runpod/runpod-plugins-official

runpod-migrate

- Migrate a codebase from the Runpod GraphQL API or REST v1 to REST v2 — inventory which parts use which API version, rewrite the call sites, flag breaking changes, and verify.

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Migrate to Runpod REST v2

Moves a codebase off the GraphQL API (api.runpod.io/graphql) and REST v1 (rest.runpod.io/v1) onto REST v2 (api.runpod.io/v2).

The payoff, in one line each — you deliver these to the user at step 6, matched to their actual code. Don't recite them now:

  • See stock before you rentGET /v2/catalog/gpus?include=AVAILABILITY&product=POD. v1 had no

catalog at all, so every capacity retry loop was blind.

  • Endpoints return their own job URLsrequestUrls.run, no more string-building.
  • Real lifecycle statesPROVISIONING/STARTING/ERROR and an actions list, so

wait-loops fail fast instead of timing out.

  • Mistakes fail loudly — unknown request fields are rejected by name, with structured

errors and honest status codes.

The full set, organized as if their code does X → v2 offers Y: [reference/unlocks.md](reference/unlocks.md) — open it at step 6.

Before you touch any code

Infer the scope, state it, and move — do not open with a questionnaire:

The user saysScope
"migrate to v2" / nothing specificall — REST v1 and GraphQL
"just the REST stuff", "leave GraphQL alone"rest — REST v1 only
"get us off GraphQL"graphql — GraphQL only

The table resolves every phrasing, so scope is not the thing to interrupt for. Say which row you matched and carry on. The question that does need asking comes later — at step 3, when the inventory shows the code depends on a capability v2 removed. That one is a real fork and you cannot answer it for them.

Some things have no v2 equivalent and must stay on GraphQL regardless of scope: account/billing identity (myself), secrets, spot/interruptible pods, cluster create/delete. A "full" migration still leaves those calls in place — say so up front rather than letting the user discover it at the end.

Never rewrite the serverless job API. https://api.runpod.ai/v2/<endpointId>/run, /runsync, /status, /stream, /cancel is a different API that happens to have v2 in its path. It is unchanged and out of scope. The inventory reports it separately so you do not touch it.

The workflow

1. Inventory — never migrate what you have not counted

The scanner ships beside this file, in the installed skill directory — not in the user's repo. Resolve its path first; your working directory is their project:

bash
# 1. Claude Code plugin installs expose the plugin root:
SCAN="$CLAUDE_PLUGIN_ROOT/skills/runpod-migrate/scripts/rp_api_inventory.py"
# 2. Otherwise substitute the directory you loaded this SKILL.md from — you know it:
[ -f "$SCAN" ] || SCAN="<directory containing this SKILL.md>/scripts/rp_api_inventory.py"
# 3. Last resort, search the usual install roots:
[ -f "$SCAN" ] || SCAN=$(find ~/.claude ~/.agents ~/.codex ~/.config -name rp_api_inventory.py 2>/dev/null | head -1)
python3 "$SCAN" --help >/dev/null || echo "scanner not found — resolve it before continuing"

Then, from the root of the user's repo:

bash
python3 "$SCAN" . > runpod-api-inventory.md
python3 "$SCAN" . --json > runpod-api-inventory.json   # if you want to drive edits from it
python3 "$SCAN" . --scope rest                          # REST-only migrations

runpod-api-inventory.md lands in the user's repo — mention it, and remove it or gitignore it before you hand the migration back.

Stdlib-only Python, no install. It reports every call site bucketed by generation — GraphQL, REST v1, v1/GraphQL field names, REST v2 already, serverless job API, SDK/CLI wrappers — plus a suggested file-by-file order.

Show the user the inventory table before editing anything. Users routinely do not know what they are on: an agent picked a version for them months ago and wrote it down nowhere. "3 files on v1, 2 on GraphQL, 1 already on v2, 2 on the job API — leave those alone" is often the single most useful output of this whole skill.

What it detects, and what it cannot

It is regex line-scanning, but the classification is what makes it usable — plain grep -r runpod gets two things actively wrong:

  • `api.runpod.ai/v2` vs `api.runpod.io/v2`. One letter apart. .ai is the serverless

job API and must not be touched; .io is the control plane you are migrating to. Grepping for v2 tells you the codebase is "already migrated" when it is not.

  • Names legal in both versions. /pods is a v1 path and a v2 path; ["pods"] is

v2 envelope-unwrapping; idleTimeout is top-level in v1 and nested under workers in v2. The scanner suppresses a hit when the same line carries v2 context, so it reports work that remains rather than every occurrence of a word.

It also looks for field names, not just URLs, which is what catches the files that never spell "runpod": a module reading p["costPerHr"] off a wrapper's return value has no URL, no import, no operation name — and is exactly what a v2 rename breaks silently.

Four things it genuinely cannot resolve. Check them by hand, every time:

Blind spotHow to close it
Base URL lives in config, not code (settings.yaml, .env, a ConfigMap, Terraform)The scanner does read those files, so the URL surfaces — but the call sites using it are elsewhere. Grep for whoever reads that config key.
Paths assembled by a helper_url("pods", pod_id, "stop")Reported under possible indirect call sites. Advisory, because resp.json()["pods"] looks identical. Open each one.
SDK wrappers (import runpod)The API generation is a property of the installed version, not the code. Check requirements.txt / lockfile and the SDK's own release notes.
Generated clientsThe OpenAPI/GraphQL document is the real source. Regenerate from the v2 spec instead of editing generated files.

Then read the code the scanner flagged. It finds call sites; it does not understand your wrappers. Trace who calls them — a renamed response field like costPerHr → cost breaks every caller, not just the request builder. This is the one step where a code-graph or LSP index earns its keep, if one is already available.

2. Brief the breaking changes — before the diff, not after

Read [reference/breaking-changes.md](reference/breaking-changes.md) and tell the user which ones actually apply to their code. Two classes, and the second is the one they are afraid of:

  1. Renames and moves — loud. v2 rejects unknown request fields with 422 listing

them by name, so a missed rename cannot slip into production silently.

  1. Same name, different meaning — quiet, and the reason a green test suite is not

proof. The reference enumerates every one of them; the two that bite hardest: flashboot went from boolean to a three-value enum, and v1's /billing/endpoints (serverless spend) is v2's /billing/serverless — v2's /billing/endpoints bills a different product (public endpoints) and answers 200 with a correct total for that product, which is not the one the caller asked for.

3. Plan, split into required vs cleanup

Write the plan down before editing, and keep these buckets separate all the way through to the final summary:

  • Required — it does not work on v2 without this.
  • Cleanup — it works either way, but v2 lets you delete code (hand-built job URLs,

hand-rolled availability retry, polling loops that can now be SSE).

  • Decisions the user must make — the code depends on something v2 removed outright:

spot/interruptible pods, savings plans, dockerEntrypoint, placement constraints (countryCodes, minRAMPerGPU, …), pod reset, per-pod GPU fallback. See breaking-changes.md Class 3 — and check it rather than working from memory, because things leave this bucket as v2 grows. CUDA pinning, templateId and CPU endpoint writes all used to be here and are not any more.

Stop and ask before writing code in that third bucket — but bring the replacement with you. Some of these have a working rebuild and some genuinely have nothing, and the difference decides what you are asking. Where a rebuild exists (countryCodescatalog filter + `dataCenterIds` + a placement assert, per-pod GPU fallback → an availability-ordered loop), show it and ask the one question that changes it — for countryCodes, whether the restriction was a preference or a compliance requirement. Where nothing exists, the options are accept the behavior change, keep that call on v1/GraphQL, or redesign around it, and only the user can pick.

Either way, do not present a removal as a dead end when a rebuild exists — that pushes the user into keeping a v1 call they did not need to keep. And never drop the field with a # no v2 equivalent comment: that is the failure mode this bucket exists to prevent, because it silently changes what their infrastructure does. If the bucket is empty, say so — that is reassuring and takes one line.

4. Migrate, one file per commit

Work in the scanner's suggested order (fewest call sites first) — with one override: if several call sites share a transport helper, migrate the helper first, whatever its count. The scanner orders by call-site count and cannot see imports, so it will happily put a consumer ahead of the module it imports its client from. Migrating a consumer first means writing against an interface you are about to change.

Per file:

  • Map paths and fields with [reference/rest-v1-to-v2.md](reference/rest-v1-to-v2.md)

or [reference/graphql-to-v2.md](reference/graphql-to-v2.md). If a field isn't in the tables, or the API disagrees with them, check the spec directly — Ground truth.

  • `gpuTypeIds` + `gpuTypePriority` on a pod* means you are writing new code, not

renaming fields. A v2 pod takes one GPU type, so the server-side fallback becomes a client-side loop over the catalog. Working implementation: [breaking-changes.md → Replacing the GPU fallback list](reference/breaking-changes.md#replacing-the-gpu-fallback-list-pods-only). Endpoints need no loop** — gpu.pools is already a list and workers land on whichever listed pool has capacity.

  • Always request availability on catalog reads — with `product`. Any

GET /v2/catalog/gpus, /catalog/cpus, or /catalog/datacenters this migration introduces gets include=AVAILABILITY (GPU_AVAILABILITY/CPU_AVAILABILITY for datacenters). Availability is the top-of-mind question for every Runpod user and the call costs the same. Do not omit it because the current code did not ask for it — v1 could not.

`include=AVAILABILITY` alone is a `400`. On /catalog/gpus and /catalog/cpus, product is required with it and invalid without it — 400 either way. There is no default, deliberately: the same GPU can be scarce for POD and plentiful for SERVERLESS, so the context has to be stated. Pick the one matching what you are creating (POD, SERVERLESS, or CLUSTER; CPUs take POD or SERVERLESS):

  GET /v2/catalog/gpus?include=AVAILABILITY&product=POD
  • Offer the rollback flag (RUNPOD_API_V1=1) while v2 is new to them:

[reference/rollback-flag.md](reference/rollback-flag.md). Worth it for a service in production; skip it for a one-off script.

  • Never change behavior and API version in the same commit — including the

improvements v2 makes possible. Failing fast on status == "ERROR" instead of timing out is a genuine win and it belongs in the next commit; folding it into the migration commit means a rollback has to give up both. Land those in the cleanup bucket, separately.

A full before/after of a real client — pod create with GPU fallback, endpoint create with the container config inlined, GraphQL dashboard — is in [reference/worked-example.md](reference/worked-example.md).

5. Verify against the live API

Static review is not enough; v2's validator is strict and its errors are precise. Re-run the scanner to prove the call sites are gone, then exercise the real paths:

bash
python3 "$SCAN" . --scope rest --fail-on-legacy   # exit 1 if v1 remains

Two markers, and they mean different things — do not reach for the wrong one:

MarkerUse it for
rp-migrate: keep-v1legacy code kept on purpose — a RUNPOD_API_V1 rollback branch, or a GraphQL call with no v2 equivalent. Reported under kept on purpose.
rp-migrate: ignorea false positive on code that is already correct. Says "this isn't legacy", not "this is legacy I'm keeping". Reported under marked false positives.

Both accept line, start/end region, or file scope, and both drop out of the plan and out of --fail-on-legacy. Using keep-v1 to silence a false positive records a lie in the report — reach for ignore there.

Where the gate can still be wrong. The same blind spots from step 1 invert after a migration: before, they hide v1 code; after, they can flag correct v2 code. The scanner handles the two common cases — trailing # was imageName annotations, and a base URL held in a constant (f"{BASE}/pods" where BASE is a v2 URL defined anywhere in the file). Beyond those — a base URL imported from another module, or built at runtime from config — it can still misread correct code as legacy. Read the flagged lines before believing the exit code, and mark true false positives with ignore rather than weakening the gate.

  • Reads are free — list pods, endpoints, volumes, catalog. Confirm you unwrap the

new envelope ({"pods": [...]}, not a bare array).

  • Writes cost money. Create → assert → delete, on the smallest thing that proves the

shape. Never test against resources the user already has.

  • Decode 422s with the table in

reference/breaking-changes.md — including the confusing one where a missing required field makes the validator report your valid fields as "additional properties not allowed".

6. Summarize — this is the artifact they will actually read

Most users read the summary and not the diff. Structure it exactly like this:

## Required for the migration
<file:line> — what changed and why it had to

## Cleanup enabled by v2
<file:line> — what got deleted or simplified

## Behavior changes to watch
the same-name-different-meaning items that applied

## Still on GraphQL (no v2 equivalent)
myself / secrets / spot pods / clusters — and why

## Unlocks: what you can build now
tied to what this codebase already does

That last section is the highest-value part. Do not paste a generic feature list — look at what this user has been building and struggling with, including anything you already know from the session, and name where v2 changes it. "Your wait_until_running loop times out on failed pods; v2's ERROR status lets it fail in seconds" beats "v2 has richer status values". reference/unlocks.md is organized as if the code does X → v2 offers Y for exactly this.

Ground truth: check the spec yourself

The mapping tables in reference/ were verified against the live API on 2026-08-10. v2 is actively developed, so treat them as a fast path, not as the authority. Both specs are public and need no auth:

bash
curl -s https://api.runpod.io/v2/openapi.json  -o /tmp/rp-v2.json
curl -s https://rest.runpod.io/v1/openapi.json -o /tmp/rp-v1.json

What a request body actually accepts, and what is required (*). Worth running before writing any create call — it resolves allOf composition, which a naive read of the raw JSON misses:

bash
python3 - CreateEndpointRequest <<'PY'
import json, sys
S = json.load(open("/tmp/rp-v2.json"))["components"]["schemas"]
def merge(n, acc=None):
    acc = acc if acc is not None else {"props": {}, "req": set()}
    if "$ref" in n: return merge(S[n["$ref"].split("/")[-1]], acc)
    for sub in n.get("allOf", []): merge(sub, acc)
    acc["props"].update(n.get("properties", {})); acc["req"].update(n.get("required", []))
    return acc
def kind(v):
    if "$ref" in v: return v["$ref"].split("/")[-1]
    if "allOf" in v: return kind(v["allOf"][0])
    return v.get("type", "?")
m = merge(S[sys.argv[1]])
for k, v in sorted(m["props"].items()):
    print(f"  {'*' if k in m['req'] else ' '} {k:16} {kind(v)}")
PY

Swap the argument for CreatePodRequest, UpdatePodRequest, CreateTemplateRequest, CreateNetworkVolumeRequest, … Which schemas mention a field — useful when a 422 names something you cannot place:

bash
python3 -c 'import json,sys; S=json.load(open("/tmp/rp-v2.json"))["components"]["schemas"]; [print(" ",n) for n,s in S.items() if sys.argv[1] in json.dumps(s)]' flashboot

Precedence when sources disagree

observed live behavior > the spec > these tables. The spec is not always right, and the reference docs say so where it is known to be wrong — timeout is documented to default to 300000 ms but comes back 0. If you hit a case where the running API contradicts the spec, trust the API, and say so in your summary so the user knows a documented default cannot be relied on.

If you find a mapping in reference/ that no longer matches the spec, fix the call and flag the drift — the tables carry a verification date precisely so staleness is detectable rather than silent.

For GraphQL there is no machine-readable schema (introspection is disabled), so that side cannot be checked this way — see the caveat in reference/graphql-to-v2.md.

Tooling notes

The inventory scanner is deliberately a grep-class script, not a code-graph index: API generation is a property of URL strings and field names, it must work on any language in an arbitrary customer repo, and it has to give the same answer for every user with zero setup. A code-intelligence index (LSP, or an MCP graph server if one is already running) earns its keep at a different step — step 1's blast radius question, "who calls this wrapper whose response field just got renamed" — not at detection. Use one there if it is already available; do not stand one up just for this.

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