#include "cache.h" #include "refs.h" #include "pkt-line.h" #include "commit.h" #include "tag.h" #include #include static int quiet; static int verbose; static const char fetch_pack_usage[] = "git-fetch-pack [-q] [-v] [--exec=upload-pack] [host:]directory ..."; static const char *exec = "git-upload-pack"; #define COMPLETE (1U << 0) static int find_common(int fd[2], unsigned char *result_sha1, struct ref *refs) { int fetching; static char line[1000]; static char rev_command[1024]; int count = 0, flushes = 0, retval, rev_command_len; FILE *revs; strcpy(rev_command, "git-rev-list $(git-rev-parse --all)"); rev_command_len = strlen(rev_command); fetching = 0; for ( ; refs ; refs = refs->next) { unsigned char *remote = refs->old_sha1; struct object *o; /* * If that object is complete (i.e. it is an ancestor of a * local ref), we tell them we have it but do not have to * tell them about its ancestors, which they already know * about. * * We use lookup_object here because we are only * interested in the case we *know* the object is * reachable and we have already scanned it. */ if (((o = lookup_object(remote)) != NULL) && (o->flags & COMPLETE)) { struct commit_list *p; struct commit *commit = (struct commit *) (o = deref_tag(o)); if (!o) goto repair; if (o->type != commit_type) continue; p = commit->parents; while (p && rev_command_len + 44 < sizeof(rev_command)) { snprintf(rev_command + rev_command_len, 44, " ^%s", sha1_to_hex(p->item->object.sha1)); rev_command_len += 43; p = p->next; } continue; } repair: packet_write(fd[1], "want %s\n", sha1_to_hex(remote)); fetching++; } packet_flush(fd[1]); if (!fetching) return 1; revs = popen(rev_command, "r"); if (!revs) die("unable to run 'git-rev-list'"); flushes = 1; retval = -1; while (fgets(line, sizeof(line), revs) != NULL) { unsigned char sha1[20]; if (get_sha1_hex(line, sha1)) die("git-fetch-pack: expected object name, got crud"); packet_write(fd[1], "have %s\n", sha1_to_hex(sha1)); if (verbose) fprintf(stderr, "have %s\n", sha1_to_hex(sha1)); if (!(31 & ++count)) { packet_flush(fd[1]); flushes++; /* * We keep one window "ahead" of the other side, and * will wait for an ACK only on the next one */ if (count == 32) continue; if (get_ack(fd[0], result_sha1)) { flushes = 0; retval = 0; if (verbose) fprintf(stderr, "got ack\n"); break; } flushes--; } } pclose(revs); packet_write(fd[1], "done\n"); if (verbose) fprintf(stderr, "done\n"); while (flushes) { flushes--; if (get_ack(fd[0], result_sha1)) { if (verbose) fprintf(stderr, "got ack\n"); return 0; } } return retval; } static struct commit_list *complete = NULL; static int mark_complete(const char *path, const unsigned char *sha1) { struct object *o = parse_object(sha1); while (o && o->type == tag_type) { struct tag *t = (struct tag *) o; if (!t->tagged) break; /* broken repository */ o->flags |= COMPLETE; o = parse_object(t->tagged->sha1); } if (o && o->type == commit_type) { struct commit *commit = (struct commit *)o; commit->object.flags |= COMPLETE; insert_by_date(commit, &complete); } return 0; } static void mark_recent_complete_commits(unsigned long cutoff) { while (complete && cutoff <= complete->item->date) { if (verbose) fprintf(stderr, "Marking %s as complete\n", sha1_to_hex(complete->item->object.sha1)); pop_most_recent_commit(&complete, COMPLETE); } } static int everything_local(struct ref *refs) { struct ref *ref; int retval; unsigned long cutoff = 0; track_object_refs = 0; save_commit_buffer = 0; for (ref = refs; ref; ref = ref->next) { struct object *o; o = parse_object(ref->old_sha1); if (!o) continue; /* We already have it -- which may mean that we were * in sync with the other side at some time after * that (it is OK if we guess wrong here). */ if (o->type == commit_type) { struct commit *commit = (struct commit *)o; if (!cutoff || cutoff < commit->date) cutoff = commit->date; } } for_each_ref(mark_complete); if (cutoff) mark_recent_complete_commits(cutoff); for (retval = 1; refs ; refs = refs->next) { const unsigned char *remote = refs->old_sha1; unsigned char local[20]; struct object *o; o = parse_object(remote); if (!o || !(o->flags & COMPLETE)) { retval = 0; if (!verbose) continue; fprintf(stderr, "want %s (%s)\n", sha1_to_hex(remote), refs->name); continue; } memcpy(refs->new_sha1, local, 20); if (!verbose) continue; fprintf(stderr, "already have %s (%s)\n", sha1_to_hex(remote), refs->name); } return retval; } static int fetch_pack(int fd[2], int nr_match, char **match) { struct ref *ref; unsigned char sha1[20]; int status; pid_t pid; get_remote_heads(fd[0], &ref, nr_match, match, 1); if (!ref) { packet_flush(fd[1]); die("no matching remote head"); } if (everything_local(ref)) { packet_flush(fd[1]); goto all_done; } if (find_common(fd, sha1, ref) < 0) fprintf(stderr, "warning: no common commits\n"); pid = fork(); if (pid < 0) die("git-fetch-pack: unable to fork off git-unpack-objects"); if (!pid) { dup2(fd[0], 0); close(fd[0]); close(fd[1]); execlp("git-unpack-objects", "git-unpack-objects", quiet ? "-q" : NULL, NULL); die("git-unpack-objects exec failed"); } close(fd[0]); close(fd[1]); while (waitpid(pid, &status, 0) < 0) { if (errno != EINTR) die("waiting for git-unpack-objects: %s", strerror(errno)); } if (WIFEXITED(status)) { int code = WEXITSTATUS(status); if (code) die("git-unpack-objects died with error code %d", code); all_done: while (ref) { printf("%s %s\n", sha1_to_hex(ref->old_sha1), ref->name); ref = ref->next; } return 0; } if (WIFSIGNALED(status)) { int sig = WTERMSIG(status); die("git-unpack-objects died of signal %d", sig); } die("Sherlock Holmes! git-unpack-objects died of unnatural causes %d!", status); } int main(int argc, char **argv) { int i, ret, nr_heads; char *dest = NULL, **heads; int fd[2]; pid_t pid; nr_heads = 0; heads = NULL; for (i = 1; i < argc; i++) { char *arg = argv[i]; if (*arg == '-') { if (!strncmp("--exec=", arg, 7)) { exec = arg + 7; continue; } if (!strcmp("-q", arg)) { quiet = 1; continue; } if (!strcmp("-v", arg)) { verbose = 1; continue; } usage(fetch_pack_usage); } dest = arg; heads = argv + i + 1; nr_heads = argc - i - 1; break; } if (!dest) usage(fetch_pack_usage); pid = git_connect(fd, dest, exec); if (pid < 0) return 1; ret = fetch_pack(fd, nr_heads, heads); close(fd[0]); close(fd[1]); finish_connect(pid); return ret; }