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226 lines
6.4 KiB
226 lines
6.4 KiB
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/*
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*
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Copyright (c) Eicon Networks, 2002.
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*
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This source file is supplied for the use with
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Eicon Networks range of DIVA Server Adapters.
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*
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Eicon File Revision : 2.1
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*
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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*
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY OF ANY KIND WHATSOEVER INCLUDING ANY
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implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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See the GNU General Public License for more details.
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*
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*
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*/
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#include "platform.h"
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#if defined(DIVA_ISTREAM) /* { */
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#include "pc.h"
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#include "pr_pc.h"
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#include "di_defs.h"
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#include "divasync.h"
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#include "di.h"
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#if !defined USE_EXTENDED_DEBUGS
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#include "dimaint.h"
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#else
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#define dprintf
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#endif
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#include "dfifo.h"
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int diva_istream_write (void* context,
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int Id,
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void* data,
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int length,
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int final,
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byte usr1,
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byte usr2);
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int diva_istream_read (void* context,
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int Id,
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void* data,
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int max_length,
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int* final,
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byte* usr1,
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byte* usr2);
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/* -------------------------------------------------------------------
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Does provide iStream interface to the client
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------------------------------------------------------------------- */
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void diva_xdi_provide_istream_info (ADAPTER* a,
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diva_xdi_stream_interface_t* pi) {
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pi->provided_service = 0;
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}
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/* ------------------------------------------------------------------
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Does write the data from caller's buffer to the card's
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stream interface.
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If synchronous service was requested, then function
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does return amount of data written to stream.
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'final' does indicate that pice of data to be written is
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final part of frame (necessary only by structured datatransfer)
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return 0 if zero lengh packet was written
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return -1 if stream is full
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------------------------------------------------------------------ */
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int diva_istream_write (void* context,
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int Id,
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void* data,
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int length,
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int final,
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byte usr1,
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byte usr2) {
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ADAPTER* a = (ADAPTER*)context;
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int written = 0, to_write = -1;
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char tmp[4];
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byte* data_ptr = (byte*)data;
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for (;;) {
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a->ram_in_dw (a,
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#ifdef PLATFORM_GT_32BIT
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ULongToPtr(a->tx_stream[Id] + a->tx_pos[Id]),
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#else
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(void*)(a->tx_stream[Id] + a->tx_pos[Id]),
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#endif
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(dword*)&tmp[0],
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1);
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if (tmp[0] & DIVA_DFIFO_READY) { /* No free blocks more */
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if (to_write < 0)
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return (-1); /* was not able to write */
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break; /* only part of message was written */
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}
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to_write = min(length, DIVA_DFIFO_DATA_SZ);
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if (to_write) {
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a->ram_out_buffer (a,
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#ifdef PLATFORM_GT_32BIT
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ULongToPtr(a->tx_stream[Id] + a->tx_pos[Id]+4),
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#else
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(void*)(a->tx_stream[Id] + a->tx_pos[Id] + 4),
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#endif
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data_ptr,
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(word)to_write);
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length -= to_write;
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written += to_write;
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data_ptr += to_write;
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}
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tmp[1] = (char)to_write;
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tmp[0] = (tmp[0] & DIVA_DFIFO_WRAP) |
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DIVA_DFIFO_READY |
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((!length && final) ? DIVA_DFIFO_LAST : 0);
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if (tmp[0] & DIVA_DFIFO_LAST) {
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tmp[2] = usr1;
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tmp[3] = usr2;
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}
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a->ram_out_dw (a,
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#ifdef PLATFORM_GT_32BIT
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ULongToPtr(a->tx_stream[Id] + a->tx_pos[Id]),
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#else
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(void*)(a->tx_stream[Id] + a->tx_pos[Id]),
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#endif
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(dword*)&tmp[0],
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1);
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if (tmp[0] & DIVA_DFIFO_WRAP) {
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a->tx_pos[Id] = 0;
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} else {
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a->tx_pos[Id] += DIVA_DFIFO_STEP;
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}
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if (!length) {
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break;
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}
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}
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return (written);
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}
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/* -------------------------------------------------------------------
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In case of SYNCRONOUS service:
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Does write data from stream in caller's buffer.
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Does return amount of data written to buffer
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Final flag is set on return if last part of structured frame
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was received
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return 0 if zero packet was received
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return -1 if stream is empty
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return -2 if read buffer does not profide sufficient space
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to accommodate entire segment
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max_length should be at least 68 bytes
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------------------------------------------------------------------- */
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int diva_istream_read (void* context,
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int Id,
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void* data,
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int max_length,
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int* final,
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byte* usr1,
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byte* usr2) {
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ADAPTER* a = (ADAPTER*)context;
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int read = 0, to_read = -1;
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char tmp[4];
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byte* data_ptr = (byte*)data;
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*final = 0;
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for (;;) {
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a->ram_in_dw (a,
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#ifdef PLATFORM_GT_32BIT
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ULongToPtr(a->rx_stream[Id] + a->rx_pos[Id]),
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#else
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(void*)(a->rx_stream[Id] + a->rx_pos[Id]),
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#endif
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(dword*)&tmp[0],
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1);
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if (tmp[1] > max_length) {
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if (to_read < 0)
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return (-2); /* was not able to read */
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break;
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}
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if (!(tmp[0] & DIVA_DFIFO_READY)) {
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if (to_read < 0)
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return (-1); /* was not able to read */
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break;
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}
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to_read = min(max_length, (int)tmp[1]);
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if (to_read) {
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a->ram_in_buffer(a,
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#ifdef PLATFORM_GT_32BIT
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ULongToPtr(a->rx_stream[Id] + a->rx_pos[Id] + 4),
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#else
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(void*)(a->rx_stream[Id] + a->rx_pos[Id] + 4),
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#endif
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data_ptr,
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(word)to_read);
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max_length -= to_read;
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read += to_read;
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data_ptr += to_read;
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}
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if (tmp[0] & DIVA_DFIFO_LAST) {
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*final = 1;
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}
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tmp[0] &= DIVA_DFIFO_WRAP;
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a->ram_out_dw(a,
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#ifdef PLATFORM_GT_32BIT
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ULongToPtr(a->rx_stream[Id] + a->rx_pos[Id]),
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#else
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(void*)(a->rx_stream[Id] + a->rx_pos[Id]),
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#endif
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(dword*)&tmp[0],
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1);
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if (tmp[0] & DIVA_DFIFO_WRAP) {
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a->rx_pos[Id] = 0;
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} else {
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a->rx_pos[Id] += DIVA_DFIFO_STEP;
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}
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if (*final) {
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if (usr1)
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*usr1 = tmp[2];
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if (usr2)
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*usr2 = tmp[3];
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break;
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}
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}
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return (read);
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}
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/* ---------------------------------------------------------------------
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Does check if one of streams had caused interrupt and does
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wake up corresponding application
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--------------------------------------------------------------------- */
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void pr_stream (ADAPTER * a) {
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}
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#endif /* } */
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