package console_v1 // This file will be automatically regenerated based on the schema, any resolver // implementations // will be copied through when generating and any unknown code will be moved to the end. // Code generated by github.com/99designs/gqlgen version v0.17.94 import ( "context" "errors" "fmt" "github.com/vikstrous/dataloadgen" "go.gearno.de/kit/log" "go.probo.inc/probo/pkg/coredata" "go.probo.inc/probo/pkg/page" "go.probo.inc/probo/pkg/probo" "go.probo.inc/probo/pkg/server/api/console/v1/dataloader" "go.probo.inc/probo/pkg/server/api/console/v1/schema" "go.probo.inc/probo/pkg/server/api/console/v1/types" "go.probo.inc/probo/pkg/server/gqlutils" "go.probo.inc/probo/pkg/validator" ) // StatementOfApplicability is the resolver for the statementOfApplicability field. func (r *applicabilityStatementResolver) StatementOfApplicability(ctx context.Context, obj *types.ApplicabilityStatement) (*types.StatementOfApplicability, error) { scope, err := r.authorize(ctx, obj.StatementOfApplicability.ID, probo.ActionStatementOfApplicabilityGet) if err != nil { return nil, err } soa, err := r.probo.StatementsOfApplicability.Get(ctx, scope, obj.StatementOfApplicability.ID) if err != nil { r.logger.ErrorCtx(ctx, "cannot get statement of applicability", log.Error(err)) return nil, gqlutils.Internal(ctx) } return types.NewStatementOfApplicability(soa), nil } // Control is the resolver for the control field. func (r *applicabilityStatementResolver) Control(ctx context.Context, obj *types.ApplicabilityStatement) (*types.Control, error) { if _, err := r.authorize(ctx, obj.Control.ID, probo.ActionControlGet); err != nil { return nil, err } loaders := dataloader.FromContext(ctx) control, err := loaders.Control.Load(ctx, obj.Control.ID) if err != nil { if errors.Is(err, dataloadgen.ErrNotFound) { return nil, gqlutils.NotFound(ctx, err) } r.logger.ErrorCtx(ctx, "cannot get control", log.Error(err)) return nil, gqlutils.Internal(ctx) } return types.NewControl(control), nil } // Permission is the resolver for the permission field. func (r *applicabilityStatementResolver) Permission(ctx context.Context, obj *types.ApplicabilityStatement, action string) (bool, error) { return r.Resolver.Permission(ctx, obj, action) } // TotalCount is the resolver for the totalCount field. func (r *applicabilityStatementConnectionResolver) TotalCount(ctx context.Context, obj *types.ApplicabilityStatementConnection) (int, error) { scope, err := r.authorize(ctx, obj.ParentID, probo.ActionApplicabilityStatementList) if err != nil { return 0, err } switch obj.Resolver.(type) { case *statementOfApplicabilityResolver: count, err := r.probo.StatementsOfApplicability.CountApplicabilityStatements(ctx, scope, obj.ParentID) if err != nil { r.logger.ErrorCtx(ctx, "cannot count applicability statements", log.Error(err)) return 0, gqlutils.Internal(ctx) } return count, nil } r.logger.ErrorCtx(ctx, "unsupported resolver for applicability statement connection", log.String("resolver", fmt.Sprintf("%T", obj.Resolver))) return 0, gqlutils.Internal(ctx) } // Organization is the resolver for the organization field. func (r *controlResolver) Organization(ctx context.Context, obj *types.Control) (*types.Organization, error) { if _, err := r.authorize(ctx, obj.ID, probo.ActionOrganizationGet); err != nil { return nil, err } loaders := dataloader.FromContext(ctx) organization, err := loaders.Organization.Load(ctx, obj.Organization.ID) if err != nil { if errors.Is(err, coredata.ErrResourceNotFound) || errors.Is(err, dataloadgen.ErrNotFound) { return nil, gqlutils.NotFound(ctx, err) } r.logger.ErrorCtx(ctx, "cannot get organization", log.Error(err)) return nil, gqlutils.Internal(ctx) } return types.NewOrganization(organization), nil } // Regulatory is the resolver for the regulatory field. func (r *controlResolver) Regulatory(ctx context.Context, obj *types.Control) (bool, error) { scope, err := r.authorize(ctx, obj.ID, probo.ActionControlGet) if err != nil { return false, err } hasRegulatory, err := r.probo.Controls.HasRegulatoryObligation(ctx, scope, obj.ID) if err != nil { r.logger.ErrorCtx(ctx, "cannot check regulatory obligation", log.Error(err)) return false, gqlutils.Internal(ctx) } return hasRegulatory, nil } // Contractual is the resolver for the contractual field. func (r *controlResolver) Contractual(ctx context.Context, obj *types.Control) (bool, error) { scope, err := r.authorize(ctx, obj.ID, probo.ActionControlGet) if err != nil { return false, err } hasContractual, err := r.probo.Controls.HasContractualObligation(ctx, scope, obj.ID) if err != nil { r.logger.ErrorCtx(ctx, "cannot check contractual obligation", log.Error(err)) return false, gqlutils.Internal(ctx) } return hasContractual, nil } // RiskAssessment is the resolver for the riskAssessment field. func (r *controlResolver) RiskAssessment(ctx context.Context, obj *types.Control) (bool, error) { scope, err := r.authorize(ctx, obj.ID, probo.ActionControlGet) if err != nil { return false, err } hasRisk, err := r.probo.Controls.HasRiskAssessment(ctx, scope, obj.ID) if err != nil { r.logger.ErrorCtx(ctx, "cannot check risk assessment", log.Error(err)) return false, gqlutils.Internal(ctx) } return hasRisk, nil } // Framework is the resolver for the framework field. func (r *controlResolver) Framework(ctx context.Context, obj *types.Control) (*types.Framework, error) { if _, err := r.authorize(ctx, obj.Framework.ID, probo.ActionFrameworkGet); err != nil { return nil, err } loaders := dataloader.FromContext(ctx) framework, err := loaders.Framework.Load(ctx, obj.Framework.ID) if err != nil { if errors.Is(err, coredata.ErrResourceNotFound) || errors.Is(err, dataloadgen.ErrNotFound) { return nil, gqlutils.NotFound(ctx, err) } r.logger.ErrorCtx(ctx, "cannot get framework", log.Error(err)) return nil, gqlutils.Internal(ctx) } return types.NewFramework(framework), nil } // Measures is the resolver for the measures field. func (r *controlResolver) Measures(ctx context.Context, obj *types.Control, first *int, after *page.CursorKey, last *int, before *page.CursorKey, orderBy *types.MeasureOrderBy, filter *types.MeasureFilter) (*types.MeasureConnection, error) { scope, err := r.authorize(ctx, obj.ID, probo.ActionMeasureList) if err != nil { return nil, err } pageOrderBy := page.OrderBy[coredata.MeasureOrderField]{ Field: coredata.MeasureOrderFieldCreatedAt, Direction: page.OrderDirectionDesc, } if orderBy != nil { pageOrderBy = page.OrderBy[coredata.MeasureOrderField]{ Field: orderBy.Field, Direction: orderBy.Direction, } } cursor := types.NewCursor(first, after, last, before, pageOrderBy) var measureFilter = coredata.NewMeasureFilter(nil, nil, nil) if filter != nil { measureFilter = coredata.NewMeasureFilter(filter.Query, filter.State, filter.Category) } page, err := r.probo.Measures.ListForControlID(ctx, scope, obj.ID, cursor, measureFilter) if err != nil { r.logger.ErrorCtx(ctx, "cannot list measures", log.Error(err)) return nil, gqlutils.Internal(ctx) } return types.NewMeasureConnection(page, r, obj.ID, measureFilter), nil } // Documents is the resolver for the documents field. func (r *controlResolver) Documents(ctx context.Context, obj *types.Control, first *int, after *page.CursorKey, last *int, before *page.CursorKey, orderBy *types.DocumentOrderBy, filter *types.DocumentFilter) (*types.DocumentConnection, error) { scope, err := r.authorize(ctx, obj.ID, probo.ActionDocumentList) if err != nil { return nil, err } pageOrderBy := page.OrderBy[coredata.DocumentOrderField]{ Field: coredata.DocumentOrderFieldCreatedAt, Direction: page.OrderDirectionDesc, } if orderBy != nil { pageOrderBy = page.OrderBy[coredata.DocumentOrderField]{ Field: orderBy.Field, Direction: orderBy.Direction, } } cursor := types.NewCursor(first, after, last, before, pageOrderBy) var documentFilter = coredata.NewDocumentFilter(nil) if filter != nil { documentFilter = coredata.NewDocumentFilter(filter.Query). WithWriteModes(filter.WriteModes). WithDocumentTypes(filter.DocumentTypes). WithClassifications(filter.Classifications) } page, err := r.probo.Documents.ListForControlID(ctx, scope, obj.ID, cursor, documentFilter) if err != nil { r.logger.ErrorCtx(ctx, "cannot list documents", log.Error(err)) return nil, gqlutils.Internal(ctx) } return types.NewDocumentConnection(page, r, obj.ID, documentFilter), nil } // Audits is the resolver for the audits field. func (r *controlResolver) Audits(ctx context.Context, obj *types.Control, first *int, after *page.CursorKey, last *int, before *page.CursorKey, orderBy *types.AuditOrderBy) (*types.AuditConnection, error) { scope, err := r.authorize(ctx, obj.ID, probo.ActionAuditList) if err != nil { return nil, err } pageOrderBy := page.OrderBy[coredata.AuditOrderField]{ Field: coredata.AuditOrderFieldCreatedAt, Direction: page.OrderDirectionDesc, } if orderBy != nil { pageOrderBy = page.OrderBy[coredata.AuditOrderField]{ Field: orderBy.Field, Direction: orderBy.Direction, } } cursor := types.NewCursor(first, after, last, before, pageOrderBy) page, err := r.probo.Audits.ListForControlID(ctx, scope, obj.ID, cursor) if err != nil { r.logger.ErrorCtx(ctx, "cannot list control audits", log.Error(err)) return nil, gqlutils.Internal(ctx) } return types.NewAuditConnection(page, r, obj.ID), nil } // Obligations is the resolver for the obligations field. func (r *controlResolver) Obligations(ctx context.Context, obj *types.Control, first *int, after *page.CursorKey, last *int, before *page.CursorKey, orderBy *types.ObligationOrderBy) (*types.ObligationConnection, error) { scope, err := r.authorize(ctx, obj.ID, probo.ActionObligationList) if err != nil { return nil, err } pageOrderBy := page.OrderBy[coredata.ObligationOrderField]{ Field: coredata.ObligationOrderFieldCreatedAt, Direction: page.OrderDirectionDesc, } if orderBy != nil { pageOrderBy = page.OrderBy[coredata.ObligationOrderField]{ Field: orderBy.Field, Direction: orderBy.Direction, } } cursor := types.NewCursor(first, after, last, before, pageOrderBy) page, err := r.probo.Obligations.ListForControlID(ctx, scope, obj.ID, cursor) if err != nil { r.logger.ErrorCtx(ctx, "cannot list control obligations", log.Error(err)) return nil, gqlutils.Internal(ctx) } return types.NewObligationConnection(page, r, obj.ID), nil } // Permission is the resolver for the permission field. func (r *controlResolver) Permission(ctx context.Context, obj *types.Control, action string) (bool, error) { return r.Resolver.Permission(ctx, obj, action) } // TotalCount is the resolver for the totalCount field. func (r *controlConnectionResolver) TotalCount(ctx context.Context, obj *types.ControlConnection) (int, error) { scope, err := r.authorize(ctx, obj.ParentID, probo.ActionControlList) if err != nil { return 0, err } switch obj.Resolver.(type) { case *organizationResolver: count, err := r.probo.Controls.CountForOrganizationID(ctx, scope, obj.ParentID, obj.Filters) if err != nil { r.logger.ErrorCtx(ctx, "cannot count controls", log.Error(err)) return 0, gqlutils.Internal(ctx) } return count, nil case *frameworkResolver: count, err := r.probo.Controls.CountForFrameworkID(ctx, scope, obj.ParentID, obj.Filters) if err != nil { r.logger.ErrorCtx(ctx, "cannot count controls", log.Error(err)) return 0, gqlutils.Internal(ctx) } return count, nil case *documentResolver: count, err := r.probo.Controls.CountForDocumentID(ctx, scope, obj.ParentID, obj.Filters) if err != nil { r.logger.ErrorCtx(ctx, "cannot count controls", log.Error(err)) return 0, gqlutils.Internal(ctx) } return count, nil case *measureResolver: count, err := r.probo.Controls.CountForMeasureID(ctx, scope, obj.ParentID, obj.Filters) if err != nil { r.logger.ErrorCtx(ctx, "cannot count controls", log.Error(err)) return 0, gqlutils.Internal(ctx) } return count, nil case *riskResolver: count, err := r.probo.Controls.CountForRiskID(ctx, scope, obj.ParentID, obj.Filters) if err != nil { r.logger.ErrorCtx(ctx, "cannot count controls", log.Error(err)) return 0, gqlutils.Internal(ctx) } return count, nil case *statementOfApplicabilityResolver: count, err := r.probo.Controls.CountForStatementOfApplicabilityID(ctx, scope, obj.ParentID, obj.Filters) if err != nil { r.logger.ErrorCtx(ctx, "cannot count controls", log.Error(err)) return 0, gqlutils.Internal(ctx) } return count, nil } r.logger.ErrorCtx(ctx, "unsupported resolver") return 0, gqlutils.Internal(ctx) } // CreateControl is the resolver for the createControl field. func (r *mutationResolver) CreateControl(ctx context.Context, input types.CreateControlInput) (*types.CreateControlPayload, error) { scope, err := r.authorize(ctx, input.FrameworkID, probo.ActionControlCreate) if err != nil { return nil, err } control, err := r.probo.Controls.Create( ctx, scope, probo.CreateControlRequest{ FrameworkID: input.FrameworkID, Name: input.Name, Description: input.Description, SectionTitle: input.SectionTitle, BestPractice: input.BestPractice, MaturityLevel: input.MaturityLevel, NotImplementedJustification: input.NotImplementedJustification, }, ) if err != nil { if errors.Is(err, coredata.ErrResourceAlreadyExists) { return nil, gqlutils.Conflict(ctx, err) } if validationErrors, ok := errors.AsType[validator.ValidationErrors](err); ok { return nil, gqlutils.InvalidValidationErrors(ctx, validationErrors) } r.logger.ErrorCtx(ctx, "cannot create control", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.CreateControlPayload{ ControlEdge: types.NewControlEdge(control, coredata.ControlOrderFieldCreatedAt), }, nil } // UpdateControl is the resolver for the updateControl field. func (r *mutationResolver) UpdateControl(ctx context.Context, input types.UpdateControlInput) (*types.UpdateControlPayload, error) { scope, err := r.authorize(ctx, input.ID, probo.ActionControlUpdate) if err != nil { return nil, err } control, err := r.probo.Controls.Update( ctx, scope, probo.UpdateControlRequest{ ID: input.ID, Name: input.Name, Description: gqlutils.UnwrapOmittable(input.Description), SectionTitle: input.SectionTitle, BestPractice: input.BestPractice, MaturityLevel: input.MaturityLevel, NotImplementedJustification: gqlutils.UnwrapOmittable(input.NotImplementedJustification), }, ) if err != nil { if errors.Is(err, coredata.ErrResourceAlreadyExists) { return nil, gqlutils.Conflict(ctx, err) } if validationErrors, ok := errors.AsType[validator.ValidationErrors](err); ok { return nil, gqlutils.InvalidValidationErrors(ctx, validationErrors) } r.logger.ErrorCtx(ctx, "cannot update control", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.UpdateControlPayload{ Control: types.NewControl(control), }, nil } // DeleteControl is the resolver for the deleteControl field. func (r *mutationResolver) DeleteControl(ctx context.Context, input types.DeleteControlInput) (*types.DeleteControlPayload, error) { scope, err := r.authorize(ctx, input.ControlID, probo.ActionControlDelete) if err != nil { return nil, err } if err := r.probo.Controls.Delete(ctx, scope, input.ControlID); err != nil { r.logger.ErrorCtx(ctx, "cannot delete control", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.DeleteControlPayload{ DeletedControlID: input.ControlID, }, nil } // CreateControlMeasureMapping is the resolver for the createControlMeasureMapping field. func (r *mutationResolver) CreateControlMeasureMapping(ctx context.Context, input types.CreateControlMeasureMappingInput) (*types.CreateControlMeasureMappingPayload, error) { scope, err := r.authorize(ctx, input.ControlID, probo.ActionControlMeasureMappingCreate) if err != nil { return nil, err } control, measure, err := r.probo.Controls.CreateMeasureMapping(ctx, scope, input.ControlID, input.MeasureID) if err != nil { r.logger.ErrorCtx(ctx, "cannot create control measure mapping", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.CreateControlMeasureMappingPayload{ ControlEdge: types.NewControlEdge(control, coredata.ControlOrderFieldCreatedAt), MeasureEdge: types.NewMeasureEdge(measure, coredata.MeasureOrderFieldCreatedAt), }, nil } // CreateControlDocumentMapping is the resolver for the createControlDocumentMapping field. func (r *mutationResolver) CreateControlDocumentMapping(ctx context.Context, input types.CreateControlDocumentMappingInput) (*types.CreateControlDocumentMappingPayload, error) { scope, err := r.authorize(ctx, input.ControlID, probo.ActionControlDocumentMappingCreate) if err != nil { return nil, err } control, document, err := r.probo.Controls.CreateDocumentMapping(ctx, scope, input.ControlID, input.DocumentID) if err != nil { if errors.Is(err, coredata.ErrResourceAlreadyExists) { return nil, gqlutils.Conflict(ctx, err) } r.logger.ErrorCtx(ctx, "cannot create control document mapping", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.CreateControlDocumentMappingPayload{ ControlEdge: types.NewControlEdge(control, coredata.ControlOrderFieldCreatedAt), DocumentEdge: types.NewDocumentEdge(document, coredata.DocumentOrderFieldTitle), }, nil } // DeleteControlMeasureMapping is the resolver for the deleteControlMeasureMapping field. func (r *mutationResolver) DeleteControlMeasureMapping(ctx context.Context, input types.DeleteControlMeasureMappingInput) (*types.DeleteControlMeasureMappingPayload, error) { scope, err := r.authorize(ctx, input.ControlID, probo.ActionControlMeasureMappingDelete) if err != nil { return nil, err } control, measure, err := r.probo.Controls.DeleteMeasureMapping(ctx, scope, input.ControlID, input.MeasureID) if err != nil { r.logger.ErrorCtx(ctx, "cannot delete control measure mapping", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.DeleteControlMeasureMappingPayload{ DeletedControlID: control.ID, DeletedMeasureID: measure.ID, }, nil } // DeleteControlDocumentMapping is the resolver for the deleteControlDocumentMapping field. func (r *mutationResolver) DeleteControlDocumentMapping(ctx context.Context, input types.DeleteControlDocumentMappingInput) (*types.DeleteControlDocumentMappingPayload, error) { scope, err := r.authorize(ctx, input.ControlID, probo.ActionControlDocumentMappingDelete) if err != nil { return nil, err } control, document, err := r.probo.Controls.DeleteDocumentMapping(ctx, scope, input.ControlID, input.DocumentID) if err != nil { r.logger.ErrorCtx(ctx, "cannot delete control document mapping", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.DeleteControlDocumentMappingPayload{ DeletedControlID: control.ID, DeletedDocumentID: document.ID, }, nil } // CreateApplicabilityStatement is the resolver for the createApplicabilityStatement field. func (r *mutationResolver) CreateApplicabilityStatement(ctx context.Context, input types.CreateApplicabilityStatementInput) (*types.CreateApplicabilityStatementPayload, error) { scope, err := r.authorize(ctx, input.ControlID, probo.ActionApplicabilityStatementCreate) if err != nil { return nil, err } applicabilityStatement, err := r.probo.StatementsOfApplicability.CreateApplicabilityStatement(ctx, scope, input.StatementOfApplicabilityID, input.ControlID, input.Applicability, input.Justification) if err != nil { r.logger.ErrorCtx(ctx, "cannot create applicability statement", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.CreateApplicabilityStatementPayload{ ApplicabilityStatementEdge: types.NewApplicabilityStatementEdge(applicabilityStatement, coredata.ApplicabilityStatementOrderFieldCreatedAt), }, nil } // UpdateApplicabilityStatement is the resolver for the updateApplicabilityStatement field. func (r *mutationResolver) UpdateApplicabilityStatement(ctx context.Context, input types.UpdateApplicabilityStatementInput) (*types.UpdateApplicabilityStatementPayload, error) { scope, err := r.authorize(ctx, input.ApplicabilityStatementID, probo.ActionApplicabilityStatementUpdate) if err != nil { return nil, err } applicabilityStatement, err := r.probo.StatementsOfApplicability.UpdateApplicabilityStatement(ctx, scope, input.ApplicabilityStatementID, input.Applicability, input.Justification) if err != nil { r.logger.ErrorCtx(ctx, "cannot update applicability statement", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.UpdateApplicabilityStatementPayload{ ApplicabilityStatement: types.NewApplicabilityStatement(applicabilityStatement), }, nil } // DeleteApplicabilityStatement is the resolver for the deleteApplicabilityStatement field. func (r *mutationResolver) DeleteApplicabilityStatement(ctx context.Context, input types.DeleteApplicabilityStatementInput) (*types.DeleteApplicabilityStatementPayload, error) { scope, err := r.authorize(ctx, input.ApplicabilityStatementID, probo.ActionApplicabilityStatementDelete) if err != nil { return nil, err } if err := r.probo.StatementsOfApplicability.DeleteApplicabilityStatement(ctx, scope, input.ApplicabilityStatementID); err != nil { r.logger.ErrorCtx(ctx, "cannot delete applicability statement", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.DeleteApplicabilityStatementPayload{ DeletedApplicabilityStatementID: input.ApplicabilityStatementID, }, nil } // CreateControlAuditMapping is the resolver for the createControlAuditMapping field. func (r *mutationResolver) CreateControlAuditMapping(ctx context.Context, input types.CreateControlAuditMappingInput) (*types.CreateControlAuditMappingPayload, error) { scope, err := r.authorize(ctx, input.ControlID, probo.ActionControlAuditMappingCreate) if err != nil { return nil, err } control, audit, err := r.probo.Controls.CreateAuditMapping(ctx, scope, input.ControlID, input.AuditID) if err != nil { r.logger.ErrorCtx(ctx, "cannot create control audit mapping", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.CreateControlAuditMappingPayload{ ControlEdge: types.NewControlEdge(control, coredata.ControlOrderFieldCreatedAt), AuditEdge: types.NewAuditEdge(audit, coredata.AuditOrderFieldCreatedAt), }, nil } // DeleteControlAuditMapping is the resolver for the deleteControlAuditMapping field. func (r *mutationResolver) DeleteControlAuditMapping(ctx context.Context, input types.DeleteControlAuditMappingInput) (*types.DeleteControlAuditMappingPayload, error) { scope, err := r.authorize(ctx, input.ControlID, probo.ActionControlAuditMappingDelete) if err != nil { return nil, err } control, audit, err := r.probo.Controls.DeleteAuditMapping(ctx, scope, input.ControlID, input.AuditID) if err != nil { r.logger.ErrorCtx(ctx, "cannot delete control audit mapping", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.DeleteControlAuditMappingPayload{ DeletedControlID: &control.ID, DeletedAuditID: &audit.ID, }, nil } // CreateControlObligationMapping is the resolver for the createControlObligationMapping field. func (r *mutationResolver) CreateControlObligationMapping(ctx context.Context, input types.CreateControlObligationMappingInput) (*types.CreateControlObligationMappingPayload, error) { scope, err := r.authorize(ctx, input.ControlID, probo.ActionControlObligationMappingCreate) if err != nil { return nil, err } control, obligation, err := r.probo.Controls.CreateObligationMapping(ctx, scope, input.ControlID, input.ObligationID) if err != nil { r.logger.ErrorCtx(ctx, "cannot create control obligation mapping", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.CreateControlObligationMappingPayload{ ControlEdge: types.NewControlEdge(control, coredata.ControlOrderFieldCreatedAt), ObligationEdge: types.NewObligationEdge(obligation, coredata.ObligationOrderFieldCreatedAt), }, nil } // DeleteControlObligationMapping is the resolver for the deleteControlObligationMapping field. func (r *mutationResolver) DeleteControlObligationMapping(ctx context.Context, input types.DeleteControlObligationMappingInput) (*types.DeleteControlObligationMappingPayload, error) { scope, err := r.authorize(ctx, input.ControlID, probo.ActionControlObligationMappingDelete) if err != nil { return nil, err } control, obligation, err := r.probo.Controls.DeleteObligationMapping(ctx, scope, input.ControlID, input.ObligationID) if err != nil { r.logger.ErrorCtx(ctx, "cannot delete control obligation mapping", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.DeleteControlObligationMappingPayload{ DeletedControlID: control.ID, DeletedObligationID: obligation.ID, }, nil } // CreateStatementOfApplicability is the resolver for the createStatementOfApplicability field. func (r *mutationResolver) CreateStatementOfApplicability(ctx context.Context, input types.CreateStatementOfApplicabilityInput) (*types.CreateStatementOfApplicabilityPayload, error) { scope, err := r.authorize(ctx, input.OrganizationID, probo.ActionStatementOfApplicabilityCreate) if err != nil { return nil, err } statementOfApplicability, err := r.probo.StatementsOfApplicability.Create( ctx, scope, probo.CreateStatementOfApplicabilityRequest{ OrganizationID: input.OrganizationID, Name: input.Name, }, ) if err != nil { if errors.Is(err, coredata.ErrResourceAlreadyExists) { return nil, gqlutils.Conflict(ctx, err) } if validationErrors, ok := errors.AsType[validator.ValidationErrors](err); ok { return nil, gqlutils.InvalidValidationErrors(ctx, validationErrors) } r.logger.ErrorCtx(ctx, "cannot create statement_of_applicability", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.CreateStatementOfApplicabilityPayload{ StatementOfApplicabilityEdge: types.NewStatementOfApplicabilityEdge(statementOfApplicability, coredata.StatementOfApplicabilityOrderFieldCreatedAt), }, nil } // UpdateStatementOfApplicability is the resolver for the updateStatementOfApplicability field. func (r *mutationResolver) UpdateStatementOfApplicability(ctx context.Context, input types.UpdateStatementOfApplicabilityInput) (*types.UpdateStatementOfApplicabilityPayload, error) { scope, err := r.authorize(ctx, input.ID, probo.ActionStatementOfApplicabilityUpdate) if err != nil { return nil, err } var name *string if input.Name != nil { name = input.Name } statementOfApplicability, err := r.probo.StatementsOfApplicability.Update( ctx, scope, probo.UpdateStatementOfApplicabilityRequest{ StatementOfApplicabilityID: input.ID, Name: name, }, ) if err != nil { if errors.Is(err, coredata.ErrResourceAlreadyExists) { return nil, gqlutils.Conflict(ctx, err) } if validationErrors, ok := errors.AsType[validator.ValidationErrors](err); ok { return nil, gqlutils.InvalidValidationErrors(ctx, validationErrors) } r.logger.ErrorCtx(ctx, "cannot update statement_of_applicability", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.UpdateStatementOfApplicabilityPayload{ StatementOfApplicability: types.NewStatementOfApplicability(statementOfApplicability), }, nil } // DeleteStatementOfApplicability is the resolver for the deleteStatementOfApplicability field. func (r *mutationResolver) DeleteStatementOfApplicability(ctx context.Context, input types.DeleteStatementOfApplicabilityInput) (*types.DeleteStatementOfApplicabilityPayload, error) { scope, err := r.authorize(ctx, input.StatementOfApplicabilityID, probo.ActionStatementOfApplicabilityDelete) if err != nil { return nil, err } if err := r.probo.StatementsOfApplicability.Delete(ctx, scope, input.StatementOfApplicabilityID); err != nil { r.logger.ErrorCtx(ctx, "cannot delete statement_of_applicability", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.DeleteStatementOfApplicabilityPayload{ DeletedStatementOfApplicabilityID: input.StatementOfApplicabilityID, }, nil } // PublishStatementOfApplicability is the resolver for the publishStatementOfApplicability field. func (r *mutationResolver) PublishStatementOfApplicability(ctx context.Context, input types.PublishStatementOfApplicabilityInput) (*types.PublishStatementOfApplicabilityPayload, error) { scope, err := r.authorize(ctx, input.StatementOfApplicabilityID, probo.ActionStatementOfApplicabilityPublish) if err != nil { return nil, err } document, documentVersion, err := r.probo.GeneratedDocuments.PublishStatementOfApplicability(ctx, scope, input.StatementOfApplicabilityID, input.ApproverIds, input.Minor) if err != nil { if errors.Is(err, coredata.ErrResourceAlreadyExists) { return nil, gqlutils.Conflict(ctx, err) } r.logger.ErrorCtx(ctx, "cannot publish statement of applicability", log.Error(err)) return nil, gqlutils.Internal(ctx) } return &types.PublishStatementOfApplicabilityPayload{ DocumentEdge: types.NewDocumentEdge(document, coredata.DocumentOrderFieldCreatedAt), DocumentVersionEdge: types.NewDocumentVersionEdge(documentVersion, coredata.DocumentVersionOrderFieldCreatedAt), }, nil } // Document is the resolver for the document field. func (r *statementOfApplicabilityResolver) Document(ctx context.Context, obj *types.StatementOfApplicability) (*types.Document, error) { if obj.Document == nil { return nil, nil } scope, err := r.authorize(ctx, obj.Document.ID, probo.ActionDocumentGet) if err != nil { return nil, err } document, err := r.probo.Documents.Get(ctx, scope, obj.Document.ID) if err != nil { if errors.Is(err, coredata.ErrResourceNotFound) { return nil, nil } r.logger.ErrorCtx(ctx, "cannot load document", log.Error(err)) return nil, gqlutils.Internal(ctx) } return types.NewDocument(document), nil } // Organization is the resolver for the organization field. func (r *statementOfApplicabilityResolver) Organization(ctx context.Context, obj *types.StatementOfApplicability) (*types.Organization, error) { if _, err := r.authorize(ctx, obj.ID, probo.ActionOrganizationGet); err != nil { return nil, err } loaders := dataloader.FromContext(ctx) organization, err := loaders.Organization.Load(ctx, obj.Organization.ID) if err != nil { if errors.Is(err, coredata.ErrResourceNotFound) || errors.Is(err, dataloadgen.ErrNotFound) { return nil, gqlutils.NotFound(ctx, err) } r.logger.ErrorCtx(ctx, "cannot load organization", log.Error(err)) return nil, gqlutils.Internal(ctx) } return types.NewOrganization(organization), nil } // ApplicabilityStatements is the resolver for the applicabilityStatements field. func (r *statementOfApplicabilityResolver) ApplicabilityStatements(ctx context.Context, obj *types.StatementOfApplicability, first *int, after *page.CursorKey, last *int, before *page.CursorKey, orderBy *types.ApplicabilityStatementOrderBy) (*types.ApplicabilityStatementConnection, error) { scope, err := r.authorize(ctx, obj.ID, probo.ActionApplicabilityStatementList) if err != nil { return nil, err } pageOrderBy := page.OrderBy[coredata.ApplicabilityStatementOrderField]{ Field: coredata.ApplicabilityStatementOrderFieldCreatedAt, Direction: page.OrderDirectionAsc, } if orderBy != nil { pageOrderBy = page.OrderBy[coredata.ApplicabilityStatementOrderField]{ Field: coredata.ApplicabilityStatementOrderField(orderBy.Field), Direction: orderBy.Direction, } } cursor := types.NewCursor(first, after, last, before, pageOrderBy) p, err := r.probo.StatementsOfApplicability.ListApplicabilityStatements(ctx, scope, obj.ID, cursor) if err != nil { r.logger.ErrorCtx(ctx, "cannot list applicability statements", log.Error(err)) return nil, gqlutils.Internal(ctx) } return types.NewApplicabilityStatementConnection(p, r, obj.ID), nil } // Permission is the resolver for the permission field. func (r *statementOfApplicabilityResolver) Permission(ctx context.Context, obj *types.StatementOfApplicability, action string) (bool, error) { return r.Resolver.Permission(ctx, obj, action) } // TotalCount is the resolver for the totalCount field. func (r *statementOfApplicabilityConnectionResolver) TotalCount(ctx context.Context, obj *types.StatementOfApplicabilityConnection) (int, error) { scope, err := r.authorize(ctx, obj.ParentID, probo.ActionStatementOfApplicabilityList) if err != nil { return 0, err } switch obj.Resolver.(type) { case *organizationResolver: count, err := r.probo.StatementsOfApplicability.CountForOrganizationID(ctx, scope, obj.ParentID) if err != nil { r.logger.ErrorCtx(ctx, "cannot count statements_of_applicability", log.Error(err)) return 0, gqlutils.Internal(ctx) } return count, nil } r.logger.ErrorCtx(ctx, "unsupported resolver") return 0, gqlutils.Internal(ctx) } // ApplicabilityStatement returns schema.ApplicabilityStatementResolver implementation. func (r *Resolver) ApplicabilityStatement() schema.ApplicabilityStatementResolver { return &applicabilityStatementResolver{r} } // ApplicabilityStatementConnection returns schema.ApplicabilityStatementConnectionResolver implementation. func (r *Resolver) ApplicabilityStatementConnection() schema.ApplicabilityStatementConnectionResolver { return &applicabilityStatementConnectionResolver{r} } // Control returns schema.ControlResolver implementation. func (r *Resolver) Control() schema.ControlResolver { return &controlResolver{r} } // ControlConnection returns schema.ControlConnectionResolver implementation. func (r *Resolver) ControlConnection() schema.ControlConnectionResolver { return &controlConnectionResolver{r} } // StatementOfApplicability returns schema.StatementOfApplicabilityResolver implementation. func (r *Resolver) StatementOfApplicability() schema.StatementOfApplicabilityResolver { return &statementOfApplicabilityResolver{r} } // StatementOfApplicabilityConnection returns schema.StatementOfApplicabilityConnectionResolver implementation. func (r *Resolver) StatementOfApplicabilityConnection() schema.StatementOfApplicabilityConnectionResolver { return &statementOfApplicabilityConnectionResolver{r} } type ( applicabilityStatementResolver struct{ *Resolver } applicabilityStatementConnectionResolver struct{ *Resolver } controlResolver struct{ *Resolver } controlConnectionResolver struct{ *Resolver } statementOfApplicabilityResolver struct{ *Resolver } statementOfApplicabilityConnectionResolver struct{ *Resolver } )