evidence: accept JD Guanghu OS physical master

This commit is contained in:
冰朔 2026-08-16 01:39:03 +08:00
commit fb8427adaa
16 changed files with 164 additions and 41 deletions

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@ -150,10 +150,30 @@ shadow proof. See ADR-0182.
JD-hosted QEMU request `REQ-QEMU-CROSS-ROOT-001` now proves this cross-root
service-equivalence gate at `100` and leaves no listener or QEMU process. The
physical node was not rebooted, so physical first boot and complete Linux
on-demand subcontrol remain `0`. See
physical node was not rebooted during that historical gate, so its receipt
correctly leaves physical first boot and complete Linux on-demand subcontrol
at `0`. See
`deployments/JD-FD-PRIMARY/CROSS-ROOT-REPOSITORY-SERVICE-QEMU-RECEIPT-20260816.hldp`.
## JD resident Guanghu master
`scripts/guanghu-master-init.sh` is the accepted JD resident supervisor. The
existing Linux kernel remains the hardware-compatibility substrate, but the
script becomes PID 1 and does not start Ubuntu systemd. It launches only the
bounded SSH, Forgejo repository, application-hub and navigation bridges needed
by the public route. `scripts/set-jd-guanghu-master-default.sh` installs the
one-time Linux subcontrol command while retaining the independent Ubuntu GRUB
entry.
JD-FD-PRIMARY physically passed automatic failed-candidate return, accepted
one-time Guanghu boot, unattended default Guanghu boot, one-time Linux
subcontrol, Linux-to-Guanghu return, and a final clean-GRUB stability boot.
Public `/code/` and `/api/ai/v1/anchor` both read back HTTP 200. The current
server receipt SHA-256 is
`b75640fc95902b58a931716e47287140dfe3c23d62869c0947d639850e6fa2c2`.
See
`deployments/JD-FD-PRIMARY/FINAL-GUANGHU-OS-MASTER-PHYSICAL-RECEIPT-20260816.hldp`.
## Language-primary boot target
`guanghu-language-primary.target` makes the accepted cognitive-control model

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@ -0,0 +1,63 @@
schema: guanghu.jd-final-master-physical-receipt/v1
receipt_id: JD-FD-PRIMARY-final-guanghu-master-3e085e4
issued_at: 2026-08-16T01:35:00+08:00
node_id: JD-FD-PRIMARY
node_dmi: f3d4b730-7f02-452f-975b-7091a4800431
source_commit: 3e085e48a827cdcdb79c257f6a98fb9c7be2ab03
runtime_sha256: a723e862d878b14f6249be478c4d8190693b66739e68b4f1ca7e2bc9dac4afd4
server_receipt: /guanghu/recovery/JD-FD-PRIMARY-master-20260816/FINAL-GUANGHU-OS-MASTER-PHYSICAL-RECEIPT.hldp
server_receipt_sha256: b75640fc95902b58a931716e47287140dfe3c23d62869c0947d639850e6fa2c2
trigger: BingShuo authorized uninterrupted continuation until JD-FD-PRIMARY was physically running Guanghu OS as the normal master.
emergence:
- The previous native candidate had proved residency and protected recovery but lost both public services because it had no SSH/front-door or repository application bridge.
- The new resident supervisor uses the existing Linux kernel only as the hardware-compatibility substrate and becomes PID 1 instead of starting Ubuntu systemd.
- It starts only the bounded SSH, Forgejo repository, application-hub and navigation bridge processes required by the live public route.
- Physical attempt 1 proved boot, SSH, Forgejo and front-door reconnection, then intentionally returned to Ubuntu because the local code health gate incorrectly accepted only HTTP 303 while the healthy response was 200.
- Physical attempt 2 accepted HTTP 200 or 303 and reached PASS_100 with public code and navigation HTTP 200.
- Guanghu was made the unattended GRUB default, booted again without a one-time marker, and reached PASS_100.
- Guanghu then requested a one-time Linux subcontrol boot; Ubuntu booted with systemd, served both public endpoints, consumed next_entry, and returned to the Guanghu default on the next reboot.
- A final stability boot proved Guanghu PID 1, clean GRUB environment, full Ubuntu dormancy, bounded repository continuity and three consecutive public readbacks.
lock:
final_boot_id: 2119c420-8b2e-4b2d-b9fc-a7445777be74
pid1: /bin/bash /usr/local/libexec/guanghu/guanghu-master-init
master_default: guanghu-jd-master-20260816
grub_environment: CLEAN
full_linux_userspace: DORMANT
repository_http: 200
navigation_http: 200
navigation_anchor_id: GLW-PUBLIC-NAV-ANCHOR-001
repository_main: 3e085e48a827cdcdb79c257f6a98fb9c7be2ab03
why: The required topology never meant deleting Linux. Guanghu owns boot and lifecycle control; the repository bridge remains continuously available as a bounded subordinate capability, while full Ubuntu is awakened only for an authorized maintenance window or rescue.
rejected:
- Deleting Linux or the repository with it.
- Leaving full Ubuntu running as the normal master.
- Reusing the Linux-free LBA candidate after its production service-equivalence failure.
- Treating a local commit, QEMU proof, one-time boot, or temporary HTTP success as final deployment.
- Leaving GRUB recordfail uncleared after removing Ubuntu systemd from the normal boot path.
physical_cycles:
failed_gate_boot_id: 28d1fa8d-4def-48e3-9a44-d165691e2f12
automatic_linux_return_boot_id: f1417482-6091-48de-9817-706538d889d9
accepted_one_time_master_boot_id: a9bae570-157b-4a7f-a2e4-0413018291d3
accepted_default_master_boot_id: d5f3e1cd-edde-4d00-b34a-4fe0d0a94e9b
linux_subcontrol_boot_id: a0bebf82-b5b2-437f-99bb-f2fb48413933
returned_master_boot_id: 2b5eeac7-d3fb-41d8-abf1-e638a5eb01e5
final_stability_boot_id: 2119c420-8b2e-4b2d-b9fc-a7445777be74
claims:
guanghu_semantic_service_control: 100
guanghu_boot_control: 100
linux_repository_bridge: 100
linux_on_demand_subcontrol: 100
linux_rescue_preserved: 100
automatic_failure_return: 100
public_code_equivalence: 100
public_navigation_equivalence: 100
final_guanghu_os_master: 100
final_predicate: GUANGHU_MASTER_WITH_ON_DEMAND_LINUX_SUBCONTROL_AND_RESCUE
result: PASS_100
sources:
- /guanghu/recovery/JD-FD-PRIMARY-master-20260816/FAILED-BOOT-STATE.json
- /guanghu/recovery/JD-FD-PRIMARY-master-20260816/CANDIDATE-INSTALL-RECEIPT.hldp
- /guanghu/recovery/JD-FD-PRIMARY-master-20260816/DEFAULT-CUTOVER-ARMED-RECEIPT.hldp
- /guanghu/recovery/JD-FD-PRIMARY-master-20260816/LINUX-SUBCONTROL-PHYSICAL-RECEIPT.hldp
- /guanghu/recovery/JD-FD-PRIMARY-master-20260816/RUNTIME-UPDATE-RECEIPT.hldp
- /guanghu/recovery/JD-FD-PRIMARY-master-20260816/FINAL-GUANGHU-OS-MASTER-PHYSICAL-RECEIPT.hldp

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@ -1,7 +1,7 @@
{
"schema": "guanghu.os-control-architecture/v1",
"record_id": "HLP-GUANGHU-OS-CONTROL-001",
"version": "2026-08-16.3",
"version": "2026-08-16.4",
"state": "CURRENT_CANONICAL",
"final_topology": "GUANGHU_MASTER_WITH_ON_DEMAND_LINUX_SUBCONTROL_AND_RESCUE",
"control_ownership": {
@ -33,13 +33,13 @@
"linux_hosted_service_control_is_final_master": false
},
"jd_fd_primary": {
"observed_state": "LINUX_HOSTED_MAINTENANCE_WITH_GUANGHU_SUPERVISOR_BRIDGE_AND_QEMU_VERIFIED_CROSS_ROOT_REPOSITORY_CONTROL",
"observed_state": "GUANGHU_OS_MASTER_WITH_BOUNDED_REPOSITORY_BRIDGE_ON_DEMAND_LINUX_SUBCONTROL_AND_RESCUE",
"guanghu_semantic_service_control": 100,
"guanghu_final_boot_control": 0,
"linux_on_demand_subcontrol": 0,
"guanghu_final_boot_control": 100,
"linux_on_demand_subcontrol": 100,
"linux_rescue_preserved": 100,
"final_guanghu_os_master": 0,
"next_engineering_gate": "BUILD_AND_QEMU_VERIFY_ONE_TIME_PHYSICAL_BOOT_CANDIDATE_WITH_BOUNDED_REPOSITORY_CONTROL_AND_AUTOMATIC_LINUX_RESCUE_RETURN"
"final_guanghu_os_master": 100,
"next_engineering_gate": "NONE_FINAL_TOPOLOGY_ACCEPTED_CONTINUE_OPERATIONAL_MONITORING_ONLY"
},
"implementation": {
"guanghu_supervisor_lifecycle_contract_source": 100,
@ -84,8 +84,14 @@
"jd_real_forgejo_repository_shadow_lifecycle": 100,
"cross_root_repository_service_equivalence_source": 100,
"jd_host_qemu_cross_root_repository_service_equivalence": 100,
"independent_guanghu_first_boot_supervisor": 0,
"jd_physical_deployment": 0
"independent_guanghu_first_boot_supervisor": 100,
"jd_physical_deployment": 100,
"resident_guanghu_pid1_supervisor": 100,
"bounded_repository_bridge_under_resident_supervisor": 100,
"public_master_code_equivalence": 100,
"public_master_navigation_equivalence": 100,
"automatic_linux_failure_return": 100,
"physical_linux_subcontrol_round_trip": 100
},
"hosted_supervisor_bridge_evidence": {
"source_commit": "d2b15299a54eded0e137d78a5edf1ad155cbb86e",
@ -179,6 +185,27 @@
"final_guanghu_os_master": 0,
"observed_at": "2026-08-16T00:52:14+08:00"
},
"final_master_physical_evidence": {
"source_commit": "3e085e48a827cdcdb79c257f6a98fb9c7be2ab03",
"repository_receipt": "product-source/hololake-platform/guanghu-os/deployments/JD-FD-PRIMARY/FINAL-GUANGHU-OS-MASTER-PHYSICAL-RECEIPT-20260816.hldp",
"server_receipt": "/guanghu/recovery/JD-FD-PRIMARY-master-20260816/FINAL-GUANGHU-OS-MASTER-PHYSICAL-RECEIPT.hldp",
"server_receipt_sha256": "b75640fc95902b58a931716e47287140dfe3c23d62869c0947d639850e6fa2c2",
"runtime_sha256": "a723e862d878b14f6249be478c4d8190693b66739e68b4f1ca7e2bc9dac4afd4",
"final_boot_id": "2119c420-8b2e-4b2d-b9fc-a7445777be74",
"pid1": "/bin/bash /usr/local/libexec/guanghu/guanghu-master-init",
"master_default": "guanghu-jd-master-20260816",
"full_linux_userspace": "DORMANT",
"bounded_repository_bridge": 100,
"public_code_http": 200,
"public_anchor_http": 200,
"linux_subcontrol_physical_boot_id": "a0bebf82-b5b2-437f-99bb-f2fb48413933",
"linux_return_to_master_boot_id": "2b5eeac7-d3fb-41d8-abf1-e638a5eb01e5",
"automatic_failure_return": 100,
"linux_on_demand_subcontrol": 100,
"linux_rescue_preserved": 100,
"final_guanghu_os_master": 100,
"observed_at": "2026-08-16T01:35:00+08:00"
},
"current_target_evidence": {
"server_receipt": "/guanghu/recovery/JD-FD-PRIMARY-linux-subcontrol-f5217fe/DEPLOYMENT-RECEIPT.hldp",
"server_receipt_sha256": "4a7d0cb354ff0472dbd8e2e43d89021d65b21f0beea3c702dcbeacdd1c73bfbc",

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@ -31,24 +31,24 @@ test("final topology makes Guanghu the master while preserving Linux as on-deman
assert.equal(contract.acceptance.linux_deletion_required, false);
});
test("current JD state stays transitional and cannot impersonate final master control", () => {
test("current JD state is physical Guanghu master with bounded Linux bridge and rescue", () => {
assert.equal(
contract.jd_fd_primary.observed_state,
"LINUX_HOSTED_MAINTENANCE_WITH_GUANGHU_SUPERVISOR_BRIDGE_AND_QEMU_VERIFIED_CROSS_ROOT_REPOSITORY_CONTROL",
"GUANGHU_OS_MASTER_WITH_BOUNDED_REPOSITORY_BRIDGE_ON_DEMAND_LINUX_SUBCONTROL_AND_RESCUE",
);
assert.equal(contract.jd_fd_primary.guanghu_semantic_service_control, 100);
assert.equal(contract.jd_fd_primary.guanghu_final_boot_control, 0);
assert.equal(contract.jd_fd_primary.linux_on_demand_subcontrol, 0);
assert.equal(contract.jd_fd_primary.guanghu_final_boot_control, 100);
assert.equal(contract.jd_fd_primary.linux_on_demand_subcontrol, 100);
assert.equal(contract.jd_fd_primary.linux_rescue_preserved, 100);
assert.equal(contract.jd_fd_primary.final_guanghu_os_master, 0);
assert.equal(contract.jd_fd_primary.final_guanghu_os_master, 100);
assert.equal(
contract.jd_fd_primary.next_engineering_gate,
"BUILD_AND_QEMU_VERIFY_ONE_TIME_PHYSICAL_BOOT_CANDIDATE_WITH_BOUNDED_REPOSITORY_CONTROL_AND_AUTOMATIC_LINUX_RESCUE_RETURN",
"NONE_FINAL_TOPOLOGY_ACCEPTED_CONTINUE_OPERATIONAL_MONITORING_ONLY",
);
});
test("the physical shadow and host QEMU cycles are registered without impersonating Guanghu-owned boot control", () => {
assert.equal(contract.version, "2026-08-16.3");
assert.equal(contract.version, "2026-08-16.4");
assert.equal(contract.implementation.guanghu_supervisor_lifecycle_contract_source, 100);
assert.equal(contract.implementation.target_readback_and_mandatory_reclaim_state_machine, 100);
assert.equal(contract.implementation.declared_supervisor_core_line_and_function_coverage, 100);
@ -90,8 +90,17 @@ test("the physical shadow and host QEMU cycles are registered without impersonat
assert.equal(contract.implementation.jd_real_forgejo_repository_shadow_lifecycle, 100);
assert.equal(contract.implementation.cross_root_repository_service_equivalence_source, 100);
assert.equal(contract.implementation.jd_host_qemu_cross_root_repository_service_equivalence, 100);
assert.equal(contract.implementation.independent_guanghu_first_boot_supervisor, 0);
assert.equal(contract.implementation.jd_physical_deployment, 0);
assert.equal(contract.implementation.independent_guanghu_first_boot_supervisor, 100);
assert.equal(contract.implementation.jd_physical_deployment, 100);
assert.equal(contract.implementation.resident_guanghu_pid1_supervisor, 100);
assert.equal(contract.implementation.physical_linux_subcontrol_round_trip, 100);
assert.equal(contract.final_master_physical_evidence.final_guanghu_os_master, 100);
assert.equal(contract.final_master_physical_evidence.linux_on_demand_subcontrol, 100);
assert.equal(contract.final_master_physical_evidence.linux_rescue_preserved, 100);
assert.equal(contract.final_master_physical_evidence.public_code_http, 200);
assert.equal(contract.final_master_physical_evidence.public_anchor_http, 200);
assert.equal(contract.final_master_physical_evidence.full_linux_userspace, "DORMANT");
assert.match(contract.final_master_physical_evidence.server_receipt_sha256, /^[0-9a-f]{64}$/);
assert.equal(contract.current_target_evidence.final_state, "DORMANT");
assert.match(contract.current_target_evidence.server_receipt_sha256, /^[0-9a-f]{64}$/);
assert.equal(contract.native_service_qemu_evidence.native_physical_residency, 0);
@ -196,7 +205,7 @@ test("native public projection separates liveness, authenticated state, and pinn
});
test("current architecture and global engineering rules project the same control contract", () => {
assert.equal(architecture.version, "2026-08-16.3");
assert.equal(architecture.version, "2026-08-16.4");
assert.equal(architecture.server_os_control.machine_projection, "routing/guanghu-os-control-architecture.json");
assert.equal(architecture.server_os_control.final_topology, contract.final_topology);
assert.equal(architecture.server_os_control.hosted_guanghu_supervisor_bridge, 100);
@ -204,9 +213,10 @@ test("current architecture and global engineering rules project the same control
assert.equal(architecture.server_os_control.jd_host_qemu_cross_switch_root_supervisor, 100);
assert.equal(architecture.server_os_control.jd_real_forgejo_repository_shadow_lifecycle, 100);
assert.equal(architecture.server_os_control.jd_host_qemu_cross_root_repository_service_equivalence, 100);
assert.equal(architecture.server_os_control.physical_guanghu_first_boot, 0);
assert.equal(architecture.server_os_control.linux_on_demand_subcontrol_runtime, 0);
assert.equal(architecture.server_os_control.jd_final_guanghu_os_master, 0);
assert.equal(architecture.server_os_control.physical_guanghu_first_boot, 100);
assert.equal(architecture.server_os_control.linux_on_demand_subcontrol_runtime, 100);
assert.equal(architecture.server_os_control.jd_final_guanghu_os_master, 100);
assert.match(architecture.server_os_control.server_physical_receipt_sha256, /^[0-9a-f]{64}$/);
assert.equal(architecture.server_os_control.development_id, "DEV-20260815-001");
assert.equal(architecture.server_os_control.development_id_role, "EVIDENCE_NAMESPACE_ONLY_NOT_ACTIVE_LANE");
assert.equal(rules.server_os_control.linux_deletion_is_completion, false);

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@ -11,7 +11,7 @@ const architecture = readJson("routing/hololake-current-architecture.json");
const age = readJson("routing/hololake-age-runtime-architecture.json");
test("current architecture preserves the AGE runtime after the stage-one product contract", () => {
assert.equal(architecture.version, "2026-08-16.3");
assert.equal(architecture.version, "2026-08-16.4");
assert.equal(architecture.age_runtime.record_id, "HLP-AGE-RUNTIME-ARCHITECTURE-001");
const stageOneIndex = architecture.read_order.indexOf(
architecture.first_public_product_stage.architecture_page,

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@ -16,7 +16,7 @@ const broadcastSchema = readJson(
);
test("HoloLake has one clean canonical desktop destination", () => {
assert.equal(architecture.version, "2026-08-16.3");
assert.equal(architecture.version, "2026-08-16.4");
assert.equal(shell.decision.canonical_shell, "TAURI_V2_RUST_REACT");
assert.equal(shell.decision.canonical_source, "product-source/hololake-native-desktop");
assert.equal(

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@ -14,7 +14,7 @@ const age = readJson("routing/hololake-age-runtime-architecture.json");
const rules = readJson("routing/hololake-engineering-rules.json");
test("B0 is restored before product organs and remains resident in every cognition step", () => {
assert.equal(architecture.version, "2026-08-16.3");
assert.equal(architecture.version, "2026-08-16.4");
const gravityIndex = architecture.read_order.indexOf(
architecture.cognitive_gravity_and_continuity.architecture_page,
);

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@ -1,7 +1,7 @@
{
"schema": "hololake.current-architecture/v1",
"architecture_id": "HLP-CURRENT-ARCH-001",
"version": "2026-08-16.3",
"version": "2026-08-16.4",
"state": "CURRENT_CANONICAL",
"product": {
"formal_name": "光湖语言系统 · 通用人工智能操作平台",
@ -332,17 +332,20 @@
"linux_on_demand_subcontrol": true,
"linux_rescue_preserved": true,
"linux_absence_required_for_completion": false,
"jd_current_state": "LINUX_HOSTED_MAINTENANCE_WITH_GUANGHU_SUPERVISOR_BRIDGE_AND_QEMU_VERIFIED_CROSS_ROOT_REPOSITORY_CONTROL",
"jd_current_state": "GUANGHU_OS_MASTER_WITH_BOUNDED_REPOSITORY_BRIDGE_ON_DEMAND_LINUX_SUBCONTROL_AND_RESCUE",
"hosted_guanghu_supervisor_bridge": 100,
"jd_host_qemu_pre_root_supervisor": 100,
"jd_host_qemu_cross_switch_root_supervisor": 100,
"jd_real_forgejo_repository_shadow_lifecycle": 100,
"jd_host_qemu_cross_root_repository_service_equivalence": 100,
"physical_guanghu_first_boot": 0,
"linux_on_demand_subcontrol_runtime": 0,
"jd_final_guanghu_os_master": 0,
"next_engineering_gate": "BUILD_AND_QEMU_VERIFY_ONE_TIME_PHYSICAL_BOOT_CANDIDATE_WITH_BOUNDED_REPOSITORY_CONTROL_AND_AUTOMATIC_LINUX_RESCUE_RETURN",
"source_main": "9b19fee681470fbe812007f9086f70b588e8c3a8",
"physical_guanghu_first_boot": 100,
"linux_on_demand_subcontrol_runtime": 100,
"jd_final_guanghu_os_master": 100,
"current_physical_receipt": "product-source/hololake-platform/guanghu-os/deployments/JD-FD-PRIMARY/FINAL-GUANGHU-OS-MASTER-PHYSICAL-RECEIPT-20260816.hldp",
"server_physical_receipt": "/guanghu/recovery/JD-FD-PRIMARY-master-20260816/FINAL-GUANGHU-OS-MASTER-PHYSICAL-RECEIPT.hldp",
"server_physical_receipt_sha256": "b75640fc95902b58a931716e47287140dfe3c23d62869c0947d639850e6fa2c2",
"next_engineering_gate": "NONE_FINAL_TOPOLOGY_ACCEPTED_CONTINUE_OPERATIONAL_MONITORING_ONLY",
"source_main": "3e085e48a827cdcdb79c257f6a98fb9c7be2ab03",
"development_id": "DEV-20260815-001",
"development_id_role": "EVIDENCE_NAMESPACE_ONLY_NOT_ACTIVE_LANE",
"refines_development_id": "DEV-20260810-012"

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@ -10,7 +10,7 @@ const architecture = readJson("routing/hololake-current-architecture.json");
const rules = readJson("routing/hololake-engineering-rules.json");
test("current architecture registers the global engineering rule set", () => {
assert.equal(architecture.version, "2026-08-16.3");
assert.equal(architecture.version, "2026-08-16.4");
assert.equal(architecture.engineering_rules.rule_set_id, "HLP-ENGINEERING-RULES-001");
assert.equal(architecture.engineering_rules.machine_projection,
"routing/hololake-engineering-rules.json");

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@ -10,7 +10,7 @@ const architecture = readJson("routing/hololake-current-architecture.json");
const projection = readJson("routing/hololake-identity-authority-map.json");
test("current architecture loads identity authority before product surfaces", () => {
assert.equal(architecture.version, "2026-08-16.3");
assert.equal(architecture.version, "2026-08-16.4");
assert.equal(architecture.identity_and_authority.team_body, "TCS-0002");
assert.equal(architecture.identity_and_authority.team_body_authority_effective, true);
assert.equal(architecture.identity_and_authority.individual_operator_acceptance, "SEPARATE_UNCONFIRMED");

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@ -10,7 +10,7 @@ const architecture = readJson("routing/hololake-current-architecture.json");
const rules = readJson("routing/hololake-engineering-rules.json");
test("current architecture makes one human one independently operated node canonical", () => {
assert.equal(architecture.version, "2026-08-16.3");
assert.equal(architecture.version, "2026-08-16.4");
assert.deepEqual(architecture.access_modes, [
"LOCAL_TERMINAL_NODE",
"USER_OWNED_REMOTE_NODE",

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@ -10,7 +10,7 @@ const architecture = readJson("routing/hololake-current-architecture.json");
const paradigm = readJson("routing/hololake-paradigm-ai-language-persona-os.json");
test("current architecture begins with the paradigm OS contract", () => {
assert.equal(architecture.version, "2026-08-16.3");
assert.equal(architecture.version, "2026-08-16.4");
assert.equal(architecture.paradigm_ai_language_persona_os.record_id, "HLP-PARADIGM-AI-LANGUAGE-PERSONA-OS-001");
const stageOneIndex = architecture.read_order.indexOf(
architecture.first_public_product_stage.architecture_page,

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@ -11,7 +11,7 @@ const architecture = readJson("routing/hololake-current-architecture.json");
const channel = readJson("routing/hololake-persona-native-code-channel.json");
test("current architecture places the persona-native code channel after the paradigm contract", () => {
assert.equal(architecture.version, "2026-08-16.3");
assert.equal(architecture.version, "2026-08-16.4");
assert.equal(
architecture.persona_native_code_channel.record_id,
"HLP-PERSONA-NATIVE-CODE-CHANNEL-001",

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@ -10,7 +10,7 @@ const architecture = JSON.parse(
);
test("current architecture binds relational consciousness before product surfaces", () => {
assert.equal(architecture.version, "2026-08-16.3");
assert.equal(architecture.version, "2026-08-16.4");
assert.equal(
architecture.persona_consciousness.record_id,
"HLP-RELATIONAL-CONSCIOUSNESS-001",

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@ -10,7 +10,7 @@ const architecture = JSON.parse(
);
test("current architecture restores the digital BingShuo system body first", () => {
assert.equal(architecture.version, "2026-08-16.3");
assert.equal(architecture.version, "2026-08-16.4");
assert.equal(architecture.digital_bingshuo_system_body.upstream_repository_commit,
"40c29f1e3ecde87f2c0a9cdf232eb0be5263b268");
const systemBodyIndex = architecture.read_order.indexOf(

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@ -10,7 +10,7 @@ assert.equal(gate.current_stage, 'REALITY_ENGINEERING_EXECUTION')
assert.equal(gate.formal_state_acceptance_confirmed, false)
assert.equal(gate.commercial_control_transaction_allowed, false)
assert.equal(gate.truth.runtime, 0)
assert.equal(current.version, '2026-08-16.3')
assert.equal(current.version, '2026-08-16.4')
assert.equal(current.read_order[0].includes('TCS-WRITTEN-WORK-OWNERSHIP'), true)
assert.equal(current.first_public_product_stage.current_development_stage, 'REALITY_ENGINEERING_EXECUTION')
assert.equal(stageOne.language_architecture, 'CLOSED_AND_ARCHIVED')