Merge pull request #297 from sandrine-bailleux/sb/move-up-deps
Move up dependency versions
This commit is contained in:
commit
aaa48a86b9
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@ -62,7 +62,7 @@ The following tools are required to use the ARM Trusted Firmware:
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* `libssl-dev` package to build the certificate generation tool when support
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for Trusted Board Boot is needed.
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* (Optional) For debugging, ARM [Development Studio 5 (DS-5)][DS-5] v5.20.
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* (Optional) For debugging, ARM [Development Studio 5 (DS-5)][DS-5] v5.21.
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4. Building the Trusted Firmware
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@ -546,7 +546,7 @@ Juno platform, follow these steps:
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cd edk2
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git remote add -f --tags arm-software https://github.com/ARM-software/edk2.git
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git checkout --detach v2.1-rc0
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git checkout --detach v3.0
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2. Copy build config templates to local workspace
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@ -625,7 +625,7 @@ Preparing a Linux kernel for use on the FVPs can be done as follows
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cd linux
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git remote add -f --tags arm-software https://github.com/ARM-software/linux.git
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git checkout --detach 1.3-Juno
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git checkout --detach 1.6-Juno
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2. Build with the Linaro GCC tools.
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@ -700,8 +700,8 @@ To prepare a VirtioBlock file-system, do the following:
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NOTE: The unpacked disk image grows to 3 GiB in size.
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wget http://releases.linaro.org/14.12/openembedded/aarch64/vexpress64-openembedded_lamp-armv8-gcc-4.9_20141211-701.img.gz
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gunzip vexpress64-openembedded_lamp-armv8-gcc-4.9_20141211-701.img.gz
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wget http://releases.linaro.org/15.03/members/arm/openembedded/aarch64/vexpress64-openembedded_lamp-armv8-gcc-4.9_20150324-715.img.gz
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gunzip vexpress64-openembedded_lamp-armv8-gcc-4.9_20150324-715.img.gz
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2. Make sure the Linux kernel has Virtio support enabled using
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`make ARCH=arm64 menuconfig`.
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@ -763,14 +763,14 @@ To prepare a RAM-disk root file-system, do the following:
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1. Download the file-system image:
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wget http://releases.linaro.org/14.12/openembedded/aarch64/linaro-image-lamp-genericarmv8-20141212-729.rootfs.tar.gz
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wget http://releases.linaro.org/15.03/members/arm/openembedded/aarch64/linaro-image-lamp-genericarmv8-20150323-747.rootfs.tar.gz
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2. Modify the Linaro image:
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# Prepare for use as RAM-disk. Normally use MMC, NFS or VirtioBlock.
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# Be careful, otherwise you could damage your host file-system.
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mkdir tmp; cd tmp
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sudo sh -c "zcat ../linaro-image-lamp-genericarmv8-20141212-729.rootfs.tar.gz | cpio -id"
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sudo sh -c "zcat ../linaro-image-lamp-genericarmv8-20150323-747.rootfs.tar.gz | cpio -id"
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sudo ln -s sbin/init .
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sudo sh -c "echo 'devtmpfs /dev devtmpfs mode=0755,nosuid 0 0' >> etc/fstab"
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sudo sh -c "find . | cpio --quiet -H newc -o | gzip -3 -n > ../filesystem.cpio.gz"
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@ -1068,10 +1068,19 @@ have an earlier version installed or are unsure which version is installed,
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follow the recovery image update instructions in the [Juno Software Guide]
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on the [ARM Connected Community] website.
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The Juno platform requires a BL3-0 image to boot up. This image contains the
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runtime firmware that runs on the SCP (System Control Processor). This image is
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embedded within the [Juno Board Recovery Image] but can also be
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[downloaded directly][Juno SCP Firmware].
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Note that you must use the board recovery image provided in the Juno R1 Initial
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Alpha release, even for Juno R0. This is because the Trusted Firmware now
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supports the new [SCPI v1.0 final protocol][Juno SCP Protocols v1.0]
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exclusively, which is not compatible with the SCP firmware provided in the
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latest Juno R0 release. Although the Juno R1 Initial Alpha release is generally
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not recommended for use with Juno R0 boards, it is suitable for Trusted Firmware
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development.
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The Juno platform requires a BL0 and a BL3-0 image to boot up. The BL0 image
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contains the ROM firmware that runs on the SCP (System Control Processor),
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whereas the BL3-0 image contains the SCP Runtime firmware. Both images are
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embedded within the [Juno Board Recovery Image] but they can also be downloaded
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directly: [Juno SCP ROM Firmware] and [Juno SCP Runtime Firmware].
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Rebuild the Trusted Firmware specifying the BL3-0 image. Refer to the section
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"Building the Trusted Firmware". Alternatively, the FIP image can be updated
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@ -1083,7 +1092,7 @@ manually with the BL3-0 image:
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Juno's device tree blob is built along with the kernel. It is located in:
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<path-to-linux>/arch/arm64/boot/dts/juno.dtb
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<path-to-linux>/arch/arm64/boot/dts/arm/juno.dtb
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### Other Juno software information
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@ -1104,8 +1113,10 @@ _Copyright (c) 2013-2015, ARM Limited and Contributors. All rights reserved._
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[ARM FVP website]: http://www.arm.com/fvp
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[ARM Connected Community]: http://community.arm.com
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[Juno Software Guide]: http://community.arm.com/docs/DOC-8396
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[Juno Board Recovery Image]: http://community.arm.com/servlet/JiveServlet/download/9427-1-15432/board_recovery_image_0.10.1.zip
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[Juno SCP Firmware]: http://community.arm.com/servlet/JiveServlet/download/9427-1-15422/bl30.bin.zip
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[Juno Board Recovery Image]: http://community.arm.com/servlet/JiveServlet/download/10177-1-18236/board_recovery_image_0.11.3.zip
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[Juno SCP ROM Firmware]: http://community.arm.com/servlet/JiveServlet/download/10177-1-18187/bl0.bin.zip
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[Juno SCP Runtime Firmware]: http://community.arm.com/servlet/JiveServlet/download/10177-1-18193/bl30.bin.zip
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[Juno SCP Protocols v1.0]: http://community.arm.com/servlet/JiveServlet/download/8401-40-18262/DUI0922A_scp_message_interface.pdf
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[Linaro Toolchain]: http://releases.linaro.org/14.07/components/toolchain/binaries/
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[EDK2]: http://github.com/tianocore/edk2
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[DS-5]: http://www.arm.com/products/tools/software-tools/ds-5/index.php
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@ -102,7 +102,8 @@
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CPU_SLEEP_0: cpu-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x0010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x0010000>;
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entry-latency-us = <40>;
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exit-latency-us = <100>;
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min-residency-us = <150>;
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@ -110,7 +111,8 @@
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CLUSTER_SLEEP_0: cluster-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x1010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x1010000>;
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entry-latency-us = <500>;
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exit-latency-us = <1000>;
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min-residency-us = <2500>;
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@ -102,7 +102,8 @@
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CPU_SLEEP_0: cpu-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x0010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x0010000>;
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entry-latency-us = <40>;
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exit-latency-us = <100>;
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min-residency-us = <150>;
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@ -110,7 +111,8 @@
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CLUSTER_SLEEP_0: cluster-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x1010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x1010000>;
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entry-latency-us = <500>;
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exit-latency-us = <1000>;
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min-residency-us = <2500>;
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@ -100,7 +100,8 @@
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CPU_SLEEP_0: cpu-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x0010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x0010000>;
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entry-latency-us = <40>;
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exit-latency-us = <100>;
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min-residency-us = <150>;
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@ -108,7 +109,8 @@
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CLUSTER_SLEEP_0: cluster-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x1010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x1010000>;
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entry-latency-us = <500>;
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exit-latency-us = <1000>;
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min-residency-us = <2500>;
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@ -87,7 +87,8 @@
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CPU_SLEEP_0: cpu-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x0010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x0010000>;
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entry-latency-us = <40>;
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exit-latency-us = <100>;
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min-residency-us = <150>;
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CLUSTER_SLEEP_0: cluster-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x1010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x1010000>;
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entry-latency-us = <500>;
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exit-latency-us = <1000>;
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min-residency-us = <2500>;
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@ -52,7 +52,7 @@
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};
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psci {
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compatible = "arm,psci";
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compatible = "arm,psci-1.0", "arm,psci-0.2", "arm,psci";
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method = "smc";
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cpu_suspend = <0xc4000001>;
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cpu_off = <0x84000002>;
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};
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idle-states {
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entry-method = "arm,psci-1.0", "arm,psci-0.2", "arm,psci";
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entry-method = "arm,psci";
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CPU_SLEEP_0: cpu-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x0010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x0010000>;
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entry-latency-us = <40>;
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exit-latency-us = <100>;
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min-residency-us = <150>;
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CLUSTER_SLEEP_0: cluster-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x1010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x1010000>;
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entry-latency-us = <500>;
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exit-latency-us = <1000>;
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min-residency-us = <2500>;
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@ -85,7 +85,8 @@
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CPU_SLEEP_0: cpu-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x0010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x0010000>;
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entry-latency-us = <40>;
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exit-latency-us = <100>;
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min-residency-us = <150>;
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@ -93,7 +94,8 @@
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CLUSTER_SLEEP_0: cluster-sleep-0 {
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compatible = "arm,idle-state";
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entry-method-param = <0x1010000>;
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local-timer-stop;
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arm,psci-suspend-param = <0x1010000>;
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entry-latency-us = <500>;
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exit-latency-us = <1000>;
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min-residency-us = <2500>;
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