/* Copyright Statement: * * This software/firmware and related documentation ("MediaTek Software") are * protected under relevant copyright laws. The information contained herein * is confidential and proprietary to MediaTek Inc. and/or its licensors. * Without the prior written permission of MediaTek inc. and/or its licensors, * any reproduction, modification, use or disclosure of MediaTek Software, * and information contained herein, in whole or in part, shall be strictly prohibited. */ /* MediaTek Inc. (C) 2017. All rights reserved. * * BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES * THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE") * RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER ON * AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES, * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT. * NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE * SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR * SUPPLIED WITH THE MEDIATEK SOFTWARE, AND RECEIVER AGREES TO LOOK ONLY TO SUCH * THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. RECEIVER EXPRESSLY ACKNOWLEDGES * THAT IT IS RECEIVER'S SOLE RESPONSIBILITY TO OBTAIN FROM ANY THIRD PARTY ALL PROPER LICENSES * CONTAINED IN MEDIATEK SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK * SOFTWARE RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR * STANDARD OR OPEN FORUM. RECEIVER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND * CUMULATIVE LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE, * AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE, * OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY RECEIVER TO * MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE. */ #include #include #include #include #include #include #include #include #include #include #include #include #include #define IOMEM(a) (a) #define __raw_readl(addr) DRV_Reg32(addr) extern unsigned long mt_secure_call(unsigned long, unsigned long, unsigned long, unsigned long); #define MTK_SIP_KERNEL_MCSI_NS_ACCESS 0x8200028B #define mcsi_reg_read(offset) \ mt_secure_call(MTK_SIP_KERNEL_MCSI_NS_ACCESS, 0, offset, 0) #define mcsi_reg_write(val, offset) \ mt_secure_call(MTK_SIP_KERNEL_MCSI_NS_ACCESS, 1, offset, val) #define reg_read(addr) __raw_readl(addr) #define reg_write(addr, val) mt_reg_sync_writel((val), ((void *)addr)) #define MCUSYS_SMC_WRITE(addr, val) reg_write(addr, val) #define MCSI_SMC_WRITE(addr, val) mcsi_reg_write(val, (addr##_PHYS & 0xFFFF)) #define MCSI_SMC_READ(addr) mcsi_reg_read(addr##_PHYS & 0xFFFF) #define INFRACFG_AO_DCM_DFS_MEM_CTRL_REG0_MASK ((0x1 << 0) | \ (0x1f << 1) | \ (0x1 << 6) | \ (0x1 << 7) | \ (0x1 << 8) | \ (0x1f << 16) | \ (0x1f << 21) | \ (0x1 << 26)) #define INFRACFG_AO_DCM_DFS_MEM_CTRL_REG0_ON ((0x0 << 0) | \ (0x0 << 1) | \ (0x0 << 6) | \ (0x1 << 7) | \ (0x1 << 8) | \ (0x0 << 16) | \ (0x1f << 21) | \ (0x0 << 26)) #define INFRACFG_AO_DCM_DFS_MEM_CTRL_REG0_OFF ((0x0 << 0) | \ (0x0 << 1) | \ (0x0 << 6) | \ (0x1 << 7) | \ (0x1 << 8) | \ (0x0 << 16) | \ (0x1f << 21) | \ (0x0 << 26)) bool dcm_infracfg_ao_dcm_dfs_mem_ctrl_is_on(void) { bool ret = true; ret &= ((reg_read(DFS_MEM_DCM_CTRL) & INFRACFG_AO_DCM_DFS_MEM_CTRL_REG0_MASK) == (unsigned int) INFRACFG_AO_DCM_DFS_MEM_CTRL_REG0_ON); return ret; } void dcm_infracfg_ao_dcm_dfs_mem_ctrl(int on) { if (on) { /* TINFO = "Turn ON DCM 'infracfg_ao_dcm_dfs_mem_ctrl'" */ reg_write(DFS_MEM_DCM_CTRL, (reg_read(DFS_MEM_DCM_CTRL) & ~INFRACFG_AO_DCM_DFS_MEM_CTRL_REG0_MASK) | INFRACFG_AO_DCM_DFS_MEM_CTRL_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'infracfg_ao_dcm_dfs_mem_ctrl'" */ reg_write(DFS_MEM_DCM_CTRL, (reg_read(DFS_MEM_DCM_CTRL) & ~INFRACFG_AO_DCM_DFS_MEM_CTRL_REG0_MASK) | INFRACFG_AO_DCM_DFS_MEM_CTRL_REG0_OFF); } } #define INFRACFG_AO_DCM_INFRA_BUS_REG0_MASK ((0x1 << 0) | \ (0x1 << 1) | \ (0x1 << 2) | \ (0x1 << 3) | \ (0x1 << 4) | \ (0x1f << 5) | \ (0x1f << 10) | \ (0x1 << 20) | \ (0x1 << 21) | \ (0x1 << 22) | \ (0x1 << 23) | \ (0x1 << 30)) #define INFRACFG_AO_DCM_INFRA_BUS_REG0_ON ((0x1 << 0) | \ (0x1 << 1) | \ (0x0 << 2) | \ (0x0 << 3) | \ (0x0 << 4) | \ (0x10 << 5) | \ (0x10 << 10) | \ (0x1 << 20) | \ (0x1 << 21) | \ (0x1 << 22) | \ (0x1 << 23) | \ (0x1 << 30)) #define INFRACFG_AO_DCM_INFRA_BUS_REG0_OFF ((0x0 << 0) | \ (0x0 << 1) | \ (0x0 << 2) | \ (0x0 << 3) | \ (0x0 << 4) | \ (0x10 << 5) | \ (0x10 << 10) | \ (0x0 << 20) | \ (0x1 << 21) | \ (0x1 << 22) | \ (0x0 << 23) | \ (0x0 << 30)) bool dcm_infracfg_ao_dcm_infra_bus_is_on(void) { bool ret = true; ret &= ((reg_read(INFRA_BUS_DCM_CTRL) & INFRACFG_AO_DCM_INFRA_BUS_REG0_MASK) == (unsigned int) INFRACFG_AO_DCM_INFRA_BUS_REG0_ON); return ret; } void dcm_infracfg_ao_dcm_infra_bus(int on) { if (on) { /* TINFO = "Turn ON DCM 'infracfg_ao_dcm_infra_bus'" */ reg_write(INFRA_BUS_DCM_CTRL, (reg_read(INFRA_BUS_DCM_CTRL) & ~INFRACFG_AO_DCM_INFRA_BUS_REG0_MASK) | INFRACFG_AO_DCM_INFRA_BUS_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'infracfg_ao_dcm_infra_bus'" */ reg_write(INFRA_BUS_DCM_CTRL, (reg_read(INFRA_BUS_DCM_CTRL) & ~INFRACFG_AO_DCM_INFRA_BUS_REG0_MASK) | INFRACFG_AO_DCM_INFRA_BUS_REG0_OFF); } } #define INFRACFG_AO_DCM_MEM_CTRL_REG0_MASK ((0x1 << 0) | \ (0x1f << 1) | \ (0x1 << 6) | \ (0x1 << 7) | \ (0x1 << 8) | \ (0x7f << 9) | \ (0x1f << 16) | \ (0x1f << 21) | \ (0x1 << 26) | \ (0x1 << 27) | \ (0x1 << 28) | \ (0x1 << 29) | \ (0x1 << 31)) #define INFRACFG_AO_DCM_MEM_CTRL_REG0_ON ((0x0 << 0) | \ (0x0 << 1) | \ (0x0 << 6) | \ (0x1 << 7) | \ (0x1 << 8) | \ (0x0 << 9) | \ (0x0 << 16) | \ (0x1f << 21) | \ (0x0 << 26) | \ (0x1 << 27) | \ (0x0 << 28) | \ (0x0 << 29) | \ (0x0 << 31)) #define INFRACFG_AO_DCM_MEM_CTRL_REG0_OFF ((0x0 << 0) | \ (0x0 << 1) | \ (0x0 << 6) | \ (0x1 << 7) | \ (0x1 << 8) | \ (0x0 << 9) | \ (0x0 << 16) | \ (0x1f << 21) | \ (0x0 << 26) | \ (0x1 << 27) | \ (0x0 << 28) | \ (0x0 << 29) | \ (0x0 << 31)) bool dcm_infracfg_ao_dcm_mem_ctrl_is_on(void) { bool ret = true; ret &= ((reg_read(MEM_DCM_CTRL) & INFRACFG_AO_DCM_MEM_CTRL_REG0_MASK) == (unsigned int) INFRACFG_AO_DCM_MEM_CTRL_REG0_ON); return ret; } void dcm_infracfg_ao_dcm_mem_ctrl(int on) { if (on) { /* TINFO = "Turn ON DCM 'infracfg_ao_dcm_mem_ctrl'" */ reg_write(MEM_DCM_CTRL, (reg_read(MEM_DCM_CTRL) & ~INFRACFG_AO_DCM_MEM_CTRL_REG0_MASK) | INFRACFG_AO_DCM_MEM_CTRL_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'infracfg_ao_dcm_mem_ctrl'" */ reg_write(MEM_DCM_CTRL, (reg_read(MEM_DCM_CTRL) & ~INFRACFG_AO_DCM_MEM_CTRL_REG0_MASK) | INFRACFG_AO_DCM_MEM_CTRL_REG0_OFF); } } #define INFRACFG_AO_DCM_PERI_BUS_REG0_MASK ((0x1 << 0) | \ (0x1 << 1) | \ (0x1 << 3) | \ (0x1 << 4) | \ (0x1f << 5) | \ (0x1f << 10) | \ (0x1f << 15) | \ (0x1 << 20) | \ (0x1 << 21) | \ (0x1 << 22) | \ (0x1f << 23) | \ (0x1 << 28) | \ (0x1 << 29) | \ (0x1 << 31)) #define INFRACFG_AO_DCM_PERI_BUS_REG0_ON ((0x1 << 0) | \ (0x1 << 1) | \ (0x0 << 3) | \ (0x0 << 4) | \ (0x1f << 5) | \ (0x0 << 10) | \ (0x1f << 15) | \ (0x1 << 20) | \ (0x1 << 21) | \ (0x1 << 22) | \ (0x0 << 23) | \ (0x1 << 28) | \ (0x1 << 29) | \ (0x1 << 31)) #define INFRACFG_AO_DCM_PERI_BUS_REG0_OFF ((0x0 << 0) | \ (0x0 << 1) | \ (0x0 << 3) | \ (0x0 << 4) | \ (0x1f << 5) | \ (0x1f << 10) | \ (0x0 << 15) | \ (0x0 << 20) | \ (0x0 << 21) | \ (0x0 << 22) | \ (0x0 << 23) | \ (0x0 << 28) | \ (0x0 << 29) | \ (0x0 << 31)) bool dcm_infracfg_ao_dcm_peri_bus_is_on(void) { bool ret = true; ret &= ((reg_read(PERI_BUS_DCM_CTRL) & INFRACFG_AO_DCM_PERI_BUS_REG0_MASK) == (unsigned int) INFRACFG_AO_DCM_PERI_BUS_REG0_ON); return ret; } void dcm_infracfg_ao_dcm_peri_bus(int on) { if (on) { /* TINFO = "Turn ON DCM 'infracfg_ao_dcm_peri_bus'" */ reg_write(PERI_BUS_DCM_CTRL, (reg_read(PERI_BUS_DCM_CTRL) & ~INFRACFG_AO_DCM_PERI_BUS_REG0_MASK) | INFRACFG_AO_DCM_PERI_BUS_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'infracfg_ao_dcm_peri_bus'" */ reg_write(PERI_BUS_DCM_CTRL, (reg_read(PERI_BUS_DCM_CTRL) & ~INFRACFG_AO_DCM_PERI_BUS_REG0_MASK) | INFRACFG_AO_DCM_PERI_BUS_REG0_OFF); } } #define INFRACFG_AO_DCM_TOP_P2P_RX_CK_REG0_MASK ((0xf << 0)) #define INFRACFG_AO_DCM_TOP_P2P_RX_CK_REG0_ON ((0x0 << 0)) #define INFRACFG_AO_DCM_TOP_P2P_RX_CK_REG0_OFF ((0xf << 0)) bool dcm_infracfg_ao_dcm_top_p2p_rx_ck_is_on(void) { bool ret = true; ret &= ((reg_read(P2P_RX_CLK_ON) & INFRACFG_AO_DCM_TOP_P2P_RX_CK_REG0_MASK) == (unsigned int) INFRACFG_AO_DCM_TOP_P2P_RX_CK_REG0_ON); return ret; } void dcm_infracfg_ao_dcm_top_p2p_rx_ck(int on) { if (on) { /* TINFO = "Turn ON DCM 'infracfg_ao_dcm_top_p2p_rx_ck'" */ reg_write(P2P_RX_CLK_ON, (reg_read(P2P_RX_CLK_ON) & ~INFRACFG_AO_DCM_TOP_P2P_RX_CK_REG0_MASK) | INFRACFG_AO_DCM_TOP_P2P_RX_CK_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'infracfg_ao_dcm_top_p2p_rx_ck'" */ reg_write(P2P_RX_CLK_ON, (reg_read(P2P_RX_CLK_ON) & ~INFRACFG_AO_DCM_TOP_P2P_RX_CK_REG0_MASK) | INFRACFG_AO_DCM_TOP_P2P_RX_CK_REG0_OFF); } } #define TOPCKGEN_AO_MCU_ARMPLL_CA7LL_REG0_MASK ((0x1 << 2)) #define TOPCKGEN_AO_MCU_ARMPLL_CA7LL_REG0_ON ((0x1 << 2)) #define TOPCKGEN_AO_MCU_ARMPLL_CA7LL_REG0_OFF ((0x0 << 2)) bool dcm_topckgen_ao_mcu_armpll_ca7ll_is_on(void) { bool ret = true; ret &= ((reg_read(INFRA_TOPCKGEN_DCMCTL) & TOPCKGEN_AO_MCU_ARMPLL_CA7LL_REG0_MASK) == (unsigned int) TOPCKGEN_AO_MCU_ARMPLL_CA7LL_REG0_ON); return ret; } void dcm_topckgen_ao_mcu_armpll_ca7ll(int on) { if (on) { /* TINFO = "Turn ON DCM 'topckgen_ao_mcu_armpll_ca7ll'" */ reg_write(INFRA_TOPCKGEN_DCMCTL, (reg_read(INFRA_TOPCKGEN_DCMCTL) & ~TOPCKGEN_AO_MCU_ARMPLL_CA7LL_REG0_MASK) | TOPCKGEN_AO_MCU_ARMPLL_CA7LL_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'topckgen_ao_mcu_armpll_ca7ll'" */ reg_write(INFRA_TOPCKGEN_DCMCTL, (reg_read(INFRA_TOPCKGEN_DCMCTL) & ~TOPCKGEN_AO_MCU_ARMPLL_CA7LL_REG0_MASK) | TOPCKGEN_AO_MCU_ARMPLL_CA7LL_REG0_OFF); } } #define DRAMC_DRAMC_DCM_REG0_MASK ((0x1 << 25) | \ (0x1 << 26) | \ (0x1 << 30) | \ (0x1 << 31)) #define DRAMC_DRAMC_DCM_REG0_ON ((0x1 << 25) | \ (0x0 << 26) | \ (0x1 << 30) | \ (0x1 << 31)) #define DRAMC_DRAMC_DCM_REG0_OFF ((0x0 << 25) | \ (0x1 << 26) | \ (0x0 << 30) | \ (0x0 << 31)) bool dcm_dramc_dramc_dcm_is_on(void) { bool ret = true; ret &= ((reg_read(DRAMC_DRAMC_PD_CTRL) & DRAMC_DRAMC_DCM_REG0_MASK) == (unsigned int) DRAMC_DRAMC_DCM_REG0_ON); return ret; } void dcm_dramc_dramc_dcm(int on) { if (on) { /* TINFO = "Turn ON DCM 'dramc_dramc_dcm'" */ reg_write(DRAMC_DRAMC_PD_CTRL, (reg_read(DRAMC_DRAMC_PD_CTRL) & ~DRAMC_DRAMC_DCM_REG0_MASK) | DRAMC_DRAMC_DCM_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'dramc_dramc_dcm'" */ reg_write(DRAMC_DRAMC_PD_CTRL, (reg_read(DRAMC_DRAMC_PD_CTRL) & ~DRAMC_DRAMC_DCM_REG0_MASK) | DRAMC_DRAMC_DCM_REG0_OFF); } } #define MCUCFG_BUS_CLOCK_DCM_REG0_MASK ((0x1 << 8)) #define MCUCFG_BUS_CLOCK_DCM_REG0_ON ((0x1 << 8)) #define MCUCFG_BUS_CLOCK_DCM_REG0_OFF ((0x0 << 8)) bool dcm_mcucfg_bus_clock_dcm_is_on(void) { bool ret = true; ret &= ((reg_read(CCI_CLK_CTRL) & MCUCFG_BUS_CLOCK_DCM_REG0_MASK) == (unsigned int) MCUCFG_BUS_CLOCK_DCM_REG0_ON); return ret; } void dcm_mcucfg_bus_clock_dcm(int on) { if (on) { /* TINFO = "Turn ON DCM 'mcucfg_bus_clock_dcm'" */ reg_write(CCI_CLK_CTRL, (reg_read(CCI_CLK_CTRL) & ~MCUCFG_BUS_CLOCK_DCM_REG0_MASK) | MCUCFG_BUS_CLOCK_DCM_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'mcucfg_bus_clock_dcm'" */ reg_write(CCI_CLK_CTRL, (reg_read(CCI_CLK_CTRL) & ~MCUCFG_BUS_CLOCK_DCM_REG0_MASK) | MCUCFG_BUS_CLOCK_DCM_REG0_OFF); } } #define MCUCFG_BUS_FABRIC_DCM_REG0_MASK ((0x1 << 0) | \ (0x1 << 1) | \ (0x1 << 8) | \ (0x1 << 9) | \ (0x1 << 18)) #define MCUCFG_BUS_FABRIC_DCM_REG0_ON ((0x1 << 0) | \ (0x1 << 1) | \ (0x1 << 8) | \ (0x1 << 9) | \ (0x1 << 18)) #define MCUCFG_BUS_FABRIC_DCM_REG0_OFF ((0x0 << 0) | \ (0x0 << 1) | \ (0x0 << 8) | \ (0x0 << 9) | \ (0x0 << 18)) bool dcm_mcucfg_bus_fabric_dcm_is_on(void) { bool ret = true; ret &= ((reg_read(BUS_FABRIC_DCM_CTRL) & MCUCFG_BUS_FABRIC_DCM_REG0_MASK) == (unsigned int) MCUCFG_BUS_FABRIC_DCM_REG0_ON); return ret; } void dcm_mcucfg_bus_fabric_dcm(int on) { if (on) { /* TINFO = "Turn ON DCM 'mcucfg_bus_fabric_dcm'" */ reg_write(BUS_FABRIC_DCM_CTRL, (reg_read(BUS_FABRIC_DCM_CTRL) & ~MCUCFG_BUS_FABRIC_DCM_REG0_MASK) | MCUCFG_BUS_FABRIC_DCM_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'mcucfg_bus_fabric_dcm'" */ reg_write(BUS_FABRIC_DCM_CTRL, (reg_read(BUS_FABRIC_DCM_CTRL) & ~MCUCFG_BUS_FABRIC_DCM_REG0_MASK) | MCUCFG_BUS_FABRIC_DCM_REG0_OFF); } } #define MCUCFG_L2_SHARED_DCM_REG0_MASK ((0x1 << 0)) #define MCUCFG_L2_SHARED_DCM_REG0_ON ((0x1 << 0)) #define MCUCFG_L2_SHARED_DCM_REG0_OFF ((0x0 << 0)) bool dcm_mcucfg_l2_shared_dcm_is_on(void) { bool ret = true; ret &= ((reg_read(L2C_SRAM_CTRL) & MCUCFG_L2_SHARED_DCM_REG0_MASK) == (unsigned int) MCUCFG_L2_SHARED_DCM_REG0_ON); return ret; } void dcm_mcucfg_l2_shared_dcm(int on) { if (on) { /* TINFO = "Turn ON DCM 'mcucfg_l2_shared_dcm'" */ reg_write(L2C_SRAM_CTRL, (reg_read(L2C_SRAM_CTRL) & ~MCUCFG_L2_SHARED_DCM_REG0_MASK) | MCUCFG_L2_SHARED_DCM_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'mcucfg_l2_shared_dcm'" */ reg_write(L2C_SRAM_CTRL, (reg_read(L2C_SRAM_CTRL) & ~MCUCFG_L2_SHARED_DCM_REG0_MASK) | MCUCFG_L2_SHARED_DCM_REG0_OFF); } } #define MCUCFG_MCU_MISC_DCM_REG0_MASK ((0x1 << 0)) #define MCUCFG_MCU_MISC_DCM_REG0_ON ((0x1 << 0)) #define MCUCFG_MCU_MISC_DCM_REG0_OFF ((0x0 << 0)) bool dcm_mcucfg_mcu_misc_dcm_is_on(void) { bool ret = true; ret &= ((reg_read(MCU_MISC_DCM_CTRL) & MCUCFG_MCU_MISC_DCM_REG0_MASK) == (unsigned int) MCUCFG_MCU_MISC_DCM_REG0_ON); return ret; } void dcm_mcucfg_mcu_misc_dcm(int on) { if (on) { /* TINFO = "Turn ON DCM 'mcucfg_mcu_misc_dcm'" */ reg_write(MCU_MISC_DCM_CTRL, (reg_read(MCU_MISC_DCM_CTRL) & ~MCUCFG_MCU_MISC_DCM_REG0_MASK) | MCUCFG_MCU_MISC_DCM_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'mcucfg_mcu_misc_dcm'" */ reg_write(MCU_MISC_DCM_CTRL, (reg_read(MCU_MISC_DCM_CTRL) & ~MCUCFG_MCU_MISC_DCM_REG0_MASK) | MCUCFG_MCU_MISC_DCM_REG0_OFF); } } #define EMI_DCM_EMI_GROUP_REG0_MASK ((0xff << 24)) #define EMI_DCM_EMI_GROUP_REG1_MASK ((0xff << 24)) #define EMI_DCM_EMI_GROUP_REG0_ON ((0x0 << 24)) #define EMI_DCM_EMI_GROUP_REG1_ON ((0x0 << 24)) #define EMI_DCM_EMI_GROUP_REG0_OFF ((0xff << 24)) #define EMI_DCM_EMI_GROUP_REG1_OFF ((0xff << 24)) bool dcm_emi_dcm_emi_group_is_on(void) { bool ret = true; ret &= ((reg_read(EMI_CONM) & EMI_DCM_EMI_GROUP_REG0_MASK) == (unsigned int) EMI_DCM_EMI_GROUP_REG0_ON); ret &= ((reg_read(EMI_CONN) & EMI_DCM_EMI_GROUP_REG1_MASK) == (unsigned int) EMI_DCM_EMI_GROUP_REG1_ON); return ret; } void dcm_emi_dcm_emi_group(int on) { if (on) { /* TINFO = "Turn ON DCM 'emi_dcm_emi_group'" */ reg_write(EMI_CONM, (reg_read(EMI_CONM) & ~EMI_DCM_EMI_GROUP_REG0_MASK) | EMI_DCM_EMI_GROUP_REG0_ON); reg_write(EMI_CONN, (reg_read(EMI_CONN) & ~EMI_DCM_EMI_GROUP_REG1_MASK) | EMI_DCM_EMI_GROUP_REG1_ON); } else { /* TINFO = "Turn OFF DCM 'emi_dcm_emi_group'" */ reg_write(EMI_CONM, (reg_read(EMI_CONM) & ~EMI_DCM_EMI_GROUP_REG0_MASK) | EMI_DCM_EMI_GROUP_REG0_OFF); reg_write(EMI_CONN, (reg_read(EMI_CONN) & ~EMI_DCM_EMI_GROUP_REG1_MASK) | EMI_DCM_EMI_GROUP_REG1_OFF); } } #define CHN0_EMI_DCM_EMI_GROUP_REG0_MASK ((0xff << 24)) #define CHN0_EMI_DCM_EMI_GROUP_REG0_ON ((0x0 << 24)) #define CHN0_EMI_DCM_EMI_GROUP_REG0_OFF ((0xff << 24)) bool dcm_chn0_emi_dcm_emi_group_is_on(void) { bool ret = true; ret &= ((reg_read(CHN0_EMI_CHN_EMI_CONB) & CHN0_EMI_DCM_EMI_GROUP_REG0_MASK) == (unsigned int) CHN0_EMI_DCM_EMI_GROUP_REG0_ON); return ret; } void dcm_chn0_emi_dcm_emi_group(int on) { if (on) { /* TINFO = "Turn ON DCM 'chn0_emi_dcm_emi_group'" */ reg_write(CHN0_EMI_CHN_EMI_CONB, (reg_read(CHN0_EMI_CHN_EMI_CONB) & ~CHN0_EMI_DCM_EMI_GROUP_REG0_MASK) | CHN0_EMI_DCM_EMI_GROUP_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'chn0_emi_dcm_emi_group'" */ reg_write(CHN0_EMI_CHN_EMI_CONB, (reg_read(CHN0_EMI_CHN_EMI_CONB) & ~CHN0_EMI_DCM_EMI_GROUP_REG0_MASK) | CHN0_EMI_DCM_EMI_GROUP_REG0_OFF); } } #define EFUSEC_DCM_EFUSE_AF_REG0_MASK ((0x1 << 2)) #define EFUSEC_DCM_EFUSE_AF_REG0_ON ((0x1 << 2)) #define EFUSEC_DCM_EFUSE_AF_REG0_OFF ((0x0 << 2)) bool dcm_efusec_dcm_efuse_af_is_on(void) { bool ret = true; ret &= ((reg_read(EFUSEC_DCM_ON) & EFUSEC_DCM_EFUSE_AF_REG0_MASK) == (unsigned int) EFUSEC_DCM_EFUSE_AF_REG0_ON); return ret; } void dcm_efusec_dcm_efuse_af(int on) { if (on) { /* TINFO = "Turn ON DCM 'efusec_dcm_efuse_af'" */ reg_write(EFUSEC_DCM_ON, (reg_read(EFUSEC_DCM_ON) & ~EFUSEC_DCM_EFUSE_AF_REG0_MASK) | EFUSEC_DCM_EFUSE_AF_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'efusec_dcm_efuse_af'" */ reg_write(EFUSEC_DCM_ON, (reg_read(EFUSEC_DCM_ON) & ~EFUSEC_DCM_EFUSE_AF_REG0_MASK) | EFUSEC_DCM_EFUSE_AF_REG0_OFF); } } #define EFUSEC_DCM_EFUSE_BG_REG0_MASK ((0x1 << 1)) #define EFUSEC_DCM_EFUSE_BG_REG0_ON ((0x1 << 1)) #define EFUSEC_DCM_EFUSE_BG_REG0_OFF ((0x0 << 1)) bool dcm_efusec_dcm_efuse_bg_is_on(void) { bool ret = true; ret &= ((reg_read(EFUSEC_DCM_ON) & EFUSEC_DCM_EFUSE_BG_REG0_MASK) == (unsigned int) EFUSEC_DCM_EFUSE_BG_REG0_ON); return ret; } void dcm_efusec_dcm_efuse_bg(int on) { if (on) { /* TINFO = "Turn ON DCM 'efusec_dcm_efuse_bg'" */ reg_write(EFUSEC_DCM_ON, (reg_read(EFUSEC_DCM_ON) & ~EFUSEC_DCM_EFUSE_BG_REG0_MASK) | EFUSEC_DCM_EFUSE_BG_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'efusec_dcm_efuse_bg'" */ reg_write(EFUSEC_DCM_ON, (reg_read(EFUSEC_DCM_ON) & ~EFUSEC_DCM_EFUSE_BG_REG0_MASK) | EFUSEC_DCM_EFUSE_BG_REG0_OFF); } } #define EFUSEC_DCM_EFUSE_COMMON_REG0_MASK ((0x1 << 0)) #define EFUSEC_DCM_EFUSE_COMMON_REG0_ON ((0x1 << 0)) #define EFUSEC_DCM_EFUSE_COMMON_REG0_OFF ((0x0 << 0)) bool dcm_efusec_dcm_efuse_common_is_on(void) { bool ret = true; ret &= ((reg_read(EFUSEC_DCM_ON) & EFUSEC_DCM_EFUSE_COMMON_REG0_MASK) == (unsigned int) EFUSEC_DCM_EFUSE_COMMON_REG0_ON); return ret; } void dcm_efusec_dcm_efuse_common(int on) { if (on) { /* TINFO = "Turn ON DCM 'efusec_dcm_efuse_common'" */ reg_write(EFUSEC_DCM_ON, (reg_read(EFUSEC_DCM_ON) & ~EFUSEC_DCM_EFUSE_COMMON_REG0_MASK) | EFUSEC_DCM_EFUSE_COMMON_REG0_ON); } else { /* TINFO = "Turn OFF DCM 'efusec_dcm_efuse_common'" */ reg_write(EFUSEC_DCM_ON, (reg_read(EFUSEC_DCM_ON) & ~EFUSEC_DCM_EFUSE_COMMON_REG0_MASK) | EFUSEC_DCM_EFUSE_COMMON_REG0_OFF); } }