parisc: fixes and cleanups in page cache flushing (3/4)
flush_cache_mm, for the non current case also uses flush_dcache_page_asm and flush_icache_page_asm which are TMPALIAS flushes. For the non current case, the algorithm used by get_ptep is derived from the vmalloc_to_page implementation in vmalloc.c. It is essentially a generic page table lookup. The other alternative was to duplicate the lookup in entry.S. The break point for switching to a full cache flush is somewhat arbitrary. The same approach is used in flush_cache_range for non current case. In a GCC build and check, many small programs are executed and this change provided a significant performance enhancement, e.g. GCC build time was cut almost in half on a rp3440 at j4. Previously, we always flushed the entire cache. Signed-off-by: John David Anglin <dave.anglin@bell.net> Signed-off-by: Helge Deller <deller@gmx.de>
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@ -469,8 +469,66 @@ void flush_cache_all(void)
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on_each_cpu(cacheflush_h_tmp_function, NULL, 1);
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}
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static inline unsigned long mm_total_size(struct mm_struct *mm)
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{
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struct vm_area_struct *vma;
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unsigned long usize = 0;
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for (vma = mm->mmap; vma; vma = vma->vm_next)
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usize += vma->vm_end - vma->vm_start;
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return usize;
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}
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static inline pte_t *get_ptep(pgd_t *pgd, unsigned long addr)
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{
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pte_t *ptep = NULL;
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if (!pgd_none(*pgd)) {
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pud_t *pud = pud_offset(pgd, addr);
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if (!pud_none(*pud)) {
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pmd_t *pmd = pmd_offset(pud, addr);
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if (!pmd_none(*pmd))
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ptep = pte_offset_map(pmd, addr);
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}
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}
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return ptep;
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}
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void flush_cache_mm(struct mm_struct *mm)
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{
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/* Flushing the whole cache on each cpu takes forever on
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rp3440, etc. So, avoid it if the mm isn't too big. */
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if (mm_total_size(mm) < parisc_cache_flush_threshold) {
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struct vm_area_struct *vma;
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if (mm->context == mfsp(3)) {
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for (vma = mm->mmap; vma; vma = vma->vm_next) {
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flush_user_dcache_range_asm(vma->vm_start,
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vma->vm_end);
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if (vma->vm_flags & VM_EXEC)
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flush_user_icache_range_asm(
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vma->vm_start, vma->vm_end);
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}
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} else {
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pgd_t *pgd = mm->pgd;
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for (vma = mm->mmap; vma; vma = vma->vm_next) {
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unsigned long addr;
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for (addr = vma->vm_start; addr < vma->vm_end;
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addr += PAGE_SIZE) {
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pte_t *ptep = get_ptep(pgd, addr);
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if (ptep != NULL) {
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pte_t pte = *ptep;
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__flush_cache_page(vma, addr,
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page_to_phys(pte_page(pte)));
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}
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}
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}
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}
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return;
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}
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#ifdef CONFIG_SMP
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flush_cache_all();
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#else
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@ -496,20 +554,36 @@ flush_user_icache_range(unsigned long start, unsigned long end)
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flush_instruction_cache();
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}
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void flush_cache_range(struct vm_area_struct *vma,
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unsigned long start, unsigned long end)
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{
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int sr3;
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BUG_ON(!vma->vm_mm->context);
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sr3 = mfsp(3);
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if (vma->vm_mm->context == sr3) {
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flush_user_dcache_range(start,end);
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flush_user_icache_range(start,end);
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if ((end - start) < parisc_cache_flush_threshold) {
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if (vma->vm_mm->context == mfsp(3)) {
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flush_user_dcache_range_asm(start, end);
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if (vma->vm_flags & VM_EXEC)
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flush_user_icache_range_asm(start, end);
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} else {
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unsigned long addr;
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pgd_t *pgd = vma->vm_mm->pgd;
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for (addr = start & PAGE_MASK; addr < end;
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addr += PAGE_SIZE) {
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pte_t *ptep = get_ptep(pgd, addr);
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if (ptep != NULL) {
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pte_t pte = *ptep;
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flush_cache_page(vma,
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addr, pte_pfn(pte));
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}
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}
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}
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} else {
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#ifdef CONFIG_SMP
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flush_cache_all();
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#else
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flush_cache_all_local();
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#endif
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}
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}
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