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https://github.com/asg017/sqlite-vec.git
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Add rescore index type: stores full-precision float vectors in a rowid-keyed shadow table, quantizes to int8 for fast initial scan, then rescores top candidates with original vectors. Includes config parser, shadow table management, insert/delete support, KNN integration, compile flag (SQLITE_VEC_ENABLE_RESCORE), fuzz targets, and tests.
230 lines
6.9 KiB
C
230 lines
6.9 KiB
C
#include <stdint.h>
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#include <stddef.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include "sqlite-vec.h"
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#include "sqlite3.h"
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#include <assert.h>
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/**
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* Fuzz target: corrupt rescore shadow tables then exercise KNN/read/write.
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*
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* This targets the dangerous code paths in rescore_knn (Phase 1 + 2):
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* - sqlite3_blob_read into baseVectors with potentially wrong-sized blobs
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* - distance computation on corrupted/partial quantized data
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* - blob_reopen on _rescore_vectors with missing/corrupted rows
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* - insert/delete after corruption (blob_write to wrong offsets)
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*
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* The existing shadow-corrupt.c only tests vec0 without rescore.
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*/
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int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size) {
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if (size < 4) return 0;
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int rc;
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sqlite3 *db;
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rc = sqlite3_open(":memory:", &db);
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assert(rc == SQLITE_OK);
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rc = sqlite3_vec_init(db, NULL, NULL);
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assert(rc == SQLITE_OK);
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/* Pick quantizer type from first byte */
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int use_int8 = data[0] & 1;
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int target = (data[1] % 8);
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const uint8_t *payload = data + 2;
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int payload_size = (int)(size - 2);
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const char *create_sql = use_int8
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? "CREATE VIRTUAL TABLE v USING vec0("
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"emb float[16] indexed by rescore(quantizer=int8))"
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: "CREATE VIRTUAL TABLE v USING vec0("
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"emb float[16] indexed by rescore(quantizer=bit))";
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rc = sqlite3_exec(db, create_sql, NULL, NULL, NULL);
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if (rc != SQLITE_OK) { sqlite3_close(db); return 0; }
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/* Insert several vectors so there's a full chunk to corrupt */
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{
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sqlite3_stmt *ins = NULL;
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sqlite3_prepare_v2(db,
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"INSERT INTO v(rowid, emb) VALUES (?, ?)", -1, &ins, NULL);
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if (!ins) { sqlite3_close(db); return 0; }
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for (int i = 1; i <= 8; i++) {
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float vec[16];
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for (int j = 0; j < 16; j++) vec[j] = (float)(i * 10 + j) / 100.0f;
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sqlite3_reset(ins);
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sqlite3_bind_int64(ins, 1, i);
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sqlite3_bind_blob(ins, 2, vec, sizeof(vec), SQLITE_TRANSIENT);
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sqlite3_step(ins);
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}
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sqlite3_finalize(ins);
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}
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/* Now corrupt rescore shadow tables based on fuzz input */
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sqlite3_stmt *stmt = NULL;
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switch (target) {
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case 0: {
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/* Corrupt _rescore_chunks00 vectors blob with fuzz data */
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rc = sqlite3_prepare_v2(db,
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"UPDATE v_rescore_chunks00 SET vectors = ? WHERE rowid = 1",
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-1, &stmt, NULL);
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if (rc == SQLITE_OK) {
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sqlite3_bind_blob(stmt, 1, payload, payload_size, SQLITE_STATIC);
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sqlite3_step(stmt);
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sqlite3_finalize(stmt);
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stmt = NULL;
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}
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break;
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}
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case 1: {
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/* Corrupt _rescore_vectors00 vector blob for a specific row */
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rc = sqlite3_prepare_v2(db,
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"UPDATE v_rescore_vectors00 SET vector = ? WHERE rowid = 3",
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-1, &stmt, NULL);
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if (rc == SQLITE_OK) {
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sqlite3_bind_blob(stmt, 1, payload, payload_size, SQLITE_STATIC);
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sqlite3_step(stmt);
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sqlite3_finalize(stmt);
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stmt = NULL;
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}
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break;
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}
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case 2: {
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/* Truncate the quantized chunk blob to wrong size */
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rc = sqlite3_prepare_v2(db,
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"UPDATE v_rescore_chunks00 SET vectors = X'DEADBEEF' WHERE rowid = 1",
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-1, &stmt, NULL);
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if (rc == SQLITE_OK) {
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sqlite3_step(stmt);
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sqlite3_finalize(stmt);
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stmt = NULL;
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}
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break;
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}
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case 3: {
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/* Delete rows from _rescore_vectors (orphan the float vectors) */
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sqlite3_exec(db,
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"DELETE FROM v_rescore_vectors00 WHERE rowid IN (2, 4, 6)",
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NULL, NULL, NULL);
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break;
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}
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case 4: {
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/* Delete the chunk row entirely from _rescore_chunks */
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sqlite3_exec(db,
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"DELETE FROM v_rescore_chunks00 WHERE rowid = 1",
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NULL, NULL, NULL);
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break;
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}
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case 5: {
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/* Set vectors to NULL in _rescore_chunks */
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sqlite3_exec(db,
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"UPDATE v_rescore_chunks00 SET vectors = NULL WHERE rowid = 1",
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NULL, NULL, NULL);
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break;
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}
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case 6: {
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/* Set vector to NULL in _rescore_vectors */
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sqlite3_exec(db,
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"UPDATE v_rescore_vectors00 SET vector = NULL WHERE rowid = 3",
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NULL, NULL, NULL);
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break;
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}
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case 7: {
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/* Corrupt BOTH tables with fuzz data */
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int half = payload_size / 2;
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rc = sqlite3_prepare_v2(db,
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"UPDATE v_rescore_chunks00 SET vectors = ? WHERE rowid = 1",
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-1, &stmt, NULL);
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if (rc == SQLITE_OK) {
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sqlite3_bind_blob(stmt, 1, payload, half, SQLITE_STATIC);
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sqlite3_step(stmt);
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sqlite3_finalize(stmt);
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stmt = NULL;
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}
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rc = sqlite3_prepare_v2(db,
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"UPDATE v_rescore_vectors00 SET vector = ? WHERE rowid = 1",
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-1, &stmt, NULL);
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if (rc == SQLITE_OK) {
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sqlite3_bind_blob(stmt, 1, payload + half,
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payload_size - half, SQLITE_STATIC);
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sqlite3_step(stmt);
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sqlite3_finalize(stmt);
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stmt = NULL;
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}
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break;
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}
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}
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/* Exercise ALL read/write paths -- NONE should crash */
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/* KNN query (triggers rescore_knn Phase 1 + Phase 2) */
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{
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float qvec[16] = {1,0,0,0, 0,1,0,0, 0,0,1,0, 0,0,0,1};
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sqlite3_stmt *knn = NULL;
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sqlite3_prepare_v2(db,
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"SELECT rowid, distance FROM v WHERE emb MATCH ? "
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"ORDER BY distance LIMIT 5", -1, &knn, NULL);
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if (knn) {
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sqlite3_bind_blob(knn, 1, qvec, sizeof(qvec), SQLITE_STATIC);
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while (sqlite3_step(knn) == SQLITE_ROW) {}
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sqlite3_finalize(knn);
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}
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}
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/* Full scan (triggers reading from _rescore_vectors) */
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sqlite3_exec(db, "SELECT * FROM v", NULL, NULL, NULL);
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/* Point lookups */
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sqlite3_exec(db, "SELECT * FROM v WHERE rowid = 1", NULL, NULL, NULL);
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sqlite3_exec(db, "SELECT * FROM v WHERE rowid = 3", NULL, NULL, NULL);
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/* Insert after corruption */
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{
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float vec[16] = {0};
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sqlite3_stmt *ins = NULL;
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sqlite3_prepare_v2(db,
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"INSERT INTO v(rowid, emb) VALUES (99, ?)", -1, &ins, NULL);
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if (ins) {
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sqlite3_bind_blob(ins, 1, vec, sizeof(vec), SQLITE_STATIC);
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sqlite3_step(ins);
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sqlite3_finalize(ins);
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}
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}
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/* Delete after corruption */
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sqlite3_exec(db, "DELETE FROM v WHERE rowid = 5", NULL, NULL, NULL);
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/* Update after corruption */
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{
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float vec[16] = {1,1,1,1, 1,1,1,1, 1,1,1,1, 1,1,1,1};
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sqlite3_stmt *upd = NULL;
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sqlite3_prepare_v2(db,
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"UPDATE v SET emb = ? WHERE rowid = 1", -1, &upd, NULL);
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if (upd) {
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sqlite3_bind_blob(upd, 1, vec, sizeof(vec), SQLITE_STATIC);
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sqlite3_step(upd);
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sqlite3_finalize(upd);
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}
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}
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/* KNN again after modifications to corrupted state */
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{
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float qvec[16] = {0,0,0,0, 0,0,0,0, 1,1,1,1, 1,1,1,1};
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sqlite3_stmt *knn = NULL;
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sqlite3_prepare_v2(db,
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"SELECT rowid, distance FROM v WHERE emb MATCH ? "
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"ORDER BY distance LIMIT 3", -1, &knn, NULL);
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if (knn) {
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sqlite3_bind_blob(knn, 1, qvec, sizeof(qvec), SQLITE_STATIC);
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while (sqlite3_step(knn) == SQLITE_ROW) {}
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sqlite3_finalize(knn);
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}
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}
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sqlite3_exec(db, "DROP TABLE v", NULL, NULL, NULL);
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sqlite3_close(db);
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return 0;
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}
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