return 0xFF;
}
-//EXPORT_SYMBOL(efuse_read_1byte);
+/* EXPORT_SYMBOL(efuse_read_1byte); */
void efuse_write_1byte(struct ieee80211_hw *hw, u16 address, u8 value)
{
rtlpriv->cfg->maps[EFUSE_HWSET_MAX_SIZE]);
}
-//EXPORT_SYMBOL(rtl_efuse_shadow_map_update);
+/* EXPORT_SYMBOL(rtl_efuse_shadow_map_update); */
void efuse_force_write_vendor_Id(struct ieee80211_hw *hw)
{
}
return bresult;
}
-//EXPORT_SYMBOL(efuse_one_byte_read);
+/* EXPORT_SYMBOL(efuse_one_byte_read); */
static int efuse_one_byte_write(struct ieee80211_hw *hw, u16 addr, u8 data)
{
{
rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_ACCESS], 0x69);
- // 1.2V Power: From VDDON with Power Cut(0x0000h[15]), default valid
+ /* 1.2V Power: From VDDON with Power Cut(0x0000h[15]), default valid */
tmpV16 = rtl_read_word(rtlpriv,
rtlpriv->cfg->maps[SYS_ISO_CTRL]);
printk("SYS_ISO_CTRL=%04x.\n",tmpV16);
if( ! (tmpV16 & PWC_EV12V ) ){
tmpV16 |= PWC_EV12V ;
- //PlatformEFIOWrite2Byte(pAdapter,REG_SYS_ISO_CTRL,tmpV16);
+ /* PlatformEFIOWrite2Byte(pAdapter,REG_SYS_ISO_CTRL,tmpV16); */
}
- // Reset: 0x0000h[28], default valid
+ /* Reset: 0x0000h[28], default valid */
tmpV16 = rtl_read_word(rtlpriv, rtlpriv->cfg->maps[SYS_FUNC_EN]);
printk("SYS_FUNC_EN=%04x.\n",tmpV16);
if( !(tmpV16 & FEN_ELDR) ){
rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[SYS_FUNC_EN], tmpV16);
}
- // Clock: Gated(0x0008h[5]) 8M(0x0008h[1]) clock from ANA, default valid
+ /* Clock: Gated(0x0008h[5]) 8M(0x0008h[1]) clock from ANA, default valid */
tmpV16 = rtl_read_word(rtlpriv, rtlpriv->cfg->maps[SYS_CLK] );
printk("SYS_CLK=%04x.\n",tmpV16);
if( (!(tmpV16 & LOADER_CLK_EN) ) ||(!(tmpV16 & ANA8M) ) )
if(bwrite == true)
{
- // Enable LDO 2.5V before read/write action
+ /* Enable LDO 2.5V before read/write action */
tempval = rtl_read_word(rtlpriv, rtlpriv->cfg->maps[EFUSE_TEST] + 3);
printk("EFUSE_TEST=%04x.\n",tmpV16);
tempval &= ~(BIT(3) | BIT(4) |BIT(5) | BIT(6));
{
rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_ACCESS], 0x00);
if(bwrite == true){
- // Disable LDO 2.5V after read/write action
+ /* Disable LDO 2.5V after read/write action */
tempval = rtl_read_word(rtlpriv, rtlpriv->cfg->maps[EFUSE_TEST] + 3);
rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_TEST] + 3, (tempval & 0x7F));
}