ic_memory/ledger/
integrity.rs1use super::{AllocationLedger, AllocationRecord, AllocationState, LedgerIntegrityError};
2use crate::{declaration::validate_runtime_fingerprint, validation::Validate};
3use std::collections::BTreeSet;
4
5impl AllocationLedger {
6 pub(crate) fn validate_bounds(&self) -> Result<(), LedgerIntegrityError> {
7 for (resource, count, limit) in [
8 (
9 "allocation records",
10 self.allocation_history.records().len(),
11 255,
12 ),
13 (
14 "generation history",
15 self.allocation_history.generations().len(),
16 crate::constants::MAX_LEDGER_GENERATIONS,
17 ),
18 (
19 "schema history",
20 self.allocation_history
21 .records()
22 .iter()
23 .map(|r| r.schema_history.len())
24 .sum(),
25 crate::constants::MAX_LEDGER_GENERATIONS,
26 ),
27 ] {
28 if count > limit {
29 return Err(LedgerIntegrityError::LimitExceeded { resource, limit });
30 }
31 }
32 Ok(())
33 }
34
35 pub(crate) fn validate_staging_bounds(&self) -> Result<(), LedgerIntegrityError> {
36 self.validate_bounds()?;
37 if self.allocation_history.generations().len() >= crate::constants::MAX_LEDGER_GENERATIONS {
38 return Err(LedgerIntegrityError::LimitExceeded {
39 resource: "generation history",
40 limit: crate::constants::MAX_LEDGER_GENERATIONS,
41 });
42 }
43 Ok(())
44 }
45
46 pub fn validate_integrity(&self) -> Result<(), LedgerIntegrityError> {
48 self.validate_bounds()?;
49 let mut stable_keys = BTreeSet::new();
50 let mut slots = BTreeSet::new();
51
52 for record in self.allocation_history.records() {
53 if !stable_keys.insert(&record.stable_key) {
54 return Err(LedgerIntegrityError::DuplicateStableKey {
55 stable_key: record.stable_key.clone(),
56 });
57 }
58 if !slots.insert(&record.slot) {
59 return Err(LedgerIntegrityError::DuplicateSlot {
60 slot: Box::new(record.slot.clone()),
61 });
62 }
63 validate_record_integrity(self.current_generation, record)?;
64 }
65
66 let mut generations = BTreeSet::new();
67 for generation in self.allocation_history.generations() {
68 if !generations.insert(generation.generation) {
69 return Err(LedgerIntegrityError::DuplicateGeneration {
70 generation: generation.generation,
71 });
72 }
73 if generation.generation > self.current_generation {
74 return Err(LedgerIntegrityError::FutureGeneration {
75 generation: generation.generation,
76 current_generation: self.current_generation,
77 });
78 }
79 if generation.parent_generation >= generation.generation {
80 return Err(LedgerIntegrityError::InvalidParentGeneration {
81 generation: generation.generation,
82 parent_generation: generation.parent_generation,
83 });
84 }
85 }
86
87 Ok(())
88 }
89
90 pub fn validate_committed_integrity(&self) -> Result<(), LedgerIntegrityError> {
95 self.validate_integrity()?;
96
97 if self.current_generation != 0
98 && !self
99 .allocation_history
100 .generations()
101 .iter()
102 .any(|record| record.generation == self.current_generation)
103 {
104 return Err(LedgerIntegrityError::MissingCurrentGenerationRecord {
105 current_generation: self.current_generation,
106 });
107 }
108
109 let mut previous = None;
110 for generation in self.allocation_history.generations() {
111 validate_runtime_fingerprint(generation.runtime_fingerprint.as_deref())
112 .map_err(LedgerIntegrityError::DiagnosticMetadata)?;
113
114 let expected_generation = previous.map_or(1, |previous| previous + 1);
115 if generation.generation != expected_generation {
116 return Err(LedgerIntegrityError::NonIncreasingGenerationRecords {
117 generation: generation.generation,
118 });
119 }
120
121 let expected_parent = previous.unwrap_or(0);
122 if generation.parent_generation != expected_parent {
123 return Err(LedgerIntegrityError::BrokenGenerationChain {
124 generation: generation.generation,
125 expected_parent,
126 actual_parent: generation.parent_generation,
127 });
128 }
129
130 previous = Some(generation.generation);
131 }
132
133 for record in self.allocation_history.records() {
137 if record.first_generation == 0 {
138 return Err(LedgerIntegrityError::UnknownRecordGeneration {
139 stable_key: record.stable_key.clone(),
140 generation: 0,
141 });
142 }
143 }
144
145 Ok(())
146 }
147}
148
149fn validate_record_integrity(
150 current_generation: u64,
151 record: &AllocationRecord,
152) -> Result<(), LedgerIntegrityError> {
153 record
154 .stable_key
155 .validate()
156 .map_err(LedgerIntegrityError::InvalidStableKey)?;
157 record
158 .slot
159 .validate()
160 .map_err(LedgerIntegrityError::InvalidSlotDescriptor)?;
161
162 if record.first_generation > record.last_seen_generation {
163 return Err(LedgerIntegrityError::InvalidRecordGenerationOrder {
164 stable_key: record.stable_key.clone(),
165 first_generation: record.first_generation,
166 last_seen_generation: record.last_seen_generation,
167 });
168 }
169 if record.last_seen_generation > current_generation {
170 return Err(LedgerIntegrityError::FutureRecordGeneration {
171 stable_key: record.stable_key.clone(),
172 generation: record.last_seen_generation,
173 current_generation,
174 });
175 }
176
177 match record.state {
178 AllocationState::Retired {
179 generation: retired_generation,
180 } => {
181 if retired_generation < record.first_generation {
182 return Err(LedgerIntegrityError::RetiredBeforeFirstGeneration {
183 stable_key: record.stable_key.clone(),
184 first_generation: record.first_generation,
185 retired_generation,
186 });
187 }
188 if retired_generation > current_generation {
189 return Err(LedgerIntegrityError::FutureRecordGeneration {
190 stable_key: record.stable_key.clone(),
191 generation: retired_generation,
192 current_generation,
193 });
194 }
195 if retired_generation <= record.last_seen_generation {
196 return Err(LedgerIntegrityError::RetirementNotAfterLastSeen {
197 stable_key: record.stable_key.clone(),
198 last_seen_generation: record.last_seen_generation,
199 retired_generation,
200 });
201 }
202 }
203 AllocationState::Reserved | AllocationState::Active => {}
204 }
205
206 validate_schema_history_integrity(current_generation, record)
207}
208
209fn validate_schema_history_integrity(
210 current_generation: u64,
211 record: &AllocationRecord,
212) -> Result<(), LedgerIntegrityError> {
213 if record.schema_history.is_empty() {
214 return Err(LedgerIntegrityError::EmptySchemaHistory {
215 stable_key: record.stable_key.clone(),
216 });
217 }
218
219 let first_schema_generation = record.schema_history[0].generation;
220 if first_schema_generation != record.first_generation {
221 return Err(LedgerIntegrityError::SchemaHistoryStartMismatch {
222 stable_key: record.stable_key.clone(),
223 first_generation: record.first_generation,
224 schema_generation: first_schema_generation,
225 });
226 }
227
228 let mut previous = None;
229 for schema in &record.schema_history {
230 schema
231 .schema
232 .validate()
233 .map_err(|error| LedgerIntegrityError::InvalidSchemaMetadata {
234 stable_key: record.stable_key.clone(),
235 generation: schema.generation,
236 error,
237 })?;
238 if previous.is_some_and(|generation| schema.generation <= generation) {
239 return Err(LedgerIntegrityError::NonIncreasingSchemaHistory {
240 stable_key: record.stable_key.clone(),
241 });
242 }
243 if schema.generation < record.first_generation || schema.generation > current_generation {
244 return Err(LedgerIntegrityError::SchemaHistoryOutOfBounds {
245 stable_key: record.stable_key.clone(),
246 generation: schema.generation,
247 });
248 }
249 if schema.generation > record.last_seen_generation {
250 return Err(LedgerIntegrityError::SchemaHistoryAfterLastSeen {
251 stable_key: record.stable_key.clone(),
252 generation: schema.generation,
253 last_seen_generation: record.last_seen_generation,
254 });
255 }
256 previous = Some(schema.generation);
257 }
258
259 Ok(())
260}