mirror of
https://github.com/openwrt/openwrt.git
synced 2024-11-23 01:45:38 +08:00
merge: targets: update image generation and targets
Signed-off-by: Zoltan HERPAI <wigyori@uid0.hu>
This commit is contained in:
parent
bf5cef47b3
commit
7b5c989ab9
@ -7,7 +7,7 @@ define Build/uImage
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mkimage -A $(LINUX_KARCH) \
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-O linux -T kernel \
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-C $(1) -a $(KERNEL_LOADADDR) -e $(if $(KERNEL_ENTRY),$(KERNEL_ENTRY),$(KERNEL_LOADADDR)) \
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-n '$(if $(UIMAGE_NAME),$(UIMAGE_NAME),$(call toupper,$(LINUX_KARCH)) LEDE Linux-$(LINUX_VERSION))' -d $@ $@.new
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-n '$(if $(UIMAGE_NAME),$(UIMAGE_NAME),$(call toupper,$(LINUX_KARCH)) OpenWrt Linux-$(LINUX_VERSION))' -d $@ $@.new
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mv $@.new $@
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endef
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@ -60,7 +60,7 @@ endef
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define Build/netgear-dni
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$(STAGING_DIR_HOST)/bin/mkdniimg \
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-B $(NETGEAR_BOARD_ID) -v LEDE.$(REVISION) \
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-B $(NETGEAR_BOARD_ID) -v OpenWrt.$(REVISION) \
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$(if $(NETGEAR_HW_ID),-H $(NETGEAR_HW_ID)) \
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-r "$(1)" \
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-i $@ -o $@.new
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@ -83,7 +83,7 @@ define Build/append-uImage-fakeroot-hdr
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rm -f $@.fakeroot
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$(STAGING_DIR_HOST)/bin/mkimage \
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-A $(LINUX_KARCH) -O linux -T filesystem -C none \
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-n '$(call toupper,$(LINUX_KARCH)) LEDE fakeroot' \
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-n '$(call toupper,$(LINUX_KARCH)) OpenWrt fakeroot' \
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-s \
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$@.fakeroot
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cat $@.fakeroot >> $@
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@ -136,7 +136,7 @@ endef
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define Image/BuildKernel/MkuImage
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mkimage -A $(ARCH) -O linux -T kernel -C $(1) -a $(2) -e $(3) \
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-n '$(call toupper,$(ARCH)) LEDE Linux-$(LINUX_VERSION)' -d $(4) $(5)
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-n '$(call toupper,$(ARCH)) OpenWrt Linux-$(LINUX_VERSION)' -d $(4) $(5)
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endef
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define Image/BuildKernel/MkFIT
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@ -12,7 +12,7 @@ PKG_VERSION:=2017.09
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PKG_RELEASE:=1
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# Layerscape ARMv8 platforms use 64-bit u-boot to support both 32-bit and 64-bit
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# kernel/rootfs. Since LEDE could only provide 32-bit toolchain for 32-bit targets,
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# kernel/rootfs. Since OpenWrt could only provide 32-bit toolchain for 32-bit targets,
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# 64-bit u-boot images git tree is provided here whose source code actually is
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# uboot-layerscape's source code.
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PKG_SOURCE_PROTO:=git
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@ -33,7 +33,7 @@ use Compress::Zlib;
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my $version = "0.1";
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my %arg = (
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o => 'bcm963xx_fs_kernel',
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b => 'LEDE',
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b => 'OpenWrt',
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c => '6348',
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s => 64,
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f => 0xbfc00000,
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@ -107,8 +107,8 @@ Examples
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$SELF malta le64
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$SELF malta be-glibc
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$SELF armvirt 32 \\
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--kernel bin/targets/armvirt/32/lede-armvirt-32-zImage \\
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--rootfs bin/targets/armvirt/32/lede-armvirt-32-root.ext4
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--kernel bin/targets/armvirt/32/openwrt-armvirt-32-zImage \\
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--rootfs bin/targets/armvirt/32/openwrt-armvirt-32-root.ext4
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EOF
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}
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@ -158,12 +158,12 @@ start_qemu_armvirt() {
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32)
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qemu_exe="qemu-system-arm"
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cpu="cortex-a15"
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[ -n "$kernel" ] || kernel="$o_bindir/lede-$o_target-${o_subtarget%-*}-zImage-initramfs"
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[ -n "$kernel" ] || kernel="$o_bindir/openwrt-$o_target-${o_subtarget%-*}-zImage-initramfs"
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;;
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64)
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qemu_exe="qemu-system-aarch64"
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cpu="cortex-a57"
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[ -n "$kernel" ] || kernel="$o_bindir/lede-$o_target-${o_subtarget%-*}-Image-initramfs"
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[ -n "$kernel" ] || kernel="$o_bindir/openwrt-$o_target-${o_subtarget%-*}-Image-initramfs"
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;;
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*)
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__errmsg "target $o_target: unknown subtarget $o_subtarget"
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@ -199,7 +199,7 @@ start_qemu_malta() {
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[ "$(echo "$o_subtarget" | grep -o '^..')" = "le" ] && isel="el"
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qemu_exe="qemu-system-mips$is64$isel"
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[ -n "$kernel" ] || kernel="$o_bindir/lede-malta-${o_subtarget%-*}-vmlinux-initramfs.elf"
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[ -n "$kernel" ] || kernel="$o_bindir/openwrt-malta-${o_subtarget%-*}-vmlinux-initramfs.elf"
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# NOTE: order of wan, lan -device arguments matters as it will affect which
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# one will be actually used as the wan, lan network interface inside the
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@ -216,7 +216,7 @@ start_qemu_x86() {
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local qemu_exe
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[ -n "$rootfs" ] || {
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rootfs="$o_bindir/lede-$o_target-${o_subtarget%-*}-combined-ext4.img"
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rootfs="$o_bindir/openwrt-$o_target-${o_subtarget%-*}-combined-ext4.img"
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if [ ! -f "$rootfs" -a -s "$rootfs.gz" ]; then
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gunzip "$rootfs.gz"
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fi
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@ -1,5 +1,5 @@
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config IB
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bool "Build the LEDE Image Builder"
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bool "Build the OpenWrt Image Builder"
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depends on !EXTERNAL_TOOLCHAIN
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default BUILDBOT
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help
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@ -116,7 +116,7 @@ define Build/create-uImage-dtb
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# flat_dt target expect FIT image - which WNDR4700's uboot doesn't support
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-$(STAGING_DIR_HOST)/bin/mkimage -A $(LINUX_KARCH) \
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-O linux -T kernel -C none \
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-n '$(call toupper,$(LINUX_KARCH)) LEDE Linux-$(LINUX_VERSION)' \
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-n '$(call toupper,$(LINUX_KARCH)) OpenWrt Linux-$(LINUX_VERSION)' \
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-d $(IMAGE_KERNEL).dtb $@.new
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@mv $@.new $@
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endef
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@ -12,7 +12,7 @@ define Build/mkwrggimg
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$(STAGING_DIR_HOST)/bin/mkwrggimg -b \
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-i $@ -o $@.imghdr -d /dev/mtdblock/1 \
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-m $(BOARDNAME) -s $(DAP_SIGNATURE) \
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-v LEDE -B $(REVISION)
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-v OpenWrt -B $(REVISION)
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mv $@.imghdr $@
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endef
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@ -66,7 +66,7 @@ define Build/uImageHiWiFi
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mkimage -A $(LINUX_KARCH) \
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-O linux -T kernel \
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-C $(1) -a $(KERNEL_LOADADDR) -e $(if $(KERNEL_ENTRY),$(KERNEL_ENTRY),$(KERNEL_LOADADDR)) \
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-n 'tw150v1 $(call toupper,$(LINUX_KARCH)) LEDE Linux-$(LINUX_VERSION)' -d $@ $@.new
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-n 'tw150v1 $(call toupper,$(LINUX_KARCH)) OpenWrt Linux-$(LINUX_VERSION)' -d $@ $@.new
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@mv $@.new $@
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endef
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@ -485,11 +485,11 @@ define Image/Build/Belkin
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$(eval rootsize=$(call mtdpartsize,rootfs,$(4)))
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$(call Sysupgrade/RKuImage,$(1),$(2),$(kernsize),$(rootsize))
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if [ -e "$(call sysupname,$(1),$(2))" ]; then \
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edimax_fw_header -m $(5) -v "$(shell echo -n LEDE$(REVISION) | cut -c -13)" \
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edimax_fw_header -m $(5) -v "$(shell echo -n OpenWrt$(REVISION) | cut -c -13)" \
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-n "uImage" \
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-i $(KDIR_TMP)/vmlinux-$(2).uImage \
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-o $(KDIR_TMP)/$(2)-uImage; \
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edimax_fw_header -m $(5) -v "$(shell echo -n LEDE$(REVISION) | cut -c -13)" \
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edimax_fw_header -m $(5) -v "$(shell echo -n OpenWrt$(REVISION) | cut -c -13)" \
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-n "rootfs" \
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-i $(KDIR)/root.$(1) \
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-o $(KDIR_TMP)/$(2)-rootfs; \
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@ -39,7 +39,7 @@ define Build/uImageArcher
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mkimage -A $(LINUX_KARCH) \
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-O linux -T kernel \
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-C $(1) -a $(KERNEL_LOADADDR) -e $(if $(KERNEL_ENTRY),$(KERNEL_ENTRY),$(KERNEL_LOADADDR)) \
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-n '$(call toupper,$(LINUX_KARCH)) LEDE Linux-$(LINUX_VERSION)' -d $@ $@.new
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-n '$(call toupper,$(LINUX_KARCH)) OpenWrt Linux-$(LINUX_VERSION)' -d $@ $@.new
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@mv $@.new $@
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endef
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@ -4,18 +4,18 @@ QEMU ARM virt machine.
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Run with qemu-system-arm
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# boot with initramfs embedded in
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qemu-system-arm -nographic -M virt -m 64 -kernel lede-armvirt-32-zImage-initramfs
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qemu-system-arm -nographic -M virt -m 64 -kernel openwrt-armvirt-32-zImage-initramfs
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# boot with accel=kvm
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qemu-system-arm -nographic -M virt,accel=kvm -cpu host -m 64 -kernel
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lede-armvirt-32-zImage-initramfs
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openwrt-armvirt-32-zImage-initramfs
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# boot with a separate rootfs
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qemu-system-arm -nographic -M virt -m 64 -kernel lede-armvirt-32-zImage \
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-drive file=lede-armvirt-32-root.ext4,format=raw,if=virtio -append 'root=/dev/vda rootwait'
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qemu-system-arm -nographic -M virt -m 64 -kernel openwrt-armvirt-32-zImage \
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-drive file=openwrt-armvirt-32-root.ext4,format=raw,if=virtio -append 'root=/dev/vda rootwait'
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# boot with local dir as rootfs
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qemu-system-arm -nographic -M virt -m 64 -kernel lede-armvirt-32-zImage \
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qemu-system-arm -nographic -M virt -m 64 -kernel openwrt-armvirt-32-zImage \
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-fsdev local,id=rootdev,path=root-armvirt/,security_model=none \
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-device virtio-9p-pci,fsdev=rootdev,mount_tag=/dev/root \
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-append 'rootflags=trans=virtio,version=9p2000.L,cache=loose rootfstype=9p'
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@ -23,10 +23,10 @@ Run with qemu-system-arm
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Run with kvmtool
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# start a named machine
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lkvm run -k lede-armvirt-32-zImage -i lede-armvirt-32-rootfs.cpio --name armvirt0
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lkvm run -k openwrt-armvirt-32-zImage -i openwrt-armvirt-32-rootfs.cpio --name armvirt0
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# start with virtio-9p rootfs
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lkvm run -k lede-armvirt-32-zImage -d root-armvirt/
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lkvm run -k openwrt-armvirt-32-zImage -d root-armvirt/
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# stop "armvirt0"
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lkvm stop --name armvirt0
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@ -37,4 +37,4 @@ Run with kvmtool
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The multi-platform ARMv8 target can be used with QEMU:
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qemu-system-aarch64 -machine virt -cpu cortex-a57 -nographic \
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-kernel lede-armvirt-64-Image-initramfs \
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-kernel openwrt-armvirt-64-Image-initramfs \
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@ -978,7 +978,7 @@ define Device/NEUFBOX4-SER
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DEVICE_DTS := nb4-ser-r0
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CFE_BOARD_ID := 96358VW
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CFE_CHIP_ID := 6358
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CFE_EXTRAS += --rsa-signature "LEDE-$(firstword $(subst -,$(space),$(REVISION)))"
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CFE_EXTRAS += --rsa-signature "OpenWrt-$(firstword $(subst -,$(space),$(REVISION)))"
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DEVICE_PACKAGES := \
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$(B43_PACKAGES) $(USB2_PACKAGES)
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endef
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@ -990,7 +990,7 @@ define Device/NEUFBOX4-FXC
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DEVICE_DTS := nb4-fxc-r1
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CFE_BOARD_ID := 96358VW
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CFE_CHIP_ID := 6358
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CFE_EXTRAS += --rsa-signature "LEDE-$(firstword $(subst -,$(space),$(REVISION)))"
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CFE_EXTRAS += --rsa-signature "OpenWrt-$(firstword $(subst -,$(space),$(REVISION)))"
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DEVICE_PACKAGES := \
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$(B43_PACKAGES) $(USB2_PACKAGES)
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endef
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@ -1002,7 +1002,7 @@ define Device/NEUFBOX6
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DEVICE_DTS := nb6-ser-r0
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CFE_BOARD_ID := NB6-SER-r0
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CFE_CHIP_ID := 6362
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CFE_EXTRAS += --rsa-signature "LEDE-$(firstword $(subst -,$(space),$(REVISION)))"
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CFE_EXTRAS += --rsa-signature "OpenWrt-$(firstword $(subst -,$(space),$(REVISION)))"
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DEVICE_PACKAGES := \
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$(B43_PACKAGES) $(USB2_PACKAGES)
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endef
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@ -39,7 +39,7 @@ endef
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define Build/fullimage
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mkimage -A mips -O linux -C lzma -T filesystem -a 0x00 \
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-e 0x00 -n 'LEDE RootFS' \
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-e 0x00 -n 'OpenWrt RootFS' \
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-d $(IMAGE_ROOTFS) $(IMAGE_ROOTFS).new
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cat $(IMAGE_KERNEL) $(IMAGE_ROOTFS).new > $@.tmp
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@ -20,7 +20,7 @@ UIMAGE:=$(BIN_DIR)/$(IMG_PREFIX)-uImage
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define Image/Build/MkuImage
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mkimage -A arm -O linux -T kernel -a $(LOADADDR) -C none -e $(LOADADDR) \
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-n 'ARM LEDE Linux-$(LINUX_VERSION)' -d $(1) $(2);
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-n 'ARM OpenWrt Linux-$(LINUX_VERSION)' -d $(1) $(2);
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endef
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define Image/Build/DTB
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@ -9,8 +9,8 @@ setenv fdtfile armada-388-clearfog-base.dtb
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# generate bootargs for rootfs on MMC
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if test "${devtype}" = "mmc"; then
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setexpr lede_rootpart ${distro_bootpart} + 1
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setenv bootargs ${bootargs} root=/dev/mmcblk${devnum}p${lede_rootpart} rootfstype=auto rootwait
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setexpr openwrt_rootpart ${distro_bootpart} + 1
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setenv bootargs ${bootargs} root=/dev/mmcblk${devnum}p${openwrt_rootpart} rootfstype=auto rootwait
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fi
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# here one could add logic for other rootfs device types such as scsi and usb
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@ -5,8 +5,8 @@
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# generate bootargs for rootfs on MMC
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if test "${devtype}" = "mmc"; then
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setexpr lede_rootpart ${distro_bootpart} + 1
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setenv bootargs ${bootargs} root=/dev/mmcblk${devnum}p${lede_rootpart} rootfstype=auto rootwait
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setexpr openwrt_rootpart ${distro_bootpart} + 1
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setenv bootargs ${bootargs} root=/dev/mmcblk${devnum}p${openwrt_rootpart} rootfstype=auto rootwait
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fi
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# here one could add logic for other rootfs device types such as scsi and usb
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@ -1,4 +1,4 @@
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LEDE inside a user mode linux. Why would we even want this many ask?
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OpenWrt inside a user mode linux. Why would we even want this many ask?
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There are potentially a lot of reasons, one obvious one to me, it allows
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folks to 'kick the tires' without actually flashing up any hardware. It's
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@ -17,7 +17,8 @@ build it all
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In your bin directory you will find a kernel and an ext4 root file system
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when it's finished. Just run it like this:-
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bin/targets/uml/generic/lede-uml-vmlinux ubd0=bin/targets/uml/generic/lede-uml-ext4.img
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bin/targets/uml/generic/lede-uml-vmlinux
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ubd0=bin/targets/uml/generic/openwrt-uml-ext4.img
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The uml will start, and eventually the serial console of the uml will be at your
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console prompt. If you would like it in xterms, substitute con=xterm and con0=xterm.
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@ -5,6 +5,6 @@ set default="0"
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set timeout="@TIMEOUT@"
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set root='(cd)'
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menuentry "LEDE" {
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menuentry "OpenWrt" {
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linux /boot/vmlinuz @CMDLINE@ noinitrd
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}
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@ -5,9 +5,9 @@ set default="0"
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set timeout="@TIMEOUT@"
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set root='(@ROOT@)'
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menuentry "LEDE" {
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menuentry "OpenWrt" {
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linux /boot/vmlinuz @CMDLINE@ noinitrd
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}
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menuentry "LEDE (failsafe)" {
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menuentry "OpenWrt (failsafe)" {
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linux /boot/vmlinuz failsafe=true @CMDLINE@ noinitrd
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}
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@ -1,10 +1,10 @@
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config SDK
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bool "Build the LEDE SDK"
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bool "Build the OpenWrt SDK"
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depends on !EXTERNAL_TOOLCHAIN
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default BUILDBOT
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help
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This is essentially a stripped-down version of the buildroot
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with a precompiled toolchain. It can be used to develop and
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test packages for LEDE before including them in the buildroot
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test packages for OpenWrt before including them in the buildroot
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@ -1,7 +1,7 @@
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This is the LEDE SDK. It contains a stripped-down version of
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This is the OpenWrt SDK. It contains a stripped-down version of
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the buildroot. You can use it to test/develop packages without
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having to compile your own toolchain or any of the libraries
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included with LEDE.
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included with OpenWrt.
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To use it, just put your buildroot-compatible package directory
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(including its dependencies) in the subdir 'package/' and run
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@ -1,8 +1,8 @@
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config MAKE_TOOLCHAIN
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bool "Package the LEDE-based Toolchain"
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bool "Package the OpenWrt-based Toolchain"
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depends on !EXTERNAL_TOOLCHAIN
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help
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Package the created toolchain as a tarball under the bin/ directory as
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LEDE-Toolchain-$(BOARD)-for-$(ARCH)$(ARCH_SUFFIX)-gcc-$(GCCV)$(DIR_SUFFIX).
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OpenWrt-Toolchain-$(BOARD)-for-$(ARCH)$(ARCH_SUFFIX)-gcc-$(GCCV)$(DIR_SUFFIX).
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For example, a toolchain for the MIPS architecture might be named
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LEDE-Toolchain-malta-for-mipsel_mips32-gcc-4.8-linaro_uClibc-0.9.33.2.tar.bz2.
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OpenWrt-Toolchain-malta-for-mipsel_mips32-gcc-4.8-linaro_uClibc-0.9.33.2.tar.bz2.
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