147 lines
5.2 KiB
C
147 lines
5.2 KiB
C
/***
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* This implements the BitswapNetwork. Members of this network can fill requests and
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* smartly handle queues of local and remote requests.
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*
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* For a somewhat accurate diagram of how this may work, @see https://github.com/ipfs/js-ipfs-bitswap
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*/
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#include "libp2p/utils/logger.h"
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#include "ipfs/exchange/bitswap/network.h"
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#include "ipfs/exchange/bitswap/peer_request_queue.h"
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/****
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* send a message to a particular peer
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* @param context the BitswapContext
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* @param peer the peer that is the recipient
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* @param message the message to send
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*/
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int ipfs_bitswap_network_send_message(const struct BitswapContext* context, struct Libp2pPeer* peer, const struct BitswapMessage* message) {
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// get a connection to the peer
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if (peer->connection_type != CONNECTION_TYPE_CONNECTED) {
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libp2p_peer_connect(&context->ipfsNode->identity->private_key, peer, context->ipfsNode->peerstore, 10);
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if(peer->connection_type != CONNECTION_TYPE_CONNECTED)
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return 0;
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}
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// protobuf the message
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size_t buf_size = ipfs_bitswap_message_protobuf_encode_size(message);
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uint8_t* buf = (uint8_t*) malloc(buf_size + 20);
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if (buf == NULL)
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return 0;
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if (!ipfs_bitswap_message_protobuf_encode(message, &buf[20], buf_size, &buf_size)) {
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free(buf);
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return 0;
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}
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// tack on the protocol header
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memcpy(buf, "/ipfs/bitswap/1.1.0\n", 20);
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buf_size += 20;
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// send it
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int bytes_written = peer->sessionContext->default_stream->write(peer->sessionContext, buf, buf_size);
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if (bytes_written <= 0) {
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free(buf);
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return 0;
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}
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free(buf);
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return 1;
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}
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/***
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* Remove a cid from the queue
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* @param cids the vector of cids
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* @param cid the cid to remove
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* @returns true(1) on success, false(0) otherwise
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*/
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int ipfs_bitswap_network_remove_cid_from_queue(struct Libp2pVector* collection, struct Cid* cid) {
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if (collection == NULL || cid == NULL)
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return 0;
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for(int i = 0; i < collection->total; collection++) {
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const struct CidEntry* current = (const struct CidEntry*)libp2p_utils_vector_get(collection, i);
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if (ipfs_cid_compare(current->cid, cid) == 0) {
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libp2p_utils_vector_delete(collection, i);
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return 1;
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}
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}
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return 0;
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}
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/***
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* Handle a raw incoming bitswap message from the network
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* @param node us
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* @param sessionContext the connection context
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* @param bytes the message
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* @param bytes_size the size of the message
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* @returns true(1) on success, false(0) otherwise.
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*/
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int ipfs_bitswap_network_handle_message(const struct IpfsNode* node, const struct SessionContext* sessionContext, const uint8_t* bytes, size_t bytes_length) {
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struct BitswapContext* bitswapContext = (struct BitswapContext*)node->exchange->exchangeContext;
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// strip off the protocol header
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int start = -1;
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for(int i = 0; i < bytes_length; i++) {
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if (bytes[i] == '\n') {
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start = i+1;
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break;
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}
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}
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if (start == -1)
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return 0;
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// un-protobuf the message
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struct BitswapMessage* message = NULL;
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if (!ipfs_bitswap_message_protobuf_decode(&bytes[start], bytes_length - start, &message))
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return 0;
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// process the message
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// payload - what we want
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if (message->payload != NULL) {
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for(int i = 0; i < message->payload->total; i++) {
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struct Block* blk = (struct Block*)libp2p_utils_vector_get(message->payload, i);
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node->exchange->HasBlock(node->exchange, blk);
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}
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}
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// wantlist - what they want
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if (message->wantlist != NULL && message->wantlist->entries != NULL && message->wantlist->entries->total > 0) {
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// get the peer
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if (sessionContext->remote_peer_id == NULL) {
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ipfs_bitswap_message_free(message);
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return 0;
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}
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struct Libp2pPeer* peer = libp2p_peerstore_get_or_add_peer_by_id(node->peerstore, (unsigned char*)sessionContext->remote_peer_id, strlen(sessionContext->remote_peer_id));
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if (peer == NULL) {
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libp2p_logger_error("bitswap_network", "Unable to find or add peer %s of length %d to peerstore.\n", sessionContext->remote_peer_id, strlen(sessionContext->remote_peer_id));
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ipfs_bitswap_message_free(message);
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return 0;
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}
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// find the queue
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struct PeerRequestEntry* queueEntry = ipfs_bitswap_peer_request_queue_find_entry(bitswapContext->peerRequestQueue, peer);
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if (queueEntry == NULL) {
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// add the queue
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struct PeerRequest* peerRequest =ipfs_bitswap_peer_request_new();
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peerRequest->peer = peer;
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ipfs_bitswap_peer_request_queue_add(bitswapContext->peerRequestQueue, peerRequest);
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queueEntry = ipfs_bitswap_peer_request_queue_find_entry(bitswapContext->peerRequestQueue, peer);
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if (queueEntry == NULL) {
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ipfs_bitswap_message_free(message);
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return 0;
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}
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}
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for(int i = 0; i < message->wantlist->entries->total; i++) {
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struct WantlistEntry* entry = (struct WantlistEntry*) libp2p_utils_vector_get(message->wantlist->entries, i);
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// turn the "block" back into a cid
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struct Cid* cid = NULL;
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if (!ipfs_cid_protobuf_decode(entry->block, entry->block_size, &cid) || cid->hash_length == 0) {
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libp2p_logger_error("bitswap_network", "Message had invalid CID\n");
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ipfs_cid_free(cid);
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return 0;
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}
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if (entry->cancel)
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ipfs_bitswap_network_remove_cid_from_queue(queueEntry->current->cids_they_want, cid);
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else {
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struct CidEntry* cidEntry = ipfs_bitswap_peer_request_cid_entry_new();
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cidEntry->cid = cid;
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cidEntry->cancel = 0;
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libp2p_utils_vector_add(queueEntry->current->cids_they_want, cidEntry);
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}
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}
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}
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return 1;
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}
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