Merge "drivers: clk: Add clock controller snapshot for Kalama SoC"

This commit is contained in:
qctecmdr 2022-08-02 19:31:15 -07:00 committed by Gerrit - the friendly Code Review server
commit 024bc9c25b
9 changed files with 12660 additions and 0 deletions

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@ -836,4 +836,67 @@ config QCOM_GDSC_REGULATOR
Say Y if you want to support clients using regulator framework APIs
to control GDSCs.
config SM_GCC_KALAMA
tristate "Kalama Global Clock Controller"
depends on COMMON_CLK_QCOM
help
Support for the global clock controller on Qualcomm Technologies, Inc
Kalama devices.
Say Y if you want to use peripheral devices such as UART, SPI, I2C,
USB, UFS, SD/eMMC, PCIe, etc.
config SM_VIDEOCC_KALAMA
tristate "Kalama Video Clock Controller"
depends on SM_GCC_KALAMA
help
Support for the video clock controller on Qualcomm Technologies, Inc.
Kalama devices.
Say Y if you want to support video devices and functionality such as
video encode/decode.
config SM_CAMCC_KALAMA
tristate "Kalama Camera Clock Controller"
depends on SM_GCC_KALAMA
help
Support for the camera clock controller on Qualcomm Technologies, Inc
Kalama devices.
Say Y if you want to support camera devices and functionality such as
capturing pictures.
config SM_DISPCC_KALAMA
tristate "Kalama Display Clock Controller"
depends on SM_GCC_KALAMA
help
Support for the display clock controller on Qualcomm Technologies, Inc
Kalama devices.
Say Y if you want to support display devices and functionality such as
splash screen.
config SM_DEBUGCC_KALAMA
tristate "Kalama Debug Clock Controller"
depends on COMMON_CLK_QCOM
help
Support for the debug clock controller on Qualcomm Technologies, Inc
Kalama devices.
Say Y if you want to support the debug clocks such as
clock measurement functionality.
config SM_GPUCC_KALAMA
tristate "Kalama Graphics Clock Controller"
depends on SM_GCC_KALAMA
help
Support for the graphics clock controller on Qualcomm Technologies, Inc
Kalama devices.
Say Y if you want to support graphics controller devices and
functionality such as 3D graphics.
config SM_TCSRCC_KALAMA
tristate "Kalama Top-Level CSR Clock Controller"
depends on SM_GCC_KALAMA
help
Support for the TCSR clock controller on Qualcomm Technologies, Inc
Kalama devices.
Say Y if you want to support miscellaneous top-level clocks
such as for the PHY references.
endif

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@ -109,6 +109,13 @@ obj-$(CONFIG_SM_GCC_8450) += gcc-sm8450.o
obj-$(CONFIG_SM_GCC_PINEAPPLE) += gcc-pineapple.o
obj-$(CONFIG_SM_GPUCC_6350) += gpucc-sm6350.o
obj-$(CONFIG_SM_CAMCC_PINEAPPLE) += camcc-pineapple.o
obj-$(CONFIG_SM_GCC_KALAMA) += gcc-kalama.o
obj-$(CONFIG_SM_VIDEOCC_KALAMA) += videocc-kalama.o
obj-$(CONFIG_SM_CAMCC_KALAMA) += camcc-kalama.o
obj-$(CONFIG_SM_DISPCC_KALAMA) += dispcc-kalama.o
obj-$(CONFIG_SM_DEBUGCC_KALAMA) += debugcc-kalama.o
obj-$(CONFIG_SM_GPUCC_KALAMA) += gpucc-kalama.o
obj-$(CONFIG_SM_TCSRCC_KALAMA) += tcsrcc-kalama.o
obj-$(CONFIG_SM_GPUCC_8150) += gpucc-sm8150.o
obj-$(CONFIG_SM_GPUCC_8250) += gpucc-sm8250.o
obj-$(CONFIG_SM_GPUCC_PINEAPPLE) += gpucc-pineapple.o

File diff suppressed because it is too large Load Diff

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@ -0,0 +1,996 @@
// SPDX-License-Identifier: GPL-2.0-only
/*
* Copyright (c) 2021, The Linux Foundation. All rights reserved.
* Copyright (c) 2022, Qualcomm Innovation Center, Inc. All rights reserved.
*/
#define pr_fmt(fmt) "clk: %s: " fmt, __func__
#include <linux/clk.h>
#include <linux/clk-provider.h>
#include <linux/err.h>
#include <linux/kernel.h>
#include <linux/mfd/syscon.h>
#include <linux/module.h>
#include <linux/of.h>
#include <linux/of_device.h>
#include <linux/platform_device.h>
#include <linux/regmap.h>
#include "clk-debug.h"
#include "common.h"
static struct measure_clk_data debug_mux_priv = {
.ctl_reg = 0x62048,
.status_reg = 0x6204C,
.xo_div4_cbcr = 0x62008,
};
static const char *const apss_cc_debug_mux_parent_names[] = {
"measure_only_apcs_gold_post_acd_clk",
"measure_only_apcs_goldplus_post_acd_clk",
"measure_only_apcs_l3_post_acd_clk",
"measure_only_apcs_silver_post_acd_clk",
};
static int apss_cc_debug_mux_sels[] = {
0x4, /* measure_only_apcs_gold_post_acd_clk */
0x8, /* measure_only_apcs_goldplus_post_acd_clk */
0x6, /* measure_only_apcs_l3_post_acd_clk */
0x2, /* measure_only_apcs_silver_post_acd_clk */
};
static int apss_cc_debug_mux_pre_divs[] = {
0x8, /* measure_only_apcs_gold_post_acd_clk */
0x8, /* measure_only_apcs_goldplus_post_acd_clk */
0x4, /* measure_only_apcs_l3_post_acd_clk */
0x4, /* measure_only_apcs_silver_post_acd_clk */
};
static struct clk_debug_mux apss_cc_debug_mux = {
.priv = &debug_mux_priv,
.debug_offset = 0x20100,
.post_div_offset = 0x20104,
.cbcr_offset = 0x20108,
.src_sel_mask = 0xFF,
.src_sel_shift = 0,
.post_div_mask = 0xF,
.post_div_shift = 0,
.post_div_val = 4,
.mux_sels = apss_cc_debug_mux_sels,
.num_mux_sels = ARRAY_SIZE(apss_cc_debug_mux_sels),
.pre_div_vals = apss_cc_debug_mux_pre_divs,
.hw.init = &(struct clk_init_data){
.name = "apss_cc_debug_mux",
.ops = &clk_debug_mux_ops,
.parent_names = apss_cc_debug_mux_parent_names,
.num_parents = ARRAY_SIZE(apss_cc_debug_mux_parent_names),
},
};
static const char *const cam_cc_debug_mux_parent_names[] = {
"cam_cc_bps_ahb_clk",
"cam_cc_bps_clk",
"cam_cc_bps_fast_ahb_clk",
"cam_cc_camnoc_axi_clk",
"cam_cc_camnoc_dcd_xo_clk",
"cam_cc_camnoc_xo_clk",
"cam_cc_cci_0_clk",
"cam_cc_cci_1_clk",
"cam_cc_cci_2_clk",
"cam_cc_core_ahb_clk",
"cam_cc_cpas_ahb_clk",
"cam_cc_cpas_bps_clk",
"cam_cc_cpas_cre_clk",
"cam_cc_cpas_fast_ahb_clk",
"cam_cc_cpas_ife_0_clk",
"cam_cc_cpas_ife_1_clk",
"cam_cc_cpas_ife_2_clk",
"cam_cc_cpas_ife_lite_clk",
"cam_cc_cpas_ipe_nps_clk",
"cam_cc_cpas_sbi_clk",
"cam_cc_cpas_sfe_0_clk",
"cam_cc_cpas_sfe_1_clk",
"cam_cc_cre_ahb_clk",
"cam_cc_cre_clk",
"cam_cc_csi0phytimer_clk",
"cam_cc_csi1phytimer_clk",
"cam_cc_csi2phytimer_clk",
"cam_cc_csi3phytimer_clk",
"cam_cc_csi4phytimer_clk",
"cam_cc_csi5phytimer_clk",
"cam_cc_csi6phytimer_clk",
"cam_cc_csi7phytimer_clk",
"cam_cc_csid_clk",
"cam_cc_csid_csiphy_rx_clk",
"cam_cc_csiphy0_clk",
"cam_cc_csiphy1_clk",
"cam_cc_csiphy2_clk",
"cam_cc_csiphy3_clk",
"cam_cc_csiphy4_clk",
"cam_cc_csiphy5_clk",
"cam_cc_csiphy6_clk",
"cam_cc_csiphy7_clk",
"cam_cc_drv_ahb_clk",
"cam_cc_drv_xo_clk",
"cam_cc_gdsc_clk",
"cam_cc_icp_ahb_clk",
"cam_cc_icp_clk",
"cam_cc_ife_0_clk",
"cam_cc_ife_0_dsp_clk",
"cam_cc_ife_0_fast_ahb_clk",
"cam_cc_ife_1_clk",
"cam_cc_ife_1_dsp_clk",
"cam_cc_ife_1_fast_ahb_clk",
"cam_cc_ife_2_clk",
"cam_cc_ife_2_dsp_clk",
"cam_cc_ife_2_fast_ahb_clk",
"cam_cc_ife_lite_ahb_clk",
"cam_cc_ife_lite_clk",
"cam_cc_ife_lite_cphy_rx_clk",
"cam_cc_ife_lite_csid_clk",
"cam_cc_ipe_nps_ahb_clk",
"cam_cc_ipe_nps_clk",
"cam_cc_ipe_nps_fast_ahb_clk",
"cam_cc_ipe_pps_clk",
"cam_cc_ipe_pps_fast_ahb_clk",
"cam_cc_jpeg_1_clk",
"cam_cc_jpeg_clk",
"cam_cc_mclk0_clk",
"cam_cc_mclk1_clk",
"cam_cc_mclk2_clk",
"cam_cc_mclk3_clk",
"cam_cc_mclk4_clk",
"cam_cc_mclk5_clk",
"cam_cc_mclk6_clk",
"cam_cc_mclk7_clk",
"cam_cc_qdss_debug_clk",
"cam_cc_qdss_debug_xo_clk",
"cam_cc_sbi_clk",
"cam_cc_sbi_fast_ahb_clk",
"cam_cc_sfe_0_clk",
"cam_cc_sfe_0_fast_ahb_clk",
"cam_cc_sfe_1_clk",
"cam_cc_sfe_1_fast_ahb_clk",
"cam_cc_sleep_clk",
};
static int cam_cc_debug_mux_sels[] = {
0x17, /* cam_cc_bps_ahb_clk */
0x18, /* cam_cc_bps_clk */
0x16, /* cam_cc_bps_fast_ahb_clk */
0x49, /* cam_cc_camnoc_axi_clk */
0x4A, /* cam_cc_camnoc_dcd_xo_clk */
0x60, /* cam_cc_camnoc_xo_clk */
0x44, /* cam_cc_cci_0_clk */
0x45, /* cam_cc_cci_1_clk */
0x61, /* cam_cc_cci_2_clk */
0x4D, /* cam_cc_core_ahb_clk */
0x46, /* cam_cc_cpas_ahb_clk */
0x19, /* cam_cc_cpas_bps_clk */
0x5D, /* cam_cc_cpas_cre_clk */
0x47, /* cam_cc_cpas_fast_ahb_clk */
0x25, /* cam_cc_cpas_ife_0_clk */
0x2A, /* cam_cc_cpas_ife_1_clk */
0x2F, /* cam_cc_cpas_ife_2_clk */
0x34, /* cam_cc_cpas_ife_lite_clk */
0x1B, /* cam_cc_cpas_ipe_nps_clk */
0x22, /* cam_cc_cpas_sbi_clk */
0x39, /* cam_cc_cpas_sfe_0_clk */
0x3D, /* cam_cc_cpas_sfe_1_clk */
0x5E, /* cam_cc_cre_ahb_clk */
0x5C, /* cam_cc_cre_clk */
0x9, /* cam_cc_csi0phytimer_clk */
0xC, /* cam_cc_csi1phytimer_clk */
0xE, /* cam_cc_csi2phytimer_clk */
0x10, /* cam_cc_csi3phytimer_clk */
0x12, /* cam_cc_csi4phytimer_clk */
0x14, /* cam_cc_csi5phytimer_clk */
0x58, /* cam_cc_csi6phytimer_clk */
0x5A, /* cam_cc_csi7phytimer_clk */
0x48, /* cam_cc_csid_clk */
0xB, /* cam_cc_csid_csiphy_rx_clk */
0xA, /* cam_cc_csiphy0_clk */
0xD, /* cam_cc_csiphy1_clk */
0xF, /* cam_cc_csiphy2_clk */
0x11, /* cam_cc_csiphy3_clk */
0x13, /* cam_cc_csiphy4_clk */
0x15, /* cam_cc_csiphy5_clk */
0x59, /* cam_cc_csiphy6_clk */
0x5B, /* cam_cc_csiphy7_clk */
0x75, /* cam_cc_drv_ahb_clk */
0x74, /* cam_cc_drv_xo_clk */
0x4E, /* cam_cc_gdsc_clk */
0x43, /* cam_cc_icp_ahb_clk */
0x42, /* cam_cc_icp_clk */
0x24, /* cam_cc_ife_0_clk */
0x26, /* cam_cc_ife_0_dsp_clk */
0x28, /* cam_cc_ife_0_fast_ahb_clk */
0x29, /* cam_cc_ife_1_clk */
0x2B, /* cam_cc_ife_1_dsp_clk */
0x2D, /* cam_cc_ife_1_fast_ahb_clk */
0x2E, /* cam_cc_ife_2_clk */
0x30, /* cam_cc_ife_2_dsp_clk */
0x32, /* cam_cc_ife_2_fast_ahb_clk */
0x37, /* cam_cc_ife_lite_ahb_clk */
0x33, /* cam_cc_ife_lite_clk */
0x36, /* cam_cc_ife_lite_cphy_rx_clk */
0x35, /* cam_cc_ife_lite_csid_clk */
0x1E, /* cam_cc_ipe_nps_ahb_clk */
0x1A, /* cam_cc_ipe_nps_clk */
0x1F, /* cam_cc_ipe_nps_fast_ahb_clk */
0x1C, /* cam_cc_ipe_pps_clk */
0x20, /* cam_cc_ipe_pps_fast_ahb_clk */
0x5F, /* cam_cc_jpeg_1_clk */
0x40, /* cam_cc_jpeg_clk */
0x1, /* cam_cc_mclk0_clk */
0x2, /* cam_cc_mclk1_clk */
0x3, /* cam_cc_mclk2_clk */
0x4, /* cam_cc_mclk3_clk */
0x5, /* cam_cc_mclk4_clk */
0x6, /* cam_cc_mclk5_clk */
0x7, /* cam_cc_mclk6_clk */
0x8, /* cam_cc_mclk7_clk */
0x4B, /* cam_cc_qdss_debug_clk */
0x4C, /* cam_cc_qdss_debug_xo_clk */
0x21, /* cam_cc_sbi_clk */
0x23, /* cam_cc_sbi_fast_ahb_clk */
0x38, /* cam_cc_sfe_0_clk */
0x3B, /* cam_cc_sfe_0_fast_ahb_clk */
0x3C, /* cam_cc_sfe_1_clk */
0x3F, /* cam_cc_sfe_1_fast_ahb_clk */
0x4F, /* cam_cc_sleep_clk */
};
static struct clk_debug_mux cam_cc_debug_mux = {
.priv = &debug_mux_priv,
.debug_offset = 0x16000,
.post_div_offset = 0x14004,
.cbcr_offset = 0x14008,
.src_sel_mask = 0xFF,
.src_sel_shift = 0,
.post_div_mask = 0xF,
.post_div_shift = 0,
.post_div_val = 4,
.mux_sels = cam_cc_debug_mux_sels,
.num_mux_sels = ARRAY_SIZE(cam_cc_debug_mux_sels),
.hw.init = &(struct clk_init_data){
.name = "cam_cc_debug_mux",
.ops = &clk_debug_mux_ops,
.parent_names = cam_cc_debug_mux_parent_names,
.num_parents = ARRAY_SIZE(cam_cc_debug_mux_parent_names),
},
};
static const char *const disp_cc_debug_mux_parent_names[] = {
"disp_cc_mdss_accu_clk",
"disp_cc_mdss_ahb1_clk",
"disp_cc_mdss_ahb_clk",
"disp_cc_mdss_byte0_clk",
"disp_cc_mdss_byte0_intf_clk",
"disp_cc_mdss_byte1_clk",
"disp_cc_mdss_byte1_intf_clk",
"disp_cc_mdss_dptx0_aux_clk",
"disp_cc_mdss_dptx0_crypto_clk",
"disp_cc_mdss_dptx0_link_clk",
"disp_cc_mdss_dptx0_link_intf_clk",
"disp_cc_mdss_dptx0_pixel0_clk",
"disp_cc_mdss_dptx0_pixel1_clk",
"disp_cc_mdss_dptx0_usb_router_link_intf_clk",
"disp_cc_mdss_dptx1_aux_clk",
"disp_cc_mdss_dptx1_crypto_clk",
"disp_cc_mdss_dptx1_link_clk",
"disp_cc_mdss_dptx1_link_intf_clk",
"disp_cc_mdss_dptx1_pixel0_clk",
"disp_cc_mdss_dptx1_pixel1_clk",
"disp_cc_mdss_dptx1_usb_router_link_intf_clk",
"disp_cc_mdss_dptx2_aux_clk",
"disp_cc_mdss_dptx2_crypto_clk",
"disp_cc_mdss_dptx2_link_clk",
"disp_cc_mdss_dptx2_link_intf_clk",
"disp_cc_mdss_dptx2_pixel0_clk",
"disp_cc_mdss_dptx2_pixel1_clk",
"disp_cc_mdss_dptx3_aux_clk",
"disp_cc_mdss_dptx3_crypto_clk",
"disp_cc_mdss_dptx3_link_clk",
"disp_cc_mdss_dptx3_link_intf_clk",
"disp_cc_mdss_dptx3_pixel0_clk",
"disp_cc_mdss_esc0_clk",
"disp_cc_mdss_esc1_clk",
"disp_cc_mdss_mdp1_clk",
"disp_cc_mdss_mdp_clk",
"disp_cc_mdss_mdp_lut1_clk",
"disp_cc_mdss_mdp_lut_clk",
"disp_cc_mdss_non_gdsc_ahb_clk",
"disp_cc_mdss_pclk0_clk",
"disp_cc_mdss_pclk1_clk",
"disp_cc_mdss_rscc_ahb_clk",
"disp_cc_mdss_rscc_vsync_clk",
"disp_cc_mdss_vsync1_clk",
"disp_cc_mdss_vsync_clk",
"disp_cc_sleep_clk",
"disp_cc_xo_clk",
};
static int disp_cc_debug_mux_sels[] = {
0x46, /* disp_cc_mdss_accu_clk */
0x37, /* disp_cc_mdss_ahb1_clk */
0x33, /* disp_cc_mdss_ahb_clk */
0x14, /* disp_cc_mdss_byte0_clk */
0x15, /* disp_cc_mdss_byte0_intf_clk */
0x16, /* disp_cc_mdss_byte1_clk */
0x17, /* disp_cc_mdss_byte1_intf_clk */
0x20, /* disp_cc_mdss_dptx0_aux_clk */
0x1D, /* disp_cc_mdss_dptx0_crypto_clk */
0x1A, /* disp_cc_mdss_dptx0_link_clk */
0x1C, /* disp_cc_mdss_dptx0_link_intf_clk */
0x1E, /* disp_cc_mdss_dptx0_pixel0_clk */
0x1F, /* disp_cc_mdss_dptx0_pixel1_clk */
0x1B, /* disp_cc_mdss_dptx0_usb_router_link_intf_clk */
0x27, /* disp_cc_mdss_dptx1_aux_clk */
0x26, /* disp_cc_mdss_dptx1_crypto_clk */
0x23, /* disp_cc_mdss_dptx1_link_clk */
0x25, /* disp_cc_mdss_dptx1_link_intf_clk */
0x21, /* disp_cc_mdss_dptx1_pixel0_clk */
0x22, /* disp_cc_mdss_dptx1_pixel1_clk */
0x24, /* disp_cc_mdss_dptx1_usb_router_link_intf_clk */
0x2D, /* disp_cc_mdss_dptx2_aux_clk */
0x2C, /* disp_cc_mdss_dptx2_crypto_clk */
0x2A, /* disp_cc_mdss_dptx2_link_clk */
0x2B, /* disp_cc_mdss_dptx2_link_intf_clk */
0x28, /* disp_cc_mdss_dptx2_pixel0_clk */
0x29, /* disp_cc_mdss_dptx2_pixel1_clk */
0x31, /* disp_cc_mdss_dptx3_aux_clk */
0x32, /* disp_cc_mdss_dptx3_crypto_clk */
0x2F, /* disp_cc_mdss_dptx3_link_clk */
0x30, /* disp_cc_mdss_dptx3_link_intf_clk */
0x2E, /* disp_cc_mdss_dptx3_pixel0_clk */
0x18, /* disp_cc_mdss_esc0_clk */
0x19, /* disp_cc_mdss_esc1_clk */
0x34, /* disp_cc_mdss_mdp1_clk */
0x11, /* disp_cc_mdss_mdp_clk */
0x35, /* disp_cc_mdss_mdp_lut1_clk */
0x12, /* disp_cc_mdss_mdp_lut_clk */
0x38, /* disp_cc_mdss_non_gdsc_ahb_clk */
0xF, /* disp_cc_mdss_pclk0_clk */
0x10, /* disp_cc_mdss_pclk1_clk */
0x3A, /* disp_cc_mdss_rscc_ahb_clk */
0x39, /* disp_cc_mdss_rscc_vsync_clk */
0x36, /* disp_cc_mdss_vsync1_clk */
0x13, /* disp_cc_mdss_vsync_clk */
0x47, /* disp_cc_sleep_clk */
0x45, /* disp_cc_xo_clk */
};
static struct clk_debug_mux disp_cc_debug_mux = {
.priv = &debug_mux_priv,
.debug_offset = 0x11000,
.post_div_offset = 0xD000,
.cbcr_offset = 0xD004,
.src_sel_mask = 0x1FF,
.src_sel_shift = 0,
.post_div_mask = 0xF,
.post_div_shift = 0,
.post_div_val = 4,
.mux_sels = disp_cc_debug_mux_sels,
.num_mux_sels = ARRAY_SIZE(disp_cc_debug_mux_sels),
.hw.init = &(struct clk_init_data){
.name = "disp_cc_debug_mux",
.ops = &clk_debug_mux_ops,
.parent_names = disp_cc_debug_mux_parent_names,
.num_parents = ARRAY_SIZE(disp_cc_debug_mux_parent_names),
},
};
static const char *const gcc_debug_mux_parent_names[] = {
"apss_cc_debug_mux",
"cam_cc_debug_mux",
"disp_cc_debug_mux",
"gcc_aggre_noc_pcie_axi_clk",
"gcc_aggre_ufs_phy_axi_clk",
"gcc_aggre_usb3_prim_axi_clk",
"gcc_ahb2phy_0_clk",
"gcc_boot_rom_ahb_clk",
"gcc_camera_ahb_clk",
"gcc_camera_hf_axi_clk",
"gcc_camera_sf_axi_clk",
"gcc_camera_xo_clk",
"gcc_cfg_noc_pcie_anoc_ahb_clk",
"gcc_cfg_noc_usb3_prim_axi_clk",
"gcc_cnoc_pcie_sf_axi_clk",
"gcc_ddrss_gpu_axi_clk",
"gcc_ddrss_pcie_sf_qtb_clk",
"gcc_disp_ahb_clk",
"gcc_disp_hf_axi_clk",
"gcc_disp_xo_clk",
"gcc_gp1_clk",
"gcc_gp2_clk",
"gcc_gp3_clk",
"gcc_gpu_cfg_ahb_clk",
"gcc_gpu_gpll0_clk_src",
"gcc_gpu_gpll0_div_clk_src",
"gcc_gpu_memnoc_gfx_clk",
"gcc_gpu_snoc_dvm_gfx_clk",
"gcc_pcie_0_aux_clk",
"gcc_pcie_0_cfg_ahb_clk",
"gcc_pcie_0_mstr_axi_clk",
"gcc_pcie_0_phy_rchng_clk",
"gcc_pcie_0_pipe_clk",
"gcc_pcie_0_slv_axi_clk",
"gcc_pcie_0_slv_q2a_axi_clk",
"gcc_pcie_1_aux_clk",
"gcc_pcie_1_cfg_ahb_clk",
"gcc_pcie_1_mstr_axi_clk",
"gcc_pcie_1_phy_aux_clk",
"gcc_pcie_1_phy_rchng_clk",
"gcc_pcie_1_pipe_clk",
"gcc_pcie_1_slv_axi_clk",
"gcc_pcie_1_slv_q2a_axi_clk",
"gcc_pdm2_clk",
"gcc_pdm_ahb_clk",
"gcc_pdm_xo4_clk",
"gcc_qmip_camera_nrt_ahb_clk",
"gcc_qmip_camera_rt_ahb_clk",
"gcc_qmip_disp_ahb_clk",
"gcc_qmip_gpu_ahb_clk",
"gcc_qmip_pcie_ahb_clk",
"gcc_qmip_video_cv_cpu_ahb_clk",
"gcc_qmip_video_cvp_ahb_clk",
"gcc_qmip_video_v_cpu_ahb_clk",
"gcc_qmip_video_vcodec_ahb_clk",
"gcc_qupv3_i2c_core_clk",
"gcc_qupv3_i2c_s0_clk",
"gcc_qupv3_i2c_s1_clk",
"gcc_qupv3_i2c_s2_clk",
"gcc_qupv3_i2c_s3_clk",
"gcc_qupv3_i2c_s4_clk",
"gcc_qupv3_i2c_s5_clk",
"gcc_qupv3_i2c_s6_clk",
"gcc_qupv3_i2c_s7_clk",
"gcc_qupv3_i2c_s8_clk",
"gcc_qupv3_i2c_s9_clk",
"gcc_qupv3_i2c_s_ahb_clk",
"gcc_qupv3_wrap1_core_2x_clk",
"gcc_qupv3_wrap1_core_clk",
"gcc_qupv3_wrap1_s0_clk",
"gcc_qupv3_wrap1_s1_clk",
"gcc_qupv3_wrap1_s2_clk",
"gcc_qupv3_wrap1_s3_clk",
"gcc_qupv3_wrap1_s4_clk",
"gcc_qupv3_wrap1_s5_clk",
"gcc_qupv3_wrap1_s6_clk",
"gcc_qupv3_wrap1_s7_clk",
"gcc_qupv3_wrap2_core_2x_clk",
"gcc_qupv3_wrap2_core_clk",
"gcc_qupv3_wrap2_s0_clk",
"gcc_qupv3_wrap2_s1_clk",
"gcc_qupv3_wrap2_s2_clk",
"gcc_qupv3_wrap2_s3_clk",
"gcc_qupv3_wrap2_s4_clk",
"gcc_qupv3_wrap2_s5_clk",
"gcc_qupv3_wrap2_s6_clk",
"gcc_qupv3_wrap2_s7_clk",
"gcc_qupv3_wrap_1_m_ahb_clk",
"gcc_qupv3_wrap_1_s_ahb_clk",
"gcc_qupv3_wrap_2_m_ahb_clk",
"gcc_qupv3_wrap_2_s_ahb_clk",
"gcc_sdcc2_ahb_clk",
"gcc_sdcc2_apps_clk",
"gcc_sdcc4_ahb_clk",
"gcc_sdcc4_apps_clk",
"gcc_ufs_phy_ahb_clk",
"gcc_ufs_phy_axi_clk",
"gcc_ufs_phy_ice_core_clk",
"gcc_ufs_phy_phy_aux_clk",
"gcc_ufs_phy_rx_symbol_0_clk",
"gcc_ufs_phy_rx_symbol_1_clk",
"gcc_ufs_phy_tx_symbol_0_clk",
"gcc_ufs_phy_unipro_core_clk",
"gcc_usb30_prim_master_clk",
"gcc_usb30_prim_mock_utmi_clk",
"gcc_usb30_prim_sleep_clk",
"gcc_usb3_prim_phy_aux_clk",
"gcc_usb3_prim_phy_com_aux_clk",
"gcc_usb3_prim_phy_pipe_clk",
"gcc_video_ahb_clk",
"gcc_video_axi0_clk",
"gcc_video_axi1_clk",
"gcc_video_xo_clk",
"gpu_cc_debug_mux",
"measure_only_cnoc_clk",
"measure_only_ipa_2x_clk",
"measure_only_memnoc_clk",
"measure_only_snoc_clk",
"pcie_0_pipe_clk",
"pcie_1_phy_aux_clk",
"pcie_1_pipe_clk",
"ufs_phy_rx_symbol_0_clk",
"ufs_phy_rx_symbol_1_clk",
"ufs_phy_tx_symbol_0_clk",
"usb3_phy_wrapper_gcc_usb30_pipe_clk",
"video_cc_debug_mux",
"mc_cc_debug_mux",
};
static int gcc_debug_mux_sels[] = {
0x122, /* apss_cc_debug_mux */
0x69, /* cam_cc_debug_mux */
0x6E, /* disp_cc_debug_mux */
0x3E, /* gcc_aggre_noc_pcie_axi_clk */
0x40, /* gcc_aggre_ufs_phy_axi_clk */
0x3F, /* gcc_aggre_usb3_prim_axi_clk */
0x9A, /* gcc_ahb2phy_0_clk */
0xD7, /* gcc_boot_rom_ahb_clk */
0x61, /* gcc_camera_ahb_clk */
0x64, /* gcc_camera_hf_axi_clk */
0x66, /* gcc_camera_sf_axi_clk */
0x68, /* gcc_camera_xo_clk */
0x2C, /* gcc_cfg_noc_pcie_anoc_ahb_clk */
0x1F, /* gcc_cfg_noc_usb3_prim_axi_clk */
0x19, /* gcc_cnoc_pcie_sf_axi_clk */
0xF1, /* gcc_ddrss_gpu_axi_clk */
0xF2, /* gcc_ddrss_pcie_sf_qtb_clk */
0x6A, /* gcc_disp_ahb_clk */
0x6C, /* gcc_disp_hf_axi_clk */
0x6D, /* gcc_disp_xo_clk */
0x12F, /* gcc_gp1_clk */
0x130, /* gcc_gp2_clk */
0x131, /* gcc_gp3_clk */
0x175, /* gcc_gpu_cfg_ahb_clk */
0x17C, /* gcc_gpu_gpll0_clk_src */
0x17D, /* gcc_gpu_gpll0_div_clk_src */
0x179, /* gcc_gpu_memnoc_gfx_clk */
0x17B, /* gcc_gpu_snoc_dvm_gfx_clk */
0x137, /* gcc_pcie_0_aux_clk */
0x136, /* gcc_pcie_0_cfg_ahb_clk */
0x135, /* gcc_pcie_0_mstr_axi_clk */
0x139, /* gcc_pcie_0_phy_rchng_clk */
0x138, /* gcc_pcie_0_pipe_clk */
0x134, /* gcc_pcie_0_slv_axi_clk */
0x133, /* gcc_pcie_0_slv_q2a_axi_clk */
0x140, /* gcc_pcie_1_aux_clk */
0x13F, /* gcc_pcie_1_cfg_ahb_clk */
0x13E, /* gcc_pcie_1_mstr_axi_clk */
0x141, /* gcc_pcie_1_phy_aux_clk */
0x143, /* gcc_pcie_1_phy_rchng_clk */
0x142, /* gcc_pcie_1_pipe_clk */
0x13D, /* gcc_pcie_1_slv_axi_clk */
0x13C, /* gcc_pcie_1_slv_q2a_axi_clk */
0xC8, /* gcc_pdm2_clk */
0xC6, /* gcc_pdm_ahb_clk */
0xC7, /* gcc_pdm_xo4_clk */
0x62, /* gcc_qmip_camera_nrt_ahb_clk */
0x63, /* gcc_qmip_camera_rt_ahb_clk */
0x6B, /* gcc_qmip_disp_ahb_clk */
0x176, /* gcc_qmip_gpu_ahb_clk */
0x132, /* gcc_qmip_pcie_ahb_clk */
0x73, /* gcc_qmip_video_cv_cpu_ahb_clk */
0x70, /* gcc_qmip_video_cvp_ahb_clk */
0x72, /* gcc_qmip_video_v_cpu_ahb_clk */
0x71, /* gcc_qmip_video_vcodec_ahb_clk */
0xA2, /* gcc_qupv3_i2c_core_clk */
0xA3, /* gcc_qupv3_i2c_s0_clk */
0xA4, /* gcc_qupv3_i2c_s1_clk */
0xA5, /* gcc_qupv3_i2c_s2_clk */
0xA6, /* gcc_qupv3_i2c_s3_clk */
0xA7, /* gcc_qupv3_i2c_s4_clk */
0xA8, /* gcc_qupv3_i2c_s5_clk */
0xA9, /* gcc_qupv3_i2c_s6_clk */
0xAA, /* gcc_qupv3_i2c_s7_clk */
0xAB, /* gcc_qupv3_i2c_s8_clk */
0xAC, /* gcc_qupv3_i2c_s9_clk */
0xA1, /* gcc_qupv3_i2c_s_ahb_clk */
0xB0, /* gcc_qupv3_wrap1_core_2x_clk */
0xAF, /* gcc_qupv3_wrap1_core_clk */
0xB2, /* gcc_qupv3_wrap1_s0_clk */
0xB3, /* gcc_qupv3_wrap1_s1_clk */
0xB4, /* gcc_qupv3_wrap1_s2_clk */
0xB5, /* gcc_qupv3_wrap1_s3_clk */
0xB6, /* gcc_qupv3_wrap1_s4_clk */
0xB7, /* gcc_qupv3_wrap1_s5_clk */
0xB8, /* gcc_qupv3_wrap1_s6_clk */
0xB9, /* gcc_qupv3_wrap1_s7_clk */
0xBD, /* gcc_qupv3_wrap2_core_2x_clk */
0xBC, /* gcc_qupv3_wrap2_core_clk */
0xBE, /* gcc_qupv3_wrap2_s0_clk */
0xBF, /* gcc_qupv3_wrap2_s1_clk */
0xC0, /* gcc_qupv3_wrap2_s2_clk */
0xC1, /* gcc_qupv3_wrap2_s3_clk */
0xC2, /* gcc_qupv3_wrap2_s4_clk */
0xC3, /* gcc_qupv3_wrap2_s5_clk */
0xC4, /* gcc_qupv3_wrap2_s6_clk */
0xC5, /* gcc_qupv3_wrap2_s7_clk */
0xAD, /* gcc_qupv3_wrap_1_m_ahb_clk */
0xAE, /* gcc_qupv3_wrap_1_s_ahb_clk */
0xBA, /* gcc_qupv3_wrap_2_m_ahb_clk */
0xBB, /* gcc_qupv3_wrap_2_s_ahb_clk */
0x9C, /* gcc_sdcc2_ahb_clk */
0x9B, /* gcc_sdcc2_apps_clk */
0x9F, /* gcc_sdcc4_ahb_clk */
0x9E, /* gcc_sdcc4_apps_clk */
0x148, /* gcc_ufs_phy_ahb_clk */
0x147, /* gcc_ufs_phy_axi_clk */
0x14E, /* gcc_ufs_phy_ice_core_clk */
0x14F, /* gcc_ufs_phy_phy_aux_clk */
0x14A, /* gcc_ufs_phy_rx_symbol_0_clk */
0x150, /* gcc_ufs_phy_rx_symbol_1_clk */
0x149, /* gcc_ufs_phy_tx_symbol_0_clk */
0x14D, /* gcc_ufs_phy_unipro_core_clk */
0x8E, /* gcc_usb30_prim_master_clk */
0x90, /* gcc_usb30_prim_mock_utmi_clk */
0x8F, /* gcc_usb30_prim_sleep_clk */
0x91, /* gcc_usb3_prim_phy_aux_clk */
0x92, /* gcc_usb3_prim_phy_com_aux_clk */
0x93, /* gcc_usb3_prim_phy_pipe_clk */
0x6F, /* gcc_video_ahb_clk */
0x74, /* gcc_video_axi0_clk */
0x75, /* gcc_video_axi1_clk */
0x76, /* gcc_video_xo_clk */
0x178, /* gpu_cc_debug_mux */
0x17, /* measure_only_cnoc_clk */
0x161, /* measure_only_ipa_2x_clk */
0xF7, /* measure_only_memnoc_clk */
0xB, /* measure_only_snoc_clk */
0x13A, /* pcie_0_pipe_clk */
0x145, /* pcie_1_phy_aux_clk */
0x144, /* pcie_1_pipe_clk */
0x14C, /* ufs_phy_rx_symbol_0_clk */
0x152, /* ufs_phy_rx_symbol_1_clk */
0x14B, /* ufs_phy_tx_symbol_0_clk */
0x97, /* usb3_phy_wrapper_gcc_usb30_pipe_clk */
0x77, /* video_cc_debug_mux */
0xFD, /* mc_cc_debug_mux or ddrss_gcc_debug_clk */
};
static struct clk_debug_mux gcc_debug_mux = {
.priv = &debug_mux_priv,
.debug_offset = 0x62024,
.post_div_offset = 0x62000,
.cbcr_offset = 0x62004,
.src_sel_mask = 0x3FF,
.src_sel_shift = 0,
.post_div_mask = 0xF,
.post_div_shift = 0,
.post_div_val = 2,
.mux_sels = gcc_debug_mux_sels,
.num_mux_sels = ARRAY_SIZE(gcc_debug_mux_sels),
.hw.init = &(struct clk_init_data){
.name = "gcc_debug_mux",
.ops = &clk_debug_mux_ops,
.parent_names = gcc_debug_mux_parent_names,
.num_parents = ARRAY_SIZE(gcc_debug_mux_parent_names),
},
};
static const char *const gpu_cc_debug_mux_parent_names[] = {
"gpu_cc_ahb_clk",
"gpu_cc_crc_ahb_clk",
"gpu_cc_cx_ff_clk",
"gpu_cc_cx_gmu_clk",
"gpu_cc_cxo_aon_clk",
"gpu_cc_cxo_clk",
"gpu_cc_demet_clk",
"gpu_cc_freq_measure_clk",
"gpu_cc_gx_ff_clk",
"gpu_cc_gx_gfx3d_rdvm_clk",
"gpu_cc_gx_gmu_clk",
"gpu_cc_gx_vsense_clk",
"gpu_cc_hub_aon_clk",
"gpu_cc_hub_cx_int_clk",
"gpu_cc_memnoc_gfx_clk",
"gpu_cc_mnd1x_0_gfx3d_clk",
"gpu_cc_mnd1x_1_gfx3d_clk",
"gpu_cc_sleep_clk",
"measure_only_gpu_cc_cx_gfx3d_clk",
"measure_only_gpu_cc_cx_gfx3d_slv_clk",
"measure_only_gpu_cc_gx_gfx3d_clk",
};
static int gpu_cc_debug_mux_sels[] = {
0x16, /* gpu_cc_ahb_clk */
0x17, /* gpu_cc_crc_ahb_clk */
0x20, /* gpu_cc_cx_ff_clk */
0x1D, /* gpu_cc_cx_gmu_clk */
0xB, /* gpu_cc_cxo_aon_clk */
0x1E, /* gpu_cc_cxo_clk */
0xD, /* gpu_cc_demet_clk */
0xC, /* gpu_cc_freq_measure_clk */
0x13, /* gpu_cc_gx_ff_clk */
0x15, /* gpu_cc_gx_gfx3d_rdvm_clk */
0x12, /* gpu_cc_gx_gmu_clk */
0xF, /* gpu_cc_gx_vsense_clk */
0x2D, /* gpu_cc_hub_aon_clk */
0x1F, /* gpu_cc_hub_cx_int_clk */
0x21, /* gpu_cc_memnoc_gfx_clk */
0x28, /* gpu_cc_mnd1x_0_gfx3d_clk */
0x29, /* gpu_cc_mnd1x_1_gfx3d_clk */
0x1B, /* gpu_cc_sleep_clk */
0x24, /* measure_only_gpu_cc_cx_gfx3d_clk */
0x25, /* measure_only_gpu_cc_cx_gfx3d_slv_clk */
0xE, /* measure_only_gpu_cc_gx_gfx3d_clk */
};
static struct clk_debug_mux gpu_cc_debug_mux = {
.priv = &debug_mux_priv,
.debug_offset = 0x9564,
.post_div_offset = 0x9270,
.cbcr_offset = 0x9274,
.src_sel_mask = 0xFF,
.src_sel_shift = 0,
.post_div_mask = 0xF,
.post_div_shift = 0,
.post_div_val = 2,
.mux_sels = gpu_cc_debug_mux_sels,
.num_mux_sels = ARRAY_SIZE(gpu_cc_debug_mux_sels),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_debug_mux",
.ops = &clk_debug_mux_ops,
.parent_names = gpu_cc_debug_mux_parent_names,
.num_parents = ARRAY_SIZE(gpu_cc_debug_mux_parent_names),
},
};
static const char *const video_cc_debug_mux_parent_names[] = {
"video_cc_ahb_clk",
"video_cc_mvs0_clk",
"video_cc_mvs0c_clk",
"video_cc_mvs1_clk",
"video_cc_mvs1c_clk",
"video_cc_sleep_clk",
"video_cc_xo_clk",
};
static int video_cc_debug_mux_sels[] = {
0x7, /* video_cc_ahb_clk */
0x3, /* video_cc_mvs0_clk */
0x1, /* video_cc_mvs0c_clk */
0x5, /* video_cc_mvs1_clk */
0x9, /* video_cc_mvs1c_clk */
0xC, /* video_cc_sleep_clk */
0xB, /* video_cc_xo_clk */
};
static struct clk_debug_mux video_cc_debug_mux = {
.priv = &debug_mux_priv,
.debug_offset = 0x9A4C,
.post_div_offset = 0x80F8,
.cbcr_offset = 0x80FC,
.src_sel_mask = 0x3F,
.src_sel_shift = 0,
.post_div_mask = 0xF,
.post_div_shift = 0,
.post_div_val = 3,
.mux_sels = video_cc_debug_mux_sels,
.num_mux_sels = ARRAY_SIZE(video_cc_debug_mux_sels),
.hw.init = &(struct clk_init_data){
.name = "video_cc_debug_mux",
.ops = &clk_debug_mux_ops,
.parent_names = video_cc_debug_mux_parent_names,
.num_parents = ARRAY_SIZE(video_cc_debug_mux_parent_names),
},
};
static const char *const mc_cc_debug_mux_parent_names[] = {
"measure_only_mccc_clk",
};
static struct clk_debug_mux mc_cc_debug_mux = {
.period_offset = 0x50,
.hw.init = &(struct clk_init_data){
.name = "mc_cc_debug_mux",
.ops = &clk_debug_mux_ops,
.parent_names = mc_cc_debug_mux_parent_names,
.num_parents = ARRAY_SIZE(mc_cc_debug_mux_parent_names),
},
};
static struct mux_regmap_names mux_list[] = {
{ .mux = &mc_cc_debug_mux, .regmap_name = "qcom,mccc" },
{ .mux = &video_cc_debug_mux, .regmap_name = "qcom,videocc" },
{ .mux = &gpu_cc_debug_mux, .regmap_name = "qcom,gpucc" },
{ .mux = &disp_cc_debug_mux, .regmap_name = "qcom,dispcc" },
{ .mux = &cam_cc_debug_mux, .regmap_name = "qcom,camcc" },
{ .mux = &apss_cc_debug_mux, .regmap_name = "qcom,apsscc" },
{ .mux = &gcc_debug_mux, .regmap_name = "qcom,gcc" },
};
static struct clk_dummy measure_only_apcs_gold_post_acd_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_apcs_gold_post_acd_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_dummy measure_only_apcs_goldplus_post_acd_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_apcs_goldplus_post_acd_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_dummy measure_only_apcs_l3_post_acd_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_apcs_l3_post_acd_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_dummy measure_only_apcs_silver_post_acd_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_apcs_silver_post_acd_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_dummy measure_only_cnoc_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_cnoc_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_dummy measure_only_gpu_cc_cx_gfx3d_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_gpu_cc_cx_gfx3d_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_dummy measure_only_gpu_cc_cx_gfx3d_slv_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_gpu_cc_cx_gfx3d_slv_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_dummy measure_only_gpu_cc_gx_gfx3d_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_gpu_cc_gx_gfx3d_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_dummy measure_only_mccc_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_mccc_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_dummy measure_only_ipa_2x_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_ipa_2x_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_dummy measure_only_memnoc_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_memnoc_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_dummy measure_only_snoc_clk = {
.rrate = 1000,
.hw.init = &(struct clk_init_data){
.name = "measure_only_snoc_clk",
.ops = &clk_dummy_ops,
},
};
static struct clk_hw *debugcc_kalama_hws[] = {
&measure_only_apcs_gold_post_acd_clk.hw,
&measure_only_apcs_goldplus_post_acd_clk.hw,
&measure_only_apcs_l3_post_acd_clk.hw,
&measure_only_apcs_silver_post_acd_clk.hw,
&measure_only_cnoc_clk.hw,
&measure_only_gpu_cc_cx_gfx3d_clk.hw,
&measure_only_gpu_cc_cx_gfx3d_slv_clk.hw,
&measure_only_gpu_cc_gx_gfx3d_clk.hw,
&measure_only_mccc_clk.hw,
&measure_only_ipa_2x_clk.hw,
&measure_only_memnoc_clk.hw,
&measure_only_snoc_clk.hw,
};
static const struct of_device_id clk_debug_match_table[] = {
{ .compatible = "qcom,kalama-debugcc" },
{ }
};
static int clk_debug_kalama_probe(struct platform_device *pdev)
{
struct clk *clk;
int ret = 0, i;
BUILD_BUG_ON(ARRAY_SIZE(apss_cc_debug_mux_parent_names) !=
ARRAY_SIZE(apss_cc_debug_mux_sels));
BUILD_BUG_ON(ARRAY_SIZE(cam_cc_debug_mux_parent_names) !=
ARRAY_SIZE(cam_cc_debug_mux_sels));
BUILD_BUG_ON(ARRAY_SIZE(disp_cc_debug_mux_parent_names) !=
ARRAY_SIZE(disp_cc_debug_mux_sels));
BUILD_BUG_ON(ARRAY_SIZE(gcc_debug_mux_parent_names) != ARRAY_SIZE(gcc_debug_mux_sels));
BUILD_BUG_ON(ARRAY_SIZE(gpu_cc_debug_mux_parent_names) !=
ARRAY_SIZE(gpu_cc_debug_mux_sels));
BUILD_BUG_ON(ARRAY_SIZE(video_cc_debug_mux_parent_names) !=
ARRAY_SIZE(video_cc_debug_mux_sels));
clk = devm_clk_get(&pdev->dev, "xo_clk_src");
if (IS_ERR(clk)) {
if (PTR_ERR(clk) != -EPROBE_DEFER)
dev_err(&pdev->dev, "Unable to get xo clock\n");
return PTR_ERR(clk);
}
debug_mux_priv.cxo = clk;
for (i = 0; i < ARRAY_SIZE(mux_list); i++) {
if (IS_ERR_OR_NULL(mux_list[i].mux->regmap)) {
ret = map_debug_bases(pdev,
mux_list[i].regmap_name, mux_list[i].mux);
if (ret == -EBADR)
continue;
else if (ret)
return ret;
}
}
for (i = 0; i < ARRAY_SIZE(debugcc_kalama_hws); i++) {
clk = devm_clk_register(&pdev->dev, debugcc_kalama_hws[i]);
if (IS_ERR(clk)) {
dev_err(&pdev->dev, "Unable to register %s, err:(%d)\n",
clk_hw_get_name(debugcc_kalama_hws[i]),
PTR_ERR(clk));
return PTR_ERR(clk);
}
}
for (i = 0; i < ARRAY_SIZE(mux_list); i++) {
ret = devm_clk_register_debug_mux(&pdev->dev, mux_list[i].mux);
if (ret) {
dev_err(&pdev->dev, "Unable to register mux clk %s, err:(%d)\n",
qcom_clk_hw_get_name(&mux_list[i].mux->hw),
ret);
return ret;
}
}
ret = clk_debug_measure_register(&gcc_debug_mux.hw);
if (ret) {
dev_err(&pdev->dev, "Could not register Measure clocks\n");
return ret;
}
dev_info(&pdev->dev, "Registered debug measure clocks\n");
return ret;
}
static struct platform_driver clk_debug_driver = {
.probe = clk_debug_kalama_probe,
.driver = {
.name = "kalama-debugcc",
.of_match_table = clk_debug_match_table,
},
};
static int __init clk_debug_kalama_init(void)
{
return platform_driver_register(&clk_debug_driver);
}
fs_initcall(clk_debug_kalama_init);
MODULE_DESCRIPTION("QTI DEBUG CC KALAMA Driver");
MODULE_LICENSE("GPL");

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// SPDX-License-Identifier: GPL-2.0-only
/*
* Copyright (c) 2021, The Linux Foundation. All rights reserved.
*/
#include <linux/clk.h>
#include <linux/clk-provider.h>
#include <linux/err.h>
#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/of_device.h>
#include <linux/of.h>
#include <linux/regmap.h>
#include <dt-bindings/clock/qcom,gpucc-kalama.h>
#include "clk-alpha-pll.h"
#include "clk-branch.h"
#include "clk-pll.h"
#include "clk-rcg.h"
#include "clk-regmap.h"
#include "clk-regmap-divider.h"
#include "clk-regmap-mux.h"
#include "common.h"
#include "reset.h"
#include "vdd-level.h"
static DEFINE_VDD_REGULATORS(vdd_cx, VDD_HIGH + 1, 1, vdd_corner);
static DEFINE_VDD_REGULATORS(vdd_mx, VDD_HIGH + 1, 1, vdd_corner);
static DEFINE_VDD_REGULATORS(vdd_mxc, VDD_HIGH + 1, 1, vdd_corner);
static struct clk_vdd_class *gpu_cc_kalama_regulators[] = {
&vdd_cx,
&vdd_mx,
&vdd_mxc,
};
static struct clk_vdd_class *gpu_cc_kalama_regulators_1[] = {
&vdd_cx,
&vdd_mx,
};
enum {
P_BI_TCXO,
P_GPLL0_OUT_MAIN,
P_GPLL0_OUT_MAIN_DIV,
P_GPU_CC_PLL0_OUT_MAIN,
P_GPU_CC_PLL1_OUT_MAIN,
};
static struct pll_vco lucid_ole_vco[] = {
{ 249600000, 2000000000, 0 },
};
static const struct alpha_pll_config gpu_cc_pll0_config = {
.l = 0x1E,
.cal_l = 0x44,
.cal_l_ringosc = 0x44,
.alpha = 0xBAAA,
.config_ctl_val = 0x20485699,
.config_ctl_hi_val = 0x00182261,
.config_ctl_hi1_val = 0x82AA299C,
.test_ctl_val = 0x00000000,
.test_ctl_hi_val = 0x00000003,
.test_ctl_hi1_val = 0x00009000,
.test_ctl_hi2_val = 0x00000034,
.user_ctl_val = 0x00000000,
.user_ctl_hi_val = 0x00000005,
};
static struct clk_alpha_pll gpu_cc_pll0 = {
.offset = 0x0,
.vco_table = lucid_ole_vco,
.num_vco = ARRAY_SIZE(lucid_ole_vco),
.regs = clk_alpha_pll_regs[CLK_ALPHA_PLL_TYPE_LUCID_OLE],
.clkr = {
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_pll0",
.parent_data = &(const struct clk_parent_data){
.fw_name = "bi_tcxo",
},
.num_parents = 1,
.ops = &clk_alpha_pll_lucid_ole_ops,
},
.vdd_data = {
.vdd_class = &vdd_mxc,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER_D1] = 615000000,
[VDD_LOW] = 1100000000,
[VDD_LOW_L1] = 1600000000,
[VDD_NOMINAL] = 2000000000},
},
},
};
static const struct alpha_pll_config gpu_cc_pll1_config = {
.l = 0x16,
.cal_l = 0x44,
.cal_l_ringosc = 0x44,
.alpha = 0xEAAA,
.config_ctl_val = 0x20485699,
.config_ctl_hi_val = 0x00182261,
.config_ctl_hi1_val = 0x82AA299C,
.test_ctl_val = 0x00000000,
.test_ctl_hi_val = 0x00000003,
.test_ctl_hi1_val = 0x00009000,
.test_ctl_hi2_val = 0x00000034,
.user_ctl_val = 0x00000000,
.user_ctl_hi_val = 0x00000005,
};
static struct clk_alpha_pll gpu_cc_pll1 = {
.offset = 0x1000,
.vco_table = lucid_ole_vco,
.num_vco = ARRAY_SIZE(lucid_ole_vco),
.regs = clk_alpha_pll_regs[CLK_ALPHA_PLL_TYPE_LUCID_OLE],
.clkr = {
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_pll1",
.parent_data = &(const struct clk_parent_data){
.fw_name = "bi_tcxo",
},
.num_parents = 1,
.ops = &clk_alpha_pll_lucid_ole_ops,
},
.vdd_data = {
.vdd_class = &vdd_mx,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER_D1] = 615000000,
[VDD_LOW] = 1100000000,
[VDD_LOW_L1] = 1600000000,
[VDD_NOMINAL] = 2000000000},
},
},
};
static const struct parent_map gpu_cc_parent_map_0[] = {
{ P_BI_TCXO, 0 },
{ P_GPLL0_OUT_MAIN, 5 },
{ P_GPLL0_OUT_MAIN_DIV, 6 },
};
static const struct clk_parent_data gpu_cc_parent_data_0[] = {
{ .fw_name = "bi_tcxo" },
{ .fw_name = "gpll0_out_main" },
{ .fw_name = "gpll0_out_main_div" },
};
static const struct parent_map gpu_cc_parent_map_1[] = {
{ P_BI_TCXO, 0 },
{ P_GPU_CC_PLL0_OUT_MAIN, 1 },
{ P_GPU_CC_PLL1_OUT_MAIN, 3 },
{ P_GPLL0_OUT_MAIN, 5 },
{ P_GPLL0_OUT_MAIN_DIV, 6 },
};
static const struct clk_parent_data gpu_cc_parent_data_1[] = {
{ .fw_name = "bi_tcxo" },
{ .hw = &gpu_cc_pll0.clkr.hw },
{ .hw = &gpu_cc_pll1.clkr.hw },
{ .fw_name = "gpll0_out_main" },
{ .fw_name = "gpll0_out_main_div" },
};
static const struct parent_map gpu_cc_parent_map_2[] = {
{ P_BI_TCXO, 0 },
{ P_GPU_CC_PLL1_OUT_MAIN, 3 },
{ P_GPLL0_OUT_MAIN, 5 },
{ P_GPLL0_OUT_MAIN_DIV, 6 },
};
static const struct clk_parent_data gpu_cc_parent_data_2[] = {
{ .fw_name = "bi_tcxo" },
{ .hw = &gpu_cc_pll1.clkr.hw },
{ .fw_name = "gpll0_out_main" },
{ .fw_name = "gpll0_out_main_div" },
};
static const struct freq_tbl ftbl_gpu_cc_ff_clk_src[] = {
F(200000000, P_GPLL0_OUT_MAIN, 3, 0, 0),
{ }
};
static struct clk_rcg2 gpu_cc_ff_clk_src = {
.cmd_rcgr = 0x9474,
.mnd_width = 0,
.hid_width = 5,
.parent_map = gpu_cc_parent_map_0,
.freq_tbl = ftbl_gpu_cc_ff_clk_src,
.enable_safe_config = true,
.flags = HW_CLK_CTRL_MODE,
.clkr.hw.init = &(struct clk_init_data){
.name = "gpu_cc_ff_clk_src",
.parent_data = gpu_cc_parent_data_0,
.num_parents = ARRAY_SIZE(gpu_cc_parent_data_0),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
},
.clkr.vdd_data = {
.vdd_class = &vdd_cx,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER_D1] = 200000000},
},
};
static const struct freq_tbl ftbl_gpu_cc_gmu_clk_src[] = {
F(19200000, P_BI_TCXO, 1, 0, 0),
F(220000000, P_GPU_CC_PLL1_OUT_MAIN, 2, 0, 0),
F(550000000, P_GPU_CC_PLL1_OUT_MAIN, 2, 0, 0),
{ }
};
static struct clk_rcg2 gpu_cc_gmu_clk_src = {
.cmd_rcgr = 0x9318,
.mnd_width = 0,
.hid_width = 5,
.parent_map = gpu_cc_parent_map_1,
.freq_tbl = ftbl_gpu_cc_gmu_clk_src,
.enable_safe_config = true,
.flags = HW_CLK_CTRL_MODE,
.clkr.hw.init = &(struct clk_init_data){
.name = "gpu_cc_gmu_clk_src",
.parent_data = gpu_cc_parent_data_1,
.num_parents = ARRAY_SIZE(gpu_cc_parent_data_1),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
},
.clkr.vdd_data = {
.vdd_classes = gpu_cc_kalama_regulators_1,
.num_vdd_classes = ARRAY_SIZE(gpu_cc_kalama_regulators_1),
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER_D1] = 220000000,
[VDD_LOW] = 550000000},
},
};
static const struct freq_tbl ftbl_gpu_cc_hub_clk_src[] = {
F(200000000, P_GPLL0_OUT_MAIN, 3, 0, 0),
F(300000000, P_GPLL0_OUT_MAIN, 2, 0, 0),
F(400000000, P_GPLL0_OUT_MAIN, 1.5, 0, 0),
{ }
};
static struct clk_rcg2 gpu_cc_hub_clk_src = {
.cmd_rcgr = 0x93ec,
.mnd_width = 0,
.hid_width = 5,
.parent_map = gpu_cc_parent_map_2,
.freq_tbl = ftbl_gpu_cc_hub_clk_src,
.enable_safe_config = true,
.flags = HW_CLK_CTRL_MODE,
.clkr.hw.init = &(struct clk_init_data){
.name = "gpu_cc_hub_clk_src",
.parent_data = gpu_cc_parent_data_2,
.num_parents = ARRAY_SIZE(gpu_cc_parent_data_2),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
},
.clkr.vdd_data = {
.vdd_class = &vdd_cx,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER_D1] = 200000000,
[VDD_LOW] = 300000000,
[VDD_NOMINAL] = 400000000},
},
};
static struct clk_branch gpu_cc_ahb_clk = {
.halt_reg = 0x911c,
.halt_check = BRANCH_HALT_DELAY,
.clkr = {
.enable_reg = 0x911c,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_ahb_clk",
.parent_hws = (const struct clk_hw*[]){
&gpu_cc_hub_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_crc_ahb_clk = {
.halt_reg = 0x9120,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x9120,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_crc_ahb_clk",
.parent_hws = (const struct clk_hw*[]){
&gpu_cc_hub_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_cx_ff_clk = {
.halt_reg = 0x914c,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x914c,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_cx_ff_clk",
.parent_hws = (const struct clk_hw*[]){
&gpu_cc_ff_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_cx_gmu_clk = {
.halt_reg = 0x913c,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x913c,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_cx_gmu_clk",
.parent_hws = (const struct clk_hw*[]){
&gpu_cc_gmu_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT | CLK_DONT_HOLD_STATE,
.ops = &clk_branch2_aon_ops,
},
},
};
static struct clk_branch gpu_cc_cxo_aon_clk = {
.halt_reg = 0x9004,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x9004,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_cxo_aon_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_cxo_clk = {
.halt_reg = 0x9144,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x9144,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_cxo_clk",
.flags = CLK_DONT_HOLD_STATE,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_demet_clk = {
.halt_reg = 0x900c,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x900c,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_demet_clk",
.ops = &clk_branch2_aon_ops,
},
},
};
static struct clk_branch gpu_cc_freq_measure_clk = {
.halt_reg = 0x9008,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x9008,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_freq_measure_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_gx_ff_clk = {
.halt_reg = 0x90c0,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x90c0,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_gx_ff_clk",
.parent_hws = (const struct clk_hw*[]){
&gpu_cc_ff_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_gx_gfx3d_clk = {
.halt_reg = 0x90a8,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x90a8,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_gx_gfx3d_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_gx_gfx3d_rdvm_clk = {
.halt_reg = 0x90c8,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x90c8,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_gx_gfx3d_rdvm_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_gx_gmu_clk = {
.halt_reg = 0x90bc,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x90bc,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_gx_gmu_clk",
.parent_hws = (const struct clk_hw*[]){
&gpu_cc_gmu_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_gx_vsense_clk = {
.halt_reg = 0x90b0,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x90b0,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_gx_vsense_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_hlos1_vote_gpu_smmu_clk = {
.halt_reg = 0x7000,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x7000,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_hlos1_vote_gpu_smmu_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_hub_aon_clk = {
.halt_reg = 0x93e8,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x93e8,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_hub_aon_clk",
.parent_hws = (const struct clk_hw*[]){
&gpu_cc_hub_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_aon_ops,
},
},
};
static struct clk_branch gpu_cc_hub_cx_int_clk = {
.halt_reg = 0x9148,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x9148,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_hub_cx_int_clk",
.parent_hws = (const struct clk_hw*[]){
&gpu_cc_hub_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT | CLK_DONT_HOLD_STATE,
.ops = &clk_branch2_aon_ops,
},
},
};
static struct clk_branch gpu_cc_memnoc_gfx_clk = {
.halt_reg = 0x9150,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x9150,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_memnoc_gfx_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_mnd1x_0_gfx3d_clk = {
.halt_reg = 0x9288,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x9288,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_mnd1x_0_gfx3d_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_mnd1x_1_gfx3d_clk = {
.halt_reg = 0x928c,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x928c,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_mnd1x_1_gfx3d_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch gpu_cc_sleep_clk = {
.halt_reg = 0x9134,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x9134,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "gpu_cc_sleep_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_regmap *gpu_cc_kalama_clocks[] = {
[GPU_CC_AHB_CLK] = &gpu_cc_ahb_clk.clkr,
[GPU_CC_CRC_AHB_CLK] = &gpu_cc_crc_ahb_clk.clkr,
[GPU_CC_CX_FF_CLK] = &gpu_cc_cx_ff_clk.clkr,
[GPU_CC_CX_GMU_CLK] = &gpu_cc_cx_gmu_clk.clkr,
[GPU_CC_CXO_AON_CLK] = &gpu_cc_cxo_aon_clk.clkr,
[GPU_CC_CXO_CLK] = &gpu_cc_cxo_clk.clkr,
[GPU_CC_DEMET_CLK] = &gpu_cc_demet_clk.clkr,
[GPU_CC_FF_CLK_SRC] = &gpu_cc_ff_clk_src.clkr,
[GPU_CC_FREQ_MEASURE_CLK] = &gpu_cc_freq_measure_clk.clkr,
[GPU_CC_GMU_CLK_SRC] = &gpu_cc_gmu_clk_src.clkr,
[GPU_CC_GX_FF_CLK] = &gpu_cc_gx_ff_clk.clkr,
[GPU_CC_GX_GFX3D_CLK] = &gpu_cc_gx_gfx3d_clk.clkr,
[GPU_CC_GX_GFX3D_RDVM_CLK] = &gpu_cc_gx_gfx3d_rdvm_clk.clkr,
[GPU_CC_GX_GMU_CLK] = &gpu_cc_gx_gmu_clk.clkr,
[GPU_CC_GX_VSENSE_CLK] = &gpu_cc_gx_vsense_clk.clkr,
[GPU_CC_HLOS1_VOTE_GPU_SMMU_CLK] = &gpu_cc_hlos1_vote_gpu_smmu_clk.clkr,
[GPU_CC_HUB_AON_CLK] = &gpu_cc_hub_aon_clk.clkr,
[GPU_CC_HUB_CLK_SRC] = &gpu_cc_hub_clk_src.clkr,
[GPU_CC_HUB_CX_INT_CLK] = &gpu_cc_hub_cx_int_clk.clkr,
[GPU_CC_MEMNOC_GFX_CLK] = &gpu_cc_memnoc_gfx_clk.clkr,
[GPU_CC_MND1X_0_GFX3D_CLK] = &gpu_cc_mnd1x_0_gfx3d_clk.clkr,
[GPU_CC_MND1X_1_GFX3D_CLK] = &gpu_cc_mnd1x_1_gfx3d_clk.clkr,
[GPU_CC_PLL0] = &gpu_cc_pll0.clkr,
[GPU_CC_PLL1] = &gpu_cc_pll1.clkr,
[GPU_CC_SLEEP_CLK] = &gpu_cc_sleep_clk.clkr,
};
static const struct qcom_reset_map gpu_cc_kalama_resets[] = {
[GPUCC_GPU_CC_ACD_BCR] = { 0x9358 },
[GPUCC_GPU_CC_CX_BCR] = { 0x9104 },
[GPUCC_GPU_CC_FAST_HUB_BCR] = { 0x93e4 },
[GPUCC_GPU_CC_FF_BCR] = { 0x9470 },
[GPUCC_GPU_CC_GFX3D_AON_BCR] = { 0x9198 },
[GPUCC_GPU_CC_GMU_BCR] = { 0x9314 },
[GPUCC_GPU_CC_GX_BCR] = { 0x9058 },
[GPUCC_GPU_CC_XO_BCR] = { 0x9000 },
};
static const struct regmap_config gpu_cc_kalama_regmap_config = {
.reg_bits = 32,
.reg_stride = 4,
.val_bits = 32,
.max_register = 0x9988,
.fast_io = true,
};
static const struct qcom_cc_desc gpu_cc_kalama_desc = {
.config = &gpu_cc_kalama_regmap_config,
.clks = gpu_cc_kalama_clocks,
.num_clks = ARRAY_SIZE(gpu_cc_kalama_clocks),
.resets = gpu_cc_kalama_resets,
.num_resets = ARRAY_SIZE(gpu_cc_kalama_resets),
.clk_regulators = gpu_cc_kalama_regulators,
.num_clk_regulators = ARRAY_SIZE(gpu_cc_kalama_regulators),
};
static const struct of_device_id gpu_cc_kalama_match_table[] = {
{ .compatible = "qcom,kalama-gpucc" },
{ }
};
MODULE_DEVICE_TABLE(of, gpu_cc_kalama_match_table);
static int gpu_cc_kalama_probe(struct platform_device *pdev)
{
struct regmap *regmap;
int ret;
regmap = qcom_cc_map(pdev, &gpu_cc_kalama_desc);
if (IS_ERR(regmap))
return PTR_ERR(regmap);
clk_lucid_ole_pll_configure(&gpu_cc_pll0, regmap, &gpu_cc_pll0_config);
clk_lucid_ole_pll_configure(&gpu_cc_pll1, regmap, &gpu_cc_pll1_config);
ret = qcom_cc_really_probe(pdev, &gpu_cc_kalama_desc, regmap);
if (ret) {
dev_err(&pdev->dev, "Failed to register GPU CC clocks\n");
return ret;
}
dev_info(&pdev->dev, "Registered GPU CC clocks\n");
return ret;
}
static void gpu_cc_kalama_sync_state(struct device *dev)
{
qcom_cc_sync_state(dev, &gpu_cc_kalama_desc);
}
static struct platform_driver gpu_cc_kalama_driver = {
.probe = gpu_cc_kalama_probe,
.driver = {
.name = "gpu_cc-kalama",
.of_match_table = gpu_cc_kalama_match_table,
.sync_state = gpu_cc_kalama_sync_state,
},
};
static int __init gpu_cc_kalama_init(void)
{
return platform_driver_register(&gpu_cc_kalama_driver);
}
subsys_initcall(gpu_cc_kalama_init);
static void __exit gpu_cc_kalama_exit(void)
{
platform_driver_unregister(&gpu_cc_kalama_driver);
}
module_exit(gpu_cc_kalama_exit);
MODULE_DESCRIPTION("QTI GPU_CC KALAMA Driver");
MODULE_LICENSE("GPL");

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// SPDX-License-Identifier: GPL-2.0-only
/*
* Copyright (c) 2021, The Linux Foundation. All rights reserved.
*/
#include <linux/clk.h>
#include <linux/clk-provider.h>
#include <linux/err.h>
#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/of_device.h>
#include <linux/of.h>
#include <linux/regmap.h>
#include <dt-bindings/clock/qcom,tcsrcc-kalama.h>
#include "clk-alpha-pll.h"
#include "clk-branch.h"
#include "clk-pll.h"
#include "clk-rcg.h"
#include "clk-regmap.h"
#include "clk-regmap-divider.h"
#include "clk-regmap-mux.h"
#include "common.h"
#include "reset.h"
#include "vdd-level.h"
static struct clk_branch tcsr_pcie_0_clkref_en = {
.halt_reg = 0x15100,
.halt_check = BRANCH_HALT_SKIP,
.clkr = {
.enable_reg = 0x15100,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "tcsr_pcie_0_clkref_en",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch tcsr_pcie_1_clkref_en = {
.halt_reg = 0x15114,
.halt_check = BRANCH_HALT_SKIP,
.clkr = {
.enable_reg = 0x15114,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "tcsr_pcie_1_clkref_en",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch tcsr_ufs_clkref_en = {
.halt_reg = 0x15110,
.halt_check = BRANCH_HALT_SKIP,
.clkr = {
.enable_reg = 0x15110,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "tcsr_ufs_clkref_en",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch tcsr_ufs_pad_clkref_en = {
.halt_reg = 0x15104,
.halt_check = BRANCH_HALT_SKIP,
.clkr = {
.enable_reg = 0x15104,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "tcsr_ufs_pad_clkref_en",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch tcsr_usb2_clkref_en = {
.halt_reg = 0x15118,
.halt_check = BRANCH_HALT_SKIP,
.clkr = {
.enable_reg = 0x15118,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "tcsr_usb2_clkref_en",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch tcsr_usb3_clkref_en = {
.halt_reg = 0x15108,
.halt_check = BRANCH_HALT_SKIP,
.clkr = {
.enable_reg = 0x15108,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "tcsr_usb3_clkref_en",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_regmap *tcsr_cc_kalama_clocks[] = {
[TCSR_PCIE_0_CLKREF_EN] = &tcsr_pcie_0_clkref_en.clkr,
[TCSR_PCIE_1_CLKREF_EN] = &tcsr_pcie_1_clkref_en.clkr,
[TCSR_UFS_CLKREF_EN] = &tcsr_ufs_clkref_en.clkr,
[TCSR_UFS_PAD_CLKREF_EN] = &tcsr_ufs_pad_clkref_en.clkr,
[TCSR_USB2_CLKREF_EN] = &tcsr_usb2_clkref_en.clkr,
[TCSR_USB3_CLKREF_EN] = &tcsr_usb3_clkref_en.clkr,
};
static const struct regmap_config tcsr_cc_kalama_regmap_config = {
.reg_bits = 32,
.reg_stride = 4,
.val_bits = 32,
.max_register = 0x2f000,
.fast_io = true,
};
static const struct qcom_cc_desc tcsr_cc_kalama_desc = {
.config = &tcsr_cc_kalama_regmap_config,
.clks = tcsr_cc_kalama_clocks,
.num_clks = ARRAY_SIZE(tcsr_cc_kalama_clocks),
};
static const struct of_device_id tcsr_cc_kalama_match_table[] = {
{ .compatible = "qcom,kalama-tcsrcc" },
{ }
};
MODULE_DEVICE_TABLE(of, tcsr_cc_kalama_match_table);
static int tcsr_cc_kalama_probe(struct platform_device *pdev)
{
struct regmap *regmap;
int ret;
regmap = qcom_cc_map(pdev, &tcsr_cc_kalama_desc);
if (IS_ERR(regmap))
return PTR_ERR(regmap);
ret = qcom_cc_really_probe(pdev, &tcsr_cc_kalama_desc, regmap);
if (ret) {
dev_err(&pdev->dev, "Failed to register TCSR CC clocks\n");
return ret;
}
dev_info(&pdev->dev, "Registered TCSR CC clocks\n");
return ret;
}
static void tcsr_cc_kalama_sync_state(struct device *dev)
{
qcom_cc_sync_state(dev, &tcsr_cc_kalama_desc);
}
static struct platform_driver tcsr_cc_kalama_driver = {
.probe = tcsr_cc_kalama_probe,
.driver = {
.name = "tcsr_cc-kalama",
.of_match_table = tcsr_cc_kalama_match_table,
.sync_state = tcsr_cc_kalama_sync_state,
},
};
static int __init tcsr_cc_kalama_init(void)
{
return platform_driver_register(&tcsr_cc_kalama_driver);
}
subsys_initcall(tcsr_cc_kalama_init);
static void __exit tcsr_cc_kalama_exit(void)
{
platform_driver_unregister(&tcsr_cc_kalama_driver);
}
module_exit(tcsr_cc_kalama_exit);
MODULE_DESCRIPTION("QTI TCSR_CC KALAMA Driver");
MODULE_LICENSE("GPL");

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// SPDX-License-Identifier: GPL-2.0-only
/*
* Copyright (c) 2021, The Linux Foundation. All rights reserved.
*/
#include <linux/clk.h>
#include <linux/clk-provider.h>
#include <linux/err.h>
#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/of_device.h>
#include <linux/of.h>
#include <linux/regmap.h>
#include <linux/pm_runtime.h>
#include <dt-bindings/clock/qcom,videocc-kalama.h>
#include "clk-alpha-pll.h"
#include "clk-branch.h"
#include "clk-pll.h"
#include "clk-rcg.h"
#include "clk-regmap.h"
#include "clk-regmap-divider.h"
#include "clk-regmap-mux.h"
#include "common.h"
#include "reset.h"
#include "vdd-level.h"
static DEFINE_VDD_REGULATORS(vdd_mm, VDD_HIGH + 1, 1, vdd_corner);
static DEFINE_VDD_REGULATORS(vdd_mxc, VDD_HIGH + 1, 1, vdd_corner);
static struct clk_vdd_class *video_cc_kalama_regulators[] = {
&vdd_mm,
&vdd_mxc,
};
enum {
P_BI_TCXO,
P_SLEEP_CLK,
P_VIDEO_CC_PLL0_OUT_MAIN,
P_VIDEO_CC_PLL1_OUT_MAIN,
};
static struct pll_vco lucid_ole_vco[] = {
{ 249600000, 2000000000, 0 },
};
static const struct alpha_pll_config video_cc_pll0_config = {
.l = 0x1E,
.cal_l = 0x44,
.cal_l_ringosc = 0x44,
.alpha = 0x0,
.config_ctl_val = 0x20485699,
.config_ctl_hi_val = 0x00182261,
.config_ctl_hi1_val = 0x82AA299C,
.test_ctl_val = 0x00000000,
.test_ctl_hi_val = 0x00000003,
.test_ctl_hi1_val = 0x00009000,
.test_ctl_hi2_val = 0x00000034,
.user_ctl_val = 0x00000000,
.user_ctl_hi_val = 0x00000005,
};
static const struct alpha_pll_config video_cc_pll0_config_kalama_v2 = {
.l = 0x25,
.cal_l = 0x44,
.cal_l_ringosc = 0x44,
.alpha = 0x8000,
.config_ctl_val = 0x20485699,
.config_ctl_hi_val = 0x00182261,
.config_ctl_hi1_val = 0x82AA299C,
.test_ctl_val = 0x00000000,
.test_ctl_hi_val = 0x00000003,
.test_ctl_hi1_val = 0x00009000,
.test_ctl_hi2_val = 0x00000034,
.user_ctl_val = 0x00000000,
.user_ctl_hi_val = 0x00000005,
};
static struct clk_alpha_pll video_cc_pll0 = {
.offset = 0x0,
.vco_table = lucid_ole_vco,
.num_vco = ARRAY_SIZE(lucid_ole_vco),
.regs = clk_alpha_pll_regs[CLK_ALPHA_PLL_TYPE_LUCID_OLE],
.clkr = {
.hw.init = &(struct clk_init_data){
.name = "video_cc_pll0",
.parent_data = &(const struct clk_parent_data){
.fw_name = "bi_tcxo",
},
.num_parents = 1,
.ops = &clk_alpha_pll_lucid_ole_ops,
},
.vdd_data = {
.vdd_class = &vdd_mxc,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER_D1] = 615000000,
[VDD_LOW] = 1100000000,
[VDD_LOW_L1] = 1600000000,
[VDD_NOMINAL] = 2000000000},
},
},
};
static const struct alpha_pll_config video_cc_pll1_config = {
.l = 0x2B,
.cal_l = 0x44,
.cal_l_ringosc = 0x44,
.alpha = 0xC000,
.config_ctl_val = 0x20485699,
.config_ctl_hi_val = 0x00182261,
.config_ctl_hi1_val = 0x82AA299C,
.test_ctl_val = 0x00000000,
.test_ctl_hi_val = 0x00000003,
.test_ctl_hi1_val = 0x00009000,
.test_ctl_hi2_val = 0x00000034,
.user_ctl_val = 0x00000000,
.user_ctl_hi_val = 0x00000005,
};
static const struct alpha_pll_config video_cc_pll1_config_kalama_v2 = {
.l = 0x36,
.cal_l = 0x44,
.cal_l_ringosc = 0x44,
.alpha = 0xB000,
.config_ctl_val = 0x20485699,
.config_ctl_hi_val = 0x00182261,
.config_ctl_hi1_val = 0x82AA299C,
.test_ctl_val = 0x00000000,
.test_ctl_hi_val = 0x00000003,
.test_ctl_hi1_val = 0x00009000,
.test_ctl_hi2_val = 0x00000034,
.user_ctl_val = 0x00000000,
.user_ctl_hi_val = 0x00000005,
};
static struct clk_alpha_pll video_cc_pll1 = {
.offset = 0x1000,
.vco_table = lucid_ole_vco,
.num_vco = ARRAY_SIZE(lucid_ole_vco),
.regs = clk_alpha_pll_regs[CLK_ALPHA_PLL_TYPE_LUCID_OLE],
.clkr = {
.hw.init = &(struct clk_init_data){
.name = "video_cc_pll1",
.parent_data = &(const struct clk_parent_data){
.fw_name = "bi_tcxo",
},
.num_parents = 1,
.ops = &clk_alpha_pll_lucid_ole_ops,
},
.vdd_data = {
.vdd_class = &vdd_mxc,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER_D1] = 615000000,
[VDD_LOW] = 1100000000,
[VDD_LOW_L1] = 1600000000,
[VDD_NOMINAL] = 2000000000},
},
},
};
static const struct parent_map video_cc_parent_map_0[] = {
{ P_BI_TCXO, 0 },
};
static const struct clk_parent_data video_cc_parent_data_0_ao[] = {
{ .fw_name = "bi_tcxo_ao" },
};
static const struct parent_map video_cc_parent_map_1[] = {
{ P_BI_TCXO, 0 },
{ P_VIDEO_CC_PLL0_OUT_MAIN, 1 },
};
static const struct clk_parent_data video_cc_parent_data_1[] = {
{ .fw_name = "bi_tcxo" },
{ .hw = &video_cc_pll0.clkr.hw },
};
static const struct parent_map video_cc_parent_map_2[] = {
{ P_BI_TCXO, 0 },
{ P_VIDEO_CC_PLL1_OUT_MAIN, 1 },
};
static const struct clk_parent_data video_cc_parent_data_2[] = {
{ .fw_name = "bi_tcxo" },
{ .hw = &video_cc_pll1.clkr.hw },
};
static const struct parent_map video_cc_parent_map_3[] = {
{ P_SLEEP_CLK, 0 },
};
static const struct clk_parent_data video_cc_parent_data_3[] = {
{ .fw_name = "sleep_clk" },
};
static const struct freq_tbl ftbl_video_cc_ahb_clk_src[] = {
F(19200000, P_BI_TCXO, 1, 0, 0),
{ }
};
static struct clk_rcg2 video_cc_ahb_clk_src = {
.cmd_rcgr = 0x8030,
.mnd_width = 0,
.hid_width = 5,
.parent_map = video_cc_parent_map_0,
.freq_tbl = ftbl_video_cc_ahb_clk_src,
.enable_safe_config = true,
.flags = HW_CLK_CTRL_MODE,
.clkr.hw.init = &(struct clk_init_data){
.name = "video_cc_ahb_clk_src",
.parent_data = video_cc_parent_data_0_ao,
.num_parents = ARRAY_SIZE(video_cc_parent_data_0_ao),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
},
};
static const struct freq_tbl ftbl_video_cc_mvs0_clk_src[] = {
F(576000000, P_VIDEO_CC_PLL0_OUT_MAIN, 1, 0, 0),
F(720000000, P_VIDEO_CC_PLL0_OUT_MAIN, 1, 0, 0),
F(1014000000, P_VIDEO_CC_PLL0_OUT_MAIN, 1, 0, 0),
F(1098000000, P_VIDEO_CC_PLL0_OUT_MAIN, 1, 0, 0),
F(1332000000, P_VIDEO_CC_PLL0_OUT_MAIN, 1, 0, 0),
F(1443000000, P_VIDEO_CC_PLL0_OUT_MAIN, 1, 0, 0),
{ }
};
static const struct freq_tbl ftbl_video_cc_mvs0_clk_src_kalama_v2[] = {
F(720000000, P_VIDEO_CC_PLL0_OUT_MAIN, 1, 0, 0),
F(1014000000, P_VIDEO_CC_PLL0_OUT_MAIN, 1, 0, 0),
F(1098000000, P_VIDEO_CC_PLL0_OUT_MAIN, 1, 0, 0),
F(1332000000, P_VIDEO_CC_PLL0_OUT_MAIN, 1, 0, 0),
F(1600000000, P_VIDEO_CC_PLL0_OUT_MAIN, 1, 0, 0),
{ }
};
static struct clk_rcg2 video_cc_mvs0_clk_src = {
.cmd_rcgr = 0x8000,
.mnd_width = 0,
.hid_width = 5,
.parent_map = video_cc_parent_map_1,
.freq_tbl = ftbl_video_cc_mvs0_clk_src,
.enable_safe_config = true,
.flags = HW_CLK_CTRL_MODE,
.clkr.hw.init = &(struct clk_init_data){
.name = "video_cc_mvs0_clk_src",
.parent_data = video_cc_parent_data_1,
.num_parents = ARRAY_SIZE(video_cc_parent_data_1),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
},
.clkr.vdd_data = {
.vdd_classes = video_cc_kalama_regulators,
.num_vdd_classes = ARRAY_SIZE(video_cc_kalama_regulators),
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER_D1] = 576000000,
[VDD_LOWER] = 720000000,
[VDD_LOW] = 1014000000,
[VDD_LOW_L1] = 1098000000,
[VDD_NOMINAL] = 1332000000,
[VDD_HIGH] = 1443000000},
},
};
static const struct freq_tbl ftbl_video_cc_mvs1_clk_src[] = {
F(840000000, P_VIDEO_CC_PLL1_OUT_MAIN, 1, 0, 0),
F(1050000000, P_VIDEO_CC_PLL1_OUT_MAIN, 1, 0, 0),
F(1350000000, P_VIDEO_CC_PLL1_OUT_MAIN, 1, 0, 0),
F(1500000000, P_VIDEO_CC_PLL1_OUT_MAIN, 1, 0, 0),
F(1650000000, P_VIDEO_CC_PLL1_OUT_MAIN, 1, 0, 0),
{ }
};
static const struct freq_tbl ftbl_video_cc_mvs1_clk_src_kalama_v2[] = {
F(1050000000, P_VIDEO_CC_PLL1_OUT_MAIN, 1, 0, 0),
F(1350000000, P_VIDEO_CC_PLL1_OUT_MAIN, 1, 0, 0),
F(1500000000, P_VIDEO_CC_PLL1_OUT_MAIN, 1, 0, 0),
F(1650000000, P_VIDEO_CC_PLL1_OUT_MAIN, 1, 0, 0),
{ }
};
static struct clk_rcg2 video_cc_mvs1_clk_src = {
.cmd_rcgr = 0x8018,
.mnd_width = 0,
.hid_width = 5,
.parent_map = video_cc_parent_map_2,
.freq_tbl = ftbl_video_cc_mvs1_clk_src,
.enable_safe_config = true,
.flags = HW_CLK_CTRL_MODE,
.clkr.hw.init = &(struct clk_init_data){
.name = "video_cc_mvs1_clk_src",
.parent_data = video_cc_parent_data_2,
.num_parents = ARRAY_SIZE(video_cc_parent_data_2),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
},
.clkr.vdd_data = {
.vdd_classes = video_cc_kalama_regulators,
.num_vdd_classes = ARRAY_SIZE(video_cc_kalama_regulators),
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER_D1] = 840000000,
[VDD_LOWER] = 1050000000,
[VDD_LOW] = 1350000000,
[VDD_LOW_L1] = 1500000000,
[VDD_NOMINAL] = 1650000000},
},
};
static const struct freq_tbl ftbl_video_cc_sleep_clk_src[] = {
F(32000, P_SLEEP_CLK, 1, 0, 0),
{ }
};
static struct clk_rcg2 video_cc_sleep_clk_src = {
.cmd_rcgr = 0x8128,
.mnd_width = 0,
.hid_width = 5,
.parent_map = video_cc_parent_map_3,
.freq_tbl = ftbl_video_cc_sleep_clk_src,
.clkr.hw.init = &(struct clk_init_data){
.name = "video_cc_sleep_clk_src",
.parent_data = video_cc_parent_data_3,
.num_parents = ARRAY_SIZE(video_cc_parent_data_3),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
},
.clkr.vdd_data = {
.vdd_class = &vdd_mm,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER_D1] = 32000},
},
};
static struct clk_rcg2 video_cc_xo_clk_src = {
.cmd_rcgr = 0x810c,
.mnd_width = 0,
.hid_width = 5,
.parent_map = video_cc_parent_map_0,
.freq_tbl = ftbl_video_cc_ahb_clk_src,
.clkr.hw.init = &(struct clk_init_data){
.name = "video_cc_xo_clk_src",
.parent_data = video_cc_parent_data_0_ao,
.num_parents = ARRAY_SIZE(video_cc_parent_data_0_ao),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
},
};
static struct clk_regmap_div video_cc_mvs0_div_clk_src = {
.reg = 0x80c4,
.shift = 0,
.width = 4,
.clkr.hw.init = &(struct clk_init_data) {
.name = "video_cc_mvs0_div_clk_src",
.parent_hws = (const struct clk_hw*[]){
&video_cc_mvs0_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_regmap_div_ro_ops,
},
};
static struct clk_regmap_div video_cc_mvs0c_div2_div_clk_src = {
.reg = 0x8070,
.shift = 0,
.width = 4,
.clkr.hw.init = &(struct clk_init_data) {
.name = "video_cc_mvs0c_div2_div_clk_src",
.parent_hws = (const struct clk_hw*[]){
&video_cc_mvs0_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_regmap_div_ro_ops,
},
};
static struct clk_regmap_div video_cc_mvs1_div_clk_src = {
.reg = 0x80ec,
.shift = 0,
.width = 4,
.clkr.hw.init = &(struct clk_init_data) {
.name = "video_cc_mvs1_div_clk_src",
.parent_hws = (const struct clk_hw*[]){
&video_cc_mvs1_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_regmap_div_ro_ops,
},
};
static struct clk_regmap_div video_cc_mvs1c_div2_div_clk_src = {
.reg = 0x809c,
.shift = 0,
.width = 4,
.clkr.hw.init = &(struct clk_init_data) {
.name = "video_cc_mvs1c_div2_div_clk_src",
.parent_hws = (const struct clk_hw*[]){
&video_cc_mvs1_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_regmap_div_ro_ops,
},
};
static struct clk_branch video_cc_mvs0_clk = {
.halt_reg = 0x80b8,
.halt_check = BRANCH_HALT_VOTED,
.hwcg_reg = 0x80b8,
.hwcg_bit = 1,
.clkr = {
.enable_reg = 0x80b8,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "video_cc_mvs0_clk",
.parent_hws = (const struct clk_hw*[]){
&video_cc_mvs0_div_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch video_cc_mvs0c_clk = {
.halt_reg = 0x8064,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x8064,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "video_cc_mvs0c_clk",
.parent_hws = (const struct clk_hw*[]){
&video_cc_mvs0c_div2_div_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch video_cc_mvs1_clk = {
.halt_reg = 0x80e0,
.halt_check = BRANCH_HALT_VOTED,
.hwcg_reg = 0x80e0,
.hwcg_bit = 1,
.clkr = {
.enable_reg = 0x80e0,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "video_cc_mvs1_clk",
.parent_hws = (const struct clk_hw*[]){
&video_cc_mvs1_div_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch video_cc_mvs1c_clk = {
.halt_reg = 0x8090,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x8090,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "video_cc_mvs1c_clk",
.parent_hws = (const struct clk_hw*[]){
&video_cc_mvs1c_div2_div_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch video_cc_sleep_clk = {
.halt_reg = 0x8140,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x8140,
.enable_mask = BIT(0),
.hw.init = &(struct clk_init_data){
.name = "video_cc_sleep_clk",
.parent_hws = (const struct clk_hw*[]){
&video_cc_sleep_clk_src.clkr.hw,
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_regmap *video_cc_kalama_clocks[] = {
[VIDEO_CC_AHB_CLK_SRC] = &video_cc_ahb_clk_src.clkr,
[VIDEO_CC_MVS0_CLK] = &video_cc_mvs0_clk.clkr,
[VIDEO_CC_MVS0_CLK_SRC] = &video_cc_mvs0_clk_src.clkr,
[VIDEO_CC_MVS0_DIV_CLK_SRC] = &video_cc_mvs0_div_clk_src.clkr,
[VIDEO_CC_MVS0C_CLK] = &video_cc_mvs0c_clk.clkr,
[VIDEO_CC_MVS0C_DIV2_DIV_CLK_SRC] = &video_cc_mvs0c_div2_div_clk_src.clkr,
[VIDEO_CC_MVS1_CLK] = &video_cc_mvs1_clk.clkr,
[VIDEO_CC_MVS1_CLK_SRC] = &video_cc_mvs1_clk_src.clkr,
[VIDEO_CC_MVS1_DIV_CLK_SRC] = &video_cc_mvs1_div_clk_src.clkr,
[VIDEO_CC_MVS1C_CLK] = &video_cc_mvs1c_clk.clkr,
[VIDEO_CC_MVS1C_DIV2_DIV_CLK_SRC] = &video_cc_mvs1c_div2_div_clk_src.clkr,
[VIDEO_CC_PLL0] = &video_cc_pll0.clkr,
[VIDEO_CC_PLL1] = &video_cc_pll1.clkr,
[VIDEO_CC_SLEEP_CLK] = &video_cc_sleep_clk.clkr,
[VIDEO_CC_SLEEP_CLK_SRC] = &video_cc_sleep_clk_src.clkr,
[VIDEO_CC_XO_CLK_SRC] = &video_cc_xo_clk_src.clkr,
};
static const struct qcom_reset_map video_cc_kalama_resets[] = {
[CVP_VIDEO_CC_INTERFACE_BCR] = { 0x80f0 },
[CVP_VIDEO_CC_MVS0_BCR] = { 0x80a0 },
[VIDEO_CC_MVS0C_CLK_ARES] = { 0x8064, 2 },
[CVP_VIDEO_CC_MVS0C_BCR] = { 0x8048 },
[CVP_VIDEO_CC_MVS1_BCR] = { 0x80c8 },
[VIDEO_CC_MVS1C_CLK_ARES] = { 0x8090, 2 },
[CVP_VIDEO_CC_MVS1C_BCR] = { 0x8074 },
};
static const struct regmap_config video_cc_kalama_regmap_config = {
.reg_bits = 32,
.reg_stride = 4,
.val_bits = 32,
.max_register = 0x9f4c,
.fast_io = true,
};
static struct qcom_cc_desc video_cc_kalama_desc = {
.config = &video_cc_kalama_regmap_config,
.clks = video_cc_kalama_clocks,
.num_clks = ARRAY_SIZE(video_cc_kalama_clocks),
.resets = video_cc_kalama_resets,
.num_resets = ARRAY_SIZE(video_cc_kalama_resets),
.clk_regulators = video_cc_kalama_regulators,
.num_clk_regulators = ARRAY_SIZE(video_cc_kalama_regulators),
};
static const struct of_device_id video_cc_kalama_match_table[] = {
{ .compatible = "qcom,kalama-videocc" },
{ .compatible = "qcom,kalama-videocc-v2" },
{ }
};
MODULE_DEVICE_TABLE(of, video_cc_kalama_match_table);
static void video_cc_kalama_fixup_kalamav2(struct regmap *regmap)
{
clk_lucid_ole_pll_configure(&video_cc_pll0, regmap, &video_cc_pll0_config_kalama_v2);
clk_lucid_ole_pll_configure(&video_cc_pll1, regmap, &video_cc_pll1_config_kalama_v2);
video_cc_mvs0_clk_src.freq_tbl = ftbl_video_cc_mvs0_clk_src_kalama_v2;
video_cc_mvs0_clk_src.clkr.vdd_data.rate_max[VDD_LOWER_D1] = 0;
video_cc_mvs0_clk_src.clkr.vdd_data.rate_max[VDD_HIGH] = 1600000000;
video_cc_mvs1_clk_src.freq_tbl = ftbl_video_cc_mvs1_clk_src_kalama_v2;
video_cc_mvs1_clk_src.clkr.vdd_data.rate_max[VDD_LOWER_D1] = 0;
video_cc_sleep_clk_src.clkr.vdd_data.rate_max[VDD_LOWER_D1] = 0;
video_cc_sleep_clk_src.clkr.vdd_data.rate_max[VDD_LOWER] = 32000;
}
static int video_cc_kalama_fixup(struct platform_device *pdev, struct regmap *regmap)
{
const char *compat = NULL;
int compatlen = 0;
compat = of_get_property(pdev->dev.of_node, "compatible", &compatlen);
if (!compat || compatlen <= 0)
return -EINVAL;
if (!strcmp(compat, "qcom,kalama-videocc-v2"))
video_cc_kalama_fixup_kalamav2(regmap);
return 0;
}
static int video_cc_kalama_probe(struct platform_device *pdev)
{
struct regmap *regmap;
int ret;
regmap = qcom_cc_map(pdev, &video_cc_kalama_desc);
if (IS_ERR(regmap))
return PTR_ERR(regmap);
ret = qcom_cc_runtime_init(pdev, &video_cc_kalama_desc);
if (ret)
return ret;
ret = pm_runtime_get_sync(&pdev->dev);
if (ret)
return ret;
clk_lucid_ole_pll_configure(&video_cc_pll0, regmap, &video_cc_pll0_config);
clk_lucid_ole_pll_configure(&video_cc_pll1, regmap, &video_cc_pll1_config);
ret = video_cc_kalama_fixup(pdev, regmap);
if (ret)
return ret;
/*
* Keep clocks always enabled:
* video_cc_ahb_clk
* video_cc_xo_clk
*/
regmap_update_bits(regmap, 0x80f4, BIT(0), BIT(0));
regmap_update_bits(regmap, 0x8124, BIT(0), BIT(0));
ret = qcom_cc_really_probe(pdev, &video_cc_kalama_desc, regmap);
if (ret) {
dev_err(&pdev->dev, "Failed to register VIDEO CC clocks\n");
return ret;
}
pm_runtime_put_sync(&pdev->dev);
dev_info(&pdev->dev, "Registered VIDEO CC clocks\n");
return ret;
}
static void video_cc_kalama_sync_state(struct device *dev)
{
qcom_cc_sync_state(dev, &video_cc_kalama_desc);
}
static const struct dev_pm_ops video_cc_kalama_pm_ops = {
SET_RUNTIME_PM_OPS(qcom_cc_runtime_suspend, qcom_cc_runtime_resume, NULL)
SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
pm_runtime_force_resume)
};
static struct platform_driver video_cc_kalama_driver = {
.probe = video_cc_kalama_probe,
.driver = {
.name = "video_cc-kalama",
.of_match_table = video_cc_kalama_match_table,
.sync_state = video_cc_kalama_sync_state,
.pm = &video_cc_kalama_pm_ops,
},
};
static int __init video_cc_kalama_init(void)
{
return platform_driver_register(&video_cc_kalama_driver);
}
subsys_initcall(video_cc_kalama_init);
static void __exit video_cc_kalama_exit(void)
{
platform_driver_unregister(&video_cc_kalama_driver);
}
module_exit(video_cc_kalama_exit);
MODULE_DESCRIPTION("QTI VIDEO_CC KALAMA Driver");
MODULE_LICENSE("GPL");