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60 Commits

Author SHA1 Message Date
Naman Verma
6151467b3e fix: add default aggregation count() if none is present in logs/traces 2026-07-07 11:18:49 +05:30
Naman Verma
daa999d1d6 Merge branch 'main' into nv/dashboard-migration 2026-07-07 10:10:53 +05:30
Nityananda Gohain
d4646657ca fix: initalize querier in llmpricing (#11993) 2026-07-07 04:04:29 +00:00
Nikhil Mantri
29681572db feat(infra-monitoring): pod status and restart counts. (#11885)
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* chore: added types and open api spec changes

* chore: added method to calculate reason

* chore: per group pod status counts with req metric checks method added

* chore: wired up pod status counts

* chore: pod restarts type added

* chore: added restart counts for the group

* chore: bug in query fix

* chore: onboarding API changes

* chore: integration tests added

* chore: added podcountsbyphase in other entities

* chore: added pod status counts for other entities

* chore: added integration tests for other entities

* chore: added checks api changes for other entities

* chore: rearrangement

* chore: removed succeeded status and mark it as completed

* chore: query beautified

* chore: corrected metrics list for metadata lookup

* chore: removed dead constants
2026-07-06 20:11:40 +00:00
Vikrant Gupta
a3fa475e88 docs: add contributing guidelines for authz (#11986)
* docs: add contributing guidelines for authz

* docs: address review comments on authz contributing guide
2026-07-06 19:08:50 +00:00
Vinicius Lourenço
64d0ada495 feat(infrastructure-monitoring): add disk usage chart for hosts (#11990) 2026-07-06 18:29:51 +00:00
Yunus M
60886fd906 fix: opening /ai-assistant opens 2 new conversations instead of one (#11923) 2026-07-06 16:58:00 +00:00
Yunus M
d8954da307 fix: context not being passed when user click suggestions in empty state (#11925) 2026-07-06 16:57:48 +00:00
Shivam Gupta
7476a2cacb feat(onboarding): add NGINX Ingress, FluxCD, Cassandra, Cloudflare Workers, PlanetScale, and Hermes Agent datasources (#11884)
* feat(onboarding): add NGINX Ingress, FluxCD, Cassandra, Cloudflare Workers, PlanetScale, and Hermes Agent datasources

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* chore(onboarding): optimize new datasource logo SVGs with svgo

Run svgo over cassandra.svg, fluxcd.svg, and planetscale.svg
(viewBox and <title> preserved). Trims coordinate precision and
metadata; fluxcd.svg shrinks ~24%.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

---------

Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-06 15:18:54 +00:00
Naman Verma
b400846193 fix: ditch dynamic vars with no attr, rearrange overlapping layouts 2026-07-04 01:43:13 +05:30
Naman Verma
f5220d078f chore: add explanation comment for continuing on empty id widget 2026-07-04 00:16:12 +05:30
Naman Verma
ab750ffffd chore: better comments and names in layout migrator 2026-07-04 00:06:04 +05:30
Naman Verma
4a2b508636 chore: improve variable names 2026-07-03 23:52:07 +05:30
Naman Verma
33795999cf fix: match shape safe version to existing version 2026-07-03 23:38:59 +05:30
Naman Verma
9aac37eb94 fix: remove unused method 2026-07-03 22:48:31 +05:30
Naman Verma
12642e27da fix: validate dashboard spec after migration 2026-07-03 21:21:51 +05:30
Naman Verma
82f8bf88fc fix: add nil check on limit value when normalizing page size 2026-07-03 20:23:01 +05:30
Naman Verma
3befc9e8c6 fix: make none the default fill mode during migration 2026-07-03 20:22:36 +05:30
Naman Verma
ee5b85f7a4 revert: remove md file 2026-07-03 20:22:10 +05:30
Naman Verma
a05164f225 fix: fix go lint issue 2026-07-03 17:56:33 +05:30
Naman Verma
35e4013826 chore: reuse transition package (adds dependency, need to see what to do) 2026-07-03 17:40:50 +05:30
Naman Verma
5884c6aa90 Merge branch 'main' into nv/dashboard-migration 2026-07-03 16:38:22 +05:30
Naman Verma
533a430714 fix: add more malformation handling 2026-07-03 15:25:09 +05:30
Naman Verma
ba6af34714 fix: add more malformed query handling 2026-07-02 13:49:49 +05:30
Naman Verma
851c7b0ad7 chore: add temporary doc for other malformation handlers needed 2026-07-02 13:19:51 +05:30
Naman Verma
ef5a67495c fix: normalize telemetry field keys in query 2026-07-02 12:58:14 +05:30
Naman Verma
9f540ca84b fix: remove metric aggregation from non metric queries (malformed json) 2026-07-02 12:25:57 +05:30
Naman Verma
40a6b22aed fix: normalize having array from v4 schema 2026-07-02 11:38:37 +05:30
Naman Verma
6f16416f27 fix: add better error note down for failed conversions 2026-07-02 11:10:02 +05:30
Naman Verma
f8aa1c1c34 Merge branch 'main' into nv/dashboard-migration 2026-07-02 10:52:00 +05:30
Naman Verma
65835394c0 Merge branch 'main' into nv/dashboard-migration 2026-06-30 18:39:53 +05:30
Naman Verma
f132b7e53a fix: handle list of widget IDs in panel maps 2026-06-29 23:51:55 +05:30
Naman Verma
d4ae156dc4 fix: make threshold value non-nullable 2026-06-29 23:18:17 +05:30
Naman Verma
d6bdf9c2b2 fix: catch error from decodeTelemetryFields 2026-06-29 23:02:40 +05:30
Naman Verma
7ea654f1aa test: fix unit tests 2026-06-29 22:57:40 +05:30
Naman Verma
3fd7d013a1 fix: adjust to schema changes in variables 2026-06-29 22:56:36 +05:30
Naman Verma
fb921dd381 fix: read threshold value properly during migration 2026-06-29 22:56:12 +05:30
Naman Verma
58020d9e00 fix: note error in query parsing 2026-06-29 22:53:40 +05:30
Naman Verma
7a5933e822 fix: ignore react placeholders in layout 2026-06-29 22:52:48 +05:30
Naman Verma
2533683de6 fix: allow zero value for threshold values 2026-06-29 22:51:56 +05:30
Naman Verma
2670d53170 Merge branch 'main' into nv/dashboard-migration 2026-06-29 20:28:39 +05:30
Naman Verma
8943a9454b Merge branch 'main' into nv/dashboard-migration 2026-06-26 02:15:22 +05:30
Naman Verma
9a7ed5b711 feat: note down all errors in migration 2026-06-26 02:07:06 +05:30
Naman Verma
2d75e3d32d chore: separate error type for migration 2026-06-26 01:07:59 +05:30
Naman Verma
1d6eabf927 chore: remove spec md file 2026-06-25 22:37:52 +05:30
Naman Verma
082d7b1b77 test: fix ut to check for v2 internal name 2026-06-25 22:34:39 +05:30
Naman Verma
5019dee2d7 Merge branch 'main' into nv/dashboard-migration 2026-06-25 22:30:55 +05:30
Naman Verma
216de973fb fix: remove nil nil return 2026-06-25 03:07:58 +05:30
Naman Verma
18c0eec5e2 chore: catch typecast errors 2026-06-19 15:49:01 +05:30
Naman Verma
2ccdeb3631 chore: add a catch all panic check to log migration error 2026-06-19 15:15:17 +05:30
Naman Verma
ad12e50bbc fix: extract row and widget positions to build expanded sections 2026-06-19 15:00:32 +05:30
Naman Verma
e247bf3864 fix: sanitize tags instead of throwing error 2026-06-19 14:17:36 +05:30
Naman Verma
f4651ea134 fix: match with lower case signal for variables 2026-06-19 12:17:42 +05:30
Naman Verma
d449a2dbf2 fix: generate internal name from title 2026-06-19 11:24:40 +05:30
Naman Verma
d4b9f91062 Merge branch 'main' into nv/dashboard-migration 2026-06-18 12:28:22 +05:30
Naman Verma
530710b7bc Merge branch 'nv/dashboard-migration' of https://github.com/SigNoz/signoz into nv/dashboard-migration 2026-06-17 12:42:24 +05:30
Naman Verma
4fb5eec08d fix: move WrapInV5Envelope to types package 2026-06-17 12:42:20 +05:30
Naman Verma
f889d36f0f Merge branch 'main' into nv/dashboard-migration 2026-06-17 12:32:08 +05:30
Naman Verma
db12d44523 Merge branch 'main' into nv/dashboard-migration 2026-06-17 07:30:34 +05:30
Naman Verma
86fc0e81ba chore: add migration script from current to perses dashboard 2026-06-14 22:58:08 +05:30
70 changed files with 6382 additions and 195 deletions

View File

@@ -2682,7 +2682,6 @@ components:
unit:
type: string
value:
format: double
type: number
required:
- value
@@ -3649,7 +3648,6 @@ components:
unit:
type: string
value:
format: double
type: number
required:
- value
@@ -3686,7 +3684,6 @@ components:
unit:
type: string
value:
format: double
type: number
required:
- value
@@ -4261,6 +4258,8 @@ components:
$ref: '#/components/schemas/InframonitoringtypesNodeCountsByReadiness'
podCountsByPhase:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByPhase'
podCountsByStatus:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByStatus'
required:
- clusterName
- clusterCPU
@@ -4269,6 +4268,7 @@ components:
- clusterMemoryAllocatable
- nodeCountsByReadiness
- podCountsByPhase
- podCountsByStatus
- meta
type: object
InframonitoringtypesClusters:
@@ -4324,6 +4324,8 @@ components:
type: object
podCountsByPhase:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByPhase'
podCountsByStatus:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByStatus'
required:
- daemonSetName
- daemonSetCPU
@@ -4335,6 +4337,7 @@ components:
- desiredNodes
- currentNodes
- podCountsByPhase
- podCountsByStatus
- meta
type: object
InframonitoringtypesDaemonSets:
@@ -4390,6 +4393,8 @@ components:
type: object
podCountsByPhase:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByPhase'
podCountsByStatus:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByStatus'
required:
- deploymentName
- deploymentCPU
@@ -4401,6 +4406,7 @@ components:
- desiredPods
- availablePods
- podCountsByPhase
- podCountsByStatus
- meta
type: object
InframonitoringtypesDeployments:
@@ -4533,6 +4539,8 @@ components:
type: object
podCountsByPhase:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByPhase'
podCountsByStatus:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByStatus'
successfulPods:
type: integer
required:
@@ -4548,6 +4556,7 @@ components:
- failedPods
- successfulPods
- podCountsByPhase
- podCountsByStatus
- meta
type: object
InframonitoringtypesJobs:
@@ -4638,11 +4647,14 @@ components:
type: string
podCountsByPhase:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByPhase'
podCountsByStatus:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByStatus'
required:
- namespaceName
- namespaceCPU
- namespaceMemory
- podCountsByPhase
- podCountsByStatus
- meta
type: object
InframonitoringtypesNamespaces:
@@ -4708,11 +4720,14 @@ components:
type: string
podCountsByPhase:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByPhase'
podCountsByStatus:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByStatus'
required:
- nodeName
- condition
- nodeCountsByReadiness
- podCountsByPhase
- podCountsByStatus
- nodeCPU
- nodeCPUAllocatable
- nodeMemory
@@ -4758,6 +4773,64 @@ components:
- failed
- unknown
type: object
InframonitoringtypesPodCountsByStatus:
properties:
completed:
type: integer
containerCannotRun:
type: integer
containerCreating:
type: integer
crashLoopBackOff:
type: integer
createContainerConfigError:
type: integer
errImagePull:
type: integer
error:
type: integer
evicted:
type: integer
failed:
type: integer
imagePullBackOff:
type: integer
nodeAffinity:
type: integer
nodeLost:
type: integer
oomKilled:
type: integer
pending:
type: integer
running:
type: integer
shutdown:
type: integer
unexpectedAdmissionError:
type: integer
unknown:
type: integer
required:
- pending
- running
- failed
- unknown
- crashLoopBackOff
- imagePullBackOff
- errImagePull
- createContainerConfigError
- containerCreating
- oomKilled
- completed
- error
- containerCannotRun
- evicted
- nodeAffinity
- nodeLost
- shutdown
- unexpectedAdmissionError
type: object
InframonitoringtypesPodPhase:
enum:
- pending
@@ -4788,6 +4861,8 @@ components:
type: number
podCountsByPhase:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByPhase'
podCountsByStatus:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByStatus'
podMemory:
format: double
type: number
@@ -4799,6 +4874,11 @@ components:
type: number
podPhase:
$ref: '#/components/schemas/InframonitoringtypesPodPhase'
podRestarts:
format: int64
type: integer
podStatus:
$ref: '#/components/schemas/InframonitoringtypesPodStatus'
podUID:
type: string
required:
@@ -4811,9 +4891,34 @@ components:
- podMemoryLimit
- podPhase
- podCountsByPhase
- podStatus
- podCountsByStatus
- podRestarts
- podAge
- meta
type: object
InframonitoringtypesPodStatus:
enum:
- pending
- running
- failed
- unknown
- crashloopbackoff
- imagepullbackoff
- errimagepull
- createcontainerconfigerror
- containercreating
- oomkilled
- completed
- error
- containercannotrun
- evicted
- nodeaffinity
- nodelost
- shutdown
- unexpectedadmissionerror
- no_data
type: string
InframonitoringtypesPods:
properties:
endTimeBeforeRetention:
@@ -5112,6 +5217,8 @@ components:
type: object
podCountsByPhase:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByPhase'
podCountsByStatus:
$ref: '#/components/schemas/InframonitoringtypesPodCountsByStatus'
statefulSetCPU:
format: double
type: number
@@ -5143,6 +5250,7 @@ components:
- desiredPods
- currentPods
- podCountsByPhase
- podCountsByStatus
- meta
type: object
InframonitoringtypesStatefulSets:

View File

@@ -0,0 +1,149 @@
# Authz
SigNoz uses [OpenFGA](https://openfga.dev/), a relationship-based access control (ReBAC) system, to authorize every request. Transactions are never attached to users directly — they are attached to **roles** (as relationship tuples in OpenFGA), and users or service accounts (principals) are made **assignees** of those roles. The central interface is `AuthZ` in [pkg/authz/authz.go](/pkg/authz/authz.go), backed by an embedded OpenFGA server in [pkg/authz/openfgaserver](/pkg/authz/openfgaserver/server.go).
As a feature author, you will rarely touch OpenFGA directly. You interact with two layers:
1. **The registries** in [pkg/types/coretypes](/pkg/types/coretypes) — where every resource, verb, and managed-role permission is declared in code.
2. **The route wiring** in [pkg/apiserver/signozapiserver](/pkg/apiserver/signozapiserver) — where each route declares what resource it touches and which verb it needs, and the middleware turns that into a check.
## What are the building blocks?
### Type
A `Type` is the coarse FGA type of a resource. The set is finite and defined in [pkg/types/coretypes/registry_type.go](/pkg/types/coretypes/registry_type.go): `user`, `serviceaccount`, `anonymous`, `role`, `organization`, `metaresource`, and `telemetryresource`. Each type carries a selector regex (what a valid ID looks like) and the verbs allowed on it.
Almost every feature resource is a `metaresource` (dashboards, rules, pipelines, ...) or a `telemetryresource` (logs, traces, metrics). You should almost never need a new type.
### Verb
A `Verb` is the action being authorized. All verbs are defined in [pkg/types/coretypes/registry_verb.go](/pkg/types/coretypes/registry_verb.go): `create`, `read`, `update`, `delete`, `list`, `assignee`, `attach`, and `detach`.
- `assignee` is special: it is the membership relation between a subject and a role ("user X is an assignee of role Y"), not an action a route checks for.
- `attach`/`detach` authorize linking two resources together (e.g. assigning a role to a service account).
### Kind
A `Kind` is the fine-grained name of your resource — `dashboard`, `rule`, `quick-filter`. Kinds are registered in [pkg/types/coretypes/registry_kind.go](/pkg/types/coretypes/registry_kind.go). A kind rides on top of an existing type, so adding one does **not** require any OpenFGA schema change.
### Resource
A `Resource` ties a type and a kind together and knows how to render itself as an FGA object string. The interface lives in [pkg/types/coretypes/resource.go](/pkg/types/coretypes/resource.go):
```go
type Resource interface {
Type() Type
Kind() Kind
Prefix(orgId valuer.UUID) string // metaresource:organization/<orgID>/dashboard
Object(orgId valuer.UUID, selector string) string
Scope(verb Verb) string // dashboard:read
AllowedVerbs() []Verb
}
```
All resources are registered in [pkg/types/coretypes/registry_resource.go](/pkg/types/coretypes/registry_resource.go) using constructors like `NewResourceMetaResource(KindDashboard)` or `NewResourceTelemetryResource(KindLogs)`.
### Selector
A `Selector` identifies *which* instance(s) of a resource a check is about — a UUID, a role name, or the wildcard `*`. A `SelectorFunc` maps the extracted resource ID to selectors at request time. Two prebuilt ones cover most routes ([pkg/types/coretypes/selector.go](/pkg/types/coretypes/selector.go)):
- `WildcardSelector` — the check is against all instances of the resource (`create`, `list`).
- `IDSelector` — the check is against the specific instance *or* the wildcard (`read`, `update`, `delete` of one object). A subject authorized on `*` is authorized on every instance.
When the ID in the request is not what FGA needs (e.g. routes receive a role UUID but FGA objects use role names), write a custom `SelectorFunc` — see `roleSelector` in [pkg/apiserver/signozapiserver/serviceaccount.go](/pkg/apiserver/signozapiserver/serviceaccount.go).
### Roles, transactions, and tuples
SigNoz ships four managed roles, declared in [pkg/types/coretypes/registry_managed_role.go](/pkg/types/coretypes/registry_managed_role.go): `signoz-admin`, `signoz-editor`, `signoz-viewer`, and `signoz-anonymous`. Their permissions are declared in code as `Transaction`s (a verb on an object) in `ManagedRoleToTransactions` — this map is the single source of truth for what each managed role can do.
At organization bootstrap, `CreateManagedRoles` and `CreateManagedUserRoleTransactions` (see [pkg/authz/authz.go](/pkg/authz/authz.go)) persist the role rows and write one OpenFGA tuple per transaction, linking `role:organization/<orgID>/role/<name>#assignee` to each permitted object. Users and service accounts are then granted roles via `Grant`/`Revoke`, which writes `assignee` tuples. Custom roles (enterprise) are managed through the roles API in [pkg/authz/signozauthzapi/handler.go](/pkg/authz/signozauthzapi/handler.go).
### Schema
The OpenFGA authorization model is a hand-written DSL, embedded at build time: [pkg/authz/openfgaschema/base.fga](/pkg/authz/openfgaschema/base.fga) for community and [ee/authz/openfgaschema/base.fga](/ee/authz/openfgaschema/base.fga) for enterprise. The community model only supports role assignment; the enterprise model defines per-verb relations on every type, enabling genuine per-resource checks. This split is why `CheckWithTupleCreation` behaves differently per edition (see [How does a check work at runtime?](#how-does-a-check-work-at-runtime)). You only touch these files when introducing a brand-new **type** — never for a new kind.
## How do I add authz to my feature?
### 1. Register the kind
Add your kind in [pkg/types/coretypes/registry_kind.go](/pkg/types/coretypes/registry_kind.go) and append it to `Kinds`:
```go
KindThing = MustNewKind("thing")
```
### 2. Register the resource
Add the resource in [pkg/types/coretypes/registry_resource.go](/pkg/types/coretypes/registry_resource.go) and append it to `Resources`:
```go
ResourceMetaResourceThing = NewResourceMetaResource(KindThing)
```
Pass an explicit verb list to `NewResourceMetaResource` only if your resource supports fewer verbs than the type default.
### 3. Grant permissions to managed roles
Decide what each managed role can do with your resource and add the transactions in [pkg/types/coretypes/registry_managed_role.go](/pkg/types/coretypes/registry_managed_role.go):
```go
// thing — editors manage, viewers read
{Verb: VerbCreate, Object: *MustNewObject(ResourceRef{Type: TypeMetaResource, Kind: KindThing}, WildCardSelectorString)},
```
The convention so far: admin gets everything, editor gets CRUD on day-to-day observability resources, viewer gets `read`/`list`, anonymous gets nothing (except public dashboards).
### 4. Wire the route
Register the route in [pkg/apiserver/signozapiserver](/pkg/apiserver/signozapiserver), wrapping your handler with `CheckResources` and declaring what the route touches via a `ResourceDef` ([pkg/http/handler/resourcedef.go](/pkg/http/handler/resourcedef.go)). A complete example from [pkg/apiserver/signozapiserver/serviceaccount.go](/pkg/apiserver/signozapiserver/serviceaccount.go):
```go
router.Handle("/api/v1/service_accounts", handler.New(
provider.authzMiddleware.CheckResources(provider.serviceAccountHandler.Create, authtypes.SigNozAdminRoleName),
handler.OpenAPIDef{
ID: "CreateServiceAccount",
// ...
SecuritySchemes: newScopedSecuritySchemes([]string{coretypes.ResourceServiceAccount.Scope(coretypes.VerbCreate)}),
},
handler.WithResourceDefs(handler.BasicResourceDef{
Resource: coretypes.ResourceServiceAccount,
Verb: coretypes.VerbCreate,
Category: coretypes.ActionCategoryAccessControl,
ID: coretypes.ResponseJSONPath("data.id"),
Selector: coretypes.WildcardSelector,
}),
)).Methods(http.MethodPost)
```
The pieces:
- **`CheckResources(handlerFn, roles...)`** — the resource-aware authorization wrapper from [pkg/http/middleware/authz.go](/pkg/http/middleware/authz.go). The role list is the community-edition fallback: which managed roles may call this route when per-resource checks are unavailable.
- **`ResourceDef`** — declares the resource, verb, audit category, how to extract the instance ID, and how to turn that ID into selectors. ID extractors live in [pkg/types/coretypes/extractor.go](/pkg/types/coretypes/extractor.go): `PathParam("id")`, `BodyJSONPath("data.id")`, `BodyJSONArray("ids")`, and `ResponseJSONPath("data.id")` for IDs only known after the handler runs (e.g. `create`).
- **`SecuritySchemes`** — advertises the required scope (`resource.Scope(verb)`, e.g. `serviceaccount:create`) in the OpenAPI spec.
For routes that link two resources, use `AttachDetachSiblingResourceDef` (both sides are authz-checked, e.g. attaching a role to a service account requires `attach` on **both** the service account and the role). For parent-child routes (e.g. creating an API key under a service account), both sides are checked too, but with different verbs: declare a `BasicResourceDef` checking the child with `create`/`delete`, alongside an `AttachDetachParentChildResourceDef` checking the parent with `attach`/`detach` (within that def the child is only recorded for audit) — see the `/api/v1/service_accounts/{id}/keys` route in [pkg/apiserver/signozapiserver/serviceaccount.go](/pkg/apiserver/signozapiserver/serviceaccount.go).
Prefer `CheckResources` with a `ResourceDef` for anything resource-shaped. The older coarse gates `ViewAccess`/`EditAccess`/`AdminAccess` only check "does the caller hold one of these roles" and give up per-resource granularity; `OpenAccess` performs no authorization (authentication still applies); `CheckWithoutClaims` serves anonymous routes such as public dashboards.
### 5. Backfill existing organizations (only if needed)
Managed-role tuples are written from the registry at organization creation, so **new resources need no migration for new organizations**. If existing organizations must get the new permissions, add a migration in [pkg/sqlmigration](/pkg/sqlmigration) that inserts the tuples — see [083_add_role_crud_tuples.go](/pkg/sqlmigration/083_add_role_crud_tuples.go) for the pattern.
## How does a check work at runtime?
1. The resource middleware ([pkg/http/middleware/resource.go](/pkg/http/middleware/resource.go)) runs on every request. It reads the matched handler's `ResourceDef`s, extracts the resource IDs from path/body, and stores the resolved resources in the request context.
2. `CheckResources` reads them back, runs each `SelectorFunc`, and calls `AuthZ.CheckWithTupleCreation(ctx, claims, orgID, relation, resource, selectors, roleSelectors)`.
3. What happens next depends on the edition:
- **Community** ([pkg/authz/openfgaserver/server.go](/pkg/authz/openfgaserver/server.go)) ignores the resource and selectors and only checks whether the subject is an `assignee` of one of the allowed roles — a plain role gate.
- **Enterprise** ([ee/authz/openfgaserver/server.go](/ee/authz/openfgaserver/server.go)) builds tuples via `authtypes.NewTuples` — subject `user:organization/<orgID>/user/<userID>`, relation `create`, object `serviceaccount:organization/<orgID>/serviceaccount/*` — and batch-checks them against OpenFGA: genuine per-resource authorization, including custom roles.
Because both paths go through the same middleware and the same `ResourceDef` declarations, a route wired once works correctly in both editions.
## What should I remember?
- Declare authz in the registries ([pkg/types/coretypes](/pkg/types/coretypes)), not in migrations — tuples for new organizations are derived from code at bootstrap.
- A new kind never needs an OpenFGA schema change; only a new type does, and then **both** [pkg/authz/openfgaschema/base.fga](/pkg/authz/openfgaschema/base.fga) and [ee/authz/openfgaschema/base.fga](/ee/authz/openfgaschema/base.fga) must be updated together.
- Prefer `CheckResources` + `ResourceDef` over the coarse `ViewAccess`/`EditAccess`/`AdminAccess` gates for new routes.
- Use `WildcardSelector` for `create`/`list`, `IDSelector` for instance operations, and a custom `SelectorFunc` when the request ID is not the FGA selector.
- Linking routes check **both** sides: peers via `AttachDetachSiblingResourceDef` (same verb on both), parent-child via a `BasicResourceDef` on the child (`create`/`delete`) paired with an `AttachDetachParentChildResourceDef` on the parent (`attach`/`detach`).
- Changing `ManagedRoleToTransactions` only affects organizations created afterwards — add a [pkg/sqlmigration](/pkg/sqlmigration) migration to backfill existing ones.

View File

@@ -11,6 +11,7 @@ We adhere to three primary style guides as our foundation:
We **recommend** (almost enforce) reviewing these guides before contributing to the codebase. They provide valuable insights into writing idiomatic Go code and will help you understand our approach to backend development. In addition, we have a few additional rules that make certain areas stricter than the above which can be found in area-specific files in this package:
- [Abstractions](abstractions.md) - When to introduce new types and intermediate representations
- [Authz](authz.md) - Authorization, roles, and access control
- [Errors](errors.md) - Structured error handling
- [Endpoint](endpoint.md) - HTTP endpoint patterns
- [Flagger](flagger.md) - Feature flag patterns

View File

@@ -3395,7 +3395,6 @@ export interface DashboardtypesThresholdWithLabelDTO {
unit?: string;
/**
* @type number
* @format double
*/
value: number;
}
@@ -3923,7 +3922,6 @@ export interface DashboardtypesComparisonThresholdDTO {
unit?: string;
/**
* @type number
* @format double
*/
value: number;
}
@@ -4212,7 +4210,6 @@ export interface DashboardtypesTableThresholdDTO {
unit?: string;
/**
* @type number
* @format double
*/
value: number;
}
@@ -5704,6 +5701,81 @@ export interface InframonitoringtypesPodCountsByPhaseDTO {
unknown: number;
}
export interface InframonitoringtypesPodCountsByStatusDTO {
/**
* @type integer
*/
completed: number;
/**
* @type integer
*/
containerCannotRun: number;
/**
* @type integer
*/
containerCreating: number;
/**
* @type integer
*/
crashLoopBackOff: number;
/**
* @type integer
*/
createContainerConfigError: number;
/**
* @type integer
*/
errImagePull: number;
/**
* @type integer
*/
error: number;
/**
* @type integer
*/
evicted: number;
/**
* @type integer
*/
failed: number;
/**
* @type integer
*/
imagePullBackOff: number;
/**
* @type integer
*/
nodeAffinity: number;
/**
* @type integer
*/
nodeLost: number;
/**
* @type integer
*/
oomKilled: number;
/**
* @type integer
*/
pending: number;
/**
* @type integer
*/
running: number;
/**
* @type integer
*/
shutdown: number;
/**
* @type integer
*/
unexpectedAdmissionError: number;
/**
* @type integer
*/
unknown: number;
}
export interface InframonitoringtypesClusterRecordDTO {
/**
* @type number
@@ -5735,6 +5807,7 @@ export interface InframonitoringtypesClusterRecordDTO {
meta: InframonitoringtypesClusterRecordDTOMeta;
nodeCountsByReadiness: InframonitoringtypesNodeCountsByReadinessDTO;
podCountsByPhase: InframonitoringtypesPodCountsByPhaseDTO;
podCountsByStatus: InframonitoringtypesPodCountsByStatusDTO;
}
export enum InframonitoringtypesResponseTypeDTO {
@@ -5838,6 +5911,7 @@ export interface InframonitoringtypesDaemonSetRecordDTO {
*/
meta: InframonitoringtypesDaemonSetRecordDTOMeta;
podCountsByPhase: InframonitoringtypesPodCountsByPhaseDTO;
podCountsByStatus: InframonitoringtypesPodCountsByStatusDTO;
}
export interface InframonitoringtypesDaemonSetsDTO {
@@ -5915,6 +5989,7 @@ export interface InframonitoringtypesDeploymentRecordDTO {
*/
meta: InframonitoringtypesDeploymentRecordDTOMeta;
podCountsByPhase: InframonitoringtypesPodCountsByPhaseDTO;
podCountsByStatus: InframonitoringtypesPodCountsByStatusDTO;
}
export interface InframonitoringtypesDeploymentsDTO {
@@ -6081,6 +6156,7 @@ export interface InframonitoringtypesJobRecordDTO {
*/
meta: InframonitoringtypesJobRecordDTOMeta;
podCountsByPhase: InframonitoringtypesPodCountsByPhaseDTO;
podCountsByStatus: InframonitoringtypesPodCountsByStatusDTO;
/**
* @type integer
*/
@@ -6134,6 +6210,7 @@ export interface InframonitoringtypesNamespaceRecordDTO {
*/
namespaceName: string;
podCountsByPhase: InframonitoringtypesPodCountsByPhaseDTO;
podCountsByStatus: InframonitoringtypesPodCountsByStatusDTO;
}
export interface InframonitoringtypesNamespacesDTO {
@@ -6200,6 +6277,7 @@ export interface InframonitoringtypesNodeRecordDTO {
*/
nodeName: string;
podCountsByPhase: InframonitoringtypesPodCountsByPhaseDTO;
podCountsByStatus: InframonitoringtypesPodCountsByStatusDTO;
}
export interface InframonitoringtypesNodesDTO {
@@ -6237,6 +6315,27 @@ export type InframonitoringtypesPodRecordDTOMetaAnyOf = {
export type InframonitoringtypesPodRecordDTOMeta =
InframonitoringtypesPodRecordDTOMetaAnyOf | null;
export enum InframonitoringtypesPodStatusDTO {
pending = 'pending',
running = 'running',
failed = 'failed',
unknown = 'unknown',
crashloopbackoff = 'crashloopbackoff',
imagepullbackoff = 'imagepullbackoff',
errimagepull = 'errimagepull',
createcontainerconfigerror = 'createcontainerconfigerror',
containercreating = 'containercreating',
oomkilled = 'oomkilled',
completed = 'completed',
error = 'error',
containercannotrun = 'containercannotrun',
evicted = 'evicted',
nodeaffinity = 'nodeaffinity',
nodelost = 'nodelost',
shutdown = 'shutdown',
unexpectedadmissionerror = 'unexpectedadmissionerror',
no_data = 'no_data',
}
export interface InframonitoringtypesPodRecordDTO {
/**
* @type object,null
@@ -6263,6 +6362,7 @@ export interface InframonitoringtypesPodRecordDTO {
*/
podCPURequest: number;
podCountsByPhase: InframonitoringtypesPodCountsByPhaseDTO;
podCountsByStatus: InframonitoringtypesPodCountsByStatusDTO;
/**
* @type number
* @format double
@@ -6279,6 +6379,12 @@ export interface InframonitoringtypesPodRecordDTO {
*/
podMemoryRequest: number;
podPhase: InframonitoringtypesPodPhaseDTO;
/**
* @type integer
* @format int64
*/
podRestarts: number;
podStatus: InframonitoringtypesPodStatusDTO;
/**
* @type string
*/
@@ -6596,6 +6702,7 @@ export interface InframonitoringtypesStatefulSetRecordDTO {
*/
meta: InframonitoringtypesStatefulSetRecordDTOMeta;
podCountsByPhase: InframonitoringtypesPodCountsByPhaseDTO;
podCountsByStatus: InframonitoringtypesPodCountsByStatusDTO;
/**
* @type number
* @format double

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@@ -0,0 +1 @@
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@@ -177,7 +177,13 @@ export default function ConversationView({
conversationId={conversationId}
messages={messages}
isStreaming={isStreamingHere}
onSendSuggestedPrompt={(text): void => handleSend(text)}
onSendSuggestedPrompt={(text): void => {
handleSend(
text,
undefined,
autoContexts.length > 0 ? autoContexts : undefined,
);
}}
/>
{showDisclaimer && (
<div className={disclaimerClass} role="note" aria-live="polite">

View File

@@ -0,0 +1,142 @@
import { MemoryRouter } from 'react-router-dom';
// eslint-disable-next-line no-restricted-imports
import { fireEvent, render } from '@testing-library/react';
import { MessageContext } from 'api/ai-assistant/chat';
import { useAIAssistantStore } from 'container/AIAssistant/store/useAIAssistantStore';
import { VariantContext } from 'container/AIAssistant/VariantContext';
const CHIP_ID = 'recent-errors';
const CHIP_TEXT = 'Show me recent errors';
// Auto-derived page context that a normal (typed) send would attach. The chip
// send must forward the exact same array.
const mockAutoContexts: MessageContext[] = [
{
source: 'auto',
type: 'dashboard',
resourceId: 'dashboard-123',
resourceName: 'Checkout dashboard',
},
];
jest.mock('api/common/logEvent', () => ({
__esModule: true,
default: jest.fn(),
}));
jest.mock('container/AIAssistant/getAutoContexts', () => ({
getAutoContexts: jest.fn(() => mockAutoContexts),
}));
jest.mock('container/AIAssistant/hooks/useAIAssistantAnalyticsContext', () => ({
normalizePage: (page: string): string => page,
useAIAssistantAnalyticsContext: (): unknown => ({ threadId: 'thread-1' }),
}));
// ChatInput is heavy and irrelevant here — the chip path lives entirely in the
// empty state. Provide a lightweight stub plus the `autoContextKey` named export
// ConversationView imports for its dismissed-context filter.
jest.mock('container/AIAssistant/components/ChatInput', () => ({
__esModule: true,
default: (): JSX.Element => <div data-testid="chat-input" />,
autoContextKey: (): string => '',
}));
jest.mock('container/AIAssistant/components/ConversationSkeleton', () => ({
__esModule: true,
default: (): JSX.Element => <div data-testid="skeleton" />,
}));
// VirtualizedMessages renders the real empty-state chips; stub only its
// never-rendered-in-empty-state children and the virtual list.
jest.mock('components/Noz/Noz', () => ({
__esModule: true,
default: (): JSX.Element => <div data-testid="noz" />,
}));
jest.mock('container/AIAssistant/components/MessageBubble', () => ({
__esModule: true,
default: (): null => null,
}));
jest.mock('container/AIAssistant/components/StreamingMessage', () => ({
__esModule: true,
default: (): null => null,
}));
jest.mock('react-virtuoso', () => ({
__esModule: true,
Virtuoso: (): null => null,
}));
jest.mock(
'container/AIAssistant/components/VirtualizedMessages/useEmptyStateChips',
() => ({
useEmptyStateChips: (): { chips: { id: string; text: string }[] } => ({
chips: [{ id: CHIP_ID, text: CHIP_TEXT }],
}),
}),
);
// eslint-disable-next-line import/first
import ConversationView from '../ConversationView';
const CONVERSATION_ID = 'conv-1';
function renderView(variant: 'panel' | 'page' | 'modal'): {
getByTestId: (id: string) => HTMLElement;
} {
return render(
<MemoryRouter initialEntries={['/dashboard/dashboard-123']}>
<VariantContext.Provider value={variant}>
<ConversationView conversationId={CONVERSATION_ID} />
</VariantContext.Provider>
</MemoryRouter>,
);
}
describe('ConversationView — empty-state chip context', () => {
let sendMessage: jest.Mock;
beforeEach(() => {
jest.clearAllMocks();
sendMessage = jest.fn();
useAIAssistantStore.setState({
conversations: {
[CONVERSATION_ID]: {
id: CONVERSATION_ID,
messages: [],
createdAt: 1,
updatedAt: 1,
},
},
streams: {},
activeConversationId: CONVERSATION_ID,
isLoadingThread: false,
sendMessage,
} as unknown as Partial<ReturnType<typeof useAIAssistantStore.getState>>);
});
it('forwards the page auto-contexts when a chip is clicked (embedded variant)', () => {
const { getByTestId } = renderView('panel');
fireEvent.click(getByTestId(`empty-state-chip-${CHIP_ID}`));
// The chip send must carry the same auto-contexts a typed message would.
expect(sendMessage).toHaveBeenCalledTimes(1);
expect(sendMessage).toHaveBeenCalledWith(
CHIP_TEXT,
undefined,
mockAutoContexts,
);
});
it('sends undefined contexts on the standalone page (no page context to attach)', () => {
const { getByTestId } = renderView('page');
fireEvent.click(getByTestId(`empty-state-chip-${CHIP_ID}`));
expect(sendMessage).toHaveBeenCalledTimes(1);
expect(sendMessage).toHaveBeenCalledWith(CHIP_TEXT, undefined, undefined);
});
});

View File

@@ -1625,6 +1625,9 @@ export const getHostQueryPayload = (
const diskPendingKey = dotMetricsEnabled
? 'system.disk.pending_operations'
: 'system_disk_pending_operations';
const fsUsageKey = dotMetricsEnabled
? 'system.filesystem.usage'
: 'system_filesystem_usage';
return [
{
@@ -2657,6 +2660,155 @@ export const getHostQueryPayload = (
start,
end,
},
{
selectedTime: 'GLOBAL_TIME',
graphType: PANEL_TYPES.TIME_SERIES,
query: {
builder: {
queryData: [
{
aggregateAttribute: {
dataType: DataTypes.Float64,
id: 'system_filesystem_usage--float64--Gauge--true',
key: fsUsageKey,
type: 'Gauge',
},
aggregateOperator: 'avg',
dataSource: DataSource.METRICS,
disabled: true,
expression: 'A',
filters: {
items: [
{
id: 'fs_f1',
key: {
dataType: DataTypes.String,
id: 'host_name--string--tag--false',
key: hostNameKey,
type: 'tag',
},
op: '=',
value: hostName,
},
{
id: 'fs_f2',
key: {
dataType: DataTypes.String,
id: 'state--string--tag--false',
key: 'state',
type: 'tag',
},
op: '=',
value: 'used',
},
],
op: 'AND',
},
functions: [],
groupBy: [
{
dataType: DataTypes.String,
id: 'mountpoint--string--tag--false',
key: 'mountpoint',
type: 'tag',
},
],
having: [
{
columnName: `SUM(${fsUsageKey})`,
op: '>',
value: 0,
},
],
legend: '{{mountpoint}}',
limit: null,
orderBy: [],
queryName: 'A',
reduceTo: ReduceOperators.AVG,
spaceAggregation: 'sum',
stepInterval: 60,
timeAggregation: 'avg',
},
{
aggregateAttribute: {
dataType: DataTypes.Float64,
id: 'system_filesystem_usage--float64--Gauge--true',
key: fsUsageKey,
type: 'Gauge',
},
aggregateOperator: 'avg',
dataSource: DataSource.METRICS,
disabled: true,
expression: 'B',
filters: {
items: [
{
id: 'fs_f3',
key: {
dataType: DataTypes.String,
id: 'host_name--string--tag--false',
key: hostNameKey,
type: 'tag',
},
op: '=',
value: hostName,
},
],
op: 'AND',
},
functions: [],
groupBy: [
{
dataType: DataTypes.String,
id: 'mountpoint--string--tag--false',
key: 'mountpoint',
type: 'tag',
},
],
having: [
{
columnName: `SUM(${fsUsageKey})`,
op: '>',
value: 0,
},
],
legend: '{{mountpoint}}',
limit: null,
orderBy: [],
queryName: 'B',
reduceTo: ReduceOperators.AVG,
spaceAggregation: 'sum',
stepInterval: 60,
timeAggregation: 'avg',
},
],
queryFormulas: [
{
disabled: false,
expression: 'A/B',
legend: '{{mountpoint}}',
queryName: 'F1',
},
],
queryTraceOperator: [],
},
clickhouse_sql: [{ disabled: false, legend: '', name: 'A', query: '' }],
id: 'a1b2c3d4-e5f6-7890-abcd-ef1234567890',
promql: [{ disabled: false, legend: '', name: 'A', query: '' }],
queryType: EQueryType.QUERY_BUILDER,
},
variables: {},
formatForWeb: false,
start,
end,
},
];
};
@@ -2732,4 +2884,5 @@ export const hostWidgetInfo = [
{ title: 'System disk operations/s', yAxisUnit: 'short' },
{ title: 'Queue size', yAxisUnit: 'short' },
{ title: 'System disk operation time/s', yAxisUnit: 's' },
{ title: 'Disk Usage (%) by mountpoint', yAxisUnit: 'percentunit' },
];

View File

@@ -20,6 +20,7 @@ import azureOpenaiUrl from '@/assets/Logos/azure-openai.svg';
import azureSqlDatabaseMetricsUrl from '@/assets/Logos/azure-sql-database-metrics.svg';
import azureVmUrl from '@/assets/Logos/azure-vm.svg';
import basetenUrl from '@/assets/Logos/baseten.svg';
import cassandraUrl from '@/assets/Logos/cassandra.svg';
import celeryUrl from '@/assets/Logos/celery.svg';
import certManagerUrl from '@/assets/Logos/cert-manager.svg';
import claudeCodeUrl from '@/assets/Logos/claude-code.svg';
@@ -51,6 +52,7 @@ import externalApiMonitoringUrl from '@/assets/Logos/external-api-monitoring.svg
import fluentbitUrl from '@/assets/Logos/fluentbit.svg';
import fluentdUrl from '@/assets/Logos/fluentd.svg';
import flutterMonitoringUrl from '@/assets/Logos/flutter-monitoring.svg';
import fluxcdUrl from '@/assets/Logos/fluxcd.svg';
import flyIoUrl from '@/assets/Logos/fly-io.svg';
import fromLogFileUrl from '@/assets/Logos/from-log-file.svg';
import gcpAppEngineUrl from '@/assets/Logos/gcp-app-engine.svg';
@@ -94,6 +96,7 @@ import langtraceUrl from '@/assets/Logos/langtrace.svg';
import litellmUrl from '@/assets/Logos/litellm.svg';
import livekitUrl from '@/assets/Logos/livekit.svg';
import llamaindexUrl from '@/assets/Logos/llamaindex.svg';
import llmMonitoringUrl from '@/assets/Logos/llm-monitoring.svg';
import logrusUrl from '@/assets/Logos/logrus.svg';
import logsUrl from '@/assets/Logos/logs.svg';
import logstashUrl from '@/assets/Logos/logstash.svg';
@@ -120,6 +123,7 @@ import opentelemetryUrl from '@/assets/Logos/opentelemetry.svg';
import phpUrl from '@/assets/Logos/php.svg';
import pinoUrl from '@/assets/Logos/pino.svg';
import pipecatUrl from '@/assets/Logos/pipecat.svg';
import planetscaleUrl from '@/assets/Logos/planetscale.svg';
import postgresqlUrl from '@/assets/Logos/postgresql.svg';
import prometheusUrl from '@/assets/Logos/prometheus.svg';
import pydanticAiUrl from '@/assets/Logos/pydantic-ai.svg';
@@ -1526,6 +1530,28 @@ const onboardingConfigWithLinks = [
id: 'nginx-tracing',
link: '/docs/instrumentation/opentelemetry-nginx/',
},
{
dataSource: 'nginx-ingress-controller',
label: 'NGINX Ingress Controller',
imgUrl: nginxUrl,
tags: ['infrastructure monitoring'],
module: 'metrics',
relatedSearchKeywords: [
'ingress',
'ingress controller',
'kubernetes ingress',
'monitoring',
'nginx ingress',
'nginx ingress controller',
'nginx ingress metrics',
'nginx ingress monitoring',
'nginx ingress observability',
'observability',
'opentelemetry nginx ingress',
],
id: 'nginx-ingress-controller',
link: '/docs/metrics-management/nginx-ingress-controller/',
},
{
dataSource: 'opentelemetry-cloudflare',
label: 'Cloudflare Tracing',
@@ -1586,6 +1612,119 @@ const onboardingConfigWithLinks = [
id: 'opentelemetry-cloudflare-logs',
link: '/docs/logs-management/send-logs/cloudflare-logs/',
},
{
dataSource: 'cloudflare-workers',
label: 'Cloudflare Workers',
imgUrl: cloudflareUrl,
tags: ['apm/traces'],
module: 'apm',
relatedSearchKeywords: [
'cloudflare',
'cloudflare workers',
'cloudflare workers monitoring',
'cloudflare workers observability',
'cloudflare workers otlp',
'edge computing monitoring',
'monitor cloudflare workers',
'monitoring',
'observability',
'opentelemetry cloudflare workers',
'otlp',
'serverless monitoring',
],
id: 'cloudflare-workers',
link: '/docs/integrations/outposts/cloudflare-workers/',
},
{
dataSource: 'opentelemetry-cassandra',
label: 'Cassandra',
imgUrl: cassandraUrl,
tags: ['database'],
module: 'apm',
relatedSearchKeywords: [
'apache cassandra',
'cassandra',
'cassandra database',
'cassandra logs',
'cassandra metrics',
'cassandra monitoring',
'cassandra observability',
'database',
'monitoring',
'nosql',
'observability',
'opentelemetry cassandra',
],
id: 'opentelemetry-cassandra',
link: '/docs/integrations/opentelemetry-cassandra/',
},
{
dataSource: 'fluxcd',
label: 'FluxCD',
imgUrl: fluxcdUrl,
tags: ['infrastructure monitoring'],
module: 'metrics',
relatedSearchKeywords: [
'continuous delivery',
'flux',
'fluxcd',
'fluxcd dashboard',
'fluxcd metrics',
'fluxcd monitoring',
'fluxcd observability',
'gitops',
'kubernetes',
'monitoring',
'observability',
'opentelemetry fluxcd',
],
id: 'fluxcd',
link: '/docs/metrics-management/fluxcd-metrics/',
},
{
dataSource: 'planetscale',
label: 'PlanetScale',
imgUrl: planetscaleUrl,
tags: ['database'],
module: 'apm',
relatedSearchKeywords: [
'database',
'monitoring',
'mysql',
'observability',
'opentelemetry planetscale',
'planetscale',
'planetscale database',
'planetscale metrics',
'planetscale monitoring',
'planetscale observability',
'serverless database',
],
id: 'planetscale',
link: '/docs/metrics-management/opentelemetry-planetscale/',
},
{
dataSource: 'hermes-agent',
label: 'Hermes Agent',
imgUrl: llmMonitoringUrl,
tags: ['LLM Monitoring'],
module: 'apm',
relatedSearchKeywords: [
'ai agent monitoring',
'hermes',
'hermes agent',
'hermes agent monitoring',
'hermes agent observability',
'hermes monitoring',
'llm monitoring',
'monitoring',
'nous research',
'observability',
'opentelemetry hermes',
],
id: 'hermes-agent',
link: '/docs/hermes-monitoring/',
},
{
dataSource: 'convex-logs',
label: 'Convex Logs',

View File

@@ -26,8 +26,8 @@ export default function AIAssistantPage(): JSX.Element {
// Skip the mount-time Opened fire when the user expanded an already-open
// drawer/modal — that surface already emitted Opened with the right source.
// Router state (vs a module flag) survives StrictMode double-mount and
// aborted navigations.
// Router state (vs a module flag) survives page remounts and aborted
// navigations.
const fromInApp = location.state?.fromInApp === true;
useEffect(() => {
if (fromInApp) {
@@ -52,18 +52,34 @@ export default function AIAssistantPage(): JSX.Element {
(s) => s.startNewConversation,
);
// Keep a ref so the effect can read latest conversations without re-firing
// when startNewConversation mutates the store mid-effect.
// Keep refs so the effect can read the latest store state without re-firing
// when it mutates the store mid-effect (it only depends on the URL param).
const conversationsRef = useRef(conversations);
conversationsRef.current = conversations;
const activeConversationIdRef = useRef(activeConversationId);
activeConversationIdRef.current = activeConversationId;
useEffect(() => {
if (conversationsRef.current[conversationId]) {
// URL points at a known conversation → just activate it.
if (conversationId && conversationsRef.current[conversationId]) {
setActiveConversation(conversationId);
} else {
const newId = startNewConversation();
history.replace(ROUTES.AI_ASSISTANT.replace(':conversationId', newId));
return;
}
// The URL has no usable conversation id (bare `/ai-assistant`, or a stale
// param). Prefer resuming the active conversation — including the
// rehydrating placeholder for the persisted thread — over minting a new
// one. This is what stops a throwaway blank chat from flashing as a
// second thread during load, and stops a duplicate when the page
// remounts during startup route churn (the active id is already set, so
// we resume instead of create). Starting fresh is the last resort, only
// when there is genuinely nothing to resume.
const activeId = activeConversationIdRef.current;
const resumeId =
activeId && conversationsRef.current[activeId]
? activeId
: startNewConversation();
history.replace(ROUTES.AI_ASSISTANT.replace(':conversationId', resumeId));
// Only re-run when the URL param changes, not when conversations mutates.
// eslint-disable-next-line react-hooks/exhaustive-deps
}, [conversationId]);

View File

@@ -0,0 +1,181 @@
import { MemoryRouter, Route } from 'react-router-dom';
// eslint-disable-next-line no-restricted-imports
import { render } from '@testing-library/react';
import ROUTES from 'constants/routes';
import { useAIAssistantStore } from 'container/AIAssistant/store/useAIAssistantStore';
jest.mock('api/common/logEvent', () => ({
__esModule: true,
default: jest.fn(),
}));
jest.mock('container/AIAssistant/ConversationView', () => ({
__esModule: true,
default: (): JSX.Element => <div data-testid="conversation-view" />,
}));
jest.mock('container/AIAssistant/components/ConversationsList', () => ({
__esModule: true,
default: (): JSX.Element => <div data-testid="conversations-list" />,
}));
jest.mock('components/Noz/Noz', () => ({
__esModule: true,
default: (): JSX.Element => <div data-testid="noz" />,
}));
jest.mock('container/AIAssistant/hooks/useAIAssistantAnalyticsContext', () => ({
normalizePage: (page: string): string => page,
useAIAssistantAnalyticsContext: (): unknown => ({ mode: 'page' }),
}));
// eslint-disable-next-line import/first
import AIAssistantPage from '../AIAssistantPage';
function renderAt(entry: string): { unmount: () => void } {
return render(
<MemoryRouter initialEntries={[entry]}>
<Route
exact
path={[ROUTES.AI_ASSISTANT_BASE, ROUTES.AI_ASSISTANT]}
component={AIAssistantPage}
/>
</MemoryRouter>,
);
}
function renderAtBase(): { unmount: () => void } {
return renderAt(ROUTES.AI_ASSISTANT_BASE);
}
function conversationCount(): number {
return Object.keys(useAIAssistantStore.getState().conversations).length;
}
function conversationIds(): string[] {
return Object.keys(useAIAssistantStore.getState().conversations);
}
function activeId(): string | null {
return useAIAssistantStore.getState().activeConversationId;
}
describe('AIAssistantPage', () => {
beforeEach(() => {
useAIAssistantStore.setState({
conversations: {},
streams: {},
activeConversationId: null,
});
});
it('opens exactly one conversation when navigating to /ai-assistant', () => {
const { unmount } = renderAtBase();
expect(conversationCount()).toBe(1);
unmount();
});
it('does not stack a second conversation when the page remounts at the bare URL (route churn)', () => {
// First mount at `/ai-assistant` creates one blank conversation and
// redirects to `/ai-assistant/:id`.
const { unmount } = renderAtBase();
expect(conversationCount()).toBe(1);
const firstId = conversationIds()[0];
// Startup route-list churn unmounts and remounts the page while the URL
// is momentarily back at the bare `/ai-assistant`. This previously
// created a second blank conversation — now it reuses the first.
unmount();
const { unmount: unmount2 } = renderAtBase();
expect(conversationCount()).toBe(1);
// The surviving conversation is the original one, resumed — not a fresh mint.
expect(conversationIds()).toStrictEqual([firstId]);
expect(activeId()).toBe(firstId);
unmount2();
});
it('activates the conversation named in the URL without creating a new one', () => {
useAIAssistantStore.setState({
conversations: {
existing: {
id: 'existing',
messages: [],
createdAt: 1,
updatedAt: 1,
},
},
streams: {},
activeConversationId: null,
});
const { unmount } = renderAt(
ROUTES.AI_ASSISTANT.replace(':conversationId', 'existing'),
);
expect(conversationCount()).toBe(1);
expect(activeId()).toBe('existing');
unmount();
});
it('resumes the active conversation on /ai-assistant/new instead of minting a new one', () => {
// The sidenav only routes to `/ai-assistant/new` as a fallback, but if an
// active conversation exists the page must resume it rather than spawn a
// throwaway blank thread for the unknown "new" param.
useAIAssistantStore.setState({
conversations: {
active: {
id: 'active',
messages: [],
createdAt: 1,
updatedAt: 1,
},
},
streams: {},
activeConversationId: 'active',
});
const { unmount } = renderAt(
ROUTES.AI_ASSISTANT.replace(':conversationId', 'new'),
);
expect(conversationCount()).toBe(1);
expect(conversationIds()).toStrictEqual(['active']);
expect(activeId()).toBe('active');
unmount();
});
it('resumes the persisted (hydrating) conversation during load instead of creating a second', () => {
// Simulates `onRehydrateStorage` priming the persisted active
// conversation as a hydrating placeholder before `fetchThreads` resolves.
useAIAssistantStore.setState({
conversations: {
persisted: {
id: 'persisted',
messages: [],
createdAt: 1,
updatedAt: 1,
isHydrating: true,
},
},
streams: {},
activeConversationId: 'persisted',
});
const { unmount } = renderAtBase();
// Opening the bare URL must resume the persisted conversation, not mint a
// throwaway blank alongside it (which flashed as a 2nd thread during load).
expect(conversationCount()).toBe(1);
expect(
Object.keys(useAIAssistantStore.getState().conversations),
).toStrictEqual(['persisted']);
unmount();
});
});

View File

@@ -117,8 +117,16 @@ var podsSpec = checkSpec{
DocumentationLink: docLinkKubeletStatsReceiver,
},
{
Component: componentK8sClusterReceiver,
DefaultMetrics: []string{"k8s.pod.phase"},
Component: componentK8sClusterReceiver,
DefaultMetrics: []string{
"k8s.pod.phase",
"k8s.container.restarts", // pod restart count (default-on)
},
OptionalMetrics: []string{
// kubectl-style pod display status (default-off in the receiver).
"k8s.pod.status_reason",
"k8s.container.status.reason",
},
DocumentationLink: docLinkK8sClusterReceiver,
},
{
@@ -149,6 +157,10 @@ var nodesSpec = checkSpec{
// By default, only k8s.node.condition_ready is enabled. (Check https://github.com/open-telemetry/opentelemetry-collector-contrib/blob/4f9a578b210a6dcb9f9bf47942f27208b5765298/receiver/k8sclusterreceiver/metadata.yaml#L802)
"k8s.pod.phase", // pod counts per node by phase
},
OptionalMetrics: []string{
"k8s.pod.status_reason",
"k8s.container.status.reason",
},
DocumentationLink: docLinkK8sClusterReceiver,
},
{
@@ -182,6 +194,10 @@ var deploymentsSpec = checkSpec{
"k8s.deployment.desired",
"k8s.deployment.available",
},
OptionalMetrics: []string{
"k8s.pod.status_reason",
"k8s.container.status.reason",
},
DocumentationLink: docLinkK8sClusterReceiver,
},
{
@@ -220,6 +236,10 @@ var daemonsetsSpec = checkSpec{
"k8s.daemonset.desired_scheduled_nodes",
"k8s.daemonset.current_scheduled_nodes",
},
OptionalMetrics: []string{
"k8s.pod.status_reason",
"k8s.container.status.reason",
},
DocumentationLink: docLinkK8sClusterReceiver,
},
{
@@ -258,6 +278,10 @@ var statefulsetsSpec = checkSpec{
"k8s.statefulset.desired_pods",
"k8s.statefulset.current_pods",
},
OptionalMetrics: []string{
"k8s.pod.status_reason",
"k8s.container.status.reason",
},
DocumentationLink: docLinkK8sClusterReceiver,
},
{
@@ -298,6 +322,10 @@ var jobsSpec = checkSpec{
"k8s.job.failed_pods",
"k8s.job.successful_pods",
},
OptionalMetrics: []string{
"k8s.pod.status_reason",
"k8s.container.status.reason",
},
DocumentationLink: docLinkK8sClusterReceiver,
},
{
@@ -324,8 +352,12 @@ var namespacesSpec = checkSpec{
DocumentationLink: docLinkKubeletStatsReceiver,
},
{
Component: componentK8sClusterReceiver,
DefaultMetrics: []string{"k8s.pod.phase"},
Component: componentK8sClusterReceiver,
DefaultMetrics: []string{"k8s.pod.phase"},
OptionalMetrics: []string{
"k8s.pod.status_reason",
"k8s.container.status.reason",
},
DocumentationLink: docLinkK8sClusterReceiver,
},
{
@@ -360,6 +392,10 @@ var clustersSpec = checkSpec{
"k8s.node.condition_ready", // node counts by readiness
"k8s.pod.phase", // pod counts per cluster by phase
},
OptionalMetrics: []string{
"k8s.pod.status_reason",
"k8s.container.status.reason",
},
DocumentationLink: docLinkK8sClusterReceiver,
},
{

View File

@@ -20,6 +20,7 @@ func buildClusterRecords(
metadataMap map[string]map[string]string,
nodeConditionCountsMap map[string]nodeConditionCounts,
podPhaseCountsMap map[string]podPhaseCounts,
podStatusCounts map[string]podStatusCounts,
) []inframonitoringtypes.ClusterRecord {
metricsMap := parseFullQueryResponse(resp, groupBy)
@@ -69,6 +70,10 @@ func buildClusterRecords(
}
}
if podStatusCountsForGroup, ok := podStatusCounts[compositeKey]; ok {
record.PodCountsByStatus = podStatusCountsToResponse(podStatusCountsForGroup)
}
if attrs, ok := metadataMap[compositeKey]; ok {
for k, v := range attrs {
record.Meta[k] = v

View File

@@ -27,6 +27,8 @@ var clustersTableMetricNamesList = []string{
"k8s.node.allocatable_memory",
"k8s.node.condition_ready", //TODO(nikhilmantri0902): should these metrics be used to count groups k8s.node.condition_ready and k8s.pod.phase
"k8s.pod.phase",
"k8s.pod.status_reason",
"k8s.container.status.reason",
}
var clusterAttrKeysForMetadata = []string{

View File

@@ -19,6 +19,7 @@ func buildDaemonSetRecords(
groupBy []qbtypes.GroupByKey,
metadataMap map[string]map[string]string,
phaseCounts map[string]podPhaseCounts,
podStatusCounts map[string]podStatusCounts,
) []inframonitoringtypes.DaemonSetRecord {
metricsMap := parseFullQueryResponse(resp, groupBy)
@@ -77,6 +78,10 @@ func buildDaemonSetRecords(
}
}
if podStatusCountsForGroup, ok := podStatusCounts[compositeKey]; ok {
record.PodCountsByStatus = podStatusCountsToResponse(podStatusCountsForGroup)
}
if attrs, ok := metadataMap[compositeKey]; ok {
for k, v := range attrs {
record.Meta[k] = v

View File

@@ -23,6 +23,8 @@ var daemonSetNameGroupByKey = qbtypes.GroupByKey{
// response to short-circuit cleanly when the phase metric is absent.
var daemonSetsTableMetricNamesList = []string{
"k8s.pod.phase",
"k8s.pod.status_reason",
"k8s.container.status.reason",
"k8s.pod.cpu.usage",
"k8s.pod.cpu_request_utilization",
"k8s.pod.cpu_limit_utilization",

View File

@@ -19,6 +19,7 @@ func buildDeploymentRecords(
groupBy []qbtypes.GroupByKey,
metadataMap map[string]map[string]string,
phaseCounts map[string]podPhaseCounts,
podStatusCounts map[string]podStatusCounts,
) []inframonitoringtypes.DeploymentRecord {
metricsMap := parseFullQueryResponse(resp, groupBy)
@@ -77,6 +78,10 @@ func buildDeploymentRecords(
}
}
if podStatusCountsForGroup, ok := podStatusCounts[compositeKey]; ok {
record.PodCountsByStatus = podStatusCountsToResponse(podStatusCountsForGroup)
}
if attrs, ok := metadataMap[compositeKey]; ok {
for k, v := range attrs {
record.Meta[k] = v

View File

@@ -23,6 +23,8 @@ var deploymentNameGroupByKey = qbtypes.GroupByKey{
// response to short-circuit cleanly when the phase metric is absent.
var deploymentsTableMetricNamesList = []string{
"k8s.pod.phase",
"k8s.pod.status_reason",
"k8s.container.status.reason",
"k8s.pod.cpu.usage",
"k8s.pod.cpu_request_utilization",
"k8s.pod.cpu_limit_utilization",

View File

@@ -440,6 +440,30 @@ func (m *module) buildFilterClause(ctx context.Context, filter *qbtypes.Filter,
return whereClause.WhereClause, nil
}
// mergeQueryWarnings combines any number of query warnings. It is nil-safe and
// skips nil entries. The first non-nil warning becomes the primary; each
// subsequent one contributes its message (as an additional warning) and its
// own additional warnings. Returns nil when all inputs are nil.
func mergeQueryWarnings(warnings ...*qbtypes.QueryWarnData) *qbtypes.QueryWarnData {
var merged *qbtypes.QueryWarnData
for _, w := range warnings {
if w == nil {
continue
}
if merged == nil {
// Copy so we don't mutate the caller's warning.
primary := *w
merged = &primary
continue
}
if w.Message != "" {
merged.Warnings = append(merged.Warnings, qbtypes.QueryWarnDataAdditional{Message: w.Message})
}
merged.Warnings = append(merged.Warnings, w.Warnings...)
}
return merged
}
// NOTE: this method is not specific to infra monitoring — it queries attributes_metadata generically.
// Consider moving to telemetryMetaStore when a second use case emerges.
//

View File

@@ -26,6 +26,60 @@ type podPhaseCounts struct {
Unknown int
}
// podStatusCounts holds per-group pod counts bucketed by latest kubectl-style
// display status in window. Mirrors inframonitoringtypes.PodCountsByStatus.
type podStatusCounts struct {
// Phase fallback.
Pending int
Running int
Failed int
Unknown int
// Container-level reasons.
CrashLoopBackOff int
ImagePullBackOff int
ErrImagePull int
CreateContainerConfigError int
ContainerCreating int
OOMKilled int
Completed int
Error int
ContainerCannotRun int
// Pod-level reasons.
Evicted int
NodeAffinity int
NodeLost int
Shutdown int
UnexpectedAdmissionError int
}
// podStatusCountsToResponse copies the internal per-group status counts into the
// public response struct. Shared by every entity that surfaces pod status
// counts (pods, nodes, namespaces, clusters, workloads).
func podStatusCountsToResponse(podStatuses podStatusCounts) inframonitoringtypes.PodCountsByStatus {
return inframonitoringtypes.PodCountsByStatus{
Pending: podStatuses.Pending,
Running: podStatuses.Running,
Failed: podStatuses.Failed,
Unknown: podStatuses.Unknown,
CrashLoopBackOff: podStatuses.CrashLoopBackOff,
ImagePullBackOff: podStatuses.ImagePullBackOff,
ErrImagePull: podStatuses.ErrImagePull,
CreateContainerConfigError: podStatuses.CreateContainerConfigError,
ContainerCreating: podStatuses.ContainerCreating,
OOMKilled: podStatuses.OOMKilled,
Completed: podStatuses.Completed,
Error: podStatuses.Error,
ContainerCannotRun: podStatuses.ContainerCannotRun,
Evicted: podStatuses.Evicted,
NodeAffinity: podStatuses.NodeAffinity,
NodeLost: podStatuses.NodeLost,
Shutdown: podStatuses.Shutdown,
UnexpectedAdmissionError: podStatuses.UnexpectedAdmissionError,
}
}
// nodeConditionCounts holds per-group node counts bucketed by latest condition_ready in window.
type nodeConditionCounts struct {
Ready int

View File

@@ -19,6 +19,7 @@ func buildJobRecords(
groupBy []qbtypes.GroupByKey,
metadataMap map[string]map[string]string,
phaseCounts map[string]podPhaseCounts,
podStatusCounts map[string]podStatusCounts,
) []inframonitoringtypes.JobRecord {
metricsMap := parseFullQueryResponse(resp, groupBy)
@@ -85,6 +86,10 @@ func buildJobRecords(
}
}
if podStatusCountsForGroup, ok := podStatusCounts[compositeKey]; ok {
record.PodCountsByStatus = podStatusCountsToResponse(podStatusCountsForGroup)
}
if attrs, ok := metadataMap[compositeKey]; ok {
for k, v := range attrs {
record.Meta[k] = v

View File

@@ -23,6 +23,8 @@ var jobNameGroupByKey = qbtypes.GroupByKey{
// response to short-circuit cleanly when the phase metric is absent.
var jobsTableMetricNamesList = []string{
"k8s.pod.phase",
"k8s.pod.status_reason",
"k8s.container.status.reason",
"k8s.pod.cpu.usage",
"k8s.pod.cpu_request_utilization",
"k8s.pod.cpu_limit_utilization",

View File

@@ -309,9 +309,19 @@ func (m *module) ListPods(ctx context.Context, orgID valuer.UUID, req *inframoni
return nil, err
}
statusCounts, statusWarning, err := m.getPerGroupPodStatusCountsWithReqMetricChecks(ctx, req.Start, req.End, req.Filter, req.GroupBy, pageGroups)
if err != nil {
return nil, err
}
restartCounts, err := m.getPerGroupPodRestartCounts(ctx, req.Start, req.End, req.Filter, req.GroupBy, pageGroups)
if err != nil {
return nil, err
}
isPodUIDInGroupBy := isKeyInGroupByAttrs(req.GroupBy, podUIDAttrKey)
resp.Records = buildPodRecords(isPodUIDInGroupBy, queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts, req.End)
resp.Warning = queryResp.Warning
resp.Records = buildPodRecords(isPodUIDInGroupBy, queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts, statusCounts, restartCounts, req.End)
resp.Warning = mergeQueryWarnings(queryResp.Warning, statusWarning)
return resp, nil
}
@@ -392,9 +402,14 @@ func (m *module) ListNodes(ctx context.Context, orgID valuer.UUID, req *inframon
return nil, err
}
podStatusCounts, podStatusWarning, err := m.getPerGroupPodStatusCountsWithReqMetricChecks(ctx, req.Start, req.End, req.Filter, req.GroupBy, pageGroups)
if err != nil {
return nil, err
}
isNodeNameInGroupBy := isKeyInGroupByAttrs(req.GroupBy, inframonitoringtypes.NodeNameAttrKey)
resp.Records = buildNodeRecords(isNodeNameInGroupBy, queryResp, pageGroups, req.GroupBy, metadataMap, nodeConditionCounts, podPhaseCounts)
resp.Warning = queryResp.Warning
resp.Records = buildNodeRecords(isNodeNameInGroupBy, queryResp, pageGroups, req.GroupBy, metadataMap, nodeConditionCounts, podPhaseCounts, podStatusCounts)
resp.Warning = mergeQueryWarnings(queryResp.Warning, podStatusWarning)
return resp, nil
}
@@ -470,8 +485,13 @@ func (m *module) ListNamespaces(ctx context.Context, orgID valuer.UUID, req *inf
return nil, err
}
resp.Records = buildNamespaceRecords(queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts)
resp.Warning = queryResp.Warning
podStatusCounts, podStatusWarning, err := m.getPerGroupPodStatusCountsWithReqMetricChecks(ctx, req.Start, req.End, req.Filter, req.GroupBy, pageGroups)
if err != nil {
return nil, err
}
resp.Records = buildNamespaceRecords(queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts, podStatusCounts)
resp.Warning = mergeQueryWarnings(queryResp.Warning, podStatusWarning)
return resp, nil
}
@@ -554,8 +574,13 @@ func (m *module) ListClusters(ctx context.Context, orgID valuer.UUID, req *infra
return nil, err
}
resp.Records = buildClusterRecords(queryResp, pageGroups, req.GroupBy, metadataMap, nodeConditionCountsMap, podPhaseCountsMap)
resp.Warning = queryResp.Warning
podStatusCounts, podStatusWarning, err := m.getPerGroupPodStatusCountsWithReqMetricChecks(ctx, req.Start, req.End, req.Filter, req.GroupBy, pageGroups)
if err != nil {
return nil, err
}
resp.Records = buildClusterRecords(queryResp, pageGroups, req.GroupBy, metadataMap, nodeConditionCountsMap, podPhaseCountsMap, podStatusCounts)
resp.Warning = mergeQueryWarnings(queryResp.Warning, podStatusWarning)
return resp, nil
}
@@ -715,8 +740,13 @@ func (m *module) ListDeployments(ctx context.Context, orgID valuer.UUID, req *in
return nil, err
}
resp.Records = buildDeploymentRecords(queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts)
resp.Warning = queryResp.Warning
podStatusCounts, podStatusWarning, err := m.getPerGroupPodStatusCountsWithReqMetricChecks(ctx, req.Start, req.End, req.Filter, req.GroupBy, pageGroups)
if err != nil {
return nil, err
}
resp.Records = buildDeploymentRecords(queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts, podStatusCounts)
resp.Warning = mergeQueryWarnings(queryResp.Warning, podStatusWarning)
return resp, nil
}
@@ -800,8 +830,13 @@ func (m *module) ListStatefulSets(ctx context.Context, orgID valuer.UUID, req *i
return nil, err
}
resp.Records = buildStatefulSetRecords(queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts)
resp.Warning = queryResp.Warning
podStatusCounts, podStatusWarning, err := m.getPerGroupPodStatusCountsWithReqMetricChecks(ctx, req.Start, req.End, req.Filter, req.GroupBy, pageGroups)
if err != nil {
return nil, err
}
resp.Records = buildStatefulSetRecords(queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts, podStatusCounts)
resp.Warning = mergeQueryWarnings(queryResp.Warning, podStatusWarning)
return resp, nil
}
@@ -885,8 +920,13 @@ func (m *module) ListJobs(ctx context.Context, orgID valuer.UUID, req *inframoni
return nil, err
}
resp.Records = buildJobRecords(queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts)
resp.Warning = queryResp.Warning
podStatusCounts, podStatusWarning, err := m.getPerGroupPodStatusCountsWithReqMetricChecks(ctx, req.Start, req.End, req.Filter, req.GroupBy, pageGroups)
if err != nil {
return nil, err
}
resp.Records = buildJobRecords(queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts, podStatusCounts)
resp.Warning = mergeQueryWarnings(queryResp.Warning, podStatusWarning)
return resp, nil
}
@@ -970,8 +1010,13 @@ func (m *module) ListDaemonSets(ctx context.Context, orgID valuer.UUID, req *inf
return nil, err
}
resp.Records = buildDaemonSetRecords(queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts)
resp.Warning = queryResp.Warning
podStatusCounts, podStatusWarning, err := m.getPerGroupPodStatusCountsWithReqMetricChecks(ctx, req.Start, req.End, req.Filter, req.GroupBy, pageGroups)
if err != nil {
return nil, err
}
resp.Records = buildDaemonSetRecords(queryResp, pageGroups, req.GroupBy, metadataMap, phaseCounts, podStatusCounts)
resp.Warning = mergeQueryWarnings(queryResp.Warning, podStatusWarning)
return resp, nil
}

View File

@@ -18,6 +18,7 @@ func buildNamespaceRecords(
groupBy []qbtypes.GroupByKey,
metadataMap map[string]map[string]string,
phaseCounts map[string]podPhaseCounts,
podStatusCounts map[string]podStatusCounts,
) []inframonitoringtypes.NamespaceRecord {
metricsMap := parseFullQueryResponse(resp, groupBy)
@@ -52,6 +53,10 @@ func buildNamespaceRecords(
}
}
if podStatusCountsForGroup, ok := podStatusCounts[compositeKey]; ok {
record.PodCountsByStatus = podStatusCountsToResponse(podStatusCountsForGroup)
}
if attrs, ok := metadataMap[compositeKey]; ok {
for k, v := range attrs {
record.Meta[k] = v

View File

@@ -23,6 +23,8 @@ var namespacesTableMetricNamesList = []string{
"k8s.pod.cpu.usage",
"k8s.pod.memory.working_set",
"k8s.pod.phase",
"k8s.pod.status_reason",
"k8s.container.status.reason",
}
var namespaceAttrKeysForMetadata = []string{

View File

@@ -26,6 +26,7 @@ func buildNodeRecords(
metadataMap map[string]map[string]string,
nodeConditionCounts map[string]nodeConditionCounts,
podPhaseCounts map[string]podPhaseCounts,
podStatusCounts map[string]podStatusCounts,
) []inframonitoringtypes.NodeRecord {
metricsMap := parseFullQueryResponse(resp, groupBy)
@@ -86,6 +87,10 @@ func buildNodeRecords(
}
}
if podStatusCountsForGroup, ok := podStatusCounts[compositeKey]; ok {
record.PodCountsByStatus = podStatusCountsToResponse(podStatusCountsForGroup)
}
if attrs, ok := metadataMap[compositeKey]; ok {
for k, v := range attrs {
record.Meta[k] = v

View File

@@ -26,6 +26,8 @@ var nodesTableMetricNamesList = []string{
"k8s.node.allocatable_memory",
"k8s.node.condition_ready",
"k8s.pod.phase",
"k8s.pod.status_reason",
"k8s.container.status.reason",
}
var nodeAttrKeysForMetadata = []string{

View File

@@ -26,6 +26,8 @@ func buildPodRecords(
groupBy []qbtypes.GroupByKey,
metadataMap map[string]map[string]string,
phaseCounts map[string]podPhaseCounts,
statusCounts map[string]podStatusCounts,
restartCounts map[string]int64,
reqEnd int64,
) []inframonitoringtypes.PodRecord {
metricsMap := parseFullQueryResponse(resp, groupBy)
@@ -38,6 +40,8 @@ func buildPodRecords(
record := inframonitoringtypes.PodRecord{ // initialize with default values
PodUID: podUID,
PodPhase: inframonitoringtypes.PodPhaseNoData,
PodStatus: inframonitoringtypes.PodStatusNoData,
PodRestarts: -1,
PodCPU: -1,
PodCPURequest: -1,
PodCPULimit: -1,
@@ -95,6 +99,57 @@ func buildPodRecords(
}
}
if statusCountsForGroup, ok := statusCounts[compositeKey]; ok {
record.PodCountsByStatus = podStatusCountsToResponse(statusCountsForGroup)
// In list mode each group is one pod; the count==1 bucket identifies the status.
if isPodUIDInGroupBy {
switch {
case statusCountsForGroup.Pending == 1:
record.PodStatus = inframonitoringtypes.PodStatusPending
case statusCountsForGroup.Running == 1:
record.PodStatus = inframonitoringtypes.PodStatusRunning
case statusCountsForGroup.Failed == 1:
record.PodStatus = inframonitoringtypes.PodStatusFailed
case statusCountsForGroup.Unknown == 1:
record.PodStatus = inframonitoringtypes.PodStatusUnknown
case statusCountsForGroup.CrashLoopBackOff == 1:
record.PodStatus = inframonitoringtypes.PodStatusCrashLoopBackOff
case statusCountsForGroup.ImagePullBackOff == 1:
record.PodStatus = inframonitoringtypes.PodStatusImagePullBackOff
case statusCountsForGroup.ErrImagePull == 1:
record.PodStatus = inframonitoringtypes.PodStatusErrImagePull
case statusCountsForGroup.CreateContainerConfigError == 1:
record.PodStatus = inframonitoringtypes.PodStatusCreateContainerConfigError
case statusCountsForGroup.ContainerCreating == 1:
record.PodStatus = inframonitoringtypes.PodStatusContainerCreating
case statusCountsForGroup.OOMKilled == 1:
record.PodStatus = inframonitoringtypes.PodStatusOOMKilled
case statusCountsForGroup.Completed == 1:
record.PodStatus = inframonitoringtypes.PodStatusCompleted
case statusCountsForGroup.Error == 1:
record.PodStatus = inframonitoringtypes.PodStatusError
case statusCountsForGroup.ContainerCannotRun == 1:
record.PodStatus = inframonitoringtypes.PodStatusContainerCannotRun
case statusCountsForGroup.Evicted == 1:
record.PodStatus = inframonitoringtypes.PodStatusEvicted
case statusCountsForGroup.NodeAffinity == 1:
record.PodStatus = inframonitoringtypes.PodStatusNodeAffinity
case statusCountsForGroup.NodeLost == 1:
record.PodStatus = inframonitoringtypes.PodStatusNodeLost
case statusCountsForGroup.Shutdown == 1:
record.PodStatus = inframonitoringtypes.PodStatusShutdown
case statusCountsForGroup.UnexpectedAdmissionError == 1:
record.PodStatus = inframonitoringtypes.PodStatusUnexpectedAdmissionError
}
}
}
// Restart count: pod's own sum (list mode) or group total (grouped mode).
if restartCountForGroup, ok := restartCounts[compositeKey]; ok {
record.PodRestarts = restartCountForGroup
}
if attrs, ok := metadataMap[compositeKey]; ok {
// podAge only makes sense when pod uid is in groupBy. Otherwise the
// group can contain multiple pods with different start times.
@@ -334,3 +389,519 @@ func (m *module) getPerGroupPodPhaseCounts(
}
return result, nil
}
// getPerGroupPodStatusCountsWithReqMetricChecks gates getPerGroupPodStatusCounts
// on the required metrics being present. If any of podStatusMetricNamesList has
// never been reported, it skips the query and returns a warning instead (the
// status query would otherwise silently degrade to bare phase). Otherwise it
// runs the query. The returned counts map is empty (never nil) when gated off.
func (m *module) getPerGroupPodStatusCountsWithReqMetricChecks(
ctx context.Context,
start, end int64,
filter *qbtypes.Filter,
groupBy []qbtypes.GroupByKey,
pageGroups []map[string]string,
) (map[string]podStatusCounts, *qbtypes.QueryWarnData, error) {
present, err := m.getMetricsExistence(ctx, podStatusMetricNamesList)
if err != nil {
return nil, nil, err
}
var missing []string
for _, name := range podStatusMetricNamesList {
if !present[name] {
missing = append(missing, name)
}
}
if len(missing) > 0 {
warning := &qbtypes.QueryWarnData{
Message: fmt.Sprintf(
"Pod status could not be computed: required metric(s) not found: %s. "+
"Enable the optional k8s.pod.status_reason and k8s.container.status.reason "+
"metrics in the k8s_cluster receiver to see pod statuses.",
strings.Join(missing, ", "),
),
Url: docLinkK8sClusterReceiver,
}
return map[string]podStatusCounts{}, warning, nil
}
counts, err := m.getPerGroupPodStatusCounts(ctx, start, end, filter, groupBy, pageGroups)
if err != nil {
return nil, nil, err
}
return counts, nil, nil
}
// getPerGroupPodStatusCounts computes per-group pod counts bucketed by each
// pod's latest kubectl-style display status in the requested window. Caller
// must ensure the required metrics exist (getPerGroupPodStatusCountsWithReqMetricChecks).
// Pipeline (mirrors getPerGroupPodPhaseCounts, more CTEs):
//
// phase_fps / phase_per_pod: latest k8s.pod.phase per pod (+ groupBy cols).
// pod_reason_fps / pod_reason_per_pod: latest k8s.pod.status_reason per pod.
// container_reason_fps / container_reason_per_pod:
// highest-priority active k8s.container.status.reason per pod.
// pod_status: display status per pod (container > pod reason > phase).
// countPodsPerStatus: per-group uniqExactIf into the fixed status buckets.
//
// Groups absent from the result map have implicit zero counts (caller default).
func (m *module) getPerGroupPodStatusCounts(
ctx context.Context,
start, end int64,
filter *qbtypes.Filter,
groupBy []qbtypes.GroupByKey,
pageGroups []map[string]string,
) (map[string]podStatusCounts, error) {
if len(pageGroups) == 0 || len(groupBy) == 0 {
return map[string]podStatusCounts{}, nil
}
// Merge user filter with page-groups IN clauses.
userFilterExpr := ""
if filter != nil {
userFilterExpr = filter.Expression
}
mergedFilterExpr := mergeFilterExpressions(userFilterExpr, buildPageGroupsFilterExpr(pageGroups))
samplesStartMs, flooredEndMs, tsAdjustedStart, _, localTimeSeriesTable, distributedSamplesTable, _ := alignedMetricWindow(start, end)
valueCol := telemetrymetrics.ValueColumnForSamplesTable(distributedSamplesTable)
// Build the merged filter clause once; it's identical across the three fps
// CTEs, and buildFilterClause hits the metadata store + parses the
// expression, so we don't want to repeat it per CTE. AddWhereClause only
// reads the clause, so the same instance is safe to attach to each builder.
var (
filterClause *sqlbuilder.WhereClause
err error
)
if mergedFilterExpr != "" {
filterClause, err = m.buildFilterClause(ctx, &qbtypes.Filter{Expression: mergedFilterExpr}, start, end)
if err != nil {
return nil, err
}
}
// ----- phase_fps (carries groupBy cols) -----
phaseFps := sqlbuilder.NewSelectBuilder()
phaseFpsCols := []string{
"fingerprint",
fmt.Sprintf("JSONExtractString(labels, %s) AS pod_uid", phaseFps.Var(podUIDAttrKey)),
}
for _, key := range groupBy {
phaseFpsCols = append(phaseFpsCols,
fmt.Sprintf("JSONExtractString(labels, %s) AS %s", phaseFps.Var(key.Name), quoteIdentifier(key.Name)),
)
}
phaseFps.Select(phaseFpsCols...)
phaseFps.From(fmt.Sprintf("%s.%s", telemetrymetrics.DBName, localTimeSeriesTable))
phaseFps.Where(
phaseFps.E("metric_name", podPhaseMetricName),
phaseFps.GE("unix_milli", tsAdjustedStart),
phaseFps.LE("unix_milli", flooredEndMs),
)
if filterClause != nil {
phaseFps.AddWhereClause(filterClause)
}
phaseFpsGroupBy := []string{"fingerprint", "pod_uid"}
for _, key := range groupBy {
phaseFpsGroupBy = append(phaseFpsGroupBy, quoteIdentifier(key.Name))
}
phaseFps.GroupBy(phaseFpsGroupBy...)
phaseFpsSQL, phaseFpsArgs := phaseFps.BuildWithFlavor(sqlbuilder.ClickHouse)
// ----- phase_per_pod -----
phasePerPod := sqlbuilder.NewSelectBuilder()
phasePerPodCols := []string{"fps.pod_uid AS pod_uid"}
for _, key := range groupBy {
col := quoteIdentifier(key.Name)
phasePerPodCols = append(phasePerPodCols, fmt.Sprintf("argMax(fps.%s, samples.unix_milli) AS %s", col, col))
}
phasePerPodCols = append(phasePerPodCols, fmt.Sprintf("argMax(samples.%s, samples.unix_milli) AS phase_value", valueCol))
phasePerPod.Select(phasePerPodCols...)
phasePerPod.From(fmt.Sprintf(
"%s.%s AS samples INNER JOIN phase_fps AS fps ON samples.fingerprint = fps.fingerprint",
telemetrymetrics.DBName, distributedSamplesTable,
))
phasePerPod.Where(
phasePerPod.E("samples.metric_name", podPhaseMetricName),
phasePerPod.GE("samples.unix_milli", samplesStartMs),
phasePerPod.L("samples.unix_milli", flooredEndMs),
"fps.pod_uid != ''",
)
phasePerPod.GroupBy("pod_uid")
phasePerPodSQL, phasePerPodArgs := phasePerPod.BuildWithFlavor(sqlbuilder.ClickHouse)
// ----- pod_reason_fps -----
podReasonFps := sqlbuilder.NewSelectBuilder()
podReasonFps.Select(
"fingerprint",
fmt.Sprintf("JSONExtractString(labels, %s) AS pod_uid", podReasonFps.Var(podUIDAttrKey)),
)
podReasonFps.From(fmt.Sprintf("%s.%s", telemetrymetrics.DBName, localTimeSeriesTable))
podReasonFps.Where(
podReasonFps.E("metric_name", podStatusReasonMetricName),
podReasonFps.GE("unix_milli", tsAdjustedStart),
podReasonFps.LE("unix_milli", flooredEndMs),
)
if filterClause != nil {
podReasonFps.AddWhereClause(filterClause)
}
podReasonFps.GroupBy("fingerprint", "pod_uid")
podReasonFpsSQL, podReasonFpsArgs := podReasonFps.BuildWithFlavor(sqlbuilder.ClickHouse)
// ----- pod_reason_per_pod -----
podReasonPerPod := sqlbuilder.NewSelectBuilder()
podReasonPerPod.Select(
"fps.pod_uid AS pod_uid",
fmt.Sprintf("argMax(samples.%s, samples.unix_milli) AS reason_value", valueCol),
)
podReasonPerPod.From(fmt.Sprintf(
"%s.%s AS samples INNER JOIN pod_reason_fps AS fps ON samples.fingerprint = fps.fingerprint",
telemetrymetrics.DBName, distributedSamplesTable,
))
podReasonPerPod.Where(
podReasonPerPod.E("samples.metric_name", podStatusReasonMetricName),
podReasonPerPod.GE("samples.unix_milli", samplesStartMs),
podReasonPerPod.L("samples.unix_milli", flooredEndMs),
"fps.pod_uid != ''",
)
podReasonPerPod.GroupBy("pod_uid")
podReasonPerPodSQL, podReasonPerPodArgs := podReasonPerPod.BuildWithFlavor(sqlbuilder.ClickHouse)
// ----- container_reason_fps -----
containerReasonFps := sqlbuilder.NewSelectBuilder()
containerReasonFps.Select(
"fingerprint",
fmt.Sprintf("JSONExtractString(labels, %s) AS pod_uid", containerReasonFps.Var(podUIDAttrKey)),
fmt.Sprintf("JSONExtractString(labels, %s) AS container_name", containerReasonFps.Var(containerNameAttrKey)),
fmt.Sprintf("JSONExtractString(labels, %s) AS reason", containerReasonFps.Var(containerStatusReasonAttrKey)),
)
containerReasonFps.From(fmt.Sprintf("%s.%s", telemetrymetrics.DBName, localTimeSeriesTable))
containerReasonFps.Where(
containerReasonFps.E("metric_name", containerStatusReasonMetricName),
containerReasonFps.GE("unix_milli", tsAdjustedStart),
containerReasonFps.LE("unix_milli", flooredEndMs),
)
if filterClause != nil {
containerReasonFps.AddWhereClause(filterClause)
}
containerReasonFps.GroupBy("fingerprint", "pod_uid", "container_name", "reason")
containerReasonFpsSQL, containerReasonFpsArgs := containerReasonFps.BuildWithFlavor(sqlbuilder.ClickHouse)
// ----- container_reason_per_pod -----
// Inner: latest value per (pod, container, reason) -> kills stale
// fingerprints from old container incarnations; keep only active (=1).
// Outer: highest-priority active reason per pod (waiting > terminated).
priorityCase := "CASE fps.reason " +
"WHEN 'CrashLoopBackOff' THEN 8 " +
"WHEN 'ImagePullBackOff' THEN 7 " +
"WHEN 'ErrImagePull' THEN 6 " +
"WHEN 'CreateContainerConfigError' THEN 5 " +
"WHEN 'ContainerCreating' THEN 4 " +
"WHEN 'OOMKilled' THEN 3 " +
"WHEN 'Error' THEN 2 " +
"WHEN 'ContainerCannotRun' THEN 1 " +
"ELSE 0 END"
containerInner := sqlbuilder.NewSelectBuilder()
containerInner.Select(
"fps.pod_uid AS pod_uid",
"fps.container_name AS container_name",
"fps.reason AS reason",
fmt.Sprintf("argMax(samples.%s, samples.unix_milli) AS is_active", valueCol),
priorityCase+" AS priority",
)
containerInner.From(fmt.Sprintf(
"%s.%s AS samples INNER JOIN container_reason_fps AS fps ON samples.fingerprint = fps.fingerprint",
telemetrymetrics.DBName, distributedSamplesTable,
))
containerInner.Where(
containerInner.E("samples.metric_name", containerStatusReasonMetricName),
containerInner.GE("samples.unix_milli", samplesStartMs),
containerInner.L("samples.unix_milli", flooredEndMs),
"fps.pod_uid != ''",
)
containerInner.GroupBy("fps.pod_uid", "fps.container_name", "fps.reason")
containerInner.Having("is_active = 1")
containerInnerSQL, containerInnerArgs := containerInner.BuildWithFlavor(sqlbuilder.ClickHouse)
containerPerPodSQL := fmt.Sprintf(
"SELECT pod_uid, argMax(reason, priority) AS active_reason FROM (%s) GROUP BY pod_uid",
containerInnerSQL,
)
// ----- pod_status (display status per pod) -----
// container reason > pod-level reason > phase fallback. Numeric literals
// match the k8s.pod.status_reason and k8s.pod.phase metric encodings.
displayStatusExpr := "multiIf(" +
"cr.active_reason != '', cr.active_reason, " +
"pr.reason_value = 1, 'Evicted', " +
"pr.reason_value = 2, 'NodeAffinity', " +
"pr.reason_value = 3, 'NodeLost', " +
"pr.reason_value = 4, 'Shutdown', " +
"pr.reason_value = 5, 'UnexpectedAdmissionError', " +
"pp.phase_value = 1, 'Pending', " +
"pp.phase_value = 2, 'Running', " +
"pp.phase_value = 3, 'Completed', " +
"pp.phase_value = 4, 'Failed', " +
"pp.phase_value = 5, 'Unknown', " +
"'Unknown')"
podStatusSelectCols := []string{"pp.pod_uid AS pod_uid"}
for _, key := range groupBy {
col := quoteIdentifier(key.Name)
podStatusSelectCols = append(podStatusSelectCols, fmt.Sprintf("pp.%s AS %s", col, col))
}
podStatusSelectCols = append(podStatusSelectCols, displayStatusExpr+" AS display_status")
podStatusSQL := fmt.Sprintf(
"SELECT %s FROM phase_per_pod AS pp "+
"LEFT JOIN pod_reason_per_pod AS pr ON pp.pod_uid = pr.pod_uid "+
"LEFT JOIN container_reason_per_pod AS cr ON pp.pod_uid = cr.pod_uid",
strings.Join(podStatusSelectCols, ", "),
)
// ----- countPodsPerStatus (outer SELECT) -----
// Fixed status order; MUST match the podStatusCounts assignment in the
// scan loop below.
statusCountCols := []string{
"uniqExactIf(pod_uid, display_status = 'Pending') AS pending_count",
"uniqExactIf(pod_uid, display_status = 'Running') AS running_count",
"uniqExactIf(pod_uid, display_status = 'Failed') AS failed_count",
"uniqExactIf(pod_uid, display_status = 'Unknown') AS unknown_count",
"uniqExactIf(pod_uid, display_status = 'CrashLoopBackOff') AS crash_loop_back_off_count",
"uniqExactIf(pod_uid, display_status = 'ImagePullBackOff') AS image_pull_back_off_count",
"uniqExactIf(pod_uid, display_status = 'ErrImagePull') AS err_image_pull_count",
"uniqExactIf(pod_uid, display_status = 'CreateContainerConfigError') AS create_container_config_error_count",
"uniqExactIf(pod_uid, display_status = 'ContainerCreating') AS container_creating_count",
"uniqExactIf(pod_uid, display_status = 'OOMKilled') AS oom_killed_count",
"uniqExactIf(pod_uid, display_status = 'Completed') AS completed_count",
"uniqExactIf(pod_uid, display_status = 'Error') AS error_count",
"uniqExactIf(pod_uid, display_status = 'ContainerCannotRun') AS container_cannot_run_count",
"uniqExactIf(pod_uid, display_status = 'Evicted') AS evicted_count",
"uniqExactIf(pod_uid, display_status = 'NodeAffinity') AS node_affinity_count",
"uniqExactIf(pod_uid, display_status = 'NodeLost') AS node_lost_count",
"uniqExactIf(pod_uid, display_status = 'Shutdown') AS shutdown_count",
"uniqExactIf(pod_uid, display_status = 'UnexpectedAdmissionError') AS unexpected_admission_error_count",
}
countSelectCols := make([]string, 0, len(groupBy)+len(statusCountCols))
countGroupBy := make([]string, 0, len(groupBy))
for _, key := range groupBy {
col := quoteIdentifier(key.Name)
countSelectCols = append(countSelectCols, col)
countGroupBy = append(countGroupBy, col)
}
countSelectCols = append(countSelectCols, statusCountCols...)
countSQL := fmt.Sprintf(
"SELECT %s FROM pod_status GROUP BY %s",
strings.Join(countSelectCols, ", "),
strings.Join(countGroupBy, ", "),
)
// Combine CTEs + outer. Arg order mirrors CTE declaration order.
cteFragments := []string{
fmt.Sprintf("phase_fps AS (%s)", phaseFpsSQL),
fmt.Sprintf("phase_per_pod AS (%s)", phasePerPodSQL),
fmt.Sprintf("pod_reason_fps AS (%s)", podReasonFpsSQL),
fmt.Sprintf("pod_reason_per_pod AS (%s)", podReasonPerPodSQL),
fmt.Sprintf("container_reason_fps AS (%s)", containerReasonFpsSQL),
fmt.Sprintf("container_reason_per_pod AS (%s)", containerPerPodSQL),
fmt.Sprintf("pod_status AS (%s)", podStatusSQL),
}
finalSQL := querybuilder.CombineCTEs(cteFragments) + countSQL
finalArgs := querybuilder.PrependArgs([][]any{
phaseFpsArgs, phasePerPodArgs,
podReasonFpsArgs, podReasonPerPodArgs,
containerReasonFpsArgs, containerInnerArgs,
}, nil)
rows, err := m.telemetryStore.ClickhouseDB().Query(ctx, finalSQL, finalArgs...)
if err != nil {
return nil, err
}
defer rows.Close()
result := make(map[string]podStatusCounts)
for rows.Next() {
groupVals := make([]string, len(groupBy))
counts := make([]uint64, len(statusCountCols))
scanPtrs := make([]any, 0, len(groupBy)+len(statusCountCols))
for i := range groupVals {
scanPtrs = append(scanPtrs, &groupVals[i])
}
for i := range counts {
scanPtrs = append(scanPtrs, &counts[i])
}
if err := rows.Scan(scanPtrs...); err != nil {
return nil, err
}
result[compositeKeyFromList(groupVals)] = podStatusCounts{
Pending: int(counts[0]),
Running: int(counts[1]),
Failed: int(counts[2]),
Unknown: int(counts[3]),
CrashLoopBackOff: int(counts[4]),
ImagePullBackOff: int(counts[5]),
ErrImagePull: int(counts[6]),
CreateContainerConfigError: int(counts[7]),
ContainerCreating: int(counts[8]),
OOMKilled: int(counts[9]),
Completed: int(counts[10]),
Error: int(counts[11]),
ContainerCannotRun: int(counts[12]),
Evicted: int(counts[13]),
NodeAffinity: int(counts[14]),
NodeLost: int(counts[15]),
Shutdown: int(counts[16]),
UnexpectedAdmissionError: int(counts[17]),
}
}
if err := rows.Err(); err != nil {
return nil, err
}
return result, nil
}
// getPerGroupPodRestartCounts computes the absolute pod restart count per group
// from k8s.container.restarts (default-enabled, so no existence gate). In list
// mode (groupBy=pod_uid) each group is one pod -> its restart count; in grouped
// mode it's the summed restarts across all pods in the group. Mirrors DD:
// argMax(value, unix_milli) per (pod, container) takes the current cumulative
// count from the latest incarnation (handling fingerprint staleness/pruning),
// then sum.
//
// restart_fps: fp ↔ (pod_uid, container_name, groupBy cols) from time_series.
// container_restarts: INNER JOIN samples, latest restartCount per (pod, container).
// (outer): per-group sum(restart_count).
//
// Groups absent from the result map have no data (caller default).
func (m *module) getPerGroupPodRestartCounts(
ctx context.Context,
start, end int64,
filter *qbtypes.Filter,
groupBy []qbtypes.GroupByKey,
pageGroups []map[string]string,
) (map[string]int64, error) {
if len(pageGroups) == 0 || len(groupBy) == 0 {
return map[string]int64{}, nil
}
// Merge user filter with page-groups IN clauses.
userFilterExpr := ""
if filter != nil {
userFilterExpr = filter.Expression
}
mergedFilterExpr := mergeFilterExpressions(userFilterExpr, buildPageGroupsFilterExpr(pageGroups))
samplesStartMs, flooredEndMs, tsAdjustedStart, _, localTimeSeriesTable, distributedSamplesTable, _ := alignedMetricWindow(start, end)
valueCol := telemetrymetrics.ValueColumnForSamplesTable(distributedSamplesTable)
var (
filterClause *sqlbuilder.WhereClause
err error
)
if mergedFilterExpr != "" {
filterClause, err = m.buildFilterClause(ctx, &qbtypes.Filter{Expression: mergedFilterExpr}, start, end)
if err != nil {
return nil, err
}
}
// ----- restart_fps (carries groupBy cols) -----
restartFps := sqlbuilder.NewSelectBuilder()
restartFpsCols := []string{
"fingerprint",
fmt.Sprintf("JSONExtractString(labels, %s) AS pod_uid", restartFps.Var(podUIDAttrKey)),
fmt.Sprintf("JSONExtractString(labels, %s) AS container_name", restartFps.Var(containerNameAttrKey)),
}
for _, key := range groupBy {
restartFpsCols = append(restartFpsCols,
fmt.Sprintf("JSONExtractString(labels, %s) AS %s", restartFps.Var(key.Name), quoteIdentifier(key.Name)),
)
}
restartFps.Select(restartFpsCols...)
restartFps.From(fmt.Sprintf("%s.%s", telemetrymetrics.DBName, localTimeSeriesTable))
restartFps.Where(
restartFps.E("metric_name", containerRestartsMetricName),
restartFps.GE("unix_milli", tsAdjustedStart),
restartFps.LE("unix_milli", flooredEndMs),
)
if filterClause != nil {
restartFps.AddWhereClause(filterClause)
}
restartFpsGroupBy := []string{"fingerprint", "pod_uid", "container_name"}
for _, key := range groupBy {
restartFpsGroupBy = append(restartFpsGroupBy, quoteIdentifier(key.Name))
}
restartFps.GroupBy(restartFpsGroupBy...)
restartFpsSQL, restartFpsArgs := restartFps.BuildWithFlavor(sqlbuilder.ClickHouse)
// ----- container_restarts (latest cumulative count per container) -----
containerRestarts := sqlbuilder.NewSelectBuilder()
containerRestartsCols := []string{
"fps.pod_uid AS pod_uid",
"fps.container_name AS container_name",
}
for _, key := range groupBy {
col := quoteIdentifier(key.Name)
containerRestartsCols = append(containerRestartsCols, fmt.Sprintf("argMax(fps.%s, samples.unix_milli) AS %s", col, col))
}
containerRestartsCols = append(containerRestartsCols, fmt.Sprintf("argMax(samples.%s, samples.unix_milli) AS restart_count", valueCol))
containerRestarts.Select(containerRestartsCols...)
containerRestarts.From(fmt.Sprintf(
"%s.%s AS samples INNER JOIN restart_fps AS fps ON samples.fingerprint = fps.fingerprint",
telemetrymetrics.DBName, distributedSamplesTable,
))
containerRestarts.Where(
containerRestarts.E("samples.metric_name", containerRestartsMetricName),
containerRestarts.GE("samples.unix_milli", samplesStartMs),
containerRestarts.L("samples.unix_milli", flooredEndMs),
"fps.pod_uid != ''",
)
containerRestarts.GroupBy("fps.pod_uid", "fps.container_name")
containerRestartsSQL, containerRestartsArgs := containerRestarts.BuildWithFlavor(sqlbuilder.ClickHouse)
// ----- outer: per-group sum across containers (hence across pods) -----
sumSelectCols := make([]string, 0, len(groupBy)+1)
sumGroupBy := make([]string, 0, len(groupBy))
for _, key := range groupBy {
col := quoteIdentifier(key.Name)
sumSelectCols = append(sumSelectCols, col)
sumGroupBy = append(sumGroupBy, col)
}
sumSelectCols = append(sumSelectCols, "sum(restart_count) AS total_restarts")
sumSQL := fmt.Sprintf(
"SELECT %s FROM container_restarts GROUP BY %s",
strings.Join(sumSelectCols, ", "),
strings.Join(sumGroupBy, ", "),
)
cteFragments := []string{
fmt.Sprintf("restart_fps AS (%s)", restartFpsSQL),
fmt.Sprintf("container_restarts AS (%s)", containerRestartsSQL),
}
finalSQL := querybuilder.CombineCTEs(cteFragments) + sumSQL
finalArgs := querybuilder.PrependArgs([][]any{restartFpsArgs, containerRestartsArgs}, nil)
rows, err := m.telemetryStore.ClickhouseDB().Query(ctx, finalSQL, finalArgs...)
if err != nil {
return nil, err
}
defer rows.Close()
result := make(map[string]int64)
for rows.Next() {
groupVals := make([]string, len(groupBy))
var totalRestarts float64
scanPtrs := make([]any, 0, len(groupBy)+1)
for i := range groupVals {
scanPtrs = append(scanPtrs, &groupVals[i])
}
scanPtrs = append(scanPtrs, &totalRestarts)
if err := rows.Scan(scanPtrs...); err != nil {
return nil, err
}
result[compositeKeyFromList(groupVals)] = int64(totalRestarts)
}
if err := rows.Err(); err != nil {
return nil, err
}
return result, nil
}

View File

@@ -8,11 +8,26 @@ import (
)
const (
podUIDAttrKey = "k8s.pod.uid"
podStartTimeAttrKey = "k8s.pod.start_time"
podPhaseMetricName = "k8s.pod.phase"
podUIDAttrKey = "k8s.pod.uid"
podStartTimeAttrKey = "k8s.pod.start_time"
containerNameAttrKey = "k8s.container.name"
containerStatusReasonAttrKey = "k8s.container.status.reason"
podPhaseMetricName = "k8s.pod.phase"
podStatusReasonMetricName = "k8s.pod.status_reason"
containerStatusReasonMetricName = "k8s.container.status.reason"
containerRestartsMetricName = "k8s.container.restarts"
)
// podStatusMetricNamesList are the metrics required to derive the kubectl-style
// pod display status. All three must be present (getMetricsExistence gate)
// before getPerGroupPodStatusCounts runs.
var podStatusMetricNamesList = []string{
podPhaseMetricName,
podStatusReasonMetricName,
containerStatusReasonMetricName,
}
var podUIDGroupByKey = qbtypes.GroupByKey{
TelemetryFieldKey: telemetrytypes.TelemetryFieldKey{
Name: podUIDAttrKey,
@@ -29,6 +44,9 @@ var podsTableMetricNamesList = []string{
"k8s.pod.memory_request_utilization",
"k8s.pod.memory_limit_utilization",
"k8s.pod.phase",
"k8s.pod.status_reason",
"k8s.container.status.reason",
"k8s.container.restarts",
}
var podAttrKeysForMetadata = []string{

View File

@@ -19,6 +19,7 @@ func buildStatefulSetRecords(
groupBy []qbtypes.GroupByKey,
metadataMap map[string]map[string]string,
phaseCounts map[string]podPhaseCounts,
podStatusCounts map[string]podStatusCounts,
) []inframonitoringtypes.StatefulSetRecord {
metricsMap := parseFullQueryResponse(resp, groupBy)
@@ -77,6 +78,10 @@ func buildStatefulSetRecords(
}
}
if podStatusCountsForGroup, ok := podStatusCounts[compositeKey]; ok {
record.PodCountsByStatus = podStatusCountsToResponse(podStatusCountsForGroup)
}
if attrs, ok := metadataMap[compositeKey]; ok {
for k, v := range attrs {
record.Meta[k] = v

View File

@@ -23,6 +23,8 @@ var statefulSetNameGroupByKey = qbtypes.GroupByKey{
// response to short-circuit cleanly when the phase metric is absent.
var statefulSetsTableMetricNamesList = []string{
"k8s.pod.phase",
"k8s.pod.status_reason",
"k8s.container.status.reason",
"k8s.pod.cpu.usage",
"k8s.pod.cpu_request_utilization",
"k8s.pod.cpu_limit_utilization",

View File

@@ -29,7 +29,7 @@ type module struct {
}
func NewModule(store llmpricingruletypes.Store, flagger flagger.Flagger, querier querier.Querier) llmpricingrule.Module {
return &module{store: store, flagger: flagger}
return &module{store: store, flagger: flagger, querier: querier}
}
func (module *module) List(ctx context.Context, orgID valuer.UUID, offset, limit int, search string, isOverride *bool) ([]*llmpricingruletypes.LLMPricingRule, int, error) {

View File

@@ -10,6 +10,7 @@ import (
"strings"
"github.com/SigNoz/signoz/pkg/telemetrytraces"
"github.com/SigNoz/signoz/pkg/types/querybuildertypes/querybuildertypesv5"
)
type migrateCommon struct {
@@ -23,119 +24,10 @@ func NewMigrateCommon(logger *slog.Logger) *migrateCommon {
}
}
// WrapInV5Envelope delegates to querybuildertypesv5.WrapInV5Envelope; the
// transform is stateless and shared with the v1→v2 dashboard conversion.
func (migration *migrateCommon) WrapInV5Envelope(name string, queryMap map[string]any, queryType string) map[string]any {
// Create a properly structured v5 query
v5Query := map[string]any{
"name": name,
"disabled": queryMap["disabled"],
"legend": queryMap["legend"],
}
if name != queryMap["expression"] {
// formula
queryType = "builder_formula"
v5Query["expression"] = queryMap["expression"]
if functions, ok := queryMap["functions"]; ok {
v5Query["functions"] = functions
}
return map[string]any{
"type": queryType,
"spec": v5Query,
}
}
// Add signal based on data source
if dataSource, ok := queryMap["dataSource"].(string); ok {
switch dataSource {
case "traces":
v5Query["signal"] = "traces"
case "logs":
v5Query["signal"] = "logs"
case "metrics":
v5Query["signal"] = "metrics"
}
}
if stepInterval, ok := queryMap["stepInterval"]; ok {
v5Query["stepInterval"] = stepInterval
}
if aggregations, ok := queryMap["aggregations"]; ok {
v5Query["aggregations"] = aggregations
}
if filter, ok := queryMap["filter"]; ok {
v5Query["filter"] = filter
}
// Copy groupBy with proper structure
if groupBy, ok := queryMap["groupBy"].([]any); ok {
v5GroupBy := make([]any, len(groupBy))
for i, gb := range groupBy {
if gbMap, ok := gb.(map[string]any); ok {
v5GroupBy[i] = map[string]any{
"name": gbMap["key"],
"fieldDataType": gbMap["dataType"],
"fieldContext": gbMap["type"],
}
}
}
v5Query["groupBy"] = v5GroupBy
}
// Copy orderBy with proper structure
if orderBy, ok := queryMap["orderBy"].([]any); ok {
v5OrderBy := make([]any, len(orderBy))
for i, ob := range orderBy {
if obMap, ok := ob.(map[string]any); ok {
v5OrderBy[i] = map[string]any{
"key": map[string]any{
"name": obMap["columnName"],
"fieldDataType": obMap["dataType"],
"fieldContext": obMap["type"],
},
"direction": obMap["order"],
}
}
}
v5Query["order"] = v5OrderBy
}
// Copy selectColumns as selectFields
if selectColumns, ok := queryMap["selectColumns"].([]any); ok {
v5SelectFields := make([]any, len(selectColumns))
for i, col := range selectColumns {
if colMap, ok := col.(map[string]any); ok {
v5SelectFields[i] = map[string]any{
"name": colMap["key"],
"fieldDataType": colMap["dataType"],
"fieldContext": colMap["type"],
}
}
}
v5Query["selectFields"] = v5SelectFields
}
// Copy limit and offset
if limit, ok := queryMap["limit"]; ok {
v5Query["limit"] = limit
}
if offset, ok := queryMap["offset"]; ok {
v5Query["offset"] = offset
}
if having, ok := queryMap["having"]; ok {
v5Query["having"] = having
}
if functions, ok := queryMap["functions"]; ok {
v5Query["functions"] = functions
}
return map[string]any{
"type": queryType,
"spec": v5Query,
}
return querybuildertypesv5.WrapInV5Envelope(name, queryMap, queryType)
}
func (mc *migrateCommon) updateQueryData(ctx context.Context, queryData map[string]any, version, widgetType string) bool {

View File

@@ -0,0 +1,353 @@
// nolint
package transition
import (
"context"
"log/slog"
)
// ══════════════════════════════════════════════
// Shape-safe (idempotent) migration
// ══════════════════════════════════════════════
//
// A copy of the Migrate → updateWidget → updateQueryData chain with the
// "uniformly v4 input" assumption removed, so it is safe on a dashboard whose
// `version` tag lies (a "v5"-labelled dashboard with un-upgraded, possibly mixed,
// bodies — the v1→v2 converter's case). Versus the original: no version gate, and
// each step acts only on the pre-v5 shape (leaving a v5 field alone), so it is
// idempotent. The original Migrate is left unchanged (battle-tested, no test net).
// The *ShapeSafe methods below each note the original they copy; the reused steps
// (createFilterExpression, fixGroupBy, buildAggregationExpression, orderByExpr) are
// already v5-safe.
// MigrateQueryDataShapeSafe is the per-query entry point (the core of
// updateQueryDataShapeSafe) for callers that process queries one at a time (the
// v1→v2 converter). widgetType is the v1 panelTypes (metric reduceTo on tables);
// "" is safe.
func (m *dashboardMigrateV5) MigrateQueryDataShapeSafe(ctx context.Context, queryData map[string]any, widgetType string) bool {
return m.updateQueryDataShapeSafe(ctx, queryData, widgetType)
}
// updateQueryDataShapeSafe copies updateQueryData, with each destructive step
// guarded to act only on the pre-v5 shape (see the file header).
func (mc *migrateCommon) updateQueryDataShapeSafe(ctx context.Context, queryData map[string]any, widgetType string) bool {
updated := false
aggregateOp, _ := queryData["aggregateOperator"].(string)
hasAggregation := aggregateOp != "" && aggregateOp != "noop"
if mc.createAggregationsShapeSafe(ctx, queryData, widgetType) {
updated = true
}
// createFilterExpression only touches v4 `filters`; skip if a v5 `filter` exists.
if _, hasFilter := queryData["filter"]; !hasFilter {
if mc.createFilterExpression(ctx, queryData) {
updated = true
}
}
if mc.fixGroupBy(queryData) {
updated = true
}
if mc.createHavingExpressionShapeSafe(queryData) {
updated = true
}
if hasAggregation {
if orderBy, ok := queryData["orderBy"].([]any); ok && orderByIsPreV5(orderBy) {
newOrderBy := make([]any, 0)
for _, order := range orderBy {
if orderMap, ok := order.(map[string]any); ok {
columnName, _ := orderMap["columnName"].(string)
// skip timestamp, id (logs, traces), samples(metrics) ordering for aggregation queries
if columnName != "timestamp" && columnName != "samples" && columnName != "id" {
if columnName == "#SIGNOZ_VALUE" {
if expr, has := mc.orderByExpr(queryData); has {
orderMap["columnName"] = expr
}
} else {
// if the order by key is not part of the group by keys, remove it
present := false
groupBy, ok := queryData["groupBy"].([]any)
if !ok {
return false
}
for idx := range groupBy {
item, ok := groupBy[idx].(map[string]any)
if !ok {
continue
}
key, ok := item["key"].(string)
if !ok {
continue
}
if key == columnName {
present = true
}
}
if !present {
mc.logger.WarnContext(ctx, "found a order by without group by, skipping", slog.String("order_col_name", columnName))
continue
}
}
newOrderBy = append(newOrderBy, orderMap)
}
}
}
queryData["orderBy"] = newOrderBy
updated = true
}
} else {
dataSource, _ := queryData["dataSource"].(string)
if orderBy, ok := queryData["orderBy"].([]any); ok && orderByIsPreV5(orderBy) {
newOrderBy := make([]any, 0)
for _, order := range orderBy {
if orderMap, ok := order.(map[string]any); ok {
columnName, _ := orderMap["columnName"].(string)
// skip id and timestamp for (traces)
if (columnName == "id" || columnName == "timestamp") && dataSource == "traces" {
mc.logger.InfoContext(ctx, "skipping `id` order by for traces")
continue
}
// skip id for (logs)
if (columnName == "id" || columnName == "timestamp") && dataSource == "logs" {
mc.logger.InfoContext(ctx, "skipping `id`/`timestamp` order by for logs")
continue
}
newOrderBy = append(newOrderBy, orderMap)
}
}
queryData["orderBy"] = newOrderBy
updated = true
}
}
// Only the `&& functionsArePreV5(functions)` guard differs from updateQueryData.
if functions, ok := queryData["functions"].([]any); ok && functionsArePreV5(functions) {
v5Functions := make([]any, len(functions))
for i, fn := range functions {
if fnMap, ok := fn.(map[string]any); ok {
v5Function := map[string]any{
"name": fnMap["name"],
}
// Convert args from v4 format to v5 FunctionArg format
if args, ok := fnMap["args"].([]any); ok {
v5Args := make([]any, len(args))
for j, arg := range args {
// In v4, args were just values. In v5, they are FunctionArg objects
v5Args[j] = map[string]any{
"name": "", // v4 didn't have named args
"value": arg,
}
}
v5Function["args"] = v5Args
}
// Handle namedArgs if present (some functions might have used this)
if namedArgs, ok := fnMap["namedArgs"].(map[string]any); ok {
// Convert named args to the new format
existingArgs, _ := v5Function["args"].([]any)
if existingArgs == nil {
existingArgs = []any{}
}
for name, value := range namedArgs {
existingArgs = append(existingArgs, map[string]any{
"name": name,
"value": value,
})
}
v5Function["args"] = existingArgs
}
v5Functions[i] = v5Function
}
}
queryData["functions"] = v5Functions
updated = true
}
delete(queryData, "aggregateOperator")
delete(queryData, "aggregateAttribute")
delete(queryData, "temporality")
delete(queryData, "timeAggregation")
delete(queryData, "spaceAggregation")
delete(queryData, "reduceTo")
delete(queryData, "filters")
delete(queryData, "ShiftBy")
delete(queryData, "IsAnomaly")
delete(queryData, "QueriesUsedInFormula")
delete(queryData, "seriesAggregation")
return updated
}
// createHavingExpressionShapeSafe copies createHavingExpression but leaves an
// already-v5 having:{expression} alone instead of wiping it.
func (mc *migrateCommon) createHavingExpressionShapeSafe(queryData map[string]any) bool {
if _, ok := queryData["having"].(map[string]any); ok {
return false // already v5-shaped
}
having, ok := queryData["having"].([]any)
if !ok || len(having) == 0 {
queryData["having"] = map[string]any{"expression": ""}
return true
}
dataSource, _ := queryData["dataSource"].(string)
for idx := range having {
if havingItem, ok := having[idx].(map[string]any); ok {
havingCol, has := mc.orderByExpr(queryData)
if has {
havingItem["columnName"] = havingCol
havingItem["key"] = map[string]any{"key": havingCol}
}
having[idx] = havingItem
}
}
queryData["having"] = map[string]any{"expression": mc.buildExpression(context.Background(), having, "AND", dataSource)}
return true
}
// createAggregationsShapeSafe copies createAggregations but skips a query that
// already has a v5 aggregations[], and picks the metric time/space aggregation
// from the body's shape (has timeAggregation/spaceAggregation?) rather than the
// version tag.
func (mc *migrateCommon) createAggregationsShapeSafe(ctx context.Context, queryData map[string]any, widgetType string) bool {
if aggs, ok := queryData["aggregations"].([]any); ok && len(aggs) > 0 {
return false // already v5-shaped
}
aggregateOp, hasOp := queryData["aggregateOperator"].(string)
aggregateAttr, hasAttr := queryData["aggregateAttribute"].(map[string]any)
dataSource, _ := queryData["dataSource"].(string)
if aggregateOp == "noop" && dataSource != "metrics" {
return false
}
if !hasOp || !hasAttr {
return false
}
var aggregation map[string]any
switch dataSource {
case "metrics":
_, hasTime := queryData["timeAggregation"]
_, hasSpace := queryData["spaceAggregation"]
if hasTime || hasSpace { // acts as a check for v4 shape: the body carries its own time/space aggregation.
if _, ok := queryData["spaceAggregation"]; !ok {
queryData["spaceAggregation"] = aggregateOp
}
aggregation = map[string]any{
"metricName": aggregateAttr["key"],
"temporality": queryData["temporality"],
"timeAggregation": queryData["timeAggregation"],
"spaceAggregation": queryData["spaceAggregation"],
}
if reduceTo, ok := queryData["reduceTo"].(string); ok {
aggregation["reduceTo"] = reduceTo
}
} else {
// v3 shape: derive time/space from the compound operator.
var timeAgg, spaceAgg, reduceTo string
switch aggregateOp {
case "sum_rate", "rate_sum":
timeAgg, spaceAgg, reduceTo = "rate", "sum", "sum"
case "avg_rate", "rate_avg":
timeAgg, spaceAgg, reduceTo = "rate", "avg", "avg"
case "min_rate", "rate_min":
timeAgg, spaceAgg, reduceTo = "rate", "min", "min"
case "max_rate", "rate_max":
timeAgg, spaceAgg, reduceTo = "rate", "max", "max"
case "hist_quantile_50":
timeAgg, spaceAgg, reduceTo = "", "p50", "avg"
case "hist_quantile_75":
timeAgg, spaceAgg, reduceTo = "", "p75", "avg"
case "hist_quantile_90":
timeAgg, spaceAgg, reduceTo = "", "p90", "avg"
case "hist_quantile_95":
timeAgg, spaceAgg, reduceTo = "", "p95", "avg"
case "hist_quantile_99":
timeAgg, spaceAgg, reduceTo = "", "p99", "avg"
case "rate":
timeAgg, spaceAgg, reduceTo = "rate", "sum", "sum"
case "p99", "p90", "p75", "p50", "p25", "p20", "p10", "p05":
mc.logger.InfoContext(ctx, "found invalid config")
timeAgg, spaceAgg, reduceTo = "avg", "avg", "avg"
case "min":
timeAgg, spaceAgg, reduceTo = "min", "min", "min"
case "max":
timeAgg, spaceAgg, reduceTo = "max", "max", "max"
case "avg":
timeAgg, spaceAgg, reduceTo = "avg", "avg", "avg"
case "sum":
timeAgg, spaceAgg, reduceTo = "sum", "sum", "sum"
case "count":
timeAgg, spaceAgg, reduceTo = "count", "sum", "sum"
case "count_distinct":
timeAgg, spaceAgg, reduceTo = "count_distinct", "sum", "sum"
case "noop":
mc.logger.WarnContext(ctx, "noop found in the aggregation data")
timeAgg, spaceAgg, reduceTo = "max", "max", "max"
}
aggregation = map[string]any{
"metricName": aggregateAttr["key"],
"temporality": queryData["temporality"],
"timeAggregation": timeAgg,
"spaceAggregation": spaceAgg,
}
if widgetType == "table" {
aggregation["reduceTo"] = reduceTo
} else if reduceTo, ok := queryData["reduceTo"].(string); ok {
aggregation["reduceTo"] = reduceTo
}
}
case "logs", "traces":
aggregation = map[string]any{"expression": mc.buildAggregationExpression(aggregateOp, aggregateAttr)}
default:
return false
}
queryData["aggregations"] = []any{aggregation}
return true
}
// orderByIsPreV5 reports whether an orderBy slice is still in the v4 shape (an
// entry carries "columnName"); a v5 orderBy uses {key:{name}, direction}.
func orderByIsPreV5(orderBy []any) bool {
for _, o := range orderBy {
if m, ok := o.(map[string]any); ok {
if _, has := m["columnName"]; has {
return true
}
}
}
return false
}
// functionsArePreV5 reports whether a functions slice is still in the v4 shape
// (args are raw values); a v5 function's args are {name,value} objects.
func functionsArePreV5(functions []any) bool {
for _, f := range functions {
if m, ok := f.(map[string]any); ok {
args, ok := m["args"].([]any)
if !ok || len(args) == 0 {
continue
}
_, argIsObject := args[0].(map[string]any)
return !argIsObject
}
}
return false
}

View File

@@ -7,7 +7,6 @@ import (
"time"
"github.com/SigNoz/signoz/pkg/errors"
"github.com/SigNoz/signoz/pkg/transition"
"github.com/SigNoz/signoz/pkg/types"
"github.com/SigNoz/signoz/pkg/types/querybuildertypes/querybuildertypesv5"
"github.com/SigNoz/signoz/pkg/valuer"
@@ -22,6 +21,7 @@ var (
ErrCodeDashboardInvalidSource = errors.MustNewCode("dashboard_invalid_source")
ErrCodeDashboardImmutable = errors.MustNewCode("dashboard_immutable")
ErrCodeDashboardInvalidPatch = errors.MustNewCode("dashboard_invalid_patch")
ErrCodeDashboardMigrationFailed = errors.MustNewCode("dashboard_migration_failed")
)
type StorableDashboard struct {
@@ -406,27 +406,26 @@ func (dashboard *Dashboard) GetWidgetQuery(startTime, endTime, widgetIndex uint6
widgetData := data.Widgets[widgetIndex]
switch widgetData.Query.QueryType {
case "builder":
migrate := transition.NewMigrateCommon(logger)
for _, query := range widgetData.Query.Builder.QueryData {
queryName, ok := query["queryName"].(string)
if !ok {
return nil, errors.New(errors.TypeInvalidInput, ErrCodeDashboardInvalidWidgetQuery, "cannot type cast query name as string")
}
compositeQueries = append(compositeQueries, migrate.WrapInV5Envelope(queryName, query, "builder_query"))
compositeQueries = append(compositeQueries, querybuildertypesv5.WrapInV5Envelope(queryName, query, "builder_query"))
}
for _, query := range widgetData.Query.Builder.QueryFormulas {
queryName, ok := query["queryName"].(string)
if !ok {
return nil, errors.New(errors.TypeInvalidInput, ErrCodeDashboardInvalidWidgetQuery, "cannot type cast query name as string")
}
compositeQueries = append(compositeQueries, migrate.WrapInV5Envelope(queryName, query, "builder_formula"))
compositeQueries = append(compositeQueries, querybuildertypesv5.WrapInV5Envelope(queryName, query, "builder_formula"))
}
for _, query := range widgetData.Query.Builder.QueryTraceOperator {
queryName, ok := query["queryName"].(string)
if !ok {
return nil, errors.New(errors.TypeInvalidInput, ErrCodeDashboardInvalidWidgetQuery, "cannot type cast query name as string")
}
compositeQueries = append(compositeQueries, migrate.WrapInV5Envelope(queryName, query, "builder_trace_operator"))
compositeQueries = append(compositeQueries, querybuildertypesv5.WrapInV5Envelope(queryName, query, "builder_trace_operator"))
}
case "clickhouse_sql":
for _, query := range widgetData.Query.ClickhouseSQL {

View File

@@ -1060,6 +1060,34 @@ func TestValidateRequiredFields(t *testing.T) {
}
}
// TestThresholdZeroValueAcceptedMissingRejected documents the *float64 Value:
// a threshold at 0 (or 0.0) is valid, because the pointer lets validate:"required"
// tell a present zero (non-nil) from an absent value (nil) — while a genuinely
// missing value is still rejected.
func TestThresholdZeroValueAcceptedMissingRejected(t *testing.T) {
numberPanel := func(thresholdSpec string) string {
return `{
"panels": {"p1": {"kind": "Panel", "spec": {
"plugin": {"kind": "signoz/NumberPanel", "spec": {"thresholds": [` + thresholdSpec + `]}},
"queries": [{"kind": "time_series", "spec": {"plugin": {"kind": "signoz/PromQLQuery", "spec": {"name": "A", "query": "up"}}}}]
}}},
"layouts": []
}`
}
_, errZero := unmarshalDashboard([]byte(numberPanel(`{"value": 0, "operator": "above", "format": "text", "color": "Red"}`)))
require.NoError(t, errZero, `a threshold "value": 0 is valid`)
// "value": 0.0 is the same float64 zero as "value": 0 — JSON has one number
// type — and is accepted identically.
_, errZeroFloat := unmarshalDashboard([]byte(numberPanel(`{"value": 0.0, "operator": "above", "format": "text", "color": "Red"}`)))
require.NoError(t, errZeroFloat, `"value": 0.0 is the same valid zero`)
_, errMissing := unmarshalDashboard([]byte(numberPanel(`{"operator": "above", "format": "text", "color": "Red"}`)))
require.Error(t, errMissing, "a genuinely missing value is still rejected")
require.Contains(t, errMissing.Error(), "Value")
}
func TestTimeSeriesPanelDefaults(t *testing.T) {
data := []byte(`{
"panels": {

View File

@@ -251,14 +251,20 @@ type Legend struct {
}
type ThresholdWithLabel struct {
Value float64 `json:"value" validate:"required" required:"true"`
Unit string `json:"unit"`
Color string `json:"color" validate:"required" required:"true"`
Label string `json:"label"`
// Value is a pointer so a threshold at 0 is valid: validate:"required" treats
// the float64 zero as "missing", but a non-nil *float64 to 0 passes (and nil
// still fails, so a genuinely absent value is still rejected). nullable:"false"
// keeps it a plain required number in the schema — it is never null in valid
// data (validation rejects nil), so the pointer must not leak as `number|null`.
Value *float64 `json:"value" validate:"required" required:"true" nullable:"false"`
Unit string `json:"unit"`
Color string `json:"color" validate:"required" required:"true"`
Label string `json:"label"`
}
type ComparisonThreshold struct {
Value float64 `json:"value" validate:"required" required:"true"`
// Value is a pointer so a threshold at 0 is valid (see ThresholdWithLabel.Value).
Value *float64 `json:"value" validate:"required" required:"true" nullable:"false"`
Operator ComparisonOperator `json:"operator"`
Unit string `json:"unit"`
Color string `json:"color" validate:"required" required:"true"`

View File

@@ -0,0 +1,94 @@
package dashboardtypes
import (
"encoding/json"
"github.com/SigNoz/signoz/pkg/errors"
)
// V1 → V2 migration. The v1 storable shape is the frontend's `DashboardData`
// (see frontend/src/types/api/dashboard/getAll.ts); v2 is DashboardV2 /
// DashboardSpec.
//
// Assumes the v1 widget query data has already been migrated to v5 shape
// (transition.dashboardMigrateV5). Pre-v5 builder queries will produce
// invalid v2 envelopes — run the v4→v5 migration first.
//
// The conversion is split across sibling files by concern:
// - perses_v1_to_v2_tags.go tags
// - perses_v1_to_v2_panels.go widgets → panels (+ panel field mappers)
// - perses_v1_to_v2_queries.go widget queries
// - perses_v1_to_v2_layouts.go grid layouts and sections
// - perses_v1_to_v2_variables.go variables
// - perses_v1_to_v2_decoder.go v1Decoder: typed field reads + malformed-field detection
// ══════════════════════════════════════════════
// Entry point
// ══════════════════════════════════════════════
func (storable StorableDashboard) IsV2() bool {
metadata, _ := storable.Data["metadata"].(map[string]any)
if metadata == nil {
return false
}
version, _ := metadata["schemaVersion"].(string)
return version == SchemaVersion
}
func (storable StorableDashboard) ConvertV1ToV2() (result *DashboardV2, err error) {
// Legacy v1 data can be arbitrarily malformed. The accessors degrade
// gracefully, but recover from any unforeseen panic so one bad dashboard
// surfaces as an error (to be logged and skipped) rather than crashing the run.
defer func() {
if r := recover(); r != nil {
result, err = nil, errors.Newf(errors.TypeInternal, ErrCodeDashboardMigrationFailed, "panic converting dashboard %s: %v", storable.ID, r)
}
}()
if storable.IsV2() {
return nil, errors.Newf(errors.TypeInvalidInput, ErrCodeDashboardMigrationFailed, "dashboard %s is already in %s schema", storable.ID, SchemaVersion)
}
d := &v1Decoder{}
title := d.readString(storable.Data, "title")
description := d.readString(storable.Data, "description")
image := d.readString(storable.Data, "image")
panels := d.convertV1Panels(storable.Data["widgets"])
spec := DashboardSpec{
Display: Display{Name: title, Description: description},
Variables: d.convertV1Variables(storable.Data["variables"]),
Panels: panels,
Layouts: d.convertV1Layouts(storable.Data, panels),
}
// marshal and unmarshal cycle to confirm full validation
raw, marshalErr := json.Marshal(spec)
if marshalErr != nil {
return nil, errors.WrapInternalf(marshalErr, errors.CodeInternal, "marshal converted dashboard %s", storable.ID)
}
if err := json.Unmarshal(raw, new(DashboardSpec)); err != nil {
return nil, errors.WrapInvalidInputf(err, ErrCodeDashboardMigrationFailed, "converted dashboard %s is invalid", storable.ID)
}
tags := d.convertV1TagsForOrg(storable.OrgID, storable.Data["tags"])
if err := d.errIfHasMalformedFields(); err != nil {
return nil, err
}
return &DashboardV2{
Identifiable: storable.Identifiable,
TimeAuditable: storable.TimeAuditable,
UserAuditable: storable.UserAuditable,
OrgID: storable.OrgID,
Locked: storable.Locked,
Source: storable.Source,
DashboardV2MetadataBase: DashboardV2MetadataBase{
SchemaVersion: SchemaVersion,
Image: image,
},
Name: generateDashboardName(title),
Tags: tags,
Spec: spec,
}, nil
}

View File

@@ -0,0 +1,168 @@
package dashboardtypes
import (
"encoding/json"
"fmt"
"strings"
"github.com/SigNoz/signoz/pkg/errors"
)
// ══════════════════════════════════════════════
// v1 decoder
// ══════════════════════════════════════════════
// v1Decoder reads fields out of the untyped v1 dashboard blob. Every read*
// method follows the same contract: a field that is absent or null yields the
// zero value; a field present with the wrong type yields zero AND records a
// malformed-field error. Conversion proceeds (so one bad field doesn't abort
// the rest) and ConvertV1ToV2 returns d.malformedFieldsErr() at the end so the
// dashboard is logged and skipped.
//
// Polymorphic v1 fields (spanGaps bool|number, selectedValue string|array, …)
// are read with a type switch on the already-extracted value, never through
// these accessors, so they stay lenient by construction.
type v1Decoder struct {
bad []string
seen map[string]struct{}
}
// note records a decoding problem (malformed field, unknown value, swallowed
// sub-parse error), deduping identical messages. ConvertV1ToV2 surfaces these
// via errIfHasMalformedFields.
func (d *v1Decoder) note(format string, args ...any) {
msg := fmt.Sprintf(format, args...)
if _, dup := d.seen[msg]; dup {
return
}
if d.seen == nil {
d.seen = make(map[string]struct{})
}
d.seen[msg] = struct{}{}
d.bad = append(d.bad, msg)
}
// noteMalformedField records a v1 field present with the wrong Go type.
func (d *v1Decoder) noteMalformedField(field string, raw any) {
d.note("%q has unexpected type %T", field, raw)
}
// detailErr renders an error for a diagnostic note, unfolding the structured
// detail our JSON binding attaches via WithAdditional. A plain %v on these
// errors prints only the innermost message ("request body contains invalid
// field value") and drops the field/type context that says which field was
// wrong — the part that actually tells you what to fix.
func detailErr(err error) string {
if err == nil {
return ""
}
j := errors.AsJSON(err)
if len(j.Errors) == 0 {
return err.Error()
}
details := make([]string, 0, len(j.Errors))
for _, e := range j.Errors {
details = append(details, e.Message)
}
return j.Message + ": " + strings.Join(details, "; ")
}
func (d *v1Decoder) errIfHasMalformedFields() error {
if len(d.bad) == 0 {
return nil
}
// One field per line: these lists run long (a bad widget query is reported
// once per widget), and a single "; "-joined line is an unscannable wall.
return errors.Newf(errors.TypeInvalidInput, ErrCodeDashboardInvalidData, "malformed v1 dashboard fields:\n %s", strings.Join(d.bad, "\n "))
}
func readField[T any](d *v1Decoder, m map[string]any, key string) T {
var zero T
v, present := m[key]
if !present || v == nil {
return zero
}
t, ok := v.(T)
if !ok {
d.noteMalformedField(key, v)
return zero
}
return t
}
func (d *v1Decoder) readString(m map[string]any, key string) string {
return readField[string](d, m, key)
}
func (d *v1Decoder) readFloat(m map[string]any, key string) float64 {
return readField[float64](d, m, key)
}
func (d *v1Decoder) readBool(m map[string]any, key string) bool { return readField[bool](d, m, key) }
func (d *v1Decoder) readArray(m map[string]any, key string) []any { return readField[[]any](d, m, key) }
func (d *v1Decoder) readObject(m map[string]any, key string) map[string]any {
return readField[map[string]any](d, m, key)
}
// readInt narrows a numeric field to int (JSON numbers decode as float64).
func (d *v1Decoder) readInt(m map[string]any, key string) int { return int(d.readFloat(m, key)) }
func (d *v1Decoder) readFloatPtr(m map[string]any, key string) *float64 {
v, present := m[key]
if !present || v == nil {
return nil
}
f, ok := v.(float64)
if !ok {
d.noteMalformedField(key, v)
return nil
}
return &f
}
func (d *v1Decoder) readStringMap(m map[string]any, key string) map[string]string {
raw := d.readObject(m, key)
if len(raw) == 0 {
return nil
}
out := make(map[string]string, len(raw))
for k, v := range raw {
s, ok := v.(string)
if !ok {
d.noteMalformedField(key+"."+k, v)
continue
}
out[k] = s
}
return out
}
func (d *v1Decoder) readObjects(m map[string]any, key string) []map[string]any {
raw := d.readArray(m, key)
if len(raw) == 0 {
return nil
}
out := make([]map[string]any, 0, len(raw))
for i, item := range raw {
obj, ok := item.(map[string]any)
if !ok {
d.noteMalformedField(fmt.Sprintf("%s[%d]", key, i), item)
continue
}
out = append(out, obj)
}
return out
}
// decodeMapInto converts an untyped map[string]any into a typed T by
// round-tripping through JSON, letting encoding/json (struct tags, custom
// UnmarshalJSON) do the field mapping instead of hand-copying out of the map.
func decodeMapInto[T any](src map[string]any) (T, error) {
var dst T
bytes, err := json.Marshal(src)
if err != nil {
return dst, err
}
if err := json.Unmarshal(bytes, &dst); err != nil {
return dst, err
}
return dst, nil
}

View File

@@ -0,0 +1,230 @@
package dashboardtypes
import (
"fmt"
"sort"
"github.com/perses/spec/go/common"
"github.com/perses/spec/go/dashboard"
)
// ══════════════════════════════════════════════
// Layouts (data.layout + data.panelMap)
// ══════════════════════════════════════════════
// convertV1Layouts groups v1 react-grid-layout entries into v2 grid layouts.
// Membership is positional (as the frontend renders): each row widget owns the
// panels below it until the next row; panels above the first row form an unnamed
// grid with no section header. Collapsed rows are the exception — their children
// live in panelMap[rowID].widgets, not `layout`.
func (d *v1Decoder) convertV1Layouts(data StorableDashboardData, panels map[string]*Panel) []Layout {
layout := d.readObjects(data, "layout")
if len(layout) == 0 {
return nil
}
// react-grid-layout can persist the same widget id more than once. Drop the
// duplicates, mirroring the frontend's getUpdatedLayout: keep the first
// occurrence in stored order and discard the rest (the losing entry's
// geometry is thrown away, not merged). Dedupe here, before sortByPosition,
// so "first" means first-in-stored-order as the frontend sees it — not
// topmost. Entries with no id are left for the main loop to drop.
seenWidgetIds := make(map[string]bool, len(layout))
dedupedLayouts := layout[:0]
for _, item := range layout {
if id := d.readString(item, "i"); id != "" {
if seenWidgetIds[id] {
continue
}
seenWidgetIds[id] = true
}
dedupedLayouts = append(dedupedLayouts, item)
}
layout = dedupedLayouts
rows := d.extractRowsAndCollapsedWidgets(data)
// Skip collapsed-row children a malformed dashboard lists in `layout` too.
isWidgetCollapsed := make(map[string]bool)
for _, row := range rows {
for _, child := range row.collapsedWidgets {
if id := d.readString(child, "i"); id != "" {
isWidgetCollapsed[id] = true
break
}
}
}
d.sortByPosition(layout)
type section struct {
row *rowInfo // nil for the unnamed grid of ungrouped panels
items []map[string]any
}
topSectionWithoutHeader := &section{}
sectionsWithHeader := make([]*section, 0, len(rows))
currentRowHeader := topSectionWithoutHeader
for _, item := range layout {
id := d.readString(item, "i")
if id == "" || isWidgetCollapsed[id] {
// widgets in collapsed sectinos will be added when those sections' row widgets are handled.
continue
}
if row, ok := rows[id]; ok {
newRowHeader := &section{row: row, items: d.extractValidLayoutItemsForCollapsedSection(row.collapsedWidgets, panels)}
sectionsWithHeader = append(sectionsWithHeader, newRowHeader)
// A collapsed row owns only its stashed children; later panels → ungrouped.
if row.collapsed {
currentRowHeader = topSectionWithoutHeader
} else {
currentRowHeader = newRowHeader
}
continue
}
// Keep a layout entry only if its widget became a panel; otherwise (skipped
// widget, deleted id, or the "__dropping-elem__" drag placeholder) it would
// reference a panel that does not exist. Rows are handled above.
if _, ok := panels[id]; !ok {
continue
}
currentRowHeader.items = append(currentRowHeader.items, item)
}
out := make([]Layout, 0, len(sectionsWithHeader)+1)
if len(topSectionWithoutHeader.items) > 0 {
out = append(out, d.buildV2GridLayout(nil, topSectionWithoutHeader.items))
}
for _, sec := range sectionsWithHeader {
out = append(out, d.buildV2GridLayout(sec.row, sec.items))
}
return out
}
// extractValidLayoutItemsForCollapsedSection keeps only the collapsed-row children
// backed by a real panel, dropping ghosts. These come from panelMap and skip the
// main loop's per-item panel check, so a grid never references a missing panel.
func (d *v1Decoder) extractValidLayoutItemsForCollapsedSection(items []map[string]any, panels map[string]*Panel) []map[string]any {
out := make([]map[string]any, 0, len(items))
for _, item := range items {
if id := d.readString(item, "i"); id != "" {
if _, ok := panels[id]; ok {
out = append(out, item)
}
}
}
return out
}
type rowInfo struct {
title string
collapsed bool
collapsedWidgets []map[string]any
}
// extractRowsAndCollapsedWidgets returns the row widgets keyed by id; collapsed
// rows also carry their children stashed under panelMap[id].widgets.
func (d *v1Decoder) extractRowsAndCollapsedWidgets(data StorableDashboardData) map[string]*rowInfo {
panelMap := d.readObject(data, "panelMap")
rows := make(map[string]*rowInfo)
for _, w := range d.readObjects(data, "widgets") {
id := d.readString(w, "id")
if d.readString(w, "panelTypes") != "row" || id == "" {
continue
}
row := &rowInfo{title: d.readString(w, "title")}
// Some templates store panelMap[id] as a bare []widgetID instead of the
// canonical {widgets, collapsed}. The frontend treats such a non-object
// entry as "not collapsed" (see GridCardLayout), so read it leniently: a
// non-map yields nil, which reads as not collapsed.
pm, _ := panelMap[id].(map[string]any)
if d.readBool(pm, "collapsed") {
row.collapsed = true
row.collapsedWidgets = d.readObjects(pm, "widgets")
}
rows[id] = row
}
return rows
}
// buildV2GridLayout builds one v2 grid. row is nil for the unnamed grid (no
// display); otherwise the grid takes the row's title and collapse state. Items are
// sorted by (y, x) then vertically compacted (see compactGridItemsVertically).
func (d *v1Decoder) buildV2GridLayout(row *rowInfo, items []map[string]any) Layout {
d.sortByPosition(items)
spec := dashboard.GridLayoutSpec{Items: make([]dashboard.GridItem, 0, len(items))}
if row != nil {
spec.Display = &dashboard.GridLayoutDisplay{
Title: row.title,
Collapse: &dashboard.GridLayoutCollapse{Open: !row.collapsed},
}
}
for _, item := range items {
spec.Items = append(spec.Items, dashboard.GridItem{
X: d.readInt(item, "x"),
Y: d.readInt(item, "y"),
Width: d.readInt(item, "w"),
Height: d.readInt(item, "h"),
Content: &common.JSONRef{Ref: fmt.Sprintf("#/spec/panels/%s", d.readString(item, "i"))},
})
}
compactGridItemsVertically(spec.Items)
return Layout{Kind: dashboard.KindGridLayout, Spec: &spec}
}
// compactGridItemsVertically mirrors react-grid-layout's correctBounds+compact
// (compactType "vertical", allowOverlap false): clamp each item into the grid (x,y>=0;
// x+width<=cols by shifting left), then move sorted-first items up to fill space and
// down past collisions. Fixes overlaps, gaps, and out-of-bounds coords so the migrated
// grid matches the v1 UI and passes v2 validation.
func compactGridItemsVertically(items []dashboard.GridItem) {
collides := func(a, b dashboard.GridItem) bool {
return a.X < b.X+b.Width && b.X < a.X+a.Width && a.Y < b.Y+b.Height && b.Y < a.Y+a.Height
}
firstCollision := func(l dashboard.GridItem, placed []dashboard.GridItem) (dashboard.GridItem, bool) {
for _, p := range placed {
if collides(l, p) {
return p, true
}
}
return dashboard.GridItem{}, false
}
for i := range items {
l := items[i]
if l.X+l.Width > gridColumnCount { // overflows right → shift left to fit
l.X = gridColumnCount - l.Width
}
if l.X < 0 {
l.X = 0
}
if l.Y < 0 {
l.Y = 0
}
for l.Y > 0 { // move up to fill space above
up := l
up.Y--
if _, hit := firstCollision(up, items[:i]); hit {
break
}
l.Y--
}
for { // then down past any collision with an already-placed item
c, hit := firstCollision(l, items[:i])
if !hit {
break
}
l.Y = c.Y + c.Height
}
items[i] = l
}
}
func (d *v1Decoder) sortByPosition(items []map[string]any) {
sort.SliceStable(items, func(i, j int) bool {
if yi, yj := d.readInt(items[i], "y"), d.readInt(items[j], "y"); yi != yj {
return yi < yj
}
return d.readInt(items[i], "x") < d.readInt(items[j], "x")
})
}

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@@ -0,0 +1,473 @@
package dashboardtypes
import (
"encoding/json"
"fmt"
"strconv"
"strings"
"time"
"github.com/SigNoz/signoz/pkg/types/telemetrytypes"
"github.com/SigNoz/signoz/pkg/valuer"
)
// ══════════════════════════════════════════════
// Widgets → Panels
// ══════════════════════════════════════════════
// convertV1Panels walks the v1 `widgets` array and produces v2 panels keyed by
// the v1 widget id. WidgetRow entries (panelTypes == "row") are dropped here
// and consumed by convertV1Layouts as section headers.
func (d *v1Decoder) convertV1Panels(raw any) map[string]*Panel {
if raw == nil {
return nil
}
widgetsRaw, ok := raw.([]any)
if !ok {
d.noteMalformedField("widgets", raw)
return nil
}
panels := make(map[string]*Panel, len(widgetsRaw))
for i, widgetRaw := range widgetsRaw {
widget, ok := widgetRaw.(map[string]any)
if !ok {
d.noteMalformedField(fmt.Sprintf("widgets[%d]", i), widgetRaw)
continue
}
id := d.readString(widget, "id")
if id == "" {
// dead widget that can't be referenced anywhere, skipping.
continue
}
var panel *Panel
panelType := d.readString(widget, "panelTypes")
switch panelType {
case "graph":
panel = d.convertGraphWidget(widget)
case "bar":
panel = d.convertBarWidget(widget)
case "value":
panel = d.convertValueWidget(widget)
case "pie":
panel = d.convertPieWidget(widget)
case "table":
panel = d.convertTableWidget(widget)
case "histogram":
panel = d.convertHistogramWidget(widget)
case "list":
panel = d.convertListWidget(widget)
case "row":
// "row" (section header) is handled by the layout pass;
continue
default:
d.note("widgets[%d] has unknown panel type %q", i, panelType)
}
if panel == nil {
continue
}
panels[id] = panel
}
return panels
}
func (d *v1Decoder) convertGraphWidget(w map[string]any) *Panel {
return &Panel{
Kind: "Panel",
Spec: PanelSpec{
Display: d.widgetDisplay(w),
Plugin: PanelPlugin{
Kind: PanelKindTimeSeries,
Spec: &TimeSeriesPanelSpec{
Visualization: TimeSeriesVisualization{
BasicVisualization: d.basicVisualization(w),
FillSpans: d.readBool(w, "fillSpans"),
},
Formatting: d.panelFormatting(w),
ChartAppearance: TimeSeriesChartAppearance{
LineInterpolation: mapV1Enum(d.readString(w, "lineInterpolation"), LineInterpolationSpline,
LineInterpolationLinear, LineInterpolationSpline, LineInterpolationStepAfter, LineInterpolationStepBefore),
ShowPoints: d.readBool(w, "showPoints"),
LineStyle: mapV1Enum(d.readString(w, "lineStyle"), LineStyleSolid, LineStyleSolid, LineStyleDashed),
FillMode: mapV1Enum(d.readString(w, "fillMode"), FillModeNone, FillModeSolid, FillModeGradient, FillModeNone),
SpanGaps: mapV1SpanGaps(w["spanGaps"]),
},
Axes: d.axesFromWidget(w),
Legend: d.legendFromWidget(w),
Thresholds: d.mapV1ThresholdsWithLabel(w),
},
},
Queries: d.convertV1WidgetQuery(w, PanelKindTimeSeries),
},
}
}
func (d *v1Decoder) convertBarWidget(w map[string]any) *Panel {
return &Panel{
Kind: "Panel",
Spec: PanelSpec{
Display: d.widgetDisplay(w),
Plugin: PanelPlugin{
Kind: PanelKindBarChart,
Spec: &BarChartPanelSpec{
Visualization: BarChartVisualization{
BasicVisualization: d.basicVisualization(w),
FillSpans: d.readBool(w, "fillSpans"),
StackedBarChart: d.readBool(w, "stackedBarChart"),
},
Formatting: d.panelFormatting(w),
Axes: d.axesFromWidget(w),
Legend: d.legendFromWidget(w),
Thresholds: d.mapV1ThresholdsWithLabel(w),
},
},
Queries: d.convertV1WidgetQuery(w, PanelKindBarChart),
},
}
}
func (d *v1Decoder) convertValueWidget(w map[string]any) *Panel {
return &Panel{
Kind: "Panel",
Spec: PanelSpec{
Display: d.widgetDisplay(w),
Plugin: PanelPlugin{
Kind: PanelKindNumber,
Spec: &NumberPanelSpec{
Visualization: d.basicVisualization(w),
Formatting: d.panelFormatting(w),
Thresholds: d.mapV1ComparisonThresholds(w),
},
},
Queries: d.convertV1WidgetQuery(w, PanelKindNumber),
},
}
}
func (d *v1Decoder) convertPieWidget(w map[string]any) *Panel {
return &Panel{
Kind: "Panel",
Spec: PanelSpec{
Display: d.widgetDisplay(w),
Plugin: PanelPlugin{
Kind: PanelKindPieChart,
Spec: &PieChartPanelSpec{
Visualization: d.basicVisualization(w),
Formatting: d.panelFormatting(w),
Legend: d.legendFromWidget(w),
},
},
Queries: d.convertV1WidgetQuery(w, PanelKindPieChart),
},
}
}
func (d *v1Decoder) convertTableWidget(w map[string]any) *Panel {
return &Panel{
Kind: "Panel",
Spec: PanelSpec{
Display: d.widgetDisplay(w),
Plugin: PanelPlugin{
Kind: PanelKindTable,
Spec: &TablePanelSpec{
Visualization: d.basicVisualization(w),
Formatting: TableFormatting{
ColumnUnits: d.readStringMap(w, "columnUnits"),
DecimalPrecision: mapV1Precision(w["decimalPrecision"]),
},
Thresholds: d.mapV1TableThresholds(w),
},
},
Queries: d.convertV1WidgetQuery(w, PanelKindTable),
},
}
}
func (d *v1Decoder) convertHistogramWidget(w map[string]any) *Panel {
return &Panel{
Kind: "Panel",
Spec: PanelSpec{
Display: d.widgetDisplay(w),
Plugin: PanelPlugin{
Kind: PanelKindHistogram,
Spec: &HistogramPanelSpec{
HistogramBuckets: HistogramBuckets{
BucketCount: d.readFloatPtr(w, "bucketCount"),
BucketWidth: d.readFloatPtr(w, "bucketWidth"),
MergeAllActiveQueries: d.readBool(w, "mergeAllActiveQueries"),
},
Legend: d.legendFromWidget(w),
},
},
Queries: d.convertV1WidgetQuery(w, PanelKindHistogram),
},
}
}
func (d *v1Decoder) convertListWidget(w map[string]any) *Panel {
return &Panel{
Kind: "Panel",
Spec: PanelSpec{
Display: d.widgetDisplay(w),
Plugin: PanelPlugin{
Kind: PanelKindList,
Spec: &ListPanelSpec{
SelectFields: d.mapV1SelectFields(w),
},
},
Queries: d.convertV1WidgetQuery(w, PanelKindList),
},
}
}
// ══════════════════════════════════════════════
// Panel-spec shared helpers
// ══════════════════════════════════════════════
func (d *v1Decoder) widgetDisplay(w map[string]any) Display {
return Display{Name: d.readString(w, "title"), Description: d.readString(w, "description")}
}
func (d *v1Decoder) basicVisualization(w map[string]any) BasicVisualization {
return BasicVisualization{TimePreference: mapV1TimePreference(d.readString(w, "timePreferance"))}
}
func (d *v1Decoder) panelFormatting(w map[string]any) PanelFormatting {
return PanelFormatting{Unit: d.readString(w, "yAxisUnit"), DecimalPrecision: mapV1Precision(w["decimalPrecision"])}
}
func (d *v1Decoder) axesFromWidget(w map[string]any) Axes {
return Axes{
SoftMin: d.readFloatPtr(w, "softMin"),
SoftMax: d.readFloatPtr(w, "softMax"),
IsLogScale: d.readBool(w, "isLogScale"),
}
}
func (d *v1Decoder) legendFromWidget(w map[string]any) Legend {
return Legend{
Position: mapV1Enum(d.readString(w, "legendPosition"), LegendPositionBottom, LegendPositionBottom, LegendPositionRight),
CustomColors: d.readStringMap(w, "customLegendColors"),
}
}
func (d *v1Decoder) mapV1SelectFields(w map[string]any) []telemetrytypes.TelemetryFieldKey {
field := "selectedLogFields"
raw := d.readArray(w, field)
if len(raw) == 0 {
field = "selectedTracesFields"
raw = d.readArray(w, field)
}
if len(raw) == 0 {
return nil
}
normalizePreV5FieldKeys(raw)
fields, err := decodeTelemetryFields(raw)
if err != nil {
d.note("widget %q has malformed %s: %v", d.readString(w, "id"), field, err)
return nil
}
// Drop nameless entries (blank column rows) — v2 requires a name, and the v1
// UI renders nothing for them anyway.
out := fields[:0]
for _, f := range fields {
if f.Name != "" {
out = append(out, f)
}
}
return out
}
func decodeTelemetryFields(raw []any) ([]telemetrytypes.TelemetryFieldKey, error) {
bytes, err := json.Marshal(raw)
if err != nil {
return nil, err
}
var fields []telemetrytypes.TelemetryFieldKey
if err := json.Unmarshal(bytes, &fields); err != nil {
return nil, err
}
return fields, nil
}
// ══════════════════════════════════════════════
// Panel field mappers
// ══════════════════════════════════════════════
// v1 stores timePreferance as `GLOBAL_TIME`, `LAST_5_MIN`, … (see
// frontend/src/container/NewWidget/RightContainer/timeItems.ts). v2 uses the
// lowercase form, so the translation is just downcase.
func mapV1TimePreference(s string) TimePreference {
if s == "" {
return TimePreferenceGlobalTime
}
candidate := TimePreference{valuer.NewString(strings.ToLower(s))}
for _, allowed := range candidate.Enum() {
if allowed == candidate {
return candidate
}
}
return TimePreferenceGlobalTime
}
// mapV1Precision is polymorphic (string|number), so it type-switches the raw
// value rather than reading through a typed accessor.
func mapV1Precision(raw any) PrecisionOption {
switch v := raw.(type) {
case string:
candidate := PrecisionOption{valuer.NewString(v)}
for _, allowed := range candidate.Enum() {
if allowed == candidate {
return candidate
}
}
case float64:
n := int(v)
if n >= 0 && n <= 4 {
return PrecisionOption{valuer.NewString(strconv.Itoa(n))}
}
}
return PrecisionOption2
}
// mapV1Enum picks the v1 string value if it matches one of the allowed v2
// values, otherwise returns the fallback. v1 frontend enums (lineInterpolation,
// lineStyle, fillMode, legendPosition) already use the v2 lowercase form.
func mapV1Enum[T interface{ StringValue() string }](s string, fallback T, allowed ...T) T {
if s == "" {
return fallback
}
for _, a := range allowed {
if a.StringValue() == s {
return a
}
}
return fallback
}
// v1 spanGaps is `boolean | number`. true → span every gap; false → never span;
// a number is interpreted (per frontend SeriesProps.spanGaps docs) as an
// X-axis threshold in seconds. Polymorphic, so it type-switches the raw value.
func mapV1SpanGaps(raw any) SpanGaps {
switch v := raw.(type) {
case bool:
if v {
return SpanGaps{FillOnlyBelow: false}
}
return SpanGaps{FillOnlyBelow: true}
case float64:
dur, err := valuer.ParseTextDuration(time.Duration(v * float64(time.Second)).String())
if err != nil {
return SpanGaps{FillOnlyBelow: false}
}
return SpanGaps{FillOnlyBelow: true, FillLessThan: dur}
}
return SpanGaps{FillOnlyBelow: false}
}
func (d *v1Decoder) mapV1ThresholdsWithLabel(w map[string]any) []ThresholdWithLabel {
rawSlice := d.readObjects(w, "thresholds")
if len(rawSlice) == 0 {
return nil
}
out := make([]ThresholdWithLabel, 0, len(rawSlice))
for _, t := range rawSlice {
color := d.readString(t, "thresholdColor")
label := d.readString(t, "thresholdLabel")
if color == "" || label == "" {
// v2 ThresholdWithLabel requires both; drop entries that wouldn't validate.
continue
}
value := d.readFloat(t, "thresholdValue")
out = append(out, ThresholdWithLabel{Value: &value, Unit: d.readString(t, "thresholdUnit"), Color: color, Label: label})
}
if len(out) == 0 {
return nil
}
return out
}
func (d *v1Decoder) mapV1ComparisonThresholds(w map[string]any) []ComparisonThreshold {
rawSlice := d.readObjects(w, "thresholds")
if len(rawSlice) == 0 {
return nil
}
out := make([]ComparisonThreshold, 0, len(rawSlice))
for _, t := range rawSlice {
color := d.readString(t, "thresholdColor")
if color == "" {
continue
}
value := d.readFloat(t, "thresholdValue")
out = append(out, ComparisonThreshold{
Value: &value,
Operator: d.mapV1ComparisonOperator(d.readString(t, "thresholdOperator")),
Unit: d.readString(t, "thresholdUnit"),
Color: color,
Format: mapV1ThresholdFormat(d.readString(t, "thresholdFormat")),
})
}
if len(out) == 0 {
return nil
}
return out
}
func (d *v1Decoder) mapV1TableThresholds(w map[string]any) []TableThreshold {
rawSlice := d.readObjects(w, "thresholds")
if len(rawSlice) == 0 {
return nil
}
out := make([]TableThreshold, 0, len(rawSlice))
for _, t := range rawSlice {
color := d.readString(t, "thresholdColor")
columnName := d.readString(t, "thresholdTableOptions")
if color == "" || columnName == "" {
continue
}
value := d.readFloat(t, "thresholdValue")
out = append(out, TableThreshold{
ComparisonThreshold: ComparisonThreshold{
Value: &value,
Operator: d.mapV1ComparisonOperator(d.readString(t, "thresholdOperator")),
Unit: d.readString(t, "thresholdUnit"),
Color: color,
Format: mapV1ThresholdFormat(d.readString(t, "thresholdFormat")),
},
ColumnName: columnName,
})
}
if len(out) == 0 {
return nil
}
return out
}
func (d *v1Decoder) mapV1ComparisonOperator(s string) ComparisonOperator {
switch s {
case ">":
return ComparisonOperatorAbove
case ">=":
return ComparisonOperatorAboveOrEqual
case "<":
return ComparisonOperatorBelow
case "<=":
return ComparisonOperatorBelowOrEqual
case "=":
return ComparisonOperatorEqual
case "!=":
return ComparisonOperatorNotEqual
default:
d.note("threshold has unknown comparison operator %q", s)
return ComparisonOperatorAbove
}
}
func mapV1ThresholdFormat(s string) ThresholdFormat {
switch strings.ToLower(s) {
case "background":
return ThresholdFormatBackground
case "text":
return ThresholdFormatText
}
return ThresholdFormatText
}

View File

@@ -0,0 +1,258 @@
package dashboardtypes
import (
"encoding/json"
"strings"
"github.com/SigNoz/signoz/pkg/errors"
qb "github.com/SigNoz/signoz/pkg/types/querybuildertypes/querybuildertypesv5"
"github.com/SigNoz/signoz/pkg/types/telemetrytypes"
)
// ══════════════════════════════════════════════
// Queries
// ══════════════════════════════════════════════
// convertV1WidgetQuery returns exactly one Query (per Spec.Validate). The kind
// chosen depends on the v1 widget query shape:
// - a single query (promql / clickhouse_sql / builder) → its native kind
// - multiple queries → signoz/CompositeQuery
//
// A single query is never wrapped in a CompositeQuery; in particular List
// panels accept only a bare signoz/BuilderQuery. Builder queries are routed
// through qb.WrapInV5Envelope (in collectV1QueryEnvelopes), which translates v4
// builder-field names (orderBy/selectColumns/dataSource) into their v5
// equivalents and adds the `signal` field required by BuilderQuerySpec's
// per-signal dispatch.
func (d *v1Decoder) convertV1WidgetQuery(widget map[string]any, panelKind PanelPluginKind) []Query {
envelopes, signal := d.collectV1QueryEnvelopes(widget, panelKind)
if len(envelopes) == 0 {
return nil
}
requestType := requestTypeForPanel(panelKind)
// A single query keeps its native kind — never wrapped in a CompositeQuery.
if len(envelopes) == 1 {
if q := singleQueryFromEnvelope(envelopes[0], requestType, signal); q != nil {
return []Query{*q}
}
}
// Default: wrap in CompositeQuery.
composite, err := parseCompositeFromEnvelopes(envelopes)
if err != nil || composite == nil {
d.note("widget %q: could not build query from %d envelope(s): %s", d.readString(widget, "id"), len(envelopes), detailErr(err))
return nil
}
return []Query{{
Kind: requestType,
Spec: QuerySpec{
Plugin: QueryPlugin{Kind: QueryKindComposite, Spec: composite},
},
}}
}
// requestTypeForPanel maps a v2 panel plugin kind to the request type (result
// shape) its queries produce. Mirrors the frontend's panelTypeToRequestType
// (buildQueryRangeRequest.ts): time series for line/bar/histogram (histogram
// bins client-side from raw time series, V1 parity), scalar for
// number/pie/table, raw rows for list.
func requestTypeForPanel(panelKind PanelPluginKind) qb.RequestType {
switch panelKind {
case PanelKindTimeSeries, PanelKindBarChart, PanelKindHistogram:
return qb.RequestTypeTimeSeries
case PanelKindNumber, PanelKindPieChart, PanelKindTable:
return qb.RequestTypeScalar
case PanelKindList:
return qb.RequestTypeRaw
}
return qb.RequestTypeTimeSeries
}
// collectV1QueryEnvelopes inspects widget.query.queryType and produces a
// flattened list of v5-shaped envelopes. The returned signal is the dominant
// builder signal (if any), used for typed builder-query dispatch.
func (d *v1Decoder) collectV1QueryEnvelopes(widget map[string]any, panelKind PanelPluginKind) ([]map[string]any, telemetrytypes.Signal) {
queryMap := d.readObject(widget, "query")
if queryMap == nil {
return nil, telemetrytypes.Signal{}
}
rowLimitPanel := panelKind == PanelKindList || panelKind == PanelKindTable
// Raw (list) panels legitimately have no aggregation; every other panel needs one.
needsAggregation := requestTypeForPanel(panelKind) != qb.RequestTypeRaw
queryType := d.readString(queryMap, "queryType")
switch queryType {
case "promql":
var out []map[string]any
for _, q := range d.readObjects(queryMap, "promql") {
out = append(out, promQLEnvelope(q))
}
return out, telemetrytypes.Signal{}
case "clickhouse_sql":
var out []map[string]any
for _, q := range d.readObjects(queryMap, "clickhouse_sql") {
out = append(out, clickhouseEnvelope(q))
}
return out, telemetrytypes.Signal{}
case "builder":
builder := d.readObject(queryMap, "builder")
if builder == nil {
return nil, telemetrytypes.Signal{}
}
var out []map[string]any
var signal telemetrytypes.Signal
widgetType := d.readString(widget, "panelTypes")
for _, q := range d.readObjects(builder, "queryData") {
normalizePreV5QueryData(q, widgetType)
normalizePreV5SelectColumns(q)
normalizePreV5PageSize(q, rowLimitPanel)
if needsAggregation {
ensureDefaultAggregation(q)
}
name := d.readString(q, "queryName")
out = append(out, qb.WrapInV5Envelope(name, q, string(qb.QueryTypeBuilder.StringValue())))
if signal.IsZero() {
signal = signalFromDataSource(q["dataSource"])
}
}
for _, f := range d.readObjects(builder, "queryFormulas") {
normalizePreV5QueryData(f, widgetType)
name := d.readString(f, "queryName")
out = append(out, qb.WrapInV5Envelope(name, f, string(qb.QueryTypeFormula.StringValue())))
}
for _, op := range d.readObjects(builder, "queryTraceOperator") {
normalizePreV5QueryData(op, widgetType)
name := d.readString(op, "queryName")
out = append(out, qb.WrapInV5Envelope(name, op, string(qb.QueryTypeTraceOperator.StringValue())))
}
return out, signal
default:
d.note("widget %q has unknown queryType %q", d.readString(widget, "id"), queryType)
}
return nil, telemetrytypes.Signal{}
}
func promQLEnvelope(q map[string]any) map[string]any {
return map[string]any{
"type": qb.QueryTypePromQL.StringValue(),
"spec": map[string]any{
"name": q["name"],
"query": q["query"],
"disabled": q["disabled"],
"legend": q["legend"],
},
}
}
func clickhouseEnvelope(q map[string]any) map[string]any {
return map[string]any{
"type": qb.QueryTypeClickHouseSQL.StringValue(),
"spec": map[string]any{
"name": q["name"],
"query": q["query"],
"disabled": q["disabled"],
"legend": q["legend"],
},
}
}
// singleQueryFromEnvelope returns a typed Query for one envelope, using its
// native query kind (promql/clickhouse_sql/builder) rather than wrapping it in
// a CompositeQuery. A bare signoz/BuilderQuery is valid for every panel kind
// and is the only kind List panels accept.
func singleQueryFromEnvelope(envelope map[string]any, requestType qb.RequestType, signal telemetrytypes.Signal) *Query {
t, _ := envelope["type"].(string)
spec, _ := envelope["spec"].(map[string]any)
switch t {
case qb.QueryTypePromQL.StringValue():
prom, err := decodeMapInto[qb.PromQuery](spec)
if err != nil {
return nil
}
return &Query{
Kind: requestType,
Spec: QuerySpec{
Name: prom.Name,
Plugin: QueryPlugin{Kind: QueryKindPromQL, Spec: &prom},
},
}
case qb.QueryTypeClickHouseSQL.StringValue():
ch, err := decodeMapInto[qb.ClickHouseQuery](spec)
if err != nil {
return nil
}
return &Query{
Kind: requestType,
Spec: QuerySpec{
Name: ch.Name,
Plugin: QueryPlugin{Kind: QueryKindClickHouseSQL, Spec: &ch},
},
}
case qb.QueryTypeBuilder.StringValue():
builderSpec := parseBuilderQuerySpec(spec, signal)
if builderSpec == nil {
return nil
}
name, _ := spec["name"].(string)
return &Query{
Kind: requestType,
Spec: QuerySpec{
Name: name,
Plugin: QueryPlugin{Kind: QueryKindBuilder, Spec: &BuilderQuerySpec{Spec: builderSpec}},
},
}
}
return nil
}
func parseCompositeFromEnvelopes(envelopes []map[string]any) (*CompositeQuerySpec, error) {
bytes, err := json.Marshal(envelopes)
if err != nil {
return nil, errors.WrapInternalf(err, errors.CodeInternal, "marshal v1 query envelopes")
}
var parsed []qb.QueryEnvelope
if err := json.Unmarshal(bytes, &parsed); err != nil {
return nil, errors.WrapInvalidInputf(err, ErrCodeDashboardInvalidWidgetQuery, "decode v5 query envelopes")
}
return &CompositeQuerySpec{Queries: parsed}, nil
}
func parseBuilderQuerySpec(rawSpec any, signal telemetrytypes.Signal) any {
spec, ok := rawSpec.(map[string]any)
if !ok {
return nil
}
if !signal.IsZero() {
spec["signal"] = signal.StringValue()
}
bytes, err := json.Marshal(spec)
if err != nil {
return nil
}
parsed, err := qb.UnmarshalBuilderQueryBySignal(bytes)
if err != nil {
return nil
}
return parsed
}
// signalFromDataSource maps a v1 data-source string to a v5 signal. Casing
// varies by source: builder queries store lowercase ("traces"), while variable
// `dynamicVariablesSource` stores capitalized ("Traces"), so match
// case-insensitively. Unknown values (e.g. "All telemetry") map to the zero
// Signal.
func signalFromDataSource(raw any) telemetrytypes.Signal {
s, _ := raw.(string)
switch strings.ToLower(s) {
case "traces":
return telemetrytypes.SignalTraces
case "logs":
return telemetrytypes.SignalLogs
case "metrics":
return telemetrytypes.SignalMetrics
}
return telemetrytypes.Signal{}
}

View File

@@ -0,0 +1,182 @@
package dashboardtypes
import (
"context"
"log/slog"
"regexp"
"strings"
"github.com/SigNoz/signoz/pkg/transition"
"github.com/SigNoz/signoz/pkg/types/telemetrytypes"
)
// ══════════════════════════════════════════════
// Malformed-field normalization
// ══════════════════════════════════════════════
//
// Pre-v5 query-body reshapes for dashboards whose bodies aren't actually v5-shaped
// (e.g. stamped version:"v5" but never upgraded). The bulk of the upgrade is
// delegated to transition.MigrateQueryDataShapeSafe (see normalizePreV5QueryData);
// this file keeps only the reshapes it doesn't cover.
// preV5Migrator runs transition's shape-safe (idempotent) v4→v5 upgrade. Stateless
// after construction, so a shared instance with a discard logger / no ambiguity
// keys is fine.
var preV5Migrator = transition.NewDashboardMigrateV5(slog.New(slog.DiscardHandler), nil, nil)
// normalizePreV5QueryData upgrades one builder queryData/formula in place: the
// shared migrator, then a reshape of any existing aggregations[] it leaves alone.
func normalizePreV5QueryData(query map[string]any, widgetType string) {
preV5Migrator.MigrateQueryDataShapeSafe(context.Background(), query, widgetType)
normalizePreV5LogTraceAggregations(query)
}
// aggExprRe matches one "func(args)" with an optional "as alias". Mirrors the
// frontend's parseAggregations regex; matching only well-formed func(args)
// discards trailing junk ("sum(x) ) )" → "sum(x)").
var aggExprRe = regexp.MustCompile(`([a-zA-Z0-9_]+\([^)]*\))(?:\s*as\s+('[^']*'|"[^"]*"|[a-zA-Z0-9_-]+))?`)
// normalizePreV5LogTraceAggregations reshapes an existing logs/traces aggregations[]
// via parseAggregations (extract func(args), lift inline "as alias", split
// multi-part, drop metric-only fields; empty → count()). Covers the case the
// migrator skips: it builds from flat fields but leaves a present-but-malformed
// aggregations[] alone. A query with none is left as-is.
func normalizePreV5LogTraceAggregations(query map[string]any) {
switch signalFromDataSource(query["dataSource"]) {
case telemetrytypes.SignalLogs, telemetrytypes.SignalTraces:
default:
return
}
aggs, ok := query["aggregations"].([]any)
if !ok || len(aggs) == 0 {
return
}
out := make([]any, 0, len(aggs))
for _, a := range aggs {
agg, ok := a.(map[string]any)
if !ok {
continue
}
expr, _ := agg["expression"].(string)
alias, _ := agg["alias"].(string)
parsed := parseAggregations(expr, alias)
if len(parsed) == 0 {
parsed = []any{map[string]any{"expression": "count()"}}
}
out = append(out, parsed...)
}
query["aggregations"] = out
}
// ensureDefaultAggregation defaults an empty logs/traces aggregations[] to count(),
// mirroring the frontend. Callers gate this to aggregation panels. Metrics are skipped:
// count() can't stand in for a missing metricName.
func ensureDefaultAggregation(query map[string]any) {
switch signalFromDataSource(query["dataSource"]) {
case telemetrytypes.SignalLogs, telemetrytypes.SignalTraces:
default:
return
}
if aggs, ok := query["aggregations"].([]any); ok && len(aggs) > 0 {
return
}
query["aggregations"] = []any{map[string]any{"expression": "count()"}}
}
// parseAggregations pulls every func(args) (with inline or passed-through alias,
// quotes stripped) out of a v1 expression. Mirrors the frontend's
// parseAggregations; empty result if none.
func parseAggregations(expression, availableAlias string) []any {
matches := aggExprRe.FindAllStringSubmatch(expression, -1)
out := make([]any, 0, len(matches))
for _, m := range matches {
alias := m[2]
if alias == "" {
alias = availableAlias
}
agg := map[string]any{"expression": m[1]}
if alias != "" {
agg["alias"] = strings.Trim(alias, `'"`)
}
out = append(out, agg)
}
return out
}
// normalizePreV5SelectColumns lets WrapInV5Envelope (which reads the old
// {key,dataType,type}) handle selectColumns stored the v5 way ({name,…}): backfill
// key/dataType/type from name/fieldDataType/fieldContext, drop columns with no
// resolvable key. Inverse of normalizePreV5FieldKeys (the two consumers want
// opposite shapes).
func normalizePreV5SelectColumns(query map[string]any) {
cols, ok := query["selectColumns"].([]any)
if !ok {
return
}
out := make([]any, 0, len(cols))
for _, c := range cols {
col, ok := c.(map[string]any)
if !ok {
continue
}
if _, ok := col["key"]; !ok {
if name, ok := col["name"]; ok {
col["key"] = name
}
}
if _, ok := col["dataType"]; !ok {
if fdt, ok := col["fieldDataType"]; ok {
col["dataType"] = fdt
}
}
if _, ok := col["type"]; !ok {
if fc, ok := col["fieldContext"]; ok {
col["type"] = fc
}
}
if key, _ := col["key"].(string); key == "" {
continue
}
out = append(out, col)
}
query["selectColumns"] = out
}
// normalizePreV5FieldKeys renames list-panel field keys {key,dataType,type} →
// {name,fieldDataType,fieldContext} in place (as WrapInV5Envelope does for
// groupBy/orderBy). Entries already carrying "name" are left as-is.
func normalizePreV5FieldKeys(fields []any) {
for _, f := range fields {
field, ok := f.(map[string]any)
if !ok {
continue
}
if _, hasName := field["name"]; hasName {
continue
}
if key, ok := field["key"]; ok {
field["name"] = key
}
if dataType, ok := field["dataType"]; ok {
field["fieldDataType"] = dataType
}
if typ, ok := field["type"]; ok {
field["fieldContext"] = typ
}
}
}
// normalizePreV5PageSize backfills limit from the legacy pageSize (frontend's
// `limit || pageSize`), for row-limited panels (list/table) only. Leaves a query
// that already has limit, or a non-row-limited panel, untouched.
func normalizePreV5PageSize(query map[string]any, rowLimitPanel bool) {
if !rowLimitPanel {
return
}
if limit, ok := query["limit"]; ok && limit != nil {
return
}
if ps, ok := query["pageSize"]; ok {
query["limit"] = ps
}
}

View File

@@ -0,0 +1,122 @@
package dashboardtypes
import (
"fmt"
"regexp"
"strings"
"github.com/SigNoz/signoz/pkg/types/coretypes"
"github.com/SigNoz/signoz/pkg/types/tagtypes"
"github.com/SigNoz/signoz/pkg/valuer"
)
// ══════════════════════════════════════════════
// Tags
// ══════════════════════════════════════════════
// v1 carries tags as a flat []string; v2 tags are (key, value) pairs. Each v1
// string is normalized into a pair (separator split, empty-side fallback,
// reserved-key prefix, `/` scrub). Tags that normalize to the same
// (lower(key), lower(value)) within a dashboard are collapsed, first occurrence
// winning the display casing.
//
// Characters still illegal after normalization (spaces, punctuation) are molded
// to fit the tag validators: disallowed runs collapse to "_" (see moldTagField).
// defaultV1TagKey is the key assigned when a v1 tag string has no usable
// separator (or one side of the split is empty).
const defaultV1TagKey = "tag"
func (d *v1Decoder) convertV1TagsForOrg(orgID valuer.UUID, raw any) []*tagtypes.Tag {
if raw == nil {
return nil
}
rawTagsList, ok := raw.([]any)
if !ok {
d.noteMalformedField("tags", raw)
return nil
}
seen := make(map[string]struct{}, len(rawTagsList))
tagsV2 := make([]*tagtypes.Tag, 0, len(rawTagsList))
for i, rawTag := range rawTagsList {
s, ok := rawTag.(string)
if !ok {
d.noteMalformedField(fmt.Sprintf("tags[%d]", i), rawTag)
continue
}
key, value, ok := normalizeV1Tag(s)
if !ok {
continue
}
dedupKey := strings.ToLower(key) + "\x00" + strings.ToLower(value)
if _, dup := seen[dedupKey]; dup {
continue
}
seen[dedupKey] = struct{}{}
tagsV2 = append(tagsV2, tagtypes.NewTag(orgID, coretypes.KindDashboard, key, value))
}
return tagsV2
}
// normalizeV1Tag derives a (key, value) pair from one v1 tag string. After
// splitting and molding both sides, a lone survivor becomes a value under the
// default key; ok is false if neither survives.
func normalizeV1Tag(s string) (string, string, bool) {
s = strings.TrimSpace(s)
if s == "" {
return "", "", false
}
var rawKey, rawValue string
switch {
case strings.Contains(s, ":"):
rawKey, rawValue, _ = strings.Cut(s, ":")
// Only the first ":" separates key from value; collapse the rest.
rawValue = strings.ReplaceAll(rawValue, ":", "_")
case strings.Contains(s, "/"):
rawKey, rawValue, _ = strings.Cut(s, "/")
default:
rawValue = s
}
rawKey = strings.TrimSpace(rawKey)
rawValue = strings.TrimSpace(rawValue)
// Reserved-key collision: prefix "_" so the list-query DSL stays unambiguous.
if _, reserved := reservedDSLKeys[DSLKey(strings.ToLower(rawKey))]; rawKey != "" && reserved {
rawKey = "_" + rawKey
}
key := moldTagField(rawKey, tagKeyDisallowed, tagKeyNotLead, tagtypes.MAX_LEN_TAG_KEY)
value := moldTagField(rawValue, tagValueDisallowed, nil, tagtypes.MAX_LEN_TAG_VALUE)
switch {
case key == "" && value == "":
return "", "", false
case key == "":
return defaultV1TagKey, value, true
case value == "":
return defaultV1TagKey, key, true
default:
return key, value, true
}
}
// Inverse of tagKeyRegex/tagValueRegex ("/" always rejected); tagKeyNotLead
// matches a bad first char for a key. TestMoldedV1TagsPassValidation guards drift.
var (
tagKeyDisallowed = regexp.MustCompile(`[^a-zA-Z0-9$_@#{}:-]+`)
tagValueDisallowed = regexp.MustCompile(`[^a-zA-Z0-9$_@#{}:.+=-]+`)
tagKeyNotLead = regexp.MustCompile(`^[^a-zA-Z$_@{#]`)
)
// moldTagField collapses disallowed runs to "_", prefixes "_" if notLead hits
// the first char, and caps at max. Keeps a leading "_", trims a trailing one.
func moldTagField(s string, disallowed, notLead *regexp.Regexp, max int) string {
s = strings.TrimRight(disallowed.ReplaceAllString(s, "_"), "_")
if s != "" && notLead != nil && notLead.MatchString(s) {
s = "_" + s
}
if len(s) > max {
s = strings.TrimRight(s[:max], "_")
}
return s
}

File diff suppressed because it is too large Load Diff

View File

@@ -0,0 +1,173 @@
package dashboardtypes
import (
"sort"
"github.com/perses/spec/go/dashboard/variable"
)
// ══════════════════════════════════════════════
// Variables
// ══════════════════════════════════════════════
// convertV1Variables walks the v1 `variables` map (UUID-keyed) and produces an
// ordered []Variable. Variables sort by `order` first, then by id for stable
// output. v1 variable types map as follows:
//
// QUERY → ListVariable + signoz/QueryVariable
// CUSTOM → ListVariable + signoz/CustomVariable
// DYNAMIC → ListVariable + signoz/DynamicVariable
// TEXTBOX → TextVariable
func (d *v1Decoder) convertV1Variables(raw any) []Variable {
if raw == nil {
return nil
}
rawVariablesMap, ok := raw.(map[string]any)
if !ok {
d.noteMalformedField("variables", raw)
return nil
}
type ordered struct {
variableID string
variableContent map[string]any
order float64
}
entries := make([]ordered, 0, len(rawVariablesMap))
for variableID, variableContentRaw := range rawVariablesMap {
variableContent, ok := variableContentRaw.(map[string]any)
if !ok {
d.noteMalformedField("variables."+variableID, variableContentRaw)
continue
}
entries = append(entries, ordered{variableID: variableID, variableContent: variableContent, order: d.readFloat(variableContent, "order")})
}
sort.SliceStable(entries, func(i, j int) bool {
if entries[i].order != entries[j].order {
return entries[i].order < entries[j].order
}
return entries[i].variableID < entries[j].variableID
})
variablesV2 := make([]Variable, 0, len(entries))
for _, e := range entries {
v, ok := d.convertV1Variable(e.variableContent)
if !ok {
continue
}
variablesV2 = append(variablesV2, v)
}
return variablesV2
}
func (d *v1Decoder) convertV1Variable(v map[string]any) (Variable, bool) {
name := d.readString(v, "name")
if name == "" {
return Variable{}, false
}
description := d.readString(v, "description")
kind := d.readString(v, "type")
switch kind {
case "TEXTBOX":
spec := &TextVariableSpec{
Display: Display{Name: name, Description: description},
Value: d.readString(v, "textboxValue"),
Name: name,
}
return Variable{Kind: variable.KindText, Spec: spec}, true
case "QUERY", "CUSTOM", "DYNAMIC":
// Drop (don't fail on) a dynamic variable with no attribute — it can't resolve.
if kind == "DYNAMIC" && d.readString(v, "dynamicVariablesAttribute") == "" {
return Variable{}, false
}
listSpec := &ListVariableSpec{
Display: Display{Name: name, Description: description},
AllowAllValue: d.readBool(v, "showALLOption"),
AllowMultiple: d.readBool(v, "multiSelect"),
CustomAllValue: d.readString(v, "customAllValue"),
CapturingRegexp: d.readString(v, "capturingRegexp"),
Sort: mapV1Sort(d.readString(v, "sort")),
Plugin: d.variablePluginFor(kind, v),
Name: name,
}
if dv := mapV1VariableDefault(v); dv != nil {
listSpec.DefaultValue = dv
}
return Variable{Kind: variable.KindList, Spec: listSpec}, true
default:
d.note("variable %q has unknown type %q", name, kind)
return Variable{}, false
}
}
func (d *v1Decoder) variablePluginFor(kind string, v map[string]any) VariablePlugin {
switch kind {
case "QUERY":
return VariablePlugin{
Kind: VariableKindQuery,
Spec: &QueryVariableSpec{QueryValue: d.readString(v, "queryValue")},
}
case "CUSTOM":
return VariablePlugin{
Kind: VariableKindCustom,
Spec: &CustomVariableSpec{CustomValue: d.readString(v, "customValue")},
}
case "DYNAMIC":
spec := &DynamicVariableSpec{Name: d.readString(v, "dynamicVariablesAttribute")}
if signal := signalFromDataSource(v["dynamicVariablesSource"]); !signal.IsZero() {
spec.Signal = signal
}
return VariablePlugin{Kind: VariableKindDynamic, Spec: spec}
}
return VariablePlugin{}
}
// mapV1VariableDefault reads selectedValue/defaultValue, both polymorphic
// (string|array), so it indexes the raw value and lets defaultValueFromAny
// type-switch — no typed accessor, intentionally lenient.
func mapV1VariableDefault(v map[string]any) *VariableDefaultValue {
if raw, ok := v["selectedValue"]; ok {
return defaultValueFromAny(raw)
}
if raw, ok := v["defaultValue"]; ok {
return defaultValueFromAny(raw)
}
return nil
}
func defaultValueFromAny(raw any) *VariableDefaultValue {
switch v := raw.(type) {
case string:
if v == "" {
return nil
}
return &VariableDefaultValue{variable.DefaultValue{SingleValue: v}}
case []any:
if len(v) == 0 {
return nil
}
values := make([]string, 0, len(v))
for _, item := range v {
if s, ok := item.(string); ok && s != "" {
values = append(values, s)
}
}
if len(values) == 0 {
return nil
}
return &VariableDefaultValue{variable.DefaultValue{SliceValues: values}}
}
return nil
}
func mapV1Sort(s string) ListVariableSpecSort {
switch s {
case "ASC":
return SortAlphabeticalAsc
case "DESC":
return SortAlphabeticalDesc
}
return ListVariableSpecSort{} // zero (omitzero) — SortNone is the implicit default
}

View File

@@ -27,6 +27,7 @@ type ClusterRecord struct {
ClusterMemoryAllocatable float64 `json:"clusterMemoryAllocatable" required:"true"`
NodeCountsByReadiness NodeCountsByReadiness `json:"nodeCountsByReadiness" required:"true"`
PodCountsByPhase PodCountsByPhase `json:"podCountsByPhase" required:"true"`
PodCountsByStatus PodCountsByStatus `json:"podCountsByStatus" required:"true"`
Meta map[string]string `json:"meta" required:"true"`
}

View File

@@ -17,16 +17,17 @@ type DaemonSets struct {
}
type DaemonSetRecord struct {
DaemonSetName string `json:"daemonSetName" required:"true"`
DaemonSetCPU float64 `json:"daemonSetCPU" required:"true"`
DaemonSetCPURequest float64 `json:"daemonSetCPURequest" required:"true"`
DaemonSetCPULimit float64 `json:"daemonSetCPULimit" required:"true"`
DaemonSetMemory float64 `json:"daemonSetMemory" required:"true"`
DaemonSetMemoryRequest float64 `json:"daemonSetMemoryRequest" required:"true"`
DaemonSetMemoryLimit float64 `json:"daemonSetMemoryLimit" required:"true"`
DaemonSetName string `json:"daemonSetName" required:"true"`
DaemonSetCPU float64 `json:"daemonSetCPU" required:"true"`
DaemonSetCPURequest float64 `json:"daemonSetCPURequest" required:"true"`
DaemonSetCPULimit float64 `json:"daemonSetCPULimit" required:"true"`
DaemonSetMemory float64 `json:"daemonSetMemory" required:"true"`
DaemonSetMemoryRequest float64 `json:"daemonSetMemoryRequest" required:"true"`
DaemonSetMemoryLimit float64 `json:"daemonSetMemoryLimit" required:"true"`
DesiredNodes int `json:"desiredNodes" required:"true"`
CurrentNodes int `json:"currentNodes" required:"true"`
PodCountsByPhase PodCountsByPhase `json:"podCountsByPhase" required:"true"`
PodCountsByStatus PodCountsByStatus `json:"podCountsByStatus" required:"true"`
Meta map[string]string `json:"meta" required:"true"`
}

View File

@@ -27,6 +27,7 @@ type DeploymentRecord struct {
DesiredPods int `json:"desiredPods" required:"true"`
AvailablePods int `json:"availablePods" required:"true"`
PodCountsByPhase PodCountsByPhase `json:"podCountsByPhase" required:"true"`
PodCountsByStatus PodCountsByStatus `json:"podCountsByStatus" required:"true"`
Meta map[string]string `json:"meta" required:"true"`
}

View File

@@ -29,6 +29,7 @@ type JobRecord struct {
FailedPods int `json:"failedPods" required:"true"`
SuccessfulPods int `json:"successfulPods" required:"true"`
PodCountsByPhase PodCountsByPhase `json:"podCountsByPhase" required:"true"`
PodCountsByStatus PodCountsByStatus `json:"podCountsByStatus" required:"true"`
Meta map[string]string `json:"meta" required:"true"`
}

View File

@@ -17,11 +17,12 @@ type Namespaces struct {
}
type NamespaceRecord struct {
NamespaceName string `json:"namespaceName" required:"true"`
NamespaceCPU float64 `json:"namespaceCPU" required:"true"`
NamespaceMemory float64 `json:"namespaceMemory" required:"true"`
PodCountsByPhase PodCountsByPhase `json:"podCountsByPhase" required:"true"`
Meta map[string]string `json:"meta" required:"true"`
NamespaceName string `json:"namespaceName" required:"true"`
NamespaceCPU float64 `json:"namespaceCPU" required:"true"`
NamespaceMemory float64 `json:"namespaceMemory" required:"true"`
PodCountsByPhase PodCountsByPhase `json:"podCountsByPhase" required:"true"`
PodCountsByStatus PodCountsByStatus `json:"podCountsByStatus" required:"true"`
Meta map[string]string `json:"meta" required:"true"`
}
// PostableNamespaces is the request body for the v2 namespaces list API.

View File

@@ -28,6 +28,7 @@ type NodeRecord struct {
Condition NodeCondition `json:"condition" required:"true"`
NodeCountsByReadiness NodeCountsByReadiness `json:"nodeCountsByReadiness" required:"true"`
PodCountsByPhase PodCountsByPhase `json:"podCountsByPhase" required:"true"`
PodCountsByStatus PodCountsByStatus `json:"podCountsByStatus" required:"true"`
NodeCPU float64 `json:"nodeCPU" required:"true"`
NodeCPUAllocatable float64 `json:"nodeCPUAllocatable" required:"true"`
NodeMemory float64 `json:"nodeMemory" required:"true"`

View File

@@ -26,18 +26,49 @@ type PodCountsByPhase struct {
Unknown int `json:"unknown" required:"true"`
}
// PodCountsByStatus buckets pod counts by their latest kubectl-style display
// status in the time window (see PodStatus). One field per derivable status.
type PodCountsByStatus struct {
// Phase fallback.
Pending int `json:"pending" required:"true"`
Running int `json:"running" required:"true"`
Failed int `json:"failed" required:"true"`
Unknown int `json:"unknown" required:"true"`
// Container-level reasons.
CrashLoopBackOff int `json:"crashLoopBackOff" required:"true"`
ImagePullBackOff int `json:"imagePullBackOff" required:"true"`
ErrImagePull int `json:"errImagePull" required:"true"`
CreateContainerConfigError int `json:"createContainerConfigError" required:"true"`
ContainerCreating int `json:"containerCreating" required:"true"`
OOMKilled int `json:"oomKilled" required:"true"`
Completed int `json:"completed" required:"true"`
Error int `json:"error" required:"true"`
ContainerCannotRun int `json:"containerCannotRun" required:"true"`
// Pod-level reasons.
Evicted int `json:"evicted" required:"true"`
NodeAffinity int `json:"nodeAffinity" required:"true"`
NodeLost int `json:"nodeLost" required:"true"`
Shutdown int `json:"shutdown" required:"true"`
UnexpectedAdmissionError int `json:"unexpectedAdmissionError" required:"true"`
}
type PodRecord struct {
PodUID string `json:"podUID" required:"true"`
PodCPU float64 `json:"podCPU" required:"true"`
PodCPURequest float64 `json:"podCPURequest" required:"true"`
PodCPULimit float64 `json:"podCPULimit" required:"true"`
PodMemory float64 `json:"podMemory" required:"true"`
PodMemoryRequest float64 `json:"podMemoryRequest" required:"true"`
PodMemoryLimit float64 `json:"podMemoryLimit" required:"true"`
PodPhase PodPhase `json:"podPhase" required:"true"`
PodCountsByPhase PodCountsByPhase `json:"podCountsByPhase" required:"true"`
PodAge int64 `json:"podAge" required:"true"`
Meta map[string]string `json:"meta" required:"true"`
PodUID string `json:"podUID" required:"true"`
PodCPU float64 `json:"podCPU" required:"true"`
PodCPURequest float64 `json:"podCPURequest" required:"true"`
PodCPULimit float64 `json:"podCPULimit" required:"true"`
PodMemory float64 `json:"podMemory" required:"true"`
PodMemoryRequest float64 `json:"podMemoryRequest" required:"true"`
PodMemoryLimit float64 `json:"podMemoryLimit" required:"true"`
PodPhase PodPhase `json:"podPhase" required:"true"`
PodCountsByPhase PodCountsByPhase `json:"podCountsByPhase" required:"true"`
PodStatus PodStatus `json:"podStatus" required:"true"`
PodCountsByStatus PodCountsByStatus `json:"podCountsByStatus" required:"true"`
PodRestarts int64 `json:"podRestarts" required:"true"`
PodAge int64 `json:"podAge" required:"true"`
Meta map[string]string `json:"meta" required:"true"`
}
// PostablePods is the request body for the v2 pods list API.

View File

@@ -26,6 +26,70 @@ func (PodPhase) Enum() []any {
}
}
// PodStatus is the kubectl-style pod display status, derived from
// k8s.pod.phase + k8s.pod.status_reason + k8s.container.status.reason
// (priority cascade: container reason > pod-level reason > phase).
// Wire values are lowercased by valuer.NewString (e.g. "crashloopbackoff");
// the comment strings below are the kubectl spelling for readability. The
// query emits kubectl-style strings, so SQL output maps to these constants
// explicitly (not by raw string-wrapping).
type PodStatus struct {
valuer.String
}
var (
// Phase fallback.
PodStatusPending = PodStatus{valuer.NewString("Pending")}
PodStatusRunning = PodStatus{valuer.NewString("Running")}
PodStatusFailed = PodStatus{valuer.NewString("Failed")}
PodStatusUnknown = PodStatus{valuer.NewString("Unknown")}
// Container-level reasons (k8s.container.status.reason allowlist).
PodStatusCrashLoopBackOff = PodStatus{valuer.NewString("CrashLoopBackOff")}
PodStatusImagePullBackOff = PodStatus{valuer.NewString("ImagePullBackOff")}
PodStatusErrImagePull = PodStatus{valuer.NewString("ErrImagePull")}
PodStatusCreateContainerConfigError = PodStatus{valuer.NewString("CreateContainerConfigError")}
PodStatusContainerCreating = PodStatus{valuer.NewString("ContainerCreating")}
PodStatusOOMKilled = PodStatus{valuer.NewString("OOMKilled")}
PodStatusCompleted = PodStatus{valuer.NewString("Completed")}
PodStatusError = PodStatus{valuer.NewString("Error")}
PodStatusContainerCannotRun = PodStatus{valuer.NewString("ContainerCannotRun")}
// Pod-level reasons (k8s.pod.status_reason).
PodStatusEvicted = PodStatus{valuer.NewString("Evicted")}
PodStatusNodeAffinity = PodStatus{valuer.NewString("NodeAffinity")}
PodStatusNodeLost = PodStatus{valuer.NewString("NodeLost")}
PodStatusShutdown = PodStatus{valuer.NewString("Shutdown")}
PodStatusUnexpectedAdmissionError = PodStatus{valuer.NewString("UnexpectedAdmissionError")}
// Sentinel when status cannot be derived (metrics absent / not in list view).
PodStatusNoData = PodStatus{valuer.NewString("no_data")}
)
func (PodStatus) Enum() []any {
return []any{
PodStatusPending,
PodStatusRunning,
PodStatusFailed,
PodStatusUnknown,
PodStatusCrashLoopBackOff,
PodStatusImagePullBackOff,
PodStatusErrImagePull,
PodStatusCreateContainerConfigError,
PodStatusContainerCreating,
PodStatusOOMKilled,
PodStatusCompleted,
PodStatusError,
PodStatusContainerCannotRun,
PodStatusEvicted,
PodStatusNodeAffinity,
PodStatusNodeLost,
PodStatusShutdown,
PodStatusUnexpectedAdmissionError,
PodStatusNoData,
}
}
// Numeric pod phase values emitted by the k8s.pod.phase metric
// (source: OTel kubeletstats receiver).
const (

View File

@@ -27,6 +27,7 @@ type StatefulSetRecord struct {
DesiredPods int `json:"desiredPods" required:"true"`
CurrentPods int `json:"currentPods" required:"true"`
PodCountsByPhase PodCountsByPhase `json:"podCountsByPhase" required:"true"`
PodCountsByStatus PodCountsByStatus `json:"podCountsByStatus" required:"true"`
Meta map[string]string `json:"meta" required:"true"`
}

View File

@@ -0,0 +1,127 @@
package querybuildertypesv5
// WrapInV5Envelope translates a single v4 builder query/formula map into a
// v5 query envelope ({"type": ..., "spec": ...}). It is a pure shape transform
// over untyped maps: v4 builder field names (groupBy/orderBy/selectColumns/
// dataSource) are rewritten to their v5 equivalents and a `signal` is derived
// from the data source. queryType selects the envelope type, except a formula
// (detected when name != queryMap["expression"]) is always emitted as
// "builder_formula".
//
// Migration code (pkg/transition) and the v1→v2 dashboard conversion both
// produce v5 envelopes, so this lives here with the v5 query types rather than
// in an infra-level package.
func WrapInV5Envelope(name string, queryMap map[string]any, queryType string) map[string]any {
// Create a properly structured v5 query
v5Query := map[string]any{
"name": name,
"disabled": queryMap["disabled"],
"legend": queryMap["legend"],
}
if name != queryMap["expression"] {
// formula
queryType = "builder_formula"
v5Query["expression"] = queryMap["expression"]
if functions, ok := queryMap["functions"]; ok {
v5Query["functions"] = functions
}
return map[string]any{
"type": queryType,
"spec": v5Query,
}
}
// Add signal based on data source
if dataSource, ok := queryMap["dataSource"].(string); ok {
switch dataSource {
case "traces":
v5Query["signal"] = "traces"
case "logs":
v5Query["signal"] = "logs"
case "metrics":
v5Query["signal"] = "metrics"
}
}
if stepInterval, ok := queryMap["stepInterval"]; ok {
v5Query["stepInterval"] = stepInterval
}
if aggregations, ok := queryMap["aggregations"]; ok {
v5Query["aggregations"] = aggregations
}
if filter, ok := queryMap["filter"]; ok {
v5Query["filter"] = filter
}
// Copy groupBy with proper structure
if groupBy, ok := queryMap["groupBy"].([]any); ok {
v5GroupBy := make([]any, len(groupBy))
for i, gb := range groupBy {
if gbMap, ok := gb.(map[string]any); ok {
v5GroupBy[i] = map[string]any{
"name": gbMap["key"],
"fieldDataType": gbMap["dataType"],
"fieldContext": gbMap["type"],
}
}
}
v5Query["groupBy"] = v5GroupBy
}
// Copy orderBy with proper structure
if orderBy, ok := queryMap["orderBy"].([]any); ok {
v5OrderBy := make([]any, len(orderBy))
for i, ob := range orderBy {
if obMap, ok := ob.(map[string]any); ok {
v5OrderBy[i] = map[string]any{
"key": map[string]any{
"name": obMap["columnName"],
"fieldDataType": obMap["dataType"],
"fieldContext": obMap["type"],
},
"direction": obMap["order"],
}
}
}
v5Query["order"] = v5OrderBy
}
// Copy selectColumns as selectFields
if selectColumns, ok := queryMap["selectColumns"].([]any); ok {
v5SelectFields := make([]any, len(selectColumns))
for i, col := range selectColumns {
if colMap, ok := col.(map[string]any); ok {
v5SelectFields[i] = map[string]any{
"name": colMap["key"],
"fieldDataType": colMap["dataType"],
"fieldContext": colMap["type"],
}
}
}
v5Query["selectFields"] = v5SelectFields
}
// Copy limit and offset
if limit, ok := queryMap["limit"]; ok {
v5Query["limit"] = limit
}
if offset, ok := queryMap["offset"]; ok {
v5Query["offset"] = offset
}
if having, ok := queryMap["having"]; ok {
v5Query["having"] = having
}
if functions, ok := queryMap["functions"]; ok {
v5Query["functions"] = functions
}
return map[string]any{
"type": queryType,
"spec": v5Query,
}
}

52
tests/fixtures/inframonitoring.py vendored Normal file
View File

@@ -0,0 +1,52 @@
"""Shared constants/helpers for v2 infra-monitoring pod-status tests."""
# All 18 PodCountsByStatus buckets (camelCase, matches inframonitoringtypes.PodCountsByStatus / the API response).
STATUS_BUCKETS = (
"pending",
"running",
"failed",
"unknown",
"crashLoopBackOff",
"imagePullBackOff",
"errImagePull",
"createContainerConfigError",
"containerCreating",
"oomKilled",
"completed",
"error",
"containerCannotRun",
"evicted",
"nodeAffinity",
"nodeLost",
"shutdown",
"unexpectedAdmissionError",
)
# Maps a PodStatus wire value (lowercase) to its PodCountsByStatus bucket key (camelCase).
STATUS_TO_BUCKET = {
"pending": "pending",
"running": "running",
"failed": "failed",
"unknown": "unknown",
"crashloopbackoff": "crashLoopBackOff",
"imagepullbackoff": "imagePullBackOff",
"errimagepull": "errImagePull",
"createcontainerconfigerror": "createContainerConfigError",
"containercreating": "containerCreating",
"oomkilled": "oomKilled",
"completed": "completed",
"error": "error",
"containercannotrun": "containerCannotRun",
"evicted": "evicted",
"nodeaffinity": "nodeAffinity",
"nodelost": "nodeLost",
"shutdown": "shutdown",
"unexpectedadmissionerror": "unexpectedAdmissionError",
}
def expected_status_counts(**nonzero: int) -> dict:
"""Full 19-bucket PodCountsByStatus with the given buckets set, rest 0."""
counts = {bucket: 0 for bucket in STATUS_BUCKETS}
counts.update(nonzero)
return counts

View File

@@ -34,3 +34,30 @@
{"metric_name":"k8s.pod.phase","labels":{"k8s.pod.uid":"pp-fail-2-uid","k8s.pod.name":"pp-fail-2","k8s.namespace.name":"ns-x","k8s.node.name":"pp-node","k8s.cluster.name":"pp-cluster"},"timestamp":"2025-01-10T10:00:00+00:00","value":4,"temporality":"Unspecified","type_":"Gauge","is_monotonic":false}
{"metric_name":"k8s.pod.phase","labels":{"k8s.pod.uid":"pp-fail-2-uid","k8s.pod.name":"pp-fail-2","k8s.namespace.name":"ns-x","k8s.node.name":"pp-node","k8s.cluster.name":"pp-cluster"},"timestamp":"2025-01-10T10:02:00+00:00","value":4,"temporality":"Unspecified","type_":"Gauge","is_monotonic":false}
{"metric_name":"k8s.pod.phase","labels":{"k8s.pod.uid":"pp-fail-2-uid","k8s.pod.name":"pp-fail-2","k8s.namespace.name":"ns-x","k8s.node.name":"pp-node","k8s.cluster.name":"pp-cluster"},"timestamp":"2025-01-10T10:04:00+00:00","value":4,"temporality":"Unspecified","type_":"Gauge","is_monotonic":false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-1-uid", "k8s.pod.name": "pp-run-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-1-uid", "k8s.pod.name": "pp-run-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:02:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-1-uid", "k8s.pod.name": "pp-run-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-2-uid", "k8s.pod.name": "pp-run-2", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.container.status.reason", "labels": {"k8s.pod.uid": "pp-run-2-uid", "k8s.pod.name": "pp-run-2", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster", "k8s.container.name": "app", "k8s.container.status.reason": "CrashLoopBackOff"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 1, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-2-uid", "k8s.pod.name": "pp-run-2", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:02:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.container.status.reason", "labels": {"k8s.pod.uid": "pp-run-2-uid", "k8s.pod.name": "pp-run-2", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster", "k8s.container.name": "app", "k8s.container.status.reason": "CrashLoopBackOff"}, "timestamp": "2025-01-10T10:02:00+00:00", "value": 1, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-2-uid", "k8s.pod.name": "pp-run-2", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.container.status.reason", "labels": {"k8s.pod.uid": "pp-run-2-uid", "k8s.pod.name": "pp-run-2", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster", "k8s.container.name": "app", "k8s.container.status.reason": "CrashLoopBackOff"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 1, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-3-uid", "k8s.pod.name": "pp-run-3", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-3-uid", "k8s.pod.name": "pp-run-3", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:02:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-3-uid", "k8s.pod.name": "pp-run-3", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-4-uid", "k8s.pod.name": "pp-run-4", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-4-uid", "k8s.pod.name": "pp-run-4", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:02:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-4-uid", "k8s.pod.name": "pp-run-4", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-pend-1-uid", "k8s.pod.name": "pp-pend-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-pend-1-uid", "k8s.pod.name": "pp-pend-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:02:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-pend-1-uid", "k8s.pod.name": "pp-pend-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-fail-1-uid", "k8s.pod.name": "pp-fail-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.container.status.reason", "labels": {"k8s.pod.uid": "pp-fail-1-uid", "k8s.pod.name": "pp-fail-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster", "k8s.container.name": "app", "k8s.container.status.reason": "Error"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 1, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-fail-1-uid", "k8s.pod.name": "pp-fail-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:02:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.container.status.reason", "labels": {"k8s.pod.uid": "pp-fail-1-uid", "k8s.pod.name": "pp-fail-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster", "k8s.container.name": "app", "k8s.container.status.reason": "Error"}, "timestamp": "2025-01-10T10:02:00+00:00", "value": 1, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-fail-1-uid", "k8s.pod.name": "pp-fail-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.container.status.reason", "labels": {"k8s.pod.uid": "pp-fail-1-uid", "k8s.pod.name": "pp-fail-1", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster", "k8s.container.name": "app", "k8s.container.status.reason": "Error"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 1, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-fail-2-uid", "k8s.pod.name": "pp-fail-2", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 1, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-fail-2-uid", "k8s.pod.name": "pp-fail-2", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:02:00+00:00", "value": 1, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-fail-2-uid", "k8s.pod.name": "pp-fail-2", "k8s.namespace.name": "ns-x", "k8s.node.name": "pp-node", "k8s.cluster.name": "pp-cluster"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 1, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}

View File

@@ -151,3 +151,30 @@
{"metric_name":"k8s.deployment.available","labels":{"k8s.deployment.name":"pp-dep","k8s.namespace.name":"ns-pp","k8s.cluster.name":"cluster-x"},"timestamp":"2025-01-10T10:02:00+00:00","value":4,"temporality":"Unspecified","type_":"Gauge","is_monotonic":false}
{"metric_name":"k8s.deployment.desired","labels":{"k8s.deployment.name":"pp-dep","k8s.namespace.name":"ns-pp","k8s.cluster.name":"cluster-x"},"timestamp":"2025-01-10T10:04:00+00:00","value":7,"temporality":"Unspecified","type_":"Gauge","is_monotonic":false}
{"metric_name":"k8s.deployment.available","labels":{"k8s.deployment.name":"pp-dep","k8s.namespace.name":"ns-pp","k8s.cluster.name":"cluster-x"},"timestamp":"2025-01-10T10:04:00+00:00","value":4,"temporality":"Unspecified","type_":"Gauge","is_monotonic":false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-1-uid", "k8s.pod.name": "pp-run-1", "k8s.deployment.name": "pp-dep", "k8s.namespace.name": "ns-pp", "k8s.cluster.name": "cluster-x"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-1-uid", "k8s.pod.name": "pp-run-1", "k8s.deployment.name": "pp-dep", "k8s.namespace.name": "ns-pp", "k8s.cluster.name": "cluster-x"}, "timestamp": "2025-01-10T10:02:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-1-uid", "k8s.pod.name": "pp-run-1", "k8s.deployment.name": "pp-dep", "k8s.namespace.name": "ns-pp", "k8s.cluster.name": "cluster-x"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.pod.status_reason", "labels": {"k8s.pod.uid": "pp-run-2-uid", "k8s.pod.name": "pp-run-2", "k8s.deployment.name": "pp-dep", "k8s.namespace.name": "ns-pp", "k8s.cluster.name": "cluster-x"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 6, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.container.status.reason", "labels": {"k8s.pod.uid": "pp-run-2-uid", "k8s.pod.name": "pp-run-2", "k8s.deployment.name": "pp-dep", "k8s.namespace.name": "ns-pp", "k8s.cluster.name": "cluster-x", "k8s.container.name": "app", "k8s.container.status.reason": "CrashLoopBackOff"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 1, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
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View File

@@ -103,3 +103,45 @@
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View File

@@ -124,3 +124,42 @@
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View File

@@ -19,3 +19,10 @@
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View File

@@ -40,3 +40,21 @@
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{"metric_name": "k8s.container.restarts", "labels": {"k8s.pod.uid": "acc-p2-uid", "k8s.pod.name": "acc-p2", "k8s.namespace.name": "ns-b", "k8s.node.name": "node-b", "k8s.deployment.name": "dep-2", "k8s.cluster.name": "cluster-x", "k8s.statefulset.name": "", "k8s.daemonset.name": "", "k8s.job.name": "", "k8s.cronjob.name": "", "k8s.pod.start_time": "__START_TIME__", "k8s.container.name": "app"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 0, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.container.status.reason", "labels": {"k8s.pod.uid": "acc-p2-uid", "k8s.pod.name": "acc-p2", "k8s.namespace.name": "ns-b", "k8s.node.name": "node-b", "k8s.deployment.name": "dep-2", "k8s.cluster.name": "cluster-x", "k8s.statefulset.name": "", "k8s.daemonset.name": "", "k8s.job.name": "", "k8s.cronjob.name": "", "k8s.pod.start_time": "__START_TIME__", "k8s.container.name": "app", "k8s.container.status.reason": "CrashLoopBackOff"}, "timestamp": "2025-01-10T10:00:00+00:00", "value": 0, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.container.status.reason", "labels": {"k8s.pod.uid": "acc-p2-uid", "k8s.pod.name": "acc-p2", "k8s.namespace.name": "ns-b", "k8s.node.name": "node-b", "k8s.deployment.name": "dep-2", "k8s.cluster.name": "cluster-x", "k8s.statefulset.name": "", "k8s.daemonset.name": "", "k8s.job.name": "", "k8s.cronjob.name": "", "k8s.pod.start_time": "__START_TIME__", "k8s.container.name": "app", "k8s.container.status.reason": "CrashLoopBackOff"}, "timestamp": "2025-01-10T10:02:00+00:00", "value": 0, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}
{"metric_name": "k8s.container.status.reason", "labels": {"k8s.pod.uid": "acc-p2-uid", "k8s.pod.name": "acc-p2", "k8s.namespace.name": "ns-b", "k8s.node.name": "node-b", "k8s.deployment.name": "dep-2", "k8s.cluster.name": "cluster-x", "k8s.statefulset.name": "", "k8s.daemonset.name": "", "k8s.job.name": "", "k8s.cronjob.name": "", "k8s.pod.start_time": "__START_TIME__", "k8s.container.name": "app", "k8s.container.status.reason": "CrashLoopBackOff"}, "timestamp": "2025-01-10T10:04:00+00:00", "value": 0, "temporality": "Unspecified", "type_": "Gauge", "is_monotonic": false}

View File

@@ -9,7 +9,17 @@
"podMemoryRequest": 0.5,
"podMemoryLimit": 0.25,
"podPhase": "running",
"podCountsByPhase": {"pending": 0, "running": 1, "succeeded": 0, "failed": 0, "unknown": 0}
"podCountsByPhase": {"pending": 0, "running": 1, "succeeded": 0, "failed": 0, "unknown": 0},
"podStatus": "running",
"podRestarts": 0,
"podCountsByStatus": {
"pending": 0, "running": 1, "failed": 0, "unknown": 0,
"crashLoopBackOff": 0, "imagePullBackOff": 0, "errImagePull": 0,
"createContainerConfigError": 0, "containerCreating": 0, "oomKilled": 0,
"completed": 0, "error": 0, "containerCannotRun": 0,
"evicted": 0, "nodeAffinity": 0, "nodeLost": 0, "shutdown": 0,
"unexpectedAdmissionError": 0
}
},
{
"podName": "acc-p2",
@@ -20,7 +30,17 @@
"podMemoryRequest": 0.75,
"podMemoryLimit": 0.5,
"podPhase": "running",
"podCountsByPhase": {"pending": 0, "running": 1, "succeeded": 0, "failed": 0, "unknown": 0}
"podCountsByPhase": {"pending": 0, "running": 1, "succeeded": 0, "failed": 0, "unknown": 0},
"podStatus": "running",
"podRestarts": 0,
"podCountsByStatus": {
"pending": 0, "running": 1, "failed": 0, "unknown": 0,
"crashLoopBackOff": 0, "imagePullBackOff": 0, "errImagePull": 0,
"createContainerConfigError": 0, "containerCreating": 0, "oomKilled": 0,
"completed": 0, "error": 0, "containerCannotRun": 0,
"evicted": 0, "nodeAffinity": 0, "nodeLost": 0, "shutdown": 0,
"unexpectedAdmissionError": 0
}
}
]
}

View File

@@ -10,6 +10,7 @@ import requests
from fixtures import types
from fixtures.auth import USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD
from fixtures.fs import get_testdata_file_path
from fixtures.inframonitoring import STATUS_BUCKETS, STATUS_TO_BUCKET
from fixtures.metrics import Metrics
from fixtures.querier import compare_values, get_all_warnings
from fixtures.time import parse_timestamp
@@ -121,6 +122,9 @@ def test_pods_accuracy(
"podMemoryLimit",
"podPhase",
"podCountsByPhase",
"podStatus",
"podCountsByStatus",
"podRestarts",
"podAge",
"meta",
):
@@ -131,6 +135,11 @@ def test_pods_accuracy(
assert bucket in record["podCountsByPhase"], f"missing phase bucket {bucket} in {record['podCountsByPhase']!r}"
assert isinstance(record["podCountsByPhase"][bucket], int)
# All status buckets always present, integer-typed.
for bucket in STATUS_BUCKETS:
assert bucket in record["podCountsByStatus"], f"missing status bucket {bucket} in {record['podCountsByStatus']!r}"
assert isinstance(record["podCountsByStatus"][bucket], int)
# Exact values.
pod_name = record["meta"]["k8s.pod.name"]
exp = exp_by_name[pod_name]
@@ -145,6 +154,9 @@ def test_pods_accuracy(
assert compare_values(record[field], exp[field], 1e-9), f"{pod_name}.{field}: got {record[field]}, expected {exp[field]}"
assert record["podPhase"] == exp["podPhase"]
assert record["podCountsByPhase"] == exp["podCountsByPhase"]
assert record["podStatus"] == exp["podStatus"], f"{pod_name}.podStatus: got {record['podStatus']}, expected {exp['podStatus']}"
assert record["podCountsByStatus"] == exp["podCountsByStatus"], f"{pod_name}.podCountsByStatus mismatch: got {record['podCountsByStatus']}"
assert record["podRestarts"] == exp["podRestarts"], f"{pod_name}.podRestarts: got {record['podRestarts']}, expected {exp['podRestarts']}"
assert record["podAge"] == expected_age_ms, f"{pod_name}.podAge: got {record['podAge']}, expected {expected_age_ms}"
@@ -793,3 +805,343 @@ def test_pods_validation_errors(
error = response.json()["error"]
assert error["code"] == "invalid_input"
assert err_substr.lower() in error["message"].lower(), f"expected substring {err_substr!r} not found in: {error['message']!r}"
@pytest.mark.parametrize(
"pod_name,expected_status",
[
# Expectations are what `kubectl get pods` STATUS would show for the
# seeded K8s state in pods_phases.jsonl (not the query internals).
pytest.param("pend-p", "pending", id="pending_phase_fallback"),
pytest.param("run-p", "crashloopbackoff", id="container_reason_beats_running_phase"),
pytest.param("succ-p", "completed", id="completed_terminated_reason"),
pytest.param("fail-p", "evicted", id="pod_reason_beats_phase"),
pytest.param("unk-p", "crashloopbackoff", id="multi_container_priority"),
],
)
def test_pods_status_list_mode(
signoz: types.SigNoz,
create_user_admin: None, # pylint: disable=unused-argument
get_token,
insert_metrics,
pod_name: str,
expected_status: str,
) -> None:
"""List mode: podStatus is the kubectl-style display status derived from
k8s.pod.phase + k8s.pod.status_reason + k8s.container.status.reason.
Seeded states -> what kubectl would print:
pend-p Pending (unscheduled; phase fallback, no container reason)
run-p CrashLoopBackOff (container crashlooping; phase still Running)
succ-p Completed (container terminated Completed; phase Succeeded)
fail-p Evicted (pod-level Status.Reason overrides phase)
unk-p CrashLoopBackOff (2 containers: OOMKilled + CrashLoopBackOff)
NOTE unk-p: a multi-container pod. kubectl picks the reason by container
order; we pick by reason priority (waiting>terminated), so CrashLoopBackOff
wins over OOMKilled. Documented divergence for multi-container pods — metrics
carry no container ordering.
"""
now = datetime.now(tz=UTC).replace(microsecond=0)
insert_metrics(
_load_pods_metrics(
"inframonitoring/pods_phases.jsonl",
base_time=now - timedelta(minutes=4),
)
)
token = get_token(USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD)
response = requests.post(
signoz.self.host_configs["8080"].get(ENDPOINT),
headers={"authorization": f"Bearer {token}"},
json={
"start": int((now - timedelta(minutes=5)).timestamp() * 1000),
"end": int(now.timestamp() * 1000),
"limit": 50,
"filter": {"expression": f"k8s.pod.name = '{pod_name}'"},
},
timeout=5,
)
assert response.status_code == HTTPStatus.OK, response.text
data = response.json()["data"]
assert data["total"] == 1
rec = data["records"][0]
assert rec["meta"]["k8s.pod.name"] == pod_name
assert rec["podStatus"] == expected_status
# List mode: pod is its own group -> exactly its status bucket is 1.
bucket = STATUS_TO_BUCKET[expected_status]
assert rec["podCountsByStatus"][bucket] == 1
for other in STATUS_BUCKETS:
if other != bucket:
assert rec["podCountsByStatus"][other] == 0, f"expected {other}=0 when status={expected_status}, got {rec['podCountsByStatus']}"
@pytest.mark.parametrize(
"pod_name,expected_restarts",
[
# Mirrors kubectl RESTARTS (sum across the pod's containers).
pytest.param("run-p", 5, id="single_container"),
pytest.param("succ-p", 0, id="zero_restarts"),
pytest.param("unk-p", 10, id="multi_container_sum"), # 2 + 8
pytest.param("pend-p", -1, id="no_series_sentinel"), # unscheduled -> no metric -> -1
],
)
def test_pods_restarts_list_mode(
signoz: types.SigNoz,
create_user_admin: None, # pylint: disable=unused-argument
get_token,
insert_metrics,
pod_name: str,
expected_restarts: int,
) -> None:
"""podRestarts is the sum of k8s.container.restarts across the pod's
containers (kubectl RESTARTS). pend-p never scheduled so emits no restart
series -> -1 no-data sentinel (kubectl would show 0)."""
now = datetime.now(tz=UTC).replace(microsecond=0)
insert_metrics(
_load_pods_metrics(
"inframonitoring/pods_phases.jsonl",
base_time=now - timedelta(minutes=4),
)
)
token = get_token(USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD)
response = requests.post(
signoz.self.host_configs["8080"].get(ENDPOINT),
headers={"authorization": f"Bearer {token}"},
json={
"start": int((now - timedelta(minutes=5)).timestamp() * 1000),
"end": int(now.timestamp() * 1000),
"limit": 50,
"filter": {"expression": f"k8s.pod.name = '{pod_name}'"},
},
timeout=5,
)
assert response.status_code == HTTPStatus.OK, response.text
data = response.json()["data"]
assert data["total"] == 1
rec = data["records"][0]
assert rec["meta"]["k8s.pod.name"] == pod_name
assert rec["podRestarts"] == expected_restarts
def test_pods_status_latest_wins(
signoz: types.SigNoz,
create_user_admin: None, # pylint: disable=unused-argument
get_token,
insert_metrics,
) -> None:
"""A stale container reason from an old incarnation must not win. trans-p's
first incarnation (container.id=aaa) reported CrashLoopBackOff, then it
recovered in a new incarnation (container.id=bbb, CrashLoopBackOff=0) while
phase went Running. kubectl shows Running; the frozen stale series is
ignored via argMax-by-latest-timestamp per (pod, container, reason)."""
now = datetime.now(tz=UTC).replace(microsecond=0)
insert_metrics(
_load_pods_metrics(
"inframonitoring/pods_phases_transition.jsonl",
base_time=now - timedelta(minutes=8),
)
)
token = get_token(USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD)
response = requests.post(
signoz.self.host_configs["8080"].get(ENDPOINT),
headers={"authorization": f"Bearer {token}"},
json={
"start": int((now - timedelta(minutes=10)).timestamp() * 1000),
"end": int(now.timestamp() * 1000),
"limit": 50,
},
timeout=5,
)
assert response.status_code == HTTPStatus.OK, response.text
data = response.json()["data"]
assert data["total"] == 1
rec = data["records"][0]
assert rec["meta"]["k8s.pod.name"] == "trans-p"
assert rec["podStatus"] == "running"
def test_pods_restarts_latest_wins(
signoz: types.SigNoz,
create_user_admin: None, # pylint: disable=unused-argument
get_token,
insert_metrics,
) -> None:
"""restartCount is cumulative per container. Across incarnations
(container.id=aaa reported 1, then container.id=bbb reported 5) podRestarts
is the LATEST value 5 (kubectl RESTARTS), not the sum 6 — incarnations must
not be double-counted."""
now = datetime.now(tz=UTC).replace(microsecond=0)
insert_metrics(
_load_pods_metrics(
"inframonitoring/pods_phases_transition.jsonl",
base_time=now - timedelta(minutes=8),
)
)
token = get_token(USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD)
response = requests.post(
signoz.self.host_configs["8080"].get(ENDPOINT),
headers={"authorization": f"Bearer {token}"},
json={
"start": int((now - timedelta(minutes=10)).timestamp() * 1000),
"end": int(now.timestamp() * 1000),
"limit": 50,
},
timeout=5,
)
assert response.status_code == HTTPStatus.OK, response.text
data = response.json()["data"]
assert data["total"] == 1
rec = data["records"][0]
assert rec["meta"]["k8s.pod.name"] == "trans-p"
assert rec["podRestarts"] == 5
def test_pods_status_grouped_mode(
signoz: types.SigNoz,
create_user_admin: None, # pylint: disable=unused-argument
get_token,
insert_metrics,
) -> None:
"""groupBy=[k8s.namespace.name] aggregates each pod's display status across
ns-mixed. podStatus is no-data (no single pod identifies the group). Seeded
states -> kubectl: g-run-1/g-run-3 Running, g-run-2 CrashLoopBackOff,
g-fail-1 Error, g-fail-2 Evicted, g-pend-1 Pending."""
now = datetime.now(tz=UTC).replace(microsecond=0)
insert_metrics(
_load_pods_metrics(
"inframonitoring/pods_phases_grouped.jsonl",
base_time=now - timedelta(minutes=4),
)
)
token = get_token(USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD)
response = requests.post(
signoz.self.host_configs["8080"].get(ENDPOINT),
headers={"authorization": f"Bearer {token}"},
json={
"start": int((now - timedelta(minutes=5)).timestamp() * 1000),
"end": int(now.timestamp() * 1000),
"limit": 50,
"groupBy": [
{
"name": "k8s.namespace.name",
"fieldDataType": "string",
"fieldContext": "resource",
}
],
},
timeout=5,
)
assert response.status_code == HTTPStatus.OK, response.text
data = response.json()["data"]
assert data["total"] == 1
rec = data["records"][0]
assert rec["meta"].get("k8s.namespace.name") == "ns-mixed"
assert rec["podStatus"] == "no_data"
expected_counts = {bucket: 0 for bucket in STATUS_BUCKETS}
expected_counts.update(
{
"running": 2,
"crashLoopBackOff": 1,
"error": 1,
"evicted": 1,
"pending": 1,
}
)
assert rec["podCountsByStatus"] == expected_counts
def test_pods_restarts_grouped_mode(
signoz: types.SigNoz,
create_user_admin: None, # pylint: disable=unused-argument
get_token,
insert_metrics,
) -> None:
"""Grouped podRestarts is the sum of restarts across all pods in the group.
In ns-mixed only g-run-2 has restarts (3); all others 0 -> group total 3."""
now = datetime.now(tz=UTC).replace(microsecond=0)
insert_metrics(
_load_pods_metrics(
"inframonitoring/pods_phases_grouped.jsonl",
base_time=now - timedelta(minutes=4),
)
)
token = get_token(USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD)
response = requests.post(
signoz.self.host_configs["8080"].get(ENDPOINT),
headers={"authorization": f"Bearer {token}"},
json={
"start": int((now - timedelta(minutes=5)).timestamp() * 1000),
"end": int(now.timestamp() * 1000),
"limit": 50,
"groupBy": [
{
"name": "k8s.namespace.name",
"fieldDataType": "string",
"fieldContext": "resource",
}
],
},
timeout=5,
)
assert response.status_code == HTTPStatus.OK, response.text
data = response.json()["data"]
assert data["total"] == 1
rec = data["records"][0]
assert rec["meta"].get("k8s.namespace.name") == "ns-mixed"
assert rec["podRestarts"] == 3
def test_pods_status_missing_metric_warning(
signoz: types.SigNoz,
create_user_admin: None, # pylint: disable=unused-argument
get_token,
insert_metrics,
) -> None:
"""When the status metrics were never ingested, the status query is gated
off: a warning naming the missing metric(s) is surfaced, podStatus is the
no-data sentinel, and all status buckets are 0. (pods_missing_metrics.jsonl
seeds only k8s.pod.cpu.usage.)"""
now = datetime.now(tz=UTC).replace(microsecond=0)
insert_metrics(
_load_pods_metrics(
"inframonitoring/pods_missing_metrics.jsonl",
base_time=now - timedelta(minutes=4),
)
)
token = get_token(USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD)
response = requests.post(
signoz.self.host_configs["8080"].get(ENDPOINT),
headers={"authorization": f"Bearer {token}"},
json={
"start": int((now - timedelta(minutes=5)).timestamp() * 1000),
"end": int(now.timestamp() * 1000),
"limit": 50,
"filter": {"expression": "k8s.pod.name = 'miss-p1'"},
},
timeout=5,
)
assert response.status_code == HTTPStatus.OK, response.text
body = response.json()
data = body["data"]
# Collect primary + additional warning messages.
warning = data.get("warning") or {}
msgs = ([warning["message"]] if warning.get("message") else []) + [w["message"] for w in warning.get("warnings", [])]
assert any("Pod status could not be computed" in m for m in msgs), f"status-gate warning missing: {msgs!r}"
assert any("k8s.container.status.reason" in m for m in msgs), f"missing metric not named: {msgs!r}"
rec = data["records"][0]
assert rec["meta"]["k8s.pod.name"] == "miss-p1"
assert rec["podStatus"] == "no_data"
for bucket in STATUS_BUCKETS:
assert rec["podCountsByStatus"][bucket] == 0, f"expected {bucket}=0 when gated off, got {rec['podCountsByStatus']}"
assert rec["podRestarts"] == -1

View File

@@ -10,6 +10,7 @@ import requests
from fixtures import types
from fixtures.auth import USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD
from fixtures.fs import get_testdata_file_path
from fixtures.inframonitoring import expected_status_counts
from fixtures.metrics import Metrics
from fixtures.querier import compare_values, get_all_warnings
@@ -404,6 +405,49 @@ def test_clusters_pod_phase_aggregation(
}
def test_clusters_pod_status_aggregation(
signoz: types.SigNoz,
create_user_admin: None, # pylint: disable=unused-argument
get_token,
insert_metrics,
) -> None:
"""Cluster's pods aggregated by kubectl-style display status. Seeded states
in clusters_pod_phases.jsonl -> what kubectl would show:
pp-run-1/3/4 Running, pp-run-2 CrashLoopBackOff (phase Running),
pp-fail-1 Error, pp-fail-2 Evicted (pod-level), pp-pend-1 Pending.
"""
now = datetime.now(tz=UTC).replace(microsecond=0)
insert_metrics(
Metrics.load_from_file(
get_testdata_file_path("inframonitoring/clusters_pod_phases.jsonl"),
base_time=now - timedelta(minutes=4),
)
)
token = get_token(USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD)
response = requests.post(
signoz.self.host_configs["8080"].get(ENDPOINT),
headers={"authorization": f"Bearer {token}"},
json={
"start": int((now - timedelta(minutes=5)).timestamp() * 1000),
"end": int(now.timestamp() * 1000),
"limit": 50,
"filter": {"expression": "k8s.cluster.name = 'pp-cluster'"},
},
timeout=5,
)
assert response.status_code == HTTPStatus.OK, response.text
data = response.json()["data"]
assert data["total"] == 1
rec = data["records"][0]
assert rec["clusterName"] == "pp-cluster"
assert rec["podCountsByStatus"] == expected_status_counts(running=3, crashLoopBackOff=1, error=1, evicted=1, pending=1)
# Phase counts unchanged by the status enrichment.
assert rec["podCountsByPhase"] == {"pending": 1, "running": 4, "succeeded": 0, "failed": 2, "unknown": 0}
# All status metrics present -> gate satisfied -> no status warning.
assert all("Pod status could not be computed" not in w["message"] for w in get_all_warnings(response.json()))
@pytest.mark.parametrize(
"group_key,expected",
[

View File

@@ -10,6 +10,7 @@ import requests
from fixtures import types
from fixtures.auth import USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD
from fixtures.fs import get_testdata_file_path
from fixtures.inframonitoring import expected_status_counts
from fixtures.metrics import Metrics
from fixtures.querier import compare_values, get_all_warnings
@@ -385,6 +386,49 @@ def test_deployments_pod_phase_aggregation(
}
def test_deployments_pod_status_aggregation(
signoz: types.SigNoz,
create_user_admin: None, # pylint: disable=unused-argument
get_token,
insert_metrics,
) -> None:
"""Deployment's pods aggregated by kubectl-style display status. Seeded states
in deployments_pod_phases.jsonl -> what kubectl would show:
pp-run-1/3/4 Running, pp-run-2 CrashLoopBackOff (phase Running),
pp-fail-1 Error, pp-fail-2 Evicted (pod-level), pp-pen-1 Pending.
"""
now = datetime.now(tz=UTC).replace(microsecond=0)
insert_metrics(
Metrics.load_from_file(
get_testdata_file_path("inframonitoring/deployments_pod_phases.jsonl"),
base_time=now - timedelta(minutes=4),
)
)
token = get_token(USER_ADMIN_EMAIL, USER_ADMIN_PASSWORD)
response = requests.post(
signoz.self.host_configs["8080"].get(ENDPOINT),
headers={"authorization": f"Bearer {token}"},
json={
"start": int((now - timedelta(minutes=5)).timestamp() * 1000),
"end": int(now.timestamp() * 1000),
"limit": 50,
"filter": {"expression": "k8s.deployment.name = 'pp-dep'"},
},
timeout=5,
)
assert response.status_code == HTTPStatus.OK, response.text
data = response.json()["data"]
assert data["total"] == 1
rec = data["records"][0]
assert rec["deploymentName"] == "pp-dep"
assert rec["podCountsByStatus"] == expected_status_counts(running=3, crashLoopBackOff=1, error=1, evicted=1, pending=1)
# Phase counts unchanged by the status enrichment.
assert rec["podCountsByPhase"] == {"pending": 1, "running": 4, "succeeded": 0, "failed": 2, "unknown": 0}
# All status metrics present -> gate satisfied -> no status warning.
assert all("Pod status could not be computed" not in w["message"] for w in get_all_warnings(response.json()))
def test_deployments_desired_available_counts(
signoz: types.SigNoz,
create_user_admin: None, # pylint: disable=unused-argument

View File

@@ -45,6 +45,13 @@ _PODS_OPT = [
"k8s.pod.memory_limit_utilization",
]
# Default-off pod-status metrics (k8sclusterreceiver), optional on every tab
# that surfaces pod status counts.
_POD_STATUS_OPT = [
"k8s.pod.status_reason",
"k8s.container.status.reason",
]
# Mirror of checkSpecs: type -> {default|optional: {component: [metrics]}, attrs: {component: [attrs]}}.
SPECS = {
"hosts": {
@@ -58,8 +65,8 @@ SPECS = {
"attrs": {HMR: ["process.pid"]},
},
"pods": {
"default": {KSR: ["k8s.pod.cpu.usage", "k8s.pod.memory.working_set"], KCR: ["k8s.pod.phase"]},
"optional": {KSR: list(_PODS_OPT)},
"default": {KSR: ["k8s.pod.cpu.usage", "k8s.pod.memory.working_set"], KCR: ["k8s.pod.phase", "k8s.container.restarts"]},
"optional": {KSR: list(_PODS_OPT), KCR: ["k8s.pod.status_reason", "k8s.container.status.reason"]},
"attrs": {KAP: ["k8s.pod.uid"]},
},
"nodes": {
@@ -67,37 +74,37 @@ SPECS = {
KSR: ["k8s.node.cpu.usage", "k8s.node.memory.working_set"],
KCR: ["k8s.node.allocatable_cpu", "k8s.node.allocatable_memory", "k8s.node.condition_ready", "k8s.pod.phase"],
},
"optional": {},
"optional": {KCR: list(_POD_STATUS_OPT)},
"attrs": {KAP: ["k8s.node.name"]},
},
"deployments": {
"default": {KSR: ["k8s.pod.cpu.usage", "k8s.pod.memory.working_set"], KCR: ["k8s.pod.phase", "k8s.deployment.desired", "k8s.deployment.available"]},
"optional": {KSR: list(_PODS_OPT)},
"optional": {KSR: list(_PODS_OPT), KCR: list(_POD_STATUS_OPT)},
"attrs": {KAP: ["k8s.deployment.name", "k8s.namespace.name"], RDP: ["k8s.cluster.name"]},
},
"daemonsets": {
"default": {KSR: ["k8s.pod.cpu.usage", "k8s.pod.memory.working_set"], KCR: ["k8s.pod.phase", "k8s.daemonset.desired_scheduled_nodes", "k8s.daemonset.current_scheduled_nodes"]},
"optional": {KSR: list(_PODS_OPT)},
"optional": {KSR: list(_PODS_OPT), KCR: list(_POD_STATUS_OPT)},
"attrs": {KAP: ["k8s.daemonset.name", "k8s.namespace.name"], RDP: ["k8s.cluster.name"]},
},
"statefulsets": {
"default": {KSR: ["k8s.pod.cpu.usage", "k8s.pod.memory.working_set"], KCR: ["k8s.pod.phase", "k8s.statefulset.desired_pods", "k8s.statefulset.current_pods"]},
"optional": {KSR: list(_PODS_OPT)},
"optional": {KSR: list(_PODS_OPT), KCR: list(_POD_STATUS_OPT)},
"attrs": {KAP: ["k8s.statefulset.name", "k8s.namespace.name"], RDP: ["k8s.cluster.name"]},
},
"jobs": {
"default": {KSR: ["k8s.pod.cpu.usage", "k8s.pod.memory.working_set"], KCR: ["k8s.pod.phase", "k8s.job.desired_successful_pods", "k8s.job.active_pods", "k8s.job.failed_pods", "k8s.job.successful_pods"]},
"optional": {KSR: list(_PODS_OPT)},
"optional": {KSR: list(_PODS_OPT), KCR: list(_POD_STATUS_OPT)},
"attrs": {KAP: ["k8s.job.name", "k8s.namespace.name"], RDP: ["k8s.cluster.name"]},
},
"namespaces": {
"default": {KSR: ["k8s.pod.cpu.usage", "k8s.pod.memory.working_set"], KCR: ["k8s.pod.phase"]},
"optional": {},
"optional": {KCR: list(_POD_STATUS_OPT)},
"attrs": {KAP: ["k8s.namespace.name"], RDP: ["k8s.cluster.name"]},
},
"clusters": {
"default": {KSR: ["k8s.node.cpu.usage", "k8s.node.memory.working_set"], KCR: ["k8s.node.allocatable_cpu", "k8s.node.allocatable_memory", "k8s.node.condition_ready", "k8s.pod.phase"]},
"optional": {},
"optional": {KCR: list(_POD_STATUS_OPT)},
"attrs": {RDP: ["k8s.cluster.name"]},
},
"volumes": {