linux/arch/arm/boot/dts/ti/omap/omap5.dtsi

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// SPDX-License-Identifier: GPL-2.0-only
/*
* Copyright (C) 2012 Texas Instruments Incorporated - https://www.ti.com/
*
* Based on "omap4.dtsi"
*/
#include <dt-bindings/bus/ti-sysc.h>
#include <dt-bindings/gpio/gpio.h>
#include <dt-bindings/interrupt-controller/arm-gic.h>
#include <dt-bindings/pinctrl/omap.h>
#include <dt-bindings/clock/omap5.h>
/ {
#address-cells = <2>;
#size-cells = <2>;
compatible = "ti,omap5";
ARM: omap: convert wakeupgen to stacked domains OMAP4/5 has been (ab)using the gic_arch_extn to provide wakeup from suspend, and it makes a lot of sense to convert this code to use stacked domains instead. This patch does just this, updating the DT files to actually reflect what the HW provides. BIG FAT WARNING: because the DTs were so far lying by not exposing the WUGEN HW block, kernels with this patch applied won't have any suspend-resume facility when booted with old DTs, and old kernels with updated DTs won't even boot. On a platform with this patch applied, the system looks like this: root@bacon-fat:~# cat /proc/interrupts CPU0 CPU1 16: 0 0 WUGEN 37 gp_timer 19: 233799 155916 GIC 27 arch_timer 23: 0 0 WUGEN 9 l3-dbg-irq 24: 1 0 WUGEN 10 l3-app-irq 27: 282 0 WUGEN 13 omap-dma-engine 44: 0 0 4ae10000.gpio 13 DMA 294: 0 0 WUGEN 20 gpmc 297: 506 0 WUGEN 56 48070000.i2c 298: 0 0 WUGEN 57 48072000.i2c 299: 0 0 WUGEN 61 48060000.i2c 300: 0 0 WUGEN 62 4807a000.i2c 301: 8 0 WUGEN 60 4807c000.i2c 308: 2439 0 WUGEN 74 OMAP UART2 312: 362 0 WUGEN 83 mmc2 313: 502 0 WUGEN 86 mmc0 314: 13 0 WUGEN 94 mmc1 350: 0 0 PRCM pinctrl, pinctrl 406: 35155709 0 GIC 109 ehci_hcd:usb1 407: 0 0 WUGEN 7 palmas 409: 0 0 WUGEN 119 twl6040 410: 0 0 twl6040 5 twl6040_irq_ready 411: 0 0 twl6040 0 twl6040_irq_th IPI0: 0 1 CPU wakeup interrupts IPI1: 0 0 Timer broadcast interrupts IPI2: 95334 902334 Rescheduling interrupts IPI3: 0 0 Function call interrupts IPI4: 479 648 Single function call interrupts IPI5: 0 0 CPU stop interrupts IPI6: 0 0 IRQ work interrupts IPI7: 0 0 completion interrupts Err: 0 Acked-by: Tony Lindgren <tony@atomide.com> Signed-off-by: Marc Zyngier <marc.zyngier@arm.com> Link: https://lkml.kernel.org/r/1426088629-15377-8-git-send-email-marc.zyngier@arm.com Signed-off-by: Jason Cooper <jason@lakedaemon.net>
2015-03-11 15:43:49 +00:00
interrupt-parent = <&wakeupgen>;
chosen { };
aliases {
i2c0 = &i2c1;
i2c1 = &i2c2;
i2c2 = &i2c3;
i2c3 = &i2c4;
i2c4 = &i2c5;
mmc0 = &mmc1;
mmc1 = &mmc2;
mmc2 = &mmc3;
mmc3 = &mmc4;
mmc4 = &mmc5;
serial0 = &uart1;
serial1 = &uart2;
serial2 = &uart3;
serial3 = &uart4;
serial4 = &uart5;
serial5 = &uart6;
rproc0 = &dsp;
rproc1 = &ipu;
};
cpus {
#address-cells = <1>;
#size-cells = <0>;
cpu0: cpu@0 {
device_type = "cpu";
compatible = "arm,cortex-a15";
reg = <0x0>;
operating-points = <
/* kHz uV */
1000000 1060000
1500000 1250000
>;
clocks = <&dpll_mpu_ck>;
clock-names = "cpu";
clock-latency = <300000>; /* From omap-cpufreq driver */
/* cooling options */
#cooling-cells = <2>; /* min followed by max */
};
cpu@1 {
device_type = "cpu";
compatible = "arm,cortex-a15";
reg = <0x1>;
operating-points = <
/* kHz uV */
1000000 1060000
1500000 1250000
>;
clocks = <&dpll_mpu_ck>;
clock-names = "cpu";
clock-latency = <300000>; /* From omap-cpufreq driver */
/* cooling options */
#cooling-cells = <2>; /* min followed by max */
};
};
thermal-zones {
#include "omap4-cpu-thermal.dtsi"
#include "omap5-gpu-thermal.dtsi"
#include "omap5-core-thermal.dtsi"
};
timer {
compatible = "arm,armv7-timer";
/* PPI secure/nonsecure IRQ */
interrupts = <GIC_PPI 13 (GIC_CPU_MASK_RAW(3) | IRQ_TYPE_LEVEL_LOW)>,
<GIC_PPI 14 (GIC_CPU_MASK_RAW(3) | IRQ_TYPE_LEVEL_LOW)>,
<GIC_PPI 11 (GIC_CPU_MASK_RAW(3) | IRQ_TYPE_LEVEL_LOW)>,
<GIC_PPI 10 (GIC_CPU_MASK_RAW(3) | IRQ_TYPE_LEVEL_LOW)>;
ARM: omap: convert wakeupgen to stacked domains OMAP4/5 has been (ab)using the gic_arch_extn to provide wakeup from suspend, and it makes a lot of sense to convert this code to use stacked domains instead. This patch does just this, updating the DT files to actually reflect what the HW provides. BIG FAT WARNING: because the DTs were so far lying by not exposing the WUGEN HW block, kernels with this patch applied won't have any suspend-resume facility when booted with old DTs, and old kernels with updated DTs won't even boot. On a platform with this patch applied, the system looks like this: root@bacon-fat:~# cat /proc/interrupts CPU0 CPU1 16: 0 0 WUGEN 37 gp_timer 19: 233799 155916 GIC 27 arch_timer 23: 0 0 WUGEN 9 l3-dbg-irq 24: 1 0 WUGEN 10 l3-app-irq 27: 282 0 WUGEN 13 omap-dma-engine 44: 0 0 4ae10000.gpio 13 DMA 294: 0 0 WUGEN 20 gpmc 297: 506 0 WUGEN 56 48070000.i2c 298: 0 0 WUGEN 57 48072000.i2c 299: 0 0 WUGEN 61 48060000.i2c 300: 0 0 WUGEN 62 4807a000.i2c 301: 8 0 WUGEN 60 4807c000.i2c 308: 2439 0 WUGEN 74 OMAP UART2 312: 362 0 WUGEN 83 mmc2 313: 502 0 WUGEN 86 mmc0 314: 13 0 WUGEN 94 mmc1 350: 0 0 PRCM pinctrl, pinctrl 406: 35155709 0 GIC 109 ehci_hcd:usb1 407: 0 0 WUGEN 7 palmas 409: 0 0 WUGEN 119 twl6040 410: 0 0 twl6040 5 twl6040_irq_ready 411: 0 0 twl6040 0 twl6040_irq_th IPI0: 0 1 CPU wakeup interrupts IPI1: 0 0 Timer broadcast interrupts IPI2: 95334 902334 Rescheduling interrupts IPI3: 0 0 Function call interrupts IPI4: 479 648 Single function call interrupts IPI5: 0 0 CPU stop interrupts IPI6: 0 0 IRQ work interrupts IPI7: 0 0 completion interrupts Err: 0 Acked-by: Tony Lindgren <tony@atomide.com> Signed-off-by: Marc Zyngier <marc.zyngier@arm.com> Link: https://lkml.kernel.org/r/1426088629-15377-8-git-send-email-marc.zyngier@arm.com Signed-off-by: Jason Cooper <jason@lakedaemon.net>
2015-03-11 15:43:49 +00:00
interrupt-parent = <&gic>;
};
pmu {
compatible = "arm,cortex-a15-pmu";
interrupts = <GIC_SPI 131 IRQ_TYPE_LEVEL_HIGH>,
<GIC_SPI 132 IRQ_TYPE_LEVEL_HIGH>;
};
/*
* Needed early by omap4_sram_init() for barrier, do not move to l3
* interconnect as simple-pm-bus probes at module_init() time.
*/
ocmcram: sram@40300000 {
compatible = "mmio-sram";
reg = <0 0x40300000 0 0x20000>; /* 128k */
};
gic: interrupt-controller@48211000 {
compatible = "arm,cortex-a15-gic";
interrupt-controller;
#interrupt-cells = <3>;
reg = <0 0x48211000 0 0x1000>,
<0 0x48212000 0 0x2000>,
<0 0x48214000 0 0x2000>,
<0 0x48216000 0 0x2000>;
ARM: omap: convert wakeupgen to stacked domains OMAP4/5 has been (ab)using the gic_arch_extn to provide wakeup from suspend, and it makes a lot of sense to convert this code to use stacked domains instead. This patch does just this, updating the DT files to actually reflect what the HW provides. BIG FAT WARNING: because the DTs were so far lying by not exposing the WUGEN HW block, kernels with this patch applied won't have any suspend-resume facility when booted with old DTs, and old kernels with updated DTs won't even boot. On a platform with this patch applied, the system looks like this: root@bacon-fat:~# cat /proc/interrupts CPU0 CPU1 16: 0 0 WUGEN 37 gp_timer 19: 233799 155916 GIC 27 arch_timer 23: 0 0 WUGEN 9 l3-dbg-irq 24: 1 0 WUGEN 10 l3-app-irq 27: 282 0 WUGEN 13 omap-dma-engine 44: 0 0 4ae10000.gpio 13 DMA 294: 0 0 WUGEN 20 gpmc 297: 506 0 WUGEN 56 48070000.i2c 298: 0 0 WUGEN 57 48072000.i2c 299: 0 0 WUGEN 61 48060000.i2c 300: 0 0 WUGEN 62 4807a000.i2c 301: 8 0 WUGEN 60 4807c000.i2c 308: 2439 0 WUGEN 74 OMAP UART2 312: 362 0 WUGEN 83 mmc2 313: 502 0 WUGEN 86 mmc0 314: 13 0 WUGEN 94 mmc1 350: 0 0 PRCM pinctrl, pinctrl 406: 35155709 0 GIC 109 ehci_hcd:usb1 407: 0 0 WUGEN 7 palmas 409: 0 0 WUGEN 119 twl6040 410: 0 0 twl6040 5 twl6040_irq_ready 411: 0 0 twl6040 0 twl6040_irq_th IPI0: 0 1 CPU wakeup interrupts IPI1: 0 0 Timer broadcast interrupts IPI2: 95334 902334 Rescheduling interrupts IPI3: 0 0 Function call interrupts IPI4: 479 648 Single function call interrupts IPI5: 0 0 CPU stop interrupts IPI6: 0 0 IRQ work interrupts IPI7: 0 0 completion interrupts Err: 0 Acked-by: Tony Lindgren <tony@atomide.com> Signed-off-by: Marc Zyngier <marc.zyngier@arm.com> Link: https://lkml.kernel.org/r/1426088629-15377-8-git-send-email-marc.zyngier@arm.com Signed-off-by: Jason Cooper <jason@lakedaemon.net>
2015-03-11 15:43:49 +00:00
interrupt-parent = <&gic>;
};
wakeupgen: interrupt-controller@48281000 {
compatible = "ti,omap5-wugen-mpu", "ti,omap4-wugen-mpu";
interrupt-controller;
#interrupt-cells = <3>;
reg = <0 0x48281000 0 0x1000>;
ARM: omap: convert wakeupgen to stacked domains OMAP4/5 has been (ab)using the gic_arch_extn to provide wakeup from suspend, and it makes a lot of sense to convert this code to use stacked domains instead. This patch does just this, updating the DT files to actually reflect what the HW provides. BIG FAT WARNING: because the DTs were so far lying by not exposing the WUGEN HW block, kernels with this patch applied won't have any suspend-resume facility when booted with old DTs, and old kernels with updated DTs won't even boot. On a platform with this patch applied, the system looks like this: root@bacon-fat:~# cat /proc/interrupts CPU0 CPU1 16: 0 0 WUGEN 37 gp_timer 19: 233799 155916 GIC 27 arch_timer 23: 0 0 WUGEN 9 l3-dbg-irq 24: 1 0 WUGEN 10 l3-app-irq 27: 282 0 WUGEN 13 omap-dma-engine 44: 0 0 4ae10000.gpio 13 DMA 294: 0 0 WUGEN 20 gpmc 297: 506 0 WUGEN 56 48070000.i2c 298: 0 0 WUGEN 57 48072000.i2c 299: 0 0 WUGEN 61 48060000.i2c 300: 0 0 WUGEN 62 4807a000.i2c 301: 8 0 WUGEN 60 4807c000.i2c 308: 2439 0 WUGEN 74 OMAP UART2 312: 362 0 WUGEN 83 mmc2 313: 502 0 WUGEN 86 mmc0 314: 13 0 WUGEN 94 mmc1 350: 0 0 PRCM pinctrl, pinctrl 406: 35155709 0 GIC 109 ehci_hcd:usb1 407: 0 0 WUGEN 7 palmas 409: 0 0 WUGEN 119 twl6040 410: 0 0 twl6040 5 twl6040_irq_ready 411: 0 0 twl6040 0 twl6040_irq_th IPI0: 0 1 CPU wakeup interrupts IPI1: 0 0 Timer broadcast interrupts IPI2: 95334 902334 Rescheduling interrupts IPI3: 0 0 Function call interrupts IPI4: 479 648 Single function call interrupts IPI5: 0 0 CPU stop interrupts IPI6: 0 0 IRQ work interrupts IPI7: 0 0 completion interrupts Err: 0 Acked-by: Tony Lindgren <tony@atomide.com> Signed-off-by: Marc Zyngier <marc.zyngier@arm.com> Link: https://lkml.kernel.org/r/1426088629-15377-8-git-send-email-marc.zyngier@arm.com Signed-off-by: Jason Cooper <jason@lakedaemon.net>
2015-03-11 15:43:49 +00:00
interrupt-parent = <&gic>;
};
/*
* XXX: Use a flat representation of the OMAP3 interconnect.
* The real OMAP interconnect network is quite complex.
* Since it will not bring real advantage to represent that in DT for
* the moment, just use a fake OCP bus entry to represent the whole bus
* hierarchy.
*/
ocp {
compatible = "simple-pm-bus";
power-domains = <&prm_core>;
clocks = <&l3main1_clkctrl OMAP5_L3_MAIN_1_CLKCTRL 0>,
<&l3main2_clkctrl OMAP5_L3_MAIN_2_CLKCTRL 0>,
<&l3instr_clkctrl OMAP5_L3_MAIN_3_CLKCTRL 0>;
#address-cells = <1>;
#size-cells = <1>;
ranges = <0 0 0 0xc0000000>;
dma-ranges = <0x80000000 0x0 0x80000000 0x80000000>;
l3-noc@44000000 {
compatible = "ti,omap5-l3-noc";
reg = <0x44000000 0x2000>,
<0x44800000 0x3000>,
<0x45000000 0x4000>;
interrupts = <GIC_SPI 9 IRQ_TYPE_LEVEL_HIGH>,
<GIC_SPI 10 IRQ_TYPE_LEVEL_HIGH>;
};
l4_wkup: interconnect@4ae00000 {
};
l4_cfg: interconnect@4a000000 {
};
l4_per: interconnect@48000000 {
};
target-module@48210000 {
compatible = "ti,sysc-omap4-simple", "ti,sysc";
power-domains = <&prm_mpu>;
clocks = <&mpu_clkctrl OMAP5_MPU_CLKCTRL 0>;
clock-names = "fck";
#address-cells = <1>;
#size-cells = <1>;
ranges = <0 0x48210000 0x1f0000>;
mpu {
compatible = "ti,omap4-mpu";
sram = <&ocmcram>;
};
};
l4_abe: interconnect@40100000 {
};
target-module@50000000 {
compatible = "ti,sysc-omap2", "ti,sysc";
reg = <0x50000000 4>,
<0x50000010 4>,
<0x50000014 4>;
reg-names = "rev", "sysc", "syss";
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>;
ti,syss-mask = <1>;
ti,no-idle-on-init;
clocks = <&l3main2_clkctrl OMAP5_L3_MAIN_2_GPMC_CLKCTRL 0>;
clock-names = "fck";
#address-cells = <1>;
#size-cells = <1>;
ranges = <0x50000000 0x50000000 0x00001000>, /* regs */
<0x00000000 0x00000000 0x40000000>; /* data */
gpmc: gpmc@50000000 {
compatible = "ti,omap4430-gpmc";
reg = <0x50000000 0x1000>;
#address-cells = <2>;
#size-cells = <1>;
interrupts = <GIC_SPI 20 IRQ_TYPE_LEVEL_HIGH>;
dmas = <&sdma 4>;
dma-names = "rxtx";
gpmc,num-cs = <8>;
gpmc,num-waitpins = <4>;
clock-names = "fck";
interrupt-controller;
#interrupt-cells = <2>;
gpio-controller;
#gpio-cells = <2>;
};
};
target-module@55082000 {
compatible = "ti,sysc-omap2", "ti,sysc";
reg = <0x55082000 0x4>,
<0x55082010 0x4>,
<0x55082014 0x4>;
reg-names = "rev", "sysc", "syss";
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>;
ti,sysc-mask = <(SYSC_OMAP2_CLOCKACTIVITY |
SYSC_OMAP2_SOFTRESET |
SYSC_OMAP2_AUTOIDLE)>;
clocks = <&ipu_clkctrl OMAP5_MMU_IPU_CLKCTRL 0>;
clock-names = "fck";
resets = <&prm_core 2>;
reset-names = "rstctrl";
ranges = <0x0 0x55082000 0x100>;
#size-cells = <1>;
#address-cells = <1>;
mmu_ipu: mmu@0 {
compatible = "ti,omap4-iommu";
reg = <0x0 0x100>;
interrupts = <GIC_SPI 100 IRQ_TYPE_LEVEL_HIGH>;
#iommu-cells = <0>;
ti,iommu-bus-err-back;
};
};
dsp: dsp {
compatible = "ti,omap5-dsp";
ti,bootreg = <&scm_conf 0x304 0>;
iommus = <&mmu_dsp>;
resets = <&prm_dsp 0>;
clocks = <&dsp_clkctrl OMAP5_MMU_DSP_CLKCTRL 0>;
firmware-name = "omap5-dsp-fw.xe64T";
mboxes = <&mailbox &mbox_dsp>;
status = "disabled";
};
ipu: ipu@55020000 {
compatible = "ti,omap5-ipu";
reg = <0x55020000 0x10000>;
reg-names = "l2ram";
iommus = <&mmu_ipu>;
resets = <&prm_core 0>, <&prm_core 1>;
clocks = <&ipu_clkctrl OMAP5_MMU_IPU_CLKCTRL 0>;
firmware-name = "omap5-ipu-fw.xem4";
mboxes = <&mailbox &mbox_ipu>;
status = "disabled";
};
target-module@4e000000 {
compatible = "ti,sysc-omap2", "ti,sysc";
reg = <0x4e000000 0x4>,
<0x4e000010 0x4>;
reg-names = "rev", "sysc";
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>;
ranges = <0x0 0x4e000000 0x2000000>;
#size-cells = <1>;
#address-cells = <1>;
dmm@0 {
compatible = "ti,omap5-dmm";
reg = <0 0x800>;
interrupts = <GIC_SPI 113 IRQ_TYPE_LEVEL_HIGH>;
};
};
target-module@4c000000 {
compatible = "ti,sysc-omap4-simple", "ti,sysc";
reg = <0x4c000000 0x4>;
reg-names = "rev";
clocks = <&emif_clkctrl OMAP5_EMIF1_CLKCTRL 0>;
clock-names = "fck";
ti,no-idle;
#address-cells = <1>;
#size-cells = <1>;
ranges = <0x0 0x4c000000 0x1000000>;
emif1: emif@0 {
compatible = "ti,emif-4d5";
reg = <0 0x400>;
interrupts = <GIC_SPI 110 IRQ_TYPE_LEVEL_HIGH>;
phy-type = <2>; /* DDR PHY type: Intelli PHY */
hw-caps-read-idle-ctrl;
hw-caps-ll-interface;
hw-caps-temp-alert;
};
};
target-module@4d000000 {
compatible = "ti,sysc-omap4-simple", "ti,sysc";
reg = <0x4d000000 0x4>;
reg-names = "rev";
clocks = <&emif_clkctrl OMAP5_EMIF2_CLKCTRL 0>;
clock-names = "fck";
ti,no-idle;
#address-cells = <1>;
#size-cells = <1>;
ranges = <0x0 0x4d000000 0x1000000>;
emif2: emif@0 {
compatible = "ti,emif-4d5";
reg = <0 0x400>;
interrupts = <GIC_SPI 111 IRQ_TYPE_LEVEL_HIGH>;
phy-type = <2>; /* DDR PHY type: Intelli PHY */
hw-caps-read-idle-ctrl;
hw-caps-ll-interface;
hw-caps-temp-alert;
};
};
aes1_target: target-module@4b501000 {
compatible = "ti,sysc-omap2", "ti,sysc";
reg = <0x4b501080 0x4>,
<0x4b501084 0x4>,
<0x4b501088 0x4>;
reg-names = "rev", "sysc", "syss";
ti,sysc-mask = <(SYSC_OMAP2_SOFTRESET |
SYSC_OMAP2_AUTOIDLE)>;
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>,
<SYSC_IDLE_SMART_WKUP>;
ti,syss-mask = <1>;
/* Domains (P, C): l4per_pwrdm, l4sec_clkdm */
clocks = <&l4sec_clkctrl OMAP5_AES1_CLKCTRL 0>;
clock-names = "fck";
#address-cells = <1>;
#size-cells = <1>;
ranges = <0x0 0x4b501000 0x1000>;
aes1: aes@0 {
compatible = "ti,omap4-aes";
reg = <0 0xa0>;
interrupts = <GIC_SPI 85 IRQ_TYPE_LEVEL_HIGH>;
dmas = <&sdma 111>, <&sdma 110>;
dma-names = "tx", "rx";
};
};
aes2_target: target-module@4b701000 {
compatible = "ti,sysc-omap2", "ti,sysc";
reg = <0x4b701080 0x4>,
<0x4b701084 0x4>,
<0x4b701088 0x4>;
reg-names = "rev", "sysc", "syss";
ti,sysc-mask = <(SYSC_OMAP2_SOFTRESET |
SYSC_OMAP2_AUTOIDLE)>;
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>,
<SYSC_IDLE_SMART_WKUP>;
ti,syss-mask = <1>;
/* Domains (P, C): l4per_pwrdm, l4sec_clkdm */
clocks = <&l4sec_clkctrl OMAP5_AES2_CLKCTRL 0>;
clock-names = "fck";
#address-cells = <1>;
#size-cells = <1>;
ranges = <0x0 0x4b701000 0x1000>;
aes2: aes@0 {
compatible = "ti,omap4-aes";
reg = <0 0xa0>;
interrupts = <GIC_SPI 64 IRQ_TYPE_LEVEL_HIGH>;
dmas = <&sdma 114>, <&sdma 113>;
dma-names = "tx", "rx";
};
};
sham_target: target-module@4b100000 {
compatible = "ti,sysc-omap3-sham", "ti,sysc";
reg = <0x4b100100 0x4>,
<0x4b100110 0x4>,
<0x4b100114 0x4>;
reg-names = "rev", "sysc", "syss";
ti,sysc-mask = <(SYSC_OMAP2_SOFTRESET |
SYSC_OMAP2_AUTOIDLE)>;
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>;
ti,syss-mask = <1>;
/* Domains (P, C): l4per_pwrdm, l4sec_clkdm */
clocks = <&l4sec_clkctrl OMAP5_SHA2MD5_CLKCTRL 0>;
clock-names = "fck";
#address-cells = <1>;
#size-cells = <1>;
ranges = <0x0 0x4b100000 0x1000>;
sham: sham@0 {
compatible = "ti,omap4-sham";
reg = <0 0x300>;
interrupts = <GIC_SPI 51 IRQ_TYPE_LEVEL_HIGH>;
dmas = <&sdma 119>;
dma-names = "rx";
};
};
bandgap: bandgap@4a0021e0 {
reg = <0x4a0021e0 0xc
0x4a00232c 0xc
0x4a002380 0x2c
0x4a0023C0 0x3c>;
interrupts = <GIC_SPI 126 IRQ_TYPE_LEVEL_HIGH>;
compatible = "ti,omap5430-bandgap";
#thermal-sensor-cells = <1>;
};
target-module@56000000 {
compatible = "ti,sysc-omap4", "ti,sysc";
reg = <0x5600fe00 0x4>,
<0x5600fe10 0x4>;
reg-names = "rev", "sysc";
ti,sysc-midle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>;
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>;
clocks = <&gpu_clkctrl OMAP5_GPU_CLKCTRL 0>;
clock-names = "fck";
#address-cells = <1>;
#size-cells = <1>;
ranges = <0 0x56000000 0x2000000>;
gpu@0 {
compatible = "ti,omap5432-gpu", "img,powervr-sgx544";
reg = <0x0 0x2000000>; /* 32MB */
interrupts = <GIC_SPI 21 IRQ_TYPE_LEVEL_HIGH>;
};
};
target-module@58000000 {
compatible = "ti,sysc-omap2", "ti,sysc";
reg = <0x58000000 4>,
<0x58000014 4>;
reg-names = "rev", "syss";
ti,syss-mask = <1>;
power-domains = <&prm_dss>;
clocks = <&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 0>,
<&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 9>,
<&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 10>,
<&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 11>;
clock-names = "fck", "hdmi_clk", "sys_clk", "tv_clk";
#address-cells = <1>;
#size-cells = <1>;
ranges = <0 0x58000000 0x1000000>;
dss: dss@0 {
compatible = "ti,omap5-dss";
reg = <0 0x80>;
status = "disabled";
clocks = <&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 8>;
clock-names = "fck";
#address-cells = <1>;
#size-cells = <1>;
ranges = <0 0 0x1000000>;
target-module@1000 {
compatible = "ti,sysc-omap2", "ti,sysc";
reg = <0x1000 0x4>,
<0x1010 0x4>,
<0x1014 0x4>;
reg-names = "rev", "sysc", "syss";
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>;
ti,sysc-midle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>;
ti,sysc-mask = <(SYSC_OMAP2_CLOCKACTIVITY |
SYSC_OMAP2_ENAWAKEUP |
SYSC_OMAP2_SOFTRESET |
SYSC_OMAP2_AUTOIDLE)>;
ti,syss-mask = <1>;
clocks = <&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 8>;
clock-names = "fck";
#address-cells = <1>;
#size-cells = <1>;
ranges = <0 0x1000 0x1000>;
dispc@0 {
compatible = "ti,omap5-dispc";
reg = <0 0x1000>;
interrupts = <GIC_SPI 25 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 8>;
clock-names = "fck";
};
};
target-module@2000 {
compatible = "ti,sysc-omap2", "ti,sysc";
reg = <0x2000 0x4>,
<0x2010 0x4>,
<0x2014 0x4>;
reg-names = "rev", "sysc", "syss";
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>;
ti,sysc-mask = <(SYSC_OMAP2_SOFTRESET |
SYSC_OMAP2_AUTOIDLE)>;
ti,syss-mask = <1>;
clocks = <&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 8>;
clock-names = "fck";
#address-cells = <1>;
#size-cells = <1>;
ranges = <0 0x2000 0x1000>;
rfbi: encoder@0 {
compatible = "ti,omap5-rfbi";
reg = <0 0x100>;
status = "disabled";
clocks = <&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 8>, <&l3_iclk_div>;
clock-names = "fck", "ick";
};
};
target-module@4000 {
compatible = "ti,sysc-omap2", "ti,sysc";
reg = <0x4000 0x4>,
<0x4010 0x4>,
<0x4014 0x4>;
reg-names = "rev", "sysc", "syss";
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>;
ti,sysc-mask = <(SYSC_OMAP2_CLOCKACTIVITY |
SYSC_OMAP2_ENAWAKEUP |
SYSC_OMAP2_SOFTRESET |
SYSC_OMAP2_AUTOIDLE)>;
ti,syss-mask = <1>;
#address-cells = <1>;
#size-cells = <1>;
ranges = <0 0x4000 0x1000>;
dsi1: encoder@0 {
compatible = "ti,omap5-dsi";
reg = <0 0x200>,
<0x200 0x40>,
<0x300 0x40>;
reg-names = "proto", "phy", "pll";
interrupts = <GIC_SPI 53 IRQ_TYPE_LEVEL_HIGH>;
status = "disabled";
clocks = <&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 8>,
<&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 10>;
clock-names = "fck", "sys_clk";
#address-cells = <1>;
#size-cells = <0>;
};
};
target-module@9000 {
compatible = "ti,sysc-omap2", "ti,sysc";
reg = <0x9000 0x4>,
<0x9010 0x4>,
<0x9014 0x4>;
reg-names = "rev", "sysc", "syss";
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>;
ti,sysc-mask = <(SYSC_OMAP2_CLOCKACTIVITY |
SYSC_OMAP2_ENAWAKEUP |
SYSC_OMAP2_SOFTRESET |
SYSC_OMAP2_AUTOIDLE)>;
ti,syss-mask = <1>;
#address-cells = <1>;
#size-cells = <1>;
ranges = <0 0x9000 0x1000>;
dsi2: encoder@0 {
compatible = "ti,omap5-dsi";
reg = <0 0x200>,
<0x200 0x40>,
<0x300 0x40>;
reg-names = "proto", "phy", "pll";
interrupts = <GIC_SPI 55 IRQ_TYPE_LEVEL_HIGH>;
status = "disabled";
clocks = <&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 8>,
<&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 10>;
clock-names = "fck", "sys_clk";
#address-cells = <1>;
#size-cells = <0>;
};
};
target-module@40000 {
compatible = "ti,sysc-omap4", "ti,sysc";
reg = <0x40000 0x4>,
<0x40010 0x4>;
reg-names = "rev", "sysc";
ti,sysc-sidle = <SYSC_IDLE_FORCE>,
<SYSC_IDLE_NO>,
<SYSC_IDLE_SMART>,
<SYSC_IDLE_SMART_WKUP>;
ti,sysc-mask = <(SYSC_OMAP4_SOFTRESET)>;
clocks = <&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 9>,
<&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 8>;
clock-names = "fck", "dss_clk";
#address-cells = <1>;
#size-cells = <1>;
ranges = <0 0x40000 0x40000>;
hdmi: encoder@0 {
compatible = "ti,omap5-hdmi";
reg = <0 0x200>,
<0x200 0x80>,
<0x300 0x80>,
<0x20000 0x19000>;
reg-names = "wp", "pll", "phy", "core";
interrupts = <GIC_SPI 101 IRQ_TYPE_LEVEL_HIGH>;
status = "disabled";
clocks = <&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 9>,
<&dss_clkctrl OMAP5_DSS_CORE_CLKCTRL 10>;
clock-names = "fck", "sys_clk";
dmas = <&sdma 76>;
dma-names = "audio_tx";
};
};
};
};
abb_mpu: regulator-abb-mpu {
compatible = "ti,abb-v2";
regulator-name = "abb_mpu";
#address-cells = <0>;
#size-cells = <0>;
clocks = <&sys_clkin>;
ti,settling-time = <50>;
ti,clock-cycles = <16>;
reg = <0x4ae07cdc 0x8>, <0x4ae06014 0x4>,
<0x4a0021c4 0x8>, <0x4ae0c318 0x4>;
reg-names = "base-address", "int-address",
"efuse-address", "ldo-address";
ti,tranxdone-status-mask = <0x80>;
/* LDOVBBMPU_MUX_CTRL */
ti,ldovbb-override-mask = <0x400>;
/* LDOVBBMPU_VSET_OUT */
ti,ldovbb-vset-mask = <0x1F>;
/*
* NOTE: only FBB mode used but actual vset will
* determine final biasing
*/
ti,abb_info = <
/*uV ABB efuse rbb_m fbb_m vset_m*/
1060000 0 0x0 0 0x02000000 0x01F00000
1250000 0 0x4 0 0x02000000 0x01F00000
>;
};
abb_mm: regulator-abb-mm {
compatible = "ti,abb-v2";
regulator-name = "abb_mm";
#address-cells = <0>;
#size-cells = <0>;
clocks = <&sys_clkin>;
ti,settling-time = <50>;
ti,clock-cycles = <16>;
reg = <0x4ae07ce4 0x8>, <0x4ae06010 0x4>,
<0x4a0021a4 0x8>, <0x4ae0c314 0x4>;
reg-names = "base-address", "int-address",
"efuse-address", "ldo-address";
ti,tranxdone-status-mask = <0x80000000>;
/* LDOVBBMM_MUX_CTRL */
ti,ldovbb-override-mask = <0x400>;
/* LDOVBBMM_VSET_OUT */
ti,ldovbb-vset-mask = <0x1F>;
/*
* NOTE: only FBB mode used but actual vset will
* determine final biasing
*/
ti,abb_info = <
/*uV ABB efuse rbb_m fbb_m vset_m*/
1025000 0 0x0 0 0x02000000 0x01F00000
1120000 0 0x4 0 0x02000000 0x01F00000
>;
};
};
};
&cpu_thermal {
polling-delay = <500>; /* milliseconds */
coefficients = <65 (-1791)>;
};
#include "omap5-l4.dtsi"
#include "omap54xx-clocks.dtsi"
&gpu_thermal {
coefficients = <117 (-2992)>;
};
&core_thermal {
coefficients = <0 2000>;
};
#include "omap5-l4-abe.dtsi"
#include "omap54xx-clocks.dtsi"
&prm {
prm_mpu: prm@300 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x300 0x100>;
#power-domain-cells = <0>;
};
prm_dsp: prm@400 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x400 0x100>;
#reset-cells = <1>;
#power-domain-cells = <0>;
};
prm_abe: prm@500 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x500 0x100>;
#power-domain-cells = <0>;
};
prm_coreaon: prm@600 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x600 0x100>;
#power-domain-cells = <0>;
};
prm_core: prm@700 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x700 0x100>;
#reset-cells = <1>;
#power-domain-cells = <0>;
};
prm_iva: prm@1200 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x1200 0x100>;
#reset-cells = <1>;
#power-domain-cells = <0>;
};
prm_cam: prm@1300 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x1300 0x100>;
#power-domain-cells = <0>;
};
prm_dss: prm@1400 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x1400 0x100>;
#power-domain-cells = <0>;
};
prm_gpu: prm@1500 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x1500 0x100>;
#power-domain-cells = <0>;
};
prm_l3init: prm@1600 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x1600 0x100>;
#power-domain-cells = <0>;
};
prm_custefuse: prm@1700 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x1700 0x100>;
#power-domain-cells = <0>;
};
prm_wkupaon: prm@1800 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x1800 0x100>;
#power-domain-cells = <0>;
};
prm_emu: prm@1a00 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x1a00 0x100>;
#power-domain-cells = <0>;
};
prm_device: prm@1c00 {
compatible = "ti,omap5-prm-inst", "ti,omap-prm-inst";
reg = <0x1c00 0x100>;
#reset-cells = <1>;
};
};
/* Preferred always-on timer for clockevent */
&timer1_target {
ti,no-reset-on-init;
ti,no-idle;
timer@0 {
assigned-clocks = <&wkupaon_clkctrl OMAP5_TIMER1_CLKCTRL 24>;
assigned-clock-parents = <&sys_32k_ck>;
};
};