mirror of
https://github.com/torvalds/linux.git
synced 2024-11-10 14:11:52 +00:00
s390 updates for 6.11-rc2
- Remove unused empty CPU alternatives header file - Fix recently and erroneously removed exception handling when loading an invalid floating point register - Couple of ptdump fixes to reflect the recent changes due to the uncoupling of physical vs virtual kernel address spaces - Couple of changes to avoid the unnecessary splitting of large pages in kernel mappings - Add the missing MODULE_DESCRIPTION for the CIO modules -----BEGIN PGP SIGNATURE----- iQEzBAABCAAdFiEE3QHqV+H2a8xAv27vjYWKoQLXFBgFAmas5D8ACgkQjYWKoQLX FBhDOAf8DjT43CeXhIEsukXN/qfOXacFx4XMQ6T/vJecIAkHheRGYngropKIVY8z zs/jw9uBluRG/u5O7NMEiHT71HRj2CtjblzvFvtR6xKhFGhCsbePnyVfxiF/k/oJ SHFfumtTt8EvPMZvdlkB4hmVnxTW5NYZI02ZLS5Nn1OhmminSju332O9rZXZRgc8 t28f/Po4TDUkxt+L5Hax0NpfHwMuohRtWhdFhNoPxyCQMFqdmMEMEHoqf+M4DRCh 0ZrMY81gyEpksAHAwMrfJiIdTPvQKXLA+zyTY0vCbBGNRm4Gj8qLhzyJ5H8eVQj4 qVf0Q1b5T9pPZB+tz3Et7ssf0boe/Q== =2XKI -----END PGP SIGNATURE----- Merge tag 's390-6.11-3' of git://git.kernel.org/pub/scm/linux/kernel/git/s390/linux Pull s390 fixes from Vasily Gorbik: - remove unused empty CPU alternatives header file - fix recently and erroneously removed exception handling when loading an invalid floating point register - ptdump fixes to reflect the recent changes due to the uncoupling of physical vs virtual kernel address spaces - changes to avoid the unnecessary splitting of large pages in kernel mappings - add the missing MODULE_DESCRIPTION for the CIO modules * tag 's390-6.11-3' of git://git.kernel.org/pub/scm/linux/kernel/git/s390/linux: s390: Keep inittext section writable s390/vmlinux.lds.S: Move ro_after_init section behind rodata section s390/mm: Get rid of RELOC_HIDE() s390/mm/ptdump: Improve sorting of markers s390/mm/ptdump: Add support for relocated lowcore mapping s390/mm/ptdump: Fix handling of identity mapping area s390/cio: Add missing MODULE_DESCRIPTION() macros s390/alternatives: Remove unused empty header file s390/fpu: Re-add exception handling in load_fpu_state()
This commit is contained in:
commit
66242ef25e
@ -113,7 +113,7 @@ void load_fpu_state(struct fpu *state, int flags)
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int mask;
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if (flags & KERNEL_FPC)
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fpu_lfpc(&state->fpc);
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fpu_lfpc_safe(&state->fpc);
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if (!cpu_has_vx()) {
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if (flags & KERNEL_VXR_V0V7)
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load_fp_regs_vx(state->vxrs);
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@ -59,14 +59,6 @@ SECTIONS
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} :text = 0x0700
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RO_DATA(PAGE_SIZE)
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.data.rel.ro : {
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*(.data.rel.ro .data.rel.ro.*)
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}
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.got : {
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__got_start = .;
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*(.got)
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__got_end = .;
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}
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. = ALIGN(PAGE_SIZE);
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_sdata = .; /* Start of data section */
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@ -80,6 +72,15 @@ SECTIONS
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. = ALIGN(PAGE_SIZE);
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__end_ro_after_init = .;
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.data.rel.ro : {
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*(.data.rel.ro .data.rel.ro.*)
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}
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.got : {
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__got_start = .;
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*(.got)
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__got_end = .;
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}
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RW_DATA(0x100, PAGE_SIZE, THREAD_SIZE)
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.data.rel : {
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*(.data.rel*)
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@ -3,6 +3,7 @@
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#include <linux/ptdump.h>
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#include <linux/seq_file.h>
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#include <linux/debugfs.h>
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#include <linux/sort.h>
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#include <linux/mm.h>
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#include <linux/kfence.h>
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#include <linux/kasan.h>
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@ -15,13 +16,15 @@
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static unsigned long max_addr;
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struct addr_marker {
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int is_start;
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unsigned long start_address;
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const char *name;
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};
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enum address_markers_idx {
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IDENTITY_BEFORE_NR = 0,
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IDENTITY_BEFORE_END_NR,
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KVA_NR = 0,
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LOWCORE_START_NR,
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LOWCORE_END_NR,
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AMODE31_START_NR,
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AMODE31_END_NR,
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KERNEL_START_NR,
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@ -30,8 +33,8 @@ enum address_markers_idx {
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KFENCE_START_NR,
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KFENCE_END_NR,
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#endif
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IDENTITY_AFTER_NR,
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IDENTITY_AFTER_END_NR,
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IDENTITY_START_NR,
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IDENTITY_END_NR,
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VMEMMAP_NR,
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VMEMMAP_END_NR,
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VMALLOC_NR,
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@ -59,43 +62,44 @@ enum address_markers_idx {
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};
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static struct addr_marker address_markers[] = {
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[IDENTITY_BEFORE_NR] = {0, "Identity Mapping Start"},
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[IDENTITY_BEFORE_END_NR] = {(unsigned long)_stext, "Identity Mapping End"},
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[AMODE31_START_NR] = {0, "Amode31 Area Start"},
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[AMODE31_END_NR] = {0, "Amode31 Area End"},
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[KERNEL_START_NR] = {(unsigned long)_stext, "Kernel Image Start"},
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[KERNEL_END_NR] = {(unsigned long)_end, "Kernel Image End"},
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[KVA_NR] = {0, 0, "Kernel Virtual Address Space"},
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[LOWCORE_START_NR] = {1, 0, "Lowcore Start"},
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[LOWCORE_END_NR] = {0, 0, "Lowcore End"},
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[IDENTITY_START_NR] = {1, 0, "Identity Mapping Start"},
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[IDENTITY_END_NR] = {0, 0, "Identity Mapping End"},
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[AMODE31_START_NR] = {1, 0, "Amode31 Area Start"},
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[AMODE31_END_NR] = {0, 0, "Amode31 Area End"},
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[KERNEL_START_NR] = {1, (unsigned long)_stext, "Kernel Image Start"},
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[KERNEL_END_NR] = {0, (unsigned long)_end, "Kernel Image End"},
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#ifdef CONFIG_KFENCE
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[KFENCE_START_NR] = {0, "KFence Pool Start"},
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[KFENCE_END_NR] = {0, "KFence Pool End"},
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[KFENCE_START_NR] = {1, 0, "KFence Pool Start"},
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[KFENCE_END_NR] = {0, 0, "KFence Pool End"},
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#endif
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[IDENTITY_AFTER_NR] = {(unsigned long)_end, "Identity Mapping Start"},
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[IDENTITY_AFTER_END_NR] = {0, "Identity Mapping End"},
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[VMEMMAP_NR] = {0, "vmemmap Area Start"},
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[VMEMMAP_END_NR] = {0, "vmemmap Area End"},
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[VMALLOC_NR] = {0, "vmalloc Area Start"},
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[VMALLOC_END_NR] = {0, "vmalloc Area End"},
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[VMEMMAP_NR] = {1, 0, "vmemmap Area Start"},
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[VMEMMAP_END_NR] = {0, 0, "vmemmap Area End"},
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[VMALLOC_NR] = {1, 0, "vmalloc Area Start"},
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[VMALLOC_END_NR] = {0, 0, "vmalloc Area End"},
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#ifdef CONFIG_KMSAN
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[KMSAN_VMALLOC_SHADOW_START_NR] = {0, "Kmsan vmalloc Shadow Start"},
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[KMSAN_VMALLOC_SHADOW_END_NR] = {0, "Kmsan vmalloc Shadow End"},
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[KMSAN_VMALLOC_ORIGIN_START_NR] = {0, "Kmsan vmalloc Origins Start"},
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[KMSAN_VMALLOC_ORIGIN_END_NR] = {0, "Kmsan vmalloc Origins End"},
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[KMSAN_MODULES_SHADOW_START_NR] = {0, "Kmsan Modules Shadow Start"},
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[KMSAN_MODULES_SHADOW_END_NR] = {0, "Kmsan Modules Shadow End"},
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[KMSAN_MODULES_ORIGIN_START_NR] = {0, "Kmsan Modules Origins Start"},
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[KMSAN_MODULES_ORIGIN_END_NR] = {0, "Kmsan Modules Origins End"},
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[KMSAN_VMALLOC_SHADOW_START_NR] = {1, 0, "Kmsan vmalloc Shadow Start"},
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[KMSAN_VMALLOC_SHADOW_END_NR] = {0, 0, "Kmsan vmalloc Shadow End"},
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[KMSAN_VMALLOC_ORIGIN_START_NR] = {1, 0, "Kmsan vmalloc Origins Start"},
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[KMSAN_VMALLOC_ORIGIN_END_NR] = {0, 0, "Kmsan vmalloc Origins End"},
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[KMSAN_MODULES_SHADOW_START_NR] = {1, 0, "Kmsan Modules Shadow Start"},
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[KMSAN_MODULES_SHADOW_END_NR] = {0, 0, "Kmsan Modules Shadow End"},
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[KMSAN_MODULES_ORIGIN_START_NR] = {1, 0, "Kmsan Modules Origins Start"},
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[KMSAN_MODULES_ORIGIN_END_NR] = {0, 0, "Kmsan Modules Origins End"},
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#endif
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[MODULES_NR] = {0, "Modules Area Start"},
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[MODULES_END_NR] = {0, "Modules Area End"},
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[ABS_LOWCORE_NR] = {0, "Lowcore Area Start"},
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[ABS_LOWCORE_END_NR] = {0, "Lowcore Area End"},
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[MEMCPY_REAL_NR] = {0, "Real Memory Copy Area Start"},
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[MEMCPY_REAL_END_NR] = {0, "Real Memory Copy Area End"},
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[MODULES_NR] = {1, 0, "Modules Area Start"},
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[MODULES_END_NR] = {0, 0, "Modules Area End"},
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[ABS_LOWCORE_NR] = {1, 0, "Lowcore Area Start"},
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[ABS_LOWCORE_END_NR] = {0, 0, "Lowcore Area End"},
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[MEMCPY_REAL_NR] = {1, 0, "Real Memory Copy Area Start"},
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[MEMCPY_REAL_END_NR] = {0, 0, "Real Memory Copy Area End"},
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#ifdef CONFIG_KASAN
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[KASAN_SHADOW_START_NR] = {KASAN_SHADOW_START, "Kasan Shadow Start"},
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[KASAN_SHADOW_END_NR] = {KASAN_SHADOW_END, "Kasan Shadow End"},
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[KASAN_SHADOW_START_NR] = {1, KASAN_SHADOW_START, "Kasan Shadow Start"},
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[KASAN_SHADOW_END_NR] = {0, KASAN_SHADOW_END, "Kasan Shadow End"},
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#endif
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{ -1, NULL }
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{1, -1UL, NULL}
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};
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struct pg_state {
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@ -163,6 +167,19 @@ static void note_prot_wx(struct pg_state *st, unsigned long addr)
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st->wx_pages += (addr - st->start_address) / PAGE_SIZE;
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}
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static void note_page_update_state(struct pg_state *st, unsigned long addr, unsigned int prot, int level)
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{
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struct seq_file *m = st->seq;
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while (addr >= st->marker[1].start_address) {
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st->marker++;
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pt_dump_seq_printf(m, "---[ %s ]---\n", st->marker->name);
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}
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st->start_address = addr;
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st->current_prot = prot;
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st->level = level;
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}
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static void note_page(struct ptdump_state *pt_st, unsigned long addr, int level, u64 val)
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{
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int width = sizeof(unsigned long) * 2;
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@ -186,9 +203,7 @@ static void note_page(struct ptdump_state *pt_st, unsigned long addr, int level,
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addr = max_addr;
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if (st->level == -1) {
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pt_dump_seq_printf(m, "---[ %s ]---\n", st->marker->name);
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st->start_address = addr;
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st->current_prot = prot;
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st->level = level;
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note_page_update_state(st, addr, prot, level);
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} else if (prot != st->current_prot || level != st->level ||
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addr >= st->marker[1].start_address) {
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note_prot_wx(st, addr);
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@ -202,13 +217,7 @@ static void note_page(struct ptdump_state *pt_st, unsigned long addr, int level,
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}
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pt_dump_seq_printf(m, "%9lu%c ", delta, *unit);
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print_prot(m, st->current_prot, st->level);
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while (addr >= st->marker[1].start_address) {
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st->marker++;
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pt_dump_seq_printf(m, "---[ %s ]---\n", st->marker->name);
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}
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st->start_address = addr;
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st->current_prot = prot;
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st->level = level;
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note_page_update_state(st, addr, prot, level);
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}
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}
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@ -280,22 +289,25 @@ static int ptdump_show(struct seq_file *m, void *v)
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DEFINE_SHOW_ATTRIBUTE(ptdump);
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#endif /* CONFIG_PTDUMP_DEBUGFS */
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/*
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* Heapsort from lib/sort.c is not a stable sorting algorithm, do a simple
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* insertion sort to preserve the original order of markers with the same
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* start address.
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*/
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static void sort_address_markers(void)
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static int ptdump_cmp(const void *a, const void *b)
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{
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struct addr_marker tmp;
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int i, j;
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const struct addr_marker *ama = a;
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const struct addr_marker *amb = b;
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for (i = 1; i < ARRAY_SIZE(address_markers) - 1; i++) {
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tmp = address_markers[i];
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for (j = i - 1; j >= 0 && address_markers[j].start_address > tmp.start_address; j--)
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address_markers[j + 1] = address_markers[j];
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address_markers[j + 1] = tmp;
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}
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if (ama->start_address > amb->start_address)
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return 1;
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if (ama->start_address < amb->start_address)
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return -1;
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/*
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* If the start addresses of two markers are identical consider the
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* marker which defines the start of an area higher than the one which
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* defines the end of an area. This keeps pairs of markers sorted.
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*/
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if (ama->is_start)
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return 1;
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if (amb->is_start)
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return -1;
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return 0;
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}
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static int pt_dump_init(void)
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@ -303,6 +315,8 @@ static int pt_dump_init(void)
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#ifdef CONFIG_KFENCE
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unsigned long kfence_start = (unsigned long)__kfence_pool;
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#endif
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unsigned long lowcore = (unsigned long)get_lowcore();
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/*
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* Figure out the maximum virtual address being accessible with the
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* kernel ASCE. We need this to keep the page table walker functions
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@ -310,7 +324,10 @@ static int pt_dump_init(void)
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*/
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max_addr = (get_lowcore()->kernel_asce.val & _REGION_ENTRY_TYPE_MASK) >> 2;
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max_addr = 1UL << (max_addr * 11 + 31);
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address_markers[IDENTITY_AFTER_END_NR].start_address = ident_map_size;
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address_markers[LOWCORE_START_NR].start_address = lowcore;
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address_markers[LOWCORE_END_NR].start_address = lowcore + sizeof(struct lowcore);
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address_markers[IDENTITY_START_NR].start_address = __identity_base;
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address_markers[IDENTITY_END_NR].start_address = __identity_base + ident_map_size;
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address_markers[AMODE31_START_NR].start_address = (unsigned long)__samode31;
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address_markers[AMODE31_END_NR].start_address = (unsigned long)__eamode31;
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address_markers[MODULES_NR].start_address = MODULES_VADDR;
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@ -337,7 +354,8 @@ static int pt_dump_init(void)
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address_markers[KMSAN_MODULES_ORIGIN_START_NR].start_address = KMSAN_MODULES_ORIGIN_START;
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address_markers[KMSAN_MODULES_ORIGIN_END_NR].start_address = KMSAN_MODULES_ORIGIN_END;
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#endif
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sort_address_markers();
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sort(address_markers, ARRAY_SIZE(address_markers) - 1,
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sizeof(address_markers[0]), ptdump_cmp, NULL);
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#ifdef CONFIG_PTDUMP_DEBUGFS
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debugfs_create_file("kernel_page_tables", 0400, NULL, NULL, &ptdump_fops);
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#endif /* CONFIG_PTDUMP_DEBUGFS */
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@ -108,6 +108,8 @@ void mark_rodata_ro(void)
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{
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unsigned long size = __end_ro_after_init - __start_ro_after_init;
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if (MACHINE_HAS_NX)
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system_ctl_set_bit(0, CR0_INSTRUCTION_EXEC_PROTECTION_BIT);
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__set_memory_ro(__start_ro_after_init, __end_ro_after_init);
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pr_info("Write protected read-only-after-init data: %luk\n", size >> 10);
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}
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@ -170,13 +172,6 @@ void __init mem_init(void)
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setup_zero_pages(); /* Setup zeroed pages. */
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}
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void free_initmem(void)
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{
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set_memory_rwnx((unsigned long)_sinittext,
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(unsigned long)(_einittext - _sinittext) >> PAGE_SHIFT);
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free_initmem_default(POISON_FREE_INITMEM);
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}
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unsigned long memory_block_size_bytes(void)
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{
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/*
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@ -661,7 +661,6 @@ void __init vmem_map_init(void)
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{
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__set_memory_rox(_stext, _etext);
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__set_memory_ro(_etext, __end_rodata);
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__set_memory_rox(_sinittext, _einittext);
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__set_memory_rox(__stext_amode31, __etext_amode31);
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/*
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* If the BEAR-enhancement facility is not installed the first
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@ -670,16 +669,8 @@ void __init vmem_map_init(void)
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*/
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if (!static_key_enabled(&cpu_has_bear))
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set_memory_x(0, 1);
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if (debug_pagealloc_enabled()) {
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/*
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* Use RELOC_HIDE() as long as __va(0) translates to NULL,
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* since performing pointer arithmetic on a NULL pointer
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* has undefined behavior and generates compiler warnings.
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*/
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__set_memory_4k(__va(0), RELOC_HIDE(__va(0), ident_map_size));
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}
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if (MACHINE_HAS_NX)
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system_ctl_set_bit(0, CR0_INSTRUCTION_EXEC_PROTECTION_BIT);
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if (debug_pagealloc_enabled())
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__set_memory_4k(__va(0), __va(0) + ident_map_size);
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pr_info("Write protected kernel read-only data: %luk\n",
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(unsigned long)(__end_rodata - _stext) >> 10);
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}
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|
@ -550,4 +550,5 @@ void ccwgroup_remove_ccwdev(struct ccw_device *cdev)
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put_device(&gdev->dev);
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}
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EXPORT_SYMBOL(ccwgroup_remove_ccwdev);
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MODULE_DESCRIPTION("ccwgroup bus driver");
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MODULE_LICENSE("GPL");
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|
@ -488,4 +488,5 @@ static void __exit vfio_ccw_sch_exit(void)
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module_init(vfio_ccw_sch_init);
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module_exit(vfio_ccw_sch_exit);
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MODULE_DESCRIPTION("VFIO based Subchannel device driver");
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MODULE_LICENSE("GPL v2");
|
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|
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