]> git.ipfire.org Git - thirdparty/mdadm.git/blobdiff - raid6check.c
tests/10ddf-create: omit log output check
[thirdparty/mdadm.git] / raid6check.c
index 97e3f1c8e482230e95f4673f8405f836b6b6c67b..e9a17a7caa037bb60a53594bb3a7aee81bd9cc7e 100644 (file)
 
 #include "mdadm.h"
 #include <stdint.h>
+#include <signal.h>
+#include <sys/mman.h>
 
 int geo_map(int block, unsigned long long stripe, int raid_disks,
            int level, int layout);
 void qsyndrome(uint8_t *p, uint8_t *q, uint8_t **sources, int disks, int size);
 void make_tables(void);
+void ensure_zero_has_size(int chunk_size);
+void raid6_datap_recov(int disks, size_t bytes, int faila, uint8_t **ptrs);
+void raid6_2data_recov(int disks, size_t bytes, int faila, int failb,
+                      uint8_t **ptrs);
+void xor_blocks(char *target, char **sources, int disks, int size);
+
 
 /* Collect per stripe consistency information */
 void raid6_collect(int chunk_size, uint8_t *p, uint8_t *q,
@@ -99,21 +107,57 @@ int raid6_stats(int *results, int raid_disks, int chunk_size)
        return curr_broken_disk;
 }
 
-int check_stripes(int *source, unsigned long long *offsets,
+int lock_stripe(struct mdinfo *info, unsigned long long start,
+               int chunk_size, int data_disks, sighandler_t *sig) {
+       int rv;
+       if(mlockall(MCL_CURRENT | MCL_FUTURE) != 0) {
+               return 2;
+       }
+
+       sig[0] = signal(SIGTERM, SIG_IGN);
+       sig[1] = signal(SIGINT, SIG_IGN);
+       sig[2] = signal(SIGQUIT, SIG_IGN);
+
+       rv = sysfs_set_num(info, NULL, "suspend_lo", start * chunk_size * data_disks);
+       rv |= sysfs_set_num(info, NULL, "suspend_hi", (start + 1) * chunk_size * data_disks);
+       return rv * 256;
+}
+
+int unlock_all_stripes(struct mdinfo *info, sighandler_t *sig) {
+       int rv;
+       rv = sysfs_set_num(info, NULL, "suspend_lo", 0x7FFFFFFFFFFFFFFFULL);
+       rv |= sysfs_set_num(info, NULL, "suspend_hi", 0);
+       rv |= sysfs_set_num(info, NULL, "suspend_lo", 0);
+
+       signal(SIGQUIT, sig[2]);
+       signal(SIGINT, sig[1]);
+       signal(SIGTERM, sig[0]);
+
+       if(munlockall() != 0)
+               return 3;
+       return rv * 256;
+}
+
+
+int check_stripes(struct mdinfo *info, int *source, unsigned long long *offsets,
                  int raid_disks, int chunk_size, int level, int layout,
-                 unsigned long long start, unsigned long long length, char *name[])
+                 unsigned long long start, unsigned long long length, char *name[],
+                 int repair, int failed_disk1, int failed_disk2)
 {
        /* read the data and p and q blocks, and check we got them right */
-       char *stripe_buf = malloc(raid_disks * chunk_size);
-       char **stripes = malloc(raid_disks * sizeof(char*));
-       char **blocks = malloc(raid_disks * sizeof(char*));
-       uint8_t *p = malloc(chunk_size);
-       uint8_t *q = malloc(chunk_size);
-       int *results = malloc(chunk_size * sizeof(int));
+       char *stripe_buf = xmalloc(raid_disks * chunk_size);
+       char **stripes = xmalloc(raid_disks * sizeof(char*));
+       char **blocks = xmalloc(raid_disks * sizeof(char*));
+       int *block_index_for_slot = xmalloc(raid_disks * sizeof(int));
+       uint8_t *p = xmalloc(chunk_size);
+       uint8_t *q = xmalloc(chunk_size);
+       int *results = xmalloc(chunk_size * sizeof(int));
+       sighandler_t *sig = xmalloc(3 * sizeof(sighandler_t));
 
        int i;
        int diskP, diskQ;
        int data_disks = raid_disks - 2;
+       int err = 0;
 
        extern int tables_ready;
 
@@ -126,49 +170,158 @@ int check_stripes(int *source, unsigned long long *offsets,
        while (length > 0) {
                int disk;
 
+               printf("pos --> %llu\n", start);
+
+               err = lock_stripe(info, start, chunk_size, data_disks, sig);
+               if(err != 0) {
+                       if (err != 2)
+                               unlock_all_stripes(info, sig);
+                       goto exitCheck;
+               }
                for (i = 0 ; i < raid_disks ; i++) {
-                       lseek64(source[i], offsets[i]+start, 0);
+                       lseek64(source[i], offsets[i] + start * chunk_size, 0);
                        read(source[i], stripes[i], chunk_size);
                }
+               err = unlock_all_stripes(info, sig);
+               if(err != 0)
+                       goto exitCheck;
+
                for (i = 0 ; i < data_disks ; i++) {
-                       int disk = geo_map(i, start/chunk_size, raid_disks,
-                                          level, layout);
+                       int disk = geo_map(i, start, raid_disks, level, layout);
                        blocks[i] = stripes[disk];
+                       block_index_for_slot[disk] = i;
                        printf("%d->%d\n", i, disk);
                }
 
                qsyndrome(p, q, (uint8_t**)blocks, data_disks, chunk_size);
-               diskP = geo_map(-1, start/chunk_size, raid_disks,
-                               level, layout);
+               diskP = geo_map(-1, start, raid_disks, level, layout);
+               diskQ = geo_map(-2, start, raid_disks, level, layout);
+               blocks[data_disks] = stripes[diskP];
+               block_index_for_slot[diskP] = data_disks;
+               blocks[data_disks+1] = stripes[diskQ];
+               block_index_for_slot[diskQ] = data_disks+1;
+
                if (memcmp(p, stripes[diskP], chunk_size) != 0) {
-                       printf("P(%d) wrong at %llu\n", diskP,
-                              start / chunk_size);
+                       printf("P(%d) wrong at %llu\n", diskP, start);
                }
-               diskQ = geo_map(-2, start/chunk_size, raid_disks,
-                               level, layout);
                if (memcmp(q, stripes[diskQ], chunk_size) != 0) {
-                       printf("Q(%d) wrong at %llu\n", diskQ,
-                              start / chunk_size);
+                       printf("Q(%d) wrong at %llu\n", diskQ, start);
                }
-               raid6_collect(chunk_size, p, q,
-                             stripes[diskP], stripes[diskQ], results);
+               raid6_collect(chunk_size, p, q, stripes[diskP], stripes[diskQ], results);
                disk = raid6_stats(results, raid_disks, chunk_size);
 
                if(disk >= -2) {
-                       disk = geo_map(disk, start/chunk_size, raid_disks,
-                                      level, layout);
+                       disk = geo_map(disk, start, raid_disks, level, layout);
                }
                if(disk >= 0) {
-                       printf("Possible failed disk: %d --> %s\n", disk, name[disk]);
+                       printf("Error detected at %llu: possible failed disk slot: %d --> %s\n",
+                               start, disk, name[disk]);
                }
                if(disk == -65535) {
-                       printf("Failure detected, but disk unknown\n");
+                       printf("Error detected at %llu: disk slot unknown\n", start);
                }
+               if(repair == 1) {
+                       printf("Repairing stripe %llu\n", start);
+                       printf("Assuming slots %d (%s) and %d (%s) are incorrect\n",
+                              failed_disk1, name[failed_disk1],
+                              failed_disk2, name[failed_disk2]);
+
+                       if (failed_disk1 == diskQ || failed_disk2 == diskQ) {
+                               char *all_but_failed_blocks[data_disks];
+                               int failed_data_or_p;
+                               int failed_block_index;
+
+                               if (failed_disk1 == diskQ)
+                                       failed_data_or_p = failed_disk2;
+                               else
+                                       failed_data_or_p = failed_disk1;
+                               printf("Repairing D/P(%d) and Q\n", failed_data_or_p);
+                               failed_block_index = block_index_for_slot[failed_data_or_p];
+                               for (i=0; i < data_disks; i++)
+                                       if (failed_block_index == i)
+                                               all_but_failed_blocks[i] = stripes[diskP];
+                                       else
+                                               all_but_failed_blocks[i] = blocks[i];
+                               xor_blocks(stripes[failed_data_or_p],
+                                       all_but_failed_blocks, data_disks, chunk_size);
+                               qsyndrome(p, (uint8_t*)stripes[diskQ], (uint8_t**)blocks, data_disks, chunk_size);
+                       } else {
+                               ensure_zero_has_size(chunk_size);
+                               if (failed_disk1 == diskP || failed_disk2 == diskP) {
+                                       int failed_data, failed_block_index;
+                                       if (failed_disk1 == diskP)
+                                               failed_data = failed_disk2;
+                                       else
+                                               failed_data = failed_disk1;
+                                       failed_block_index = block_index_for_slot[failed_data];
+                                       printf("Repairing D(%d) and P\n", failed_data);
+                                       raid6_datap_recov(raid_disks, chunk_size, failed_block_index, (uint8_t**)blocks);
+                               } else {
+                                       printf("Repairing D and D\n");
+                                       int failed_block_index1 = block_index_for_slot[failed_disk1];
+                                       int failed_block_index2 = block_index_for_slot[failed_disk2];
+                                       if (failed_block_index1 > failed_block_index2) {
+                                               int t = failed_block_index1;
+                                               failed_block_index1 = failed_block_index2;
+                                               failed_block_index2 = t;
+                                       }
+                                       raid6_2data_recov(raid_disks, chunk_size, failed_block_index1, failed_block_index2, (uint8_t**)blocks);
+                               }
+                       }
+
+                       err = lock_stripe(info, start, chunk_size, data_disks, sig);
+                       if(err != 0) {
+                               if (err != 2)
+                                       unlock_all_stripes(info, sig);
+                               goto exitCheck;
+                       }
+
+                       lseek64(source[failed_disk1], offsets[failed_disk1] + start * chunk_size, 0);
+                       write(source[failed_disk1], stripes[failed_disk1], chunk_size);
+                       lseek64(source[failed_disk2], offsets[failed_disk2] + start * chunk_size, 0);
+                       write(source[failed_disk2], stripes[failed_disk2], chunk_size);
+
+                       err = unlock_all_stripes(info, sig);
+                       if(err != 0)
+                               goto exitCheck;
+               } else if (disk >= 0 && repair == 2) {
+                       printf("Auto-repairing slot %d (%s)\n", disk, name[disk]);
+                       if (disk == diskQ) {
+                               qsyndrome(p, (uint8_t*)stripes[diskQ], (uint8_t**)blocks, data_disks, chunk_size);
+                       } else {
+                               char *all_but_failed_blocks[data_disks];
+                               int failed_block_index = block_index_for_slot[disk];
+                               for (i=0; i < data_disks; i++)
+                                       if (failed_block_index == i)
+                                               all_but_failed_blocks[i] = stripes[diskP];
+                                       else
+                                               all_but_failed_blocks[i] = blocks[i];
+                               xor_blocks(stripes[disk],
+                                       all_but_failed_blocks, data_disks, chunk_size);
+                       }
+
+                       err = lock_stripe(info, start, chunk_size, data_disks, sig);
+                       if(err != 0) {
+                               if (err != 2)
+                                       unlock_all_stripes(info, sig);
+                               goto exitCheck;
+                       }
+
+                       lseek64(source[disk], offsets[disk] + start * chunk_size, 0);
+                       write(source[disk], stripes[disk], chunk_size);
+
+                       err = unlock_all_stripes(info, sig);
+                       if(err != 0)
+                               goto exitCheck;
+               }
+
 
-               length -= chunk_size;
-               start += chunk_size;
+               length--;
+               start++;
        }
 
+exitCheck:
+
        free(stripe_buf);
        free(stripes);
        free(blocks);
@@ -176,7 +329,7 @@ int check_stripes(int *source, unsigned long long *offsets,
        free(q);
        free(results);
 
-       return 0;
+       return err;
 }
 
 unsigned long long getnum(char *str, char **err)
@@ -192,71 +345,199 @@ unsigned long long getnum(char *str, char **err)
 
 int main(int argc, char *argv[])
 {
-       /* raid_disks chunk_size layout start length devices...
-        */
-       int *fds;
-       char *buf;
-       unsigned long long *offsets;
-       int raid_disks, chunk_size, layout;
+       /* md_device start length */
+       int *fds = NULL;
+       char *buf = NULL;
+       char **disk_name = NULL;
+       unsigned long long *offsets = NULL;
+       int raid_disks = 0;
+       int active_disks;
+       int chunk_size = 0;
+       int layout = -1;
        int level = 6;
+       int repair = 0;
+       int failed_disk1, failed_disk2;
        unsigned long long start, length;
        int i;
-
+       int mdfd;
+       struct mdinfo *info = NULL, *comp = NULL;
        char *err = NULL;
-       if (argc < 8) {
-               fprintf(stderr, "Usage: raid6check raid_disks"
-                       " chunk_size layout start length devices...\n");
-               exit(1);
+       int exit_err = 0;
+       int close_flag = 0;
+       char *prg = strrchr(argv[0], '/');
+
+       if (prg == NULL)
+               prg = argv[0];
+       else
+               prg++;
+
+       if (argc < 4) {
+               fprintf(stderr, "Usage: %s md_device start_stripe length_stripes [autorepair]\n", prg);
+               fprintf(stderr, "   or: %s md_device repair stripe failed_slot_1 failed_slot_2\n", prg);
+               exit_err = 1;
+               goto exitHere;
        }
 
-       raid_disks = getnum(argv[1], &err);
-       chunk_size = getnum(argv[2], &err);
-       layout = getnum(argv[3], &err);
-       start = getnum(argv[4], &err);
-       length = getnum(argv[5], &err);
-       if (err) {
-               fprintf(stderr, "test_stripe: Bad number: %s\n", err);
-               exit(2);
+       mdfd = open(argv[1], O_RDONLY);
+       if(mdfd < 0) {
+               perror(argv[1]);
+               fprintf(stderr, "%s: cannot open %s\n", prg, argv[1]);
+               exit_err = 2;
+               goto exitHere;
        }
-       if (argc != raid_disks + 6) {
-               fprintf(stderr, "test_stripe: wrong number of devices: want %d found %d\n",
-                       raid_disks, argc-6);
-               exit(2);
+
+       info = sysfs_read(mdfd, -1,
+                         GET_LEVEL|
+                         GET_LAYOUT|
+                         GET_DISKS|
+                         GET_DEGRADED |
+                         GET_COMPONENT|
+                         GET_CHUNK|
+                         GET_DEVS|
+                         GET_OFFSET|
+                         GET_SIZE);
+
+       if(info == NULL) {
+               fprintf(stderr, "%s: Error reading sysfs information of %s\n", prg, argv[1]);
+               exit_err = 9;
+               goto exitHere;
        }
-       fds = malloc(raid_disks * sizeof(*fds));
-       offsets = malloc(raid_disks * sizeof(*offsets));
-       memset(offsets, 0, raid_disks * sizeof(*offsets));
 
-       for (i=0; i<raid_disks; i++) {
-               char *p;
-               p = strchr(argv[6+i], ':');
+       if(info->array.level != level) {
+               fprintf(stderr, "%s: %s not a RAID-6\n", prg, argv[1]);
+               exit_err = 3;
+               goto exitHere;
+       }
+
+       if(info->array.failed_disks > 0) {
+               fprintf(stderr, "%s: %s degraded array\n", prg, argv[1]);
+               exit_err = 8;
+               goto exitHere;
+       }
 
-               if(p != NULL) {
-                       *p++ = '\0';
-                       offsets[i] = atoll(p) * 512;
+       printf("layout: %d\n", info->array.layout);
+       printf("disks: %d\n", info->array.raid_disks);
+       printf("component size: %llu\n", info->component_size * 512);
+       printf("total stripes: %llu\n", (info->component_size * 512) / info->array.chunk_size);
+       printf("chunk size: %d\n", info->array.chunk_size);
+       printf("\n");
+
+       comp = info->devs;
+       for(i = 0, active_disks = 0; active_disks < info->array.raid_disks; i++) {
+               printf("disk: %d - offset: %llu - size: %llu - name: %s - slot: %d\n",
+                       i, comp->data_offset * 512, comp->component_size * 512,
+                       map_dev(comp->disk.major, comp->disk.minor, 0),
+                       comp->disk.raid_disk);
+               if(comp->disk.raid_disk >= 0)
+                       active_disks++;
+               comp = comp->next;
+       }
+       printf("\n");
+
+       close(mdfd);
+
+       raid_disks = info->array.raid_disks;
+       chunk_size = info->array.chunk_size;
+       layout = info->array.layout;
+       if (strcmp(argv[2], "repair")==0) {
+               if (argc < 6) {
+                       fprintf(stderr, "For repair mode, call %s md_device repair stripe failed_slot_1 failed_slot_2\n", prg);
+                       exit_err = 1;
+                       goto exitHere;
+               }
+               repair = 1;
+               start = getnum(argv[3], &err);
+               length = 1;
+               failed_disk1 = getnum(argv[4], &err);
+               failed_disk2 = getnum(argv[5], &err);
+
+               if(failed_disk1 >= info->array.raid_disks) {
+                       fprintf(stderr, "%s: failed_slot_1 index is higher than number of devices in raid\n", prg);
+                       exit_err = 4;
+                       goto exitHere;
+               }
+               if(failed_disk2 >= info->array.raid_disks) {
+                       fprintf(stderr, "%s: failed_slot_2 index is higher than number of devices in raid\n", prg);
+                       exit_err = 4;
+                       goto exitHere;
                }
-               fds[i] = open(argv[6+i], O_RDWR);
-               if (fds[i] < 0) {
-                       perror(argv[6+i]);
-                       fprintf(stderr,"test_stripe: cannot open %s.\n", argv[6+i]);
-                       exit(3);
+               if(failed_disk1 == failed_disk2) {
+                       fprintf(stderr, "%s: failed_slot_1 and failed_slot_2 are the same\n", prg);
+                       exit_err = 4;
+                       goto exitHere;
                }
        }
+       else {
+               start = getnum(argv[2], &err);
+               length = getnum(argv[3], &err);
+               if (argc >= 5 && strcmp(argv[4], "autorepair")==0)
+                       repair = 2;
+       }
 
-       buf = malloc(raid_disks * chunk_size);
+       if (err) {
+               fprintf(stderr, "%s: Bad number: %s\n", prg, err);
+               exit_err = 4;
+               goto exitHere;
+       }
 
-       int rv = check_stripes(fds, offsets,
+       if(start > ((info->component_size * 512) / chunk_size)) {
+               start = (info->component_size * 512) / chunk_size;
+               fprintf(stderr, "%s: start beyond disks size\n", prg);
+       }
+
+       if((length == 0) ||
+          ((length + start) > ((info->component_size * 512) / chunk_size))) {
+               length = (info->component_size * 512) / chunk_size - start;
+       }
+
+       disk_name = xmalloc(raid_disks * sizeof(*disk_name));
+       fds = xmalloc(raid_disks * sizeof(*fds));
+       offsets = xcalloc(raid_disks, sizeof(*offsets));
+       buf = xmalloc(raid_disks * chunk_size);
+
+       for(i=0; i<raid_disks; i++) {
+               fds[i] = -1;
+       }
+       close_flag = 1;
+
+       comp = info->devs;
+       for (i=0, active_disks=0; active_disks<raid_disks; i++) {
+               int disk_slot = comp->disk.raid_disk;
+               if(disk_slot >= 0) {
+                       disk_name[disk_slot] = map_dev(comp->disk.major, comp->disk.minor, 0);
+                       offsets[disk_slot] = comp->data_offset * 512;
+                       fds[disk_slot] = open(disk_name[disk_slot], O_RDWR);
+                       if (fds[disk_slot] < 0) {
+                               perror(disk_name[disk_slot]);
+                               fprintf(stderr,"%s: cannot open %s\n", prg, disk_name[disk_slot]);
+                               exit_err = 6;
+                               goto exitHere;
+                       }
+                       active_disks++;
+               }
+               comp = comp->next;
+       }
+
+       int rv = check_stripes(info, fds, offsets,
                               raid_disks, chunk_size, level, layout,
-                              start, length, &argv[6]);
+                              start, length, disk_name, repair, failed_disk1, failed_disk2);
        if (rv != 0) {
                fprintf(stderr,
-                       "test_stripe: test_stripes returned %d\n", rv);
-               exit(1);
+                       "%s: check_stripes returned %d\n", prg, rv);
+               exit_err = 7;
+               goto exitHere;
        }
 
+exitHere:
+
+       if (close_flag)
+               for(i = 0; i < raid_disks; i++)
+                       close(fds[i]);
+
+       free(disk_name);
        free(fds);
        free(offsets);
        free(buf);
 
-       exit(0);
+       exit(exit_err);
 }