Merge tag 'LA.UM.9.15.2.r1-11100-KAMORTA.QSSI14.0' of https://git.codelinaro.org/clo/la/kernel/msm-4.19 into android13-4.19-kona

"LA.UM.9.15.2.r1-11100-KAMORTA.QSSI14.0"

* tag 'LA.UM.9.15.2.r1-11100-KAMORTA.QSSI14.0' of https://git.codelinaro.org/clo/la/kernel/msm-4.19:
  msm: eva: Copy back the validated size to avoid security issue
  msm: adsprpc: Avoid double free on map
  msm: npu: Fix use after free issue
  msm: npu: Fix use after free issue
  clk: qcom: lpasscc-scuba: Add Support for AON & AUDIO clock drivers
  dt-bindings: clk: lpasscc-scuba: Add support for LPASS AONCC and AUDIOCC
  msm: ipa: clean up netdev resources in AFTER_SHUTDOWN cb
  Slimbus: slim-msm-ngd: Avoid accessing deallocated stack

Change-Id: I4eb6096f7140d127f8bf3d2c299550aec2720bc1
This commit is contained in:
Michael Bestas
2025-02-14 04:05:00 +02:00
13 changed files with 2256 additions and 12 deletions

View File

@@ -900,9 +900,11 @@ static void fastrpc_mmap_free(struct fastrpc_mmap *map, uint32_t flags)
map->refs--;
if (!map->refs)
hlist_del_init(&map->hn);
spin_unlock(&me->hlock);
if (map->refs > 0)
if (map->refs > 0) {
spin_unlock(&me->hlock);
return;
}
spin_unlock(&me->hlock);
} else {
if (map->refs)
map->refs--;

View File

@@ -544,6 +544,15 @@ config QM_DEBUGCC_SCUBA
SCUBA devices.
Say Y if you want to support the clock measurement functionality.
config QM_LPASS_AUDIOCC_SCUBA
tristate "SCUBA Audio Clock Controllers"
select QM_GCC_SCUBA
help
Support for the LPASS(Low-Power Audio Subsytem) aon & audio clock
controllers on Qualcomm Technologies, Inc SCUBA devices.
Say Y if you want to use LPASS AUDIOCC and AONCC clocks required
to support audio devices and its functionalities.
config SDM_GCC_660
tristate "SDM660 Global Clock Controller"
depends on COMMON_CLK_QCOM

View File

@@ -54,6 +54,7 @@ obj-$(CONFIG_QCOM_CLK_SMD_RPM) += clk-smd-rpm.o
obj-$(CONFIG_QM_DISPCC_SCUBA) += dispcc-scuba.o
obj-$(CONFIG_QM_GCC_SCUBA) += gcc-scuba.o
obj-$(CONFIG_QM_GPUCC_SCUBA) += gpucc-scuba.o
obj-$(CONFIG_QM_LPASS_AUDIOCC_SCUBA) += lpassaoncc-scuba.o lpassaudiocc-scuba.o
obj-$(CONFIG_QM_DEBUGCC_SCUBA) += debugcc-scuba.o
obj-$(CONFIG_SDM_CAMCC_LAGOON) += camcc-lagoon.o
obj-$(CONFIG_SDM_DEBUGCC_429W) += debugcc-sdm429w.o

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@@ -0,0 +1,854 @@
// SPDX-License-Identifier: GPL-2.0-only
/*
* Copyright (c) 2024, Qualcomm Innovation Center, Inc. All rights reserved.
*/
#include <linux/clk-provider.h>
#include <linux/mod_devicetable.h>
#include <linux/module.h>
#include <linux/of.h>
#include <linux/platform_device.h>
#include <linux/regmap.h>
#include <linux/pm_runtime.h>
#include <linux/pm_clock.h>
#include <dt-bindings/clock/qcom,scuba-lpassaoncc.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_lpi_cx, VDD_NUM + 1, 1, vdd_corner);
enum {
P_BI_TCXO,
P_LPASS_AON_CC_PLL_OUT_AUX,
P_LPASS_AON_CC_PLL_OUT_AUX2,
P_LPASS_AON_CC_PLL_OUT_EARLY,
P_LPASS_AUDIO_CC_PLL_MAIN_DIV_CLK,
P_LPASS_CORE_CC_PLL_ODD_CLK,
};
static const struct parent_map lpass_aon_cc_parent_map_0[] = {
{ P_BI_TCXO, 0 },
{ P_LPASS_AON_CC_PLL_OUT_EARLY, 2 },
};
static const char * const lpass_aon_cc_parent_names_0[] = {
"bi_tcxo",
"lpass_aon_cc_pll",
};
static const struct parent_map lpass_aon_cc_parent_map_1[] = {
{ P_BI_TCXO, 0 },
{ P_BI_TCXO, 4 },
};
static const char * const lpass_aon_cc_parent_names_1_ao[] = {
"bi_tcxo_ao",
"bi_tcxo",
};
static const struct parent_map lpass_aon_cc_parent_map_2[] = {
{ P_BI_TCXO, 0 },
{ P_LPASS_AON_CC_PLL_OUT_AUX2, 4 },
};
static const char * const lpass_aon_cc_parent_names_2[] = {
"bi_tcxo",
"lpass_aon_cc_pll_out_aux2",
};
static const struct parent_map lpass_aon_cc_parent_map_3[] = {
{ P_BI_TCXO, 0 },
{ P_LPASS_AON_CC_PLL_OUT_AUX, 1 },
{ P_LPASS_CORE_CC_PLL_ODD_CLK, 2 },
{ P_LPASS_AUDIO_CC_PLL_MAIN_DIV_CLK, 6 },
};
static const char * const lpass_aon_cc_parent_names_3[] = {
"bi_tcxo",
"lpass_aon_cc_pll_out_aux",
"lpass_core_cc_pll_odd_clk",
"lpass_audio_cc_pll_main_div_clk",
};
static const struct parent_map lpass_aon_cc_parent_map_4[] = {
{ P_BI_TCXO, 0 },
};
static const char * const lpass_aon_cc_parent_names_4[] = {
"bi_tcxo",
};
static const struct pll_vco aoncc_pll_vco[] = {
{ 1000000000, 2000000000, 0 },
{ 750000000, 1500000000, 1 },
{ 500000000, 1000000000, 2 },
{ 250000000, 500000000, 3 },
};
/* 614.4 MHz Configuration */
static const struct alpha_pll_config lpass_aon_cc_pll_config = {
.l = 0x20,
.config_ctl_val = 0x4001055b,
.user_ctl_val = 0x200101,
.user_ctl_hi_val = 0x4,
.test_ctl_val = 0,
.test_ctl_hi_val = 0x1,
.main_output_mask = BIT(0),
.aux_output_mask = BIT(1),
.aux2_output_mask = BIT(2),
.early_output_mask = BIT(3),
.post_div_val = 0x281 << 8,
.post_div_mask = GENMASK(17, 8),
.vco_val = 0x2 << 20,
.vco_mask = GENMASK(21, 20),
.test_ctl_mask = GENMASK(31, 0),
.test_ctl_hi_mask = 0x1,
};
static struct clk_alpha_pll lpass_aon_cc_pll = {
.offset = 0x0,
.vco_table = aoncc_pll_vco,
.num_vco = ARRAY_SIZE(aoncc_pll_vco),
.regs = clk_alpha_pll_regs[CLK_ALPHA_PLL_TYPE_DEFAULT],
.clkr = {
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_pll",
.parent_names = (const char *[]){ "bi_tcxo" },
.num_parents = 1,
.ops = &clk_alpha_pll_ops,
.vdd_class = &vdd_lpi_cx,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_MIN] = 1000000000,
[VDD_NOMINAL] = 2000000000},
},
},
};
static const struct clk_div_table post_div_table_lpass_aon_cc_pll_out_aux[] = {
{ 0x5, 5 },
{ }
};
static struct clk_alpha_pll_postdiv lpass_aon_cc_pll_out_aux = {
.offset = 0x0,
.post_div_shift = 15,
.post_div_table = post_div_table_lpass_aon_cc_pll_out_aux,
.num_post_div = ARRAY_SIZE(post_div_table_lpass_aon_cc_pll_out_aux),
.width = 3,
.regs = clk_alpha_pll_regs[CLK_ALPHA_PLL_TYPE_DEFAULT],
.clkr.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_pll_out_aux",
.parent_names = (const char *[]){ "lpass_aon_cc_pll" },
.num_parents = 1,
.ops = &clk_alpha_pll_postdiv_fabia_ops,
},
};
static const struct clk_div_table post_div_table_lpass_aon_cc_pll_out_aux2[] = {
{ 0x1, 2 },
{ }
};
static struct clk_alpha_pll_postdiv lpass_aon_cc_pll_out_aux2 = {
.offset = 0x0,
.post_div_shift = 8,
.post_div_table = post_div_table_lpass_aon_cc_pll_out_aux2,
.num_post_div = ARRAY_SIZE(post_div_table_lpass_aon_cc_pll_out_aux2),
.width = 4,
.regs = clk_alpha_pll_regs[CLK_ALPHA_PLL_TYPE_DEFAULT],
.clkr.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_pll_out_aux2",
.parent_names = (const char *[]){ "lpass_aon_cc_pll" },
.num_parents = 1,
.ops = &clk_alpha_pll_postdiv_fabia_ops,
},
};
static struct clk_regmap_div lpass_aon_cc_cdiv_tx_mclk_div_clk_src = {
.reg = 0x13010,
.shift = 0,
.width = 2,
.clkr.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_cdiv_tx_mclk_div_clk_src",
.parent_names = (const char *[])
{ "lpass_aon_cc_tx_mclk_rcg_clk_src" },
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_regmap_div_ro_ops,
},
};
static struct clk_regmap_div lpass_aon_cc_cdiv_va_div_clk_src = {
.reg = 0x12010,
.shift = 0,
.width = 2,
.clkr.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_cdiv_va_div_clk_src",
.parent_names = (const char *[])
{ "lpass_aon_cc_va_rcg_clk_src" },
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_regmap_div_ro_ops,
},
};
static const struct freq_tbl ftbl_lpass_aon_cc_cpr_clk_src[] = {
F(19200000, P_BI_TCXO, 1, 0, 0),
{ }
};
static struct clk_rcg2 lpass_aon_cc_cpr_clk_src = {
.cmd_rcgr = 0x2004,
.mnd_width = 0,
.hid_width = 5,
.parent_map = lpass_aon_cc_parent_map_1,
.freq_tbl = ftbl_lpass_aon_cc_cpr_clk_src,
.enable_safe_config = true,
.clkr.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_cpr_clk_src",
.parent_names = lpass_aon_cc_parent_names_1_ao,
.num_parents = ARRAY_SIZE(lpass_aon_cc_parent_names_1_ao),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
},
};
static const struct freq_tbl ftbl_lpass_aon_cc_main_rcg_clk_src[] = {
F(38400000, P_LPASS_AON_CC_PLL_OUT_AUX2, 8, 0, 0),
F(76800000, P_LPASS_AON_CC_PLL_OUT_AUX2, 4, 0, 0),
{ }
};
static struct clk_rcg2 lpass_aon_cc_main_rcg_clk_src = {
.cmd_rcgr = 0x1000,
.mnd_width = 0,
.hid_width = 5,
.parent_map = lpass_aon_cc_parent_map_2,
.freq_tbl = ftbl_lpass_aon_cc_main_rcg_clk_src,
.enable_safe_config = true,
.clkr.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_main_rcg_clk_src",
.parent_names = lpass_aon_cc_parent_names_2,
.num_parents = ARRAY_SIZE(lpass_aon_cc_parent_names_2),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
.vdd_class = &vdd_lpi_cx,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER] = 38400000,
[VDD_NOMINAL] = 76800000},
},
};
static struct clk_rcg2 lpass_aon_cc_q6_xo_clk_src = {
.cmd_rcgr = 0x8004,
.mnd_width = 0,
.hid_width = 5,
.parent_map = lpass_aon_cc_parent_map_1,
.freq_tbl = ftbl_lpass_aon_cc_cpr_clk_src,
.enable_safe_config = true,
.clkr.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_q6_xo_clk_src",
.parent_names = lpass_aon_cc_parent_names_1_ao,
.num_parents = ARRAY_SIZE(lpass_aon_cc_parent_names_1_ao),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
},
};
static const struct freq_tbl ftbl_lpass_aon_cc_tx_mclk_rcg_clk_src[] = {
F(19200000, P_BI_TCXO, 1, 0, 0),
F(24576000, P_LPASS_AON_CC_PLL_OUT_AUX, 5, 0, 0),
{ }
};
static struct clk_rcg2 lpass_aon_cc_tx_mclk_rcg_clk_src = {
.cmd_rcgr = 0x13004,
.mnd_width = 0,
.hid_width = 5,
.parent_map = lpass_aon_cc_parent_map_3,
.freq_tbl = ftbl_lpass_aon_cc_tx_mclk_rcg_clk_src,
.enable_safe_config = true,
.clkr.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_tx_mclk_rcg_clk_src",
.parent_names = lpass_aon_cc_parent_names_3,
.num_parents = ARRAY_SIZE(lpass_aon_cc_parent_names_3),
.ops = &clk_rcg2_ops,
.vdd_class = &vdd_lpi_cx,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER] = 24576000},
},
};
static const struct freq_tbl ftbl_lpass_aon_cc_va_rcg_clk_src[] = {
F(19200000, P_BI_TCXO, 1, 0, 0),
{ }
};
static struct clk_rcg2 lpass_aon_cc_va_rcg_clk_src = {
.cmd_rcgr = 0x12004,
.mnd_width = 0,
.hid_width = 5,
.parent_map = lpass_aon_cc_parent_map_4,
.freq_tbl = ftbl_lpass_aon_cc_va_rcg_clk_src,
.enable_safe_config = true,
.clkr.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_va_rcg_clk_src",
.parent_names = lpass_aon_cc_parent_names_4,
.num_parents = ARRAY_SIZE(lpass_aon_cc_parent_names_4),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
.vdd_class = &vdd_lpi_cx,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER] = 19200000},
},
};
static const struct freq_tbl ftbl_lpass_aon_cc_vs_vddcx_clk_src[] = {
F(19200000, P_BI_TCXO, 1, 0, 0),
F(614400000, P_LPASS_AON_CC_PLL_OUT_EARLY, 1, 0, 0),
{ }
};
static struct clk_rcg2 lpass_aon_cc_vs_vddcx_clk_src = {
.cmd_rcgr = 0x15010,
.mnd_width = 0,
.hid_width = 5,
.parent_map = lpass_aon_cc_parent_map_0,
.freq_tbl = ftbl_lpass_aon_cc_vs_vddcx_clk_src,
.enable_safe_config = true,
.clkr.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_vs_vddcx_clk_src",
.parent_names = lpass_aon_cc_parent_names_0,
.num_parents = ARRAY_SIZE(lpass_aon_cc_parent_names_0),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
.vdd_class = &vdd_lpi_cx,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER] = 614400000},
},
};
static struct clk_rcg2 lpass_aon_cc_vs_vddmx_clk_src = {
.cmd_rcgr = 0x15000,
.mnd_width = 0,
.hid_width = 5,
.parent_map = lpass_aon_cc_parent_map_0,
.freq_tbl = ftbl_lpass_aon_cc_vs_vddcx_clk_src,
.enable_safe_config = true,
.clkr.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_vs_vddmx_clk_src",
.parent_names = lpass_aon_cc_parent_names_0,
.num_parents = ARRAY_SIZE(lpass_aon_cc_parent_names_0),
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_rcg2_ops,
.vdd_class = &vdd_lpi_cx,
.num_rate_max = VDD_NUM,
.rate_max = (unsigned long[VDD_NUM]) {
[VDD_LOWER] = 614400000},
},
};
static struct clk_branch lpass_aon_cc_ahb_timeout_clk = {
.halt_reg = 0x9030,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x9030,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_ahb_timeout_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_main_rcg_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_aon_h_clk = {
.halt_reg = 0x903c,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x903c,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_aon_h_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_main_rcg_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_bus_alt_clk = {
.halt_reg = 0x9048,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x9048,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_bus_alt_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_main_rcg_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_csr_h_clk = {
.halt_reg = 0x9010,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x9010,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_csr_h_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_main_rcg_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_mcc_access_clk = {
.halt_reg = 0x904c,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x904c,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_mcc_access_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_main_rcg_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_pdc_h_clk = {
.halt_reg = 0x900c,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x900c,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_pdc_h_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_main_rcg_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_q6_atbm_clk = {
.halt_reg = 0xa010,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0xa010,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_q6_atbm_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_qsm_xo_clk = {
.halt_reg = 0x6000,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x6000,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_qsm_xo_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_q6_xo_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_rsc_hclk_clk = {
.halt_reg = 0x9078,
.halt_check = BRANCH_HALT,
.hwcg_reg = 0x9078,
.hwcg_bit = 1,
.clkr = {
.enable_reg = 0x9078,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_rsc_hclk_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_main_rcg_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_sleep_clk = {
.halt_reg = 0x10004,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x10004,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_sleep_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_ssc_h_clk = {
.halt_reg = 0x9040,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x9040,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_ssc_h_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_main_rcg_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_tx_mclk_2x_clk = {
.halt_reg = 0x1300c,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x1300c,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_tx_mclk_2x_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_tx_mclk_rcg_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_tx_mclk_clk = {
.halt_reg = 0x13014,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x13014,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_tx_mclk_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_cdiv_tx_mclk_div_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_va_2x_clk = {
.halt_reg = 0x1200c,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x1200c,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_va_2x_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_va_rcg_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_va_clk = {
.halt_reg = 0x12014,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x12014,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_va_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_cdiv_va_div_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_va_mem0_clk = {
.halt_reg = 0x9028,
.halt_check = BRANCH_HALT,
.clkr = {
.enable_reg = 0x9028,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_va_mem0_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_main_rcg_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_vs_vddcx_clk = {
.halt_reg = 0x15018,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x15018,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_vs_vddcx_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_vs_vddcx_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_aon_cc_vs_vddmx_clk = {
.halt_reg = 0x15008,
.halt_check = BRANCH_HALT_VOTED,
.clkr = {
.enable_reg = 0x15008,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_aon_cc_vs_vddmx_clk",
.parent_names = (const char *[]){
"lpass_aon_cc_vs_vddmx_clk_src",
},
.num_parents = 1,
.flags = CLK_SET_RATE_PARENT,
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_qdsp6ss_sleep_clk = {
.halt_reg = 0x3c,
.halt_check = BRANCH_HALT_DELAY,
.clkr = {
.enable_reg = 0x3c,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_qdsp6ss_sleep_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_branch lpass_qdsp6ss_xo_clk = {
.halt_reg = 0x38,
.halt_check = BRANCH_HALT_DELAY,
.clkr = {
.enable_reg = 0x38,
.enable_mask = BIT(0),
.hw.init = &(const struct clk_init_data) {
.name = "lpass_qdsp6ss_xo_clk",
.ops = &clk_branch2_ops,
},
},
};
static struct clk_regmap *lpass_aon_cc_scuba_clocks[] = {
[LPASS_AON_CC_AHB_TIMEOUT_CLK] = &lpass_aon_cc_ahb_timeout_clk.clkr,
[LPASS_AON_CC_AON_H_CLK] = &lpass_aon_cc_aon_h_clk.clkr,
[LPASS_AON_CC_BUS_ALT_CLK] = &lpass_aon_cc_bus_alt_clk.clkr,
[LPASS_AON_CC_CDIV_TX_MCLK_DIV_CLK_SRC] =
&lpass_aon_cc_cdiv_tx_mclk_div_clk_src.clkr,
[LPASS_AON_CC_CDIV_VA_DIV_CLK_SRC] =
&lpass_aon_cc_cdiv_va_div_clk_src.clkr,
[LPASS_AON_CC_CPR_CLK_SRC] = &lpass_aon_cc_cpr_clk_src.clkr,
[LPASS_AON_CC_CSR_H_CLK] = &lpass_aon_cc_csr_h_clk.clkr,
[LPASS_AON_CC_MAIN_RCG_CLK_SRC] = &lpass_aon_cc_main_rcg_clk_src.clkr,
[LPASS_AON_CC_MCC_ACCESS_CLK] = &lpass_aon_cc_mcc_access_clk.clkr,
[LPASS_AON_CC_PDC_H_CLK] = &lpass_aon_cc_pdc_h_clk.clkr,
[LPASS_AON_CC_PLL] = &lpass_aon_cc_pll.clkr,
[LPASS_AON_CC_PLL_OUT_AUX] = &lpass_aon_cc_pll_out_aux.clkr,
[LPASS_AON_CC_PLL_OUT_AUX2] = &lpass_aon_cc_pll_out_aux2.clkr,
[LPASS_AON_CC_Q6_ATBM_CLK] = &lpass_aon_cc_q6_atbm_clk.clkr,
[LPASS_AON_CC_Q6_XO_CLK_SRC] = &lpass_aon_cc_q6_xo_clk_src.clkr,
[LPASS_AON_CC_QSM_XO_CLK] = &lpass_aon_cc_qsm_xo_clk.clkr,
[LPASS_AON_CC_RSC_HCLK_CLK] = &lpass_aon_cc_rsc_hclk_clk.clkr,
[LPASS_AON_CC_SLEEP_CLK] = &lpass_aon_cc_sleep_clk.clkr,
[LPASS_AON_CC_SSC_H_CLK] = &lpass_aon_cc_ssc_h_clk.clkr,
[LPASS_AON_CC_TX_MCLK_2X_CLK] = &lpass_aon_cc_tx_mclk_2x_clk.clkr,
[LPASS_AON_CC_TX_MCLK_CLK] = &lpass_aon_cc_tx_mclk_clk.clkr,
[LPASS_AON_CC_TX_MCLK_RCG_CLK_SRC] =
&lpass_aon_cc_tx_mclk_rcg_clk_src.clkr,
[LPASS_AON_CC_VA_2X_CLK] = &lpass_aon_cc_va_2x_clk.clkr,
[LPASS_AON_CC_VA_CLK] = &lpass_aon_cc_va_clk.clkr,
[LPASS_AON_CC_VA_MEM0_CLK] = &lpass_aon_cc_va_mem0_clk.clkr,
[LPASS_AON_CC_VA_RCG_CLK_SRC] = &lpass_aon_cc_va_rcg_clk_src.clkr,
[LPASS_AON_CC_VS_VDDCX_CLK] = &lpass_aon_cc_vs_vddcx_clk.clkr,
[LPASS_AON_CC_VS_VDDCX_CLK_SRC] = &lpass_aon_cc_vs_vddcx_clk_src.clkr,
[LPASS_AON_CC_VS_VDDMX_CLK] = &lpass_aon_cc_vs_vddmx_clk.clkr,
[LPASS_AON_CC_VS_VDDMX_CLK_SRC] = &lpass_aon_cc_vs_vddmx_clk_src.clkr,
[LPASS_QDSP6SS_SLEEP_CLK] = &lpass_qdsp6ss_sleep_clk.clkr,
[LPASS_QDSP6SS_XO_CLK] = &lpass_qdsp6ss_xo_clk.clkr,
};
static const struct regmap_config lpass_aon_cc_scuba_regmap_config = {
.reg_bits = 32,
.reg_stride = 4,
.val_bits = 32,
.max_register = 0x20008,
.fast_io = true,
};
static const struct qcom_cc_desc lpass_aon_cc_scuba_desc = {
.config = &lpass_aon_cc_scuba_regmap_config,
.clks = lpass_aon_cc_scuba_clocks,
.num_clks = ARRAY_SIZE(lpass_aon_cc_scuba_clocks),
};
static const struct of_device_id lpass_aon_cc_scuba_match_table[] = {
{ .compatible = "qcom,lpassaoncc-scuba" },
{ }
};
MODULE_DEVICE_TABLE(of, lpass_aon_cc_scuba_match_table);
static int lpass_aon_cc_scuba_probe(struct platform_device *pdev)
{
struct regmap *regmap;
int ret;
vdd_lpi_cx.regulator[0] = devm_regulator_get(&pdev->dev, "vdd_lpi_cx");
if (IS_ERR(vdd_lpi_cx.regulator[0])) {
if (PTR_ERR(vdd_lpi_cx.regulator[0]) != -EPROBE_DEFER)
dev_err(&pdev->dev, "Unable to get vdd_lpi_cx regulator\n");
return PTR_ERR(vdd_lpi_cx.regulator[0]);
}
pm_runtime_enable(&pdev->dev);
ret = pm_clk_create(&pdev->dev);
if (ret)
return ret;
ret = pm_clk_add(&pdev->dev, "iface_clk");
if (ret < 0) {
dev_err(&pdev->dev, "failed to acquire gcc sway clock\n");
goto err_destroy_pm_clk;
}
ret = pm_runtime_get_sync(&pdev->dev);
if (ret)
goto err_destroy_pm_clk;
regmap = qcom_cc_map(pdev, &lpass_aon_cc_scuba_desc);
if (IS_ERR(regmap)) {
ret = PTR_ERR(regmap);
goto err_put_rpm;
}
clk_alpha_pll_configure(&lpass_aon_cc_pll, regmap,
&lpass_aon_cc_pll_config);
/*
* Keep clocks always enabled:
* lpass_aon_cc_q6_ahbs_clk
* lpass_aon_cc_q6_ahbm_clk
*/
regmap_update_bits(regmap, 0x9020, BIT(0), BIT(0));
regmap_update_bits(regmap, 0x901C, BIT(0), BIT(0));
ret = qcom_cc_really_probe(pdev, &lpass_aon_cc_scuba_desc, regmap);
if (ret) {
dev_err(&pdev->dev, "Register Fail LPASS Aon clocks ret=%d\n",
ret);
goto err_put_rpm;
}
pm_runtime_put_sync(&pdev->dev);
dev_info(&pdev->dev, "Registered LPASS Aon clocks\n");
return 0;
err_put_rpm:
pm_runtime_put_sync(&pdev->dev);
err_destroy_pm_clk:
pm_clk_destroy(&pdev->dev);
return ret;
}
static const struct dev_pm_ops lpass_aon_cc_scuba_pm_ops = {
SET_RUNTIME_PM_OPS(pm_clk_suspend, pm_clk_resume, NULL)
};
static struct platform_driver lpass_aon_cc_scuba_driver = {
.probe = lpass_aon_cc_scuba_probe,
.driver = {
.name = "lpassaoncc-scuba",
.of_match_table = lpass_aon_cc_scuba_match_table,
.pm = &lpass_aon_cc_scuba_pm_ops,
},
};
static int __init lpass_aon_cc_scuba_init(void)
{
return platform_driver_register(&lpass_aon_cc_scuba_driver);
}
subsys_initcall(lpass_aon_cc_scuba_init);
static void __exit lpass_aon_cc_scuba_exit(void)
{
platform_driver_unregister(&lpass_aon_cc_scuba_driver);
}
module_exit(lpass_aon_cc_scuba_exit);
MODULE_DESCRIPTION("QTI LPASSAONCC SCUBA Driver");
MODULE_LICENSE("GPL v2");

File diff suppressed because it is too large Load Diff

View File

@@ -781,7 +781,7 @@ static int __read_queue(struct cvp_iface_q_info *qinfo, u8 *packet,
u32 *read_ptr;
u32 receive_request = 0;
u32 read_idx, write_idx;
int rc = 0;
int rc = 0;
if (!qinfo || !packet || !pb_tx_req_is_set) {
dprintk(CVP_ERR, "Invalid Params\n");
@@ -871,6 +871,12 @@ static int __read_queue(struct cvp_iface_q_info *qinfo, u8 *packet,
(u8 *)qinfo->q_array.align_virtual_addr,
new_read_idx << 2);
}
/*
* Copy back the validated size to avoid security issue. As we are reading
* the packet from a shared queue, there is a possibility to get the
* packet->size data corrupted of shared queue by mallicious FW.
*/
*((u32 *) packet) = packet_size_in_words << 2;
} else {
dprintk(CVP_WARN,
"BAD packet received, read_idx: %#x, pkt_size: %d\n",

View File

@@ -1,6 +1,7 @@
// SPDX-License-Identifier: GPL-2.0-only
/*
* Copyright (c) 2018-2021, The Linux Foundation. All rights reserved.
* Copyright (c) 2024, Qualcomm Innovation Center, Inc. All rights reserved.
*/
/* -------------------------------------------------------------------------
@@ -2544,6 +2545,13 @@ int32_t npu_host_unload_network(struct npu_client *client,
return -EINVAL;
}
if (network->is_executing) {
pr_err("network is in execution\n");
network_put(network);
mutex_unlock(&host_ctx->lock);
return -EINVAL;
}
if (network->fw_error) {
NPU_ERR("fw in error state, skip unload network in fw\n");
goto free_network;
@@ -2707,6 +2715,12 @@ int32_t npu_host_exec_network_v2(struct npu_client *client,
goto exec_v2_done;
}
if (network->is_executing) {
pr_err("network is already in execution\n");
ret = -EINVAL;
goto exec_v2_done;
}
if (host_ctx->dev_shuttingdown) {
NPU_ERR("device is shutting down\n");
ret = -EIO;
@@ -2724,6 +2738,7 @@ int32_t npu_host_exec_network_v2(struct npu_client *client,
goto exec_v2_done;
}
network->is_executing = true;
for (i = 0; i < num_patch_params; i++) {
exec_packet->patch_params[i].id = patch_buf_info[i].buf_id;
NPU_DBG("%d: patch_id: %x\n", i,
@@ -2833,6 +2848,7 @@ int32_t npu_host_exec_network_v2(struct npu_client *client,
npu_free_network_cmd(host_ctx, exec_cmd);
free_exec_packet:
kfree(exec_packet);
network->is_executing = false;
exec_v2_done:
network_put(network);
mutex_unlock(&host_ctx->lock);

View File

@@ -1,6 +1,7 @@
/* SPDX-License-Identifier: GPL-2.0-only */
/*
* Copyright (c) 2017-2021, The Linux Foundation. All rights reserved.
* Copyright (c) 2024, Qualcomm Innovation Center, Inc. All rights reserved.
*/
#ifndef _NPU_MGR_H
@@ -85,6 +86,7 @@ struct npu_network {
bool is_valid;
bool is_active;
bool is_unloading;
bool is_executing;
bool fw_error;
struct npu_client *client;
struct list_head cmd_list;

View File

@@ -1,6 +1,7 @@
// SPDX-License-Identifier: GPL-2.0-only
/*
* Copyright (c) 2014-2021, The Linux Foundation. All rights reserved.
* Copyright (c) 2024 Qualcomm Innovation Center, Inc. All rights reserved.
*/
/*
@@ -2569,15 +2570,8 @@ static int ipa3_wwan_remove(struct platform_device *pdev)
if (ipa3_rmnet_res.ipa_napi_enable)
netif_napi_del(&(rmnet_ipa3_ctx->wwan_priv->napi));
mutex_unlock(&rmnet_ipa3_ctx->pipe_handle_guard);
IPAWANDBG("rmnet_ipa unregister_netdev started\n");
unregister_netdev(IPA_NETDEV());
IPAWANDBG("rmnet_ipa unregister_netdev completed\n");
ipa3_wwan_deregister_netdev_pm_client();
cancel_work_sync(&ipa3_tx_wakequeue_work);
cancel_delayed_work(&ipa_tether_stats_poll_wakequeue_work);
if (IPA_NETDEV())
free_netdev(IPA_NETDEV());
rmnet_ipa3_ctx->wwan_priv = NULL;
/* No need to remove wwan_ioctl during SSR */
if (!atomic_read(&rmnet_ipa3_ctx->is_ssr))
ipa3_wan_ioctl_deinit();
@@ -2778,6 +2772,15 @@ static int ipa3_lcl_mdm_ssr_notifier_cb(struct notifier_block *this,
break;
case SUBSYS_AFTER_SHUTDOWN:
IPAWANINFO("IPA Received MPSS AFTER_SHUTDOWN\n");
IPAWANINFO("rmnet_ipa unregister_netdev\n");
if (IPA_NETDEV())
unregister_netdev(IPA_NETDEV());
ipa3_wwan_deregister_netdev_pm_client();
if (IPA_NETDEV())
free_netdev(IPA_NETDEV());
rmnet_ipa3_ctx->wwan_priv = NULL;
if (atomic_read(&rmnet_ipa3_ctx->is_ssr) &&
ipa3_ctx->ipa_hw_type < IPA_HW_v4_0)
ipa3_q6_post_shutdown_cleanup();

View File

@@ -1,6 +1,7 @@
// SPDX-License-Identifier: GPL-2.0-only
/*
* Copyright (c) 2016-2020, The Linux Foundation. All rights reserved.
* Copyright (c) 2024, Qualcomm Innovation Center, Inc. All rights reserved.
*/
#include <asm/dma-iommu.h>
@@ -477,7 +478,6 @@ static int ngd_check_hw_status(struct msm_slim_ctrl *dev)
static int ngd_xfer_msg(struct slim_controller *ctrl, struct slim_msg_txn *txn)
{
DECLARE_COMPLETION_ONSTACK(done);
DECLARE_COMPLETION_ONSTACK(tx_sent);
struct msm_slim_ctrl *dev = slim_get_ctrldata(ctrl);
@@ -491,6 +491,8 @@ static int ngd_xfer_msg(struct slim_controller *ctrl, struct slim_msg_txn *txn)
bool report_sat = false;
bool sync_wr = true;
reinit_completion(&dev->xfer_done);
if (txn->mc & SLIM_MSG_CLK_PAUSE_SEQ_FLG)
return -EPROTONOSUPPORT;
@@ -649,7 +651,9 @@ static int ngd_xfer_msg(struct slim_controller *ctrl, struct slim_msg_txn *txn)
wbuf[i++] = txn->wbuf[0];
if (txn->mc != SLIM_USR_MC_DISCONNECT_PORT)
wbuf[i++] = txn->wbuf[1];
ret = ngd_get_tid(ctrl, txn, &wbuf[i++], &done);
txn->comp = &dev->xfer_done;
ret = ngd_get_tid(ctrl, txn, &wbuf[i++], &dev->xfer_done);
if (ret) {
SLIM_ERR(dev, "TID for connect/disconnect fail:%d\n",
ret);
@@ -2015,6 +2019,7 @@ static int ngd_slim_probe(struct platform_device *pdev)
init_completion(&dev->reconf);
init_completion(&dev->ctrl_up);
init_completion(&dev->qmi_up);
init_completion(&dev->xfer_done);
mutex_init(&dev->tx_lock);
mutex_init(&dev->ssr_lock);
spin_lock_init(&dev->tx_buf_lock);

View File

@@ -308,6 +308,8 @@ struct msm_slim_ctrl {
bool chan_active;
enum msm_ctrl_state state;
struct completion ctrl_up;
struct completion xfer_done;
struct completion sync_done;
int nsats;
u32 ver;
struct msm_slim_qmi qmi;

View File

@@ -0,0 +1,57 @@
/* SPDX-License-Identifier: GPL-2.0-only */
/*
* Copyright (c) 2024, Qualcomm Innovation Center, Inc. All rights reserved.
*/
#ifndef _DT_BINDINGS_CLK_QCOM_LPASS_AON_CC_SCUBA_H
#define _DT_BINDINGS_CLK_QCOM_LPASS_AON_CC_SCUBA_H
/* LPASS_AON_CC clocks */
#define LPASS_AON_CC_AHB_TIMEOUT_CLK 0
#define LPASS_AON_CC_AON_H_CLK 1
#define LPASS_AON_CC_AUDIO_HM_H_CLK 2
#define LPASS_AON_CC_AUDIO_HM_SLEEP_CLK 3
#define LPASS_AON_CC_BUS_ALT_CLK 4
#define LPASS_AON_CC_CDIV_TX_MCLK_DIV_CLK_SRC 5
#define LPASS_AON_CC_CDIV_VA_DIV_CLK_SRC 6
#define LPASS_AON_CC_CPR_CLK 7
#define LPASS_AON_CC_CPR_CLK_SRC 8
#define LPASS_AON_CC_CSR_H_CLK 9
#define LPASS_AON_CC_MAIN_RCG_CLK_SRC 10
#define LPASS_AON_CC_MCC_ACCESS_CLK 11
#define LPASS_AON_CC_PDC_GDS_CLK 12
#define LPASS_AON_CC_PDC_H_CLK 13
#define LPASS_AON_CC_PLL 14
#define LPASS_AON_CC_PLL_OUT_AUX 15
#define LPASS_AON_CC_PLL_OUT_AUX2 16
#define LPASS_AON_CC_Q6_AHBM_CLK 17
#define LPASS_AON_CC_Q6_AHBS_CLK 18
#define LPASS_AON_CC_Q6_ATBM_CLK 19
#define LPASS_AON_CC_Q6_XO_CLK 20
#define LPASS_AON_CC_Q6_XO_CLK_SRC 21
#define LPASS_AON_CC_Q6_XPU2_CLIENT_CLK 22
#define LPASS_AON_CC_Q6_XPU2_CONFIG_CLK 23
#define LPASS_AON_CC_QSM_XO_CLK 24
#define LPASS_AON_CC_RO_CLK 25
#define LPASS_AON_CC_RO_PLL 26
#define LPASS_AON_CC_RO_PLL_OUT_EVEN 27
#define LPASS_AON_CC_RO_PLL_OUT_MAIN 28
#define LPASS_AON_CC_RSC_HCLK_CLK 29
#define LPASS_AON_CC_SLEEP_CLK 30
#define LPASS_AON_CC_SSC_H_CLK 31
#define LPASS_AON_CC_TX_MCLK_2X_CLK 32
#define LPASS_AON_CC_TX_MCLK_CLK 33
#define LPASS_AON_CC_TX_MCLK_RCG_CLK_SRC 34
#define LPASS_AON_CC_VA_2X_CLK 35
#define LPASS_AON_CC_VA_CLK 36
#define LPASS_AON_CC_VA_MEM0_CLK 37
#define LPASS_AON_CC_VA_RCG_CLK_SRC 38
#define LPASS_AON_CC_VA_XPU2_CLIENT_CLK 39
#define LPASS_AON_CC_VS_VDDCX_CLK 40
#define LPASS_AON_CC_VS_VDDCX_CLK_SRC 41
#define LPASS_AON_CC_VS_VDDMX_CLK 42
#define LPASS_AON_CC_VS_VDDMX_CLK_SRC 43
#define LPASS_QDSP6SS_SLEEP_CLK 44
#define LPASS_QDSP6SS_XO_CLK 45
#endif

View File

@@ -0,0 +1,70 @@
/* SPDX-License-Identifier: GPL-2.0-only */
/*
* Copyright (c) 2024, Qualcomm Innovation Center, Inc. All rights reserved.
*/
#ifndef _DT_BINDINGS_CLK_QCOM_LPASS_AUDIO_CC_SCUBA_H
#define _DT_BINDINGS_CLK_QCOM_LPASS_AUDIO_CC_SCUBA_H
/* LPASS_AUDIO_CC clocks */
#define AUD_SLIMBUS_CLK_SRC 0
#define LPASS_AUDIO_CC_AUD_SLIMBUS_CLK 1
#define LPASS_AUDIO_CC_AUD_SLIMBUS_CORE_CLK 2
#define LPASS_AUDIO_CC_AUD_SLIMBUS_NPL_CLK 3
#define LPASS_AUDIO_CC_BUS_CLK 4
#define LPASS_AUDIO_CC_BUS_TIMEOUT_CLK 5
#define LPASS_AUDIO_CC_CDIV_RX_MCLK_DIV_CLK_SRC 6
#define LPASS_AUDIO_CC_CDIV_WSA_MCLK_DIV_CLK_SRC 7
#define LPASS_AUDIO_CC_CODEC_MEM0_CLK 8
#define LPASS_AUDIO_CC_CODEC_MEM1_CLK 9
#define LPASS_AUDIO_CC_CODEC_MEM2_CLK 10
#define LPASS_AUDIO_CC_CODEC_MEM3_CLK 11
#define LPASS_AUDIO_CC_CODEC_MEM_CLK 12
#define LPASS_AUDIO_CC_DIG_PLL 13
#define LPASS_AUDIO_CC_DIG_PLL_OUT_AUX 14
#define LPASS_AUDIO_CC_EXT_IF1_CLK_SRC 15
#define LPASS_AUDIO_CC_EXT_IF1_EBIT_CLK 16
#define LPASS_AUDIO_CC_EXT_IF1_IBIT_CLK 17
#define LPASS_AUDIO_CC_EXT_IF2_CLK_SRC 18
#define LPASS_AUDIO_CC_EXT_IF2_EBIT_CLK 19
#define LPASS_AUDIO_CC_EXT_IF2_IBIT_CLK 20
#define LPASS_AUDIO_CC_EXT_IF3_CLK_SRC 21
#define LPASS_AUDIO_CC_EXT_IF3_EBIT_CLK 22
#define LPASS_AUDIO_CC_EXT_IF3_IBIT_CLK 23
#define LPASS_AUDIO_CC_EXT_IF4_CLK_SRC 24
#define LPASS_AUDIO_CC_EXT_IF4_EBIT_CLK 25
#define LPASS_AUDIO_CC_EXT_IF4_IBIT_CLK 26
#define LPASS_AUDIO_CC_EXT_MCLK0_CLK 27
#define LPASS_AUDIO_CC_EXT_MCLK0_CLK_SRC 28
#define LPASS_AUDIO_CC_EXT_MCLK1_CLK 29
#define LPASS_AUDIO_CC_EXT_MCLK1_CLK_SRC 30
#define LPASS_AUDIO_CC_LPAIF_PCMOE_CLK 31
#define LPASS_AUDIO_CC_LPAIF_PCMOE_CLK_SRC 32
#define LPASS_AUDIO_CC_PLL 33
#define LPASS_AUDIO_CC_PLL_OUT_AUX 34
#define LPASS_AUDIO_CC_PLL_OUT_AUX2 35
#define LPASS_AUDIO_CC_PLL_OUT_AUX2_DIV_CLK_SRC 36
#define LPASS_AUDIO_CC_RX_MCLK_2X_CLK 37
#define LPASS_AUDIO_CC_RX_MCLK_CLK 38
#define LPASS_AUDIO_CC_RX_MCLK_CLK_SRC 39
#define LPASS_AUDIO_CC_SAMPLING_CLK 40
#define LPASS_AUDIO_CC_WSA_MCLK_2X_CLK 41
#define LPASS_AUDIO_CC_WSA_MCLK_CLK 42
#define LPASS_AUDIO_CC_WSA_MCLK_CLK_SRC 43
#define LPASS_AUDIO_CC_XPU2_CLIENT_CLK 44
#define LPASS_AON_CC_PLL_OUT_ODD_CLK 45
/* LPASS_AUDIO_CC resets */
#define LPASS_AUDIO_CC_EXT_IF1_BCR 0
#define LPASS_AUDIO_CC_EXT_IF2_BCR 1
#define LPASS_AUDIO_CC_EXT_IF3_BCR 2
#define LPASS_AUDIO_CC_EXT_IF4_BCR 3
#define LPASS_AUDIO_CC_EXT_MCLK0_BCR 4
#define LPASS_AUDIO_CC_EXT_MCLK1_BCR 5
#define LPASS_AUDIO_CC_PCM_DATA_OE_BCR 6
#define LPASS_AUDIO_CC_QCA_SLIMBUS_BCR 7
#define LPASS_AUDIO_CC_RX_MCLK_BCR 8
#define LPASS_AUDIO_CC_TX_MCLK_BCR 9
#define LPASS_AUDIO_CC_WSA_MCLK_BCR 10
#endif