evcc-io/cmd/tools/decorate.go

280 lines
7 KiB
Go

package main
import (
"bytes"
_ "embed"
"fmt"
"go/format"
"io"
"os"
"reflect"
"slices"
"strings"
"text/template"
"github.com/Masterminds/sprig/v3"
"github.com/evcc-io/evcc/api"
combinations "github.com/mxschmitt/golang-combinations"
"github.com/samber/lo"
"github.com/spf13/pflag"
"golang.org/x/tools/imports"
)
//go:generate go run ./decorate.go -f decorateTest -b api.Charger -t "api.MeterEnergy,TotalEnergy,func() (float64, error)" -t "api.PhaseSwitcher,Phases1p3p,func(int) error" -t "api.PhaseGetter,GetPhases,func() (int, error)"
//go:embed decorate.tpl
var srcTmpl string
type dynamicType struct {
typ, function, signature string
}
type typeStruct struct {
Type, ShortType, Signature, Function, VarName, ReturnTypes string
Params []string
}
var a struct {
api.Meter
api.MeterEnergy
api.PhaseCurrents
api.PhaseVoltages
api.PhasePowers
api.MaxACPower
api.PhaseSwitcher
api.PhaseGetter
api.Battery
api.BatteryCapacity
api.BatteryController
}
func typ(i any) string {
return reflect.TypeOf(i).Elem().String()
}
var dependents = map[string][]string{
typ(&a.Meter): {typ(&a.MeterEnergy), typ(&a.PhaseCurrents), typ(&a.PhaseVoltages), typ(&a.PhasePowers), typ(&a.MaxACPower)},
typ(&a.PhaseCurrents): {typ(&a.PhasePowers)}, // phase powers are only used to determine currents sign
typ(&a.PhaseSwitcher): {typ(&a.PhaseGetter)},
typ(&a.Battery): {typ(&a.BatteryCapacity), typ(&a.BatteryController)},
}
// hasIntersection returns if the slices intersect
func hasIntersection[T comparable](a, b []T) bool {
for _, el := range a {
if slices.Contains(b, el) {
return true
}
}
return false
}
func generate(out io.Writer, packageName, functionName, baseType string, dynamicTypes ...dynamicType) error {
types := make(map[string]typeStruct, len(dynamicTypes))
combos := make([]string, 0)
tmpl, err := template.New("gen").Funcs(sprig.FuncMap()).Funcs(template.FuncMap{
// contains checks if slice contains string
"contains": slices.Contains[[]string, string],
// ordered returns a slice of typeStructs ordered by dynamicType
"ordered": func() []typeStruct {
ordered := make([]typeStruct, 0)
for _, k := range dynamicTypes {
ordered = append(ordered, types[k.typ])
}
return ordered
},
"requiredType": func(c []string, typ string) bool {
for master, details := range dependents {
// exclude combinations where ...
// - master is part of the decorators
// - master is not part of the currently evaluated combination
// - details are part of the currently evaluated combination
if slices.Contains(combos, master) && !slices.Contains(c, master) && slices.Contains(details, typ) {
return false
}
}
return true
},
"empty": func() []string {
return nil
},
}).Parse(srcTmpl)
if err != nil {
return err
}
for _, dt := range dynamicTypes {
parts := strings.SplitN(dt.typ, ".", 2)
lastPart := parts[len(parts)-1]
openingBrace := strings.Index(dt.signature, "(")
closingBrace := strings.Index(dt.signature, ")")
paramsStr := dt.signature[openingBrace+1 : closingBrace]
var params []string
if paramsStr = strings.TrimSpace(paramsStr); len(paramsStr) > 0 {
params = strings.Split(paramsStr, ",")
}
types[dt.typ] = typeStruct{
Type: dt.typ,
ShortType: lastPart,
VarName: strings.ToLower(lastPart[:1]) + lastPart[1:],
Signature: dt.signature,
Function: dt.function,
Params: params,
ReturnTypes: dt.signature[closingBrace+1:],
}
combos = append(combos, dt.typ)
}
returnType := *ret
if returnType == "" {
returnType = baseType
}
shortBase := strings.TrimLeft(baseType, "*")
if baseTypeParts := strings.SplitN(baseType, ".", 2); len(baseTypeParts) > 1 {
shortBase = baseTypeParts[1]
}
validCombos := make([][]string, 0)
COMBO:
for _, c := range combinations.All(combos) {
for master, details := range dependents {
// prune combinations where ...
// - master is part of the decorators
// - master is not part of the currently evaluated combination
// - details are part of the currently evaluated combination
// ... and remove details from the combination
if slices.Contains(combos, master) && !slices.Contains(c, master) && hasIntersection(c, details) {
c = lo.Without(c, details...)
if len(c) == 0 {
continue COMBO
}
}
}
// prune duplicates
for _, v := range validCombos {
if slices.Equal(v, c) {
continue COMBO
}
}
validCombos = append(validCombos, c)
}
vars := struct {
API string
Package, Function string
BaseType, ShortBase string
ReturnType string
Types map[string]typeStruct
Combinations [][]string
}{
API: "github.com/evcc-io/evcc/api",
Package: packageName,
Function: functionName,
BaseType: baseType,
ShortBase: shortBase,
ReturnType: returnType,
Types: types,
Combinations: validCombos,
}
return tmpl.Execute(out, vars)
}
var (
target = pflag.StringP("out", "o", "", "output file")
pkg = pflag.StringP("package", "p", "", "package name")
function = pflag.StringP("function", "f", "decorate", "function name")
base = pflag.StringP("base", "b", "", "base type")
ret = pflag.StringP("return", "r", "", "return type")
types = pflag.StringArrayP("type", "t", nil, "comma-separated list of type definitions")
)
// Usage prints flags usage
func Usage() {
fmt.Fprintf(os.Stderr, "Usage of decorate:\n")
fmt.Fprintf(os.Stderr, "\ndecorate [flags] -type interface,interface function,function signature\n")
fmt.Fprintf(os.Stderr, "\nFlags:\n")
pflag.PrintDefaults()
}
func main() {
pflag.Usage = Usage
pflag.Parse()
// read target from go:generate
if gopkg, ok := os.LookupEnv("GOPACKAGE"); *pkg == "" && ok {
pkg = &gopkg
}
if *base == "" || *pkg == "" || len(*types) == 0 {
Usage()
os.Exit(2)
}
var dynamicTypes []dynamicType
for _, v := range *types {
split := strings.SplitN(v, ",", 3)
dt := dynamicType{split[0], split[1], split[2]}
dynamicTypes = append(dynamicTypes, dt)
}
var buf bytes.Buffer
if err := generate(&buf, *pkg, *function, *base, dynamicTypes...); err != nil {
fmt.Println(err)
os.Exit(2)
}
generated := strings.TrimSpace(buf.String()) + "\n"
var out io.Writer = os.Stdout
// read target from go:generate
if gofile, ok := os.LookupEnv("GOFILE"); *target == "" && ok {
gofile = strings.TrimSuffix(gofile, ".go") + "_decorators.go"
target = &gofile
}
var name string
if target != nil {
name = *target
if !strings.HasSuffix(name, ".go") {
name += ".go"
}
dst, err := os.Create(name)
if err != nil {
fmt.Println(err)
os.Exit(2)
}
defer dst.Close()
out = dst
}
formatted, err := format.Source([]byte(generated))
if err != nil {
formatted = []byte(generated)
}
formatted, err = imports.Process(name, formatted, nil)
if err != nil {
fmt.Println(err)
os.Exit(3)
}
if _, err := out.Write(formatted); err != nil {
fmt.Println(err)
os.Exit(2)
}
}