mirror of
https://github.com/ElementsProject/lightning.git
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8720bbedae
Some places (e.g. the pay plugin) only need to construct onions, not decode them. Signed-off-by: Rusty Russell <rusty@rustcorp.com.au>
388 lines
14 KiB
C
388 lines
14 KiB
C
#include "config.h"
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#include "../queries.c"
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#include <ccan/str/hex/hex.h>
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#include <common/blinding.h>
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#include <common/channel_type.h>
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#include <common/ecdh.h>
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#include <common/json_parse.h>
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#include <common/json_stream.h>
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#include <common/onionreply.h>
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#include <common/setup.h>
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#include <stdio.h>
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#ifdef NDEBUG
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#error "assert required for tests"
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#endif
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/* AUTOGENERATED MOCKS START */
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/* Generated stub for blinding_hash_e_and_ss */
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void blinding_hash_e_and_ss(const struct pubkey *e UNNEEDED,
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const struct secret *ss UNNEEDED,
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struct sha256 *sha UNNEEDED)
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{ fprintf(stderr, "blinding_hash_e_and_ss called!\n"); abort(); }
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/* Generated stub for blinding_next_privkey */
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bool blinding_next_privkey(const struct privkey *e UNNEEDED,
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const struct sha256 *h UNNEEDED,
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struct privkey *next UNNEEDED)
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{ fprintf(stderr, "blinding_next_privkey called!\n"); abort(); }
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/* Generated stub for blinding_next_pubkey */
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bool blinding_next_pubkey(const struct pubkey *pk UNNEEDED,
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const struct sha256 *h UNNEEDED,
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struct pubkey *next UNNEEDED)
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{ fprintf(stderr, "blinding_next_pubkey called!\n"); abort(); }
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/* Generated stub for daemon_conn_wake */
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void daemon_conn_wake(struct daemon_conn *dc UNNEEDED)
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{ fprintf(stderr, "daemon_conn_wake called!\n"); abort(); }
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/* Generated stub for decode_channel_update_timestamps */
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struct channel_update_timestamps *decode_channel_update_timestamps(const tal_t *ctx UNNEEDED,
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const struct tlv_reply_channel_range_tlvs_timestamps_tlv *timestamps_tlv UNNEEDED)
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{ fprintf(stderr, "decode_channel_update_timestamps called!\n"); abort(); }
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/* Generated stub for decode_scid_query_flags */
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bigsize_t *decode_scid_query_flags(const tal_t *ctx UNNEEDED,
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const struct tlv_query_short_channel_ids_tlvs_query_flags *qf UNNEEDED)
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{ fprintf(stderr, "decode_scid_query_flags called!\n"); abort(); }
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/* Generated stub for decode_short_ids */
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struct short_channel_id *decode_short_ids(const tal_t *ctx UNNEEDED, const u8 *encoded UNNEEDED)
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{ fprintf(stderr, "decode_short_ids called!\n"); abort(); }
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/* Generated stub for fromwire_gossipd_dev_set_max_scids_encode_size */
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bool fromwire_gossipd_dev_set_max_scids_encode_size(const void *p UNNEEDED, u32 *max UNNEEDED)
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{ fprintf(stderr, "fromwire_gossipd_dev_set_max_scids_encode_size called!\n"); abort(); }
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/* Generated stub for get_cupdate_parts */
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void get_cupdate_parts(const u8 *channel_update UNNEEDED,
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const u8 *parts[2] UNNEEDED,
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size_t sizes[2])
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{ fprintf(stderr, "get_cupdate_parts called!\n"); abort(); }
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/* Generated stub for get_node */
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struct node *get_node(struct routing_state *rstate UNNEEDED,
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const struct node_id *id UNNEEDED)
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{ fprintf(stderr, "get_node called!\n"); abort(); }
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/* Generated stub for gossip_store_get */
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const u8 *gossip_store_get(const tal_t *ctx UNNEEDED,
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struct gossip_store *gs UNNEEDED,
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u64 offset UNNEEDED)
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{ fprintf(stderr, "gossip_store_get called!\n"); abort(); }
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/* Generated stub for master_badmsg */
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void master_badmsg(u32 type_expected UNNEEDED, const u8 *msg)
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{ fprintf(stderr, "master_badmsg called!\n"); abort(); }
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/* Generated stub for peer_supplied_good_gossip */
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void peer_supplied_good_gossip(struct peer *peer UNNEEDED, size_t amount UNNEEDED)
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{ fprintf(stderr, "peer_supplied_good_gossip called!\n"); abort(); }
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/* Generated stub for queue_peer_from_store */
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void queue_peer_from_store(struct peer *peer UNNEEDED,
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const struct broadcastable *bcast UNNEEDED)
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{ fprintf(stderr, "queue_peer_from_store called!\n"); abort(); }
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/* Generated stub for queue_peer_msg */
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void queue_peer_msg(struct peer *peer UNNEEDED, const u8 *msg TAKES UNNEEDED)
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{ fprintf(stderr, "queue_peer_msg called!\n"); abort(); }
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/* Generated stub for towire_warningfmt */
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u8 *towire_warningfmt(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_warningfmt called!\n"); abort(); }
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/* AUTOGENERATED MOCKS END */
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void status_fmt(enum log_level level UNNEEDED,
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const struct node_id *node_id UNNEEDED,
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const char *fmt UNNEEDED, ...)
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{
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}
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/* These we can reproduce */
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static const char *test_vectors_nozlib[] = {
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"{\n"
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" \"msg\" : {\n"
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" \"type\" : \"QueryChannelRange\",\n"
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" \"chainHash\" : \"0f9188f13cb7b2c71f2a335e3a4fc328bf5beb436012afca590b1a11466e2206\",\n"
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" \"firstBlockNum\" : 100000,\n"
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" \"numberOfBlocks\" : 1500,\n"
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" \"extensions\" : [ ]\n"
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" },\n"
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" \"hex\" : \"01070f9188f13cb7b2c71f2a335e3a4fc328bf5beb436012afca590b1a11466e2206000186a0000005dc\"\n"
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"}\n",
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"{\n"
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" \"msg\" : {\n"
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" \"type\" : \"QueryChannelRange\",\n"
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" \"chainHash\" : \"0f9188f13cb7b2c71f2a335e3a4fc328bf5beb436012afca590b1a11466e2206\",\n"
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" \"firstBlockNum\" : 35000,\n"
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" \"numberOfBlocks\" : 100,\n"
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" \"extensions\" : [ \"WANT_TIMESTAMPS | WANT_CHECKSUMS\" ]\n"
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" },\n"
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" \"hex\" : \"01070f9188f13cb7b2c71f2a335e3a4fc328bf5beb436012afca590b1a11466e2206000088b800000064010103\"\n"
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"}\n",
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"{\n"
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" \"msg\" : {\n"
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" \"type\" : \"ReplyChannelRange\",\n"
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" \"chainHash\" : \"0f9188f13cb7b2c71f2a335e3a4fc328bf5beb436012afca590b1a11466e2206\",\n"
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" \"firstBlockNum\" : 122334,\n"
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" \"numberOfBlocks\" : 1500,\n"
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" \"complete\" : 1,\n"
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" \"shortChannelIds\" : {\n"
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" \"encoding\" : \"UNCOMPRESSED\",\n"
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" \"array\" : [ \"0x0x12355\", \"0x7x30934\", \"0x70x57793\" ]\n"
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" },\n"
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" \"timestamps\" : {\n"
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" \"encoding\" : \"UNCOMPRESSED\",\n"
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" \"timestamps\" : [ {\n"
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" \"timestamp1\" : 164545,\n"
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" \"timestamp2\" : 948165\n"
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" }, {\n"
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" \"timestamp1\" : 489645,\n"
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" \"timestamp2\" : 4786864\n"
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" }, {\n"
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" \"timestamp1\" : 46456,\n"
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" \"timestamp2\" : 9788415\n"
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" } ]\n"
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" },\n"
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" \"checksums\" : {\n"
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" \"checksums\" : [ {\n"
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" \"checksum1\" : 1111,\n"
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" \"checksum2\" : 2222\n"
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" }, {\n"
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" \"checksum1\" : 3333,\n"
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" \"checksum2\" : 4444\n"
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" }, {\n"
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" \"checksum1\" : 5555,\n"
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" \"checksum2\" : 6666\n"
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" } ]\n"
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" }\n"
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" },\n"
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" \"hex\" : \"01080f9188f13cb7b2c71f2a335e3a4fc328bf5beb436012afca590b1a11466e22060001ddde000005dc01001900000000000000304300000000000778d6000000000046e1c1011900000282c1000e77c5000778ad00490ab00000b57800955bff031800000457000008ae00000d050000115c000015b300001a0a\"\n"
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"}\n",
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"{\n"
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" \"msg\" : {\n"
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" \"type\" : \"QueryShortChannelIds\",\n"
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" \"chainHash\" : \"0f9188f13cb7b2c71f2a335e3a4fc328bf5beb436012afca590b1a11466e2206\",\n"
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" \"shortChannelIds\" : {\n"
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" \"encoding\" : \"UNCOMPRESSED\",\n"
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" \"array\" : [ \"0x0x142\", \"0x0x15465\", \"0x69x42692\" ]\n"
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" },\n"
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" \"extensions\" : [ ]\n"
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" },\n"
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" \"hex\" : \"01050f9188f13cb7b2c71f2a335e3a4fc328bf5beb436012afca590b1a11466e2206001900000000000000008e0000000000003c69000000000045a6c4\"\n"
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"}\n",
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};
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static void get_chainhash(const char *test_vector,
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const jsmntok_t *obj,
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struct bitcoin_blkid *chain_hash)
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{
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const jsmntok_t *tok = json_get_member(test_vector, obj, "chainHash");
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size_t hexlen = tok->end - tok->start;
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assert(hex_decode(test_vector + tok->start, hexlen,
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chain_hash, sizeof(*chain_hash)));
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}
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static u8 *get_scid_array(const tal_t *ctx,
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const char *test_vector,
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const jsmntok_t *obj)
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{
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const jsmntok_t *scids, *arr, *encoding, *t;
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size_t i;
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u8 *encoded;
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scids = json_get_member(test_vector, obj, "shortChannelIds");
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arr = json_get_member(test_vector, scids, "array");
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encoded = encoding_start(ctx, true);
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encoding = json_get_member(test_vector, scids, "encoding");
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json_for_each_arr(i, t, arr) {
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struct short_channel_id scid;
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assert(json_to_short_channel_id(test_vector, t, &scid));
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encoding_add_short_channel_id(&encoded, &scid);
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}
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assert(json_tok_streq(test_vector, encoding, "UNCOMPRESSED"));
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return encoded;
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}
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static u8 *test_query_channel_range(const char *test_vector, const jsmntok_t *obj)
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{
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struct bitcoin_blkid chain_hash;
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u32 firstBlockNum, numberOfBlocks;
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const jsmntok_t *opt, *t;
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struct tlv_query_channel_range_tlvs *tlvs
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= tlv_query_channel_range_tlvs_new(NULL);
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u8 *msg;
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size_t i;
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get_chainhash(test_vector, obj, &chain_hash);
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assert(json_to_number(test_vector, json_get_member(test_vector, obj, "firstBlockNum"), &firstBlockNum));
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assert(json_to_number(test_vector, json_get_member(test_vector, obj, "numberOfBlocks"), &numberOfBlocks));
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opt = json_get_member(test_vector, obj, "extensions");
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json_for_each_arr(i, t, opt) {
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assert(json_tok_streq(test_vector, t,
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"WANT_TIMESTAMPS | WANT_CHECKSUMS"));
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tlvs->query_option = tal(tlvs, bigsize_t);
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*tlvs->query_option =
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QUERY_ADD_TIMESTAMPS | QUERY_ADD_CHECKSUMS;
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}
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msg = towire_query_channel_range(NULL, &chain_hash, firstBlockNum, numberOfBlocks, tlvs);
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tal_free(tlvs);
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return msg;
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}
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static u8 *test_reply_channel_range(const char *test_vector, const jsmntok_t *obj)
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{
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struct bitcoin_blkid chain_hash;
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u32 firstBlockNum, numberOfBlocks, complete;
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const jsmntok_t *opt, *t;
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size_t i;
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u8 *msg;
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u8 *encoded_scids;
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u8 *ctx = tal(NULL, u8);
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struct tlv_reply_channel_range_tlvs *tlvs
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= tlv_reply_channel_range_tlvs_new(ctx);
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get_chainhash(test_vector, obj, &chain_hash);
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assert(json_to_number(test_vector, json_get_member(test_vector, obj, "firstBlockNum"), &firstBlockNum));
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assert(json_to_number(test_vector, json_get_member(test_vector, obj, "numberOfBlocks"), &numberOfBlocks));
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assert(json_to_number(test_vector, json_get_member(test_vector, obj, "complete"), &complete));
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encoded_scids = get_scid_array(ctx, test_vector, obj);
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opt = json_get_member(test_vector, obj, "timestamps");
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if (opt) {
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const jsmntok_t *encodingtok, *tstok;
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tlvs->timestamps_tlv
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= tal(tlvs, struct tlv_reply_channel_range_tlvs_timestamps_tlv);
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tlvs->timestamps_tlv->encoded_timestamps
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= encoding_start(tlvs->timestamps_tlv, false);
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encodingtok = json_get_member(test_vector, opt, "encoding");
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tstok = json_get_member(test_vector, opt, "timestamps");
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json_for_each_arr(i, t, tstok) {
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struct channel_update_timestamps ts;
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assert(json_to_number(test_vector,
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json_get_member(test_vector, t,
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"timestamp1"),
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&ts.timestamp_node_id_1));
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assert(json_to_number(test_vector,
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json_get_member(test_vector, t,
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"timestamp2"),
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&ts.timestamp_node_id_2));
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encoding_add_timestamps(&tlvs->timestamps_tlv->encoded_timestamps, &ts);
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}
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assert(json_tok_streq(test_vector, encodingtok, "UNCOMPRESSED"));
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tlvs->timestamps_tlv->encoding_type = ARR_UNCOMPRESSED;
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}
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opt = json_get_member(test_vector, obj, "checksums");
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if (opt) {
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const jsmntok_t *cstok;
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tlvs->checksums_tlv
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= tal_arr(tlvs, struct channel_update_checksums, 0);
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cstok = json_get_member(test_vector, opt, "checksums");
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json_for_each_arr(i, t, cstok) {
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struct channel_update_checksums cs;
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assert(json_to_number(test_vector,
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json_get_member(test_vector, t,
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"checksum1"),
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&cs.checksum_node_id_1));
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assert(json_to_number(test_vector,
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json_get_member(test_vector, t,
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"checksum2"),
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&cs.checksum_node_id_2));
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tal_arr_expand(&tlvs->checksums_tlv, cs);
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}
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}
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msg = towire_reply_channel_range(
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NULL, &chain_hash, firstBlockNum, numberOfBlocks,
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complete, encoded_scids, tlvs);
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tal_free(ctx);
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return msg;
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}
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static struct tlv_query_short_channel_ids_tlvs_query_flags *
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get_query_flags_array(const tal_t *ctx,
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const char *test_vector,
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const jsmntok_t *opt)
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{
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const jsmntok_t *encoding, *arr, *t;
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struct tlv_query_short_channel_ids_tlvs_query_flags *tlv
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= tal(ctx, struct tlv_query_short_channel_ids_tlvs_query_flags);
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size_t i;
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arr = json_get_member(test_vector, opt, "array");
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tlv->encoded_query_flags = encoding_start(tlv, false);
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encoding = json_get_member(test_vector, opt, "encoding");
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json_for_each_arr(i, t, arr) {
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bigsize_t f;
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assert(json_to_u64(test_vector, t, &f));
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encoding_add_query_flag(&tlv->encoded_query_flags, f);
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}
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assert(json_tok_streq(test_vector, encoding, "UNCOMPRESSED"));
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tlv->encoding_type = ARR_UNCOMPRESSED;
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return tlv;
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}
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static u8 *test_query_short_channel_ids(const char *test_vector,
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const jsmntok_t *obj)
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{
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struct bitcoin_blkid chain_hash;
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const jsmntok_t *opt;
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u8 *encoded, *msg;
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struct tlv_query_short_channel_ids_tlvs *tlvs;
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get_chainhash(test_vector, obj, &chain_hash);
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encoded = get_scid_array(NULL, test_vector, obj);
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opt = json_get_member(test_vector, obj, "extensions");
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if (opt && opt->size != 0) {
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/* Only handle a single */
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assert(opt->size == 1);
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tlvs = tlv_query_short_channel_ids_tlvs_new(encoded);
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tlvs->query_flags
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= get_query_flags_array(tlvs, test_vector, opt + 1);
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} else
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tlvs = NULL;
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msg = towire_query_short_channel_ids(NULL,
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&chain_hash, encoded, tlvs);
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tal_free(encoded);
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return msg;
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}
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int main(int argc, char *argv[])
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{
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jsmntok_t *toks = tal_arr(NULL, jsmntok_t, 1000);
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common_setup(argv[0]);
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for (size_t i = 0; i < ARRAY_SIZE(test_vectors_nozlib); i++) {
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jsmn_parser parser;
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u8 *m;
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const char *hex_m;
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const jsmntok_t *msg, *type, *hex;
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jsmn_init(&parser);
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assert(jsmn_parse(&parser,
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test_vectors_nozlib[i], strlen(test_vectors_nozlib[i]),
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toks, tal_count(toks)) > 0);
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msg = json_get_member(test_vectors_nozlib[i], toks, "msg");
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hex = json_get_member(test_vectors_nozlib[i], toks, "hex");
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type = json_get_member(test_vectors_nozlib[i], msg, "type");
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if (json_tok_streq(test_vectors_nozlib[i], type, "QueryChannelRange"))
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m = test_query_channel_range(test_vectors_nozlib[i], msg);
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else if (json_tok_streq(test_vectors_nozlib[i], type, "ReplyChannelRange"))
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m = test_reply_channel_range(test_vectors_nozlib[i], msg);
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else if (json_tok_streq(test_vectors_nozlib[i], type, "QueryShortChannelIds"))
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m = test_query_short_channel_ids(test_vectors_nozlib[i], msg);
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else
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abort();
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hex_m = tal_hex(m, m);
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assert(json_tok_streq(test_vectors_nozlib[i], hex, hex_m));
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tal_free(m);
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}
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tal_free(toks);
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common_shutdown();
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return 0;
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}
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