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toml: correct documentation (#11976)
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@ -5,7 +5,7 @@ module toml
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import time
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import time
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// Pretty much all json2 types plus time.Time
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// Pretty much all the same builtin types as the `json2.Any` type plus `time.Time`
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pub type Any = Null
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pub type Any = Null
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| []Any
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| []Any
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| bool
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| bool
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@ -58,12 +58,13 @@ pub fn (v Value) to_json() string {
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// found in a TOML document.
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// found in a TOML document.
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pub type DateTimeType = Date | DateTime | Time
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pub type DateTimeType = Date | DateTime | Time
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// str returns the `string` representation of the `DateTimeType` type.
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pub fn (dtt DateTimeType) str() string {
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pub fn (dtt DateTimeType) str() string {
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return dtt.text
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return dtt.text
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}
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}
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// value queries a value from the map.
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// value queries a value from the map.
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// `key` should be in "dotted" form e.g.: `"a.b.c.d"`
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// `key` should be in "dotted" form (`a.b.c`).
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pub fn (v map[string]Value) value(key string) &Value {
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pub fn (v map[string]Value) value(key string) &Value {
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null := &Value(Null{})
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null := &Value(Null{})
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key_split := key.split('.')
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key_split := key.split('.')
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@ -88,7 +89,7 @@ pub fn (v map[string]Value) value(key string) &Value {
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// TODO return error(@MOD + '.' + @STRUCT + '.' + @FN + ' key "$key" does not exist')
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// TODO return error(@MOD + '.' + @STRUCT + '.' + @FN + ' key "$key" does not exist')
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}
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}
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// value queries a value from the map.
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// exists returns true if the "dotted" `key` path exists in the map.
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pub fn (v map[string]Value) exists(key string) bool {
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pub fn (v map[string]Value) exists(key string) bool {
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key_split := key.split('.')
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key_split := key.split('.')
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if key_split[0] in v.keys() {
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if key_split[0] in v.keys() {
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@ -107,12 +108,14 @@ pub fn (v map[string]Value) exists(key string) bool {
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return false
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return false
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}
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}
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// Comment is the data representation of a TOML comment (`# This is a comment`).
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pub struct Comment {
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pub struct Comment {
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pub:
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pub:
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text string
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text string
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pos token.Position
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pos token.Position
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}
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}
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// str returns the `string` representation of the `Comment` type.
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pub fn (c Comment) str() string {
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pub fn (c Comment) str() string {
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mut s := typeof(c).name + '{\n'
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mut s := typeof(c).name + '{\n'
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s += ' text: \'$c.text\'\n'
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s += ' text: \'$c.text\'\n'
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@ -128,16 +131,20 @@ pub:
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pos token.Position
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pos token.Position
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}
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}
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// str returns the `string` representation of the `Null` type
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pub fn (n Null) str() string {
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pub fn (n Null) str() string {
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return n.text
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return n.text
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}
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}
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// Quoted is the data representation of a TOML quoted type (`"quoted-key" = "I'm a quoted value"`).
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// Quoted types can appear both as keys and values in TOML documents.
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pub struct Quoted {
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pub struct Quoted {
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pub:
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pub:
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text string
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text string
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pos token.Position
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pos token.Position
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}
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}
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// str returns the `string` representation of the `Quoted` type.
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pub fn (q Quoted) str() string {
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pub fn (q Quoted) str() string {
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mut str := typeof(q).name + '{\n'
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mut str := typeof(q).name + '{\n'
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str += ' text: \'$q.text\'\n'
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str += ' text: \'$q.text\'\n'
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@ -146,12 +153,16 @@ pub fn (q Quoted) str() string {
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return str
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return str
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}
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}
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// Bare is the data representation of a TOML bare type (`bare_key = ...`).
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// Bare types can appear only as keys in TOML documents. Otherwise they take the
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// form of Bool or Numbers.
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pub struct Bare {
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pub struct Bare {
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pub:
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pub:
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text string
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text string
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pos token.Position
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pos token.Position
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}
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}
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// str returns the `string` representation of the `Bare` type.
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pub fn (b Bare) str() string {
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pub fn (b Bare) str() string {
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mut str := typeof(b).name + '{\n'
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mut str := typeof(b).name + '{\n'
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str += ' text: \'$b.text\'\n'
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str += ' text: \'$b.text\'\n'
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@ -160,12 +171,16 @@ pub fn (b Bare) str() string {
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return str
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return str
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}
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}
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// Bool is the data representation of a TOML boolean type (`... = true`).
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// Bool types can appear only as values in TOML documents. Keys named `true` or `false`
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// are considered as Bare types.
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pub struct Bool {
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pub struct Bool {
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pub:
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pub:
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text string
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text string
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pos token.Position
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pos token.Position
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}
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}
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// str returns the `string` representation of the `Bool` type.
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pub fn (b Bool) str() string {
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pub fn (b Bool) str() string {
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mut str := typeof(b).name + '{\n'
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mut str := typeof(b).name + '{\n'
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str += ' text: \'$b.text\'\n'
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str += ' text: \'$b.text\'\n'
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@ -174,12 +189,16 @@ pub fn (b Bool) str() string {
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return str
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return str
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}
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}
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// Number is the data representation of a TOML number type (`25 = 5e2`).
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// Number types can appear both as keys and values in TOML documents.
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// Number can be integers, floats, infinite, NaN - they can have exponents (`5e2`) and be sign prefixed (`+2`).
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pub struct Number {
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pub struct Number {
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pub:
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pub:
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text string
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text string
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pos token.Position
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pos token.Position
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}
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}
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// str returns the `string` representation of the `Number` type.
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pub fn (n Number) str() string {
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pub fn (n Number) str() string {
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mut str := typeof(n).name + '{\n'
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mut str := typeof(n).name + '{\n'
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str += ' text: \'$n.text\'\n'
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str += ' text: \'$n.text\'\n'
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@ -188,12 +207,16 @@ pub fn (n Number) str() string {
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return str
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return str
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}
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}
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// Date is the data representation of a TOML date type (`YYYY-MM-DD`).
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// Date types can appear both as keys and values in TOML documents.
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// Keys named like dates e.g. `1980-12-29` are considered Bare key types.
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pub struct Date {
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pub struct Date {
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pub:
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pub:
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text string
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text string
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pos token.Position
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pos token.Position
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}
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}
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// str returns the `string` representation of the `Date` type.
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pub fn (d Date) str() string {
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pub fn (d Date) str() string {
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mut str := typeof(d).name + '{\n'
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mut str := typeof(d).name + '{\n'
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str += ' text: \'$d.text\'\n'
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str += ' text: \'$d.text\'\n'
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@ -202,6 +225,8 @@ pub fn (d Date) str() string {
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return str
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return str
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}
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}
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// Time is the data representation of a TOML time type (`HH:MM:SS.milli`).
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// Time types can appear only as values in TOML documents.
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pub struct Time {
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pub struct Time {
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pub:
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pub:
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text string
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text string
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@ -209,6 +234,7 @@ pub:
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pos token.Position
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pos token.Position
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}
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}
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// str returns the `string` representation of the `Time` type.
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pub fn (t Time) str() string {
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pub fn (t Time) str() string {
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mut str := typeof(t).name + '{\n'
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mut str := typeof(t).name + '{\n'
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str += ' text: \'$t.text\'\n'
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str += ' text: \'$t.text\'\n'
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@ -218,6 +244,8 @@ pub fn (t Time) str() string {
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return str
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return str
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}
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}
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// DateTime is the data representation of a TOML date-time type (`YYYY-MM-DDTHH:MM:SS.milli`).
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// DateTime types can appear only as values in TOML documents.
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pub struct DateTime {
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pub struct DateTime {
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pub:
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pub:
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text string
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text string
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@ -226,6 +254,7 @@ pub:
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time Time
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time Time
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}
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}
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// str returns the `string` representation of the `DateTime` type.
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pub fn (dt DateTime) str() string {
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pub fn (dt DateTime) str() string {
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mut str := typeof(dt).name + '{\n'
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mut str := typeof(dt).name + '{\n'
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str += ' text: \'$dt.text\'\n'
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str += ' text: \'$dt.text\'\n'
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@ -236,11 +265,13 @@ pub fn (dt DateTime) str() string {
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return str
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return str
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}
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}
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// EOF is the data representation of the end of the TOML document.
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pub struct EOF {
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pub struct EOF {
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pub:
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pub:
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pos token.Position
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pos token.Position
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}
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}
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// str returns the `string` representation of the `EOF` type.
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pub fn (e EOF) str() string {
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pub fn (e EOF) str() string {
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mut str := typeof(e).name + '{\n'
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mut str := typeof(e).name + '{\n'
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str += ' pos: $e.pos\n'
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str += ' pos: $e.pos\n'
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@ -14,6 +14,8 @@ pub struct Checker {
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scanner &scanner.Scanner
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scanner &scanner.Scanner
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}
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}
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// check checks the `ast.Value` and all it's children
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// for common errors.
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pub fn (c Checker) check(n &ast.Value) ? {
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pub fn (c Checker) check(n &ast.Value) ? {
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walker.walk(c, n) ?
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walker.walk(c, n) ?
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}
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}
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@ -11,6 +11,8 @@ pub:
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file_path string // '/path/to/file.toml'
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file_path string // '/path/to/file.toml'
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}
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}
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// validate returns an optional error if more than one of the fields
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// in `Config` has a non-default value (empty string).
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pub fn (c Config) validate() ? {
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pub fn (c Config) validate() ? {
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if c.file_path != '' && c.text != '' {
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if c.file_path != '' && c.text != '' {
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error(@MOD + '.' + @FN +
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error(@MOD + '.' + @FN +
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@ -9,9 +9,7 @@ import toml.util
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import toml.token
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import toml.token
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import toml.scanner
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import toml.scanner
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// Scanner contains the necessary fields for the state of the scan process.
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// Parser contains the necessary fields for keeping the state of the parsing process.
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// the task the scanner does is also refered to as "lexing" or "tokenizing".
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// The Scanner methods are based on much of the work in `vlib/strings/textscanner`.
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pub struct Parser {
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pub struct Parser {
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pub:
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pub:
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config Config
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config Config
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@ -31,8 +29,8 @@ mut:
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ast_root &ast.Root = &ast.Root{}
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ast_root &ast.Root = &ast.Root{}
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}
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}
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// Config is used to configure a Scanner instance.
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// Config is used to configure a Parser instance.
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// Only one of the fields `text` and `file_path` is allowed to be set at time of configuration.
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// `run_checks` is used to en- or disable running of the strict `checker.Checker` type checks.
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pub struct Config {
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pub struct Config {
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pub:
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pub:
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scanner &scanner.Scanner
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scanner &scanner.Scanner
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@ -116,10 +114,11 @@ fn (mut p Parser) expect(expected_token token.Kind) ? {
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}
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}
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}
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}
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// find_table returns a reference to a map if found in the root table given a "dotted" key ('a.b.c').
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// find_table returns a reference to a map if found in the *root* table given a "dotted" key (`a.b.c`).
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// If some segments of the key does not exist in the root table find_table will
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// If some segments of the key does not exist in the root table find_table will
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// allocate a new map for each segment. This behavior is needed because you can
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// allocate a new map for each segment. This behavior is needed because you can
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// reference maps by multiple keys "dotted" (separated by "." periods) in TOML documents.
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// reference maps by multiple keys "dotted" (separated by "." periods) in TOML documents.
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// See also `find_in_table`.
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pub fn (mut p Parser) find_table() ?&map[string]ast.Value {
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pub fn (mut p Parser) find_table() ?&map[string]ast.Value {
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util.printdbg(@MOD + '.' + @STRUCT + '.' + @FN, 'locating "$p.root_map_key" in map ${ptr_str(p.root_map)}')
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util.printdbg(@MOD + '.' + @STRUCT + '.' + @FN, 'locating "$p.root_map_key" in map ${ptr_str(p.root_map)}')
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mut t := &map[string]ast.Value{}
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mut t := &map[string]ast.Value{}
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@ -133,6 +132,8 @@ pub fn (mut p Parser) find_table() ?&map[string]ast.Value {
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return p.find_in_table(mut t, p.root_map_key)
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return p.find_in_table(mut t, p.root_map_key)
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}
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}
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// sub_table_key returns the logic parts of a dotted key (`a.b.c`) for
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// use with the `find_sub_table` method.
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pub fn (mut p Parser) sub_table_key(key string) (string, string) {
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pub fn (mut p Parser) sub_table_key(key string) (string, string) {
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mut ks := key.split('.')
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mut ks := key.split('.')
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last := ks.last()
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last := ks.last()
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@ -140,10 +141,11 @@ pub fn (mut p Parser) sub_table_key(key string) (string, string) {
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return ks.join('.'), last
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return ks.join('.'), last
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}
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}
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// find_sub_table returns a reference to a map if found in `table` given a "dotted" key ('aa.bb.cc').
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// find_sub_table returns a reference to a map if found in the *root* table given a "dotted" key (`a.b.c`).
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// If some segments of the key does not exist in the input map find_in_table will
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// If some segments of the key does not exist in the input map find_sub_table will
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// allocate a new map for the segment. This behavior is needed because you can
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// allocate a new map for the segment. This behavior is needed because you can
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// reference maps by multiple keys "dotted" (separated by "." periods) in TOML documents.
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// reference maps by multiple keys "dotted" (separated by "." periods) in TOML documents.
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// See also `find_in_table`.
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pub fn (mut p Parser) find_sub_table(key string) ?&map[string]ast.Value {
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pub fn (mut p Parser) find_sub_table(key string) ?&map[string]ast.Value {
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mut ky := p.root_map_key + '.' + key
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mut ky := p.root_map_key + '.' + key
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if p.root_map_key == '' {
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if p.root_map_key == '' {
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@ -161,7 +163,7 @@ pub fn (mut p Parser) find_sub_table(key string) ?&map[string]ast.Value {
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return p.find_in_table(mut t, ky)
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return p.find_in_table(mut t, ky)
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}
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}
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// find_in_table returns a reference to a map if found in `table` given a "dotted" key ('aa.bb.cc').
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// find_in_table returns a reference to a map if found in `table` given a "dotted" key (`a.b.c`).
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// If some segments of the key does not exist in the input map find_in_table will
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// If some segments of the key does not exist in the input map find_in_table will
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// allocate a new map for the segment. This behavior is needed because you can
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// allocate a new map for the segment. This behavior is needed because you can
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// reference maps by multiple keys "dotted" (separated by "." periods) in TOML documents.
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// reference maps by multiple keys "dotted" (separated by "." periods) in TOML documents.
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@ -206,6 +208,8 @@ pub fn (mut p Parser) find_in_table(mut table map[string]ast.Value, key string)
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return t
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return t
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}
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}
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// sub_key parses next tokens as sub/nested keys. This is the also referred to as
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// a "dotted" key (`a.b.c`). sub_key returns a string in dotted form.
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pub fn (mut p Parser) sub_key() ?string {
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pub fn (mut p Parser) sub_key() ?string {
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util.printdbg(@MOD + '.' + @STRUCT + '.' + @FN, 'parsing nested key...')
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util.printdbg(@MOD + '.' + @STRUCT + '.' + @FN, 'parsing nested key...')
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key := p.key() ?
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key := p.key() ?
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@ -67,9 +67,9 @@ pub fn parse_text(text string) ?Doc {
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}
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}
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}
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}
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// parse parses the TOML document provided in `input`.
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// parse parses the TOML document provided in `toml`.
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// parse automatically try to determine if the type of `input` is a file or text.
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// parse automatically try to determine if the type of `toml` is a file or text.
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// For explicit parsing of input see `parse_file` or `parse_text`.
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// For explicit parsing of input types see `parse_file` or `parse_text`.
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pub fn parse(toml string) ?Doc {
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pub fn parse(toml string) ?Doc {
|
||||||
mut input_config := input.Config{}
|
mut input_config := input.Config{}
|
||||||
if !toml.contains('\n') && os.is_file(toml) {
|
if !toml.contains('\n') && os.is_file(toml) {
|
||||||
@ -95,7 +95,7 @@ pub fn parse(toml string) ?Doc {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
// to_json returns a compact json string of the complete document
|
// to_json returns a compact json string of the complete document.
|
||||||
pub fn (d Doc) to_json() string {
|
pub fn (d Doc) to_json() string {
|
||||||
return d.ast.to_json()
|
return d.ast.to_json()
|
||||||
}
|
}
|
||||||
@ -119,7 +119,7 @@ fn (d Doc) ast_to_any(value ast.Value) Any {
|
|||||||
return Any(Null{})
|
return Any(Null{})
|
||||||
// TODO decide this
|
// TODO decide this
|
||||||
// panic(@MOD + '.' + @STRUCT + '.' + @FN +
|
// panic(@MOD + '.' + @STRUCT + '.' + @FN +
|
||||||
// ' failed converting "$date_str" to iso8601: $err')
|
// ' failed converting "$date_str" to rfc3339: $err')
|
||||||
}
|
}
|
||||||
} else if value is ast.Time {
|
} else if value is ast.Time {
|
||||||
time_str := (value as ast.Time).text
|
time_str := (value as ast.Time).text
|
||||||
|
Loading…
Reference in New Issue
Block a user