mirror of
https://github.com/lwfinger/rtl8188eu.git
synced 2024-11-10 15:39:38 +00:00
76c8b6a9a1
Signed-off-by: Larry Finger <Larry.Finger@lwfinger.net>
283 lines
5.2 KiB
C
283 lines
5.2 KiB
C
/******************************************************************************
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*
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* Copyright(c) 2007 - 2011 Realtek Corporation. All rights reserved.
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of version 2 of the GNU General Public License as
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* published by the Free Software Foundation.
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*
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* This program is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* You should have received a copy of the GNU General Public License along with
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* this program; if not, write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
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*
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*
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******************************************************************************/
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/* */
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/* include files */
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/* */
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#include "odm_precomp.h"
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/* */
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/* ODM IO Relative API. */
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/* */
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u1Byte ODM_Read1Byte(PDM_ODM_T pDM_Odm, u4Byte RegAddr)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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return rtw_read8(Adapter,RegAddr);
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}
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u2Byte ODM_Read2Byte(PDM_ODM_T pDM_Odm, u4Byte RegAddr)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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return rtw_read16(Adapter,RegAddr);
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}
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u4Byte ODM_Read4Byte(PDM_ODM_T pDM_Odm, u4Byte RegAddr)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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return rtw_read32(Adapter,RegAddr);
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}
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void ODM_Write1Byte(PDM_ODM_T pDM_Odm, u4Byte RegAddr, u1Byte Data)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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rtw_write8(Adapter,RegAddr, Data);
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}
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void ODM_Write2Byte(PDM_ODM_T pDM_Odm, u4Byte RegAddr, u2Byte Data)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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rtw_write16(Adapter,RegAddr, Data);
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}
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void ODM_Write4Byte(PDM_ODM_T pDM_Odm, u4Byte RegAddr, u4Byte Data)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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rtw_write32(Adapter,RegAddr, Data);
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}
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void ODM_SetMACReg(PDM_ODM_T pDM_Odm, u4Byte RegAddr, u4Byte BitMask, u4Byte Data)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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PHY_SetBBReg(Adapter, RegAddr, BitMask, Data);
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}
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u4Byte
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ODM_GetMACReg(
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PDM_ODM_T pDM_Odm,
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u4Byte RegAddr,
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u4Byte BitMask
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)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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return PHY_QueryBBReg(Adapter, RegAddr, BitMask);
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}
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void
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ODM_SetBBReg(
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PDM_ODM_T pDM_Odm,
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u4Byte RegAddr,
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u4Byte BitMask,
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u4Byte Data
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)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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PHY_SetBBReg(Adapter, RegAddr, BitMask, Data);
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}
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u4Byte
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ODM_GetBBReg(
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PDM_ODM_T pDM_Odm,
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u4Byte RegAddr,
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u4Byte BitMask
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)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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return PHY_QueryBBReg(Adapter, RegAddr, BitMask);
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}
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void
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ODM_SetRFReg(
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PDM_ODM_T pDM_Odm,
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ODM_RF_RADIO_PATH_E eRFPath,
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u4Byte RegAddr,
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u4Byte BitMask,
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u4Byte Data
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)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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PHY_SetRFReg(Adapter, (enum _RF_RADIO_PATH)eRFPath, RegAddr, BitMask, Data);
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}
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u4Byte
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ODM_GetRFReg(
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PDM_ODM_T pDM_Odm,
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ODM_RF_RADIO_PATH_E eRFPath,
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u4Byte RegAddr,
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u4Byte BitMask
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)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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return PHY_QueryRFReg(Adapter, (enum _RF_RADIO_PATH)eRFPath, RegAddr, BitMask);
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}
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/* */
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/* ODM Memory relative API. */
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/* */
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void
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ODM_AllocateMemory(
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PDM_ODM_T pDM_Odm,
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void * *pPtr,
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u4Byte length
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)
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{
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*pPtr = rtw_zvmalloc(length);
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}
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/* length could be ignored, used to detect memory leakage. */
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void
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ODM_FreeMemory(
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PDM_ODM_T pDM_Odm,
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void * pPtr,
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u4Byte length
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)
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{
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rtw_vmfree(pPtr, length);
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}
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s4Byte ODM_CompareMemory(
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PDM_ODM_T pDM_Odm,
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void * pBuf1,
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void * pBuf2,
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u4Byte length
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)
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{
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return _rtw_memcmp(pBuf1,pBuf2,length);
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}
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/* */
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/* ODM MISC relative API. */
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/* */
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void
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ODM_AcquireSpinLock(
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PDM_ODM_T pDM_Odm,
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RT_SPINLOCK_TYPE type
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)
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{
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}
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void
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ODM_ReleaseSpinLock(
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PDM_ODM_T pDM_Odm,
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RT_SPINLOCK_TYPE type
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)
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{
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}
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/* */
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/* Work item relative API. FOr MP driver only~! */
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/* */
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void ODM_InitializeWorkItem(PDM_ODM_T pDM_Odm, void *pRtWorkItem,
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RT_WORKITEM_CALL_BACK RtWorkItemCallback,
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void *pContext, const char*szID)
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{
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}
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void ODM_StartWorkItem(void *pRtWorkItem)
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{
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}
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void ODM_StopWorkItem(void *pRtWorkItem)
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{
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}
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void ODM_FreeWorkItem(void *pRtWorkItem)
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{
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}
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void ODM_ScheduleWorkItem(void *pRtWorkItem)
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{
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}
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void ODM_IsWorkItemScheduled(void *pRtWorkItem)
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{
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}
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/* */
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/* ODM Timer relative API. */
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/* */
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void ODM_StallExecution(u4Byte usDelay)
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{
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rtw_udelay_os(usDelay);
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}
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void ODM_delay_ms(u4Byte ms)
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{
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rtw_mdelay_os(ms);
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}
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void ODM_delay_us(u4Byte us)
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{
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rtw_udelay_os(us);
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}
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void ODM_sleep_ms(u4Byte ms)
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{
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rtw_msleep_os(ms);
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}
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void ODM_sleep_us(u4Byte us)
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{
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rtw_usleep_os(us);
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}
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void ODM_SetTimer(PDM_ODM_T pDM_Odm, PRT_TIMER pTimer, u4Byte msDelay)
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{
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_set_timer(pTimer,msDelay ); /* ms */
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}
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void ODM_InitializeTimer(PDM_ODM_T pDM_Odm, PRT_TIMER pTimer,
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RT_TIMER_CALL_BACK CallBackFunc, void *pContext,
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const char *szID)
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{
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PADAPTER Adapter = pDM_Odm->Adapter;
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_init_timer(pTimer,Adapter->pnetdev,CallBackFunc,pDM_Odm);
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}
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void ODM_CancelTimer(PDM_ODM_T pDM_Odm, PRT_TIMER pTimer)
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{
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_cancel_timer_ex(pTimer);
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}
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void ODM_ReleaseTimer(PDM_ODM_T pDM_Odm, PRT_TIMER pTimer)
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{
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}
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/* */
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/* ODM FW relative API. */
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/* */
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u4Byte
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ODM_FillH2CCmd(
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pu1Byte pH2CBuffer,
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u4Byte H2CBufferLen,
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u4Byte CmdNum,
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pu4Byte pElementID,
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pu4Byte pCmdLen,
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pu1Byte* pCmbBuffer,
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pu1Byte CmdStartSeq
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)
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{
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return true;
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}
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