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https://github.com/ElementsProject/lightning.git
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29d6004efc
aka "BOLT 3: Use revocation key hash rather than revocation key", which builds on top of lightningnetwork/lightning-rfc#105 "BOLT 2,3,5: Make htlc outputs of the commitment tx spendable with revocation key". This affects callers, since they now need to hand us the revocation pubkey, but commit_tx has that already anyway. Signed-off-by: Rusty Russell <rusty@rustcorp.com.au>
166 lines
5.8 KiB
C
166 lines
5.8 KiB
C
#ifndef LIGHTNING_BITCOIN_SCRIPT_H
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#define LIGHTNING_BITCOIN_SCRIPT_H
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#include "config.h"
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#include "signature.h"
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#include "tx.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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struct bitcoin_address;
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struct bitcoin_tx_input;
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struct preimage;
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struct pubkey;
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struct sha256;
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struct rel_locktime;
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struct abs_locktime;
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/* tal_count() gives the length of the script. */
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u8 *bitcoin_redeem_2of2(const tal_t *ctx,
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const struct pubkey *key1,
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const struct pubkey *key2);
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/* tal_count() gives the length of the script. */
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u8 *bitcoin_redeem_single(const tal_t *ctx,
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const struct pubkey *key);
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/* A common script pattern: A can have it with secret, or B can have
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* it after delay. */
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u8 *bitcoin_redeem_secret_or_delay(const tal_t *ctx,
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const struct pubkey *delayed_key,
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const struct rel_locktime *locktime,
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const struct pubkey *key_if_secret_known,
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const struct sha256 *hash_of_secret);
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/* Create an output script using p2sh for this redeem script. */
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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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/* 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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const secp256k1_ecdsa_signature *sig);
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/* Create the redeemscript for a P2SH + P2WPKH. */
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u8 *bitcoin_redeem_p2sh_p2wpkh(const tal_t *ctx, const struct pubkey *key);
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/* Create a witness which spends the P2SH + P2WPKH. */
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void bitcoin_witness_p2sh_p2wpkh(const tal_t *ctx,
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struct bitcoin_tx_input *input,
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const secp256k1_ecdsa_signature *sig,
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const struct pubkey *key);
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/* Create scriptsig for p2sh-p2wpkh */
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u8 *bitcoin_scriptsig_p2sh_p2wpkh(const tal_t *ctx, const struct pubkey *key);
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/* Create scriptcode (fake witness, basically) for P2WPKH */
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u8 *p2wpkh_scriptcode(const tal_t *ctx, const struct pubkey *key);
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/* Create a script for our HTLC output: sending. */
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u8 *bitcoin_redeem_htlc_send(const tal_t *ctx,
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const struct pubkey *ourkey,
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const struct pubkey *theirkey,
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const struct abs_locktime *htlc_abstimeout,
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const struct rel_locktime *locktime,
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const struct sha256 *commit_revoke,
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const struct sha256 *rhash);
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/* Create a script for our HTLC output: receiving. */
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u8 *bitcoin_redeem_htlc_recv(const tal_t *ctx,
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const struct pubkey *ourkey,
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const struct pubkey *theirkey,
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const struct abs_locktime *htlc_abstimeout,
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const struct rel_locktime *locktime,
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const struct sha256 *commit_revoke,
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const struct sha256 *rhash);
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/* Create an output script for a 32-byte witness program. */
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u8 *scriptpubkey_p2wsh(const tal_t *ctx, const u8 *witnessscript);
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/* Create an output script for a 20-byte witness program. */
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u8 *scriptpubkey_p2wpkh(const tal_t *ctx, const struct pubkey *key);
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/* Same as above, but compressed key is already DER-encoded. */
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u8 *scriptpubkey_p2wpkh_derkey(const tal_t *ctx, const u8 der[33]);
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/* Create a witness which spends the 2of2. */
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u8 **bitcoin_witness_2of2(const tal_t *ctx,
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const secp256k1_ecdsa_signature *sig1,
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const secp256k1_ecdsa_signature *sig2,
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const struct pubkey *key1,
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const struct pubkey *key2);
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/* Create a witness which spends a p2wpkh. */
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u8 **bitcoin_witness_p2wpkh(const tal_t *ctx,
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const secp256k1_ecdsa_signature *sig,
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const struct pubkey *key);
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/* Create a witness which spends a "secret_or_delay" scriptpubkey */
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u8 **bitcoin_witness_secret(const tal_t *ctx,
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const void *secret, size_t secret_len,
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const secp256k1_ecdsa_signature *sig,
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const u8 *witnessscript);
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/* Create a witness which spends bitcoin_redeeem_htlc_recv/send */
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u8 **bitcoin_witness_htlc(const tal_t *ctx,
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const void *htlc_or_revocation_preimage,
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const secp256k1_ecdsa_signature *sig,
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const u8 *witnessscript);
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/* BOLT #3 to-local output */
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u8 *bitcoin_wscript_to_local(const tal_t *ctx,
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u16 to_self_delay,
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const struct pubkey *revocation_pubkey,
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const struct pubkey *local_delayedkey);
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u8 **bitcoin_to_local_spend_delayedkey(const tal_t *ctx,
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const secp256k1_ecdsa_signature *local_delayedsig,
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const u8 *wscript);
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u8 **bitcoin_to_local_spend_revocation(const tal_t *ctx,
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const secp256k1_ecdsa_signature *revocation_sig,
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const u8 *wscript);
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/* BOLT #3 offered/accepted HTLC outputs */
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u8 *bitcoin_wscript_htlc_offer(const tal_t *ctx,
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const struct pubkey *localkey,
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const struct pubkey *remotekey,
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const struct sha256 *payment_hash,
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const struct pubkey *revocationkey);
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u8 **bitcoin_htlc_offer_spend_timeout(const tal_t *ctx,
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const secp256k1_ecdsa_signature *localsig,
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const secp256k1_ecdsa_signature *remotesig,
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const u8 *wscript);
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u8 *bitcoin_wscript_htlc_receive(const tal_t *ctx,
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const struct abs_locktime *htlc_abstimeout,
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const struct pubkey *localkey,
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const struct pubkey *remotekey,
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const struct sha256 *payment_hash,
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const struct pubkey *revocationkey);
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u8 **bitcoin_htlc_receive_spend_preimage(const tal_t *ctx,
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const secp256k1_ecdsa_signature *localsig,
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const secp256k1_ecdsa_signature *remotesig,
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const struct preimage *preimage,
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const u8 *wscript);
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/* BOLT #3 HTLC-success/HTLC-timeout output */
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u8 *bitcoin_wscript_htlc_tx(const tal_t *ctx,
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u16 to_self_delay,
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const struct pubkey *revocation_pubkey,
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const struct pubkey *local_delayedkey);
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/* Is this a pay to pubkey hash? */
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bool is_p2pkh(const u8 *script);
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/* Is this a pay to script hash? */
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bool is_p2sh(const u8 *script);
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/* Is this (version 0) pay to witness script hash? */
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bool is_p2wsh(const u8 *script);
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/* Is this (version 0) pay to witness pubkey hash? */
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bool is_p2wpkh(const u8 *script);
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/* Are these two scripts equal? */
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bool scripteq(const tal_t *s1, const tal_t *s2);
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#endif /* LIGHTNING_BITCOIN_SCRIPT_H */
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