ic_memory/ledger/
integrity.rs1use super::{AllocationLedger, AllocationRecord, AllocationState, LedgerIntegrityError};
2use crate::declaration::validate_runtime_fingerprint;
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 crate::constants::MAX_ALLOCATIONS,
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 = [false; crate::constants::MAX_ALLOCATIONS];
52
53 for record in self.allocation_history.records() {
54 if !stable_keys.insert(&record.stable_key) {
55 return Err(LedgerIntegrityError::DuplicateStableKey {
56 stable_key: record.stable_key.clone(),
57 });
58 }
59 let occupied = &mut slots[usize::from(record.slot.id())];
60 if *occupied {
61 return Err(LedgerIntegrityError::DuplicateSlot {
62 slot: record.slot.clone(),
63 });
64 }
65 *occupied = true;
66 validate_record_integrity(self.current_generation, record)?;
67 }
68
69 let mut generations = BTreeSet::new();
70 for generation in self.allocation_history.generations() {
71 if !generations.insert(generation.generation) {
72 return Err(LedgerIntegrityError::DuplicateGeneration {
73 generation: generation.generation,
74 });
75 }
76 if generation.generation > self.current_generation {
77 return Err(LedgerIntegrityError::FutureGeneration {
78 generation: generation.generation,
79 current_generation: self.current_generation,
80 });
81 }
82 if generation.parent_generation >= generation.generation {
83 return Err(LedgerIntegrityError::InvalidParentGeneration {
84 generation: generation.generation,
85 parent_generation: generation.parent_generation,
86 });
87 }
88 }
89
90 Ok(())
91 }
92
93 pub fn validate_committed_integrity(&self) -> Result<(), LedgerIntegrityError> {
98 self.validate_integrity()?;
99
100 if self.current_generation != 0
101 && !self
102 .allocation_history
103 .generations()
104 .iter()
105 .any(|record| record.generation == self.current_generation)
106 {
107 return Err(LedgerIntegrityError::MissingCurrentGenerationRecord {
108 current_generation: self.current_generation,
109 });
110 }
111
112 let mut expected_parent = 0;
113 for generation in self.allocation_history.generations() {
114 validate_runtime_fingerprint(generation.runtime_fingerprint.as_deref())
115 .map_err(LedgerIntegrityError::DiagnosticMetadata)?;
116
117 if generation.generation != expected_parent + 1 {
118 return Err(LedgerIntegrityError::NonIncreasingGenerationRecords {
119 generation: generation.generation,
120 });
121 }
122
123 if generation.parent_generation != expected_parent {
124 return Err(LedgerIntegrityError::BrokenGenerationChain {
125 generation: generation.generation,
126 expected_parent,
127 actual_parent: generation.parent_generation,
128 });
129 }
130
131 expected_parent = generation.generation;
132 }
133
134 for record in self.allocation_history.records() {
138 if record.first_generation == 0 {
139 return Err(LedgerIntegrityError::UnknownRecordGeneration {
140 stable_key: record.stable_key.clone(),
141 generation: 0,
142 });
143 }
144 }
145
146 Ok(())
147 }
148}
149
150fn validate_record_integrity(
151 current_generation: u64,
152 record: &AllocationRecord,
153) -> Result<(), LedgerIntegrityError> {
154 if record.first_generation > record.last_seen_generation {
155 return Err(LedgerIntegrityError::InvalidRecordGenerationOrder {
156 stable_key: record.stable_key.clone(),
157 first_generation: record.first_generation,
158 last_seen_generation: record.last_seen_generation,
159 });
160 }
161 if record.last_seen_generation > current_generation {
162 return Err(LedgerIntegrityError::FutureRecordGeneration {
163 stable_key: record.stable_key.clone(),
164 generation: record.last_seen_generation,
165 current_generation,
166 });
167 }
168
169 match record.state {
170 AllocationState::Retired {
171 generation: retired_generation,
172 } => {
173 if retired_generation < record.first_generation {
174 return Err(LedgerIntegrityError::RetiredBeforeFirstGeneration {
175 stable_key: record.stable_key.clone(),
176 first_generation: record.first_generation,
177 retired_generation,
178 });
179 }
180 if retired_generation > current_generation {
181 return Err(LedgerIntegrityError::FutureRecordGeneration {
182 stable_key: record.stable_key.clone(),
183 generation: retired_generation,
184 current_generation,
185 });
186 }
187 if retired_generation <= record.last_seen_generation {
188 return Err(LedgerIntegrityError::RetirementNotAfterLastSeen {
189 stable_key: record.stable_key.clone(),
190 last_seen_generation: record.last_seen_generation,
191 retired_generation,
192 });
193 }
194 }
195 AllocationState::Reserved | AllocationState::Active => {}
196 }
197
198 validate_schema_history_integrity(current_generation, record)
199}
200
201fn validate_schema_history_integrity(
202 current_generation: u64,
203 record: &AllocationRecord,
204) -> Result<(), LedgerIntegrityError> {
205 if record.schema_history.is_empty() {
206 return Err(LedgerIntegrityError::EmptySchemaHistory {
207 stable_key: record.stable_key.clone(),
208 });
209 }
210
211 let first_schema_generation = record.schema_history[0].generation;
212 if first_schema_generation != record.first_generation {
213 return Err(LedgerIntegrityError::SchemaHistoryStartMismatch {
214 stable_key: record.stable_key.clone(),
215 first_generation: record.first_generation,
216 schema_generation: first_schema_generation,
217 });
218 }
219
220 let mut previous = None;
221 for schema in &record.schema_history {
222 if previous.is_some_and(|generation| schema.generation <= generation) {
223 return Err(LedgerIntegrityError::NonIncreasingSchemaHistory {
224 stable_key: record.stable_key.clone(),
225 });
226 }
227 if schema.generation > current_generation {
229 return Err(LedgerIntegrityError::SchemaHistoryOutOfBounds {
230 stable_key: record.stable_key.clone(),
231 generation: schema.generation,
232 });
233 }
234 if schema.generation > record.last_seen_generation {
235 return Err(LedgerIntegrityError::SchemaHistoryAfterLastSeen {
236 stable_key: record.stable_key.clone(),
237 generation: schema.generation,
238 last_seen_generation: record.last_seen_generation,
239 });
240 }
241 previous = Some(schema.generation);
242 }
243
244 Ok(())
245}