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commit_tx: new file containing logic to create initial commitment transaction.

Signed-off-by: Rusty Russell <rusty@rustcorp.com.au>
ppa-0.6.1
Rusty Russell 10 years ago
parent
commit
c04d20e019
  1. 2
      Makefile
  2. 45
      commit_tx.c
  3. 15
      commit_tx.h
  4. 37
      open-commit-sig.c

2
Makefile

@ -5,7 +5,7 @@ PROTOCC:=protoc-c
PROGRAMS := open-channel open-anchor-sig leak-anchor-sigs open-commit-sig PROGRAMS := open-channel open-anchor-sig leak-anchor-sigs open-commit-sig
HELPER_OBJS := base58.o lightning.pb-c.o shadouble.o pkt.o bitcoin_script.o permute_tx.o signature.o bitcoin_tx.o bitcoin_address.o anchor.o HELPER_OBJS := base58.o lightning.pb-c.o shadouble.o pkt.o bitcoin_script.o permute_tx.o signature.o bitcoin_tx.o bitcoin_address.o anchor.o commit_tx.o
CCAN_OBJS := ccan-crypto-sha256.o ccan-crypto-shachain.o ccan-err.o ccan-tal.o ccan-tal-str.o ccan-take.o ccan-list.o ccan-str.o ccan-opt-helpers.o ccan-opt.o ccan-opt-parse.o ccan-opt-usage.o ccan-read_write_all.o ccan-str-hex.o ccan-tal-grab_file.o ccan-noerr.o CCAN_OBJS := ccan-crypto-sha256.o ccan-crypto-shachain.o ccan-err.o ccan-tal.o ccan-tal-str.o ccan-take.o ccan-list.o ccan-str.o ccan-opt-helpers.o ccan-opt.o ccan-opt-parse.o ccan-opt-usage.o ccan-read_write_all.o ccan-str-hex.o ccan-tal-grab_file.o ccan-noerr.o

45
commit_tx.c

@ -0,0 +1,45 @@
#include "commit_tx.h"
#include "shadouble.h"
#include "bitcoin_tx.h"
#include "bitcoin_script.h"
#include "permute_tx.h"
struct bitcoin_tx *create_commit_tx(const tal_t *ctx,
OpenChannel *ours,
OpenChannel *theirs,
const struct sha256_double *anchor_txid,
unsigned int anchor_output)
{
struct bitcoin_tx *tx;
const u8 *redeemscript;
/* Now create commitment tx: one input, two outputs. */
tx = bitcoin_tx(ctx, 1, 2);
/* Our input spends the anchor tx output. */
tx->input[0].txid = *anchor_txid;
tx->input[0].index = anchor_output;
/* First output is a P2SH to a complex redeem script (usu. for me) */
redeemscript = bitcoin_redeem_revocable(tx, ours->anchor->pubkey,
ours->locktime_seconds,
theirs->anchor->pubkey,
ours->revocation_hash);
tx->output[0].script = scriptpubkey_p2sh(tx, redeemscript);
tx->output[0].script_length = tal_count(tx->output[0].script);
if (ours->anchor->total < ours->commitment_fee)
return tal_free(tx);
tx->output[0].amount = ours->anchor->total - ours->commitment_fee;
/* Second output is a simple payment to them. */
tx->output[1].script = theirs->script_to_me.data;
tx->output[1].script_length = theirs->script_to_me.len;
if (theirs->anchor->total < theirs->commitment_fee)
return tal_free(tx);
tx->output[1].amount = theirs->anchor->total - theirs->commitment_fee;
permute_outputs(ours->seed, theirs->seed, 1, tx->output, 2, NULL);
return tx;
}

15
commit_tx.h

@ -0,0 +1,15 @@
#ifndef LIGHTNING_COMMIT_TX_H
#define LIGHTNING_COMMIT_TX_H
#include <ccan/tal/tal.h>
#include "lightning.pb-c.h"
struct sha256_double;
/* Create commitment tx to spend the anchor tx output; doesn't fill in
* input scriptsig. */
struct bitcoin_tx *create_commit_tx(const tal_t *ctx,
OpenChannel *ours,
OpenChannel *theirs,
const struct sha256_double *anchor_txid,
unsigned int anchor_output);
#endif

37
open-commit-sig.c

@ -16,6 +16,7 @@
#include "bitcoin_script.h" #include "bitcoin_script.h"
#include "permute_tx.h" #include "permute_tx.h"
#include "signature.h" #include "signature.h"
#include "commit_tx.h"
#include <openssl/ec.h> #include <openssl/ec.h>
#include <unistd.h> #include <unistd.h>
@ -26,7 +27,7 @@ int main(int argc, char *argv[])
struct bitcoin_tx *anchor, *commit; struct bitcoin_tx *anchor, *commit;
struct sha256_double txid; struct sha256_double txid;
struct pkt *pkt; struct pkt *pkt;
u8 *redeemscript, *sig; u8 *sig;
size_t *inmap, *outmap; size_t *inmap, *outmap;
EC_KEY *privkey; EC_KEY *privkey;
bool testnet; bool testnet;
@ -61,38 +62,16 @@ int main(int argc, char *argv[])
/* Get the transaction ID of the anchor. */ /* Get the transaction ID of the anchor. */
anchor_txid(anchor, argv[4], argv[5], inmap, &txid); anchor_txid(anchor, argv[4], argv[5], inmap, &txid);
/* Now create commitment tx: one input, two outputs. */ /* Now create commitment tx to spend 2/2 output of anchor. */
commit = bitcoin_tx(ctx, 1, 2); commit = create_commit_tx(ctx, o1, o2, &txid, outmap[0]);
/* Our input spends the anchor tx output. */ /* If contributions don't exceed fees, this fails. */
commit->input[0].txid = txid; if (!commit)
commit->input[0].index = outmap[0]; errx(1, "Contributions %llu & %llu vs fees %llu & %llu",
/* First output is a P2SH to a complex redeem script */
redeemscript = bitcoin_redeem_revocable(ctx, o1->anchor->pubkey,
o1->locktime_seconds,
o2->anchor->pubkey,
o1->revocation_hash);
commit->output[0].script = scriptpubkey_p2sh(ctx, redeemscript);
commit->output[0].script_length = tal_count(commit->output[0].script);
if (o1->anchor->total < o1->commitment_fee)
errx(1, "Our contribution to channel %llu < fee %llu",
(long long)o1->anchor->total, (long long)o1->anchor->total,
(long long)o1->commitment_fee);
commit->output[0].amount = o1->anchor->total - o1->commitment_fee;
/* Second output is a simple payment to them. */
commit->output[1].script = o2->script_to_me.data;
commit->output[1].script_length = o2->script_to_me.len;
if (o2->anchor->total < o2->commitment_fee)
errx(1, "Their contribution to channel %llu < fee %llu",
(long long)o2->anchor->total, (long long)o2->anchor->total,
(long long)o1->commitment_fee,
(long long)o2->commitment_fee); (long long)o2->commitment_fee);
commit->output[1].amount = o2->anchor->total - o2->commitment_fee;
permute_outputs(o1->seed, o2->seed, 1, commit->output, 2, NULL);
sig = sign_tx_input(ctx, commit, 0, anchor->output[outmap[0]].script, sig = sign_tx_input(ctx, commit, 0, anchor->output[outmap[0]].script,
anchor->output[outmap[0]].script_length, privkey); anchor->output[outmap[0]].script_length, privkey);

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