STA Mastery · All levels
Report Timing Deep Read: Theory Deep Dive
Theory Deep Dive for Report Timing Deep Read.
Foundational theory
Report Timing Deep Read is central to Delay Graph & Path Analysis. Senior STA debug reads incremental delay, sense, edge, clock domain, and exception flags on the critical path — not just slack number. Senior STA engineers always tie slack movement to corner, mode, constraint set, and parasitic view — not just a single report line.
Core concepts explained
Senior STA debug reads incremental delay, sense, edge, clock domain, and exception flags on the critical path — not just slack number.
Primary metric: incremental delay attribution accuracy, false debug rate
Primary artifact: annotated timing report, path viewer screenshot, constraint trace
Owners: STA owner, timing closure lead
Setup: max delay path; Hold: min delay path
WNS/TNS summarize tail risk across endpoints
Why this matters at signoff
At signoff, Report Timing Deep Read failures block tapeout or force risky ECO. The timing graph turns netlist + parasitics + constraints into slack. Wrong analysis setup wastes weeks of PD effort.
Mental model
REPORT TIMING LINE (what to read)
(rise) 0.12 U234/Z (AND2) <- incremental delay
0.45 net foo/bar <- net delay + fanout
(fall) 0.08 U567/D (DFF) <- sense and edge matter
clock: clk_main rise@500ps <- launch/capture clocks
Read incremental delay, not just total slack.Worked intuition
Name corner, mode, and view for the failing run.
Open incremental delay attribution accuracy, false debug rate and identify worst path group.
Read critical path: cell vs net, launch/capture clocks.
Check constraints on that path (exceptions, generated clocks).
Collect annotated timing report, path viewer screenshot, constraint trace and tag database versions.
Classify: constraint bug, view mismatch, or real path.
Propose minimal ECO and list MMMC+SI regression.
Common misconceptions
One typical corner is enough for signoff.
False paths can be applied broadly to green-wash violations.
Implementation WNS equals signoff WNS without view mapping.
Setup fix automatically preserves hold.
Visual reinforcement
Critical path annotation
REPORT TIMING LINE (what to read)
(rise) 0.12 U234/Z (AND2) <- incremental delay
0.45 net foo/bar <- net delay + fanout
(fall) 0.08 U567/D (DFF) <- sense and edge matter
clock: clk_main rise@500ps <- launch/capture clocks
Read incremental delay, not just total slack.Layer responsibilities
STA OWNERSHIP LAYERS — Report Timing Deep Read
layer owns failure mode
---------------- -------------------------- ---------------------
constraints clocks, IO, exceptions false violations
implementation cells, nets, placement real path delay
extraction SPEF/RC corners view mismatch
signoff policy derate, MMMC matrix margin disputes
closure ECO order, regression fix breaks other cornerSTA deep dive
Slack is a path story — read the graph, not just the number.
Concept diagram
TIMING GRAPH
FF --cell-- logic --net-- logic --cell-- FF
launch captureMetric graph
SLACK TAIL
paths | ***
| *******
|********* <- fix WNS firstReports and artifacts
WNS/TNS
path slack histogram
cell vs net %
path group summary
Mini case study
WNS -90ps but 80% net delay on one congested route — PD route fix beat upsizing three cells.
Debug branches
Cell-heavy -> sizing/VT
Net-heavy -> route/layer
Check launch/capture clocks
Senior review question
Ask: what corner/mode/view proves this topic is closed or failing?
Key takeaways
State corner, mode, view, and database tag with every slack claim.
Run setup and hold plus MMMC regression after every ECO.
Common pitfalls
Comparing STA runs with different SPEF or SDC tags.
Broad false_path to green-wash violations.
Setup-only ECO without hold check.
Theory reinforcement
The timing graph turns netlist + parasitics + constraints into slack.