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x86/boot/compressed/64: Always switch to own page table
When booted through startup_64(), the kernel keeps running on the EFI page table until the KASLR code sets up its own page table. Without KASLR, the pre-decompression boot code never switches off the EFI page table. Change that by unconditionally switching to a kernel-controlled page table after relocation. This makes sure the kernel can make changes to the mapping when necessary, for example map pages unencrypted in SEV and SEV-ES guests. Also, remove the debug_putstr() calls in initialize_identity_maps() because the function now runs before console_init() is called. [ bp: Massage commit message. ] Signed-off-by: Joerg Roedel <jroedel@suse.de> Signed-off-by: Borislav Petkov <bp@suse.de> Reviewed-by: Kees Cook <keescook@chromium.org> Link: https://lkml.kernel.org/r/20200907131613.12703-17-joro@8bytes.org
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@ -543,10 +543,11 @@ SYM_FUNC_START_LOCAL_NOALIGN(.Lrelocated)
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rep stosq
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/*
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* Load stage2 IDT
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* Load stage2 IDT and switch to our own page-table
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*/
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pushq %rsi
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call load_stage2_idt
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call initialize_identity_maps
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popq %rsi
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/*
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@ -86,9 +86,31 @@ phys_addr_t physical_mask = (1ULL << __PHYSICAL_MASK_SHIFT) - 1;
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*/
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static struct x86_mapping_info mapping_info;
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/*
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* Adds the specified range to what will become the new identity mappings.
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* Once all ranges have been added, the new mapping is activated by calling
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* finalize_identity_maps() below.
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*/
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void add_identity_map(unsigned long start, unsigned long size)
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{
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unsigned long end = start + size;
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/* Align boundary to 2M. */
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start = round_down(start, PMD_SIZE);
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end = round_up(end, PMD_SIZE);
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if (start >= end)
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return;
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/* Build the mapping. */
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kernel_ident_mapping_init(&mapping_info, (pgd_t *)top_level_pgt,
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start, end);
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}
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/* Locates and clears a region for a new top level page table. */
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void initialize_identity_maps(void)
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{
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unsigned long start, size;
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/* If running as an SEV guest, the encryption mask is required. */
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set_sev_encryption_mask();
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@ -121,37 +143,24 @@ void initialize_identity_maps(void)
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*/
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top_level_pgt = read_cr3_pa();
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if (p4d_offset((pgd_t *)top_level_pgt, 0) == (p4d_t *)_pgtable) {
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debug_putstr("booted via startup_32()\n");
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pgt_data.pgt_buf = _pgtable + BOOT_INIT_PGT_SIZE;
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pgt_data.pgt_buf_size = BOOT_PGT_SIZE - BOOT_INIT_PGT_SIZE;
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memset(pgt_data.pgt_buf, 0, pgt_data.pgt_buf_size);
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} else {
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debug_putstr("booted via startup_64()\n");
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pgt_data.pgt_buf = _pgtable;
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pgt_data.pgt_buf_size = BOOT_PGT_SIZE;
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memset(pgt_data.pgt_buf, 0, pgt_data.pgt_buf_size);
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top_level_pgt = (unsigned long)alloc_pgt_page(&pgt_data);
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}
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}
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/*
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* Adds the specified range to what will become the new identity mappings.
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* Once all ranges have been added, the new mapping is activated by calling
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* finalize_identity_maps() below.
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*/
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void add_identity_map(unsigned long start, unsigned long size)
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{
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unsigned long end = start + size;
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/* Align boundary to 2M. */
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start = round_down(start, PMD_SIZE);
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end = round_up(end, PMD_SIZE);
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if (start >= end)
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return;
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/* Build the mapping. */
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kernel_ident_mapping_init(&mapping_info, (pgd_t *)top_level_pgt,
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start, end);
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/*
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* New page-table is set up - map the kernel image and load it
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* into cr3.
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*/
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start = (unsigned long)_head;
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size = _end - _head;
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add_identity_map(start, size);
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write_cr3(top_level_pgt);
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}
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/*
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@ -861,9 +861,6 @@ void choose_random_location(unsigned long input,
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boot_params->hdr.loadflags |= KASLR_FLAG;
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/* Prepare to add new identity pagetables on demand. */
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initialize_identity_maps();
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if (IS_ENABLED(CONFIG_X86_32))
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mem_limit = KERNEL_IMAGE_SIZE;
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else
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