| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369 | #include <assert.h>#include <stdio.h>#include <stdlib.h>#include <stdint.h>#include <string.h>#include <sys/types.h>#include <sys/stat.h>#include <fcntl.h>#include <unistd.h>#if defined(BYTE_ORDER)&&(BYTE_ORDER == BIG_ENDIAN)#define _le32toh(x) __builtin_bswap32(x)#define _htole32(x) __builtin_bswap32(x)#elif defined(BYTE_ORDER)&&(BYTE_ORDER == LITTLE_ENDIAN)#define _le32toh(x) (x)#define _htole32(x) (x)#else#error Unknown byte order#endiftypedef struct {    char magic[8];    int32_t num_entries;    int32_t num_buckets;    int8_t  key_size;    int8_t  value_size;} __attribute__((__packed__)) HashHeader;typedef struct {    void *data;    void *buckets;    int num_entries;    int num_buckets;    int key_size;    int value_size;    off_t bucket_size;    int lower_limit;    int upper_limit;    off_t data_len;} HashIndex;#define MAGIC "BORG_IDX"#define EMPTY _htole32(0xffffffff)#define DELETED _htole32(0xfffffffe)#define MAX_BUCKET_SIZE 512#define BUCKET_LOWER_LIMIT .25#define BUCKET_UPPER_LIMIT .90#define MIN_BUCKETS 1024#define MAX(x, y) ((x) > (y) ? (x): (y))#define BUCKET_ADDR(index, idx) (index->buckets + (idx * index->bucket_size))#define BUCKET_IS_DELETED(index, idx) (*((uint32_t *)(BUCKET_ADDR(index, idx) + index->key_size)) == DELETED)#define BUCKET_IS_EMPTY(index, idx) (*((uint32_t *)(BUCKET_ADDR(index, idx) + index->key_size)) == EMPTY)#define BUCKET_MATCHES_KEY(index, idx, key) (memcmp(key, BUCKET_ADDR(index, idx), index->key_size) == 0)#define BUCKET_MARK_DELETED(index, idx) (*((uint32_t *)(BUCKET_ADDR(index, idx) + index->key_size)) = DELETED)#define BUCKET_MARK_EMPTY(index, idx) (*((uint32_t *)(BUCKET_ADDR(index, idx) + index->key_size)) = EMPTY)#define EPRINTF(msg, ...) fprintf(stderr, "hashindex: " msg "\n", ##__VA_ARGS__)#define EPRINTF_PATH(path, msg, ...) fprintf(stderr, "hashindex: %s: " msg "\n", path, ##__VA_ARGS__)static HashIndex *hashindex_read(const char *path);static int hashindex_write(HashIndex *index, const char *path);static HashIndex *hashindex_init(int capacity, int key_size, int value_size);static const void *hashindex_get(HashIndex *index, const void *key);static int hashindex_set(HashIndex *index, const void *key, const void *value);static int hashindex_delete(HashIndex *index, const void *key);static void *hashindex_next_key(HashIndex *index, const void *key);/* Private API */static inthashindex_index(HashIndex *index, const void *key){    return _le32toh(*((uint32_t *)key)) % index->num_buckets;}static inthashindex_lookup(HashIndex *index, const void *key){    int didx = -1;    int start = hashindex_index(index, key);    int idx = start;    for(;;) {        if(BUCKET_IS_EMPTY(index, idx))        {            return -1;        }        if(BUCKET_IS_DELETED(index, idx)) {            if(didx == -1) {                didx = idx;            }        }        else if(BUCKET_MATCHES_KEY(index, idx, key)) {            if (didx != -1) {                memcpy(BUCKET_ADDR(index, didx), BUCKET_ADDR(index, idx), index->bucket_size);                BUCKET_MARK_DELETED(index, idx);                idx = didx;            }            return idx;        }        idx = (idx + 1) % index->num_buckets;        if(idx == start) {            return -1;        }    }}static inthashindex_resize(HashIndex *index, int capacity){    HashIndex *new;    void *key = NULL;    if(!(new = hashindex_init(capacity, index->key_size, index->value_size))) {        return 0;    }    while((key = hashindex_next_key(index, key))) {        hashindex_set(new, key, hashindex_get(index, key));    }    free(index->data);    index->data = new->data;    index->data_len = new->data_len;    index->num_buckets = new->num_buckets;    index->lower_limit = new->lower_limit;    index->upper_limit = new->upper_limit;    index->buckets = new->buckets;    free(new);    return 1;}/* Public API */static HashIndex *hashindex_read(const char *path){    FILE *fd;    off_t length;    off_t bytes_read;    HashHeader header;    HashIndex *index = NULL;    if((fd = fopen(path, "r")) == NULL) {        EPRINTF_PATH(path, "fopen failed");        return NULL;    }    bytes_read = fread(&header, 1, sizeof(HashHeader), fd);    if(bytes_read != sizeof(HashHeader)) {        EPRINTF_PATH(path, "fread header failed (expected %ld, got %ld)", sizeof(HashHeader), bytes_read);        goto fail;    }    if(fseek(fd, 0, SEEK_END) < 0) {        EPRINTF_PATH(path, "fseek failed");        goto fail;    }    if((length = ftell(fd)) < 0) {        EPRINTF_PATH(path, "ftell failed");        goto fail;    }    if(fseek(fd, 0, SEEK_SET) < 0) {        EPRINTF_PATH(path, "fseek failed");        goto fail;    }    if(memcmp(header.magic, MAGIC, 8)) {        EPRINTF_PATH(path, "Unknown file header");        goto fail;    }    if(length != sizeof(HashHeader) + (off_t)_le32toh(header.num_buckets) * (header.key_size + header.value_size)) {        EPRINTF_PATH(path, "Incorrect file length");        goto fail;    }    if(!(index = malloc(sizeof(HashIndex)))) {        EPRINTF_PATH(path, "malloc failed");        goto fail;    }    if(!(index->data = malloc(length))) {        EPRINTF_PATH(path, "malloc failed");        free(index);        index = NULL;        goto fail;    }    bytes_read = fread(index->data, 1, length, fd);    if(bytes_read != length) {        EPRINTF_PATH(path, "fread hashindex failed (expected %ld, got %ld)", length, bytes_read);        free(index->data);        free(index);        index = NULL;        goto fail;    }    index->data_len = length;    index->num_entries = _le32toh(header.num_entries);    index->num_buckets = _le32toh(header.num_buckets);    index->key_size = header.key_size;    index->value_size = header.value_size;    index->bucket_size = index->key_size + index->value_size;    index->buckets = index->data + sizeof(HashHeader);    index->lower_limit = index->num_buckets > MIN_BUCKETS ? ((int)(index->num_buckets * BUCKET_LOWER_LIMIT)) : 0;    index->upper_limit = (int)(index->num_buckets * BUCKET_UPPER_LIMIT);fail:    if(fclose(fd) < 0) {        EPRINTF_PATH(path, "fclose failed");    }    return index;}static HashIndex *hashindex_init(int capacity, int key_size, int value_size){    HashIndex *index;    HashHeader header = {        .magic = MAGIC, .num_entries = 0, .key_size = key_size, .value_size = value_size    };    int i;    capacity = MAX(MIN_BUCKETS, capacity);    if(!(index = malloc(sizeof(HashIndex)))) {        EPRINTF("malloc failed");        return NULL;    }    index->data_len = sizeof(HashHeader) + (off_t)capacity * (key_size + value_size);    if(!(index->data = calloc(index->data_len, 1))) {        EPRINTF("malloc failed");        free(index);        return NULL;    }    index->num_entries = 0;    index->key_size = key_size;    index->value_size = value_size;    index->num_buckets = capacity;    index->bucket_size = index->key_size + index->value_size;    index->lower_limit = index->num_buckets > MIN_BUCKETS ? ((int)(index->num_buckets * BUCKET_LOWER_LIMIT)) : 0;    index->upper_limit = (int)(index->num_buckets * BUCKET_UPPER_LIMIT);    index->buckets = index->data + sizeof(HashHeader);    memcpy(index->data, &header, sizeof(HashHeader));    for(i = 0; i < capacity; i++) {        BUCKET_MARK_EMPTY(index, i);    }    return index;}static voidhashindex_free(HashIndex *index){    free(index->data);    free(index);}static inthashindex_write(HashIndex *index, const char *path){    FILE *fd;    int ret = 1;    if((fd = fopen(path, "w")) == NULL) {        EPRINTF_PATH(path, "open failed");        fprintf(stderr, "Failed to open %s for writing\n", path);        return 0;    }    *((uint32_t *)(index->data + 8)) = _htole32(index->num_entries);    *((uint32_t *)(index->data + 12)) = _htole32(index->num_buckets);    if(fwrite(index->data, 1, index->data_len, fd) != index->data_len) {        EPRINTF_PATH(path, "fwrite failed");        ret = 0;    }    if(fclose(fd) < 0) {        EPRINTF_PATH(path, "fclose failed");    }    return ret;}static const void *hashindex_get(HashIndex *index, const void *key){    int idx = hashindex_lookup(index, key);    if(idx < 0) {        return NULL;    }    return BUCKET_ADDR(index, idx) + index->key_size;}static inthashindex_set(HashIndex *index, const void *key, const void *value){    int idx = hashindex_lookup(index, key);    uint8_t *ptr;    if(idx < 0)    {        if(index->num_entries > index->upper_limit) {            if(!hashindex_resize(index, index->num_buckets * 2)) {                return 0;            }        }        idx = hashindex_index(index, key);        while(!BUCKET_IS_EMPTY(index, idx) && !BUCKET_IS_DELETED(index, idx)) {            idx = (idx + 1) % index->num_buckets;        }        ptr = BUCKET_ADDR(index, idx);        memcpy(ptr, key, index->key_size);        memcpy(ptr + index->key_size, value, index->value_size);        index->num_entries += 1;    }    else    {        memcpy(BUCKET_ADDR(index, idx) + index->key_size, value, index->value_size);    }    return 1;}static inthashindex_delete(HashIndex *index, const void *key){    int idx = hashindex_lookup(index, key);    if (idx < 0) {        return 1;    }    BUCKET_MARK_DELETED(index, idx);    index->num_entries -= 1;    if(index->num_entries < index->lower_limit) {        if(!hashindex_resize(index, index->num_buckets / 2)) {            return 0;        }    }    return 1;}static void *hashindex_next_key(HashIndex *index, const void *key){    int idx = 0;    if(key) {        idx = 1 + (key - index->buckets) / index->bucket_size;    }    if (idx == index->num_buckets) {        return NULL;    }    while(BUCKET_IS_EMPTY(index, idx) || BUCKET_IS_DELETED(index, idx)) {        idx ++;        if (idx == index->num_buckets) {            return NULL;        }    }    return BUCKET_ADDR(index, idx);}static inthashindex_get_size(HashIndex *index){    return index->num_entries;}static voidhashindex_summarize(HashIndex *index, long long *total_size, long long *total_csize, long long *total_unique_size, long long *total_unique_csize){    int64_t size = 0, csize = 0, unique_size = 0, unique_csize = 0;    const int32_t *values;    void *key = NULL;    while((key = hashindex_next_key(index, key))) {        values = key + 32;        unique_size += values[1];        unique_csize += values[2];        size += values[0] * values[1];        csize += values[0] * values[2];    }    *total_size = size;    *total_csize = csize;    *total_unique_size = unique_size;    *total_unique_csize = unique_csize;}
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