mirror of
https://github.com/trezor/trezor-firmware.git
synced 2024-12-16 11:28:14 +00:00
275 lines
9.0 KiB
C
275 lines
9.0 KiB
C
void fsm_msgGetPublicKey(GetPublicKey *msg)
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{
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RESP_INIT(PublicKey);
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CHECK_INITIALIZED
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CHECK_PIN
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const CoinInfo *coin = fsm_getCoin(msg->has_coin_name, msg->coin_name);
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if (!coin) return;
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const char *curve = coin->curve_name;
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if (msg->has_ecdsa_curve_name) {
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curve = msg->ecdsa_curve_name;
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}
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uint32_t fingerprint;
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HDNode *node = node = fsm_getDerivedNode(curve, msg->address_n, msg->address_n_count, &fingerprint);
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if (!node) return;
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hdnode_fill_public_key(node);
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if (msg->has_show_display && msg->show_display) {
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layoutPublicKey(node->public_key);
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if (!protectButton(ButtonRequest_ButtonRequestType_ButtonRequest_PublicKey, true)) {
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fsm_sendFailure(Failure_FailureType_Failure_ActionCancelled, NULL);
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layoutHome();
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return;
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}
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}
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resp->node.depth = node->depth;
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resp->node.fingerprint = fingerprint;
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resp->node.child_num = node->child_num;
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resp->node.chain_code.size = 32;
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memcpy(resp->node.chain_code.bytes, node->chain_code, 32);
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resp->node.has_private_key = false;
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resp->node.has_public_key = true;
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resp->node.public_key.size = 33;
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memcpy(resp->node.public_key.bytes, node->public_key, 33);
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if (node->public_key[0] == 1) {
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/* ed25519 public key */
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resp->node.public_key.bytes[0] = 0;
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}
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resp->has_xpub = true;
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hdnode_serialize_public(node, fingerprint, coin->xpub_magic, resp->xpub, sizeof(resp->xpub));
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msg_write(MessageType_MessageType_PublicKey, resp);
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layoutHome();
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}
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void fsm_msgSignTx(SignTx *msg)
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{
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CHECK_INITIALIZED
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CHECK_PARAM(msg->inputs_count > 0, _("Transaction must have at least one input"));
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CHECK_PARAM(msg->outputs_count > 0, _("Transaction must have at least one output"));
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CHECK_PARAM(msg->inputs_count + msg->outputs_count >= msg->inputs_count, _("Value overflow"));
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CHECK_PIN
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const CoinInfo *coin = fsm_getCoin(msg->has_coin_name, msg->coin_name);
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if (!coin) return;
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const HDNode *node = fsm_getDerivedNode(coin->curve_name, NULL, 0, NULL);
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if (!node) return;
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signing_init(msg, coin, node);
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}
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void fsm_msgTxAck(TxAck *msg)
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{
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CHECK_PARAM(msg->has_tx, _("No transaction provided"));
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signing_txack(&(msg->tx));
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}
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static bool path_mismatched(const CoinInfo *coin, const GetAddress *msg)
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{
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bool mismatch = false;
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// m : no path
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if (msg->address_n_count == 0) {
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return false;
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}
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// m/44' : BIP44 Legacy
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// m / purpose' / coin_type' / account' / change / address_index
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if (msg->address_n[0] == (0x80000000 + 44)) {
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mismatch |= (msg->script_type != InputScriptType_SPENDADDRESS);
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mismatch |= (msg->address_n_count != 5);
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mismatch |= (msg->address_n[1] != coin->coin_type);
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mismatch |= (msg->address_n[2] & 0x80000000) == 0;
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mismatch |= (msg->address_n[3] & 0x80000000) == 0x80000000;
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mismatch |= (msg->address_n[4] & 0x80000000) == 0x80000000;
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return mismatch;
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}
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// m/45' - BIP45 Copay Abandoned Multisig P2SH
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// m / purpose' / cosigner_index / change / address_index
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if (msg->address_n[0] == (0x80000000 + 45)) {
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mismatch |= (msg->script_type != InputScriptType_SPENDMULTISIG);
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mismatch |= (msg->address_n_count != 4);
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mismatch |= (msg->address_n[1] & 0x80000000) == 0x80000000;
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mismatch |= (msg->address_n[2] & 0x80000000) == 0x80000000;
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mismatch |= (msg->address_n[3] & 0x80000000) == 0x80000000;
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return mismatch;
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}
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// m/48' - BIP48 Copay Multisig P2SH
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// m / purpose' / coin_type' / account' / change / address_index
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if (msg->address_n[0] == (0x80000000 + 48)) {
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mismatch |= (msg->script_type != InputScriptType_SPENDMULTISIG);
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mismatch |= (msg->address_n_count != 5);
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mismatch |= (msg->address_n[1] != coin->coin_type);
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mismatch |= (msg->address_n[2] & 0x80000000) == 0;
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mismatch |= (msg->address_n[3] & 0x80000000) == 0x80000000;
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mismatch |= (msg->address_n[4] & 0x80000000) == 0x80000000;
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return mismatch;
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}
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// m/49' : BIP49 SegWit
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// m / purpose' / coin_type' / account' / change / address_index
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if (msg->address_n[0] == (0x80000000 + 49)) {
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mismatch |= (msg->script_type != InputScriptType_SPENDP2SHWITNESS);
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mismatch |= !coin->has_segwit;
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mismatch |= !coin->has_address_type_p2sh;
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mismatch |= (msg->address_n_count != 5);
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mismatch |= (msg->address_n[1] != coin->coin_type);
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mismatch |= (msg->address_n[2] & 0x80000000) == 0;
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mismatch |= (msg->address_n[3] & 0x80000000) == 0x80000000;
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mismatch |= (msg->address_n[4] & 0x80000000) == 0x80000000;
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return mismatch;
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}
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// m/84' : BIP84 Native SegWit
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// m / purpose' / coin_type' / account' / change / address_index
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if (msg->address_n[0] == (0x80000000 + 84)) {
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mismatch |= (msg->script_type != InputScriptType_SPENDWITNESS);
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mismatch |= !coin->has_segwit;
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mismatch |= !coin->bech32_prefix;
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mismatch |= (msg->address_n_count != 5);
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mismatch |= (msg->address_n[1] != coin->coin_type);
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mismatch |= (msg->address_n[2] & 0x80000000) == 0;
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mismatch |= (msg->address_n[3] & 0x80000000) == 0x80000000;
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mismatch |= (msg->address_n[4] & 0x80000000) == 0x80000000;
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return mismatch;
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}
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return false;
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}
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void fsm_msgGetAddress(GetAddress *msg)
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{
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RESP_INIT(Address);
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CHECK_INITIALIZED
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CHECK_PIN
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const CoinInfo *coin = fsm_getCoin(msg->has_coin_name, msg->coin_name);
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if (!coin) return;
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HDNode *node = fsm_getDerivedNode(coin->curve_name, msg->address_n, msg->address_n_count, NULL);
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if (!node) return;
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hdnode_fill_public_key(node);
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char address[MAX_ADDR_SIZE];
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if (msg->has_multisig) { // use progress bar only for multisig
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layoutProgress(_("Computing address"), 0);
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}
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if (!compute_address(coin, msg->script_type, node, msg->has_multisig, &msg->multisig, address)) {
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fsm_sendFailure(Failure_FailureType_Failure_DataError, _("Can't encode address"));
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layoutHome();
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return;
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}
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if (msg->has_show_display && msg->show_display) {
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char desc[20];
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if (msg->has_multisig) {
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strlcpy(desc, "Multisig __ of __:", sizeof(desc));
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const uint32_t m = msg->multisig.m;
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const uint32_t n = msg->multisig.pubkeys_count;
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desc[9] = (m < 10) ? ' ': ('0' + (m / 10));
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desc[10] = '0' + (m % 10);
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desc[15] = (n < 10) ? ' ': ('0' + (n / 10));
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desc[16] = '0' + (n % 10);
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} else {
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strlcpy(desc, _("Address:"), sizeof(desc));
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}
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bool mismatch = path_mismatched(coin, msg);
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if (mismatch) {
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layoutDialogSwipe(&bmp_icon_warning, _("Abort"), _("Continue"), NULL, _("Wrong address path"), _("for selected coin."), NULL, _("Continue at your"), _("own risk!"), NULL);
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if (!protectButton(ButtonRequest_ButtonRequestType_ButtonRequest_Other, false)) {
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fsm_sendFailure(Failure_FailureType_Failure_ActionCancelled, NULL);
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layoutHome();
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return;
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}
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}
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bool is_cashaddr = coin->cashaddr_prefix != NULL;
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bool is_bech32 = msg->script_type == InputScriptType_SPENDWITNESS;
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if (!fsm_layoutAddress(address, desc, is_cashaddr || is_bech32, is_cashaddr ? strlen(coin->cashaddr_prefix) + 1 : 0, msg->address_n, msg->address_n_count)) {
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return;
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}
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}
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strlcpy(resp->address, address, sizeof(resp->address));
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msg_write(MessageType_MessageType_Address, resp);
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layoutHome();
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}
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void fsm_msgSignMessage(SignMessage *msg)
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{
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RESP_INIT(MessageSignature);
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CHECK_INITIALIZED
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layoutSignMessage(msg->message.bytes, msg->message.size);
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if (!protectButton(ButtonRequest_ButtonRequestType_ButtonRequest_ProtectCall, false)) {
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fsm_sendFailure(Failure_FailureType_Failure_ActionCancelled, NULL);
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layoutHome();
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return;
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}
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CHECK_PIN
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const CoinInfo *coin = fsm_getCoin(msg->has_coin_name, msg->coin_name);
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if (!coin) return;
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HDNode *node = fsm_getDerivedNode(coin->curve_name, msg->address_n, msg->address_n_count, NULL);
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if (!node) return;
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layoutProgressSwipe(_("Signing"), 0);
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if (cryptoMessageSign(coin, node, msg->script_type, msg->message.bytes, msg->message.size, resp->signature.bytes) == 0) {
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resp->has_address = true;
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hdnode_fill_public_key(node);
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if (!compute_address(coin, msg->script_type, node, false, NULL, resp->address)) {
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fsm_sendFailure(Failure_FailureType_Failure_ProcessError, _("Error computing address"));
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layoutHome();
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return;
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}
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resp->has_signature = true;
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resp->signature.size = 65;
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msg_write(MessageType_MessageType_MessageSignature, resp);
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} else {
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fsm_sendFailure(Failure_FailureType_Failure_ProcessError, _("Error signing message"));
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}
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layoutHome();
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}
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void fsm_msgVerifyMessage(VerifyMessage *msg)
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{
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CHECK_PARAM(msg->has_address, _("No address provided"));
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CHECK_PARAM(msg->has_message, _("No message provided"));
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const CoinInfo *coin = fsm_getCoin(msg->has_coin_name, msg->coin_name);
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if (!coin) return;
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layoutProgressSwipe(_("Verifying"), 0);
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if (msg->signature.size == 65 && cryptoMessageVerify(coin, msg->message.bytes, msg->message.size, msg->address, msg->signature.bytes) == 0) {
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layoutVerifyAddress(msg->address);
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if (!protectButton(ButtonRequest_ButtonRequestType_ButtonRequest_Other, false)) {
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fsm_sendFailure(Failure_FailureType_Failure_ActionCancelled, NULL);
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layoutHome();
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return;
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}
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layoutVerifyMessage(msg->message.bytes, msg->message.size);
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if (!protectButton(ButtonRequest_ButtonRequestType_ButtonRequest_Other, false)) {
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fsm_sendFailure(Failure_FailureType_Failure_ActionCancelled, NULL);
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layoutHome();
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return;
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}
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fsm_sendSuccess(_("Message verified"));
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} else {
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fsm_sendFailure(Failure_FailureType_Failure_DataError, _("Invalid signature"));
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}
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layoutHome();
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}
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