Files
pulumi-dokploy/sdk/go/dokploy/security.go
T
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Bridge what Dokploy v0.30 added, and let the docs through
Six new resources from terraform-provider-dokploy v0.2.0 -- Network,
DnsProvider, VaultProvider, Schedule, VolumeBackup and Libsql -- plus the new
properties on Domain (`enabled`), Compose (`serviceNetworks`, `createEnvFile`,
`icon`) and Application. Verified with `pulumi up` against a live v0.30.2
instance: create, preview-clean, and destroy.

The upstream provider also now refuses a volume Mount with no `volumeName`,
which Dokploy would otherwise turn into an anonymous Docker volume recreated
on every deploy. That surfaces here at preview time, before anything exists.

Two things made that fix nearly invisible to Pulumi users, so this commit
fixes the second one: the bridge resolves the upstream `docs/` through the Go
module cache, where a locally `replace`d dependency never lands, so tfgen was
emitting every resource with no description at all. UpstreamRepoPath now
points at the checkout and all 445 inputs carry documentation -- with names
rendered per language, so Python readers see `volume_name` where TypeScript
readers see `volumeName`.
2026-08-26 00:46:32 +03:00

276 lines
8.6 KiB
Go
Generated

// Code generated by pulumi-language-go DO NOT EDIT.
// *** WARNING: Do not edit by hand unless you're certain you know what you are doing! ***
package dokploy
import (
"context"
"reflect"
"errors"
"github.com/maxvojtkov/pulumi-dokploy/sdk/go/dokploy/internal"
"github.com/pulumi/pulumi/sdk/v3/go/pulumi"
)
// HTTP basic authentication credentials protecting an application's domains.
//
// > Dokploy stores the password hashed and does not return it. The value in Terraform state is the one you configured.
type Security struct {
pulumi.CustomResourceState
// Application these credentials protect.
ApplicationId pulumi.StringOutput `pulumi:"applicationId"`
// RFC 3339 timestamp of when the credentials were created.
CreatedAt pulumi.StringOutput `pulumi:"createdAt"`
// Basic auth password.
Password pulumi.StringOutput `pulumi:"password"`
// Basic auth username.
Username pulumi.StringOutput `pulumi:"username"`
}
// NewSecurity registers a new resource with the given unique name, arguments, and options.
func NewSecurity(ctx *pulumi.Context,
name string, args *SecurityArgs, opts ...pulumi.ResourceOption) (*Security, error) {
if args == nil {
return nil, errors.New("missing one or more required arguments")
}
if args.ApplicationId == nil {
return nil, errors.New("invalid value for required argument 'ApplicationId'")
}
if args.Password == nil {
return nil, errors.New("invalid value for required argument 'Password'")
}
if args.Username == nil {
return nil, errors.New("invalid value for required argument 'Username'")
}
if args.Password != nil {
args.Password = pulumi.ToSecret(args.Password).(pulumi.StringInput)
}
secrets := pulumi.AdditionalSecretOutputs([]string{
"password",
})
opts = append(opts, secrets)
opts = internal.PkgResourceDefaultOpts(opts)
var resource Security
err := ctx.RegisterResource("dokploy:index/security:Security", name, args, &resource, opts...)
if err != nil {
return nil, err
}
return &resource, nil
}
// GetSecurity gets an existing Security resource's state with the given name, ID, and optional
// state properties that are used to uniquely qualify the lookup (nil if not required).
func GetSecurity(ctx *pulumi.Context,
name string, id pulumi.IDInput, state *SecurityState, opts ...pulumi.ResourceOption) (*Security, error) {
var resource Security
err := ctx.ReadResource("dokploy:index/security:Security", name, id, state, &resource, opts...)
if err != nil {
return nil, err
}
return &resource, nil
}
// Input properties used for looking up and filtering Security resources.
type securityState struct {
// Application these credentials protect.
ApplicationId *string `pulumi:"applicationId"`
// RFC 3339 timestamp of when the credentials were created.
CreatedAt *string `pulumi:"createdAt"`
// Basic auth password.
Password *string `pulumi:"password"`
// Basic auth username.
Username *string `pulumi:"username"`
}
type SecurityState struct {
// Application these credentials protect.
ApplicationId pulumi.StringPtrInput
// RFC 3339 timestamp of when the credentials were created.
CreatedAt pulumi.StringPtrInput
// Basic auth password.
Password pulumi.StringPtrInput
// Basic auth username.
Username pulumi.StringPtrInput
}
func (SecurityState) ElementType() reflect.Type {
return reflect.TypeOf((*securityState)(nil)).Elem()
}
type securityArgs struct {
// Application these credentials protect.
ApplicationId string `pulumi:"applicationId"`
// Basic auth password.
Password string `pulumi:"password"`
// Basic auth username.
Username string `pulumi:"username"`
}
// The set of arguments for constructing a Security resource.
type SecurityArgs struct {
// Application these credentials protect.
ApplicationId pulumi.StringInput
// Basic auth password.
Password pulumi.StringInput
// Basic auth username.
Username pulumi.StringInput
}
func (SecurityArgs) ElementType() reflect.Type {
return reflect.TypeOf((*securityArgs)(nil)).Elem()
}
type SecurityInput interface {
pulumi.Input
ToSecurityOutput() SecurityOutput
ToSecurityOutputWithContext(ctx context.Context) SecurityOutput
}
func (*Security) ElementType() reflect.Type {
return reflect.TypeOf((**Security)(nil)).Elem()
}
func (i *Security) ToSecurityOutput() SecurityOutput {
return i.ToSecurityOutputWithContext(context.Background())
}
func (i *Security) ToSecurityOutputWithContext(ctx context.Context) SecurityOutput {
return pulumi.ToOutputWithContext(ctx, i).(SecurityOutput)
}
// SecurityArrayInput is an input type that accepts SecurityArray and SecurityArrayOutput values.
// You can construct a concrete instance of `SecurityArrayInput` via:
//
// SecurityArray{ SecurityArgs{...} }
type SecurityArrayInput interface {
pulumi.Input
ToSecurityArrayOutput() SecurityArrayOutput
ToSecurityArrayOutputWithContext(context.Context) SecurityArrayOutput
}
type SecurityArray []SecurityInput
func (SecurityArray) ElementType() reflect.Type {
return reflect.TypeOf((*[]*Security)(nil)).Elem()
}
func (i SecurityArray) ToSecurityArrayOutput() SecurityArrayOutput {
return i.ToSecurityArrayOutputWithContext(context.Background())
}
func (i SecurityArray) ToSecurityArrayOutputWithContext(ctx context.Context) SecurityArrayOutput {
return pulumi.ToOutputWithContext(ctx, i).(SecurityArrayOutput)
}
// SecurityMapInput is an input type that accepts SecurityMap and SecurityMapOutput values.
// You can construct a concrete instance of `SecurityMapInput` via:
//
// SecurityMap{ "key": SecurityArgs{...} }
type SecurityMapInput interface {
pulumi.Input
ToSecurityMapOutput() SecurityMapOutput
ToSecurityMapOutputWithContext(context.Context) SecurityMapOutput
}
type SecurityMap map[string]SecurityInput
func (SecurityMap) ElementType() reflect.Type {
return reflect.TypeOf((*map[string]*Security)(nil)).Elem()
}
func (i SecurityMap) ToSecurityMapOutput() SecurityMapOutput {
return i.ToSecurityMapOutputWithContext(context.Background())
}
func (i SecurityMap) ToSecurityMapOutputWithContext(ctx context.Context) SecurityMapOutput {
return pulumi.ToOutputWithContext(ctx, i).(SecurityMapOutput)
}
type SecurityOutput struct{ *pulumi.OutputState }
func (SecurityOutput) ElementType() reflect.Type {
return reflect.TypeOf((**Security)(nil)).Elem()
}
func (o SecurityOutput) ToSecurityOutput() SecurityOutput {
return o
}
func (o SecurityOutput) ToSecurityOutputWithContext(ctx context.Context) SecurityOutput {
return o
}
// Application these credentials protect.
func (o SecurityOutput) ApplicationId() pulumi.StringOutput {
return o.ApplyT(func(v *Security) pulumi.StringOutput { return v.ApplicationId }).(pulumi.StringOutput)
}
// RFC 3339 timestamp of when the credentials were created.
func (o SecurityOutput) CreatedAt() pulumi.StringOutput {
return o.ApplyT(func(v *Security) pulumi.StringOutput { return v.CreatedAt }).(pulumi.StringOutput)
}
// Basic auth password.
func (o SecurityOutput) Password() pulumi.StringOutput {
return o.ApplyT(func(v *Security) pulumi.StringOutput { return v.Password }).(pulumi.StringOutput)
}
// Basic auth username.
func (o SecurityOutput) Username() pulumi.StringOutput {
return o.ApplyT(func(v *Security) pulumi.StringOutput { return v.Username }).(pulumi.StringOutput)
}
type SecurityArrayOutput struct{ *pulumi.OutputState }
func (SecurityArrayOutput) ElementType() reflect.Type {
return reflect.TypeOf((*[]*Security)(nil)).Elem()
}
func (o SecurityArrayOutput) ToSecurityArrayOutput() SecurityArrayOutput {
return o
}
func (o SecurityArrayOutput) ToSecurityArrayOutputWithContext(ctx context.Context) SecurityArrayOutput {
return o
}
func (o SecurityArrayOutput) Index(i pulumi.IntInput) SecurityOutput {
return pulumi.All(o, i).ApplyT(func(vs []interface{}) *Security {
return vs[0].([]*Security)[vs[1].(int)]
}).(SecurityOutput)
}
type SecurityMapOutput struct{ *pulumi.OutputState }
func (SecurityMapOutput) ElementType() reflect.Type {
return reflect.TypeOf((*map[string]*Security)(nil)).Elem()
}
func (o SecurityMapOutput) ToSecurityMapOutput() SecurityMapOutput {
return o
}
func (o SecurityMapOutput) ToSecurityMapOutputWithContext(ctx context.Context) SecurityMapOutput {
return o
}
func (o SecurityMapOutput) MapIndex(k pulumi.StringInput) SecurityOutput {
return pulumi.All(o, k).ApplyT(func(vs []interface{}) *Security {
return vs[0].(map[string]*Security)[vs[1].(string)]
}).(SecurityOutput)
}
func init() {
pulumi.RegisterInputType(reflect.TypeOf((*SecurityInput)(nil)).Elem(), &Security{})
pulumi.RegisterInputType(reflect.TypeOf((*SecurityArrayInput)(nil)).Elem(), SecurityArray{})
pulumi.RegisterInputType(reflect.TypeOf((*SecurityMapInput)(nil)).Elem(), SecurityMap{})
pulumi.RegisterOutputType(SecurityOutput{})
pulumi.RegisterOutputType(SecurityArrayOutput{})
pulumi.RegisterOutputType(SecurityMapOutput{})
}