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reference process · partners · 16 activities · 11 on the roster

Set a Partner Tier

A tier is a promise about how the company will treat somebody, so the rules that give it have to be published first and then applied the same way to everybody. This run reads the rules at the version in force, pulls the same evidence for every partner, and lets the rules produce the tier before anybody argues. Every departure from the rules is written down as an exception with a name against it. What the tier costs is priced, the margin floor is checked, and the support behind the promise is confirmed to have people. Each partner is told their tier, the reason, and what would move it, and the systems are changed to match before the round closes.

The activities

What happens in a run

16 activities from the tiering cadence comes round, or a review refers a partner to every partner holds the tier the published rules give them, one of them a gate a person has to sign. Drag the diagram to move along it.

Set a Partner Tierthe tiering cadence comes round, or a review refers a partner → every partner holds the tier the published rules give them
a measure is missing for a partnerthe discount breaks the floorthe support cannot be staffedan exception has no reason behind itthe partner shows evidence the round missedthe entitlement does not match the tierthe tiering cadence comes round, or a review refers a partner1Open the Tiering Roundwhich partners, on which rules,from which date2Read the Rules in Forcethe published rules at theversion that applies3Pull the Same Evidence fo…one measure set, one period,one source4Check the Evidence Is Com…a missing measure is nottreated as a zero5Apply the Rulesthe tier the rules give, beforeanybody argues6List Every Exceptionwhere a proposal differs fromthe rules, and why7Price What Each Tier Costsmargins, discounts, funds andsupport per tier8Check the Margin Holdsthe tier's discount against thefloor9Check the Support Can Be …the capacity behind what thetier promises10Approve the Tiers and the…a person signs each tier andeach exceptiona person signs · never an agent11Set the Dates and the Not…when a tier starts, and thenotice a drop needs12Tell Each Partner Their T…the tier, the reason, and whatwould move it13Change the Systemsprice lists, portal access,funds and routing14Check the Partner Sees th…the entitlement as the partnerexperiences it15Publish the Roundthe spread across tiers, andthe rules used16Record What the Rules Got…where the rules did not fit,and what to changeevery partner holds the tier the published rules give them
The roster this process needs
partner-manager 7 tier-assessor 7 analytics 3 margin-keeper 3 finance partner 3 legal reviewer 2 partner-monitor 2 partner lead 2 support lead 1 channel leader 1 reporting-manager 1

Hover a name to see the activities it holds. A dashed one is a person, and stays one.

The document

The document, with the blanks marked

Everything in amber is yours to fill in: who owns it, when it takes effect, which platforms, which numbers, and who holds each activity. Everything else is the process, and it is the same wherever it is run.

PROCESS: set a partner tier           id: <team>/set-a-partner-tier  v1
from: ref/prt/set-a-partner-tier v1
owner: <who>                          effective: <date>
trigger: the tiering cadence comes round every <cadence>, or <your
         partner review process> refers a partner whose result moves a
         tier
         watch: every=<cadence>
         or watch: record=<partner review result>
                system=<your partner record>
                change=<a review refers a partner whose result moves a
                tier>
concurrency: one round at a time for a given <program or region>, and a
             partner is tiered by one round at a time
goal: every partner in scope holding the tier the published rules give
      them, with every exception named and signed, the margin and the
      support behind each tier confirmed, and every partner told their
      tier, the reason, and what would move it
phases:
  open-round         - human: which partners are being tiered, on which
                       rules version, and from what date the result
                       applies
                       owner: partner-manager   after: trigger
                       automation: <level>
  read-rules         - human: the published tier rules at the version
                       in force, with the date they were published and
                       the notice each change to them requires
                       owner: tier-assessor     after: open-round
                       automation: <level>
  pull-evidence      - runs collect-and-report: the same measures for
                       every partner, over the same period, from the
                       same systems, each line naming its source
                       owner: analytics         after: read-rules
                       by: <days>               automation: <level>
  check-evidence     - runs assessment: every measure present for every
                       partner, and every absence marked as absent
                       rather than counted as nothing
                       owner: analytics         after: pull-evidence
                       by: <days>               automation: <level>
  apply-rules        - runs assessment: the rules applied to the
                       evidence, producing a tier per partner with the
                       inputs and the rules version recorded
                       owner: tier-assessor     after: check-evidence
                       automation: <level>
  list-exceptions    - human: every partner whose proposed tier differs
                       from the rules result, with the reason, the
                       person asking, and how long it runs
                       owner: tier-assessor     after: apply-rules
                       by: <days>               automation: <level>
  price-tiers        - runs allocate-and-reconcile: the margin, the
                       discount, the funds and the support hours each
                       tier carries, costed against <your plan>
                       owner: margin-keeper     after: apply-rules
                       by: <days>               automation: <level>
  check-margin       - runs assessment: each tier's discount set
                       against <your margin floor>, at the volume the
                       tier is expected to do
                       owner: margin-keeper     after: price-tiers
                       automation: <level>
  check-support      - runs assessment: the response times and the
                       named contacts each tier promises, set against
                       the people who would have to answer
                       owner: <your support leadership role>
                       after: price-tiers
                       by: <days>               automation: <level>
  approve-tiers      - convenes approval: a named signer for the tier
                       set and a named signer for every exception,
                       against a version of the round
                       owner: <your channel leadership role>
                       after: list-exceptions + check-margin + check-support
                       by: <days>               automation: never
  set-dates          - human: the date each tier starts, the notice a
                       drop gets, and the period a partner keeps their
                       old terms while the notice runs
                       owner: partner-manager   after: approve-tiers
                       automation: <level>
  tell-partners      - runs decide-and-announce: every partner hears
                       their tier, the rules version behind it, the
                       measures that produced it, and what would move
                       it
                       owner: partner-manager   after: set-dates
                       by: <days>               automation: <level>
  change-systems     - human: price lists, discount codes, portal
                       access, fund entitlement and support routing set
                       to match the approved tier from its start date
                       owner: partner-manager   after: set-dates
                       by: <days>               automation: <level>
  verify-entitlement - runs assessment: what the partner can actually
                       see, buy and claim, checked against the tier
                       they were told they hold
                       owner: partner-monitor
                       after: tell-partners + change-systems
                       by: <days>               automation: <level>
  publish-round      - runs collect-and-report: how many partners sit
                       in each tier, how many moved which way, and how
                       many exceptions were signed and by whom
                       owner: reporting-manager after: verify-entitlement
                       by: <days>               automation: <level>
  record-rule-gaps   - convenes debrief: where the rules gave a tier
                       nobody could defend, and what the next version
                       of the rules should say
                       owner: tier-assessor     after: publish-round
                       automation: <level>
run-scoped:
  exceptions - runs collect-and-report          owner: tier-assessor
               from: list-exceptions   until: run close
  cost       - runs allocate-and-reconcile      owner: margin-keeper
               from: price-tiers   until: run close
handoffs:
  open-round -> read-rules [partners-and-date]: the partners in scope,
    and the date the result has to apply from
  read-rules -> pull-evidence [rules-in-force]: the measures the rules
    name, so the evidence is pulled for what the rules actually use
  pull-evidence -> check-evidence [measures-pulled]: the measures for
    every partner, each line naming the system and the date it was read
    from
  check-evidence -> apply-rules [complete-evidence]: complete evidence,
    with every gap marked as a gap rather than filled with a zero
  apply-rules -> list-exceptions [rules-result]: the tier the rules gave
    each partner, and the inputs that produced it
  apply-rules -> price-tiers [tier-spread]: how many partners land in
    each tier, so the cost of the tier is priced against real numbers
  list-exceptions -> approve-tiers [departures]: every departure from
    the rules, the reason, the person asking, and the date it expires
  price-tiers -> check-margin [tier-cost]: the discount and the funds
    each tier carries, at the volume assumed
  price-tiers -> check-support [tier-promises]: the response times and
    the contacts each tier promises
  check-margin -> approve-tiers [margin-finding]: the tiers that hold
    the floor and the ones that do not, with the shortfall on each
  check-support -> approve-tiers [support-finding]: the tiers the
    support team can staff and the ones it cannot, with the headcount
    behind the answer
  approve-tiers -> set-dates [signed-tiers]: the signed tier set and the
    signed exceptions, at a version
  set-dates -> tell-partners [dates-and-notice]: the start date, the
    notice, and the period a dropped partner keeps their old terms
  set-dates -> change-systems [dates-for-systems]: the same dates, so
    what the partner is told and what the systems do start on the same
    day
  tell-partners -> verify-entitlement [tier-as-told]: what each partner
    was told they hold, so the systems can be checked against it
  change-systems -> verify-entitlement [systems-set]: what each system
    was set to, and the date it took effect
  verify-entitlement -> publish-round [entitlement-check]: the partners
    whose entitlement matches what they were told, and the ones whose
    does not
  publish-round -> record-rule-gaps [published-round]: the round as
    published, including the exception count
deviations:
  check-evidence -> pull-evidence [measure-missing]: a measure is
    missing for a partner, so it is pulled again rather than counted as
    a zero
  check-margin -> price-tiers [discount-breaks-floor]: the tier's
    discount breaks the margin floor, so the tier is priced again with
    the shortfall attached
  check-support -> price-tiers [support-cannot-be-staffed]: the support
    the tier promises cannot be staffed, so the promise is priced again
    against the people who would answer
  approve-tiers -> list-exceptions [exception-has-no-reason]: an
    exception has no reason behind it, so it goes back to be written
    with a reason and a named person or dropped
  tell-partners -> pull-evidence [evidence-round-missed]: a partner
    shows evidence the round did not see, so it is pulled in and the
    rules are applied again
  verify-entitlement -> change-systems [entitlement-mismatch]: what the
    partner can see, buy or claim does not match their tier, so the
    systems are set again before the round closes
bindings:
  roster:  <who holds each role - agents claiming the abstract agents
           above, the partner leads who ask for exceptions, the finance
           partner who signs the cost, the support leader who confirms
           the capacity, and the channel leader who approves the round>
  systems: the partner record (write), the partner portal (write),
           <your price list system> (write), <your finance system>
           (read), the agreement record (read),
           <your support ticketing system> (write),
           the notification channel (write)
  data:    <your published tier rules> <version>, <your margin floor>,
           the evidence set for the period, <your notice periods>,
           <your exception register>
policy:
  the tier rules are published before the round that applies them, and
    a partner can read the rules that decided their tier
  the same measures, over the same period, from the same systems, for
    every partner in scope
  a missing measure is recorded as missing and never counted as a zero
  any departure from the rules is an exception, is written down with a
    named person behind it, expires on <a date>, and is counted in the
    published round
  no tier is signed while its discount sits below <your margin floor>,
    unless <who> accepts the shortfall in writing
  no tier promises support the support team has not confirmed it can
    staff
  a partner moving down gets <notice period> before the new terms
    apply, and keeps their old terms while the notice runs
  approval is a human gate and is never delegated to an agent
  what the systems give a partner matches the tier they were told they
    hold, and a mismatch is fixed before the round closes
measures:
  cycle time: <target> from the round opening to every partner told
  coverage: <target> share of partners in scope tiered by the rules
            without an exception
  volume: <partners tiered per round>
  quality gate: <sample size> of tiers recomputed each <period> from
                the recorded inputs and the rules version
Take it somewhere

Use this process in LangGraph

Paste this into an assistant that can read the web, such as Claude, ChatGPT or Cursor. It reads the specification and the current LangGraph documentation, then writes two files: the graph, and a note on what did not survive the translation. Read the note first. What a runtime cannot express is the part worth arguing about, and this process is a draft to argue with.

328 lines · the document is inside it, so nothing else is needed
Convert the business process below into a runnable LangGraph graph:
one Python file with a TypedDict state, a StateGraph, nodes, edges,
conditional edges and a checkpointer.

The document is a reference process written to the Agent Processes
specification. Read the specification before you start, because it defines
terms that look ordinary and are not:

  https://agentcatalog.com/spec/agent-processes

Sections 6 (the phase graph), 6.5.1 (exception edges), 6.7.1 (deviations),
7 (automation) and 8 (handoffs) are the ones this conversion turns on.

Then read the current documentation for the primitives you will need, rather
than relying on what you remember of the API:

  https://docs.langchain.com/oss/python/langgraph/interrupts
    interrupt() and Command(resume=), which is how a gate stops a run
  https://reference.langchain.com/python/langgraph/graph/state/StateGraph
    StateGraph, add_edge, add_conditional_edges, defer

WHAT THE DOCUMENT ASKS FOR

These hold wherever the process lands, and they matter more than style.

1. Each phase under `phases:` becomes one step, and keeps its name.

2. `after:` gives the edges. `after: a + b` is a join and waits for BOTH.
   Reading it as "either" is the defect the specification calls out by name.

3. Every handoff carries a key in square brackets. Each key becomes one field
   on the run's state, named exactly as the key with hyphens turned into
   underscores, and the sentence beside it becomes that field's comment. The key
   is the stable name; the sentence is prose that may be rewritten.

4. A phase MUST NOT begin before its inbound handoff exists. Where that is
   checkable, check it in the step rather than assuming it.

5. `automation: never` is a gate a person signs. The run stops there and does
   not continue until a person's decision comes back. Do not turn one into a
   notification, a log line, or an automatic transition, whatever the queue
   looks like.

6. Each line under `deviations:` is a backward or sideways edge, returning to
   the phase named on the right. The key in brackets names it, and that name
   belongs in the code.

7. A phase whose `after:` reads like "X or Y, whichever could not finish" is an
   exception edge: it is entered when those phases FAIL, not when they succeed.
   Do not wire it as an ordinary successor.

8. Anything in angle brackets is a blank the adopting organization fills in.
   Leave each one as a named constant at the top of the file with a TODO. Do not
   invent a value, a threshold or a date.

9. Record the document's `from:` line at the top of the file, so it says which
   reference process and which version it was generated from.

10. Run-scoped lines under `run-scoped:` are work that runs alongside the whole
    process rather than at one point in it, and a run may not close while one is
    unfinished. Say in the code what you did about them, including if the answer
    is that the runtime has nowhere to put them.

HOW THAT LOOKS IN LANGGRAPH

11. A phase is a node added with `add_node`, under the phase's own name.

12. The state is a TypedDict. Each handoff key is one field on it.

13. A join is the trap. `add_edge(["a", "b"], "c")` looks right and releases
    once: when a backward edge re-enters ONE arm, the joined node never runs
    again, and the run ends early reporting success rather than raising. Mark the
    joined node `defer=True` and re-check inside it that both inbound handoffs
    exist.

14. A gate is `interrupt()` inside the node, resumed with `Command(resume=...)`.
    The platform lets anything at all call resume, so require the resumed value to
    name a person and a date and refuse anything else. Say in the fidelity note
    that this proves only that whoever resumed typed a name, because
    `Command(resume=True)` from a scheduled job is indistinguishable from a person
    signing.

15. A deviation is `add_conditional_edges` with a routing function named after
    the key in brackets.

16. Pass a durable checkpointer rather than taking the in-memory default. The
    gates wait days, and the default loses every paused run on restart.

17. Leave every phase body unimplemented, raising until somebody registers an
    implementation. The automation level is a blank, so writing a body would
    answer on the adopter's behalf whether an agent may do that work.

Produce a second file alongside it, `FIDELITY.md`, and treat it as the more
important of the two. The code is for whoever builds this. The fidelity note
is for whoever has to decide whether this platform suits the process at all,
and that is usually a different person who will never read the code.

It has three parts.

**What came across.** Briefly: how many phases became steps, how many handoff
keys became state fields, which gates stop the run, which deviations became
edges. Counts and names, not reassurance.

**What did not, and what was done instead.** One entry per gap. For each one,
say what the document requires, what the platform can actually express, what
you did in its place, and what breaks if somebody later removes your
workaround. This last part matters most: a workaround nobody understands is a
workaround somebody deletes.

**What a person still has to decide.** The blanks are not a translation
failure, they are the point of a reference process, so list what has to be
filled in before this could run against anything real, and say which of those
choices the platform constrains.

Write it in plain English for somebody who has not read the specification, and
do not soften it. A translation of a reference process is a draft to argue
with, not a build artifact, and the honest account of what was lost is the most
useful thing you will produce.

Here is the process document.

```
PROCESS: set a partner tier           id: <team>/set-a-partner-tier  v1
from: ref/prt/set-a-partner-tier v1
owner: <who>                          effective: <date>
trigger: the tiering cadence comes round every <cadence>, or <your
         partner review process> refers a partner whose result moves a
         tier
         watch: every=<cadence>
         or watch: record=<partner review result>
                system=<your partner record>
                change=<a review refers a partner whose result moves a
                tier>
concurrency: one round at a time for a given <program or region>, and a
             partner is tiered by one round at a time
goal: every partner in scope holding the tier the published rules give
      them, with every exception named and signed, the margin and the
      support behind each tier confirmed, and every partner told their
      tier, the reason, and what would move it
phases:
  open-round         - human: which partners are being tiered, on which
                       rules version, and from what date the result
                       applies
                       owner: partner-manager   after: trigger
                       automation: <level>
  read-rules         - human: the published tier rules at the version
                       in force, with the date they were published and
                       the notice each change to them requires
                       owner: tier-assessor     after: open-round
                       automation: <level>
  pull-evidence      - runs collect-and-report: the same measures for
                       every partner, over the same period, from the
                       same systems, each line naming its source
                       owner: analytics         after: read-rules
                       by: <days>               automation: <level>
  check-evidence     - runs assessment: every measure present for every
                       partner, and every absence marked as absent
                       rather than counted as nothing
                       owner: analytics         after: pull-evidence
                       by: <days>               automation: <level>
  apply-rules        - runs assessment: the rules applied to the
                       evidence, producing a tier per partner with the
                       inputs and the rules version recorded
                       owner: tier-assessor     after: check-evidence
                       automation: <level>
  list-exceptions    - human: every partner whose proposed tier differs
                       from the rules result, with the reason, the
                       person asking, and how long it runs
                       owner: tier-assessor     after: apply-rules
                       by: <days>               automation: <level>
  price-tiers        - runs allocate-and-reconcile: the margin, the
                       discount, the funds and the support hours each
                       tier carries, costed against <your plan>
                       owner: margin-keeper     after: apply-rules
                       by: <days>               automation: <level>
  check-margin       - runs assessment: each tier's discount set
                       against <your margin floor>, at the volume the
                       tier is expected to do
                       owner: margin-keeper     after: price-tiers
                       automation: <level>
  check-support      - runs assessment: the response times and the
                       named contacts each tier promises, set against
                       the people who would have to answer
                       owner: <your support leadership role>
                       after: price-tiers
                       by: <days>               automation: <level>
  approve-tiers      - convenes approval: a named signer for the tier
                       set and a named signer for every exception,
                       against a version of the round
                       owner: <your channel leadership role>
                       after: list-exceptions + check-margin + check-support
                       by: <days>               automation: never
  set-dates          - human: the date each tier starts, the notice a
                       drop gets, and the period a partner keeps their
                       old terms while the notice runs
                       owner: partner-manager   after: approve-tiers
                       automation: <level>
  tell-partners      - runs decide-and-announce: every partner hears
                       their tier, the rules version behind it, the
                       measures that produced it, and what would move
                       it
                       owner: partner-manager   after: set-dates
                       by: <days>               automation: <level>
  change-systems     - human: price lists, discount codes, portal
                       access, fund entitlement and support routing set
                       to match the approved tier from its start date
                       owner: partner-manager   after: set-dates
                       by: <days>               automation: <level>
  verify-entitlement - runs assessment: what the partner can actually
                       see, buy and claim, checked against the tier
                       they were told they hold
                       owner: partner-monitor
                       after: tell-partners + change-systems
                       by: <days>               automation: <level>
  publish-round      - runs collect-and-report: how many partners sit
                       in each tier, how many moved which way, and how
                       many exceptions were signed and by whom
                       owner: reporting-manager after: verify-entitlement
                       by: <days>               automation: <level>
  record-rule-gaps   - convenes debrief: where the rules gave a tier
                       nobody could defend, and what the next version
                       of the rules should say
                       owner: tier-assessor     after: publish-round
                       automation: <level>
run-scoped:
  exceptions - runs collect-and-report          owner: tier-assessor
               from: list-exceptions   until: run close
  cost       - runs allocate-and-reconcile      owner: margin-keeper
               from: price-tiers   until: run close
handoffs:
  open-round -> read-rules [partners-and-date]: the partners in scope,
    and the date the result has to apply from
  read-rules -> pull-evidence [rules-in-force]: the measures the rules
    name, so the evidence is pulled for what the rules actually use
  pull-evidence -> check-evidence [measures-pulled]: the measures for
    every partner, each line naming the system and the date it was read
    from
  check-evidence -> apply-rules [complete-evidence]: complete evidence,
    with every gap marked as a gap rather than filled with a zero
  apply-rules -> list-exceptions [rules-result]: the tier the rules gave
    each partner, and the inputs that produced it
  apply-rules -> price-tiers [tier-spread]: how many partners land in
    each tier, so the cost of the tier is priced against real numbers
  list-exceptions -> approve-tiers [departures]: every departure from
    the rules, the reason, the person asking, and the date it expires
  price-tiers -> check-margin [tier-cost]: the discount and the funds
    each tier carries, at the volume assumed
  price-tiers -> check-support [tier-promises]: the response times and
    the contacts each tier promises
  check-margin -> approve-tiers [margin-finding]: the tiers that hold
    the floor and the ones that do not, with the shortfall on each
  check-support -> approve-tiers [support-finding]: the tiers the
    support team can staff and the ones it cannot, with the headcount
    behind the answer
  approve-tiers -> set-dates [signed-tiers]: the signed tier set and the
    signed exceptions, at a version
  set-dates -> tell-partners [dates-and-notice]: the start date, the
    notice, and the period a dropped partner keeps their old terms
  set-dates -> change-systems [dates-for-systems]: the same dates, so
    what the partner is told and what the systems do start on the same
    day
  tell-partners -> verify-entitlement [tier-as-told]: what each partner
    was told they hold, so the systems can be checked against it
  change-systems -> verify-entitlement [systems-set]: what each system
    was set to, and the date it took effect
  verify-entitlement -> publish-round [entitlement-check]: the partners
    whose entitlement matches what they were told, and the ones whose
    does not
  publish-round -> record-rule-gaps [published-round]: the round as
    published, including the exception count
deviations:
  check-evidence -> pull-evidence [measure-missing]: a measure is
    missing for a partner, so it is pulled again rather than counted as
    a zero
  check-margin -> price-tiers [discount-breaks-floor]: the tier's
    discount breaks the margin floor, so the tier is priced again with
    the shortfall attached
  check-support -> price-tiers [support-cannot-be-staffed]: the support
    the tier promises cannot be staffed, so the promise is priced again
    against the people who would answer
  approve-tiers -> list-exceptions [exception-has-no-reason]: an
    exception has no reason behind it, so it goes back to be written
    with a reason and a named person or dropped
  tell-partners -> pull-evidence [evidence-round-missed]: a partner
    shows evidence the round did not see, so it is pulled in and the
    rules are applied again
  verify-entitlement -> change-systems [entitlement-mismatch]: what the
    partner can see, buy or claim does not match their tier, so the
    systems are set again before the round closes
bindings:
  roster:  <who holds each role - agents claiming the abstract agents
           above, the partner leads who ask for exceptions, the finance
           partner who signs the cost, the support leader who confirms
           the capacity, and the channel leader who approves the round>
  systems: the partner record (write), the partner portal (write),
           <your price list system> (write), <your finance system>
           (read), the agreement record (read),
           <your support ticketing system> (write),
           the notification channel (write)
  data:    <your published tier rules> <version>, <your margin floor>,
           the evidence set for the period, <your notice periods>,
           <your exception register>
policy:
  the tier rules are published before the round that applies them, and
    a partner can read the rules that decided their tier
  the same measures, over the same period, from the same systems, for
    every partner in scope
  a missing measure is recorded as missing and never counted as a zero
  any departure from the rules is an exception, is written down with a
    named person behind it, expires on <a date>, and is counted in the
    published round
  no tier is signed while its discount sits below <your margin floor>,
    unless <who> accepts the shortfall in writing
  no tier promises support the support team has not confirmed it can
    staff
  a partner moving down gets <notice period> before the new terms
    apply, and keeps their old terms while the notice runs
  approval is a human gate and is never delegated to an agent
  what the systems give a partner matches the tier they were told they
    hold, and a mismatch is fixed before the round closes
measures:
  cycle time: <target> from the round opening to every partner told
  coverage: <target> share of partners in scope tiered by the rules
            without an exception
  volume: <partners tiered per round>
  quality gate: <sample size> of tiers recomputed each <period> from
                the recorded inputs and the rules version
```
Take it somewhere

Use this process in Microsoft Agent Framework

Paste this into an assistant that can read the web, such as Claude, ChatGPT or Cursor. It reads the specification and the current Agent Framework documentation, then writes two files: the workflow, and a note on what did not survive the translation. Read the note first. What a runtime cannot express is the part worth arguing about, and this process is a draft to argue with.

383 lines · the document is inside it, so nothing else is needed
Convert the business process below into a runnable Microsoft Agent Framework workflow:
one Python file with Executor classes, a WorkflowBuilder, typed edges,
request_info gates and durable checkpoint storage.

The document is a reference process written to the Agent Processes
specification. Read the specification before you start, because it defines
terms that look ordinary and are not:

  https://agentcatalog.com/spec/agent-processes

Sections 6 (the phase graph), 6.5.1 (exception edges), 6.7.1 (deviations),
7 (automation) and 8 (handoffs) are the ones this conversion turns on.

Then read the current documentation for the primitives you will need, rather
than relying on what you remember of the API:

  https://learn.microsoft.com/en-us/agent-framework/workflows/human-in-the-loop
    ctx.request_info, @response_handler, and answering a parked run later
  https://learn.microsoft.com/en-us/agent-framework/workflows/checkpoints
    what a checkpoint holds, and allowed_checkpoint_types
  https://learn.microsoft.com/en-us/agent-framework/concepts/workflows/edges
    add_edge with condition, add_fan_in_edges, add_switch_case_edge_group
  https://learn.microsoft.com/en-us/agent-framework/concepts/workflows/state
    ctx.set_state and ctx.get_state as they actually are today

WHAT THE DOCUMENT ASKS FOR

These hold wherever the process lands, and they matter more than style.

1. Each phase under `phases:` becomes one step, and keeps its name.

2. `after:` gives the edges. `after: a + b` is a join and waits for BOTH.
   Reading it as "either" is the defect the specification calls out by name.

3. Every handoff carries a key in square brackets. Each key becomes one field
   on the run's state, named exactly as the key with hyphens turned into
   underscores, and the sentence beside it becomes that field's comment. The key
   is the stable name; the sentence is prose that may be rewritten.

4. A phase MUST NOT begin before its inbound handoff exists. Where that is
   checkable, check it in the step rather than assuming it.

5. `automation: never` is a gate a person signs. The run stops there and does
   not continue until a person's decision comes back. Do not turn one into a
   notification, a log line, or an automatic transition, whatever the queue
   looks like.

6. Each line under `deviations:` is a backward or sideways edge, returning to
   the phase named on the right. The key in brackets names it, and that name
   belongs in the code.

7. A phase whose `after:` reads like "X or Y, whichever could not finish" is an
   exception edge: it is entered when those phases FAIL, not when they succeed.
   Do not wire it as an ordinary successor.

8. Anything in angle brackets is a blank the adopting organization fills in.
   Leave each one as a named constant at the top of the file with a TODO. Do not
   invent a value, a threshold or a date.

9. Record the document's `from:` line at the top of the file, so it says which
   reference process and which version it was generated from.

10. Run-scoped lines under `run-scoped:` are work that runs alongside the whole
    process rather than at one point in it, and a run may not close while one is
    unfinished. Say in the code what you did about them, including if the answer
    is that the runtime has nowhere to put them.

HOW THAT LOOKS IN MICROSOFT AGENT FRAMEWORK

11. Write for Python, and read those pages before writing a line. This API has
    moved: `set_shared_state`, `RequestInfoExecutor`, `RequestInfoMessage` and
    `send_responses_streaming` are all in the training data and none of them exist
    any more. The .NET workflow API differs in kind rather than in spelling, so a
    file written for one does not port by renaming.

12. A phase is a class deriving from `Executor` whose `super().__init__(id=...)`
    takes the phase name verbatim. The id is not cosmetic: a checkpoint stores a
    signature over the topology and the executor ids, so an id built from a run, a
    timestamp or a counter cannot be resumed into.

13. Give each phase a `@handler` method and move work on with
    `await ctx.send_message(...)`. A handler that returns without sending is a dead
    end: the branch stops, the run converges, and it reports success. So a phase
    you are deliberately leaving unimplemented must still send a placeholder
    onward. Do not stub with `raise NotImplementedError`, which fails the run
    instead of leaving it runnable.

14. `after: a` is `builder.add_edge(a, b)`. `after: a + b` is
    `builder.add_fan_in_edges([a, b], target)`, and the target's handler must be
    annotated `list[T]`, because a fan-in delivers one aggregated list rather than
    the separate messages. A handler typed for the single value is dropped as a
    mismatch with nothing raised.

15. The join is the trap here, and it is the opposite of LangGraph's. The
    barrier re-arms: it clears its buffer when it fires and then demands a fresh
    message from every source. So a deviation that re-enters ONE arm parks the
    run forever waiting for an arm that will not run again, and the workflow ends
    IDLE reporting success. Wherever a deviation re-enters one arm of a join,
    replace the barrier with an ordinary edge from each arm into a small executor
    that records each arrival with `ctx.set_state` and only forwards when every
    expected key is present, and say in a comment that putting `add_fan_in_edges`
    back reintroduces the stall.

16. A phase that is both a join target and a deviation target needs two
    handlers, one annotated `list[T]` for the barrier and one annotated `T` for the
    backward message. Write only the list handler and every backward edge into it
    is discarded as a type mismatch, silently.

17. `automation: never` is `await ctx.request_info(request_data=...,
    response_type=...)` inside the phase, answered by a `@response_handler` on the
    same executor whose annotations match those exact types. The run parks at
    `IDLE_WITH_PENDING_REQUESTS` and the host answers with
    `workflow.run(stream=True, responses={request_id: value})`. If no handler
    matches the pair, the framework logs a warning and parks anyway, so the gate
    reads as working right up until somebody asks why the approval did not take.

18. A gate is only a gate if the wait survives a restart, so pass
    `checkpoint_storage=FileCheckpointStorage(...)` to the builder. Checkpointing
    is off by default and `InMemoryCheckpointStorage` reads as configured while
    persisting nothing. Register every handoff payload type in
    `allowed_checkpoint_types`, or the first restore raises. Anything an executor
    keeps as an instance attribute is absent after a restore unless you export it
    from `on_checkpoint_save` and read it back in `on_checkpoint_restore`, and it
    comes back empty rather than missing.

19. Each line under `deviations:` is `builder.add_edge(source, earlier,
    condition=fn)` with `fn` named after the key. Cycles are legal and unchecked,
    but raise `max_iterations` well above its default of 100, because several live
    cycles will exhaust a budget sized for a straight line and fail with a message
    about convergence that reads like a broken graph. Keep the ordinary forward
    edge unconditional and add each deviation beside it: a condition that returns
    false is dropped with no event, so a forward path expressed as a condition
    dies silently on every normal run, which is most of them.

20. Handoff values go in `ctx.set_state(key, value)` and come back from
    `ctx.get_state(key)`, untyped and unchecked. A write is visible to its writer
    at once and to everyone else only in the next superstep, and two writers of one
    key in a superstep keep the last write. Never read a key in the same superstep
    another phase wrote it.

21. There are no timers, no deadlines and no scheduled wakes. Nothing in
    `run-scoped:` becomes an executor and `by:` has no expression at all, so write
    them as comments naming where they start and stop, and say plainly in the
    fidelity note that a run can close over an unfinished run-scoped line. Do not
    fake a deadline with a sleep inside a handler, which blocks the whole superstep
    barrier, and never let an expiring wait release a gate.

Produce a second file alongside it, `FIDELITY.md`, and treat it as the more
important of the two. The code is for whoever builds this. The fidelity note
is for whoever has to decide whether this platform suits the process at all,
and that is usually a different person who will never read the code.

It has three parts.

**What came across.** Briefly: how many phases became steps, how many handoff
keys became state fields, which gates stop the run, which deviations became
edges. Counts and names, not reassurance.

**What did not, and what was done instead.** One entry per gap. For each one,
say what the document requires, what the platform can actually express, what
you did in its place, and what breaks if somebody later removes your
workaround. This last part matters most: a workaround nobody understands is a
workaround somebody deletes.

**What a person still has to decide.** The blanks are not a translation
failure, they are the point of a reference process, so list what has to be
filled in before this could run against anything real, and say which of those
choices the platform constrains.

Write it in plain English for somebody who has not read the specification, and
do not soften it. A translation of a reference process is a draft to argue
with, not a build artifact, and the honest account of what was lost is the most
useful thing you will produce.

Here is the process document.

```
PROCESS: set a partner tier           id: <team>/set-a-partner-tier  v1
from: ref/prt/set-a-partner-tier v1
owner: <who>                          effective: <date>
trigger: the tiering cadence comes round every <cadence>, or <your
         partner review process> refers a partner whose result moves a
         tier
         watch: every=<cadence>
         or watch: record=<partner review result>
                system=<your partner record>
                change=<a review refers a partner whose result moves a
                tier>
concurrency: one round at a time for a given <program or region>, and a
             partner is tiered by one round at a time
goal: every partner in scope holding the tier the published rules give
      them, with every exception named and signed, the margin and the
      support behind each tier confirmed, and every partner told their
      tier, the reason, and what would move it
phases:
  open-round         - human: which partners are being tiered, on which
                       rules version, and from what date the result
                       applies
                       owner: partner-manager   after: trigger
                       automation: <level>
  read-rules         - human: the published tier rules at the version
                       in force, with the date they were published and
                       the notice each change to them requires
                       owner: tier-assessor     after: open-round
                       automation: <level>
  pull-evidence      - runs collect-and-report: the same measures for
                       every partner, over the same period, from the
                       same systems, each line naming its source
                       owner: analytics         after: read-rules
                       by: <days>               automation: <level>
  check-evidence     - runs assessment: every measure present for every
                       partner, and every absence marked as absent
                       rather than counted as nothing
                       owner: analytics         after: pull-evidence
                       by: <days>               automation: <level>
  apply-rules        - runs assessment: the rules applied to the
                       evidence, producing a tier per partner with the
                       inputs and the rules version recorded
                       owner: tier-assessor     after: check-evidence
                       automation: <level>
  list-exceptions    - human: every partner whose proposed tier differs
                       from the rules result, with the reason, the
                       person asking, and how long it runs
                       owner: tier-assessor     after: apply-rules
                       by: <days>               automation: <level>
  price-tiers        - runs allocate-and-reconcile: the margin, the
                       discount, the funds and the support hours each
                       tier carries, costed against <your plan>
                       owner: margin-keeper     after: apply-rules
                       by: <days>               automation: <level>
  check-margin       - runs assessment: each tier's discount set
                       against <your margin floor>, at the volume the
                       tier is expected to do
                       owner: margin-keeper     after: price-tiers
                       automation: <level>
  check-support      - runs assessment: the response times and the
                       named contacts each tier promises, set against
                       the people who would have to answer
                       owner: <your support leadership role>
                       after: price-tiers
                       by: <days>               automation: <level>
  approve-tiers      - convenes approval: a named signer for the tier
                       set and a named signer for every exception,
                       against a version of the round
                       owner: <your channel leadership role>
                       after: list-exceptions + check-margin + check-support
                       by: <days>               automation: never
  set-dates          - human: the date each tier starts, the notice a
                       drop gets, and the period a partner keeps their
                       old terms while the notice runs
                       owner: partner-manager   after: approve-tiers
                       automation: <level>
  tell-partners      - runs decide-and-announce: every partner hears
                       their tier, the rules version behind it, the
                       measures that produced it, and what would move
                       it
                       owner: partner-manager   after: set-dates
                       by: <days>               automation: <level>
  change-systems     - human: price lists, discount codes, portal
                       access, fund entitlement and support routing set
                       to match the approved tier from its start date
                       owner: partner-manager   after: set-dates
                       by: <days>               automation: <level>
  verify-entitlement - runs assessment: what the partner can actually
                       see, buy and claim, checked against the tier
                       they were told they hold
                       owner: partner-monitor
                       after: tell-partners + change-systems
                       by: <days>               automation: <level>
  publish-round      - runs collect-and-report: how many partners sit
                       in each tier, how many moved which way, and how
                       many exceptions were signed and by whom
                       owner: reporting-manager after: verify-entitlement
                       by: <days>               automation: <level>
  record-rule-gaps   - convenes debrief: where the rules gave a tier
                       nobody could defend, and what the next version
                       of the rules should say
                       owner: tier-assessor     after: publish-round
                       automation: <level>
run-scoped:
  exceptions - runs collect-and-report          owner: tier-assessor
               from: list-exceptions   until: run close
  cost       - runs allocate-and-reconcile      owner: margin-keeper
               from: price-tiers   until: run close
handoffs:
  open-round -> read-rules [partners-and-date]: the partners in scope,
    and the date the result has to apply from
  read-rules -> pull-evidence [rules-in-force]: the measures the rules
    name, so the evidence is pulled for what the rules actually use
  pull-evidence -> check-evidence [measures-pulled]: the measures for
    every partner, each line naming the system and the date it was read
    from
  check-evidence -> apply-rules [complete-evidence]: complete evidence,
    with every gap marked as a gap rather than filled with a zero
  apply-rules -> list-exceptions [rules-result]: the tier the rules gave
    each partner, and the inputs that produced it
  apply-rules -> price-tiers [tier-spread]: how many partners land in
    each tier, so the cost of the tier is priced against real numbers
  list-exceptions -> approve-tiers [departures]: every departure from
    the rules, the reason, the person asking, and the date it expires
  price-tiers -> check-margin [tier-cost]: the discount and the funds
    each tier carries, at the volume assumed
  price-tiers -> check-support [tier-promises]: the response times and
    the contacts each tier promises
  check-margin -> approve-tiers [margin-finding]: the tiers that hold
    the floor and the ones that do not, with the shortfall on each
  check-support -> approve-tiers [support-finding]: the tiers the
    support team can staff and the ones it cannot, with the headcount
    behind the answer
  approve-tiers -> set-dates [signed-tiers]: the signed tier set and the
    signed exceptions, at a version
  set-dates -> tell-partners [dates-and-notice]: the start date, the
    notice, and the period a dropped partner keeps their old terms
  set-dates -> change-systems [dates-for-systems]: the same dates, so
    what the partner is told and what the systems do start on the same
    day
  tell-partners -> verify-entitlement [tier-as-told]: what each partner
    was told they hold, so the systems can be checked against it
  change-systems -> verify-entitlement [systems-set]: what each system
    was set to, and the date it took effect
  verify-entitlement -> publish-round [entitlement-check]: the partners
    whose entitlement matches what they were told, and the ones whose
    does not
  publish-round -> record-rule-gaps [published-round]: the round as
    published, including the exception count
deviations:
  check-evidence -> pull-evidence [measure-missing]: a measure is
    missing for a partner, so it is pulled again rather than counted as
    a zero
  check-margin -> price-tiers [discount-breaks-floor]: the tier's
    discount breaks the margin floor, so the tier is priced again with
    the shortfall attached
  check-support -> price-tiers [support-cannot-be-staffed]: the support
    the tier promises cannot be staffed, so the promise is priced again
    against the people who would answer
  approve-tiers -> list-exceptions [exception-has-no-reason]: an
    exception has no reason behind it, so it goes back to be written
    with a reason and a named person or dropped
  tell-partners -> pull-evidence [evidence-round-missed]: a partner
    shows evidence the round did not see, so it is pulled in and the
    rules are applied again
  verify-entitlement -> change-systems [entitlement-mismatch]: what the
    partner can see, buy or claim does not match their tier, so the
    systems are set again before the round closes
bindings:
  roster:  <who holds each role - agents claiming the abstract agents
           above, the partner leads who ask for exceptions, the finance
           partner who signs the cost, the support leader who confirms
           the capacity, and the channel leader who approves the round>
  systems: the partner record (write), the partner portal (write),
           <your price list system> (write), <your finance system>
           (read), the agreement record (read),
           <your support ticketing system> (write),
           the notification channel (write)
  data:    <your published tier rules> <version>, <your margin floor>,
           the evidence set for the period, <your notice periods>,
           <your exception register>
policy:
  the tier rules are published before the round that applies them, and
    a partner can read the rules that decided their tier
  the same measures, over the same period, from the same systems, for
    every partner in scope
  a missing measure is recorded as missing and never counted as a zero
  any departure from the rules is an exception, is written down with a
    named person behind it, expires on <a date>, and is counted in the
    published round
  no tier is signed while its discount sits below <your margin floor>,
    unless <who> accepts the shortfall in writing
  no tier promises support the support team has not confirmed it can
    staff
  a partner moving down gets <notice period> before the new terms
    apply, and keeps their old terms while the notice runs
  approval is a human gate and is never delegated to an agent
  what the systems give a partner matches the tier they were told they
    hold, and a mismatch is fixed before the round closes
measures:
  cycle time: <target> from the round opening to every partner told
  coverage: <target> share of partners in scope tiered by the rules
            without an exception
  volume: <partners tiered per round>
  quality gate: <sample size> of tiers recomputed each <period> from
                the recorded inputs and the rules version
```
Take it somewhere

Use this process in CrewAI Flows

Paste this into an assistant that can read the web, such as Claude, ChatGPT or Cursor. It reads the specification and the current CrewAI documentation, then writes two files: the flow, and a note on what did not survive the translation. Read the note first. What a runtime cannot express is the part worth arguing about, and this process is a draft to argue with.

388 lines · the document is inside it, so nothing else is needed
Convert the business process below into a runnable CrewAI Flow:
one Python file with a Pydantic state model, one Flow subclass, @start,
@listen, @router and a durable human feedback provider.

The document is a reference process written to the Agent Processes
specification. Read the specification before you start, because it defines
terms that look ordinary and are not:

  https://agentcatalog.com/spec/agent-processes

Sections 6 (the phase graph), 6.5.1 (exception edges), 6.7.1 (deviations),
7 (automation) and 8 (handoffs) are the ones this conversion turns on.

Then read the current documentation for the primitives you will need, rather
than relying on what you remember of the API:

  https://docs.crewai.com/en/concepts/flows
    Flow, @start, @listen, @router, and_, or_, state, kickoff, plot
  https://docs.crewai.com/en/learn/human-feedback-in-flows
    @human_feedback, the provider protocol, from_pending and resume
  https://docs.crewai.com/en/guides/flows/mastering-flow-state
    @persist and what persistence actually promises, which is less than it sounds

WHAT THE DOCUMENT ASKS FOR

These hold wherever the process lands, and they matter more than style.

1. Each phase under `phases:` becomes one step, and keeps its name.

2. `after:` gives the edges. `after: a + b` is a join and waits for BOTH.
   Reading it as "either" is the defect the specification calls out by name.

3. Every handoff carries a key in square brackets. Each key becomes one field
   on the run's state, named exactly as the key with hyphens turned into
   underscores, and the sentence beside it becomes that field's comment. The key
   is the stable name; the sentence is prose that may be rewritten.

4. A phase MUST NOT begin before its inbound handoff exists. Where that is
   checkable, check it in the step rather than assuming it.

5. `automation: never` is a gate a person signs. The run stops there and does
   not continue until a person's decision comes back. Do not turn one into a
   notification, a log line, or an automatic transition, whatever the queue
   looks like.

6. Each line under `deviations:` is a backward or sideways edge, returning to
   the phase named on the right. The key in brackets names it, and that name
   belongs in the code.

7. A phase whose `after:` reads like "X or Y, whichever could not finish" is an
   exception edge: it is entered when those phases FAIL, not when they succeed.
   Do not wire it as an ordinary successor.

8. Anything in angle brackets is a blank the adopting organization fills in.
   Leave each one as a named constant at the top of the file with a TODO. Do not
   invent a value, a threshold or a date.

9. Record the document's `from:` line at the top of the file, so it says which
   reference process and which version it was generated from.

10. Run-scoped lines under `run-scoped:` are work that runs alongside the whole
    process rather than at one point in it, and a run may not close while one is
    unfinished. Say in the code what you did about them, including if the answer
    is that the runtime has nowhere to put them.

HOW THAT LOOKS IN CREWAI FLOWS

11. Build a Flow, not a Crew. A Crew is a team of roles with no graph, no join,
    no persistence handle and no gate, and cannot express this document at all.
    Each phase is one method on a single `Flow` subclass, keeping its name with
    hyphens turned into underscores. A phase that genuinely needs role-based agents
    builds its own Crew inside its own method body, and the Flow stays the graph.

12. Declare the state as a Pydantic model bound as the type parameter,
    `class NegotiateTheAgreement(Flow[NegotiationState])`, and read and write
    `self.state.field`. Never use the untyped dict form: the handoff keys are this
    process's memory, and an untyped dict turns a misspelt key into a handoff that
    is silently absent. Keep the auto-injected `id` field, which is what every
    resume depends on.

13. `after: a` is `@listen(a)`. `after: a + b` is `@listen(and_(a, b))`. Never
    write `or_` where the document writes `+`.

14. Check every inbound handoff at the top of the method and raise if one is
    missing. `@listen` says when a method may run and says nothing about what is
    in hand when it does.

15. The join is the trap, and it is proven rather than theoretical. `and_()`
    empties its accumulator the moment it fires, so re-entering BOTH arms works
    forever, and re-entering ONE arm after it has fired leaves it holding a single
    trigger and waiting for the other for good. The cascade drains, CrewAI prints
    that the flow completed, and `kickoff()` returns normally. So for any joining
    phase that a deviation can send work back into, do not use `and_()` at all:
    make the join a `@router` that both arms trigger, which reads the state fields
    and emits its label only when every inbound handoff is present. A router is
    re-evaluated against durable state every time and is never suppressed by the
    once-fired set.

16. Do not write a phase as `@listen(or_(and_(a, b), "some_label"))`. There is
    one accumulator per listener, shared across every branch of its condition and
    wiped when any branch satisfies, so the label firing while the join is half
    full erases the arm that had already arrived.

17. `automation: never` is `@human_feedback(message=..., provider=...)` stacked
    under the method's `@listen`, with a provider whose `request_feedback` raises
    `HumanFeedbackPending`. The run then persists, returns that object from
    `kickoff()`, and a different process answers later with `from_pending(flow_id,
    persistence)` and `resume(text)`. Do not take the default `ConsoleProvider`,
    which calls `input()`: that gate exists only while somebody is watching a
    terminal, and a run started by a scheduler either hangs or takes an empty
    string.

18. Silence must not approve, and the platform's default is that it does. With
    `emit=[...]` set, an empty resume collapses to `default_outcome`, or to the
    first label when that is unset, with no model consulted and nobody named. Treat
    an empty or unrecognised answer as a refusal in your own router. And write the
    approver's name and the time onto the state yourself, because
    `HumanFeedbackResult` carries the text, the outcome and a timestamp but has no
    field for the person, which the specification requires.

19. Each line under `deviations:` is a `@router` named after the key, returning
    a label named after the same key, with the target subscribing as
    `@listen(or_(normal_trigger, "the_label"))`. Route rather than listen
    directly, because a router is re-evaluated on every cycle while a top-level
    `or_` listener is suppressed after it first fires.

20. An exception edge is a `try` and `except` around the failing phase's body,
    recording the failure on the state and emitting an exception label from a
    router. Wiring it as `@listen(or_(x, y))` fires when those phases SUCCEED, so
    the clearing phase would run on every healthy run.

21. An unimplemented phase is a method with the document's own sentence as its
    docstring and a bare `pass`, which is safe because listeners still fire on a
    `None` return. An unimplemented `@router` is not safe: returning `None` emits
    no label, every phase below it disappears from the run including the gates, and
    the flow reports success. A stub router must return a hard-coded label with a
    TODO beside it, or raise.

22. Turn persistence on with `@persist(SQLiteFlowPersistence(...))`, then treat
    every phase that performs a real act as something that will run twice.
    Persistence saves the state fields and nothing else, so a restart rehydrates
    the data and runs the graph again from `@start`: a flow that had already sent a
    written refusal sends a second one. Guard each acting phase with a state field
    it checks and sets.

23. There are no timers, no deadlines and no cadences, and `run-scoped:` has no
    counterpart at all. Put each `by:` value as a named constant, name the
    run-scoped lines in the module docstring as unimplemented obligations, and say
    in the fidelity note that no deadline in this document is enforced by anything.
    These absences produce no diagnostic whatsoever, which is exactly why they have
    to be written down.

Produce a second file alongside it, `FIDELITY.md`, and treat it as the more
important of the two. The code is for whoever builds this. The fidelity note
is for whoever has to decide whether this platform suits the process at all,
and that is usually a different person who will never read the code.

It has three parts.

**What came across.** Briefly: how many phases became steps, how many handoff
keys became state fields, which gates stop the run, which deviations became
edges. Counts and names, not reassurance.

**What did not, and what was done instead.** One entry per gap. For each one,
say what the document requires, what the platform can actually express, what
you did in its place, and what breaks if somebody later removes your
workaround. This last part matters most: a workaround nobody understands is a
workaround somebody deletes.

**What a person still has to decide.** The blanks are not a translation
failure, they are the point of a reference process, so list what has to be
filled in before this could run against anything real, and say which of those
choices the platform constrains.

Write it in plain English for somebody who has not read the specification, and
do not soften it. A translation of a reference process is a draft to argue
with, not a build artifact, and the honest account of what was lost is the most
useful thing you will produce.

Here is the process document.

```
PROCESS: set a partner tier           id: <team>/set-a-partner-tier  v1
from: ref/prt/set-a-partner-tier v1
owner: <who>                          effective: <date>
trigger: the tiering cadence comes round every <cadence>, or <your
         partner review process> refers a partner whose result moves a
         tier
         watch: every=<cadence>
         or watch: record=<partner review result>
                system=<your partner record>
                change=<a review refers a partner whose result moves a
                tier>
concurrency: one round at a time for a given <program or region>, and a
             partner is tiered by one round at a time
goal: every partner in scope holding the tier the published rules give
      them, with every exception named and signed, the margin and the
      support behind each tier confirmed, and every partner told their
      tier, the reason, and what would move it
phases:
  open-round         - human: which partners are being tiered, on which
                       rules version, and from what date the result
                       applies
                       owner: partner-manager   after: trigger
                       automation: <level>
  read-rules         - human: the published tier rules at the version
                       in force, with the date they were published and
                       the notice each change to them requires
                       owner: tier-assessor     after: open-round
                       automation: <level>
  pull-evidence      - runs collect-and-report: the same measures for
                       every partner, over the same period, from the
                       same systems, each line naming its source
                       owner: analytics         after: read-rules
                       by: <days>               automation: <level>
  check-evidence     - runs assessment: every measure present for every
                       partner, and every absence marked as absent
                       rather than counted as nothing
                       owner: analytics         after: pull-evidence
                       by: <days>               automation: <level>
  apply-rules        - runs assessment: the rules applied to the
                       evidence, producing a tier per partner with the
                       inputs and the rules version recorded
                       owner: tier-assessor     after: check-evidence
                       automation: <level>
  list-exceptions    - human: every partner whose proposed tier differs
                       from the rules result, with the reason, the
                       person asking, and how long it runs
                       owner: tier-assessor     after: apply-rules
                       by: <days>               automation: <level>
  price-tiers        - runs allocate-and-reconcile: the margin, the
                       discount, the funds and the support hours each
                       tier carries, costed against <your plan>
                       owner: margin-keeper     after: apply-rules
                       by: <days>               automation: <level>
  check-margin       - runs assessment: each tier's discount set
                       against <your margin floor>, at the volume the
                       tier is expected to do
                       owner: margin-keeper     after: price-tiers
                       automation: <level>
  check-support      - runs assessment: the response times and the
                       named contacts each tier promises, set against
                       the people who would have to answer
                       owner: <your support leadership role>
                       after: price-tiers
                       by: <days>               automation: <level>
  approve-tiers      - convenes approval: a named signer for the tier
                       set and a named signer for every exception,
                       against a version of the round
                       owner: <your channel leadership role>
                       after: list-exceptions + check-margin + check-support
                       by: <days>               automation: never
  set-dates          - human: the date each tier starts, the notice a
                       drop gets, and the period a partner keeps their
                       old terms while the notice runs
                       owner: partner-manager   after: approve-tiers
                       automation: <level>
  tell-partners      - runs decide-and-announce: every partner hears
                       their tier, the rules version behind it, the
                       measures that produced it, and what would move
                       it
                       owner: partner-manager   after: set-dates
                       by: <days>               automation: <level>
  change-systems     - human: price lists, discount codes, portal
                       access, fund entitlement and support routing set
                       to match the approved tier from its start date
                       owner: partner-manager   after: set-dates
                       by: <days>               automation: <level>
  verify-entitlement - runs assessment: what the partner can actually
                       see, buy and claim, checked against the tier
                       they were told they hold
                       owner: partner-monitor
                       after: tell-partners + change-systems
                       by: <days>               automation: <level>
  publish-round      - runs collect-and-report: how many partners sit
                       in each tier, how many moved which way, and how
                       many exceptions were signed and by whom
                       owner: reporting-manager after: verify-entitlement
                       by: <days>               automation: <level>
  record-rule-gaps   - convenes debrief: where the rules gave a tier
                       nobody could defend, and what the next version
                       of the rules should say
                       owner: tier-assessor     after: publish-round
                       automation: <level>
run-scoped:
  exceptions - runs collect-and-report          owner: tier-assessor
               from: list-exceptions   until: run close
  cost       - runs allocate-and-reconcile      owner: margin-keeper
               from: price-tiers   until: run close
handoffs:
  open-round -> read-rules [partners-and-date]: the partners in scope,
    and the date the result has to apply from
  read-rules -> pull-evidence [rules-in-force]: the measures the rules
    name, so the evidence is pulled for what the rules actually use
  pull-evidence -> check-evidence [measures-pulled]: the measures for
    every partner, each line naming the system and the date it was read
    from
  check-evidence -> apply-rules [complete-evidence]: complete evidence,
    with every gap marked as a gap rather than filled with a zero
  apply-rules -> list-exceptions [rules-result]: the tier the rules gave
    each partner, and the inputs that produced it
  apply-rules -> price-tiers [tier-spread]: how many partners land in
    each tier, so the cost of the tier is priced against real numbers
  list-exceptions -> approve-tiers [departures]: every departure from
    the rules, the reason, the person asking, and the date it expires
  price-tiers -> check-margin [tier-cost]: the discount and the funds
    each tier carries, at the volume assumed
  price-tiers -> check-support [tier-promises]: the response times and
    the contacts each tier promises
  check-margin -> approve-tiers [margin-finding]: the tiers that hold
    the floor and the ones that do not, with the shortfall on each
  check-support -> approve-tiers [support-finding]: the tiers the
    support team can staff and the ones it cannot, with the headcount
    behind the answer
  approve-tiers -> set-dates [signed-tiers]: the signed tier set and the
    signed exceptions, at a version
  set-dates -> tell-partners [dates-and-notice]: the start date, the
    notice, and the period a dropped partner keeps their old terms
  set-dates -> change-systems [dates-for-systems]: the same dates, so
    what the partner is told and what the systems do start on the same
    day
  tell-partners -> verify-entitlement [tier-as-told]: what each partner
    was told they hold, so the systems can be checked against it
  change-systems -> verify-entitlement [systems-set]: what each system
    was set to, and the date it took effect
  verify-entitlement -> publish-round [entitlement-check]: the partners
    whose entitlement matches what they were told, and the ones whose
    does not
  publish-round -> record-rule-gaps [published-round]: the round as
    published, including the exception count
deviations:
  check-evidence -> pull-evidence [measure-missing]: a measure is
    missing for a partner, so it is pulled again rather than counted as
    a zero
  check-margin -> price-tiers [discount-breaks-floor]: the tier's
    discount breaks the margin floor, so the tier is priced again with
    the shortfall attached
  check-support -> price-tiers [support-cannot-be-staffed]: the support
    the tier promises cannot be staffed, so the promise is priced again
    against the people who would answer
  approve-tiers -> list-exceptions [exception-has-no-reason]: an
    exception has no reason behind it, so it goes back to be written
    with a reason and a named person or dropped
  tell-partners -> pull-evidence [evidence-round-missed]: a partner
    shows evidence the round did not see, so it is pulled in and the
    rules are applied again
  verify-entitlement -> change-systems [entitlement-mismatch]: what the
    partner can see, buy or claim does not match their tier, so the
    systems are set again before the round closes
bindings:
  roster:  <who holds each role - agents claiming the abstract agents
           above, the partner leads who ask for exceptions, the finance
           partner who signs the cost, the support leader who confirms
           the capacity, and the channel leader who approves the round>
  systems: the partner record (write), the partner portal (write),
           <your price list system> (write), <your finance system>
           (read), the agreement record (read),
           <your support ticketing system> (write),
           the notification channel (write)
  data:    <your published tier rules> <version>, <your margin floor>,
           the evidence set for the period, <your notice periods>,
           <your exception register>
policy:
  the tier rules are published before the round that applies them, and
    a partner can read the rules that decided their tier
  the same measures, over the same period, from the same systems, for
    every partner in scope
  a missing measure is recorded as missing and never counted as a zero
  any departure from the rules is an exception, is written down with a
    named person behind it, expires on <a date>, and is counted in the
    published round
  no tier is signed while its discount sits below <your margin floor>,
    unless <who> accepts the shortfall in writing
  no tier promises support the support team has not confirmed it can
    staff
  a partner moving down gets <notice period> before the new terms
    apply, and keeps their old terms while the notice runs
  approval is a human gate and is never delegated to an agent
  what the systems give a partner matches the tier they were told they
    hold, and a mismatch is fixed before the round closes
measures:
  cycle time: <target> from the round opening to every partner told
  coverage: <target> share of partners in scope tiered by the rules
            without an exception
  volume: <partners tiered per round>
  quality gate: <sample size> of tiers recomputed each <period> from
                the recorded inputs and the rules version
```
Take it somewhere

Use this process in Google ADK

Paste this into an assistant that can read the web, such as Claude, ChatGPT or Cursor. It reads the specification and the current ADK documentation, then writes two files: the workflow, and a note on what did not survive the translation. Read the note first. What a runtime cannot express is the part worth arguing about, and this process is a draft to argue with.

379 lines · the document is inside it, so nothing else is needed
Convert the business process below into a runnable Google ADK workflow:
one Python file with a Workflow, nodes, routed edges, a JoinNode,
RequestInput gates and a persisting session service.

The document is a reference process written to the Agent Processes
specification. Read the specification before you start, because it defines
terms that look ordinary and are not:

  https://agentcatalog.com/spec/agent-processes

Sections 6 (the phase graph), 6.5.1 (exception edges), 6.7.1 (deviations),
7 (automation) and 8 (handoffs) are the ones this conversion turns on.

Then read the current documentation for the primitives you will need, rather
than relying on what you remember of the API:

  https://adk.dev/graphs/routes/
    nodes, tuple chains, Event(route=), JoinNode, back-edges
  https://adk.dev/graphs/human-input/
    RequestInput and the rerun_on_resume handoff
  https://adk.dev/runtime/resume/
    ResumabilityConfig, resuming by invocation id, at-least-once tools
  https://adk.dev/graphs/data-handling/
    Event.output against state, and the selector syntax in instructions

WHAT THE DOCUMENT ASKS FOR

These hold wherever the process lands, and they matter more than style.

1. Each phase under `phases:` becomes one step, and keeps its name.

2. `after:` gives the edges. `after: a + b` is a join and waits for BOTH.
   Reading it as "either" is the defect the specification calls out by name.

3. Every handoff carries a key in square brackets. Each key becomes one field
   on the run's state, named exactly as the key with hyphens turned into
   underscores, and the sentence beside it becomes that field's comment. The key
   is the stable name; the sentence is prose that may be rewritten.

4. A phase MUST NOT begin before its inbound handoff exists. Where that is
   checkable, check it in the step rather than assuming it.

5. `automation: never` is a gate a person signs. The run stops there and does
   not continue until a person's decision comes back. Do not turn one into a
   notification, a log line, or an automatic transition, whatever the queue
   looks like.

6. Each line under `deviations:` is a backward or sideways edge, returning to
   the phase named on the right. The key in brackets names it, and that name
   belongs in the code.

7. A phase whose `after:` reads like "X or Y, whichever could not finish" is an
   exception edge: it is entered when those phases FAIL, not when they succeed.
   Do not wire it as an ordinary successor.

8. Anything in angle brackets is a blank the adopting organization fills in.
   Leave each one as a named constant at the top of the file with a TODO. Do not
   invent a value, a threshold or a date.

9. Record the document's `from:` line at the top of the file, so it says which
   reference process and which version it was generated from.

10. Run-scoped lines under `run-scoped:` are work that runs alongside the whole
    process rather than at one point in it, and a run may not close while one is
    unfinished. Say in the code what you did about them, including if the answer
    is that the runtime has nowhere to put them.

HOW THAT LOOKS IN GOOGLE ADK

11. Build a `Workflow` from `google.adk.workflow`, and pin `google-adk>=2.0` in
    a comment. Do not use `SequentialAgent`, `ParallelAgent` or `LoopAgent`: they
    are deprecated in favour of the graph, and they carry their own defects around
    state and control flow. The documentation moved to adk.dev, and anything you
    remember about nesting agents rather than drawing a graph is out of date.

12. Each phase is one node keeping its name. Take the node kind from how the
    phase resolves rather than from taste: a `human:` or `system:` phase is a plain
    Python function node, and a `runs` or `convenes` phase is an `Agent`.

13. `after:` gives the edges, written as tuple chains in `edges=[...]`, and the
    trigger is the `"START"` keyword. Take the order only from `after:` lines and
    never from the order the phases are listed in.

14. `after: a + b` is a `JoinNode`, and it must be guarded, because this is the
    worst trap of any runtime here. The join fires when every static predecessor is
    marked COMPLETED, nothing ever un-completes a node, and stored outputs are
    never cleared. So after a deviation re-runs one arm, the join fires the instant
    that arm finishes and hands the next phase LAST PASS'S value for every arm that
    did not re-run. It does not stall, it proceeds with stale data, and nothing
    logs. Stamp each arm's output with a pass counter or a content hash, and have
    the phase after the join compare the stamps and refuse to run when they
    disagree.

15. Each line under `deviations:` is a routed back-edge: a router after the
    phase on the left returning `Event(route=...)`, named after the key in
    brackets, with one arm going back to the phase on the right and one going
    forward. An unconditional cycle raises at construction, which is the one place
    this model checks your work. Nothing budgets a routed cycle, so add your own
    count and stop rather than looping forever.

16. Give every router an explicit `DEFAULT_ROUTE` arm, and route it to a phase
    that stops and asks a person. A route value matching no key writes a log
    warning, ends that branch, and lets the run finish reporting success with the
    rest of the process never having happened.

17. `automation: never` is a `RequestInput` node of its own, never an `Agent`
    asking a question. Decorate it `@node(rerun_on_resume=False)` and yield
    `RequestInput(message=..., payload=..., response_schema=...)`, so the run
    stops, persists, and delivers the person's answer to the node's successor as
    its typed input. A resumed workflow runs its tools at least once, so any
    irreversible act needs its own duplicate guard.

18. Make the gates durable or say plainly that they are not. Wrap the graph in
    `App(..., resumability_config=ResumabilityConfig(is_resumable=True))` and pass
    a persisting session service, never the in-memory one. Note in the file that
    the command line and the web UI cannot resume a run, so whoever releases these
    gates needs an operator surface that somebody has to write.

19. Every `Agent` in the graph gets `mode="single_turn"` and no `sub_agents`.
    A non-empty `sub_agents` list silently adds a transfer tool, and a model that
    uses it runs a different agent in this node's place while the graph's outgoing
    edge fires on schedule regardless: the topology is honoured perfectly and the
    work belongs to somebody else.

20. Model failure as a route, not as an exception. A node that raises does not
    propagate: the failure is caught, recorded, and shuts the workflow down without
    raising to the caller. So a phase that can fail catches its own failure and
    returns `Event(route="could-not-finish")`, and the exception phase hangs off
    that arm.

21. Keep every blank as a named module-level constant and never interpolate one
    into an `instruction=` string. Angle brackets and curly braces are ADK's own
    data selector syntax inside instructions, so a blank pasted verbatim stops
    being a blank and becomes a selector.

22. `by:` and `not-before:` have no expression, and `@node(timeout=)` is not
    one: it is an in-process wall clock that cancels the node and, because failures
    are swallowed, ends the run silently rather than recording a missed deadline.
    Nothing in `run-scoped:` has an expression either, and it must not be faked as
    an ordinary node, because a node has to be reached and has to finish before
    anything downstream starts, which is the opposite of what those lines mean.
    Leave both out of the graph and name them in the fidelity note.

Produce a second file alongside it, `FIDELITY.md`, and treat it as the more
important of the two. The code is for whoever builds this. The fidelity note
is for whoever has to decide whether this platform suits the process at all,
and that is usually a different person who will never read the code.

It has three parts.

**What came across.** Briefly: how many phases became steps, how many handoff
keys became state fields, which gates stop the run, which deviations became
edges. Counts and names, not reassurance.

**What did not, and what was done instead.** One entry per gap. For each one,
say what the document requires, what the platform can actually express, what
you did in its place, and what breaks if somebody later removes your
workaround. This last part matters most: a workaround nobody understands is a
workaround somebody deletes.

**What a person still has to decide.** The blanks are not a translation
failure, they are the point of a reference process, so list what has to be
filled in before this could run against anything real, and say which of those
choices the platform constrains.

Write it in plain English for somebody who has not read the specification, and
do not soften it. A translation of a reference process is a draft to argue
with, not a build artifact, and the honest account of what was lost is the most
useful thing you will produce.

Here is the process document.

```
PROCESS: set a partner tier           id: <team>/set-a-partner-tier  v1
from: ref/prt/set-a-partner-tier v1
owner: <who>                          effective: <date>
trigger: the tiering cadence comes round every <cadence>, or <your
         partner review process> refers a partner whose result moves a
         tier
         watch: every=<cadence>
         or watch: record=<partner review result>
                system=<your partner record>
                change=<a review refers a partner whose result moves a
                tier>
concurrency: one round at a time for a given <program or region>, and a
             partner is tiered by one round at a time
goal: every partner in scope holding the tier the published rules give
      them, with every exception named and signed, the margin and the
      support behind each tier confirmed, and every partner told their
      tier, the reason, and what would move it
phases:
  open-round         - human: which partners are being tiered, on which
                       rules version, and from what date the result
                       applies
                       owner: partner-manager   after: trigger
                       automation: <level>
  read-rules         - human: the published tier rules at the version
                       in force, with the date they were published and
                       the notice each change to them requires
                       owner: tier-assessor     after: open-round
                       automation: <level>
  pull-evidence      - runs collect-and-report: the same measures for
                       every partner, over the same period, from the
                       same systems, each line naming its source
                       owner: analytics         after: read-rules
                       by: <days>               automation: <level>
  check-evidence     - runs assessment: every measure present for every
                       partner, and every absence marked as absent
                       rather than counted as nothing
                       owner: analytics         after: pull-evidence
                       by: <days>               automation: <level>
  apply-rules        - runs assessment: the rules applied to the
                       evidence, producing a tier per partner with the
                       inputs and the rules version recorded
                       owner: tier-assessor     after: check-evidence
                       automation: <level>
  list-exceptions    - human: every partner whose proposed tier differs
                       from the rules result, with the reason, the
                       person asking, and how long it runs
                       owner: tier-assessor     after: apply-rules
                       by: <days>               automation: <level>
  price-tiers        - runs allocate-and-reconcile: the margin, the
                       discount, the funds and the support hours each
                       tier carries, costed against <your plan>
                       owner: margin-keeper     after: apply-rules
                       by: <days>               automation: <level>
  check-margin       - runs assessment: each tier's discount set
                       against <your margin floor>, at the volume the
                       tier is expected to do
                       owner: margin-keeper     after: price-tiers
                       automation: <level>
  check-support      - runs assessment: the response times and the
                       named contacts each tier promises, set against
                       the people who would have to answer
                       owner: <your support leadership role>
                       after: price-tiers
                       by: <days>               automation: <level>
  approve-tiers      - convenes approval: a named signer for the tier
                       set and a named signer for every exception,
                       against a version of the round
                       owner: <your channel leadership role>
                       after: list-exceptions + check-margin + check-support
                       by: <days>               automation: never
  set-dates          - human: the date each tier starts, the notice a
                       drop gets, and the period a partner keeps their
                       old terms while the notice runs
                       owner: partner-manager   after: approve-tiers
                       automation: <level>
  tell-partners      - runs decide-and-announce: every partner hears
                       their tier, the rules version behind it, the
                       measures that produced it, and what would move
                       it
                       owner: partner-manager   after: set-dates
                       by: <days>               automation: <level>
  change-systems     - human: price lists, discount codes, portal
                       access, fund entitlement and support routing set
                       to match the approved tier from its start date
                       owner: partner-manager   after: set-dates
                       by: <days>               automation: <level>
  verify-entitlement - runs assessment: what the partner can actually
                       see, buy and claim, checked against the tier
                       they were told they hold
                       owner: partner-monitor
                       after: tell-partners + change-systems
                       by: <days>               automation: <level>
  publish-round      - runs collect-and-report: how many partners sit
                       in each tier, how many moved which way, and how
                       many exceptions were signed and by whom
                       owner: reporting-manager after: verify-entitlement
                       by: <days>               automation: <level>
  record-rule-gaps   - convenes debrief: where the rules gave a tier
                       nobody could defend, and what the next version
                       of the rules should say
                       owner: tier-assessor     after: publish-round
                       automation: <level>
run-scoped:
  exceptions - runs collect-and-report          owner: tier-assessor
               from: list-exceptions   until: run close
  cost       - runs allocate-and-reconcile      owner: margin-keeper
               from: price-tiers   until: run close
handoffs:
  open-round -> read-rules [partners-and-date]: the partners in scope,
    and the date the result has to apply from
  read-rules -> pull-evidence [rules-in-force]: the measures the rules
    name, so the evidence is pulled for what the rules actually use
  pull-evidence -> check-evidence [measures-pulled]: the measures for
    every partner, each line naming the system and the date it was read
    from
  check-evidence -> apply-rules [complete-evidence]: complete evidence,
    with every gap marked as a gap rather than filled with a zero
  apply-rules -> list-exceptions [rules-result]: the tier the rules gave
    each partner, and the inputs that produced it
  apply-rules -> price-tiers [tier-spread]: how many partners land in
    each tier, so the cost of the tier is priced against real numbers
  list-exceptions -> approve-tiers [departures]: every departure from
    the rules, the reason, the person asking, and the date it expires
  price-tiers -> check-margin [tier-cost]: the discount and the funds
    each tier carries, at the volume assumed
  price-tiers -> check-support [tier-promises]: the response times and
    the contacts each tier promises
  check-margin -> approve-tiers [margin-finding]: the tiers that hold
    the floor and the ones that do not, with the shortfall on each
  check-support -> approve-tiers [support-finding]: the tiers the
    support team can staff and the ones it cannot, with the headcount
    behind the answer
  approve-tiers -> set-dates [signed-tiers]: the signed tier set and the
    signed exceptions, at a version
  set-dates -> tell-partners [dates-and-notice]: the start date, the
    notice, and the period a dropped partner keeps their old terms
  set-dates -> change-systems [dates-for-systems]: the same dates, so
    what the partner is told and what the systems do start on the same
    day
  tell-partners -> verify-entitlement [tier-as-told]: what each partner
    was told they hold, so the systems can be checked against it
  change-systems -> verify-entitlement [systems-set]: what each system
    was set to, and the date it took effect
  verify-entitlement -> publish-round [entitlement-check]: the partners
    whose entitlement matches what they were told, and the ones whose
    does not
  publish-round -> record-rule-gaps [published-round]: the round as
    published, including the exception count
deviations:
  check-evidence -> pull-evidence [measure-missing]: a measure is
    missing for a partner, so it is pulled again rather than counted as
    a zero
  check-margin -> price-tiers [discount-breaks-floor]: the tier's
    discount breaks the margin floor, so the tier is priced again with
    the shortfall attached
  check-support -> price-tiers [support-cannot-be-staffed]: the support
    the tier promises cannot be staffed, so the promise is priced again
    against the people who would answer
  approve-tiers -> list-exceptions [exception-has-no-reason]: an
    exception has no reason behind it, so it goes back to be written
    with a reason and a named person or dropped
  tell-partners -> pull-evidence [evidence-round-missed]: a partner
    shows evidence the round did not see, so it is pulled in and the
    rules are applied again
  verify-entitlement -> change-systems [entitlement-mismatch]: what the
    partner can see, buy or claim does not match their tier, so the
    systems are set again before the round closes
bindings:
  roster:  <who holds each role - agents claiming the abstract agents
           above, the partner leads who ask for exceptions, the finance
           partner who signs the cost, the support leader who confirms
           the capacity, and the channel leader who approves the round>
  systems: the partner record (write), the partner portal (write),
           <your price list system> (write), <your finance system>
           (read), the agreement record (read),
           <your support ticketing system> (write),
           the notification channel (write)
  data:    <your published tier rules> <version>, <your margin floor>,
           the evidence set for the period, <your notice periods>,
           <your exception register>
policy:
  the tier rules are published before the round that applies them, and
    a partner can read the rules that decided their tier
  the same measures, over the same period, from the same systems, for
    every partner in scope
  a missing measure is recorded as missing and never counted as a zero
  any departure from the rules is an exception, is written down with a
    named person behind it, expires on <a date>, and is counted in the
    published round
  no tier is signed while its discount sits below <your margin floor>,
    unless <who> accepts the shortfall in writing
  no tier promises support the support team has not confirmed it can
    staff
  a partner moving down gets <notice period> before the new terms
    apply, and keeps their old terms while the notice runs
  approval is a human gate and is never delegated to an agent
  what the systems give a partner matches the tier they were told they
    hold, and a mismatch is fixed before the round closes
measures:
  cycle time: <target> from the round opening to every partner told
  coverage: <target> share of partners in scope tiered by the rules
            without an exception
  volume: <partners tiered per round>
  quality gate: <sample size> of tiers recomputed each <period> from
                the recorded inputs and the rules version
```
One run

A simulation of one run

The activities are on the left, whoever is doing the active one is on the right, and the record of the run builds up as it goes.

This run is built from the same rows as the diagram above: the left column is the activity list, the captions are the activity lines, the cast is the roster, and the labels on the wires are what the handoffs say actually passes.

Adoption

What you fill in

54 blanks to fill. Everything else is the process.

this process from: ref/prt/set-a-partner-tier v1 Copy this line into your own document. It never claims this process is running anywhere; it records which draft yours started from, and it is what lets the catalog tell you when this one changes.

The header. Your own id, an owner, and the date it takes effect. One line records where it came from, and that line is what lets the catalog tell you when this reference process changes.

The roster. Which agent takes each activity, and which person takes each of the human ones. The process already names what it needs, so this is a lookup rather than a design exercise.

The numbers. Dates, budgets, cadences, and the targets in the measures block. Nothing here can be a reference value, because a target nobody chose is a target nobody meets.