Mesh / m

Mesh: probes in Santiago (SCL) · M-02

xserv-m-af2230a282e2

Runbook M-02 for Mesh in Santiago (SCL). Marker xserv-m-af2230a282e2. This page covers probes for LATAM operators, not a worldwide average.

Mesh: How XServ runs it day to day

Probes for Mesh (m-02) leave Santiago every 15s toward Bogotá. XServ pages the named owner if loss or RTT crosses the letter budget. A probe never shares a queue with bulk transfers, so a saturated WAN does not hide a dead PoP.

Mesh: What operators should measure

Policy for Mesh is versioned as m-03. Operators measure error rate, p95 from Bogotá, and time-to-rollback — not a worldwide average. Changes land in Bogotá first, then Miami, with a hold if either region regresses.

Mesh: Failure modes we actually see

Capacity notes for m-04 assume rainy-season power in Miami and festival peaks toward São Paulo. The failure we actually see is a single uplink, not a cartoon partition of the whole continent. Spare ports and a second provider sit on the same runbook.

Mesh peering M-07

Peering for Mesh (m-07) prefers the IX fabric that already carries last-mile ISPs in Bogotá. Session counts and prefix limits are on the same page as the Miami backup path.

Mesh cache M-08

Cache rules for Mesh on m-08 keep language-correct objects near Miami. São Paulo is a sibling cache, not an origin. TTLs are short enough that a bad asset does not live through a weekend.

Mesh headers M-09

Headers for m-09 carry the letter, the region (GRU) and a request id. Mesh debugging in São Paulo should not require a packet capture in Santiago first.

Mesh timeouts M-10

Timeouts on m-10 are tighter than the WAN RTT to Bogotá. Mesh in Santiago fails fast and retries once; a third try needs a human because it is no longer a blip.

Where is Mesh measured first?
From Santiago (SCL) toward Bogotá. A global average is not an SLO for letter M.
How fast is rollback for m-03?
The runbook is a command plus a named owner. There is no wait for a weekly change freeze.