mirror of
https://github.com/KolibriOS/kolibrios.git
synced 2024-12-03 22:01:55 +03:00
8a1c0404e2
git-svn-id: svn://kolibrios.org@384 a494cfbc-eb01-0410-851d-a64ba20cac60
927 lines
25 KiB
PHP
927 lines
25 KiB
PHP
;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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;;
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;; SOCKET.INC
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;;
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;; Sockets constants, structures and functions
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;;
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;; Last revision: 11.11.2006
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;;
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;; This file contains the following:
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;; is_localport_unused
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;; get_free_socket
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;; socket_open
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;; socket_open_tcp
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;; socket_close
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;; socket_close_tcp
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;; socket_poll
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;; socket_status
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;; socket_read
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;; socket_write
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;; socket_write_tcp
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;;
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;;
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;; Changes history:
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;; 22.09.2003 - [Mike Hibbett] : mikeh@oceanfree.net
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;; 11.11.2006 - [Johnny_B] and [smb]
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;;
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;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
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;
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; Socket Descriptor + Buffer
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;
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; 0 1 2 3
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; 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
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;
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 0| Status ( of this buffer ) |
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 4| Application Process ID |
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 8| Local IP Address |
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 12| Local IP Port | Unused ( set to 0 ) |
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 16| Remote IP Address |
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 20| Remote IP Port | Unused ( set to 0 ) |
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 24| Rx Data Count INTEL format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 28| TCB STATE INTEL format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 32| TCB Timer (seconds) INTEL format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 36| ISS (Inital Sequence # used by this connection ) INET format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 40| IRS ( Inital Receive Sequence # ) INET format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 44| SND.UNA Seq # of unack'ed sent packets INET format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 48| SND.NXT Next send seq # to use INET format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 52| SND.WND Send window INET format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 56| RCV.NXT Next expected receive sequence # INET format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 60| RCV.WND Receive window INET format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 64| SEG.LEN Segment length INTEL format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 68| SEG.WND Segment window INTEL format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 72| Retransmit queue # NOW WINDOW SIZE TIMER INTEL format|
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; +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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; 76| RX offset from
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; 76| RX Data |
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; +-+-+-.......... -+
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; so, define struct
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struc SOCKET
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{ .Status dd ? ;+00 - Status ( of this buffer )
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.PID dd ? ;+04 - Application Process ID
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.LocalIP dd ? ;+08 - Local IP Address
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.LocalPort dw ? ;+12 - Local Port
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.UnusedL dw ? ;+14 - may be removed in future
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.RemoteIP dd ? ;+16 - Remote IP Address
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.RemotePort dw ? ;+20 - Remote Port
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.UnusedR dw ? ;+22 - may be removed in future
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.rxDataCount dd ? ;+24 - Rx Data Count
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.TCBState dd ? ;+28 - TCB STATE
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.TCBTimer dd ? ;+32 - TCB Timer (seconds)
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.ISS dd ? ;+36 - Initial Send Sequence
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.IRS dd ? ;+40 - Initial Receive Sequence
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.SND_UNA dd ? ;+44 - Sequence number of unack'ed sent packets
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.SND_NXT dd ? ;+48 - Next send sequence number to use
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.SND_WND dd ? ;+52 - Send window
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.RCV_NXT dd ? ;+56 - Next receive sequence number to use
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.RCV_WND dd ? ;+60 - Receive window
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.SEG_LEN dd ? ;+64 - Segment length
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.SEG_WND dd ? ;+68 - Segment window
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.wndsizeTimer dd ? ;+72 - Retransmit queue # NOW WINDOW SIZE TIMER
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.rxData dd ? ;+76 - receive data buffer here
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}
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virtual at 0
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SOCKET SOCKET
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end virtual
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; simple macro calcing real memory address of SOCKET struct by socket's
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macro Index2RealAddr reg
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{
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shl reg, 12
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add reg, sockets
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}
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;Constants
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; current socket statuses
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SOCK_EMPTY equ 0 ; socket not in use
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SOCK_OPEN equ 1 ; open issued, but no data sent
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; TCP opening modes
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SOCKET_PASSIVE equ 0
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SOCKET_ACTIVE equ 1
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;***************************************************************************
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; Function
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; is_localport_unused
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;
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; Description
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; scans through all the active sockets , looking to see if the
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; port number specified in bx is in use as a localport number.
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; This is useful when you want a to generate a unique local port
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; number.
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; On return, eax = 1 for free, 0 for in use
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;
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;***************************************************************************
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is_localport_unused:
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mov al, bh
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mov ah, bl
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mov bx, ax
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mov edx, SOCKETBUFFSIZE * NUM_SOCKETS
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mov ecx, NUM_SOCKETS
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mov eax, 0 ; Assume the return value is 'in use'
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ilu1:
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sub edx, SOCKETBUFFSIZE
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cmp [edx + sockets + SOCKET.LocalPort], bx
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loopnz ilu1 ; Return back if the socket is occupied
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jz ilu_exit
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inc eax ; return port not in use
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ilu_exit:
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ret
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;***************************************************************************
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; Function
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; get_free_socket
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;
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; Description
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;
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;***************************************************************************
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get_free_socket:
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push ecx
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mov eax, SOCKETBUFFSIZE * NUM_SOCKETS
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mov ecx, NUM_SOCKETS
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gfs1:
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sub eax, SOCKETBUFFSIZE
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cmp [eax + sockets + SOCKET.Status], dword SOCK_EMPTY
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loopnz gfs1 ; Return back if the socket is occupied
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mov eax, ecx
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pop ecx
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jz gfs_exit
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mov eax, 0xFFFFFFFF
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gfs_exit:
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ret
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;***************************************************************************
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; Function
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; socket_open
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;
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; Description
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; find a free socket
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; local port in ebx
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; remote port in ecx
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; remote ip in edx
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; return socket # in eax, -1 if none available
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;
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;***************************************************************************
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socket_open:
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call get_free_socket
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cmp eax, 0xFFFFFFFF
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jz so_exit
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; ax holds the socket number that is free. Get real address
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push eax
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Index2RealAddr eax
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mov [eax + SOCKET.Status], dword SOCK_OPEN
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xchg bh, bl
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mov [eax + SOCKET.LocalPort], bx
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xchg ch, cl
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mov [eax + SOCKET.RemotePort], cx
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mov ebx, [stack_ip]
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mov [eax + SOCKET.LocalIP], ebx
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mov [eax + SOCKET.RemoteIP], edx
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mov [eax + SOCKET.rxDataCount], dword 0 ; recieved data count
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mov esi, [TASK_BASE]
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mov ebx, [esi+TASKDATA.pid]
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mov [eax + SOCKET.PID], ebx ; save the process ID
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pop eax ; Get the socket number back, so we can return it
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so_exit:
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ret
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;***************************************************************************
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; Function
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; socket_open_tcp
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;
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; Description
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; Opens a TCP socket in PASSIVE or ACTIVE mode
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; find a free socket
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; local port in ebx ( intel format )
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; remote port in ecx ( intel format )
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; remote ip in edx ( in Internet byte order )
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; Socket open mode in esi ( SOCKET_PASSIVE or SOCKET_ACTIVE )
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; return socket # in eax, -1 if none available
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;
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;***************************************************************************
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socket_open_tcp:
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call get_free_socket
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cmp eax, 0xFFFFFFFF
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jz so_exit
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; ax holds the socket number that is free. Get real address
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push eax
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Index2RealAddr eax
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mov [sktAddr], eax
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mov [eax], dword SOCK_OPEN
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; TODO - check this works!
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mov [eax + SOCKET.wndsizeTimer], dword 0 ; Reset the window timer.
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xchg bh, bl
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mov [eax + SOCKET.LocalPort], bx
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; mov [eax + 12], byte bh ; Local port ( LS 16 bits )
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; mov [eax + 13], byte bl ; Local port ( LS 16 bits )
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xchg ch, cl
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mov [eax + SOCKET.RemotePort], cx
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; mov [eax + 20], ch ; Remote Port ( LS 16 bits )
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; mov [eax + 21], cl ; Remote Port ( LS 16 bits )
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mov ebx, [stack_ip]
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mov [eax + SOCKET.LocalIP], ebx
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mov [eax + SOCKET.RemoteIP], edx
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mov [eax + SOCKET.rxDataCount], dword 0
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; Now fill in TCB state
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mov ebx, TCB_LISTEN
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cmp esi, SOCKET_PASSIVE
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jz sot_001
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mov ebx, TCB_SYN_SENT
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sot_001:
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mov [eax + SOCKET.TCBState], ebx ; Indicate the state of the TCB
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mov esi, [TASK_BASE]
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mov ecx, [esi+TASKDATA.pid]
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mov [eax + SOCKET.PID], ecx ; save the process ID
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cmp ebx, TCB_LISTEN
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je sot_done
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; Now, if we are in active mode, then we have to send a SYN to the specified remote port
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mov eax, EMPTY_QUEUE
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call dequeue
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cmp ax, NO_BUFFER
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je sot_done
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push eax
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mov bl, 0x02 ; SYN
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mov ecx, 0
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call buildTCPPacket
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mov eax, NET1OUT_QUEUE
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mov edx, [stack_ip]
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mov ecx, [sktAddr ]
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mov ecx, [ecx + 16]
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cmp edx, ecx
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jne sot_notlocal
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mov eax, IPIN_QUEUE
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sot_notlocal:
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; Send it.
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pop ebx
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call queue
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mov esi, [sktAddr]
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; increment SND.NXT in socket
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add esi, 48
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call inc_inet_esi
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sot_done:
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pop eax ; Get the socket number back, so we can return it
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sot_exit:
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ret
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;***************************************************************************
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; Function
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; socket_close
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;
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; Description
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; socket # in ebx
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; returns 0 for ok, -1 for socket not open (fail)
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;
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;***************************************************************************
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socket_close:
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Index2RealAddr ebx
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mov eax, 0xFFFFFFFF ; assume this operation will fail..
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cmp [ebx + SOCKET.Status], dword SOCK_EMPTY
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jz sc_exit
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; Clear the socket varaibles
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xor eax, eax
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mov edi, ebx
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mov ecx, SOCKETHEADERSIZE
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cld
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rep stosb
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sc_exit:
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ret
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;***************************************************************************
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; Function
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; socket_close_tcp
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;
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; Description
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; socket # in ebx
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; returns 0 for ok, -1 for socket not open (fail)
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;
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;***************************************************************************
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socket_close_tcp:
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; first, remove any resend entries
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pusha
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mov esi, resendQ
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mov ecx, 0
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sct001:
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cmp ecx, NUMRESENDENTRIES
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je sct003 ; None left
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cmp [esi], bl
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je sct002 ; found one
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inc ecx
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add esi, 4
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jmp sct001
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sct002:
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mov [esi], byte 0xFF
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jmp sct001
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sct003:
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popa
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Index2RealAddr ebx
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mov [sktAddr], ebx
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mov eax, 0xFFFFFFFF ; assume this operation will fail..
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cmp [ebx + SOCKET.Status], dword SOCK_EMPTY
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jz sct_exit
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; Now construct the response, and queue for sending by IP
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mov eax, EMPTY_QUEUE
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call dequeue
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cmp ax, NO_BUFFER
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je stl_exit
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push eax
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mov bl, 0x11 ; FIN + ACK
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mov ecx, 0
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mov esi, 0
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call buildTCPPacket
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mov ebx, [sktAddr]
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; increament SND.NXT in socket
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mov esi, 48
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add esi, ebx
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call inc_inet_esi
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; Get the socket state
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mov eax, [ebx + SOCKET.TCBState]
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cmp eax, TCB_LISTEN
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je destroyTCB
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cmp eax, TCB_SYN_SENT
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je destroyTCB
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cmp eax, TCB_SYN_RECEIVED
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je sct_finwait1
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cmp eax, TCB_ESTABLISHED
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je sct_finwait1
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; assume CLOSE WAIT
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; Send a fin, then enter last-ack state
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mov eax, TCB_LAST_ACK
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mov [ebx + SOCKET.TCBState], eax
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xor eax, eax
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jmp sct_send
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sct_finwait1:
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; Send a fin, then enter finwait2 state
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mov eax, TCB_FIN_WAIT_1
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mov [ebx + SOCKET.TCBState], eax
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xor eax, eax
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sct_send:
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mov eax, NET1OUT_QUEUE
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mov edx, [stack_ip]
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mov ecx, [sktAddr ]
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mov ecx, [ecx + 16]
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cmp edx, ecx
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jne sct_notlocal
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mov eax, IPIN_QUEUE
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sct_notlocal:
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; Send it.
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pop ebx
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call queue
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jmp sct_exit
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destroyTCB:
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pop eax
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; Clear the socket varaibles
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xor eax, eax
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mov edi, ebx
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mov ecx, SOCKETHEADERSIZE
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cld
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rep stosb
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sct_exit:
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ret
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|
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;***************************************************************************
|
|
; Function
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|
; socket_poll
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|
;
|
|
; Description
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|
; socket # in ebx
|
|
; returns count in eax.
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;
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;***************************************************************************
|
|
socket_poll:
|
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Index2RealAddr ebx
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mov eax, [ebx + SOCKET.rxDataCount]
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ret
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|
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|
|
|
|
;***************************************************************************
|
|
; Function
|
|
; socket_status
|
|
;
|
|
; Description
|
|
; socket # in ebx
|
|
; returns TCB state in eax.
|
|
;
|
|
;***************************************************************************
|
|
socket_status:
|
|
Index2RealAddr ebx
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mov eax, [ebx + SOCKET.TCBState]
|
|
|
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ret
|
|
|
|
|
|
|
|
;***************************************************************************
|
|
; Function
|
|
; socket_read
|
|
;
|
|
; Description
|
|
; socket # in ebx
|
|
; returns # of bytes remaining in eax, data in bl
|
|
;
|
|
;***************************************************************************
|
|
socket_read:
|
|
Index2RealAddr ebx
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mov eax, [ebx + SOCKET.rxDataCount] ; get count of bytes
|
|
mov ecx, 1
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|
test eax, eax
|
|
jz sr2
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|
|
|
dec eax
|
|
mov esi, ebx ; esi is address of socket
|
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mov [ebx + SOCKET.rxDataCount], eax ; store new count
|
|
;movzx ebx, byte [ebx + SOCKET.rxData] ; get the byte
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|
movzx ebx, byte [ebx + SOCKETHEADERSIZE] ; get the byte
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|
add esi, SOCKETHEADERSIZE
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mov edi, esi
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inc esi
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mov ecx, (SOCKETBUFFSIZE - SOCKETHEADERSIZE) / 4
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cld
|
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rep movsd
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xor ecx, ecx
|
|
|
|
sr1:
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jmp sor_exit
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|
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sr2:
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xor bl, bl
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|
|
|
sor_exit:
|
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ret
|
|
|
|
|
|
;***************************************************************************
|
|
; Function
|
|
; socket_read_packet
|
|
;
|
|
; Description
|
|
; socket # in ebx
|
|
; datapointer # in ecx
|
|
; buffer size in edx
|
|
; returns # of bytes copied in eax
|
|
;
|
|
;***************************************************************************
|
|
socket_read_packet:
|
|
Index2RealAddr ebx ; get real socket address
|
|
mov eax, [ebx + SOCKET.rxDataCount] ; get count of bytes
|
|
test eax, eax ; if count of bytes is zero..
|
|
jz .exit ; exit function (eax will be zero)
|
|
|
|
test edx, edx ; if buffer size is zero, copy all data
|
|
jz .copyallbytes
|
|
cmp edx, eax ; if buffer size is larger then the bytes of data, copy all data
|
|
jge .copyallbytes
|
|
|
|
sub eax, edx ; store new count (data bytes in buffer - bytes we're about to copy)
|
|
mov [ebx + SOCKET.rxDataCount], eax ;
|
|
push eax
|
|
mov eax, edx ; number of bytes we want to copy must be in eax
|
|
call .startcopy ; copy to the application
|
|
|
|
mov esi, ebx ; now we're going to copy the remaining bytes to the beginning
|
|
add esi, SOCKETHEADERSIZE ; we dont need to copy the header
|
|
mov edi, esi ; edi is where we're going to copy to
|
|
add esi, edx ; esi is from where we copy
|
|
pop ecx ; count of bytes we have left
|
|
push ecx ; push it again so we can re-use it later
|
|
shr ecx, 2 ; divide eax by 4
|
|
cld
|
|
rep movsd ; copy all full dwords
|
|
pop ecx
|
|
and ecx, 3
|
|
rep movsb ; copy remaining bytes
|
|
|
|
ret ; at last, exit
|
|
|
|
.copyallbytes:
|
|
xor esi, esi
|
|
mov [ebx + SOCKET.rxDataCount], esi ; store new count (zero)
|
|
|
|
.startcopy:
|
|
mov edi, ecx ;
|
|
add edi, std_application_base_address ; get data pointer to buffer in application
|
|
|
|
mov esi, ebx ;
|
|
add esi, SOCKETHEADERSIZE ; we dont need to copy the header
|
|
mov ecx, eax ; eax is count of bytes
|
|
push ecx
|
|
shr ecx, 2 ; divide eax by 4
|
|
cld ; copy all full dwords
|
|
rep movsd ;
|
|
pop ecx
|
|
and ecx, 3
|
|
rep movsb ; copy the rest bytes
|
|
|
|
.exit:
|
|
ret ; exit, or go back to shift remaining bytes if any
|
|
|
|
|
|
|
|
|
|
;***************************************************************************
|
|
; Function
|
|
; socket_write
|
|
;
|
|
; Description
|
|
; socket in ebx
|
|
; # of bytes to write in ecx
|
|
; pointer to data in edx
|
|
; returns 0 in eax ok, -1 == failed ( invalid socket, or
|
|
; could not queue IP packet )
|
|
;
|
|
;***************************************************************************
|
|
socket_write:
|
|
Index2RealAddr ebx
|
|
|
|
mov eax, 0xFFFFFFFF
|
|
; If the socket is invalid, return with an error code
|
|
cmp [ebx], dword SOCK_EMPTY
|
|
je sw_exit
|
|
|
|
|
|
mov eax, EMPTY_QUEUE
|
|
call dequeue
|
|
cmp ax, NO_BUFFER
|
|
je sw_exit
|
|
|
|
; Save the queue entry number
|
|
push eax
|
|
|
|
; save the pointers to the data buffer & size
|
|
push edx
|
|
push ecx
|
|
|
|
; convert buffer pointer eax to the absolute address
|
|
mov ecx, IPBUFFSIZE
|
|
mul ecx
|
|
add eax, IPbuffs
|
|
|
|
mov edx, eax
|
|
|
|
; So, ebx holds the socket ptr, edx holds the IPbuffer ptr
|
|
|
|
; Fill in the IP header ( some data is in the socket descriptor)
|
|
mov eax, [ebx + 8]
|
|
mov [edx + 12], eax ; source IP
|
|
mov eax, [ebx + 16]
|
|
mov [edx + 16], eax ; Destination IP
|
|
|
|
mov al, 0x45
|
|
mov [edx], al ; Version, IHL
|
|
xor al, al
|
|
mov [edx + 1], al ; Type of service
|
|
|
|
pop eax ; Get the UDP data length
|
|
push eax
|
|
|
|
add eax, 20 + 8 ; add IP header and UDP header lengths
|
|
mov [edx + 2], ah
|
|
mov [edx + 3], al
|
|
xor al, al
|
|
mov [edx + 4], al
|
|
mov [edx + 5], al
|
|
mov al, 0x40
|
|
mov [edx + 6], al
|
|
xor al, al
|
|
mov [edx + 7], al
|
|
mov al, 0x20
|
|
mov [edx + 8], al
|
|
mov al, 17
|
|
mov [edx + 9], al
|
|
|
|
; Checksum left unfilled
|
|
xor ax, ax
|
|
mov [edx + 10], ax
|
|
|
|
; Fill in the UDP header ( some data is in the socket descriptor)
|
|
mov ax, [ebx + 12]
|
|
mov [edx + 20], ax
|
|
|
|
mov ax, [ebx + 20]
|
|
mov [edx + 20 + 2], ax
|
|
|
|
pop eax
|
|
push eax
|
|
|
|
add eax, 8
|
|
mov [edx + 20 + 4], ah
|
|
mov [edx + 20 + 5], al
|
|
|
|
; Checksum left unfilled
|
|
xor ax, ax
|
|
mov [edx + 20 + 6], ax
|
|
|
|
pop ecx ; count of bytes to send
|
|
mov ebx, ecx ; need the length later
|
|
pop eax ; get callers ptr to data to send
|
|
|
|
; Get the address of the callers data
|
|
mov edi, [TASK_BASE]
|
|
add edi, TASKDATA.mem_start
|
|
add eax, [edi]
|
|
mov esi, eax
|
|
|
|
mov edi, edx
|
|
add edi, 28
|
|
cld
|
|
rep movsb ; copy the data across
|
|
|
|
; we have edx as IPbuffer ptr.
|
|
; Fill in the UDP checksum
|
|
; First, fill in pseudoheader
|
|
mov eax, [edx + 12]
|
|
mov [pseudoHeader], eax
|
|
mov eax, [edx + 16]
|
|
mov [pseudoHeader+4], eax
|
|
mov ax, 0x1100 ; 0 + protocol
|
|
mov [pseudoHeader+8], ax
|
|
add ebx, 8
|
|
mov eax, ebx
|
|
mov [pseudoHeader+10], ah
|
|
mov [pseudoHeader+11], al
|
|
|
|
mov eax, pseudoHeader
|
|
mov [checkAdd1], eax
|
|
mov [checkSize1], word 12
|
|
mov eax, edx
|
|
add eax, 20
|
|
mov [checkAdd2], eax
|
|
mov eax, ebx
|
|
mov [checkSize2], ax ; was eax!! mjh 8/7/02
|
|
|
|
call checksum
|
|
|
|
; store it in the UDP checksum ( in the correct order! )
|
|
mov ax, [checkResult]
|
|
|
|
; If the UDP checksum computes to 0, we must make it 0xffff
|
|
; (0 is reserved for 'not used')
|
|
cmp ax, 0
|
|
jne sw_001
|
|
mov ax, 0xffff
|
|
|
|
sw_001:
|
|
mov [edx + 20 + 6], ah
|
|
mov [edx + 20 + 7], al
|
|
|
|
; Fill in the IP header checksum
|
|
GET_IHL ecx,edx ; get IP-Header length
|
|
stdcall checksum_jb,edx,ecx ; buf_ptr, buf_size
|
|
|
|
mov [edx + 10], ah
|
|
mov [edx + 11], al
|
|
|
|
; Check destination IP address.
|
|
; If it is the local host IP, route it back to IP_RX
|
|
|
|
pop ebx
|
|
mov eax, NET1OUT_QUEUE
|
|
|
|
mov ecx, [ edx + 16]
|
|
mov edx, [stack_ip]
|
|
cmp edx, ecx
|
|
jne sw_notlocal
|
|
mov eax, IPIN_QUEUE
|
|
|
|
sw_notlocal:
|
|
; Send it.
|
|
call queue
|
|
|
|
xor eax, eax
|
|
|
|
sw_exit:
|
|
ret
|
|
|
|
|
|
|
|
;***************************************************************************
|
|
; Function
|
|
; socket_write_tcp
|
|
;
|
|
; Description
|
|
; socket in ebx
|
|
; # of bytes to write in ecx
|
|
; pointer to data in edx
|
|
; returns 0 in eax ok, -1 == failed ( invalid socket, or
|
|
; could not queue IP packet )
|
|
;
|
|
;***************************************************************************
|
|
socket_write_tcp:
|
|
Index2RealAddr ebx
|
|
|
|
mov [sktAddr], ebx
|
|
|
|
mov eax, 0xFFFFFFFF
|
|
; If the socket is invalid, return with an error code
|
|
cmp [ebx], dword SOCK_EMPTY
|
|
je swt_exit
|
|
|
|
; If the sockets window timer is nonzero, do not queue packet
|
|
; TODO - done
|
|
cmp [ebx + SOCKET.wndsizeTimer], dword 0
|
|
jne swt_exit
|
|
|
|
mov eax, EMPTY_QUEUE
|
|
call dequeue
|
|
cmp ax, NO_BUFFER
|
|
je swt_exit
|
|
|
|
push eax
|
|
|
|
mov bl, 0x10 ; ACK
|
|
|
|
; Get the address of the callers data
|
|
mov edi, [TASK_BASE]
|
|
add edi, TASKDATA.mem_start
|
|
add edx, [edi]
|
|
mov esi, edx
|
|
|
|
pop eax
|
|
push eax
|
|
|
|
push ecx
|
|
call buildTCPPacket
|
|
pop ecx
|
|
|
|
; Check destination IP address.
|
|
; If it is the local host IP, route it back to IP_RX
|
|
|
|
pop ebx
|
|
push ecx
|
|
mov eax, NET1OUT_QUEUE
|
|
|
|
mov edx, [stack_ip]
|
|
mov ecx, [sktAddr ]
|
|
mov ecx, [ecx + 16]
|
|
cmp edx, ecx
|
|
jne swt_notlocal
|
|
mov eax, IPIN_QUEUE
|
|
|
|
swt_notlocal:
|
|
pop ecx
|
|
|
|
push ebx ; save ipbuffer number
|
|
|
|
call queue
|
|
|
|
mov esi, [sktAddr]
|
|
|
|
; increament SND.NXT in socket
|
|
; Amount to increment by is in ecx
|
|
add esi, 48
|
|
call add_inet_esi
|
|
|
|
pop ebx
|
|
|
|
; Copy the IP buffer to a resend queue
|
|
; If there isn't one, dont worry about it for now
|
|
mov esi, resendQ
|
|
mov ecx, 0
|
|
|
|
swt003:
|
|
cmp ecx, NUMRESENDENTRIES
|
|
je swt001 ; None found
|
|
cmp [esi], byte 0xFF
|
|
je swt002 ; found one
|
|
inc ecx
|
|
add esi, 4
|
|
jmp swt003
|
|
|
|
swt002:
|
|
push ebx
|
|
|
|
; OK, we have a buffer descriptor ptr in esi.
|
|
; resend entry # in ecx
|
|
; Populate it
|
|
; socket #
|
|
; retries count
|
|
; retry time
|
|
; fill IP buffer associated with this descriptor
|
|
|
|
mov eax, [sktAddr]
|
|
sub eax, sockets
|
|
shr eax, 12 ; get skt #
|
|
mov [esi], al
|
|
mov [esi + 1], byte TCP_RETRIES
|
|
mov [esi + 2], word TCP_TIMEOUT
|
|
|
|
inc ecx
|
|
; Now get buffer location, and copy buffer across. argh! more copying,,
|
|
mov edi, resendBuffer - IPBUFFSIZE
|
|
swt002a:
|
|
add edi, IPBUFFSIZE
|
|
loop swt002a
|
|
|
|
; we have dest buffer location in edi
|
|
pop eax
|
|
; convert source buffer pointer eax to the absolute address
|
|
mov ecx, IPBUFFSIZE
|
|
mul ecx
|
|
add eax, IPbuffs
|
|
mov esi, eax
|
|
|
|
; do copy
|
|
mov ecx, IPBUFFSIZE
|
|
cld
|
|
rep movsb
|
|
|
|
swt001:
|
|
xor eax, eax
|
|
|
|
swt_exit:
|
|
ret
|
|
|