import type { BinaryWriteOptions } from "@protobuf-ts/runtime"; import type { IBinaryWriter } from "@protobuf-ts/runtime"; import type { BinaryReadOptions } from "@protobuf-ts/runtime"; import type { IBinaryReader } from "@protobuf-ts/runtime"; import type { PartialMessage } from "@protobuf-ts/runtime"; import { MessageType } from "@protobuf-ts/runtime"; import { FieldDescriptorProto_Type } from "../../google/protobuf/descriptor.js"; import { Timestamp } from "../../google/protobuf/timestamp.js"; import { Duration } from "../../google/protobuf/duration.js"; /** * `Constraint` represents a validation rule written in the Common Expression * Language (CEL) syntax. Each Constraint includes a unique identifier, an * optional error message, and the CEL expression to evaluate. For more * information on CEL, [see our documentation](https://github.com/bufbuild/protovalidate/blob/main/docs/cel.md). * * ```proto * message Foo { * option (buf.validate.message).cel = { * id: "foo.bar" * message: "bar must be greater than 0" * expression: "this.bar > 0" * }; * int32 bar = 1; * } * ``` * * @generated from protobuf message buf.validate.Constraint */ export interface Constraint { /** * `id` is a string that serves as a machine-readable name for this Constraint. * It should be unique within its scope, which could be either a message or a field. * * @generated from protobuf field: optional string id = 1; */ id?: string; /** * `message` is an optional field that provides a human-readable error message * for this Constraint when the CEL expression evaluates to false. If a * non-empty message is provided, any strings resulting from the CEL * expression evaluation are ignored. * * @generated from protobuf field: optional string message = 2; */ message?: string; /** * `expression` is the actual CEL expression that will be evaluated for * validation. This string must resolve to either a boolean or a string * value. If the expression evaluates to false or a non-empty string, the * validation is considered failed, and the message is rejected. * * @generated from protobuf field: optional string expression = 3; */ expression?: string; } /** * MessageConstraints represents validation rules that are applied to the entire message. * It includes disabling options and a list of Constraint messages representing Common Expression Language (CEL) validation rules. * * @generated from protobuf message buf.validate.MessageConstraints */ export interface MessageConstraints { /** * `disabled` is a boolean flag that, when set to true, nullifies any validation rules for this message. * This includes any fields within the message that would otherwise support validation. * * ```proto * message MyMessage { * // validation will be bypassed for this message * option (buf.validate.message).disabled = true; * } * ``` * * @generated from protobuf field: optional bool disabled = 1; */ disabled?: boolean; /** * `cel` is a repeated field of type Constraint. Each Constraint specifies a validation rule to be applied to this message. * These constraints are written in Common Expression Language (CEL) syntax. For more information on * CEL, [see our documentation](https://github.com/bufbuild/protovalidate/blob/main/docs/cel.md). * * * ```proto * message MyMessage { * // The field `foo` must be greater than 42. * option (buf.validate.message).cel = { * id: "my_message.value", * message: "value must be greater than 42", * expression: "this.foo > 42", * }; * optional int32 foo = 1; * } * ``` * * @generated from protobuf field: repeated buf.validate.Constraint cel = 3; */ cel: Constraint[]; } /** * The `OneofConstraints` message type enables you to manage constraints for * oneof fields in your protobuf messages. * * @generated from protobuf message buf.validate.OneofConstraints */ export interface OneofConstraints { /** * If `required` is true, exactly one field of the oneof must be present. A * validation error is returned if no fields in the oneof are present. The * field itself may still be a default value; further constraints * should be placed on the fields themselves to ensure they are valid values, * such as `min_len` or `gt`. * * ```proto * message MyMessage { * oneof value { * // Either `a` or `b` must be set. If `a` is set, it must also be * // non-empty; whereas if `b` is set, it can still be an empty string. * option (buf.validate.oneof).required = true; * string a = 1 [(buf.validate.field).string.min_len = 1]; * string b = 2; * } * } * ``` * * @generated from protobuf field: optional bool required = 1; */ required?: boolean; } /** * FieldConstraints encapsulates the rules for each type of field. Depending on * the field, the correct set should be used to ensure proper validations. * * @generated from protobuf message buf.validate.FieldConstraints */ export interface FieldConstraints { /** * `cel` is a repeated field used to represent a textual expression * in the Common Expression Language (CEL) syntax. For more information on * CEL, [see our documentation](https://github.com/bufbuild/protovalidate/blob/main/docs/cel.md). * * ```proto * message MyMessage { * // The field `value` must be greater than 42. * optional int32 value = 1 [(buf.validate.field).cel = { * id: "my_message.value", * message: "value must be greater than 42", * expression: "this > 42", * }]; * } * ``` * * @generated from protobuf field: repeated buf.validate.Constraint cel = 23; */ cel: Constraint[]; /** * If `required` is true, the field must be populated. A populated field can be * described as "serialized in the wire format," which includes: * * - the following "nullable" fields must be explicitly set to be considered populated: * - singular message fields (whose fields may be unpopulated/default values) * - member fields of a oneof (may be their default value) * - proto3 optional fields (may be their default value) * - proto2 scalar fields (both optional and required) * - proto3 scalar fields must be non-zero to be considered populated * - repeated and map fields must be non-empty to be considered populated * * ```proto * message MyMessage { * // The field `value` must be set to a non-null value. * optional MyOtherMessage value = 1 [(buf.validate.field).required = true]; * } * ``` * * @generated from protobuf field: optional bool required = 25; */ required?: boolean; /** * Skip validation on the field if its value matches the specified criteria. * See Ignore enum for details. * * ```proto * message UpdateRequest { * // The uri rule only applies if the field is populated and not an empty * // string. * optional string url = 1 [ * (buf.validate.field).ignore = IGNORE_IF_DEFAULT_VALUE, * (buf.validate.field).string.uri = true, * ]; * } * ``` * * @generated from protobuf field: optional buf.validate.Ignore ignore = 27; */ ignore?: Ignore; /** * @generated from protobuf oneof: type */ type: { oneofKind: "float"; /** * Scalar Field Types * * @generated from protobuf field: buf.validate.FloatRules float = 1; */ float: FloatRules; } | { oneofKind: "double"; /** * @generated from protobuf field: buf.validate.DoubleRules double = 2; */ double: DoubleRules; } | { oneofKind: "int32"; /** * @generated from protobuf field: buf.validate.Int32Rules int32 = 3; */ int32: Int32Rules; } | { oneofKind: "int64"; /** * @generated from protobuf field: buf.validate.Int64Rules int64 = 4; */ int64: Int64Rules; } | { oneofKind: "uint32"; /** * @generated from protobuf field: buf.validate.UInt32Rules uint32 = 5; */ uint32: UInt32Rules; } | { oneofKind: "uint64"; /** * @generated from protobuf field: buf.validate.UInt64Rules uint64 = 6; */ uint64: UInt64Rules; } | { oneofKind: "sint32"; /** * @generated from protobuf field: buf.validate.SInt32Rules sint32 = 7; */ sint32: SInt32Rules; } | { oneofKind: "sint64"; /** * @generated from protobuf field: buf.validate.SInt64Rules sint64 = 8; */ sint64: SInt64Rules; } | { oneofKind: "fixed32"; /** * @generated from protobuf field: buf.validate.Fixed32Rules fixed32 = 9; */ fixed32: Fixed32Rules; } | { oneofKind: "fixed64"; /** * @generated from protobuf field: buf.validate.Fixed64Rules fixed64 = 10; */ fixed64: Fixed64Rules; } | { oneofKind: "sfixed32"; /** * @generated from protobuf field: buf.validate.SFixed32Rules sfixed32 = 11; */ sfixed32: SFixed32Rules; } | { oneofKind: "sfixed64"; /** * @generated from protobuf field: buf.validate.SFixed64Rules sfixed64 = 12; */ sfixed64: SFixed64Rules; } | { oneofKind: "bool"; /** * @generated from protobuf field: buf.validate.BoolRules bool = 13; */ bool: BoolRules; } | { oneofKind: "string"; /** * @generated from protobuf field: buf.validate.StringRules string = 14; */ string: StringRules; } | { oneofKind: "bytes"; /** * @generated from protobuf field: buf.validate.BytesRules bytes = 15; */ bytes: BytesRules; } | { oneofKind: "enum"; /** * Complex Field Types * * @generated from protobuf field: buf.validate.EnumRules enum = 16; */ enum: EnumRules; } | { oneofKind: "repeated"; /** * @generated from protobuf field: buf.validate.RepeatedRules repeated = 18; */ repeated: RepeatedRules; } | { oneofKind: "map"; /** * @generated from protobuf field: buf.validate.MapRules map = 19; */ map: MapRules; } | { oneofKind: "any"; /** * Well-Known Field Types * * @generated from protobuf field: buf.validate.AnyRules any = 20; */ any: AnyRules; } | { oneofKind: "duration"; /** * @generated from protobuf field: buf.validate.DurationRules duration = 21; */ duration: DurationRules; } | { oneofKind: "timestamp"; /** * @generated from protobuf field: buf.validate.TimestampRules timestamp = 22; */ timestamp: TimestampRules; } | { oneofKind: undefined; }; } /** * PredefinedConstraints are custom constraints that can be re-used with * multiple fields. * * @generated from protobuf message buf.validate.PredefinedConstraints */ export interface PredefinedConstraints { /** * `cel` is a repeated field used to represent a textual expression * in the Common Expression Language (CEL) syntax. For more information on * CEL, [see our documentation](https://github.com/bufbuild/protovalidate/blob/main/docs/cel.md). * * ```proto * message MyMessage { * // The field `value` must be greater than 42. * optional int32 value = 1 [(buf.validate.predefined).cel = { * id: "my_message.value", * message: "value must be greater than 42", * expression: "this > 42", * }]; * } * ``` * * @generated from protobuf field: repeated buf.validate.Constraint cel = 1; */ cel: Constraint[]; } /** * FloatRules describes the constraints applied to `float` values. These * rules may also be applied to the `google.protobuf.FloatValue` Well-Known-Type. * * @generated from protobuf message buf.validate.FloatRules */ export interface FloatRules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MyFloat { * // value must equal 42.0 * float value = 1 [(buf.validate.field).float.const = 42.0]; * } * ``` * * @generated from protobuf field: optional float const = 1; */ const?: number; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field < * value). If the field value is equal to or greater than the specified value, * an error message is generated. * * ```proto * message MyFloat { * // value must be less than 10.0 * float value = 1 [(buf.validate.field).float.lt = 10.0]; * } * ``` * * @generated from protobuf field: float lt = 2; */ lt: number; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified * value (field <= value). If the field value is greater than the specified * value, an error message is generated. * * ```proto * message MyFloat { * // value must be less than or equal to 10.0 * float value = 1 [(buf.validate.field).float.lte = 10.0]; * } * ``` * * @generated from protobuf field: float lte = 3; */ lte: number; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyFloat { * // value must be greater than 5.0 [float.gt] * float value = 1 [(buf.validate.field).float.gt = 5.0]; * * // value must be greater than 5 and less than 10.0 [float.gt_lt] * float other_value = 2 [(buf.validate.field).float = { gt: 5.0, lt: 10.0 }]; * * // value must be greater than 10 or less than 5.0 [float.gt_lt_exclusive] * float another_value = 3 [(buf.validate.field).float = { gt: 10.0, lt: 5.0 }]; * } * ``` * * @generated from protobuf field: float gt = 4; */ gt: number; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified * value (exclusive). If the value of `gte` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyFloat { * // value must be greater than or equal to 5.0 [float.gte] * float value = 1 [(buf.validate.field).float.gte = 5.0]; * * // value must be greater than or equal to 5.0 and less than 10.0 [float.gte_lt] * float other_value = 2 [(buf.validate.field).float = { gte: 5.0, lt: 10.0 }]; * * // value must be greater than or equal to 10.0 or less than 5.0 [float.gte_lt_exclusive] * float another_value = 3 [(buf.validate.field).float = { gte: 10.0, lt: 5.0 }]; * } * ``` * * @generated from protobuf field: float gte = 5; */ gte: number; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message * is generated. * * ```proto * message MyFloat { * // value must be in list [1.0, 2.0, 3.0] * float value = 1 [(buf.validate.field).float = { in: [1.0, 2.0, 3.0] }]; * } * ``` * * @generated from protobuf field: repeated float in = 6; */ in: number[]; /** * `in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error * message is generated. * * ```proto * message MyFloat { * // value must not be in list [1.0, 2.0, 3.0] * float value = 1 [(buf.validate.field).float = { not_in: [1.0, 2.0, 3.0] }]; * } * ``` * * @generated from protobuf field: repeated float not_in = 7; */ notIn: number[]; /** * `finite` requires the field value to be finite. If the field value is * infinite or NaN, an error message is generated. * * @generated from protobuf field: optional bool finite = 8; */ finite?: boolean; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyFloat { * float value = 1 [ * (buf.validate.field).float.example = 1.0, * (buf.validate.field).float.example = "Infinity" * ]; * } * ``` * * @generated from protobuf field: repeated float example = 9; */ example: number[]; } /** * DoubleRules describes the constraints applied to `double` values. These * rules may also be applied to the `google.protobuf.DoubleValue` Well-Known-Type. * * @generated from protobuf message buf.validate.DoubleRules */ export interface DoubleRules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MyDouble { * // value must equal 42.0 * double value = 1 [(buf.validate.field).double.const = 42.0]; * } * ``` * * @generated from protobuf field: optional double const = 1; */ const?: number; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field < * value). If the field value is equal to or greater than the specified * value, an error message is generated. * * ```proto * message MyDouble { * // value must be less than 10.0 * double value = 1 [(buf.validate.field).double.lt = 10.0]; * } * ``` * * @generated from protobuf field: double lt = 2; */ lt: number; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified value * (field <= value). If the field value is greater than the specified value, * an error message is generated. * * ```proto * message MyDouble { * // value must be less than or equal to 10.0 * double value = 1 [(buf.validate.field).double.lte = 10.0]; * } * ``` * * @generated from protobuf field: double lte = 3; */ lte: number; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or `lte`, * the range is reversed, and the field value must be outside the specified * range. If the field value doesn't meet the required conditions, an error * message is generated. * * ```proto * message MyDouble { * // value must be greater than 5.0 [double.gt] * double value = 1 [(buf.validate.field).double.gt = 5.0]; * * // value must be greater than 5 and less than 10.0 [double.gt_lt] * double other_value = 2 [(buf.validate.field).double = { gt: 5.0, lt: 10.0 }]; * * // value must be greater than 10 or less than 5.0 [double.gt_lt_exclusive] * double another_value = 3 [(buf.validate.field).double = { gt: 10.0, lt: 5.0 }]; * } * ``` * * @generated from protobuf field: double gt = 4; */ gt: number; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified * value (exclusive). If the value of `gte` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyDouble { * // value must be greater than or equal to 5.0 [double.gte] * double value = 1 [(buf.validate.field).double.gte = 5.0]; * * // value must be greater than or equal to 5.0 and less than 10.0 [double.gte_lt] * double other_value = 2 [(buf.validate.field).double = { gte: 5.0, lt: 10.0 }]; * * // value must be greater than or equal to 10.0 or less than 5.0 [double.gte_lt_exclusive] * double another_value = 3 [(buf.validate.field).double = { gte: 10.0, lt: 5.0 }]; * } * ``` * * @generated from protobuf field: double gte = 5; */ gte: number; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message is * generated. * * ```proto * message MyDouble { * // value must be in list [1.0, 2.0, 3.0] * double value = 1 [(buf.validate.field).double = { in: [1.0, 2.0, 3.0] }]; * } * ``` * * @generated from protobuf field: repeated double in = 6; */ in: number[]; /** * `not_in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error * message is generated. * * ```proto * message MyDouble { * // value must not be in list [1.0, 2.0, 3.0] * double value = 1 [(buf.validate.field).double = { not_in: [1.0, 2.0, 3.0] }]; * } * ``` * * @generated from protobuf field: repeated double not_in = 7; */ notIn: number[]; /** * `finite` requires the field value to be finite. If the field value is * infinite or NaN, an error message is generated. * * @generated from protobuf field: optional bool finite = 8; */ finite?: boolean; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyDouble { * double value = 1 [ * (buf.validate.field).double.example = 1.0, * (buf.validate.field).double.example = "Infinity" * ]; * } * ``` * * @generated from protobuf field: repeated double example = 9; */ example: number[]; } /** * Int32Rules describes the constraints applied to `int32` values. These * rules may also be applied to the `google.protobuf.Int32Value` Well-Known-Type. * * @generated from protobuf message buf.validate.Int32Rules */ export interface Int32Rules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MyInt32 { * // value must equal 42 * int32 value = 1 [(buf.validate.field).int32.const = 42]; * } * ``` * * @generated from protobuf field: optional int32 const = 1; */ const?: number; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field * < value). If the field value is equal to or greater than the specified * value, an error message is generated. * * ```proto * message MyInt32 { * // value must be less than 10 * int32 value = 1 [(buf.validate.field).int32.lt = 10]; * } * ``` * * @generated from protobuf field: int32 lt = 2; */ lt: number; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified * value (field <= value). If the field value is greater than the specified * value, an error message is generated. * * ```proto * message MyInt32 { * // value must be less than or equal to 10 * int32 value = 1 [(buf.validate.field).int32.lte = 10]; * } * ``` * * @generated from protobuf field: int32 lte = 3; */ lte: number; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyInt32 { * // value must be greater than 5 [int32.gt] * int32 value = 1 [(buf.validate.field).int32.gt = 5]; * * // value must be greater than 5 and less than 10 [int32.gt_lt] * int32 other_value = 2 [(buf.validate.field).int32 = { gt: 5, lt: 10 }]; * * // value must be greater than 10 or less than 5 [int32.gt_lt_exclusive] * int32 another_value = 3 [(buf.validate.field).int32 = { gt: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: int32 gt = 4; */ gt: number; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified value * (exclusive). If the value of `gte` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyInt32 { * // value must be greater than or equal to 5 [int32.gte] * int32 value = 1 [(buf.validate.field).int32.gte = 5]; * * // value must be greater than or equal to 5 and less than 10 [int32.gte_lt] * int32 other_value = 2 [(buf.validate.field).int32 = { gte: 5, lt: 10 }]; * * // value must be greater than or equal to 10 or less than 5 [int32.gte_lt_exclusive] * int32 another_value = 3 [(buf.validate.field).int32 = { gte: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: int32 gte = 5; */ gte: number; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message is * generated. * * ```proto * message MyInt32 { * // value must be in list [1, 2, 3] * int32 value = 1 [(buf.validate.field).int32 = { in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated int32 in = 6; */ in: number[]; /** * `not_in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error message * is generated. * * ```proto * message MyInt32 { * // value must not be in list [1, 2, 3] * int32 value = 1 [(buf.validate.field).int32 = { not_in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated int32 not_in = 7; */ notIn: number[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyInt32 { * int32 value = 1 [ * (buf.validate.field).int32.example = 1, * (buf.validate.field).int32.example = -10 * ]; * } * ``` * * @generated from protobuf field: repeated int32 example = 8; */ example: number[]; } /** * Int64Rules describes the constraints applied to `int64` values. These * rules may also be applied to the `google.protobuf.Int64Value` Well-Known-Type. * * @generated from protobuf message buf.validate.Int64Rules */ export interface Int64Rules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MyInt64 { * // value must equal 42 * int64 value = 1 [(buf.validate.field).int64.const = 42]; * } * ``` * * @generated from protobuf field: optional int64 const = 1; */ const?: string; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field < * value). If the field value is equal to or greater than the specified value, * an error message is generated. * * ```proto * message MyInt64 { * // value must be less than 10 * int64 value = 1 [(buf.validate.field).int64.lt = 10]; * } * ``` * * @generated from protobuf field: int64 lt = 2; */ lt: string; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified * value (field <= value). If the field value is greater than the specified * value, an error message is generated. * * ```proto * message MyInt64 { * // value must be less than or equal to 10 * int64 value = 1 [(buf.validate.field).int64.lte = 10]; * } * ``` * * @generated from protobuf field: int64 lte = 3; */ lte: string; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyInt64 { * // value must be greater than 5 [int64.gt] * int64 value = 1 [(buf.validate.field).int64.gt = 5]; * * // value must be greater than 5 and less than 10 [int64.gt_lt] * int64 other_value = 2 [(buf.validate.field).int64 = { gt: 5, lt: 10 }]; * * // value must be greater than 10 or less than 5 [int64.gt_lt_exclusive] * int64 another_value = 3 [(buf.validate.field).int64 = { gt: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: int64 gt = 4; */ gt: string; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified * value (exclusive). If the value of `gte` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyInt64 { * // value must be greater than or equal to 5 [int64.gte] * int64 value = 1 [(buf.validate.field).int64.gte = 5]; * * // value must be greater than or equal to 5 and less than 10 [int64.gte_lt] * int64 other_value = 2 [(buf.validate.field).int64 = { gte: 5, lt: 10 }]; * * // value must be greater than or equal to 10 or less than 5 [int64.gte_lt_exclusive] * int64 another_value = 3 [(buf.validate.field).int64 = { gte: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: int64 gte = 5; */ gte: string; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message is * generated. * * ```proto * message MyInt64 { * // value must be in list [1, 2, 3] * int64 value = 1 [(buf.validate.field).int64 = { in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated int64 in = 6; */ in: string[]; /** * `not_in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error * message is generated. * * ```proto * message MyInt64 { * // value must not be in list [1, 2, 3] * int64 value = 1 [(buf.validate.field).int64 = { not_in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated int64 not_in = 7; */ notIn: string[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyInt64 { * int64 value = 1 [ * (buf.validate.field).int64.example = 1, * (buf.validate.field).int64.example = -10 * ]; * } * ``` * * @generated from protobuf field: repeated int64 example = 9; */ example: string[]; } /** * UInt32Rules describes the constraints applied to `uint32` values. These * rules may also be applied to the `google.protobuf.UInt32Value` Well-Known-Type. * * @generated from protobuf message buf.validate.UInt32Rules */ export interface UInt32Rules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MyUInt32 { * // value must equal 42 * uint32 value = 1 [(buf.validate.field).uint32.const = 42]; * } * ``` * * @generated from protobuf field: optional uint32 const = 1; */ const?: number; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field < * value). If the field value is equal to or greater than the specified value, * an error message is generated. * * ```proto * message MyUInt32 { * // value must be less than 10 * uint32 value = 1 [(buf.validate.field).uint32.lt = 10]; * } * ``` * * @generated from protobuf field: uint32 lt = 2; */ lt: number; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified * value (field <= value). If the field value is greater than the specified * value, an error message is generated. * * ```proto * message MyUInt32 { * // value must be less than or equal to 10 * uint32 value = 1 [(buf.validate.field).uint32.lte = 10]; * } * ``` * * @generated from protobuf field: uint32 lte = 3; */ lte: number; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyUInt32 { * // value must be greater than 5 [uint32.gt] * uint32 value = 1 [(buf.validate.field).uint32.gt = 5]; * * // value must be greater than 5 and less than 10 [uint32.gt_lt] * uint32 other_value = 2 [(buf.validate.field).uint32 = { gt: 5, lt: 10 }]; * * // value must be greater than 10 or less than 5 [uint32.gt_lt_exclusive] * uint32 another_value = 3 [(buf.validate.field).uint32 = { gt: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: uint32 gt = 4; */ gt: number; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified * value (exclusive). If the value of `gte` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyUInt32 { * // value must be greater than or equal to 5 [uint32.gte] * uint32 value = 1 [(buf.validate.field).uint32.gte = 5]; * * // value must be greater than or equal to 5 and less than 10 [uint32.gte_lt] * uint32 other_value = 2 [(buf.validate.field).uint32 = { gte: 5, lt: 10 }]; * * // value must be greater than or equal to 10 or less than 5 [uint32.gte_lt_exclusive] * uint32 another_value = 3 [(buf.validate.field).uint32 = { gte: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: uint32 gte = 5; */ gte: number; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message is * generated. * * ```proto * message MyUInt32 { * // value must be in list [1, 2, 3] * uint32 value = 1 [(buf.validate.field).uint32 = { in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated uint32 in = 6; */ in: number[]; /** * `not_in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error * message is generated. * * ```proto * message MyUInt32 { * // value must not be in list [1, 2, 3] * uint32 value = 1 [(buf.validate.field).uint32 = { not_in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated uint32 not_in = 7; */ notIn: number[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyUInt32 { * uint32 value = 1 [ * (buf.validate.field).uint32.example = 1, * (buf.validate.field).uint32.example = 10 * ]; * } * ``` * * @generated from protobuf field: repeated uint32 example = 8; */ example: number[]; } /** * UInt64Rules describes the constraints applied to `uint64` values. These * rules may also be applied to the `google.protobuf.UInt64Value` Well-Known-Type. * * @generated from protobuf message buf.validate.UInt64Rules */ export interface UInt64Rules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MyUInt64 { * // value must equal 42 * uint64 value = 1 [(buf.validate.field).uint64.const = 42]; * } * ``` * * @generated from protobuf field: optional uint64 const = 1; */ const?: string; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field < * value). If the field value is equal to or greater than the specified value, * an error message is generated. * * ```proto * message MyUInt64 { * // value must be less than 10 * uint64 value = 1 [(buf.validate.field).uint64.lt = 10]; * } * ``` * * @generated from protobuf field: uint64 lt = 2; */ lt: string; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified * value (field <= value). If the field value is greater than the specified * value, an error message is generated. * * ```proto * message MyUInt64 { * // value must be less than or equal to 10 * uint64 value = 1 [(buf.validate.field).uint64.lte = 10]; * } * ``` * * @generated from protobuf field: uint64 lte = 3; */ lte: string; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyUInt64 { * // value must be greater than 5 [uint64.gt] * uint64 value = 1 [(buf.validate.field).uint64.gt = 5]; * * // value must be greater than 5 and less than 10 [uint64.gt_lt] * uint64 other_value = 2 [(buf.validate.field).uint64 = { gt: 5, lt: 10 }]; * * // value must be greater than 10 or less than 5 [uint64.gt_lt_exclusive] * uint64 another_value = 3 [(buf.validate.field).uint64 = { gt: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: uint64 gt = 4; */ gt: string; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified * value (exclusive). If the value of `gte` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyUInt64 { * // value must be greater than or equal to 5 [uint64.gte] * uint64 value = 1 [(buf.validate.field).uint64.gte = 5]; * * // value must be greater than or equal to 5 and less than 10 [uint64.gte_lt] * uint64 other_value = 2 [(buf.validate.field).uint64 = { gte: 5, lt: 10 }]; * * // value must be greater than or equal to 10 or less than 5 [uint64.gte_lt_exclusive] * uint64 another_value = 3 [(buf.validate.field).uint64 = { gte: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: uint64 gte = 5; */ gte: string; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message is * generated. * * ```proto * message MyUInt64 { * // value must be in list [1, 2, 3] * uint64 value = 1 [(buf.validate.field).uint64 = { in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated uint64 in = 6; */ in: string[]; /** * `not_in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error * message is generated. * * ```proto * message MyUInt64 { * // value must not be in list [1, 2, 3] * uint64 value = 1 [(buf.validate.field).uint64 = { not_in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated uint64 not_in = 7; */ notIn: string[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyUInt64 { * uint64 value = 1 [ * (buf.validate.field).uint64.example = 1, * (buf.validate.field).uint64.example = -10 * ]; * } * ``` * * @generated from protobuf field: repeated uint64 example = 8; */ example: string[]; } /** * SInt32Rules describes the constraints applied to `sint32` values. * * @generated from protobuf message buf.validate.SInt32Rules */ export interface SInt32Rules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MySInt32 { * // value must equal 42 * sint32 value = 1 [(buf.validate.field).sint32.const = 42]; * } * ``` * * @generated from protobuf field: optional sint32 const = 1; */ const?: number; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field * < value). If the field value is equal to or greater than the specified * value, an error message is generated. * * ```proto * message MySInt32 { * // value must be less than 10 * sint32 value = 1 [(buf.validate.field).sint32.lt = 10]; * } * ``` * * @generated from protobuf field: sint32 lt = 2; */ lt: number; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified * value (field <= value). If the field value is greater than the specified * value, an error message is generated. * * ```proto * message MySInt32 { * // value must be less than or equal to 10 * sint32 value = 1 [(buf.validate.field).sint32.lte = 10]; * } * ``` * * @generated from protobuf field: sint32 lte = 3; */ lte: number; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MySInt32 { * // value must be greater than 5 [sint32.gt] * sint32 value = 1 [(buf.validate.field).sint32.gt = 5]; * * // value must be greater than 5 and less than 10 [sint32.gt_lt] * sint32 other_value = 2 [(buf.validate.field).sint32 = { gt: 5, lt: 10 }]; * * // value must be greater than 10 or less than 5 [sint32.gt_lt_exclusive] * sint32 another_value = 3 [(buf.validate.field).sint32 = { gt: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: sint32 gt = 4; */ gt: number; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified * value (exclusive). If the value of `gte` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MySInt32 { * // value must be greater than or equal to 5 [sint32.gte] * sint32 value = 1 [(buf.validate.field).sint32.gte = 5]; * * // value must be greater than or equal to 5 and less than 10 [sint32.gte_lt] * sint32 other_value = 2 [(buf.validate.field).sint32 = { gte: 5, lt: 10 }]; * * // value must be greater than or equal to 10 or less than 5 [sint32.gte_lt_exclusive] * sint32 another_value = 3 [(buf.validate.field).sint32 = { gte: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: sint32 gte = 5; */ gte: number; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message is * generated. * * ```proto * message MySInt32 { * // value must be in list [1, 2, 3] * sint32 value = 1 [(buf.validate.field).sint32 = { in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated sint32 in = 6; */ in: number[]; /** * `not_in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error * message is generated. * * ```proto * message MySInt32 { * // value must not be in list [1, 2, 3] * sint32 value = 1 [(buf.validate.field).sint32 = { not_in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated sint32 not_in = 7; */ notIn: number[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MySInt32 { * sint32 value = 1 [ * (buf.validate.field).sint32.example = 1, * (buf.validate.field).sint32.example = -10 * ]; * } * ``` * * @generated from protobuf field: repeated sint32 example = 8; */ example: number[]; } /** * SInt64Rules describes the constraints applied to `sint64` values. * * @generated from protobuf message buf.validate.SInt64Rules */ export interface SInt64Rules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MySInt64 { * // value must equal 42 * sint64 value = 1 [(buf.validate.field).sint64.const = 42]; * } * ``` * * @generated from protobuf field: optional sint64 const = 1; */ const?: string; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field * < value). If the field value is equal to or greater than the specified * value, an error message is generated. * * ```proto * message MySInt64 { * // value must be less than 10 * sint64 value = 1 [(buf.validate.field).sint64.lt = 10]; * } * ``` * * @generated from protobuf field: sint64 lt = 2; */ lt: string; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified * value (field <= value). If the field value is greater than the specified * value, an error message is generated. * * ```proto * message MySInt64 { * // value must be less than or equal to 10 * sint64 value = 1 [(buf.validate.field).sint64.lte = 10]; * } * ``` * * @generated from protobuf field: sint64 lte = 3; */ lte: string; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MySInt64 { * // value must be greater than 5 [sint64.gt] * sint64 value = 1 [(buf.validate.field).sint64.gt = 5]; * * // value must be greater than 5 and less than 10 [sint64.gt_lt] * sint64 other_value = 2 [(buf.validate.field).sint64 = { gt: 5, lt: 10 }]; * * // value must be greater than 10 or less than 5 [sint64.gt_lt_exclusive] * sint64 another_value = 3 [(buf.validate.field).sint64 = { gt: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: sint64 gt = 4; */ gt: string; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified * value (exclusive). If the value of `gte` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MySInt64 { * // value must be greater than or equal to 5 [sint64.gte] * sint64 value = 1 [(buf.validate.field).sint64.gte = 5]; * * // value must be greater than or equal to 5 and less than 10 [sint64.gte_lt] * sint64 other_value = 2 [(buf.validate.field).sint64 = { gte: 5, lt: 10 }]; * * // value must be greater than or equal to 10 or less than 5 [sint64.gte_lt_exclusive] * sint64 another_value = 3 [(buf.validate.field).sint64 = { gte: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: sint64 gte = 5; */ gte: string; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message * is generated. * * ```proto * message MySInt64 { * // value must be in list [1, 2, 3] * sint64 value = 1 [(buf.validate.field).sint64 = { in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated sint64 in = 6; */ in: string[]; /** * `not_in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error * message is generated. * * ```proto * message MySInt64 { * // value must not be in list [1, 2, 3] * sint64 value = 1 [(buf.validate.field).sint64 = { not_in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated sint64 not_in = 7; */ notIn: string[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MySInt64 { * sint64 value = 1 [ * (buf.validate.field).sint64.example = 1, * (buf.validate.field).sint64.example = -10 * ]; * } * ``` * * @generated from protobuf field: repeated sint64 example = 8; */ example: string[]; } /** * Fixed32Rules describes the constraints applied to `fixed32` values. * * @generated from protobuf message buf.validate.Fixed32Rules */ export interface Fixed32Rules { /** * `const` requires the field value to exactly match the specified value. * If the field value doesn't match, an error message is generated. * * ```proto * message MyFixed32 { * // value must equal 42 * fixed32 value = 1 [(buf.validate.field).fixed32.const = 42]; * } * ``` * * @generated from protobuf field: optional fixed32 const = 1; */ const?: number; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field < * value). If the field value is equal to or greater than the specified value, * an error message is generated. * * ```proto * message MyFixed32 { * // value must be less than 10 * fixed32 value = 1 [(buf.validate.field).fixed32.lt = 10]; * } * ``` * * @generated from protobuf field: fixed32 lt = 2; */ lt: number; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified * value (field <= value). If the field value is greater than the specified * value, an error message is generated. * * ```proto * message MyFixed32 { * // value must be less than or equal to 10 * fixed32 value = 1 [(buf.validate.field).fixed32.lte = 10]; * } * ``` * * @generated from protobuf field: fixed32 lte = 3; */ lte: number; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyFixed32 { * // value must be greater than 5 [fixed32.gt] * fixed32 value = 1 [(buf.validate.field).fixed32.gt = 5]; * * // value must be greater than 5 and less than 10 [fixed32.gt_lt] * fixed32 other_value = 2 [(buf.validate.field).fixed32 = { gt: 5, lt: 10 }]; * * // value must be greater than 10 or less than 5 [fixed32.gt_lt_exclusive] * fixed32 another_value = 3 [(buf.validate.field).fixed32 = { gt: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: fixed32 gt = 4; */ gt: number; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified * value (exclusive). If the value of `gte` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyFixed32 { * // value must be greater than or equal to 5 [fixed32.gte] * fixed32 value = 1 [(buf.validate.field).fixed32.gte = 5]; * * // value must be greater than or equal to 5 and less than 10 [fixed32.gte_lt] * fixed32 other_value = 2 [(buf.validate.field).fixed32 = { gte: 5, lt: 10 }]; * * // value must be greater than or equal to 10 or less than 5 [fixed32.gte_lt_exclusive] * fixed32 another_value = 3 [(buf.validate.field).fixed32 = { gte: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: fixed32 gte = 5; */ gte: number; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message * is generated. * * ```proto * message MyFixed32 { * // value must be in list [1, 2, 3] * fixed32 value = 1 [(buf.validate.field).fixed32 = { in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated fixed32 in = 6; */ in: number[]; /** * `not_in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error * message is generated. * * ```proto * message MyFixed32 { * // value must not be in list [1, 2, 3] * fixed32 value = 1 [(buf.validate.field).fixed32 = { not_in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated fixed32 not_in = 7; */ notIn: number[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyFixed32 { * fixed32 value = 1 [ * (buf.validate.field).fixed32.example = 1, * (buf.validate.field).fixed32.example = 2 * ]; * } * ``` * * @generated from protobuf field: repeated fixed32 example = 8; */ example: number[]; } /** * Fixed64Rules describes the constraints applied to `fixed64` values. * * @generated from protobuf message buf.validate.Fixed64Rules */ export interface Fixed64Rules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MyFixed64 { * // value must equal 42 * fixed64 value = 1 [(buf.validate.field).fixed64.const = 42]; * } * ``` * * @generated from protobuf field: optional fixed64 const = 1; */ const?: string; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field < * value). If the field value is equal to or greater than the specified value, * an error message is generated. * * ```proto * message MyFixed64 { * // value must be less than 10 * fixed64 value = 1 [(buf.validate.field).fixed64.lt = 10]; * } * ``` * * @generated from protobuf field: fixed64 lt = 2; */ lt: string; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified * value (field <= value). If the field value is greater than the specified * value, an error message is generated. * * ```proto * message MyFixed64 { * // value must be less than or equal to 10 * fixed64 value = 1 [(buf.validate.field).fixed64.lte = 10]; * } * ``` * * @generated from protobuf field: fixed64 lte = 3; */ lte: string; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyFixed64 { * // value must be greater than 5 [fixed64.gt] * fixed64 value = 1 [(buf.validate.field).fixed64.gt = 5]; * * // value must be greater than 5 and less than 10 [fixed64.gt_lt] * fixed64 other_value = 2 [(buf.validate.field).fixed64 = { gt: 5, lt: 10 }]; * * // value must be greater than 10 or less than 5 [fixed64.gt_lt_exclusive] * fixed64 another_value = 3 [(buf.validate.field).fixed64 = { gt: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: fixed64 gt = 4; */ gt: string; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified * value (exclusive). If the value of `gte` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyFixed64 { * // value must be greater than or equal to 5 [fixed64.gte] * fixed64 value = 1 [(buf.validate.field).fixed64.gte = 5]; * * // value must be greater than or equal to 5 and less than 10 [fixed64.gte_lt] * fixed64 other_value = 2 [(buf.validate.field).fixed64 = { gte: 5, lt: 10 }]; * * // value must be greater than or equal to 10 or less than 5 [fixed64.gte_lt_exclusive] * fixed64 another_value = 3 [(buf.validate.field).fixed64 = { gte: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: fixed64 gte = 5; */ gte: string; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message is * generated. * * ```proto * message MyFixed64 { * // value must be in list [1, 2, 3] * fixed64 value = 1 [(buf.validate.field).fixed64 = { in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated fixed64 in = 6; */ in: string[]; /** * `not_in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error * message is generated. * * ```proto * message MyFixed64 { * // value must not be in list [1, 2, 3] * fixed64 value = 1 [(buf.validate.field).fixed64 = { not_in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated fixed64 not_in = 7; */ notIn: string[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyFixed64 { * fixed64 value = 1 [ * (buf.validate.field).fixed64.example = 1, * (buf.validate.field).fixed64.example = 2 * ]; * } * ``` * * @generated from protobuf field: repeated fixed64 example = 8; */ example: string[]; } /** * SFixed32Rules describes the constraints applied to `fixed32` values. * * @generated from protobuf message buf.validate.SFixed32Rules */ export interface SFixed32Rules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MySFixed32 { * // value must equal 42 * sfixed32 value = 1 [(buf.validate.field).sfixed32.const = 42]; * } * ``` * * @generated from protobuf field: optional sfixed32 const = 1; */ const?: number; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field < * value). If the field value is equal to or greater than the specified value, * an error message is generated. * * ```proto * message MySFixed32 { * // value must be less than 10 * sfixed32 value = 1 [(buf.validate.field).sfixed32.lt = 10]; * } * ``` * * @generated from protobuf field: sfixed32 lt = 2; */ lt: number; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified * value (field <= value). If the field value is greater than the specified * value, an error message is generated. * * ```proto * message MySFixed32 { * // value must be less than or equal to 10 * sfixed32 value = 1 [(buf.validate.field).sfixed32.lte = 10]; * } * ``` * * @generated from protobuf field: sfixed32 lte = 3; */ lte: number; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MySFixed32 { * // value must be greater than 5 [sfixed32.gt] * sfixed32 value = 1 [(buf.validate.field).sfixed32.gt = 5]; * * // value must be greater than 5 and less than 10 [sfixed32.gt_lt] * sfixed32 other_value = 2 [(buf.validate.field).sfixed32 = { gt: 5, lt: 10 }]; * * // value must be greater than 10 or less than 5 [sfixed32.gt_lt_exclusive] * sfixed32 another_value = 3 [(buf.validate.field).sfixed32 = { gt: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: sfixed32 gt = 4; */ gt: number; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified * value (exclusive). If the value of `gte` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MySFixed32 { * // value must be greater than or equal to 5 [sfixed32.gte] * sfixed32 value = 1 [(buf.validate.field).sfixed32.gte = 5]; * * // value must be greater than or equal to 5 and less than 10 [sfixed32.gte_lt] * sfixed32 other_value = 2 [(buf.validate.field).sfixed32 = { gte: 5, lt: 10 }]; * * // value must be greater than or equal to 10 or less than 5 [sfixed32.gte_lt_exclusive] * sfixed32 another_value = 3 [(buf.validate.field).sfixed32 = { gte: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: sfixed32 gte = 5; */ gte: number; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message is * generated. * * ```proto * message MySFixed32 { * // value must be in list [1, 2, 3] * sfixed32 value = 1 [(buf.validate.field).sfixed32 = { in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated sfixed32 in = 6; */ in: number[]; /** * `not_in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error * message is generated. * * ```proto * message MySFixed32 { * // value must not be in list [1, 2, 3] * sfixed32 value = 1 [(buf.validate.field).sfixed32 = { not_in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated sfixed32 not_in = 7; */ notIn: number[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MySFixed32 { * sfixed32 value = 1 [ * (buf.validate.field).sfixed32.example = 1, * (buf.validate.field).sfixed32.example = 2 * ]; * } * ``` * * @generated from protobuf field: repeated sfixed32 example = 8; */ example: number[]; } /** * SFixed64Rules describes the constraints applied to `fixed64` values. * * @generated from protobuf message buf.validate.SFixed64Rules */ export interface SFixed64Rules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MySFixed64 { * // value must equal 42 * sfixed64 value = 1 [(buf.validate.field).sfixed64.const = 42]; * } * ``` * * @generated from protobuf field: optional sfixed64 const = 1; */ const?: string; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` requires the field value to be less than the specified value (field < * value). If the field value is equal to or greater than the specified value, * an error message is generated. * * ```proto * message MySFixed64 { * // value must be less than 10 * sfixed64 value = 1 [(buf.validate.field).sfixed64.lt = 10]; * } * ``` * * @generated from protobuf field: sfixed64 lt = 2; */ lt: string; } | { oneofKind: "lte"; /** * `lte` requires the field value to be less than or equal to the specified * value (field <= value). If the field value is greater than the specified * value, an error message is generated. * * ```proto * message MySFixed64 { * // value must be less than or equal to 10 * sfixed64 value = 1 [(buf.validate.field).sfixed64.lte = 10]; * } * ``` * * @generated from protobuf field: sfixed64 lte = 3; */ lte: string; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the field value to be greater than the specified value * (exclusive). If the value of `gt` is larger than a specified `lt` or * `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MySFixed64 { * // value must be greater than 5 [sfixed64.gt] * sfixed64 value = 1 [(buf.validate.field).sfixed64.gt = 5]; * * // value must be greater than 5 and less than 10 [sfixed64.gt_lt] * sfixed64 other_value = 2 [(buf.validate.field).sfixed64 = { gt: 5, lt: 10 }]; * * // value must be greater than 10 or less than 5 [sfixed64.gt_lt_exclusive] * sfixed64 another_value = 3 [(buf.validate.field).sfixed64 = { gt: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: sfixed64 gt = 4; */ gt: string; } | { oneofKind: "gte"; /** * `gte` requires the field value to be greater than or equal to the specified * value (exclusive). If the value of `gte` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MySFixed64 { * // value must be greater than or equal to 5 [sfixed64.gte] * sfixed64 value = 1 [(buf.validate.field).sfixed64.gte = 5]; * * // value must be greater than or equal to 5 and less than 10 [sfixed64.gte_lt] * sfixed64 other_value = 2 [(buf.validate.field).sfixed64 = { gte: 5, lt: 10 }]; * * // value must be greater than or equal to 10 or less than 5 [sfixed64.gte_lt_exclusive] * sfixed64 another_value = 3 [(buf.validate.field).sfixed64 = { gte: 10, lt: 5 }]; * } * ``` * * @generated from protobuf field: sfixed64 gte = 5; */ gte: string; } | { oneofKind: undefined; }; /** * `in` requires the field value to be equal to one of the specified values. * If the field value isn't one of the specified values, an error message is * generated. * * ```proto * message MySFixed64 { * // value must be in list [1, 2, 3] * sfixed64 value = 1 [(buf.validate.field).sfixed64 = { in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated sfixed64 in = 6; */ in: string[]; /** * `not_in` requires the field value to not be equal to any of the specified * values. If the field value is one of the specified values, an error * message is generated. * * ```proto * message MySFixed64 { * // value must not be in list [1, 2, 3] * sfixed64 value = 1 [(buf.validate.field).sfixed64 = { not_in: [1, 2, 3] }]; * } * ``` * * @generated from protobuf field: repeated sfixed64 not_in = 7; */ notIn: string[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MySFixed64 { * sfixed64 value = 1 [ * (buf.validate.field).sfixed64.example = 1, * (buf.validate.field).sfixed64.example = 2 * ]; * } * ``` * * @generated from protobuf field: repeated sfixed64 example = 8; */ example: string[]; } /** * BoolRules describes the constraints applied to `bool` values. These rules * may also be applied to the `google.protobuf.BoolValue` Well-Known-Type. * * @generated from protobuf message buf.validate.BoolRules */ export interface BoolRules { /** * `const` requires the field value to exactly match the specified boolean value. * If the field value doesn't match, an error message is generated. * * ```proto * message MyBool { * // value must equal true * bool value = 1 [(buf.validate.field).bool.const = true]; * } * ``` * * @generated from protobuf field: optional bool const = 1; */ const?: boolean; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyBool { * bool value = 1 [ * (buf.validate.field).bool.example = 1, * (buf.validate.field).bool.example = 2 * ]; * } * ``` * * @generated from protobuf field: repeated bool example = 2; */ example: boolean[]; } /** * StringRules describes the constraints applied to `string` values These * rules may also be applied to the `google.protobuf.StringValue` Well-Known-Type. * * @generated from protobuf message buf.validate.StringRules */ export interface StringRules { /** * `const` requires the field value to exactly match the specified value. If * the field value doesn't match, an error message is generated. * * ```proto * message MyString { * // value must equal `hello` * string value = 1 [(buf.validate.field).string.const = "hello"]; * } * ``` * * @generated from protobuf field: optional string const = 1; */ const?: string; /** * `len` dictates that the field value must have the specified * number of characters (Unicode code points), which may differ from the number * of bytes in the string. If the field value does not meet the specified * length, an error message will be generated. * * ```proto * message MyString { * // value length must be 5 characters * string value = 1 [(buf.validate.field).string.len = 5]; * } * ``` * * @generated from protobuf field: optional uint64 len = 19; */ len?: string; /** * `min_len` specifies that the field value must have at least the specified * number of characters (Unicode code points), which may differ from the number * of bytes in the string. If the field value contains fewer characters, an error * message will be generated. * * ```proto * message MyString { * // value length must be at least 3 characters * string value = 1 [(buf.validate.field).string.min_len = 3]; * } * ``` * * @generated from protobuf field: optional uint64 min_len = 2; */ minLen?: string; /** * `max_len` specifies that the field value must have no more than the specified * number of characters (Unicode code points), which may differ from the * number of bytes in the string. If the field value contains more characters, * an error message will be generated. * * ```proto * message MyString { * // value length must be at most 10 characters * string value = 1 [(buf.validate.field).string.max_len = 10]; * } * ``` * * @generated from protobuf field: optional uint64 max_len = 3; */ maxLen?: string; /** * `len_bytes` dictates that the field value must have the specified number of * bytes. If the field value does not match the specified length in bytes, * an error message will be generated. * * ```proto * message MyString { * // value length must be 6 bytes * string value = 1 [(buf.validate.field).string.len_bytes = 6]; * } * ``` * * @generated from protobuf field: optional uint64 len_bytes = 20; */ lenBytes?: string; /** * `min_bytes` specifies that the field value must have at least the specified * number of bytes. If the field value contains fewer bytes, an error message * will be generated. * * ```proto * message MyString { * // value length must be at least 4 bytes * string value = 1 [(buf.validate.field).string.min_bytes = 4]; * } * * ``` * * @generated from protobuf field: optional uint64 min_bytes = 4; */ minBytes?: string; /** * `max_bytes` specifies that the field value must have no more than the * specified number of bytes. If the field value contains more bytes, an * error message will be generated. * * ```proto * message MyString { * // value length must be at most 8 bytes * string value = 1 [(buf.validate.field).string.max_bytes = 8]; * } * ``` * * @generated from protobuf field: optional uint64 max_bytes = 5; */ maxBytes?: string; /** * `pattern` specifies that the field value must match the specified * regular expression (RE2 syntax), with the expression provided without any * delimiters. If the field value doesn't match the regular expression, an * error message will be generated. * * ```proto * message MyString { * // value does not match regex pattern `^[a-zA-Z]//$` * string value = 1 [(buf.validate.field).string.pattern = "^[a-zA-Z]//$"]; * } * ``` * * @generated from protobuf field: optional string pattern = 6; */ pattern?: string; /** * `prefix` specifies that the field value must have the * specified substring at the beginning of the string. If the field value * doesn't start with the specified prefix, an error message will be * generated. * * ```proto * message MyString { * // value does not have prefix `pre` * string value = 1 [(buf.validate.field).string.prefix = "pre"]; * } * ``` * * @generated from protobuf field: optional string prefix = 7; */ prefix?: string; /** * `suffix` specifies that the field value must have the * specified substring at the end of the string. If the field value doesn't * end with the specified suffix, an error message will be generated. * * ```proto * message MyString { * // value does not have suffix `post` * string value = 1 [(buf.validate.field).string.suffix = "post"]; * } * ``` * * @generated from protobuf field: optional string suffix = 8; */ suffix?: string; /** * `contains` specifies that the field value must have the * specified substring anywhere in the string. If the field value doesn't * contain the specified substring, an error message will be generated. * * ```proto * message MyString { * // value does not contain substring `inside`. * string value = 1 [(buf.validate.field).string.contains = "inside"]; * } * ``` * * @generated from protobuf field: optional string contains = 9; */ contains?: string; /** * `not_contains` specifies that the field value must not have the * specified substring anywhere in the string. If the field value contains * the specified substring, an error message will be generated. * * ```proto * message MyString { * // value contains substring `inside`. * string value = 1 [(buf.validate.field).string.not_contains = "inside"]; * } * ``` * * @generated from protobuf field: optional string not_contains = 23; */ notContains?: string; /** * `in` specifies that the field value must be equal to one of the specified * values. If the field value isn't one of the specified values, an error * message will be generated. * * ```proto * message MyString { * // value must be in list ["apple", "banana"] * string value = 1 [(buf.validate.field).string.in = "apple", (buf.validate.field).string.in = "banana"]; * } * ``` * * @generated from protobuf field: repeated string in = 10; */ in: string[]; /** * `not_in` specifies that the field value cannot be equal to any * of the specified values. If the field value is one of the specified values, * an error message will be generated. * ```proto * message MyString { * // value must not be in list ["orange", "grape"] * string value = 1 [(buf.validate.field).string.not_in = "orange", (buf.validate.field).string.not_in = "grape"]; * } * ``` * * @generated from protobuf field: repeated string not_in = 11; */ notIn: string[]; /** * @generated from protobuf oneof: well_known */ wellKnown: { oneofKind: "email"; /** * `email` specifies that the field value must be a valid email address * (addr-spec only) as defined by [RFC 5322](https://datatracker.ietf.org/doc/html/rfc5322#section-3.4.1). * If the field value isn't a valid email address, an error message will be generated. * * ```proto * message MyString { * // value must be a valid email address * string value = 1 [(buf.validate.field).string.email = true]; * } * ``` * * @generated from protobuf field: bool email = 12; */ email: boolean; } | { oneofKind: "hostname"; /** * `hostname` specifies that the field value must be a valid * hostname as defined by [RFC 1034](https://datatracker.ietf.org/doc/html/rfc1034#section-3.5). This constraint doesn't support * internationalized domain names (IDNs). If the field value isn't a * valid hostname, an error message will be generated. * * ```proto * message MyString { * // value must be a valid hostname * string value = 1 [(buf.validate.field).string.hostname = true]; * } * ``` * * @generated from protobuf field: bool hostname = 13; */ hostname: boolean; } | { oneofKind: "ip"; /** * `ip` specifies that the field value must be a valid IP * (v4 or v6) address, without surrounding square brackets for IPv6 addresses. * If the field value isn't a valid IP address, an error message will be * generated. * * ```proto * message MyString { * // value must be a valid IP address * string value = 1 [(buf.validate.field).string.ip = true]; * } * ``` * * @generated from protobuf field: bool ip = 14; */ ip: boolean; } | { oneofKind: "ipv4"; /** * `ipv4` specifies that the field value must be a valid IPv4 * address. If the field value isn't a valid IPv4 address, an error message * will be generated. * * ```proto * message MyString { * // value must be a valid IPv4 address * string value = 1 [(buf.validate.field).string.ipv4 = true]; * } * ``` * * @generated from protobuf field: bool ipv4 = 15; */ ipv4: boolean; } | { oneofKind: "ipv6"; /** * `ipv6` specifies that the field value must be a valid * IPv6 address, without surrounding square brackets. If the field value is * not a valid IPv6 address, an error message will be generated. * * ```proto * message MyString { * // value must be a valid IPv6 address * string value = 1 [(buf.validate.field).string.ipv6 = true]; * } * ``` * * @generated from protobuf field: bool ipv6 = 16; */ ipv6: boolean; } | { oneofKind: "uri"; /** * `uri` specifies that the field value must be a valid URI as defined by * [RFC 3986](https://datatracker.ietf.org/doc/html/rfc3986#section-3). * * If the field value isn't a valid URI, an error message will be generated. * * ```proto * message MyString { * // value must be a valid URI * string value = 1 [(buf.validate.field).string.uri = true]; * } * ``` * * @generated from protobuf field: bool uri = 17; */ uri: boolean; } | { oneofKind: "uriRef"; /** * `uri_ref` specifies that the field value must be a valid URI Reference as * defined by [RFC 3986](https://datatracker.ietf.org/doc/html/rfc3986#section-4.1). * * A URI Reference is either a [URI](https://datatracker.ietf.org/doc/html/rfc3986#section-3), * or a [Relative Reference](https://datatracker.ietf.org/doc/html/rfc3986#section-4.2). * * If the field value isn't a valid URI Reference, an error message will be * generated. * * ```proto * message MyString { * // value must be a valid URI Reference * string value = 1 [(buf.validate.field).string.uri_ref = true]; * } * ``` * * @generated from protobuf field: bool uri_ref = 18; */ uriRef: boolean; } | { oneofKind: "address"; /** * `address` specifies that the field value must be either a valid hostname * as defined by [RFC 1034](https://datatracker.ietf.org/doc/html/rfc1034#section-3.5) * (which doesn't support internationalized domain names or IDNs) or a valid * IP (v4 or v6). If the field value isn't a valid hostname or IP, an error * message will be generated. * * ```proto * message MyString { * // value must be a valid hostname, or ip address * string value = 1 [(buf.validate.field).string.address = true]; * } * ``` * * @generated from protobuf field: bool address = 21; */ address: boolean; } | { oneofKind: "uuid"; /** * `uuid` specifies that the field value must be a valid UUID as defined by * [RFC 4122](https://datatracker.ietf.org/doc/html/rfc4122#section-4.1.2). If the * field value isn't a valid UUID, an error message will be generated. * * ```proto * message MyString { * // value must be a valid UUID * string value = 1 [(buf.validate.field).string.uuid = true]; * } * ``` * * @generated from protobuf field: bool uuid = 22; */ uuid: boolean; } | { oneofKind: "tuuid"; /** * `tuuid` (trimmed UUID) specifies that the field value must be a valid UUID as * defined by [RFC 4122](https://datatracker.ietf.org/doc/html/rfc4122#section-4.1.2) with all dashes * omitted. If the field value isn't a valid UUID without dashes, an error message * will be generated. * * ```proto * message MyString { * // value must be a valid trimmed UUID * string value = 1 [(buf.validate.field).string.tuuid = true]; * } * ``` * * @generated from protobuf field: bool tuuid = 33; */ tuuid: boolean; } | { oneofKind: "ipWithPrefixlen"; /** * `ip_with_prefixlen` specifies that the field value must be a valid IP (v4 or v6) * address with prefix length. If the field value isn't a valid IP with prefix * length, an error message will be generated. * * * ```proto * message MyString { * // value must be a valid IP with prefix length * string value = 1 [(buf.validate.field).string.ip_with_prefixlen = true]; * } * ``` * * @generated from protobuf field: bool ip_with_prefixlen = 26; */ ipWithPrefixlen: boolean; } | { oneofKind: "ipv4WithPrefixlen"; /** * `ipv4_with_prefixlen` specifies that the field value must be a valid * IPv4 address with prefix. * If the field value isn't a valid IPv4 address with prefix length, * an error message will be generated. * * ```proto * message MyString { * // value must be a valid IPv4 address with prefix length * string value = 1 [(buf.validate.field).string.ipv4_with_prefixlen = true]; * } * ``` * * @generated from protobuf field: bool ipv4_with_prefixlen = 27; */ ipv4WithPrefixlen: boolean; } | { oneofKind: "ipv6WithPrefixlen"; /** * `ipv6_with_prefixlen` specifies that the field value must be a valid * IPv6 address with prefix length. * If the field value is not a valid IPv6 address with prefix length, * an error message will be generated. * * ```proto * message MyString { * // value must be a valid IPv6 address prefix length * string value = 1 [(buf.validate.field).string.ipv6_with_prefixlen = true]; * } * ``` * * @generated from protobuf field: bool ipv6_with_prefixlen = 28; */ ipv6WithPrefixlen: boolean; } | { oneofKind: "ipPrefix"; /** * `ip_prefix` specifies that the field value must be a valid IP (v4 or v6) prefix. * If the field value isn't a valid IP prefix, an error message will be * generated. The prefix must have all zeros for the masked bits of the prefix (e.g., * `127.0.0.0/16`, not `127.0.0.1/16`). * * ```proto * message MyString { * // value must be a valid IP prefix * string value = 1 [(buf.validate.field).string.ip_prefix = true]; * } * ``` * * @generated from protobuf field: bool ip_prefix = 29; */ ipPrefix: boolean; } | { oneofKind: "ipv4Prefix"; /** * `ipv4_prefix` specifies that the field value must be a valid IPv4 * prefix. If the field value isn't a valid IPv4 prefix, an error message * will be generated. The prefix must have all zeros for the masked bits of * the prefix (e.g., `127.0.0.0/16`, not `127.0.0.1/16`). * * ```proto * message MyString { * // value must be a valid IPv4 prefix * string value = 1 [(buf.validate.field).string.ipv4_prefix = true]; * } * ``` * * @generated from protobuf field: bool ipv4_prefix = 30; */ ipv4Prefix: boolean; } | { oneofKind: "ipv6Prefix"; /** * `ipv6_prefix` specifies that the field value must be a valid IPv6 prefix. * If the field value is not a valid IPv6 prefix, an error message will be * generated. The prefix must have all zeros for the masked bits of the prefix * (e.g., `2001:db8::/48`, not `2001:db8::1/48`). * * ```proto * message MyString { * // value must be a valid IPv6 prefix * string value = 1 [(buf.validate.field).string.ipv6_prefix = true]; * } * ``` * * @generated from protobuf field: bool ipv6_prefix = 31; */ ipv6Prefix: boolean; } | { oneofKind: "hostAndPort"; /** * `host_and_port` specifies the field value must be a valid host and port * pair. The host must be a valid hostname or IP address while the port * must be in the range of 0-65535, inclusive. IPv6 addresses must be delimited * with square brackets (e.g., `[::1]:1234`). * * @generated from protobuf field: bool host_and_port = 32; */ hostAndPort: boolean; } | { oneofKind: "wellKnownRegex"; /** * `well_known_regex` specifies a common well-known pattern * defined as a regex. If the field value doesn't match the well-known * regex, an error message will be generated. * * ```proto * message MyString { * // value must be a valid HTTP header value * string value = 1 [(buf.validate.field).string.well_known_regex = KNOWN_REGEX_HTTP_HEADER_VALUE]; * } * ``` * * #### KnownRegex * * `well_known_regex` contains some well-known patterns. * * | Name | Number | Description | * |-------------------------------|--------|-------------------------------------------| * | KNOWN_REGEX_UNSPECIFIED | 0 | | * | KNOWN_REGEX_HTTP_HEADER_NAME | 1 | HTTP header name as defined by [RFC 7230](https://datatracker.ietf.org/doc/html/rfc7230#section-3.2) | * | KNOWN_REGEX_HTTP_HEADER_VALUE | 2 | HTTP header value as defined by [RFC 7230](https://datatracker.ietf.org/doc/html/rfc7230#section-3.2.4) | * * @generated from protobuf field: buf.validate.KnownRegex well_known_regex = 24; */ wellKnownRegex: KnownRegex; } | { oneofKind: undefined; }; /** * This applies to regexes `HTTP_HEADER_NAME` and `HTTP_HEADER_VALUE` to * enable strict header validation. By default, this is true, and HTTP header * validations are [RFC-compliant](https://datatracker.ietf.org/doc/html/rfc7230#section-3). Setting to false will enable looser * validations that only disallow `\r\n\0` characters, which can be used to * bypass header matching rules. * * ```proto * message MyString { * // The field `value` must have be a valid HTTP headers, but not enforced with strict rules. * string value = 1 [(buf.validate.field).string.strict = false]; * } * ``` * * @generated from protobuf field: optional bool strict = 25; */ strict?: boolean; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyString { * string value = 1 [ * (buf.validate.field).string.example = "hello", * (buf.validate.field).string.example = "world" * ]; * } * ``` * * @generated from protobuf field: repeated string example = 34; */ example: string[]; } /** * BytesRules describe the constraints applied to `bytes` values. These rules * may also be applied to the `google.protobuf.BytesValue` Well-Known-Type. * * @generated from protobuf message buf.validate.BytesRules */ export interface BytesRules { /** * `const` requires the field value to exactly match the specified bytes * value. If the field value doesn't match, an error message is generated. * * ```proto * message MyBytes { * // value must be "\x01\x02\x03\x04" * bytes value = 1 [(buf.validate.field).bytes.const = "\x01\x02\x03\x04"]; * } * ``` * * @generated from protobuf field: optional bytes const = 1; */ const?: Uint8Array; /** * `len` requires the field value to have the specified length in bytes. * If the field value doesn't match, an error message is generated. * * ```proto * message MyBytes { * // value length must be 4 bytes. * optional bytes value = 1 [(buf.validate.field).bytes.len = 4]; * } * ``` * * @generated from protobuf field: optional uint64 len = 13; */ len?: string; /** * `min_len` requires the field value to have at least the specified minimum * length in bytes. * If the field value doesn't meet the requirement, an error message is generated. * * ```proto * message MyBytes { * // value length must be at least 2 bytes. * optional bytes value = 1 [(buf.validate.field).bytes.min_len = 2]; * } * ``` * * @generated from protobuf field: optional uint64 min_len = 2; */ minLen?: string; /** * `max_len` requires the field value to have at most the specified maximum * length in bytes. * If the field value exceeds the requirement, an error message is generated. * * ```proto * message MyBytes { * // value must be at most 6 bytes. * optional bytes value = 1 [(buf.validate.field).bytes.max_len = 6]; * } * ``` * * @generated from protobuf field: optional uint64 max_len = 3; */ maxLen?: string; /** * `pattern` requires the field value to match the specified regular * expression ([RE2 syntax](https://github.com/google/re2/wiki/Syntax)). * The value of the field must be valid UTF-8 or validation will fail with a * runtime error. * If the field value doesn't match the pattern, an error message is generated. * * ```proto * message MyBytes { * // value must match regex pattern "^[a-zA-Z0-9]+$". * optional bytes value = 1 [(buf.validate.field).bytes.pattern = "^[a-zA-Z0-9]+$"]; * } * ``` * * @generated from protobuf field: optional string pattern = 4; */ pattern?: string; /** * `prefix` requires the field value to have the specified bytes at the * beginning of the string. * If the field value doesn't meet the requirement, an error message is generated. * * ```proto * message MyBytes { * // value does not have prefix \x01\x02 * optional bytes value = 1 [(buf.validate.field).bytes.prefix = "\x01\x02"]; * } * ``` * * @generated from protobuf field: optional bytes prefix = 5; */ prefix?: Uint8Array; /** * `suffix` requires the field value to have the specified bytes at the end * of the string. * If the field value doesn't meet the requirement, an error message is generated. * * ```proto * message MyBytes { * // value does not have suffix \x03\x04 * optional bytes value = 1 [(buf.validate.field).bytes.suffix = "\x03\x04"]; * } * ``` * * @generated from protobuf field: optional bytes suffix = 6; */ suffix?: Uint8Array; /** * `contains` requires the field value to have the specified bytes anywhere in * the string. * If the field value doesn't meet the requirement, an error message is generated. * * ```protobuf * message MyBytes { * // value does not contain \x02\x03 * optional bytes value = 1 [(buf.validate.field).bytes.contains = "\x02\x03"]; * } * ``` * * @generated from protobuf field: optional bytes contains = 7; */ contains?: Uint8Array; /** * `in` requires the field value to be equal to one of the specified * values. If the field value doesn't match any of the specified values, an * error message is generated. * * ```protobuf * message MyBytes { * // value must in ["\x01\x02", "\x02\x03", "\x03\x04"] * optional bytes value = 1 [(buf.validate.field).bytes.in = {"\x01\x02", "\x02\x03", "\x03\x04"}]; * } * ``` * * @generated from protobuf field: repeated bytes in = 8; */ in: Uint8Array[]; /** * `not_in` requires the field value to be not equal to any of the specified * values. * If the field value matches any of the specified values, an error message is * generated. * * ```proto * message MyBytes { * // value must not in ["\x01\x02", "\x02\x03", "\x03\x04"] * optional bytes value = 1 [(buf.validate.field).bytes.not_in = {"\x01\x02", "\x02\x03", "\x03\x04"}]; * } * ``` * * @generated from protobuf field: repeated bytes not_in = 9; */ notIn: Uint8Array[]; /** * @generated from protobuf oneof: well_known */ wellKnown: { oneofKind: "ip"; /** * `ip` ensures that the field `value` is a valid IP address (v4 or v6) in byte format. * If the field value doesn't meet this constraint, an error message is generated. * * ```proto * message MyBytes { * // value must be a valid IP address * optional bytes value = 1 [(buf.validate.field).bytes.ip = true]; * } * ``` * * @generated from protobuf field: bool ip = 10; */ ip: boolean; } | { oneofKind: "ipv4"; /** * `ipv4` ensures that the field `value` is a valid IPv4 address in byte format. * If the field value doesn't meet this constraint, an error message is generated. * * ```proto * message MyBytes { * // value must be a valid IPv4 address * optional bytes value = 1 [(buf.validate.field).bytes.ipv4 = true]; * } * ``` * * @generated from protobuf field: bool ipv4 = 11; */ ipv4: boolean; } | { oneofKind: "ipv6"; /** * `ipv6` ensures that the field `value` is a valid IPv6 address in byte format. * If the field value doesn't meet this constraint, an error message is generated. * ```proto * message MyBytes { * // value must be a valid IPv6 address * optional bytes value = 1 [(buf.validate.field).bytes.ipv6 = true]; * } * ``` * * @generated from protobuf field: bool ipv6 = 12; */ ipv6: boolean; } | { oneofKind: undefined; }; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyBytes { * bytes value = 1 [ * (buf.validate.field).bytes.example = "\x01\x02", * (buf.validate.field).bytes.example = "\x02\x03" * ]; * } * ``` * * @generated from protobuf field: repeated bytes example = 14; */ example: Uint8Array[]; } /** * EnumRules describe the constraints applied to `enum` values. * * @generated from protobuf message buf.validate.EnumRules */ export interface EnumRules { /** * `const` requires the field value to exactly match the specified enum value. * If the field value doesn't match, an error message is generated. * * ```proto * enum MyEnum { * MY_ENUM_UNSPECIFIED = 0; * MY_ENUM_VALUE1 = 1; * MY_ENUM_VALUE2 = 2; * } * * message MyMessage { * // The field `value` must be exactly MY_ENUM_VALUE1. * MyEnum value = 1 [(buf.validate.field).enum.const = 1]; * } * ``` * * @generated from protobuf field: optional int32 const = 1; */ const?: number; /** * `defined_only` requires the field value to be one of the defined values for * this enum, failing on any undefined value. * * ```proto * enum MyEnum { * MY_ENUM_UNSPECIFIED = 0; * MY_ENUM_VALUE1 = 1; * MY_ENUM_VALUE2 = 2; * } * * message MyMessage { * // The field `value` must be a defined value of MyEnum. * MyEnum value = 1 [(buf.validate.field).enum.defined_only = true]; * } * ``` * * @generated from protobuf field: optional bool defined_only = 2; */ definedOnly?: boolean; /** * `in` requires the field value to be equal to one of the * specified enum values. If the field value doesn't match any of the * specified values, an error message is generated. * * ```proto * enum MyEnum { * MY_ENUM_UNSPECIFIED = 0; * MY_ENUM_VALUE1 = 1; * MY_ENUM_VALUE2 = 2; * } * * message MyMessage { * // The field `value` must be equal to one of the specified values. * MyEnum value = 1 [(buf.validate.field).enum = { in: [1, 2]}]; * } * ``` * * @generated from protobuf field: repeated int32 in = 3; */ in: number[]; /** * `not_in` requires the field value to be not equal to any of the * specified enum values. If the field value matches one of the specified * values, an error message is generated. * * ```proto * enum MyEnum { * MY_ENUM_UNSPECIFIED = 0; * MY_ENUM_VALUE1 = 1; * MY_ENUM_VALUE2 = 2; * } * * message MyMessage { * // The field `value` must not be equal to any of the specified values. * MyEnum value = 1 [(buf.validate.field).enum = { not_in: [1, 2]}]; * } * ``` * * @generated from protobuf field: repeated int32 not_in = 4; */ notIn: number[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * enum MyEnum { * MY_ENUM_UNSPECIFIED = 0; * MY_ENUM_VALUE1 = 1; * MY_ENUM_VALUE2 = 2; * } * * message MyMessage { * (buf.validate.field).enum.example = 1, * (buf.validate.field).enum.example = 2 * } * ``` * * @generated from protobuf field: repeated int32 example = 5; */ example: number[]; } /** * RepeatedRules describe the constraints applied to `repeated` values. * * @generated from protobuf message buf.validate.RepeatedRules */ export interface RepeatedRules { /** * `min_items` requires that this field must contain at least the specified * minimum number of items. * * Note that `min_items = 1` is equivalent to setting a field as `required`. * * ```proto * message MyRepeated { * // value must contain at least 2 items * repeated string value = 1 [(buf.validate.field).repeated.min_items = 2]; * } * ``` * * @generated from protobuf field: optional uint64 min_items = 1; */ minItems?: string; /** * `max_items` denotes that this field must not exceed a * certain number of items as the upper limit. If the field contains more * items than specified, an error message will be generated, requiring the * field to maintain no more than the specified number of items. * * ```proto * message MyRepeated { * // value must contain no more than 3 item(s) * repeated string value = 1 [(buf.validate.field).repeated.max_items = 3]; * } * ``` * * @generated from protobuf field: optional uint64 max_items = 2; */ maxItems?: string; /** * `unique` indicates that all elements in this field must * be unique. This constraint is strictly applicable to scalar and enum * types, with message types not being supported. * * ```proto * message MyRepeated { * // repeated value must contain unique items * repeated string value = 1 [(buf.validate.field).repeated.unique = true]; * } * ``` * * @generated from protobuf field: optional bool unique = 3; */ unique?: boolean; /** * `items` details the constraints to be applied to each item * in the field. Even for repeated message fields, validation is executed * against each item unless skip is explicitly specified. * * ```proto * message MyRepeated { * // The items in the field `value` must follow the specified constraints. * repeated string value = 1 [(buf.validate.field).repeated.items = { * string: { * min_len: 3 * max_len: 10 * } * }]; * } * ``` * * @generated from protobuf field: optional buf.validate.FieldConstraints items = 4; */ items?: FieldConstraints; } /** * MapRules describe the constraints applied to `map` values. * * @generated from protobuf message buf.validate.MapRules */ export interface MapRules { /** * Specifies the minimum number of key-value pairs allowed. If the field has * fewer key-value pairs than specified, an error message is generated. * * ```proto * message MyMap { * // The field `value` must have at least 2 key-value pairs. * map value = 1 [(buf.validate.field).map.min_pairs = 2]; * } * ``` * * @generated from protobuf field: optional uint64 min_pairs = 1; */ minPairs?: string; /** * Specifies the maximum number of key-value pairs allowed. If the field has * more key-value pairs than specified, an error message is generated. * * ```proto * message MyMap { * // The field `value` must have at most 3 key-value pairs. * map value = 1 [(buf.validate.field).map.max_pairs = 3]; * } * ``` * * @generated from protobuf field: optional uint64 max_pairs = 2; */ maxPairs?: string; /** * Specifies the constraints to be applied to each key in the field. * * ```proto * message MyMap { * // The keys in the field `value` must follow the specified constraints. * map value = 1 [(buf.validate.field).map.keys = { * string: { * min_len: 3 * max_len: 10 * } * }]; * } * ``` * * @generated from protobuf field: optional buf.validate.FieldConstraints keys = 4; */ keys?: FieldConstraints; /** * Specifies the constraints to be applied to the value of each key in the * field. Message values will still have their validations evaluated unless * skip is specified here. * * ```proto * message MyMap { * // The values in the field `value` must follow the specified constraints. * map value = 1 [(buf.validate.field).map.values = { * string: { * min_len: 5 * max_len: 20 * } * }]; * } * ``` * * @generated from protobuf field: optional buf.validate.FieldConstraints values = 5; */ values?: FieldConstraints; } /** * AnyRules describe constraints applied exclusively to the `google.protobuf.Any` well-known type. * * @generated from protobuf message buf.validate.AnyRules */ export interface AnyRules { /** * `in` requires the field's `type_url` to be equal to one of the * specified values. If it doesn't match any of the specified values, an error * message is generated. * * ```proto * message MyAny { * // The `value` field must have a `type_url` equal to one of the specified values. * google.protobuf.Any value = 1 [(buf.validate.field).any.in = ["type.googleapis.com/MyType1", "type.googleapis.com/MyType2"]]; * } * ``` * * @generated from protobuf field: repeated string in = 2; */ in: string[]; /** * requires the field's type_url to be not equal to any of the specified values. If it matches any of the specified values, an error message is generated. * * ```proto * message MyAny { * // The field `value` must not have a `type_url` equal to any of the specified values. * google.protobuf.Any value = 1 [(buf.validate.field).any.not_in = ["type.googleapis.com/ForbiddenType1", "type.googleapis.com/ForbiddenType2"]]; * } * ``` * * @generated from protobuf field: repeated string not_in = 3; */ notIn: string[]; } /** * DurationRules describe the constraints applied exclusively to the `google.protobuf.Duration` well-known type. * * @generated from protobuf message buf.validate.DurationRules */ export interface DurationRules { /** * `const` dictates that the field must match the specified value of the `google.protobuf.Duration` type exactly. * If the field's value deviates from the specified value, an error message * will be generated. * * ```proto * message MyDuration { * // value must equal 5s * google.protobuf.Duration value = 1 [(buf.validate.field).duration.const = "5s"]; * } * ``` * * @generated from protobuf field: optional google.protobuf.Duration const = 2; */ const?: Duration; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * `lt` stipulates that the field must be less than the specified value of the `google.protobuf.Duration` type, * exclusive. If the field's value is greater than or equal to the specified * value, an error message will be generated. * * ```proto * message MyDuration { * // value must be less than 5s * google.protobuf.Duration value = 1 [(buf.validate.field).duration.lt = "5s"]; * } * ``` * * @generated from protobuf field: google.protobuf.Duration lt = 3; */ lt: Duration; } | { oneofKind: "lte"; /** * `lte` indicates that the field must be less than or equal to the specified * value of the `google.protobuf.Duration` type, inclusive. If the field's value is greater than the specified value, * an error message will be generated. * * ```proto * message MyDuration { * // value must be less than or equal to 10s * google.protobuf.Duration value = 1 [(buf.validate.field).duration.lte = "10s"]; * } * ``` * * @generated from protobuf field: google.protobuf.Duration lte = 4; */ lte: Duration; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the duration field value to be greater than the specified * value (exclusive). If the value of `gt` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyDuration { * // duration must be greater than 5s [duration.gt] * google.protobuf.Duration value = 1 [(buf.validate.field).duration.gt = { seconds: 5 }]; * * // duration must be greater than 5s and less than 10s [duration.gt_lt] * google.protobuf.Duration another_value = 2 [(buf.validate.field).duration = { gt: { seconds: 5 }, lt: { seconds: 10 } }]; * * // duration must be greater than 10s or less than 5s [duration.gt_lt_exclusive] * google.protobuf.Duration other_value = 3 [(buf.validate.field).duration = { gt: { seconds: 10 }, lt: { seconds: 5 } }]; * } * ``` * * @generated from protobuf field: google.protobuf.Duration gt = 5; */ gt: Duration; } | { oneofKind: "gte"; /** * `gte` requires the duration field value to be greater than or equal to the * specified value (exclusive). If the value of `gte` is larger than a * specified `lt` or `lte`, the range is reversed, and the field value must * be outside the specified range. If the field value doesn't meet the * required conditions, an error message is generated. * * ```proto * message MyDuration { * // duration must be greater than or equal to 5s [duration.gte] * google.protobuf.Duration value = 1 [(buf.validate.field).duration.gte = { seconds: 5 }]; * * // duration must be greater than or equal to 5s and less than 10s [duration.gte_lt] * google.protobuf.Duration another_value = 2 [(buf.validate.field).duration = { gte: { seconds: 5 }, lt: { seconds: 10 } }]; * * // duration must be greater than or equal to 10s or less than 5s [duration.gte_lt_exclusive] * google.protobuf.Duration other_value = 3 [(buf.validate.field).duration = { gte: { seconds: 10 }, lt: { seconds: 5 } }]; * } * ``` * * @generated from protobuf field: google.protobuf.Duration gte = 6; */ gte: Duration; } | { oneofKind: undefined; }; /** * `in` asserts that the field must be equal to one of the specified values of the `google.protobuf.Duration` type. * If the field's value doesn't correspond to any of the specified values, * an error message will be generated. * * ```proto * message MyDuration { * // value must be in list [1s, 2s, 3s] * google.protobuf.Duration value = 1 [(buf.validate.field).duration.in = ["1s", "2s", "3s"]]; * } * ``` * * @generated from protobuf field: repeated google.protobuf.Duration in = 7; */ in: Duration[]; /** * `not_in` denotes that the field must not be equal to * any of the specified values of the `google.protobuf.Duration` type. * If the field's value matches any of these values, an error message will be * generated. * * ```proto * message MyDuration { * // value must not be in list [1s, 2s, 3s] * google.protobuf.Duration value = 1 [(buf.validate.field).duration.not_in = ["1s", "2s", "3s"]]; * } * ``` * * @generated from protobuf field: repeated google.protobuf.Duration not_in = 8; */ notIn: Duration[]; /** * `example` specifies values that the field may have. These values SHOULD * conform to other constraints. `example` values will not impact validation * but may be used as helpful guidance on how to populate the given field. * * ```proto * message MyDuration { * google.protobuf.Duration value = 1 [ * (buf.validate.field).duration.example = { seconds: 1 }, * (buf.validate.field).duration.example = { seconds: 2 }, * ]; * } * ``` * * @generated from protobuf field: repeated google.protobuf.Duration example = 9; */ example: Duration[]; } /** * TimestampRules describe the constraints applied exclusively to the `google.protobuf.Timestamp` well-known type. * * @generated from protobuf message buf.validate.TimestampRules */ export interface TimestampRules { /** * `const` dictates that this field, of the `google.protobuf.Timestamp` type, must exactly match the specified value. If the field value doesn't correspond to the specified timestamp, an error message will be generated. * * ```proto * message MyTimestamp { * // value must equal 2023-05-03T10:00:00Z * google.protobuf.Timestamp created_at = 1 [(buf.validate.field).timestamp.const = {seconds: 1727998800}]; * } * ``` * * @generated from protobuf field: optional google.protobuf.Timestamp const = 2; */ const?: Timestamp; /** * @generated from protobuf oneof: less_than */ lessThan: { oneofKind: "lt"; /** * requires the duration field value to be less than the specified value (field < value). If the field value doesn't meet the required conditions, an error message is generated. * * ```proto * message MyDuration { * // duration must be less than 'P3D' [duration.lt] * google.protobuf.Duration value = 1 [(buf.validate.field).duration.lt = { seconds: 259200 }]; * } * ``` * * @generated from protobuf field: google.protobuf.Timestamp lt = 3; */ lt: Timestamp; } | { oneofKind: "lte"; /** * requires the timestamp field value to be less than or equal to the specified value (field <= value). If the field value doesn't meet the required conditions, an error message is generated. * * ```proto * message MyTimestamp { * // timestamp must be less than or equal to '2023-05-14T00:00:00Z' [timestamp.lte] * google.protobuf.Timestamp value = 1 [(buf.validate.field).timestamp.lte = { seconds: 1678867200 }]; * } * ``` * * @generated from protobuf field: google.protobuf.Timestamp lte = 4; */ lte: Timestamp; } | { oneofKind: "ltNow"; /** * `lt_now` specifies that this field, of the `google.protobuf.Timestamp` type, must be less than the current time. `lt_now` can only be used with the `within` rule. * * ```proto * message MyTimestamp { * // value must be less than now * google.protobuf.Timestamp created_at = 1 [(buf.validate.field).timestamp.lt_now = true]; * } * ``` * * @generated from protobuf field: bool lt_now = 7; */ ltNow: boolean; } | { oneofKind: undefined; }; /** * @generated from protobuf oneof: greater_than */ greaterThan: { oneofKind: "gt"; /** * `gt` requires the timestamp field value to be greater than the specified * value (exclusive). If the value of `gt` is larger than a specified `lt` * or `lte`, the range is reversed, and the field value must be outside the * specified range. If the field value doesn't meet the required conditions, * an error message is generated. * * ```proto * message MyTimestamp { * // timestamp must be greater than '2023-01-01T00:00:00Z' [timestamp.gt] * google.protobuf.Timestamp value = 1 [(buf.validate.field).timestamp.gt = { seconds: 1672444800 }]; * * // timestamp must be greater than '2023-01-01T00:00:00Z' and less than '2023-01-02T00:00:00Z' [timestamp.gt_lt] * google.protobuf.Timestamp another_value = 2 [(buf.validate.field).timestamp = { gt: { seconds: 1672444800 }, lt: { seconds: 1672531200 } }]; * * // timestamp must be greater than '2023-01-02T00:00:00Z' or less than '2023-01-01T00:00:00Z' [timestamp.gt_lt_exclusive] * google.protobuf.Timestamp other_value = 3 [(buf.validate.field).timestamp = { gt: { seconds: 1672531200 }, lt: { seconds: 1672444800 } }]; * } * ``` * * @generated from protobuf field: google.protobuf.Timestamp gt = 5; */ gt: Timestamp; } | { oneofKind: "gte"; /** * `gte` requires the timestamp field value to be greater than or equal to the * specified value (exclusive). If the value of `gte` is larger than a * specified `lt` or `lte`, the range is reversed, and the field value * must be outside the specified range. If the field value doesn't meet * the required conditions, an error message is generated. * * ```proto * message MyTimestamp { * // timestamp must be greater than or equal to '2023-01-01T00:00:00Z' [timestamp.gte] * google.protobuf.Timestamp value = 1 [(buf.validate.field).timestamp.gte = { seconds: 1672444800 }]; * * // timestamp must be greater than or equal to '2023-01-01T00:00:00Z' and less than '2023-01-02T00:00:00Z' [timestamp.gte_lt] * google.protobuf.Timestamp another_value = 2 [(buf.validate.field).timestamp = { gte: { seconds: 1672444800 }, lt: { seconds: 1672531200 } }]; * * // timestamp must be greater than or equal to '2023-01-02T00:00:00Z' or less than '2023-01-01T00:00:00Z' [timestamp.gte_lt_exclusive] * google.protobuf.Timestamp other_value = 3 [(buf.validate.field).timestamp = { gte: { seconds: 1672531200 }, lt: { seconds: 1672444800 } }]; * } * ``` * * @generated from protobuf field: google.protobuf.Timestamp gte = 6; */ gte: Timestamp; } | { oneofKind: "gtNow"; /** * `gt_now` specifies that this field, of the `google.protobuf.Timestamp` type, must be greater than the current time. `gt_now` can only be used with the `within` rule. * * ```proto * message MyTimestamp { * // value must be greater than now * google.protobuf.Timestamp created_at = 1 [(buf.validate.field).timestamp.gt_now = true]; * } * ``` * * @generated from protobuf field: bool gt_now = 8; */ gtNow: boolean; } | { oneofKind: undefined; }; /** * `within` specifies that this field, of the `google.protobuf.Timestamp` type, must be within the specified duration of the current time. If the field value isn't within the duration, an error message is generated. * * ```proto * message MyTimestamp { * // value must be within 1 hour of now * google.protobuf.Timestamp created_at = 1 [(buf.validate.field).timestamp.within = {seconds: 3600}]; * } * ``` * * @generated from protobuf field: optional google.protobuf.Duration within = 9; */ within?: Duration; /** * @generated from protobuf field: repeated google.protobuf.Timestamp example = 10; */ example: Timestamp[]; } /** * `Violations` is a collection of `Violation` messages. This message type is returned by * protovalidate when a proto message fails to meet the requirements set by the `Constraint` validation rules. * Each individual violation is represented by a `Violation` message. * * @generated from protobuf message buf.validate.Violations */ export interface Violations { /** * `violations` is a repeated field that contains all the `Violation` messages corresponding to the violations detected. * * @generated from protobuf field: repeated buf.validate.Violation violations = 1; */ violations: Violation[]; } /** * `Violation` represents a single instance where a validation rule, expressed * as a `Constraint`, was not met. It provides information about the field that * caused the violation, the specific constraint that wasn't fulfilled, and a * human-readable error message. * * ```json * { * "fieldPath": "bar", * "constraintId": "foo.bar", * "message": "bar must be greater than 0" * } * ``` * * @generated from protobuf message buf.validate.Violation */ export interface Violation { /** * `field` is a machine-readable path to the field that failed validation. * This could be a nested field, in which case the path will include all the parent fields leading to the actual field that caused the violation. * * For example, consider the following message: * * ```proto * message Message { * bool a = 1 [(buf.validate.field).required = true]; * } * ``` * * It could produce the following violation: * * ```textproto * violation { * field { element { field_number: 1, field_name: "a", field_type: 8 } } * ... * } * ``` * * @generated from protobuf field: optional buf.validate.FieldPath field = 5; */ field?: FieldPath; /** * `rule` is a machine-readable path that points to the specific constraint rule that failed validation. * This will be a nested field starting from the FieldConstraints of the field that failed validation. * For custom constraints, this will provide the path of the constraint, e.g. `cel[0]`. * * For example, consider the following message: * * ```proto * message Message { * bool a = 1 [(buf.validate.field).required = true]; * bool b = 2 [(buf.validate.field).cel = { * id: "custom_constraint", * expression: "!this ? 'b must be true': ''" * }] * } * ``` * * It could produce the following violations: * * ```textproto * violation { * rule { element { field_number: 25, field_name: "required", field_type: 8 } } * ... * } * violation { * rule { element { field_number: 23, field_name: "cel", field_type: 11, index: 0 } } * ... * } * ``` * * @generated from protobuf field: optional buf.validate.FieldPath rule = 6; */ rule?: FieldPath; /** * `constraint_id` is the unique identifier of the `Constraint` that was not fulfilled. * This is the same `id` that was specified in the `Constraint` message, allowing easy tracing of which rule was violated. * * @generated from protobuf field: optional string constraint_id = 2; */ constraintId?: string; /** * `message` is a human-readable error message that describes the nature of the violation. * This can be the default error message from the violated `Constraint`, or it can be a custom message that gives more context about the violation. * * @generated from protobuf field: optional string message = 3; */ message?: string; /** * `for_key` indicates whether the violation was caused by a map key, rather than a value. * * @generated from protobuf field: optional bool for_key = 4; */ forKey?: boolean; } /** * `FieldPath` provides a path to a nested protobuf field. * * This message provides enough information to render a dotted field path even without protobuf descriptors. * It also provides enough information to resolve a nested field through unknown wire data. * * @generated from protobuf message buf.validate.FieldPath */ export interface FieldPath { /** * `elements` contains each element of the path, starting from the root and recursing downward. * * @generated from protobuf field: repeated buf.validate.FieldPathElement elements = 1; */ elements: FieldPathElement[]; } /** * `FieldPathElement` provides enough information to nest through a single protobuf field. * * If the selected field is a map or repeated field, the `subscript` value selects a specific element from it. * A path that refers to a value nested under a map key or repeated field index will have a `subscript` value. * The `field_type` field allows unambiguous resolution of a field even if descriptors are not available. * * @generated from protobuf message buf.validate.FieldPathElement */ export interface FieldPathElement { /** * `field_number` is the field number this path element refers to. * * @generated from protobuf field: optional int32 field_number = 1; */ fieldNumber?: number; /** * `field_name` contains the field name this path element refers to. * This can be used to display a human-readable path even if the field number is unknown. * * @generated from protobuf field: optional string field_name = 2; */ fieldName?: string; /** * `field_type` specifies the type of this field. When using reflection, this value is not needed. * * This value is provided to make it possible to traverse unknown fields through wire data. * When traversing wire data, be mindful of both packed[1] and delimited[2] encoding schemes. * * [1]: https://protobuf.dev/programming-guides/encoding/#packed * [2]: https://protobuf.dev/programming-guides/encoding/#groups * * N.B.: Although groups are deprecated, the corresponding delimited encoding scheme is not, and * can be explicitly used in Protocol Buffers 2023 Edition. * * @generated from protobuf field: optional google.protobuf.FieldDescriptorProto.Type field_type = 3; */ fieldType?: FieldDescriptorProto_Type; /** * `key_type` specifies the map key type of this field. This value is useful when traversing * unknown fields through wire data: specifically, it allows handling the differences between * different integer encodings. * * @generated from protobuf field: optional google.protobuf.FieldDescriptorProto.Type key_type = 4; */ keyType?: FieldDescriptorProto_Type; /** * `value_type` specifies map value type of this field. This is useful if you want to display a * value inside unknown fields through wire data. * * @generated from protobuf field: optional google.protobuf.FieldDescriptorProto.Type value_type = 5; */ valueType?: FieldDescriptorProto_Type; /** * @generated from protobuf oneof: subscript */ subscript: { oneofKind: "index"; /** * `index` specifies a 0-based index into a repeated field. * * @generated from protobuf field: uint64 index = 6; */ index: string; } | { oneofKind: "boolKey"; /** * `bool_key` specifies a map key of type bool. * * @generated from protobuf field: bool bool_key = 7; */ boolKey: boolean; } | { oneofKind: "intKey"; /** * `int_key` specifies a map key of type int32, int64, sint32, sint64, sfixed32 or sfixed64. * * @generated from protobuf field: int64 int_key = 8; */ intKey: string; } | { oneofKind: "uintKey"; /** * `uint_key` specifies a map key of type uint32, uint64, fixed32 or fixed64. * * @generated from protobuf field: uint64 uint_key = 9; */ uintKey: string; } | { oneofKind: "stringKey"; /** * `string_key` specifies a map key of type string. * * @generated from protobuf field: string string_key = 10; */ stringKey: string; } | { oneofKind: undefined; }; } /** * Specifies how FieldConstraints.ignore behaves. See the documentation for * FieldConstraints.required for definitions of "populated" and "nullable". * * @generated from protobuf enum buf.validate.Ignore */ export declare enum Ignore { /** * Validation is only skipped if it's an unpopulated nullable fields. * * ```proto * syntax="proto3"; * * message Request { * // The uri rule applies to any value, including the empty string. * string foo = 1 [ * (buf.validate.field).string.uri = true * ]; * * // The uri rule only applies if the field is set, including if it's * // set to the empty string. * optional string bar = 2 [ * (buf.validate.field).string.uri = true * ]; * * // The min_items rule always applies, even if the list is empty. * repeated string baz = 3 [ * (buf.validate.field).repeated.min_items = 3 * ]; * * // The custom CEL rule applies only if the field is set, including if * // it's the "zero" value of that message. * SomeMessage quux = 4 [ * (buf.validate.field).cel = {/* ... *\/} * ]; * } * ``` * * @generated from protobuf enum value: IGNORE_UNSPECIFIED = 0; */ UNSPECIFIED = 0, /** * Validation is skipped if the field is unpopulated. This rule is redundant * if the field is already nullable. * * ```proto * syntax="proto3 * * message Request { * // The uri rule applies only if the value is not the empty string. * string foo = 1 [ * (buf.validate.field).string.uri = true, * (buf.validate.field).ignore = IGNORE_IF_UNPOPULATED * ]; * * // IGNORE_IF_UNPOPULATED is equivalent to IGNORE_UNSPECIFIED in this * // case: the uri rule only applies if the field is set, including if * // it's set to the empty string. * optional string bar = 2 [ * (buf.validate.field).string.uri = true, * (buf.validate.field).ignore = IGNORE_IF_UNPOPULATED * ]; * * // The min_items rule only applies if the list has at least one item. * repeated string baz = 3 [ * (buf.validate.field).repeated.min_items = 3, * (buf.validate.field).ignore = IGNORE_IF_UNPOPULATED * ]; * * // IGNORE_IF_UNPOPULATED is equivalent to IGNORE_UNSPECIFIED in this * // case: the custom CEL rule applies only if the field is set, including * // if it's the "zero" value of that message. * SomeMessage quux = 4 [ * (buf.validate.field).cel = {/* ... *\/}, * (buf.validate.field).ignore = IGNORE_IF_UNPOPULATED * ]; * } * ``` * * @generated from protobuf enum value: IGNORE_IF_UNPOPULATED = 1; */ IF_UNPOPULATED = 1, /** * Validation is skipped if the field is unpopulated or if it is a nullable * field populated with its default value. This is typically the zero or * empty value, but proto2 scalars support custom defaults. For messages, the * default is a non-null message with all its fields unpopulated. * * ```proto * syntax="proto3 * * message Request { * // IGNORE_IF_DEFAULT_VALUE is equivalent to IGNORE_IF_UNPOPULATED in * // this case; the uri rule applies only if the value is not the empty * // string. * string foo = 1 [ * (buf.validate.field).string.uri = true, * (buf.validate.field).ignore = IGNORE_IF_DEFAULT_VALUE * ]; * * // The uri rule only applies if the field is set to a value other than * // the empty string. * optional string bar = 2 [ * (buf.validate.field).string.uri = true, * (buf.validate.field).ignore = IGNORE_IF_DEFAULT_VALUE * ]; * * // IGNORE_IF_DEFAULT_VALUE is equivalent to IGNORE_IF_UNPOPULATED in * // this case; the min_items rule only applies if the list has at least * // one item. * repeated string baz = 3 [ * (buf.validate.field).repeated.min_items = 3, * (buf.validate.field).ignore = IGNORE_IF_DEFAULT_VALUE * ]; * * // The custom CEL rule only applies if the field is set to a value other * // than an empty message (i.e., fields are unpopulated). * SomeMessage quux = 4 [ * (buf.validate.field).cel = {/* ... *\/}, * (buf.validate.field).ignore = IGNORE_IF_DEFAULT_VALUE * ]; * } * ``` * * This rule is affected by proto2 custom default values: * * ```proto * syntax="proto2"; * * message Request { * // The gt rule only applies if the field is set and it's value is not * the default (i.e., not -42). The rule even applies if the field is set * to zero since the default value differs. * optional int32 value = 1 [ * default = -42, * (buf.validate.field).int32.gt = 0, * (buf.validate.field).ignore = IGNORE_IF_DEFAULT_VALUE * ]; * } * * @generated from protobuf enum value: IGNORE_IF_DEFAULT_VALUE = 2; */ IF_DEFAULT_VALUE = 2, /** * The validation rules of this field will be skipped and not evaluated. This * is useful for situations that necessitate turning off the rules of a field * containing a message that may not make sense in the current context, or to * temporarily disable constraints during development. * * ```proto * message MyMessage { * // The field's rules will always be ignored, including any validation's * // on value's fields. * MyOtherMessage value = 1 [ * (buf.validate.field).ignore = IGNORE_ALWAYS]; * } * ``` * * @generated from protobuf enum value: IGNORE_ALWAYS = 3; */ ALWAYS = 3 } /** * WellKnownRegex contain some well-known patterns. * * @generated from protobuf enum buf.validate.KnownRegex */ export declare enum KnownRegex { /** * @generated from protobuf enum value: KNOWN_REGEX_UNSPECIFIED = 0; */ UNSPECIFIED = 0, /** * HTTP header name as defined by [RFC 7230](https://datatracker.ietf.org/doc/html/rfc7230#section-3.2). * * @generated from protobuf enum value: KNOWN_REGEX_HTTP_HEADER_NAME = 1; */ HTTP_HEADER_NAME = 1, /** * HTTP header value as defined by [RFC 7230](https://datatracker.ietf.org/doc/html/rfc7230#section-3.2.4). * * @generated from protobuf enum value: KNOWN_REGEX_HTTP_HEADER_VALUE = 2; */ HTTP_HEADER_VALUE = 2 } declare class Constraint$Type extends MessageType { constructor(); create(value?: PartialMessage): Constraint; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: Constraint): Constraint; internalBinaryWrite(message: Constraint, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.Constraint */ export declare const Constraint: Constraint$Type; declare class MessageConstraints$Type extends MessageType { constructor(); create(value?: PartialMessage): MessageConstraints; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: MessageConstraints): MessageConstraints; internalBinaryWrite(message: MessageConstraints, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.MessageConstraints */ export declare const MessageConstraints: MessageConstraints$Type; declare class OneofConstraints$Type extends MessageType { constructor(); create(value?: PartialMessage): OneofConstraints; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: OneofConstraints): OneofConstraints; internalBinaryWrite(message: OneofConstraints, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.OneofConstraints */ export declare const OneofConstraints: OneofConstraints$Type; declare class FieldConstraints$Type extends MessageType { constructor(); create(value?: PartialMessage): FieldConstraints; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: FieldConstraints): FieldConstraints; internalBinaryWrite(message: FieldConstraints, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.FieldConstraints */ export declare const FieldConstraints: FieldConstraints$Type; declare class PredefinedConstraints$Type extends MessageType { constructor(); create(value?: PartialMessage): PredefinedConstraints; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: PredefinedConstraints): PredefinedConstraints; internalBinaryWrite(message: PredefinedConstraints, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.PredefinedConstraints */ export declare const PredefinedConstraints: PredefinedConstraints$Type; declare class FloatRules$Type extends MessageType { constructor(); create(value?: PartialMessage): FloatRules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: FloatRules): FloatRules; internalBinaryWrite(message: FloatRules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.FloatRules */ export declare const FloatRules: FloatRules$Type; declare class DoubleRules$Type extends MessageType { constructor(); create(value?: PartialMessage): DoubleRules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: DoubleRules): DoubleRules; internalBinaryWrite(message: DoubleRules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.DoubleRules */ export declare const DoubleRules: DoubleRules$Type; declare class Int32Rules$Type extends MessageType { constructor(); create(value?: PartialMessage): Int32Rules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: Int32Rules): Int32Rules; internalBinaryWrite(message: Int32Rules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.Int32Rules */ export declare const Int32Rules: Int32Rules$Type; declare class Int64Rules$Type extends MessageType { constructor(); create(value?: PartialMessage): Int64Rules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: Int64Rules): Int64Rules; internalBinaryWrite(message: Int64Rules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.Int64Rules */ export declare const Int64Rules: Int64Rules$Type; declare class UInt32Rules$Type extends MessageType { constructor(); create(value?: PartialMessage): UInt32Rules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: UInt32Rules): UInt32Rules; internalBinaryWrite(message: UInt32Rules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.UInt32Rules */ export declare const UInt32Rules: UInt32Rules$Type; declare class UInt64Rules$Type extends MessageType { constructor(); create(value?: PartialMessage): UInt64Rules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: UInt64Rules): UInt64Rules; internalBinaryWrite(message: UInt64Rules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.UInt64Rules */ export declare const UInt64Rules: UInt64Rules$Type; declare class SInt32Rules$Type extends MessageType { constructor(); create(value?: PartialMessage): SInt32Rules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: SInt32Rules): SInt32Rules; internalBinaryWrite(message: SInt32Rules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.SInt32Rules */ export declare const SInt32Rules: SInt32Rules$Type; declare class SInt64Rules$Type extends MessageType { constructor(); create(value?: PartialMessage): SInt64Rules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: SInt64Rules): SInt64Rules; internalBinaryWrite(message: SInt64Rules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.SInt64Rules */ export declare const SInt64Rules: SInt64Rules$Type; declare class Fixed32Rules$Type extends MessageType { constructor(); create(value?: PartialMessage): Fixed32Rules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: Fixed32Rules): Fixed32Rules; internalBinaryWrite(message: Fixed32Rules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.Fixed32Rules */ export declare const Fixed32Rules: Fixed32Rules$Type; declare class Fixed64Rules$Type extends MessageType { constructor(); create(value?: PartialMessage): Fixed64Rules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: Fixed64Rules): Fixed64Rules; internalBinaryWrite(message: Fixed64Rules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.Fixed64Rules */ export declare const Fixed64Rules: Fixed64Rules$Type; declare class SFixed32Rules$Type extends MessageType { constructor(); create(value?: PartialMessage): SFixed32Rules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: SFixed32Rules): SFixed32Rules; internalBinaryWrite(message: SFixed32Rules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.SFixed32Rules */ export declare const SFixed32Rules: SFixed32Rules$Type; declare class SFixed64Rules$Type extends MessageType { constructor(); create(value?: PartialMessage): SFixed64Rules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: SFixed64Rules): SFixed64Rules; internalBinaryWrite(message: SFixed64Rules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.SFixed64Rules */ export declare const SFixed64Rules: SFixed64Rules$Type; declare class BoolRules$Type extends MessageType { constructor(); create(value?: PartialMessage): BoolRules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: BoolRules): BoolRules; internalBinaryWrite(message: BoolRules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.BoolRules */ export declare const BoolRules: BoolRules$Type; declare class StringRules$Type extends MessageType { constructor(); create(value?: PartialMessage): StringRules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: StringRules): StringRules; internalBinaryWrite(message: StringRules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.StringRules */ export declare const StringRules: StringRules$Type; declare class BytesRules$Type extends MessageType { constructor(); create(value?: PartialMessage): BytesRules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: BytesRules): BytesRules; internalBinaryWrite(message: BytesRules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.BytesRules */ export declare const BytesRules: BytesRules$Type; declare class EnumRules$Type extends MessageType { constructor(); create(value?: PartialMessage): EnumRules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: EnumRules): EnumRules; internalBinaryWrite(message: EnumRules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.EnumRules */ export declare const EnumRules: EnumRules$Type; declare class RepeatedRules$Type extends MessageType { constructor(); create(value?: PartialMessage): RepeatedRules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: RepeatedRules): RepeatedRules; internalBinaryWrite(message: RepeatedRules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.RepeatedRules */ export declare const RepeatedRules: RepeatedRules$Type; declare class MapRules$Type extends MessageType { constructor(); create(value?: PartialMessage): MapRules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: MapRules): MapRules; internalBinaryWrite(message: MapRules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.MapRules */ export declare const MapRules: MapRules$Type; declare class AnyRules$Type extends MessageType { constructor(); create(value?: PartialMessage): AnyRules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: AnyRules): AnyRules; internalBinaryWrite(message: AnyRules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.AnyRules */ export declare const AnyRules: AnyRules$Type; declare class DurationRules$Type extends MessageType { constructor(); create(value?: PartialMessage): DurationRules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: DurationRules): DurationRules; internalBinaryWrite(message: DurationRules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.DurationRules */ export declare const DurationRules: DurationRules$Type; declare class TimestampRules$Type extends MessageType { constructor(); create(value?: PartialMessage): TimestampRules; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: TimestampRules): TimestampRules; internalBinaryWrite(message: TimestampRules, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.TimestampRules */ export declare const TimestampRules: TimestampRules$Type; declare class Violations$Type extends MessageType { constructor(); create(value?: PartialMessage): Violations; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: Violations): Violations; internalBinaryWrite(message: Violations, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.Violations */ export declare const Violations: Violations$Type; declare class Violation$Type extends MessageType { constructor(); create(value?: PartialMessage): Violation; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: Violation): Violation; internalBinaryWrite(message: Violation, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.Violation */ export declare const Violation: Violation$Type; declare class FieldPath$Type extends MessageType { constructor(); create(value?: PartialMessage): FieldPath; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: FieldPath): FieldPath; internalBinaryWrite(message: FieldPath, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.FieldPath */ export declare const FieldPath: FieldPath$Type; declare class FieldPathElement$Type extends MessageType { constructor(); create(value?: PartialMessage): FieldPathElement; internalBinaryRead(reader: IBinaryReader, length: number, options: BinaryReadOptions, target?: FieldPathElement): FieldPathElement; internalBinaryWrite(message: FieldPathElement, writer: IBinaryWriter, options: BinaryWriteOptions): IBinaryWriter; } /** * @generated MessageType for protobuf message buf.validate.FieldPathElement */ export declare const FieldPathElement: FieldPathElement$Type; export {};