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#36, add way to request ip address from server
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125
doc/proto_00000501.txt
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125
doc/proto_00000501.txt
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Detailed specification of protocol in version 00000501
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======================================================
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Note: work in progress!!
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======================================================
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CMC = 2 byte Cache Miss Counter, increased every time it is used
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Version:
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Client sends:
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First byte v or V
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Rest encoded with base32:
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4 bytes big endian protocol version
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CMC
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Server replies:
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4 chars:
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VACK (version ok), followed by login challenge
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VNAK (version differs), followed by server protocol version
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VFUL (server has no free slots), followed by max users
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4 byte value: means login challenge/server protocol version/max users
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1 byte userid of the new user, or any byte if not VACK
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Login:
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Client sends:
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First byte l or L
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Rest encoded with base32:
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1 byte userid
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16 bytes MD5 hash of: (first 32 bytes of password) xor (8 repetitions of login challenge)
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CMC
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Server replies:
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LNAK means not accepted
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x.x.x.x-y.y.y.y-mtu-netmask means accepted (server ip, client ip, mtu, netmask bits)
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IP Request:
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Client sends:
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First byte i or I
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5 bits coded as Base32 char, meaning userid
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CMC
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Server replies
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BADIP if bad userid, or
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I and then 4 bytes network order external IP address of iodined server
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Case check:
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Client sends:
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First byte z or Z
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Lots of data that should not be decoded
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Server replies:
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The requested domain copied raw
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Switch codec:
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Client sends:
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First byte s or S
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5 bits coded as Base32 char, meaning userid
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5 bits coded as Base32 char, with value 5 or 6, representing number of raw
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bits per encoded byte
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Server sends:
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Name of codec if accepted. After this all upstream data packets must
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be encoded with the new codec.
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BADCODEC if not accepted. Client must then revert to Base32
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Probe downstream fragment size:
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Client sends:
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First byte r or R
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15 bits coded as 3 Base32 chars: UUUUF FFFFF FFFFF
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meaning 4 bits userid, 11 bits fragment size
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Then follows a long random query which contents does not matter
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Server sends:
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Requested number of bytes as a response. The first two bytes contains
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the requested length. Rest of message can be any data.
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BADFRAG if requested length not accepted.
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Set downstream fragment size:
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Client sends:
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First byte n or N
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Rest encoded with base32:
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1 byte userid
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2 bytes new downstream fragment size
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CMC
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Server sends:
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2 bytes new downstream fragment size. After this all downstream
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payloads will be max (fragsize + 2) bytes long.
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BADFRAG if not accepted.
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Data:
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Upstream data header:
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3210 432 10 43 210 4321 0
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+----+---+--+--+---+----+-+
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|UUUU|SSS|FF|FF|DDD|GGGG|L|
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+----+---+--+--+---+----+-+
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Downstream data header:
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7 654 3210 765 4321 0
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+-+---+----+---+----+-+
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|C|SSS|FFFF|DDD|GGGG|L|
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+-+---+----+---+----+-+
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UUUU = Userid
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L = Last fragment in packet flag
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SS = Upstream packet sequence number
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FFFF = Upstream fragment number
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DDD = Downstream packet sequence number
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GGGG = Downstream fragment number
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C = Compression enabled for downstream packet
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Upstream data packet starts with 1 byte ASCII hex coded user byte, then 3 bytes
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Base32 encoded header, then comes the payload data, encoded with chosen codec.
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Downstream data starts with 2 byte header. Then payload data, which may be
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compressed.
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Ping:
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Client sends:
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First byte p or P
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Rest encoded with Base32:
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1 byte with 4 bits userid
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1 byte with:
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3 bits downstream seqno
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4 bits downstream fragment
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CMC
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The server response to Ping and Data packets is a DNS NULL type response:
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If server has nothing to send, data length is 0 bytes.
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If server has something to send, it will send a downstream data packet,
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prefixed with 2 bytes header as shown above.
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@ -389,6 +389,33 @@ handle_null_request(int tun_fd, int dns_fd, struct query *q, int domain_len)
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}
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}
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}
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}
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return;
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return;
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} else if(in[0] == 'I' || in[0] == 'i') {
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/* Request for IP number */
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in_addr_t replyaddr;
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unsigned addr;
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char reply[5];
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userid = b32_8to5(in[1]);
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if (check_user_and_ip(userid, q) != 0) {
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write_dns(dns_fd, q, "BADIP", 5);
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return; /* illegal id */
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}
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if (ns_ip != INADDR_ANY) {
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/* If set, use assigned external ip (-n option) */
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replyaddr = ns_ip;
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} else {
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/* otherwise return destination ip from packet */
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memcpy(&replyaddr, &q->destination.s_addr, sizeof(in_addr_t));
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}
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addr = htonl(replyaddr);
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reply[0] = 'I';
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reply[1] = (addr >> 24) & 0xFF;
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reply[2] = (addr >> 16) & 0xFF;
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reply[3] = (addr >> 8) & 0xFF;
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reply[4] = (addr >> 0) & 0xFF;
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write_dns(dns_fd, q, reply, sizeof(reply));
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} else if(in[0] == 'Z' || in[0] == 'z') {
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} else if(in[0] == 'Z' || in[0] == 'z') {
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/* Check for case conservation and chars not allowed according to RFC */
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/* Check for case conservation and chars not allowed according to RFC */
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@ -600,6 +627,8 @@ handle_ns_request(int dns_fd, struct query *q)
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int len;
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int len;
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if (ns_ip != INADDR_ANY) {
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if (ns_ip != INADDR_ANY) {
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/* If ns_ip set, overwrite destination addr with it.
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* Destination addr will be sent as additional record (A, IN) */
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memcpy(&q->destination.s_addr, &ns_ip, sizeof(in_addr_t));
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memcpy(&q->destination.s_addr, &ns_ip, sizeof(in_addr_t));
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}
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}
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@ -19,7 +19,7 @@
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/* This is the version of the network protocol
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/* This is the version of the network protocol
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It is usually equal to the latest iodine version number */
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It is usually equal to the latest iodine version number */
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#define VERSION 0x00000500
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#define VERSION 0x00000501
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#endif /* _VERSION_H_ */
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#endif /* _VERSION_H_ */
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