evcc-io/util/templates/template.go

418 lines
11 KiB
Go

package templates
import (
"bytes"
_ "embed"
"fmt"
"slices"
"strconv"
"strings"
"testing"
"text/template"
"github.com/Masterminds/sprig/v3"
"github.com/spf13/cast"
)
// Template describes is a proxy device for use with cli and automated testing
type Template struct {
Template string
Deprecated bool `json:"-"`
Auth map[string]any `json:",omitempty"` // OAuth parameters (if required)
Group string `json:",omitempty"` // the group this template belongs to, references groupList entries
Covers []string `json:",omitempty"` // list of covered outdated template names
Products []Product `json:",omitempty"` // list of products this template is compatible with
Capabilities []string `json:",omitempty"`
Countries []CountryCode `json:",omitempty"` // list of countries supported by this template
Requirements Requirements `json:",omitempty"`
Params []Param `json:",omitempty"`
Render string `json:"-"` // rendering template
}
// UpdateParamWithDefaults adds default values to specific param name entries
func (t *Template) UpdateParamsWithDefaults() error {
for i, p := range t.Params {
if index, resultMapItem := ConfigDefaults.ParamByName(strings.ToLower(p.Name)); index > -1 {
t.Params[i].OverwriteProperties(resultMapItem)
}
}
return nil
}
// UpdateModbusParamsWithDefaults populates modbus param fields with global defaults
// when device-specific values are not set (zero/empty).
func (t *Template) UpdateModbusParamsWithDefaults() error {
idx, modbusParam := t.ParamByName(ParamModbus)
if idx == -1 || len(modbusParam.Choice) == 0 {
return nil
}
if modbusParam.ID == 0 {
modbusParam.ID = cast.ToInt(ConfigDefaults.ModbusDefault(ModbusParamId))
}
if modbusParam.Baudrate == 0 {
modbusParam.Baudrate = cast.ToInt(ConfigDefaults.ModbusDefault(ModbusParamBaudrate))
}
if modbusParam.Comset == "" {
modbusParam.Comset = cast.ToString(ConfigDefaults.ModbusDefault(ModbusParamComset))
}
if modbusParam.Port == 0 {
modbusParam.Port = cast.ToInt(ConfigDefaults.ModbusDefault(ModbusParamPort))
}
t.Params[idx] = modbusParam
return nil
}
func (t *Template) SortRequiredParamsFirst() error {
slices.SortStableFunc(t.Params, func(a, b Param) int {
if a.Required && !b.Required {
return -1
}
if b.Required && !a.Required {
return +1
}
return 0
})
return nil
}
// validate the template (only rudimentary for now)
func (t *Template) Validate() error {
for _, c := range t.Capabilities {
if !slices.Contains(ValidCapabilities, c) {
return fmt.Errorf("invalid capability: '%s'", c)
}
}
for _, c := range t.Countries {
if !c.IsValid() {
return fmt.Errorf("invalid country code: '%s'", c)
}
}
for _, r := range t.Requirements.EVCC {
if !slices.Contains(ValidRequirements, r) {
return fmt.Errorf("invalid requirement: '%s'", r)
}
}
for _, p := range t.Params {
if p.IsDeprecated() {
continue
}
// Validate that a param cannot be both masked and private
if p.Mask && p.Private {
return fmt.Errorf("param %s: 'mask' and 'private' cannot be used together. Use 'mask' for sensitive data like passwords/tokens that should be hidden in UI. Use 'private' for personal data like emails/locations that should only be redacted from bug reports", p.Name)
}
if p.Description.String("en") == "" || p.Description.String("de") == "" {
return fmt.Errorf("param %s: description can't be empty", p.Name)
}
maxLength := 50
actualLength := max(len(p.Description.String("en")), len(p.Description.String("de")))
if actualLength > maxLength {
return fmt.Errorf("param %s: description too long (%d/%d allowed)- use help instead", p.Name, actualLength, maxLength)
}
switch p.Name {
case ParamUsage:
for _, c := range p.Choice {
if !slices.Contains(UsageStrings(), c) {
return fmt.Errorf("invalid usage: '%s'", c)
}
}
case ParamModbus:
for _, c := range p.Choice {
if !slices.Contains(ValidModbusChoices, c) {
return fmt.Errorf("invalid modbus type: '%s'", c)
}
}
}
// validate pattern examples against pattern
if p.Pattern != nil && p.Pattern.Regex != "" && len(p.Pattern.Examples) > 0 {
for _, example := range p.Pattern.Examples {
if err := p.Pattern.Validate(example); err != nil {
return fmt.Errorf("param %s: pattern example %q is invalid: pattern=%q", p.Name, example, p.Pattern.Regex)
}
}
}
}
return nil
}
// add the referenced base Params and overwrite existing ones
func (t *Template) ResolvePresets() error {
currentParams := make([]Param, len(t.Params))
copy(currentParams, t.Params)
t.Params = []Param{}
for _, p := range currentParams {
if p.Preset != "" {
preset, ok := ConfigDefaults.Presets[p.Preset]
if !ok {
return fmt.Errorf("could not find preset definition: %s", p.Preset)
}
for _, pp := range preset {
if i, _ := t.ParamByName(pp.Name); i > -1 {
return fmt.Errorf("parameter %s must not be defined before containing preset %s", pp.Name, p.Preset)
}
}
t.Params = append(t.Params, preset...)
continue
}
if i, _ := t.ParamByName(p.Name); i > -1 {
// take the preset values as a base and overwrite it with param values
p.OverwriteProperties(t.Params[i])
t.Params[i] = p
} else {
t.Params = append(t.Params, p)
}
}
return nil
}
// check if the provided group exists
func (t *Template) ResolveGroup() error {
if t.Group == "" {
return nil
}
_, ok := ConfigDefaults.DeviceGroups[t.Group]
if !ok {
return fmt.Errorf("could not find devicegroup definition: %s", t.Group)
}
return nil
}
// return the language specific group title
func (t *Template) GroupTitle(lang string) string {
tl := ConfigDefaults.DeviceGroups[t.Group]
return tl.String(lang)
}
// Defaults returns a map of default values for the template
func (t *Template) Defaults(renderMode int) map[string]any {
values := make(map[string]any, len(t.Params))
for _, p := range t.Params {
values[p.Name] = p.DefaultValue(renderMode)
}
return values
}
// SetParamDefault updates the default value of a param
func (t *Template) SetParamDefault(name string, value string) {
for i, p := range t.Params {
if p.Name == name {
t.Params[i].Default = value
return
}
}
}
// return the param with the given name
func (t *Template) ParamByName(name string) (int, Param) {
for i, p := range t.Params {
if strings.EqualFold(p.Name, name) {
return i, p
}
}
return -1, Param{}
}
// Usages returns the list of supported usages
func (t *Template) Usages() []string {
if i, p := t.ParamByName(ParamUsage); i > -1 {
return p.Choice
}
return nil
}
// return all modbus choices defined in the template
func (t *Template) ModbusChoices() []string {
if i, p := t.ParamByName(ParamModbus); i > -1 {
return p.Choice
}
return nil
}
//go:embed proxy.tpl
var proxyTmpl string
// RenderProxyWithValues renders the proxy template
func (t *Template) RenderProxyWithValues(values map[string]any, lang string) ([]byte, error) {
tmpl, err := template.New("yaml").Funcs(sprig.FuncMap()).Parse(proxyTmpl)
if err != nil {
panic(err)
}
t.ModbusParams("", values)
for index, p := range t.Params {
v, ok := values[p.Name]
if !ok {
continue
}
switch p.Type {
case TypeList:
for _, e := range v.([]string) {
t.Params[index].Values = append(p.Values, p.yamlQuote(e))
}
default:
switch v := v.(type) {
case string:
t.Params[index].Value = p.yamlQuote(v)
case int:
t.Params[index].Value = strconv.Itoa(v)
}
}
}
// remove params with no values
var newParams []Param
for _, param := range t.Params {
if !param.IsRequired() {
switch param.Type {
case TypeList:
if len(param.Values) == 0 {
continue
}
default:
if param.Value == "" {
continue
}
}
}
newParams = append(newParams, param)
}
t.Params = newParams
out := new(bytes.Buffer)
data := map[string]any{
"Template": t.Template,
"Params": t.Params,
}
err = tmpl.Execute(out, data)
return bytes.TrimSpace(out.Bytes()), err
}
// RenderResult renders the result template to instantiate the proxy
func (t *Template) RenderResult(renderMode int, other map[string]any) ([]byte, map[string]any, error) {
values := t.Defaults(renderMode)
if err := mergeMaps(other, values); err != nil {
return nil, values, err
}
t.ModbusValues(renderMode, values)
res := make(map[string]any)
var usage string
for k, v := range values {
if strings.ToLower(k) == "usage" {
usage = strings.ToLower(cast.ToString(v))
break
}
}
// TODO this is an utterly horrible hack
//
// When decoding the actual values ("other" parameter) into the
// defaults-populated map, mismatching key case will create multiple
// map entries for the same parameter.
// The code below tries to select the best, i.e. non-empty, value for the
// parameter and assigns it to the result key.
// The actual key name is taken from the parameter to make it unique.
// Since predefined properties are not matched by actual parameters using
// ParamByName(), the lower case key name is used instead.
// All keys *must* be assigned or rendering will create "<no value>" artifacts. For this reason,
// deprecated parameters (that may still be rendered) must be evaluated, too.
for key, val := range values {
out := strings.ToLower(key)
i, p := t.ParamByName(key)
if i == -1 {
if !slices.Contains(predefinedTemplateProperties, out) {
return nil, values, fmt.Errorf("invalid key: %s", key)
}
} else {
out = p.Name
}
// TODO move yamlQuote to explicit quoting in templates, see https://github.com/evcc-io/evcc/issues/10742
switch typed := val.(type) {
case []any:
var list []string
for _, v := range typed {
list = append(list, p.yamlQuote(fmt.Sprintf("%v", v)))
}
if res[out] == nil || len(res[out].([]any)) == 0 {
res[out] = list
}
case []string:
var list []string
for _, v := range typed {
list = append(list, p.yamlQuote(v))
}
if res[out] == nil || len(res[out].([]string)) == 0 {
res[out] = list
}
default:
if res[out] == nil || res[out].(string) == "" {
// prevent rendering nil interfaces as "<nil>" string
var s string
if val != nil {
s = p.yamlQuote(fmt.Sprintf("%v", val))
}
// validate required fields from yaml
if p.IsRequired() && p.IsZero(s) && (renderMode == RenderModeUnitTest || renderMode == RenderModeInstance && !testing.Testing()) {
// validate required per usage
if len(p.Usages) == 0 || slices.Contains(p.Usages, usage) {
return nil, nil, fmt.Errorf("missing required `%s`", p.Name)
}
}
// validate pattern if defined
if s != "" && p.Pattern != nil && p.Pattern.Regex != "" {
if err := p.Pattern.Validate(s); err != nil {
return nil, nil, fmt.Errorf("%s: %w", p.Name, err)
}
}
res[out] = s
}
}
}
tmpl, err := FuncMap(template.Must(baseTmpl.Clone())).Parse(t.Render)
if err != nil {
return nil, res, err
}
out := new(bytes.Buffer)
err = tmpl.Execute(out, res)
return bytes.TrimSpace(out.Bytes()), res, err
}