Orange Pi5 kernel

Deprecated Linux kernel 5.10.110 for OrangePi 5/5B/5+ boards

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^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300   1) RK8XX Power Management Integrated Circuit
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300   2) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300   3) The rk8xx family current members:
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300   4) rk805
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300   5) rk808
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300   6) rk809
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300   7) rk817
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300   8) rk818
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300   9) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  10) Required properties:
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  11) - compatible: "rockchip,rk805"
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  12) - compatible: "rockchip,rk808"
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  13) - compatible: "rockchip,rk809"
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  14) - compatible: "rockchip,rk817"
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  15) - compatible: "rockchip,rk818"
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  16) - reg: I2C slave address
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  17) - interrupts: the interrupt outputs of the controller.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  18) - #clock-cells: from common clock binding; shall be set to 1 (multiple clock
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  19)   outputs). See <dt-bindings/clock/rockchip,rk808.h> for clock IDs.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  20) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  21) Optional properties:
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  22) - clock-output-names: From common clock binding to override the
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  23)   default output clock name
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  24) - rockchip,system-power-controller: Telling whether or not this pmic is controlling
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  25)   the system power.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  26) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  27) Optional RK805 properties:
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  28) - vcc1-supply:  The input supply for DCDC_REG1
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  29) - vcc2-supply:  The input supply for DCDC_REG2
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  30) - vcc3-supply:  The input supply for DCDC_REG3
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  31) - vcc4-supply:  The input supply for DCDC_REG4
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  32) - vcc5-supply:  The input supply for LDO_REG1 and LDO_REG2
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  33) - vcc6-supply:  The input supply for LDO_REG3
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  34) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  35) Optional RK808 properties:
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  36) - vcc1-supply:  The input supply for DCDC_REG1
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  37) - vcc2-supply:  The input supply for DCDC_REG2
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  38) - vcc3-supply:  The input supply for DCDC_REG3
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  39) - vcc4-supply:  The input supply for DCDC_REG4
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  40) - vcc6-supply:  The input supply for LDO_REG1 and LDO_REG2
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  41) - vcc7-supply:  The input supply for LDO_REG3 and LDO_REG7
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  42) - vcc8-supply:  The input supply for SWITCH_REG1
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  43) - vcc9-supply:  The input supply for LDO_REG4 and LDO_REG5
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  44) - vcc10-supply: The input supply for LDO_REG6
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  45) - vcc11-supply: The input supply for LDO_REG8
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  46) - vcc12-supply: The input supply for SWITCH_REG2
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  47) - dvs-gpios:  buck1/2 can be controlled by gpio dvs, this is GPIO specifiers
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  48)   for 2 host gpio's used for dvs. The format of the gpio specifier depends in
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  49)   the gpio controller. If DVS GPIOs aren't present, voltage changes will happen
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  50)   very quickly with no slow ramp time.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  51) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  52) Optional shared RK809 and RK817 properties:
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  53) - vcc1-supply:  The input supply for DCDC_REG1
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  54) - vcc2-supply:  The input supply for DCDC_REG2
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  55) - vcc3-supply:  The input supply for DCDC_REG3
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  56) - vcc4-supply:  The input supply for DCDC_REG4
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  57) - vcc5-supply:  The input supply for LDO_REG1, LDO_REG2, LDO_REG3
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  58) - vcc6-supply:  The input supply for LDO_REG4, LDO_REG5, LDO_REG6
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  59) - vcc7-supply:  The input supply for LDO_REG7, LDO_REG8, LDO_REG9
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  60) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  61) Optional RK809 properties:
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  62) - vcc8-supply:  The input supply for SWITCH_REG1
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  63) - vcc9-supply:  The input supply for DCDC_REG5, SWITCH_REG2
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  64) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  65) Optional RK817 properties:
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  66) - vcc8-supply:  The input supply for BOOST
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  67) - vcc9-supply:  The input supply for OTG_SWITCH
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  68) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  69) Optional RK818 properties:
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  70) - vcc1-supply:  The input supply for DCDC_REG1
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  71) - vcc2-supply:  The input supply for DCDC_REG2
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  72) - vcc3-supply:  The input supply for DCDC_REG3
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  73) - vcc4-supply:  The input supply for DCDC_REG4
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  74) - boost-supply: The input supply for DCDC_BOOST
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  75) - vcc6-supply:  The input supply for LDO_REG1 and LDO_REG2
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  76) - vcc7-supply:  The input supply for LDO_REG3, LDO_REG5 and LDO_REG7
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  77) - vcc8-supply:  The input supply for LDO_REG4, LDO_REG6 and LDO_REG8
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  78) - vcc9-supply:  The input supply for LDO_REG9 and SWITCH_REG
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  79) - h_5v-supply:  The input supply for HDMI_SWITCH
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  80) - usb-supply:   The input supply for OTG_SWITCH
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  81) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  82) Regulators: All the regulators of RK8XX to be instantiated shall be
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  83) listed in a child node named 'regulators'. Each regulator is represented
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  84) by a child node of the 'regulators' node.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  85) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  86) 	regulator-name {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  87) 		/* standard regulator bindings here */
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  88) 	};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  89) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  90) Following regulators of the RK805 PMIC regulators are supported. Note that
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  91) the 'n' in regulator name, as in DCDC_REGn or LDOn, represents the DCDC or LDO
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  92) number as described in RK805 datasheet.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  93) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  94) 	- DCDC_REGn
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  95) 		- valid values for n are 1 to 4.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  96) 	- LDO_REGn
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  97) 		- valid values for n are 1 to 3
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  98) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300  99) Following regulators of the RK808 PMIC block are supported. Note that
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 100) the 'n' in regulator name, as in DCDC_REGn or LDOn, represents the DCDC or LDO
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 101) number as described in RK808 datasheet.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 102) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 103) 	- DCDC_REGn
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 104) 		- valid values for n are 1 to 4.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 105) 	- LDO_REGn
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 106) 		- valid values for n are 1 to 8.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 107) 	- SWITCH_REGn
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 108) 		- valid values for n are 1 to 2
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 109) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 110) Following regulators of the RK809 and RK817 PMIC blocks are supported. Note that
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 111) the 'n' in regulator name, as in DCDC_REGn or LDOn, represents the DCDC or LDO
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 112) number as described in RK809 and RK817 datasheets.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 113) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 114) 	- DCDC_REGn
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 115) 		- valid values for n are 1 to 5 for RK809.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 116) 		- valid values for n are 1 to 4 for RK817.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 117) 	- LDO_REGn
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 118) 		- valid values for n are 1 to 9 for RK809.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 119) 		- valid values for n are 1 to 9 for RK817.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 120) 	- SWITCH_REGn
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 121) 		- valid values for n are 1 to 2 for RK809.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 122) 	- BOOST for RK817
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 123) 	- OTG_SWITCH for RK817
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 124) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 125) Following regulators of the RK818 PMIC block are supported. Note that
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 126) the 'n' in regulator name, as in DCDC_REGn or LDOn, represents the DCDC or LDO
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 127) number as described in RK818 datasheet.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 128) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 129) 	- DCDC_REGn
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 130) 		- valid values for n are 1 to 4.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 131) 	- LDO_REGn
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 132) 		- valid values for n are 1 to 9.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 133) 	- SWITCH_REG
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 134) 	- HDMI_SWITCH
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 135) 	- OTG_SWITCH
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 136) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 137) It is necessary to configure three pins for both the RK809 and RK817, the three
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 138) pins are "gpio_ts" "gpio_gt" "gpio_slp".
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 139) 	The gpio_gt and gpio_ts pins support the gpio function.
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 140) 	The gpio_slp pin is for controlling the pmic states, as below:
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 141) 		- reset
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 142) 		- power down
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 143) 		- sleep
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 144) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 145) Standard regulator bindings are used inside regulator subnodes. Check
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 146)   Documentation/devicetree/bindings/regulator/regulator.txt
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 147) for more details
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 148) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 149) Example:
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 150) 	rk808: pmic@1b {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 151) 		compatible = "rockchip,rk808";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 152) 		clock-output-names = "xin32k", "rk808-clkout2";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 153) 		interrupt-parent = <&gpio0>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 154) 		interrupts = <4 IRQ_TYPE_LEVEL_LOW>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 155) 		pinctrl-names = "default";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 156) 		pinctrl-0 = <&pmic_int &dvs_1 &dvs_2>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 157) 		dvs-gpios = <&gpio7 11 GPIO_ACTIVE_HIGH>,
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 158) 			    <&gpio7 15 GPIO_ACTIVE_HIGH>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 159) 		reg = <0x1b>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 160) 		rockchip,system-power-controller;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 161) 		wakeup-source;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 162) 		#clock-cells = <1>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 163) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 164) 		vcc8-supply = <&vcc_18>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 165) 		vcc9-supply = <&vcc_io>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 166) 		vcc10-supply = <&vcc_io>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 167) 		vcc12-supply = <&vcc_io>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 168) 		vddio-supply = <&vccio_pmu>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 169) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 170) 		regulators {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 171) 			vdd_cpu: DCDC_REG1 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 172) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 173) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 174) 				regulator-min-microvolt = <750000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 175) 				regulator-max-microvolt = <1300000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 176) 				regulator-name = "vdd_arm";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 177) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 178) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 179) 			vdd_gpu: DCDC_REG2 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 180) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 181) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 182) 				regulator-min-microvolt = <850000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 183) 				regulator-max-microvolt = <1250000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 184) 				regulator-name = "vdd_gpu";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 185) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 186) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 187) 			vcc_ddr: DCDC_REG3 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 188) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 189) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 190) 				regulator-name = "vcc_ddr";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 191) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 192) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 193) 			vcc_io: DCDC_REG4 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 194) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 195) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 196) 				regulator-min-microvolt = <3300000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 197) 				regulator-max-microvolt = <3300000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 198) 				regulator-name = "vcc_io";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 199) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 200) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 201) 			vccio_pmu: LDO_REG1 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 202) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 203) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 204) 				regulator-min-microvolt = <3300000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 205) 				regulator-max-microvolt = <3300000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 206) 				regulator-name = "vccio_pmu";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 207) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 208) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 209) 			vcc_tp: LDO_REG2 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 210) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 211) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 212) 				regulator-min-microvolt = <3300000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 213) 				regulator-max-microvolt = <3300000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 214) 				regulator-name = "vcc_tp";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 215) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 216) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 217) 			vdd_10: LDO_REG3 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 218) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 219) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 220) 				regulator-min-microvolt = <1000000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 221) 				regulator-max-microvolt = <1000000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 222) 				regulator-name = "vdd_10";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 223) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 224) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 225) 			vcc18_lcd: LDO_REG4 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 226) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 227) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 228) 				regulator-min-microvolt = <1800000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 229) 				regulator-max-microvolt = <1800000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 230) 				regulator-name = "vcc18_lcd";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 231) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 232) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 233) 			vccio_sd: LDO_REG5 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 234) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 235) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 236) 				regulator-min-microvolt = <1800000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 237) 				regulator-max-microvolt = <3300000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 238) 				regulator-name = "vccio_sd";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 239) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 240) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 241) 			vdd10_lcd: LDO_REG6 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 242) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 243) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 244) 				regulator-min-microvolt = <1000000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 245) 				regulator-max-microvolt = <1000000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 246) 				regulator-name = "vdd10_lcd";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 247) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 248) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 249) 			vcc_18: LDO_REG7 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 250) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 251) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 252) 				regulator-min-microvolt = <1800000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 253) 				regulator-max-microvolt = <1800000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 254) 				regulator-name = "vcc_18";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 255) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 256) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 257) 			vcca_codec: LDO_REG8 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 258) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 259) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 260) 				regulator-min-microvolt = <3300000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 261) 				regulator-max-microvolt = <3300000>;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 262) 				regulator-name = "vcca_codec";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 263) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 264) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 265) 			vcc_wl: SWITCH_REG1 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 266) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 267) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 268) 				regulator-name = "vcc_wl";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 269) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 270) 
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 271) 			vcc_lcd: SWITCH_REG2 {
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 272) 				regulator-always-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 273) 				regulator-boot-on;
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 274) 				regulator-name = "vcc_lcd";
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 275) 			};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 276) 		};
^8f3ce5b39 (kx 2023-10-28 12:00:06 +0300 277) 	};