S498 · SOURCE-BOUND GATE EVIDENCE
S498 · Storage integrity · Missing-observation journal
tam S498 implementation modülü → Operations --test hedefi ile bağlı tam focused test → ayrı Operations kaydı Bu sayfa yalnız S498 kapısına aittir; komşu kapıların kaynakları bu kabulün içine katılmaz.
S498Focused kod testiOperations id exactsource SHA exacttest target exact
operation: g8l-s498-storage-integrity-journal-partial
uygulama/model · focused test · Operations · 3 exact excerpt
sequence-bound=true · implementation-bound=true
01 · Yürütme / doğrulama kodu
Kapının gerçek repository sözleşmesi
tam dosyaL1–L65
kernel/src/g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s498_storage_integrity_journal.rs::S498 storage integrity journal implementation
#![allow(unexpected_cfgs)]
//! S498 Storage integrity · Missing-observation journal.
//!
//! This is a separate typed gate after S497. It advances only the
//! acceptance-readiness ledger; supported-profile runtime observations,
//! physical observations and product acceptance remain explicitly absent.
use crate::g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s497_storage_integrity_callsite::S497_SEQUENCE;
use crate::g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s431_runtime_evidence_contract::{
advance_s431_to_s535_model_acceptance_gate,
G8lS431ToS535AcceptanceError, G8lS431ToS535AcceptanceGateDescriptor,
G8lS431ToS535AcceptanceLedger, G8lS431ToS535AcceptanceOutcome,
G8lS431ToS535AcceptanceStep, S431_DIRECT_ACCESS_SITES,
S431_PRODUCTION_GUARDED_DIRECT_ACCESS_SITES, S431_SOURCE_AUDIT_UNITS,
S431_SOURCE_MODEL_COVERED_DIRECT_ACCESS_SITES, S431_UNROUTED_DIRECT_ACCESS_SITES,
};
pub const S498_SEQUENCE: usize = 498;
pub const S498_EXPECTED_PREDECESSOR: usize = S497_SEQUENCE;
pub const S498_BLOCK_ORDINAL: usize = 10;
pub const S498_STEP_ORDINAL: usize = 5;
pub const S498_ACCEPTANCE_DOMAIN: &str = "storage_integrity";
pub const S498_SOURCE_AUDIT_UNITS: usize = S431_SOURCE_AUDIT_UNITS;
pub const S498_DIRECT_ACCESS_SITES: usize = S431_DIRECT_ACCESS_SITES;
pub const S498_SOURCE_MODEL_COVERED_DIRECT_ACCESS_SITES: usize =
S431_SOURCE_MODEL_COVERED_DIRECT_ACCESS_SITES;
pub const S498_PRODUCTION_GUARDED_DIRECT_ACCESS_SITES: usize =
S431_PRODUCTION_GUARDED_DIRECT_ACCESS_SITES;
pub const S498_UNROUTED_DIRECT_ACCESS_SITES: usize = S431_UNROUTED_DIRECT_ACCESS_SITES;
pub const RUNBOOK_EXECUTED_IN_S498: bool = false;
pub const S498_SUPPORTED_PROFILE_RUNTIME_OBSERVATIONS: usize = 0;
pub const S498_PHYSICAL_OBSERVATIONS: usize = 0;
pub const S498_ACCEPTANCE_COMPLETE: bool = false;
pub const S498_DESCRIPTOR: G8lS431ToS535AcceptanceGateDescriptor =
G8lS431ToS535AcceptanceGateDescriptor {
sequence: S498_SEQUENCE,
predecessor_sequence: S498_EXPECTED_PREDECESSOR,
block_ordinal: S498_BLOCK_ORDINAL,
step_ordinal: S498_STEP_ORDINAL,
acceptance_domain: S498_ACCEPTANCE_DOMAIN,
step: G8lS431ToS535AcceptanceStep::MissingObservationJournal,
runtime_evidence_required: true,
physical_evidence_required: true,
};
pub type G8lS498AcceptanceGateOutcome = G8lS431ToS535AcceptanceOutcome;
pub type G8lS498AcceptanceGateError = G8lS431ToS535AcceptanceError;
pub fn service_s498_model_storage_integrity_journal(
ledger: &mut G8lS431ToS535AcceptanceLedger,
caller_cpu: usize,
) -> Result<G8lS498AcceptanceGateOutcome, G8lS498AcceptanceGateError> {
advance_s431_to_s535_model_acceptance_gate(ledger, caller_cpu, S498_DESCRIPTOR)
}
#[cfg(all(target_arch = "aarch64", target_os = "none", feature = "board-rpi5"))]
pub fn service_s498_storage_integrity_journal_on_cpu1(
) -> Result<G8lS498AcceptanceGateOutcome, G8lS498AcceptanceGateError> {
crate::g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s431_runtime_evidence_contract::service_s431_to_s535_production_acceptance_gate_on_cpu1(
S498_DESCRIPTOR,
)
}
snippet sha256: 8f0663d6e65c…file sha256: 8f0663d6e65c…
02 · Doğrulayan test kodu
Operations komutuna bağlı focused test
tam dosyaL1–L188
simulation/tests/g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s498_storage_integrity_journal.rs::S498 storage integrity journal focused tests
use aselsan_microkernel_simulation::g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s430_final_software_boundary::G8lS430FinalSoftwareBoundaryStatus;
use aselsan_microkernel_simulation::g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s431_runtime_evidence_contract::{
advance_s431_to_s535_model_acceptance_gate,
canonical_s431_to_s535_acceptance_descriptor, G8lS431ToS535AcceptanceError,
G8lS431ToS535AcceptanceLedger, G8lS431ToS535AcceptanceOutcome,
S431_FIRST_SEQUENCE, S535_LAST_SEQUENCE,
};
use aselsan_microkernel_simulation::g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s498_storage_integrity_journal as gate;
fn s430_anchor() -> G8lS430FinalSoftwareBoundaryStatus {
G8lS430FinalSoftwareBoundaryStatus {
attempt_id: 4301,
provider_request_id: 4302,
exclusive_token: 4303,
completed_gate_count: 30,
software_source_path_complete: true,
whole_scheduler_exclusion_source_handshake_complete: true,
main_migration_lifecycle_source_path_complete: true,
supported_profile_runtime_acceptance_complete: false,
physical_acceptance_complete: false,
r2_product_acceptance_complete: false,
runbook_executed: false,
}
}
fn acceptance_ledger() -> G8lS431ToS535AcceptanceLedger {
G8lS431ToS535AcceptanceLedger::from_s430(1, s430_anchor()).unwrap()
}
fn advance_before(ledger: &mut G8lS431ToS535AcceptanceLedger, sequence: usize) {
for predecessor in S431_FIRST_SEQUENCE..sequence {
let descriptor = canonical_s431_to_s535_acceptance_descriptor(predecessor).unwrap();
assert!(matches!(
advance_s431_to_s535_model_acceptance_gate(ledger, 1, descriptor),
Ok(G8lS431ToS535AcceptanceOutcome::Advanced(_))
));
}
}
#[test]
fn s498_descriptor_is_exact_and_canonical() {
assert_eq!(gate::S498_SEQUENCE, 498);
assert_eq!(gate::S498_EXPECTED_PREDECESSOR, 497);
assert_eq!(gate::S498_BLOCK_ORDINAL, 10);
assert_eq!(gate::S498_STEP_ORDINAL, 5);
assert_eq!(gate::S498_ACCEPTANCE_DOMAIN, "storage_integrity");
assert_eq!(
canonical_s431_to_s535_acceptance_descriptor(498),
Some(gate::S498_DESCRIPTOR)
);
}
#[test]
fn s498_is_cpu1_scoped_and_waits_for_exact_predecessor() {
let mut ledger = acceptance_ledger();
assert_eq!(
gate::service_s498_model_storage_integrity_journal(&mut ledger, 0),
Err(G8lS431ToS535AcceptanceError::WrongCpu)
);
assert_eq!(ledger.last_completed_sequence(), 430);
if 498 == S431_FIRST_SEQUENCE {
let future = canonical_s431_to_s535_acceptance_descriptor(432).unwrap();
assert!(matches!(
advance_s431_to_s535_model_acceptance_gate(&mut ledger, 1, future),
Ok(G8lS431ToS535AcceptanceOutcome::AwaitingPredecessor {
expected_predecessor: 431,
observed_predecessor: 430,
..
})
));
} else {
assert!(matches!(
gate::service_s498_model_storage_integrity_journal(&mut ledger, 1),
Ok(G8lS431ToS535AcceptanceOutcome::AwaitingPredecessor {
sequence: 498,
expected_predecessor: 497,
observed_predecessor: 430,
})
));
}
}
#[test]
fn s498_advances_once_with_non_acceptance_receipt() {
let mut ledger = acceptance_ledger();
advance_before(&mut ledger, 498);
let G8lS431ToS535AcceptanceOutcome::Advanced(receipt) =
gate::service_s498_model_storage_integrity_journal(&mut ledger, 1).unwrap()
else {
panic!("S498 must advance")
};
assert_eq!((receipt.sequence, receipt.predecessor_sequence), (498, 497));
assert_eq!((receipt.block_ordinal, receipt.step_ordinal), (10, 5));
assert_eq!(receipt.completed_block_count, 9);
assert!(receipt.source_gate_complete);
assert!(receipt.runtime_evidence_required);
assert!(!receipt.supported_profile_runtime_observed);
assert!(!receipt.physical_observed);
assert!(!receipt.acceptance_complete);
assert!(!receipt.runbook_executed);
}
#[test]
fn s498_replay_is_idempotent_and_historical_reentry_does_not_mutate() {
let mut ledger = acceptance_ledger();
advance_before(&mut ledger, 498);
let first = gate::service_s498_model_storage_integrity_journal(&mut ledger, 1).unwrap();
let G8lS431ToS535AcceptanceOutcome::Advanced(receipt) = first else {
panic!("advance")
};
assert_eq!(
gate::service_s498_model_storage_integrity_journal(&mut ledger, 1),
Ok(G8lS431ToS535AcceptanceOutcome::Retained(receipt))
);
if 498 < S535_LAST_SEQUENCE {
let next = canonical_s431_to_s535_acceptance_descriptor(498 + 1).unwrap();
assert!(matches!(
advance_s431_to_s535_model_acceptance_gate(&mut ledger, 1, next),
Ok(G8lS431ToS535AcceptanceOutcome::Advanced(_))
));
assert_eq!(
gate::service_s498_model_storage_integrity_journal(&mut ledger, 1),
Ok(G8lS431ToS535AcceptanceOutcome::AlreadyCompleted {
requested_sequence: 498,
last_completed_sequence: 498 + 1,
})
);
}
}
#[test]
fn s498_coverage_and_open_claim_boundary_are_preserved() {
assert_eq!(gate::S498_SOURCE_AUDIT_UNITS, 7);
assert_eq!(gate::S498_DIRECT_ACCESS_SITES, 113);
assert_eq!(gate::S498_SOURCE_MODEL_COVERED_DIRECT_ACCESS_SITES, 113);
assert_eq!(gate::S498_PRODUCTION_GUARDED_DIRECT_ACCESS_SITES, 113);
assert_eq!(gate::S498_UNROUTED_DIRECT_ACCESS_SITES, 0);
assert_eq!(gate::S498_SUPPORTED_PROFILE_RUNTIME_OBSERVATIONS, 0);
assert_eq!(gate::S498_PHYSICAL_OBSERVATIONS, 0);
assert!(!gate::S498_ACCEPTANCE_COMPLETE);
assert!(!gate::RUNBOOK_EXECUTED_IN_S498);
}
#[test]
fn s498_has_separate_kernel_simulation_and_production_wiring() {
const TARGET: &str = "g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s498_storage_integrity_journal";
const SERVICE: &str = "service_s498_storage_integrity_journal_on_cpu1";
let source = include_str!("../../kernel/src/g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s498_storage_integrity_journal.rs");
let kernel_registry = include_str!("../../kernel/src/main.rs");
let simulation_registry = include_str!("../src/lib.rs");
let exceptions = include_str!("../../kernel/src/arch/aarch64/exceptions.rs");
assert!(source.contains("pub const S498_DESCRIPTOR"));
assert_eq!(
kernel_registry.matches(&format!("mod {TARGET};")).count(),
1
);
assert_eq!(
simulation_registry
.matches(&format!("pub mod {TARGET};"))
.count(),
1
);
assert_eq!(exceptions.matches(SERVICE).count(), 1);
let previous = exceptions
.find("service_s497_storage_integrity_callsite_on_cpu1")
.unwrap();
let current = exceptions.find(SERVICE).unwrap();
assert!(previous < current);
let successor_service = "service_s499_storage_integrity_reconciliation_on_cpu1";
if !successor_service.is_empty() {
assert!(current < exceptions.find(successor_service).unwrap());
}
}
#[test]
fn s498_descriptor_mutation_fails_before_ledger_advance() {
let mut ledger = acceptance_ledger();
advance_before(&mut ledger, 498);
let before = ledger.last_completed_sequence();
let mut drift = gate::S498_DESCRIPTOR;
drift.block_ordinal += 1;
assert_eq!(
advance_s431_to_s535_model_acceptance_gate(&mut ledger, 1, drift),
Err(G8lS431ToS535AcceptanceError::DescriptorDrift)
);
assert_eq!(ledger.last_completed_sequence(), before);
}
snippet sha256: 6c2ab3049a67…file sha256: 6c2ab3049a67…
03 · Kapı kimlik kaydı
Operations sıra, kimlik ve başlık bağı
tam Operations kaydıL1161–L1177
website/src/lib/s431-s535-gate-specs.generated.ts::g8l-s498-storage-integrity-journal-partial
{
id: "g8l-s498-storage-integrity-journal-partial",
sequence: 498,
slug: "storage_integrity_journal",
title: "Storage integrity · Missing-observation journal",
focusedTests: 7,
sourceBytes: 3255,
sourceSha256: "8f0663d6e65c2c6a60963c97f6074d4372194b4b873f3959f527f9d3a790624b",
testBytes: 7835,
testSha256: "6c2ab3049a6788f8a884ceed1f0b1cf879fd66855b4424af872652749dac8a4c",
blockOrdinal: 10,
blockTitle: "Storage integrity",
stepOrdinal: 5,
stepTitle: "Missing-observation journal",
acceptance: "S498, Storage integrity bloğının Missing-observation journal adımını exact S497 predecessor sonrasında ayrı typed descriptor ve ayrı CPU1 production service callsite ile kaydeder.",
retainedBoundary: "Bu yalnız fail-closed software readiness kaydıdır; supported-profile runtime observation=0, physical observation=0, acceptance_complete=false ve RUNBOOK_EXECUTED_IN_S498=NO kalır.",
},snippet sha256: 5992c252b334…file sha256: f38bd8bfe8fb…
Focused test komutu
CARGO_INCREMENTAL=0 cargo test -p aselsan_microkernel_simulation --test g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s498_storage_integrity_journal -- --test-threads=1proof: docs/M8.1-RPi5-G8l-S498-Storage-integrity-·-Missing-observation-journal-Proof.md
Registry schema v5 · generator
website/scripts/generate-code-gates.mjs · Tam SHA-256: 91d38c7b6222f0b4c117be786454853543da55a160e543d9b951057cc20dcc06