Low Power / UPF · All levels
CPF vs UPF: Debug Playbook
Debug Playbook for CPF vs UPF.
Debug playbook
Debug Playbook for CPF vs UPF focuses on intent migration completeness, semantic mismatch count, and review waivers. The goal is to link observed behavior to power-intent mechanism, ownership, and release risk.
Low-power debug is timeline-centric. Find the first transition deviation, then trace policy and ownership from intent to implementation.
Root-cause tree
ROOT-CAUSE TREE — CPF vs UPF
intent migration completeness, semantic mismatch count, and review waivers regressed
|
reproducible in same sequence?
/ \
no yes
| |
stimulus drift intent mismatch or
testbench issue implementation bug
/ \ |
power checker crossing/strategy audit
state model + waveform timelineFreeze failing RTL, UPF, PMU sequence, and implementation tags.
Identify the first failing transition and affected crossing.
Classify issue: policy binding, sequencing, or physical realization.
Prove mechanism with one reduced reproducer.
Patch smallest owner-controlled fix.
Re-run focused checks then full LP regression matrix.
Review memo template
LOW-POWER REVIEW MEMO — Power Intent Fundamentals / CPF vs UPF
1. Symptom
- Watched metric: intent migration completeness, semantic mismatch count, and review waivers
- Failing transition: <state_from -> state_to>
- Failing crossing/domain: <source -> destination>
- Revision tags: <RTL, UPF, PMU sequence, implementation>
2. Mechanism hypothesis
- Primary mechanism: CPF and UPF express similar low-power intent with different constructs; migration quality depends on preserving domain policy semantics, not syntax.
- Competing hypotheses: <intent mismatch, sequence bug, physical issue>
- Missing evidence: <coverage, waveform bookmark, signoff report>
3. Proposed action
- Minimal reversible change: <policy/sequence/implementation patch>
- Expected movement: <coverage, violation count, transition pass rate>
- Regression risk: wake-up timing, X-leak, IR droop, retention stability
4. Signoff
- Re-run artifact: migration checklist, side-by-side intent diff, and signoff waiver log
- Required owners: low-power lead, CAD owner, methodology owner
- Final decision: fix, bounded waiver, or escalationLow-power deep dive
Power intent must be explicit, reviewable, and tool-consistent from day one.
Concept diagram
POWER INTENT FLOW
architecture -> UPF objects -> tool binding -> verification evidenceMetric graph
INTENT QUALITY
bound policies ████████████ high
stale references ███ medium risk
missing states ██ high riskReports and artifacts
PST report
domain map
UPF lint
policy binding summary
Mini case study
One missing PST entry blocked legal retention mode and caused false debug loops.
Debug branches
Check legal state table first
Audit policy binding IDs
Freeze UPF revision tags
Senior review question
Ask: what transition evidence proves this topic is closed, and which owner signs it?
Key takeaways
State transition context must accompany every low-power metric claim.
Intent changes require simulation, formal, and implementation re-validation.
Common pitfalls
Comparing results from mismatched UPF revisions.
Assuming static checks replace transition validation.
Shipping with aged waivers and unclear ownership.
Execution drill pack 1
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 1
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 2
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 2
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 3
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 3
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 4
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 4
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 5
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 5
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 6
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 6
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 7
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 7
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 8
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 8
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 9
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 9
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 10
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 10
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 11
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 11
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 12
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 12
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Execution drill pack 13
Use this pack to rehearse low-power closure on low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook: transition framing, policy ownership, implementation evidence, and release confidence.
Transition checklist
State transition explicitly named with legal source/target states.
Crossing and domain ownership are mapped and agreed.
Policy controls are traced to always-on source logic.
Waveform bookmarks align controls with state timestamps.
Review prompts
Which policy object is first to deviate from intent?
Which owner can apply the smallest reversible fix?
What regression matrix proves no collateral damage?
Which waiver conditions would still block release?
Evidence capsule
LP EVIDENCE CAPSULE 13
PATH: low-power/power-intent-fundamentals/cpf-vs-upf/debug-playbook
STATE WINDOW: <from -> to>
POLICY OBJECT: <isolation / retention / shifter / switch>
OWNER: <name>
PRIMARY ARTIFACT: <report/waveform/formal result>
RELEASE DECISION: <close / bounded waiver / escalate>Principal LP review addendum
CPF and UPF express similar low-power intent with different constructs; migration quality depends on preserving domain policy semantics, not syntax.
Metric: intent migration completeness, semantic mismatch count, and review waivers