mirror of
https://github.com/bobbimanners/emailler.git
synced 2024-11-05 00:04:46 +00:00
458 lines
8.8 KiB
ArmAsm
458 lines
8.8 KiB
ArmAsm
.include "../inc/common.i"
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.export ip_init
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.export ip_process
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.export ip_calc_cksum
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.export ip_create_packet
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.export ip_send
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.export ip_inp
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.export ip_outp
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.export ip_broadcast
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.exportzp ip_cksum_ptr
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.exportzp ip_ver_ihl
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.exportzp ip_tos
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.exportzp ip_len
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.exportzp ip_id
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.exportzp ip_frag
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.exportzp ip_ttl
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.exportzp ip_proto
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.exportzp ip_header_cksum
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.exportzp ip_src
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.exportzp ip_dest
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.exportzp ip_data
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.exportzp ip_proto_icmp
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.exportzp ip_proto_tcp
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.exportzp ip_proto_udp
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.import cfg_mac
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.import cfg_ip
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.import eth_tx
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.import eth_set_proto
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.import eth_inp
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.import eth_inp_len
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.import eth_outp
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.import eth_outp_len
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.importzp eth_dest
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.importzp eth_src
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.importzp eth_type
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.importzp eth_data
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.importzp eth_proto_ip
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.importzp eth_proto_arp
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.import arp_lookup
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.import arp_mac
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.import arp_ip
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.import icmp_init
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.import icmp_process
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.import udp_init
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.import udp_process
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.importzp copy_src
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.segment "IP65ZP" : zeropage
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; checksum
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ip_cksum_ptr: .res 2 ; pointer to data to be checksummed
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.bss
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ip_cksum_len: .res 2 ; length of data to be checksummed
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; ip packets start at ethernet packet + 14
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ip_inp = eth_inp + eth_data ;pointer to start of IP packet in input ethernet frame
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ip_outp = eth_outp + eth_data ;pointer to start of IP packet in output ethernet frame
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; temp storage for size calculation
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len: .res 2
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; flag for incoming broadcast packets
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ip_broadcast: .res 1 ;flag set when an incoming IP packet was sent to a broadcast address
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; ip packet offsets
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ip_ver_ihl = 0 ;offset of 4 bit "version" field and 4 bit "header length" field in an IP packet header
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ip_tos = 1 ;offset of "type of service" field in an IP packet header
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ip_len = 2 ;offset of "length" field in an IP packet header
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ip_id = 4 ;offset of "identification" field in an IP packet header
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ip_frag = 6 ;offset of "fragmentation offset" field in an IP packet header
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ip_ttl = 8 ;offset of "time to live" field in an IP packet header
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ip_proto = 9 ;offset of "protocol number" field in an IP packet header
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ip_header_cksum = 10 ;offset of "ip header checksum" field in an IP packet header
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ip_src = 12 ;offset of "source address" field in an IP packet header
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ip_dest = 16 ;offset of "destination address" field in an IP packet header
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ip_data = 20 ;offset of data payload in an IP packet
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; ip protocols
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ip_proto_icmp = 1
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ip_proto_tcp = 6
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ip_proto_udp = 17
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; temp for calculating checksum
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cksum: .res 3
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; bad packet counters
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bad_header: .res 2
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bad_addr: .res 2
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.code
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; initialize ip routines
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; inputs: none
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; outputs: none
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ip_init:
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lda #0
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sta bad_header
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sta bad_header + 1
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sta bad_addr
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sta bad_addr + 1
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jsr icmp_init
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jsr udp_init
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; jsr tcp_init
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rts
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;process an incoming packet & call the appropriate protocol handler
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;inputs:
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; eth_inp: should point to the received ethernet packet
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;outputs:
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; carry flag - set on any error, clear if OK
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; depending on the packet contents and the protocol handler, a response
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; message may be generated and sent out (overwriting eth_outp buffer)
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ip_process:
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jsr verifyheader ; ver, ihl, len, frag, checksum
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bcc @ok
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@badpacket:
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sec
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rts
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@ok:
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jsr checkaddr ; make sure it's meant for us
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bcs @badpacket
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lda ip_inp + ip_proto
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cmp #ip_proto_icmp
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bne :+
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jmp icmp_process ; jump to icmp handler
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: cmp #ip_proto_tcp
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bne :+
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jmp tcp_process ; jump to tcp handler
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: cmp #ip_proto_udp
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bne :+
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jmp udp_process ; jump to udp handler
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:
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tcp_process:
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sec ; unknown protocol
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rts
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; verify that header contains what we expect
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verifyheader:
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lda ip_inp + ip_ver_ihl ; IPv4 and no IP options
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cmp #$45
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bne @badpacket
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; lda ip_inp + ip_tos ; ignore ToS
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lda ip_inp + ip_len + 1 ; ip + 14 bytes ethernet header
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clc
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adc #14
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sta len
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lda ip_inp + ip_len
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adc #0
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sta len + 1
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lda eth_inp_len ; check if advertised length is shorter
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sec ; than actual length
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sbc len
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lda eth_inp_len + 1
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sbc len + 1
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bmi @badpacket
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lda ip_inp + ip_frag ; check for fragmentation
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beq :+
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cmp #$40
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bne @badpacket
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: lda ip_inp + ip_frag + 1
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bne @badpacket
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ldax #ip_inp ; verify checksum
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stax ip_cksum_ptr
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ldax #20
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jsr ip_calc_cksum
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cmp #0
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bne @badpacket
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cpx #0
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bne @badpacket
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clc
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rts
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@badpacket:
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inc bad_header
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bne :+
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inc bad_header + 1
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: sec
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rts
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; check that this packet was addressed to us
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checkaddr:
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lda #0
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sta ip_broadcast
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lda ip_inp + ip_dest ; compare ip address
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cmp cfg_ip
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bne @broadcast
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lda ip_inp + ip_dest + 1
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cmp cfg_ip + 1
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bne @broadcast
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lda ip_inp + ip_dest + 2
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cmp cfg_ip + 2
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bne @broadcast
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lda ip_inp + ip_dest + 3
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cmp cfg_ip + 3
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bne @broadcast
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@ok: clc
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rts
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@broadcast:
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inc ip_broadcast
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lda ip_inp + ip_dest ; check for broadcast
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and ip_inp + ip_dest + 1
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and ip_inp + ip_dest + 2
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and ip_inp + ip_dest + 3
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cmp #$ff
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beq @ok
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inc bad_addr
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bne :+
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inc bad_addr + 1
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: sec
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rts
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; create an IP header (with all the appropriate flags and common fields set) inside an
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; ethernet frame
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;inputs:
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; eth_outp: should point to a buffer in which the ethernet frame is being built
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;outputs:
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; eth_outp: contains an IP header with version, TTL, flags, src address & IP header
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; checksum fields set.
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ip_create_packet:
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lda #$45 ; set IP version and header length
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sta ip_outp + ip_ver_ihl
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lda #0 ; set type of service
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sta ip_outp + ip_tos
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; skip length
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; skip ID
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lda #$40 ; don't fragment - or should we not care?
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sta ip_outp + ip_frag
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lda #0
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sta ip_outp + ip_frag + 1
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lda #$40 ; set time to live
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sta ip_outp + ip_ttl
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; skip protocol
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lda #0 ; clear checksum
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sta ip_outp + ip_header_cksum
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sta ip_outp + ip_header_cksum + 1
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ldx #3 ; copy source address
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: lda cfg_ip,x
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sta ip_outp + ip_src,x
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dex
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bpl :-
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; skip destination address
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rts
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; send an IP packet
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;inputs
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; eth_outp: should point to an ethernet frame that has an IP header created (by
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; calling ip_create_packet)
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; ip_len: should contain length of IP packet (header + data)
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; ip_id: should contain an ID that is unique for each packet
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; ip_protocol: should contain protocol ID
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; ip_dest: should contain the destination IP address
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;outputs:
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; eth_outp: ethernet frame updated with correct IP header, then sent out over
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; the wire
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; carry flag - set on any error, clear if OK
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ip_send:
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ldx #3 ; get mac addr from ip
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: lda ip_outp + ip_dest,x
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sta arp_ip,x
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dex
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bpl :-
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jsr arp_lookup
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bcc :+
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rts ; packet buffer nuked, fail
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:
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ldax #ip_outp ; calculate ip header checksum
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stax ip_cksum_ptr
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ldax #20
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jsr ip_calc_cksum
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stax ip_outp + ip_header_cksum
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ldx #5
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: lda arp_mac,x ; copy destination mac address
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sta eth_outp + eth_dest,x
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lda cfg_mac,x ; copy my mac address
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sta eth_outp + eth_src,x
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dex
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bpl :-
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lda #eth_proto_ip ; set type to IP
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jsr eth_set_proto
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lda ip_outp + ip_len + 1 ; set packet length
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lsr
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bcc @dontpad
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rol ; pad with 0
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;clc
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adc #<ip_outp
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sta copy_src ; borrow copymem zp...
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lda ip_outp + ip_len
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adc #>ip_outp
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sta copy_src + 1
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ldy #0
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tya
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sta (copy_src),y
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sec ; round up to even number
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@dontpad:
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lda ip_outp + ip_len + 1
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adc #eth_data
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sta eth_outp_len
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lda ip_outp + ip_len
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adc #0
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sta eth_outp_len + 1
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;jsr dbg_dump_ip_header
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jmp eth_tx ; send packet and return status
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; calculate checksum for a buffer according to the standard IP checksum algorithm
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; David Schmidt discovered errors in the original ip65 implementation, and he replaced
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; this with an implementation from the contiki project (http://www.sics.se/contiki/)
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; when incorporating ip65 into ADTPro (http://adtpro.sourceforge.net/)
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; So I have cribbed that version from
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; http://adtpro.cvs.sourceforge.net/viewvc/adtpro/adtpro/client/src/ip65/ip.s
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;inputs:
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; ip_cksum_ptr: points at buffer to be checksummed
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; AX: length of buffer to be checksumed
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;outputs:
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; AX: checkum of buffer
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ip_calc_cksum:
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sta ip_cksum_len ; save length
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stx ip_cksum_len + 1
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lda #0
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sta cksum
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sta cksum+1
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lda ip_cksum_len+1
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beq chksumlast
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; If checksum is > 256, do the first runs.
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ldy #0
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clc
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chksumloop_256:
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lda (ip_cksum_ptr),y
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adc cksum
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sta cksum
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iny
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lda (ip_cksum_ptr),y
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adc cksum+1
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sta cksum+1
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iny
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bne chksumloop_256
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inc ip_cksum_ptr+1
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dec ip_cksum_len+1
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bne chksumloop_256
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chksum_endloop_256:
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lda cksum
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adc #0
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sta cksum
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lda cksum+1
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adc #0
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sta cksum+1
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bcs chksum_endloop_256
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chksumlast:
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lda ip_cksum_len
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lsr
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bcc chksum_noodd
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ldy ip_cksum_len
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dey
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lda (ip_cksum_ptr),y
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clc
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adc cksum
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sta cksum
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bcc noinc1
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inc cksum+1
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bne noinc1
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inc cksum
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noinc1:
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dec ip_cksum_len
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chksum_noodd:
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clc
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php
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ldy ip_cksum_len
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chksum_loop1:
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cpy #0
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beq chksum_loop1_end
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plp
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dey
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dey
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lda (ip_cksum_ptr),y
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adc cksum
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sta cksum
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iny
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lda (ip_cksum_ptr),y
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adc cksum+1
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sta cksum+1
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dey
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php
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jmp chksum_loop1
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chksum_loop1_end:
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plp
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chksum_endloop:
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lda cksum
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adc #0
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sta cksum
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lda cksum+1
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adc #0
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sta cksum+1
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bcs chksum_endloop
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lda cksum+1
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eor #$ff
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tax
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lda cksum
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eor #$ff
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rts
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