dec_sixbit/
lib.rs

1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
#![doc = include_str!("../README.md")]

mod encode;
mod decode;
#[cfg(feature = "with-struct")]
mod struct_api;

pub use encode::{encode, encode_unchecked};
pub use decode::{decode, decode_unchecked};
#[cfg(feature = "with-struct")]
pub use struct_api::DecSixbit;

const MASK_TWO_BITS: u8 = 0b11;
const MASK_FOUR_BITS: u8 = 0b1111;
const MASK_SIX_BITS: u8 = 0b111111;
const SHIFT_TWO_BITS: u8 = 2;
const SHIFT_FOUR_BITS: u8 = 4;
const SHIFT_SIX_BITS: u8 = 6;
const ASCII_OFFSET: u8 = 32;

/// Represents errors that can occur during encoding or decoding operations.
#[derive(Debug, Clone, Copy, PartialEq, Eq, PartialOrd, Ord, Hash, thiserror::Error)]
pub enum Error {
    /// Occurs when encoding fails due to invalid character in input.
    #[error("invalid character in input (must be ASCII 32-95)")]
    InvalidCharacter,

    /// Occurs when decoding fails due to inconsistent input bytes and length.
    #[error("input bytes and length are inconsistent")]
    InvalidBytesLength,
}

#[cfg(test)]
mod tests {
    use super::*;

    #[cfg(feature = "with-struct")]
    use super::DecSixbit;

    #[test]
    fn test_packed_storage() {
        let input = "ABCD"; // 4 chars should pack into 3 bytes

        // Calculate expected values
        let a = 65 - 32; // = 33 = 0b100001
        let b = 66 - 32; // = 34 = 0b100010
        let c = 67 - 32; // = 35 = 0b100011
        let d = 68 - 32; // = 36 = 0b100100

        use std::io::Write;
        let stderr = std::io::stderr();
        let mut handle = stderr.lock();

        writeln!(handle, "Input SIXBIT values:").unwrap();
        writeln!(handle, "  A: dec={} bin={:06b}", a, a).unwrap();
        writeln!(handle, "  B: dec={} bin={:06b}", b, b).unwrap();
        writeln!(handle, "  C: dec={} bin={:06b}", c, c).unwrap();
        writeln!(handle, "  D: dec={} bin={:06b}", d, d).unwrap();

        // Correct expected bytes based on encode_core logic
        let expected = vec![0b10000110, 0b00101000, 0b11100100];
        writeln!(handle, "\nExpected packed bytes:").unwrap();
        writeln!(handle, "  byte 1 = {:08b} = (A<<2 | B>>4)", expected[0]).unwrap();
        writeln!(handle, "  byte 2 = {:08b} = (B<<4 | C>>2)", expected[1]).unwrap();
        writeln!(handle, "  byte 3 = {:08b} = (C<<6 | D)", expected[2]).unwrap();

        // Encapsulated API test
        #[cfg(feature = "with-struct")]
        {
            let sixbit = DecSixbit::new(input).unwrap();
            writeln!(handle, "\nActual packed bytes:  ").unwrap();
            writeln!(handle, "  byte 1 = {:08b}", sixbit.bytes[0]).unwrap();
            writeln!(handle, "  byte 2 = {:08b}", sixbit.bytes[1]).unwrap();
            writeln!(handle, "  byte 3 = {:08b}", sixbit.bytes[2]).unwrap();

            assert_eq!(sixbit.bytes, expected);
            assert_eq!(sixbit.len, 4);
        }
    }

    #[test]
    fn test_partial_packing() {
        let inputs = ["A", "AB", "ABC"];
        let expected_bytes = [
            vec![0b10000100], // "A" packed: [132]
            vec![0b10000110, 0b00100000], // "AB" packed: [134, 32]
            vec![0b10000110, 0b00101000, 0b11000000], // "ABC" packed: [134, 40, 192]
        ];

        for (input, expected) in inputs.iter().zip(expected_bytes.iter()) {
            let (bytes, len) = encode(input).unwrap();
            println!("\nTesting input: '{}' (length {})", input, input.len());

            // Display SIXBIT values
            let values: Vec<u8> = input.bytes().map(|b| b - 32).collect();
            print!("SIXBIT values: ");
            for b in &values {
                print!("{:02}={:06b} ", b, b);
            }
            println!("\nExpected bytes:");
            for (i, &b) in expected.iter().enumerate() {
                println!("  byte {} = {:08b} ({})", i + 1, b, b);
            }

            // Display actual encoded bytes
            println!("Got bytes:");
            for (i, &b) in bytes.iter().enumerate() {
                println!("  byte {} = {:08b} ({})", i + 1, b, b);
            }

            // Assertions
            assert_eq!(bytes, *expected, "Mismatch in encoded bytes for input '{}'", input);
            assert_eq!(len, input.len(), "Mismatch in length for input '{}'", input);
        }
    }

    #[test]
    fn test_encoding_decoding() {
        let inputs = [
            "HELLO WORLD",
            "TEST 123",
            " !\"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\\]^_",
        ];

        for input in inputs {
            let (bytes, len) = encode(input).unwrap();
            assert_eq!(len, input.len());

            let decoded = decode(&bytes, len).unwrap();
            assert_eq!(decoded, input);

            let decoded_unchecked = decode_unchecked(&bytes, len);
            assert_eq!(decoded_unchecked, input);

            #[cfg(feature = "with-struct")]
            {
                let sixbit = DecSixbit::new(input).unwrap();
                assert_eq!(sixbit.bytes, bytes);
                assert_eq!(sixbit.len, len);
                assert_eq!(sixbit.to_string(), decoded);
            }
        }
    }

    #[test]
    fn test_invalid_characters() {
        // Test character below range
        assert!(matches!(
            encode("\x1F"),
            Err(Error::InvalidCharacter)
        ));

        // Test character above range
        assert!(matches!(
            encode("abc"),
            Err(Error::InvalidCharacter)
        ));

        // Test non-ASCII character
        assert!(matches!(
            encode("こんにちは"),
            Err(Error::InvalidCharacter)
        ));
    }

    #[test]
    fn test_empty_string() {
        let (bytes, len) = encode("").unwrap();
        assert!(len == 0);
        assert!(bytes.is_empty());

        let decoded = decode(&bytes, len).unwrap();
        assert_eq!(decoded, "");

        let decoded_unchecked = decode_unchecked(&bytes, len);
        assert_eq!(decoded_unchecked, "");

        #[cfg(feature = "with-struct")]
        {
            let sixbit = DecSixbit::new("").unwrap();
            assert!(sixbit.is_empty());
            assert_eq!(sixbit.len, 0);
            assert!(sixbit.as_bytes().is_empty());

            let decoded = decode(&sixbit.bytes, sixbit.len).unwrap();
            assert_eq!(decoded, "");

            let decoded_unchecked = decode_unchecked(&sixbit.bytes, sixbit.len);
            assert_eq!(decoded_unchecked, "");
        }
    }

    #[cfg(feature = "with-struct")]
    #[test]
    fn test_default() {
        {
            let sixbit = DecSixbit::default();
            assert!(sixbit.is_empty());
            assert_eq!(sixbit.len, 0);
            assert!(sixbit.as_bytes().is_empty());
        }
    }

    #[cfg(feature = "with-struct")]
    #[test]
    fn test_as_ref() {
        {
            let input = "TEST";
            let sixbit = DecSixbit::new(input).unwrap();
            let bytes: &[u8] = sixbit.as_ref();
            assert_eq!(bytes, sixbit.as_bytes());
        }
    }

    #[cfg(feature = "with-struct")]
    #[test]
    fn test_try_from() {
        {
            let input = "TEST";
            let sixbit = DecSixbit::try_from(input).unwrap();
            assert_eq!(sixbit.to_string(), input);

            assert!(DecSixbit::try_from("invalid❌").is_err());
        }
    }

    #[cfg(feature = "with-struct")]
    #[test]
    fn test_from_str() {
        {
            let input = "TEST";
            let sixbit: DecSixbit = input.parse().unwrap();
            assert_eq!(sixbit.to_string(), input);

            let result: Result<DecSixbit, _> = "invalid❌".parse();
            assert!(result.is_err());
        }
    }

    #[test]
    fn test_decode_unchecked_integrity() {
        let input = "OPTIMIZATION TEST";
        let (bytes, len) = encode(input).unwrap();
        let decoded = decode(&bytes, len).unwrap();
        assert_eq!(decoded, input);

        let decoded_unchecked = decode_unchecked(&bytes, len);
        assert_eq!(decoded_unchecked, input);

        #[cfg(feature = "with-struct")]
        {
            let sixbit = DecSixbit::new(input).unwrap();
            let decoded = decode::decode(&sixbit.bytes, sixbit.len).unwrap();
            assert_eq!(decoded, input);

            let decoded_unchecked = decode_unchecked(&sixbit.bytes, sixbit.len);
            assert_eq!(decoded_unchecked, input);
        }
    }

    #[cfg(feature = "with-struct")]
    #[test]
    fn test_serde_serialization_readable() {
        let input = "TEST SERIALIZATION";
        let sixbit = DecSixbit::new(input).unwrap();

        // Serialize to JSON (readable format)
        let serialized = serde_json::to_string(&sixbit).expect("Failed to serialize to JSON");
        println!("Serialized JSON: {}", serialized);

        // Deserialize back
        let deserialized: DecSixbit =
            serde_json::from_str(&serialized).expect("Failed to deserialize from JSON");

        assert_eq!(sixbit, deserialized);
    }

    #[cfg(feature = "with-struct")]
    #[test]
    fn test_serde_deserialization_binary() {
        use bincode::Options;
        let my_options = bincode::DefaultOptions::new()
            .with_fixint_encoding()
            .allow_trailing_bytes();

        let input = "TEST BINARY DESERIALIZATION";
        let sixbit = DecSixbit::new(input).unwrap();

        // Serialize to binary using bincode
        let serialized = my_options.serialize(&sixbit).expect("Failed to serialize with bincode");
        println!("Serialized binary: {:?}", serialized);

        // Deserialize from binary
        let deserialized: DecSixbit =
            my_options.deserialize(&serialized).expect("Failed to deserialize from bincode");

        assert_eq!(sixbit, deserialized);
    }

    #[cfg(feature = "with-struct")]
    #[test]
    fn test_serde_readable_and_binary() {
        let input = "COMPLEX SERIALIZATION TEST";
        let sixbit = DecSixbit::new(input).unwrap();

        // Serialize to JSON
        let json = serde_json::to_string(&sixbit).expect("JSON serialization failed");

        // Deserialize from JSON
        let from_json: DecSixbit =
            serde_json::from_str(&json).expect("JSON deserialization failed");
        assert_eq!(sixbit, from_json);

        // Serialize to binary
        let binary = bincode::serialize(&sixbit).expect("Bincode serialization failed");

        // Deserialize from binary
        let from_binary: DecSixbit =
            bincode::deserialize(&binary).expect("Bincode deserialization failed");
        assert_eq!(sixbit, from_binary);
    }

    #[cfg(feature = "with-struct")]
    #[test]
    fn test_serde_roundtrip() {
        let inputs = [
            "",
            "HELLO",
            "WORLD!",
            "SERDE SERIALIZATION TEST 123",
            "SPECIAL CHARS: !\"#$%&'()*+,-./:;<=>?@[]^_[]",
        ];

        for input in &inputs {
            let sixbit = DecSixbit::new(input).expect("Failed to create DecSixbit");

            // Serialize to JSON
            let json = serde_json::to_string(&sixbit).expect("JSON serialization failed");

            // Deserialize from JSON
            let deserialized_json: DecSixbit =
                serde_json::from_str(&json).expect("JSON deserialization failed");
            assert_eq!(sixbit, deserialized_json, "JSON roundtrip failed for input '{}'", input);

            // Serialize to binary
            let binary = bincode::serialize(&sixbit).expect("Bincode serialization failed");

            // Deserialize from binary
            let deserialized_binary: DecSixbit =
                bincode::deserialize(&binary).expect("Bincode deserialization failed");
            assert_eq!(sixbit, deserialized_binary, "Binary roundtrip failed for input '{}'", input);
        }
    }

    #[cfg(feature = "with-struct")]
    #[test]
    fn test_trailing_spaces() {
        let input = "TESTTEST";
        let sixbit = DecSixbit::new(input).unwrap();
        assert_eq!(sixbit.to_string(), "TESTTEST");
        assert_eq!(sixbit.as_bytes().len(), 6);

        let input = "TEST    ";
        let sixbit = DecSixbit::new(input).unwrap();
        assert_eq!(sixbit.len(), 8);
        assert_eq!(sixbit.to_string(), "TEST    ");
        // The last byte contains DecSixbit::TRAILING_SPACE_MARKER
        assert_eq!(sixbit.as_bytes().len(), 7);
    }
}