Skip to main content

dvb_si/tables/
ait.rs

1//! Application Information Table — ETSI TS 102 809 §5.3.4.
2//!
3//! AIT carries application metadata for HbbTV / interactive-TV services.
4//! Carried on a per-service PID with table_id 0x74.
5
6use crate::descriptors::DescriptorLoop;
7use crate::error::{Error, Result};
8use crate::traits::Table;
9use dvb_common::{Parse, Serialize};
10
11/// AIT table_id (ETSI TS 102 809 §5.3.4).
12pub const TABLE_ID: u8 = 0x74;
13/// AIT has no well-known PID — it is service-specific.
14pub const PID: u16 = 0x0000;
15
16const MIN_HEADER_LEN: usize = 3;
17const EXTENSION_HEADER_LEN: usize = 5;
18const COMMON_DESC_LEN_BYTES: usize = 2;
19const APP_LOOP_LEN_BYTES: usize = 2;
20const CRC_LEN: usize = 4;
21const APP_HEADER_LEN: usize = 9;
22
23/// 48-bit application identifier: organisation_id + application_id.
24#[derive(Debug, Clone, PartialEq, Eq)]
25#[cfg_attr(feature = "serde", derive(serde::Serialize))]
26pub struct ApplicationIdentifier {
27    /// 32-bit organisation_id.
28    pub organisation_id: u32,
29    /// 16-bit application_id.
30    pub application_id: u16,
31}
32
33/// One application entry in the AIT application loop.
34#[derive(Debug, Clone, PartialEq, Eq)]
35#[cfg_attr(feature = "serde", derive(serde::Serialize))]
36#[cfg_attr(feature = "yoke", derive(yoke::Yokeable))]
37pub struct AitApplication<'a> {
38    /// Application identifier.
39    pub identifier: ApplicationIdentifier,
40    /// Application control code (1 = autostart, etc.).
41    pub control_code: u8,
42    /// Raw descriptor bytes for this application.
43    /// Per-application descriptor loop. Serializes as the typed descriptor
44    /// sequence; `.raw()` yields the wire bytes.
45    pub descriptors: DescriptorLoop<'a>,
46}
47
48/// Application Information Table.
49#[derive(Debug, Clone, PartialEq, Eq)]
50#[cfg_attr(feature = "serde", derive(serde::Serialize))]
51#[cfg_attr(feature = "yoke", derive(yoke::Yokeable))]
52pub struct Ait<'a> {
53    /// 15-bit application_type (e.g. 0x0010 for HbbTV).
54    pub application_type: u16,
55    /// Test application flag (bit 15 of the extension field).
56    pub test_application_flag: bool,
57    /// 5-bit version_number.
58    pub version_number: u8,
59    /// current_next_indicator bit.
60    pub current_next_indicator: bool,
61    /// section_number in the sub-table sequence.
62    pub section_number: u8,
63    /// last_section_number in the sub-table sequence.
64    pub last_section_number: u8,
65    /// Raw common descriptor bytes.
66    /// Common descriptor loop. Serializes as the typed descriptor sequence;
67    /// `.raw()` yields the wire bytes.
68    pub common_descriptors: DescriptorLoop<'a>,
69    /// Applications in wire order.
70    pub applications: Vec<AitApplication<'a>>,
71}
72
73impl<'a> Parse<'a> for Ait<'a> {
74    type Error = crate::error::Error;
75    fn parse(bytes: &'a [u8]) -> Result<Self> {
76        let min_len = MIN_HEADER_LEN
77            + EXTENSION_HEADER_LEN
78            + COMMON_DESC_LEN_BYTES
79            + APP_LOOP_LEN_BYTES
80            + CRC_LEN;
81        if bytes.len() < min_len {
82            return Err(Error::BufferTooShort {
83                need: min_len,
84                have: bytes.len(),
85                what: "Ait",
86            });
87        }
88
89        if bytes[0] != TABLE_ID {
90            return Err(Error::UnexpectedTableId {
91                table_id: bytes[0],
92                what: "Ait",
93                expected: &[TABLE_ID],
94            });
95        }
96
97        let section_length = ((bytes[1] & 0x0F) as u16) << 8 | bytes[2] as u16;
98        let total = MIN_HEADER_LEN + section_length as usize;
99        if bytes.len() < total {
100            return Err(Error::SectionLengthOverflow {
101                declared: section_length as usize,
102                available: bytes.len() - MIN_HEADER_LEN,
103            });
104        }
105
106        let test_application_flag = (bytes[3] & 0x80) != 0;
107        let application_type = (((bytes[3] & 0x7F) as u16) << 8) | (bytes[4] as u16);
108        let version_number = (bytes[5] >> 1) & 0x1F;
109        let current_next_indicator = (bytes[5] & 0x01) != 0;
110        let section_number = bytes[6];
111        let last_section_number = bytes[7];
112
113        let common_descriptors_length = (((bytes[8] & 0x0F) as usize) << 8) | bytes[9] as usize;
114        let common_desc_start = MIN_HEADER_LEN + EXTENSION_HEADER_LEN + COMMON_DESC_LEN_BYTES;
115        let common_desc_end = common_desc_start + common_descriptors_length;
116        let app_loop_end = total - CRC_LEN;
117        if common_desc_end > app_loop_end {
118            return Err(Error::SectionLengthOverflow {
119                declared: common_descriptors_length,
120                available: app_loop_end - common_desc_start,
121            });
122        }
123        let common_descriptors = DescriptorLoop::new(&bytes[common_desc_start..common_desc_end]);
124
125        let app_loop_length =
126            (((bytes[common_desc_end] & 0x0F) as usize) << 8) | bytes[common_desc_end + 1] as usize;
127        let app_loop_start = common_desc_end + APP_LOOP_LEN_BYTES;
128        let app_loop_actual_end = app_loop_start + app_loop_length;
129        if app_loop_actual_end > app_loop_end {
130            return Err(Error::SectionLengthOverflow {
131                declared: app_loop_length,
132                available: app_loop_end - app_loop_start,
133            });
134        }
135
136        let mut applications = Vec::new();
137        let mut pos = app_loop_start;
138        while pos + APP_HEADER_LEN <= app_loop_actual_end {
139            let organisation_id = ((bytes[pos] as u32) << 24)
140                | ((bytes[pos + 1] as u32) << 16)
141                | ((bytes[pos + 2] as u32) << 8)
142                | (bytes[pos + 3] as u32);
143            let application_id = u16::from_be_bytes([bytes[pos + 4], bytes[pos + 5]]);
144            let control_code = bytes[pos + 6];
145            let app_desc_length =
146                (((bytes[pos + 7] & 0x0F) as usize) << 8) | bytes[pos + 8] as usize;
147            let app_desc_start = pos + APP_HEADER_LEN;
148            let app_desc_end = app_desc_start + app_desc_length;
149            if app_desc_end > app_loop_actual_end {
150                return Err(Error::SectionLengthOverflow {
151                    declared: app_desc_length,
152                    available: app_loop_actual_end - app_desc_start,
153                });
154            }
155            applications.push(AitApplication {
156                identifier: ApplicationIdentifier {
157                    organisation_id,
158                    application_id,
159                },
160                control_code,
161                descriptors: DescriptorLoop::new(&bytes[app_desc_start..app_desc_end]),
162            });
163            pos = app_desc_end;
164        }
165
166        Ok(Ait {
167            application_type,
168            test_application_flag,
169            version_number,
170            current_next_indicator,
171            section_number,
172            last_section_number,
173            common_descriptors,
174            applications,
175        })
176    }
177}
178
179impl Serialize for Ait<'_> {
180    type Error = crate::error::Error;
181    fn serialized_len(&self) -> usize {
182        let app_bytes: usize = self
183            .applications
184            .iter()
185            .map(|a| APP_HEADER_LEN + a.descriptors.len())
186            .sum();
187        MIN_HEADER_LEN
188            + EXTENSION_HEADER_LEN
189            + COMMON_DESC_LEN_BYTES
190            + self.common_descriptors.len()
191            + APP_LOOP_LEN_BYTES
192            + app_bytes
193            + CRC_LEN
194    }
195
196    fn serialize_into(&self, buf: &mut [u8]) -> Result<usize> {
197        let len = self.serialized_len();
198        if buf.len() < len {
199            return Err(Error::OutputBufferTooSmall {
200                need: len,
201                have: buf.len(),
202            });
203        }
204
205        let section_length: u16 = (len - MIN_HEADER_LEN) as u16;
206        buf[0] = TABLE_ID;
207        buf[1] = 0xB0 | ((section_length >> 8) as u8 & 0x0F);
208        buf[2] = (section_length & 0xFF) as u8;
209        buf[3] = (u8::from(self.test_application_flag) << 7)
210            | ((self.application_type >> 8) as u8 & 0x7F);
211        buf[4] = (self.application_type & 0xFF) as u8;
212        buf[5] = 0xC0 | ((self.version_number & 0x1F) << 1) | u8::from(self.current_next_indicator);
213        buf[6] = self.section_number;
214        buf[7] = self.last_section_number;
215
216        let cdl = self.common_descriptors.len() as u16;
217        buf[8] = 0xF0 | ((cdl >> 8) as u8 & 0x0F);
218        buf[9] = (cdl & 0xFF) as u8;
219
220        let common_desc_start = MIN_HEADER_LEN + EXTENSION_HEADER_LEN + COMMON_DESC_LEN_BYTES;
221        buf[common_desc_start..common_desc_start + self.common_descriptors.len()]
222            .copy_from_slice(self.common_descriptors.raw());
223
224        let app_loop_start = common_desc_start + self.common_descriptors.len();
225        let app_bytes: usize = self
226            .applications
227            .iter()
228            .map(|a| APP_HEADER_LEN + a.descriptors.len())
229            .sum();
230        let apl = app_bytes as u16;
231        buf[app_loop_start] = 0xF0 | ((apl >> 8) as u8 & 0x0F);
232        buf[app_loop_start + 1] = (apl & 0xFF) as u8;
233
234        let mut pos = app_loop_start + APP_LOOP_LEN_BYTES;
235        for app in &self.applications {
236            buf[pos..pos + 4].copy_from_slice(&app.identifier.organisation_id.to_be_bytes());
237            buf[pos + 4..pos + 6].copy_from_slice(&app.identifier.application_id.to_be_bytes());
238            buf[pos + 6] = app.control_code;
239            let adl = app.descriptors.len() as u16;
240            buf[pos + 7] = 0xF0 | ((adl >> 8) as u8 & 0x0F);
241            buf[pos + 8] = (adl & 0xFF) as u8;
242            let desc_start = pos + APP_HEADER_LEN;
243            buf[desc_start..desc_start + app.descriptors.len()]
244                .copy_from_slice(app.descriptors.raw());
245            pos = desc_start + app.descriptors.len();
246        }
247
248        let crc_pos = len - CRC_LEN;
249        let crc = dvb_common::crc32_mpeg2::compute(&buf[..crc_pos]);
250        buf[crc_pos..len].copy_from_slice(&crc.to_be_bytes());
251        Ok(len)
252    }
253}
254
255impl<'a> Table<'a> for Ait<'a> {
256    const TABLE_ID: u8 = TABLE_ID;
257    const PID: u16 = PID;
258}
259
260impl<'a> crate::traits::TableDef<'a> for Ait<'a> {
261    const TABLE_ID_RANGES: &'static [(u8, u8)] = &[(TABLE_ID, TABLE_ID)];
262    const NAME: &'static str = "APPLICATION_INFORMATION";
263}
264
265#[cfg(test)]
266mod tests {
267    use super::*;
268
269    fn build_ait(
270        application_type: u16,
271        test_flag: bool,
272        version: u8,
273        common_descriptors: &[u8],
274        applications: &[(u32, u16, u8, Vec<u8>)],
275    ) -> Vec<u8> {
276        let app_bytes: usize = applications
277            .iter()
278            .map(|(_, _, _, d)| APP_HEADER_LEN + d.len())
279            .sum();
280        let section_length: u16 = (EXTENSION_HEADER_LEN
281            + COMMON_DESC_LEN_BYTES
282            + common_descriptors.len()
283            + APP_LOOP_LEN_BYTES
284            + app_bytes
285            + CRC_LEN) as u16;
286        let mut v = vec![
287            TABLE_ID,
288            0xB0 | ((section_length >> 8) as u8 & 0x0F),
289            (section_length & 0xFF) as u8,
290            (u8::from(test_flag) << 7) | ((application_type >> 8) as u8 & 0x7F),
291            (application_type & 0xFF) as u8,
292            0xC0 | ((version & 0x1F) << 1) | 0x01,
293            0,
294            0,
295        ];
296        let cdl = common_descriptors.len() as u16;
297        v.push(0xF0 | ((cdl >> 8) as u8 & 0x0F));
298        v.push((cdl & 0xFF) as u8);
299        v.extend_from_slice(common_descriptors);
300        let apl = app_bytes as u16;
301        v.push(0xF0 | ((apl >> 8) as u8 & 0x0F));
302        v.push((apl & 0xFF) as u8);
303        for &(org_id, app_id, cc, ref desc) in applications {
304            v.extend_from_slice(&org_id.to_be_bytes());
305            v.extend_from_slice(&app_id.to_be_bytes());
306            v.push(cc);
307            let adl = desc.len() as u16;
308            v.push(0xF0 | ((adl >> 8) as u8 & 0x0F));
309            v.push((adl & 0xFF) as u8);
310            v.extend_from_slice(desc);
311        }
312        v.extend_from_slice(&[0, 0, 0, 0]);
313        v
314    }
315
316    #[test]
317    fn parse_rejects_wrong_table_id() {
318        let mut bytes = build_ait(0x0010, false, 0, &[], &[]);
319        bytes[0] = 0x00;
320        let err = Ait::parse(&bytes).unwrap_err();
321        assert!(matches!(
322            err,
323            Error::UnexpectedTableId { table_id: 0x00, .. }
324        ));
325    }
326
327    #[test]
328    fn parse_rejects_short_buffer() {
329        let err = Ait::parse(&[0x74, 0x00]).unwrap_err();
330        assert!(matches!(err, Error::BufferTooShort { .. }));
331    }
332
333    #[test]
334    fn parse_empty_ait_no_applications() {
335        let bytes = build_ait(0x0010, false, 5, &[], &[]);
336        let ait = Ait::parse(&bytes).expect("parse");
337        assert_eq!(ait.application_type, 0x0010);
338        assert!(!ait.test_application_flag);
339        assert_eq!(ait.version_number, 5);
340        assert!(ait.current_next_indicator);
341        assert_eq!(ait.section_number, 0);
342        assert_eq!(ait.last_section_number, 0);
343        assert_eq!(ait.common_descriptors.len(), 0);
344        assert_eq!(ait.applications.len(), 0);
345    }
346
347    #[test]
348    fn parse_test_application_flag_extracted() {
349        let bytes = build_ait(0x0010, true, 0, &[], &[]);
350        let ait = Ait::parse(&bytes).unwrap();
351        assert!(ait.test_application_flag);
352    }
353
354    #[test]
355    fn parse_common_descriptors_preserved() {
356        let desc = vec![0x00, 0x02, 0xAA, 0xBB];
357        let bytes = build_ait(0x0010, false, 0, &desc, &[]);
358        let ait = Ait::parse(&bytes).unwrap();
359        assert_eq!(ait.common_descriptors.raw(), &desc[..]);
360    }
361
362    #[test]
363    fn parse_single_application() {
364        let desc = vec![0x02, 0x03, 0xCC, 0xDD, 0xEE];
365        let bytes = build_ait(
366            0x0010,
367            false,
368            0,
369            &[],
370            &[(0x12345678, 0xABCD, 0x01, desc.clone())],
371        );
372        let ait = Ait::parse(&bytes).unwrap();
373        assert_eq!(ait.applications.len(), 1);
374        assert_eq!(ait.applications[0].identifier.organisation_id, 0x12345678);
375        assert_eq!(ait.applications[0].identifier.application_id, 0xABCD);
376        assert_eq!(ait.applications[0].control_code, 0x01);
377        assert_eq!(ait.applications[0].descriptors.raw(), &desc[..]);
378    }
379
380    #[test]
381    fn parse_multiple_applications_preserve_order() {
382        let bytes = build_ait(
383            0x0010,
384            false,
385            0,
386            &[],
387            &[
388                (0x00000001, 0x0001, 0x01, vec![]),
389                (0x00000002, 0x0002, 0x02, vec![0x01]),
390                (0x00000003, 0x0003, 0x03, vec![0x02, 0x03]),
391            ],
392        );
393        let ait = Ait::parse(&bytes).unwrap();
394        assert_eq!(ait.applications.len(), 3);
395        assert_eq!(ait.applications[0].identifier.organisation_id, 1);
396        assert_eq!(ait.applications[1].identifier.organisation_id, 2);
397        assert_eq!(ait.applications[2].identifier.organisation_id, 3);
398    }
399
400    #[test]
401    fn serialize_round_trip_empty() {
402        let ait = Ait {
403            application_type: 0x0010,
404            test_application_flag: false,
405            version_number: 3,
406            current_next_indicator: true,
407            section_number: 0,
408            last_section_number: 0,
409            common_descriptors: DescriptorLoop::new(&[]),
410            applications: vec![],
411        };
412        let mut buf = vec![0u8; ait.serialized_len()];
413        ait.serialize_into(&mut buf).unwrap();
414        let reparsed = Ait::parse(&buf).unwrap();
415        assert_eq!(ait, reparsed);
416    }
417
418    #[test]
419    fn serialize_round_trip_with_applications() {
420        let desc1: [u8; 2] = [0xAA, 0xBB];
421        let ait = Ait {
422            application_type: 0x0010,
423            test_application_flag: true,
424            version_number: 7,
425            current_next_indicator: true,
426            section_number: 1,
427            last_section_number: 2,
428            common_descriptors: DescriptorLoop::new(&[0x01, 0x00]),
429            applications: vec![
430                AitApplication {
431                    identifier: ApplicationIdentifier {
432                        organisation_id: 0x12345678,
433                        application_id: 0xABCD,
434                    },
435                    control_code: 0x01,
436                    descriptors: DescriptorLoop::new(&desc1),
437                },
438                AitApplication {
439                    identifier: ApplicationIdentifier {
440                        organisation_id: 0x87654321,
441                        application_id: 0x00EF,
442                    },
443                    control_code: 0x02,
444                    descriptors: DescriptorLoop::new(&[]),
445                },
446            ],
447        };
448        let mut buf = vec![0u8; ait.serialized_len()];
449        ait.serialize_into(&mut buf).unwrap();
450        let reparsed = Ait::parse(&buf).unwrap();
451        assert_eq!(ait, reparsed);
452    }
453}