chacha: readUint32Le generalised for uint8array; aead: standard fix
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@ -89,7 +89,7 @@ function crypto_aead_chacha20poly1305_ietf_decrypt (m, nsec, c, ad, npub, k) {
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return c.length - crypto_aead_chacha20poly1305_ietf_ABYTES
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}
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return ret;
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return ret
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}
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function crypto_aead_chacha20poly1305_ietf_decrypt_detached (m, nsec, c, mac, ad, npub, k) {
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@ -95,18 +95,18 @@ function Chacha20 (n, k, counter) {
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this.state = new Uint32Array(16)
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for (let i = 0; i < 4; i++) this.state[i] = constant[i]
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for (let i = 0; i < 8; i++) this.state[4 + i] = k.readUInt32LE(4 * i)
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for (let i = 0; i < 8; i++) this.state[4 + i] = readUInt32LE(k, 4 * i)
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this.state[12] = counter & 0xffffffff
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if (n.byteLength === 8) {
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this.state[13] = (counter && 0xffffffff00000000) >> 32
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this.state[14] = n.readUInt32LE(0)
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this.state[15] = n.readUInt32LE(4)
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this.state[14] = readUInt32LE(n, 0)
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this.state[15] = readUInt32LE(n, 4)
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} else {
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this.state[13] = n.readUInt32LE(0)
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this.state[14] = n.readUInt32LE(4)
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this.state[15] = n.readUInt32LE(8)
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this.state[13] = readUInt32LE(n, 0)
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this.state[14] = readUInt32LE(n, 4)
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this.state[15] = readUInt32LE(n, 8)
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}
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return this
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@ -207,3 +207,13 @@ function QR (obj, a, b, c, d) {
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obj[b] ^= obj[c]
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obj[b] = rotl(obj[b], 7)
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}
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function readUInt32LE (buf, offset) {
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if (Buffer.isBuffer(buf)) return buf.readUInt32LE(offset)
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else if (buf instanceof Uint8Array) {
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var ret = 0
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for (let i = 0; i < 4; i++) ret |= buf[offset + i] << (8 * i)
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return ret
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}
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assert(false, 'buf should be a Buffer or a Uint8Array')
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}
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