mirror of
https://github.com/trezor/trezor-firmware.git
synced 2024-12-19 12:58:13 +00:00
move interface fns to post.js, add web worker & browserify test
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parent
da0a2f8662
commit
3c0176a304
@ -1,15 +1,19 @@
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EMFLAGS = \
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-O2 --closure 1 \
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-Os --closure 1 \
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--memory-init-file 0 \
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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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-s EXPORTED_FUNCTIONS='["_hdnode_public_ckd", "_ecdsa_get_address"]'
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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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test: node_modules trezor-crypto.js
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test-node: node_modules trezor-crypto.js test.js
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node test.js
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test-browserify.js: node_modules trezor-crypto.js test.js
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browserify test.js -o $@ --noparse=`pwd`/trezor-crypto.js
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@echo "open test.html in your favourite browser"
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trezor-crypto.js: $(SRC)
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emcc $(EMFLAGS) -o $@ $^
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@ -17,4 +21,4 @@ node_modules:
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npm install
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clean:
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rm -f trezor-crypto.js
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rm -f trezor-crypto.js test-browserify.js
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@ -1 +1,113 @@
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module.exports = Module;
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/*
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typedef struct {
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uint32_t depth;
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uint32_t fingerprint;
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uint32_t child_num;
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uint8_t chain_code[32];
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uint8_t private_key[32];
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uint8_t public_key[33];
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} HDNode;
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*/
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var HEAPU8 = Module['HEAPU8'];
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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 _ecdsa_get_address = Module['_ecdsa_get_address'];
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var Pointer_stringify = Module['Pointer_stringify'];
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// HDNode struct global
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var HDNODE_SIZE = 4 + 4 + 4 + 32 + 32 + 33;
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var _hdnode = _malloc(HDNODE_SIZE);
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// address string global
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var ADDRESS_SIZE = 40; // maximum size
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var _address = _malloc(ADDRESS_SIZE);
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/*
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* public library interface
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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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* @return {Uint8Array}
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*/
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function serializeNode(node) {
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var b = new ArrayBuffer(HDNODE_SIZE);
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var u32 = new Uint32Array(b, 0, 12);
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u32[0] = node['depth'];
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u32[1] = node['fingerprint'];
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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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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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* @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} version address version byte
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* @return {String}
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*/
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function deriveAddress(sn, index, version) {
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HEAPU8.set(sn, _hdnode);
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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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}
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/**
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* @param {HDNode} node HDNode struct, see the definition above
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* @param {Number} from index of the first address
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* @param {Number} to index of the last address
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* @param {Number} version address version byte
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* @return {Array<String>}
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*/
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function deriveAddressRange(node, from, to, version) {
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var addresses = [];
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var sn = serializeNode(node);
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var i;
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for (i = from; i <= to; i++) {
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addresses.push(deriveAddress(sn, i, version));
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}
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return addresses;
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}
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if (typeof module !== 'undefined') {
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module['exports'] = {
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'serializeNode': serializeNode,
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'deriveAddress': deriveAddress,
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'deriveAddressRange': deriveAddressRange
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};
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}
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/*
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* Web worker processing
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*/
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function processMessage(event) {
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var data = event['data'];
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var type = data['type'];
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switch (type) {
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case 'deriveAddressRange':
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var response = deriveAddressRange(
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data['node'],
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data['from'],
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data['to'],
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data['version']
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);
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postMessage(response);
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break;
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default:
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throw new Error('Unknown message type: ' + type);
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}
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}
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if (ENVIRONMENT_IS_WORKER) {
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this['onmessage'] = processMessage;
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}
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@ -0,0 +1,9 @@
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// stub importScripts for the faulty detection of web worker env
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if (typeof importScripts === 'undefined'
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&& typeof WorkerGlobalScope !== 'undefined'
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&& this instanceof WorkerGlobalScope
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) {
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this.importScripts = function () {
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throw new Error('importScripts is a stub');
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};
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}
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8
emscripten/test.html
Normal file
8
emscripten/test.html
Normal file
@ -0,0 +1,8 @@
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<html>
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<head>
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<meta charset="utf-8">
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</head>
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<body>
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<script async src="test-browserify.js"></script>
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</body>
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</html>
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@ -1,67 +1,98 @@
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var crypto = require('./trezor-crypto');
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/* typedef struct {
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uint32_t depth;
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uint32_t fingerprint;
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uint32_t child_num;
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uint8_t chain_code[32];
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uint8_t private_key[32];
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uint8_t public_key[33];
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} HDNode;
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*/
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var HDNODE_SIZE = 4 + 4 + 4 + 32 + 32 + 33;
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var hdnode = crypto._malloc(HDNODE_SIZE);
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var ADDRESS_SIZE = 40; // maximum size
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var address = crypto._malloc(ADDRESS_SIZE);
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function prepareNode(n) {
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var b = new ArrayBuffer(HDNODE_SIZE);
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var u8 = new Uint8Array(b, 0, HDNODE_SIZE);
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var u32 = new Uint32Array(b, 0, 12);
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u32[0] = n.depth;
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u32[1] = n.parentFingerprint;
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u32[2] = n.index;
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u8.set(n.chainCode, 12);
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u8.set(n.pubKey.toBuffer(), 12 + 32 + 32);
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return u8;
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}
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function deriveAddress(pn, i, version) {
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crypto.HEAPU8.set(pn, hdnode);
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crypto._hdnode_public_ckd(hdnode, i);
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crypto._ecdsa_get_address(hdnode + 12 + 32 + 32, version, address, ADDRESS_SIZE);
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return crypto.Pointer_stringify(address);
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}
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// benching code
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var bitcoin = require('bitcoinjs-lib');
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var node = bitcoin.HDNode.fromBase58(
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var XPUB =
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'xpub6AHA9hZDN11k2ijHMeS5QqHx2KP9aMBRhTDqANMnwVtdyw2TDYRm' +
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'F8PjpvwUFcL1Et8Hj59S3gTSMcUQ5gAqTz3Wd8EsMTmF3DChhqPQBnU'
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).derive(0);
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'F8PjpvwUFcL1Et8Hj59S3gTSMcUQ5gAqTz3Wd8EsMTmF3DChhqPQBnU';
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var node = bitcoin.HDNode.fromBase58(XPUB).derive(0);
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timeBitcoinjs(node);
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timeTrezorCrypto(node);
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var nodeStruct = {
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depth: node.depth,
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child_num: node.index,
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fingerprint: node.parentFingerprint,
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chain_code: node.chainCode,
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public_key: node.pubKey.toBuffer()
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};
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var nodeSerialized = crypto.serializeNode(nodeStruct);
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function timeBitcoinjs(n) {
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console.time('bitcoinjs')
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for (var i = 0; i < 1000; i++) {
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n.derive(i).getAddress()
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}
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console.timeEnd('bitcoinjs')
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var suite;
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var worker;
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if (typeof Worker !== 'undefined') {
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console.log('enabling web worker benchmark');
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worker = new Worker('./trezor-crypto.js');
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worker.onerror = function (error) {
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console.error('worker:', error);
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};
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suite = [
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// benchBitcoinJS,
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// benchBrowserify,
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benchWorker
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];
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} else {
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suite = [
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benchBitcoinJS,
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benchBrowserify
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];
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}
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function timeTrezorCrypto(n) {
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var nP = prepareNode(n);
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console.time('trezor-crypto')
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for (var i = 0; i < 1000; i++) {
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deriveAddress(nP, i, 0);
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}
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console.timeEnd('trezor-crypto')
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benchmark(suite, 1000, 1000);
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function benchmark(suite, delay, ops) {
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(function cycle(i) {
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setTimeout(function () {
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var benchmark = suite[i];
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runBenchmark(benchmark, ops, function (runtime) {
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printResult(benchmark, ops, runtime);
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cycle(i+1 < suite.length ? i+1 : 0);
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});
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}, delay);
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}(0));
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}
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function benchBitcoinJS(ops, fn) {
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var i;
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for (i = 0; i < ops; i++) {
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node.derive(i).getAddress();
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}
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fn();
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}
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function benchBrowserify(ops, fn) {
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var i;
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for (i = 0; i < ops; i++) {
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crypto.deriveAddress(nodeSerialized, i, 0);
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}
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fn();
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}
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function benchWorker(ops, fn) {
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worker.onmessage = function (event) {
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fn();
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};
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worker.postMessage({
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type: 'deriveAddressRange',
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node: nodeStruct,
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from: 0,
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to: ops - 1,
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version: 0
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});
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}
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function runBenchmark(benchmark, ops, fn) {
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var start = new Date();
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benchmark(ops, function () {
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var end = new Date();
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fn(end - start);
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});
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}
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function printResult(benchmark, ops, runtime) {
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var opssec = (ops / runtime) * 1000;
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console.log(
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benchmark.name,
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'ops #', ops,
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'runtime', runtime / 1000,
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'sec, ops/sec', opssec
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);
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}
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