6c92f85d10
Bring the Nexus/Praxis/Hexis integration in line with MAVEN_ECOSYSTEM_ARCHITECTURE.md: - Praxis over HTTP: drop the in-process praxis.db open (praxisstore/ praxistools) and call praxisd's /api/v1/tools/* API via a new praxisClient. Honors the "no component reads another's DB" invariant (AC#12). PraxisConfig.DBPath -> URL. - Hexis confirmation gate: mutating capabilities (ReadOnly=false) now park a bound pendingHexis confirmation and require a spoken "да" before executing; read-only run immediately (AC#7, no auto attention->action). - Capability safety: >1 verb match is ambiguous -> ask instead of firing the first; ambiguous Nexus resolution asks for clarification (AC#2). - Correlation IDs on Hexis execute, recorded in the cross-service trace. - Bug: importance arrives as JSON float64 over HTTP, not int. - Tests: confirm-gate, decline, read-only, and ambiguity paths. Build: vendor/ bakes in the hexis client (replace-directed at a sibling repo outside the Docker context); Dockerfile builds from vendor and no longer `go mod download`s the unreachable replace paths. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
354 lines
10 KiB
Go
354 lines
10 KiB
Go
// Copyright 2025 The Sqlite Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package sqlite // import "modernc.org/sqlite"
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import (
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"database/sql/driver"
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"fmt"
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"io"
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"math"
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"reflect"
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"strings"
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"time"
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sqlite3 "modernc.org/sqlite/lib"
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)
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type rows struct {
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allocs []uintptr
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c *conn
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columns []string
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// decltypes holds the uppercased declared types for every result column,
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// captured once at newRows time. The declared type of a column is fixed
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// for the lifetime of a prepared statement, so caching the result of
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// strings.ToUpper(sqlite3_column_decltype(...)) here removes a per-row
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// libc.GoString + strings.ToUpper from the Next() hot path for callers
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// that hit the time-conversion branches (_texttotime, _time_format).
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decltypes []string
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// parseFmtIdx caches, per column, the index into parseTimeFormats that
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// matched the first successful (*conn).parseTime call on that column.
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// Subsequent rows reuse the saved index as the first attempt instead of
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// re-walking the format list from the top. Slot value -1 means no match
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// has been recorded yet (either parseTime has not run on this column, or
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// the parseTimeString / m= branch matched, which is not in
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// parseTimeFormats). The cache is sticky: once a successful index is
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// stored it is not overwritten if a later row happens to match a
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// different format. A steady-format column therefore wins on every row
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// after the first; a mixed-format column falls through as before, paying
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// at most one extra format probe on rows whose matching format precedes
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// the cached one.
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parseFmtIdx []int8
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pstmt uintptr
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doStep bool
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empty bool
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reuseStmt bool // If true, Close() resets instead of finalizing
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}
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func newRows(c *conn, pstmt uintptr, allocs *[]uintptr, empty bool) (r *rows, err error) {
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var a []uintptr
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if allocs != nil {
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a = *allocs
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*allocs = nil
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}
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r = &rows{c: c, pstmt: pstmt, allocs: a, empty: empty}
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defer func() {
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if err != nil {
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r.Close()
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r = nil
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}
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}()
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n, err := c.columnCount(pstmt)
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if err != nil {
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return nil, err
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}
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r.columns = make([]string, n)
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r.decltypes = make([]string, n)
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r.parseFmtIdx = make([]int8, n)
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for i := range r.columns {
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if r.columns[i], err = r.c.columnName(pstmt, i); err != nil {
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return nil, err
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}
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r.decltypes[i] = strings.ToUpper(r.c.columnDeclType(pstmt, i))
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r.parseFmtIdx[i] = -1
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}
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return r, nil
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}
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// Close closes the rows iterator.
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func (r *rows) Close() (err error) {
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r.c.freeAllocs(r.allocs)
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r.allocs = nil
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if r.reuseStmt {
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// Reset the statement for reuse instead of finalizing it
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if e := r.c.reset(r.pstmt); e != nil {
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return e
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}
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return r.c.clearBindings(r.pstmt)
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}
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return r.c.finalize(r.pstmt)
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}
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// Columns returns the names of the columns. The number of columns of the
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// result is inferred from the length of the slice. If a particular column name
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// isn't known, an empty string should be returned for that entry.
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func (r *rows) Columns() (c []string) {
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return r.columns
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}
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// Next is called to populate the next row of data into the provided slice. The
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// provided slice will be the same size as the Columns() are wide.
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//
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// Next should return io.EOF when there are no more rows.
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func (r *rows) Next(dest []driver.Value) (err error) {
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if r.empty {
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return io.EOF
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}
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rc := sqlite3.SQLITE_ROW
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if r.doStep {
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if rc, err = r.c.step(r.pstmt); err != nil {
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return err
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}
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}
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r.doStep = true
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switch rc {
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case sqlite3.SQLITE_ROW:
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if g, e := len(dest), len(r.columns); g != e {
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return fmt.Errorf("sqlite: Next: have %v destination values, expected %v", g, e)
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}
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for i := range dest {
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ct, err := r.c.columnType(r.pstmt, i)
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if err != nil {
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return err
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}
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switch ct {
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case sqlite3.SQLITE_INTEGER:
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v, err := r.c.columnInt64(r.pstmt, i)
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if err != nil {
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return err
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}
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if !r.c.intToTime {
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dest[i] = v
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} else {
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// Inspired by mattn/go-sqlite3:
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// https://github.com/mattn/go-sqlite3/blob/f76bae4b0044cbba8fb2c72b8e4559e8fbcffd86/sqlite3.go#L2254-L2262
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// but we put make this compatibility optional behind a DSN
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// query parameter, because this changes API behavior, so an
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// opt-in is needed.
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switch r.ColumnTypeDatabaseTypeName(i) {
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case "DATE", "DATETIME", "TIMESTAMP":
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// Check for explicit opt-in first. This fixes the bug for micro/nano users
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// without breaking the legacy heuristic for existing users.
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switch r.c.integerTimeFormat {
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case "unix_micro":
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dest[i] = r.c.applyTimezone(time.UnixMicro(v).UTC())
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continue
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case "unix_nano":
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dest[i] = r.c.applyTimezone(time.Unix(0, v).UTC())
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continue
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}
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// Legacy Heuristic (mattn/go-sqlite3 compatibility). NOTE: This heuristic
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// fails for Millisecond timestamps representing dates before Sept 9, 2001
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// (value < 1e12).
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// Is it a seconds timestamp or a milliseconds
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// timestamp?
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if v > 1e12 || v < -1e12 {
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// Milliseconds
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dest[i] = r.c.applyTimezone(time.UnixMilli(v).UTC())
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} else {
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// Seconds
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dest[i] = r.c.applyTimezone(time.Unix(v, 0).UTC())
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}
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default:
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dest[i] = v
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}
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}
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case sqlite3.SQLITE_FLOAT:
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v, err := r.c.columnDouble(r.pstmt, i)
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if err != nil {
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return err
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}
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dest[i] = v
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case sqlite3.SQLITE_TEXT:
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v, err := r.c.columnText(r.pstmt, i)
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if err != nil {
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return err
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}
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switch r.ColumnTypeDatabaseTypeName(i) {
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case "DATE", "DATETIME", "TIMESTAMP":
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val, ok, idx := r.c.parseTime(v, int(r.parseFmtIdx[i]))
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if ok && r.parseFmtIdx[i] < 0 && idx >= 0 {
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r.parseFmtIdx[i] = int8(idx)
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}
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dest[i] = val
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default:
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// A TEXT column with no declared type. SQLite reports an
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// empty decltype not only for aggregates and expressions
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// over a date column (MAX/MIN/COALESCE, upper(x), x||''),
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// but also for subqueries and for typeless real columns
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// (CREATE TABLE t(x)). Any of these would be delivered as
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// a raw string that Scan cannot store into *time.Time
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// (#248). Under _texttotime, best-effort parse the value:
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// on success deliver time.Time, otherwise fall back to the
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// original string, so no Scan that worked before can newly
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// fail.
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if r.c.textToTime && r.decltypes[i] == "" {
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if val, ok, idx := r.c.parseTime(v, int(r.parseFmtIdx[i])); ok {
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if r.parseFmtIdx[i] < 0 && idx >= 0 {
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r.parseFmtIdx[i] = int8(idx)
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}
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dest[i] = val
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continue
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}
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}
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dest[i] = v
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}
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case sqlite3.SQLITE_BLOB:
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v, err := r.c.columnBlob(r.pstmt, i)
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if err != nil {
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return err
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}
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dest[i] = v
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case sqlite3.SQLITE_NULL:
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dest[i] = nil
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default:
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return fmt.Errorf("internal error: rc %d", rc)
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}
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}
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return nil
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case sqlite3.SQLITE_DONE:
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return io.EOF
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default:
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return r.c.errstr(int32(rc))
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}
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}
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// RowsColumnTypeDatabaseTypeName may be implemented by Rows. It should return
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// the database system type name without the length. Type names should be
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// uppercase. Examples of returned types: "VARCHAR", "NVARCHAR", "VARCHAR2",
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// "CHAR", "TEXT", "DECIMAL", "SMALLINT", "INT", "BIGINT", "BOOL", "[]BIGINT",
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// "JSONB", "XML", "TIMESTAMP".
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func (r *rows) ColumnTypeDatabaseTypeName(index int) string {
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return r.decltypes[index]
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}
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// RowsColumnTypeLength may be implemented by Rows. It should return the length
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// of the column type if the column is a variable length type. If the column is
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// not a variable length type ok should return false. If length is not limited
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// other than system limits, it should return math.MaxInt64. The following are
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// examples of returned values for various types:
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//
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// TEXT (math.MaxInt64, true)
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// varchar(10) (10, true)
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// nvarchar(10) (10, true)
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// decimal (0, false)
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// int (0, false)
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// bytea(30) (30, true)
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func (r *rows) ColumnTypeLength(index int) (length int64, ok bool) {
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t, err := r.c.columnType(r.pstmt, index)
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if err != nil {
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return 0, false
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}
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switch t {
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case sqlite3.SQLITE_INTEGER:
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return 0, false
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case sqlite3.SQLITE_FLOAT:
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return 0, false
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case sqlite3.SQLITE_TEXT:
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return math.MaxInt64, true
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case sqlite3.SQLITE_BLOB:
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return math.MaxInt64, true
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case sqlite3.SQLITE_NULL:
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return 0, false
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default:
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return 0, false
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}
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}
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// RowsColumnTypeNullable may be implemented by Rows. The nullable value should
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// be true if it is known the column may be null, or false if the column is
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// known to be not nullable. If the column nullability is unknown, ok should be
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// false.
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func (r *rows) ColumnTypeNullable(index int) (nullable, ok bool) {
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return true, true
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}
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// RowsColumnTypePrecisionScale may be implemented by Rows. It should return
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// the precision and scale for decimal types. If not applicable, ok should be
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// false. The following are examples of returned values for various types:
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//
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// decimal(38, 4) (38, 4, true)
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// int (0, 0, false)
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// decimal (math.MaxInt64, math.MaxInt64, true)
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func (r *rows) ColumnTypePrecisionScale(index int) (precision, scale int64, ok bool) {
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return 0, 0, false
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}
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// RowsColumnTypeScanType may be implemented by Rows. It should return the
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// value type that can be used to scan types into. For example, the database
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// column type "bigint" this should return "reflect.TypeOf(int64(0))".
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func (r *rows) ColumnTypeScanType(index int) reflect.Type {
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t, err := r.c.columnType(r.pstmt, index)
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if err != nil {
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return reflect.TypeOf("")
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}
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switch t {
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case sqlite3.SQLITE_INTEGER:
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switch r.decltypes[index] {
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case "BOOLEAN":
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return reflect.TypeOf(false)
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case "DATE", "DATETIME", "TIME", "TIMESTAMP":
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return reflect.TypeOf(time.Time{})
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default:
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return reflect.TypeOf(int64(0))
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}
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case sqlite3.SQLITE_FLOAT:
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return reflect.TypeOf(float64(0))
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case sqlite3.SQLITE_TEXT:
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if r.c.textToTime {
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switch r.decltypes[index] {
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case "DATE", "DATETIME", "TIME", "TIMESTAMP":
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return reflect.TypeOf(time.Time{})
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}
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}
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return reflect.TypeOf("")
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case sqlite3.SQLITE_BLOB:
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return reflect.TypeOf([]byte(nil))
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case sqlite3.SQLITE_NULL:
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return reflect.TypeOf(nil)
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default:
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return reflect.TypeOf("")
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}
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}
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// C documentation
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//
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// int sqlite3_reset(sqlite3_stmt *pStmt);
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func (c *conn) reset(pstmt uintptr) error {
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if rc := sqlite3.Xsqlite3_reset(c.tls, pstmt); rc != sqlite3.SQLITE_OK {
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return c.errstr(rc)
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}
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return nil
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}
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