358442e4b51b1ee6b909cb6717dc7afbd1a62abf
   1#include "cache.h"
   2#include "config.h"
   3#include "remote.h"
   4#include "refs.h"
   5#include "refspec.h"
   6#include "commit.h"
   7#include "diff.h"
   8#include "revision.h"
   9#include "dir.h"
  10#include "tag.h"
  11#include "string-list.h"
  12#include "mergesort.h"
  13#include "argv-array.h"
  14
  15enum map_direction { FROM_SRC, FROM_DST };
  16
  17struct counted_string {
  18        size_t len;
  19        const char *s;
  20};
  21struct rewrite {
  22        const char *base;
  23        size_t baselen;
  24        struct counted_string *instead_of;
  25        int instead_of_nr;
  26        int instead_of_alloc;
  27};
  28struct rewrites {
  29        struct rewrite **rewrite;
  30        int rewrite_alloc;
  31        int rewrite_nr;
  32};
  33
  34static struct remote **remotes;
  35static int remotes_alloc;
  36static int remotes_nr;
  37static struct hashmap remotes_hash;
  38
  39static struct branch **branches;
  40static int branches_alloc;
  41static int branches_nr;
  42
  43static struct branch *current_branch;
  44static const char *pushremote_name;
  45
  46static struct rewrites rewrites;
  47static struct rewrites rewrites_push;
  48
  49static int valid_remote(const struct remote *remote)
  50{
  51        return (!!remote->url) || (!!remote->foreign_vcs);
  52}
  53
  54static const char *alias_url(const char *url, struct rewrites *r)
  55{
  56        int i, j;
  57        struct counted_string *longest;
  58        int longest_i;
  59
  60        longest = NULL;
  61        longest_i = -1;
  62        for (i = 0; i < r->rewrite_nr; i++) {
  63                if (!r->rewrite[i])
  64                        continue;
  65                for (j = 0; j < r->rewrite[i]->instead_of_nr; j++) {
  66                        if (starts_with(url, r->rewrite[i]->instead_of[j].s) &&
  67                            (!longest ||
  68                             longest->len < r->rewrite[i]->instead_of[j].len)) {
  69                                longest = &(r->rewrite[i]->instead_of[j]);
  70                                longest_i = i;
  71                        }
  72                }
  73        }
  74        if (!longest)
  75                return url;
  76
  77        return xstrfmt("%s%s", r->rewrite[longest_i]->base, url + longest->len);
  78}
  79
  80static void add_url(struct remote *remote, const char *url)
  81{
  82        ALLOC_GROW(remote->url, remote->url_nr + 1, remote->url_alloc);
  83        remote->url[remote->url_nr++] = url;
  84}
  85
  86static void add_pushurl(struct remote *remote, const char *pushurl)
  87{
  88        ALLOC_GROW(remote->pushurl, remote->pushurl_nr + 1, remote->pushurl_alloc);
  89        remote->pushurl[remote->pushurl_nr++] = pushurl;
  90}
  91
  92static void add_pushurl_alias(struct remote *remote, const char *url)
  93{
  94        const char *pushurl = alias_url(url, &rewrites_push);
  95        if (pushurl != url)
  96                add_pushurl(remote, pushurl);
  97}
  98
  99static void add_url_alias(struct remote *remote, const char *url)
 100{
 101        add_url(remote, alias_url(url, &rewrites));
 102        add_pushurl_alias(remote, url);
 103}
 104
 105struct remotes_hash_key {
 106        const char *str;
 107        int len;
 108};
 109
 110static int remotes_hash_cmp(const void *unused_cmp_data,
 111                            const void *entry,
 112                            const void *entry_or_key,
 113                            const void *keydata)
 114{
 115        const struct remote *a = entry;
 116        const struct remote *b = entry_or_key;
 117        const struct remotes_hash_key *key = keydata;
 118
 119        if (key)
 120                return strncmp(a->name, key->str, key->len) || a->name[key->len];
 121        else
 122                return strcmp(a->name, b->name);
 123}
 124
 125static inline void init_remotes_hash(void)
 126{
 127        if (!remotes_hash.cmpfn)
 128                hashmap_init(&remotes_hash, remotes_hash_cmp, NULL, 0);
 129}
 130
 131static struct remote *make_remote(const char *name, int len)
 132{
 133        struct remote *ret, *replaced;
 134        struct remotes_hash_key lookup;
 135        struct hashmap_entry lookup_entry;
 136
 137        if (!len)
 138                len = strlen(name);
 139
 140        init_remotes_hash();
 141        lookup.str = name;
 142        lookup.len = len;
 143        hashmap_entry_init(&lookup_entry, memhash(name, len));
 144
 145        if ((ret = hashmap_get(&remotes_hash, &lookup_entry, &lookup)) != NULL)
 146                return ret;
 147
 148        ret = xcalloc(1, sizeof(struct remote));
 149        ret->prune = -1;  /* unspecified */
 150        ret->prune_tags = -1;  /* unspecified */
 151        ret->name = xstrndup(name, len);
 152        refspec_init(&ret->push, REFSPEC_PUSH);
 153        refspec_init(&ret->fetch, REFSPEC_FETCH);
 154
 155        ALLOC_GROW(remotes, remotes_nr + 1, remotes_alloc);
 156        remotes[remotes_nr++] = ret;
 157
 158        hashmap_entry_init(ret, lookup_entry.hash);
 159        replaced = hashmap_put(&remotes_hash, ret);
 160        assert(replaced == NULL);  /* no previous entry overwritten */
 161        return ret;
 162}
 163
 164static void add_merge(struct branch *branch, const char *name)
 165{
 166        ALLOC_GROW(branch->merge_name, branch->merge_nr + 1,
 167                   branch->merge_alloc);
 168        branch->merge_name[branch->merge_nr++] = name;
 169}
 170
 171static struct branch *make_branch(const char *name, int len)
 172{
 173        struct branch *ret;
 174        int i;
 175
 176        for (i = 0; i < branches_nr; i++) {
 177                if (len ? (!strncmp(name, branches[i]->name, len) &&
 178                           !branches[i]->name[len]) :
 179                    !strcmp(name, branches[i]->name))
 180                        return branches[i];
 181        }
 182
 183        ALLOC_GROW(branches, branches_nr + 1, branches_alloc);
 184        ret = xcalloc(1, sizeof(struct branch));
 185        branches[branches_nr++] = ret;
 186        if (len)
 187                ret->name = xstrndup(name, len);
 188        else
 189                ret->name = xstrdup(name);
 190        ret->refname = xstrfmt("refs/heads/%s", ret->name);
 191
 192        return ret;
 193}
 194
 195static struct rewrite *make_rewrite(struct rewrites *r, const char *base, int len)
 196{
 197        struct rewrite *ret;
 198        int i;
 199
 200        for (i = 0; i < r->rewrite_nr; i++) {
 201                if (len
 202                    ? (len == r->rewrite[i]->baselen &&
 203                       !strncmp(base, r->rewrite[i]->base, len))
 204                    : !strcmp(base, r->rewrite[i]->base))
 205                        return r->rewrite[i];
 206        }
 207
 208        ALLOC_GROW(r->rewrite, r->rewrite_nr + 1, r->rewrite_alloc);
 209        ret = xcalloc(1, sizeof(struct rewrite));
 210        r->rewrite[r->rewrite_nr++] = ret;
 211        if (len) {
 212                ret->base = xstrndup(base, len);
 213                ret->baselen = len;
 214        }
 215        else {
 216                ret->base = xstrdup(base);
 217                ret->baselen = strlen(base);
 218        }
 219        return ret;
 220}
 221
 222static void add_instead_of(struct rewrite *rewrite, const char *instead_of)
 223{
 224        ALLOC_GROW(rewrite->instead_of, rewrite->instead_of_nr + 1, rewrite->instead_of_alloc);
 225        rewrite->instead_of[rewrite->instead_of_nr].s = instead_of;
 226        rewrite->instead_of[rewrite->instead_of_nr].len = strlen(instead_of);
 227        rewrite->instead_of_nr++;
 228}
 229
 230static const char *skip_spaces(const char *s)
 231{
 232        while (isspace(*s))
 233                s++;
 234        return s;
 235}
 236
 237static void read_remotes_file(struct remote *remote)
 238{
 239        struct strbuf buf = STRBUF_INIT;
 240        FILE *f = fopen_or_warn(git_path("remotes/%s", remote->name), "r");
 241
 242        if (!f)
 243                return;
 244        remote->configured_in_repo = 1;
 245        remote->origin = REMOTE_REMOTES;
 246        while (strbuf_getline(&buf, f) != EOF) {
 247                const char *v;
 248
 249                strbuf_rtrim(&buf);
 250
 251                if (skip_prefix(buf.buf, "URL:", &v))
 252                        add_url_alias(remote, xstrdup(skip_spaces(v)));
 253                else if (skip_prefix(buf.buf, "Push:", &v))
 254                        refspec_append(&remote->push, skip_spaces(v));
 255                else if (skip_prefix(buf.buf, "Pull:", &v))
 256                        refspec_append(&remote->fetch, skip_spaces(v));
 257        }
 258        strbuf_release(&buf);
 259        fclose(f);
 260}
 261
 262static void read_branches_file(struct remote *remote)
 263{
 264        char *frag;
 265        struct strbuf buf = STRBUF_INIT;
 266        FILE *f = fopen_or_warn(git_path("branches/%s", remote->name), "r");
 267
 268        if (!f)
 269                return;
 270
 271        strbuf_getline_lf(&buf, f);
 272        fclose(f);
 273        strbuf_trim(&buf);
 274        if (!buf.len) {
 275                strbuf_release(&buf);
 276                return;
 277        }
 278
 279        remote->configured_in_repo = 1;
 280        remote->origin = REMOTE_BRANCHES;
 281
 282        /*
 283         * The branches file would have URL and optionally
 284         * #branch specified.  The "master" (or specified) branch is
 285         * fetched and stored in the local branch matching the
 286         * remote name.
 287         */
 288        frag = strchr(buf.buf, '#');
 289        if (frag)
 290                *(frag++) = '\0';
 291        else
 292                frag = "master";
 293
 294        add_url_alias(remote, strbuf_detach(&buf, NULL));
 295        strbuf_addf(&buf, "refs/heads/%s:refs/heads/%s",
 296                    frag, remote->name);
 297        refspec_append(&remote->fetch, buf.buf);
 298
 299        /*
 300         * Cogito compatible push: push current HEAD to remote #branch
 301         * (master if missing)
 302         */
 303        strbuf_reset(&buf);
 304        strbuf_addf(&buf, "HEAD:refs/heads/%s", frag);
 305        refspec_append(&remote->push, buf.buf);
 306        remote->fetch_tags = 1; /* always auto-follow */
 307        strbuf_release(&buf);
 308}
 309
 310static int handle_config(const char *key, const char *value, void *cb)
 311{
 312        const char *name;
 313        int namelen;
 314        const char *subkey;
 315        struct remote *remote;
 316        struct branch *branch;
 317        if (parse_config_key(key, "branch", &name, &namelen, &subkey) >= 0) {
 318                if (!name)
 319                        return 0;
 320                branch = make_branch(name, namelen);
 321                if (!strcmp(subkey, "remote")) {
 322                        return git_config_string(&branch->remote_name, key, value);
 323                } else if (!strcmp(subkey, "pushremote")) {
 324                        return git_config_string(&branch->pushremote_name, key, value);
 325                } else if (!strcmp(subkey, "merge")) {
 326                        if (!value)
 327                                return config_error_nonbool(key);
 328                        add_merge(branch, xstrdup(value));
 329                }
 330                return 0;
 331        }
 332        if (parse_config_key(key, "url", &name, &namelen, &subkey) >= 0) {
 333                struct rewrite *rewrite;
 334                if (!name)
 335                        return 0;
 336                if (!strcmp(subkey, "insteadof")) {
 337                        rewrite = make_rewrite(&rewrites, name, namelen);
 338                        if (!value)
 339                                return config_error_nonbool(key);
 340                        add_instead_of(rewrite, xstrdup(value));
 341                } else if (!strcmp(subkey, "pushinsteadof")) {
 342                        rewrite = make_rewrite(&rewrites_push, name, namelen);
 343                        if (!value)
 344                                return config_error_nonbool(key);
 345                        add_instead_of(rewrite, xstrdup(value));
 346                }
 347        }
 348
 349        if (parse_config_key(key, "remote", &name, &namelen, &subkey) < 0)
 350                return 0;
 351
 352        /* Handle remote.* variables */
 353        if (!name && !strcmp(subkey, "pushdefault"))
 354                return git_config_string(&pushremote_name, key, value);
 355
 356        if (!name)
 357                return 0;
 358        /* Handle remote.<name>.* variables */
 359        if (*name == '/') {
 360                warning("Config remote shorthand cannot begin with '/': %s",
 361                        name);
 362                return 0;
 363        }
 364        remote = make_remote(name, namelen);
 365        remote->origin = REMOTE_CONFIG;
 366        if (current_config_scope() == CONFIG_SCOPE_REPO)
 367                remote->configured_in_repo = 1;
 368        if (!strcmp(subkey, "mirror"))
 369                remote->mirror = git_config_bool(key, value);
 370        else if (!strcmp(subkey, "skipdefaultupdate"))
 371                remote->skip_default_update = git_config_bool(key, value);
 372        else if (!strcmp(subkey, "skipfetchall"))
 373                remote->skip_default_update = git_config_bool(key, value);
 374        else if (!strcmp(subkey, "prune"))
 375                remote->prune = git_config_bool(key, value);
 376        else if (!strcmp(subkey, "prunetags"))
 377                remote->prune_tags = git_config_bool(key, value);
 378        else if (!strcmp(subkey, "url")) {
 379                const char *v;
 380                if (git_config_string(&v, key, value))
 381                        return -1;
 382                add_url(remote, v);
 383        } else if (!strcmp(subkey, "pushurl")) {
 384                const char *v;
 385                if (git_config_string(&v, key, value))
 386                        return -1;
 387                add_pushurl(remote, v);
 388        } else if (!strcmp(subkey, "push")) {
 389                const char *v;
 390                if (git_config_string(&v, key, value))
 391                        return -1;
 392                refspec_append(&remote->push, v);
 393                free((char *)v);
 394        } else if (!strcmp(subkey, "fetch")) {
 395                const char *v;
 396                if (git_config_string(&v, key, value))
 397                        return -1;
 398                refspec_append(&remote->fetch, v);
 399                free((char *)v);
 400        } else if (!strcmp(subkey, "receivepack")) {
 401                const char *v;
 402                if (git_config_string(&v, key, value))
 403                        return -1;
 404                if (!remote->receivepack)
 405                        remote->receivepack = v;
 406                else
 407                        error("more than one receivepack given, using the first");
 408        } else if (!strcmp(subkey, "uploadpack")) {
 409                const char *v;
 410                if (git_config_string(&v, key, value))
 411                        return -1;
 412                if (!remote->uploadpack)
 413                        remote->uploadpack = v;
 414                else
 415                        error("more than one uploadpack given, using the first");
 416        } else if (!strcmp(subkey, "tagopt")) {
 417                if (!strcmp(value, "--no-tags"))
 418                        remote->fetch_tags = -1;
 419                else if (!strcmp(value, "--tags"))
 420                        remote->fetch_tags = 2;
 421        } else if (!strcmp(subkey, "proxy")) {
 422                return git_config_string((const char **)&remote->http_proxy,
 423                                         key, value);
 424        } else if (!strcmp(subkey, "proxyauthmethod")) {
 425                return git_config_string((const char **)&remote->http_proxy_authmethod,
 426                                         key, value);
 427        } else if (!strcmp(subkey, "vcs")) {
 428                return git_config_string(&remote->foreign_vcs, key, value);
 429        }
 430        return 0;
 431}
 432
 433static void alias_all_urls(void)
 434{
 435        int i, j;
 436        for (i = 0; i < remotes_nr; i++) {
 437                int add_pushurl_aliases;
 438                if (!remotes[i])
 439                        continue;
 440                for (j = 0; j < remotes[i]->pushurl_nr; j++) {
 441                        remotes[i]->pushurl[j] = alias_url(remotes[i]->pushurl[j], &rewrites);
 442                }
 443                add_pushurl_aliases = remotes[i]->pushurl_nr == 0;
 444                for (j = 0; j < remotes[i]->url_nr; j++) {
 445                        if (add_pushurl_aliases)
 446                                add_pushurl_alias(remotes[i], remotes[i]->url[j]);
 447                        remotes[i]->url[j] = alias_url(remotes[i]->url[j], &rewrites);
 448                }
 449        }
 450}
 451
 452static void read_config(void)
 453{
 454        static int loaded;
 455        int flag;
 456
 457        if (loaded)
 458                return;
 459        loaded = 1;
 460
 461        current_branch = NULL;
 462        if (startup_info->have_repository) {
 463                const char *head_ref = resolve_ref_unsafe("HEAD", 0, NULL, &flag);
 464                if (head_ref && (flag & REF_ISSYMREF) &&
 465                    skip_prefix(head_ref, "refs/heads/", &head_ref)) {
 466                        current_branch = make_branch(head_ref, 0);
 467                }
 468        }
 469        git_config(handle_config, NULL);
 470        alias_all_urls();
 471}
 472
 473static int valid_remote_nick(const char *name)
 474{
 475        if (!name[0] || is_dot_or_dotdot(name))
 476                return 0;
 477
 478        /* remote nicknames cannot contain slashes */
 479        while (*name)
 480                if (is_dir_sep(*name++))
 481                        return 0;
 482        return 1;
 483}
 484
 485const char *remote_for_branch(struct branch *branch, int *explicit)
 486{
 487        if (branch && branch->remote_name) {
 488                if (explicit)
 489                        *explicit = 1;
 490                return branch->remote_name;
 491        }
 492        if (explicit)
 493                *explicit = 0;
 494        return "origin";
 495}
 496
 497const char *pushremote_for_branch(struct branch *branch, int *explicit)
 498{
 499        if (branch && branch->pushremote_name) {
 500                if (explicit)
 501                        *explicit = 1;
 502                return branch->pushremote_name;
 503        }
 504        if (pushremote_name) {
 505                if (explicit)
 506                        *explicit = 1;
 507                return pushremote_name;
 508        }
 509        return remote_for_branch(branch, explicit);
 510}
 511
 512const char *remote_ref_for_branch(struct branch *branch, int for_push,
 513                                  int *explicit)
 514{
 515        if (branch) {
 516                if (!for_push) {
 517                        if (branch->merge_nr) {
 518                                if (explicit)
 519                                        *explicit = 1;
 520                                return branch->merge_name[0];
 521                        }
 522                } else {
 523                        const char *dst, *remote_name =
 524                                pushremote_for_branch(branch, NULL);
 525                        struct remote *remote = remote_get(remote_name);
 526
 527                        if (remote && remote->push.nr &&
 528                            (dst = apply_refspecs(remote->push.items,
 529                                                  remote->push.nr,
 530                                                  branch->refname))) {
 531                                if (explicit)
 532                                        *explicit = 1;
 533                                return dst;
 534                        }
 535                }
 536        }
 537        if (explicit)
 538                *explicit = 0;
 539        return "";
 540}
 541
 542static struct remote *remote_get_1(const char *name,
 543                                   const char *(*get_default)(struct branch *, int *))
 544{
 545        struct remote *ret;
 546        int name_given = 0;
 547
 548        read_config();
 549
 550        if (name)
 551                name_given = 1;
 552        else
 553                name = get_default(current_branch, &name_given);
 554
 555        ret = make_remote(name, 0);
 556        if (valid_remote_nick(name) && have_git_dir()) {
 557                if (!valid_remote(ret))
 558                        read_remotes_file(ret);
 559                if (!valid_remote(ret))
 560                        read_branches_file(ret);
 561        }
 562        if (name_given && !valid_remote(ret))
 563                add_url_alias(ret, name);
 564        if (!valid_remote(ret))
 565                return NULL;
 566        return ret;
 567}
 568
 569struct remote *remote_get(const char *name)
 570{
 571        return remote_get_1(name, remote_for_branch);
 572}
 573
 574struct remote *pushremote_get(const char *name)
 575{
 576        return remote_get_1(name, pushremote_for_branch);
 577}
 578
 579int remote_is_configured(struct remote *remote, int in_repo)
 580{
 581        if (!remote)
 582                return 0;
 583        if (in_repo)
 584                return remote->configured_in_repo;
 585        return !!remote->origin;
 586}
 587
 588int for_each_remote(each_remote_fn fn, void *priv)
 589{
 590        int i, result = 0;
 591        read_config();
 592        for (i = 0; i < remotes_nr && !result; i++) {
 593                struct remote *r = remotes[i];
 594                if (!r)
 595                        continue;
 596                result = fn(r, priv);
 597        }
 598        return result;
 599}
 600
 601static void handle_duplicate(struct ref *ref1, struct ref *ref2)
 602{
 603        if (strcmp(ref1->name, ref2->name)) {
 604                if (ref1->fetch_head_status != FETCH_HEAD_IGNORE &&
 605                    ref2->fetch_head_status != FETCH_HEAD_IGNORE) {
 606                        die(_("Cannot fetch both %s and %s to %s"),
 607                            ref1->name, ref2->name, ref2->peer_ref->name);
 608                } else if (ref1->fetch_head_status != FETCH_HEAD_IGNORE &&
 609                           ref2->fetch_head_status == FETCH_HEAD_IGNORE) {
 610                        warning(_("%s usually tracks %s, not %s"),
 611                                ref2->peer_ref->name, ref2->name, ref1->name);
 612                } else if (ref1->fetch_head_status == FETCH_HEAD_IGNORE &&
 613                           ref2->fetch_head_status == FETCH_HEAD_IGNORE) {
 614                        die(_("%s tracks both %s and %s"),
 615                            ref2->peer_ref->name, ref1->name, ref2->name);
 616                } else {
 617                        /*
 618                         * This last possibility doesn't occur because
 619                         * FETCH_HEAD_IGNORE entries always appear at
 620                         * the end of the list.
 621                         */
 622                        die(_("Internal error"));
 623                }
 624        }
 625        free(ref2->peer_ref);
 626        free(ref2);
 627}
 628
 629struct ref *ref_remove_duplicates(struct ref *ref_map)
 630{
 631        struct string_list refs = STRING_LIST_INIT_NODUP;
 632        struct ref *retval = NULL;
 633        struct ref **p = &retval;
 634
 635        while (ref_map) {
 636                struct ref *ref = ref_map;
 637
 638                ref_map = ref_map->next;
 639                ref->next = NULL;
 640
 641                if (!ref->peer_ref) {
 642                        *p = ref;
 643                        p = &ref->next;
 644                } else {
 645                        struct string_list_item *item =
 646                                string_list_insert(&refs, ref->peer_ref->name);
 647
 648                        if (item->util) {
 649                                /* Entry already existed */
 650                                handle_duplicate((struct ref *)item->util, ref);
 651                        } else {
 652                                *p = ref;
 653                                p = &ref->next;
 654                                item->util = ref;
 655                        }
 656                }
 657        }
 658
 659        string_list_clear(&refs, 0);
 660        return retval;
 661}
 662
 663int remote_has_url(struct remote *remote, const char *url)
 664{
 665        int i;
 666        for (i = 0; i < remote->url_nr; i++) {
 667                if (!strcmp(remote->url[i], url))
 668                        return 1;
 669        }
 670        return 0;
 671}
 672
 673static int match_name_with_pattern(const char *key, const char *name,
 674                                   const char *value, char **result)
 675{
 676        const char *kstar = strchr(key, '*');
 677        size_t klen;
 678        size_t ksuffixlen;
 679        size_t namelen;
 680        int ret;
 681        if (!kstar)
 682                die("Key '%s' of pattern had no '*'", key);
 683        klen = kstar - key;
 684        ksuffixlen = strlen(kstar + 1);
 685        namelen = strlen(name);
 686        ret = !strncmp(name, key, klen) && namelen >= klen + ksuffixlen &&
 687                !memcmp(name + namelen - ksuffixlen, kstar + 1, ksuffixlen);
 688        if (ret && value) {
 689                struct strbuf sb = STRBUF_INIT;
 690                const char *vstar = strchr(value, '*');
 691                if (!vstar)
 692                        die("Value '%s' of pattern has no '*'", value);
 693                strbuf_add(&sb, value, vstar - value);
 694                strbuf_add(&sb, name + klen, namelen - klen - ksuffixlen);
 695                strbuf_addstr(&sb, vstar + 1);
 696                *result = strbuf_detach(&sb, NULL);
 697        }
 698        return ret;
 699}
 700
 701static void query_refspecs_multiple(struct refspec *rs,
 702                                    struct refspec_item *query,
 703                                    struct string_list *results)
 704{
 705        int i;
 706        int find_src = !query->src;
 707
 708        if (find_src && !query->dst)
 709                error("query_refspecs_multiple: need either src or dst");
 710
 711        for (i = 0; i < rs->nr; i++) {
 712                struct refspec_item *refspec = &rs->items[i];
 713                const char *key = find_src ? refspec->dst : refspec->src;
 714                const char *value = find_src ? refspec->src : refspec->dst;
 715                const char *needle = find_src ? query->dst : query->src;
 716                char **result = find_src ? &query->src : &query->dst;
 717
 718                if (!refspec->dst)
 719                        continue;
 720                if (refspec->pattern) {
 721                        if (match_name_with_pattern(key, needle, value, result))
 722                                string_list_append_nodup(results, *result);
 723                } else if (!strcmp(needle, key)) {
 724                        string_list_append(results, value);
 725                }
 726        }
 727}
 728
 729int query_refspecs(struct refspec_item *refs, int ref_count, struct refspec_item *query)
 730{
 731        int i;
 732        int find_src = !query->src;
 733        const char *needle = find_src ? query->dst : query->src;
 734        char **result = find_src ? &query->src : &query->dst;
 735
 736        if (find_src && !query->dst)
 737                return error("query_refspecs: need either src or dst");
 738
 739        for (i = 0; i < ref_count; i++) {
 740                struct refspec_item *refspec = &refs[i];
 741                const char *key = find_src ? refspec->dst : refspec->src;
 742                const char *value = find_src ? refspec->src : refspec->dst;
 743
 744                if (!refspec->dst)
 745                        continue;
 746                if (refspec->pattern) {
 747                        if (match_name_with_pattern(key, needle, value, result)) {
 748                                query->force = refspec->force;
 749                                return 0;
 750                        }
 751                } else if (!strcmp(needle, key)) {
 752                        *result = xstrdup(value);
 753                        query->force = refspec->force;
 754                        return 0;
 755                }
 756        }
 757        return -1;
 758}
 759
 760char *apply_refspecs(struct refspec_item *refspecs, int nr_refspec,
 761                     const char *name)
 762{
 763        struct refspec_item query;
 764
 765        memset(&query, 0, sizeof(struct refspec_item));
 766        query.src = (char *)name;
 767
 768        if (query_refspecs(refspecs, nr_refspec, &query))
 769                return NULL;
 770
 771        return query.dst;
 772}
 773
 774int remote_find_tracking(struct remote *remote, struct refspec_item *refspec)
 775{
 776        return query_refspecs(remote->fetch.items, remote->fetch.nr, refspec);
 777}
 778
 779static struct ref *alloc_ref_with_prefix(const char *prefix, size_t prefixlen,
 780                const char *name)
 781{
 782        size_t len = strlen(name);
 783        struct ref *ref = xcalloc(1, st_add4(sizeof(*ref), prefixlen, len, 1));
 784        memcpy(ref->name, prefix, prefixlen);
 785        memcpy(ref->name + prefixlen, name, len);
 786        return ref;
 787}
 788
 789struct ref *alloc_ref(const char *name)
 790{
 791        return alloc_ref_with_prefix("", 0, name);
 792}
 793
 794struct ref *copy_ref(const struct ref *ref)
 795{
 796        struct ref *cpy;
 797        size_t len;
 798        if (!ref)
 799                return NULL;
 800        len = st_add3(sizeof(struct ref), strlen(ref->name), 1);
 801        cpy = xmalloc(len);
 802        memcpy(cpy, ref, len);
 803        cpy->next = NULL;
 804        cpy->symref = xstrdup_or_null(ref->symref);
 805        cpy->remote_status = xstrdup_or_null(ref->remote_status);
 806        cpy->peer_ref = copy_ref(ref->peer_ref);
 807        return cpy;
 808}
 809
 810struct ref *copy_ref_list(const struct ref *ref)
 811{
 812        struct ref *ret = NULL;
 813        struct ref **tail = &ret;
 814        while (ref) {
 815                *tail = copy_ref(ref);
 816                ref = ref->next;
 817                tail = &((*tail)->next);
 818        }
 819        return ret;
 820}
 821
 822static void free_ref(struct ref *ref)
 823{
 824        if (!ref)
 825                return;
 826        free_ref(ref->peer_ref);
 827        free(ref->remote_status);
 828        free(ref->symref);
 829        free(ref);
 830}
 831
 832void free_refs(struct ref *ref)
 833{
 834        struct ref *next;
 835        while (ref) {
 836                next = ref->next;
 837                free_ref(ref);
 838                ref = next;
 839        }
 840}
 841
 842int ref_compare_name(const void *va, const void *vb)
 843{
 844        const struct ref *a = va, *b = vb;
 845        return strcmp(a->name, b->name);
 846}
 847
 848static void *ref_list_get_next(const void *a)
 849{
 850        return ((const struct ref *)a)->next;
 851}
 852
 853static void ref_list_set_next(void *a, void *next)
 854{
 855        ((struct ref *)a)->next = next;
 856}
 857
 858void sort_ref_list(struct ref **l, int (*cmp)(const void *, const void *))
 859{
 860        *l = llist_mergesort(*l, ref_list_get_next, ref_list_set_next, cmp);
 861}
 862
 863int count_refspec_match(const char *pattern,
 864                        struct ref *refs,
 865                        struct ref **matched_ref)
 866{
 867        int patlen = strlen(pattern);
 868        struct ref *matched_weak = NULL;
 869        struct ref *matched = NULL;
 870        int weak_match = 0;
 871        int match = 0;
 872
 873        for (weak_match = match = 0; refs; refs = refs->next) {
 874                char *name = refs->name;
 875                int namelen = strlen(name);
 876
 877                if (!refname_match(pattern, name))
 878                        continue;
 879
 880                /* A match is "weak" if it is with refs outside
 881                 * heads or tags, and did not specify the pattern
 882                 * in full (e.g. "refs/remotes/origin/master") or at
 883                 * least from the toplevel (e.g. "remotes/origin/master");
 884                 * otherwise "git push $URL master" would result in
 885                 * ambiguity between remotes/origin/master and heads/master
 886                 * at the remote site.
 887                 */
 888                if (namelen != patlen &&
 889                    patlen != namelen - 5 &&
 890                    !starts_with(name, "refs/heads/") &&
 891                    !starts_with(name, "refs/tags/")) {
 892                        /* We want to catch the case where only weak
 893                         * matches are found and there are multiple
 894                         * matches, and where more than one strong
 895                         * matches are found, as ambiguous.  One
 896                         * strong match with zero or more weak matches
 897                         * are acceptable as a unique match.
 898                         */
 899                        matched_weak = refs;
 900                        weak_match++;
 901                }
 902                else {
 903                        matched = refs;
 904                        match++;
 905                }
 906        }
 907        if (!matched) {
 908                if (matched_ref)
 909                        *matched_ref = matched_weak;
 910                return weak_match;
 911        }
 912        else {
 913                if (matched_ref)
 914                        *matched_ref = matched;
 915                return match;
 916        }
 917}
 918
 919static void tail_link_ref(struct ref *ref, struct ref ***tail)
 920{
 921        **tail = ref;
 922        while (ref->next)
 923                ref = ref->next;
 924        *tail = &ref->next;
 925}
 926
 927static struct ref *alloc_delete_ref(void)
 928{
 929        struct ref *ref = alloc_ref("(delete)");
 930        oidclr(&ref->new_oid);
 931        return ref;
 932}
 933
 934static int try_explicit_object_name(const char *name,
 935                                    struct ref **match)
 936{
 937        struct object_id oid;
 938
 939        if (!*name) {
 940                if (match)
 941                        *match = alloc_delete_ref();
 942                return 0;
 943        }
 944
 945        if (get_oid(name, &oid))
 946                return -1;
 947
 948        if (match) {
 949                *match = alloc_ref(name);
 950                oidcpy(&(*match)->new_oid, &oid);
 951        }
 952        return 0;
 953}
 954
 955static struct ref *make_linked_ref(const char *name, struct ref ***tail)
 956{
 957        struct ref *ret = alloc_ref(name);
 958        tail_link_ref(ret, tail);
 959        return ret;
 960}
 961
 962static char *guess_ref(const char *name, struct ref *peer)
 963{
 964        struct strbuf buf = STRBUF_INIT;
 965
 966        const char *r = resolve_ref_unsafe(peer->name, RESOLVE_REF_READING,
 967                                           NULL, NULL);
 968        if (!r)
 969                return NULL;
 970
 971        if (starts_with(r, "refs/heads/"))
 972                strbuf_addstr(&buf, "refs/heads/");
 973        else if (starts_with(r, "refs/tags/"))
 974                strbuf_addstr(&buf, "refs/tags/");
 975        else
 976                return NULL;
 977
 978        strbuf_addstr(&buf, name);
 979        return strbuf_detach(&buf, NULL);
 980}
 981
 982static int match_explicit_lhs(struct ref *src,
 983                              struct refspec_item *rs,
 984                              struct ref **match,
 985                              int *allocated_match)
 986{
 987        switch (count_refspec_match(rs->src, src, match)) {
 988        case 1:
 989                if (allocated_match)
 990                        *allocated_match = 0;
 991                return 0;
 992        case 0:
 993                /* The source could be in the get_sha1() format
 994                 * not a reference name.  :refs/other is a
 995                 * way to delete 'other' ref at the remote end.
 996                 */
 997                if (try_explicit_object_name(rs->src, match) < 0)
 998                        return error("src refspec %s does not match any.", rs->src);
 999                if (allocated_match)
1000                        *allocated_match = 1;
1001                return 0;
1002        default:
1003                return error("src refspec %s matches more than one.", rs->src);
1004        }
1005}
1006
1007static int match_explicit(struct ref *src, struct ref *dst,
1008                          struct ref ***dst_tail,
1009                          struct refspec_item *rs)
1010{
1011        struct ref *matched_src, *matched_dst;
1012        int allocated_src;
1013
1014        const char *dst_value = rs->dst;
1015        char *dst_guess;
1016
1017        if (rs->pattern || rs->matching)
1018                return 0;
1019
1020        matched_src = matched_dst = NULL;
1021        if (match_explicit_lhs(src, rs, &matched_src, &allocated_src) < 0)
1022                return -1;
1023
1024        if (!dst_value) {
1025                int flag;
1026
1027                dst_value = resolve_ref_unsafe(matched_src->name,
1028                                               RESOLVE_REF_READING,
1029                                               NULL, &flag);
1030                if (!dst_value ||
1031                    ((flag & REF_ISSYMREF) &&
1032                     !starts_with(dst_value, "refs/heads/")))
1033                        die("%s cannot be resolved to branch.",
1034                            matched_src->name);
1035        }
1036
1037        switch (count_refspec_match(dst_value, dst, &matched_dst)) {
1038        case 1:
1039                break;
1040        case 0:
1041                if (starts_with(dst_value, "refs/"))
1042                        matched_dst = make_linked_ref(dst_value, dst_tail);
1043                else if (is_null_oid(&matched_src->new_oid))
1044                        error("unable to delete '%s': remote ref does not exist",
1045                              dst_value);
1046                else if ((dst_guess = guess_ref(dst_value, matched_src))) {
1047                        matched_dst = make_linked_ref(dst_guess, dst_tail);
1048                        free(dst_guess);
1049                } else
1050                        error("unable to push to unqualified destination: %s\n"
1051                              "The destination refspec neither matches an "
1052                              "existing ref on the remote nor\n"
1053                              "begins with refs/, and we are unable to "
1054                              "guess a prefix based on the source ref.",
1055                              dst_value);
1056                break;
1057        default:
1058                matched_dst = NULL;
1059                error("dst refspec %s matches more than one.",
1060                      dst_value);
1061                break;
1062        }
1063        if (!matched_dst)
1064                return -1;
1065        if (matched_dst->peer_ref)
1066                return error("dst ref %s receives from more than one src.",
1067                      matched_dst->name);
1068        else {
1069                matched_dst->peer_ref = allocated_src ?
1070                                        matched_src :
1071                                        copy_ref(matched_src);
1072                matched_dst->force = rs->force;
1073        }
1074        return 0;
1075}
1076
1077static int match_explicit_refs(struct ref *src, struct ref *dst,
1078                               struct ref ***dst_tail, struct refspec_item *rs,
1079                               int rs_nr)
1080{
1081        int i, errs;
1082        for (i = errs = 0; i < rs_nr; i++)
1083                errs += match_explicit(src, dst, dst_tail, &rs[i]);
1084        return errs;
1085}
1086
1087static char *get_ref_match(const struct refspec_item *rs, int rs_nr, const struct ref *ref,
1088                int send_mirror, int direction, const struct refspec_item **ret_pat)
1089{
1090        const struct refspec_item *pat;
1091        char *name;
1092        int i;
1093        int matching_refs = -1;
1094        for (i = 0; i < rs_nr; i++) {
1095                if (rs[i].matching &&
1096                    (matching_refs == -1 || rs[i].force)) {
1097                        matching_refs = i;
1098                        continue;
1099                }
1100
1101                if (rs[i].pattern) {
1102                        const char *dst_side = rs[i].dst ? rs[i].dst : rs[i].src;
1103                        int match;
1104                        if (direction == FROM_SRC)
1105                                match = match_name_with_pattern(rs[i].src, ref->name, dst_side, &name);
1106                        else
1107                                match = match_name_with_pattern(dst_side, ref->name, rs[i].src, &name);
1108                        if (match) {
1109                                matching_refs = i;
1110                                break;
1111                        }
1112                }
1113        }
1114        if (matching_refs == -1)
1115                return NULL;
1116
1117        pat = rs + matching_refs;
1118        if (pat->matching) {
1119                /*
1120                 * "matching refs"; traditionally we pushed everything
1121                 * including refs outside refs/heads/ hierarchy, but
1122                 * that does not make much sense these days.
1123                 */
1124                if (!send_mirror && !starts_with(ref->name, "refs/heads/"))
1125                        return NULL;
1126                name = xstrdup(ref->name);
1127        }
1128        if (ret_pat)
1129                *ret_pat = pat;
1130        return name;
1131}
1132
1133static struct ref **tail_ref(struct ref **head)
1134{
1135        struct ref **tail = head;
1136        while (*tail)
1137                tail = &((*tail)->next);
1138        return tail;
1139}
1140
1141struct tips {
1142        struct commit **tip;
1143        int nr, alloc;
1144};
1145
1146static void add_to_tips(struct tips *tips, const struct object_id *oid)
1147{
1148        struct commit *commit;
1149
1150        if (is_null_oid(oid))
1151                return;
1152        commit = lookup_commit_reference_gently(oid, 1);
1153        if (!commit || (commit->object.flags & TMP_MARK))
1154                return;
1155        commit->object.flags |= TMP_MARK;
1156        ALLOC_GROW(tips->tip, tips->nr + 1, tips->alloc);
1157        tips->tip[tips->nr++] = commit;
1158}
1159
1160static void add_missing_tags(struct ref *src, struct ref **dst, struct ref ***dst_tail)
1161{
1162        struct string_list dst_tag = STRING_LIST_INIT_NODUP;
1163        struct string_list src_tag = STRING_LIST_INIT_NODUP;
1164        struct string_list_item *item;
1165        struct ref *ref;
1166        struct tips sent_tips;
1167
1168        /*
1169         * Collect everything we know they would have at the end of
1170         * this push, and collect all tags they have.
1171         */
1172        memset(&sent_tips, 0, sizeof(sent_tips));
1173        for (ref = *dst; ref; ref = ref->next) {
1174                if (ref->peer_ref &&
1175                    !is_null_oid(&ref->peer_ref->new_oid))
1176                        add_to_tips(&sent_tips, &ref->peer_ref->new_oid);
1177                else
1178                        add_to_tips(&sent_tips, &ref->old_oid);
1179                if (starts_with(ref->name, "refs/tags/"))
1180                        string_list_append(&dst_tag, ref->name);
1181        }
1182        clear_commit_marks_many(sent_tips.nr, sent_tips.tip, TMP_MARK);
1183
1184        string_list_sort(&dst_tag);
1185
1186        /* Collect tags they do not have. */
1187        for (ref = src; ref; ref = ref->next) {
1188                if (!starts_with(ref->name, "refs/tags/"))
1189                        continue; /* not a tag */
1190                if (string_list_has_string(&dst_tag, ref->name))
1191                        continue; /* they already have it */
1192                if (oid_object_info(&ref->new_oid, NULL) != OBJ_TAG)
1193                        continue; /* be conservative */
1194                item = string_list_append(&src_tag, ref->name);
1195                item->util = ref;
1196        }
1197        string_list_clear(&dst_tag, 0);
1198
1199        /*
1200         * At this point, src_tag lists tags that are missing from
1201         * dst, and sent_tips lists the tips we are pushing or those
1202         * that we know they already have. An element in the src_tag
1203         * that is an ancestor of any of the sent_tips needs to be
1204         * sent to the other side.
1205         */
1206        if (sent_tips.nr) {
1207                for_each_string_list_item(item, &src_tag) {
1208                        struct ref *ref = item->util;
1209                        struct ref *dst_ref;
1210                        struct commit *commit;
1211
1212                        if (is_null_oid(&ref->new_oid))
1213                                continue;
1214                        commit = lookup_commit_reference_gently(&ref->new_oid,
1215                                                                1);
1216                        if (!commit)
1217                                /* not pushing a commit, which is not an error */
1218                                continue;
1219
1220                        /*
1221                         * Is this tag, which they do not have, reachable from
1222                         * any of the commits we are sending?
1223                         */
1224                        if (!in_merge_bases_many(commit, sent_tips.nr, sent_tips.tip))
1225                                continue;
1226
1227                        /* Add it in */
1228                        dst_ref = make_linked_ref(ref->name, dst_tail);
1229                        oidcpy(&dst_ref->new_oid, &ref->new_oid);
1230                        dst_ref->peer_ref = copy_ref(ref);
1231                }
1232        }
1233        string_list_clear(&src_tag, 0);
1234        free(sent_tips.tip);
1235}
1236
1237struct ref *find_ref_by_name(const struct ref *list, const char *name)
1238{
1239        for ( ; list; list = list->next)
1240                if (!strcmp(list->name, name))
1241                        return (struct ref *)list;
1242        return NULL;
1243}
1244
1245static void prepare_ref_index(struct string_list *ref_index, struct ref *ref)
1246{
1247        for ( ; ref; ref = ref->next)
1248                string_list_append_nodup(ref_index, ref->name)->util = ref;
1249
1250        string_list_sort(ref_index);
1251}
1252
1253/*
1254 * Given only the set of local refs, sanity-check the set of push
1255 * refspecs. We can't catch all errors that match_push_refs would,
1256 * but we can catch some errors early before even talking to the
1257 * remote side.
1258 */
1259int check_push_refs(struct ref *src, int nr_refspec, const char **refspec_names)
1260{
1261        struct refspec refspec = REFSPEC_INIT_PUSH;
1262        int ret = 0;
1263        int i;
1264
1265        refspec_appendn(&refspec, refspec_names, nr_refspec);
1266
1267        for (i = 0; i < refspec.nr; i++) {
1268                struct refspec_item *rs = &refspec.items[i];
1269
1270                if (rs->pattern || rs->matching)
1271                        continue;
1272
1273                ret |= match_explicit_lhs(src, rs, NULL, NULL);
1274        }
1275
1276        refspec_clear(&refspec);
1277        return ret;
1278}
1279
1280/*
1281 * Given the set of refs the local repository has, the set of refs the
1282 * remote repository has, and the refspec used for push, determine
1283 * what remote refs we will update and with what value by setting
1284 * peer_ref (which object is being pushed) and force (if the push is
1285 * forced) in elements of "dst". The function may add new elements to
1286 * dst (e.g. pushing to a new branch, done in match_explicit_refs).
1287 */
1288int match_push_refs(struct ref *src, struct ref **dst,
1289                    int nr_refspec, const char **refspec, int flags)
1290{
1291        struct refspec rs = REFSPEC_INIT_PUSH;
1292        int send_all = flags & MATCH_REFS_ALL;
1293        int send_mirror = flags & MATCH_REFS_MIRROR;
1294        int send_prune = flags & MATCH_REFS_PRUNE;
1295        int errs;
1296        static const char *default_refspec[] = { ":", NULL };
1297        struct ref *ref, **dst_tail = tail_ref(dst);
1298        struct string_list dst_ref_index = STRING_LIST_INIT_NODUP;
1299
1300        if (!nr_refspec) {
1301                nr_refspec = 1;
1302                refspec = default_refspec;
1303        }
1304        refspec_appendn(&rs, refspec, nr_refspec);
1305        errs = match_explicit_refs(src, *dst, &dst_tail, rs.items, rs.nr);
1306
1307        /* pick the remainder */
1308        for (ref = src; ref; ref = ref->next) {
1309                struct string_list_item *dst_item;
1310                struct ref *dst_peer;
1311                const struct refspec_item *pat = NULL;
1312                char *dst_name;
1313
1314                dst_name = get_ref_match(rs.items, rs.nr, ref, send_mirror, FROM_SRC, &pat);
1315                if (!dst_name)
1316                        continue;
1317
1318                if (!dst_ref_index.nr)
1319                        prepare_ref_index(&dst_ref_index, *dst);
1320
1321                dst_item = string_list_lookup(&dst_ref_index, dst_name);
1322                dst_peer = dst_item ? dst_item->util : NULL;
1323                if (dst_peer) {
1324                        if (dst_peer->peer_ref)
1325                                /* We're already sending something to this ref. */
1326                                goto free_name;
1327                } else {
1328                        if (pat->matching && !(send_all || send_mirror))
1329                                /*
1330                                 * Remote doesn't have it, and we have no
1331                                 * explicit pattern, and we don't have
1332                                 * --all or --mirror.
1333                                 */
1334                                goto free_name;
1335
1336                        /* Create a new one and link it */
1337                        dst_peer = make_linked_ref(dst_name, &dst_tail);
1338                        oidcpy(&dst_peer->new_oid, &ref->new_oid);
1339                        string_list_insert(&dst_ref_index,
1340                                dst_peer->name)->util = dst_peer;
1341                }
1342                dst_peer->peer_ref = copy_ref(ref);
1343                dst_peer->force = pat->force;
1344        free_name:
1345                free(dst_name);
1346        }
1347
1348        string_list_clear(&dst_ref_index, 0);
1349
1350        if (flags & MATCH_REFS_FOLLOW_TAGS)
1351                add_missing_tags(src, dst, &dst_tail);
1352
1353        if (send_prune) {
1354                struct string_list src_ref_index = STRING_LIST_INIT_NODUP;
1355                /* check for missing refs on the remote */
1356                for (ref = *dst; ref; ref = ref->next) {
1357                        char *src_name;
1358
1359                        if (ref->peer_ref)
1360                                /* We're already sending something to this ref. */
1361                                continue;
1362
1363                        src_name = get_ref_match(rs.items, rs.nr, ref, send_mirror, FROM_DST, NULL);
1364                        if (src_name) {
1365                                if (!src_ref_index.nr)
1366                                        prepare_ref_index(&src_ref_index, src);
1367                                if (!string_list_has_string(&src_ref_index,
1368                                            src_name))
1369                                        ref->peer_ref = alloc_delete_ref();
1370                                free(src_name);
1371                        }
1372                }
1373                string_list_clear(&src_ref_index, 0);
1374        }
1375
1376        refspec_clear(&rs);
1377
1378        if (errs)
1379                return -1;
1380        return 0;
1381}
1382
1383void set_ref_status_for_push(struct ref *remote_refs, int send_mirror,
1384                             int force_update)
1385{
1386        struct ref *ref;
1387
1388        for (ref = remote_refs; ref; ref = ref->next) {
1389                int force_ref_update = ref->force || force_update;
1390                int reject_reason = 0;
1391
1392                if (ref->peer_ref)
1393                        oidcpy(&ref->new_oid, &ref->peer_ref->new_oid);
1394                else if (!send_mirror)
1395                        continue;
1396
1397                ref->deletion = is_null_oid(&ref->new_oid);
1398                if (!ref->deletion &&
1399                        !oidcmp(&ref->old_oid, &ref->new_oid)) {
1400                        ref->status = REF_STATUS_UPTODATE;
1401                        continue;
1402                }
1403
1404                /*
1405                 * If the remote ref has moved and is now different
1406                 * from what we expect, reject any push.
1407                 *
1408                 * It also is an error if the user told us to check
1409                 * with the remote-tracking branch to find the value
1410                 * to expect, but we did not have such a tracking
1411                 * branch.
1412                 */
1413                if (ref->expect_old_sha1) {
1414                        if (oidcmp(&ref->old_oid, &ref->old_oid_expect))
1415                                reject_reason = REF_STATUS_REJECT_STALE;
1416                        else
1417                                /* If the ref isn't stale then force the update. */
1418                                force_ref_update = 1;
1419                }
1420
1421                /*
1422                 * If the update isn't already rejected then check
1423                 * the usual "must fast-forward" rules.
1424                 *
1425                 * Decide whether an individual refspec A:B can be
1426                 * pushed.  The push will succeed if any of the
1427                 * following are true:
1428                 *
1429                 * (1) the remote reference B does not exist
1430                 *
1431                 * (2) the remote reference B is being removed (i.e.,
1432                 *     pushing :B where no source is specified)
1433                 *
1434                 * (3) the destination is not under refs/tags/, and
1435                 *     if the old and new value is a commit, the new
1436                 *     is a descendant of the old.
1437                 *
1438                 * (4) it is forced using the +A:B notation, or by
1439                 *     passing the --force argument
1440                 */
1441
1442                if (!reject_reason && !ref->deletion && !is_null_oid(&ref->old_oid)) {
1443                        if (starts_with(ref->name, "refs/tags/"))
1444                                reject_reason = REF_STATUS_REJECT_ALREADY_EXISTS;
1445                        else if (!has_object_file(&ref->old_oid))
1446                                reject_reason = REF_STATUS_REJECT_FETCH_FIRST;
1447                        else if (!lookup_commit_reference_gently(&ref->old_oid, 1) ||
1448                                 !lookup_commit_reference_gently(&ref->new_oid, 1))
1449                                reject_reason = REF_STATUS_REJECT_NEEDS_FORCE;
1450                        else if (!ref_newer(&ref->new_oid, &ref->old_oid))
1451                                reject_reason = REF_STATUS_REJECT_NONFASTFORWARD;
1452                }
1453
1454                /*
1455                 * "--force" will defeat any rejection implemented
1456                 * by the rules above.
1457                 */
1458                if (!force_ref_update)
1459                        ref->status = reject_reason;
1460                else if (reject_reason)
1461                        ref->forced_update = 1;
1462        }
1463}
1464
1465static void set_merge(struct branch *ret)
1466{
1467        struct remote *remote;
1468        char *ref;
1469        struct object_id oid;
1470        int i;
1471
1472        if (!ret)
1473                return; /* no branch */
1474        if (ret->merge)
1475                return; /* already run */
1476        if (!ret->remote_name || !ret->merge_nr) {
1477                /*
1478                 * no merge config; let's make sure we don't confuse callers
1479                 * with a non-zero merge_nr but a NULL merge
1480                 */
1481                ret->merge_nr = 0;
1482                return;
1483        }
1484
1485        remote = remote_get(ret->remote_name);
1486
1487        ret->merge = xcalloc(ret->merge_nr, sizeof(*ret->merge));
1488        for (i = 0; i < ret->merge_nr; i++) {
1489                ret->merge[i] = xcalloc(1, sizeof(**ret->merge));
1490                ret->merge[i]->src = xstrdup(ret->merge_name[i]);
1491                if (!remote_find_tracking(remote, ret->merge[i]) ||
1492                    strcmp(ret->remote_name, "."))
1493                        continue;
1494                if (dwim_ref(ret->merge_name[i], strlen(ret->merge_name[i]),
1495                             &oid, &ref) == 1)
1496                        ret->merge[i]->dst = ref;
1497                else
1498                        ret->merge[i]->dst = xstrdup(ret->merge_name[i]);
1499        }
1500}
1501
1502struct branch *branch_get(const char *name)
1503{
1504        struct branch *ret;
1505
1506        read_config();
1507        if (!name || !*name || !strcmp(name, "HEAD"))
1508                ret = current_branch;
1509        else
1510                ret = make_branch(name, 0);
1511        set_merge(ret);
1512        return ret;
1513}
1514
1515int branch_has_merge_config(struct branch *branch)
1516{
1517        return branch && !!branch->merge;
1518}
1519
1520int branch_merge_matches(struct branch *branch,
1521                                 int i,
1522                                 const char *refname)
1523{
1524        if (!branch || i < 0 || i >= branch->merge_nr)
1525                return 0;
1526        return refname_match(branch->merge[i]->src, refname);
1527}
1528
1529__attribute__((format (printf,2,3)))
1530static const char *error_buf(struct strbuf *err, const char *fmt, ...)
1531{
1532        if (err) {
1533                va_list ap;
1534                va_start(ap, fmt);
1535                strbuf_vaddf(err, fmt, ap);
1536                va_end(ap);
1537        }
1538        return NULL;
1539}
1540
1541const char *branch_get_upstream(struct branch *branch, struct strbuf *err)
1542{
1543        if (!branch)
1544                return error_buf(err, _("HEAD does not point to a branch"));
1545
1546        if (!branch->merge || !branch->merge[0]) {
1547                /*
1548                 * no merge config; is it because the user didn't define any,
1549                 * or because it is not a real branch, and get_branch
1550                 * auto-vivified it?
1551                 */
1552                if (!ref_exists(branch->refname))
1553                        return error_buf(err, _("no such branch: '%s'"),
1554                                         branch->name);
1555                return error_buf(err,
1556                                 _("no upstream configured for branch '%s'"),
1557                                 branch->name);
1558        }
1559
1560        if (!branch->merge[0]->dst)
1561                return error_buf(err,
1562                                 _("upstream branch '%s' not stored as a remote-tracking branch"),
1563                                 branch->merge[0]->src);
1564
1565        return branch->merge[0]->dst;
1566}
1567
1568static const char *tracking_for_push_dest(struct remote *remote,
1569                                          const char *refname,
1570                                          struct strbuf *err)
1571{
1572        char *ret;
1573
1574        ret = apply_refspecs(remote->fetch.items, remote->fetch.nr, refname);
1575        if (!ret)
1576                return error_buf(err,
1577                                 _("push destination '%s' on remote '%s' has no local tracking branch"),
1578                                 refname, remote->name);
1579        return ret;
1580}
1581
1582static const char *branch_get_push_1(struct branch *branch, struct strbuf *err)
1583{
1584        struct remote *remote;
1585
1586        remote = remote_get(pushremote_for_branch(branch, NULL));
1587        if (!remote)
1588                return error_buf(err,
1589                                 _("branch '%s' has no remote for pushing"),
1590                                 branch->name);
1591
1592        if (remote->push.nr) {
1593                char *dst;
1594                const char *ret;
1595
1596                dst = apply_refspecs(remote->push.items, remote->push.nr,
1597                                     branch->refname);
1598                if (!dst)
1599                        return error_buf(err,
1600                                         _("push refspecs for '%s' do not include '%s'"),
1601                                         remote->name, branch->name);
1602
1603                ret = tracking_for_push_dest(remote, dst, err);
1604                free(dst);
1605                return ret;
1606        }
1607
1608        if (remote->mirror)
1609                return tracking_for_push_dest(remote, branch->refname, err);
1610
1611        switch (push_default) {
1612        case PUSH_DEFAULT_NOTHING:
1613                return error_buf(err, _("push has no destination (push.default is 'nothing')"));
1614
1615        case PUSH_DEFAULT_MATCHING:
1616        case PUSH_DEFAULT_CURRENT:
1617                return tracking_for_push_dest(remote, branch->refname, err);
1618
1619        case PUSH_DEFAULT_UPSTREAM:
1620                return branch_get_upstream(branch, err);
1621
1622        case PUSH_DEFAULT_UNSPECIFIED:
1623        case PUSH_DEFAULT_SIMPLE:
1624                {
1625                        const char *up, *cur;
1626
1627                        up = branch_get_upstream(branch, err);
1628                        if (!up)
1629                                return NULL;
1630                        cur = tracking_for_push_dest(remote, branch->refname, err);
1631                        if (!cur)
1632                                return NULL;
1633                        if (strcmp(cur, up))
1634                                return error_buf(err,
1635                                                 _("cannot resolve 'simple' push to a single destination"));
1636                        return cur;
1637                }
1638        }
1639
1640        die("BUG: unhandled push situation");
1641}
1642
1643const char *branch_get_push(struct branch *branch, struct strbuf *err)
1644{
1645        if (!branch)
1646                return error_buf(err, _("HEAD does not point to a branch"));
1647
1648        if (!branch->push_tracking_ref)
1649                branch->push_tracking_ref = branch_get_push_1(branch, err);
1650        return branch->push_tracking_ref;
1651}
1652
1653static int ignore_symref_update(const char *refname)
1654{
1655        int flag;
1656
1657        if (!resolve_ref_unsafe(refname, 0, NULL, &flag))
1658                return 0; /* non-existing refs are OK */
1659        return (flag & REF_ISSYMREF);
1660}
1661
1662/*
1663 * Create and return a list of (struct ref) consisting of copies of
1664 * each remote_ref that matches refspec.  refspec must be a pattern.
1665 * Fill in the copies' peer_ref to describe the local tracking refs to
1666 * which they map.  Omit any references that would map to an existing
1667 * local symbolic ref.
1668 */
1669static struct ref *get_expanded_map(const struct ref *remote_refs,
1670                                    const struct refspec_item *refspec)
1671{
1672        const struct ref *ref;
1673        struct ref *ret = NULL;
1674        struct ref **tail = &ret;
1675
1676        for (ref = remote_refs; ref; ref = ref->next) {
1677                char *expn_name = NULL;
1678
1679                if (strchr(ref->name, '^'))
1680                        continue; /* a dereference item */
1681                if (match_name_with_pattern(refspec->src, ref->name,
1682                                            refspec->dst, &expn_name) &&
1683                    !ignore_symref_update(expn_name)) {
1684                        struct ref *cpy = copy_ref(ref);
1685
1686                        cpy->peer_ref = alloc_ref(expn_name);
1687                        if (refspec->force)
1688                                cpy->peer_ref->force = 1;
1689                        *tail = cpy;
1690                        tail = &cpy->next;
1691                }
1692                free(expn_name);
1693        }
1694
1695        return ret;
1696}
1697
1698static const struct ref *find_ref_by_name_abbrev(const struct ref *refs, const char *name)
1699{
1700        const struct ref *ref;
1701        for (ref = refs; ref; ref = ref->next) {
1702                if (refname_match(name, ref->name))
1703                        return ref;
1704        }
1705        return NULL;
1706}
1707
1708struct ref *get_remote_ref(const struct ref *remote_refs, const char *name)
1709{
1710        const struct ref *ref = find_ref_by_name_abbrev(remote_refs, name);
1711
1712        if (!ref)
1713                return NULL;
1714
1715        return copy_ref(ref);
1716}
1717
1718static struct ref *get_local_ref(const char *name)
1719{
1720        if (!name || name[0] == '\0')
1721                return NULL;
1722
1723        if (starts_with(name, "refs/"))
1724                return alloc_ref(name);
1725
1726        if (starts_with(name, "heads/") ||
1727            starts_with(name, "tags/") ||
1728            starts_with(name, "remotes/"))
1729                return alloc_ref_with_prefix("refs/", 5, name);
1730
1731        return alloc_ref_with_prefix("refs/heads/", 11, name);
1732}
1733
1734int get_fetch_map(const struct ref *remote_refs,
1735                  const struct refspec_item *refspec,
1736                  struct ref ***tail,
1737                  int missing_ok)
1738{
1739        struct ref *ref_map, **rmp;
1740
1741        if (refspec->pattern) {
1742                ref_map = get_expanded_map(remote_refs, refspec);
1743        } else {
1744                const char *name = refspec->src[0] ? refspec->src : "HEAD";
1745
1746                if (refspec->exact_sha1) {
1747                        ref_map = alloc_ref(name);
1748                        get_oid_hex(name, &ref_map->old_oid);
1749                } else {
1750                        ref_map = get_remote_ref(remote_refs, name);
1751                }
1752                if (!missing_ok && !ref_map)
1753                        die("Couldn't find remote ref %s", name);
1754                if (ref_map) {
1755                        ref_map->peer_ref = get_local_ref(refspec->dst);
1756                        if (ref_map->peer_ref && refspec->force)
1757                                ref_map->peer_ref->force = 1;
1758                }
1759        }
1760
1761        for (rmp = &ref_map; *rmp; ) {
1762                if ((*rmp)->peer_ref) {
1763                        if (!starts_with((*rmp)->peer_ref->name, "refs/") ||
1764                            check_refname_format((*rmp)->peer_ref->name, 0)) {
1765                                struct ref *ignore = *rmp;
1766                                error("* Ignoring funny ref '%s' locally",
1767                                      (*rmp)->peer_ref->name);
1768                                *rmp = (*rmp)->next;
1769                                free(ignore->peer_ref);
1770                                free(ignore);
1771                                continue;
1772                        }
1773                }
1774                rmp = &((*rmp)->next);
1775        }
1776
1777        if (ref_map)
1778                tail_link_ref(ref_map, tail);
1779
1780        return 0;
1781}
1782
1783int resolve_remote_symref(struct ref *ref, struct ref *list)
1784{
1785        if (!ref->symref)
1786                return 0;
1787        for (; list; list = list->next)
1788                if (!strcmp(ref->symref, list->name)) {
1789                        oidcpy(&ref->old_oid, &list->old_oid);
1790                        return 0;
1791                }
1792        return 1;
1793}
1794
1795static void unmark_and_free(struct commit_list *list, unsigned int mark)
1796{
1797        while (list) {
1798                struct commit *commit = pop_commit(&list);
1799                commit->object.flags &= ~mark;
1800        }
1801}
1802
1803int ref_newer(const struct object_id *new_oid, const struct object_id *old_oid)
1804{
1805        struct object *o;
1806        struct commit *old_commit, *new_commit;
1807        struct commit_list *list, *used;
1808        int found = 0;
1809
1810        /*
1811         * Both new_commit and old_commit must be commit-ish and new_commit is descendant of
1812         * old_commit.  Otherwise we require --force.
1813         */
1814        o = deref_tag(parse_object(old_oid), NULL, 0);
1815        if (!o || o->type != OBJ_COMMIT)
1816                return 0;
1817        old_commit = (struct commit *) o;
1818
1819        o = deref_tag(parse_object(new_oid), NULL, 0);
1820        if (!o || o->type != OBJ_COMMIT)
1821                return 0;
1822        new_commit = (struct commit *) o;
1823
1824        if (parse_commit(new_commit) < 0)
1825                return 0;
1826
1827        used = list = NULL;
1828        commit_list_insert(new_commit, &list);
1829        while (list) {
1830                new_commit = pop_most_recent_commit(&list, TMP_MARK);
1831                commit_list_insert(new_commit, &used);
1832                if (new_commit == old_commit) {
1833                        found = 1;
1834                        break;
1835                }
1836        }
1837        unmark_and_free(list, TMP_MARK);
1838        unmark_and_free(used, TMP_MARK);
1839        return found;
1840}
1841
1842/*
1843 * Lookup the upstream branch for the given branch and if present, optionally
1844 * compute the commit ahead/behind values for the pair.
1845 *
1846 * If abf is AHEAD_BEHIND_FULL, compute the full ahead/behind and return the
1847 * counts in *num_ours and *num_theirs.  If abf is AHEAD_BEHIND_QUICK, skip
1848 * the (potentially expensive) a/b computation (*num_ours and *num_theirs are
1849 * set to zero).
1850 *
1851 * The name of the upstream branch (or NULL if no upstream is defined) is
1852 * returned via *upstream_name, if it is not itself NULL.
1853 *
1854 * Returns -1 if num_ours and num_theirs could not be filled in (e.g., no
1855 * upstream defined, or ref does not exist).  Returns 0 if the commits are
1856 * identical.  Returns 1 if commits are different.
1857 */
1858int stat_tracking_info(struct branch *branch, int *num_ours, int *num_theirs,
1859                       const char **upstream_name, enum ahead_behind_flags abf)
1860{
1861        struct object_id oid;
1862        struct commit *ours, *theirs;
1863        struct rev_info revs;
1864        const char *base;
1865        struct argv_array argv = ARGV_ARRAY_INIT;
1866
1867        /* Cannot stat unless we are marked to build on top of somebody else. */
1868        base = branch_get_upstream(branch, NULL);
1869        if (upstream_name)
1870                *upstream_name = base;
1871        if (!base)
1872                return -1;
1873
1874        /* Cannot stat if what we used to build on no longer exists */
1875        if (read_ref(base, &oid))
1876                return -1;
1877        theirs = lookup_commit_reference(&oid);
1878        if (!theirs)
1879                return -1;
1880
1881        if (read_ref(branch->refname, &oid))
1882                return -1;
1883        ours = lookup_commit_reference(&oid);
1884        if (!ours)
1885                return -1;
1886
1887        *num_theirs = *num_ours = 0;
1888
1889        /* are we the same? */
1890        if (theirs == ours)
1891                return 0;
1892        if (abf == AHEAD_BEHIND_QUICK)
1893                return 1;
1894        if (abf != AHEAD_BEHIND_FULL)
1895                BUG("stat_tracking_info: invalid abf '%d'", abf);
1896
1897        /* Run "rev-list --left-right ours...theirs" internally... */
1898        argv_array_push(&argv, ""); /* ignored */
1899        argv_array_push(&argv, "--left-right");
1900        argv_array_pushf(&argv, "%s...%s",
1901                         oid_to_hex(&ours->object.oid),
1902                         oid_to_hex(&theirs->object.oid));
1903        argv_array_push(&argv, "--");
1904
1905        init_revisions(&revs, NULL);
1906        setup_revisions(argv.argc, argv.argv, &revs, NULL);
1907        if (prepare_revision_walk(&revs))
1908                die("revision walk setup failed");
1909
1910        /* ... and count the commits on each side. */
1911        while (1) {
1912                struct commit *c = get_revision(&revs);
1913                if (!c)
1914                        break;
1915                if (c->object.flags & SYMMETRIC_LEFT)
1916                        (*num_ours)++;
1917                else
1918                        (*num_theirs)++;
1919        }
1920
1921        /* clear object flags smudged by the above traversal */
1922        clear_commit_marks(ours, ALL_REV_FLAGS);
1923        clear_commit_marks(theirs, ALL_REV_FLAGS);
1924
1925        argv_array_clear(&argv);
1926        return 1;
1927}
1928
1929/*
1930 * Return true when there is anything to report, otherwise false.
1931 */
1932int format_tracking_info(struct branch *branch, struct strbuf *sb,
1933                         enum ahead_behind_flags abf)
1934{
1935        int ours, theirs, sti;
1936        const char *full_base;
1937        char *base;
1938        int upstream_is_gone = 0;
1939
1940        sti = stat_tracking_info(branch, &ours, &theirs, &full_base, abf);
1941        if (sti < 0) {
1942                if (!full_base)
1943                        return 0;
1944                upstream_is_gone = 1;
1945        }
1946
1947        base = shorten_unambiguous_ref(full_base, 0);
1948        if (upstream_is_gone) {
1949                strbuf_addf(sb,
1950                        _("Your branch is based on '%s', but the upstream is gone.\n"),
1951                        base);
1952                if (advice_status_hints)
1953                        strbuf_addstr(sb,
1954                                _("  (use \"git branch --unset-upstream\" to fixup)\n"));
1955        } else if (!sti) {
1956                strbuf_addf(sb,
1957                        _("Your branch is up to date with '%s'.\n"),
1958                        base);
1959        } else if (abf == AHEAD_BEHIND_QUICK) {
1960                strbuf_addf(sb,
1961                            _("Your branch and '%s' refer to different commits.\n"),
1962                            base);
1963                if (advice_status_hints)
1964                        strbuf_addf(sb, _("  (use \"%s\" for details)\n"),
1965                                    "git status --ahead-behind");
1966        } else if (!theirs) {
1967                strbuf_addf(sb,
1968                        Q_("Your branch is ahead of '%s' by %d commit.\n",
1969                           "Your branch is ahead of '%s' by %d commits.\n",
1970                           ours),
1971                        base, ours);
1972                if (advice_status_hints)
1973                        strbuf_addstr(sb,
1974                                _("  (use \"git push\" to publish your local commits)\n"));
1975        } else if (!ours) {
1976                strbuf_addf(sb,
1977                        Q_("Your branch is behind '%s' by %d commit, "
1978                               "and can be fast-forwarded.\n",
1979                           "Your branch is behind '%s' by %d commits, "
1980                               "and can be fast-forwarded.\n",
1981                           theirs),
1982                        base, theirs);
1983                if (advice_status_hints)
1984                        strbuf_addstr(sb,
1985                                _("  (use \"git pull\" to update your local branch)\n"));
1986        } else {
1987                strbuf_addf(sb,
1988                        Q_("Your branch and '%s' have diverged,\n"
1989                               "and have %d and %d different commit each, "
1990                               "respectively.\n",
1991                           "Your branch and '%s' have diverged,\n"
1992                               "and have %d and %d different commits each, "
1993                               "respectively.\n",
1994                           ours + theirs),
1995                        base, ours, theirs);
1996                if (advice_status_hints)
1997                        strbuf_addstr(sb,
1998                                _("  (use \"git pull\" to merge the remote branch into yours)\n"));
1999        }
2000        free(base);
2001        return 1;
2002}
2003
2004static int one_local_ref(const char *refname, const struct object_id *oid,
2005                         int flag, void *cb_data)
2006{
2007        struct ref ***local_tail = cb_data;
2008        struct ref *ref;
2009
2010        /* we already know it starts with refs/ to get here */
2011        if (check_refname_format(refname + 5, 0))
2012                return 0;
2013
2014        ref = alloc_ref(refname);
2015        oidcpy(&ref->new_oid, oid);
2016        **local_tail = ref;
2017        *local_tail = &ref->next;
2018        return 0;
2019}
2020
2021struct ref *get_local_heads(void)
2022{
2023        struct ref *local_refs = NULL, **local_tail = &local_refs;
2024
2025        for_each_ref(one_local_ref, &local_tail);
2026        return local_refs;
2027}
2028
2029struct ref *guess_remote_head(const struct ref *head,
2030                              const struct ref *refs,
2031                              int all)
2032{
2033        const struct ref *r;
2034        struct ref *list = NULL;
2035        struct ref **tail = &list;
2036
2037        if (!head)
2038                return NULL;
2039
2040        /*
2041         * Some transports support directly peeking at
2042         * where HEAD points; if that is the case, then
2043         * we don't have to guess.
2044         */
2045        if (head->symref)
2046                return copy_ref(find_ref_by_name(refs, head->symref));
2047
2048        /* If refs/heads/master could be right, it is. */
2049        if (!all) {
2050                r = find_ref_by_name(refs, "refs/heads/master");
2051                if (r && !oidcmp(&r->old_oid, &head->old_oid))
2052                        return copy_ref(r);
2053        }
2054
2055        /* Look for another ref that points there */
2056        for (r = refs; r; r = r->next) {
2057                if (r != head &&
2058                    starts_with(r->name, "refs/heads/") &&
2059                    !oidcmp(&r->old_oid, &head->old_oid)) {
2060                        *tail = copy_ref(r);
2061                        tail = &((*tail)->next);
2062                        if (!all)
2063                                break;
2064                }
2065        }
2066
2067        return list;
2068}
2069
2070struct stale_heads_info {
2071        struct string_list *ref_names;
2072        struct ref **stale_refs_tail;
2073        struct refspec *rs;
2074};
2075
2076static int get_stale_heads_cb(const char *refname, const struct object_id *oid,
2077                              int flags, void *cb_data)
2078{
2079        struct stale_heads_info *info = cb_data;
2080        struct string_list matches = STRING_LIST_INIT_DUP;
2081        struct refspec_item query;
2082        int i, stale = 1;
2083        memset(&query, 0, sizeof(struct refspec_item));
2084        query.dst = (char *)refname;
2085
2086        query_refspecs_multiple(info->rs, &query, &matches);
2087        if (matches.nr == 0)
2088                goto clean_exit; /* No matches */
2089
2090        /*
2091         * If we did find a suitable refspec and it's not a symref and
2092         * it's not in the list of refs that currently exist in that
2093         * remote, we consider it to be stale. In order to deal with
2094         * overlapping refspecs, we need to go over all of the
2095         * matching refs.
2096         */
2097        if (flags & REF_ISSYMREF)
2098                goto clean_exit;
2099
2100        for (i = 0; stale && i < matches.nr; i++)
2101                if (string_list_has_string(info->ref_names, matches.items[i].string))
2102                        stale = 0;
2103
2104        if (stale) {
2105                struct ref *ref = make_linked_ref(refname, &info->stale_refs_tail);
2106                oidcpy(&ref->new_oid, oid);
2107        }
2108
2109clean_exit:
2110        string_list_clear(&matches, 0);
2111        return 0;
2112}
2113
2114struct ref *get_stale_heads(struct refspec *rs, struct ref *fetch_map)
2115{
2116        struct ref *ref, *stale_refs = NULL;
2117        struct string_list ref_names = STRING_LIST_INIT_NODUP;
2118        struct stale_heads_info info;
2119
2120        info.ref_names = &ref_names;
2121        info.stale_refs_tail = &stale_refs;
2122        info.rs = rs;
2123        for (ref = fetch_map; ref; ref = ref->next)
2124                string_list_append(&ref_names, ref->name);
2125        string_list_sort(&ref_names);
2126        for_each_ref(get_stale_heads_cb, &info);
2127        string_list_clear(&ref_names, 0);
2128        return stale_refs;
2129}
2130
2131/*
2132 * Compare-and-swap
2133 */
2134static void clear_cas_option(struct push_cas_option *cas)
2135{
2136        int i;
2137
2138        for (i = 0; i < cas->nr; i++)
2139                free(cas->entry[i].refname);
2140        free(cas->entry);
2141        memset(cas, 0, sizeof(*cas));
2142}
2143
2144static struct push_cas *add_cas_entry(struct push_cas_option *cas,
2145                                      const char *refname,
2146                                      size_t refnamelen)
2147{
2148        struct push_cas *entry;
2149        ALLOC_GROW(cas->entry, cas->nr + 1, cas->alloc);
2150        entry = &cas->entry[cas->nr++];
2151        memset(entry, 0, sizeof(*entry));
2152        entry->refname = xmemdupz(refname, refnamelen);
2153        return entry;
2154}
2155
2156static int parse_push_cas_option(struct push_cas_option *cas, const char *arg, int unset)
2157{
2158        const char *colon;
2159        struct push_cas *entry;
2160
2161        if (unset) {
2162                /* "--no-<option>" */
2163                clear_cas_option(cas);
2164                return 0;
2165        }
2166
2167        if (!arg) {
2168                /* just "--<option>" */
2169                cas->use_tracking_for_rest = 1;
2170                return 0;
2171        }
2172
2173        /* "--<option>=refname" or "--<option>=refname:value" */
2174        colon = strchrnul(arg, ':');
2175        entry = add_cas_entry(cas, arg, colon - arg);
2176        if (!*colon)
2177                entry->use_tracking = 1;
2178        else if (!colon[1])
2179                oidclr(&entry->expect);
2180        else if (get_oid(colon + 1, &entry->expect))
2181                return error("cannot parse expected object name '%s'", colon + 1);
2182        return 0;
2183}
2184
2185int parseopt_push_cas_option(const struct option *opt, const char *arg, int unset)
2186{
2187        return parse_push_cas_option(opt->value, arg, unset);
2188}
2189
2190int is_empty_cas(const struct push_cas_option *cas)
2191{
2192        return !cas->use_tracking_for_rest && !cas->nr;
2193}
2194
2195/*
2196 * Look at remote.fetch refspec and see if we have a remote
2197 * tracking branch for the refname there.  Fill its current
2198 * value in sha1[].
2199 * If we cannot do so, return negative to signal an error.
2200 */
2201static int remote_tracking(struct remote *remote, const char *refname,
2202                           struct object_id *oid)
2203{
2204        char *dst;
2205
2206        dst = apply_refspecs(remote->fetch.items, remote->fetch.nr, refname);
2207        if (!dst)
2208                return -1; /* no tracking ref for refname at remote */
2209        if (read_ref(dst, oid))
2210                return -1; /* we know what the tracking ref is but we cannot read it */
2211        return 0;
2212}
2213
2214static void apply_cas(struct push_cas_option *cas,
2215                      struct remote *remote,
2216                      struct ref *ref)
2217{
2218        int i;
2219
2220        /* Find an explicit --<option>=<name>[:<value>] entry */
2221        for (i = 0; i < cas->nr; i++) {
2222                struct push_cas *entry = &cas->entry[i];
2223                if (!refname_match(entry->refname, ref->name))
2224                        continue;
2225                ref->expect_old_sha1 = 1;
2226                if (!entry->use_tracking)
2227                        oidcpy(&ref->old_oid_expect, &entry->expect);
2228                else if (remote_tracking(remote, ref->name, &ref->old_oid_expect))
2229                        oidclr(&ref->old_oid_expect);
2230                return;
2231        }
2232
2233        /* Are we using "--<option>" to cover all? */
2234        if (!cas->use_tracking_for_rest)
2235                return;
2236
2237        ref->expect_old_sha1 = 1;
2238        if (remote_tracking(remote, ref->name, &ref->old_oid_expect))
2239                oidclr(&ref->old_oid_expect);
2240}
2241
2242void apply_push_cas(struct push_cas_option *cas,
2243                    struct remote *remote,
2244                    struct ref *remote_refs)
2245{
2246        struct ref *ref;
2247        for (ref = remote_refs; ref; ref = ref->next)
2248                apply_cas(cas, remote, ref);
2249}