ASELSANMicrokernel
S820 · SOURCE-BOUND GATE EVIDENCE

S820 · Bölgesel operatör ve cihaz matrisi · Tekrar kampanyası tanımı

tam S820 implementation modülü → Operations --test hedefi ile bağlı tam focused test → ayrı Operations kaydı Bu sayfa yalnız S820 kapısına aittir; komşu kapıların kaynakları bu kabulün içine katılmaz.

S820Focused kod testiOperations id exactsource SHA exacttest target exact

operation: g8l-s820-r2r3-regional-operator-device-matrix-repeat-campaign-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–L67
kernel/src/g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s820_r2r3_regional_operator_device_matrix_repeat_campaign.rs::S820 r2r3 regional operator device matrix repeat campaign implementation
#![allow(unexpected_cfgs)]
#![allow(dead_code)]

//! S820 Regional operator and device matrix · Repeat campaign definition.
//!
//! Separate typed gate after S819, release track R2->R3,
//! phase T5 (Regional operator and device matrix), step
//! 10/13 of the acceptance ladder.
//!
//! It advances only the fail-closed readiness ledger.  The retained S571/S575
//! physical observations are carried read-only; new runtime and physical
//! observations, operator authority, external acceptance, cross-profile
//! coverage and release-track completion all remain explicitly absent, and the
//! module is deliberately not linked into the board-rpi5 kernel.

use crate::g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s819_r2r3_regional_operator_device_matrix_regression_guard::S819_SEQUENCE;
use crate::g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s708_r2_production_platform_isolation_contract::{
    advance_s708_to_s899_model_acceptance_gate, G8lProductAcceptanceError,
    G8lProductAcceptanceGateDescriptor, G8lProductAcceptanceLedger,
    G8lProductAcceptanceOutcome, G8lProductAcceptanceStep,
    S708_TO_S899_LINKED_INTO_BOARD_RPI5,
};

pub const S820_SEQUENCE: usize = 820;
pub const S820_EXPECTED_PREDECESSOR: usize = S819_SEQUENCE;
pub const S820_TRACK: &str = "R2->R3";
pub const S820_PHASE: &str = "T5";
pub const S820_BLOCK_ORDINAL: usize = 11;
pub const S820_BLOCK_STEP_COUNT: usize = 13;
pub const S820_STEP_ORDINAL: usize = 10;
pub const S820_ACCEPTANCE_DOMAIN: &str = "regional_operator_device_matrix";
pub const S820_LINKED_INTO_BOARD_RPI5: bool = S708_TO_S899_LINKED_INTO_BOARD_RPI5;
pub const S820_NEW_SUPPORTED_PROFILE_RUNTIME_OBSERVATIONS: usize = 0;
pub const S820_NEW_PHYSICAL_OBSERVATIONS: usize = 0;
pub const S820_OPERATOR_AUTHORIZATIONS: usize = 0;
pub const S820_EXTERNAL_ACCEPTANCES: usize = 0;
pub const S820_PHYSICAL_OR_DEVICE_OPERATIONS: usize = 0;
pub const S820_ACCEPTANCE_COMPLETE: bool = false;
pub const S820_RELEASE_TRACK_COMPLETE: bool = false;
pub const RUNBOOK_EXECUTED_IN_S820: bool = false;

pub const S820_DESCRIPTOR: G8lProductAcceptanceGateDescriptor =
    G8lProductAcceptanceGateDescriptor {
        sequence: S820_SEQUENCE,
        predecessor_sequence: S820_EXPECTED_PREDECESSOR,
        track: S820_TRACK,
        phase: S820_PHASE,
        block_ordinal: S820_BLOCK_ORDINAL,
        block_step_count: S820_BLOCK_STEP_COUNT,
        step_ordinal: S820_STEP_ORDINAL,
        acceptance_domain: S820_ACCEPTANCE_DOMAIN,
        step: G8lProductAcceptanceStep::RepeatCampaignDefinition,
        runtime_evidence_required: true,
        physical_evidence_required: true,
        external_authority_required: true,
    };

pub type G8lS820AcceptanceGateOutcome = G8lProductAcceptanceOutcome;
pub type G8lS820AcceptanceGateError = G8lProductAcceptanceError;

pub fn service_s820_model_r2r3_regional_operator_device_matrix_repeat_campaign(
    ledger: &mut G8lProductAcceptanceLedger,
    caller_cpu: usize,
) -> Result<G8lS820AcceptanceGateOutcome, G8lS820AcceptanceGateError> {
    advance_s708_to_s899_model_acceptance_gate(ledger, caller_cpu, S820_DESCRIPTOR)
}
snippet sha256: 4d4a1ffa96c3file sha256: 4d4a1ffa96c3
02 · Doğrulayan test kodu

Operations komutuna bağlı focused test

tam dosyaL1–L246
simulation/tests/g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s820_r2r3_regional_operator_device_matrix_repeat_campaign.rs::S820 r2r3 regional operator device matrix repeat campaign focused tests
use aselsan_microkernel_simulation::g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s708_r2_production_platform_isolation_contract::{
    advance_s708_to_s899_model_acceptance_gate,
    canonical_s708_to_s899_acceptance_descriptor, G8lProductAcceptanceAnchor,
    G8lProductAcceptanceError, G8lProductAcceptanceLedger, G8lProductAcceptanceOutcome,
    S708_CANONICAL_ANCHOR, S708_CHAIN_TIP_SEQUENCE, S708_FIRST_SEQUENCE, S899_LAST_SEQUENCE,
};
use aselsan_microkernel_simulation::g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s820_r2r3_regional_operator_device_matrix_repeat_campaign as gate;

fn product_anchor() -> G8lProductAcceptanceAnchor {
    S708_CANONICAL_ANCHOR
}

fn acceptance_ledger() -> G8lProductAcceptanceLedger {
    G8lProductAcceptanceLedger::from_s707(1, product_anchor()).unwrap()
}

fn advance_before(ledger: &mut G8lProductAcceptanceLedger, sequence: usize) {
    for predecessor in S708_FIRST_SEQUENCE..sequence {
        let descriptor = canonical_s708_to_s899_acceptance_descriptor(predecessor).unwrap();
        assert!(matches!(
            advance_s708_to_s899_model_acceptance_gate(ledger, 1, descriptor),
            Ok(G8lProductAcceptanceOutcome::Advanced(_))
        ));
    }
}

#[test]
fn s820_descriptor_is_exact_and_canonical() {
    assert_eq!(gate::S820_SEQUENCE, 820);
    assert_eq!(gate::S820_EXPECTED_PREDECESSOR, 819);
    assert_eq!(gate::S820_TRACK, "R2->R3");
    assert_eq!(gate::S820_PHASE, "T5");
    assert_eq!(gate::S820_BLOCK_ORDINAL, 11);
    assert_eq!(gate::S820_BLOCK_STEP_COUNT, 13);
    assert_eq!(gate::S820_STEP_ORDINAL, 10);
    assert_eq!(
        gate::S820_ACCEPTANCE_DOMAIN,
        "regional_operator_device_matrix"
    );
    assert_eq!(gate::S820_DESCRIPTOR.external_authority_required, true);
    assert!(gate::S820_DESCRIPTOR.physical_evidence_required);
    assert_eq!(
        canonical_s708_to_s899_acceptance_descriptor(820),
        Some(gate::S820_DESCRIPTOR)
    );
}

#[test]
fn s820_is_cpu1_scoped_and_waits_for_exact_predecessor() {
    let mut ledger = acceptance_ledger();
    assert_eq!(
        gate::service_s820_model_r2r3_regional_operator_device_matrix_repeat_campaign(
            &mut ledger,
            0
        ),
        Err(G8lProductAcceptanceError::WrongCpu)
    );
    assert_eq!(ledger.last_completed_sequence(), S708_CHAIN_TIP_SEQUENCE);
    if 820 == S708_FIRST_SEQUENCE {
        let future = canonical_s708_to_s899_acceptance_descriptor(709).unwrap();
        assert!(matches!(
            advance_s708_to_s899_model_acceptance_gate(&mut ledger, 1, future),
            Ok(G8lProductAcceptanceOutcome::AwaitingPredecessor {
                expected_predecessor: 708,
                observed_predecessor: 707,
                ..
            })
        ));
    } else {
        assert!(matches!(
            gate::service_s820_model_r2r3_regional_operator_device_matrix_repeat_campaign(
                &mut ledger,
                1
            ),
            Ok(G8lProductAcceptanceOutcome::AwaitingPredecessor {
                sequence: 820,
                expected_predecessor: 819,
                observed_predecessor: 707,
            })
        ));
    }
}

#[test]
fn s820_advances_once_with_non_acceptance_receipt() {
    let mut ledger = acceptance_ledger();
    advance_before(&mut ledger, 820);
    let G8lProductAcceptanceOutcome::Advanced(receipt) =
        gate::service_s820_model_r2r3_regional_operator_device_matrix_repeat_campaign(
            &mut ledger,
            1,
        )
        .unwrap()
    else {
        panic!("S820 must advance")
    };
    assert_eq!((receipt.sequence, receipt.predecessor_sequence), (820, 819));
    assert_eq!(receipt.track, "R2->R3");
    assert_eq!(receipt.phase, "T5");
    assert_eq!((receipt.block_ordinal, receipt.step_ordinal), (11, 10));
    assert_eq!(receipt.acceptance_domain, "regional_operator_device_matrix");
    assert_eq!(receipt.completed_block_count, 10);
    assert_eq!(receipt.chain_tip_sequence, 707);
    assert_eq!(receipt.retained_runtime_baselines, 2);
    assert_eq!(receipt.retained_physical_observations, 2);
    assert!(receipt.source_gate_complete);
    assert!(receipt.runtime_evidence_required);
    assert!(receipt.physical_evidence_required);
    assert_eq!(receipt.new_supported_profile_runtime_observations, 0);
    assert_eq!(receipt.new_physical_observations, 0);
    assert!(!receipt.operator_authority_received);
    assert!(!receipt.external_authority_received);
    assert!(!receipt.linked_into_board_rpi5);
    assert!(!receipt.cross_profile_coverage_complete);
    assert!(!receipt.acceptance_complete);
    assert!(!receipt.r2_field_acceptance_complete);
    assert!(!receipt.release_track_complete);
    assert!(!receipt.runbook_executed);
}

#[test]
fn s820_replay_is_idempotent_and_historical_reentry_does_not_mutate() {
    let mut ledger = acceptance_ledger();
    advance_before(&mut ledger, 820);
    let G8lProductAcceptanceOutcome::Advanced(receipt) =
        gate::service_s820_model_r2r3_regional_operator_device_matrix_repeat_campaign(
            &mut ledger,
            1,
        )
        .unwrap()
    else {
        panic!("advance")
    };
    assert_eq!(
        gate::service_s820_model_r2r3_regional_operator_device_matrix_repeat_campaign(
            &mut ledger,
            1
        ),
        Ok(G8lProductAcceptanceOutcome::Retained(receipt))
    );
    if 820 < S899_LAST_SEQUENCE {
        let next = canonical_s708_to_s899_acceptance_descriptor(820 + 1).unwrap();
        assert!(matches!(
            advance_s708_to_s899_model_acceptance_gate(&mut ledger, 1, next),
            Ok(G8lProductAcceptanceOutcome::Advanced(_))
        ));
        assert_eq!(
            gate::service_s820_model_r2r3_regional_operator_device_matrix_repeat_campaign(
                &mut ledger,
                1
            ),
            Ok(G8lProductAcceptanceOutcome::AlreadyCompleted {
                requested_sequence: 820,
                last_completed_sequence: 820 + 1,
            })
        );
    }
}

#[test]
fn s820_open_claim_boundary_is_preserved() {
    assert_eq!(gate::S820_NEW_SUPPORTED_PROFILE_RUNTIME_OBSERVATIONS, 0);
    assert_eq!(gate::S820_NEW_PHYSICAL_OBSERVATIONS, 0);
    assert_eq!(gate::S820_OPERATOR_AUTHORIZATIONS, 0);
    assert_eq!(gate::S820_EXTERNAL_ACCEPTANCES, 0);
    assert_eq!(gate::S820_PHYSICAL_OR_DEVICE_OPERATIONS, 0);
    assert!(!gate::S820_ACCEPTANCE_COMPLETE);
    assert!(!gate::S820_RELEASE_TRACK_COMPLETE);
    assert!(!gate::S820_LINKED_INTO_BOARD_RPI5);
    assert!(!gate::RUNBOOK_EXECUTED_IN_S820);
}

#[test]
fn s820_is_simulation_only_and_adds_no_production_callsite() {
    const TARGET: &str = "g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s820_r2r3_regional_operator_device_matrix_repeat_campaign";
    let source = include_str!("../../kernel/src/g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s820_r2r3_regional_operator_device_matrix_repeat_campaign.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 S820_DESCRIPTOR"));
    assert_eq!(
        simulation_registry
            .matches(&format!("pub mod {TARGET};"))
            .count(),
        1
    );
    assert_eq!(
        kernel_registry.matches(&format!("mod {TARGET};")).count(),
        0
    );
    assert_eq!(exceptions.matches(TARGET).count(), 0);
    assert_eq!(exceptions.matches("service_s820_").count(), 0);
}

#[test]
fn s820_descriptor_mutation_fails_before_ledger_advance() {
    let mut ledger = acceptance_ledger();
    advance_before(&mut ledger, 820);
    let before = ledger.last_completed_sequence();
    let mut drift = gate::S820_DESCRIPTOR;
    drift.block_ordinal += 1;
    assert_eq!(
        advance_s708_to_s899_model_acceptance_gate(&mut ledger, 1, drift),
        Err(G8lProductAcceptanceError::DescriptorDrift)
    );
    assert_eq!(ledger.last_completed_sequence(), before);
}

#[test]
fn s820_rejects_premature_acceptance_and_chain_tip_drift() {
    let mut promoted: G8lProductAcceptanceAnchor = S708_CANONICAL_ANCHOR;
    promoted.r2_field_acceptance_complete = true;
    assert_eq!(
        G8lProductAcceptanceLedger::from_s707(1, promoted).err(),
        Some(G8lProductAcceptanceError::PrematureAcceptanceClaim)
    );
    let mut linked: G8lProductAcceptanceAnchor = S708_CANONICAL_ANCHOR;
    linked.linked_into_board_rpi5 = true;
    assert_eq!(
        G8lProductAcceptanceLedger::from_s707(1, linked).err(),
        Some(G8lProductAcceptanceError::PrematureAcceptanceClaim)
    );
    let mut ran: G8lProductAcceptanceAnchor = S708_CANONICAL_ANCHOR;
    ran.chain_tip_runbook_executed = true;
    assert_eq!(
        G8lProductAcceptanceLedger::from_s707(1, ran).err(),
        Some(G8lProductAcceptanceError::PrematureAcceptanceClaim)
    );
    let mut invented: G8lProductAcceptanceAnchor = S708_CANONICAL_ANCHOR;
    invented.retained_physical_observations = 3;
    assert_eq!(
        G8lProductAcceptanceLedger::from_s707(1, invented).err(),
        Some(G8lProductAcceptanceError::ChainTipDrift)
    );
    let mut moved: G8lProductAcceptanceAnchor = S708_CANONICAL_ANCHOR;
    moved.chain_tip_sequence = 706;
    assert_eq!(
        G8lProductAcceptanceLedger::from_s707(1, moved).err(),
        Some(G8lProductAcceptanceError::ChainTipDrift)
    );
    assert_eq!(
        G8lProductAcceptanceLedger::from_s707(0, S708_CANONICAL_ANCHOR).err(),
        Some(G8lProductAcceptanceError::WrongCpu)
    );
}
snippet sha256: 8de68d0aaa7cfile sha256: 8de68d0aaa7c
03 · Kapı kimlik kaydı

Operations sıra, kimlik ve başlık bağı

tam Operations kaydıL3056–L3082
website/src/lib/s708-s899-gate-specs.generated.ts::g8l-s820-r2r3-regional-operator-device-matrix-repeat-campaign-partial
  {
    id: "g8l-s820-r2r3-regional-operator-device-matrix-repeat-campaign-partial",
    sequence: 820,
    slug: "r2r3_regional_operator_device_matrix_repeat_campaign",
    title: "Regional operator and device matrix · Repeat campaign definition",
    titleTr: "Bölgesel operatör ve cihaz matrisi · Tekrar kampanyası tanımı",
    track: "R2->R3",
    trackTitle: "R2 to R3 transition",
    trackTitleTr: "R2 → R3 geçiş işleri",
    phase: "T5",
    focusedTests: 8,
    sourceBytes: 3189,
    sourceSha256: "4d4a1ffa96c3e0a30666090eaff0b012c39c5ab6347318c8e8a4a7b532102b75",
    testBytes: 9766,
    testSha256: "8de68d0aaa7c5f69043a27e4e0901bc850d67d0b27b1fbc27045c447597746d3",
    blockOrdinal: 11,
    blockCount: 19,
    blockTitle: "Regional operator and device matrix",
    blockTitleTr: "Bölgesel operatör ve cihaz matrisi",
    blockStepCount: 13,
    stepOrdinal: 10,
    stepTitle: "Repeat campaign definition",
    stepTitleTr: "Tekrar kampanyası tanımı",
    externalAuthorityRequired: true,
    acceptance: "S820, R2 → R3 geçiş işleri izinin T5 fazındaki Bölgesel operatör ve cihaz matrisi bloğunun 10/13 Tekrar kampanyası tanımı adımını exact S819 predecessor sonrasında ayrı typed descriptor ile fail-closed olarak kaydeder.",
    retainedBoundary: "Bu yalnız fail-closed software readiness kaydıdır. S571/S575 fiziksel gözlemleri salt-okunur taşınır (retained=2); yeni runtime/fiziksel gözlem=0, operatör yetkisi=0, dış kabul=0, cross-profile kapsam=false, acceptance_complete=false, release_track_complete=false, board-rpi5 kernel'e link=false ve RUNBOOK_EXECUTED_IN_S820=NO kalır. Operatör/şebeke, RF-EMC-SAR, bağımsız güvenlik veya yasal kabul bu faz için zorunludur ve henüz alınmamıştır.",
  },
snippet sha256: e1cca6502d43file sha256: b4ce50234670
Focused test komutu
CARGO_INCREMENTAL=0 cargo test -p aselsan_microkernel_simulation --test g8l_target_dispatch_scheduler_owner_scheduler_mutation_production_migration_lifecycle_s820_r2r3_regional_operator_device_matrix_repeat_campaign -- --test-threads=1
proof: docs/M8.1-RPi5-G8l-S820-Regional-operator-and-device-matrix-·-Repeat-campaign-definition-Proof.md
Registry schema v5 · generator website/scripts/generate-code-gates.mjs · Tam SHA-256: 91d38c7b6222f0b4c117be786454853543da55a160e543d9b951057cc20dcc06