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2dbdcbb842
We have fresh 6.6 kernels in /testing! You may notice that on the 32-bit side we have done away with the -smp labeled kernel packages, but it's actually the other kernels that were retired -- the non-SMP, non-PAE ones. If you were previously using kernel-generic-smp or kernel-huge-smp, you'll need to make some adjustments to your bootloader setup to load kernel-generic or kernel-huge instead. About the only non-obsolete CPUs that may have an issue with this are the first generation Pentium M chips, which supported PAE but unfortunately did not advertise this in the CPU flags. But these will support PAE if the kernel option "forcepae" is appended at boot time. Enjoy! :-) a/gettext-0.22.4-x86_64-1.txz: Upgraded. a/kbd-2.6.3-x86_64-3.txz: Rebuilt. Installed extra console fonts. a/kernel-firmware-20231120_9552083-noarch-1.txz: Upgraded. a/kernel-generic-6.1.63-x86_64-1.txz: Upgraded. a/kernel-huge-6.1.63-x86_64-1.txz: Upgraded. a/kernel-modules-6.1.63-x86_64-1.txz: Upgraded. a/mkinitrd-1.4.11-x86_64-34.txz: Rebuilt. Fix tests for including jfs/xfs repair tools. Thanks to regdub. a/pkgtools-15.1-noarch-8.txz: Rebuilt. Make vim the default vi choice. ap/vim-9.0.2116-x86_64-1.txz: Upgraded. d/gettext-tools-0.22.4-x86_64-1.txz: Upgraded. d/git-2.43.0-x86_64-1.txz: Upgraded. d/kernel-headers-6.1.63-x86-1.txz: Upgraded. d/mercurial-6.6-x86_64-1.txz: Upgraded. d/meson-1.3.0-x86_64-1.txz: Upgraded. d/scons-4.6.0-x86_64-1.txz: Upgraded. k/kernel-source-6.1.63-noarch-1.txz: Upgraded. l/readline-8.2.007-x86_64-1.txz: Upgraded. n/c-ares-1.22.1-x86_64-1.txz: Upgraded. n/nfs-utils-2.6.4-x86_64-1.txz: Upgraded. x/libdrm-2.4.118-x86_64-1.txz: Upgraded. xap/mozilla-firefox-115.5.0esr-x86_64-1.txz: Upgraded. This update contains security fixes and improvements. Thanks to zuriel for the taskbar icon fix on Wayland. :-) For more information, see: https://www.mozilla.org/en-US/firefox/115.5.0/releasenotes/ https://www.mozilla.org/security/advisories/mfsa2023-50/ https://www.cve.org/CVERecord?id=CVE-2023-6204 https://www.cve.org/CVERecord?id=CVE-2023-6205 https://www.cve.org/CVERecord?id=CVE-2023-6206 https://www.cve.org/CVERecord?id=CVE-2023-6207 https://www.cve.org/CVERecord?id=CVE-2023-6208 https://www.cve.org/CVERecord?id=CVE-2023-6209 https://www.cve.org/CVERecord?id=CVE-2023-6212 (* Security fix *) xap/vim-gvim-9.0.2116-x86_64-1.txz: Upgraded. xap/xsnow-3.7.6-x86_64-1.txz: Upgraded. isolinux/initrd.img: Rebuilt. kernels/*: Upgraded. testing/packages/kernel-generic-6.6.2-x86_64-1.txz: Added. testing/packages/kernel-headers-6.6.2-x86-1.txz: Added. testing/packages/kernel-huge-6.6.2-x86_64-1.txz: Added. testing/packages/kernel-modules-6.6.2-x86_64-1.txz: Added. testing/packages/kernel-source-6.6.2-noarch-1.txz: Added. usb-and-pxe-installers/usbboot.img: Rebuilt. |
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.. | ||
_initrd-tree | ||
0001-Fix-LUKSTRIM-with-C-T-and-UUID.patch | ||
0002-bail-if-temp-dir-is-not-created.patch | ||
0003-blacklist.40-usb_modeswitch.rules.patch | ||
0004-check-if-BASEDEV-is-a-partition-of-a-RAID-volume.patch | ||
0005-support-modules-compressed-with-xz.patch | ||
0006-coreutils-9.1-ensure-target-dir-exists.patch | ||
0007-kmod30.patch | ||
0008-fix-check-if-BASEDEV-is-a-partition-of-a-RAID-volume.patch | ||
0009-exclude-99-nfs.rules.patch | ||
0010-fix-test-for-jfs-xfs-repair-tools.patch | ||
busybox-dot-config | ||
geninitrd | ||
init | ||
mkinitrd | ||
mkinitrd.8 | ||
mkinitrd.conf.5 | ||
mkinitrd.conf.sample | ||
mkinitrd.SlackBuild | ||
mkinitrd.tempfile.to.mktemp.patch | ||
mkinitrd_command_generator.8 | ||
mkinitrd_command_generator.sh | ||
README.initrd | ||
setup.01.mkinitrd | ||
slack-desc |
Slackware initrd mini HOWTO by Patrick Volkerding, volkerdi@slackware.com @DATE@ This document describes how to create and install an initrd, which may be required to use some features of the kernel. Also see "man mkinitrd". 1. What is an initrd? 2. Why do I need an initrd? 3. How do I build the initrd? 4. Now that I've built an initrd, how do I use it? 1. What is an initrd? Initrd stands for "initial ramdisk". An initial ramdisk is a very small Linux filesystem that is loaded into RAM and mounted as the kernel boots, and before the main root filesystem is mounted. 2. Why do I need an initrd? The usual reason to use an initrd is because you need to load kernel modules before mounting the root partition. Usually these modules are required to support the filesystem used by the root partition (ext3, reiserfs, xfs), or perhaps the controller that the hard drive is attached to (SCSI, RAID, etc). Essentially, there are so many different options available in modern Linux kernels that it isn't practical to try to ship many different kernels to try to cover everyone's needs. It's a lot more flexible to ship a generic kernel and a set of kernel modules for it. 3. How do I build the initrd? The easiest way to make the initrd is to use the mkinitrd script included in Slackware's mkinitrd package. We'll walk through the process of upgrading to the generic @KERNEL_VERSION@ Linux kernel using the packages found in Slackware's slackware/a/ directory. First, make sure the kernel, kernel modules, and mkinitrd package are installed (the current version numbers might be a little different, so this is just an example): installpkg kernel-generic-@KERNEL_VERSION@-@ARCH@-@BUILD@.tgz installpkg kernel-modules-@KERNEL_VERSION@-@ARCH@-@BUILD@.tgz installpkg mkinitrd-@MKINITRD_VERSION@-@ARCH@-@BUILD@.tgz Change into the /boot directory: cd /boot Now you'll want to run "mkinitrd". I'm using ext4 for my root filesystem, and since mkinitrd should figure out any other modules it requires, I shouldn't need to specify any others: mkinitrd -c -k @KERNEL_VERSION@ -m ext4 This should do two things. First, it will create a directory /boot/initrd-tree containing the initrd's filesystem. Then it will create an initrd (/boot/initrd.gz) from this tree. If you wanted to, you could make some additional changes in /boot/initrd-tree/ and then run mkinitrd again without options to rebuild the image. That's optional, though, and only advanced users will need to think about that. Here's another example: Build an initrd image using Linux @KERNEL_VERSION@ kernel modules for a system with an ext3 root partition on /dev/sdb3: mkinitrd -c -k @KERNEL_VERSION@ -m ext3 -f ext3 -r /dev/sdb3 4. Now that I've built an initrd, how do I use it? Now that you've got an initrd (/boot/initrd.gz), you'll want to load it along with the kernel at boot time. If you use LILO for your boot loader you'll need to edit /etc/lilo.conf and add a line to load the initrd. Here's an example section of lilo.conf showing how this is done: # Linux bootable partition config begins image = /boot/vmlinuz-generic-@KERNEL_VERSION@ initrd = /boot/initrd.gz root = /dev/sda6 label = @LILO_KERNEL_NAME@ read-only # Linux bootable partition config ends The initrd is loaded by the "initrd = /boot/initrd.gz" line. Just add the line right below the line for the kernel image you use. Save the file, and then run LILO again ('lilo' at the command line). You'll need to run lilo every time you edit lilo.conf or rebuild the initrd. Other bootloaders such as syslinux also support the use of an initrd. See the documentation for those programs for details on using an initrd with them. --------- Have fun!