                         &out_buffer, fwrite_null);
1396         curl_easy_setopt(slot->curl, CURLOPT_HTTPHEADER, dav_headers);
1397
1398         if (start_active_slot(slot)) {
1399                 run_active_slot(slot);
1400                 strbuf_release(&out_buffer.buf);
1401                 if (results.curl_result != CURLE_OK) {
1402                         fprintf(stderr,
1403                                 "PUT error: curl result=%d, HTTP code=%ld\n",
1404                                 results.curl_result, results.http_code);
1405                         /* We should attempt recovery? */
1406                         return 0;
1407                 }
1408         } else {
1409                 strbuf_release(&out_buffer.buf);
1410                 fprintf(stderr, "Unable to start PUT request\n");
1411                 return 0;
1412         }
1413
1414         return 1;
1415 }
1416
1417 static struct ref *remote_refs;
1418
1419 static void one_remote_ref(const char *refname)
1420 {
1421         struct ref *ref;
1422         struct object *obj;
1423
1424         ref = alloc_ref(refname);
1425
1426         if (http_fetch_ref(repo->url, ref) != 0) {
1427                 fprintf(stderr,
1428                         "Unable to fetch ref %s from %s\n",
1429                         refname, repo->url);
1430                 free(ref);
1431                 return;
1432         }
1433
1434         /*
1435          * Fetch a copy of the object if it doesn't exist locally - it
1436          * may be required for updating server info later.
1437          */
1438         if (repo->can_update_info_refs && !has_sha1_file(ref->old_sha1)) {
1439                 obj = lookup_unknown_object(ref->old_sha1);
1440                 if (obj) {
1441                         fprintf(stderr, "  fetch %s for %s\n",
1442                                 sha1_to_hex(ref->old_sha1), refname);
1443                         add_fetch_request(obj);
1444                 }
1445         }
1446
1447         ref->next = remote_refs;
1448         remote_refs = ref;
1449 }
1450
1451 static void get_dav_remote_heads(void)
1452 {
1453         remote_ls("refs/", (PROCESS_FILES | PROCESS_DIRS | RECURSIVE), process_ls_ref, NULL);
1454 }
1455
1456 static void add_remote_info_ref(struct remote_ls_ctx *ls)
1457 {
1458         struct strbuf *buf = (struct strbuf *)ls->userData;
1459         struct object *o;
1460         int len;
1461         char *ref_info;
1462         struct ref *ref;
1463
1464         ref = alloc_ref(ls->dentry_name);
1465
1466         if (http_fetch_ref(repo->url, ref) != 0) {
1467                 fprintf(stderr,
1468                         "Unable to fetch ref %s from %s\n",
1469                         ls->dentry_name, repo->url);
1470                 aborted = 1;
1471                 free(ref);
1472                 return;
1473         }
1474
1475         o = parse_object(ref->old_sha1);
1476         if (!o) {
1477                 fprintf(stderr,
1478                         "Unable to parse object %s for remote ref %s\n",
1479                         sha1_to_hex(ref->old_sha1), ls->dentry_name);
1480                 aborted = 1;
1481                 free(ref);
1482                 return;
1483         }
1484
1485         len = strlen(ls->dentry_name) + 42;
1486         ref_info = xcalloc(len + 1, 1);
1487         sprintf(ref_info, "%s   %s\n",
1488                 sha1_to_hex(ref->old_sha1), ls->dentry_name);
1489         fwrite_buffer(ref_info, 1, len, buf);
1490         free(ref_info);
1491
1492         if (o->type == OBJ_TAG) {
1493                 o = deref_tag(o, ls->dentry_name, 0);
1494                 if (o) {
1495                         len = strlen(ls->dentry_name) + 45;
1496                         ref_info = xcalloc(len + 1, 1);
1497                         sprintf(ref_info, "%s   %s^{}\n",
1498                                 sha1_to_hex(o->sha1), ls->dentry_name);
1499                         fwrite_buffer(ref_info, 1, len, buf);
1500                         free(ref_info);
1501                 }
1502         }
1503         free(ref);
1504 }
1505
1506 static void update_remote_info_refs(struct remote_lock *lock)
1507 {
1508         struct buffer buffer = { STRBUF_INIT, 0 };
1509         struct active_request_slot *slot;
1510         struct slot_results results;
1511         struct curl_slist *dav_headers;
1512
1513         remote_ls("refs/", (PROCESS_FILES | RECURSIVE),
1514                   add_remote_info_ref, &buffer.buf);
1515         if (!aborted) {
1516                 dav_headers = get_dav_token_headers(lock, DAV_HEADER_IF);
1517
1518                 slot = get_active_slot();
1519                 slot->results = &results;
1520                 curl_setup_http(slot->curl, lock->url, DAV_PUT,
1521                                 &buffer, fwrite_null);
1522                 curl_easy_setopt(slot->curl, CURLOPT_HTTPHEADER, dav_headers);
1523
1524                 if (start_active_slot(slot)) {
1525                         run_active_slot(slot);
1526                         if (results.curl_result != CURLE_OK) {
1527                                 fprintf(stderr,
1528                                         "PUT error: curl result=%d, HTTP code=%ld\n",
1529                                         results.curl_result, results.http_code);
1530                         }
1531                 }
1532         }
1533         strbuf_release(&buffer.buf);
1534 }
1535
1536 static int remote_exists(const char *path)
1537 {
1538         char *url = xmalloc(strlen(repo->url) + strlen(path) + 1);
1539         int ret;
1540
1541         sprintf(url, "%s%s", repo->url, path);
1542
1543         switch (http_get_strbuf(url, NULL, NULL)) {
1544         case HTTP_OK:
1545                 ret = 1;
1546                 break;
1547         case HTTP_MISSING_TARGET:
1548                 ret = 0;
1549                 break;
1550         case HTTP_ERROR:
1551                 error("unable to access '%s': %s", url, curl_errorstr);
1552         default:
1553                 ret = -1;
1554         }
1555         free(url);
1556         return ret;
1557 }
1558
1559 static void fetch_symref(const char *path, char **symref, unsigned char *sha1)
1560 {
1561         char *url;
1562         struct strbuf buffer = STRBUF_INIT;
1563
1564         url = xmalloc(strlen(repo->url) + strlen(path) + 1);
1565         sprintf(url, "%s%s", repo->url, path);
1566
1567         if (http_get_strbuf(url, &buffer, NULL) != HTTP_OK)
1568                 die("Couldn't get %s for remote symref\n%s", url,
1569                     curl_errorstr);
1570         free(url);
1571
1572         free(*symref);
1573         *symref = NULL;
1574         hashclr(sha1);
1575
1576         if (buffer.len == 0)
1577                 return;
1578
1579         /* If it's a symref, set the refname; otherwise try for a sha1 */
1580         if (starts_with((char *)buffer.buf, "ref: ")) {
1581                 *symref = xmemdupz((char *)buffer.buf + 5, buffer.len - 6);
1582         } else {
1583                 get_sha1_hex(buffer.buf, sha1);
1584         }
1585
1586         strbuf_release(&buffer);
1587 }
1588
1589 static int verify_merge_base(unsigned char *head_sha1, struct ref *remote)
1590 {
1591         struct commit *head = lookup_commit_or_die(head_sha1, "HEAD");
1592         struct commit *branch = lookup_commit_or_die(remote->old_sha1, remote->name);
1593
1594         return in_merge_bases(branch, head);
1595 }
1596
1597 static int delete_remote_branch(const char *pattern, int force)
1598 {
1599         struct ref *refs = remote_refs;
1600         struct ref *remote_ref = NULL;
1601         unsigned char head_sha1[20];
1602         char *symref = NULL;
1603         int match;
1604         int patlen = strlen(pattern);
1605         int i;
1606         struct active_request_slot *slot;
1607         struct slot_results results;
1608         char *url;
1609
1610         /* Find the remote branch(es) matching the specified branch name */
1611         for (match = 0; refs; refs = refs->next) {
1612                 char *name = refs->name;
1613                 int namelen = strlen(name);
1614                 if (namelen < patlen ||
1615                     memcmp(name + namelen - patlen, pattern, patlen))
1616                         continue;
1617                 if (namelen != patlen && name[namelen - patlen - 1] != '/')
1618                         continue;
1619                 match++;
1620                 remote_ref = refs;
1621         }
1622         if (match == 0)
1623                 return error("No remote branch matches %s", pattern);
1624         if (match != 1)
1625                 return error("More than one remote branch matches %s",
1626                              pattern);
1627
1628         /*
1629          * Remote HEAD must be a symref (not exactly foolproof; a remote
1630          * symlink to a symref will look like a symref)
1631          */
1632         fetch_symref("HEAD", &symref, head_sha1);
1633         if (!symref)
1634                 return error("Remote HEAD is not a symref");
1635
1636         /* Remote branch must not be the remote HEAD */
1637         for (i = 0; symref && i < MAXDEPTH; i++) {
1638                 if (!strcmp(remote_ref->name, symref))
1639                         return error("Remote branch %s is the current HEAD",
1640                                      remote_ref->name);
1641                 fetch_symref(symref, &symref, head_sha1);
1642         }
1643
1644         /* Run extra sanity checks if delete is not forced */
1645         if (!force) {
1646                 /* Remote HEAD must resolve to a known object */
1647                 if (symref)
1648                         return error("Remote HEAD symrefs too deep");
1649                 if (is_null_sha1(head_sha1))
1650                         return error("Unable to resolve remote HEAD");
1651                 if (!has_sha1_file(head_sha1))
1652                         return error("Remote HEAD resolves to object %s\nwhich does not exist locally, perhaps you need to fetch?", sha1_to_hex(head_sha1));
1653
1654                 /* Remote branch must resolve to a known object */
1655                 if (is_null_sha1(remote_ref->old_sha1))
1656                         return error("Unable to resolve remote branch %s",
1657                                      remote_ref->name);
1658                 if (!has_sha1_file(remote_ref->old_sha1))
1659                         return error("Remote branch %s resolves to object %s\nwhich does not exist locally, perhaps you need to fetch?", remote_ref->name, sha1_to_hex(remote_ref->old_sha1));
1660
1661                 /* Remote branch must be an ancestor of remote HEAD */
1662                 if (!verify_merge_base(head_sha1, remote_ref)) {
1663                         return error("The branch '%s' is not an ancestor "
1664                                      "of your current HEAD.\n"
1665                                      "If you are sure you want to delete it,"
1666                                      " run:\n\t'git http-push -D %s %s'",
1667                                      remote_ref->name, repo->url, pattern);
1668                 }
1669         }
1670
1671         /* Send delete request */
1672         fprintf(stderr, "Removing remote branch '%s'\n", remote_ref->name);
1673         if (dry_run)
1674                 return 0;
1675         url = xmalloc(strlen(repo->url) + strlen(remote_ref->name) + 1);
1676         sprintf(url, "%s%s", repo->url, remote_ref->name);
1677         slot = get_active_slot();
1678         slot->results = &results;
1679         curl_setup_http_get(slot->curl, url, DAV_DELETE);
1680         if (start_active_slot(slot)) {
1681                 run_active_slot(slot);
1682                 free(url);
1683                 if (results.curl_result != CURLE_OK)
1684                         return error("DELETE request failed (%d/%ld)",
1685                                      results.curl_result, results.http_code);
1686         } else {
1687                 free(url);
1688                 return error("Unable to start DELETE request");
1689         }
1690
1691         return 0;
1692 }
1693
1694 static void run_request_queue(void)
1695 {
1696 #ifdef USE_CURL_MULTI
1697         is_running_queue = 1;
1698         fill_active_slots();
1699         add_fill_function(NULL, fill_active_slot);
1700 #endif
1701         do {
1702                 finish_all_active_slots();
1703 #ifdef USE_CURL_MULTI
1704                 fill_active_slots();
1705 #endif
1706         } while (request_queue_head && !aborted);
1707
1708 #ifdef USE_CURL_MULTI
1709         is_running_queue = 0;
1710 #endif
1711 }
1712
1713 int main(int argc, char **argv)
1714 {
1715         struct transfer_request *request;
1716         struct transfer_request *next_request;
1717         int nr_refspec = 0;
1718         char **refspec = NULL;
1719         struct remote_lock *ref_lock = NULL;
1720         struct remote_lock *info_ref_lock = NULL;
1721         struct rev_info revs;
1722         int delete_branch = 0;
1723         int force_delete = 0;
1724         int objects_to_send;
1725         int rc = 0;
1726         int i;
1727         int new_refs;
1728         struct ref *ref, *local_refs;
1729
1730         git_setup_gettext();
1731
1732         git_extract_argv0_path(argv[0]);
1733
1734         repo = xcalloc(1, sizeof(*repo));
1735
1736         argv++;
1737         for (i = 1; i < argc; i++, argv++) {
1738                 char *arg = *argv;
1739
1740                 if (*arg == '-') {
1741                         if (!strcmp(arg, "--all")) {
1742                                 push_all = MATCH_REFS_ALL;
1743                                 continue;
1744                         }
1745                         if (!strcmp(arg, "--force")) {
1746                                 force_all = 1;
1747                                 continue;
1748                         }
1749                         if (!strcmp(arg, "--dry-run")) {
1750                                 dry_run = 1;
1751                                 continue;
1752                         }
1753                         if (!strcmp(arg, "--helper-status")) {
1754                                 helper_status = 1;
1755                                 continue;
1756                         }
1757                         if (!strcmp(arg, "--verbose")) {
1758                                 push_verbosely = 1;
1759                                 http_is_verbose = 1;
1760                                 continue;
1761                         }
1762                         if (!strcmp(arg, "-d")) {
1763                                 delete_branch = 1;
1764                                 continue;
1765                         }
1766                         if (!strcmp(arg, "-D")) {
1767                                 delete_branch = 1;
1768                                 force_delete = 1;
1769                                 continue;
1770                         }
1771                         if (!strcmp(arg, "-h"))
1772                                 usage(http_push_usage);
1773                 }
1774                 if (!repo->url) {
1775                         char *path = strstr(arg, "//");
1776                         str_end_url_with_slash(arg, &repo->url);
1777                         repo->path_len = strlen(repo->url);
1778                         if (path) {
1779                                 repo->path = strchr(path+2, '/');
1780                                 if (repo->path)
1781                                         repo->path_len = strlen(repo->path);
1782                         }
1783                         continue;
1784                 }
1785                 refspec = argv;
1786                 nr_refspec = argc - i;
1787                 break;
1788         }
1789
1790 #ifndef USE_CURL_MULTI
1791         die("git-push is not available for http/https repository when not compiled with USE_CURL_MULTI");
1792 #endif
1793
1794         if (!repo->url)
1795                 usage(http_push_usage);
1796
1797         if (delete_branch && nr_refspec != 1)
1798                 die("You must specify only one branch name when deleting a remote branch");
1799
1800         setup_git_directory();
1801
1802         memset(remote_dir_exists, -1, 256);
1803
1804         http_init(NULL, repo->url, 1);
1805
1806 #ifdef USE_CURL_MULTI
1807         is_running_queue = 0;
1808 #endif
1809
1810         /* Verify DAV compliance/lock support */
1811         if (!locking_available()) {
1812                 rc = 1;
1813                 goto cleanup;
1814         }
1815
1816         sigchain_push_common(remove_locks_on_signal);
1817
1818         /* Check whether the remote has server info files */
1819         repo->can_update_info_refs = 0;
1820         repo->has_info_refs = remote_exists("info/refs");
1821         repo->has_info_packs = remote_exists("objects/info/packs");
1822         if (repo->has_info_refs) {
1823                 info_ref_lock = lock_remote("info/refs", LOCK_TIME);
1824                 if (info_ref_lock)
1825                         repo->can_update_info_refs = 1;
1826                 else {
1827                         error("cannot lock existing info/refs");
1828                         rc = 1;
1829                         goto cleanup;
1830                 }
1831         }
1832         if (repo->has_info_packs)
1833                 fetch_indices();
1834
1835         /* Get a list of all local and remote heads to validate refspecs */
1836         local_refs = get_local_heads();
1837         fprintf(stderr, "Fetching remote heads...\n");
1838         get_dav_remote_heads();
1839         run_request_queue();
1840
1841         /* Remove a remote branch if -d or -D was specified */
1842         if (delete_branch) {
1843                 if (delete_remote_branch(refspec[0], force_delete) == -1) {
1844                         fprintf(stderr, "Unable to delete remote branch %s\n",
1845                                 refspec[0]);
1846                         if (helper_status)
1847                                 printf("error %s cannot remove\n", refspec[0]);
1848                 }
1849                 goto cleanup;
1850         }
1851
1852         /* match them up */
1853         if (match_push_refs(local_refs, &remote_refs,
1854                             nr_refspec, (const char **) refspec, push_all)) {
1855                 rc = -1;
1856                 goto cleanup;
1857         }
1858         if (!remote_refs) {
1859                 fprintf(stderr, "No refs in common and none specified; doing nothing.\n");
1860                 if (helper_status)
1861                         printf("error null no match\n");
1862                 rc = 0;
1863                 goto cleanup;
1864         }
1865
1866         new_refs = 0;
1867         for (ref = remote_refs; ref; ref = ref->next) {
1868                 char old_hex[60], *new_hex;
1869                 const char *commit_argv[5];
1870                 int commit_argc;
1871                 char *new_sha1_hex, *old_sha1_hex;
1872
1873                 if (!ref->peer_ref)
1874                         continue;
1875
1876                 if (is_null_sha1(ref->peer_ref->new_sha1)) {
1877                         if (delete_remote_branch(ref->name, 1) == -1) {
1878                                 error("Could not remove %s", ref->name);
1879                                 if (helper_status)
1880                                         printf("error %s cannot remove\n", ref->name);
1881                                 rc = -4;
1882                         }
1883                         else if (helper_status)
1884                                 printf("ok %s\n", ref->name);
1885                         new_refs++;
1886                         continue;
1887                 }
1888
1889                 if (!hashcmp(ref->old_sha1, ref->peer_ref->new_sha1)) {
1890                         if (push_verbosely)
1891                                 fprintf(stderr, "'%s': up-to-date\n", ref->name);
1892                         if (helper_status)
1893                                 printf("ok %s up to date\n", ref->name);
1894                         continue;
1895                 }
1896
1897                 if (!force_all &&
1898                     !is_null_sha1(ref->old_sha1) &&
1899                     !ref->force) {
1900                         if (!has_sha1_file(ref->old_sha1) ||
1901                             !ref_newer(ref->peer_ref->new_sha1,
1902                                        ref->old_sha1)) {
1903                                 /*
1904                                  * We do not have the remote ref, or
1905                                  * we know that the remote ref is not
1906                                  * an ancestor of what we are trying to
1907                                  * push.  Either way this can be losing
1908                                  * commits at the remote end and likely
1909                                  * we were not up to date to begin with.
1910                                  */
1911                                 error("remote '%s' is not an ancestor of\n"
1912                                       "local '%s'.\n"
1913                                       "Maybe you are not up-to-date and "
1914                                       "need to pull first?",
1915                                       ref->name,
1916                                       ref->peer_ref->name);
1917                                 if (helper_status)
1918                                         printf("error %s non-fast forward\n", ref->name);
1919                                 rc = -2;
1920                                 continue;
1921                         }
1922                 }
1923                 hashcpy(ref->new_sha1, ref->peer_ref->new_sha1);
1924                 new_refs++;
1925                 strcpy(old_hex, sha1_to_hex(ref->old_sha1));
1926                 new_hex = sha1_to_hex(ref->new_sha1);
1927
1928                 fprintf(stderr, "updating '%s'", ref->name);
1929                 if (strcmp(ref->name, ref->peer_ref->name))
1930                         fprintf(stderr, " using '%s'", ref->peer_ref->name);
1931                 fprintf(stderr, "\n  from %s\n  to   %s\n", old_hex, new_hex);
1932                 if (dry_run) {
1933                         if (helper_status)
1934                                 printf("ok %s\n", ref->name);
1935                         continue;
1936                 }
1937
1938                 /* Lock remote branch ref */
1939                 ref_lock = lock_remote(ref->name, LOCK_TIME);
1940                 if (ref_lock == NULL) {
1941                         fprintf(stderr, "Unable to lock remote branch %s\n",
1942                                 ref->name);
1943                         if (helper_status)
1944                                 printf("error %s lock error\n", ref->name);
1945                         rc = 1;
1946                         continue;
1947                 }
1948
1949                 /* Set up revision info for this refspec */
1950                 commit_argc = 3;
1951                 new_sha1_hex = xstrdup(sha1_to_hex(ref->new_sha1));
1952                 old_sha1_hex = NULL;
1953                 commit_argv[1] = "--objects";
1954                 commit_argv[2] = new_sha1_hex;
1955                 if (!push_all && !is_null_sha1(ref->old_sha1)) {
1956                         old_sha1_hex = xmalloc(42);
1957                         sprintf(old_sha1_hex, "^%s",
1958                                 sha1_to_hex(ref->old_sha1));
1959                         commit_argv[3] = old_sha1_hex;
1960                         commit_argc++;
1961                 }
1962                 commit_argv[commit_argc] = NULL;
1963                 init_revisions(&revs, setup_git_directory());
1964                 setup_revisions(commit_argc, commit_argv, &revs, NULL);
1965                 revs.edge_hint = 0; /* just in case */
1966                 free(new_sha1_hex);
1967                 if (old_sha1_hex) {
1968                         free(old_sha1_hex);
1969                         commit_argv[1] = NULL;
1970                 }
1971
1972                 /* Generate a list of objects that need to be pushed */
1973                 pushing = 0;
1974                 if (prepare_revision_walk(&revs))
1975                         die("revision walk setup failed");
1976                 mark_edges_uninteresting(&revs, NULL);
1977                 objects_to_send = get_delta(&revs, ref_lock);
1978                 finish_all_active_slots();
1979
1980                 /* Push missing objects to remote, this would be a
1981                    convenient time to pack them first if appropriate. */
1982                 pushing = 1;
1983                 if (objects_to_send)
1984                         fprintf(stderr, "    sending %d objects\n",
1985                                 objects_to_send);
1986
1987                 run_request_queue();
1988
1989                 /* Update the remote branch if all went well */
1990                 if (aborted || !update_remote(ref->new_sha1, ref_lock))
1991                         rc = 1;
1992
1993                 if (!rc)
1994                         fprintf(stderr, "    done\n");
1995                 if (helper_status)
1996                         printf("%s %s\n", !rc ? "ok" : "error", ref->name);
1997                 unlock_remote(ref_lock);
1998                 check_locks();
1999         }
2000
2001         /* Update remote server info if appropriate */
2002         if (repo->has_info_refs && new_refs) {
2003                 if (info_ref_lock && repo->can_update_info_refs) {
2004                         fprintf(stderr, "Updating remote server info\n");
2005                         if (!dry_run)
2006                                 update_remote_info_refs(info_ref_lock);
2007                 } else {
2008                         fprintf(stderr, "Unable to update server info\n");
2009                 }
2010         }
2011
2012  cleanup:
2013         if (info_ref_lock)
2014                 unlock_remote(info_ref_lock);
2015         free(repo);
2016
2017         http_cleanup();
2018
2019         request = request_queue_head;
2020         while (request != NULL) {
2021                 next_request = request->next;
2022                 release_request(request);
2023                 request = next_request;
2024         }
2025
2026         return rc;
2027 }