1 use std::collections::HashMap;
2
3 use winnow::prelude::*;
4 use winnow::{
5 ascii::{alphanumeric1 as alphanumeric, space0 as space},
6 combinator::opt,
7 combinator::repeat,
8 combinator::{delimited, terminated},
9 token::{take_till, take_while},
10 };
11
12 pub type Stream<'i> = &'i str;
13
categories<'s>( input: &mut Stream<'s>, ) -> PResult<HashMap<&'s str, HashMap<&'s str, &'s str>>>14 pub fn categories<'s>(
15 input: &mut Stream<'s>,
16 ) -> PResult<HashMap<&'s str, HashMap<&'s str, &'s str>>> {
17 repeat(0.., category_and_keys).parse_next(input)
18 }
19
category_and_keys<'s>(i: &mut Stream<'s>) -> PResult<(&'s str, HashMap<&'s str, &'s str>)>20 fn category_and_keys<'s>(i: &mut Stream<'s>) -> PResult<(&'s str, HashMap<&'s str, &'s str>)> {
21 (category, keys_and_values).parse_next(i)
22 }
23
category<'s>(i: &mut Stream<'s>) -> PResult<&'s str>24 fn category<'s>(i: &mut Stream<'s>) -> PResult<&'s str> {
25 terminated(
26 delimited('[', take_while(0.., |c| c != ']'), ']'),
27 opt(take_while(1.., [' ', '\r', '\n'])),
28 )
29 .parse_next(i)
30 }
31
keys_and_values<'s>(input: &mut Stream<'s>) -> PResult<HashMap<&'s str, &'s str>>32 fn keys_and_values<'s>(input: &mut Stream<'s>) -> PResult<HashMap<&'s str, &'s str>> {
33 repeat(0.., key_value).parse_next(input)
34 }
35
key_value<'s>(i: &mut Stream<'s>) -> PResult<(&'s str, &'s str)>36 fn key_value<'s>(i: &mut Stream<'s>) -> PResult<(&'s str, &'s str)> {
37 let key = alphanumeric.parse_next(i)?;
38 let _ = (opt(space), "=", opt(space)).parse_next(i)?;
39 let val = take_till(0.., is_line_ending_or_comment).parse_next(i)?;
40 let _ = opt(space).parse_next(i)?;
41 let _ = opt((";", till_line_ending)).parse_next(i)?;
42 let _ = opt(space_or_line_ending).parse_next(i)?;
43
44 Ok((key, val))
45 }
46
is_line_ending_or_comment(chr: char) -> bool47 fn is_line_ending_or_comment(chr: char) -> bool {
48 chr == ';' || chr == '\n'
49 }
50
till_line_ending<'s>(i: &mut Stream<'s>) -> PResult<&'s str>51 fn till_line_ending<'s>(i: &mut Stream<'s>) -> PResult<&'s str> {
52 take_while(0.., |c| c != '\r' && c != '\n').parse_next(i)
53 }
54
space_or_line_ending<'s>(i: &mut Stream<'s>) -> PResult<&'s str>55 fn space_or_line_ending<'s>(i: &mut Stream<'s>) -> PResult<&'s str> {
56 take_while(1.., [' ', '\r', '\n']).parse_next(i)
57 }
58
59 #[test]
parse_category_test()60 fn parse_category_test() {
61 let ini_file = "[category]
62
63 parameter=value
64 key = value2";
65
66 let ini_without_category = "parameter=value
67 key = value2";
68
69 let res = category.parse_peek(ini_file);
70 println!("{:?}", res);
71 match res {
72 Ok((i, o)) => println!("i: {} | o: {:?}", i, o),
73 _ => println!("error"),
74 }
75
76 assert_eq!(res, Ok((ini_without_category, "category")));
77 }
78
79 #[test]
parse_key_value_test()80 fn parse_key_value_test() {
81 let ini_file = "parameter=value
82 key = value2";
83
84 let ini_without_key_value = "key = value2";
85
86 let res = key_value.parse_peek(ini_file);
87 println!("{:?}", res);
88 match res {
89 Ok((i, (o1, o2))) => println!("i: {} | o: ({:?},{:?})", i, o1, o2),
90 _ => println!("error"),
91 }
92
93 assert_eq!(res, Ok((ini_without_key_value, ("parameter", "value"))));
94 }
95
96 #[test]
parse_key_value_with_space_test()97 fn parse_key_value_with_space_test() {
98 let ini_file = "parameter = value
99 key = value2";
100
101 let ini_without_key_value = "key = value2";
102
103 let res = key_value.parse_peek(ini_file);
104 println!("{:?}", res);
105 match res {
106 Ok((i, (o1, o2))) => println!("i: {} | o: ({:?},{:?})", i, o1, o2),
107 _ => println!("error"),
108 }
109
110 assert_eq!(res, Ok((ini_without_key_value, ("parameter", "value"))));
111 }
112
113 #[test]
parse_key_value_with_comment_test()114 fn parse_key_value_with_comment_test() {
115 let ini_file = "parameter=value;abc
116 key = value2";
117
118 let ini_without_key_value = "key = value2";
119
120 let res = key_value.parse_peek(ini_file);
121 println!("{:?}", res);
122 match res {
123 Ok((i, (o1, o2))) => println!("i: {} | o: ({:?},{:?})", i, o1, o2),
124 _ => println!("error"),
125 }
126
127 assert_eq!(res, Ok((ini_without_key_value, ("parameter", "value"))));
128 }
129
130 #[test]
parse_multiple_keys_and_values_test()131 fn parse_multiple_keys_and_values_test() {
132 let ini_file = "parameter=value;abc
133
134 key = value2
135
136 [category]";
137
138 let ini_without_key_value = "[category]";
139
140 let res = keys_and_values.parse_peek(ini_file);
141 println!("{:?}", res);
142 match res {
143 Ok((i, ref o)) => println!("i: {} | o: {:?}", i, o),
144 _ => println!("error"),
145 }
146
147 let mut expected: HashMap<&str, &str> = HashMap::new();
148 expected.insert("parameter", "value");
149 expected.insert("key", "value2");
150 assert_eq!(res, Ok((ini_without_key_value, expected)));
151 }
152
153 #[test]
parse_category_then_multiple_keys_and_values_test()154 fn parse_category_then_multiple_keys_and_values_test() {
155 //FIXME: there can be an empty line or a comment line after a category
156 let ini_file = "[abcd]
157 parameter=value;abc
158
159 key = value2
160
161 [category]";
162
163 let ini_after_parser = "[category]";
164
165 let res = category_and_keys.parse_peek(ini_file);
166 println!("{:?}", res);
167 match res {
168 Ok((i, ref o)) => println!("i: {} | o: {:?}", i, o),
169 _ => println!("error"),
170 }
171
172 let mut expected_h: HashMap<&str, &str> = HashMap::new();
173 expected_h.insert("parameter", "value");
174 expected_h.insert("key", "value2");
175 assert_eq!(res, Ok((ini_after_parser, ("abcd", expected_h))));
176 }
177
178 #[test]
parse_multiple_categories_test()179 fn parse_multiple_categories_test() {
180 let ini_file = "[abcd]
181
182 parameter=value;abc
183
184 key = value2
185
186 [category]
187 parameter3=value3
188 key4 = value4
189 ";
190
191 let res = categories.parse_peek(ini_file);
192 //println!("{:?}", res);
193 match res {
194 Ok((i, ref o)) => println!("i: {} | o: {:?}", i, o),
195 _ => println!("error"),
196 }
197
198 let mut expected_1: HashMap<&str, &str> = HashMap::new();
199 expected_1.insert("parameter", "value");
200 expected_1.insert("key", "value2");
201 let mut expected_2: HashMap<&str, &str> = HashMap::new();
202 expected_2.insert("parameter3", "value3");
203 expected_2.insert("key4", "value4");
204 let mut expected_h: HashMap<&str, HashMap<&str, &str>> = HashMap::new();
205 expected_h.insert("abcd", expected_1);
206 expected_h.insert("category", expected_2);
207 assert_eq!(res, Ok(("", expected_h)));
208 }
209