1#![allow(non_camel_case_types)]
9
10#[cfg(feature = "alloc")]
11use core::fmt;
12
13#[derive(Debug, Copy, Clone, PartialEq, Eq)]
26pub struct Opcode {
27 code: u8,
28}
29
30impl Opcode {
31 #[inline]
33 pub const fn to_u8(self) -> u8 { self.code }
34
35 #[inline]
37 pub const fn from_u8(b: u8) -> Self { Self { code: b } }
38}
39
40impl From<u8> for Opcode {
41 #[inline]
42 fn from(b: u8) -> Self { Self::from_u8(b) }
43}
44
45impl From<Opcode> for u8 {
46 #[inline]
47 fn from(op: Opcode) -> Self { op.to_u8() }
48}
49
50macro_rules! all_opcodes {
51 ($($op:ident => $val:expr, $doc:expr);* $(;)?) => {
52 pub mod all {
60 use super::Opcode;
61 $(
62 #[doc = $doc]
63 pub const $op: Opcode = Opcode::from_u8($val);
64 )*
65 }
66 }
67}
68
69all_opcodes! {
70 OP_1NEGATE => 0x4f, "Push the array `0x81` onto the stack.";
71 OP_1 => 0x51, "Push the array `0x01` onto the stack.";
72 OP_2 => 0x52, "Push the array `0x02` onto the stack.";
73 OP_3 => 0x53, "Push the array `0x03` onto the stack.";
74 OP_4 => 0x54, "Push the array `0x04` onto the stack.";
75 OP_5 => 0x55, "Push the array `0x05` onto the stack.";
76 OP_6 => 0x56, "Push the array `0x06` onto the stack.";
77 OP_7 => 0x57, "Push the array `0x07` onto the stack.";
78 OP_8 => 0x58, "Push the array `0x08` onto the stack.";
79 OP_9 => 0x59, "Push the array `0x09` onto the stack.";
80 OP_10 => 0x5a, "Push the array `0x0a` onto the stack.";
81 OP_11 => 0x5b, "Push the array `0x0b` onto the stack.";
82 OP_12 => 0x5c, "Push the array `0x0c` onto the stack.";
83 OP_13 => 0x5d, "Push the array `0x0d` onto the stack.";
84 OP_14 => 0x5e, "Push the array `0x0e` onto the stack.";
85 OP_15 => 0x5f, "Push the array `0x0f` onto the stack.";
86 OP_16 => 0x60, "Push the array `0x10` onto the stack.";
87 OP_NOP => 0x61, "Does nothing.";
88 OP_IF => 0x63, "Pop and execute the next statements if a nonzero element was popped.";
89 OP_NOTIF => 0x64, "Pop and execute the next statements if a zero element was popped.";
90 OP_ELSE => 0x67, "Execute statements if those after the previous `OP_IF` were not, and vice-versa. \
91 If there is no previous `OP_IF`, this acts as a RETURN.";
92 OP_ENDIF => 0x68, "Pop and execute the next statements if a zero element was popped.";
93 OP_VERIFY => 0x69, "If the top value is zero or the stack is empty, fail; otherwise, pop the stack.";
94 OP_RETURN => 0x6a, "Fail the script immediately. (Must be executed.).";
95 OP_TOALTSTACK => 0x6b, "Pop one element from the main stack onto the alt stack.";
96 OP_FROMALTSTACK => 0x6c, "Pop one element from the alt stack onto the main stack.";
97 OP_2DROP => 0x6d, "Drops the top two stack items.";
98 OP_2DUP => 0x6e, "Duplicates the top two stack items as `AB` -> `ABAB`.";
99 OP_3DUP => 0x6f, "Duplicates the top three stack items as `ABC` -> `ABCABC`.";
100 OP_2OVER => 0x70, "Duplicates the third and fourth items from the top of the stack.";
101 OP_2ROT => 0x71, "Moves the two stack items four spaces back to the front, as `xxxxAB` -> `ABxxxx`.";
102 OP_2SWAP => 0x72, "Swaps the top two pairs, as `ABCD` -> `CDAB`.";
103 OP_IFDUP => 0x73, "Duplicate the top stack element unless it is zero.";
104 OP_DEPTH => 0x74, "Push the current number of stack items onto the stack.";
105 OP_DROP => 0x75, "Drops the top stack item.";
106 OP_DUP => 0x76, "Duplicates the top stack item.";
107 OP_NIP => 0x77, "Drops the second-to-top stack item.";
108 OP_OVER => 0x78, "Copies the second-to-top stack item, as `xA` -> `AxA`.";
109 OP_PICK => 0x79, "Pop the top stack element as N. Copy the Nth stack element to the top.";
110 OP_ROLL => 0x7a, "Pop the top stack element as N. Move the Nth stack element to the top.";
111 OP_ROT => 0x7b, "Rotate the top three stack items, as `[top next1 next2]` -> `[next2 top next1]`.";
112 OP_SWAP => 0x7c, "Swap the top two stack items.";
113 OP_TUCK => 0x7d, "Copy the top stack item to before the second item, as `[top next]` -> `[top next top]`.";
114 OP_SIZE => 0x82, "Pushes the length of the top stack item onto the stack.";
115 OP_EQUAL => 0x87, "Pushes 1 if the inputs are exactly equal, 0 otherwise.";
116 OP_EQUALVERIFY => 0x88, "Returns success if the inputs are exactly equal, failure otherwise.";
117 OP_1ADD => 0x8b, "Increment the top stack element in place.";
118 OP_1SUB => 0x8c, "Decrement the top stack element in place.";
119 OP_NEGATE => 0x8f, "Multiply the top stack item by -1 in place.";
120 OP_ABS => 0x90, "Absolute value the top stack item in place.";
121 OP_NOT => 0x91, "Map 0 to 1 and everything else to 0, in place.";
122 OP_0NOTEQUAL => 0x92, "Map 0 to 0 and everything else to 1, in place.";
123 OP_ADD => 0x93, "Pop two stack items and push their sum.";
124 OP_SUB => 0x94, "Pop two stack items and push the second minus the top.";
125 OP_BOOLAND => 0x9a, "Pop the top two stack items and push 1 if both are nonzero, else push 0.";
126 OP_BOOLOR => 0x9b, "Pop the top two stack items and push 1 if either is nonzero, else push 0.";
127 OP_NUMEQUAL => 0x9c, "Pop the top two stack items and push 1 if both are numerically equal, else push 0.";
128 OP_NUMEQUALVERIFY => 0x9d, "Pop the top two stack items and return success if both are numerically equal, else return failure.";
129 OP_NUMNOTEQUAL => 0x9e, "Pop the top two stack items and push 0 if both are numerically equal, else push 1.";
130 OP_LESSTHAN => 0x9f, "Pop the top two items; push 1 if the second is less than the top, 0 otherwise.";
131 OP_GREATERTHAN => 0xa0, "Pop the top two items; push 1 if the second is greater than the top, 0 otherwise.";
132 OP_LESSTHANOREQUAL => 0xa1, "Pop the top two items; push 1 if the second is <= the top, 0 otherwise.";
133 OP_GREATERTHANOREQUAL => 0xa2, "Pop the top two items; push 1 if the second is >= the top, 0 otherwise.";
134 OP_MIN => 0xa3, "Pop the top two items; push the smaller.";
135 OP_MAX => 0xa4, "Pop the top two items; push the larger.";
136 OP_WITHIN => 0xa5, "Pop the top three items; if the top is >= the second and < the third, push 1, otherwise push 0.";
137 OP_RIPEMD160 => 0xa6, "Pop the top stack item and push its RIPEMD160 hash.";
138 OP_SHA1 => 0xa7, "Pop the top stack item and push its SHA1 hash.";
139 OP_SHA256 => 0xa8, "Pop the top stack item and push its SHA256 hash.";
140 OP_HASH160 => 0xa9, "Pop the top stack item and push its RIPEMD(SHA256) hash.";
141 OP_HASH256 => 0xaa, "Pop the top stack item and push its SHA256(SHA256) hash.";
142 OP_CODESEPARATOR => 0xab, "Ignore this and everything preceding when deciding what to sign when signature-checking.";
143 OP_CHECKSIG => 0xac, "<https://en.bitcoin.it/wiki/OP_CHECKSIG> pushing 1/0 for success/failure.";
144 OP_CHECKSIGVERIFY => 0xad, "<https://en.bitcoin.it/wiki/OP_CHECKSIG> returning success/failure.";
145 OP_CHECKMULTISIG => 0xae, "Pop N, N pubkeys, M, M signatures, a dummy (due to bug in reference code), \
146 and verify that all M signatures are valid. Push 1 for 'all valid', 0 otherwise.";
147 OP_CHECKMULTISIGVERIFY => 0xaf, "Like the above but return success/failure.";
148 OP_CHECKSIGADD => 0xba, "`OP_CHECKSIGADD` post tapscript.";
149}
150
151#[cfg(feature = "alloc")]
154pub(crate) const OP_PUSHDATA1: u8 = 0x4c;
155
156#[cfg(feature = "alloc")]
159pub(crate) const OP_PUSHDATA2: u8 = 0x4d;
160
161#[cfg(any(feature = "alloc", test))]
164pub(crate) const OP_PUSHDATA4: u8 = 0x4e;
165
166pub(crate) const OP_PUSHBYTES_0: Opcode = Opcode::from_u8(0x00);
168
169#[cfg(feature = "alloc")]
171pub(crate) const OP_PUSHBYTES_2: Opcode = Opcode::from_u8(0x02);
172
173#[cfg(feature = "alloc")]
175pub(crate) const OP_PUSHBYTES_20: Opcode = Opcode::from_u8(0x14);
176
177#[cfg(feature = "alloc")]
179pub(crate) const OP_PUSHBYTES_32: Opcode = Opcode::from_u8(0x20);
180
181#[cfg(feature = "alloc")]
183pub(crate) fn fmt_opcode(op: u8, f: &mut fmt::Formatter) -> fmt::Result {
184 match op {
185 0x00 => f.write_str("OP_0"),
186 0x01..=0x4b => write!(f, "OP_PUSHBYTES_{}", op),
187 0x4c => f.write_str("OP_PUSHDATA1"),
188 0x4d => f.write_str("OP_PUSHDATA2"),
189 0x4e => f.write_str("OP_PUSHDATA4"),
190 0x4f => f.write_str("OP_1NEGATE"),
191 0x50 => f.write_str("OP_RESERVED"),
192 0x51..=0x60 => write!(f, "OP_{}", op - 0x50),
193 0x61 => f.write_str("OP_NOP"),
194 0x62 => f.write_str("OP_VER"),
195 0x63 => f.write_str("OP_IF"),
196 0x64 => f.write_str("OP_NOTIF"),
197 0x65 => f.write_str("OP_VERIF"),
198 0x66 => f.write_str("OP_VERNOTIF"),
199 0x67 => f.write_str("OP_ELSE"),
200 0x68 => f.write_str("OP_ENDIF"),
201 0x69 => f.write_str("OP_VERIFY"),
202 0x6a => f.write_str("OP_RETURN"),
203 0x6b => f.write_str("OP_TOALTSTACK"),
204 0x6c => f.write_str("OP_FROMALTSTACK"),
205 0x6d => f.write_str("OP_2DROP"),
206 0x6e => f.write_str("OP_2DUP"),
207 0x6f => f.write_str("OP_3DUP"),
208 0x70 => f.write_str("OP_2OVER"),
209 0x71 => f.write_str("OP_2ROT"),
210 0x72 => f.write_str("OP_2SWAP"),
211 0x73 => f.write_str("OP_IFDUP"),
212 0x74 => f.write_str("OP_DEPTH"),
213 0x75 => f.write_str("OP_DROP"),
214 0x76 => f.write_str("OP_DUP"),
215 0x77 => f.write_str("OP_NIP"),
216 0x78 => f.write_str("OP_OVER"),
217 0x79 => f.write_str("OP_PICK"),
218 0x7a => f.write_str("OP_ROLL"),
219 0x7b => f.write_str("OP_ROT"),
220 0x7c => f.write_str("OP_SWAP"),
221 0x7d => f.write_str("OP_TUCK"),
222 0x7e => f.write_str("OP_CAT"),
223 0x7f => f.write_str("OP_SUBSTR"),
224 0x80 => f.write_str("OP_LEFT"),
225 0x81 => f.write_str("OP_RIGHT"),
226 0x82 => f.write_str("OP_SIZE"),
227 0x83 => f.write_str("OP_INVERT"),
228 0x84 => f.write_str("OP_AND"),
229 0x85 => f.write_str("OP_OR"),
230 0x86 => f.write_str("OP_XOR"),
231 0x87 => f.write_str("OP_EQUAL"),
232 0x88 => f.write_str("OP_EQUALVERIFY"),
233 0x89 => f.write_str("OP_RESERVED1"),
234 0x8a => f.write_str("OP_RESERVED2"),
235 0x8b => f.write_str("OP_1ADD"),
236 0x8c => f.write_str("OP_1SUB"),
237 0x8d => f.write_str("OP_2MUL"),
238 0x8e => f.write_str("OP_2DIV"),
239 0x8f => f.write_str("OP_NEGATE"),
240 0x90 => f.write_str("OP_ABS"),
241 0x91 => f.write_str("OP_NOT"),
242 0x92 => f.write_str("OP_0NOTEQUAL"),
243 0x93 => f.write_str("OP_ADD"),
244 0x94 => f.write_str("OP_SUB"),
245 0x95 => f.write_str("OP_MUL"),
246 0x96 => f.write_str("OP_DIV"),
247 0x97 => f.write_str("OP_MOD"),
248 0x98 => f.write_str("OP_LSHIFT"),
249 0x99 => f.write_str("OP_RSHIFT"),
250 0x9a => f.write_str("OP_BOOLAND"),
251 0x9b => f.write_str("OP_BOOLOR"),
252 0x9c => f.write_str("OP_NUMEQUAL"),
253 0x9d => f.write_str("OP_NUMEQUALVERIFY"),
254 0x9e => f.write_str("OP_NUMNOTEQUAL"),
255 0x9f => f.write_str("OP_LESSTHAN"),
256 0xa0 => f.write_str("OP_GREATERTHAN"),
257 0xa1 => f.write_str("OP_LESSTHANOREQUAL"),
258 0xa2 => f.write_str("OP_GREATERTHANOREQUAL"),
259 0xa3 => f.write_str("OP_MIN"),
260 0xa4 => f.write_str("OP_MAX"),
261 0xa5 => f.write_str("OP_WITHIN"),
262 0xa6 => f.write_str("OP_RIPEMD160"),
263 0xa7 => f.write_str("OP_SHA1"),
264 0xa8 => f.write_str("OP_SHA256"),
265 0xa9 => f.write_str("OP_HASH160"),
266 0xaa => f.write_str("OP_HASH256"),
267 0xab => f.write_str("OP_CODESEPARATOR"),
268 0xac => f.write_str("OP_CHECKSIG"),
269 0xad => f.write_str("OP_CHECKSIGVERIFY"),
270 0xae => f.write_str("OP_CHECKMULTISIG"),
271 0xaf => f.write_str("OP_CHECKMULTISIGVERIFY"),
272 0xb1 => f.write_str("OP_CLTV"),
273 0xb2 => f.write_str("OP_CSV"),
274 0xb0..=0xb9 => write!(f, "OP_NOP{}", op - 0xb0 + 1),
275 0xba => f.write_str("OP_CHECKSIGADD"),
276 0xbb..=0xfe => write!(f, "OP_RETURN_{}", op),
277 0xff => f.write_str("OP_INVALIDOPCODE"),
278 }
279}
280
281#[cfg(test)]
282mod tests {
283 use super::*;
284
285 #[test]
286 fn opcode_to_u8_from_u8_roundtrip() {
287 for b in 0..=u8::MAX {
288 let op = Opcode::from_u8(b);
289 assert_eq!(op.to_u8(), b);
290
291 let op = Opcode::from(b);
292 assert_eq!(u8::from(op), b);
293 }
294 }
295}