519 lines
12 KiB
C
519 lines
12 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/*
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* A test of splitting PMD THPs and PTE-mapped THPs from a specified virtual
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* address range in a process via <debugfs>/split_huge_pages interface.
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*/
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#define _GNU_SOURCE
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdarg.h>
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#include <unistd.h>
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#include <inttypes.h>
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#include <string.h>
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#include <fcntl.h>
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#include <sys/mman.h>
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#include <sys/mount.h>
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#include <malloc.h>
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#include <stdbool.h>
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#include <time.h>
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#include "vm_util.h"
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#include "../kselftest.h"
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uint64_t pagesize;
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unsigned int pageshift;
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uint64_t pmd_pagesize;
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#define SPLIT_DEBUGFS "/sys/kernel/debug/split_huge_pages"
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#define SMAP_PATH "/proc/self/smaps"
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#define INPUT_MAX 80
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#define PID_FMT "%d,0x%lx,0x%lx,%d"
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#define PATH_FMT "%s,0x%lx,0x%lx,%d"
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#define PFN_MASK ((1UL<<55)-1)
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#define KPF_THP (1UL<<22)
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int is_backed_by_thp(char *vaddr, int pagemap_file, int kpageflags_file)
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{
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uint64_t paddr;
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uint64_t page_flags;
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if (pagemap_file) {
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pread(pagemap_file, &paddr, sizeof(paddr),
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((long)vaddr >> pageshift) * sizeof(paddr));
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if (kpageflags_file) {
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pread(kpageflags_file, &page_flags, sizeof(page_flags),
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(paddr & PFN_MASK) * sizeof(page_flags));
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return !!(page_flags & KPF_THP);
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}
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}
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return 0;
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}
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static void write_file(const char *path, const char *buf, size_t buflen)
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{
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int fd;
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ssize_t numwritten;
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fd = open(path, O_WRONLY);
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if (fd == -1)
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ksft_exit_fail_msg("%s open failed: %s\n", path, strerror(errno));
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numwritten = write(fd, buf, buflen - 1);
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close(fd);
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if (numwritten < 1)
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ksft_exit_fail_msg("Write failed\n");
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}
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static void write_debugfs(const char *fmt, ...)
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{
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char input[INPUT_MAX];
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int ret;
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va_list argp;
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va_start(argp, fmt);
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ret = vsnprintf(input, INPUT_MAX, fmt, argp);
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va_end(argp);
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if (ret >= INPUT_MAX)
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ksft_exit_fail_msg("%s: Debugfs input is too long\n", __func__);
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write_file(SPLIT_DEBUGFS, input, ret + 1);
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}
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static char *allocate_zero_filled_hugepage(size_t len)
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{
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char *result;
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size_t i;
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result = memalign(pmd_pagesize, len);
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if (!result) {
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printf("Fail to allocate memory\n");
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exit(EXIT_FAILURE);
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}
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madvise(result, len, MADV_HUGEPAGE);
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for (i = 0; i < len; i++)
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result[i] = (char)0;
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return result;
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}
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static void verify_rss_anon_split_huge_page_all_zeroes(char *one_page, int nr_hpages, size_t len)
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{
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unsigned long rss_anon_before, rss_anon_after;
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size_t i;
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if (!check_huge_anon(one_page, 4, pmd_pagesize)) {
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printf("No THP is allocated\n");
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exit(EXIT_FAILURE);
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}
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rss_anon_before = rss_anon();
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if (!rss_anon_before) {
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printf("No RssAnon is allocated before split\n");
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exit(EXIT_FAILURE);
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}
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/* split all THPs */
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write_debugfs(PID_FMT, getpid(), (uint64_t)one_page,
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(uint64_t)one_page + len, 0);
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for (i = 0; i < len; i++)
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if (one_page[i] != (char)0) {
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printf("%ld byte corrupted\n", i);
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exit(EXIT_FAILURE);
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}
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if (!check_huge_anon(one_page, 0, pmd_pagesize)) {
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printf("Still AnonHugePages not split\n");
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exit(EXIT_FAILURE);
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}
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rss_anon_after = rss_anon();
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if (rss_anon_after >= rss_anon_before) {
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printf("Incorrect RssAnon value. Before: %ld After: %ld\n",
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rss_anon_before, rss_anon_after);
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exit(EXIT_FAILURE);
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}
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}
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void split_pmd_zero_pages(void)
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{
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char *one_page;
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int nr_hpages = 4;
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size_t len = nr_hpages * pmd_pagesize;
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one_page = allocate_zero_filled_hugepage(len);
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verify_rss_anon_split_huge_page_all_zeroes(one_page, nr_hpages, len);
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printf("Split zero filled huge pages successful\n");
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free(one_page);
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}
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void split_pmd_thp(void)
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{
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char *one_page;
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size_t len = 4 * pmd_pagesize;
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size_t i;
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one_page = memalign(pmd_pagesize, len);
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if (!one_page)
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ksft_exit_fail_msg("Fail to allocate memory: %s\n", strerror(errno));
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madvise(one_page, len, MADV_HUGEPAGE);
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for (i = 0; i < len; i++)
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one_page[i] = (char)i;
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if (!check_huge_anon(one_page, 4, pmd_pagesize))
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ksft_exit_fail_msg("No THP is allocated\n");
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/* split all THPs */
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write_debugfs(PID_FMT, getpid(), (uint64_t)one_page,
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(uint64_t)one_page + len, 0);
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for (i = 0; i < len; i++)
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if (one_page[i] != (char)i)
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ksft_exit_fail_msg("%ld byte corrupted\n", i);
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if (!check_huge_anon(one_page, 0, pmd_pagesize))
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ksft_exit_fail_msg("Still AnonHugePages not split\n");
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ksft_test_result_pass("Split huge pages successful\n");
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free(one_page);
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}
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void split_pte_mapped_thp(void)
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{
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char *one_page, *pte_mapped, *pte_mapped2;
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size_t len = 4 * pmd_pagesize;
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uint64_t thp_size;
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size_t i;
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const char *pagemap_template = "/proc/%d/pagemap";
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const char *kpageflags_proc = "/proc/kpageflags";
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char pagemap_proc[255];
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int pagemap_fd;
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int kpageflags_fd;
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if (snprintf(pagemap_proc, 255, pagemap_template, getpid()) < 0)
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ksft_exit_fail_msg("get pagemap proc error: %s\n", strerror(errno));
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pagemap_fd = open(pagemap_proc, O_RDONLY);
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if (pagemap_fd == -1)
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ksft_exit_fail_msg("read pagemap: %s\n", strerror(errno));
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kpageflags_fd = open(kpageflags_proc, O_RDONLY);
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if (kpageflags_fd == -1)
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ksft_exit_fail_msg("read kpageflags: %s\n", strerror(errno));
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one_page = mmap((void *)(1UL << 30), len, PROT_READ | PROT_WRITE,
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MAP_ANONYMOUS | MAP_PRIVATE, -1, 0);
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if (one_page == MAP_FAILED)
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ksft_exit_fail_msg("Fail to allocate memory: %s\n", strerror(errno));
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madvise(one_page, len, MADV_HUGEPAGE);
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for (i = 0; i < len; i++)
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one_page[i] = (char)i;
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if (!check_huge_anon(one_page, 4, pmd_pagesize))
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ksft_exit_fail_msg("No THP is allocated\n");
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/* remap the first pagesize of first THP */
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pte_mapped = mremap(one_page, pagesize, pagesize, MREMAP_MAYMOVE);
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/* remap the Nth pagesize of Nth THP */
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for (i = 1; i < 4; i++) {
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pte_mapped2 = mremap(one_page + pmd_pagesize * i + pagesize * i,
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pagesize, pagesize,
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MREMAP_MAYMOVE|MREMAP_FIXED,
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pte_mapped + pagesize * i);
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if (pte_mapped2 == MAP_FAILED)
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ksft_exit_fail_msg("mremap failed: %s\n", strerror(errno));
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}
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/* smap does not show THPs after mremap, use kpageflags instead */
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thp_size = 0;
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for (i = 0; i < pagesize * 4; i++)
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if (i % pagesize == 0 &&
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is_backed_by_thp(&pte_mapped[i], pagemap_fd, kpageflags_fd))
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thp_size++;
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if (thp_size != 4)
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ksft_exit_fail_msg("Some THPs are missing during mremap\n");
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/* split all remapped THPs */
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write_debugfs(PID_FMT, getpid(), (uint64_t)pte_mapped,
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(uint64_t)pte_mapped + pagesize * 4, 0);
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/* smap does not show THPs after mremap, use kpageflags instead */
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thp_size = 0;
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for (i = 0; i < pagesize * 4; i++) {
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if (pte_mapped[i] != (char)i)
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ksft_exit_fail_msg("%ld byte corrupted\n", i);
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if (i % pagesize == 0 &&
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is_backed_by_thp(&pte_mapped[i], pagemap_fd, kpageflags_fd))
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thp_size++;
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}
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if (thp_size)
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ksft_exit_fail_msg("Still %ld THPs not split\n", thp_size);
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ksft_test_result_pass("Split PTE-mapped huge pages successful\n");
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munmap(one_page, len);
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close(pagemap_fd);
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close(kpageflags_fd);
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}
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void split_file_backed_thp(void)
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{
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int status;
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int fd;
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ssize_t num_written;
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char tmpfs_template[] = "/tmp/thp_split_XXXXXX";
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const char *tmpfs_loc = mkdtemp(tmpfs_template);
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char testfile[INPUT_MAX];
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uint64_t pgoff_start = 0, pgoff_end = 1024;
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ksft_print_msg("Please enable pr_debug in split_huge_pages_in_file() for more info.\n");
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status = mount("tmpfs", tmpfs_loc, "tmpfs", 0, "huge=always,size=4m");
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if (status)
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ksft_exit_fail_msg("Unable to create a tmpfs for testing\n");
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status = snprintf(testfile, INPUT_MAX, "%s/thp_file", tmpfs_loc);
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if (status >= INPUT_MAX) {
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ksft_exit_fail_msg("Fail to create file-backed THP split testing file\n");
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}
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fd = open(testfile, O_CREAT|O_WRONLY, 0664);
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if (fd == -1) {
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ksft_perror("Cannot open testing file");
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goto cleanup;
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}
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/* write something to the file, so a file-backed THP can be allocated */
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num_written = write(fd, tmpfs_loc, strlen(tmpfs_loc) + 1);
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close(fd);
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if (num_written < 1) {
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ksft_perror("Fail to write data to testing file");
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goto cleanup;
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}
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/* split the file-backed THP */
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write_debugfs(PATH_FMT, testfile, pgoff_start, pgoff_end, 0);
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status = unlink(testfile);
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if (status) {
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ksft_perror("Cannot remove testing file");
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goto cleanup;
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}
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status = umount(tmpfs_loc);
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if (status) {
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rmdir(tmpfs_loc);
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ksft_exit_fail_msg("Unable to umount %s\n", tmpfs_loc);
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}
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status = rmdir(tmpfs_loc);
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if (status)
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ksft_exit_fail_msg("cannot remove tmp dir: %s\n", strerror(errno));
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ksft_print_msg("Please check dmesg for more information\n");
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ksft_test_result_pass("File-backed THP split test done\n");
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return;
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cleanup:
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umount(tmpfs_loc);
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rmdir(tmpfs_loc);
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ksft_exit_fail_msg("Error occurred\n");
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}
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bool prepare_thp_fs(const char *xfs_path, char *thp_fs_template,
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const char **thp_fs_loc)
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{
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if (xfs_path) {
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*thp_fs_loc = xfs_path;
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return false;
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}
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*thp_fs_loc = mkdtemp(thp_fs_template);
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if (!*thp_fs_loc)
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ksft_exit_fail_msg("cannot create temp folder\n");
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return true;
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}
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void cleanup_thp_fs(const char *thp_fs_loc, bool created_tmp)
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{
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int status;
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if (!created_tmp)
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return;
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status = rmdir(thp_fs_loc);
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if (status)
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ksft_exit_fail_msg("cannot remove tmp dir: %s\n",
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strerror(errno));
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}
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int create_pagecache_thp_and_fd(const char *testfile, size_t fd_size, int *fd,
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char **addr)
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{
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size_t i;
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int dummy = 0;
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srand(time(NULL));
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*fd = open(testfile, O_CREAT | O_RDWR, 0664);
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if (*fd == -1)
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ksft_exit_fail_msg("Failed to create a file at %s\n", testfile);
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for (i = 0; i < fd_size; i++) {
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unsigned char byte = (unsigned char)i;
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write(*fd, &byte, sizeof(byte));
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}
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close(*fd);
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sync();
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*fd = open("/proc/sys/vm/drop_caches", O_WRONLY);
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if (*fd == -1) {
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ksft_perror("open drop_caches");
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goto err_out_unlink;
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}
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if (write(*fd, "3", 1) != 1) {
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ksft_perror("write to drop_caches");
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goto err_out_unlink;
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}
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close(*fd);
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*fd = open(testfile, O_RDWR);
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if (*fd == -1) {
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ksft_perror("Failed to open testfile\n");
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goto err_out_unlink;
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}
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*addr = mmap(NULL, fd_size, PROT_READ|PROT_WRITE, MAP_SHARED, *fd, 0);
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if (*addr == (char *)-1) {
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ksft_perror("cannot mmap");
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goto err_out_close;
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}
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madvise(*addr, fd_size, MADV_HUGEPAGE);
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for (size_t i = 0; i < fd_size; i++)
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dummy += *(*addr + i);
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asm volatile("" : "+r" (dummy));
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if (!check_huge_file(*addr, fd_size / pmd_pagesize, pmd_pagesize)) {
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ksft_print_msg("No large pagecache folio generated, please provide a filesystem supporting large folio\n");
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munmap(*addr, fd_size);
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close(*fd);
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unlink(testfile);
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ksft_test_result_skip("Pagecache folio split skipped\n");
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return -2;
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}
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return 0;
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err_out_close:
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close(*fd);
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err_out_unlink:
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unlink(testfile);
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ksft_exit_fail_msg("Failed to create large pagecache folios\n");
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return -1;
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}
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void split_thp_in_pagecache_to_order(size_t fd_size, int order, const char *fs_loc)
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{
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int fd;
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char *addr;
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size_t i;
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char testfile[INPUT_MAX];
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int err = 0;
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err = snprintf(testfile, INPUT_MAX, "%s/test", fs_loc);
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if (err < 0)
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ksft_exit_fail_msg("cannot generate right test file name\n");
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err = create_pagecache_thp_and_fd(testfile, fd_size, &fd, &addr);
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if (err)
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return;
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err = 0;
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write_debugfs(PID_FMT, getpid(), (uint64_t)addr, (uint64_t)addr + fd_size, order);
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for (i = 0; i < fd_size; i++)
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if (*(addr + i) != (char)i) {
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ksft_print_msg("%lu byte corrupted in the file\n", i);
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err = EXIT_FAILURE;
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goto out;
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}
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if (!check_huge_file(addr, 0, pmd_pagesize)) {
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ksft_print_msg("Still FilePmdMapped not split\n");
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err = EXIT_FAILURE;
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goto out;
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}
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out:
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munmap(addr, fd_size);
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close(fd);
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unlink(testfile);
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if (err)
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ksft_exit_fail_msg("Split PMD-mapped pagecache folio to order %d failed\n", order);
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ksft_test_result_pass("Split PMD-mapped pagecache folio to order %d passed\n", order);
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}
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int main(int argc, char **argv)
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{
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int i;
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size_t fd_size;
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char *optional_xfs_path = NULL;
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char fs_loc_template[] = "/tmp/thp_fs_XXXXXX";
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const char *fs_loc;
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bool created_tmp;
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ksft_print_header();
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if (geteuid() != 0) {
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ksft_print_msg("Please run the benchmark as root\n");
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ksft_finished();
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}
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if (argc > 1)
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optional_xfs_path = argv[1];
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ksft_set_plan(3+9);
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pagesize = getpagesize();
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pageshift = ffs(pagesize) - 1;
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pmd_pagesize = read_pmd_pagesize();
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if (!pmd_pagesize)
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ksft_exit_fail_msg("Reading PMD pagesize failed\n");
|
|
|
|
fd_size = 2 * pmd_pagesize;
|
|
|
|
split_pmd_zero_pages();
|
|
split_pmd_thp();
|
|
split_pte_mapped_thp();
|
|
split_file_backed_thp();
|
|
|
|
created_tmp = prepare_thp_fs(optional_xfs_path, fs_loc_template,
|
|
&fs_loc);
|
|
for (i = 8; i >= 0; i--)
|
|
split_thp_in_pagecache_to_order(fd_size, i, fs_loc);
|
|
cleanup_thp_fs(fs_loc, created_tmp);
|
|
|
|
ksft_finished();
|
|
|
|
return 0;
|
|
}
|