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https://github.com/trezor/trezor-firmware.git
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further optimize emscripten
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parent
6dd9ed0756
commit
110965f31d
20
bip32.c
20
bip32.c
@ -264,42 +264,42 @@ int hdnode_public_ckd(HDNode *inout, uint32_t i)
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return 1;
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return 1;
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}
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}
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int hdnode_public_ckd_address_optimized(const HDNode *in, const curve_point *pub, uint32_t i, uint8_t version, char *addr, int addrsize)
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int hdnode_public_ckd_address_optimized(const curve_point *pub, const uint8_t *public_key, const uint8_t *chain_code, uint32_t i, uint8_t version, char *addr, int addrsize)
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{
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{
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uint8_t data[1 + 32 + 4];
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uint8_t data[1 + 32 + 4];
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uint8_t I[32 + 32];
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uint8_t I[32 + 32];
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uint8_t public_key[33];
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uint8_t child_pubkey[33];
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curve_point b;
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curve_point b;
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bignum256 c;
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bignum256 c;
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if (i & 0x80000000) { // private derivation
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if (i & 0x80000000) { // private derivation
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return 0;
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return 0;
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}
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}
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memcpy(data, in->public_key, 33);
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memcpy(data, public_key, 33);
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write_be(data + 33, i);
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write_be(data + 33, i);
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while (true) {
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while (true) {
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bool failed = false;
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bool failed = false;
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hmac_sha512(in->chain_code, 32, data, sizeof(data), I);
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hmac_sha512(chain_code, 32, data, sizeof(data), I);
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bn_read_be(I, &c);
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bn_read_be(I, &c);
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if (!bn_is_less(&c, &in->curve->params->order)) { // >= order
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if (!bn_is_less(&c, &secp256k1.order)) { // >= order
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failed = true;
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failed = true;
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} else {
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} else {
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scalar_multiply(in->curve->params, &c, &b); // b = c * G
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scalar_multiply(&secp256k1, &c, &b); // b = c * G
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point_add(in->curve->params, pub, &b); // b = a + b
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point_add(&secp256k1, pub, &b); // b = a + b
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if (point_is_infinity(&b)) {
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if (point_is_infinity(&b)) {
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failed = true;
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failed = true;
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}
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}
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}
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}
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if (!failed) {
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if (!failed) {
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public_key[0] = 0x02 | (b.y.val[0] & 0x01);
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child_pubkey[0] = 0x02 | (b.y.val[0] & 0x01);
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bn_write_be(&b.x, public_key + 1);
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bn_write_be(&b.x, child_pubkey + 1);
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break;
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break;
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}
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}
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data[0] = 1;
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data[0] = 1;
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memcpy(data + 1, I + 32, 32);
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memcpy(data + 1, I + 32, 32);
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}
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}
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ecdsa_get_address(public_key, version, addr, addrsize);
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ecdsa_get_address(child_pubkey, version, addr, addrsize);
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return 1;
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return 1;
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}
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}
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2
bip32.h
2
bip32.h
@ -56,7 +56,7 @@ int hdnode_private_ckd(HDNode *inout, uint32_t i);
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int hdnode_public_ckd(HDNode *inout, uint32_t i);
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int hdnode_public_ckd(HDNode *inout, uint32_t i);
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int hdnode_public_ckd_address_optimized(const HDNode *in, const curve_point *pub, uint32_t i, uint8_t version, char *addr, int addrsize);
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int hdnode_public_ckd_address_optimized(const curve_point *pub, const uint8_t *public_key, const uint8_t *chain_code, uint32_t i, uint8_t version, char *addr, int addrsize);
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#if USE_BIP32_CACHE
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#if USE_BIP32_CACHE
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4
ecdsa.c
4
ecdsa.c
@ -35,6 +35,7 @@
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#include "ecdsa.h"
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#include "ecdsa.h"
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#include "base58.h"
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#include "base58.h"
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#include "macros.h"
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#include "macros.h"
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#include "secp256k1.h"
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// Set cp2 = cp1
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// Set cp2 = cp1
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void point_copy(const curve_point *cp1, curve_point *cp2)
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void point_copy(const curve_point *cp1, curve_point *cp2)
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@ -878,6 +879,9 @@ void uncompress_coords(const ecdsa_curve *curve, uint8_t odd, const bignum256 *x
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int ecdsa_read_pubkey(const ecdsa_curve *curve, const uint8_t *pub_key, curve_point *pub)
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int ecdsa_read_pubkey(const ecdsa_curve *curve, const uint8_t *pub_key, curve_point *pub)
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{
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{
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if (!curve) {
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curve = &secp256k1;
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}
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if (pub_key[0] == 0x04) {
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if (pub_key[0] == 0x04) {
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bn_read_be(pub_key + 1, &(pub->x));
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bn_read_be(pub_key + 1, &(pub->x));
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bn_read_be(pub_key + 33, &(pub->y));
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bn_read_be(pub_key + 33, &(pub->y));
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@ -2,7 +2,8 @@ EMFLAGS = \
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-Os --closure 1 \
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-Os --closure 1 \
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--memory-init-file 0 \
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--memory-init-file 0 \
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--pre-js pre.js --post-js post.js \
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--pre-js pre.js --post-js post.js \
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-s EXPORTED_FUNCTIONS='["_hdnode_public_ckd", "_ecdsa_get_address"]'
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-I ../ed25519-donna \
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-s EXPORTED_FUNCTIONS='["_hdnode_public_ckd_address_optimized", "_ecdsa_read_pubkey"]'
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SRC = ../bignum.c ../ecdsa.c ../secp256k1.c ../hmac.c ../bip32.c \
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SRC = ../bignum.c ../ecdsa.c ../secp256k1.c ../hmac.c ../bip32.c \
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../base58.c ../ripemd160.c ../sha2.c ../rand.c
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../base58.c ../ripemd160.c ../sha2.c ../rand.c
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@ -22,3 +23,6 @@ node_modules:
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clean:
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clean:
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rm -f trezor-crypto.js test-browserify.js
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rm -f trezor-crypto.js test-browserify.js
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docker:
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docker run --rm -i -v $(shell pwd)/..:/src -t apiaryio/emcc /bin/bash
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@ -11,13 +11,17 @@
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var HEAPU8 = Module['HEAPU8'];
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var HEAPU8 = Module['HEAPU8'];
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var _malloc = Module['_malloc'];
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var _malloc = Module['_malloc'];
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var _hdnode_public_ckd = Module['_hdnode_public_ckd'];
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var _hdnode_public_ckd_address_optimized = Module['_hdnode_public_ckd_address_optimized'];
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var _ecdsa_get_address = Module['_ecdsa_get_address'];
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var _ecdsa_read_pubkey = Module['_ecdsa_read_pubkey'];
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var Pointer_stringify = Module['Pointer_stringify'];
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var Pointer_stringify = Module['Pointer_stringify'];
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// HDNode struct global
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// HDNode structs global
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var HDNODE_SIZE = 4 + 4 + 4 + 32 + 32 + 33;
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var PUBPOINT_SIZE = 2 * 9 * 4; // (2 * bignum256 (= 9 * uint32_t))
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var _hdnode = _malloc(HDNODE_SIZE);
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var _pubpoint = _malloc(PUBPOINT_SIZE);
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var PUBKEY_SIZE = 33;
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var _pubkey = _malloc(PUBKEY_SIZE);
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var CHAINCODE_SIZE = 32;
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var _chaincode = _malloc(CHAINCODE_SIZE);
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// address string global
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// address string global
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var ADDRESS_SIZE = 40; // maximum size
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var ADDRESS_SIZE = 40; // maximum size
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@ -29,33 +33,26 @@ var _address = _malloc(ADDRESS_SIZE);
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/**
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/**
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* @param {HDNode} node HDNode struct, see the definition above
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* @param {HDNode} node HDNode struct, see the definition above
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* @return {Uint8Array}
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*/
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*/
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function serializeNode(node) {
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function serializeNode(node) {
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var b = new ArrayBuffer(HDNODE_SIZE);
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var u8_pubkey = new Uint8Array(33);
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u8_pubkey.set(node['public_key'], 0);
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HEAPU8.set(u8_pubkey, _pubkey);
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var u32 = new Uint32Array(b, 0, 12);
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var u8_chaincode = new Uint8Array(32);
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u32[0] = node['depth'];
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u8_chaincode.set(node['chain_code'], 0);
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u32[1] = node['fingerprint'];
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HEAPU8.set(u8_chaincode, _chaincode);
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u32[2] = node['child_num'];
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var u8 = new Uint8Array(b, 0, HDNODE_SIZE);
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_ecdsa_read_pubkey(0, _pubkey, _pubpoint);
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u8.set(node['chain_code'], 12);
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u8.set(node['public_key'], 12 + 32 + 32);
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return u8;
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}
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}
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/**
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/**
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* @param {Uint8Array} sn serialized node, see `serializeNode`
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* @param {Number} index BIP32 index of the address
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* @param {Number} index BIP32 index of the address
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* @param {Number} version address version byte
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* @param {Number} version address version byte
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* @return {String}
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* @return {String}
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*/
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*/
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function deriveAddress(sn, index, version) {
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function deriveAddress(index, version) {
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HEAPU8.set(sn, _hdnode);
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_hdnode_public_ckd_address_optimized(_pubpoint, _pubkey, _chaincode, index, version, _address, ADDRESS_SIZE);
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_hdnode_public_ckd(_hdnode, index);
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_ecdsa_get_address(_hdnode + 12 + 32 + 32, version, _address, ADDRESS_SIZE);
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return Pointer_stringify(_address);
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return Pointer_stringify(_address);
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}
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}
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@ -68,10 +65,10 @@ function deriveAddress(sn, index, version) {
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*/
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*/
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function deriveAddressRange(node, firstIndex, lastIndex, version) {
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function deriveAddressRange(node, firstIndex, lastIndex, version) {
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var addresses = [];
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var addresses = [];
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var sn = serializeNode(node);
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serializeNode(node);
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var i;
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var i;
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for (i = firstIndex; i <= lastIndex; i++) {
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for (i = firstIndex; i <= lastIndex; i++) {
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addresses.push(deriveAddress(sn, i, version));
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addresses.push(deriveAddress(i, version));
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}
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}
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return addresses;
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return addresses;
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}
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}
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@ -13,7 +13,6 @@ var nodeStruct = {
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chain_code: node.chainCode,
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chain_code: node.chainCode,
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public_key: node.keyPair.getPublicKeyBuffer()
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public_key: node.keyPair.getPublicKeyBuffer()
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};
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};
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var nodeSerialized = crypto.serializeNode(nodeStruct);
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var suite;
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var suite;
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var worker;
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var worker;
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@ -60,8 +59,9 @@ function benchBitcoinJS(ops, fn) {
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function benchBrowserify(ops, fn) {
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function benchBrowserify(ops, fn) {
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var i;
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var i;
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crypto.serializeNode(nodeStruct);
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for (i = 0; i < ops; i++) {
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for (i = 0; i < ops; i++) {
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crypto.deriveAddress(nodeSerialized, i, 0);
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crypto.deriveAddress(i, 0);
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}
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}
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fn();
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fn();
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}
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}
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@ -100,10 +100,10 @@ void bench_ckd_normal(void) {
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void bench_ckd_optimized(void) {
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void bench_ckd_optimized(void) {
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char addr[40];
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char addr[40];
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curve_point pub;
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curve_point pub;
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ecdsa_read_pubkey(root.curve->params, root.public_key, &pub);
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ecdsa_read_pubkey(0, root.public_key, &pub);
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clock_t t = clock();
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clock_t t = clock();
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for (int i = 0; i < 1000; i++) {
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for (int i = 0; i < 1000; i++) {
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hdnode_public_ckd_address_optimized(&root, &pub, i, 0, addr, 40);
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hdnode_public_ckd_address_optimized(&pub, root.public_key, root.chain_code, i, 0, addr, 40);
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if (i == 0) {
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if (i == 0) {
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printf("address = %s\n", addr);
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printf("address = %s\n", addr);
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}
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}
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