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        "title": "Synchronize OSPFv2 link-state databases before shortest-path calculation",
        "summary": "Use RFC 2328 — OSPF Version 2 to review this narrow operational decision without extending the source beyond its stated scope.",
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        "potentially_affected": "Teams, systems, services, or facilities within the stated scope of RFC 2328 — OSPF Version 2",
        "dse_recommendation": "Compare the observed state with the cited official source, document applicability and exceptions, and test any approved change with rollback safeguards.",
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            "name": "RFC 2328 — OSPF Version 2",
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        "content_html": "<p>Treat this document as a focused evidence review: Synchronize OSPFv2 link-state databases before shortest-path calculation. Only the official source and traced locations below supply facts. Confirm applicability before acting.</p>\n<h2>Source fact:</h2>\n<p>The official <a href=\"https://www.rfc-editor.org/rfc/rfc2328.html\" target=\"_blank\" rel=\"noopener noreferrer\">RFC 2328 — OSPF Version 2</a> from RFC Editor / Internet Engineering Task Force supports the following bounded statements:</p>\n<ul>\n<li>During Exchange, adjacent OSPF routers describe their link-state databases; missing or newer LSAs populate the link-state request list. The research record locates this support at <strong>Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets)</strong>.</li>\n<li>A router sends Link State Requests until the request list is empty, then a Loading adjacency advances to Full. The research record locates this support at <strong>Section 10.9 (Sending Link State Request Packets)</strong>.</li>\n<li>Routing-table calculation uses each area&#8217;s synchronized link-state database to build intra-area shortest-path trees before calculating inter-area and external routes. The research record locates this support at <strong>Section 16 (Calculation of the routing table), steps 2-5</strong>.</li>\n</ul>\n<p>The source support ends with the statements listed above. Use them to examine address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains in the applicable environment, not to imply a wider guarantee.</p>\n<h2>What the source does not establish</h2>\n<p>This RFC evidence supports only the named network-protocol decision; it does not select vendor settings, topology, capacity, or an acceptable failure mode. A correct source interpretation can still be inapplicable to a particular design. Confirm DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring, ownership, and change authority instead of treating documented behavior as a deployment guarantee.</p>\n<h2>Applicability questions</h2>\n<ul>\n<li>For source statement 1 at <strong>Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets)</strong>, which observable configuration, record, or test can confirm applicability here?</li>\n<li>For source statement 2 at <strong>Section 10.9 (Sending Link State Request Packets)</strong>, which observable configuration, record, or test can confirm applicability here?</li>\n<li>For source statement 3 at <strong>Section 16 (Calculation of the routing table), steps 2-5</strong>, which observable configuration, record, or test can confirm applicability here?</li>\n<li>Within address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains, which versions, roles, and configuration states define the review population?</li>\n<li>Could DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring invalidate the test, hide a failure, or change applicability?</li>\n<li>Who owns the decision, and which observation requires stopping, escalation, or rollback?</li>\n</ul>\n<h2>DSE recommendation:</h2>\n<p>DSE recommends using the cited source as the evidence anchor for this decision. Make the source, asset scope, owner, and expected outcome explicit in the review record. Record the source location, examined part of address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains, observed and expected states, owner, and reason for deviation.</p>\n<p>For an approved change, define prerequisites, a limited test path, success and stop conditions, monitoring, and rollback. Check DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring in design order. Protect credentials, keys, recovery material, personal data, and sensitive topology in evidence.</p>\n<h2>Verification and evidence</h2>\n<p>A reviewer should be able to retrace the decision from <strong>Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets)</strong>; <strong>Section 10.9 (Sending Link State Request Packets)</strong>; <strong>Section 16 (Calculation of the routing table), steps 2-5</strong> through configuration snapshots, route or neighbor state, packet captures, counters, topology records, and controlled failover results. Record what was collected, where, when, by whom, and which system or role it represents.</p>\n<p>Close the review only when the evidence, exception handling, resulting action, and after-state are linked. Schedule a new review after material technical, organizational, incident, or source changes; today&#8217;s observation is not a continuing guarantee.</p>\n<h2>Official references</h2>\n<ul>\n<li><a href=\"https://www.rfc-editor.org/rfc/rfc2328.html\" target=\"_blank\" rel=\"noopener noreferrer\">RFC 2328 — OSPF Version 2</a> — RFC Editor / Internet Engineering Task Force</li>\n</ul>",
        "content_text": "Treat this document as a focused evidence review: Synchronize OSPFv2 link-state databases before shortest-path calculation. Only the official source and traced locations below supply facts. Confirm applicability before acting.\nSource fact:\nThe official RFC 2328 — OSPF Version 2 from RFC Editor / Internet Engineering Task Force supports the following bounded statements:\n\nDuring Exchange, adjacent OSPF routers describe their link-state databases; missing or newer LSAs populate the link-state request list. The research record locates this support at Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets).\nA router sends Link State Requests until the request list is empty, then a Loading adjacency advances to Full. The research record locates this support at Section 10.9 (Sending Link State Request Packets).\nRouting-table calculation uses each area’s synchronized link-state database to build intra-area shortest-path trees before calculating inter-area and external routes. The research record locates this support at Section 16 (Calculation of the routing table), steps 2-5.\n\nThe source support ends with the statements listed above. Use them to examine address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains in the applicable environment, not to imply a wider guarantee.\nWhat the source does not establish\nThis RFC evidence supports only the named network-protocol decision; it does not select vendor settings, topology, capacity, or an acceptable failure mode. A correct source interpretation can still be inapplicable to a particular design. Confirm DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring, ownership, and change authority instead of treating documented behavior as a deployment guarantee.\nApplicability questions\n\nFor source statement 1 at Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets), which observable configuration, record, or test can confirm applicability here?\nFor source statement 2 at Section 10.9 (Sending Link State Request Packets), which observable configuration, record, or test can confirm applicability here?\nFor source statement 3 at Section 16 (Calculation of the routing table), steps 2-5, which observable configuration, record, or test can confirm applicability here?\nWithin address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains, which versions, roles, and configuration states define the review population?\nCould DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring invalidate the test, hide a failure, or change applicability?\nWho owns the decision, and which observation requires stopping, escalation, or rollback?\n\nDSE recommendation:\nDSE recommends using the cited source as the evidence anchor for this decision. Make the source, asset scope, owner, and expected outcome explicit in the review record. Record the source location, examined part of address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains, observed and expected states, owner, and reason for deviation.\nFor an approved change, define prerequisites, a limited test path, success and stop conditions, monitoring, and rollback. Check DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring in design order. Protect credentials, keys, recovery material, personal data, and sensitive topology in evidence.\nVerification and evidence\nA reviewer should be able to retrace the decision from Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets); Section 10.9 (Sending Link State Request Packets); Section 16 (Calculation of the routing table), steps 2-5 through configuration snapshots, route or neighbor state, packet captures, counters, topology records, and controlled failover results. Record what was collected, where, when, by whom, and which system or role it represents.\nClose the review only when the evidence, exception handling, resulting action, and after-state are linked. Schedule a new review after material technical, organizational, incident, or source changes; today’s observation is not a continuing guarantee.\nOfficial references\n\nRFC 2328 — OSPF Version 2 — RFC Editor / Internet Engineering Task Force",
        "content_markdown": "Treat this document as a focused evidence review: Synchronize OSPFv2 link-state databases before shortest-path calculation. Only the official source and traced locations below supply facts. Confirm applicability before acting.\n\n## Source fact:\n\nThe official [RFC 2328 — OSPF Version 2](https://www.rfc-editor.org/rfc/rfc2328.html) from RFC Editor / Internet Engineering Task Force supports the following bounded statements:\n\n- During Exchange, adjacent OSPF routers describe their link-state databases; missing or newer LSAs populate the link-state request list. The research record locates this support at Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets).\n\n- A router sends Link State Requests until the request list is empty, then a Loading adjacency advances to Full. The research record locates this support at Section 10.9 (Sending Link State Request Packets).\n\n- Routing-table calculation uses each area’s synchronized link-state database to build intra-area shortest-path trees before calculating inter-area and external routes. The research record locates this support at Section 16 (Calculation of the routing table), steps 2-5.\n\nThe source support ends with the statements listed above. Use them to examine address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains in the applicable environment, not to imply a wider guarantee.\n\n## What the source does not establish\n\nThis RFC evidence supports only the named network-protocol decision; it does not select vendor settings, topology, capacity, or an acceptable failure mode. A correct source interpretation can still be inapplicable to a particular design. Confirm DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring, ownership, and change authority instead of treating documented behavior as a deployment guarantee.\n\n## Applicability questions\n\n- For source statement 1 at Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets), which observable configuration, record, or test can confirm applicability here?\n\n- For source statement 2 at Section 10.9 (Sending Link State Request Packets), which observable configuration, record, or test can confirm applicability here?\n\n- For source statement 3 at Section 16 (Calculation of the routing table), steps 2-5, which observable configuration, record, or test can confirm applicability here?\n\n- Within address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains, which versions, roles, and configuration states define the review population?\n\n- Could DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring invalidate the test, hide a failure, or change applicability?\n\n- Who owns the decision, and which observation requires stopping, escalation, or rollback?\n\n## DSE recommendation:\n\nDSE recommends using the cited source as the evidence anchor for this decision. Make the source, asset scope, owner, and expected outcome explicit in the review record. Record the source location, examined part of address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains, observed and expected states, owner, and reason for deviation.\n\nFor an approved change, define prerequisites, a limited test path, success and stop conditions, monitoring, and rollback. Check DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring in design order. Protect credentials, keys, recovery material, personal data, and sensitive topology in evidence.\n\n## Verification and evidence\n\nA reviewer should be able to retrace the decision from Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets); Section 10.9 (Sending Link State Request Packets); Section 16 (Calculation of the routing table), steps 2-5 through configuration snapshots, route or neighbor state, packet captures, counters, topology records, and controlled failover results. Record what was collected, where, when, by whom, and which system or role it represents.\n\nClose the review only when the evidence, exception handling, resulting action, and after-state are linked. Schedule a new review after material technical, organizational, incident, or source changes; today’s observation is not a continuing guarantee.\n\n## Official references\n\n- [RFC 2328 — OSPF Version 2](https://www.rfc-editor.org/rfc/rfc2328.html) — RFC Editor / Internet Engineering Task Force"
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                "description": "Use RFC 2328 — OSPF Version 2 to review this narrow operational decision without extending the source beyond its stated scope.",
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                "articleBody": "Treat this document as a focused evidence review: Synchronize OSPFv2 link-state databases before shortest-path calculation. Only the official source and traced locations below supply facts. Confirm applicability before acting.\nSource fact:\nThe official RFC 2328 — OSPF Version 2 from RFC Editor / Internet Engineering Task Force supports the following bounded statements:\n\nDuring Exchange, adjacent OSPF routers describe their link-state databases; missing or newer LSAs populate the link-state request list. The research record locates this support at Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets).\nA router sends Link State Requests until the request list is empty, then a Loading adjacency advances to Full. The research record locates this support at Section 10.9 (Sending Link State Request Packets).\nRouting-table calculation uses each area’s synchronized link-state database to build intra-area shortest-path trees before calculating inter-area and external routes. The research record locates this support at Section 16 (Calculation of the routing table), steps 2-5.\n\nThe source support ends with the statements listed above. Use them to examine address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains in the applicable environment, not to imply a wider guarantee.\nWhat the source does not establish\nThis RFC evidence supports only the named network-protocol decision; it does not select vendor settings, topology, capacity, or an acceptable failure mode. A correct source interpretation can still be inapplicable to a particular design. Confirm DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring, ownership, and change authority instead of treating documented behavior as a deployment guarantee.\nApplicability questions\n\nFor source statement 1 at Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets), which observable configuration, record, or test can confirm applicability here?\nFor source statement 2 at Section 10.9 (Sending Link State Request Packets), which observable configuration, record, or test can confirm applicability here?\nFor source statement 3 at Section 16 (Calculation of the routing table), steps 2-5, which observable configuration, record, or test can confirm applicability here?\nWithin address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains, which versions, roles, and configuration states define the review population?\nCould DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring invalidate the test, hide a failure, or change applicability?\nWho owns the decision, and which observation requires stopping, escalation, or rollback?\n\nDSE recommendation:\nDSE recommends using the cited source as the evidence anchor for this decision. Make the source, asset scope, owner, and expected outcome explicit in the review record. Record the source location, examined part of address plans, interfaces, routes, peers, protocol roles, timers, middleboxes, and intended failure domains, observed and expected states, owner, and reason for deviation.\nFor an approved change, define prerequisites, a limited test path, success and stop conditions, monitoring, and rollback. Check DNS, Active Directory authentication, PKI, time, routing policy, transport reachability, and monitoring in design order. Protect credentials, keys, recovery material, personal data, and sensitive topology in evidence.\nVerification and evidence\nA reviewer should be able to retrace the decision from Sections 10.3 (The Neighbor State Machine) and 10.6 (Receiving Database Description Packets); Section 10.9 (Sending Link State Request Packets); Section 16 (Calculation of the routing table), steps 2-5 through configuration snapshots, route or neighbor state, packet captures, counters, topology records, and controlled failover results. Record what was collected, where, when, by whom, and which system or role it represents.\nClose the review only when the evidence, exception handling, resulting action, and after-state are linked. Schedule a new review after material technical, organizational, incident, or source changes; today’s observation is not a continuing guarantee.\nOfficial references\n\nRFC 2328 — OSPF Version 2 — RFC Editor / Internet Engineering Task Force",
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