#include <drv_types.h>
 #include <rtw_debug.h>
 #include <hal_data.h>
+#include <linux/kernel.h>
 
 u8 PHY_GetTxPowerByRateBase(struct adapter *Adapter, u8 Band, u8 RfPath,
                            u8 TxNum, enum RATE_SECTION RateSection)
                        for (txNum = RF_1TX; txNum < RF_MAX_TX_NUM; ++txNum) {
                                /*  CCK */
                                base = PHY_GetTxPowerByRate(padapter, band, path, txNum, MGN_11M);
-                               for (i = 0; i < sizeof(cckRates); ++i) {
+                               for (i = 0; i < ARRAY_SIZE(cckRates); ++i) {
                                        value = PHY_GetTxPowerByRate(padapter, band, path, txNum, cckRates[i]);
                                        PHY_SetTxPowerByRate(padapter, band, path, txNum, cckRates[i], value - base);
                                }
        if (RateSection == CCK) {
                u8 cckRates[]   = {MGN_1M, MGN_2M, MGN_5_5M, MGN_11M};
                if (pHalData->CurrentBandType == BAND_ON_2_4G)
-                       PHY_SetTxPowerIndexByRateArray(padapter, RFPath, pHalData->CurrentChannelBW, Channel,
-                                                                         cckRates, sizeof(cckRates)/sizeof(u8));
+                       PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
+                                                    pHalData->CurrentChannelBW,
+                                                    Channel, cckRates,
+                                                    ARRAY_SIZE(cckRates));
 
        } else if (RateSection == OFDM) {
                u8 ofdmRates[]  = {MGN_6M, MGN_9M, MGN_12M, MGN_18M, MGN_24M, MGN_36M, MGN_48M, MGN_54M};
-               PHY_SetTxPowerIndexByRateArray(padapter, RFPath, pHalData->CurrentChannelBW, Channel,
-                                                                        ofdmRates, sizeof(ofdmRates)/sizeof(u8));
+               PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
+                                              pHalData->CurrentChannelBW,
+                                              Channel, ofdmRates,
+                                              ARRAY_SIZE(ofdmRates));
 
        } else if (RateSection == HT_MCS0_MCS7) {
                u8 htRates1T[]  = {MGN_MCS0, MGN_MCS1, MGN_MCS2, MGN_MCS3, MGN_MCS4, MGN_MCS5, MGN_MCS6, MGN_MCS7};
-               PHY_SetTxPowerIndexByRateArray(padapter, RFPath, pHalData->CurrentChannelBW, Channel,
-                                                                        htRates1T, sizeof(htRates1T)/sizeof(u8));
+               PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
+                                              pHalData->CurrentChannelBW,
+                                              Channel, htRates1T,
+                                              ARRAY_SIZE(htRates1T));
 
        } else if (RateSection == HT_MCS8_MCS15) {
                u8 htRates2T[]  = {MGN_MCS8, MGN_MCS9, MGN_MCS10, MGN_MCS11, MGN_MCS12, MGN_MCS13, MGN_MCS14, MGN_MCS15};
-               PHY_SetTxPowerIndexByRateArray(padapter, RFPath, pHalData->CurrentChannelBW, Channel,
-                                                                        htRates2T, sizeof(htRates2T)/sizeof(u8));
+               PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
+                                              pHalData->CurrentChannelBW,
+                                              Channel, htRates2T,
+                                              ARRAY_SIZE(htRates2T));
 
        } else if (RateSection == HT_MCS16_MCS23) {
                u8 htRates3T[]  = {MGN_MCS16, MGN_MCS17, MGN_MCS18, MGN_MCS19, MGN_MCS20, MGN_MCS21, MGN_MCS22, MGN_MCS23};
-               PHY_SetTxPowerIndexByRateArray(padapter, RFPath, pHalData->CurrentChannelBW, Channel,
-                                                                        htRates3T, sizeof(htRates3T)/sizeof(u8));
+               PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
+                                              pHalData->CurrentChannelBW,
+                                              Channel, htRates3T,
+                                              ARRAY_SIZE(htRates3T));
 
        } else if (RateSection == HT_MCS24_MCS31) {
                u8 htRates4T[]  = {MGN_MCS24, MGN_MCS25, MGN_MCS26, MGN_MCS27, MGN_MCS28, MGN_MCS29, MGN_MCS30, MGN_MCS31};
-               PHY_SetTxPowerIndexByRateArray(padapter, RFPath, pHalData->CurrentChannelBW, Channel,
-                                                                        htRates4T, sizeof(htRates4T)/sizeof(u8));
+               PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
+                                              pHalData->CurrentChannelBW,
+                                              Channel, htRates4T,
+                                              ARRAY_SIZE(htRates4T));
 
        } else if (RateSection == VHT_1SSMCS0_1SSMCS9) {
                u8 vhtRates1T[] = {MGN_VHT1SS_MCS0, MGN_VHT1SS_MCS1, MGN_VHT1SS_MCS2, MGN_VHT1SS_MCS3, MGN_VHT1SS_MCS4,
                                MGN_VHT1SS_MCS5, MGN_VHT1SS_MCS6, MGN_VHT1SS_MCS7, MGN_VHT1SS_MCS8, MGN_VHT1SS_MCS9};
-               PHY_SetTxPowerIndexByRateArray(padapter, RFPath, pHalData->CurrentChannelBW, Channel,
-                                                                       vhtRates1T, sizeof(vhtRates1T)/sizeof(u8));
+               PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
+                                              pHalData->CurrentChannelBW,
+                                              Channel, vhtRates1T,
+                                              ARRAY_SIZE(vhtRates1T));
 
        } else if (RateSection == VHT_2SSMCS0_2SSMCS9) {
                u8 vhtRates2T[] = {MGN_VHT2SS_MCS0, MGN_VHT2SS_MCS1, MGN_VHT2SS_MCS2, MGN_VHT2SS_MCS3, MGN_VHT2SS_MCS4,
                                MGN_VHT2SS_MCS5, MGN_VHT2SS_MCS6, MGN_VHT2SS_MCS7, MGN_VHT2SS_MCS8, MGN_VHT2SS_MCS9};
 
-               PHY_SetTxPowerIndexByRateArray(padapter, RFPath, pHalData->CurrentChannelBW, Channel,
-                                                                 vhtRates2T, sizeof(vhtRates2T)/sizeof(u8));
+               PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
+                                              pHalData->CurrentChannelBW,
+                                              Channel, vhtRates2T,
+                                              ARRAY_SIZE(vhtRates2T));
        } else if (RateSection == VHT_3SSMCS0_3SSMCS9) {
                u8 vhtRates3T[] = {MGN_VHT3SS_MCS0, MGN_VHT3SS_MCS1, MGN_VHT3SS_MCS2, MGN_VHT3SS_MCS3, MGN_VHT3SS_MCS4,
                                MGN_VHT3SS_MCS5, MGN_VHT3SS_MCS6, MGN_VHT3SS_MCS7, MGN_VHT3SS_MCS8, MGN_VHT3SS_MCS9};
 
-               PHY_SetTxPowerIndexByRateArray(padapter, RFPath, pHalData->CurrentChannelBW, Channel,
-                                                                 vhtRates3T, sizeof(vhtRates3T)/sizeof(u8));
+               PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
+                                              pHalData->CurrentChannelBW,
+                                              Channel, vhtRates3T,
+                                              ARRAY_SIZE(vhtRates3T));
        } else if (RateSection == VHT_4SSMCS0_4SSMCS9) {
                u8 vhtRates4T[] = {MGN_VHT4SS_MCS0, MGN_VHT4SS_MCS1, MGN_VHT4SS_MCS2, MGN_VHT4SS_MCS3, MGN_VHT4SS_MCS4,
                                MGN_VHT4SS_MCS5, MGN_VHT4SS_MCS6, MGN_VHT4SS_MCS7, MGN_VHT4SS_MCS8, MGN_VHT4SS_MCS9};
 
-               PHY_SetTxPowerIndexByRateArray(padapter, RFPath, pHalData->CurrentChannelBW, Channel,
-                                                                 vhtRates4T, sizeof(vhtRates4T)/sizeof(u8));
+               PHY_SetTxPowerIndexByRateArray(padapter, RFPath,
+                                              pHalData->CurrentChannelBW,
+                                              Channel, vhtRates4T,
+                                              ARRAY_SIZE(vhtRates4T));
        } else
                DBG_871X("Invalid RateSection %d in %s", RateSection, __func__);
 }
        } else {
                bIn24G = false;
 
-               for (i = 0; i < sizeof(channel5G)/sizeof(u8); ++i) {
+               for (i = 0; i < ARRAY_SIZE(channel5G); ++i) {
                        if (channel5G[i] == Channel) {
                                *ChannelIdx = i;
                                return bIn24G;
                } else if (BandWidth == CHANNEL_WIDTH_80) { /*  BW80-1S, BW80-2S */
                        /*  <20121220, Kordan> Get the index of array "Index5G_BW80_Base". */
                        u8 channel5G_80M[CHANNEL_MAX_NUMBER_5G_80M] = {42, 58, 106, 122, 138, 155, 171};
-                       for (i = 0; i < sizeof(channel5G_80M)/sizeof(u8); ++i)
+                       for (i = 0; i < ARRAY_SIZE(channel5G_80M); ++i)
                                if (channel5G_80M[i] == Channel)
                                        chnlIdx = i;
 
        if (Band == BAND_ON_2_4G)
                channelIndex = Channel - 1;
        else if (Band == BAND_ON_5G) {
-               for (i = 0; i < sizeof(channel5G)/sizeof(u8); ++i) {
+               for (i = 0; i < ARRAY_SIZE(channel5G); ++i) {
                        if (channel5G[i] == Channel)
                                channelIndex = i;
                }