1use std::io::Cursor;
7
8use byteorder::{LittleEndian, ReadBytesExt};
9use las::raw;
10use laz::LazVlr;
11
12use crate::error::CopcError;
13use crate::types::Aabb;
14
15pub struct CopcHeader {
20 pub(crate) las_header: las::Header,
21 pub(crate) copc_info: CopcInfo,
22 pub(crate) laz_vlr: LazVlr,
23 pub(crate) evlr_offset: u64,
24 pub(crate) evlr_count: u32,
25}
26
27impl CopcHeader {
28 pub fn las_header(&self) -> &las::Header {
30 &self.las_header
31 }
32
33 pub fn copc_info(&self) -> &CopcInfo {
35 &self.copc_info
36 }
37
38 pub fn laz_vlr(&self) -> &LazVlr {
40 &self.laz_vlr
41 }
42
43 pub fn evlr_offset(&self) -> u64 {
45 self.evlr_offset
46 }
47
48 pub fn evlr_count(&self) -> u32 {
50 self.evlr_count
51 }
52}
53
54#[derive(Debug, Clone)]
56#[non_exhaustive]
57pub struct CopcInfo {
58 pub center: [f64; 3],
60 pub halfsize: f64,
62 pub spacing: f64,
64 pub root_hier_offset: u64,
66 pub root_hier_size: u64,
68 pub gpstime_minimum: f64,
70 pub gpstime_maximum: f64,
72}
73
74impl CopcInfo {
75 pub fn root_bounds(&self) -> Aabb {
77 Aabb {
78 min: [
79 self.center[0] - self.halfsize,
80 self.center[1] - self.halfsize,
81 self.center[2] - self.halfsize,
82 ],
83 max: [
84 self.center[0] + self.halfsize,
85 self.center[1] + self.halfsize,
86 self.center[2] + self.halfsize,
87 ],
88 }
89 }
90
91 fn parse(data: &[u8]) -> Result<Self, CopcError> {
92 if data.len() < 160 {
93 return Err(CopcError::CopcInfoNotFound);
94 }
95 let mut r = Cursor::new(data);
96 let center_x = r.read_f64::<LittleEndian>()?;
97 let center_y = r.read_f64::<LittleEndian>()?;
98 let center_z = r.read_f64::<LittleEndian>()?;
99 let halfsize = r.read_f64::<LittleEndian>()?;
100 let spacing = r.read_f64::<LittleEndian>()?;
101 let root_hier_offset = r.read_u64::<LittleEndian>()?;
102 let root_hier_size = r.read_u64::<LittleEndian>()?;
103 let gpstime_minimum = r.read_f64::<LittleEndian>()?;
104 let gpstime_maximum = r.read_f64::<LittleEndian>()?;
105 Ok(CopcInfo {
106 center: [center_x, center_y, center_z],
107 halfsize,
108 spacing,
109 root_hier_offset,
110 root_hier_size,
111 gpstime_minimum,
112 gpstime_maximum,
113 })
114 }
115}
116
117pub(crate) fn parse_header(data: &[u8]) -> Result<CopcHeader, CopcError> {
121 let mut cursor = Cursor::new(data);
122
123 let raw_header = raw::Header::read_from(&mut cursor)?;
125
126 let evlr_offset = raw_header
127 .evlr
128 .as_ref()
129 .map_or(0, |e| e.start_of_first_evlr);
130 let evlr_count = raw_header.evlr.as_ref().map_or(0, |e| e.number_of_evlrs);
131 let number_of_vlrs = raw_header.number_of_variable_length_records;
132 let header_size = raw_header.header_size;
133
134 let mut builder = las::Builder::new(raw_header)?;
136
137 cursor.set_position(header_size as u64);
139
140 let mut copc_info = None;
141 let mut laz_vlr = None;
142
143 for _ in 0..number_of_vlrs {
144 let raw_vlr = raw::Vlr::read_from(&mut cursor, false)?;
145 let vlr = las::Vlr::new(raw_vlr);
146
147 match (vlr.user_id.as_str(), vlr.record_id) {
148 ("copc", 1) => {
149 copc_info = Some(CopcInfo::parse(&vlr.data)?);
150 }
151 ("laszip encoded", 22204) => {
152 laz_vlr = Some(LazVlr::read_from(vlr.data.as_slice())?);
153 }
154 _ => {}
155 }
156
157 builder.vlrs.push(vlr);
158 }
159
160 let las_header = builder.into_header()?;
161 let copc_info = copc_info.ok_or(CopcError::CopcInfoNotFound)?;
162 let laz_vlr = laz_vlr.ok_or(CopcError::LazVlrNotFound)?;
163
164 Ok(CopcHeader {
165 las_header,
166 copc_info,
167 laz_vlr,
168 evlr_offset,
169 evlr_count,
170 })
171}
172
173#[cfg(test)]
174mod tests {
175 use super::*;
176
177 #[test]
178 fn test_copc_info_root_bounds() {
179 let info = CopcInfo {
180 center: [100.0, 200.0, 10.0],
181 halfsize: 50.0,
182 spacing: 1.0,
183 root_hier_offset: 0,
184 root_hier_size: 0,
185 gpstime_minimum: 0.0,
186 gpstime_maximum: 0.0,
187 };
188 let b = info.root_bounds();
189 assert_eq!(b.min, [50.0, 150.0, -40.0]);
190 assert_eq!(b.max, [150.0, 250.0, 60.0]);
191 }
192}