docs: registry
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@@ -1,3 +1,5 @@
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// Package registry defines a structure to hold all available representations,
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// engines, and conversions between them.
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package registry
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import (
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@@ -6,12 +8,15 @@ import (
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"maps"
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)
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// A Registry holds all representations, conversions, codecs, and engines
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// available to the program.
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type Registry struct {
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codecs map[string]Codec
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converter *Converter
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engines map[string]Engine
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}
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// New makes an empty registry.
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func New() *Registry {
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return &Registry{
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codecs: map[string]Codec{},
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@@ -20,6 +25,8 @@ func New() *Registry {
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}
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}
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// GetEngine finds an engine based on its name. Returns an error if an engine
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// with that name cannot be found.
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func (r Registry) GetEngine(name string) (Engine, error) {
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e, ok := r.engines[name]
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if !ok {
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@@ -29,10 +36,13 @@ func (r Registry) GetEngine(name string) (Engine, error) {
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return e, nil
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}
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// ListEngines returns all available engines to the registry.
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func (r Registry) ListEngines() iter.Seq[Engine] {
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return maps.Values(r.engines)
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}
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// GetDefaultEngine infers the preferred engine for a representation. Returns an
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// error if one cannot be chosen.
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func (r *Registry) GetDefaultEngine(id string) (Engine, error) {
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for _, engine := range r.engines {
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if engine.InType() == id {
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@@ -45,6 +55,12 @@ func (r *Registry) GetDefaultEngine(id string) (Engine, error) {
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// return nil, fmt.Errorf("no engine for '%s'", id)
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}
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// ConvertTo attempts to convert an expression of one type of representation to
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// another. Returns the converted expression, otherwise an error.
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//
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// It can convert between any two types of representations, given there is a
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// valid conversion path between them. It uses BFS to traverse a graph of
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// conversion edges, and converts along the shortest path.
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func (r *Registry) ConvertTo(expr Expr, outType string) (Expr, error) {
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path, err := r.ConversionPath(expr.Repr(), outType)
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if err != nil {
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@@ -62,6 +78,8 @@ func (r *Registry) ConvertTo(expr Expr, outType string) (Expr, error) {
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return result, err
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}
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// Marshal serializes an expression, given that representation has a codec.
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// Returns an error if the representation is not registered, or it has no codec.
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func (r *Registry) Marshal(expr Expr) (string, error) {
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m, ok := r.codecs[expr.Repr()]
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if !ok {
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@@ -71,6 +89,8 @@ func (r *Registry) Marshal(expr Expr) (string, error) {
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return m.Encode(expr)
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}
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// Unmarshal deserializes an expression. Returns an error if the representation
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// or a codec for it is not registered.
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func (r *Registry) Unmarshal(s string, outType string) (Expr, error) {
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m, ok := r.codecs[outType]
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if !ok {
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@@ -94,6 +114,9 @@ func reverse[T any](list []T) []T {
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return reversed
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}
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// ConversionPath attempts to find a set of valid conversions that (if applied)
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// convert one representation to another. Returns an error if no path can be
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// found.
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func (r *Registry) ConversionPath(from, to string) ([]Conversion, error) {
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backtrack := map[string]Conversion{}
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iteration := []string{from}
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@@ -1,3 +1,5 @@
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// Package convert defined some standard conversions between various types of
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// representations.
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package convert
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import (
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@@ -124,10 +126,13 @@ func decodeExression(l lambda.Expression) saccharine.Expression {
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}
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}
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// Lambda2Saccharine converts a pure lambda calculus expression into its
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// Saccharine counterpart.
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func Lambda2Saccharine(l lambda.Expression) (saccharine.Expression, error) {
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return decodeExression(l), nil
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}
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// Saccharine2Lambda desugars a saccharine expression into pure lambda calculus.
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func Saccharine2Lambda(s saccharine.Expression) (lambda.Expression, error) {
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return encodeExpression(s), nil
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}
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@@ -2,11 +2,17 @@
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// expression.
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package engine
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// A Process handles the reduction of a
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// A Process handles the reduction of a single expression.
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type Process[T any] interface {
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// Get the current state of the process.
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// Returns an error if the current state cannot be represented.
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Get() (T, error)
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// Step performs reduction(s) on the representation. If the number of steps
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// defined is less than zero, it will perform as many reductions as
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// possible. Returns whether a reduction was performed.
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Step(int) bool
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}
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// An Engine is an object that handles
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// An Engine is an function that generates reduction processes.
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type Engine[T any] = func(T) (Process[T], error)
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