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172 lines
5.2 KiB
172 lines
5.2 KiB
/* |
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* Copyright(c) 2015 Intel Corporation. All rights reserved. |
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* |
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* This program is free software; you can redistribute it and/or modify |
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* it under the terms of version 2 of the GNU General Public License as |
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* published by the Free Software Foundation. |
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* |
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* This program is distributed in the hope that it will be useful, but |
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* WITHOUT ANY WARRANTY; without even the implied warranty of |
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
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* General Public License for more details. |
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*/ |
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#ifndef __ASM_X86_PMEM_H__ |
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#define __ASM_X86_PMEM_H__ |
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#include <linux/uaccess.h> |
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#include <asm/cacheflush.h> |
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#include <asm/cpufeature.h> |
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#include <asm/special_insns.h> |
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#ifdef CONFIG_ARCH_HAS_PMEM_API |
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/** |
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* arch_memcpy_to_pmem - copy data to persistent memory |
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* @dst: destination buffer for the copy |
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* @src: source buffer for the copy |
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* @n: length of the copy in bytes |
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* |
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* Copy data to persistent memory media via non-temporal stores so that |
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* a subsequent arch_wmb_pmem() can flush cpu and memory controller |
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* write buffers to guarantee durability. |
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*/ |
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static inline void arch_memcpy_to_pmem(void __pmem *dst, const void *src, |
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size_t n) |
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{ |
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int unwritten; |
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/* |
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* We are copying between two kernel buffers, if |
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* __copy_from_user_inatomic_nocache() returns an error (page |
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* fault) we would have already reported a general protection fault |
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* before the WARN+BUG. |
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*/ |
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unwritten = __copy_from_user_inatomic_nocache((void __force *) dst, |
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(void __user *) src, n); |
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if (WARN(unwritten, "%s: fault copying %p <- %p unwritten: %d\n", |
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__func__, dst, src, unwritten)) |
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BUG(); |
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} |
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/** |
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* arch_wmb_pmem - synchronize writes to persistent memory |
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* |
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* After a series of arch_memcpy_to_pmem() operations this drains data |
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* from cpu write buffers and any platform (memory controller) buffers |
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* to ensure that written data is durable on persistent memory media. |
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*/ |
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static inline void arch_wmb_pmem(void) |
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{ |
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/* |
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* wmb() to 'sfence' all previous writes such that they are |
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* architecturally visible to 'pcommit'. Note, that we've |
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* already arranged for pmem writes to avoid the cache via |
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* arch_memcpy_to_pmem(). |
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*/ |
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wmb(); |
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pcommit_sfence(); |
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} |
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/** |
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* __arch_wb_cache_pmem - write back a cache range with CLWB |
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* @vaddr: virtual start address |
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* @size: number of bytes to write back |
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* |
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* Write back a cache range using the CLWB (cache line write back) |
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* instruction. Note that @size is internally rounded up to be cache |
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* line size aligned. |
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*/ |
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static inline void __arch_wb_cache_pmem(void *vaddr, size_t size) |
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{ |
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u16 x86_clflush_size = boot_cpu_data.x86_clflush_size; |
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unsigned long clflush_mask = x86_clflush_size - 1; |
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void *vend = vaddr + size; |
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void *p; |
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for (p = (void *)((unsigned long)vaddr & ~clflush_mask); |
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p < vend; p += x86_clflush_size) |
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clwb(p); |
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} |
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/** |
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* arch_copy_from_iter_pmem - copy data from an iterator to PMEM |
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* @addr: PMEM destination address |
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* @bytes: number of bytes to copy |
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* @i: iterator with source data |
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* |
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* Copy data from the iterator 'i' to the PMEM buffer starting at 'addr'. |
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* This function requires explicit ordering with an arch_wmb_pmem() call. |
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*/ |
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static inline size_t arch_copy_from_iter_pmem(void __pmem *addr, size_t bytes, |
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struct iov_iter *i) |
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{ |
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void *vaddr = (void __force *)addr; |
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size_t len; |
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/* TODO: skip the write-back by always using non-temporal stores */ |
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len = copy_from_iter_nocache(vaddr, bytes, i); |
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/* |
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* In the iovec case on x86_64 copy_from_iter_nocache() uses |
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* non-temporal stores for the bulk of the transfer, but we need |
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* to manually flush if the transfer is unaligned. A cached |
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* memory copy is used when destination or size is not naturally |
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* aligned. That is: |
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* - Require 8-byte alignment when size is 8 bytes or larger. |
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* - Require 4-byte alignment when size is 4 bytes. |
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* |
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* In the non-iovec case the entire destination needs to be |
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* flushed. |
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*/ |
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if (iter_is_iovec(i)) { |
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unsigned long flushed, dest = (unsigned long) addr; |
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if (bytes < 8) { |
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if (!IS_ALIGNED(dest, 4) || (bytes != 4)) |
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__arch_wb_cache_pmem(addr, bytes); |
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} else { |
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if (!IS_ALIGNED(dest, 8)) { |
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dest = ALIGN(dest, boot_cpu_data.x86_clflush_size); |
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__arch_wb_cache_pmem(addr, 1); |
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} |
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flushed = dest - (unsigned long) addr; |
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if (bytes > flushed && !IS_ALIGNED(bytes - flushed, 8)) |
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__arch_wb_cache_pmem(addr + bytes - 1, 1); |
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} |
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} else |
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__arch_wb_cache_pmem(addr, bytes); |
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return len; |
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} |
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/** |
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* arch_clear_pmem - zero a PMEM memory range |
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* @addr: virtual start address |
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* @size: number of bytes to zero |
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* |
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* Write zeros into the memory range starting at 'addr' for 'size' bytes. |
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* This function requires explicit ordering with an arch_wmb_pmem() call. |
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*/ |
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static inline void arch_clear_pmem(void __pmem *addr, size_t size) |
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{ |
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void *vaddr = (void __force *)addr; |
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/* TODO: implement the zeroing via non-temporal writes */ |
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if (size == PAGE_SIZE && ((unsigned long)vaddr & ~PAGE_MASK) == 0) |
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clear_page(vaddr); |
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else |
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memset(vaddr, 0, size); |
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__arch_wb_cache_pmem(vaddr, size); |
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} |
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static inline bool __arch_has_wmb_pmem(void) |
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{ |
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/* |
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* We require that wmb() be an 'sfence', that is only guaranteed on |
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* 64-bit builds |
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*/ |
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return static_cpu_has(X86_FEATURE_PCOMMIT); |
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} |
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#endif /* CONFIG_ARCH_HAS_PMEM_API */ |
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#endif /* __ASM_X86_PMEM_H__ */
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