393 lines
11 KiB
C
393 lines
11 KiB
C
/******************************************************************************
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*
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* Copyright(c) 2007 - 2017 Realtek Corporation.
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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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* The full GNU General Public License is included in this distribution in the
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* file called LICENSE.
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*
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* Contact Information:
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* wlanfae <wlanfae@realtek.com>
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* Realtek Corporation, No. 2, Innovation Road II, Hsinchu Science Park,
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* Hsinchu 300, Taiwan.
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*
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* Larry Finger <Larry.Finger@lwfinger.net>
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*
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*****************************************************************************/
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#ifndef __ODM_DBG_H__
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#define __ODM_DBG_H__
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/*#define DEBUG_VERSION "1.1"*/ /*2015.07.29 YuChen*/
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/*#define DEBUG_VERSION "1.2"*/ /*2015.08.28 Dino*/
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/*#define DEBUG_VERSION "1.3"*/ /*2016.04.28 YuChen*/
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#define DEBUG_VERSION "1.4" /*2017.03.13 Dino*/
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/* -----------------------------------------------------------------------------
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* Define the debug levels
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*
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* 1. DBG_TRACE and DBG_LOUD are used for normal cases.
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* So that, they can help SW engineer to develope or trace states changed
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* and also help HW enginner to trace every operation to and from HW,
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* e.g IO, Tx, Rx.
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*
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* 2. DBG_WARNNING and DBG_SERIOUS are used for unusual or error cases,
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* which help us to debug SW or HW.
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*
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* -----------------------------------------------------------------------------
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*
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* Never used in a call to ODM_RT_TRACE()!
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* */
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#define ODM_DBG_OFF 1
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/*
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* Fatal bug.
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* For example, Tx/Rx/IO locked up, OS hangs, memory access violation,
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* resource allocation failed, unexpected HW behavior, HW BUG and so on.
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* */
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#define ODM_DBG_SERIOUS 2
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/*
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* Abnormal, rare, or unexpeted cases.
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* For example, IRP/Packet/OID canceled, device suprisely unremoved and so on.
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* */
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#define ODM_DBG_WARNING 3
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/*
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* Normal case with useful information about current SW or HW state.
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* For example, Tx/Rx descriptor to fill, Tx/Rx descriptor completed status,
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* SW protocol state change, dynamic mechanism state change and so on.
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* */
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#define ODM_DBG_LOUD 4
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/*
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* Normal case with detail execution flow or information.
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* */
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#define ODM_DBG_TRACE 5
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/*FW DBG MSG*/
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#define RATE_DECISION 1
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#define INIT_RA_TABLE 2
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#define RATE_UP 4
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#define RATE_DOWN 8
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#define TRY_DONE 16
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#define RA_H2C 32
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#define F_RATE_AP_RPT 64
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#define DBC_FW_CLM 9
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/* -----------------------------------------------------------------------------
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* Define the tracing components
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*
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* -----------------------------------------------------------------------------
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*BB FW Functions*/
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#define PHYDM_FW_COMP_RA BIT(0)
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#define PHYDM_FW_COMP_MU BIT(1)
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#define PHYDM_FW_COMP_PATH_DIV BIT(2)
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#define PHYDM_FW_COMP_PT BIT(3)
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/*------------------------Export Marco Definition---------------------------*/
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#define config_phydm_read_txagc_check(data) (data != INVALID_TXAGC_DATA)
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#if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
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extern VOID DCMD_Printf(const char *pMsg);
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#define pr_debug DbgPrint
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#define dcmd_printf DCMD_Printf
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#define dcmd_scanf DCMD_Scanf
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#define RT_PRINTK pr_debug
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#define PRINT_MAX_SIZE 512
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#elif (DM_ODM_SUPPORT_TYPE == ODM_CE) && defined(DM_ODM_CE_MAC80211)
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#elif (DM_ODM_SUPPORT_TYPE == ODM_CE)
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#undef pr_debug
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#define pr_debug printk
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#define RT_PRINTK(fmt, args...) pr_debug(fmt, ## args)
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#define RT_DISP(dbgtype, dbgflag, printstr)
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#define RT_TRACE(adapter, comp, drv_level, fmt, args...) \
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RTW_INFO(fmt, ## args)
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#else
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#define pr_debug panic_printk
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/*#define RT_PRINTK(fmt, args...) pr_debug("%s(): " fmt, __FUNCTION__, ## args);*/
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#define RT_PRINTK(fmt, args...) pr_debug(fmt, ## args)
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#endif
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#ifndef ASSERT
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#define ASSERT(expr)
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#endif
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#if DBG
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#if (DM_ODM_SUPPORT_TYPE == ODM_AP)
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#define PHYDM_DBG(dm, comp, fmt, args...) \
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do { \
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if ((comp) & (dm->debug_components)) { \
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pr_debug("[PHYDM] "); \
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RT_PRINTK(fmt, ## args); \
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} \
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} while (0)
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#define PHYDM_DBG_F(dm, comp, fmt, args...) \
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do { \
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if ((comp) & dm->debug_components) { \
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RT_PRINTK(fmt, ## args); \
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} \
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} while (0)
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#define PHYDM_PRINT_ADDR(dm, comp, title_str, addr) \
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do { \
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if ((comp) & dm->debug_components) { \
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int __i; \
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u8 *__ptr = (u8 *)addr; \
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pr_debug("[PHYDM] "); \
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pr_debug(title_str); \
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pr_debug(" "); \
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for (__i = 0; __i < 6; __i++) \
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pr_debug("%02X%s", __ptr[__i], (__i == 5) ? "" : "-");\
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pr_debug("\n"); \
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} \
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} while (0)
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#elif (DM_ODM_SUPPORT_TYPE == ODM_WIN)
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static __inline void PHYDM_DBG(PDM_ODM_T dm, int comp, char *fmt, ...)
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{
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RT_STATUS rt_status;
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va_list args;
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char buf[PRINT_MAX_SIZE] = {0};
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if ((comp & dm->debug_components) == 0)
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return;
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if (fmt == NULL)
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return;
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va_start(args, fmt);
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rt_status = (RT_STATUS)RtlStringCbVPrintfA(buf, PRINT_MAX_SIZE, fmt, args);
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va_end(args);
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if (rt_status != RT_STATUS_SUCCESS) {
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DbgPrint("Failed (%d) to print message to buffer\n", rt_status);
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return;
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}
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DbgPrint("[PHYDM] %s", buf);
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}
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static __inline void PHYDM_DBG_F(PDM_ODM_T dm, int comp, char *fmt, ...)
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{
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RT_STATUS rt_status;
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va_list args;
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char buf[PRINT_MAX_SIZE] = {0};
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if ((comp & dm->debug_components) == 0)
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return;
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if (fmt == NULL)
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return;
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va_start(args, fmt);
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rt_status = (RT_STATUS)RtlStringCbVPrintfA(buf, PRINT_MAX_SIZE, fmt, args);
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va_end(args);
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if (rt_status != RT_STATUS_SUCCESS) {
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/*DbgPrint("DM Print Fail\n");*/
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return;
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}
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DbgPrint("%s", buf);
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}
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#define PHYDM_PRINT_ADDR(p_dm, comp, title_str, ptr) do {\
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if ((comp) & p_dm->debug_components) { \
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\
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int __i; \
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u8 *__ptr = (u8 *)ptr; \
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pr_debug("[PHYDM] "); \
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pr_debug(title_str); \
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pr_debug(" "); \
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for (__i = 0; __i < 6; __i++) \
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pr_debug("%02X%s", __ptr[__i], (__i == 5) ? "" : "-"); \
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pr_debug("\n"); \
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} \
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} while (0)
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#else
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#define PHYDM_DBG(dm, comp, fmt, args...) \
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do { \
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if ((comp) & (dm->debug_components)) { \
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RT_TRACE(((struct rtl_priv *)dm->adapter), COMP_PHYDM, \
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DBG_DMESG, "[PHYDM] " fmt, ##args); \
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} \
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} while (0)
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#define PHYDM_DBG_F(dm, comp, fmt, args...) \
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do { \
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if ((comp) & dm->debug_components) { \
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RT_TRACE(((struct rtl_priv *)dm->adapter), COMP_PHYDM, \
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DBG_DMESG, fmt, ##args); \
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} \
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} while (0)
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#define PHYDM_PRINT_ADDR(dm, comp, title_str, addr) \
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do { \
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if ((comp) & dm->debug_components) { \
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RT_TRACE(((struct rtl_priv *)dm->adapter), COMP_PHYDM, \
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DBG_DMESG, "[PHYDM] " title_str "%pM\n", \
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addr); \
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} \
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} while (0)
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#endif
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#define ODM_RT_TRACE(dm, comp, level, fmt)
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#else
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#if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
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static __inline void PHYDM_DBG(struct dm_struct *dm, int comp, char *fmt, ...)
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{}
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static __inline void PHYDM_DBG_F(struct dm_struct *dm, int comp, char *fmt, ...)
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{}
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#else
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#define PHYDM_DBG(dm, comp, fmt)
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#define PHYDM_DBG_F(dm, comp, fmt)
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#endif
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#define PHYDM_PRINT_ADDR(dm, comp, title_str, ptr)
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#define ODM_RT_TRACE(dm, comp, level, fmt)
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#endif
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#define BB_DBGPORT_PRIORITY_3 3 /*Debug function (the highest priority)*/
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#define BB_DBGPORT_PRIORITY_2 2 /*Check hang function & Strong function*/
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#define BB_DBGPORT_PRIORITY_1 1 /*Watch dog function*/
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#define BB_DBGPORT_RELEASE 0 /*Init value (the lowest priority)*/
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#if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
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#define PHYDM_DBGPRINT 0
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#define PHYDM_SSCANF(x, y, z) dcmd_scanf(x, y, z)
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#define PHYDM_VAST_INFO_SNPRINTF PDM_SNPF
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#if (PHYDM_DBGPRINT == 1)
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#define PDM_SNPF(msg) \
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do {\
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rsprintf msg;\
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pr_debug("%s", output);\
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} while (0)
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#else
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static __inline void PDM_SNPF(u32 out_len, u32 used, char * buff, int len, char *fmt, ...)
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{
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RT_STATUS rt_status;
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va_list args;
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char buf[PRINT_MAX_SIZE] = {0};
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if (fmt == NULL)
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return;
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va_start(args, fmt);
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rt_status = (RT_STATUS)RtlStringCbVPrintfA(buf, PRINT_MAX_SIZE, fmt, args);
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va_end(args);
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if (rt_status != RT_STATUS_SUCCESS) {
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/*DbgPrint("DM Print Fail\n");*/
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return;
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}
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DCMD_Printf(buf);
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}
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#endif /*#if (PHYDM_DBGPRINT == 1)*/
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#else /*(DM_ODM_SUPPORT_TYPE & (ODM_CE | ODM_AP))*/
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#if (DM_ODM_SUPPORT_TYPE == ODM_CE) || defined(__OSK__)
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#define PHYDM_DBGPRINT 0
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#else
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#define PHYDM_DBGPRINT 1
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#endif
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#define MAX_ARGC 20
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#define MAX_ARGV 16
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#define DCMD_DECIMAL "%d"
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#define DCMD_CHAR "%c"
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#define DCMD_HEX "%x"
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#define PHYDM_SSCANF(x, y, z) sscanf(x, y, z)
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#define PHYDM_VAST_INFO_SNPRINTF(out_len, used, buff, len, fmt, args...) \
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do { \
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RT_TRACE(((struct rtl_priv *)dm->adapter), COMP_PHYDM, \
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DBG_DMESG, fmt, ##args); \
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} while (0)
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#if (PHYDM_DBGPRINT == 1)
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#define PDM_SNPF(out_len, used, buff, len, fmt, args...) \
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do { \
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snprintf(buff, len, fmt, ##args); \
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pr_debug("%s", output); \
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} while (0)
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#else
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#define PDM_SNPF(out_len, used, buff, len, fmt, args...) \
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do { \
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if (out_len > used) \
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used += snprintf(buff, len, fmt, ##args); \
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} while (0)
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#endif
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#endif
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void phydm_init_debug_setting(struct dm_struct *dm);
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void phydm_bb_dbg_port_header_sel(void *dm_void, u32 header_idx);
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u8 phydm_set_bb_dbg_port(void *dm_void, u8 curr_dbg_priority, u32 debug_port);
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void phydm_release_bb_dbg_port(void *dm_void);
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u32 phydm_get_bb_dbg_port_value(void *dm_void);
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void phydm_reset_rx_rate_distribution(struct dm_struct *dm);
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void phydm_rx_rate_distribution(void *dm_void);
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void phydm_get_avg_phystatus_val(void *dm_void);
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void phydm_get_phy_statistic(void *dm_void);
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void phydm_basic_dbg_message(void *dm_void);
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void phydm_basic_profile(void *dm_void, u32 *_used, char *output,
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u32 *_out_len);
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#if (DM_ODM_SUPPORT_TYPE & (ODM_CE | ODM_AP))
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s32 phydm_cmd(struct dm_struct *dm, char *input, u32 in_len, u8 flag,
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char *output, u32 out_len);
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#endif
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void phydm_cmd_parser(struct dm_struct *dm, char input[][16], u32 input_num,
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u8 flag, char *output, u32 out_len);
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#if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
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void phydm_sbd_check(
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struct dm_struct *dm
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);
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void phydm_sbd_callback(
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struct phydm_timer_list *timer
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);
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void phydm_sbd_workitem_callback(
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void *context
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);
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#endif
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void phydm_fw_trace_en_h2c(void *dm_void, boolean enable,
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u32 fw_debug_component, u32 monitor_mode, u32 macid);
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void phydm_fw_trace_handler(void *dm_void, u8 *cmd_buf, u8 cmd_len);
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void phydm_fw_trace_handler_code(void *dm_void, u8 *buffer, u8 cmd_len);
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void phydm_fw_trace_handler_8051(void *dm_void, u8 *cmd_buf, u8 cmd_len);
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#endif /* __ODM_DBG_H__ */
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