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dvb_si/descriptors/
ca.rs

1//! Conditional Access (CA) Descriptor — ISO/IEC 13818-1 §2.6.16 (tag 0x09).
2//!
3//! Identifies a conditional access system and the PID carrying ECM/EMM data
4//! for that system. Optional private data may follow the standard fields.
5
6use crate::error::{Error, Result};
7use crate::traits::Descriptor;
8use dvb_common::{Parse, Serialize};
9
10/// Descriptor tag for CA_descriptor.
11pub const TAG: u8 = 0x09;
12const HEADER_LEN: usize = 2;
13const MIN_BODY_LEN: usize = 4; // ca_system_id (2) + ca_pid (2)
14
15/// Conditional Access Descriptor.
16///
17/// Carried in the program-level or ES-level descriptor loops of a PMT, or in
18/// the CAT. Identifies the CA system and the PID where Entitlement Control
19/// Messages (ECMs) or Entitlement Management Messages (EMMs) can be found.
20#[derive(Debug, Clone, PartialEq, Eq)]
21#[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize))]
22pub struct CaDescriptor<'a> {
23    /// Conditional Access System ID.
24    ///
25    /// Well-known CAIDs:
26    ///   0x0100  Seca/Mediaguard
27    ///   0x0500  Viaccess
28    ///   0x0600  Irdeto
29    ///   0x0B00  Conax
30    ///   0x0D00  Cryptoworks
31    ///   0x0E00  PowerVu
32    ///   0x0F00  Tandberg/Clear
33    ///   0x1700  Nagravision 2
34    ///   0x1800  Nagravision 3
35    ///   0x2600  BISS
36    pub ca_system_id: u16,
37
38    /// PID carrying ECM/EMM data for this CA system.
39    /// Bits `[12:0]` of the 2-byte field; upper 3 bits are reserved.
40    pub ca_pid: u16,
41
42    /// Optional private data following the standard CA descriptor fields.
43    #[cfg_attr(feature = "serde", serde(borrow))]
44    pub private_data: &'a [u8],
45}
46
47impl<'a> Parse<'a> for CaDescriptor<'a> {
48    type Error = crate::error::Error;
49
50    fn parse(bytes: &'a [u8]) -> Result<Self> {
51        if bytes.len() < HEADER_LEN {
52            return Err(Error::BufferTooShort {
53                need: HEADER_LEN,
54                have: bytes.len(),
55                what: "CaDescriptor header",
56            });
57        }
58        if bytes[0] != TAG {
59            return Err(Error::InvalidDescriptor {
60                tag: bytes[0],
61                reason: "unexpected tag for CA_descriptor",
62            });
63        }
64        let length = bytes[1] as usize;
65        if length < MIN_BODY_LEN {
66            return Err(Error::InvalidDescriptor {
67                tag: TAG,
68                reason: "CA_descriptor length too short for mandatory fields",
69            });
70        }
71        let total = HEADER_LEN + length;
72        if bytes.len() < total {
73            return Err(Error::BufferTooShort {
74                need: total,
75                have: bytes.len(),
76                what: "CaDescriptor body",
77            });
78        }
79        let body = &bytes[HEADER_LEN..total];
80        let ca_system_id = u16::from_be_bytes([body[0], body[1]]);
81        // ca_pid: upper 3 bits are reserved (should be 0b111), lower 13 bits are the PID
82        let ca_pid = ((u16::from(body[2]) & 0x1F) << 8) | u16::from(body[3]);
83        let private_data = if body.len() > MIN_BODY_LEN {
84            &body[MIN_BODY_LEN..]
85        } else {
86            &[]
87        };
88        Ok(Self {
89            ca_system_id,
90            ca_pid,
91            private_data,
92        })
93    }
94}
95
96impl Serialize for CaDescriptor<'_> {
97    type Error = crate::error::Error;
98
99    fn serialized_len(&self) -> usize {
100        HEADER_LEN + MIN_BODY_LEN + self.private_data.len()
101    }
102
103    fn serialize_into(&self, buf: &mut [u8]) -> Result<usize> {
104        let len = self.serialized_len();
105        if buf.len() < len {
106            return Err(Error::OutputBufferTooSmall {
107                need: len,
108                have: buf.len(),
109            });
110        }
111        buf[0] = TAG;
112        buf[1] = (len - HEADER_LEN) as u8;
113        buf[2] = (self.ca_system_id >> 8) as u8;
114        buf[3] = (self.ca_system_id & 0xFF) as u8;
115        // ca_pid with reserved upper 3 bits set to 1
116        buf[4] = 0xE0 | ((self.ca_pid >> 8) as u8);
117        buf[5] = (self.ca_pid & 0xFF) as u8;
118        if !self.private_data.is_empty() {
119            buf[HEADER_LEN + MIN_BODY_LEN..len].copy_from_slice(self.private_data);
120        }
121        Ok(len)
122    }
123}
124
125impl<'a> Descriptor<'a> for CaDescriptor<'a> {
126    const TAG: u8 = TAG;
127
128    fn descriptor_length(&self) -> u8 {
129        (self.serialized_len() - HEADER_LEN) as u8
130    }
131}
132
133impl<'a> crate::traits::DescriptorDef<'a> for CaDescriptor<'a> {
134    const TAG: u8 = TAG;
135    const NAME: &'static str = "CA";
136}
137
138#[cfg(test)]
139mod tests {
140    use super::*;
141
142    #[test]
143    fn parse_viaccess_ecm_pid() {
144        // tag=0x09, len=4, CAID=0x0500 (Viaccess), PID=0x0101
145        let bytes = [TAG, 4, 0x05, 0x00, 0xE1, 0x01];
146        let d = CaDescriptor::parse(&bytes).unwrap();
147        assert_eq!(d.ca_system_id, 0x0500);
148        assert_eq!(d.ca_pid, 0x0101);
149        assert!(d.private_data.is_empty());
150    }
151
152    #[test]
153    fn parse_with_private_data() {
154        // tag=0x09, len=6, CAID=0x0500, PID=0x0101, private=[0xAA, 0xBB]
155        let bytes = [TAG, 6, 0x05, 0x00, 0xE1, 0x01, 0xAA, 0xBB];
156        let d = CaDescriptor::parse(&bytes).unwrap();
157        assert_eq!(d.ca_system_id, 0x0500);
158        assert_eq!(d.ca_pid, 0x0101);
159        assert_eq!(d.private_data, &[0xAA, 0xBB]);
160    }
161
162    #[test]
163    fn parse_rejects_wrong_tag() {
164        let err = CaDescriptor::parse(&[0x0A, 4, 0x05, 0x00, 0xE1, 0x01]).unwrap_err();
165        assert!(matches!(err, Error::InvalidDescriptor { tag: 0x0A, .. }));
166    }
167
168    #[test]
169    fn parse_rejects_short_header() {
170        let err = CaDescriptor::parse(&[TAG]).unwrap_err();
171        assert!(matches!(err, Error::BufferTooShort { .. }));
172    }
173
174    #[test]
175    fn parse_rejects_length_too_short() {
176        let bytes = [TAG, 3, 0x05, 0x00, 0xE1];
177        let err = CaDescriptor::parse(&bytes).unwrap_err();
178        assert!(matches!(err, Error::InvalidDescriptor { tag: TAG, .. }));
179    }
180
181    #[test]
182    fn parse_rejects_length_overflow() {
183        let bytes = [TAG, 10, 0x05, 0x00, 0xE1, 0x01];
184        let err = CaDescriptor::parse(&bytes).unwrap_err();
185        assert!(matches!(err, Error::BufferTooShort { .. }));
186    }
187
188    #[test]
189    fn serialize_round_trip() {
190        let d = CaDescriptor {
191            ca_system_id: 0x1800,
192            ca_pid: 0x0200,
193            private_data: &[0xDE, 0xAD],
194        };
195        let mut buf = vec![0u8; d.serialized_len()];
196        d.serialize_into(&mut buf).unwrap();
197        let reparsed = CaDescriptor::parse(&buf).unwrap();
198        assert_eq!(d, reparsed);
199    }
200
201    #[test]
202    fn serialize_round_trip_no_private_data() {
203        let d = CaDescriptor {
204            ca_system_id: 0x0500,
205            ca_pid: 0x0101,
206            private_data: &[],
207        };
208        let mut buf = vec![0u8; d.serialized_len()];
209        d.serialize_into(&mut buf).unwrap();
210        let reparsed = CaDescriptor::parse(&buf).unwrap();
211        assert_eq!(d, reparsed);
212    }
213
214    #[test]
215    fn serialize_rejects_small_buffer() {
216        let d = CaDescriptor {
217            ca_system_id: 0x0500,
218            ca_pid: 0x0101,
219            private_data: &[],
220        };
221        let mut tiny = vec![0u8; 3];
222        let err = d.serialize_into(&mut tiny).unwrap_err();
223        assert!(matches!(err, Error::OutputBufferTooSmall { .. }));
224    }
225
226    #[test]
227    fn descriptor_length_matches_payload() {
228        let d = CaDescriptor {
229            ca_system_id: 0x0500,
230            ca_pid: 0x0101,
231            private_data: &[0xAA],
232        };
233        assert_eq!(d.descriptor_length(), 5);
234    }
235}