2020-04-08 19:44:30 +02:00
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module websocket
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2020-04-08 14:22:31 +02:00
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2020-04-26 13:49:31 +02:00
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import time
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import rand
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import math
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import crypto.sha1
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import encoding.base64
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2020-04-08 14:22:31 +02:00
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fn htonl64(payload_len u64) byteptr {
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mut ret := malloc(8)
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ret[0] = byte(((payload_len & (u64(0xff) << 56)) >> 56) & 0xff)
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ret[1] = byte(((payload_len & (u64(0xff) << 48)) >> 48) & 0xff)
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ret[2] = byte(((payload_len & (u64(0xff) << 40)) >> 40) & 0xff)
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ret[3] = byte(((payload_len & (u64(0xff) << 32)) >> 32) & 0xff)
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ret[4] = byte(((payload_len & (u64(0xff) << 24)) >> 24) & 0xff)
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ret[5] = byte(((payload_len & (u64(0xff) << 16)) >> 16) & 0xff)
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ret[6] = byte(((payload_len & (u64(0xff) << 8)) >> 8) & 0xff)
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2020-04-26 13:49:31 +02:00
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ret[7] = byte(((payload_len & (u64(0xff) << 0)) >> 0) & 0xff)
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2020-04-08 14:22:31 +02:00
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return ret
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}
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fn create_masking_key() []byte {
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t := time.ticks()
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tseq := t % 23237671
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mut rnd := rand.new_pcg32(u64(t), u64(tseq) )
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mask_bit := byte(rnd.bounded_next(u32(math.max_i32)))
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buf := [`0`].repeat(4)
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C.memcpy(buf.data, &mask_bit, 4)
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return buf
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}
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fn create_key_challenge_response(seckey string) string {
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guid := "258EAFA5-E914-47DA-95CA-C5AB0DC85B11"
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sha1buf := seckey + guid
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hash := sha1.sum(sha1buf.bytes())
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hashstr := string(byteptr(hash.data))
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b64 := base64.encode(hashstr)
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unsafe {
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sha1buf.free()
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hash.free()
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}
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return b64
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}
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fn get_nonce() string {
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2020-04-26 13:49:31 +02:00
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mut nonce := []byte{}
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2020-04-08 14:22:31 +02:00
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alphanum := "0123456789ABCDEFGHIJKLMNOPQRSTUVXYZabcdefghijklmnopqrstuvwxyz"
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2020-04-24 07:32:51 +02:00
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for i in 0..18 {
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2020-04-08 14:22:31 +02:00
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nonce << alphanum[rand.next(61)]
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}
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return string(byteptr(nonce.data))
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}
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