mirror of
https://github.com/lwfinger/rtl8188eu.git
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327817d32a
Signed-off-by: Larry Finger <Larry.Finger@lwfinger.net>
328 lines
8 KiB
C
328 lines
8 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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#include "odm_precomp.h"
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#ifdef CONFIG_IOL_IOREG_CFG
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#include <rtw_iol.h>
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#endif
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#if (RTL8188E_SUPPORT == 1)
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static bool
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CheckCondition(
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const u4Byte Condition,
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const u4Byte Hex
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)
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{
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u4Byte _board = (Hex & 0x000000FF);
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u4Byte _interface = (Hex & 0x0000FF00) >> 8;
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u4Byte _platform = (Hex & 0x00FF0000) >> 16;
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u4Byte cond = Condition;
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if ( Condition == 0xCDCDCDCD )
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return true;
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cond = Condition & 0x000000FF;
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if ( (_board == cond) && cond != 0x00)
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return false;
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cond = Condition & 0x0000FF00;
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cond = cond >> 8;
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if ( (_interface & cond) == 0 && cond != 0x07)
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return false;
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cond = Condition & 0x00FF0000;
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cond = cond >> 16;
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if ( (_platform & cond) == 0 && cond != 0x0F)
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return false;
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return true;
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}
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/******************************************************************************
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* MAC_REG.TXT
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******************************************************************************/
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static u4Byte Array_MAC_REG_8188E[] = {
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0x026, 0x00000041,
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0x027, 0x00000035,
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0x428, 0x0000000A,
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0x429, 0x00000010,
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0x430, 0x00000000,
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0x431, 0x00000001,
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0x432, 0x00000002,
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0x433, 0x00000004,
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0x434, 0x00000005,
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0x435, 0x00000006,
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0x436, 0x00000007,
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0x437, 0x00000008,
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0x438, 0x00000000,
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0x439, 0x00000000,
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0x43A, 0x00000001,
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0x43B, 0x00000002,
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0x43C, 0x00000004,
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0x43D, 0x00000005,
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0x43E, 0x00000006,
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0x43F, 0x00000007,
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0x440, 0x0000005D,
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0x441, 0x00000001,
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0x442, 0x00000000,
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0x444, 0x00000015,
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0x445, 0x000000F0,
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0x446, 0x0000000F,
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0x447, 0x00000000,
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0x458, 0x00000041,
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0x459, 0x000000A8,
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0x45A, 0x00000072,
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0x45B, 0x000000B9,
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0x460, 0x00000066,
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0x461, 0x00000066,
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0x480, 0x00000008,
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0x4C8, 0x000000FF,
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0x4C9, 0x00000008,
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0x4CC, 0x000000FF,
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0x4CD, 0x000000FF,
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0x4CE, 0x00000001,
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0x4D3, 0x00000001,
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0x500, 0x00000026,
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0x501, 0x000000A2,
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0x502, 0x0000002F,
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0x503, 0x00000000,
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0x504, 0x00000028,
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0x505, 0x000000A3,
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0x506, 0x0000005E,
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0x507, 0x00000000,
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0x508, 0x0000002B,
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0x509, 0x000000A4,
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0x50A, 0x0000005E,
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0x50B, 0x00000000,
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0x50C, 0x0000004F,
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0x50D, 0x000000A4,
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0x50E, 0x00000000,
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0x50F, 0x00000000,
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0x512, 0x0000001C,
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0x514, 0x0000000A,
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0x516, 0x0000000A,
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0x525, 0x0000004F,
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0x550, 0x00000010,
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0x551, 0x00000010,
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0x559, 0x00000002,
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0x55D, 0x000000FF,
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0x605, 0x00000030,
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0x608, 0x0000000E,
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0x609, 0x0000002A,
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0x620, 0x000000FF,
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0x621, 0x000000FF,
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0x622, 0x000000FF,
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0x623, 0x000000FF,
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0x624, 0x000000FF,
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0x625, 0x000000FF,
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0x626, 0x000000FF,
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0x627, 0x000000FF,
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0x652, 0x00000020,
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0x63C, 0x0000000A,
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0x63D, 0x0000000A,
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0x63E, 0x0000000E,
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0x63F, 0x0000000E,
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0x640, 0x00000040,
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0x66E, 0x00000005,
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0x700, 0x00000021,
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0x701, 0x00000043,
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0x702, 0x00000065,
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0x703, 0x00000087,
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0x708, 0x00000021,
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0x709, 0x00000043,
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0x70A, 0x00000065,
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0x70B, 0x00000087,
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};
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HAL_STATUS
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ODM_ReadAndConfig_MAC_REG_8188E(
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PDM_ODM_T pDM_Odm
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)
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{
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#define READ_NEXT_PAIR(v1, v2, i) do { i += 2; v1 = Array[i]; v2 = Array[i+1]; } while (0)
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u4Byte hex = 0;
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u4Byte i = 0;
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u2Byte count = 0;
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pu4Byte ptr_array = NULL;
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u1Byte platform = pDM_Odm->SupportPlatform;
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u1Byte interfaceValue = pDM_Odm->SupportInterface;
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u1Byte board = pDM_Odm->BoardType;
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u4Byte ArrayLen = sizeof(Array_MAC_REG_8188E)/sizeof(u4Byte);
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pu4Byte Array = Array_MAC_REG_8188E;
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bool biol = false;
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#ifdef CONFIG_IOL_IOREG_CFG
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PADAPTER Adapter = pDM_Odm->Adapter;
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struct xmit_frame *pxmit_frame;
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u8 bndy_cnt = 1;
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#ifdef CONFIG_IOL_IOREG_CFG_DBG
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struct cmd_cmp cmpdata[ArrayLen];
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u4Byte cmpdata_idx=0;
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#endif
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#endif //CONFIG_IOL_IOREG_CFG
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HAL_STATUS rst =HAL_STATUS_SUCCESS;
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hex += board;
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hex += interfaceValue << 8;
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hex += platform << 16;
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hex += 0xFF000000;
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#ifdef CONFIG_IOL_IOREG_CFG
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biol = rtw_IOL_applied(Adapter);
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if (biol){
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if ((pxmit_frame=rtw_IOL_accquire_xmit_frame(Adapter)) == NULL)
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{
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printk("rtw_IOL_accquire_xmit_frame failed\n");
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return HAL_STATUS_FAILURE;
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}
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}
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#endif //CONFIG_IOL_IOREG_CFG
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for (i = 0; i < ArrayLen; i += 2 )
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{
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u4Byte v1 = Array[i];
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u4Byte v2 = Array[i+1];
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// This (offset, data) pair meets the condition.
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if ( v1 < 0xCDCDCDCD )
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{
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#ifdef CONFIG_IOL_IOREG_CFG
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if (biol){
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if (rtw_IOL_cmd_boundary_handle(pxmit_frame))
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bndy_cnt++;
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rtw_IOL_append_WB_cmd(pxmit_frame,(u2Byte)v1, (u1Byte)v2,0xFF);
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#ifdef CONFIG_IOL_IOREG_CFG_DBG
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cmpdata[cmpdata_idx].addr = v1;
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cmpdata[cmpdata_idx].value= v2;
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cmpdata_idx++;
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#endif
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}
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else
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#endif //endif CONFIG_IOL_IOREG_CFG
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{
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odm_ConfigMAC_8188E(pDM_Odm, v1, (u1Byte)v2);
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}
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continue;
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}
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else
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{ // This line is the start line of branch.
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if ( !CheckCondition(Array[i], hex) )
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{ // Discard the following (offset, data) pairs.
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READ_NEXT_PAIR(v1, v2, i);
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while ( v2 != 0xDEAD &&
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v2 != 0xCDEF &&
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v2 != 0xCDCD && i < ArrayLen -2)
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{
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READ_NEXT_PAIR(v1, v2, i);
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}
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i -= 2; // prevent from for-loop += 2
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}
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else // Configure matched pairs and skip to end of if-else.
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{
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READ_NEXT_PAIR(v1, v2, i);
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while ( v2 != 0xDEAD &&
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v2 != 0xCDEF &&
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v2 != 0xCDCD && i < ArrayLen -2)
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{
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#ifdef CONFIG_IOL_IOREG_CFG
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if (biol){
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if (rtw_IOL_cmd_boundary_handle(pxmit_frame))
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bndy_cnt++;
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rtw_IOL_append_WB_cmd(pxmit_frame,(u2Byte)v1, (u1Byte)v2,0xFF);
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#ifdef CONFIG_IOL_IOREG_CFG_DBG
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cmpdata[cmpdata_idx].addr = v1;
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cmpdata[cmpdata_idx].value= v2;
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cmpdata_idx++;
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#endif
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}
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else
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#endif //#ifdef CONFIG_IOL_IOREG_CFG
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{
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odm_ConfigMAC_8188E(pDM_Odm, v1, (u1Byte)v2);
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}
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READ_NEXT_PAIR(v1, v2, i);
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}
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while (v2 != 0xDEAD && i < ArrayLen -2)
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{
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READ_NEXT_PAIR(v1, v2, i);
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}
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}
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}
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}
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#ifdef CONFIG_IOL_IOREG_CFG
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if (biol){
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//printk("==> %s, pktlen = %d,bndy_cnt = %d\n",__func__,pxmit_frame->attrib.pktlen+4+32,bndy_cnt);
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if (rtw_IOL_exec_cmds_sync(pDM_Odm->Adapter, pxmit_frame, 1000, bndy_cnt))
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{
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#ifdef CONFIG_IOL_IOREG_CFG_DBG
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printk("~~~ IOL Config MAC Success !!!\n");
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//compare writed data
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{
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u4Byte idx;
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u1Byte cdata;
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// HAL_STATUS_FAILURE;
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printk(" MAC data compare => array_len:%d\n",cmpdata_idx);
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for (idx=0;idx< cmpdata_idx;idx++)
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{
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cdata = ODM_Read1Byte(pDM_Odm, cmpdata[idx].addr);
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if (cdata != cmpdata[idx].value){
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printk("### MAC data compared failed !! addr:0x%04x, data:(0x%02x : 0x%02x) ###\n",
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cmpdata[idx].addr,cmpdata[idx].value,cdata);
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//rst = HAL_STATUS_FAILURE;
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}
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}
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//dump data from TX packet buffer
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//if (rst == HAL_STATUS_FAILURE)
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{
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rtw_IOL_cmd_tx_pkt_buf_dump(pDM_Odm->Adapter,pxmit_frame->attrib.pktlen+32);
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}
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}
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#endif //CONFIG_IOL_IOREG_CFG_DBG
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}
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else{
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printk("~~~ MAC IOL_exec_cmds Failed !!!\n");
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#ifdef CONFIG_IOL_IOREG_CFG_DBG
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{
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//dump data from TX packet buffer
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rtw_IOL_cmd_tx_pkt_buf_dump(pDM_Odm->Adapter,pxmit_frame->attrib.pktlen+32);
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}
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#endif //CONFIG_IOL_IOREG_CFG_DBG
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rst = HAL_STATUS_FAILURE;
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}
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}
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#endif //#ifdef CONFIG_IOL_IOREG_CFG
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return rst;
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}
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#endif // end of HWIMG_SUPPORT
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