mirror of
https://github.com/superseriousbusiness/gotosocial.git
synced 2024-12-28 01:56:30 +00:00
384 lines
10 KiB
Go
384 lines
10 KiB
Go
package sqlite3
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import (
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"context"
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"fmt"
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"strconv"
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"github.com/tetratelabs/wazero/api"
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"github.com/ncruces/go-sqlite3/internal/util"
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"github.com/ncruces/go-sqlite3/vfs"
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)
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// Config makes configuration changes to a database connection.
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// Only boolean configuration options are supported.
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// Called with no arg reads the current configuration value,
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// called with one arg sets and returns the new value.
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//
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// https://sqlite.org/c3ref/db_config.html
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func (c *Conn) Config(op DBConfig, arg ...bool) (bool, error) {
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if op < DBCONFIG_ENABLE_FKEY || op > DBCONFIG_REVERSE_SCANORDER {
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return false, MISUSE
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}
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// We need to call sqlite3_db_config, a variadic function.
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// We only support the `int int*` variants.
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// The int is a three-valued bool: -1 queries, 0/1 sets false/true.
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// The int* points to where new state will be written to.
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// The vararg is a pointer to an array containing these arguments:
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// an int and an int* pointing to that int.
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defer c.arena.mark()()
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argsPtr := c.arena.new(intlen + ptrlen)
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var flag int
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switch {
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case len(arg) == 0:
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flag = -1
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case arg[0]:
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flag = 1
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}
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util.WriteUint32(c.mod, argsPtr+0*ptrlen, uint32(flag))
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util.WriteUint32(c.mod, argsPtr+1*ptrlen, argsPtr)
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r := c.call("sqlite3_db_config", uint64(c.handle),
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uint64(op), uint64(argsPtr))
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return util.ReadUint32(c.mod, argsPtr) != 0, c.error(r)
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}
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// ConfigLog sets up the error logging callback for the connection.
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//
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// https://sqlite.org/errlog.html
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func (c *Conn) ConfigLog(cb func(code ExtendedErrorCode, msg string)) error {
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var enable uint64
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if cb != nil {
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enable = 1
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}
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r := c.call("sqlite3_config_log_go", enable)
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if err := c.error(r); err != nil {
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return err
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}
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c.log = cb
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return nil
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}
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func logCallback(ctx context.Context, mod api.Module, _, iCode, zMsg uint32) {
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if c, ok := ctx.Value(connKey{}).(*Conn); ok && c.log != nil {
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msg := util.ReadString(mod, zMsg, _MAX_LENGTH)
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c.log(xErrorCode(iCode), msg)
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}
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}
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// Log writes a message into the error log established by [Conn.ConfigLog].
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//
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// https://sqlite.org/c3ref/log.html
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func (c *Conn) Log(code ExtendedErrorCode, format string, a ...any) {
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if c.log != nil {
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c.log(code, fmt.Sprintf(format, a...))
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}
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}
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// FileControl allows low-level control of database files.
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// Only a subset of opcodes are supported.
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//
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// https://sqlite.org/c3ref/file_control.html
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func (c *Conn) FileControl(schema string, op FcntlOpcode, arg ...any) (any, error) {
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defer c.arena.mark()()
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ptr := c.arena.new(max(ptrlen, intlen))
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var schemaPtr uint32
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if schema != "" {
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schemaPtr = c.arena.string(schema)
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}
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var rc uint64
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var res any
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switch op {
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default:
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return nil, MISUSE
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case FCNTL_RESET_CACHE:
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rc = c.call("sqlite3_file_control",
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uint64(c.handle), uint64(schemaPtr),
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uint64(op), 0)
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case FCNTL_PERSIST_WAL, FCNTL_POWERSAFE_OVERWRITE:
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var flag int
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switch {
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case len(arg) == 0:
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flag = -1
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case arg[0]:
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flag = 1
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}
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util.WriteUint32(c.mod, ptr, uint32(flag))
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rc = c.call("sqlite3_file_control",
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uint64(c.handle), uint64(schemaPtr),
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uint64(op), uint64(ptr))
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res = util.ReadUint32(c.mod, ptr) != 0
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case FCNTL_CHUNK_SIZE:
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util.WriteUint32(c.mod, ptr, uint32(arg[0].(int)))
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rc = c.call("sqlite3_file_control",
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uint64(c.handle), uint64(schemaPtr),
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uint64(op), uint64(ptr))
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case FCNTL_RESERVE_BYTES:
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bytes := -1
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if len(arg) > 0 {
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bytes = arg[0].(int)
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}
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util.WriteUint32(c.mod, ptr, uint32(bytes))
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rc = c.call("sqlite3_file_control",
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uint64(c.handle), uint64(schemaPtr),
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uint64(op), uint64(ptr))
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res = int(util.ReadUint32(c.mod, ptr))
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case FCNTL_DATA_VERSION:
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rc = c.call("sqlite3_file_control",
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uint64(c.handle), uint64(schemaPtr),
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uint64(op), uint64(ptr))
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res = util.ReadUint32(c.mod, ptr)
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case FCNTL_LOCKSTATE:
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rc = c.call("sqlite3_file_control",
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uint64(c.handle), uint64(schemaPtr),
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uint64(op), uint64(ptr))
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res = vfs.LockLevel(util.ReadUint32(c.mod, ptr))
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case FCNTL_VFS_POINTER:
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rc = c.call("sqlite3_file_control",
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uint64(c.handle), uint64(schemaPtr),
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uint64(op), uint64(ptr))
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if rc == _OK {
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const zNameOffset = 16
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ptr = util.ReadUint32(c.mod, ptr)
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ptr = util.ReadUint32(c.mod, ptr+zNameOffset)
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name := util.ReadString(c.mod, ptr, _MAX_NAME)
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res = vfs.Find(name)
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}
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case FCNTL_FILE_POINTER, FCNTL_JOURNAL_POINTER:
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rc = c.call("sqlite3_file_control",
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uint64(c.handle), uint64(schemaPtr),
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uint64(op), uint64(ptr))
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if rc == _OK {
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const fileHandleOffset = 4
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ptr = util.ReadUint32(c.mod, ptr)
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ptr = util.ReadUint32(c.mod, ptr+fileHandleOffset)
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res = util.GetHandle(c.ctx, ptr)
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}
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}
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if err := c.error(rc); err != nil {
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return nil, err
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}
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return res, nil
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}
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// Limit allows the size of various constructs to be
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// limited on a connection by connection basis.
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//
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// https://sqlite.org/c3ref/limit.html
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func (c *Conn) Limit(id LimitCategory, value int) int {
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r := c.call("sqlite3_limit", uint64(c.handle), uint64(id), uint64(value))
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return int(int32(r))
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}
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// SetAuthorizer registers an authorizer callback with the database connection.
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//
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// https://sqlite.org/c3ref/set_authorizer.html
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func (c *Conn) SetAuthorizer(cb func(action AuthorizerActionCode, name3rd, name4th, schema, inner string) AuthorizerReturnCode) error {
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var enable uint64
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if cb != nil {
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enable = 1
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}
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r := c.call("sqlite3_set_authorizer_go", uint64(c.handle), enable)
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if err := c.error(r); err != nil {
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return err
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}
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c.authorizer = cb
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return nil
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}
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func authorizerCallback(ctx context.Context, mod api.Module, pDB uint32, action AuthorizerActionCode, zName3rd, zName4th, zSchema, zInner uint32) (rc AuthorizerReturnCode) {
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if c, ok := ctx.Value(connKey{}).(*Conn); ok && c.handle == pDB && c.authorizer != nil {
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var name3rd, name4th, schema, inner string
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if zName3rd != 0 {
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name3rd = util.ReadString(mod, zName3rd, _MAX_NAME)
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}
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if zName4th != 0 {
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name4th = util.ReadString(mod, zName4th, _MAX_NAME)
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}
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if zSchema != 0 {
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schema = util.ReadString(mod, zSchema, _MAX_NAME)
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}
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if zInner != 0 {
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inner = util.ReadString(mod, zInner, _MAX_NAME)
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}
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rc = c.authorizer(action, name3rd, name4th, schema, inner)
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}
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return rc
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}
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// Trace registers a trace callback function against the database connection.
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//
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// https://sqlite.org/c3ref/trace_v2.html
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func (c *Conn) Trace(mask TraceEvent, cb func(evt TraceEvent, arg1 any, arg2 any) error) error {
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r := c.call("sqlite3_trace_go", uint64(c.handle), uint64(mask))
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if err := c.error(r); err != nil {
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return err
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}
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c.trace = cb
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return nil
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}
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func traceCallback(ctx context.Context, mod api.Module, evt TraceEvent, pDB, pArg1, pArg2 uint32) (rc uint32) {
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if c, ok := ctx.Value(connKey{}).(*Conn); ok && c.handle == pDB && c.trace != nil {
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var arg1, arg2 any
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if evt == TRACE_CLOSE {
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arg1 = c
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} else {
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for _, s := range c.stmts {
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if pArg1 == s.handle {
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arg1 = s
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switch evt {
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case TRACE_STMT:
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arg2 = s.SQL()
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case TRACE_PROFILE:
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arg2 = int64(util.ReadUint64(mod, pArg2))
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}
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break
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}
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}
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}
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if arg1 != nil {
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_, rc = errorCode(c.trace(evt, arg1, arg2), ERROR)
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}
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}
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return rc
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}
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// WALCheckpoint checkpoints a WAL database.
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//
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// https://sqlite.org/c3ref/wal_checkpoint_v2.html
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func (c *Conn) WALCheckpoint(schema string, mode CheckpointMode) (nLog, nCkpt int, err error) {
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defer c.arena.mark()()
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nLogPtr := c.arena.new(ptrlen)
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nCkptPtr := c.arena.new(ptrlen)
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schemaPtr := c.arena.string(schema)
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r := c.call("sqlite3_wal_checkpoint_v2",
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uint64(c.handle), uint64(schemaPtr), uint64(mode),
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uint64(nLogPtr), uint64(nCkptPtr))
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nLog = int(int32(util.ReadUint32(c.mod, nLogPtr)))
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nCkpt = int(int32(util.ReadUint32(c.mod, nCkptPtr)))
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return nLog, nCkpt, c.error(r)
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}
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// WALAutoCheckpoint configures WAL auto-checkpoints.
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//
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// https://sqlite.org/c3ref/wal_autocheckpoint.html
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func (c *Conn) WALAutoCheckpoint(pages int) error {
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r := c.call("sqlite3_wal_autocheckpoint", uint64(c.handle), uint64(pages))
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return c.error(r)
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}
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// WALHook registers a callback function to be invoked
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// each time data is committed to a database in WAL mode.
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//
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// https://sqlite.org/c3ref/wal_hook.html
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func (c *Conn) WALHook(cb func(db *Conn, schema string, pages int) error) {
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var enable uint64
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if cb != nil {
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enable = 1
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}
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c.call("sqlite3_wal_hook_go", uint64(c.handle), enable)
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c.wal = cb
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}
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func walCallback(ctx context.Context, mod api.Module, _, pDB, zSchema uint32, pages int32) (rc uint32) {
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if c, ok := ctx.Value(connKey{}).(*Conn); ok && c.handle == pDB && c.wal != nil {
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schema := util.ReadString(mod, zSchema, _MAX_NAME)
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err := c.wal(c, schema, int(pages))
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_, rc = errorCode(err, ERROR)
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}
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return rc
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}
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// AutoVacuumPages registers a autovacuum compaction amount callback.
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//
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// https://sqlite.org/c3ref/autovacuum_pages.html
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func (c *Conn) AutoVacuumPages(cb func(schema string, dbPages, freePages, bytesPerPage uint) uint) error {
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var funcPtr uint32
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if cb != nil {
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funcPtr = util.AddHandle(c.ctx, cb)
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}
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r := c.call("sqlite3_autovacuum_pages_go", uint64(c.handle), uint64(funcPtr))
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return c.error(r)
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}
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func autoVacuumCallback(ctx context.Context, mod api.Module, pApp, zSchema, nDbPage, nFreePage, nBytePerPage uint32) uint32 {
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fn := util.GetHandle(ctx, pApp).(func(schema string, dbPages, freePages, bytesPerPage uint) uint)
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schema := util.ReadString(mod, zSchema, _MAX_NAME)
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return uint32(fn(schema, uint(nDbPage), uint(nFreePage), uint(nBytePerPage)))
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}
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// SoftHeapLimit imposes a soft limit on heap size.
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//
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// https://sqlite.org/c3ref/hard_heap_limit64.html
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func (c *Conn) SoftHeapLimit(n int64) int64 {
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return int64(c.call("sqlite3_soft_heap_limit64", uint64(n)))
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}
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// HardHeapLimit imposes a hard limit on heap size.
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//
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// https://sqlite.org/c3ref/hard_heap_limit64.html
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func (c *Conn) HardHeapLimit(n int64) int64 {
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return int64(c.call("sqlite3_hard_heap_limit64", uint64(n)))
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}
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// EnableChecksums enables checksums on a database.
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//
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// https://sqlite.org/cksumvfs.html
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func (c *Conn) EnableChecksums(schema string) error {
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r, err := c.FileControl(schema, FCNTL_RESERVE_BYTES)
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if err != nil {
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return err
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}
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if r == 8 {
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// Correct value, enabled.
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return nil
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}
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if r == 0 {
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// Default value, enable.
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_, err = c.FileControl(schema, FCNTL_RESERVE_BYTES, 8)
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if err != nil {
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return err
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}
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r, err = c.FileControl(schema, FCNTL_RESERVE_BYTES)
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if err != nil {
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return err
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}
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}
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if r != 8 {
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// Invalid value.
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return util.ErrorString("sqlite3: reserve bytes must be 8, is: " + strconv.Itoa(r.(int)))
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}
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// VACUUM the database.
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if schema != "" {
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err = c.Exec(`VACUUM ` + QuoteIdentifier(schema))
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} else {
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err = c.Exec(`VACUUM`)
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}
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if err != nil {
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return err
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}
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// Checkpoint the WAL.
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_, _, err = c.WALCheckpoint(schema, CHECKPOINT_RESTART)
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return err
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}
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