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118 lines
6.4 KiB
118 lines
6.4 KiB
From 36e71ba28d490bb3dba34df8eef472c1560e3772 Mon Sep 17 00:00:00 2001
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From: "Jason A. Donenfeld" <Jason@zx2c4.com>
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Date: Thu, 17 Nov 2022 16:11:44 +0100
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Subject: [PATCH] bootctl: install system token on virtualized systems
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Removing the virtualization check might not be the worst thing in the
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world, and would potentially get many, many more systems properly seeded
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rather than not seeded. There are a few reasons to consider this:
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- In most QEMU setups and most guides on how to setup QEMU, a separate
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pflash file is used for nvram variables, and this generally isn't
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copied around.
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- We're now hashing in a timestamp, which should provide some level of
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differentiation, given that EFI_TIME has a nanoseconds field.
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- The kernel itself will additionally hash in: a high resolution time
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stamp, a cycle counter, RDRAND output, the VMGENID uniquely
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identifying the virtual machine, any other seeds from the hypervisor
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(like from FDT or setup_data).
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- During early boot, the RNG is reseeded quite frequently to account for
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the importance of early differentiation.
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So maybe the mitigating factors make the actual feared problem
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significantly less likely and therefore the pros of having file-based
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seeding might outweigh the cons of weird misconfigured setups having a
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hypothetical problem on first boot.
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(cherry picked from commit a4eea6038c1c7f88adc6d6584d18ea60ea11b08f)
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Related: RHEL-16952
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---
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docs/RANDOM_SEEDS.md | 15 ++++-----------
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src/boot/bootctl.c | 20 --------------------
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units/systemd-boot-system-token.service | 8 ++------
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3 files changed, 6 insertions(+), 37 deletions(-)
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diff --git a/docs/RANDOM_SEEDS.md b/docs/RANDOM_SEEDS.md
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index b7240f0d89..a1134d6417 100644
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--- a/docs/RANDOM_SEEDS.md
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+++ b/docs/RANDOM_SEEDS.md
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@@ -232,17 +232,10 @@ boot, in order to ensure the entropy pool is filled up quickly.
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too), which should be safe even with FAT file system drivers built into
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low-quality EFI firmwares.
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- As a special restriction: in virtualized environments PID 1 will refrain
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- from using this mechanism, for safety reasons. This is because on VM
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- environments the EFI variable space and the disk space is generally not
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- maintained physically separate (for example, `qemu` in EFI mode stores the
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- variables in the ESP itself). The robustness towards sloppy OS image
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- generation is the main purpose of maintaining the 'system token' however,
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- and if the EFI variable storage is not kept physically separate from the OS
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- image there's no point in it. That said, OS builders that know that they are
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- not going to replicate the built image on multiple systems may opt to turn
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- off the 'system token' concept by setting `random-seed-mode always` in the
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- ESP's
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+ If the system token is not desired but this seeding mechanism still is, OS
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+ builders that know that they are not going to replicate the built image on
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+ multiple systems may opt to turn off the 'system token' concept by setting
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+ `random-seed-mode always` in the ESP's
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[`/loader/loader.conf`](https://www.freedesktop.org/software/systemd/man/loader.conf.html)
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file. If done, `systemd-boot` will use the random seed file even if no
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system token is found in EFI variables.
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diff --git a/src/boot/bootctl.c b/src/boot/bootctl.c
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index 8d45e11c2b..d495c72bdd 100644
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--- a/src/boot/bootctl.c
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+++ b/src/boot/bootctl.c
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@@ -2048,26 +2048,6 @@ static int install_random_seed(const char *esp) {
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if (r < 0) {
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if (r != -ENXIO)
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log_warning_errno(r, "Failed to parse $SYSTEMD_WRITE_SYSTEM_TOKEN, ignoring.");
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-
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- if (detect_vm() > 0) {
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- /* Let's not write a system token if we detect we are running in a VM
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- * environment. Why? Our default security model for the random seed uses the system
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- * token as a mechanism to ensure we are not vulnerable to golden master sloppiness
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- * issues, i.e. that people initialize the random seed file, then copy the image to
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- * many systems and end up with the same random seed in each that is assumed to be
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- * valid but in reality is the same for all machines. By storing a system token in
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- * the EFI variable space we can make sure that even though the random seeds on disk
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- * are all the same they will be different on each system under the assumption that
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- * the EFI variable space is maintained separate from the random seed storage. That
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- * is generally the case on physical systems, as the ESP is stored on persistent
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- * storage, and the EFI variables in NVRAM. However in virtualized environments this
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- * is generally not true: the EFI variable set is typically stored along with the
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- * disk image itself. For example, using the OVMF EFI firmware the EFI variables are
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- * stored in a file in the ESP itself. */
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-
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- log_notice("Not installing system token, since we are running in a virtualized environment.");
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- return 0;
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- }
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} else if (r == 0) {
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log_notice("Not writing system token, because $SYSTEMD_WRITE_SYSTEM_TOKEN is set to false.");
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return 0;
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diff --git a/units/systemd-boot-system-token.service b/units/systemd-boot-system-token.service
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index 5a56d7c331..689b902000 100644
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--- a/units/systemd-boot-system-token.service
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+++ b/units/systemd-boot-system-token.service
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@@ -16,15 +16,11 @@ After=local-fs.target systemd-random-seed.service
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Conflicts=shutdown.target initrd-switch-root.target
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Before=shutdown.target initrd-switch-root.target
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-# Don't run this in a VM environment, because there EFI variables are not
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-# actually stored in NVRAM, independent of regular storage.
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-ConditionVirtualization=no
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-
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# Only run this if the boot loader can support random seed initialization.
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ConditionPathExists=/sys/firmware/efi/efivars/LoaderFeatures-4a67b082-0a4c-41cf-b6c7-440b29bb8c4f
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-# Only run this if there is no system token defined yet, or …
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-ConditionPathExists=|!/sys/firmware/efi/efivars/LoaderSystemToken-4a67b082-0a4c-41cf-b6c7-440b29bb8c4f
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+# Only run this if there is no system token defined yet
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+ConditionPathExists=!/sys/firmware/efi/efivars/LoaderSystemToken-4a67b082-0a4c-41cf-b6c7-440b29bb8c4f
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[Service]
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Type=oneshot
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