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#include <bitcoin/base58.h>
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#include <bitcoin/script.h>
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#include <ccan/structeq/structeq.h>
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#include <daemon/jsonrpc.h>
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#include <lightningd/build_utxos.h>
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#include <lightningd/lightningd.h>
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#include <utils.h>
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#include <wally_bip32.h>
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struct tracked_utxo {
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struct list_node list;
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/* Currently being used for a connection. */
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bool reserved;
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struct utxo utxo;
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};
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static void json_newaddr(struct command *cmd,
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const char *buffer, const jsmntok_t *params)
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{
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struct json_result *response = new_json_result(cmd);
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struct lightningd *ld = ld_from_dstate(cmd->dstate);
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struct ext_key ext;
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struct sha256 h;
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struct ripemd160 p2sh;
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struct pubkey pubkey;
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u8 *redeemscript;
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if (ld->bip32_max_index == BIP32_INITIAL_HARDENED_CHILD) {
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command_fail(cmd, "Keys exhausted ");
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return;
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}
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if (bip32_key_from_parent(ld->bip32_base, ld->bip32_max_index,
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BIP32_FLAG_KEY_PUBLIC, &ext) != WALLY_OK) {
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command_fail(cmd, "Keys generation failure");
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return;
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}
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if (!secp256k1_ec_pubkey_parse(secp256k1_ctx, &pubkey.pubkey,
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ext.pub_key, sizeof(ext.pub_key))) {
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command_fail(cmd, "Key parsing failure");
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return;
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}
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redeemscript = bitcoin_redeem_p2sh_p2wpkh(cmd, &pubkey);
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sha256(&h, redeemscript, tal_count(redeemscript));
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ripemd160(&p2sh, h.u.u8, sizeof(h));
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ld->bip32_max_index++;
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json_object_start(response, NULL);
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json_add_string(response, "address",
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p2sh_to_base58(cmd, cmd->dstate->testnet, &p2sh));
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json_object_end(response);
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command_success(cmd, response);
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}
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static const struct json_command newaddr_command = {
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"newaddr",
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json_newaddr,
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"Get a new address to fund a channel",
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"Returns {address} a p2sh address"
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};
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AUTODATA(json_command, &newaddr_command);
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/* FIXME: This is very slow with lots of inputs! */
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static bool can_spend(struct lightningd *ld, const u8 *script,
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u32 *index, bool *output_is_p2sh)
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{
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struct ext_key ext;
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u32 i;
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/* If not one of these, can't be for us. */
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if (is_p2sh(script))
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*output_is_p2sh = true;
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else if (is_p2wpkh(script))
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*output_is_p2sh = false;
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else
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return false;
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for (i = 0; i < ld->bip32_max_index; i++) {
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u8 *s;
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if (bip32_key_from_parent(ld->bip32_base, i,
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BIP32_FLAG_KEY_PUBLIC, &ext)
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!= WALLY_OK) {
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abort();
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}
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s = scriptpubkey_p2wpkh_derkey(ld, ext.pub_key);
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if (*output_is_p2sh) {
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u8 *p2sh = scriptpubkey_p2sh(ld, s);
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tal_free(s);
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s = p2sh;
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}
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if (scripteq(s, script)) {
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tal_free(s);
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*index = i;
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return true;
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}
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tal_free(s);
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}
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return false;
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}
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static void json_addfunds(struct command *cmd,
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const char *buffer, const jsmntok_t *params)
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{
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struct lightningd *ld = ld_from_dstate(cmd->dstate);
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struct json_result *response = new_json_result(cmd);
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jsmntok_t *txtok;
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struct bitcoin_tx *tx;
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int output;
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size_t txhexlen, num_utxos = 0;
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u64 total_satoshi = 0;
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if (!json_get_params(buffer, params, "tx", &txtok, NULL)) {
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command_fail(cmd, "Need tx sending to address from newaddr");
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return;
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}
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txhexlen = txtok->end - txtok->start;
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tx = bitcoin_tx_from_hex(cmd, buffer + txtok->start, txhexlen);
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if (!tx) {
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command_fail(cmd, "'%.*s' is not a valid transaction",
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txtok->end - txtok->start,
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buffer + txtok->start);
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return;
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}
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/* Find an output we know how to spend. */
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for (output = 0; output < tal_count(tx->output); output++) {
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struct tracked_utxo *utxo;
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u32 index;
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bool is_p2sh;
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if (!can_spend(ld, tx->output[output].script, &index, &is_p2sh))
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continue;
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utxo = tal(ld, struct tracked_utxo);
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utxo->utxo.keyindex = index;
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utxo->utxo.is_p2sh = is_p2sh;
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utxo->utxo.amount = tx->output[output].amount;
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bitcoin_txid(tx, &utxo->utxo.txid);
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utxo->utxo.outnum = output;
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utxo->reserved = false;
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list_add_tail(&ld->utxos, &utxo->list);
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total_satoshi += utxo->utxo.amount;
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num_utxos++;
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}
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if (!num_utxos) {
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command_fail(cmd, "No usable outputs");
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return;
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}
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json_object_start(response, NULL);
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json_add_num(response, "outputs", num_utxos);
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json_add_u64(response, "satoshis", total_satoshi);
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json_object_end(response);
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command_success(cmd, response);
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}
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static const struct json_command addfunds_command = {
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"addfunds",
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json_addfunds,
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"Add funds for lightningd to spend to create channels, using {tx}",
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"Returns how many {outputs} it can use and total {satoshis}"
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};
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AUTODATA(json_command, &addfunds_command);
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static void unreserve_utxo(struct lightningd *ld, const struct utxo *unres)
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{
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struct tracked_utxo *utxo;
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list_for_each(&ld->utxos, utxo, list) {
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if (unres != &utxo->utxo)
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continue;
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assert(utxo->reserved);
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utxo->reserved = false;
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return;
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}
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abort();
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}
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static void destroy_utxos(const struct utxo **utxos, struct lightningd *ld)
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{
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size_t i;
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for (i = 0; i < tal_count(utxos); i++)
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unreserve_utxo(ld, utxos[i]);
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}
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void confirm_utxos(struct lightningd *ld, const struct utxo **utxos)
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{
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tal_del_destructor2(utxos, destroy_utxos, ld);
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}
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const struct utxo **build_utxos(const tal_t *ctx,
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struct lightningd *ld, u64 satoshi_out,
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u32 feerate_per_kw, u64 dust_limit,
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u64 *change_satoshis, u32 *change_keyindex)
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{
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size_t i = 0;
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const struct utxo **utxos = tal_arr(ctx, const struct utxo *, 0);
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struct tracked_utxo *utxo;
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/* We assume two outputs for the weight. */
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u64 satoshi_in = 0, weight = (4 + (8 + 22) * 2 + 4) * 4;
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tal_add_destructor2(utxos, destroy_utxos, ld);
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list_for_each(&ld->utxos, utxo, list) {
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u64 fee;
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if (utxo->reserved)
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continue;
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tal_resize(&utxos, i+1);
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utxos[i] = &utxo->utxo;
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utxo->reserved = true;
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/* Add this input's weight. */
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weight += (32 + 4 + 4) * 4;
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if (utxos[i]->is_p2sh)
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weight += 22 * 4;
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/* Account for witness (1 byte count + sig + key */
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weight += 1 + (1 + 73 + 1 + 33);
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fee = weight * feerate_per_kw / 1000;
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satoshi_in += utxos[i]->amount;
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if (satoshi_in >= fee + satoshi_out) {
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/* We simply eliminate change if it's dust. */
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*change_satoshis = satoshi_in - (fee + satoshi_out);
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if (*change_satoshis < dust_limit) {
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*change_satoshis = 0;
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*change_keyindex = 0;
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} else
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*change_keyindex = ld->bip32_max_index++;
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return utxos;
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}
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i++;
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}
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return tal_free(utxos);
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}
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