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BRPeer.h
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BRPeer.h
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//
// BRPeer.h
//
// Created by Aaron Voisine on 9/2/15.
// Copyright (c) 2015 breadwallet LLC.
//
// Permission is hereby granted, free of charge, to any person obtaining a copy
// of this software and associated documentation files (the "Software"), to deal
// in the Software without restriction, including without limitation the rights
// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
// copies of the Software, and to permit persons to whom the Software is
// furnished to do so, subject to the following conditions:
//
// The above copyright notice and this permission notice shall be included in
// all copies or substantial portions of the Software.
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
// THE SOFTWARE.
#ifndef BRPeer_h
#define BRPeer_h
#include "BRTransaction.h"
#include "BRMerkleBlock.h"
#include "BRAddress.h"
#include "BRInt.h"
#include <stddef.h>
#include <inttypes.h>
#define peer_log(peer, ...) _peer_log("%s:%"PRIu16" " _va_first(__VA_ARGS__, NULL) "\n", BRPeerHost(peer),\
(peer)->port, _va_rest(__VA_ARGS__, NULL))
#define _va_first(first, ...) first
#define _va_rest(first, ...) __VA_ARGS__
#if defined(TARGET_OS_MAC)
#include <Foundation/Foundation.h>
#define _peer_log(...) NSLog(__VA_ARGS__)
#elif defined(__ANDROID__)
#include <android/log.h>
#define _peer_log(...) __android_log_print(ANDROID_LOG_INFO, "bread", __VA_ARGS__)
#else
#include <stdio.h>
#ifdef DEBUG
#define _peer_log(...) printf(__VA_ARGS__)
#else
#define _peer_log(...)
#endif
#endif
#if defined(TARGET_OS_MAC)
#include <Foundation/Foundation.h>
#define debug_log(...) NSLog(__VA_ARGS__)
#elif defined(__ANDROID__)
#include <android/log.h>
#define debug_log(...) __android_log_print(ANDROID_LOG_DEBUG, "digiwallet", __VA_ARGS__)
#else
#include <stdio.h>
#ifdef DEBUG
#define debug_log(...) printf(__VA_ARGS__)
#else
#define debug_log(...)
#endif
#endif
#ifdef __cplusplus
extern "C" {
#endif
#define SERVICES_NODE_NETWORK 0x01 // services value indicating a node carries full blocks, not just headers
#define SERVICES_NODE_BLOOM 0x04 // BIP111: https://github.com/bitcoin/bips/blob/master/bip-0111.mediawiki
#define SERVICES_NODE_BCASH 0x20 // https://github.com/Bitcoin-UAHF/spec/blob/master/uahf-technical-spec.md
#define BR_VERSION "1.0.0"
#define USER_AGENT "/digiwallet:" BR_VERSION "/"
// explanation of message types at: https://en.bitcoin.it/wiki/Protocol_specification
#define MSG_VERSION "version"
#define MSG_VERACK "verack"
#define MSG_ADDR "addr"
#define MSG_INV "inv"
#define MSG_GETDATA "getdata"
#define MSG_NOTFOUND "notfound"
#define MSG_GETBLOCKS "getblocks"
#define MSG_GETHEADERS "getheaders"
#define MSG_TX "tx"
#define MSG_DANDELION_TX "dandeliontx"
#define MSG_BLOCK "block"
#define MSG_HEADERS "headers"
#define MSG_GETADDR "getaddr"
#define MSG_MEMPOOL "mempool"
#define MSG_PING "ping"
#define MSG_PONG "pong"
#define MSG_FILTERLOAD "filterload"
#define MSG_FILTERADD "filteradd"
#define MSG_FILTERCLEAR "filterclear"
#define MSG_MERKLEBLOCK "merkleblock"
#define MSG_ALERT "alert"
#define MSG_REJECT "reject" // described in BIP61: https://github.com/bitcoin/bips/blob/master/bip-0061.mediawiki
#define MSG_FEEFILTER "feefilter"// described in BIP133 https://github.com/bitcoin/bips/blob/master/bip-0133.mediawiki
#define REJECT_INVALID 0x10 // transaction is invalid for some reason (invalid signature, output value > input, etc)
#define REJECT_SPENT 0x12 // an input is already spent
#define REJECT_NONSTANDARD 0x40 // not mined/relayed because it is "non-standard" (type or version unknown by server)
#define REJECT_DUST 0x41 // one or more output amounts are below the 'dust' threshold
#define REJECT_LOWFEE 0x42 // transaction does not have enough fee/priority to be relayed or mined
typedef enum {
BRPeerStatusDisconnected = 0,
BRPeerStatusConnecting,
BRPeerStatusConnected
} BRPeerStatus;
typedef struct {
UInt128 address; // IPv6 address of peer
uint16_t port; // port number for peer connection
uint64_t services; // bitcoin network services supported by peer
uint64_t timestamp; // timestamp reported by peer
uint8_t flags; // scratch variable
} BRPeer;
#define BR_PEER_NONE ((BRPeer) { UINT128_ZERO, 0, 0, 0, 0 })
// NOTE: BRPeer functions are not thread-safe
// returns a newly allocated BRPeer struct that must be freed by calling BRPeerFree()
BRPeer *BRPeerNew(uint32_t magicNumber);
// info is a void pointer that will be passed along with each callback call
// void connected(void *) - called when peer handshake completes successfully
// void disconnected(void *, int) - called when peer connection is closed, error is an errno.h code
// void relayedPeers(void *, const BRPeer[], size_t) - called when an "addr" message is received from peer
// void relayedTx(void *, BRTransaction *) - called when a "tx" message is received from peer
// void hasTx(void *, UInt256 txHash) - called when an "inv" message with an already-known tx hash is received from peer
// void rejectedTx(void *, UInt256 txHash, uint8_t) - called when a "reject" message is received from peer
// void relayedBlock(void *, BRMerkleBlock *) - called when a "merkleblock" or "headers" message is received from peer
// void notfound(void *, const UInt256[], size_t, const UInt256[], size_t) - called when "notfound" message is received
// BRTransaction *requestedTx(void *, UInt256) - called when "getdata" message with a tx hash is received from peer
// int networkIsReachable(void *) - must return true when networking is available, false otherwise
// void threadCleanup(void *) - called before a thread terminates to faciliate any needed cleanup
void BRPeerSetCallbacks(BRPeer *peer, void *info,
void (*connected)(void *info),
void (*disconnected)(void *info, int error),
void (*relayedPeers)(void *info, const BRPeer peers[], size_t peersCount),
void (*relayedTx)(void *info, BRTransaction *tx),
void (*hasTx)(void *info, UInt256 txHash),
void (*rejectedTx)(void *info, UInt256 txHash, uint8_t code),
void (*relayedBlock)(void *info, BRMerkleBlock *block),
void (*notfound)(void *info, const UInt256 txHashes[], size_t txCount,
const UInt256 blockHashes[], size_t blockCount),
void (*setFeePerKb)(void *info, uint64_t feePerKb),
BRTransaction *(*requestedTx)(void *info, UInt256 txHash),
int (*networkIsReachable)(void *info),
void (*threadCleanup)(void *info));
// set earliestKeyTime to wallet creation time in order to speed up initial sync
void BRPeerSetEarliestKeyTime(BRPeer *peer, uint32_t earliestKeyTime);
// call this when local best block height changes (helps detect tarpit nodes)
void BRPeerSetCurrentBlockHeight(BRPeer *peer, uint32_t currentBlockHeight);
// current connection status
BRPeerStatus BRPeerConnectStatus(BRPeer *peer);
// open connection to peer and perform handshake
void BRPeerConnect(BRPeer *peer);
// close connection to peer
void BRPeerDisconnect(BRPeer *peer);
// call this to (re)schedule a disconnect in the given number of seconds, or < 0 to cancel (useful for sync timeout)
void BRPeerScheduleDisconnect(BRPeer *peer, double seconds);
// set this to true when wallet addresses need to be added to bloom filter
void BRPeerSetNeedsFilterUpdate(BRPeer *peer, int needsFilterUpdate);
// display name of peer address
const char *BRPeerHost(BRPeer *peer);
// connected peer version number
uint32_t BRPeerVersion(BRPeer *peer);
// connected peer user agent string
const char *BRPeerUserAgent(BRPeer *peer);
// best block height reported by connected peer
uint32_t BRPeerLastBlock(BRPeer *peer);
// minimum tx fee rate peer will accept
uint64_t BRPeerFeePerKb(BRPeer *peer);
// average ping time for connected peer
double BRPeerPingTime(BRPeer *peer);
// sends a bitcoin protocol message to peer
void BRPeerSendMessage(BRPeer *peer, const uint8_t *msg, size_t msgLen, const char *type);
void BRPeerSendFilterload(BRPeer *peer, const uint8_t *filter, size_t filterLen);
void BRPeerSendMempool(BRPeer *peer, const UInt256 knownTxHashes[], size_t knownTxCount, void *info,
void (*completionCallback)(void *info, int success));
void BRPeerSendGetheaders(BRPeer *peer, const UInt256 locators[], size_t locatorsCount, UInt256 hashStop);
void BRPeerSendGetblocks(BRPeer *peer, const UInt256 locators[], size_t locatorsCount, UInt256 hashStop);
void BRPeerSendInv(BRPeer *peer, const UInt256 txHashes[], size_t txCount);
void BRPeerSendGetdata(BRPeer *peer, const UInt256 txHashes[], size_t txCount, const UInt256 blockHashes[],
size_t blockCount);
void BRPeerSendGetaddr(BRPeer *peer);
void BRPeerSendPing(BRPeer *peer, void *info, void (*pongCallback)(void *info, int success));
// useful to get additional tx after a bloom filter update
void BRPeerRerequestBlocks(BRPeer *peer, UInt256 fromBlock);
// returns a hash value for peer suitable for use in a hashtable
inline static size_t BRPeerHash(const void *peer)
{
uint32_t address = ((const BRPeer *)peer)->address.u32[3], port = ((const BRPeer *)peer)->port;
// (((FNV_OFFSET xor address)*FNV_PRIME) xor port)*FNV_PRIME
return (size_t)((((0x811C9dc5 ^ address)*0x01000193) ^ port)*0x01000193);
}
// true if a and b have the same address and port
inline static int BRPeerEq(const void *peer, const void *otherPeer)
{
return (peer == otherPeer ||
(UInt128Eq(((const BRPeer *)peer)->address, ((const BRPeer *)otherPeer)->address) &&
((const BRPeer *)peer)->port == ((const BRPeer *)otherPeer)->port));
}
// frees memory allocated for peer
void BRPeerFree(BRPeer *peer);
#ifdef __cplusplus
}
#endif
#endif // BRPeer_h