mirror of
git://projects.qi-hardware.com/openwrt-xburst.git
synced 2024-11-09 15:39:23 +02:00
439 lines
14 KiB
C
439 lines
14 KiB
C
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/******************************************************************************/
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/* */
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/* Broadcom BCM5700 Linux Network Driver, Copyright (c) 2000 - 2004 Broadcom */
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/* Corporation. */
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/* All rights reserved. */
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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, located in the file LICENSE. */
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/* */
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/* History: */
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/******************************************************************************/
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#ifdef INCLUDE_TBI_SUPPORT
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#include "mm.h"
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/******************************************************************************/
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/* Description: */
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/* */
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/* Return: */
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/******************************************************************************/
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void
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MM_AnTxConfig(
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PAN_STATE_INFO pAnInfo)
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{
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PLM_DEVICE_BLOCK pDevice;
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pDevice = (PLM_DEVICE_BLOCK) pAnInfo->pContext;
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REG_WR(pDevice, MacCtrl.TxAutoNeg, (LM_UINT32) pAnInfo->TxConfig.AsUSHORT);
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pDevice->MacMode |= MAC_MODE_SEND_CONFIGS;
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REG_WR(pDevice, MacCtrl.Mode, pDevice->MacMode);
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}
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/******************************************************************************/
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/* Description: */
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/* */
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/* Return: */
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/******************************************************************************/
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void
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MM_AnTxIdle(
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PAN_STATE_INFO pAnInfo)
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{
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PLM_DEVICE_BLOCK pDevice;
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pDevice = (PLM_DEVICE_BLOCK) pAnInfo->pContext;
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pDevice->MacMode &= ~MAC_MODE_SEND_CONFIGS;
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REG_WR(pDevice, MacCtrl.Mode, pDevice->MacMode);
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}
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/******************************************************************************/
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/* Description: */
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/* */
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/* Return: */
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/******************************************************************************/
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char
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MM_AnRxConfig(
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PAN_STATE_INFO pAnInfo,
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unsigned short *pRxConfig)
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{
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PLM_DEVICE_BLOCK pDevice;
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LM_UINT32 Value32;
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char Retcode;
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Retcode = AN_FALSE;
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pDevice = (PLM_DEVICE_BLOCK) pAnInfo->pContext;
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Value32 = REG_RD(pDevice, MacCtrl.Status);
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if(Value32 & MAC_STATUS_RECEIVING_CFG)
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{
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Value32 = REG_RD(pDevice, MacCtrl.RxAutoNeg);
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*pRxConfig = (unsigned short) Value32;
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Retcode = AN_TRUE;
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}
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return Retcode;
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}
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/******************************************************************************/
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/* Description: */
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/* */
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/* Return: */
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/******************************************************************************/
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void
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AutonegInit(
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PAN_STATE_INFO pAnInfo)
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{
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unsigned long j;
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for(j = 0; j < sizeof(AN_STATE_INFO); j++)
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{
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((unsigned char *) pAnInfo)[j] = 0;
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}
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/* Initialize the default advertisement register. */
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pAnInfo->mr_adv_full_duplex = 1;
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pAnInfo->mr_adv_sym_pause = 1;
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pAnInfo->mr_adv_asym_pause = 1;
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pAnInfo->mr_an_enable = 1;
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}
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/******************************************************************************/
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/* Description: */
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/* */
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/* Return: */
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/******************************************************************************/
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AUTONEG_STATUS
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Autoneg8023z(
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PAN_STATE_INFO pAnInfo)
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{
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unsigned short RxConfig;
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unsigned long Delta_us;
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AUTONEG_STATUS AnRet;
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/* Get the current time. */
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if(pAnInfo->State == AN_STATE_UNKNOWN)
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{
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pAnInfo->RxConfig.AsUSHORT = 0;
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pAnInfo->CurrentTime_us = 0;
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pAnInfo->LinkTime_us = 0;
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pAnInfo->AbilityMatchCfg = 0;
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pAnInfo->AbilityMatchCnt = 0;
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pAnInfo->AbilityMatch = AN_FALSE;
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pAnInfo->IdleMatch = AN_FALSE;
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pAnInfo->AckMatch = AN_FALSE;
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}
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/* Increment the timer tick. This function is called every microsecon. */
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// pAnInfo->CurrentTime_us++;
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/* Set the AbilityMatch, IdleMatch, and AckMatch flags if their */
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/* corresponding conditions are satisfied. */
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if(MM_AnRxConfig(pAnInfo, &RxConfig))
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{
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if(RxConfig != pAnInfo->AbilityMatchCfg)
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{
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pAnInfo->AbilityMatchCfg = RxConfig;
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pAnInfo->AbilityMatch = AN_FALSE;
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pAnInfo->AbilityMatchCnt = 0;
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}
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else
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{
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pAnInfo->AbilityMatchCnt++;
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if(pAnInfo->AbilityMatchCnt > 1)
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{
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pAnInfo->AbilityMatch = AN_TRUE;
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pAnInfo->AbilityMatchCfg = RxConfig;
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}
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}
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if(RxConfig & AN_CONFIG_ACK)
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{
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pAnInfo->AckMatch = AN_TRUE;
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}
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else
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{
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pAnInfo->AckMatch = AN_FALSE;
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}
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pAnInfo->IdleMatch = AN_FALSE;
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}
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else
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{
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pAnInfo->IdleMatch = AN_TRUE;
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pAnInfo->AbilityMatchCfg = 0;
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pAnInfo->AbilityMatchCnt = 0;
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pAnInfo->AbilityMatch = AN_FALSE;
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pAnInfo->AckMatch = AN_FALSE;
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RxConfig = 0;
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}
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/* Save the last Config. */
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pAnInfo->RxConfig.AsUSHORT = RxConfig;
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/* Default return code. */
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AnRet = AUTONEG_STATUS_OK;
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/* Autoneg state machine as defined in 802.3z section 37.3.1.5. */
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switch(pAnInfo->State)
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{
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case AN_STATE_UNKNOWN:
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if(pAnInfo->mr_an_enable || pAnInfo->mr_restart_an)
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{
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pAnInfo->CurrentTime_us = 0;
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pAnInfo->State = AN_STATE_AN_ENABLE;
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}
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/* Fall through.*/
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case AN_STATE_AN_ENABLE:
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pAnInfo->mr_an_complete = AN_FALSE;
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pAnInfo->mr_page_rx = AN_FALSE;
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if(pAnInfo->mr_an_enable)
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{
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pAnInfo->LinkTime_us = 0;
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pAnInfo->AbilityMatchCfg = 0;
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pAnInfo->AbilityMatchCnt = 0;
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pAnInfo->AbilityMatch = AN_FALSE;
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pAnInfo->IdleMatch = AN_FALSE;
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pAnInfo->AckMatch = AN_FALSE;
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pAnInfo->State = AN_STATE_AN_RESTART_INIT;
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}
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else
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{
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pAnInfo->State = AN_STATE_DISABLE_LINK_OK;
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}
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break;
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case AN_STATE_AN_RESTART_INIT:
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pAnInfo->LinkTime_us = pAnInfo->CurrentTime_us;
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pAnInfo->mr_np_loaded = AN_FALSE;
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pAnInfo->TxConfig.AsUSHORT = 0;
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MM_AnTxConfig(pAnInfo);
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AnRet = AUTONEG_STATUS_TIMER_ENABLED;
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pAnInfo->State = AN_STATE_AN_RESTART;
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/* Fall through.*/
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case AN_STATE_AN_RESTART:
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/* Get the current time and compute the delta with the saved */
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/* link timer. */
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Delta_us = pAnInfo->CurrentTime_us - pAnInfo->LinkTime_us;
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if(Delta_us > AN_LINK_TIMER_INTERVAL_US)
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{
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pAnInfo->State = AN_STATE_ABILITY_DETECT_INIT;
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}
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else
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{
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AnRet = AUTONEG_STATUS_TIMER_ENABLED;
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}
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break;
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case AN_STATE_DISABLE_LINK_OK:
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AnRet = AUTONEG_STATUS_DONE;
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break;
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case AN_STATE_ABILITY_DETECT_INIT:
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/* Note: in the state diagram, this variable is set to */
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/* mr_adv_ability<12>. Is this right?. */
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pAnInfo->mr_toggle_tx = AN_FALSE;
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/* Send the config as advertised in the advertisement register. */
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pAnInfo->TxConfig.AsUSHORT = 0;
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pAnInfo->TxConfig.D5_FD = pAnInfo->mr_adv_full_duplex;
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pAnInfo->TxConfig.D6_HD = pAnInfo->mr_adv_half_duplex;
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pAnInfo->TxConfig.D7_PS1 = pAnInfo->mr_adv_sym_pause;
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pAnInfo->TxConfig.D8_PS2 = pAnInfo->mr_adv_asym_pause;
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pAnInfo->TxConfig.D12_RF1 = pAnInfo->mr_adv_remote_fault1;
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pAnInfo->TxConfig.D13_RF2 = pAnInfo->mr_adv_remote_fault2;
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pAnInfo->TxConfig.D15_NP = pAnInfo->mr_adv_next_page;
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MM_AnTxConfig(pAnInfo);
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pAnInfo->State = AN_STATE_ABILITY_DETECT;
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break;
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case AN_STATE_ABILITY_DETECT:
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if(pAnInfo->AbilityMatch == AN_TRUE &&
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pAnInfo->RxConfig.AsUSHORT != 0)
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{
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pAnInfo->State = AN_STATE_ACK_DETECT_INIT;
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}
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break;
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case AN_STATE_ACK_DETECT_INIT:
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pAnInfo->TxConfig.D14_ACK = 1;
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MM_AnTxConfig(pAnInfo);
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pAnInfo->State = AN_STATE_ACK_DETECT;
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/* Fall through. */
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case AN_STATE_ACK_DETECT:
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if(pAnInfo->AckMatch == AN_TRUE)
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{
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if((pAnInfo->RxConfig.AsUSHORT & ~AN_CONFIG_ACK) ==
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(pAnInfo->AbilityMatchCfg & ~AN_CONFIG_ACK))
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{
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pAnInfo->State = AN_STATE_COMPLETE_ACK_INIT;
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}
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else
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{
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pAnInfo->State = AN_STATE_AN_ENABLE;
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}
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}
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else if(pAnInfo->AbilityMatch == AN_TRUE &&
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pAnInfo->RxConfig.AsUSHORT == 0)
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{
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pAnInfo->State = AN_STATE_AN_ENABLE;
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}
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break;
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case AN_STATE_COMPLETE_ACK_INIT:
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/* Make sure invalid bits are not set. */
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if(pAnInfo->RxConfig.bits.D0 || pAnInfo->RxConfig.bits.D1 ||
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pAnInfo->RxConfig.bits.D2 || pAnInfo->RxConfig.bits.D3 ||
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pAnInfo->RxConfig.bits.D4 || pAnInfo->RxConfig.bits.D9 ||
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pAnInfo->RxConfig.bits.D10 || pAnInfo->RxConfig.bits.D11)
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{
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AnRet = AUTONEG_STATUS_FAILED;
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break;
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}
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/* Set up the link partner advertisement register. */
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pAnInfo->mr_lp_adv_full_duplex = pAnInfo->RxConfig.D5_FD;
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pAnInfo->mr_lp_adv_half_duplex = pAnInfo->RxConfig.D6_HD;
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pAnInfo->mr_lp_adv_sym_pause = pAnInfo->RxConfig.D7_PS1;
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pAnInfo->mr_lp_adv_asym_pause = pAnInfo->RxConfig.D8_PS2;
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pAnInfo->mr_lp_adv_remote_fault1 = pAnInfo->RxConfig.D12_RF1;
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pAnInfo->mr_lp_adv_remote_fault2 = pAnInfo->RxConfig.D13_RF2;
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pAnInfo->mr_lp_adv_next_page = pAnInfo->RxConfig.D15_NP;
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pAnInfo->LinkTime_us = pAnInfo->CurrentTime_us;
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pAnInfo->mr_toggle_tx = !pAnInfo->mr_toggle_tx;
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pAnInfo->mr_toggle_rx = pAnInfo->RxConfig.bits.D11;
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pAnInfo->mr_np_rx = pAnInfo->RxConfig.D15_NP;
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pAnInfo->mr_page_rx = AN_TRUE;
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pAnInfo->State = AN_STATE_COMPLETE_ACK;
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AnRet = AUTONEG_STATUS_TIMER_ENABLED;
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break;
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case AN_STATE_COMPLETE_ACK:
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if(pAnInfo->AbilityMatch == AN_TRUE &&
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pAnInfo->RxConfig.AsUSHORT == 0)
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{
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pAnInfo->State = AN_STATE_AN_ENABLE;
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break;
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}
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Delta_us = pAnInfo->CurrentTime_us - pAnInfo->LinkTime_us;
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if(Delta_us > AN_LINK_TIMER_INTERVAL_US)
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{
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if(pAnInfo->mr_adv_next_page == 0 ||
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pAnInfo->mr_lp_adv_next_page == 0)
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{
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pAnInfo->State = AN_STATE_IDLE_DETECT_INIT;
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}
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else
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{
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if(pAnInfo->TxConfig.bits.D15 == 0 &&
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pAnInfo->mr_np_rx == 0)
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{
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pAnInfo->State = AN_STATE_IDLE_DETECT_INIT;
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}
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else
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{
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AnRet = AUTONEG_STATUS_FAILED;
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}
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}
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}
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break;
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case AN_STATE_IDLE_DETECT_INIT:
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pAnInfo->LinkTime_us = pAnInfo->CurrentTime_us;
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MM_AnTxIdle(pAnInfo);
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pAnInfo->State = AN_STATE_IDLE_DETECT;
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AnRet = AUTONEG_STATUS_TIMER_ENABLED;
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break;
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case AN_STATE_IDLE_DETECT:
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if(pAnInfo->AbilityMatch == AN_TRUE &&
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pAnInfo->RxConfig.AsUSHORT == 0)
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{
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pAnInfo->State = AN_STATE_AN_ENABLE;
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break;
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}
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Delta_us = pAnInfo->CurrentTime_us - pAnInfo->LinkTime_us;
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if(Delta_us > AN_LINK_TIMER_INTERVAL_US)
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{
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// if(pAnInfo->IdleMatch == AN_TRUE)
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// {
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pAnInfo->State = AN_STATE_LINK_OK;
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// }
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// else
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// {
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// AnRet = AUTONEG_STATUS_FAILED;
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// break;
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// }
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}
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break;
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case AN_STATE_LINK_OK:
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pAnInfo->mr_an_complete = AN_TRUE;
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pAnInfo->mr_link_ok = AN_TRUE;
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AnRet = AUTONEG_STATUS_DONE;
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break;
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case AN_STATE_NEXT_PAGE_WAIT_INIT:
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break;
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case AN_STATE_NEXT_PAGE_WAIT:
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break;
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default:
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AnRet = AUTONEG_STATUS_FAILED;
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break;
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}
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return AnRet;
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}
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#endif /* INCLUDE_TBI_SUPPORT */
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