mirror of
https://github.com/AsahiLinux/u-boot
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7011efce23
Add zynqmp_pm_set_gem_config() api to configure GEM secure registers. Signed-off-by: T Karthik Reddy <t.karthik.reddy@xilinx.com> Signed-off-by: Michal Simek <michal.simek@xilinx.com> Link: https://lore.kernel.org/r/f69e32355c6a6be7d2780663353c52757530207d.1648631275.git.michal.simek@xilinx.com
486 lines
13 KiB
C
486 lines
13 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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/*
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* Xilinx Zynq MPSoC Firmware driver
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*
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* Copyright (C) 2018-2019 Xilinx, Inc.
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*/
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#ifndef _ZYNQMP_FIRMWARE_H_
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#define _ZYNQMP_FIRMWARE_H_
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enum pm_api_id {
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PM_GET_API_VERSION = 1,
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PM_SET_CONFIGURATION = 2,
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PM_GET_NODE_STATUS = 3,
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PM_GET_OPERATING_CHARACTERISTIC = 4,
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PM_REGISTER_NOTIFIER = 5,
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/* API for suspending */
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PM_REQUEST_SUSPEND = 6,
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PM_SELF_SUSPEND = 7,
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PM_FORCE_POWERDOWN = 8,
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PM_ABORT_SUSPEND = 9,
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PM_REQUEST_WAKEUP = 10,
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PM_SET_WAKEUP_SOURCE = 11,
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PM_SYSTEM_SHUTDOWN = 12,
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PM_REQUEST_NODE = 13,
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PM_RELEASE_NODE = 14,
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PM_SET_REQUIREMENT = 15,
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PM_SET_MAX_LATENCY = 16,
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/* Direct control API functions: */
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PM_RESET_ASSERT = 17,
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PM_RESET_GET_STATUS = 18,
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PM_MMIO_WRITE = 19,
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PM_MMIO_READ = 20,
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PM_PM_INIT_FINALIZE = 21,
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PM_FPGA_LOAD = 22,
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PM_FPGA_GET_STATUS = 23,
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PM_GET_CHIPID = 24,
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/* ID 25 is been used by U-boot to process secure boot images */
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/* Secure library generic API functions */
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PM_SECURE_SHA = 26,
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PM_SECURE_RSA = 27,
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PM_PINCTRL_REQUEST = 28,
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PM_PINCTRL_RELEASE = 29,
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PM_PINCTRL_GET_FUNCTION = 30,
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PM_PINCTRL_SET_FUNCTION = 31,
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PM_PINCTRL_CONFIG_PARAM_GET = 32,
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PM_PINCTRL_CONFIG_PARAM_SET = 33,
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PM_IOCTL = 34,
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PM_QUERY_DATA = 35,
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PM_CLOCK_ENABLE = 36,
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PM_CLOCK_DISABLE = 37,
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PM_CLOCK_GETSTATE = 38,
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PM_CLOCK_SETDIVIDER = 39,
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PM_CLOCK_GETDIVIDER = 40,
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PM_CLOCK_SETRATE = 41,
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PM_CLOCK_GETRATE = 42,
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PM_CLOCK_SETPARENT = 43,
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PM_CLOCK_GETPARENT = 44,
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PM_SECURE_IMAGE = 45,
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PM_FPGA_READ = 46,
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PM_SECURE_AES = 47,
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PM_CLOCK_PLL_GETPARAM = 49,
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/* PM_REGISTER_ACCESS API */
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PM_REGISTER_ACCESS = 52,
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PM_EFUSE_ACCESS = 53,
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PM_FEATURE_CHECK = 63,
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PM_API_MAX,
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};
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enum pm_node_id {
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NODE_UNKNOWN = 0,
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NODE_APU = 1,
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NODE_APU_0 = 2,
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NODE_APU_1 = 3,
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NODE_APU_2 = 4,
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NODE_APU_3 = 5,
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NODE_RPU = 6,
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NODE_RPU_0 = 7,
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NODE_RPU_1 = 8,
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NODE_PLD = 9,
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NODE_FPD = 10,
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NODE_OCM_BANK_0 = 11,
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NODE_OCM_BANK_1 = 12,
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NODE_OCM_BANK_2 = 13,
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NODE_OCM_BANK_3 = 14,
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NODE_TCM_0_A = 15,
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NODE_TCM_0_B = 16,
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NODE_TCM_1_A = 17,
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NODE_TCM_1_B = 18,
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NODE_L2 = 19,
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NODE_GPU_PP_0 = 20,
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NODE_GPU_PP_1 = 21,
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NODE_USB_0 = 22,
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NODE_USB_1 = 23,
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NODE_TTC_0 = 24,
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NODE_TTC_1 = 25,
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NODE_TTC_2 = 26,
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NODE_TTC_3 = 27,
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NODE_SATA = 28,
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NODE_ETH_0 = 29,
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NODE_ETH_1 = 30,
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NODE_ETH_2 = 31,
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NODE_ETH_3 = 32,
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NODE_UART_0 = 33,
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NODE_UART_1 = 34,
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NODE_SPI_0 = 35,
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NODE_SPI_1 = 36,
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NODE_I2C_0 = 37,
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NODE_I2C_1 = 38,
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NODE_SD_0 = 39,
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NODE_SD_1 = 40,
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NODE_DP = 41,
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NODE_GDMA = 42,
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NODE_ADMA = 43,
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NODE_NAND = 44,
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NODE_QSPI = 45,
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NODE_GPIO = 46,
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NODE_CAN_0 = 47,
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NODE_CAN_1 = 48,
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NODE_EXTERN = 49,
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NODE_APLL = 50,
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NODE_VPLL = 51,
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NODE_DPLL = 52,
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NODE_RPLL = 53,
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NODE_IOPLL = 54,
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NODE_DDR = 55,
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NODE_IPI_APU = 56,
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NODE_IPI_RPU_0 = 57,
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NODE_GPU = 58,
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NODE_PCIE = 59,
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NODE_PCAP = 60,
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NODE_RTC = 61,
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NODE_LPD = 62,
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NODE_VCU = 63,
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NODE_IPI_RPU_1 = 64,
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NODE_IPI_PL_0 = 65,
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NODE_IPI_PL_1 = 66,
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NODE_IPI_PL_2 = 67,
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NODE_IPI_PL_3 = 68,
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NODE_PL = 69,
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NODE_GEM_TSU = 70,
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NODE_SWDT_0 = 71,
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NODE_SWDT_1 = 72,
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NODE_CSU = 73,
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NODE_PJTAG = 74,
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NODE_TRACE = 75,
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NODE_TESTSCAN = 76,
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NODE_PMU = 77,
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NODE_MAX = 78,
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};
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enum tap_delay_type {
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PM_TAPDELAY_INPUT = 0,
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PM_TAPDELAY_OUTPUT = 1,
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};
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enum dll_reset_type {
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PM_DLL_RESET_ASSERT = 0,
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PM_DLL_RESET_RELEASE = 1,
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PM_DLL_RESET_PULSE = 2,
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};
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enum pm_query_id {
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PM_QID_INVALID = 0,
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PM_QID_CLOCK_GET_NAME = 1,
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PM_QID_CLOCK_GET_TOPOLOGY = 2,
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PM_QID_CLOCK_GET_FIXEDFACTOR_PARAMS = 3,
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PM_QID_CLOCK_GET_PARENTS = 4,
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PM_QID_CLOCK_GET_ATTRIBUTES = 5,
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PM_QID_PINCTRL_GET_NUM_PINS = 6,
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PM_QID_PINCTRL_GET_NUM_FUNCTIONS = 7,
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PM_QID_PINCTRL_GET_NUM_FUNCTION_GROUPS = 8,
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PM_QID_PINCTRL_GET_FUNCTION_NAME = 9,
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PM_QID_PINCTRL_GET_FUNCTION_GROUPS = 10,
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PM_QID_PINCTRL_GET_PIN_GROUPS = 11,
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PM_QID_CLOCK_GET_NUM_CLOCKS = 12,
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PM_QID_CLOCK_GET_MAX_DIVISOR = 13,
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};
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enum pm_pinctrl_config_param {
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PM_PINCTRL_CONFIG_SLEW_RATE = 0,
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PM_PINCTRL_CONFIG_BIAS_STATUS = 1,
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PM_PINCTRL_CONFIG_PULL_CTRL = 2,
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PM_PINCTRL_CONFIG_SCHMITT_CMOS = 3,
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PM_PINCTRL_CONFIG_DRIVE_STRENGTH = 4,
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PM_PINCTRL_CONFIG_VOLTAGE_STATUS = 5,
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PM_PINCTRL_CONFIG_TRI_STATE = 6,
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PM_PINCTRL_CONFIG_MAX = 7,
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};
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enum pm_pinctrl_slew_rate {
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PM_PINCTRL_SLEW_RATE_FAST = 0,
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PM_PINCTRL_SLEW_RATE_SLOW = 1,
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};
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enum pm_pinctrl_bias_status {
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PM_PINCTRL_BIAS_DISABLE = 0,
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PM_PINCTRL_BIAS_ENABLE = 1,
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};
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enum pm_pinctrl_pull_ctrl {
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PM_PINCTRL_BIAS_PULL_DOWN = 0,
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PM_PINCTRL_BIAS_PULL_UP = 1,
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};
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enum pm_pinctrl_schmitt_cmos {
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PM_PINCTRL_INPUT_TYPE_CMOS = 0,
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PM_PINCTRL_INPUT_TYPE_SCHMITT = 1,
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};
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enum pm_pinctrl_drive_strength {
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PM_PINCTRL_DRIVE_STRENGTH_2MA = 0,
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PM_PINCTRL_DRIVE_STRENGTH_4MA = 1,
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PM_PINCTRL_DRIVE_STRENGTH_8MA = 2,
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PM_PINCTRL_DRIVE_STRENGTH_12MA = 3,
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};
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enum pm_pinctrl_tri_state {
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PM_PINCTRL_TRI_STATE_DISABLE = 0,
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PM_PINCTRL_TRI_STATE_ENABLE = 1,
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};
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enum zynqmp_pm_reset_action {
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PM_RESET_ACTION_RELEASE = 0,
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PM_RESET_ACTION_ASSERT = 1,
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PM_RESET_ACTION_PULSE = 2,
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};
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enum zynqmp_pm_reset {
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ZYNQMP_PM_RESET_START = 1000,
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ZYNQMP_PM_RESET_PCIE_CFG = ZYNQMP_PM_RESET_START,
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ZYNQMP_PM_RESET_PCIE_BRIDGE = 1001,
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ZYNQMP_PM_RESET_PCIE_CTRL = 1002,
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ZYNQMP_PM_RESET_DP = 1003,
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ZYNQMP_PM_RESET_SWDT_CRF = 1004,
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ZYNQMP_PM_RESET_AFI_FM5 = 1005,
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ZYNQMP_PM_RESET_AFI_FM4 = 1006,
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ZYNQMP_PM_RESET_AFI_FM3 = 1007,
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ZYNQMP_PM_RESET_AFI_FM2 = 1008,
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ZYNQMP_PM_RESET_AFI_FM1 = 1009,
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ZYNQMP_PM_RESET_AFI_FM0 = 1010,
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ZYNQMP_PM_RESET_GDMA = 1011,
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ZYNQMP_PM_RESET_GPU_PP1 = 1012,
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ZYNQMP_PM_RESET_GPU_PP0 = 1013,
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ZYNQMP_PM_RESET_GPU = 1014,
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ZYNQMP_PM_RESET_GT = 1015,
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ZYNQMP_PM_RESET_SATA = 1016,
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ZYNQMP_PM_RESET_ACPU3_PWRON = 1017,
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ZYNQMP_PM_RESET_ACPU2_PWRON = 1018,
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ZYNQMP_PM_RESET_ACPU1_PWRON = 1019,
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ZYNQMP_PM_RESET_ACPU0_PWRON = 1020,
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ZYNQMP_PM_RESET_APU_L2 = 1021,
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ZYNQMP_PM_RESET_ACPU3 = 1022,
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ZYNQMP_PM_RESET_ACPU2 = 1023,
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ZYNQMP_PM_RESET_ACPU1 = 1024,
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ZYNQMP_PM_RESET_ACPU0 = 1025,
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ZYNQMP_PM_RESET_DDR = 1026,
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ZYNQMP_PM_RESET_APM_FPD = 1027,
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ZYNQMP_PM_RESET_SOFT = 1028,
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ZYNQMP_PM_RESET_GEM0 = 1029,
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ZYNQMP_PM_RESET_GEM1 = 1030,
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ZYNQMP_PM_RESET_GEM2 = 1031,
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ZYNQMP_PM_RESET_GEM3 = 1032,
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ZYNQMP_PM_RESET_QSPI = 1033,
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ZYNQMP_PM_RESET_UART0 = 1034,
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ZYNQMP_PM_RESET_UART1 = 1035,
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ZYNQMP_PM_RESET_SPI0 = 1036,
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ZYNQMP_PM_RESET_SPI1 = 1037,
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ZYNQMP_PM_RESET_SDIO0 = 1038,
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ZYNQMP_PM_RESET_SDIO1 = 1039,
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ZYNQMP_PM_RESET_CAN0 = 1040,
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ZYNQMP_PM_RESET_CAN1 = 1041,
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ZYNQMP_PM_RESET_I2C0 = 1042,
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ZYNQMP_PM_RESET_I2C1 = 1043,
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ZYNQMP_PM_RESET_TTC0 = 1044,
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ZYNQMP_PM_RESET_TTC1 = 1045,
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ZYNQMP_PM_RESET_TTC2 = 1046,
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ZYNQMP_PM_RESET_TTC3 = 1047,
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ZYNQMP_PM_RESET_SWDT_CRL = 1048,
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ZYNQMP_PM_RESET_NAND = 1049,
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ZYNQMP_PM_RESET_ADMA = 1050,
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ZYNQMP_PM_RESET_GPIO = 1051,
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ZYNQMP_PM_RESET_IOU_CC = 1052,
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ZYNQMP_PM_RESET_TIMESTAMP = 1053,
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ZYNQMP_PM_RESET_RPU_R50 = 1054,
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ZYNQMP_PM_RESET_RPU_R51 = 1055,
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ZYNQMP_PM_RESET_RPU_AMBA = 1056,
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ZYNQMP_PM_RESET_OCM = 1057,
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ZYNQMP_PM_RESET_RPU_PGE = 1058,
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ZYNQMP_PM_RESET_USB0_CORERESET = 1059,
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ZYNQMP_PM_RESET_USB1_CORERESET = 1060,
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ZYNQMP_PM_RESET_USB0_HIBERRESET = 1061,
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ZYNQMP_PM_RESET_USB1_HIBERRESET = 1062,
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ZYNQMP_PM_RESET_USB0_APB = 1063,
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ZYNQMP_PM_RESET_USB1_APB = 1064,
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ZYNQMP_PM_RESET_IPI = 1065,
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ZYNQMP_PM_RESET_APM_LPD = 1066,
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ZYNQMP_PM_RESET_RTC = 1067,
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ZYNQMP_PM_RESET_SYSMON = 1068,
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ZYNQMP_PM_RESET_AFI_FM6 = 1069,
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ZYNQMP_PM_RESET_LPD_SWDT = 1070,
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ZYNQMP_PM_RESET_FPD = 1071,
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ZYNQMP_PM_RESET_RPU_DBG1 = 1072,
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ZYNQMP_PM_RESET_RPU_DBG0 = 1073,
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ZYNQMP_PM_RESET_DBG_LPD = 1074,
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ZYNQMP_PM_RESET_DBG_FPD = 1075,
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ZYNQMP_PM_RESET_APLL = 1076,
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ZYNQMP_PM_RESET_DPLL = 1077,
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ZYNQMP_PM_RESET_VPLL = 1078,
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ZYNQMP_PM_RESET_IOPLL = 1079,
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ZYNQMP_PM_RESET_RPLL = 1080,
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ZYNQMP_PM_RESET_GPO3_PL_0 = 1081,
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ZYNQMP_PM_RESET_GPO3_PL_1 = 1082,
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ZYNQMP_PM_RESET_GPO3_PL_2 = 1083,
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ZYNQMP_PM_RESET_GPO3_PL_3 = 1084,
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ZYNQMP_PM_RESET_GPO3_PL_4 = 1085,
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ZYNQMP_PM_RESET_GPO3_PL_5 = 1086,
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ZYNQMP_PM_RESET_GPO3_PL_6 = 1087,
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ZYNQMP_PM_RESET_GPO3_PL_7 = 1088,
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ZYNQMP_PM_RESET_GPO3_PL_8 = 1089,
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ZYNQMP_PM_RESET_GPO3_PL_9 = 1090,
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ZYNQMP_PM_RESET_GPO3_PL_10 = 1091,
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ZYNQMP_PM_RESET_GPO3_PL_11 = 1092,
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ZYNQMP_PM_RESET_GPO3_PL_12 = 1093,
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ZYNQMP_PM_RESET_GPO3_PL_13 = 1094,
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ZYNQMP_PM_RESET_GPO3_PL_14 = 1095,
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ZYNQMP_PM_RESET_GPO3_PL_15 = 1096,
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ZYNQMP_PM_RESET_GPO3_PL_16 = 1097,
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ZYNQMP_PM_RESET_GPO3_PL_17 = 1098,
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ZYNQMP_PM_RESET_GPO3_PL_18 = 1099,
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ZYNQMP_PM_RESET_GPO3_PL_19 = 1100,
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ZYNQMP_PM_RESET_GPO3_PL_20 = 1101,
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ZYNQMP_PM_RESET_GPO3_PL_21 = 1102,
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ZYNQMP_PM_RESET_GPO3_PL_22 = 1103,
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ZYNQMP_PM_RESET_GPO3_PL_23 = 1104,
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ZYNQMP_PM_RESET_GPO3_PL_24 = 1105,
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ZYNQMP_PM_RESET_GPO3_PL_25 = 1106,
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ZYNQMP_PM_RESET_GPO3_PL_26 = 1107,
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ZYNQMP_PM_RESET_GPO3_PL_27 = 1108,
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ZYNQMP_PM_RESET_GPO3_PL_28 = 1109,
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ZYNQMP_PM_RESET_GPO3_PL_29 = 1110,
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ZYNQMP_PM_RESET_GPO3_PL_30 = 1111,
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ZYNQMP_PM_RESET_GPO3_PL_31 = 1112,
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ZYNQMP_PM_RESET_RPU_LS = 1113,
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ZYNQMP_PM_RESET_PS_ONLY = 1114,
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ZYNQMP_PM_RESET_PL = 1115,
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ZYNQMP_PM_RESET_PS_PL0 = 1116,
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ZYNQMP_PM_RESET_PS_PL1 = 1117,
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ZYNQMP_PM_RESET_PS_PL2 = 1118,
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ZYNQMP_PM_RESET_PS_PL3 = 1119,
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ZYNQMP_PM_RESET_END = ZYNQMP_PM_RESET_PS_PL3
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};
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enum pm_ioctl_id {
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IOCTL_GET_RPU_OPER_MODE = 0,
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IOCTL_SET_RPU_OPER_MODE = 1,
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IOCTL_RPU_BOOT_ADDR_CONFIG = 2,
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IOCTL_TCM_COMB_CONFIG = 3,
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IOCTL_SET_TAPDELAY_BYPASS = 4,
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IOCTL_SET_SGMII_MODE = 5,
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IOCTL_SD_DLL_RESET = 6,
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IOCTL_SET_SD_TAPDELAY = 7,
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IOCTL_SET_PLL_FRAC_MODE = 8,
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IOCTL_GET_PLL_FRAC_MODE = 9,
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IOCTL_SET_PLL_FRAC_DATA = 10,
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IOCTL_GET_PLL_FRAC_DATA = 11,
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IOCTL_WRITE_GGS = 12,
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IOCTL_READ_GGS = 13,
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IOCTL_WRITE_PGGS = 14,
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IOCTL_READ_PGGS = 15,
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/* IOCTL for ULPI reset */
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IOCTL_ULPI_RESET = 16,
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/* Set healthy bit value*/
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IOCTL_SET_BOOT_HEALTH_STATUS = 17,
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IOCTL_AFI = 18,
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/* Probe counter read/write */
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IOCTL_PROBE_COUNTER_READ = 19,
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IOCTL_PROBE_COUNTER_WRITE = 20,
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IOCTL_OSPI_MUX_SELECT = 21,
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/* IOCTL for USB power request */
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IOCTL_USB_SET_STATE = 22,
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/* IOCTL to get last reset reason */
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IOCTL_GET_LAST_RESET_REASON = 23,
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/* AIE ISR Clear */
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IOCTL_AIE_ISR_CLEAR = 24,
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/* Register SGI to ATF */
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IOCTL_REGISTER_SGI = 25,
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/* Runtime feature configuration */
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IOCTL_SET_FEATURE_CONFIG = 26,
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IOCTL_GET_FEATURE_CONFIG = 27,
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/* IOCTL for Secure Read/Write Interface */
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IOCTL_READ_REG = 28,
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IOCTL_MASK_WRITE_REG = 29,
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/* Dynamic SD/GEM/USB configuration */
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IOCTL_SET_SD_CONFIG = 30,
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IOCTL_SET_GEM_CONFIG = 31,
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IOCTL_SET_USB_CONFIG = 32,
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/* AIE/AIEML Operations */
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IOCTL_AIE_OPS = 33,
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/* IOCTL to get default/current QoS */
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IOCTL_GET_QOS = 34,
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};
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enum pm_sd_config_type {
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SD_CONFIG_EMMC_SEL = 1, /* To set SD_EMMC_SEL in CTRL_REG_SD */
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SD_CONFIG_BASECLK = 2, /* To set SD_BASECLK in SD_CONFIG_REG1 */
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SD_CONFIG_8BIT = 3, /* To set SD_8BIT in SD_CONFIG_REG2 */
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SD_CONFIG_FIXED = 4, /* To set fixed config registers */
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};
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enum pm_gem_config_type {
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GEM_CONFIG_SGMII_MODE = 1, /* To set GEM_SGMII_MODE in GEM_CLK_CTRL */
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GEM_CONFIG_FIXED = 2, /* To set fixed config registers */
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};
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|
|
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#define PM_SIP_SVC 0xc2000000
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|
|
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#define ZYNQMP_PM_VERSION_MAJOR 1
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#define ZYNQMP_PM_VERSION_MINOR 0
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#define ZYNQMP_PM_VERSION_MAJOR_SHIFT 16
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#define ZYNQMP_PM_VERSION_MINOR_MASK 0xFFFF
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|
|
|
#define ZYNQMP_PM_VERSION \
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((ZYNQMP_PM_VERSION_MAJOR << ZYNQMP_PM_VERSION_MAJOR_SHIFT) | \
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ZYNQMP_PM_VERSION_MINOR)
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|
|
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#define ZYNQMP_PM_VERSION_INVALID ~0
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|
|
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#define PMUFW_V1_0 ((1 << ZYNQMP_PM_VERSION_MAJOR_SHIFT) | 0)
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|
|
|
/*
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|
* Return payload size
|
|
* Not every firmware call expects the same amount of return bytes, however the
|
|
* firmware driver always copies 5 bytes from RX buffer to the ret_payload
|
|
* buffer. Therefore allocating with this defined value is recommended to avoid
|
|
* overflows.
|
|
*/
|
|
#define PAYLOAD_ARG_CNT 5U
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|
|
|
unsigned int zynqmp_firmware_version(void);
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int zynqmp_pmufw_node(u32 id);
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|
int zynqmp_pmufw_config_close(void);
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|
void zynqmp_pmufw_load_config_object(const void *cfg_obj, size_t size);
|
|
int xilinx_pm_request(u32 api_id, u32 arg0, u32 arg1, u32 arg2,
|
|
u32 arg3, u32 *ret_payload);
|
|
int zynqmp_pm_set_sd_config(u32 node, enum pm_sd_config_type config, u32 value);
|
|
int zynqmp_pm_set_gem_config(u32 node, enum pm_gem_config_type config,
|
|
u32 value);
|
|
int zynqmp_pm_is_function_supported(const u32 api_id, const u32 id);
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|
|
|
/* Type of Config Object */
|
|
#define PM_CONFIG_OBJECT_TYPE_BASE 0x1U
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|
#define PM_CONFIG_OBJECT_TYPE_OVERLAY 0x2U
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|
|
|
/* Section Id */
|
|
#define PM_CONFIG_SLAVE_SECTION_ID 0x102U
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|
#define PM_CONFIG_SET_CONFIG_SECTION_ID 0x107U
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|
|
|
/* Flag Option */
|
|
#define PM_SLAVE_FLAG_IS_SHAREABLE 0x1U
|
|
#define PM_MASTER_USING_SLAVE_MASK 0x2U
|
|
|
|
/* IPI Mask for Master */
|
|
#define PM_CONFIG_IPI_PSU_CORTEXA53_0_MASK 0x00000001
|
|
#define PM_CONFIG_IPI_PSU_CORTEXR5_0_MASK 0x00000100
|
|
#define PM_CONFIG_IPI_PSU_CORTEXR5_1_MASK 0x00000200
|
|
|
|
enum zynqmp_pm_request_ack {
|
|
ZYNQMP_PM_REQUEST_ACK_NO = 1,
|
|
ZYNQMP_PM_REQUEST_ACK_BLOCKING = 2,
|
|
ZYNQMP_PM_REQUEST_ACK_NON_BLOCKING = 3,
|
|
};
|
|
|
|
/* Node capabilities */
|
|
#define ZYNQMP_PM_CAPABILITY_ACCESS 0x1U
|
|
#define ZYNQMP_PM_CAPABILITY_CONTEXT 0x2U
|
|
#define ZYNQMP_PM_CAPABILITY_WAKEUP 0x4U
|
|
#define ZYNQMP_PM_CAPABILITY_UNUSABLE 0x8U
|
|
|
|
#define ZYNQMP_PM_MAX_QOS 100U
|
|
/* Firmware feature check version mask */
|
|
#define FIRMWARE_VERSION_MASK GENMASK(15, 0)
|
|
/* PM API versions */
|
|
#define PM_API_VERSION_2 2
|
|
|
|
#endif /* _ZYNQMP_FIRMWARE_H_ */
|