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The smart transport has already take the payload param. For the sub transport a payload param is useful for the implementer.
420 lines
9.9 KiB
C
420 lines
9.9 KiB
C
/*
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* Copyright (C) the libgit2 contributors. All rights reserved.
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*
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* This file is part of libgit2, distributed under the GNU GPL v2 with
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* a Linking Exception. For full terms see the included COPYING file.
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*/
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#include "git2.h"
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#include "smart.h"
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#include "refs.h"
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#include "refspec.h"
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static int git_smart__recv_cb(gitno_buffer *buf)
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{
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transport_smart *t = (transport_smart *) buf->cb_data;
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size_t old_len, bytes_read;
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int error;
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assert(t->current_stream);
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old_len = buf->offset;
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if ((error = t->current_stream->read(t->current_stream, buf->data + buf->offset, buf->len - buf->offset, &bytes_read)) < 0)
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return error;
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buf->offset += bytes_read;
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if (t->packetsize_cb && !t->cancelled.val) {
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error = t->packetsize_cb(bytes_read, t->packetsize_payload);
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if (error) {
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git_atomic_set(&t->cancelled, 1);
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return GIT_EUSER;
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}
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}
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return (int)(buf->offset - old_len);
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}
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GIT_INLINE(int) git_smart__reset_stream(transport_smart *t, bool close_subtransport)
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{
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if (t->current_stream) {
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t->current_stream->free(t->current_stream);
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t->current_stream = NULL;
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}
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if (close_subtransport &&
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t->wrapped->close(t->wrapped) < 0)
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return -1;
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return 0;
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}
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static int git_smart__set_callbacks(
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git_transport *transport,
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git_transport_message_cb progress_cb,
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git_transport_message_cb error_cb,
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git_transport_certificate_check_cb certificate_check_cb,
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void *message_cb_payload)
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{
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transport_smart *t = (transport_smart *)transport;
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t->progress_cb = progress_cb;
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t->error_cb = error_cb;
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t->certificate_check_cb = certificate_check_cb;
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t->message_cb_payload = message_cb_payload;
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return 0;
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}
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int git_smart__update_heads(transport_smart *t, git_vector *symrefs)
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{
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size_t i;
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git_pkt *pkt;
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git_vector_clear(&t->heads);
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git_vector_foreach(&t->refs, i, pkt) {
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git_pkt_ref *ref = (git_pkt_ref *) pkt;
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if (pkt->type != GIT_PKT_REF)
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continue;
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if (symrefs) {
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git_refspec *spec;
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git_buf buf = GIT_BUF_INIT;
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size_t j;
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int error = 0;
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git_vector_foreach(symrefs, j, spec) {
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git_buf_clear(&buf);
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if (git_refspec_src_matches(spec, ref->head.name) &&
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!(error = git_refspec_transform(&buf, spec, ref->head.name)))
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ref->head.symref_target = git_buf_detach(&buf);
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}
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git_buf_free(&buf);
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if (error < 0)
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return error;
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}
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if (git_vector_insert(&t->heads, &ref->head) < 0)
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return -1;
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}
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return 0;
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}
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static void free_symrefs(git_vector *symrefs)
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{
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git_refspec *spec;
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size_t i;
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git_vector_foreach(symrefs, i, spec) {
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git_refspec__free(spec);
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git__free(spec);
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}
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git_vector_free(symrefs);
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}
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static int git_smart__connect(
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git_transport *transport,
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const char *url,
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git_cred_acquire_cb cred_acquire_cb,
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void *cred_acquire_payload,
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int direction,
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int flags)
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{
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transport_smart *t = (transport_smart *)transport;
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git_smart_subtransport_stream *stream;
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int error;
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git_pkt *pkt;
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git_pkt_ref *first;
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git_vector symrefs;
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git_smart_service_t service;
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if (git_smart__reset_stream(t, true) < 0)
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return -1;
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t->url = git__strdup(url);
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GITERR_CHECK_ALLOC(t->url);
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t->direction = direction;
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t->flags = flags;
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t->cred_acquire_cb = cred_acquire_cb;
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t->cred_acquire_payload = cred_acquire_payload;
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if (GIT_DIRECTION_FETCH == t->direction)
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service = GIT_SERVICE_UPLOADPACK_LS;
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else if (GIT_DIRECTION_PUSH == t->direction)
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service = GIT_SERVICE_RECEIVEPACK_LS;
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else {
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giterr_set(GITERR_NET, "Invalid direction");
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return -1;
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}
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if ((error = t->wrapped->action(&stream, t->wrapped, t->url, service)) < 0)
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return error;
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/* Save off the current stream (i.e. socket) that we are working with */
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t->current_stream = stream;
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gitno_buffer_setup_callback(&t->buffer, t->buffer_data, sizeof(t->buffer_data), git_smart__recv_cb, t);
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/* 2 flushes for RPC; 1 for stateful */
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if ((error = git_smart__store_refs(t, t->rpc ? 2 : 1)) < 0)
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return error;
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/* Strip the comment packet for RPC */
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if (t->rpc) {
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pkt = (git_pkt *)git_vector_get(&t->refs, 0);
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if (!pkt || GIT_PKT_COMMENT != pkt->type) {
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giterr_set(GITERR_NET, "Invalid response");
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return -1;
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} else {
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/* Remove the comment pkt from the list */
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git_vector_remove(&t->refs, 0);
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git__free(pkt);
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}
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}
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/* We now have loaded the refs. */
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t->have_refs = 1;
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first = (git_pkt_ref *)git_vector_get(&t->refs, 0);
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if ((error = git_vector_init(&symrefs, 1, NULL)) < 0)
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return error;
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/* Detect capabilities */
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if (git_smart__detect_caps(first, &t->caps, &symrefs) < 0)
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return -1;
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/* If the only ref in the list is capabilities^{} with OID_ZERO, remove it */
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if (1 == t->refs.length && !strcmp(first->head.name, "capabilities^{}") &&
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git_oid_iszero(&first->head.oid)) {
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git_vector_clear(&t->refs);
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git_pkt_free((git_pkt *)first);
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}
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/* Keep a list of heads for _ls */
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git_smart__update_heads(t, &symrefs);
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free_symrefs(&symrefs);
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if (t->rpc && git_smart__reset_stream(t, false) < 0)
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return -1;
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/* We're now logically connected. */
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t->connected = 1;
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return 0;
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}
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static int git_smart__ls(const git_remote_head ***out, size_t *size, git_transport *transport)
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{
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transport_smart *t = (transport_smart *)transport;
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if (!t->have_refs) {
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giterr_set(GITERR_NET, "The transport has not yet loaded the refs");
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return -1;
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}
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*out = (const git_remote_head **) t->heads.contents;
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*size = t->heads.length;
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return 0;
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}
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int git_smart__negotiation_step(git_transport *transport, void *data, size_t len)
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{
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transport_smart *t = (transport_smart *)transport;
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git_smart_subtransport_stream *stream;
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int error;
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if (t->rpc && git_smart__reset_stream(t, false) < 0)
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return -1;
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if (GIT_DIRECTION_FETCH != t->direction) {
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giterr_set(GITERR_NET, "This operation is only valid for fetch");
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return -1;
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}
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if ((error = t->wrapped->action(&stream, t->wrapped, t->url, GIT_SERVICE_UPLOADPACK)) < 0)
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return error;
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/* If this is a stateful implementation, the stream we get back should be the same */
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assert(t->rpc || t->current_stream == stream);
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/* Save off the current stream (i.e. socket) that we are working with */
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t->current_stream = stream;
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if ((error = stream->write(stream, (const char *)data, len)) < 0)
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return error;
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gitno_buffer_setup_callback(&t->buffer, t->buffer_data, sizeof(t->buffer_data), git_smart__recv_cb, t);
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return 0;
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}
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int git_smart__get_push_stream(transport_smart *t, git_smart_subtransport_stream **stream)
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{
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int error;
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if (t->rpc && git_smart__reset_stream(t, false) < 0)
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return -1;
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if (GIT_DIRECTION_PUSH != t->direction) {
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giterr_set(GITERR_NET, "This operation is only valid for push");
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return -1;
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}
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if ((error = t->wrapped->action(stream, t->wrapped, t->url, GIT_SERVICE_RECEIVEPACK)) < 0)
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return error;
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/* If this is a stateful implementation, the stream we get back should be the same */
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assert(t->rpc || t->current_stream == *stream);
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/* Save off the current stream (i.e. socket) that we are working with */
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t->current_stream = *stream;
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gitno_buffer_setup_callback(&t->buffer, t->buffer_data, sizeof(t->buffer_data), git_smart__recv_cb, t);
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return 0;
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}
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static void git_smart__cancel(git_transport *transport)
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{
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transport_smart *t = (transport_smart *)transport;
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git_atomic_set(&t->cancelled, 1);
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}
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static int git_smart__is_connected(git_transport *transport)
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{
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transport_smart *t = (transport_smart *)transport;
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return t->connected;
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}
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static int git_smart__read_flags(git_transport *transport, int *flags)
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{
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transport_smart *t = (transport_smart *)transport;
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*flags = t->flags;
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return 0;
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}
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static int git_smart__close(git_transport *transport)
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{
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transport_smart *t = (transport_smart *)transport;
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git_vector *common = &t->common;
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unsigned int i;
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git_pkt *p;
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int ret;
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git_smart_subtransport_stream *stream;
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const char flush[] = "0000";
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/*
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* If we're still connected at this point and not using RPC,
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* we should say goodbye by sending a flush, or git-daemon
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* will complain that we disconnected unexpectedly.
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*/
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if (t->connected && !t->rpc &&
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!t->wrapped->action(&stream, t->wrapped, t->url, GIT_SERVICE_UPLOADPACK)) {
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t->current_stream->write(t->current_stream, flush, 4);
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}
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ret = git_smart__reset_stream(t, true);
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git_vector_foreach(common, i, p)
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git_pkt_free(p);
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git_vector_free(common);
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if (t->url) {
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git__free(t->url);
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t->url = NULL;
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}
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t->connected = 0;
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return ret;
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}
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static void git_smart__free(git_transport *transport)
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{
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transport_smart *t = (transport_smart *)transport;
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git_vector *refs = &t->refs;
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unsigned int i;
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git_pkt *p;
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/* Make sure that the current stream is closed, if we have one. */
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git_smart__close(transport);
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/* Free the subtransport */
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t->wrapped->free(t->wrapped);
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git_vector_free(&t->heads);
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git_vector_foreach(refs, i, p)
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git_pkt_free(p);
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git_vector_free(refs);
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git__free(t);
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}
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static int ref_name_cmp(const void *a, const void *b)
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{
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const git_pkt_ref *ref_a = a, *ref_b = b;
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return strcmp(ref_a->head.name, ref_b->head.name);
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}
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int git_transport_smart(git_transport **out, git_remote *owner, void *param)
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{
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transport_smart *t;
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git_smart_subtransport_definition *definition = (git_smart_subtransport_definition *)param;
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if (!param)
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return -1;
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t = git__calloc(1, sizeof(transport_smart));
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GITERR_CHECK_ALLOC(t);
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t->parent.version = GIT_TRANSPORT_VERSION;
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t->parent.set_callbacks = git_smart__set_callbacks;
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t->parent.connect = git_smart__connect;
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t->parent.close = git_smart__close;
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t->parent.free = git_smart__free;
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t->parent.negotiate_fetch = git_smart__negotiate_fetch;
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t->parent.download_pack = git_smart__download_pack;
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t->parent.push = git_smart__push;
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t->parent.ls = git_smart__ls;
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t->parent.is_connected = git_smart__is_connected;
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t->parent.read_flags = git_smart__read_flags;
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t->parent.cancel = git_smart__cancel;
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t->owner = owner;
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t->rpc = definition->rpc;
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if (git_vector_init(&t->refs, 16, ref_name_cmp) < 0) {
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git__free(t);
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return -1;
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}
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if (git_vector_init(&t->heads, 16, ref_name_cmp) < 0) {
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git__free(t);
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return -1;
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}
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if (definition->callback(&t->wrapped, &t->parent, definition->param) < 0) {
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git__free(t);
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return -1;
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}
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*out = (git_transport *) t;
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return 0;
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}
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