package kube
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>
Native OCaml Kubernetes client and controller runtime
Install
dune-project
Dependency
Authors
Maintainers
Sources
v0.1.3.tar.gz
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doc/src/kube.crd/kube_crd.ml.html
Source file kube_crd.ml
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enum : string list; min_length : int option; max_length : int option; pattern : string option; } | Integer of { format : [ `Int32 | `Int64 ] option; minimum : int option; maximum : int option; } | Number of { format : [ `Float | `Double ] option } | Boolean | Array of { items : t; min_items : int option; max_items : int option; unique_items : bool; } | Object of { properties : (string * t) list; required : string list; additional_properties : t option; preserve_unknown_fields : bool; } | One_of of t list | Int_or_string | Preserve_unknown | Raw of Yojson.Safe.t | Decorated of { schema : t; description : string option; default : Yojson.Safe.t option; nullable : bool; } let non_negative name = function | Some value when value < 0 -> invalid_arg ("Kube_crd.Schema." ^ name ^ " must not be negative") | value -> value let string ?format ?(enum = []) ?min_length ?max_length ?pattern () = let min_length = non_negative "min_length" min_length in let max_length = non_negative "max_length" max_length in (match (min_length, max_length) with | Some minimum, Some maximum when minimum > maximum -> invalid_arg "Kube_crd.Schema.string: min_length exceeds max_length" | _ -> ()); String { format; enum; min_length; max_length; pattern } let integer ?format ?minimum ?maximum () = (match (minimum, maximum) with | Some minimum, Some maximum when minimum > maximum -> invalid_arg "Kube_crd.Schema.integer: minimum exceeds maximum" | _ -> ()); Integer { format; minimum; maximum } let number ?format () = Number { format } let boolean () = Boolean let array ?min_items ?max_items ?(unique_items = false) items = let min_items = non_negative "min_items" min_items in let max_items = non_negative "max_items" max_items in (match (min_items, max_items) with | Some minimum, Some maximum when minimum > maximum -> invalid_arg "Kube_crd.Schema.array: min_items exceeds max_items" | _ -> ()); Array { items; min_items; max_items; unique_items } let object_ ?(required = []) ?additional_properties ?(preserve_unknown_fields = false) properties = Object { properties; required; additional_properties; preserve_unknown_fields } let map values = object_ ~additional_properties:values [] let one_of schemas = One_of schemas let int_or_string () = Int_or_string let preserve_unknown () = Preserve_unknown let raw value = Raw value let describe description = function | Decorated decoration -> Decorated { decoration with description = Some description } | schema -> Decorated { schema; description = Some description; default = None; nullable = false; } let with_default default = function | Decorated decoration -> Decorated { decoration with default = Some default } | schema -> Decorated { schema; description = None; default = Some default; nullable = false; } let nullable = function | Decorated decoration -> Decorated { decoration with nullable = true } | schema -> Decorated { schema; description = None; default = None; nullable = true } let optional name value = match value with | None -> [] | Some value -> [ (name, value) ] let add_fields fields = function | `Assoc existing -> `Assoc (existing @ fields) | value -> `Assoc [ ("allOf", `List [ value ]); ("x-ocaml-kube-decoration-error", `Bool true); ] let rec to_json = function | String { format; enum; min_length; max_length; pattern } -> `Assoc ([ ("type", `String "string") ] @ optional "format" (Option.map (fun value -> `String value) format) @ (if enum = [] then [] else [ ("enum", `List (List.map (fun value -> `String value) enum)) ]) @ optional "minLength" (Option.map (fun value -> `Int value) min_length) @ optional "maxLength" (Option.map (fun value -> `Int value) max_length) @ optional "pattern" (Option.map (fun value -> `String value) pattern) ) | Integer { format; minimum; maximum } -> let format = Option.map (function | `Int32 -> `String "int32" | `Int64 -> `String "int64") format in `Assoc ([ ("type", `String "integer") ] @ optional "format" format @ optional "minimum" (Option.map (fun value -> `Int value) minimum) @ optional "maximum" (Option.map (fun value -> `Int value) maximum)) | Number { format } -> let format = Option.map (function | `Float -> `String "float" | `Double -> `String "double") format in `Assoc ([ ("type", `String "number") ] @ optional "format" format) | Boolean -> `Assoc [ ("type", `String "boolean") ] | Array { items; min_items; max_items; unique_items } -> `Assoc ([ ("type", `String "array"); ("items", to_json items) ] @ optional "minItems" (Option.map (fun value -> `Int value) min_items) @ optional "maxItems" (Option.map (fun value -> `Int value) max_items) @ if unique_items then [ ("uniqueItems", `Bool true) ] else []) | Object { properties; required; additional_properties; preserve_unknown_fields } -> `Assoc ([ ("type", `String "object") ] @ (if required = [] then [] else [ ( "required", `List (List.map (fun value -> `String value) required) ); ]) @ (if properties = [] then [] else [ ( "properties", `Assoc (List.map (fun (name, schema) -> (name, to_json schema)) properties) ); ]) @ optional "additionalProperties" (Option.map to_json additional_properties) @ if preserve_unknown_fields then [ ("x-kubernetes-preserve-unknown-fields", `Bool true) ] else []) | One_of schemas -> `Assoc [ ("oneOf", `List (List.map to_json schemas)) ] | Int_or_string -> `Assoc [ ( "anyOf", `List [ `Assoc [ ("type", `String "integer") ]; `Assoc [ ("type", `String "string") ]; ] ); ("x-kubernetes-int-or-string", `Bool true); ] | Preserve_unknown -> `Assoc [ ("type", `String "object"); ("x-kubernetes-preserve-unknown-fields", `Bool true); ] | Raw value -> value | Decorated { schema; description; default; nullable } -> to_json schema |> add_fields (optional "description" (Option.map (fun value -> `String value) description) @ optional "default" default @ if nullable then [ ("nullable", `Bool true) ] else []) let duplicates values = let sorted = List.sort String.compare values in let rec loop result = function | left :: (right :: _ as rest) when left = right -> loop (left :: result) rest | _ :: rest -> loop result rest | [] -> List.sort_uniq String.compare result in loop [] sorted let validate schema = let rec visit path errors = function | String { enum; _ } -> List.fold_left (fun errors duplicate -> (path ^ ": duplicate enum value " ^ duplicate) :: errors) errors (duplicates enum) | Integer _ | Number _ | Boolean | Int_or_string | Preserve_unknown -> errors | Array { items; _ } -> visit (path ^ ".items") errors items | Object { properties; required; additional_properties; _ } -> let names = List.map fst properties in let errors = List.fold_left (fun errors duplicate -> (path ^ ": duplicate property " ^ duplicate) :: errors) errors (duplicates names) in let errors = List.fold_left (fun errors duplicate -> (path ^ ": duplicate required field " ^ duplicate) :: errors) errors (duplicates required) in let errors = List.fold_left (fun errors name -> if List.mem name names then errors else (path ^ ": required field has no schema: " ^ name) :: errors) errors required in let errors = match (properties, additional_properties) with | _ :: _, Some _ -> (path ^ ": structural schemas cannot combine properties with typed \ additionalProperties") :: errors | _ -> errors in let errors = List.fold_left (fun errors (name, schema) -> visit (path ^ ".properties." ^ name) errors schema) errors properties in Option.fold ~none:errors ~some:(visit (path ^ ".additionalProperties") errors) additional_properties | One_of schemas -> let errors = if List.length schemas < 2 then (path ^ ": oneOf requires at least two alternatives") :: errors else errors in List.mapi (fun index schema -> (index, schema)) schemas |> List.fold_left (fun errors (index, schema) -> visit (Printf.sprintf "%s.oneOf[%d]" path index) errors schema) errors | Raw (`Assoc _) -> errors | Raw _ -> (path ^ ": raw schema must be a JSON object") :: errors | Decorated { schema; _ } -> visit path errors schema in match List.rev (visit "$" [] schema) with | [] -> Ok () | errors -> Error errors let rec is_object = function | Object _ | Preserve_unknown -> true | Decorated { schema; _ } -> is_object schema | Raw (`Assoc fields) -> ( match List.assoc_opt "type" fields with | Some (`String "object") -> true | _ -> false) | _ -> false end module Yaml = struct let spaces count = String.make count ' ' let plain_string value = let reserved = [ "null"; "true"; "false"; "yes"; "no"; "on"; "off"; "~" ] in value <> "" && (not (List.mem (String.lowercase_ascii value) reserved)) && String.for_all (function | 'a' .. 'z' | 'A' .. 'Z' | '0' .. '9' | '_' | '-' | '.' | '/' -> true | _ -> false) value && match value.[0] with | '0' .. '9' | '-' | '.' -> false | _ -> true let string value = if plain_string value then value else Yojson.Safe.to_string (`String value) let scalar = function | `Null -> Some "null" | `Bool value -> Some (string_of_bool value) | `Int value -> Some (string_of_int value) | `Intlit value -> Some value | `Float value -> Some (Yojson.Safe.to_string (`Float value)) | `String value -> Some (string value) | `Assoc _ | `List _ | `Tuple _ | `Variant _ -> None let rec emit buffer indent = function | (`Null | `Bool _ | `Int _ | `Intlit _ | `Float _ | `String _) as value -> Buffer.add_string buffer (Option.get (scalar value)); Buffer.add_char buffer '\n' | `Assoc [] -> Buffer.add_string buffer (spaces indent); Buffer.add_string buffer "{}\n" | `List [] -> Buffer.add_string buffer (spaces indent); Buffer.add_string buffer "[]\n" | `Assoc fields -> List.iter (fun (name, value) -> Buffer.add_string buffer (spaces indent); Buffer.add_string buffer (string name); Buffer.add_char buffer ':'; match scalar value with | Some value -> Buffer.add_char buffer ' '; Buffer.add_string buffer value; Buffer.add_char buffer '\n' | None -> Buffer.add_char buffer '\n'; emit buffer (indent + 2) value) fields | `List values -> List.iter (fun value -> Buffer.add_string buffer (spaces indent); Buffer.add_char buffer '-'; match scalar value with | Some value -> Buffer.add_char buffer ' '; Buffer.add_string buffer value; Buffer.add_char buffer '\n' | None -> Buffer.add_char buffer '\n'; emit buffer (indent + 2) value) values | `Tuple values -> emit buffer indent (`List values) | `Variant (tag, None) -> emit buffer indent (`String tag) | `Variant (tag, Some value) -> emit buffer indent (`Assoc [ (tag, value) ]) let encode value = let buffer = Buffer.create 4096 in emit buffer 0 value; Buffer.contents buffer end module Condition = struct type status = True | False | Unknown type t = { type_ : string; status : status; observed_generation : int64 option; last_transition_time : string; reason : string; message : string; } let ( let* ) result fn = match result with | Ok value -> fn value | Error _ as error -> error let status_to_string = function | True -> "True" | False -> "False" | Unknown -> "Unknown" let status_of_string = function | "True" -> Ok True | "False" -> Ok False | "Unknown" -> Ok Unknown | value -> Error ("invalid condition status: " ^ value) let current_time () = Ptime.to_rfc3339 ~frac_s:6 ~tz_offset_s:0 (Ptime_clock.now ()) let validate_label field value = if String.trim value = "" then invalid_arg ("Condition.make: empty " ^ field) let validate_length field maximum value = if String.length value > maximum then invalid_arg (Printf.sprintf "Condition.make: %s exceeds %d bytes" field maximum) let validate_timestamp value = match Ptime.of_rfc3339 value with | Ok _ -> () | Error _ -> invalid_arg "Condition.make: last_transition_time must be RFC 3339" let make ?observed_generation ?last_transition_time ~type_ ~status ~reason ~message () = validate_label "type" type_; validate_label "reason" reason; validate_length "type" 316 type_; validate_length "reason" 1024 reason; validate_length "message" 32768 message; let last_transition_time = Option.value ~default:(current_time ()) last_transition_time in validate_timestamp last_transition_time; { type_; status; observed_generation; last_transition_time; reason; message; } let find type_ = List.find_opt (fun condition -> condition.type_ = type_) let is_true type_ conditions = match find type_ conditions with | Some { status = True; _ } -> true | Some _ | None -> false let set ?(now = current_time) condition conditions = match find condition.type_ conditions with | None -> (conditions @ [ condition ], true) | Some previous -> let condition = if condition.status = previous.status then { condition with last_transition_time = previous.last_transition_time; } else { condition with last_transition_time = now () } in if condition = previous then (conditions, false) else ( List.map (fun value -> if value.type_ = condition.type_ then condition else value) conditions, true ) let remove type_ conditions = let remaining = List.filter (fun condition -> condition.type_ <> type_) conditions in (remaining, List.length remaining <> List.length conditions) let member name = function | `Assoc fields -> List.assoc_opt name fields | _ -> None let required_string name json = match member name json with | Some (`String value) -> Ok value | Some _ -> Error (name ^ " must be a string") | None -> Error (name ^ " is required") let observed_generation json = match member "observedGeneration" json with | None | Some `Null -> Ok None | Some (`Int value) -> Ok (Some (Int64.of_int value)) | Some (`Intlit value) -> ( try Ok (Some (Int64.of_string value)) with Failure _ -> Error "observedGeneration is outside int64 range") | Some _ -> Error "observedGeneration must be an integer" let timestamp json = let* value = required_string "lastTransitionTime" json in match Ptime.of_rfc3339 value with | Ok _ -> Ok value | Error _ -> Error "lastTransitionTime must be RFC 3339" let of_json json = match json with | `Assoc _ -> let* type_ = required_string "type" json in let* status = required_string "status" json in let* status = status_of_string status in let* observed_generation = observed_generation json in let* last_transition_time = timestamp json in let* reason = required_string "reason" json in let* message = required_string "message" json in let* () = if String.trim type_ = "" then Error "type must not be empty" else if String.trim reason = "" then Error "reason must not be empty" else Ok () in Ok { type_; status; observed_generation; last_transition_time; reason; message; } | _ -> Error "condition must be an object" let to_json condition = `Assoc ([ ("type", `String condition.type_); ("status", `String (status_to_string condition.status)); ("lastTransitionTime", `String condition.last_transition_time); ("reason", `String condition.reason); ("message", `String condition.message); ] @ match condition.observed_generation with | None -> [] | Some value -> [ ("observedGeneration", `Intlit (Int64.to_string value)) ]) let schema = Schema.object_ ~required:[ "type"; "status"; "lastTransitionTime"; "reason"; "message" ] [ ("type", Schema.string ~min_length:1 ~max_length:316 ()); ("status", Schema.string ~enum:[ "True"; "False"; "Unknown" ] ()); ("observedGeneration", Schema.integer ~format:`Int64 ()); ("lastTransitionTime", Schema.string ~format:"date-time" ()); ("reason", Schema.string ~min_length:1 ~max_length:1024 ()); ("message", Schema.string ~max_length:32768 ()); ] end module Custom_resource_definition = struct type scale = { spec_replicas_path : string; status_replicas_path : string; label_selector_path : string option; } type printer_column_type = [ `Integer | `Number | `String | `Boolean | `Date ] type printer_column = { name : string; type_ : printer_column_type; json_path : string; format : string option; description : string option; priority : int option; } type version = { name : string; served : bool; storage : bool; status : bool; scale : scale option; printer_columns : printer_column list; schema : Schema.t; } type t = { group : string; kind : string; plural : string; singular : string; list_kind : string; short_names : string list; categories : string list; scope : Kube.Core.scope; versions : version list; } let scale ?label_selector_path ~spec_replicas_path ~status_replicas_path () = { spec_replicas_path; status_replicas_path; label_selector_path } let printer_column ?format ?description ?priority ~name ~type_ ~json_path () = { name; type_; json_path; format; description; priority } let version ?(served = true) ?(storage = false) ?(status = false) ?scale ?(printer_columns = []) ~name ~schema () = { name; served; storage; status; scale; printer_columns; schema } let valid_dns_label value = let length = String.length value in length > 0 && length <= 63 && let alphanumeric = function | 'a' .. 'z' | '0' .. '9' -> true | _ -> false in alphanumeric value.[0] && alphanumeric value.[length - 1] && String.for_all (function | 'a' .. 'z' | '0' .. '9' | '-' -> true | _ -> false) value let valid_group value = value <> "" && String.length value <= 253 && String.split_on_char '.' value |> List.for_all valid_dns_label let valid_kind value = value <> "" && match value.[0] with | 'A' .. 'Z' -> String.for_all (function | 'a' .. 'z' | 'A' .. 'Z' | '0' .. '9' -> true | _ -> false) value | _ -> false let valid_version value = let length = String.length value in let rec digits index = if index < length then match value.[index] with | '0' .. '9' -> digits (index + 1) | _ -> index else index in if length < 2 || value.[0] <> 'v' then false else let after_major = digits 1 in if after_major = 1 then false else if after_major = length then true else let suffix prefix = String.starts_with ~prefix value && let after_prefix = String.length prefix in after_prefix < length && digits after_prefix = length in suffix (String.sub value 0 after_major ^ "alpha") || suffix (String.sub value 0 after_major ^ "beta") let duplicates values = let sorted = List.sort String.compare values in let rec loop result = function | left :: (right :: _ as rest) when left = right -> loop (left :: result) rest | _ :: rest -> loop result rest | [] -> List.sort_uniq String.compare result in loop [] sorted let validate_path label path errors = if String.length path < 2 || path.[0] <> '.' then (label ^ " must be a non-empty JSONPath beginning with '.'") :: errors else errors let validate ~group ~kind ~plural ~singular ~list_kind ~short_names ~categories versions = let errors = [] in let errors = if valid_group group then errors else "group is not a DNS subdomain" :: errors in let errors = if String.length plural + 1 + String.length group <= 253 then errors else "plural.group CRD name exceeds 253 characters" :: errors in let errors = List.fold_left (fun errors (label, value) -> if valid_dns_label value then errors else (label ^ " is not a DNS label") :: errors) errors (("plural", plural) :: ("singular", singular) :: List.map (fun value -> ("short name", value)) short_names @ List.map (fun value -> ("category", value)) categories) in let errors = if valid_kind kind then errors else "kind must be an OCaml-style capitalized identifier" :: errors in let errors = if valid_kind list_kind then errors else "list kind must be an OCaml-style capitalized identifier" :: errors in let errors = if versions = [] then "at least one version is required" :: errors else errors in let storage_count = List.fold_left (fun count version -> if version.storage then count + 1 else count) 0 versions in let errors = if storage_count = 1 then errors else "exactly one version must have storage=true" :: errors in let errors = List.fold_left (fun errors duplicate -> ("duplicate version name: " ^ duplicate) :: errors) errors (duplicates (List.map (fun version -> version.name) versions)) in let errors = List.fold_left (fun errors version -> let prefix = "version " ^ version.name in let errors = if valid_version version.name then errors else (prefix ^ " has an invalid Kubernetes version name") :: errors in let errors = if Schema.is_object version.schema then errors else (prefix ^ " root schema must have type object") :: errors in let errors = if (not version.storage) || version.served then errors else (prefix ^ " is the storage version but is not served") :: errors in let errors = match Schema.validate version.schema with | Ok () -> errors | Error schema_errors -> List.rev_append (List.map (fun error -> prefix ^ ": " ^ error) schema_errors) errors in let errors = List.fold_left (fun errors duplicate -> (prefix ^ " has duplicate printer column " ^ duplicate) :: errors) errors (duplicates (List.map (fun (column : printer_column) -> column.name) version.printer_columns)) in let errors = List.fold_left (fun errors (column : printer_column) -> let errors = if String.trim column.name = "" then (prefix ^ " has an empty printer column name") :: errors else errors in let errors = validate_path (prefix ^ " printer column " ^ column.name ^ " jsonPath") column.json_path errors in match column.priority with | Some priority when priority < 0 -> (prefix ^ " printer column priority must not be negative") :: errors | _ -> errors) errors version.printer_columns in match version.scale with | None -> errors | Some scale -> let errors = validate_path (prefix ^ " scale specReplicasPath") scale.spec_replicas_path errors in let errors = validate_path (prefix ^ " scale statusReplicasPath") scale.status_replicas_path errors in Option.fold ~none:errors ~some:(fun path -> validate_path (prefix ^ " scale labelSelectorPath") path errors) scale.label_selector_path) errors versions in match List.rev errors with | [] -> Ok () | errors -> Error errors let make ?singular ?list_kind ?(short_names = []) ?(categories = []) ~group ~kind ~plural ~scope ~versions () = let singular = Option.value ~default:kind singular |> String.lowercase_ascii in let list_kind = Option.value ~default:(kind ^ "List") list_kind in match validate ~group ~kind ~plural ~singular ~list_kind ~short_names ~categories versions with | Error _ as error -> error | Ok () -> Ok { group; kind; plural; singular; list_kind; short_names; categories; scope; versions; } let make_exn ?singular ?list_kind ?short_names ?categories ~group ~kind ~plural ~scope ~versions () = match make ?singular ?list_kind ?short_names ?categories ~group ~kind ~plural ~scope ~versions () with | Ok value -> value | Error errors -> invalid_arg (String.concat "; " errors) let optional name fn = function | None -> [] | Some value -> [ (name, fn value) ] let string_list values = `List (List.map (fun value -> `String value) values) let scale_json (scale : scale) = `Assoc ([ ("specReplicasPath", `String scale.spec_replicas_path); ("statusReplicasPath", `String scale.status_replicas_path); ] @ optional "labelSelectorPath" (fun value -> `String value) scale.label_selector_path) let printer_type = function | `Integer -> "integer" | `Number -> "number" | `String -> "string" | `Boolean -> "boolean" | `Date -> "date" let printer_column_json (column : printer_column) = `Assoc ([ ("name", `String column.name); ("type", `String (printer_type column.type_)); ("jsonPath", `String column.json_path); ] @ optional "format" (fun value -> `String value) column.format @ optional "description" (fun value -> `String value) column.description @ optional "priority" (fun value -> `Int value) column.priority) let version_json (version : version) = let subresources = (if version.status then [ ("status", `Assoc []) ] else []) @ optional "scale" scale_json version.scale in `Assoc ([ ("name", `String version.name); ("served", `Bool version.served); ("storage", `Bool version.storage); ] @ (if subresources = [] then [] else [ ("subresources", `Assoc subresources) ]) @ [ ( "schema", `Assoc [ ("openAPIV3Schema", Schema.to_json version.schema) ] ); ] @ if version.printer_columns = [] then [] else [ ( "additionalPrinterColumns", `List (List.map printer_column_json version.printer_columns) ); ]) let to_json (crd : t) = let names = [ ("plural", `String crd.plural); ("singular", `String crd.singular); ("kind", `String crd.kind); ("listKind", `String crd.list_kind); ] @ (if crd.short_names = [] then [] else [ ("shortNames", string_list crd.short_names) ]) @ if crd.categories = [] then [] else [ ("categories", string_list crd.categories) ] in `Assoc [ ("apiVersion", `String "apiextensions.k8s.io/v1"); ("kind", `String "CustomResourceDefinition"); ("metadata", `Assoc [ ("name", `String (crd.plural ^ "." ^ crd.group)) ]); ( "spec", `Assoc [ ("group", `String crd.group); ( "scope", `String (match crd.scope with | Kube.Core.Namespaced -> "Namespaced" | Kube.Core.Cluster -> "Cluster") ); ("names", `Assoc names); ("versions", `List (List.map version_json crd.versions)); ] ); ] let to_yaml crd = Yaml.encode (to_json crd) end module Resource = struct module type Value = sig type t val schema : Schema.t val of_json : Yojson.Safe.t -> (t, string) result val to_json : t -> Yojson.Safe.t end module type Definition = sig module Spec : Value module Status : Value val group : string val version : string val kind : string val plural : string val singular : string val scope : Kube.Core.scope val short_names : string list val categories : string list end module Make (Definition : Definition) = struct type t = { api_version : string; kind : string; metadata : Kube.Core.object_meta; spec : Definition.Spec.t; status : Definition.Status.t option; } let api = { Kube.Core.group = Definition.group; version = Definition.version; kind = Definition.kind; plural = Definition.plural; scope = Definition.scope; } let metadata value = value.metadata let member name = function | `Assoc fields -> List.assoc_opt name fields | _ -> None let string = function | `String value -> Some value | _ -> None let required_string name json = match Option.bind (member name json) string with | Some value -> Ok value | None -> Error (name ^ " is required") let ( let* ) result fn = match result with | Ok value -> fn value | Error _ as error -> error let of_json json = let* api_version = required_string "apiVersion" json in let* kind = required_string "kind" json in let* metadata = Kube.Core.object_meta_of_json json in let* spec = match member "spec" json with | None -> Error "spec is required" | Some json -> Definition.Spec.of_json json in let* status = match member "status" json with | None | Some `Null -> Ok None | Some json -> Result.map Option.some (Definition.Status.of_json json) in Ok { api_version; kind; metadata; spec; status } let to_json value = `Assoc ([ ("apiVersion", `String value.api_version); ("kind", `String value.kind); ("metadata", Kube.Core.object_meta_to_json value.metadata); ("spec", Definition.Spec.to_json value.spec); ] @ match value.status with | None -> [] | Some status -> [ ("status", Definition.Status.to_json status) ]) let make ?(api_version = Kube.Core.api_version api) ?(kind = Definition.kind) ?status ~metadata ~spec () = { api_version; kind; metadata; spec; status } let with_status status value = { value with status } let status_merge_patch status = Kube.Client.Merge_patch (`Assoc [ ("status", Definition.Status.to_json status) ]) let root_schema = Schema.object_ ~required:[ "spec" ] [ ("spec", Definition.Spec.schema); ("status", Definition.Status.schema); ] let crd = Custom_resource_definition.make_exn ~group:Definition.group ~kind:Definition.kind ~plural:Definition.plural ~singular:Definition.singular ~short_names:Definition.short_names ~categories:Definition.categories ~scope:Definition.scope ~versions: [ Custom_resource_definition.version ~name:Definition.version ~served:true ~storage:true ~status:true ~schema:root_schema (); ] () end end
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