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sqlite3/func.go

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package sqlite3
import (
"context"
"github.com/ncruces/go-sqlite3/internal/util"
"github.com/tetratelabs/wazero/api"
)
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// AnyCollationNeeded registers a fake collating function
// for any unknown collating sequence.
// The fake collating function works like BINARY.
//
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// This can be used to load schemas that contain
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// one or more unknown collating sequences.
func (c *Conn) AnyCollationNeeded() {
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c.call("sqlite3_anycollseq_init", uint64(c.handle), 0, 0)
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}
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// CreateCollation defines a new collating sequence.
//
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// https://sqlite.org/c3ref/create_collation.html
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func (c *Conn) CreateCollation(name string, fn func(a, b []byte) int) error {
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defer c.arena.mark()()
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namePtr := c.arena.string(name)
funcPtr := util.AddHandle(c.ctx, fn)
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r := c.call("sqlite3_create_collation_go",
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uint64(c.handle), uint64(namePtr), uint64(funcPtr))
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return c.error(r)
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}
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// CreateFunction defines a new scalar SQL function.
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//
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// https://sqlite.org/c3ref/create_function.html
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func (c *Conn) CreateFunction(name string, nArg int, flag FunctionFlag, fn ScalarFunction) error {
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defer c.arena.mark()()
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namePtr := c.arena.string(name)
funcPtr := util.AddHandle(c.ctx, fn)
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r := c.call("sqlite3_create_function_go",
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uint64(c.handle), uint64(namePtr), uint64(nArg),
uint64(flag), uint64(funcPtr))
return c.error(r)
}
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// ScalarFunction is the type of a scalar SQL function.
type ScalarFunction func(ctx Context, arg ...Value)
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// CreateWindowFunction defines a new aggregate or aggregate window SQL function.
// If fn returns a [WindowFunction], then an aggregate window function is created.
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// If fn returns an [io.Closer], it will be called to free resources.
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//
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// https://sqlite.org/c3ref/create_function.html
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func (c *Conn) CreateWindowFunction(name string, nArg int, flag FunctionFlag, fn func() AggregateFunction) error {
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defer c.arena.mark()()
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call := "sqlite3_create_aggregate_function_go"
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namePtr := c.arena.string(name)
funcPtr := util.AddHandle(c.ctx, fn)
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if _, ok := fn().(WindowFunction); ok {
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call = "sqlite3_create_window_function_go"
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}
r := c.call(call,
uint64(c.handle), uint64(namePtr), uint64(nArg),
uint64(flag), uint64(funcPtr))
return c.error(r)
}
// AggregateFunction is the interface an aggregate function should implement.
//
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// https://sqlite.org/appfunc.html
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type AggregateFunction interface {
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// Step is invoked to add a row to the current window.
// The function arguments, if any, corresponding to the row being added are passed to Step.
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Step(ctx Context, arg ...Value)
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// Value is invoked to return the current (or final) value of the aggregate.
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Value(ctx Context)
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}
// WindowFunction is the interface an aggregate window function should implement.
//
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// https://sqlite.org/windowfunctions.html
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type WindowFunction interface {
AggregateFunction
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// Inverse is invoked to remove the oldest presently aggregated result of Step from the current window.
// The function arguments, if any, are those passed to Step for the row being removed.
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Inverse(ctx Context, arg ...Value)
}
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// OverloadFunction overloads a function for a virtual table.
//
// https://sqlite.org/c3ref/overload_function.html
func (c *Conn) OverloadFunction(name string, nArg int) error {
defer c.arena.mark()()
namePtr := c.arena.string(name)
r := c.call("sqlite3_overload_function",
uint64(c.handle), uint64(namePtr), uint64(nArg))
return c.error(r)
}
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func destroyCallback(ctx context.Context, mod api.Module, pApp uint32) {
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util.DelHandle(ctx, pApp)
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}
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func compareCallback(ctx context.Context, mod api.Module, pApp, nKey1, pKey1, nKey2, pKey2 uint32) uint32 {
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fn := util.GetHandle(ctx, pApp).(func(a, b []byte) int)
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return uint32(fn(util.View(mod, pKey1, uint64(nKey1)), util.View(mod, pKey2, uint64(nKey2))))
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}
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func funcCallback(ctx context.Context, mod api.Module, pCtx, nArg, pArg uint32) {
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db := ctx.Value(connKey{}).(*Conn)
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fn := userDataHandle(db, pCtx).(ScalarFunction)
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fn(Context{db, pCtx}, callbackArgs(db, nArg, pArg)...)
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}
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func stepCallback(ctx context.Context, mod api.Module, pCtx, nArg, pArg uint32) {
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db := ctx.Value(connKey{}).(*Conn)
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fn := aggregateCtxHandle(db, pCtx, nil)
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fn.Step(Context{db, pCtx}, callbackArgs(db, nArg, pArg)...)
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}
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func finalCallback(ctx context.Context, mod api.Module, pCtx uint32) {
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var handle uint32
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db := ctx.Value(connKey{}).(*Conn)
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fn := aggregateCtxHandle(db, pCtx, &handle)
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fn.Value(Context{db, pCtx})
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if err := util.DelHandle(ctx, handle); err != nil {
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Context{db, pCtx}.ResultError(err)
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}
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}
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func valueCallback(ctx context.Context, mod api.Module, pCtx uint32) {
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db := ctx.Value(connKey{}).(*Conn)
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fn := aggregateCtxHandle(db, pCtx, nil)
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fn.Value(Context{db, pCtx})
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}
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func inverseCallback(ctx context.Context, mod api.Module, pCtx, nArg, pArg uint32) {
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db := ctx.Value(connKey{}).(*Conn)
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fn := aggregateCtxHandle(db, pCtx, nil).(WindowFunction)
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fn.Inverse(Context{db, pCtx}, callbackArgs(db, nArg, pArg)...)
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}
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func userDataHandle(db *Conn, pCtx uint32) any {
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pApp := uint32(db.call("sqlite3_user_data", uint64(pCtx)))
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return util.GetHandle(db.ctx, pApp)
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}
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func aggregateCtxHandle(db *Conn, pCtx uint32, close *uint32) AggregateFunction {
// On close, we're getting rid of the aggregate.
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// Don't allocate space to store it.
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var size uint64
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if close == nil {
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size = ptrlen
}
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ptr := uint32(db.call("sqlite3_aggregate_context", uint64(pCtx), size))
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// If we already have an aggregate, return it.
if ptr != 0 {
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if handle := util.ReadUint32(db.mod, ptr); handle != 0 {
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fn := util.GetHandle(db.ctx, handle).(AggregateFunction)
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if close != nil {
*close = handle
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}
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return fn
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}
}
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// Create a new aggregate, and store it if needed.
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fn := userDataHandle(db, pCtx).(func() AggregateFunction)()
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if ptr != 0 {
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util.WriteUint32(db.mod, ptr, util.AddHandle(db.ctx, fn))
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}
return fn
}
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func callbackArgs(db *Conn, nArg, pArg uint32) []Value {
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args := make([]Value, nArg)
for i := range args {
args[i] = Value{
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c: db,
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handle: util.ReadUint32(db.mod, pArg+ptrlen*uint32(i)),
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}
}
return args
}