windows_metadata/reader/
blob.rs1use super::*;
2
3pub struct Blob<'a> {
4 index: &'a Index,
5 file: usize,
6 slice: &'a [u8],
7}
8
9impl Drop for Blob<'_> {
10 fn drop(&mut self) {
11 debug_assert_eq!(self.len(), 0);
12 }
13}
14
15impl std::fmt::Debug for Blob<'_> {
16 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
17 write!(f, "{:?}", self.slice)
18 }
19}
20
21impl std::ops::Deref for Blob<'_> {
22 type Target = [u8];
23
24 fn deref(&self) -> &[u8] {
25 self.slice
26 }
27}
28
29impl<'a> Blob<'a> {
30 pub fn new(index: &'a Index, file: usize, slice: &'a [u8]) -> Self {
31 Self { index, file, slice }
32 }
33
34 fn peek(&self) -> (usize, usize) {
35 if self[0] & 0x80 == 0 {
36 (self[0] as usize, 1)
37 } else if self[0] & 0xC0 == 0x80 {
38 ((((self[0] & 0x3F) as usize) << 8) | self[1] as usize, 2)
39 } else {
40 (
41 (((self[0] & 0x1F) as usize) << 24)
42 | ((self[1] as usize) << 16)
43 | ((self[2] as usize) << 8)
44 | self[3] as usize,
45 4,
46 )
47 }
48 }
49
50 pub fn decode<D: Decode<'a>>(&mut self) -> D {
51 D::decode(self.index, self.file, self.read_compressed())
52 }
53
54 pub fn try_read(&mut self, expected: usize) -> bool {
55 let (value, offset) = self.peek();
56 if value == expected {
57 self.offset(offset);
58 true
59 } else {
60 false
61 }
62 }
63
64 pub fn read_modifiers(&mut self) -> Vec<TypeDefOrRef> {
65 let mut mods = vec![];
66 loop {
67 let (value, offset) = self.peek();
68 if value != ELEMENT_TYPE_CMOD_OPT as usize && value != ELEMENT_TYPE_CMOD_REQD as usize {
69 break;
70 } else {
71 self.offset(offset);
72 mods.push(TypeDefOrRef::decode(
73 self.index,
74 self.file,
75 self.read_compressed(),
76 ))
77 }
78 }
79 mods
80 }
81
82 pub fn read_method_signature(&mut self, generics: &[Type]) -> Signature {
83 let flags = MethodCallAttributes(self.read_u8());
84 let param_count = self.read_compressed();
85 let return_type = self.read_type_signature(generics);
86
87 let mut types = vec![];
88
89 for _ in 0..param_count {
90 types.push(self.read_type_signature(generics));
91 }
92
93 Signature {
94 flags,
95 return_type,
96 types,
97 }
98 }
99
100 pub fn read_type_signature(&mut self, generics: &[Type]) -> Type {
102 let is_const = self.read_modifiers().iter().any(|def| {
103 def.namespace() == "System.Runtime.CompilerServices" && def.name() == "IsConst"
104 });
105
106 let is_ref = self.try_read(ELEMENT_TYPE_BYREF as usize);
107
108 if self.try_read(ELEMENT_TYPE_VOID as usize) {
109 return Type::Void;
110 }
111
112 let is_array = self.try_read(ELEMENT_TYPE_SZARRAY as usize);
113
114 let mut pointers = 0;
115
116 while self.try_read(ELEMENT_TYPE_PTR as usize) {
117 pointers += 1;
118 }
119
120 let ty = self.read_type_code(generics);
121
122 if pointers > 0 {
124 Type::PtrMut(Box::new(ty), pointers)
125 } else if is_const {
126 Type::ConstRef(Box::new(ty))
127 } else if is_array {
128 if is_ref {
129 Type::ArrayRef(Box::new(ty))
130 } else {
131 Type::Array(Box::new(ty))
132 }
133 } else {
134 ty
135 }
136 }
137
138 pub fn read_type_code(&mut self, generics: &[Type]) -> Type {
139 match self.read_u8() {
140 ELEMENT_TYPE_VOID => Type::Void,
141 ELEMENT_TYPE_BOOLEAN => Type::Bool,
142 ELEMENT_TYPE_CHAR => Type::Char,
143 ELEMENT_TYPE_I1 => Type::I8,
144 ELEMENT_TYPE_U1 => Type::U8,
145 ELEMENT_TYPE_I2 => Type::I16,
146 ELEMENT_TYPE_U2 => Type::U16,
147 ELEMENT_TYPE_I4 => Type::I32,
148 ELEMENT_TYPE_U4 => Type::U32,
149 ELEMENT_TYPE_I8 => Type::I64,
150 ELEMENT_TYPE_U8 => Type::U64,
151 ELEMENT_TYPE_R4 => Type::F32,
152 ELEMENT_TYPE_R8 => Type::F64,
153 ELEMENT_TYPE_I => Type::ISize,
154 ELEMENT_TYPE_U => Type::USize,
155 ELEMENT_TYPE_STRING => Type::String,
156 ELEMENT_TYPE_OBJECT => Type::Object,
157 ELEMENT_TYPE_VALUETYPE | ELEMENT_TYPE_CLASS => {
158 self.decode::<TypeDefOrRef>().ty(generics)
159 }
160 ELEMENT_TYPE_VAR => generics[self.read_compressed()].clone(),
161 ELEMENT_TYPE_ARRAY => {
162 let ty = self.read_type_signature(generics);
164 let rank = self.read_compressed();
165 debug_assert_eq!(rank, 1);
166 let num_sizes = self.read_compressed();
167 debug_assert_eq!(num_sizes, 1);
168 let size = self.read_compressed();
169 let num_lo_bounds = self.read_compressed();
170 debug_assert!(num_lo_bounds == 0 || num_lo_bounds == 1);
171
172 for _ in 0..num_lo_bounds {
173 let lo_bounds = self.read_compressed();
174 debug_assert_eq!(lo_bounds, 0);
175 }
176
177 Type::ArrayFixed(Box::new(ty), size)
178 }
179 ELEMENT_TYPE_GENERICINST => {
180 let type_code = self.read_u8();
181
182 debug_assert!(matches!(
183 type_code,
184 ELEMENT_TYPE_VALUETYPE | ELEMENT_TYPE_CLASS
185 ));
186
187 let ty = self.decode::<TypeDefOrRef>();
188 let mut ty_generics = vec![];
189
190 for _ in 0..self.read_compressed() {
191 ty_generics.push(self.read_type_code(generics));
192 }
193
194 Type::Name(TypeName {
195 namespace: ty.namespace().to_string(),
196 name: ty.name().to_string(),
197 generics: ty_generics,
198 })
199 }
200 0x55 => Type::AttributeEnum,
201 rest => panic!("{rest:?}"),
202 }
203 }
204
205 pub fn read_compressed(&mut self) -> usize {
206 let (value, offset) = self.peek();
207 self.offset(offset);
208 value
209 }
210
211 pub fn read_utf8(&mut self) -> String {
212 let len = self.read_compressed();
213 let value = unsafe { std::str::from_utf8_unchecked(&self.slice[..len]) };
214 self.offset(len);
215 value.to_string()
216 }
217
218 pub fn read_utf16(&mut self) -> String {
219 let slice = self.slice;
220
221 let value = if slice.as_ptr().align_offset(std::mem::align_of::<u16>()) > 0 {
222 let slice = slice
223 .chunks_exact(2)
224 .take(slice.len() / 2)
225 .map(|chunk| u16::from_le_bytes(chunk.try_into().unwrap()))
226 .collect::<Vec<u16>>();
227
228 String::from_utf16_lossy(&slice)
229 } else {
230 let slice = unsafe {
231 std::slice::from_raw_parts(slice.as_ptr() as *const u16, slice.len() / 2)
232 };
233
234 String::from_utf16_lossy(slice)
235 };
236
237 self.offset(slice.len());
238 value
239 }
240
241 pub fn read_bool(&mut self) -> bool {
242 match self.read_u8() {
244 0 => false,
245 1 => true,
246 _ => panic!(),
247 }
248 }
249
250 pub fn read_i8(&mut self) -> i8 {
251 let value = i8::from_le_bytes(self[..1].try_into().unwrap());
252 self.offset(1);
253 value
254 }
255
256 pub fn read_u8(&mut self) -> u8 {
257 let value = u8::from_le_bytes(self[..1].try_into().unwrap());
258 self.offset(1);
259 value
260 }
261
262 pub fn read_i16(&mut self) -> i16 {
263 let value = i16::from_le_bytes(self[..2].try_into().unwrap());
264 self.offset(2);
265 value
266 }
267
268 pub fn read_u16(&mut self) -> u16 {
269 let value = u16::from_le_bytes(self[..2].try_into().unwrap());
270 self.offset(2);
271 value
272 }
273
274 pub fn read_i32(&mut self) -> i32 {
275 let value = i32::from_le_bytes(self[..4].try_into().unwrap());
276 self.offset(4);
277 value
278 }
279
280 pub fn read_u32(&mut self) -> u32 {
281 let value = u32::from_le_bytes(self[..4].try_into().unwrap());
282 self.offset(4);
283 value
284 }
285
286 pub fn read_i64(&mut self) -> i64 {
287 let value = i64::from_le_bytes(self[..8].try_into().unwrap());
288 self.offset(8);
289 value
290 }
291
292 pub fn read_u64(&mut self) -> u64 {
293 let value = u64::from_le_bytes(self[..8].try_into().unwrap());
294 self.offset(8);
295 value
296 }
297
298 pub fn read_f32(&mut self) -> f32 {
299 let value = f32::from_le_bytes(self[..4].try_into().unwrap());
300 self.offset(4);
301 value
302 }
303
304 pub fn read_f64(&mut self) -> f64 {
305 let value = f64::from_le_bytes(self[..8].try_into().unwrap());
306 self.offset(8);
307 value
308 }
309
310 fn offset(&mut self, offset: usize) {
311 self.slice = &self.slice[offset..];
312 }
313}