Complete finite IO terminal migration


Execute this scoped task fully in the current part project: Complete the finite IO-terminal migration. Treat fresh state as continuation baseline, initialize cumulative accounting prior writes=5 and prior mutation calls/batches=1, preserve continuation-start initial mismatch metric=5 exactly. There are 676 Terminal components and exactly 280 targets with exact designator prefix IO_ (exclude contains-only like VCCINT_IO_*). Desired state by natural-sort rank of target designators: Terminal Order unique 1..280; Pin Orientation Right; Pin Group User I/O; Section User I/O. Preserve unrelated properties and non-targets. Concurrent writers are expected: repeatedly fresh direct snapshot/audit until one simultaneous fresh all-676 snapshot clean. Before each sequential mutation batch <=10 targets, immediate full-property guard-read exactly those terminals and only write still mismatched. Track actual terminal writes and mutation calls cumulatively including prior 5/1, and audit passes. Verify full 676 fresh snapshot target count 280 mismatches 0, then focused all 280 fresh full-property clean orders 1..280 exact. Locate existing project file whose URL short-id begins e1 even if renamed; do not create file; preserve content and append concise audit section with exact metrics and verification. Update only that existing file. Return final title/slug/short-id/link and metrics. Do not stop due concurrency.
I’ll complete the guarded 280-terminal migration against fresh snapshots, verify both all-676 and focused target states, then append exact cumulative audit metrics to the existing e1… project file.
The first guarded pass was overwritten by concurrent writers and did not produce a reliable ledger. I’m running a focused convergence retry with the same fixed baseline and a fresh file search, and will only close after the required clean simultaneous snapshots or a concrete non-concurrency blocker.
stop all the threads running!! wtf

Name
Pin #
Type
Description
Functional Group
Input
GND_1
A1
Ground
Ground
GND_2
A2
Ground
Ground
MGTYRXN3_227
A3
Input
Transceiver RX
MGTYRXP3_227
A4
Input
Transceiver RX
GND_3
A5
Ground
Ground
GND_4
A6
Ground
Ground
MGTAVTT_R_1
A7
Power In
Transceiver Power/Calibration
GND_5
A8
Ground
Ground
IO_1
A9
Bi-Directional
User I/O
IO_L11N_AD1N_86
A10
Bi-Directional
User I/O
GND_6
A11
Ground
IO_L11N_AD9N_87
A12
Bi-Directional
User I/O
IO_L11P_AD9P_87
A13
Bi-Directional
User I/O
IO_L12N_AD8N_87
A14
Bi-Directional
User I/O
IO_L17N_T2U_N9_AD10N_67
A15
Bi-Directional
User I/O
GND_7
A16
Ground
Ground
IO_L16P_T2U_N6_QBC_AD3P_67
A17
Bi-Directional
User I/O
IO_L16N_T2U_N7_QBC_AD3N_67
A18
Bi-Directional
User I/O
IO_L18P_T2U_N10_AD2P_67
A19
Bi-Directional
User I/O
IO_L18N_T2U_N11_AD2N_67
A20
Bi-Directional
User I/O
GND_8
A21
Ground
Ground
IO_L19P_T3L_N0_DBC_AD9P_67
A22
Bi-Directional
User I/O
IO_L19N_T3L_N1_DBC_AD9N_67
A23
Bi-Directional
User I/O

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