transport-helper.con commit t5533: test "push --force-with-lease" (d887cc1)
   1#include "cache.h"
   2#include "transport.h"
   3#include "quote.h"
   4#include "run-command.h"
   5#include "commit.h"
   6#include "diff.h"
   7#include "revision.h"
   8#include "quote.h"
   9#include "remote.h"
  10#include "string-list.h"
  11#include "thread-utils.h"
  12#include "sigchain.h"
  13#include "argv-array.h"
  14#include "refs.h"
  15
  16static int debug;
  17
  18struct helper_data {
  19        const char *name;
  20        struct child_process *helper;
  21        FILE *out;
  22        unsigned fetch : 1,
  23                import : 1,
  24                bidi_import : 1,
  25                export : 1,
  26                option : 1,
  27                push : 1,
  28                connect : 1,
  29                signed_tags : 1,
  30                no_disconnect_req : 1;
  31        char *export_marks;
  32        char *import_marks;
  33        /* These go from remote name (as in "list") to private name */
  34        struct refspec *refspecs;
  35        int refspec_nr;
  36        /* Transport options for fetch-pack/send-pack (should one of
  37         * those be invoked).
  38         */
  39        struct git_transport_options transport_options;
  40};
  41
  42static void sendline(struct helper_data *helper, struct strbuf *buffer)
  43{
  44        if (debug)
  45                fprintf(stderr, "Debug: Remote helper: -> %s", buffer->buf);
  46        if (write_in_full(helper->helper->in, buffer->buf, buffer->len)
  47                != buffer->len)
  48                die_errno("Full write to remote helper failed");
  49}
  50
  51static int recvline_fh(FILE *helper, struct strbuf *buffer, const char *name)
  52{
  53        strbuf_reset(buffer);
  54        if (debug)
  55                fprintf(stderr, "Debug: Remote helper: Waiting...\n");
  56        if (strbuf_getline(buffer, helper, '\n') == EOF) {
  57                if (debug)
  58                        fprintf(stderr, "Debug: Remote helper quit.\n");
  59                exit(128);
  60        }
  61
  62        if (debug)
  63                fprintf(stderr, "Debug: Remote helper: <- %s\n", buffer->buf);
  64        return 0;
  65}
  66
  67static int recvline(struct helper_data *helper, struct strbuf *buffer)
  68{
  69        return recvline_fh(helper->out, buffer, helper->name);
  70}
  71
  72static void xchgline(struct helper_data *helper, struct strbuf *buffer)
  73{
  74        sendline(helper, buffer);
  75        recvline(helper, buffer);
  76}
  77
  78static void write_constant(int fd, const char *str)
  79{
  80        if (debug)
  81                fprintf(stderr, "Debug: Remote helper: -> %s", str);
  82        if (write_in_full(fd, str, strlen(str)) != strlen(str))
  83                die_errno("Full write to remote helper failed");
  84}
  85
  86static const char *remove_ext_force(const char *url)
  87{
  88        if (url) {
  89                const char *colon = strchr(url, ':');
  90                if (colon && colon[1] == ':')
  91                        return colon + 2;
  92        }
  93        return url;
  94}
  95
  96static void do_take_over(struct transport *transport)
  97{
  98        struct helper_data *data;
  99        data = (struct helper_data *)transport->data;
 100        transport_take_over(transport, data->helper);
 101        fclose(data->out);
 102        free(data);
 103}
 104
 105static struct child_process *get_helper(struct transport *transport)
 106{
 107        struct helper_data *data = transport->data;
 108        struct argv_array argv = ARGV_ARRAY_INIT;
 109        struct strbuf buf = STRBUF_INIT;
 110        struct child_process *helper;
 111        const char **refspecs = NULL;
 112        int refspec_nr = 0;
 113        int refspec_alloc = 0;
 114        int duped;
 115        int code;
 116        char git_dir_buf[sizeof(GIT_DIR_ENVIRONMENT) + PATH_MAX + 1];
 117        const char *helper_env[] = {
 118                git_dir_buf,
 119                NULL
 120        };
 121
 122
 123        if (data->helper)
 124                return data->helper;
 125
 126        helper = xcalloc(1, sizeof(*helper));
 127        helper->in = -1;
 128        helper->out = -1;
 129        helper->err = 0;
 130        argv_array_pushf(&argv, "git-remote-%s", data->name);
 131        argv_array_push(&argv, transport->remote->name);
 132        argv_array_push(&argv, remove_ext_force(transport->url));
 133        helper->argv = argv_array_detach(&argv, NULL);
 134        helper->git_cmd = 0;
 135        helper->silent_exec_failure = 1;
 136
 137        snprintf(git_dir_buf, sizeof(git_dir_buf), "%s=%s", GIT_DIR_ENVIRONMENT, get_git_dir());
 138        helper->env = helper_env;
 139
 140        code = start_command(helper);
 141        if (code < 0 && errno == ENOENT)
 142                die("Unable to find remote helper for '%s'", data->name);
 143        else if (code != 0)
 144                exit(code);
 145
 146        data->helper = helper;
 147        data->no_disconnect_req = 0;
 148
 149        /*
 150         * Open the output as FILE* so strbuf_getline() can be used.
 151         * Do this with duped fd because fclose() will close the fd,
 152         * and stuff like taking over will require the fd to remain.
 153         */
 154        duped = dup(helper->out);
 155        if (duped < 0)
 156                die_errno("Can't dup helper output fd");
 157        data->out = xfdopen(duped, "r");
 158
 159        write_constant(helper->in, "capabilities\n");
 160
 161        while (1) {
 162                const char *capname;
 163                int mandatory = 0;
 164                recvline(data, &buf);
 165
 166                if (!*buf.buf)
 167                        break;
 168
 169                if (*buf.buf == '*') {
 170                        capname = buf.buf + 1;
 171                        mandatory = 1;
 172                } else
 173                        capname = buf.buf;
 174
 175                if (debug)
 176                        fprintf(stderr, "Debug: Got cap %s\n", capname);
 177                if (!strcmp(capname, "fetch"))
 178                        data->fetch = 1;
 179                else if (!strcmp(capname, "option"))
 180                        data->option = 1;
 181                else if (!strcmp(capname, "push"))
 182                        data->push = 1;
 183                else if (!strcmp(capname, "import"))
 184                        data->import = 1;
 185                else if (!strcmp(capname, "bidi-import"))
 186                        data->bidi_import = 1;
 187                else if (!strcmp(capname, "export"))
 188                        data->export = 1;
 189                else if (!data->refspecs && !prefixcmp(capname, "refspec ")) {
 190                        ALLOC_GROW(refspecs,
 191                                   refspec_nr + 1,
 192                                   refspec_alloc);
 193                        refspecs[refspec_nr++] = xstrdup(capname + strlen("refspec "));
 194                } else if (!strcmp(capname, "connect")) {
 195                        data->connect = 1;
 196                } else if (!strcmp(capname, "signed-tags")) {
 197                        data->signed_tags = 1;
 198                } else if (!prefixcmp(capname, "export-marks ")) {
 199                        struct strbuf arg = STRBUF_INIT;
 200                        strbuf_addstr(&arg, "--export-marks=");
 201                        strbuf_addstr(&arg, capname + strlen("export-marks "));
 202                        data->export_marks = strbuf_detach(&arg, NULL);
 203                } else if (!prefixcmp(capname, "import-marks")) {
 204                        struct strbuf arg = STRBUF_INIT;
 205                        strbuf_addstr(&arg, "--import-marks=");
 206                        strbuf_addstr(&arg, capname + strlen("import-marks "));
 207                        data->import_marks = strbuf_detach(&arg, NULL);
 208                } else if (mandatory) {
 209                        die("Unknown mandatory capability %s. This remote "
 210                            "helper probably needs newer version of Git.",
 211                            capname);
 212                }
 213        }
 214        if (refspecs) {
 215                int i;
 216                data->refspec_nr = refspec_nr;
 217                data->refspecs = parse_fetch_refspec(refspec_nr, refspecs);
 218                for (i = 0; i < refspec_nr; i++)
 219                        free((char *)refspecs[i]);
 220                free(refspecs);
 221        } else if (data->import || data->bidi_import || data->export) {
 222                warning("This remote helper should implement refspec capability.");
 223        }
 224        strbuf_release(&buf);
 225        if (debug)
 226                fprintf(stderr, "Debug: Capabilities complete.\n");
 227        return data->helper;
 228}
 229
 230static int disconnect_helper(struct transport *transport)
 231{
 232        struct helper_data *data = transport->data;
 233        int res = 0;
 234
 235        if (data->helper) {
 236                if (debug)
 237                        fprintf(stderr, "Debug: Disconnecting.\n");
 238                if (!data->no_disconnect_req) {
 239                        /*
 240                         * Ignore write errors; there's nothing we can do,
 241                         * since we're about to close the pipe anyway. And the
 242                         * most likely error is EPIPE due to the helper dying
 243                         * to report an error itself.
 244                         */
 245                        sigchain_push(SIGPIPE, SIG_IGN);
 246                        xwrite(data->helper->in, "\n", 1);
 247                        sigchain_pop(SIGPIPE);
 248                }
 249                close(data->helper->in);
 250                close(data->helper->out);
 251                fclose(data->out);
 252                res = finish_command(data->helper);
 253                argv_array_free_detached(data->helper->argv);
 254                free(data->helper);
 255                data->helper = NULL;
 256        }
 257        return res;
 258}
 259
 260static const char *unsupported_options[] = {
 261        TRANS_OPT_UPLOADPACK,
 262        TRANS_OPT_RECEIVEPACK,
 263        TRANS_OPT_THIN,
 264        TRANS_OPT_KEEP
 265        };
 266static const char *boolean_options[] = {
 267        TRANS_OPT_THIN,
 268        TRANS_OPT_KEEP,
 269        TRANS_OPT_FOLLOWTAGS
 270        };
 271
 272static int set_helper_option(struct transport *transport,
 273                          const char *name, const char *value)
 274{
 275        struct helper_data *data = transport->data;
 276        struct strbuf buf = STRBUF_INIT;
 277        int i, ret, is_bool = 0;
 278
 279        get_helper(transport);
 280
 281        if (!data->option)
 282                return 1;
 283
 284        for (i = 0; i < ARRAY_SIZE(unsupported_options); i++) {
 285                if (!strcmp(name, unsupported_options[i]))
 286                        return 1;
 287        }
 288
 289        for (i = 0; i < ARRAY_SIZE(boolean_options); i++) {
 290                if (!strcmp(name, boolean_options[i])) {
 291                        is_bool = 1;
 292                        break;
 293                }
 294        }
 295
 296        strbuf_addf(&buf, "option %s ", name);
 297        if (is_bool)
 298                strbuf_addstr(&buf, value ? "true" : "false");
 299        else
 300                quote_c_style(value, &buf, NULL, 0);
 301        strbuf_addch(&buf, '\n');
 302
 303        xchgline(data, &buf);
 304
 305        if (!strcmp(buf.buf, "ok"))
 306                ret = 0;
 307        else if (!prefixcmp(buf.buf, "error")) {
 308                ret = -1;
 309        } else if (!strcmp(buf.buf, "unsupported"))
 310                ret = 1;
 311        else {
 312                warning("%s unexpectedly said: '%s'", data->name, buf.buf);
 313                ret = 1;
 314        }
 315        strbuf_release(&buf);
 316        return ret;
 317}
 318
 319static void standard_options(struct transport *t)
 320{
 321        char buf[16];
 322        int n;
 323        int v = t->verbose;
 324
 325        set_helper_option(t, "progress", t->progress ? "true" : "false");
 326
 327        n = snprintf(buf, sizeof(buf), "%d", v + 1);
 328        if (n >= sizeof(buf))
 329                die("impossibly large verbosity value");
 330        set_helper_option(t, "verbosity", buf);
 331}
 332
 333static int release_helper(struct transport *transport)
 334{
 335        int res = 0;
 336        struct helper_data *data = transport->data;
 337        free_refspec(data->refspec_nr, data->refspecs);
 338        data->refspecs = NULL;
 339        res = disconnect_helper(transport);
 340        free(transport->data);
 341        return res;
 342}
 343
 344static int fetch_with_fetch(struct transport *transport,
 345                            int nr_heads, struct ref **to_fetch)
 346{
 347        struct helper_data *data = transport->data;
 348        int i;
 349        struct strbuf buf = STRBUF_INIT;
 350
 351        standard_options(transport);
 352
 353        for (i = 0; i < nr_heads; i++) {
 354                const struct ref *posn = to_fetch[i];
 355                if (posn->status & REF_STATUS_UPTODATE)
 356                        continue;
 357
 358                strbuf_addf(&buf, "fetch %s %s\n",
 359                            sha1_to_hex(posn->old_sha1), posn->name);
 360        }
 361
 362        strbuf_addch(&buf, '\n');
 363        sendline(data, &buf);
 364
 365        while (1) {
 366                recvline(data, &buf);
 367
 368                if (!prefixcmp(buf.buf, "lock ")) {
 369                        const char *name = buf.buf + 5;
 370                        if (transport->pack_lockfile)
 371                                warning("%s also locked %s", data->name, name);
 372                        else
 373                                transport->pack_lockfile = xstrdup(name);
 374                }
 375                else if (!buf.len)
 376                        break;
 377                else
 378                        warning("%s unexpectedly said: '%s'", data->name, buf.buf);
 379        }
 380        strbuf_release(&buf);
 381        return 0;
 382}
 383
 384static int get_importer(struct transport *transport, struct child_process *fastimport)
 385{
 386        struct child_process *helper = get_helper(transport);
 387        struct helper_data *data = transport->data;
 388        struct argv_array argv = ARGV_ARRAY_INIT;
 389        int cat_blob_fd, code;
 390        memset(fastimport, 0, sizeof(*fastimport));
 391        fastimport->in = helper->out;
 392        argv_array_push(&argv, "fast-import");
 393        argv_array_push(&argv, debug ? "--stats" : "--quiet");
 394
 395        if (data->bidi_import) {
 396                cat_blob_fd = xdup(helper->in);
 397                argv_array_pushf(&argv, "--cat-blob-fd=%d", cat_blob_fd);
 398        }
 399        fastimport->argv = argv.argv;
 400        fastimport->git_cmd = 1;
 401
 402        code = start_command(fastimport);
 403        return code;
 404}
 405
 406static int get_exporter(struct transport *transport,
 407                        struct child_process *fastexport,
 408                        struct string_list *revlist_args)
 409{
 410        struct helper_data *data = transport->data;
 411        struct child_process *helper = get_helper(transport);
 412        int argc = 0, i;
 413        memset(fastexport, 0, sizeof(*fastexport));
 414
 415        /* we need to duplicate helper->in because we want to use it after
 416         * fastexport is done with it. */
 417        fastexport->out = dup(helper->in);
 418        fastexport->argv = xcalloc(6 + revlist_args->nr, sizeof(*fastexport->argv));
 419        fastexport->argv[argc++] = "fast-export";
 420        fastexport->argv[argc++] = "--use-done-feature";
 421        fastexport->argv[argc++] = data->signed_tags ?
 422                "--signed-tags=verbatim" : "--signed-tags=warn-strip";
 423        if (data->export_marks)
 424                fastexport->argv[argc++] = data->export_marks;
 425        if (data->import_marks)
 426                fastexport->argv[argc++] = data->import_marks;
 427
 428        for (i = 0; i < revlist_args->nr; i++)
 429                fastexport->argv[argc++] = revlist_args->items[i].string;
 430
 431        fastexport->git_cmd = 1;
 432        return start_command(fastexport);
 433}
 434
 435static int fetch_with_import(struct transport *transport,
 436                             int nr_heads, struct ref **to_fetch)
 437{
 438        struct child_process fastimport;
 439        struct helper_data *data = transport->data;
 440        int i;
 441        struct ref *posn;
 442        struct strbuf buf = STRBUF_INIT;
 443
 444        get_helper(transport);
 445
 446        if (get_importer(transport, &fastimport))
 447                die("Couldn't run fast-import");
 448
 449        for (i = 0; i < nr_heads; i++) {
 450                posn = to_fetch[i];
 451                if (posn->status & REF_STATUS_UPTODATE)
 452                        continue;
 453
 454                strbuf_addf(&buf, "import %s\n", posn->name);
 455                sendline(data, &buf);
 456                strbuf_reset(&buf);
 457        }
 458
 459        write_constant(data->helper->in, "\n");
 460        /*
 461         * remote-helpers that advertise the bidi-import capability are required to
 462         * buffer the complete batch of import commands until this newline before
 463         * sending data to fast-import.
 464         * These helpers read back data from fast-import on their stdin, which could
 465         * be mixed with import commands, otherwise.
 466         */
 467
 468        if (finish_command(&fastimport))
 469                die("Error while running fast-import");
 470        argv_array_free_detached(fastimport.argv);
 471
 472        /*
 473         * The fast-import stream of a remote helper that advertises
 474         * the "refspec" capability writes to the refs named after the
 475         * right hand side of the first refspec matching each ref we
 476         * were fetching.
 477         *
 478         * (If no "refspec" capability was specified, for historical
 479         * reasons we default to the equivalent of *:*.)
 480         *
 481         * Store the result in to_fetch[i].old_sha1.  Callers such
 482         * as "git fetch" can use the value to write feedback to the
 483         * terminal, populate FETCH_HEAD, and determine what new value
 484         * should be written to peer_ref if the update is a
 485         * fast-forward or this is a forced update.
 486         */
 487        for (i = 0; i < nr_heads; i++) {
 488                char *private;
 489                posn = to_fetch[i];
 490                if (posn->status & REF_STATUS_UPTODATE)
 491                        continue;
 492                if (data->refspecs)
 493                        private = apply_refspecs(data->refspecs, data->refspec_nr, posn->name);
 494                else
 495                        private = xstrdup(posn->name);
 496                if (private) {
 497                        read_ref(private, posn->old_sha1);
 498                        free(private);
 499                }
 500        }
 501        strbuf_release(&buf);
 502        return 0;
 503}
 504
 505static int process_connect_service(struct transport *transport,
 506                                   const char *name, const char *exec)
 507{
 508        struct helper_data *data = transport->data;
 509        struct strbuf cmdbuf = STRBUF_INIT;
 510        struct child_process *helper;
 511        int r, duped, ret = 0;
 512        FILE *input;
 513
 514        helper = get_helper(transport);
 515
 516        /*
 517         * Yes, dup the pipe another time, as we need unbuffered version
 518         * of input pipe as FILE*. fclose() closes the underlying fd and
 519         * stream buffering only can be changed before first I/O operation
 520         * on it.
 521         */
 522        duped = dup(helper->out);
 523        if (duped < 0)
 524                die_errno("Can't dup helper output fd");
 525        input = xfdopen(duped, "r");
 526        setvbuf(input, NULL, _IONBF, 0);
 527
 528        /*
 529         * Handle --upload-pack and friends. This is fire and forget...
 530         * just warn if it fails.
 531         */
 532        if (strcmp(name, exec)) {
 533                r = set_helper_option(transport, "servpath", exec);
 534                if (r > 0)
 535                        warning("Setting remote service path not supported by protocol.");
 536                else if (r < 0)
 537                        warning("Invalid remote service path.");
 538        }
 539
 540        if (data->connect)
 541                strbuf_addf(&cmdbuf, "connect %s\n", name);
 542        else
 543                goto exit;
 544
 545        sendline(data, &cmdbuf);
 546        recvline_fh(input, &cmdbuf, name);
 547        if (!strcmp(cmdbuf.buf, "")) {
 548                data->no_disconnect_req = 1;
 549                if (debug)
 550                        fprintf(stderr, "Debug: Smart transport connection "
 551                                "ready.\n");
 552                ret = 1;
 553        } else if (!strcmp(cmdbuf.buf, "fallback")) {
 554                if (debug)
 555                        fprintf(stderr, "Debug: Falling back to dumb "
 556                                "transport.\n");
 557        } else
 558                die("Unknown response to connect: %s",
 559                        cmdbuf.buf);
 560
 561exit:
 562        fclose(input);
 563        return ret;
 564}
 565
 566static int process_connect(struct transport *transport,
 567                                     int for_push)
 568{
 569        struct helper_data *data = transport->data;
 570        const char *name;
 571        const char *exec;
 572
 573        name = for_push ? "git-receive-pack" : "git-upload-pack";
 574        if (for_push)
 575                exec = data->transport_options.receivepack;
 576        else
 577                exec = data->transport_options.uploadpack;
 578
 579        return process_connect_service(transport, name, exec);
 580}
 581
 582static int connect_helper(struct transport *transport, const char *name,
 583                   const char *exec, int fd[2])
 584{
 585        struct helper_data *data = transport->data;
 586
 587        /* Get_helper so connect is inited. */
 588        get_helper(transport);
 589        if (!data->connect)
 590                die("Operation not supported by protocol.");
 591
 592        if (!process_connect_service(transport, name, exec))
 593                die("Can't connect to subservice %s.", name);
 594
 595        fd[0] = data->helper->out;
 596        fd[1] = data->helper->in;
 597        return 0;
 598}
 599
 600static int fetch(struct transport *transport,
 601                 int nr_heads, struct ref **to_fetch)
 602{
 603        struct helper_data *data = transport->data;
 604        int i, count;
 605
 606        if (process_connect(transport, 0)) {
 607                do_take_over(transport);
 608                return transport->fetch(transport, nr_heads, to_fetch);
 609        }
 610
 611        count = 0;
 612        for (i = 0; i < nr_heads; i++)
 613                if (!(to_fetch[i]->status & REF_STATUS_UPTODATE))
 614                        count++;
 615
 616        if (!count)
 617                return 0;
 618
 619        if (data->fetch)
 620                return fetch_with_fetch(transport, nr_heads, to_fetch);
 621
 622        if (data->import)
 623                return fetch_with_import(transport, nr_heads, to_fetch);
 624
 625        return -1;
 626}
 627
 628static int push_update_ref_status(struct strbuf *buf,
 629                                   struct ref **ref,
 630                                   struct ref *remote_refs)
 631{
 632        char *refname, *msg;
 633        int status;
 634
 635        if (!prefixcmp(buf->buf, "ok ")) {
 636                status = REF_STATUS_OK;
 637                refname = buf->buf + 3;
 638        } else if (!prefixcmp(buf->buf, "error ")) {
 639                status = REF_STATUS_REMOTE_REJECT;
 640                refname = buf->buf + 6;
 641        } else
 642                die("expected ok/error, helper said '%s'", buf->buf);
 643
 644        msg = strchr(refname, ' ');
 645        if (msg) {
 646                struct strbuf msg_buf = STRBUF_INIT;
 647                const char *end;
 648
 649                *msg++ = '\0';
 650                if (!unquote_c_style(&msg_buf, msg, &end))
 651                        msg = strbuf_detach(&msg_buf, NULL);
 652                else
 653                        msg = xstrdup(msg);
 654                strbuf_release(&msg_buf);
 655
 656                if (!strcmp(msg, "no match")) {
 657                        status = REF_STATUS_NONE;
 658                        free(msg);
 659                        msg = NULL;
 660                }
 661                else if (!strcmp(msg, "up to date")) {
 662                        status = REF_STATUS_UPTODATE;
 663                        free(msg);
 664                        msg = NULL;
 665                }
 666                else if (!strcmp(msg, "non-fast forward")) {
 667                        status = REF_STATUS_REJECT_NONFASTFORWARD;
 668                        free(msg);
 669                        msg = NULL;
 670                }
 671                else if (!strcmp(msg, "already exists")) {
 672                        status = REF_STATUS_REJECT_ALREADY_EXISTS;
 673                        free(msg);
 674                        msg = NULL;
 675                }
 676                else if (!strcmp(msg, "fetch first")) {
 677                        status = REF_STATUS_REJECT_FETCH_FIRST;
 678                        free(msg);
 679                        msg = NULL;
 680                }
 681                else if (!strcmp(msg, "needs force")) {
 682                        status = REF_STATUS_REJECT_NEEDS_FORCE;
 683                        free(msg);
 684                        msg = NULL;
 685                }
 686                else if (!strcmp(msg, "stale info")) {
 687                        status = REF_STATUS_REJECT_STALE;
 688                        free(msg);
 689                        msg = NULL;
 690                }
 691        }
 692
 693        if (*ref)
 694                *ref = find_ref_by_name(*ref, refname);
 695        if (!*ref)
 696                *ref = find_ref_by_name(remote_refs, refname);
 697        if (!*ref) {
 698                warning("helper reported unexpected status of %s", refname);
 699                return 1;
 700        }
 701
 702        if ((*ref)->status != REF_STATUS_NONE) {
 703                /*
 704                 * Earlier, the ref was marked not to be pushed, so ignore the ref
 705                 * status reported by the remote helper if the latter is 'no match'.
 706                 */
 707                if (status == REF_STATUS_NONE)
 708                        return 1;
 709        }
 710
 711        (*ref)->status = status;
 712        (*ref)->remote_status = msg;
 713        return !(status == REF_STATUS_OK);
 714}
 715
 716static void push_update_refs_status(struct helper_data *data,
 717                                    struct ref *remote_refs)
 718{
 719        struct strbuf buf = STRBUF_INIT;
 720        struct ref *ref = remote_refs;
 721        for (;;) {
 722                char *private;
 723
 724                recvline(data, &buf);
 725                if (!buf.len)
 726                        break;
 727
 728                if (push_update_ref_status(&buf, &ref, remote_refs))
 729                        continue;
 730
 731                if (!data->refspecs)
 732                        continue;
 733
 734                /* propagate back the update to the remote namespace */
 735                private = apply_refspecs(data->refspecs, data->refspec_nr, ref->name);
 736                if (!private)
 737                        continue;
 738                update_ref("update by helper", private, ref->new_sha1, NULL, 0, 0);
 739                free(private);
 740        }
 741        strbuf_release(&buf);
 742}
 743
 744static int push_refs_with_push(struct transport *transport,
 745                struct ref *remote_refs, int flags)
 746{
 747        int force_all = flags & TRANSPORT_PUSH_FORCE;
 748        int mirror = flags & TRANSPORT_PUSH_MIRROR;
 749        struct helper_data *data = transport->data;
 750        struct strbuf buf = STRBUF_INIT;
 751        struct ref *ref;
 752
 753        get_helper(transport);
 754        if (!data->push)
 755                return 1;
 756
 757        for (ref = remote_refs; ref; ref = ref->next) {
 758                if (!ref->peer_ref && !mirror)
 759                        continue;
 760
 761                /* Check for statuses set by set_ref_status_for_push() */
 762                switch (ref->status) {
 763                case REF_STATUS_REJECT_NONFASTFORWARD:
 764                case REF_STATUS_REJECT_STALE:
 765                case REF_STATUS_REJECT_ALREADY_EXISTS:
 766                case REF_STATUS_UPTODATE:
 767                        continue;
 768                default:
 769                        ; /* do nothing */
 770                }
 771
 772                if (force_all)
 773                        ref->force = 1;
 774
 775                strbuf_addstr(&buf, "push ");
 776                if (!ref->deletion) {
 777                        if (ref->force)
 778                                strbuf_addch(&buf, '+');
 779                        if (ref->peer_ref)
 780                                strbuf_addstr(&buf, ref->peer_ref->name);
 781                        else
 782                                strbuf_addstr(&buf, sha1_to_hex(ref->new_sha1));
 783                }
 784                strbuf_addch(&buf, ':');
 785                strbuf_addstr(&buf, ref->name);
 786                strbuf_addch(&buf, '\n');
 787        }
 788        if (buf.len == 0)
 789                return 0;
 790
 791        standard_options(transport);
 792
 793        if (flags & TRANSPORT_PUSH_DRY_RUN) {
 794                if (set_helper_option(transport, "dry-run", "true") != 0)
 795                        die("helper %s does not support dry-run", data->name);
 796        }
 797
 798        strbuf_addch(&buf, '\n');
 799        sendline(data, &buf);
 800        strbuf_release(&buf);
 801
 802        push_update_refs_status(data, remote_refs);
 803        return 0;
 804}
 805
 806static int push_refs_with_export(struct transport *transport,
 807                struct ref *remote_refs, int flags)
 808{
 809        struct ref *ref;
 810        struct child_process *helper, exporter;
 811        struct helper_data *data = transport->data;
 812        struct string_list revlist_args = STRING_LIST_INIT_NODUP;
 813        struct strbuf buf = STRBUF_INIT;
 814
 815        if (!data->refspecs)
 816                die("remote-helper doesn't support push; refspec needed");
 817
 818        if (flags & TRANSPORT_PUSH_DRY_RUN) {
 819                if (set_helper_option(transport, "dry-run", "true") != 0)
 820                        die("helper %s does not support dry-run", data->name);
 821        }
 822
 823        helper = get_helper(transport);
 824
 825        write_constant(helper->in, "export\n");
 826
 827        strbuf_reset(&buf);
 828
 829        for (ref = remote_refs; ref; ref = ref->next) {
 830                char *private;
 831                unsigned char sha1[20];
 832
 833                if (ref->deletion)
 834                        die("remote-helpers do not support ref deletion");
 835
 836                private = apply_refspecs(data->refspecs, data->refspec_nr, ref->name);
 837                if (private && !get_sha1(private, sha1)) {
 838                        strbuf_addf(&buf, "^%s", private);
 839                        string_list_append(&revlist_args, strbuf_detach(&buf, NULL));
 840                        hashcpy(ref->old_sha1, sha1);
 841                }
 842                free(private);
 843
 844                if (ref->deletion)
 845                        die("remote-helpers do not support ref deletion");
 846
 847                if (ref->peer_ref) {
 848                        if (strcmp(ref->peer_ref->name, ref->name))
 849                                die("remote-helpers do not support old:new syntax");
 850                        string_list_append(&revlist_args, ref->peer_ref->name);
 851                }
 852        }
 853
 854        if (get_exporter(transport, &exporter, &revlist_args))
 855                die("Couldn't run fast-export");
 856
 857        if (finish_command(&exporter))
 858                die("Error while running fast-export");
 859        push_update_refs_status(data, remote_refs);
 860        return 0;
 861}
 862
 863static int push_refs(struct transport *transport,
 864                struct ref *remote_refs, int flags)
 865{
 866        struct helper_data *data = transport->data;
 867
 868        if (process_connect(transport, 1)) {
 869                do_take_over(transport);
 870                return transport->push_refs(transport, remote_refs, flags);
 871        }
 872
 873        if (!remote_refs) {
 874                fprintf(stderr, "No refs in common and none specified; doing nothing.\n"
 875                        "Perhaps you should specify a branch such as 'master'.\n");
 876                return 0;
 877        }
 878
 879        if (data->push)
 880                return push_refs_with_push(transport, remote_refs, flags);
 881
 882        if (data->export)
 883                return push_refs_with_export(transport, remote_refs, flags);
 884
 885        return -1;
 886}
 887
 888
 889static int has_attribute(const char *attrs, const char *attr) {
 890        int len;
 891        if (!attrs)
 892                return 0;
 893
 894        len = strlen(attr);
 895        for (;;) {
 896                const char *space = strchrnul(attrs, ' ');
 897                if (len == space - attrs && !strncmp(attrs, attr, len))
 898                        return 1;
 899                if (!*space)
 900                        return 0;
 901                attrs = space + 1;
 902        }
 903}
 904
 905static struct ref *get_refs_list(struct transport *transport, int for_push)
 906{
 907        struct helper_data *data = transport->data;
 908        struct child_process *helper;
 909        struct ref *ret = NULL;
 910        struct ref **tail = &ret;
 911        struct ref *posn;
 912        struct strbuf buf = STRBUF_INIT;
 913
 914        helper = get_helper(transport);
 915
 916        if (process_connect(transport, for_push)) {
 917                do_take_over(transport);
 918                return transport->get_refs_list(transport, for_push);
 919        }
 920
 921        if (data->push && for_push)
 922                write_str_in_full(helper->in, "list for-push\n");
 923        else
 924                write_str_in_full(helper->in, "list\n");
 925
 926        while (1) {
 927                char *eov, *eon;
 928                recvline(data, &buf);
 929
 930                if (!*buf.buf)
 931                        break;
 932
 933                eov = strchr(buf.buf, ' ');
 934                if (!eov)
 935                        die("Malformed response in ref list: %s", buf.buf);
 936                eon = strchr(eov + 1, ' ');
 937                *eov = '\0';
 938                if (eon)
 939                        *eon = '\0';
 940                *tail = alloc_ref(eov + 1);
 941                if (buf.buf[0] == '@')
 942                        (*tail)->symref = xstrdup(buf.buf + 1);
 943                else if (buf.buf[0] != '?')
 944                        get_sha1_hex(buf.buf, (*tail)->old_sha1);
 945                if (eon) {
 946                        if (has_attribute(eon + 1, "unchanged")) {
 947                                (*tail)->status |= REF_STATUS_UPTODATE;
 948                                read_ref((*tail)->name, (*tail)->old_sha1);
 949                        }
 950                }
 951                tail = &((*tail)->next);
 952        }
 953        if (debug)
 954                fprintf(stderr, "Debug: Read ref listing.\n");
 955        strbuf_release(&buf);
 956
 957        for (posn = ret; posn; posn = posn->next)
 958                resolve_remote_symref(posn, ret);
 959
 960        return ret;
 961}
 962
 963int transport_helper_init(struct transport *transport, const char *name)
 964{
 965        struct helper_data *data = xcalloc(sizeof(*data), 1);
 966        data->name = name;
 967
 968        if (getenv("GIT_TRANSPORT_HELPER_DEBUG"))
 969                debug = 1;
 970
 971        transport->data = data;
 972        transport->set_option = set_helper_option;
 973        transport->get_refs_list = get_refs_list;
 974        transport->fetch = fetch;
 975        transport->push_refs = push_refs;
 976        transport->disconnect = release_helper;
 977        transport->connect = connect_helper;
 978        transport->smart_options = &(data->transport_options);
 979        return 0;
 980}
 981
 982/*
 983 * Linux pipes can buffer 65536 bytes at once (and most platforms can
 984 * buffer less), so attempt reads and writes with up to that size.
 985 */
 986#define BUFFERSIZE 65536
 987/* This should be enough to hold debugging message. */
 988#define PBUFFERSIZE 8192
 989
 990/* Print bidirectional transfer loop debug message. */
 991static void transfer_debug(const char *fmt, ...)
 992{
 993        va_list args;
 994        char msgbuf[PBUFFERSIZE];
 995        static int debug_enabled = -1;
 996
 997        if (debug_enabled < 0)
 998                debug_enabled = getenv("GIT_TRANSLOOP_DEBUG") ? 1 : 0;
 999        if (!debug_enabled)
1000                return;
1001
1002        va_start(args, fmt);
1003        vsnprintf(msgbuf, PBUFFERSIZE, fmt, args);
1004        va_end(args);
1005        fprintf(stderr, "Transfer loop debugging: %s\n", msgbuf);
1006}
1007
1008/* Stream state: More data may be coming in this direction. */
1009#define SSTATE_TRANSFERING 0
1010/*
1011 * Stream state: No more data coming in this direction, flushing rest of
1012 * data.
1013 */
1014#define SSTATE_FLUSHING 1
1015/* Stream state: Transfer in this direction finished. */
1016#define SSTATE_FINISHED 2
1017
1018#define STATE_NEEDS_READING(state) ((state) <= SSTATE_TRANSFERING)
1019#define STATE_NEEDS_WRITING(state) ((state) <= SSTATE_FLUSHING)
1020#define STATE_NEEDS_CLOSING(state) ((state) == SSTATE_FLUSHING)
1021
1022/* Unidirectional transfer. */
1023struct unidirectional_transfer {
1024        /* Source */
1025        int src;
1026        /* Destination */
1027        int dest;
1028        /* Is source socket? */
1029        int src_is_sock;
1030        /* Is destination socket? */
1031        int dest_is_sock;
1032        /* Transfer state (TRANSFERRING/FLUSHING/FINISHED) */
1033        int state;
1034        /* Buffer. */
1035        char buf[BUFFERSIZE];
1036        /* Buffer used. */
1037        size_t bufuse;
1038        /* Name of source. */
1039        const char *src_name;
1040        /* Name of destination. */
1041        const char *dest_name;
1042};
1043
1044/* Closes the target (for writing) if transfer has finished. */
1045static void udt_close_if_finished(struct unidirectional_transfer *t)
1046{
1047        if (STATE_NEEDS_CLOSING(t->state) && !t->bufuse) {
1048                t->state = SSTATE_FINISHED;
1049                if (t->dest_is_sock)
1050                        shutdown(t->dest, SHUT_WR);
1051                else
1052                        close(t->dest);
1053                transfer_debug("Closed %s.", t->dest_name);
1054        }
1055}
1056
1057/*
1058 * Tries to read read data from source into buffer. If buffer is full,
1059 * no data is read. Returns 0 on success, -1 on error.
1060 */
1061static int udt_do_read(struct unidirectional_transfer *t)
1062{
1063        ssize_t bytes;
1064
1065        if (t->bufuse == BUFFERSIZE)
1066                return 0;       /* No space for more. */
1067
1068        transfer_debug("%s is readable", t->src_name);
1069        bytes = read(t->src, t->buf + t->bufuse, BUFFERSIZE - t->bufuse);
1070        if (bytes < 0 && errno != EWOULDBLOCK && errno != EAGAIN &&
1071                errno != EINTR) {
1072                error("read(%s) failed: %s", t->src_name, strerror(errno));
1073                return -1;
1074        } else if (bytes == 0) {
1075                transfer_debug("%s EOF (with %i bytes in buffer)",
1076                        t->src_name, t->bufuse);
1077                t->state = SSTATE_FLUSHING;
1078        } else if (bytes > 0) {
1079                t->bufuse += bytes;
1080                transfer_debug("Read %i bytes from %s (buffer now at %i)",
1081                        (int)bytes, t->src_name, (int)t->bufuse);
1082        }
1083        return 0;
1084}
1085
1086/* Tries to write data from buffer into destination. If buffer is empty,
1087 * no data is written. Returns 0 on success, -1 on error.
1088 */
1089static int udt_do_write(struct unidirectional_transfer *t)
1090{
1091        ssize_t bytes;
1092
1093        if (t->bufuse == 0)
1094                return 0;       /* Nothing to write. */
1095
1096        transfer_debug("%s is writable", t->dest_name);
1097        bytes = write(t->dest, t->buf, t->bufuse);
1098        if (bytes < 0 && errno != EWOULDBLOCK && errno != EAGAIN &&
1099                errno != EINTR) {
1100                error("write(%s) failed: %s", t->dest_name, strerror(errno));
1101                return -1;
1102        } else if (bytes > 0) {
1103                t->bufuse -= bytes;
1104                if (t->bufuse)
1105                        memmove(t->buf, t->buf + bytes, t->bufuse);
1106                transfer_debug("Wrote %i bytes to %s (buffer now at %i)",
1107                        (int)bytes, t->dest_name, (int)t->bufuse);
1108        }
1109        return 0;
1110}
1111
1112
1113/* State of bidirectional transfer loop. */
1114struct bidirectional_transfer_state {
1115        /* Direction from program to git. */
1116        struct unidirectional_transfer ptg;
1117        /* Direction from git to program. */
1118        struct unidirectional_transfer gtp;
1119};
1120
1121static void *udt_copy_task_routine(void *udt)
1122{
1123        struct unidirectional_transfer *t = (struct unidirectional_transfer *)udt;
1124        while (t->state != SSTATE_FINISHED) {
1125                if (STATE_NEEDS_READING(t->state))
1126                        if (udt_do_read(t))
1127                                return NULL;
1128                if (STATE_NEEDS_WRITING(t->state))
1129                        if (udt_do_write(t))
1130                                return NULL;
1131                if (STATE_NEEDS_CLOSING(t->state))
1132                        udt_close_if_finished(t);
1133        }
1134        return udt;     /* Just some non-NULL value. */
1135}
1136
1137#ifndef NO_PTHREADS
1138
1139/*
1140 * Join thread, with apporiate errors on failure. Name is name for the
1141 * thread (for error messages). Returns 0 on success, 1 on failure.
1142 */
1143static int tloop_join(pthread_t thread, const char *name)
1144{
1145        int err;
1146        void *tret;
1147        err = pthread_join(thread, &tret);
1148        if (!tret) {
1149                error("%s thread failed", name);
1150                return 1;
1151        }
1152        if (err) {
1153                error("%s thread failed to join: %s", name, strerror(err));
1154                return 1;
1155        }
1156        return 0;
1157}
1158
1159/*
1160 * Spawn the transfer tasks and then wait for them. Returns 0 on success,
1161 * -1 on failure.
1162 */
1163static int tloop_spawnwait_tasks(struct bidirectional_transfer_state *s)
1164{
1165        pthread_t gtp_thread;
1166        pthread_t ptg_thread;
1167        int err;
1168        int ret = 0;
1169        err = pthread_create(&gtp_thread, NULL, udt_copy_task_routine,
1170                &s->gtp);
1171        if (err)
1172                die("Can't start thread for copying data: %s", strerror(err));
1173        err = pthread_create(&ptg_thread, NULL, udt_copy_task_routine,
1174                &s->ptg);
1175        if (err)
1176                die("Can't start thread for copying data: %s", strerror(err));
1177
1178        ret |= tloop_join(gtp_thread, "Git to program copy");
1179        ret |= tloop_join(ptg_thread, "Program to git copy");
1180        return ret;
1181}
1182#else
1183
1184/* Close the source and target (for writing) for transfer. */
1185static void udt_kill_transfer(struct unidirectional_transfer *t)
1186{
1187        t->state = SSTATE_FINISHED;
1188        /*
1189         * Socket read end left open isn't a disaster if nobody
1190         * attempts to read from it (mingw compat headers do not
1191         * have SHUT_RD)...
1192         *
1193         * We can't fully close the socket since otherwise gtp
1194         * task would first close the socket it sends data to
1195         * while closing the ptg file descriptors.
1196         */
1197        if (!t->src_is_sock)
1198                close(t->src);
1199        if (t->dest_is_sock)
1200                shutdown(t->dest, SHUT_WR);
1201        else
1202                close(t->dest);
1203}
1204
1205/*
1206 * Join process, with apporiate errors on failure. Name is name for the
1207 * process (for error messages). Returns 0 on success, 1 on failure.
1208 */
1209static int tloop_join(pid_t pid, const char *name)
1210{
1211        int tret;
1212        if (waitpid(pid, &tret, 0) < 0) {
1213                error("%s process failed to wait: %s", name, strerror(errno));
1214                return 1;
1215        }
1216        if (!WIFEXITED(tret) || WEXITSTATUS(tret)) {
1217                error("%s process failed", name);
1218                return 1;
1219        }
1220        return 0;
1221}
1222
1223/*
1224 * Spawn the transfer tasks and then wait for them. Returns 0 on success,
1225 * -1 on failure.
1226 */
1227static int tloop_spawnwait_tasks(struct bidirectional_transfer_state *s)
1228{
1229        pid_t pid1, pid2;
1230        int ret = 0;
1231
1232        /* Fork thread #1: git to program. */
1233        pid1 = fork();
1234        if (pid1 < 0)
1235                die_errno("Can't start thread for copying data");
1236        else if (pid1 == 0) {
1237                udt_kill_transfer(&s->ptg);
1238                exit(udt_copy_task_routine(&s->gtp) ? 0 : 1);
1239        }
1240
1241        /* Fork thread #2: program to git. */
1242        pid2 = fork();
1243        if (pid2 < 0)
1244                die_errno("Can't start thread for copying data");
1245        else if (pid2 == 0) {
1246                udt_kill_transfer(&s->gtp);
1247                exit(udt_copy_task_routine(&s->ptg) ? 0 : 1);
1248        }
1249
1250        /*
1251         * Close both streams in parent as to not interfere with
1252         * end of file detection and wait for both tasks to finish.
1253         */
1254        udt_kill_transfer(&s->gtp);
1255        udt_kill_transfer(&s->ptg);
1256        ret |= tloop_join(pid1, "Git to program copy");
1257        ret |= tloop_join(pid2, "Program to git copy");
1258        return ret;
1259}
1260#endif
1261
1262/*
1263 * Copies data from stdin to output and from input to stdout simultaneously.
1264 * Additionally filtering through given filter. If filter is NULL, uses
1265 * identity filter.
1266 */
1267int bidirectional_transfer_loop(int input, int output)
1268{
1269        struct bidirectional_transfer_state state;
1270
1271        /* Fill the state fields. */
1272        state.ptg.src = input;
1273        state.ptg.dest = 1;
1274        state.ptg.src_is_sock = (input == output);
1275        state.ptg.dest_is_sock = 0;
1276        state.ptg.state = SSTATE_TRANSFERING;
1277        state.ptg.bufuse = 0;
1278        state.ptg.src_name = "remote input";
1279        state.ptg.dest_name = "stdout";
1280
1281        state.gtp.src = 0;
1282        state.gtp.dest = output;
1283        state.gtp.src_is_sock = 0;
1284        state.gtp.dest_is_sock = (input == output);
1285        state.gtp.state = SSTATE_TRANSFERING;
1286        state.gtp.bufuse = 0;
1287        state.gtp.src_name = "stdin";
1288        state.gtp.dest_name = "remote output";
1289
1290        return tloop_spawnwait_tasks(&state);
1291}