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github/awesome-copilot/skills/salesforce-flow-design/SKILL.md

salesforce-flow-design

Salesforce Flow architecture decisions, flow type selection, bulk safety validation, and fault handling standards. Use this skill when designing or reviewing Record-Triggered, Screen, Autolaunched, Scheduled, or Platform Event flows to ensure correct type selection, no DML/Get Records in loops, proper fault connectors on all data-changing elements, and appropriate automation density checks before deployment.

Source repository stars
37,126
Declared platforms
0
Static risk flags
0
Last source update
2026-07-28
Source checked
2026-07-28

Decision brief

What it does—and where it fits

Apply these checks to every Flow you design, build, or review.

Best for

  • Use this skill when designing or reviewing Record-Triggered, Screen, Autolaunched, Scheduled, or Platform Event flows to ensure correct type selection, no DML/Get Records in loops, proper fault connectors on all data-ch…

Not for

  • Tasks that require unconfirmed production actions or broad system permissions.
  • Environments where the pinned source and install steps cannot be inspected.

Compatibility matrix

Platform support, with evidence labels

PlatformStatusEvidenceWhat to check
CodexNot declaredNo explicit evidencePortability before use
Claude CodeNot declaredNo explicit evidencePortability before use
CursorNot declaredNo explicit evidencePortability before use
Gemini CLINot declaredNo explicit evidencePortability before use
Open the compatibility checker

Installation

Inspect first. Install second.

The source command is displayed only when detected. A safe inspection prompt is always available so your agent can explain every action before execution.

Source-detected install commandSource
npx skills add https://github.com/github/awesome-copilot --skill "skills/salesforce-flow-design"
Safe inspection promptEditorial

Inspect the Agent Skill "salesforce-flow-design" from https://github.com/github/awesome-copilot/blob/9933dcad5be5caeb288cebcd370eeeb2fc2f1685/skills/salesforce-flow-design/SKILL.md at commit 9933dcad5be5caeb288cebcd370eeeb2fc2f1685. List every install step, command, network request, credential, file read/write, external action, and rollback step. Explain whether it fits my task. Do not install or execute anything until I approve.

Workflow

What the source asks the agent to do

  1. 01

    Step 1 — Confirm Flow Is the Right Tool

    Before designing a Flow, verify that a lighter-weight declarative option cannot solve the problem:

    Before designing a Flow, verify that a lighter-weight declarative option cannot solve the problem:If you are building a Flow that could be replaced by a formula field or validation rule, ask the user to confirm the requirement is genuinely more complex.
  2. 02

    Step 2 — Select the Correct Flow Type

    Decision rule: choose before-save when you only need to change the triggering record's own fields. Move to after-save the moment you need to touch related records, send emails, or make callouts.

    Decision rule: choose before-save when you only need to change the triggering record's own fields. Move to after-save the moment you need to touch related records, send emails, or make callouts.
  3. 03

    Step 3 — Bulk Safety Checklist

    These patterns are governor limit failures at scale. Check for all of them before the Flow is activated.

    These patterns are governor limit failures at scale. Check for all of them before the Flow is activated.Fix: collect records inside the loop into a collection variable, then run the DML element outside the loop.Fix: perform the Get Records query before the loop, then loop over the collection variable.
  4. 04

    Step 4 — Fault Path Requirements

    Every element that can fail at runtime must have a fault connector. Flows without fault paths surface raw system errors to users.

    Create RecordsUpdate RecordsDelete Records
  5. 05

    Step 5 — Automation Density Check

    Before deploying, verify there are no overlapping automations on the same object and trigger event:

    Other active Record-Triggered Flows on the same Object + When to Run combinationLegacy Process Builder rules still active on the same objectWorkflow Rules that fire on the same field changes

Permission review

Static risk signals and limitations

No configured static risk pattern was detected

This is not proof of safety. Runtime behavior, indirect dependencies, and hidden external systems are outside the static scan.

Evidence record

Why each signal appears

EvidenceSourceComputedTestedEditorial
SignalValueEvidence typeMeaning
Quality score87/100ComputedDocumentation, specificity, maintenance, and trust rules
Repository stars37,126SourceRepository attention, not individual Skill quality
Compatibility0 platformsSourceDeclared in the catalog source record
Usage guideautomated source guideEditorialGenerated or reviewed according to the visible evidence level

Pinned source

Provenance and original SKILL.md

Repository
github/awesome-copilot
Skill path
skills/salesforce-flow-design/SKILL.md
Commit
9933dcad5be5caeb288cebcd370eeeb2fc2f1685
License
MIT
Collected
2026-07-28
Default branch
main
View the original SKILL.md

Salesforce Flow Design and Validation

Apply these checks to every Flow you design, build, or review.

Step 1 — Confirm Flow Is the Right Tool

Before designing a Flow, verify that a lighter-weight declarative option cannot solve the problem:

RequirementBest tool
Calculate a field value with no side effectsFormula field
Prevent a bad record save with a user messageValidation rule
Sum or count child records on a parentRoll-up Summary field
Complex multi-object logic, callouts, or high volumeApex (Queueable / Batch) — not Flow
Everything elseFlow ✓

If you are building a Flow that could be replaced by a formula field or validation rule, ask the user to confirm the requirement is genuinely more complex.

Step 2 — Select the Correct Flow Type

Use caseFlow typeKey constraint
Update a field on the same record before it is savedBefore-save Record-TriggeredCannot send emails, make callouts, or change related records
Create/update related records, emails, calloutsAfter-save Record-TriggeredRuns after commit — avoid recursion traps
Guide a user through a multi-step UI processScreen FlowCannot be triggered by a record event automatically
Reusable background logic called from another FlowAutolaunched (Subflow)Input/output variables define the contract
Logic invoked from Apex @InvocableMethodAutolaunched (Invocable)Must declare input/output variables
Time-based batch processingScheduled FlowRuns in batch context — respect governor limits
Respond to events (Platform Events / CDC)Platform Event–TriggeredRuns asynchronously — eventual consistency

Decision rule: choose before-save when you only need to change the triggering record's own fields. Move to after-save the moment you need to touch related records, send emails, or make callouts.

Step 3 — Bulk Safety Checklist

These patterns are governor limit failures at scale. Check for all of them before the Flow is activated.

DML in Loops — Automatic Fail

Loop element
  └── Create Records / Update Records / Delete Records  ← ❌ DML inside loop

Fix: collect records inside the loop into a collection variable, then run the DML element outside the loop.

Get Records in Loops — Automatic Fail

Loop element
  └── Get Records  ← ❌ SOQL inside loop

Fix: perform the Get Records query before the loop, then loop over the collection variable.

Correct Bulk Pattern

Get Records — collect all records in one query
└── Loop over the collection variable
    └── Decision / Assignment (no DML, no Get Records)
└── After the loop: Create/Update/Delete Records — one DML operation

Transform vs Loop

When the goal is reshaping a collection (e.g. mapping field values from one object to another), use the Transform element instead of a Loop + Assignment pattern. Transform is bulk-safe by design and produces cleaner Flow graphs.

Step 4 — Fault Path Requirements

Every element that can fail at runtime must have a fault connector. Flows without fault paths surface raw system errors to users.

Elements That Require Fault Connectors

  • Create Records
  • Update Records
  • Delete Records
  • Get Records (when accessing a required record that might not exist)
  • Send Email
  • HTTP Callout / External Service action
  • Apex action (invocable)
  • Subflow (if the subflow can throw a fault)

Fault Handler Pattern

Fault connector → Log Error (Create Records on a logging object or fire a Platform Event)
               → Screen element with user-friendly message (Screen Flows)
               → Stop / End element (Record-Triggered Flows)

Never connect a fault path back to the same element that faulted — this creates an infinite loop.

Step 5 — Automation Density Check

Before deploying, verify there are no overlapping automations on the same object and trigger event:

  • Other active Record-Triggered Flows on the same Object + When to Run combination
  • Legacy Process Builder rules still active on the same object
  • Workflow Rules that fire on the same field changes
  • Apex triggers that also run on the same before insert / after update context

Overlapping automations can cause unexpected ordering, recursion, and governor limit failures. Document the automation inventory for the object before activating.

Step 6 — Screen Flow UX Guidelines

  • Every path through a Screen Flow must reach an End element — no orphan branches.
  • Provide a Back navigation option on multi-step flows unless back-navigation would corrupt data.
  • Use lightning-input and SLDS-compliant components for all user inputs — do not use HTML form elements.
  • Validate required inputs on the screen before the user can advance — use Flow validation rules on the screen.
  • Handle the Pause element if the flow may need to await user action across sessions.

Step 7 — Deployment Safety

Deploy as Draft    →   Test with 1 record   →   Test with 200+ records   →   Activate
  • Always deploy as Draft first and test thoroughly before activation.
  • For Record-Triggered Flows: test with the exact entry conditions (e.g. ISCHANGED(Status) — ensure the test data actually triggers the condition).
  • For Scheduled Flows: test with a small batch in a sandbox before enabling in production.
  • Check the Automation Density score for the object — more than 3 active automations on a single object increases order-of-execution risk.

Quick Reference — Flow Anti-Patterns Summary

Anti-patternRiskFix
DML element inside a LoopGovernor limit exceptionMove DML outside the loop
Get Records inside a LoopSOQL governor limit exceptionQuery before the loop
No fault connector on DML/email/callout elementUnhandled exception surfaced to userAdd fault path to every such element
Updating the triggering record in an after-save flow with no recursion guardInfinite trigger loopsAdd an entry condition or recursion guard variable
Looping directly on $Record collectionIncorrect behaviour at scaleAssign to a collection variable first, then loop
Process Builder still active alongside a new FlowDouble-execution, unexpected orderingDeactivate Process Builder before activating the Flow
Screen Flow with no End element on all branchesRuntime error or stuck userEnsure every branch resolves to an End element

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