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dvb_si/descriptors/
network_name.rs

1//! Network Name Descriptor — ETSI EN 300 468 §6.2.28 (tag 0x40).
2
3use crate::error::{Error, Result};
4use crate::text::DvbText;
5use crate::traits::Descriptor;
6use dvb_common::{Parse, Serialize};
7
8/// Wire tag for the Network Name Descriptor.
9pub const TAG: u8 = 0x40;
10
11/// Header length (tag byte + length byte, no payload).
12pub const HEADER_LEN: usize = 2;
13
14/// Network Name Descriptor (tag 0x40). Carries the human-readable name of
15/// a DVB network in its NIT's `network_descriptors_loop`.
16#[derive(Debug, Clone, PartialEq, Eq)]
17#[cfg_attr(feature = "serde", derive(serde::Serialize))] // Deserialize dropped: DvbText is serialize-only
18pub struct NetworkNameDescriptor<'a> {
19    /// DVB Annex-A encoded network name (EN 300 468 §6.2.28).
20    pub network_name: DvbText<'a>,
21}
22
23impl<'a> Parse<'a> for NetworkNameDescriptor<'a> {
24    type Error = crate::error::Error;
25    fn parse(bytes: &'a [u8]) -> Result<Self> {
26        if bytes.len() < HEADER_LEN {
27            return Err(Error::BufferTooShort {
28                need: HEADER_LEN,
29                have: bytes.len(),
30                what: "network name descriptor header",
31            });
32        }
33
34        let tag = bytes[0];
35        if tag != TAG {
36            return Err(Error::InvalidDescriptor {
37                tag,
38                reason: "expected tag 0x40",
39            });
40        }
41
42        let length = bytes[1] as usize;
43        let total = HEADER_LEN + length;
44
45        if bytes.len() < total {
46            return Err(Error::BufferTooShort {
47                need: total,
48                have: bytes.len(),
49                what: "network name descriptor payload",
50            });
51        }
52
53        Ok(NetworkNameDescriptor {
54            network_name: DvbText::new(&bytes[HEADER_LEN..total]),
55        })
56    }
57}
58
59impl Serialize for NetworkNameDescriptor<'_> {
60    type Error = crate::error::Error;
61    fn serialized_len(&self) -> usize {
62        HEADER_LEN + self.network_name.len()
63    }
64
65    fn serialize_into(&self, buf: &mut [u8]) -> Result<usize> {
66        let need = self.serialized_len();
67        if buf.len() < need {
68            return Err(Error::OutputBufferTooSmall {
69                need,
70                have: buf.len(),
71            });
72        }
73
74        buf[0] = TAG;
75        buf[1] = self.network_name.len() as u8;
76        buf[HEADER_LEN..need].copy_from_slice(self.network_name.raw());
77
78        Ok(need)
79    }
80}
81
82impl<'a> Descriptor<'a> for NetworkNameDescriptor<'a> {
83    const TAG: u8 = 0x40;
84
85    fn descriptor_length(&self) -> u8 {
86        self.network_name.raw().len() as u8
87    }
88}
89
90impl<'a> crate::traits::DescriptorDef<'a> for NetworkNameDescriptor<'a> {
91    const TAG: u8 = TAG;
92    const NAME: &'static str = "NETWORK_NAME";
93}
94
95#[cfg(test)]
96mod tests {
97    use super::*;
98
99    /// Encode a 4-byte name, confirm parse extracts it.
100    #[test]
101    fn parse_extracts_network_name() {
102        let raw: Vec<u8> = vec![
103            TAG, 0x04, // length = 4
104            b'E', b'U', b'T', b'E',
105        ];
106        let desc = NetworkNameDescriptor::parse(&raw).unwrap();
107        assert_eq!(desc.network_name.raw(), b"EUTE");
108    }
109
110    /// Wrong tag byte should return InvalidDescriptor.
111    #[test]
112    fn parse_rejects_wrong_tag() {
113        let raw: Vec<u8> = vec![
114            0x41, // wrong tag
115            0x04, b'E', b'U', b'T', b'E',
116        ];
117        let err = NetworkNameDescriptor::parse(&raw).unwrap_err();
118        assert!(
119            matches!(err, Error::InvalidDescriptor { tag: 0x41, .. }),
120            "expected InvalidDescriptor(tag=0x41), got {err:?}"
121        );
122    }
123
124    /// Only the tag byte — too short for the 2-byte header.
125    #[test]
126    fn parse_rejects_buffer_shorter_than_header() {
127        let raw: &[u8] = &[0x40];
128        let err = NetworkNameDescriptor::parse(raw).unwrap_err();
129        assert!(
130            matches!(err, Error::BufferTooShort { need: 2, .. }),
131            "expected BufferTooShort(need=2), got {err:?}"
132        );
133    }
134
135    /// Length byte says 5 but only 2 bytes follow — mismatch.
136    #[test]
137    fn parse_rejects_length_byte_overflowing_buffer() {
138        let raw: Vec<u8> = vec![
139            0x40, 0x05, // claims 5 bytes follow
140            0xAA, 0xBB, // only 2 bytes available
141        ];
142        let err = NetworkNameDescriptor::parse(&raw).unwrap_err();
143        assert!(matches!(err, Error::BufferTooShort { .. }));
144    }
145
146    /// Parse → serialize → re-parse should yield an equal struct and
147    /// identical bytes.
148    #[test]
149    fn serialize_round_trip_preserves_bytes() {
150        let raw: Vec<u8> = vec![TAG, 0x04, b'E', b'U', b'T', b'E'];
151        let parsed = NetworkNameDescriptor::parse(&raw).unwrap();
152        let mut buf = vec![0u8; parsed.serialized_len()];
153        let written = parsed.serialize_into(&mut buf).unwrap();
154        assert_eq!(written, parsed.serialized_len());
155
156        let reparsed = NetworkNameDescriptor::parse(&buf).unwrap();
157        assert_eq!(parsed, reparsed);
158        assert_eq!(&raw, &buf[..]);
159    }
160
161    /// Serialise into a buffer smaller than `serialized_len()` must fail.
162    #[test]
163    fn serialize_rejects_too_small_buffer() {
164        let raw: Vec<u8> = vec![TAG, 0x04, b'E', b'U', b'T', b'E'];
165        let parsed = NetworkNameDescriptor::parse(&raw).unwrap();
166        let mut tiny = vec![0u8; 1];
167        let err = parsed.serialize_into(&mut tiny).unwrap_err();
168        assert!(
169            matches!(err, Error::OutputBufferTooSmall { need, .. } if need == parsed.serialized_len()),
170            "expected OutputBufferTooSmall(need={}), got {err:?}",
171            parsed.serialized_len()
172        );
173    }
174
175    /// Descriptor with no network name bytes is valid: `[0x40, 0x00]`.
176    #[test]
177    fn empty_network_name_is_valid() {
178        let raw: &[u8] = &[TAG, 0x00];
179        let desc = NetworkNameDescriptor::parse(raw).unwrap();
180        assert!(desc.network_name.raw().is_empty());
181    }
182
183    /// `descriptor_length()` must equal `network_name.len()` cast to u8.
184    #[test]
185    fn descriptor_length_getter_matches_payload() {
186        let raw: Vec<u8> = vec![TAG, 0x07, b'F', b'R', b'A', b'N', b'C', b'E', b'2'];
187        let desc = NetworkNameDescriptor::parse(&raw).unwrap();
188        assert_eq!(
189            desc.descriptor_length(),
190            desc.network_name.raw().len() as u8
191        );
192    }
193}