rain_metadata/
metaboard.rs1use alloy::primitives::{Bytes, FixedBytes, hex};
2use alloy::sol_types::SolCall;
3use rain_metadata_bindings::IMetaBoardV1_2::emitMetaCall;
4use serde::Serialize;
5
6use crate::{Error, RainMetaDocumentV1Item};
7use crate::meta::types::dotrain::source_v1::DotrainSourceV1;
8
9fn generate_emit_data_calldata(subject: FixedBytes<32>, data: Vec<u8>) -> Vec<u8> {
11 let call = emitMetaCall {
12 subject,
13 meta: Bytes::from(data),
14 };
15 call.abi_encode()
16}
17
18pub fn generate_emit_meta_calldata(meta: RainMetaDocumentV1Item) -> Result<Vec<u8>, Error> {
25 let hash = meta.hash(false)?;
26 let meta_bytes = RainMetaDocumentV1Item::cbor_encode_seq(
27 &vec![meta],
28 crate::KnownMagic::RainMetaDocumentV1,
29 )?;
30 Ok(generate_emit_data_calldata(hash.into(), meta_bytes))
31}
32
33#[derive(Debug, Clone, Serialize, serde::Deserialize)]
35pub struct DotrainSourceEmitData {
36 pub subject: String,
38 pub meta_bytes: String,
40 pub calldata: String,
42}
43
44fn validate_dotrain_content(content: &str) -> Result<(), Error> {
46 if content.trim().is_empty() {
48 return Err(Error::InvalidInput(
49 "Dotrain content cannot be empty".to_string(),
50 ));
51 }
52 Ok(())
53}
54
55pub fn generate_dotrain_source_emit_tx_data(content: &str) -> Result<DotrainSourceEmitData, Error> {
58 validate_dotrain_content(content)?;
60
61 let dotrain_source = DotrainSourceV1(content.to_string());
63 let document: RainMetaDocumentV1Item = dotrain_source.into();
65
66 let subject_hash = document.hash(false)?;
69 let documents = vec![document];
70
71 let meta_bytes =
73 RainMetaDocumentV1Item::cbor_encode_seq(&documents, crate::KnownMagic::RainMetaDocumentV1)?;
74
75 let meta_bytes_hex = hex::encode_prefixed(&meta_bytes);
77 let calldata = generate_emit_data_calldata(subject_hash.into(), meta_bytes);
79
80 Ok(DotrainSourceEmitData {
81 subject: hex::encode_prefixed(subject_hash),
82 meta_bytes: meta_bytes_hex,
83 calldata: hex::encode_prefixed(calldata),
84 })
85}
86
87#[cfg(test)]
88mod tests {
89 use super::*;
90 use crate::meta::{ContentEncoding, ContentLanguage, ContentType, KnownMagic};
91
92 fn create_test_meta(content: &str) -> RainMetaDocumentV1Item {
93 RainMetaDocumentV1Item {
94 payload: serde_bytes::ByteBuf::from(content),
95 magic: KnownMagic::DotrainSourceV1,
96 content_type: ContentType::OctetStream,
97 content_encoding: ContentEncoding::None,
98 content_language: ContentLanguage::None,
99 schema: None,
100 }
101 }
102
103 #[test]
104 fn test_generate_emit_meta_calldata_success() {
105 let meta = create_test_meta("test content");
106 let calldata = generate_emit_meta_calldata(meta.clone()).unwrap();
107
108 assert!(!calldata.is_empty());
110
111 let decoded = emitMetaCall::abi_decode(&calldata).unwrap();
113 let expected_hash = meta.hash(false).unwrap();
114 let expected_meta_bytes =
115 RainMetaDocumentV1Item::cbor_encode_seq(&vec![meta], KnownMagic::RainMetaDocumentV1)
116 .unwrap();
117
118 assert_eq!(decoded.subject, FixedBytes::from(expected_hash));
119 assert_eq!(decoded.meta.as_ref(), expected_meta_bytes.as_slice());
120 }
121
122 #[test]
126 fn test_emit_meta_bytes_are_a_rain_meta_document() {
127 let meta = create_test_meta("test content");
128 let calldata = generate_emit_meta_calldata(meta.clone()).unwrap();
129 let emitted = emitMetaCall::abi_decode(&calldata).unwrap().meta;
130
131 assert_eq!(hex::encode(&emitted[..8]), "ff0a89c674ee7874");
133
134 let decoded = RainMetaDocumentV1Item::cbor_decode(&emitted).unwrap();
136 assert_eq!(decoded.len(), 1);
137 assert_eq!(decoded[0], meta);
138
139 let bare = meta.cbor_encode().unwrap();
141 assert_ne!(emitted.as_ref(), bare.as_slice());
142 assert_eq!(&emitted[8..], bare.as_slice());
143 }
144
145 #[test]
146 fn test_validate_dotrain_content() {
147 assert!(validate_dotrain_content("#main _ _: int-add(1 2)").is_ok());
149 assert!(validate_dotrain_content("/* comment */\n#main _ _: 1").is_ok());
150
151 assert!(validate_dotrain_content("").is_err());
153 assert!(validate_dotrain_content(" ").is_err());
154 assert!(validate_dotrain_content("\n\t\r").is_err());
155 }
156
157 #[test]
158 fn test_generate_dotrain_source_emit_tx_data_success() {
159 let content = "#main _ _: int-add(1 2) int-add(2 3)";
160 let deployment = generate_dotrain_source_emit_tx_data(content).unwrap();
161
162 assert!(deployment.subject.starts_with("0x"));
164 assert!(deployment.meta_bytes.starts_with("0x"));
165 assert!(deployment.calldata.starts_with("0x"));
166
167 assert_eq!(deployment.subject.len(), 66); assert!(deployment.meta_bytes.len() > 10); assert!(deployment.calldata.len() > 10); let calldata_bytes =
174 alloy::hex::decode(deployment.calldata.trim_start_matches("0x")).unwrap();
175 let decoded = emitMetaCall::abi_decode(&calldata_bytes).unwrap();
176 let subject_hex = deployment.subject.to_lowercase();
177 assert_eq!(hex::encode_prefixed(decoded.subject), subject_hex);
178
179 let meta_bytes_from_field =
181 alloy::hex::decode(deployment.meta_bytes.trim_start_matches("0x")).unwrap();
182 assert_eq!(decoded.meta.as_ref(), meta_bytes_from_field.as_slice());
183
184 assert!(deployment.meta_bytes.starts_with("0xff0a89c674ee7874"));
187
188 let item = RainMetaDocumentV1Item {
192 payload: serde_bytes::ByteBuf::from(content.as_bytes().to_vec()),
193 magic: KnownMagic::DotrainSourceV1,
194 content_type: ContentType::OctetStream,
195 content_encoding: ContentEncoding::None,
196 content_language: ContentLanguage::None,
197 schema: None,
198 };
199 let expected_subject = alloy::primitives::keccak256(item.cbor_encode().unwrap());
200 assert_eq!(deployment.subject, hex::encode_prefixed(expected_subject));
201 }
202
203 #[test]
204 fn test_generate_dotrain_source_emit_tx_data_empty_content() {
205 let result = generate_dotrain_source_emit_tx_data("");
206 assert!(result.is_err());
207
208 let result = generate_dotrain_source_emit_tx_data(" ");
209 assert!(result.is_err());
210 }
211
212 #[test]
213 fn test_cas_property_same_content() {
214 let meta1 = create_test_meta("identical content");
216 let meta2 = create_test_meta("identical content");
217
218 let calldata1 = generate_emit_meta_calldata(meta1).unwrap();
219 let calldata2 = generate_emit_meta_calldata(meta2).unwrap();
220
221 assert_eq!(calldata1, calldata2);
223 }
224
225 #[test]
226 fn test_cas_property_different_content() {
227 let meta1 = create_test_meta("content A");
228 let meta2 = create_test_meta("content B");
229
230 let calldata1 = generate_emit_meta_calldata(meta1).unwrap();
231 let calldata2 = generate_emit_meta_calldata(meta2).unwrap();
232
233 assert_ne!(calldata1, calldata2);
235
236 let decoded1 = emitMetaCall::abi_decode(&calldata1).unwrap();
238 let decoded2 = emitMetaCall::abi_decode(&calldata2).unwrap();
239 assert_ne!(decoded1.subject, decoded2.subject);
240 }
241
242 #[test]
243 fn test_different_magic_same_content() {
244 let meta1 = create_test_meta("same content");
245 let mut meta2 = create_test_meta("same content");
246 meta2.magic = KnownMagic::AuthoringMetaV1; let calldata1 = generate_emit_meta_calldata(meta1).unwrap();
249 let calldata2 = generate_emit_meta_calldata(meta2).unwrap();
250
251 assert_ne!(calldata1, calldata2);
253 }
254
255 #[test]
256 fn test_hash_deterministic() {
257 let meta = create_test_meta("test for deterministic hash");
258
259 let calldata1 = generate_emit_meta_calldata(meta.clone()).unwrap();
261 let calldata2 = generate_emit_meta_calldata(meta.clone()).unwrap();
262 let calldata3 = generate_emit_meta_calldata(meta).unwrap();
263
264 assert_eq!(calldata1, calldata2);
266 assert_eq!(calldata2, calldata3);
267 }
268
269 #[test]
270 fn test_subject_matches_document_hash() {
271 let meta = create_test_meta("content for hash verification");
272 let expected_hash = meta.hash(false).unwrap();
273
274 let calldata = generate_emit_meta_calldata(meta).unwrap();
275 let decoded = emitMetaCall::abi_decode(&calldata).unwrap();
276
277 assert_eq!(decoded.subject, FixedBytes::from(expected_hash));
279 }
280}