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https://github.com/aljazceru/lightning.git
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script: Use pkh to construct p2pkh output scripts
So far we always needed to know the public key, which was not the case for addresses that we don't own. Moving the hashing outside of the script construction allows us to send to arbitrary addresses. I also added the hash computation to the pubkey primitives.
This commit is contained in:
committed by
Rusty Russell
parent
f10b779c83
commit
40165ba6d5
@@ -99,3 +99,13 @@ static char *privkey_to_hexstr(const tal_t *ctx, const struct privkey *secret)
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}
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REGISTER_TYPE_TO_STRING(privkey, privkey_to_hexstr);
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REGISTER_TYPE_TO_HEXSTR(secret);
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void pubkey_to_hash160(const struct pubkey *pk, struct ripemd160 *hash)
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{
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u8 der[PUBKEY_DER_LEN];
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struct sha256 h;
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pubkey_to_der(der, pk);
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sha256(&h, der, sizeof(der));
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ripemd160(hash, h.u.u8, sizeof(h));
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}
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@@ -1,6 +1,8 @@
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#ifndef LIGHTNING_BITCOIN_PUBKEY_H
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#define LIGHTNING_BITCOIN_PUBKEY_H
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#include "config.h"
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#include <ccan/crypto/ripemd160/ripemd160.h>
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#include <ccan/crypto/sha256/sha256.h>
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#include <ccan/short_types/short_types.h>
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#include <ccan/tal/tal.h>
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#include <secp256k1.h>
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@@ -38,4 +40,9 @@ bool pubkey_eq(const struct pubkey *a, const struct pubkey *b);
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/* Compare the keys `a` and `b`. Return <0 if `a`<`b`, 0 if equal and >0 otherwise */
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int pubkey_cmp(const struct pubkey *a, const struct pubkey *b);
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/**
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* pubkey_to_hash160 - Get the hash for p2pkh payments for a given pubkey
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*/
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void pubkey_to_hash160(const struct pubkey *pk, struct ripemd160 *hash);
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#endif /* LIGHTNING_PUBKEY_H */
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@@ -212,15 +212,13 @@ u8 *scriptpubkey_p2sh(const tal_t *ctx, const u8 *redeemscript)
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}
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/* Create an output script using p2pkh */
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u8 *scriptpubkey_p2pkh(const tal_t *ctx, const struct pubkey *pubkey)
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u8 *scriptpubkey_p2pkh(const tal_t *ctx, const struct bitcoin_address *addr)
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{
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struct bitcoin_address addr;
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u8 *script = tal_arr(ctx, u8, 0);
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hash160_key(&addr.addr, pubkey);
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add_op(&script, OP_DUP);
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add_op(&script, OP_HASH160);
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add_push_bytes(&script, &addr.addr, sizeof(addr.addr));
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add_push_bytes(&script, &addr->addr, sizeof(addr->addr));
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add_op(&script, OP_EQUALVERIFY);
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add_op(&script, OP_CHECKSIG);
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return script;
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@@ -35,7 +35,7 @@ u8 *bitcoin_redeem_secret_or_delay(const tal_t *ctx,
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u8 *scriptpubkey_p2sh(const tal_t *ctx, const u8 *redeemscript);
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/* Create an output script using p2pkh */
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u8 *scriptpubkey_p2pkh(const tal_t *ctx, const struct pubkey *pubkey);
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u8 *scriptpubkey_p2pkh(const tal_t *ctx, const struct bitcoin_address *addr);
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/* Create an input script which spends p2pkh */
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u8 *bitcoin_redeem_p2pkh(const tal_t *ctx, const struct pubkey *pubkey,
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@@ -1,3 +1,4 @@
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#include <bitcoin/address.h>
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#include <bitcoin/base58.h>
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#include <bitcoin/privkey.h>
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#include <bitcoin/pubkey.h>
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@@ -52,6 +53,7 @@ int main(void)
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u16 funding_outnum;
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u8 *subscript;
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secp256k1_ecdsa_signature sig;
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struct bitcoin_address addr;
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secp256k1_ctx = secp256k1_context_create(SECP256K1_CONTEXT_VERIFY
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| SECP256K1_CONTEXT_SIGN);
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@@ -118,7 +120,8 @@ int main(void)
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printf("funding output: %u\n", funding_outnum);
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subscript = scriptpubkey_p2pkh(funding, &inputkey);
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pubkey_to_hash160(&inputkey, &addr.addr);
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subscript = scriptpubkey_p2pkh(funding, &addr);
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sign_tx_input(funding, 0, subscript, NULL, &input_privkey, &inputkey,
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&sig);
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