refactor(lsm): better separate store disk functions
parent
e10c43dfd6
commit
9c249d40c7
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@ -30,82 +30,6 @@ lsm_error lsm_store_init(lsm_store **ptr) {
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return lsm_error_ok;
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}
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lsm_error lsm_store_load(lsm_store **ptr, lsm_str *data_path) {
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lsm_store *store;
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LSM_RES(lsm_store_init(&store));
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// Try to open an existing db file or create a new one otherwise
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// This shit is why I need to improve the str library
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char db_file_path[lsm_str_len(data_path) + strlen(LSM_DB_FILE_NAME) + 2];
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memcpy(db_file_path, lsm_str_ptr(data_path),
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lsm_str_len(data_path) * sizeof(char));
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sprintf(&db_file_path[lsm_str_len(data_path)], "/%s", LSM_DB_FILE_NAME);
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FILE *db_file = fopen(db_file_path, "r+b");
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if (db_file == NULL) {
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// Create the file first, then reopen it in extended read
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db_file = fopen(db_file_path, "wb");
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if (db_file == NULL) {
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return lsm_error_failed_io;
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}
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fclose(db_file);
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FILE *db_file = fopen(db_file_path, "r+b");
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if (db_file == NULL) {
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return lsm_error_failed_io;
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}
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}
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// Same for idx file
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char idx_file_path[lsm_str_len(data_path) + strlen(LSM_IDX_FILE_NAME) + 2];
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memcpy(idx_file_path, lsm_str_ptr(data_path),
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lsm_str_len(data_path) * sizeof(char));
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sprintf(&idx_file_path[lsm_str_len(data_path)], "/%s", LSM_IDX_FILE_NAME);
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FILE *idx_file = fopen(idx_file_path, "r+b");
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if (idx_file == NULL) {
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// Create the file first
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idx_file = fopen(idx_file_path, "wb");
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if (idx_file == NULL) {
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return lsm_error_failed_io;
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}
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// The database code expects the idx file to start with how many blocks it
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// contains, so we write that here
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uint64_t num = 0;
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if (fwrite(&num, sizeof(uint64_t), 1, idx_file) == 0) {
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return lsm_error_failed_io;
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}
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fflush(idx_file);
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fclose(idx_file);
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// If opening it in extended read mode still fails now, there's a problem
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FILE *idx_file = fopen(idx_file_path, "r+b");
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if (idx_file == NULL) {
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return lsm_error_failed_io;
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}
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}
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store->data_path = data_path;
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store->db_file = db_file;
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store->idx_file = idx_file;
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LSM_RES(lsm_store_load_db(store));
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*ptr = store;
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return lsm_error_ok;
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}
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lsm_error lsm_store_open_read(lsm_entry_handle **out, lsm_store *store,
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lsm_str *key) {
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lsm_entry_wrapper *wrapper;
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@ -0,0 +1,183 @@
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#include <stdlib.h>
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#include <string.h>
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#include "lsm/store_internal.h"
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lsm_error lsm_store_load(lsm_store **ptr, lsm_str *data_path) {
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lsm_store *store;
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LSM_RES(lsm_store_init(&store));
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// Try to open an existing db file or create a new one otherwise
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// This shit is why I need to improve the str library
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char db_file_path[lsm_str_len(data_path) + strlen(LSM_DB_FILE_NAME) + 2];
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memcpy(db_file_path, lsm_str_ptr(data_path),
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lsm_str_len(data_path) * sizeof(char));
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sprintf(&db_file_path[lsm_str_len(data_path)], "/%s", LSM_DB_FILE_NAME);
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FILE *db_file = fopen(db_file_path, "r+b");
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if (db_file == NULL) {
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// Create the file first, then reopen it in extended read
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db_file = fopen(db_file_path, "wb");
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if (db_file == NULL) {
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return lsm_error_failed_io;
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}
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fclose(db_file);
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FILE *db_file = fopen(db_file_path, "r+b");
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if (db_file == NULL) {
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return lsm_error_failed_io;
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}
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}
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// Same for idx file
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char idx_file_path[lsm_str_len(data_path) + strlen(LSM_IDX_FILE_NAME) + 2];
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memcpy(idx_file_path, lsm_str_ptr(data_path),
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lsm_str_len(data_path) * sizeof(char));
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sprintf(&idx_file_path[lsm_str_len(data_path)], "/%s", LSM_IDX_FILE_NAME);
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FILE *idx_file = fopen(idx_file_path, "r+b");
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if (idx_file == NULL) {
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// Create the file first
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idx_file = fopen(idx_file_path, "wb");
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if (idx_file == NULL) {
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return lsm_error_failed_io;
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}
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// The database code expects the idx file to start with how many blocks it
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// contains, so we write that here
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uint64_t num = 0;
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if (fwrite(&num, sizeof(uint64_t), 1, idx_file) == 0) {
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return lsm_error_failed_io;
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}
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fflush(idx_file);
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fclose(idx_file);
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// If opening it in extended read mode still fails now, there's a problem
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FILE *idx_file = fopen(idx_file_path, "r+b");
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if (idx_file == NULL) {
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return lsm_error_failed_io;
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}
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}
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store->data_path = data_path;
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store->db_file = db_file;
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store->idx_file = idx_file;
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LSM_RES(lsm_store_load_db(store));
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*ptr = store;
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return lsm_error_ok;
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}
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static lsm_error lsm_entry_read_attrs(lsm_entry_handle *handle, FILE *db_file) {
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uint64_t attr_count;
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size_t res = fread(&attr_count, sizeof(uint64_t), 1, db_file);
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if (res == 0) {
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return lsm_error_failed_io;
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}
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// attr_type, val_len
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uint64_t nums[2];
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lsm_str *val;
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for (uint64_t i = 0; i < attr_count; i++) {
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res = fread(nums, sizeof(uint64_t), 2, db_file);
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if (res < 2) {
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return lsm_error_failed_io;
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}
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char *val_s = malloc(nums[1] + 1);
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val_s[nums[1]] = '\0';
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if (val_s == NULL) {
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return lsm_error_failed_alloc;
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}
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uint64_t read = 0;
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while (read < nums[1]) {
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read += fread(&val_s[read], 1, nums[1] - read, db_file);
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}
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LSM_RES(lsm_str_init(&val, val_s));
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;
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lsm_entry_attr_insert(handle, nums[0], val);
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}
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return lsm_error_ok;
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}
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lsm_error lsm_store_load_db(lsm_store *store) {
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uint64_t key_len;
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uint64_t db_dim[2];
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lsm_str *key;
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lsm_entry_handle *handle;
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rewind(store->idx_file);
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// idx file starts with block count
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size_t res =
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fread(&store->idx_file_block_count, sizeof(uint64_t), 1, store->idx_file);
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if (res == 0) {
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return lsm_error_failed_io;
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}
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store->idx_file_size += sizeof(uint64_t);
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for (uint64_t i = 0; i < store->idx_file_block_count; i++) {
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// Read in idx metadata
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res = fread(&key_len, sizeof(uint64_t), 1, store->idx_file);
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if (res == 0) {
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return lsm_error_failed_io;
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}
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char *key_s = malloc(key_len + 1);
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key_s[key_len] = '\0';
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if (key_s == NULL) {
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return lsm_error_failed_alloc;
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}
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res = fread(key_s, 1, key_len, store->idx_file);
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if (res < key_len) {
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return lsm_error_failed_io;
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}
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res = fread(db_dim, sizeof(uint64_t), 2, store->idx_file);
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if (res < 2) {
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return lsm_error_failed_io;
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}
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LSM_RES(lsm_str_init(&key, key_s));
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LSM_RES(lsm_store_insert(&handle, store, key));
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// Read attributes from database file
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if (fseek(store->db_file, db_dim[0], SEEK_SET) != 0) {
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return lsm_error_failed_io;
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}
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LSM_RES(lsm_entry_read_attrs(handle, store->db_file));
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lsm_entry_close(handle);
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store->idx_file_size += 3 * sizeof(uint64_t) + key_len;
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store->db_file_size += db_dim[1];
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}
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return lsm_error_ok;
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}
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@ -1,8 +1,3 @@
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#include <stdint.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include "lsm/store.h"
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#include "lsm/store_internal.h"
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static lsm_error lsm_entry_write_uint64_t(FILE *f, uint64_t num) {
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@ -110,7 +105,6 @@ lsm_error lsm_entry_sync(lsm_store *store, lsm_entry_handle *handle) {
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size_t r = fwrite(&new_block_count, sizeof(uint64_t), 1, store->idx_file);
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if (r != lsm_error_ok) {
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printf("wuck\n");
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pthread_mutex_unlock(&store->idx_lock);
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return res;
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@ -118,8 +112,6 @@ lsm_error lsm_entry_sync(lsm_store *store, lsm_entry_handle *handle) {
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store->idx_file_size += entry_size;
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store->idx_file_block_count = new_block_count;
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} else {
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printf("failed write\n");
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}
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fflush(store->idx_file);
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@ -128,106 +120,3 @@ lsm_error lsm_entry_sync(lsm_store *store, lsm_entry_handle *handle) {
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return res;
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}
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static lsm_error lsm_entry_read_attrs(lsm_entry_handle *handle, FILE *db_file) {
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uint64_t attr_count;
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size_t res = fread(&attr_count, sizeof(uint64_t), 1, db_file);
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if (res == 0) {
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return lsm_error_failed_io;
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}
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// attr_type, val_len
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uint64_t nums[2];
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lsm_str *val;
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for (uint64_t i = 0; i < attr_count; i++) {
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res = fread(nums, sizeof(uint64_t), 2, db_file);
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if (res < 2) {
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return lsm_error_failed_io;
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}
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char *val_s = malloc(nums[1] + 1);
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val_s[nums[1]] = '\0';
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if (val_s == NULL) {
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return lsm_error_failed_alloc;
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}
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uint64_t read = 0;
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while (read < nums[1]) {
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read += fread(&val_s[read], 1, nums[1] - read, db_file);
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}
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LSM_RES(lsm_str_init(&val, val_s));
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;
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lsm_entry_attr_insert(handle, nums[0], val);
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}
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return lsm_error_ok;
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}
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lsm_error lsm_store_load_db(lsm_store *store) {
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uint64_t key_len;
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uint64_t db_dim[2];
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lsm_str *key;
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lsm_entry_handle *handle;
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rewind(store->idx_file);
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// idx file starts with block count
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size_t res =
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fread(&store->idx_file_block_count, sizeof(uint64_t), 1, store->idx_file);
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if (res == 0) {
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return lsm_error_failed_io;
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}
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store->idx_file_size += sizeof(uint64_t);
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for (uint64_t i = 0; i < store->idx_file_block_count; i++) {
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// Read in idx metadata
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res = fread(&key_len, sizeof(uint64_t), 1, store->idx_file);
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if (res == 0) {
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return lsm_error_failed_io;
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}
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char *key_s = malloc(key_len + 1);
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key_s[key_len] = '\0';
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if (key_s == NULL) {
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return lsm_error_failed_alloc;
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}
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res = fread(key_s, 1, key_len, store->idx_file);
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if (res < key_len) {
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return lsm_error_failed_io;
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}
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res = fread(db_dim, sizeof(uint64_t), 2, store->idx_file);
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if (res < 2) {
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return lsm_error_failed_io;
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}
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LSM_RES(lsm_str_init(&key, key_s));
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LSM_RES(lsm_store_insert(&handle, store, key));
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// Read attributes from database file
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if (fseek(store->db_file, db_dim[0], SEEK_SET) != 0) {
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return lsm_error_failed_io;
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}
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LSM_RES(lsm_entry_read_attrs(handle, store->db_file));
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lsm_entry_close(handle);
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store->idx_file_size += 3 * sizeof(uint64_t) + key_len;
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store->db_file_size += db_dim[1];
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}
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return lsm_error_ok;
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}
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