/* * SPREADTRUM Ltd.clock-cells sprd_rotation * * SharkLT8 5mod refphone DTS */ /dts-v1/; /* memory reserved for SMEM */ /memreserve/ 0x87800000 0x5B0000; /* Offset:120M, Size:5M+256K */ /* memory reserved for WARM modem */ /memreserve/ 0x8DC00000 0xD00000; /* Offset:220M, Size:13M*/ /* memory reserved for LTE modem */ /memreserve/ 0x89600000 0x4600000; /* Offset:150M, Size:70M*/ /* memory reserved for fb */ /memreserve/ 0x9D845000 0x17BB000; /* 1920*1080*4*3, 4K alignment*/ /* memory reserved for ION */ /memreserve/ 0x9F000000 0x1000000; /* 1920*1080*4*2, 1M alignment*/ /* memory reserved for smp */ /memreserve/ 0x9F700000 0x1000; /* size 4K*/ /include/ "sc2723-regulators.dtsi" /include/ "sprd-sound.dtsi" /include/ "sprd-battery.dtsi" /include/ "scx35lt8-clocks.dtsi" / { model = "scx35l64"; compatible = "sprd,SharkLT8"; sprd,sc-id = <8830 1 0x20000>; interrupt-parent = <&gic>; #address-cells = <2>; #size-cells = <2>; chosen { bootargs = "earlyprintk=sprd_uart,0x70100000 loglevel=1 console=ttyS1,115200n8"; }; cpus { #address-cells = <2>; #size-cells = <0>; cpu-map { cluster0 { core0 { cpu = <&CPU0>; }; core1 { cpu = <&CPU1>; }; core2 { cpu = <&CPU2>; }; core3 { cpu = <&CPU3>; }; }; cluster1 { core0 { cpu = <&CPU4>; }; core1 { cpu = <&CPU5>; }; core2 { cpu = <&CPU6>; }; core3 { cpu = <&CPU7>; }; }; }; CPU0: cpu@530000 { device_type = "cpu"; compatible = "arm,cortex-a53","arm,armv8"; reg = <0x0 0x530000>; enable-method = "psci"; cpu-idle-states = <&LIGHT_SLEEP &CORE_PD>; clocks = <&clk_little_mcu>; cpu0-supply = <&vddarm>; operating-points = < /* kHz uV */ 1000000 900000 800000 900000 750000 900000 600000 900000 533000 900000 400000 900000 200000 900000 >; }; CPU1: cpu@530001 { device_type = "cpu"; compatible = "arm,cortex-a53","arm,armv8"; reg = <0x0 0x530001>; enable-method = "psci"; cpu-idle-states = <&LIGHT_SLEEP &CORE_PD>; }; CPU2: cpu@530002 { device_type = "cpu"; compatible = "arm,cortex-a53","arm,armv8"; reg = <0x0 0x530002>; enable-method = "psci"; cpu-idle-states = <&LIGHT_SLEEP &CORE_PD>; }; CPU3: cpu@530003 { device_type = "cpu"; compatible = "arm,cortex-a53","arm,armv8"; reg = <0x0 0x530003>; enable-method = "psci"; cpu-idle-states = <&LIGHT_SLEEP &CORE_PD>; }; CPU4: cpu@530100 { device_type = "cpu"; compatible = "arm,cortex-a53","arm,armv8"; reg = <0x0 0x530100>; enable-method = "psci"; cpu-idle-states = <&LIGHT_SLEEP &CORE_PD>; clocks = <&clk_big_mcu>; cpu0-supply = <&vddbigarm>; operating-points = < /* kHz uV */ 1500000 1050000 1420000 1050000 1350000 1050000 1200000 900000 1100000 900000 1000000 900000 960000 900000 >; }; CPU5: cpu@530101 { device_type = "cpu"; compatible = "arm,cortex-a53","arm,armv8"; reg = <0x0 0x530101>; enable-method = "psci"; cpu-idle-states = <&LIGHT_SLEEP &CORE_PD>; }; CPU6: cpu@530102 { device_type = "cpu"; compatible = "arm,cortex-a53","arm,armv8"; reg = <0x0 0x530102>; enable-method = "psci"; cpu-idle-states = <&LIGHT_SLEEP &CORE_PD>; }; CPU7: cpu@530103 { device_type = "cpu"; compatible = "arm,cortex-a53","arm,armv8"; reg = <0x0 0x530103>; enable-method = "psci"; cpu-idle-states = <&LIGHT_SLEEP &CORE_PD>; }; idle-states{ entry-method = "arm,psci"; LIGHT_SLEEP: light_sleep { compatible = "arm,idle-state"; exit-latency-us = <100>; min-residency-us = <500>; entry-method-param = <0x00000001>; }; CORE_PD: core_pd { compatible = "arm,idle-state"; exit-latency-us = <1070>; min-residency-us = <5000>; entry-method-param = <0x00010002>; }; CLUSTER_PD: cluster_pd { compatible = "arm,idle-state"; exit-latency-us = <2000>; min-residency-us = <8000>; entry-method-param = <0x01010003>; }; TOP_PD: top_pd { compatible = "arm,idle-state"; exit-latency-us = <2000>; min-residency-us = <5000>; entry-method-param = <0x01010004>; }; DEEP_SLEEP: deep_sleep { compatible = "arm,idle-state"; exit-latency-us = <4100>; min-residency-us = <6500>; entry-method-param = <0x01010005>; }; }; }; memory@80000000 { device_type = "memory"; reg = <0 0x80000000 0 0x40000000>; }; aliases { serial0 = &uart0; serial1 = &uart1; serial2 = &uart2; serial3 = &uart3; i2c0 = &i2c0; i2c1 = &i2c1; i2c2 = &i2c2; i2c3 = &i2c3; i2c4 = &i2c4; spi0 = &spi0; spi1 = &spi1; spi2 = &spi2; lcd0 = &fb0; hwspinlock0 = &hwspinlock0; hwspinlock1 = &hwspinlock1; }; pmu { compatible = "arm,armv8-pmuv3"; interrupts = <0 92 4>, <0 93 4>, <0 94 4>, <0 95 4>; }; psci { compatible = "arm,psci"; method = "smc"; cpu_on = <0xc4000003>; cpu_off = <0x84000002>; cpu_suspend = <0xc4000001>; }; gic: interrupt-controller@12001000 { compatible = "arm,cortex-a15-gic", "arm,cortex-a9-gic"; #interrupt-cells = <3>; #address-cells = <0>; interrupt-controller; reg = <0 0x12001000 0 0x1000>, <0 0x12002000 0 0x1000>; }; intc:interrupt-controller@71400000 { compatible = "sprd,intc"; #interrupt-cells = <0>; interrupt-controller; reg = <0 0x71400000 0 0x1000>, <0 0x71500000 0 0x1000>, <0 0x71600000 0 0x1000>, <0 0x71700000 0 0x1000>, <0 0x40200000 0 0x1000>; }; timer { compatible = "arm,armv8-timer"; interrupts = <1 13 0xff01>, <1 14 0xff01>, <1 11 0xff01>, <1 10 0xff01>; clock-frequency = <26000000>; }; sprd_timer { compatible = "sprd,sharkl64-timer"; reg = <0 0x40050000 0 0x20>; /*aon GPTIMER0 */ interrupts = <0 28 0x0>; clock-frequency = <32768>; }; sprd_ap_system_timer { reg = <0 0x40230000 0 0x20>; interrupts = <0 31 0x0>; }; clock: clockdevice { compatible = "sprd,scx35l64-clocks"; #clock-cells = <1>; }; d_eic_gpio: gpio@40210000 { compatible = "sprd,d-eic-gpio"; reg = <0 0x40210000 0 0x1000>; gpio-controller; interrupt-controller; #interrupt-cells = <2>; #gpio-cells = <2>; gpiobase = <288>; ngpios = <16>; interrupts = <0 37 0x0>; }; d_gpio_gpio: gpio@40280000 { compatible = "sprd,d-gpio-gpio"; reg = <0 0x40280000 0 0x1000>; gpio-controller; interrupt-controller; #interrupt-cells = <2>; #gpio-cells = <2>; gpiobase = <0>; ngpios = <256>; interrupts = <0 35 0x0>; }; uart0: uart@70000000 { compatible = "sprd,serial"; interrupts = <0 2 0xf04>; reg = <0 0x70000000 0 0x1000>; clock-names = "clk_uart0"; clocks = <&clock 60>; sprdclk = <48000000>; sprdwaketype = "BT_RTS_HIGH_WHEN_SLEEP"; }; uart1: uart@70100000 { compatible = "sprd,serial"; interrupts = <0 3 0xf04>; reg = <0 0x70100000 0 0x1000>; clock-names = "clk_uart1"; clocks = <&clock 61>; sprdclk = <26000000>; sprdwaketype = "BT_RTS_HIGH_WHEN_SLEEP"; }; uart2: uart@70200000 { compatible = "sprd,serial"; interrupts = <0 4 0xf04>; reg = <0 0x70200000 0 0x1000>; clock-names = "clk_uart2"; clocks = <&clock 62>; sprdclk = <26000000>; sprdwaketype = "BT_RTS_HIGH_WHEN_SLEEP"; }; uart3: uart@70300000 { compatible = "sprd,serial"; interrupts = <0 5 0xf04>; reg = <0 0x70300000 0 0x1000>; clock-names = "clk_uart3"; clocks = <&clock 63>; sprdclk = <26000000>; sprdwaketype = "BT_RTS_HIGH_WHEN_SLEEP"; }; hwspinlock0: hwspinlock0@20c00000{ compatible = "sprd,sprd-hwspinlock"; reg = <0 0x20c00000 0 0x1000>; }; hwspinlock1: hwspinlock1@40060000{ compatible = "sprd,sprd-hwspinlock"; reg = <0 0x40060000 0 0x1000>; status = "ok"; }; watchdog { compatible = "sprd,watchdog"; reg = <0 0X40290000 0 0x1000>; }; pinctrl { compatible = "sprd,pinctrl"; reg = <0 0x402a0000 0 0x1000>; pwr_domain = "vdd28", "vdd18", "vddsim0", "vddsim1", "vddsim2", "vddsdio", "vdd18"; ctrl_desc = <0x10 0 1 0x10 1 1 0x10 2 1 0x10 3 1 0x10 4 1 0x10 5 1 0x10 6 1>; }; sdios{ #address-cells = <2>; #size-cells = <2>; ranges; sdio3: sdio@20600000{ compatible = "sprd,sdhost-3.0"; reg = <0 0x20600000 0 0x1000>; interrupts = <0 60 0x0>; sprd,name = "sdio_emmc"; /*detect_gpio = <-1>; */ SD_Pwr_Name = "vddemmccore"; _1_8V_signal_Name = "vddgen0"; signal_default_Voltage = <1800000>; ocr_avail = <0x00040000>; clocks = <&clk_emmc>, <&clk_192m>; base_clk = <192000000>; caps = <0xC00F8D47>; caps2 = <0x202>; pm_caps = <0x4>; writeDelay = <0x3E>; readPosDelay = <0xA>; readNegDelay = <0xA>; }; sdio0: sdio@20300000{ compatible = "sprd,sdhost-3.0"; reg = <0 0x20300000 0 0x1000>; interrupts = <0 57 0x0>; sprd,name = "sdio_sd"; detect_gpio = <141>; SD_Pwr_Name = "vddsdcore"; _1_8V_signal_Name = "vddsdio"; signal_default_Voltage = <3000000>; ocr_avail = <0x00040000>; clocks = <&clk_sdio0>, <&clk_192m>; base_clk = <192000000>; caps = <0xC0020407>; caps2 = <0x200>; pm_caps = <0x4>; writeDelay = <0x3>; readPosDelay = <0x3>; readNegDelay = <0x3>; }; sdio1: sdio@20400000{ compatible = "sprd,sdhost-3.0"; reg = <0 0x20400000 0 0x1000>; interrupts = <0 58 0x0>; sprd,name = "sdio_wifi"; /* detect_gpio = <-1>; */ /* SD_Pwr_Name = "vddsdcore"; */ /* _1_8V_signal_Name = "vddsdio";*/ /* signal_default_Voltage = <3000000>; */ ocr_avail = <0x00360080>; clocks = <&clk_sdio1>, <&clk_76m8>; base_clk = <76000000>; caps = <0xC00FA407>; caps2 = <0x0>; pm_caps = <0x5>; writeDelay = <0x03>; readPosDelay = <0x03>; readNegDelay = <0x03>; }; }; adic:adic { compatible = "sprd,adi"; reg = <0 0x40030000 0 0x10000>; }; adi: adi_bus { compatible = "sprd,adi-bus"; interrupts = <0 38 0x0>; reg = <0 0x40038000 0 0x1000>; interrupt-controller; sprd,irqnums = <11>; #interrupt-cells = <2>; #address-cells = <1>; #size-cells = <1>; ranges = <0x100 0 0x40038100 0x80>, <0x440 0 0x40038440 0x40>, <0x800 0 0x40038800 0xff>; keyboard_backlight { compatible = "sprd,keyboard-backlight"; }; sprd_kpled_2723 { compatible = "sprd,sprd-kpled-2723"; brightness_max = <255>; brightness_min = <0>; run_mode = <1>; }; leds_sprd_bltc_rgb { compatible = "sprd,sprd-leds-bltc-rgb"; reg = <0x440 0x40>, <0x800 0xff>; }; a_eic_gpio: gpio@100{ compatible = "sprd,a-eic-gpio"; reg = <0x100 0x80>; /* adi reg */ gpio-controller; interrupt-controller; #interrupt-cells = <2>; #gpio-cells = <2>; gpiobase = <304>; ngpios = <16>; interrupt-parent = <&adi>; interrupts = <5 0x0>; /* ext irq 5 */ }; sprd_eic_keys { compatible = "sprd,sprd-eic-keys"; input-name = "sprd-eic-keys"; key_power { label = "Power Key"; linux,code = <116>; gpios = <&a_eic_gpio 2 0>; debounce-interval = <2>; gpio-key,wakeup; }; key_volumeup { label = "Volumeup Key"; linux,code = <115>; gpios = <&a_eic_gpio 10 0>; debounce-interval = <2>; gpio-key,wakeup; }; }; headset_sprd_sc2723 { compatible = "sprd,headset_sprd_sc2723"; gpio_switch = <0>; gpio_detect = <312>; gpio_button = <307>; irq_trigger_level_detect = <1>; irq_trigger_level_button = <1>; adc_threshold_3pole_detect = <2650>; adc_threshold_4pole_detect = <2651>; irq_threshold_buttont = <1>; voltage_headmicbias = <3000000>; nbuttons = <3>; headset_buttons_media { adc_min = <0>; adc_max = <430>; code = <226>; type = <0>; }; headset_buttons_up { adc_min = <431>; adc_max = <860>; code = <115>; type = <0>; }; headset_buttons_down { adc_min = <861>; adc_max =<1900>; code = <114>; type = <0>; }; }; rtc@80{ compatible = "sprd,rtc"; reg = <0X80 0x80>; interrupt-parent = <&adi>; interrupts = <2 0x0>; }; }; sprd_pwm_bl { compatible = "sprd,sprd_pwm_bl"; brightness_max = <255>; brightness_min = <0>; pwm_index = <2>; gpio_ctrl_pin = <0>; gpio_active_level = <0>; reg =<0 0x40260000 0 0xf>; }; gpio_keys { compatible = "gpio-keys"; input-name = "sprd-gpio-keys"; key_volumedown { label = "Volumedown Key"; linux,code = <114>; gpios = <&d_gpio_gpio 124 1>; debounce-interval = <2>; gpio-key,wakeup; }; /* key_volumeup { label = "Volumeup Key"; linux,code = <115>; gpios = <&d_gpio_gpio 125 1>; debounce-interval = <2>; gpio-key,wakeup; }; */ key_camerafocus { label = "Camerafocus Key"; linux,code = <0x210>; gpios = <&d_gpio_gpio 121 0>; debounce-interval = <2>; gpio-key,wakeup; }; key_camera { label = "Camera Key"; linux,code = <212>; gpios = <&d_gpio_gpio 122 0>; debounce-interval = <2>; gpio-key,wakeup; }; }; sprd_backlight { compatible = "sprd,sprd_backlight"; start = <3>; end = <3>; flags = <0x100>; }; rfkill { compatible = "broadcom,rfkill"; gpios = <&d_gpio_gpio 131 0 /* power */ &d_gpio_gpio 122 0>; /* reset */ }; bluesleep { compatible = "broadcom,bluesleep"; bt-wake-gpio = <&d_gpio_gpio 132 0>; host-wake-gpio = <&d_gpio_gpio 133 0>; }; usb: usb@20200000{ compatible = "sprd,usb"; interrupts = <0 55 0x0>; ngpios = <1>; gpios = <&a_eic_gpio 0 0>; reg = <0 0x20200000 0 0x1000>; tune_value = <0x0005af33>; usb-supply = <&vddusb>; #address-cells = <1>; #size-cells = <0>; }; sprd_thermal: thermal@402F0000{ compatible = "sprd,sprd-thermal"; id = <0>; interrupts = <0 26 0x0>; reg = <0 0x402F0000 0 0x1000>; trip_points_active = <65 69 95 110>; trip_points_lowoff = <0 57 60 80>; trip_points_critical = <100>; trip_num = <5>; cool_num = <2>; cooling-names = "thermal-cpufreq-0","thermal-cpufreq-1"; }; sprd_thermal1:thermal1@402F0000 { compatible = "sprd,sprd-thermal"; id = <1>; interrupts = <0 26 0x0>; reg = <0 0x402F0000 0 0x1000>; trip_points_active = <100>; trip_points_lowoff = <90>; trip_points_critical = <100>; trip_num = <2>; }; sprd_thermal2: thermal@40038280{ compatible = "sprd,sprd-thermal"; id = <2>; interrupt-parent = <&adi>; interrupts = <9 0x0>; reg = <0 0x40038280 0 0x1000>; trip_points_active = <110>; trip_points_lowoff = <90>; trip_points_critical = <110>; trip_num = <2>; }; sprd_board_thermal: board-thermal{ compatible = "sprd,board-thermal"; id = <3>; trip_points_active = <100>; trip_points_lowoff = <90>; trip_points_critical = <100>; trip_num = <2>; temp_inteval=<2>; temp-support = <1>; temp-adc-ch = <2>; temp-adc-scale = <1>; temp-adc-sample-cnt = <15>; temp-table-mode = <1>; temp-tab-size = <16>; temp-tab-val = <1122 1094 1049 983 892 779 654 528 413 316 238 178 133 100 75 57>; temp-tab-temp = <965 975 985 995 1005 1015 /* temperature + 1000,750 = 1000 + (-250)*/ 1025 1035 1045 1055 1065 1075 1085 1095 1105 1115>; }; adc: adc@40038300{ compatible = "sprd,sprd-adc"; reg = <0x40038300 0x1000>; }; i2c0: i2c@70500000{ compatible = "sprd,i2c"; interrupts = <0 11 0x0>; reg = <0 0x70500000 0 0x1000>; clock-names = "clk_i2c0"; clocks = <&clk_i2c0>; #address-cells = <1>; #size-cells = <0>; sensor_main@0x3c { compatible = "sprd,sensor_main"; reg = <0x3c>; }; sensor_sub@0x21 { compatible = "sprd,sensor_sub"; reg = <0x21>; }; }; little_cpu_cooling{ compatible = "sprd,sprd-cpu-cooling"; id = <0>; cluster = <0>; max_freq = <1000000 1000000>; max_core = <4 1>; state_num = <2>; }; big_cpu_cooling{ compatible = "sprd,sprd-cpu-cooling"; id = <1>; cluster = <1>; max_freq = <1500000 1200000>; max_core = <4 0>; state_num = <2>; }; i2c1: i2c@70600000{ compatible = "sprd,i2c"; interrupts = <0 12 0x0>; reg = <0 0x70600000 0 0x1000>; clock-names = "clk_i2c1"; clocks = <&clk_i2c1>; #address-cells = <1>; #size-cells = <0>; fairchild_fan53555@60{ compatible = "fairchild,fairchild_fan53555"; reg = <0x60>; vddbigarm: vddbigarm { regulator-name = "vddbigarm"; regulator-default-microvolt = <1020000>;/*1050000*/ regulator-step-microvolt = <10000>;/* 10 * 1000 uV */ regulator-min-microvolt = <600000>;/* 600 * 1000 uV */ regulator-max-microvolt = <1230000>;/*(600 + 10 * 0x3F) * 1000 uV*/ }; }; }; i2c2: i2c@70700000{ compatible = "sprd,i2c"; interrupts = <0 13 0x0>; reg = <0 0x70700000 0 0x1000>; clock-names = "clk_i2c2"; clocks = <&clk_i2c2>; #address-cells = <1>; #size-cells = <0>; lis3dh_acc@18{ compatible = "ST,lis3dh_acc"; reg = <0x18>; poll_interval = <10>; min_interval = <10>; g_range = <0>; axis_map_x = <1>; axis_map_y = <0>; axis_map_z = <2>; negate_x = <0>; negate_y = <1>; negate_z = <0>; }; ltr_558als@23{ compatible = "LITEON,ltr_558als"; reg = <0x23>; gpios = <&d_gpio_gpio 140 0>; }; epl259x_pls@49{ compatible = "ELAN,epl259x_pls"; reg = <0x49>; gpios = <&d_gpio_gpio 140 0>; }; }; i2c3: i2c@70800000{ compatible = "sprd,i2c"; interrupts = <0 14 0x0>; reg = <0 0x70800000 0 0x1000>; clock-names = "clk_i2c3"; clocks = <&clk_i2c3>; #address-cells = <1>; #size-cells = <0>; focaltech_ts@38{ compatible = "focaltech,focaltech_ts"; reg = <0x38>; gpios = <&d_gpio_gpio 145 0 &d_gpio_gpio 144 0>; vdd_name = "vdd18"; virtualkeys = <580 1350 60 45 360 1350 60 45 160 1350 60 45>; TP_MAX_X = <720>; TP_MAX_Y = <1280>; }; msg2138_ts@26{ compatible = "Mstar,msg2138_ts"; reg = <0x26>; gpios = <&d_gpio_gpio 145 0 &d_gpio_gpio 144 0>; vdd_name = "vdd28"; virtualkeys = <256 1068 64 64 128 1068 64 64 192 1068 64 64>; TP_MAX_X = <480>; TP_MAX_Y = <800>; }; }; i2c4: i2c@70900000{ compatible = "sprd,i2c"; interrupts = <0 15 0x0>; reg = <0 0x70900000 0 0x1000>; clock-names = "clk_i2c4"; clocks = <&clk_i2c4>; #address-cells = <1>; #size-cells = <0>; }; spi0: spi0@70a00000{ compatible = "sprd,sprd-spi"; interrupts = <0 7 0x0>; reg = <0 0x70a00000 0 0x1000>; clock-names = "clk_spi0"; }; spi1: spi1@70b00000{ compatible = "sprd,sprd-spi"; interrupts = <0 8 0x0>; reg = <0 0x70b00000 0 0x1000>; clock-names = "clk_spi1"; }; spi2: spi2@70c00000{ compatible = "sprd,sprd-spi"; interrupts = <0 9 0x0>; reg = <0 0x70c00000 0 0x1000>; clock-names = "clk_spi2"; }; dma: dma-controller@20100000 { compatible = "sprd,sharkl64-dma"; #dma-cells = <1>; #dma-channels = <64>; sprd,aon-offset = <32>; reg = <0 0x20100000 0 0x4000>, /* ap reg */ <0 0x40100000 0 0x4000>; /* aon reg */ interrupts = <0 50 0x0>, /* ap int */ <0 70 0x0>; /* aon int */ }; sprd-io-base { #address-cells = <2>; #size-cells = <2>; ranges = <0 0 0 0 1 0>; ahb { compatible = "sprd,ahb"; reg = <0 0x20e00000 0 0x40000>; }; apbckg { compatible = "sprd,apbckg"; reg = <0 0x21500000 0 0x1000>; }; hwlock0 { compatible = "sprd,hwlock0"; reg = <0 0x20d00000 0 0x1000>; }; pub_apb { compatible = "sprd,pub_apb"; reg = <0 0x30020000 0 0x10000>; }; aon_apb { compatible = "sprd,aon_apb"; reg = <0 0x402e0000 0 0x40000>; }; pmu_apb { compatible = "sprd,pmu_apb"; reg = <0 0x402b0000 0 0x40000>; }; mm_ahb { compatible = "sprd,mm_ahb"; reg = <0 0x60d00000 0 0x10000>; }; mm_clk { compatible = "sprd,mm_clk"; reg = <0 0x60e00000 0 0x1000>; }; codecahb { compatible = "sprd,codecahb"; reg = <0 0x62000000 0 0x1000>; }; ap_ckg { compatible = "sprd,ap_ckg"; reg = <0 0x71200000 0 0x40000>; }; ap_apb { compatible = "sprd,ap_apb"; reg = <0 0x71300000 0 0x40000>; }; gpu_apb { compatible = "sprd,gpu_apb"; reg = <0 0x60100000 0 0x1000>; }; adi { compatible = "sprd,adi"; reg = <0 0x40030000 0 0x10000>; }; adi_slave { compatible = "sprd,adi_slave"; reg = <0 0x40038000 0 0x1000>; }; mailbox { compatible = "sprd,mailbox"; reg = <0 0x400a0000 0 0x10000>; }; uart0 { compatible = "sprd,uart0"; reg = <0 0x70000000 0 0x1000>; }; uart1 { compatible = "sprd,uart1"; reg = <0 0x70100000 0 0x1000>; }; uart2 { compatible = "sprd,uart2"; reg = <0 0x70200000 0 0x1000>; }; uart3 { compatible = "sprd,uart3"; reg = <0 0x70300000 0 0x1000>; }; uart4 { compatible = "sprd,uart4"; reg = <0 0x70400000 0 0x1000>; }; axibm0 { compatible = "sprd,axibm0"; reg = <0 0x30040000 0 0x20000>; interrupts = <0 86 0x0>; }; d_eic_gpio { compatible = "sprd,d-eic-gpio"; reg = <0 0x40210000 0 0x1000>; }; d_gpio_gpio { compatible = "sprd,d-gpio-gpio"; reg = <0 0x40280000 0 0x1000>; }; aon_dma { compatible = "sprd,aon_dma"; reg = <0 0x40100000 0 0x1000>; interrupts = <0 50 0x0>; }; pwm { compatible = "sprd,pwm"; reg = <0 0x40260000 0 0x1000>; }; core { compatible = "sprd,core"; reg = <0 0x12000000 0 0x10000>; }; int { compatible = "sprd,int"; reg = <0 0x40200000 0 0x1000>; }; intc0 { compatible = "sprd,intc0"; reg = <0 0x71400000 0 0x1000>; }; intc1 { compatible = "sprd,intc1"; reg = <0 0x71500000 0 0x1000>; }; intc2 { compatible = "sprd,intc2"; reg = <0 0x71600000 0 0x1000>; }; intc3 { compatible = "sprd,intc3"; reg = <0 0x71700000 0 0x1000>; }; send_mbox { compatible = "sprd,send_mbox"; reg = <0 0x400a0000 0 0x1000>; }; recv_mbox { compatible = "sprd,recv_mbox"; reg = <0 0x400a8000 0 0x1000>; }; uidefuse { compatible = "sprd,uidefuse"; reg = <0 0x40240000 0 0x1000>; }; isp { compatible = "sprd,isp"; reg = <0 0x60a00000 0 0x8000>; }; csi2 { compatible = "sprd,csi2"; reg = <0 0x60c00000 0 0x1000>; }; ipi { compatible = "sprd,ipi"; reg = <0 0x402c0000 0 0x1000>; }; dcam { compatible = "sprd,dcam"; reg = <0 0x60800000 0 0x10000>; }; syscnt { compatible = "sprd,syscnt"; reg = <0 0x40230000 0 0x1000>; }; dma0 { compatible = "sprd,dma0"; reg = <0 0x20100000 0 0x4000>; }; pub { compatible = "sprd,pub"; reg = <0 0x30020000 0 0x10000>; }; pin { compatible = "sprd,pin"; reg = <0 0x402a0000 0 0x1000>; }; aonckg { compatible = "sprd,aonckg"; reg = <0 0x402d0000 0 0x1000>; }; lpddr2 { compatible = "sprd,lpddr2"; reg = <0 0x30000000 0 0x1000>; }; }; sprd_dcam { compatible = "sprd,sprd_dcam"; interrupts = <0 45 0>; reg = <0 0x60800000 0 0x100000>; clock-names = "clk_mm_i","clk_dcam"; clocks = <&clk_mm>, <&clk_dcam>; }; sprd_scale { compatible = "sprd,sprd_scale"; }; sprd_rotation { compatible = "sprd,sprd_rotation"; }; sprd_sensor { compatible = "sprd,sprd_sensor"; reg = <0 0x60c00000 0 0x100000>; gpios = <&d_gpio_gpio 44 0 /*main reset*/ &d_gpio_gpio 46 0 /*main powerdown*/ &d_gpio_gpio 45 0 /*sub reset*/ &d_gpio_gpio 47 0 &d_gpio_gpio 0 0 /*main core voltage*/ &d_gpio_gpio 0 0 &d_gpio_gpio 0 0 &d_gpio_gpio 0 0>; /*sub powerdown*/ clock-names ="clk_mm_i","clk_sensor","clk_ccir","clk_dcam","clk_dcam_mipi"; clocks = <&clk_mm>,<&clk_sensor>,<&clk_ccir>,<&clk_dcam>,<&clk_dcam_mipi>; }; sprd_isp { compatible = "sprd,sprd_isp"; reg = <0 0x60a00000 0 0x100000>; clock-names = "clk_mm_i","clk_isp"; clocks = <&clk_mm>, <&clk_isp>; }; sprd_dma_copy { compatible = "sprd,sprd_dma_copy"; }; fb0: fb@20800000 { compatible = "sprd,sprdfb"; reg = <0 0x20800000 0 0x1000>, <0 0x21800000 0 0x1000>; interrupts = <0 46 0x0>, <0 48 0x0>, <0 49 0x0>; clock-names = "dispc_clk_parent", "dispc_dbi_clk_parent", "dispc_dpi_clk_parent", "dispc_emc_clk_parent", "dispc_clk", "dispc_dbi_clk", "dispc_dpi_clk", "dispc_emc_clk", "fb_spi_clock", "fb_spi_clock_parent"; clocks = <&clk_256m>, <&clk_256m>, <&clk_384m>, <&clk_aon_apb>, <&clk_dispc0>, <&clk_dispc0_dbi>, <&clk_dispc0_dpi>, <&clk_disp_emc>, <&clk_spi2>, <&ext_26m>; clock-src = <256000000 256000000 384000000>; dpi_clk_div = <7>; sprd,fb_use_reservemem; sprd,fb_mem = <0x9D845000 0x17BB000>; }; gsp@20a00000 { compatible = "sprd,gsp"; reg = <0 0x20a00000 0 0x1000>; interrupts = <0 51 0x0>; clock-names = "clk_gsp0", "clk_gsp_emc", "clk_gsp_parent", "clk_aon_apb"; clocks = <&clk_gsp0>, <&clk_gsp_emc>, <&clk_256m>, <&clk_aon_apb>; gsp_mmu_ctrl_base = <0x20b08000>; }; /*sharLT8 gspn initializer */ gspn:gspn@0x20A00000 { compatible = "sprd,gspn"; reg = <0x71500000 0x1000>, // arm interrupt ctl reg <0x20E00000 0x1000>, //gspn module enable ctl reg base <0x20E00004 0x1000>, //gspn module reset ctl reg base <0x20E0304C 0x1000>, //[0] gsp/gspn select reg base, 0:gsp; 1:gspn <0x402e00fc 0x1000>; //[0] ap chip id reg addr gspn0:gspn@0x20A00000 { core_id = <0>; gspn_en_rst_bit = <0x00000008>;//bit3 mmu_en_rst_bit = <0x00000008>;//bit3 auto_gate_bit = <0x00000100>;//bit8 force_gate_bit = <0x00000200>;//bit9 emc_en_bit = <0x00000008>;//bit3 reg = <0x20A00000 0x1000>, //gspn module ctl reg <0x20B10000 0x1000>, //iommu ctl reg,64MB,page size 4KB <0x21500028 0x1000>, //gspn clock source select ctl reg base <0x20E00010 0x1000>, //gspn clock auto-gate/force-gate ctl reg base <0x20E00000 0x1000>; //gspn emc clock ctl reg base interrupts = <0 51 0x0>; clock-names = "clk_gsp", "clk_gsp_emc", "clk_gsp_parent", "clk_aon_apb"; //clocks = <&clk_gsp>, <&clk_gsp_emc>, <&clk_256m>, <&clk_aon_apb>; }; }; sprd_fm: sprd_fm@40270000{ compatible = "sprd,sprd_fm"; reg = <0 0x40270000 0 0x1000>; }; sipc: sipc@0x87800000 { compatible = "sprd,sipc"; reg = <0 0x87800000 0 0x5B0000>; /* */ //#interrupt-cells = <2>; #address-cells = <1>; #size-cells = <1>; ranges =<0x09600000 0 0x89600000 0x4600000>, <0x07800000 0 0x87800000 0x5B0000>, <0x0dbff000 0 0x8dbff000 0x1000>; sipc_lte@0x09600000 { sprd,name = "sipc-lte"; sprd,dst = <5>; /* it's unnecessary to config IPI info upon mailbox arch */ mailbox,core = <7>; reg = <0x09600000 0x4600000> , /* */ <0x07800000 0x5B0000>, /* */ <0x0dbff000 0x1000>; /* smsg ring buffer */ }; }; sctrl_pmic{ compatible = "sprd,sctrl"; sprd,name = "sctrl_pmic"; sprd,dst = <6>; sprd,channel= <1>; sprd,ringnr = <1>; /* it's unnecessary to config IPI info upon mailbox arch */ mailbox,core = <1>; sprd,ringbase = <0x5000b000>; /*SMSG ring mem base phy address*/ sprd,size-rxbuf = <0x0400>; /* 2*1024*/ sprd,size-txbuf = <0x0400>; /* 2*1024 */ }; saudio_lte{ compatible = "sprd,saudio"; sprd,saudio-dst-id = <5>; /* SIPC_ID_LTE */ sprd,ctrl_channel = <10>; /* SMSG_CH_VBC */ sprd,playback_channel = <11>; /* SMSG_CH_PLAYBACK */ sprd,capture_channel = <12>; /* SMSG_CH_CAPTURE */ sprd,monitor_channel = <13>; /*SMSG_CH_MONITOR_AUDIO */ sprd,saudio-names = "saudiolte"; }; saudio_voip{ compatible = "sprd,saudio"; sprd,saudio-dst-id = <5>; /* SIPC_ID_LTE */ sprd,ctrl_channel = <14>; /* SMSG_CH_CTRL_VOIP */ sprd,playback_channel = <15>; /* SMSG_CH_PLAYBACK_VOIP */ sprd,capture_channel = <16>; /* SMSG_CH_CAPTURE_VOIP */ sprd,monitor_channel = <17>; /*SMSG_CH_MONITOR_VOIP */ sprd,saudio-names = "saudiovoip"; }; /* LTE modem virtual devices */ spipe_lte { compatible = "sprd,spipe"; sprd,name = "spipe_lte"; sprd,dst = <5>; sprd,channel = <4>; sprd,ringnr = <9>; sprd,size-rxbuf = <0x1000>; /* 4*1024 */ sprd,size-txbuf = <0x1000>; /* 4*1024 */ }; slog_lte { compatible = "sprd,spipe"; sprd,name = "slog_lte"; sprd,dst = <5>; sprd,channel = <5>; sprd,ringnr = <1>; sprd,size-rxbuf = <0x40000>; /* 256*1024*/ sprd,size-txbuf = <0x8000>; /* 32*1024 */ }; sdiag_lte { compatible = "sprd,spipe"; sprd,name = "sdiag_lte"; sprd,dst = <5>; sprd,channel = <21>; sprd,ringnr = <1>; sprd,size-rxbuf = <0x40000>; /* 256*1024*/ sprd,size-txbuf = <0x8000>; /* 32*1024 */ }; stty_lte { compatible = "sprd,spipe"; sprd,name = "stty_lte"; sprd,dst = <5>; sprd,channel = <6>; sprd,ringnr = <32>; sprd,size-rxbuf = <0x0800>; /* 2*1024*/ sprd,size-txbuf = <0x0800>; /* 2*1024 */ }; seth0_lte { compatible = "sprd,seth"; sprd,name = "seth_lte0"; sprd,dst = <5>; sprd,channel = <7>; sprd,blknum = <256>; }; seth1_lte { compatible = "sprd,seth"; sprd,name = "seth_lte1"; sprd,dst = <5>; sprd,channel = <8>; sprd,blknum = <256>; }; seth2_lte { compatible = "sprd,seth"; sprd,name = "seth_lte2"; sprd,dst = <5>; sprd,channel = <9>; sprd,blknum = <256>; }; seth3_lte { compatible = "sprd,seth"; sprd,name = "seth_lte3"; sprd,dst = <5>; sprd,channel = <18>; sprd,blknum = <256>; }; seth4_lte { compatible = "sprd,seth"; sprd,name = "seth_lte4"; sprd,dst = <5>; sprd,channel = <19>; sprd,blknum = <256>; }; seth5_lte { compatible = "sprd,seth"; sprd,name = "seth_lte5"; sprd,dst = <5>; sprd,channel = <20>; sprd,blknum = <256>; }; scproc_arm7: scproc@0x50800000 { compatible = "sprd,scproc"; sprd,name = "cppmic"; sprd,ctrl-reg = <0x114 0xff 0xb0 0xff>; /* */ sprd,ctrl-mask = <0x01 0xfffffffe 0x100 0xf0000>; /* masks <> */ sprd,iram-data = <0xe59f0000 0xe12fff10 0x0>; /* 3rd param equals modem_addr*/ reg = <0 0x50800000 0 0x8000>, /* = <+128M 26M> */ <0 0x50800000 0 0x0>, /* */ <0 0x402e0000 0 0x400>, /* */ <0 0x402b0000 0 0x100>, /* */ <0 0x402b0000 0 0x100>, /* */ <0 0x402b0000 0 0x100>; /* */ #address-cells = <1>; #size-cells = <1>; /* segnr=1 */ ranges = <0x0 0 0x50800000 0x8000>; modem@0x0 { cproc,name = "modem"; reg = <0x0 0x8000>; /* */ }; }; scproc_cp1: scproc@0x89600000 { compatible = "sprd,scproc"; sprd,name = "cptl"; sprd,ctrl-reg = <0x0c 0xff 0xb0 0x78>; /* */ sprd,ctrl-mask = <0x00300000 0x10000000 0x02 0x1>; /* masks <> */ sprd,iram-data = <0xe59f0000 0xe12fff10 0x8ae00000>; /* 3rd param equals modem_addr*/ reg = <0 0x89600000 0 0x5300000>, /* = <+128M 83M> */ <0 0x50001000 0 0x0c>, /* */ <0 0x402e0000 0 0x100>, /* */ <0 0x402b0000 0 0x100>, /* */ <0 0x402b0000 0 0x100>, /* */ <0 0x402b0000 0 0x100>; /* */ interrupts = <0 84 0x0>; /* cp1_wdg_int */ #address-cells = <1>; #size-cells = <1>; /* segnr=4 */ ranges = <0x1800000 0 0x8ae00000 0x02E00000>, <0x0020000 0 0x89620000 0x002E0000>, <0x0300000 0 0x89900000 0x1C0000>, <0x4900000 0 0x8df00000 0xA00000>; modem@0x1800000 { cproc,name = "modem"; reg = <0x1800000 0x02E00000>; /* */ }; dsp@0x20000 { cproc,name = "tgdsp"; reg = <0x20000 0x002e0000>; /* */ }; dsp@0x300000 { cproc,name = "ldsp"; reg = <0x300000 0x1c0000>; /* */ }; modem@0x4900000 { cproc,name = "warm"; reg = <0x4900000 0xA00000>; /* */ }; }; itm_wlan{ compatible = "sprd,itm_wlan"; }; dmac: dmac@20100000 { compatible = "sprd,sprd-dma"; interrupts = <0 50 0x0>; reg = <0 0x20100000 0 0x4000>; }; gpu: gpu@60000000 { compatible = "sprd,mali-midgard"; reg = <0 0x60000000 0 0x4000>; interrupts = <0 39 0x4>, <0 39 0x4>, <0 39 0x4>; interrupt-names = "JOB", "MMU", "GPU"; clocks = <&clk_gpu_axi>,<&clk_gpu>,<&clk_153m6>, <&clk_192m>, <&clk_256m>, <&clk_307m2>, <&clk_384m>, <&clk_gpll>; clock-names = "clk_gpu_axi","clk_gpu","clk_153m6","clk_192m","clk_256m","clk_307m2","clk_384m","clk_gpll"; freq-list-len = <4>; freq-lists = <153600 2 1>, <256000 4 1>, <384000 6 1>, <512000 7 1>; freq-default = <3>; freq-9 = <3>; freq-8 = <3>; freq-7 = <1>; freq-5 = <0>; freq-range-max = <3>; freq-range-min = <0>; }; ion { compatible = "sprd,ion-sprd"; #address-cells = <1>; #size-cells = <0>; sprd,ion-heap@1 { reg = <1>; /* SYSTEM */ reg-names = "ion_heap_system"; sprd,ion-heap-type = <0>; /* SYSTEM */ sprd,ion-heap-mem = <0x0 0x0>; }; sprd,ion-heap@2 { reg = <2>; /* MM */ reg-names = "ion_heap_carveout_mm"; sprd,ion-heap-type = <0>; /* carveout mm */ sprd,ion-heap-mem = <0x9864F000 0x7100000>; }; sprd,ion-heap@3 { reg = <3>; /* OVERLAY */ reg-names = "ion_heap_carveout_overlay"; sprd,ion-heap-type = <2>; /* CARVEOUT */ sprd,ion-heap-mem = <0x9F000000 0x1000000>; /* 1920*1080*4*2, 1M alignment */ }; sprd,ion-heap@4 { reg = <4>; /* FB */ reg-names = "ion_heap_carveout_fb"; sprd,ion-heap-type = <2>; /* CARVEOUT */ sprd,ion-heap-mem = <0x9D845000 0x17BB000>; }; }; sprd_iommu0: sprd_iommu@20b00000 { compatible = "sprd,sprd_iommu";//gsp func-name = "sprd_iommu_gsp"; reg = <0 0x10000000 0 0x2000000>, //iova <0 0x20b00000 0 0x8000>, //pgt <0 0x20b08000 0 0x8000>; //ctrl_reg reg_name = "iova","pgt","ctrl_reg"; clock-names = "clk_gsp_emc","clk_153m6","clk_gsp0"; clocks = <&clk_gsp_emc>, <&clk_153m6>,<&clk_gsp0>; status = "ok"; }; sprd_iommu1: sprd_iommu@60f00000 { compatible = "sprd,sprd_iommu";//mm func-name = "sprd_iommu_mm"; reg = <0 0x20000000 0 0x8000000>, //iova <0 0x60f00000 0 0x20000>, //pgt <0 0x60f20000 0 0x2000>; //ctrl_reg reg_name = "iova","pgt","ctrl_reg"; clock-names = "clk_mmu","clk_mm_i"; clocks = <&clk_mmu>,<&clk_mm>; status = "ok"; }; sprd_vsp: sprd_vsp@60900000{ compatible = "sprd,sprd_vsp"; reg = <0 0x60900000 0 0xc000>; interrupts = <0 43 0x0>; clock-names = "clk_mm_i", "clk_vsp", "clk_parent_0", "clk_parent_1", "clk_parent_2", "clk_parent_3"; clocks = <&clk_mm>, <&clk_vsp>, <&clk_307m2>, <&clk_256m>, <&clk_128m>, <&clk_96m>; clock-parent-info = <2 4>; version = <7>; }; sprd_vpp@61000000{ compatible = "sprd,sprd_vpp"; reg = <0 0x61000000 0 0x4000>; interrupts = <0 43 0x0>; clock-names = "clk_mm_i","clk_vpp"; clocks = <&clk_mm>, <&clk_vpp>; }; sprd_coda7l@62100000{ compatible = "sprd,sprd_coda7l"; reg = <0 0x62100000 0 0x4000>; interrupts = <0 43 0x0>; clock-names = "clk_mm_i","clk_coda7_axi","clk_coda7_cc","clk_coda7_apb"; clocks = <&clk_mm>, <&clk_coda7_axi>, <&clk_coda7_cc>, <&clk_coda7_apb>; }; sprd_jpg { compatible = "sprd,sprd_jpg"; reg = <0 0x60b00000 0 0x8000>; interrupts = <0 42 0x0>; clock-names = "clk_mm_i","clk_jpg"; clocks = <&clk_mm>, <&clk_jpg>; }; sprd_bm { compatible = "sprd,sprd_bm"; reg = <0 0x30040000 0 0xA0000 0 0x20F00000 0 0x300000>; interrupts = <0 86 0x0>; sprd,bm_status = <1>; sprd,bm_count = <10 11>; sprd,cpu_chn = <0 1>; sprd,disp_chn = <1 1>; sprd,gpu_chn = <2 1>; sprd,ap_zip_chn = <3 1>; sprd,mm_chn = <4 1>; sprd,cp0_arm0_1_chn = <5 1>; sprd,cp0_dsp_chn = <6 0>; sprd,cp1_lte_chn = <7 1>; sprd,cp1_dsp_chn = <8 1>; sprd,cp1_arm_chn = <9 1>; sprd,ap_dap_chn = <0 0>; sprd,ap_cpu_chn = <0 1>; sprd,ap_dma_r_chn = <0 2>; sprd,ap_dma_w_chn = <0 3>; sprd,ap_sdio_0_chn = <1 0>; sprd,ap_sdio_1_chn = <1 1>; sprd,ap_sdio_2_chn = <1 2>; sprd,ap_emmc_chn = <1 3>; sprd,ap_nandc_chn = <2 0>; sprd,ap_otg_chn = <2 1>; sprd,ap_hsic_chn = <2 2>; }; wdt@40290000 { compatible = "sprd,sprd-wdt"; reg = <0 0x40290000 0 0x1000>, <0 0x40310000 0 0x1000>; interrupts = <0 124 0x0>; }; sprd-marlin { compatible = "sprd,marlin"; gpios = <&d_gpio_gpio 97 0 /*marlin gpio0 */ &d_gpio_gpio 132 0 /*marlin gpio1 */ &d_gpio_gpio 133 0 /*marlin gpio2 */ &d_gpio_gpio 94 0 /*marlin gpio3 */ &d_gpio_gpio 130 0>; /*marlin reset*/ cp-rfctl-offset = <0x244>; /*coex func. marlin gpio3*/ vdd-download = "vddcon"; /*vdd 1.6v*/ vdd-pa = "vddwifipa"; /*vdd 3.3v*/ clk-name = "clk_aux0"; /*clk 32k*/ sdhci-name = "sdio_wifi"; }; }; &vbc_r2p0 { status = "okay"; }; &sprd_codec { status = "okay"; sprd,audio_power_ver = <4>; }; &i2s0 { sprd,config_type = "pcm"; sprd,slave_timeout = <0xF11>; sprd,_hw_port = <0>; sprd,fs = <8000>; sprd,bus_type = <1>; sprd,rtx_mode = <3>; sprd,byte_per_chan = <1>; sprd,slave_mode = <0>; sprd,lsb = <0>; sprd,lrck = <0>; sprd,low_for_left = <1>; sprd,clk_inv = <0>; sprd,pcm_short_frame = <1>; sprd,pcm_slot = <0x1>; sprd,pcm_cycle = <1>; sprd,tx_watermark = <12>; sprd,rx_watermark = <20>; status = "okay"; }; &i2s1 { status = "okay"; }; &i2s2 { status = "okay"; }; &i2s3 { status = "okay"; }; &i2s_sound { sprd,i2s = <&i2s0>, <&i2s1>, <&i2s2>, <&i2s3>; }; &sprd_battery { gpios = <&a_eic_gpio 0 0 /* chg int */ &a_eic_gpio 4 0 /* cv state */ &a_eic_gpio 6 0 /* chg ovi */ &a_eic_gpio 9 0>; /* battery detect */ chg-end-vol-h = <4375>; chg-end-vol-pure = <4350>; chg-end-vol-l = <4340>; chg-bat-safety-vol = <4430>; rechg-vol = <4260>; fgu-mode = <0>; alm-soc = <5>; alm-vol = <3500>; soft-vbat-uvlo = <3100>; rint = <200>; cnom = <2100>; rsense-real = <118>; rsense-spec = <200>; relax-current = <50>; fgu-cal-ajust = <0>; ocv-tab-size = <21>; ocv-tab-vol = <4318 4254 4198 4145 4094 4052 3987 3955 3902 3865 3838 3817 3800 3785 3769 3752 3733 3706 3691 3588 3400>; ocv-tab-cap = <100 95 90 85 80 75 70 65 60 55 50 45 40 35 30 25 20 15 10 5 0>; };