daemon.con commit git-daemon: use LOG_PID, simplify logging code (6a992e9)
   1#include "cache.h"
   2#include "pkt-line.h"
   3#include "exec_cmd.h"
   4#include "interpolate.h"
   5
   6#include <syslog.h>
   7
   8#ifndef HOST_NAME_MAX
   9#define HOST_NAME_MAX 256
  10#endif
  11
  12#ifndef NI_MAXSERV
  13#define NI_MAXSERV 32
  14#endif
  15
  16static int log_syslog;
  17static int verbose;
  18static int reuseaddr;
  19static int child_handler_pipe[2];
  20
  21static const char daemon_usage[] =
  22"git daemon [--verbose] [--syslog] [--export-all]\n"
  23"           [--timeout=n] [--init-timeout=n] [--strict-paths]\n"
  24"           [--base-path=path] [--base-path-relaxed]\n"
  25"           [--user-path | --user-path=path]\n"
  26"           [--interpolated-path=path]\n"
  27"           [--reuseaddr] [--detach] [--pid-file=file]\n"
  28"           [--[enable|disable|allow-override|forbid-override]=service]\n"
  29"           [--inetd | [--listen=host_or_ipaddr] [--port=n]\n"
  30"                      [--user=user [--group=group]]\n"
  31"           [directory...]";
  32
  33/* List of acceptable pathname prefixes */
  34static char **ok_paths;
  35static int strict_paths;
  36
  37/* If this is set, git-daemon-export-ok is not required */
  38static int export_all_trees;
  39
  40/* Take all paths relative to this one if non-NULL */
  41static char *base_path;
  42static char *interpolated_path;
  43static int base_path_relaxed;
  44
  45/* Flag indicating client sent extra args. */
  46static int saw_extended_args;
  47
  48/* If defined, ~user notation is allowed and the string is inserted
  49 * after ~user/.  E.g. a request to git://host/~alice/frotz would
  50 * go to /home/alice/pub_git/frotz with --user-path=pub_git.
  51 */
  52static const char *user_path;
  53
  54/* Timeout, and initial timeout */
  55static unsigned int timeout;
  56static unsigned int init_timeout;
  57
  58/*
  59 * Static table for now.  Ugh.
  60 * Feel free to make dynamic as needed.
  61 */
  62#define INTERP_SLOT_HOST        (0)
  63#define INTERP_SLOT_CANON_HOST  (1)
  64#define INTERP_SLOT_IP          (2)
  65#define INTERP_SLOT_PORT        (3)
  66#define INTERP_SLOT_DIR         (4)
  67#define INTERP_SLOT_PERCENT     (5)
  68
  69static struct interp interp_table[] = {
  70        { "%H", 0},
  71        { "%CH", 0},
  72        { "%IP", 0},
  73        { "%P", 0},
  74        { "%D", 0},
  75        { "%%", 0},
  76};
  77
  78
  79static void logreport(int priority, const char *err, va_list params)
  80{
  81        if (log_syslog) {
  82                char buf[1024];
  83                vsnprintf(buf, sizeof(buf), err, params);
  84                syslog(priority, "%s", buf);
  85        }
  86        else {
  87                /* Since stderr is set to linebuffered mode, the
  88                 * logging of different processes will not overlap
  89                 */
  90                fprintf(stderr, "[%d] ", (int)getpid());
  91                vfprintf(stderr, err, params);
  92                fputc('\n', stderr);
  93        }
  94}
  95
  96static void logerror(const char *err, ...)
  97{
  98        va_list params;
  99        va_start(params, err);
 100        logreport(LOG_ERR, err, params);
 101        va_end(params);
 102}
 103
 104static void loginfo(const char *err, ...)
 105{
 106        va_list params;
 107        if (!verbose)
 108                return;
 109        va_start(params, err);
 110        logreport(LOG_INFO, err, params);
 111        va_end(params);
 112}
 113
 114static void NORETURN daemon_die(const char *err, va_list params)
 115{
 116        logreport(LOG_ERR, err, params);
 117        exit(1);
 118}
 119
 120static int avoid_alias(char *p)
 121{
 122        int sl, ndot;
 123
 124        /*
 125         * This resurrects the belts and suspenders paranoia check by HPA
 126         * done in <435560F7.4080006@zytor.com> thread, now enter_repo()
 127         * does not do getcwd() based path canonicalizations.
 128         *
 129         * sl becomes true immediately after seeing '/' and continues to
 130         * be true as long as dots continue after that without intervening
 131         * non-dot character.
 132         */
 133        if (!p || (*p != '/' && *p != '~'))
 134                return -1;
 135        sl = 1; ndot = 0;
 136        p++;
 137
 138        while (1) {
 139                char ch = *p++;
 140                if (sl) {
 141                        if (ch == '.')
 142                                ndot++;
 143                        else if (ch == '/') {
 144                                if (ndot < 3)
 145                                        /* reject //, /./ and /../ */
 146                                        return -1;
 147                                ndot = 0;
 148                        }
 149                        else if (ch == 0) {
 150                                if (0 < ndot && ndot < 3)
 151                                        /* reject /.$ and /..$ */
 152                                        return -1;
 153                                return 0;
 154                        }
 155                        else
 156                                sl = ndot = 0;
 157                }
 158                else if (ch == 0)
 159                        return 0;
 160                else if (ch == '/') {
 161                        sl = 1;
 162                        ndot = 0;
 163                }
 164        }
 165}
 166
 167static char *path_ok(struct interp *itable)
 168{
 169        static char rpath[PATH_MAX];
 170        static char interp_path[PATH_MAX];
 171        int retried_path = 0;
 172        char *path;
 173        char *dir;
 174
 175        dir = itable[INTERP_SLOT_DIR].value;
 176
 177        if (avoid_alias(dir)) {
 178                logerror("'%s': aliased", dir);
 179                return NULL;
 180        }
 181
 182        if (*dir == '~') {
 183                if (!user_path) {
 184                        logerror("'%s': User-path not allowed", dir);
 185                        return NULL;
 186                }
 187                if (*user_path) {
 188                        /* Got either "~alice" or "~alice/foo";
 189                         * rewrite them to "~alice/%s" or
 190                         * "~alice/%s/foo".
 191                         */
 192                        int namlen, restlen = strlen(dir);
 193                        char *slash = strchr(dir, '/');
 194                        if (!slash)
 195                                slash = dir + restlen;
 196                        namlen = slash - dir;
 197                        restlen -= namlen;
 198                        loginfo("userpath <%s>, request <%s>, namlen %d, restlen %d, slash <%s>", user_path, dir, namlen, restlen, slash);
 199                        snprintf(rpath, PATH_MAX, "%.*s/%s%.*s",
 200                                 namlen, dir, user_path, restlen, slash);
 201                        dir = rpath;
 202                }
 203        }
 204        else if (interpolated_path && saw_extended_args) {
 205                if (*dir != '/') {
 206                        /* Allow only absolute */
 207                        logerror("'%s': Non-absolute path denied (interpolated-path active)", dir);
 208                        return NULL;
 209                }
 210
 211                interpolate(interp_path, PATH_MAX, interpolated_path,
 212                            interp_table, ARRAY_SIZE(interp_table));
 213                loginfo("Interpolated dir '%s'", interp_path);
 214
 215                dir = interp_path;
 216        }
 217        else if (base_path) {
 218                if (*dir != '/') {
 219                        /* Allow only absolute */
 220                        logerror("'%s': Non-absolute path denied (base-path active)", dir);
 221                        return NULL;
 222                }
 223                snprintf(rpath, PATH_MAX, "%s%s", base_path, dir);
 224                dir = rpath;
 225        }
 226
 227        do {
 228                path = enter_repo(dir, strict_paths);
 229                if (path)
 230                        break;
 231
 232                /*
 233                 * if we fail and base_path_relaxed is enabled, try without
 234                 * prefixing the base path
 235                 */
 236                if (base_path && base_path_relaxed && !retried_path) {
 237                        dir = itable[INTERP_SLOT_DIR].value;
 238                        retried_path = 1;
 239                        continue;
 240                }
 241                break;
 242        } while (1);
 243
 244        if (!path) {
 245                logerror("'%s': unable to chdir or not a git archive", dir);
 246                return NULL;
 247        }
 248
 249        if ( ok_paths && *ok_paths ) {
 250                char **pp;
 251                int pathlen = strlen(path);
 252
 253                /* The validation is done on the paths after enter_repo
 254                 * appends optional {.git,.git/.git} and friends, but
 255                 * it does not use getcwd().  So if your /pub is
 256                 * a symlink to /mnt/pub, you can whitelist /pub and
 257                 * do not have to say /mnt/pub.
 258                 * Do not say /pub/.
 259                 */
 260                for ( pp = ok_paths ; *pp ; pp++ ) {
 261                        int len = strlen(*pp);
 262                        if (len <= pathlen &&
 263                            !memcmp(*pp, path, len) &&
 264                            (path[len] == '\0' ||
 265                             (!strict_paths && path[len] == '/')))
 266                                return path;
 267                }
 268        }
 269        else {
 270                /* be backwards compatible */
 271                if (!strict_paths)
 272                        return path;
 273        }
 274
 275        logerror("'%s': not in whitelist", path);
 276        return NULL;            /* Fallthrough. Deny by default */
 277}
 278
 279typedef int (*daemon_service_fn)(void);
 280struct daemon_service {
 281        const char *name;
 282        const char *config_name;
 283        daemon_service_fn fn;
 284        int enabled;
 285        int overridable;
 286};
 287
 288static struct daemon_service *service_looking_at;
 289static int service_enabled;
 290
 291static int git_daemon_config(const char *var, const char *value, void *cb)
 292{
 293        if (!prefixcmp(var, "daemon.") &&
 294            !strcmp(var + 7, service_looking_at->config_name)) {
 295                service_enabled = git_config_bool(var, value);
 296                return 0;
 297        }
 298
 299        /* we are not interested in parsing any other configuration here */
 300        return 0;
 301}
 302
 303static int run_service(struct interp *itable, struct daemon_service *service)
 304{
 305        const char *path;
 306        int enabled = service->enabled;
 307
 308        loginfo("Request %s for '%s'",
 309                service->name,
 310                itable[INTERP_SLOT_DIR].value);
 311
 312        if (!enabled && !service->overridable) {
 313                logerror("'%s': service not enabled.", service->name);
 314                errno = EACCES;
 315                return -1;
 316        }
 317
 318        if (!(path = path_ok(itable)))
 319                return -1;
 320
 321        /*
 322         * Security on the cheap.
 323         *
 324         * We want a readable HEAD, usable "objects" directory, and
 325         * a "git-daemon-export-ok" flag that says that the other side
 326         * is ok with us doing this.
 327         *
 328         * path_ok() uses enter_repo() and does whitelist checking.
 329         * We only need to make sure the repository is exported.
 330         */
 331
 332        if (!export_all_trees && access("git-daemon-export-ok", F_OK)) {
 333                logerror("'%s': repository not exported.", path);
 334                errno = EACCES;
 335                return -1;
 336        }
 337
 338        if (service->overridable) {
 339                service_looking_at = service;
 340                service_enabled = -1;
 341                git_config(git_daemon_config, NULL);
 342                if (0 <= service_enabled)
 343                        enabled = service_enabled;
 344        }
 345        if (!enabled) {
 346                logerror("'%s': service not enabled for '%s'",
 347                         service->name, path);
 348                errno = EACCES;
 349                return -1;
 350        }
 351
 352        /*
 353         * We'll ignore SIGTERM from now on, we have a
 354         * good client.
 355         */
 356        signal(SIGTERM, SIG_IGN);
 357
 358        return service->fn();
 359}
 360
 361static int upload_pack(void)
 362{
 363        /* Timeout as string */
 364        char timeout_buf[64];
 365
 366        snprintf(timeout_buf, sizeof timeout_buf, "--timeout=%u", timeout);
 367
 368        /* git-upload-pack only ever reads stuff, so this is safe */
 369        execl_git_cmd("upload-pack", "--strict", timeout_buf, ".", NULL);
 370        return -1;
 371}
 372
 373static int upload_archive(void)
 374{
 375        execl_git_cmd("upload-archive", ".", NULL);
 376        return -1;
 377}
 378
 379static int receive_pack(void)
 380{
 381        execl_git_cmd("receive-pack", ".", NULL);
 382        return -1;
 383}
 384
 385static struct daemon_service daemon_service[] = {
 386        { "upload-archive", "uploadarch", upload_archive, 0, 1 },
 387        { "upload-pack", "uploadpack", upload_pack, 1, 1 },
 388        { "receive-pack", "receivepack", receive_pack, 0, 1 },
 389};
 390
 391static void enable_service(const char *name, int ena)
 392{
 393        int i;
 394        for (i = 0; i < ARRAY_SIZE(daemon_service); i++) {
 395                if (!strcmp(daemon_service[i].name, name)) {
 396                        daemon_service[i].enabled = ena;
 397                        return;
 398                }
 399        }
 400        die("No such service %s", name);
 401}
 402
 403static void make_service_overridable(const char *name, int ena)
 404{
 405        int i;
 406        for (i = 0; i < ARRAY_SIZE(daemon_service); i++) {
 407                if (!strcmp(daemon_service[i].name, name)) {
 408                        daemon_service[i].overridable = ena;
 409                        return;
 410                }
 411        }
 412        die("No such service %s", name);
 413}
 414
 415/*
 416 * Separate the "extra args" information as supplied by the client connection.
 417 * Any resulting data is squirreled away in the given interpolation table.
 418 */
 419static void parse_extra_args(struct interp *table, char *extra_args, int buflen)
 420{
 421        char *val;
 422        int vallen;
 423        char *end = extra_args + buflen;
 424
 425        while (extra_args < end && *extra_args) {
 426                saw_extended_args = 1;
 427                if (strncasecmp("host=", extra_args, 5) == 0) {
 428                        val = extra_args + 5;
 429                        vallen = strlen(val) + 1;
 430                        if (*val) {
 431                                /* Split <host>:<port> at colon. */
 432                                char *host = val;
 433                                char *port = strrchr(host, ':');
 434                                if (port) {
 435                                        *port = 0;
 436                                        port++;
 437                                        interp_set_entry(table, INTERP_SLOT_PORT, port);
 438                                }
 439                                interp_set_entry(table, INTERP_SLOT_HOST, host);
 440                        }
 441
 442                        /* On to the next one */
 443                        extra_args = val + vallen;
 444                }
 445        }
 446}
 447
 448static void fill_in_extra_table_entries(struct interp *itable)
 449{
 450        char *hp;
 451
 452        /*
 453         * Replace literal host with lowercase-ized hostname.
 454         */
 455        hp = interp_table[INTERP_SLOT_HOST].value;
 456        if (!hp)
 457                return;
 458        for ( ; *hp; hp++)
 459                *hp = tolower(*hp);
 460
 461        /*
 462         * Locate canonical hostname and its IP address.
 463         */
 464#ifndef NO_IPV6
 465        {
 466                struct addrinfo hints;
 467                struct addrinfo *ai, *ai0;
 468                int gai;
 469                static char addrbuf[HOST_NAME_MAX + 1];
 470
 471                memset(&hints, 0, sizeof(hints));
 472                hints.ai_flags = AI_CANONNAME;
 473
 474                gai = getaddrinfo(interp_table[INTERP_SLOT_HOST].value, 0, &hints, &ai0);
 475                if (!gai) {
 476                        for (ai = ai0; ai; ai = ai->ai_next) {
 477                                struct sockaddr_in *sin_addr = (void *)ai->ai_addr;
 478
 479                                inet_ntop(AF_INET, &sin_addr->sin_addr,
 480                                          addrbuf, sizeof(addrbuf));
 481                                interp_set_entry(interp_table,
 482                                                 INTERP_SLOT_CANON_HOST, ai->ai_canonname);
 483                                interp_set_entry(interp_table,
 484                                                 INTERP_SLOT_IP, addrbuf);
 485                                break;
 486                        }
 487                        freeaddrinfo(ai0);
 488                }
 489        }
 490#else
 491        {
 492                struct hostent *hent;
 493                struct sockaddr_in sa;
 494                char **ap;
 495                static char addrbuf[HOST_NAME_MAX + 1];
 496
 497                hent = gethostbyname(interp_table[INTERP_SLOT_HOST].value);
 498
 499                ap = hent->h_addr_list;
 500                memset(&sa, 0, sizeof sa);
 501                sa.sin_family = hent->h_addrtype;
 502                sa.sin_port = htons(0);
 503                memcpy(&sa.sin_addr, *ap, hent->h_length);
 504
 505                inet_ntop(hent->h_addrtype, &sa.sin_addr,
 506                          addrbuf, sizeof(addrbuf));
 507
 508                interp_set_entry(interp_table, INTERP_SLOT_CANON_HOST, hent->h_name);
 509                interp_set_entry(interp_table, INTERP_SLOT_IP, addrbuf);
 510        }
 511#endif
 512}
 513
 514
 515static int execute(struct sockaddr *addr)
 516{
 517        static char line[1000];
 518        int pktlen, len, i;
 519
 520        if (addr) {
 521                char addrbuf[256] = "";
 522                int port = -1;
 523
 524                if (addr->sa_family == AF_INET) {
 525                        struct sockaddr_in *sin_addr = (void *) addr;
 526                        inet_ntop(addr->sa_family, &sin_addr->sin_addr, addrbuf, sizeof(addrbuf));
 527                        port = ntohs(sin_addr->sin_port);
 528#ifndef NO_IPV6
 529                } else if (addr && addr->sa_family == AF_INET6) {
 530                        struct sockaddr_in6 *sin6_addr = (void *) addr;
 531
 532                        char *buf = addrbuf;
 533                        *buf++ = '['; *buf = '\0'; /* stpcpy() is cool */
 534                        inet_ntop(AF_INET6, &sin6_addr->sin6_addr, buf, sizeof(addrbuf) - 1);
 535                        strcat(buf, "]");
 536
 537                        port = ntohs(sin6_addr->sin6_port);
 538#endif
 539                }
 540                loginfo("Connection from %s:%d", addrbuf, port);
 541        }
 542
 543        alarm(init_timeout ? init_timeout : timeout);
 544        pktlen = packet_read_line(0, line, sizeof(line));
 545        alarm(0);
 546
 547        len = strlen(line);
 548        if (pktlen != len)
 549                loginfo("Extended attributes (%d bytes) exist <%.*s>",
 550                        (int) pktlen - len,
 551                        (int) pktlen - len, line + len + 1);
 552        if (len && line[len-1] == '\n') {
 553                line[--len] = 0;
 554                pktlen--;
 555        }
 556
 557        /*
 558         * Initialize the path interpolation table for this connection.
 559         */
 560        interp_clear_table(interp_table, ARRAY_SIZE(interp_table));
 561        interp_set_entry(interp_table, INTERP_SLOT_PERCENT, "%");
 562
 563        if (len != pktlen) {
 564            parse_extra_args(interp_table, line + len + 1, pktlen - len - 1);
 565            fill_in_extra_table_entries(interp_table);
 566        }
 567
 568        for (i = 0; i < ARRAY_SIZE(daemon_service); i++) {
 569                struct daemon_service *s = &(daemon_service[i]);
 570                int namelen = strlen(s->name);
 571                if (!prefixcmp(line, "git-") &&
 572                    !strncmp(s->name, line + 4, namelen) &&
 573                    line[namelen + 4] == ' ') {
 574                        /*
 575                         * Note: The directory here is probably context sensitive,
 576                         * and might depend on the actual service being performed.
 577                         */
 578                        interp_set_entry(interp_table,
 579                                         INTERP_SLOT_DIR, line + namelen + 5);
 580                        return run_service(interp_table, s);
 581                }
 582        }
 583
 584        logerror("Protocol error: '%s'", line);
 585        return -1;
 586}
 587
 588
 589/*
 590 * We count spawned/reaped separately, just to avoid any
 591 * races when updating them from signals. The SIGCHLD handler
 592 * will only update children_reaped, and the fork logic will
 593 * only update children_spawned.
 594 *
 595 * MAX_CHILDREN should be a power-of-two to make the modulus
 596 * operation cheap. It should also be at least twice
 597 * the maximum number of connections we will ever allow.
 598 */
 599#define MAX_CHILDREN 128
 600
 601static int max_connections = 25;
 602
 603/* These are updated by the signal handler */
 604static volatile unsigned int children_reaped;
 605static pid_t dead_child[MAX_CHILDREN];
 606
 607/* These are updated by the main loop */
 608static unsigned int children_spawned;
 609static unsigned int children_deleted;
 610
 611static struct child {
 612        pid_t pid;
 613        int addrlen;
 614        struct sockaddr_storage address;
 615} live_child[MAX_CHILDREN];
 616
 617static void add_child(int idx, pid_t pid, struct sockaddr *addr, int addrlen)
 618{
 619        live_child[idx].pid = pid;
 620        live_child[idx].addrlen = addrlen;
 621        memcpy(&live_child[idx].address, addr, addrlen);
 622}
 623
 624/*
 625 * Walk from "deleted" to "spawned", and remove child "pid".
 626 *
 627 * We move everything up by one, since the new "deleted" will
 628 * be one higher.
 629 */
 630static void remove_child(pid_t pid, unsigned deleted, unsigned spawned)
 631{
 632        struct child n;
 633
 634        deleted %= MAX_CHILDREN;
 635        spawned %= MAX_CHILDREN;
 636        if (live_child[deleted].pid == pid) {
 637                live_child[deleted].pid = -1;
 638                return;
 639        }
 640        n = live_child[deleted];
 641        for (;;) {
 642                struct child m;
 643                deleted = (deleted + 1) % MAX_CHILDREN;
 644                if (deleted == spawned)
 645                        die("could not find dead child %d\n", pid);
 646                m = live_child[deleted];
 647                live_child[deleted] = n;
 648                if (m.pid == pid)
 649                        return;
 650                n = m;
 651        }
 652}
 653
 654/*
 655 * This gets called if the number of connections grows
 656 * past "max_connections".
 657 *
 658 * We _should_ start off by searching for connections
 659 * from the same IP, and if there is some address wth
 660 * multiple connections, we should kill that first.
 661 *
 662 * As it is, we just "randomly" kill 25% of the connections,
 663 * and our pseudo-random generator sucks too. I have no
 664 * shame.
 665 *
 666 * Really, this is just a place-holder for a _real_ algorithm.
 667 */
 668static void kill_some_children(int signo, unsigned start, unsigned stop)
 669{
 670        start %= MAX_CHILDREN;
 671        stop %= MAX_CHILDREN;
 672        while (start != stop) {
 673                if (!(start & 3))
 674                        kill(live_child[start].pid, signo);
 675                start = (start + 1) % MAX_CHILDREN;
 676        }
 677}
 678
 679static void check_dead_children(void)
 680{
 681        unsigned spawned, reaped, deleted;
 682
 683        spawned = children_spawned;
 684        reaped = children_reaped;
 685        deleted = children_deleted;
 686
 687        while (deleted < reaped) {
 688                pid_t pid = dead_child[deleted % MAX_CHILDREN];
 689                const char *dead = pid < 0 ? " (with error)" : "";
 690
 691                if (pid < 0)
 692                        pid = -pid;
 693
 694                /* XXX: Custom logging, since we don't wanna getpid() */
 695                if (verbose) {
 696                        if (log_syslog)
 697                                syslog(LOG_INFO, "[%d] Disconnected%s",
 698                                                pid, dead);
 699                        else
 700                                fprintf(stderr, "[%d] Disconnected%s\n",
 701                                                pid, dead);
 702                }
 703                remove_child(pid, deleted, spawned);
 704                deleted++;
 705        }
 706        children_deleted = deleted;
 707}
 708
 709static void check_max_connections(void)
 710{
 711        for (;;) {
 712                int active;
 713                unsigned spawned, deleted;
 714
 715                check_dead_children();
 716
 717                spawned = children_spawned;
 718                deleted = children_deleted;
 719
 720                active = spawned - deleted;
 721                if (active <= max_connections)
 722                        break;
 723
 724                /* Kill some unstarted connections with SIGTERM */
 725                kill_some_children(SIGTERM, deleted, spawned);
 726                if (active <= max_connections << 1)
 727                        break;
 728
 729                /* If the SIGTERM thing isn't helping use SIGKILL */
 730                kill_some_children(SIGKILL, deleted, spawned);
 731                sleep(1);
 732        }
 733}
 734
 735static void handle(int incoming, struct sockaddr *addr, int addrlen)
 736{
 737        pid_t pid = fork();
 738
 739        if (pid) {
 740                unsigned idx;
 741
 742                close(incoming);
 743                if (pid < 0)
 744                        return;
 745
 746                idx = children_spawned % MAX_CHILDREN;
 747                children_spawned++;
 748                add_child(idx, pid, addr, addrlen);
 749
 750                check_max_connections();
 751                return;
 752        }
 753
 754        dup2(incoming, 0);
 755        dup2(incoming, 1);
 756        close(incoming);
 757
 758        exit(execute(addr));
 759}
 760
 761static void child_handler(int signo)
 762{
 763        for (;;) {
 764                int status;
 765                pid_t pid = waitpid(-1, &status, WNOHANG);
 766
 767                if (pid > 0) {
 768                        unsigned reaped = children_reaped;
 769                        if (!WIFEXITED(status) || WEXITSTATUS(status) > 0)
 770                                pid = -pid;
 771                        dead_child[reaped % MAX_CHILDREN] = pid;
 772                        children_reaped = reaped + 1;
 773                        write(child_handler_pipe[1], &status, 1);
 774                        continue;
 775                }
 776                break;
 777        }
 778        signal(SIGCHLD, child_handler);
 779}
 780
 781static int set_reuse_addr(int sockfd)
 782{
 783        int on = 1;
 784
 785        if (!reuseaddr)
 786                return 0;
 787        return setsockopt(sockfd, SOL_SOCKET, SO_REUSEADDR,
 788                          &on, sizeof(on));
 789}
 790
 791#ifndef NO_IPV6
 792
 793static int socksetup(char *listen_addr, int listen_port, int **socklist_p)
 794{
 795        int socknum = 0, *socklist = NULL;
 796        int maxfd = -1;
 797        char pbuf[NI_MAXSERV];
 798        struct addrinfo hints, *ai0, *ai;
 799        int gai;
 800        long flags;
 801
 802        sprintf(pbuf, "%d", listen_port);
 803        memset(&hints, 0, sizeof(hints));
 804        hints.ai_family = AF_UNSPEC;
 805        hints.ai_socktype = SOCK_STREAM;
 806        hints.ai_protocol = IPPROTO_TCP;
 807        hints.ai_flags = AI_PASSIVE;
 808
 809        gai = getaddrinfo(listen_addr, pbuf, &hints, &ai0);
 810        if (gai)
 811                die("getaddrinfo() failed: %s\n", gai_strerror(gai));
 812
 813        for (ai = ai0; ai; ai = ai->ai_next) {
 814                int sockfd;
 815
 816                sockfd = socket(ai->ai_family, ai->ai_socktype, ai->ai_protocol);
 817                if (sockfd < 0)
 818                        continue;
 819                if (sockfd >= FD_SETSIZE) {
 820                        logerror("Socket descriptor too large");
 821                        close(sockfd);
 822                        continue;
 823                }
 824
 825#ifdef IPV6_V6ONLY
 826                if (ai->ai_family == AF_INET6) {
 827                        int on = 1;
 828                        setsockopt(sockfd, IPPROTO_IPV6, IPV6_V6ONLY,
 829                                   &on, sizeof(on));
 830                        /* Note: error is not fatal */
 831                }
 832#endif
 833
 834                if (set_reuse_addr(sockfd)) {
 835                        close(sockfd);
 836                        continue;
 837                }
 838
 839                if (bind(sockfd, ai->ai_addr, ai->ai_addrlen) < 0) {
 840                        close(sockfd);
 841                        continue;       /* not fatal */
 842                }
 843                if (listen(sockfd, 5) < 0) {
 844                        close(sockfd);
 845                        continue;       /* not fatal */
 846                }
 847
 848                flags = fcntl(sockfd, F_GETFD, 0);
 849                if (flags >= 0)
 850                        fcntl(sockfd, F_SETFD, flags | FD_CLOEXEC);
 851
 852                socklist = xrealloc(socklist, sizeof(int) * (socknum + 1));
 853                socklist[socknum++] = sockfd;
 854
 855                if (maxfd < sockfd)
 856                        maxfd = sockfd;
 857        }
 858
 859        freeaddrinfo(ai0);
 860
 861        *socklist_p = socklist;
 862        return socknum;
 863}
 864
 865#else /* NO_IPV6 */
 866
 867static int socksetup(char *listen_addr, int listen_port, int **socklist_p)
 868{
 869        struct sockaddr_in sin;
 870        int sockfd;
 871        long flags;
 872
 873        memset(&sin, 0, sizeof sin);
 874        sin.sin_family = AF_INET;
 875        sin.sin_port = htons(listen_port);
 876
 877        if (listen_addr) {
 878                /* Well, host better be an IP address here. */
 879                if (inet_pton(AF_INET, listen_addr, &sin.sin_addr.s_addr) <= 0)
 880                        return 0;
 881        } else {
 882                sin.sin_addr.s_addr = htonl(INADDR_ANY);
 883        }
 884
 885        sockfd = socket(AF_INET, SOCK_STREAM, 0);
 886        if (sockfd < 0)
 887                return 0;
 888
 889        if (set_reuse_addr(sockfd)) {
 890                close(sockfd);
 891                return 0;
 892        }
 893
 894        if ( bind(sockfd, (struct sockaddr *)&sin, sizeof sin) < 0 ) {
 895                close(sockfd);
 896                return 0;
 897        }
 898
 899        if (listen(sockfd, 5) < 0) {
 900                close(sockfd);
 901                return 0;
 902        }
 903
 904        flags = fcntl(sockfd, F_GETFD, 0);
 905        if (flags >= 0)
 906                fcntl(sockfd, F_SETFD, flags | FD_CLOEXEC);
 907
 908        *socklist_p = xmalloc(sizeof(int));
 909        **socklist_p = sockfd;
 910        return 1;
 911}
 912
 913#endif
 914
 915static int service_loop(int socknum, int *socklist)
 916{
 917        struct pollfd *pfd;
 918        int i;
 919
 920        if (pipe(child_handler_pipe) < 0)
 921                die ("Could not set up pipe for child handler");
 922
 923        pfd = xcalloc(socknum + 1, sizeof(struct pollfd));
 924
 925        for (i = 0; i < socknum; i++) {
 926                pfd[i].fd = socklist[i];
 927                pfd[i].events = POLLIN;
 928        }
 929        pfd[socknum].fd = child_handler_pipe[0];
 930        pfd[socknum].events = POLLIN;
 931
 932        signal(SIGCHLD, child_handler);
 933
 934        for (;;) {
 935                int i;
 936
 937                if (poll(pfd, socknum + 1, -1) < 0) {
 938                        if (errno != EINTR) {
 939                                logerror("Poll failed, resuming: %s",
 940                                      strerror(errno));
 941                                sleep(1);
 942                        }
 943                        continue;
 944                }
 945                if (pfd[socknum].revents & POLLIN) {
 946                        read(child_handler_pipe[0], &i, 1);
 947                        check_dead_children();
 948                }
 949
 950                for (i = 0; i < socknum; i++) {
 951                        if (pfd[i].revents & POLLIN) {
 952                                struct sockaddr_storage ss;
 953                                unsigned int sslen = sizeof(ss);
 954                                int incoming = accept(pfd[i].fd, (struct sockaddr *)&ss, &sslen);
 955                                if (incoming < 0) {
 956                                        switch (errno) {
 957                                        case EAGAIN:
 958                                        case EINTR:
 959                                        case ECONNABORTED:
 960                                                continue;
 961                                        default:
 962                                                die("accept returned %s", strerror(errno));
 963                                        }
 964                                }
 965                                handle(incoming, (struct sockaddr *)&ss, sslen);
 966                        }
 967                }
 968        }
 969}
 970
 971/* if any standard file descriptor is missing open it to /dev/null */
 972static void sanitize_stdfds(void)
 973{
 974        int fd = open("/dev/null", O_RDWR, 0);
 975        while (fd != -1 && fd < 2)
 976                fd = dup(fd);
 977        if (fd == -1)
 978                die("open /dev/null or dup failed: %s", strerror(errno));
 979        if (fd > 2)
 980                close(fd);
 981}
 982
 983static void daemonize(void)
 984{
 985        switch (fork()) {
 986                case 0:
 987                        break;
 988                case -1:
 989                        die("fork failed: %s", strerror(errno));
 990                default:
 991                        exit(0);
 992        }
 993        if (setsid() == -1)
 994                die("setsid failed: %s", strerror(errno));
 995        close(0);
 996        close(1);
 997        close(2);
 998        sanitize_stdfds();
 999}
1000
1001static void store_pid(const char *path)
1002{
1003        FILE *f = fopen(path, "w");
1004        if (!f)
1005                die("cannot open pid file %s: %s", path, strerror(errno));
1006        if (fprintf(f, "%d\n", getpid()) < 0 || fclose(f) != 0)
1007                die("failed to write pid file %s: %s", path, strerror(errno));
1008}
1009
1010static int serve(char *listen_addr, int listen_port, struct passwd *pass, gid_t gid)
1011{
1012        int socknum, *socklist;
1013
1014        socknum = socksetup(listen_addr, listen_port, &socklist);
1015        if (socknum == 0)
1016                die("unable to allocate any listen sockets on host %s port %u",
1017                    listen_addr, listen_port);
1018
1019        if (pass && gid &&
1020            (initgroups(pass->pw_name, gid) || setgid (gid) ||
1021             setuid(pass->pw_uid)))
1022                die("cannot drop privileges");
1023
1024        return service_loop(socknum, socklist);
1025}
1026
1027int main(int argc, char **argv)
1028{
1029        int listen_port = 0;
1030        char *listen_addr = NULL;
1031        int inetd_mode = 0;
1032        const char *pid_file = NULL, *user_name = NULL, *group_name = NULL;
1033        int detach = 0;
1034        struct passwd *pass = NULL;
1035        struct group *group;
1036        gid_t gid = 0;
1037        int i;
1038
1039        /* Without this we cannot rely on waitpid() to tell
1040         * what happened to our children.
1041         */
1042        signal(SIGCHLD, SIG_DFL);
1043
1044        for (i = 1; i < argc; i++) {
1045                char *arg = argv[i];
1046
1047                if (!prefixcmp(arg, "--listen=")) {
1048                    char *p = arg + 9;
1049                    char *ph = listen_addr = xmalloc(strlen(arg + 9) + 1);
1050                    while (*p)
1051                        *ph++ = tolower(*p++);
1052                    *ph = 0;
1053                    continue;
1054                }
1055                if (!prefixcmp(arg, "--port=")) {
1056                        char *end;
1057                        unsigned long n;
1058                        n = strtoul(arg+7, &end, 0);
1059                        if (arg[7] && !*end) {
1060                                listen_port = n;
1061                                continue;
1062                        }
1063                }
1064                if (!strcmp(arg, "--inetd")) {
1065                        inetd_mode = 1;
1066                        log_syslog = 1;
1067                        continue;
1068                }
1069                if (!strcmp(arg, "--verbose")) {
1070                        verbose = 1;
1071                        continue;
1072                }
1073                if (!strcmp(arg, "--syslog")) {
1074                        log_syslog = 1;
1075                        continue;
1076                }
1077                if (!strcmp(arg, "--export-all")) {
1078                        export_all_trees = 1;
1079                        continue;
1080                }
1081                if (!prefixcmp(arg, "--timeout=")) {
1082                        timeout = atoi(arg+10);
1083                        continue;
1084                }
1085                if (!prefixcmp(arg, "--init-timeout=")) {
1086                        init_timeout = atoi(arg+15);
1087                        continue;
1088                }
1089                if (!strcmp(arg, "--strict-paths")) {
1090                        strict_paths = 1;
1091                        continue;
1092                }
1093                if (!prefixcmp(arg, "--base-path=")) {
1094                        base_path = arg+12;
1095                        continue;
1096                }
1097                if (!strcmp(arg, "--base-path-relaxed")) {
1098                        base_path_relaxed = 1;
1099                        continue;
1100                }
1101                if (!prefixcmp(arg, "--interpolated-path=")) {
1102                        interpolated_path = arg+20;
1103                        continue;
1104                }
1105                if (!strcmp(arg, "--reuseaddr")) {
1106                        reuseaddr = 1;
1107                        continue;
1108                }
1109                if (!strcmp(arg, "--user-path")) {
1110                        user_path = "";
1111                        continue;
1112                }
1113                if (!prefixcmp(arg, "--user-path=")) {
1114                        user_path = arg + 12;
1115                        continue;
1116                }
1117                if (!prefixcmp(arg, "--pid-file=")) {
1118                        pid_file = arg + 11;
1119                        continue;
1120                }
1121                if (!strcmp(arg, "--detach")) {
1122                        detach = 1;
1123                        log_syslog = 1;
1124                        continue;
1125                }
1126                if (!prefixcmp(arg, "--user=")) {
1127                        user_name = arg + 7;
1128                        continue;
1129                }
1130                if (!prefixcmp(arg, "--group=")) {
1131                        group_name = arg + 8;
1132                        continue;
1133                }
1134                if (!prefixcmp(arg, "--enable=")) {
1135                        enable_service(arg + 9, 1);
1136                        continue;
1137                }
1138                if (!prefixcmp(arg, "--disable=")) {
1139                        enable_service(arg + 10, 0);
1140                        continue;
1141                }
1142                if (!prefixcmp(arg, "--allow-override=")) {
1143                        make_service_overridable(arg + 17, 1);
1144                        continue;
1145                }
1146                if (!prefixcmp(arg, "--forbid-override=")) {
1147                        make_service_overridable(arg + 18, 0);
1148                        continue;
1149                }
1150                if (!strcmp(arg, "--")) {
1151                        ok_paths = &argv[i+1];
1152                        break;
1153                } else if (arg[0] != '-') {
1154                        ok_paths = &argv[i];
1155                        break;
1156                }
1157
1158                usage(daemon_usage);
1159        }
1160
1161        if (log_syslog) {
1162                openlog("git-daemon", LOG_PID, LOG_DAEMON);
1163                set_die_routine(daemon_die);
1164        }
1165        else
1166                setlinebuf(stderr); /* avoid splitting a message in the middle */
1167
1168        if (inetd_mode && (group_name || user_name))
1169                die("--user and --group are incompatible with --inetd");
1170
1171        if (inetd_mode && (listen_port || listen_addr))
1172                die("--listen= and --port= are incompatible with --inetd");
1173        else if (listen_port == 0)
1174                listen_port = DEFAULT_GIT_PORT;
1175
1176        if (group_name && !user_name)
1177                die("--group supplied without --user");
1178
1179        if (user_name) {
1180                pass = getpwnam(user_name);
1181                if (!pass)
1182                        die("user not found - %s", user_name);
1183
1184                if (!group_name)
1185                        gid = pass->pw_gid;
1186                else {
1187                        group = getgrnam(group_name);
1188                        if (!group)
1189                                die("group not found - %s", group_name);
1190
1191                        gid = group->gr_gid;
1192                }
1193        }
1194
1195        if (strict_paths && (!ok_paths || !*ok_paths))
1196                die("option --strict-paths requires a whitelist");
1197
1198        if (base_path) {
1199                struct stat st;
1200
1201                if (stat(base_path, &st) || !S_ISDIR(st.st_mode))
1202                        die("base-path '%s' does not exist or "
1203                            "is not a directory", base_path);
1204        }
1205
1206        if (inetd_mode) {
1207                struct sockaddr_storage ss;
1208                struct sockaddr *peer = (struct sockaddr *)&ss;
1209                socklen_t slen = sizeof(ss);
1210
1211                freopen("/dev/null", "w", stderr);
1212
1213                if (getpeername(0, peer, &slen))
1214                        peer = NULL;
1215
1216                return execute(peer);
1217        }
1218
1219        if (detach) {
1220                daemonize();
1221                loginfo("Ready to rumble");
1222        }
1223        else
1224                sanitize_stdfds();
1225
1226        if (pid_file)
1227                store_pid(pid_file);
1228
1229        return serve(listen_addr, listen_port, pass, gid);
1230}