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499 lines
14 KiB
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499 lines
14 KiB
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<html><head><meta http-equiv="Content-Type" content="text/html; charset=utf-8"/><link rel="stylesheet" type="text/css" href="ca65-doc-style.css"/></head><body><a href="ref_index.html"><h1>ip65 technical reference</h1></a><h1>File : ip65/dns.s</h1><pre> minimal dns implementation - requires a DNS server that supports recursion
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</pre><h2 id="functions">functions</h2><table><tr><th>function</th><th>description</th></tr><tr><td id="dns_resolve">dns_resolve</td><td><pre> resolve a string containing a hostname (or a dotted quad) to an ip address
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inputs:
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cfg_dns must point to a DNS server that supports recursion
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dns_set_hostname must have been called to load the string to be resolved
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outputs:
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carry flag is set if there was an error, clear otherwise
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dns_ip: set to the ip address of the hostname (if no error)
</pre></td></tr><tr><td id="dns_set_hostname">dns_set_hostname</td><td><pre> sets up for resolution of a hostname to an ip address
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inputs:
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AX = pointer to null terminated string that contains either a dns hostname
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(e.g. "host.example.com",0) or an address in "dotted quad" format,
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(e.g. "192.168.1.0",0)
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outputs:
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carry flag is set on error (i.e. hostname too long), clear otherwise
</pre></td></tr></table><h2 id="variables">variables</h2><table><tr><th>variable</th><th>description</th><th>size (bytes)</th></tr><tr><td id="dns_ip">dns_ip</td><td>will be contain ip address of hostname after succesful exection of dns_resolve
</td><td>4</td></tr><tr><td id="dns_status">dns_status</td><td> for debugging purposes only (behaviour not garuanteed)
</td><td>2</td></tr></table><h2>implementation</h2><pre id="code">; minimal dns implementation - requires a DNS server that supports recursion
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MAX_DNS_MESSAGES_SENT=8 ;timeout after sending 8 messages will be about 7 seconds (1+2+3+4+5+6+7+8)/4
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.include "../inc/common.i"
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.ifndef KPR_API_VERSION_NUMBER
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.define EQU =
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.include "../inc/kipper_constants.i"
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.endif
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.export dns_set_hostname
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.export dns_resolve
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.export dns_ip
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.export dns_status
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.import ip65_error
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.import cfg_dns
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.import parse_dotted_quad
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.import dotted_quad_value
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.import ip65_process
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.import udp_add_listener
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.import udp_remove_listener
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.import udp_callback
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.import udp_send
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.import udp_inp
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.import output_buffer
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.importzp udp_data
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.import udp_send_dest
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.import udp_send_src_port
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.import udp_send_dest_port
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.import udp_send_len
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.import check_for_abort_key
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.import timer_read
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.segment "IP65ZP" : zeropage
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dns_hostname: .res 2
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.bss
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; dns packet offsets
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dns_inp = udp_inp + udp_data
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dns_id = 0
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dns_flags=2
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dns_qdcount=4
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dns_ancount=6
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dns_nscount=8
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dns_arcount=10
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dns_qname=12
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dns_server_port=53
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dns_client_port_low_byte: .res 1
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dns_ip: .res 4 ;will be contain ip address of hostname after succesful exection of dns_resolve
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dns_msg_id: .res 2
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dns_current_label_length: .res 1
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dns_current_label_offset: .res 1
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dns_message_sent_count: .res 1
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dns_packed_hostname: .res 128
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; dns state machine
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dns_initializing = 1 ; initial state
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dns_query_sent = 2 ; sent a query, waiting for a response
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dns_complete = 3 ; got a good response
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dns_failed = 4 ; got either a 'no such name' or 'recursion declined' response
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dns_state: .res 1 ; flag indicating the current stage in the dns resolution process
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dns_timer: .res 1
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dns_loop_count: .res 1
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dns_break_polling_loop: .res 1
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dns_status: .res 2 ; for debugging purposes only (behaviour not garuanteed)
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hostname_copied: .res 1
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questions_in_response: .res 1
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hostname_was_dotted_quad: .res 1
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.code
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; sets up for resolution of a hostname to an ip address
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; inputs:
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; AX = pointer to null terminated string that contains either a dns hostname
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; (e.g. "host.example.com",0) or an address in "dotted quad" format,
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; (e.g. "192.168.1.0",0)
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; outputs:
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; carry flag is set on error (i.e. hostname too long), clear otherwise
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dns_set_hostname:
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stax dns_hostname
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;copy the hostname into a buffer suitable to copy directly into the qname field
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;we need to split on dots
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jsr parse_dotted_quad ; if we are passed an IP address instead of a hostname, don't bother looking it up in dns
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bcs @wasnt_dotted_quad
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;if the string was a dotted quad, then copy the parsed 4 bytes in to dns_ip
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lda #1
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sta hostname_was_dotted_quad
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ldx #3 ; set destination address
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: lda dotted_quad_value,x
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sta dns_ip,x
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dex
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bpl :-
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rts ;done!
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@wasnt_dotted_quad:
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ldy #0 ;input pointer
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ldx #1 ;output pointer (start at 1, to skip first length offset, which will be filled in later)
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sty hostname_was_dotted_quad
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sty dns_current_label_length
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sty dns_current_label_offset
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sty hostname_copied
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@next_hostname_byte:
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lda (dns_hostname),y ;get next char in hostname
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beq @end_of_hostname
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cmp #'/' ; allow hostnames to be terminated by "/" or ":" to help with URL parsing
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beq @end_of_hostname
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cmp #':'
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bne :+
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@end_of_hostname:
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inc hostname_copied
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bne @set_length_of_last_label
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:
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cmp #'.' ;do we need to split the labels?
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bne @not_a_dot
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@set_length_of_last_label:
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txa
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pha
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lda dns_current_label_length
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ldx dns_current_label_offset
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sta dns_packed_hostname,x
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lda #0
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sta dns_current_label_length
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pla
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tax
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stx dns_current_label_offset
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lda hostname_copied
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beq @update_counters
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jmp @hostname_done
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@not_a_dot:
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sta dns_packed_hostname,x
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inc dns_current_label_length
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@update_counters:
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iny
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inx
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bmi @hostname_too_long ;don't allow a hostname of more than 128 bytes
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jmp @next_hostname_byte
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@hostname_done:
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lda dns_packed_hostname-1,x ;get the last byte we wrote out
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beq :+ ;was it a zero?
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lda #0
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sta dns_packed_hostname,x ;write a trailing zero (i.e. a zero length label)
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inx
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:
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clc ;no error
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rts
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@hostname_too_long:
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lda #KPR_ERROR_INPUT_TOO_LARGE
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sta ip65_error
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sec
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rts
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; resolve a string containing a hostname (or a dotted quad) to an ip address
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; inputs:
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; cfg_dns must point to a DNS server that supports recursion
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; dns_set_hostname must have been called to load the string to be resolved
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; outputs:
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; carry flag is set if there was an error, clear otherwise
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; dns_ip: set to the ip address of the hostname (if no error)
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dns_resolve:
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lda hostname_was_dotted_quad
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beq @hostname_not_dotted_quad
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clc
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rts ;we already set dns_ip when copying the hostname
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@hostname_not_dotted_quad:
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ldax #dns_in
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stax udp_callback
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lda #53
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inc dns_client_port_low_byte ;each call to resolve uses a different client address
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ldx dns_client_port_low_byte ;so we don't get confused by late replies to a previous call
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jsr udp_add_listener
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bcc :+
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rts
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:
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lda #dns_initializing
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sta dns_state
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lda #0 ;reset the "message sent" counter
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sta dns_message_sent_count
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jsr send_dns_query
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@dns_polling_loop:
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lda dns_message_sent_count
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adc #1
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sta dns_loop_count ;we wait a bit longer between each resend
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@outer_delay_loop:
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lda #0
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sta dns_break_polling_loop
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jsr timer_read
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stx dns_timer ;we only care about the high byte
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@inner_delay_loop:
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jsr ip65_process
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jsr check_for_abort_key
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bcc @no_abort
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lda #KPR_ERROR_ABORTED_BY_USER
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sta ip65_error
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rts
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@no_abort:
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lda dns_state
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cmp #dns_complete
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beq @complete
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cmp #dns_failed
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beq @failed
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lda #0
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cmp dns_break_polling_loop
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bne @break_polling_loop
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jsr timer_read
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cpx dns_timer ;this will tick over after about 1/4 of a second
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beq @inner_delay_loop
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dec dns_loop_count
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bne @outer_delay_loop
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@break_polling_loop:
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jsr send_dns_query
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inc dns_message_sent_count
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lda dns_message_sent_count
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cmp #MAX_DNS_MESSAGES_SENT-1
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bpl @too_many_messages_sent
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jmp @dns_polling_loop
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@complete:
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lda #53
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ldx dns_client_port_low_byte
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jsr udp_remove_listener
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rts
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@too_many_messages_sent:
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@failed:
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lda #53
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ldx dns_client_port_low_byte
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jsr udp_remove_listener
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lda #KPR_ERROR_TIMEOUT_ON_RECEIVE
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sta ip65_error
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sec ;signal an error
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rts
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send_dns_query:
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ldax dns_msg_id
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inx
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adc #0
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stax dns_msg_id
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stax output_buffer+dns_id
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ldax #$0001 ;QR =0 (query), opcode=0 (query), AA=0, TC=0,RD=1,RA=0,Z=0,RCODE=0
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stax output_buffer+dns_flags
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ldax #$0100 ;we ask 1 question
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stax output_buffer+dns_qdcount
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ldax #$0000
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stax output_buffer+dns_ancount ;we send no answers
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stax output_buffer+dns_nscount ;we send no name servers
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stax output_buffer+dns_arcount ;we send no authorative records
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ldx #0
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:
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lda dns_packed_hostname,x
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sta output_buffer+dns_qname,x
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inx
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bpl @hostname_still_ok
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lda #KPR_ERROR_INPUT_TOO_LARGE
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sta ip65_error
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jmp @error_on_send ;if we got past 128 bytes, there's a problem
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@hostname_still_ok:
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cmp #0
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bne :- ;keep looping until we have a zero byte.
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lda #0
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sta output_buffer+dns_qname,x ;high byte of QTYPE=1 (A)
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sta output_buffer+dns_qname+2,x ;high byte of QLASS=1 (IN)
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lda #1
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sta output_buffer+dns_qname+1,x ;low byte of QTYPE=1 (A)
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sta output_buffer+dns_qname+3,x ;low byte of QLASS=1 (IN)
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txa
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clc
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adc #(dns_qname+4)
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ldx #0
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stax udp_send_len
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lda #53
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ldx dns_client_port_low_byte
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stax udp_send_src_port
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ldx #3 ; set destination address
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: lda cfg_dns,x
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sta udp_send_dest,x
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dex
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bpl :-
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ldax #dns_server_port ; set destination port
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stax udp_send_dest_port
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ldax #output_buffer
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jsr udp_send
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bcs @error_on_send
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lda #dns_query_sent
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sta dns_state
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rts
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@error_on_send:
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sec
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rts
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dns_in:
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lda dns_inp+dns_flags+1 ;
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and #$0f ;get the RCODE
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cmp #0
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beq @not_an_error_response
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sta dns_status ;anything non-zero is a permanent error (invalid domain, server doesn't support recursion etc)
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sta dns_status+1
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lda #dns_failed
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sta dns_state
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rts
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@not_an_error_response:
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lda dns_inp+dns_qdcount+1
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sta questions_in_response
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cmp #1 ;should be exactly 1 Q in the response (i.e. the one we sent)
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beq :+
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jmp @error_in_response
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:
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lda dns_inp+dns_ancount+1
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bne :+
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jmp @error_in_response ;should be at least 1 answer in response
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: ;we need to skip over the question (we will assume it's the question we just asked)
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ldx #dns_qname
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:
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lda dns_inp,x ;get next length byte in question
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beq :+ ; we're done if length==0
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clc
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txa
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adc dns_inp,x ;add length of next label to ptr
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adc #1 ;+1 for the length byte itself
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tax
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bcs @error_in_response ;if we overflowed x, then message is too big
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bcc :-
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:
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inx ;skip past the nul byte
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lda dns_inp+1,x
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cmp #1 ;QTYPE should 1
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lda dns_inp+3,x
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cmp #1 ;QCLASS should 1
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bne @error_in_response
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inx ;skip past the QTYPE/QCLASS
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inx
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inx
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inx
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;x now points to the start of the answers
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lda dns_inp,x
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bpl @error_in_response ;we are expecting the high bit to be set (we assume the server will send us back the answer to the question we just asked)
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inx ;skip past the compression
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inx
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;we are now pointing at the TYPE field
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lda dns_inp+1,x ;
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cmp #5 ; is this a CNAME?
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bne @not_a_cname
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txa
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clc
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adc #10 ;skip 2 bytes TYPE, 2 bytes CLASS, 4 bytes TTL, 2 bytes RDLENGTH
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tax
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;we're now pointing at the CNAME record
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ldy #0 ;start of CNAME hostname
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:
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lda dns_inp,x
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beq @last_byte_of_cname
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bmi @found_compression_marker
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sta dns_packed_hostname,y
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inx
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|
iny
|
||
|
bmi @error_in_response ;if we go past 128 bytes, something is wrong
|
||
|
bpl :- ;go get next byte
|
||
|
@last_byte_of_cname:
|
||
|
sta dns_packed_hostname,y
|
||
|
|
||
|
lda #$ff ;set a status marker so we know whats going on
|
||
|
sta dns_status
|
||
|
stx dns_status+1
|
||
|
|
||
|
lda #1
|
||
|
sta dns_break_polling_loop
|
||
|
|
||
|
rts ; finished processing - the main dns polling loop should now resend a query, this time for the hostname from the CNAME record
|
||
|
|
||
|
@found_compression_marker:
|
||
|
lda dns_inp+1,x
|
||
|
tax
|
||
|
jmp :-
|
||
|
|
||
|
@not_a_cname:
|
||
|
cmp #1 ; should be 1 (A record)
|
||
|
bne @error_in_response
|
||
|
txa
|
||
|
clc
|
||
|
adc #10 ;skip 2 bytes TYPE, 2 bytes CLASS, 4 bytes TTL, 2 bytes RDLENGTH
|
||
|
tax
|
||
|
;we're now pointing at the answer!
|
||
|
lda dns_inp,x
|
||
|
sta dns_ip
|
||
|
|
||
|
lda dns_inp+1,x
|
||
|
sta dns_ip+1
|
||
|
|
||
|
lda dns_inp+2,x
|
||
|
sta dns_ip+2
|
||
|
|
||
|
lda dns_inp+3,x
|
||
|
sta dns_ip+3
|
||
|
|
||
|
|
||
|
lda #dns_complete
|
||
|
sta dns_state
|
||
|
|
||
|
lda #1
|
||
|
sta dns_break_polling_loop
|
||
|
|
||
|
@error_in_response:
|
||
|
|
||
|
sta dns_status
|
||
|
stx dns_status+1
|
||
|
rts
|
||
|
|
||
|
|
||
|
|
||
|
|
||
|
|
||
|
;-- LICENSE FOR dns.s --
|
||
|
; The contents of this file are subject to the Mozilla Public License
|
||
|
; Version 1.1 (the "License"); you may not use this file except in
|
||
|
; compliance with the License. You may obtain a copy of the License at
|
||
|
; http://www.mozilla.org/MPL/
|
||
|
;
|
||
|
; Software distributed under the License is distributed on an "AS IS"
|
||
|
; basis, WITHOUT WARRANTY OF ANY KIND, either express or implied. See the
|
||
|
; License for the specific language governing rights and limitations
|
||
|
; under the License.
|
||
|
;
|
||
|
; The Original Code is ip65.
|
||
|
;
|
||
|
; The Initial Developer of the Original Code is Jonno Downes,
|
||
|
; jonno@jamtronix.com.
|
||
|
; Portions created by the Initial Developer are Copyright (C) 2009
|
||
|
; Jonno Downes. All Rights Reserved.
|
||
|
; -- LICENSE END --
|
||
|
</pre></body></html>
|