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No commits in common. "e00324d092d6659bc0cb258c0d7043cde2e5a9ea" and "cef916c743dc5a9d3ea311b6b49cf37feaf40c96" have entirely different histories.

5 changed files with 4 additions and 54 deletions

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@ -52,9 +52,6 @@
<listitem><para>The initial RAM disk (initrd) will be looked for in the <literal>.initrd</literal> PE <listitem><para>The initial RAM disk (initrd) will be looked for in the <literal>.initrd</literal> PE
section.</para></listitem> section.</para></listitem>
<listitem><para>A compiled binary DeviceTree will be looked for in the <literal>.dtb</literal> PE
section.</para></listitem>
<listitem><para>The kernel command line to pass to the invoked kernel will be looked for in the <listitem><para>The kernel command line to pass to the invoked kernel will be looked for in the
<literal>.cmdline</literal> PE section.</para></listitem> <literal>.cmdline</literal> PE section.</para></listitem>
@ -68,10 +65,6 @@
SecureBoot, or don't include a kernel command line PE section in the kernel image file. If a command line SecureBoot, or don't include a kernel command line PE section in the kernel image file. If a command line
is accepted via EFI invocation parameters to the EFI binary it is measured into TPM PCR 8 (if a TPM is is accepted via EFI invocation parameters to the EFI binary it is measured into TPM PCR 8 (if a TPM is
present).</para> present).</para>
<para>If a DeviceTree is embedded in the <literal>.dtb</literal> section, it replaces an existing
DeviceTree in the corresponding EFI configuration table. systemd-stub will ask the firmware via the
<literal>EFI_DT_FIXUP_PROTOCOL</literal> for hardware specific fixups to the DeviceTree.</para>
</refsect1> </refsect1>
<refsect1> <refsect1>
@ -170,8 +163,7 @@
<programlisting>objcopy \ <programlisting>objcopy \
--add-section .osrel=os-release --change-section-vma .osrel=0x20000 \ --add-section .osrel=os-release --change-section-vma .osrel=0x20000 \
--add-section .cmdline=cmdline.txt --change-section-vma .cmdline=0x30000 \ --add-section .cmdline=cmdline.txt --change-section-vma .cmdline=0x30000 \
--add-section .dtb=devicetree.dtb --change-section-vma .dtb=0x40000 \ --add-section .splash=splash.bmp --change-section-vma .splash=0x40000 \
--add-section .splash=splash.bmp --change-section-vma .splash=0x100000 \
--add-section .linux=vmlinux --change-section-vma .linux=0x2000000 \ --add-section .linux=vmlinux --change-section-vma .linux=0x2000000 \
--add-section .initrd=initrd.cpio --change-section-vma .initrd=0x3000000 \ --add-section .initrd=initrd.cpio --change-section-vma .initrd=0x3000000 \
/usr/lib/systemd/boot/efi/linuxx64.efi.stub \ /usr/lib/systemd/boot/efi/linuxx64.efi.stub \

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@ -109,31 +109,6 @@ EFI_STATUS devicetree_install(struct devicetree_state *state,
return uefi_call_wrapper(BS->InstallConfigurationTable, 2, &EfiDtbTableGuid, PHYSICAL_ADDRESS_TO_POINTER(state->addr)); return uefi_call_wrapper(BS->InstallConfigurationTable, 2, &EfiDtbTableGuid, PHYSICAL_ADDRESS_TO_POINTER(state->addr));
} }
EFI_STATUS devicetree_install_from_memory(struct devicetree_state *state,
const VOID *dtb_buffer, UINTN dtb_length) {
EFI_STATUS err;
assert(state);
assert(dtb_buffer && dtb_length > 0);
err = LibGetSystemConfigurationTable(&EfiDtbTableGuid, &state->orig);
if (EFI_ERROR(err))
return EFI_UNSUPPORTED;
err = devicetree_allocate(state, dtb_length);
if (EFI_ERROR(err))
return err;
CopyMem(PHYSICAL_ADDRESS_TO_POINTER(state->addr), dtb_buffer, dtb_length);
err = devicetree_fixup(state, dtb_length);
if (EFI_ERROR(err))
return err;
return uefi_call_wrapper(BS->InstallConfigurationTable, 2, &EfiDtbTableGuid, PHYSICAL_ADDRESS_TO_POINTER(state->addr));
}
void devicetree_cleanup(struct devicetree_state *state) { void devicetree_cleanup(struct devicetree_state *state) {
EFI_STATUS err; EFI_STATUS err;

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@ -8,6 +8,4 @@ struct devicetree_state {
}; };
EFI_STATUS devicetree_install(struct devicetree_state *state, EFI_FILE_HANDLE root_dir, CHAR16 *name); EFI_STATUS devicetree_install(struct devicetree_state *state, EFI_FILE_HANDLE root_dir, CHAR16 *name);
EFI_STATUS devicetree_install_from_memory(
struct devicetree_state *state, const VOID *dtb_buffer, UINTN dtb_length);
void devicetree_cleanup(struct devicetree_state *state); void devicetree_cleanup(struct devicetree_state *state);

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@ -20,7 +20,6 @@ efi_headers = files('''
common_sources = ''' common_sources = '''
assert.c assert.c
devicetree.c
disk.c disk.c
graphics.c graphics.c
measure.c measure.c
@ -32,6 +31,7 @@ common_sources = '''
systemd_boot_sources = ''' systemd_boot_sources = '''
boot.c boot.c
console.c console.c
devicetree.c
drivers.c drivers.c
random-seed.c random-seed.c
shim.c shim.c

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@ -4,7 +4,6 @@
#include <efilib.h> #include <efilib.h>
#include "cpio.h" #include "cpio.h"
#include "devicetree.h"
#include "disk.h" #include "disk.h"
#include "graphics.h" #include "graphics.h"
#include "linux.h" #include "linux.h"
@ -142,7 +141,6 @@ EFI_STATUS efi_main(EFI_HANDLE image, EFI_SYSTEM_TABLE *sys_table) {
SECTION_LINUX, SECTION_LINUX,
SECTION_INITRD, SECTION_INITRD,
SECTION_SPLASH, SECTION_SPLASH,
SECTION_DTB,
_SECTION_MAX, _SECTION_MAX,
}; };
@ -151,15 +149,12 @@ EFI_STATUS efi_main(EFI_HANDLE image, EFI_SYSTEM_TABLE *sys_table) {
[SECTION_LINUX] = (const CHAR8*) ".linux", [SECTION_LINUX] = (const CHAR8*) ".linux",
[SECTION_INITRD] = (const CHAR8*) ".initrd", [SECTION_INITRD] = (const CHAR8*) ".initrd",
[SECTION_SPLASH] = (const CHAR8*) ".splash", [SECTION_SPLASH] = (const CHAR8*) ".splash",
[SECTION_DTB] = (const CHAR8*) ".dtb",
NULL, NULL,
}; };
UINTN cmdline_len = 0, linux_size, initrd_size, dt_size; UINTN cmdline_len = 0, linux_size, initrd_size, credential_initrd_size = 0, sysext_initrd_size = 0;
UINTN credential_initrd_size = 0, sysext_initrd_size = 0;
_cleanup_freepool_ VOID *credential_initrd = NULL, *sysext_initrd = NULL; _cleanup_freepool_ VOID *credential_initrd = NULL, *sysext_initrd = NULL;
EFI_PHYSICAL_ADDRESS linux_base, initrd_base, dt_base; EFI_PHYSICAL_ADDRESS linux_base, initrd_base;
_cleanup_(devicetree_cleanup) struct devicetree_state dt_state = {};
EFI_LOADED_IMAGE *loaded_image; EFI_LOADED_IMAGE *loaded_image;
UINTN addrs[_SECTION_MAX] = {}; UINTN addrs[_SECTION_MAX] = {};
UINTN szs[_SECTION_MAX] = {}; UINTN szs[_SECTION_MAX] = {};
@ -233,9 +228,6 @@ EFI_STATUS efi_main(EFI_HANDLE image, EFI_SYSTEM_TABLE *sys_table) {
initrd_size = szs[SECTION_INITRD]; initrd_size = szs[SECTION_INITRD];
initrd_base = initrd_size != 0 ? POINTER_TO_PHYSICAL_ADDRESS(loaded_image->ImageBase) + addrs[SECTION_INITRD] : 0; initrd_base = initrd_size != 0 ? POINTER_TO_PHYSICAL_ADDRESS(loaded_image->ImageBase) + addrs[SECTION_INITRD] : 0;
dt_size = szs[SECTION_DTB];
dt_base = dt_size != 0 ? POINTER_TO_PHYSICAL_ADDRESS(loaded_image->ImageBase) + addrs[SECTION_DTB] : 0;
if (credential_initrd || sysext_initrd) { if (credential_initrd || sysext_initrd) {
/* If we have generated initrds dynamically, let's combine them with the built-in initrd. */ /* If we have generated initrds dynamically, let's combine them with the built-in initrd. */
err = combine_initrd( err = combine_initrd(
@ -258,13 +250,6 @@ EFI_STATUS efi_main(EFI_HANDLE image, EFI_SYSTEM_TABLE *sys_table) {
} }
} }
if (dt_size > 0) {
err = devicetree_install_from_memory(
&dt_state, PHYSICAL_ADDRESS_TO_POINTER(dt_base), dt_size);
if (EFI_ERROR(err))
log_error_stall(L"Error loading embedded devicetree: %r", err);
}
err = linux_exec(image, cmdline, cmdline_len, err = linux_exec(image, cmdline, cmdline_len,
PHYSICAL_ADDRESS_TO_POINTER(linux_base), linux_size, PHYSICAL_ADDRESS_TO_POINTER(linux_base), linux_size,
PHYSICAL_ADDRESS_TO_POINTER(initrd_base), initrd_size); PHYSICAL_ADDRESS_TO_POINTER(initrd_base), initrd_size);