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144 lines
3.1 KiB
144 lines
3.1 KiB
#include "wire.h"
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#include <bitcoin/preimage.h>
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#include <bitcoin/shadouble.h>
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#include <ccan/crypto/ripemd160/ripemd160.h>
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#include <ccan/endian/endian.h>
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#include <ccan/mem/mem.h>
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#include <ccan/tal/tal.h>
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#include <common/utils.h>
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void towire(u8 **pptr, const void *data, size_t len)
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{
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size_t oldsize = tal_count(*pptr);
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tal_resize(pptr, oldsize + len);
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memcpy(*pptr + oldsize, memcheck(data, len), len);
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}
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void towire_u8(u8 **pptr, u8 v)
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{
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towire(pptr, &v, sizeof(v));
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}
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void towire_u16(u8 **pptr, u16 v)
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{
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be16 l = cpu_to_be16(v);
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towire(pptr, &l, sizeof(l));
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}
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void towire_u32(u8 **pptr, u32 v)
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{
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be32 l = cpu_to_be32(v);
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towire(pptr, &l, sizeof(l));
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}
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void towire_u64(u8 **pptr, u64 v)
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{
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be64 l = cpu_to_be64(v);
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towire(pptr, &l, sizeof(l));
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}
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void towire_bool(u8 **pptr, bool v)
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{
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u8 val = v;
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towire(pptr, &val, sizeof(val));
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}
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void towire_pubkey(u8 **pptr, const struct pubkey *pubkey)
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{
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u8 output[PUBKEY_DER_LEN];
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size_t outputlen = sizeof(output);
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if (pubkey)
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secp256k1_ec_pubkey_serialize(secp256k1_ctx, output, &outputlen,
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&pubkey->pubkey,
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SECP256K1_EC_COMPRESSED);
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else
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memset(output, 0, sizeof(output));
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towire(pptr, output, outputlen);
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}
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void towire_secret(u8 **pptr, const struct secret *secret)
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{
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towire(pptr, secret->data, sizeof(secret->data));
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}
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void towire_privkey(u8 **pptr, const struct privkey *privkey)
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{
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towire_secret(pptr, &privkey->secret);
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}
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void towire_secp256k1_ecdsa_signature(u8 **pptr,
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const secp256k1_ecdsa_signature *sig)
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{
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u8 compact[64];
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secp256k1_ecdsa_signature_serialize_compact(secp256k1_ctx,
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compact, sig);
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towire(pptr, compact, sizeof(compact));
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}
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void towire_secp256k1_ecdsa_recoverable_signature(u8 **pptr,
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const secp256k1_ecdsa_recoverable_signature *rsig)
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{
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u8 compact[64];
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int recid;
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secp256k1_ecdsa_recoverable_signature_serialize_compact(secp256k1_ctx,
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compact,
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&recid,
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rsig);
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towire(pptr, compact, sizeof(compact));
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towire_u8(pptr, recid);
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}
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void towire_channel_id(u8 **pptr, const struct channel_id *channel_id)
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{
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towire(pptr, channel_id, sizeof(*channel_id));
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}
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void towire_short_channel_id(u8 **pptr,
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const struct short_channel_id *short_channel_id)
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{
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be32 txnum = cpu_to_be32(short_channel_id->txnum);
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be32 blocknum = cpu_to_be32(short_channel_id->blocknum);
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towire(pptr, (char *)&blocknum + 1, 3);
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towire(pptr, (char *)&txnum + 1, 3);
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towire_u16(pptr, short_channel_id->outnum);
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}
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void towire_sha256(u8 **pptr, const struct sha256 *sha256)
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{
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towire(pptr, sha256, sizeof(*sha256));
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}
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void towire_sha256_double(u8 **pptr, const struct sha256_double *sha256d)
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{
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towire_sha256(pptr, &sha256d->sha);
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}
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void towire_preimage(u8 **pptr, const struct preimage *preimage)
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{
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towire(pptr, preimage, sizeof(*preimage));
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}
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void towire_ripemd160(u8 **pptr, const struct ripemd160 *ripemd)
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{
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towire(pptr, ripemd, sizeof(*ripemd));
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}
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void towire_u8_array(u8 **pptr, const u8 *arr, size_t num)
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{
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towire(pptr, arr, num);
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}
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void towire_pad(u8 **pptr, size_t num)
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{
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/* Simply insert zeros. */
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size_t oldsize = tal_count(*pptr);
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tal_resize(pptr, oldsize + num);
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memset(*pptr + oldsize, 0, num);
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}
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