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288 lines
12 KiB
288 lines
12 KiB
#include <assert.h>
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#include <bitcoin/pubkey.h>
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#include <ccan/err/err.h>
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#include <ccan/opt/opt.h>
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#include <ccan/tal/str/str.h>
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#include <ccan/time/time.h>
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#include <common/pseudorand.h>
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#include <common/status.h>
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#include <common/type_to_string.h>
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#include <stdio.h>
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#include <sys/types.h>
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#include <sys/wait.h>
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#include <unistd.h>
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#include "../routing.c"
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#include "../gossip_store.c"
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void status_fmt(enum log_level level UNUSED, const char *fmt, ...)
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{
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va_list ap;
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va_start(ap, fmt);
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vprintf(fmt, ap);
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printf("\n");
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va_end(ap);
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}
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struct broadcast_state *new_broadcast_state(tal_t *ctx UNNEEDED)
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{
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return NULL;
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}
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/* AUTOGENERATED MOCKS START */
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/* Generated stub for broadcast_del */
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void broadcast_del(struct broadcast_state *bstate UNNEEDED, u64 index UNNEEDED, const u8 *payload UNNEEDED)
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{ fprintf(stderr, "broadcast_del called!\n"); abort(); }
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/* Generated stub for fromwire_channel_announcement */
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bool fromwire_channel_announcement(const tal_t *ctx UNNEEDED, const void *p UNNEEDED, secp256k1_ecdsa_signature *node_signature_1 UNNEEDED, secp256k1_ecdsa_signature *node_signature_2 UNNEEDED, secp256k1_ecdsa_signature *bitcoin_signature_1 UNNEEDED, secp256k1_ecdsa_signature *bitcoin_signature_2 UNNEEDED, u8 **features UNNEEDED, struct bitcoin_blkid *chain_hash UNNEEDED, struct short_channel_id *short_channel_id UNNEEDED, struct pubkey *node_id_1 UNNEEDED, struct pubkey *node_id_2 UNNEEDED, struct pubkey *bitcoin_key_1 UNNEEDED, struct pubkey *bitcoin_key_2 UNNEEDED)
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{ fprintf(stderr, "fromwire_channel_announcement called!\n"); abort(); }
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/* Generated stub for fromwire_channel_update */
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bool fromwire_channel_update(const void *p UNNEEDED, secp256k1_ecdsa_signature *signature UNNEEDED, struct bitcoin_blkid *chain_hash UNNEEDED, struct short_channel_id *short_channel_id UNNEEDED, u32 *timestamp UNNEEDED, u8 *message_flags UNNEEDED, u8 *channel_flags UNNEEDED, u16 *cltv_expiry_delta UNNEEDED, struct amount_msat *htlc_minimum_msat UNNEEDED, u32 *fee_base_msat UNNEEDED, u32 *fee_proportional_millionths UNNEEDED)
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{ fprintf(stderr, "fromwire_channel_update called!\n"); abort(); }
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/* Generated stub for fromwire_channel_update_option_channel_htlc_max */
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bool fromwire_channel_update_option_channel_htlc_max(const void *p UNNEEDED, secp256k1_ecdsa_signature *signature UNNEEDED, struct bitcoin_blkid *chain_hash UNNEEDED, struct short_channel_id *short_channel_id UNNEEDED, u32 *timestamp UNNEEDED, u8 *message_flags UNNEEDED, u8 *channel_flags UNNEEDED, u16 *cltv_expiry_delta UNNEEDED, struct amount_msat *htlc_minimum_msat UNNEEDED, u32 *fee_base_msat UNNEEDED, u32 *fee_proportional_millionths UNNEEDED, struct amount_msat *htlc_maximum_msat UNNEEDED)
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{ fprintf(stderr, "fromwire_channel_update_option_channel_htlc_max called!\n"); abort(); }
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/* Generated stub for fromwire_gossipd_local_add_channel */
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bool fromwire_gossipd_local_add_channel(const void *p UNNEEDED, struct short_channel_id *short_channel_id UNNEEDED, struct node_id *remote_node_id UNNEEDED, struct amount_sat *satoshis UNNEEDED)
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{ fprintf(stderr, "fromwire_gossipd_local_add_channel called!\n"); abort(); }
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/* Generated stub for fromwire_gossip_store_channel_announcement */
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bool fromwire_gossip_store_channel_announcement(const tal_t *ctx UNNEEDED, const void *p UNNEEDED, u8 **announcement UNNEEDED, struct amount_sat *satoshis UNNEEDED)
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{ fprintf(stderr, "fromwire_gossip_store_channel_announcement called!\n"); abort(); }
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/* Generated stub for fromwire_gossip_store_channel_delete */
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bool fromwire_gossip_store_channel_delete(const void *p UNNEEDED, struct short_channel_id *short_channel_id UNNEEDED)
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{ fprintf(stderr, "fromwire_gossip_store_channel_delete called!\n"); abort(); }
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/* Generated stub for fromwire_gossip_store_channel_update */
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bool fromwire_gossip_store_channel_update(const tal_t *ctx UNNEEDED, const void *p UNNEEDED, u8 **update UNNEEDED)
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{ fprintf(stderr, "fromwire_gossip_store_channel_update called!\n"); abort(); }
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/* Generated stub for fromwire_gossip_store_local_add_channel */
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bool fromwire_gossip_store_local_add_channel(const tal_t *ctx UNNEEDED, const void *p UNNEEDED, u8 **local_add UNNEEDED)
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{ fprintf(stderr, "fromwire_gossip_store_local_add_channel called!\n"); abort(); }
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/* Generated stub for fromwire_gossip_store_node_announcement */
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bool fromwire_gossip_store_node_announcement(const tal_t *ctx UNNEEDED, const void *p UNNEEDED, u8 **announcement UNNEEDED)
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{ fprintf(stderr, "fromwire_gossip_store_node_announcement called!\n"); abort(); }
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/* Generated stub for fromwire_node_announcement */
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bool fromwire_node_announcement(const tal_t *ctx UNNEEDED, const void *p UNNEEDED, secp256k1_ecdsa_signature *signature UNNEEDED, u8 **features UNNEEDED, u32 *timestamp UNNEEDED, struct pubkey *node_id UNNEEDED, u8 rgb_color[3] UNNEEDED, u8 alias[32] UNNEEDED, u8 **addresses UNNEEDED)
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{ fprintf(stderr, "fromwire_node_announcement called!\n"); abort(); }
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/* Generated stub for fromwire_peektype */
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int fromwire_peektype(const u8 *cursor UNNEEDED)
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{ fprintf(stderr, "fromwire_peektype called!\n"); abort(); }
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/* Generated stub for fromwire_wireaddr */
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bool fromwire_wireaddr(const u8 **cursor UNNEEDED, size_t *max UNNEEDED, struct wireaddr *addr UNNEEDED)
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{ fprintf(stderr, "fromwire_wireaddr called!\n"); abort(); }
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/* Generated stub for insert_broadcast */
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u64 insert_broadcast(struct broadcast_state *bstate UNNEEDED, const u8 *msg UNNEEDED,
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u32 timestamp UNNEEDED)
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{ fprintf(stderr, "insert_broadcast called!\n"); abort(); }
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/* Generated stub for next_broadcast */
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const u8 *next_broadcast(struct broadcast_state *bstate UNNEEDED,
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u32 timestamp_min UNNEEDED, u32 timestamp_max UNNEEDED,
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u64 *last_index UNNEEDED)
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{ fprintf(stderr, "next_broadcast called!\n"); abort(); }
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/* Generated stub for onion_type_name */
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const char *onion_type_name(int e UNNEEDED)
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{ fprintf(stderr, "onion_type_name called!\n"); abort(); }
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/* Generated stub for sanitize_error */
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char *sanitize_error(const tal_t *ctx UNNEEDED, const u8 *errmsg UNNEEDED,
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struct channel_id *channel_id UNNEEDED)
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{ fprintf(stderr, "sanitize_error called!\n"); abort(); }
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/* Generated stub for status_failed */
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void status_failed(enum status_failreason code UNNEEDED,
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const char *fmt UNNEEDED, ...)
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{ fprintf(stderr, "status_failed called!\n"); abort(); }
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/* Generated stub for towire_errorfmt */
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u8 *towire_errorfmt(const tal_t *ctx UNNEEDED,
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const struct channel_id *channel UNNEEDED,
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const char *fmt UNNEEDED, ...)
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{ fprintf(stderr, "towire_errorfmt called!\n"); abort(); }
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/* Generated stub for towire_gossipd_local_add_channel */
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u8 *towire_gossipd_local_add_channel(const tal_t *ctx UNNEEDED, const struct short_channel_id *short_channel_id UNNEEDED, const struct node_id *remote_node_id UNNEEDED, struct amount_sat satoshis UNNEEDED)
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{ fprintf(stderr, "towire_gossipd_local_add_channel called!\n"); abort(); }
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/* Generated stub for towire_gossip_store_channel_announcement */
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u8 *towire_gossip_store_channel_announcement(const tal_t *ctx UNNEEDED, const u8 *announcement UNNEEDED, struct amount_sat satoshis UNNEEDED)
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{ fprintf(stderr, "towire_gossip_store_channel_announcement called!\n"); abort(); }
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/* Generated stub for towire_gossip_store_channel_delete */
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u8 *towire_gossip_store_channel_delete(const tal_t *ctx UNNEEDED, const struct short_channel_id *short_channel_id UNNEEDED)
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{ fprintf(stderr, "towire_gossip_store_channel_delete called!\n"); abort(); }
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/* Generated stub for towire_gossip_store_channel_update */
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u8 *towire_gossip_store_channel_update(const tal_t *ctx UNNEEDED, const u8 *update UNNEEDED)
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{ fprintf(stderr, "towire_gossip_store_channel_update called!\n"); abort(); }
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/* Generated stub for towire_gossip_store_local_add_channel */
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u8 *towire_gossip_store_local_add_channel(const tal_t *ctx UNNEEDED, const u8 *local_add UNNEEDED)
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{ fprintf(stderr, "towire_gossip_store_local_add_channel called!\n"); abort(); }
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/* Generated stub for towire_gossip_store_node_announcement */
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u8 *towire_gossip_store_node_announcement(const tal_t *ctx UNNEEDED, const u8 *announcement UNNEEDED)
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{ fprintf(stderr, "towire_gossip_store_node_announcement called!\n"); abort(); }
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/* Generated stub for wire_type_name */
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const char *wire_type_name(int e UNNEEDED)
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{ fprintf(stderr, "wire_type_name called!\n"); abort(); }
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/* AUTOGENERATED MOCKS END */
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#if DEVELOPER
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/* Generated stub for memleak_remove_htable */
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void memleak_remove_htable(struct htable *memtable UNNEEDED, const struct htable *ht UNNEEDED)
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{ fprintf(stderr, "memleak_remove_htable called!\n"); abort(); }
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/* Generated stub for memleak_remove_intmap_ */
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void memleak_remove_intmap_(struct htable *memtable UNNEEDED, const struct intmap *m UNNEEDED)
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{ fprintf(stderr, "memleak_remove_intmap_ called!\n"); abort(); }
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#endif
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/* Updates existing route if required. */
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static void add_connection(struct routing_state *rstate,
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const struct node_id *nodes,
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u32 from, u32 to,
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u32 base_fee, s32 proportional_fee,
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u32 delay)
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{
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struct short_channel_id scid;
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struct half_chan *c;
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struct chan *chan;
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int idx = node_id_idx(&nodes[from], &nodes[to]);
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/* Encode src and dst in scid. */
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memcpy((char *)&scid + idx * sizeof(from), &from, sizeof(from));
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memcpy((char *)&scid + (!idx) * sizeof(to), &to, sizeof(to));
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chan = get_channel(rstate, &scid);
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if (!chan)
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chan = new_chan(rstate, &scid, &nodes[from], &nodes[to],
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AMOUNT_SAT(1000000));
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c = &chan->half[idx];
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c->base_fee = base_fee;
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c->proportional_fee = proportional_fee;
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c->delay = delay;
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c->channel_flags = node_id_idx(&nodes[from], &nodes[to]);
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/* This must be non-NULL, otherwise we consider it disabled! */
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c->channel_update = tal(chan, u8);
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c->htlc_maximum = AMOUNT_MSAT(-1ULL);
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c->htlc_minimum = AMOUNT_MSAT(0);
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}
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static struct node_id nodeid(size_t n)
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{
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struct node_id id;
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struct pubkey k;
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struct secret s;
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memset(&s, 0xFF, sizeof(s));
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memcpy(&s, &n, sizeof(n));
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pubkey_from_secret(&s, &k);
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node_id_from_pubkey(&id, &k);
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return id;
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}
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static void populate_random_node(struct routing_state *rstate,
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const struct node_id *nodes,
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u32 n)
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{
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/* Create 2 random channels. */
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if (n < 1)
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return;
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for (size_t i = 0; i < 2; i++) {
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u32 randnode = pseudorand(n);
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add_connection(rstate, nodes, n, randnode,
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pseudorand(100),
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pseudorand(100),
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pseudorand(144));
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add_connection(rstate, nodes, randnode, n,
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pseudorand(100),
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pseudorand(100),
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pseudorand(144));
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}
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}
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static void run(const char *name)
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{
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int status;
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switch (fork()) {
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case 0:
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execlp(name, name, NULL);
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exit(127);
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case -1:
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err(1, "forking %s", name);
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default:
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wait(&status);
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if (!WIFEXITED(status) || WEXITSTATUS(status) != 0)
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errx(1, "%s failed", name);
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}
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}
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int main(int argc, char *argv[])
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{
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setup_locale();
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struct routing_state *rstate;
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size_t num_nodes = 100, num_runs = 1;
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struct timemono start, end;
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size_t num_success;
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struct node_id me;
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struct node_id *nodes;
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bool perfme = false;
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const double riskfactor = 0.01 / BLOCKS_PER_YEAR / 10000;
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struct siphash_seed base_seed;
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secp256k1_ctx = secp256k1_context_create(SECP256K1_CONTEXT_VERIFY
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| SECP256K1_CONTEXT_SIGN);
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setup_tmpctx();
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me = nodeid(0);
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rstate = new_routing_state(tmpctx, NULL, &me, 0, NULL, NULL);
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opt_register_noarg("--perfme", opt_set_bool, &perfme,
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"Run perfme-start and perfme-stop around benchmark");
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opt_parse(&argc, argv, opt_log_stderr_exit);
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if (argc > 1)
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num_nodes = atoi(argv[1]);
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if (argc > 2)
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num_runs = atoi(argv[2]);
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if (argc > 3)
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opt_usage_and_exit("[num_nodes [num_runs]]");
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nodes = tal_arr(rstate, struct node_id, num_nodes);
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for (size_t i = 0; i < num_nodes; i++)
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nodes[i] = nodeid(i);
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memset(&base_seed, 0, sizeof(base_seed));
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for (size_t i = 0; i < num_nodes; i++)
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populate_random_node(rstate, nodes, i);
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if (perfme)
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run("perfme-start");
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start = time_mono();
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num_success = 0;
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for (size_t i = 0; i < num_runs; i++) {
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const struct node_id *from = &nodes[pseudorand(num_nodes)];
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const struct node_id *to = &nodes[pseudorand(num_nodes)];
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struct amount_msat fee;
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struct chan **route;
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route = find_route(tmpctx, rstate, from, to,
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(struct amount_msat){pseudorand(100000)},
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riskfactor,
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0.75, &base_seed,
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ROUTING_MAX_HOPS,
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&fee);
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num_success += (route != NULL);
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tal_free(route);
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}
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end = time_mono();
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if (perfme)
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run("perfme-stop");
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printf("%zu (%zu succeeded) routes in %zu nodes in %"PRIu64" msec (%"PRIu64" nanoseconds per route)",
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num_runs, num_success, num_nodes,
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time_to_msec(timemono_between(end, start)),
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time_to_nsec(time_divide(timemono_between(end, start), num_runs)));
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tal_free(tmpctx);
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secp256k1_context_destroy(secp256k1_ctx);
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opt_free_table();
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return 0;
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}
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