x86/boot/e820: Rename the e820_table_firmware to e820_table_kexec
Currently the e820_table_firmware[] table is mainly used by the kexec, and it is not what it's supposed to be - despite its name it might be modified by the kernel. So change its name to e820_table_kexec[]. In the next patch we will introduce the real e820_table_firmware[] table. No functional change. Signed-off-by: Chen Yu <yu.c.chen@intel.com> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Thomas Gleixner <tglx@linutronix.de> Cc: Xunlei Pang <xlpang@redhat.com> Cc: linux-kernel@vger.kernel.org Signed-off-by: Ingo Molnar <mingo@kernel.org>
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@ -4,7 +4,7 @@
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#include <asm/e820/types.h>
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extern struct e820_table *e820_table;
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extern struct e820_table *e820_table_firmware;
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extern struct e820_table *e820_table_kexec;
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extern unsigned long pci_mem_start;
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@ -22,7 +22,7 @@
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/*
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* We organize the E820 table into two main data structures:
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*
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* - 'e820_table_firmware': the original firmware version passed to us by the
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* - 'e820_table_kexec': the original firmware version passed to us by the
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* bootloader - not modified by the kernel. We use this to:
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*
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* - inform the user about the firmware's notion of memory layout
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@ -46,10 +46,10 @@
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* specific memory layout data during early bootup.
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*/
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static struct e820_table e820_table_init __initdata;
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static struct e820_table e820_table_firmware_init __initdata;
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static struct e820_table e820_table_kexec_init __initdata;
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struct e820_table *e820_table __refdata = &e820_table_init;
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struct e820_table *e820_table_firmware __refdata = &e820_table_firmware_init;
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struct e820_table *e820_table_kexec __refdata = &e820_table_kexec_init;
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/* For PCI or other memory-mapped resources */
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unsigned long pci_mem_start = 0xaeedbabe;
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@ -470,9 +470,9 @@ u64 __init e820__range_update(u64 start, u64 size, enum e820_type old_type, enum
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return __e820__range_update(e820_table, start, size, old_type, new_type);
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}
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static u64 __init e820__range_update_firmware(u64 start, u64 size, enum e820_type old_type, enum e820_type new_type)
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static u64 __init e820__range_update_kexec(u64 start, u64 size, enum e820_type old_type, enum e820_type new_type)
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{
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return __e820__range_update(e820_table_firmware, start, size, old_type, new_type);
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return __e820__range_update(e820_table_kexec, start, size, old_type, new_type);
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}
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/* Remove a range of memory from the E820 table: */
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@ -546,9 +546,9 @@ void __init e820__update_table_print(void)
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e820__print_table("modified");
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}
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static void __init e820__update_table_firmware(void)
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static void __init e820__update_table_kexec(void)
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{
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e820__update_table(e820_table_firmware);
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e820__update_table(e820_table_kexec);
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}
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#define MAX_GAP_END 0x100000000ull
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@ -623,7 +623,7 @@ __init void e820__setup_pci_gap(void)
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/*
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* Called late during init, in free_initmem().
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*
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* Initial e820_table and e820_table_firmware are largish __initdata arrays.
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* Initial e820_table and e820_table_kexec are largish __initdata arrays.
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*
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* Copy them to a (usually much smaller) dynamically allocated area that is
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* sized precisely after the number of e820 entries.
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@ -643,11 +643,11 @@ __init void e820__reallocate_tables(void)
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memcpy(n, e820_table, size);
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e820_table = n;
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size = offsetof(struct e820_table, entries) + sizeof(struct e820_entry)*e820_table_firmware->nr_entries;
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size = offsetof(struct e820_table, entries) + sizeof(struct e820_entry)*e820_table_kexec->nr_entries;
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n = kmalloc(size, GFP_KERNEL);
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BUG_ON(!n);
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memcpy(n, e820_table_firmware, size);
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e820_table_firmware = n;
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memcpy(n, e820_table_kexec, size);
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e820_table_kexec = n;
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}
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/*
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@ -669,7 +669,7 @@ void __init e820__memory_setup_extended(u64 phys_addr, u32 data_len)
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__append_e820_table(extmap, entries);
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e820__update_table(e820_table);
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memcpy(e820_table_firmware, e820_table, sizeof(*e820_table_firmware));
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memcpy(e820_table_kexec, e820_table, sizeof(*e820_table_kexec));
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early_memunmap(sdata, data_len);
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pr_info("e820: extended physical RAM map:\n");
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@ -729,7 +729,7 @@ core_initcall(e820__register_nvs_regions);
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/*
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* Allocate the requested number of bytes with the requsted alignment
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* and return (the physical address) to the caller. Also register this
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* range in the 'firmware' E820 table as a reserved range.
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* range in the 'kexec' E820 table as a reserved range.
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*
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* This allows kexec to fake a new mptable, as if it came from the real
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* system.
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@ -740,9 +740,9 @@ u64 __init e820__memblock_alloc_reserved(u64 size, u64 align)
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addr = __memblock_alloc_base(size, align, MEMBLOCK_ALLOC_ACCESSIBLE);
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if (addr) {
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e820__range_update_firmware(addr, size, E820_TYPE_RAM, E820_TYPE_RESERVED);
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pr_info("e820: update e820_table_firmware for e820__memblock_alloc_reserved()\n");
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e820__update_table_firmware();
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e820__range_update_kexec(addr, size, E820_TYPE_RAM, E820_TYPE_RESERVED);
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pr_info("e820: update e820_table_kexec for e820__memblock_alloc_reserved()\n");
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e820__update_table_kexec();
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}
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return addr;
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@ -925,13 +925,13 @@ void __init e820__reserve_setup_data(void)
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while (pa_data) {
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data = early_memremap(pa_data, sizeof(*data));
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e820__range_update(pa_data, sizeof(*data)+data->len, E820_TYPE_RAM, E820_TYPE_RESERVED_KERN);
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e820__range_update_firmware(pa_data, sizeof(*data)+data->len, E820_TYPE_RAM, E820_TYPE_RESERVED_KERN);
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e820__range_update_kexec(pa_data, sizeof(*data)+data->len, E820_TYPE_RAM, E820_TYPE_RESERVED_KERN);
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pa_data = data->next;
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early_memunmap(data, sizeof(*data));
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}
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e820__update_table(e820_table);
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e820__update_table(e820_table_firmware);
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e820__update_table(e820_table_kexec);
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pr_info("extended physical RAM map:\n");
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e820__print_table("reserve setup_data");
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@ -1064,8 +1064,8 @@ void __init e820__reserve_resources(void)
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res++;
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}
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for (i = 0; i < e820_table_firmware->nr_entries; i++) {
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struct e820_entry *entry = e820_table_firmware->entries + i;
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for (i = 0; i < e820_table_kexec->nr_entries; i++) {
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struct e820_entry *entry = e820_table_kexec->entries + i;
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firmware_map_add_early(entry->addr, entry->addr + entry->size, e820_type_to_string(entry));
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}
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@ -1177,7 +1177,7 @@ void __init e820__memory_setup(void)
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who = x86_init.resources.memory_setup();
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memcpy(e820_table_firmware, e820_table, sizeof(*e820_table_firmware));
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memcpy(e820_table_kexec, e820_table, sizeof(*e820_table_kexec));
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pr_info("e820: BIOS-provided physical RAM map:\n");
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e820__print_table(who);
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@ -100,14 +100,14 @@ static int setup_e820_entries(struct boot_params *params)
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{
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unsigned int nr_e820_entries;
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nr_e820_entries = e820_table_firmware->nr_entries;
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nr_e820_entries = e820_table_kexec->nr_entries;
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/* TODO: Pass entries more than E820_MAX_ENTRIES_ZEROPAGE in bootparams setup data */
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if (nr_e820_entries > E820_MAX_ENTRIES_ZEROPAGE)
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nr_e820_entries = E820_MAX_ENTRIES_ZEROPAGE;
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params->e820_entries = nr_e820_entries;
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memcpy(¶ms->e820_table, &e820_table_firmware->entries, nr_e820_entries*sizeof(struct e820_entry));
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memcpy(¶ms->e820_table, &e820_table_kexec->entries, nr_e820_entries*sizeof(struct e820_entry));
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return 0;
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}
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@ -251,7 +251,7 @@ static int get_e820_md5(struct e820_table *table, void *buf)
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static void hibernation_e820_save(void *buf)
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{
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get_e820_md5(e820_table_firmware, buf);
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get_e820_md5(e820_table_kexec, buf);
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}
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static bool hibernation_e820_mismatch(void *buf)
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@ -264,7 +264,7 @@ static bool hibernation_e820_mismatch(void *buf)
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if (!memcmp(result, buf, MD5_DIGEST_SIZE))
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return false;
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ret = get_e820_md5(e820_table_firmware, result);
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ret = get_e820_md5(e820_table_kexec, result);
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if (ret)
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return true;
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