1use std::collections::{BTreeMap, BTreeSet, HashMap};
4
5use serde::{Deserialize, Serialize};
6
7use powerio::{
8 BalancedNetwork, BusId, NORMALIZED_SOLVER_TABLES_PASS, NormalizedSolverTables,
9 SolverTableUnits, SourceDocument, SourceFormat,
10};
11use powerio_dist::{DistSourceFormat, MulticonductorNetwork};
12
13use crate::diagnostics::{DiagnosticSeverity, DiagnosticStage, StructuredDiagnostic};
14use crate::lowering::{
15 LoweringRecord, MulticonductorToBalancedError, MulticonductorToBalancedOptions,
16 MulticonductorToBalancedReadiness, check_multiconductor_to_balanced_lowering,
17 lower_multiconductor_to_balanced,
18};
19use crate::model::{ModelKind, ModelPayload};
20use crate::operating::{
21 OperatingPointSeries, apply_operating_point_to_model, check_series_identities,
22 operating_points_drop_code, operating_points_from_document,
23};
24use crate::provenance::{
25 Confidence, MappingKind, Origin, Producer, SourceDescriptor, SourceMapEntry, SourceRef,
26};
27use crate::study::{StudyBlock, apply_study_to_model, check_study_identities};
28use crate::summary::{ObjectSummary, ObjectTopology, ObjectUnits};
29use crate::validation::{ValidationPass, ValidationStatus, ValidationSummary};
30
31pub const PIO_PACKAGE_SCHEMA_VERSION: &str = "0.2.0";
43
44pub const READ_TRANSMISSION_PARSE_WARNING: &str = "READ.TRANSMISSION.PARSE_WARNING";
45pub const READ_GRIDFM_FIDELITY_WARNING: &str = "READ.GRIDFM.FIDELITY_WARNING";
46
47fn default_schema_version() -> String {
48 PIO_PACKAGE_SCHEMA_VERSION.to_owned()
49}
50
51#[derive(Clone, Debug, Default, PartialEq, Serialize, Deserialize)]
55#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
56pub struct DerivedMetadata {
57 #[serde(default, skip_serializing_if = "Option::is_none")]
58 pub matrix_stats: Option<serde_json::Value>,
59 #[serde(default, skip_serializing_if = "Option::is_none")]
60 pub normalized_solver_tables: Option<NormalizedSolverTableMetadata>,
61 #[serde(default, skip_serializing_if = "BTreeMap::is_empty")]
62 pub cache_keys: BTreeMap<String, String>,
63}
64
65impl DerivedMetadata {
66 fn is_empty(&self) -> bool {
67 self.matrix_stats.is_none()
68 && self.normalized_solver_tables.is_none()
69 && self.cache_keys.is_empty()
70 }
71}
72
73#[derive(Clone, Debug, PartialEq, Serialize, Deserialize)]
75#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
76#[non_exhaustive]
77pub struct NormalizedSolverTableMetadata {
78 pub pass: String,
79 pub units: SolverTableUnits,
80 pub row_counts: NormalizedSolverTableRowCounts,
81 pub bus_ids: Vec<BusId>,
82 pub reference_bus_indices: Vec<usize>,
83 pub component_labels: Vec<usize>,
84 pub branch_from_arc_indices: Vec<usize>,
85 pub branch_to_arc_indices: Vec<usize>,
86 pub source_rows: NormalizedSolverTableSourceRows,
87}
88
89#[derive(Clone, Debug, Default, PartialEq, Eq, Serialize, Deserialize)]
91#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
92#[non_exhaustive]
93pub struct NormalizedSolverTableRowCounts {
94 pub buses: usize,
95 pub loads: usize,
96 pub shunts: usize,
97 pub branches: usize,
98 pub switches: usize,
99 pub arcs: usize,
100 pub generators: usize,
101 pub storage: usize,
102 pub hvdc: usize,
103}
104
105#[derive(Clone, Debug, Default, PartialEq, Eq, Serialize, Deserialize)]
107#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
108#[non_exhaustive]
109pub struct NormalizedSolverTableSourceRows {
110 pub buses: Vec<Option<usize>>,
111 pub loads: Vec<Option<usize>>,
112 pub shunts: Vec<Option<usize>>,
113 pub branches: Vec<Option<usize>>,
114 pub switches: Vec<Option<usize>>,
115 pub generators: Vec<Option<usize>>,
116 pub storage: Vec<Option<usize>>,
117 pub hvdc: Vec<Option<usize>>,
118}
119
120impl From<&NormalizedSolverTables> for NormalizedSolverTableMetadata {
121 fn from(tables: &NormalizedSolverTables) -> Self {
122 Self {
123 pass: NORMALIZED_SOLVER_TABLES_PASS.to_owned(),
124 units: tables.units.clone(),
125 row_counts: NormalizedSolverTableRowCounts {
126 buses: tables.buses.len(),
127 loads: tables.loads.len(),
128 shunts: tables.shunts.len(),
129 branches: tables.branches.len(),
130 switches: tables.switches.len(),
131 arcs: tables.arcs.len(),
132 generators: tables.generators.len(),
133 storage: tables.storage.len(),
134 hvdc: tables.hvdc.len(),
135 },
136 bus_ids: tables.index.bus_ids.clone(),
137 reference_bus_indices: tables.index.reference_bus_indices.clone(),
138 component_labels: tables.index.component_labels.clone(),
139 branch_from_arc_indices: tables.index.branch_from_arc_indices.clone(),
140 branch_to_arc_indices: tables.index.branch_to_arc_indices.clone(),
141 source_rows: NormalizedSolverTableSourceRows {
142 buses: tables.index.bus_source_rows.clone(),
143 loads: tables.index.load_source_rows.clone(),
144 shunts: tables.index.shunt_source_rows.clone(),
145 branches: tables.index.branch_source_rows.clone(),
146 switches: tables.index.switch_source_rows.clone(),
147 generators: tables.index.generator_source_rows.clone(),
148 storage: tables.index.storage_source_rows.clone(),
149 hvdc: tables.index.hvdc_source_rows.clone(),
150 },
151 }
152 }
153}
154
155#[derive(Clone, Debug, Serialize, Deserialize)]
163#[cfg_attr(feature = "schema", derive(schemars::JsonSchema))]
164#[non_exhaustive]
165pub struct NetworkPackage {
166 pub schema_version: String,
176 pub producer: Producer,
177 #[serde(default, skip_serializing_if = "Option::is_none")]
179 pub package_id: Option<String>,
180 #[serde(default, skip_serializing_if = "Option::is_none")]
183 pub created_at: Option<String>,
184 pub model_kind: ModelKind,
186 pub model: ModelPayload,
187 #[serde(default, skip_serializing_if = "Option::is_none")]
190 pub operating_points: Option<OperatingPointSeries>,
191 #[serde(default, skip_serializing_if = "Option::is_none")]
193 pub study: Option<StudyBlock>,
194 pub origin: Origin,
195 #[serde(default, skip_serializing_if = "Vec::is_empty")]
196 pub sources: Vec<SourceDescriptor>,
197 #[serde(default, skip_serializing_if = "Vec::is_empty")]
198 pub source_maps: Vec<SourceMapEntry>,
199 #[serde(default, skip_serializing_if = "Vec::is_empty")]
200 pub diagnostics: Vec<StructuredDiagnostic>,
201 pub validation: ValidationSummary,
202 #[serde(default)]
203 pub summary: ObjectSummary,
204 #[serde(default, skip_serializing_if = "Vec::is_empty")]
205 pub lowering_history: Vec<LoweringRecord>,
206 #[serde(default, skip_serializing_if = "DerivedMetadata::is_empty")]
207 pub derived: DerivedMetadata,
208}
209
210impl NetworkPackage {
211 pub fn from_balanced(net: BalancedNetwork) -> Self {
215 let mut net = net;
216 ensure_payload_uids(&mut net);
217 let origin = balanced_origin(&net);
218 let summary = balanced_summary(&net);
219 let sources = balanced_sources(&net);
220 let source_id = sources.first().map(|s| s.id.clone());
221 let source_maps = balanced_source_maps(&net, source_id.as_deref());
222 let diagnostics = Vec::new();
223 let validation = ValidationSummary::from_diagnostics(&diagnostics);
224 Self {
225 schema_version: default_schema_version(),
226 producer: Producer::powerio(),
227 package_id: None,
228 created_at: None,
229 model_kind: ModelKind::Balanced,
230 model: ModelPayload::balanced(net),
231 operating_points: None,
232 study: None,
233 origin,
234 sources,
235 source_maps,
236 diagnostics,
237 validation,
238 summary,
239 lowering_history: Vec::new(),
240 derived: DerivedMetadata::default(),
241 }
242 }
243
244 pub fn from_parsed_balanced(parsed: powerio::Parsed) -> Self {
249 let mut package = Self::from_balanced_with_read_warnings(
250 parsed.network,
251 READ_TRANSMISSION_PARSE_WARNING,
252 parsed.warnings,
253 );
254 if let Some(document) = &parsed.document {
255 package.attach_operating_points(document);
256 }
257 package
258 }
259
260 fn attach_operating_points(&mut self, document: &SourceDocument) {
261 match operating_points_from_document(document) {
262 Ok(series) => self.operating_points = series,
263 Err(error) => {
264 self.diagnostics.push(StructuredDiagnostic::new(
265 operating_points_drop_code(document),
266 DiagnosticSeverity::Warning,
267 DiagnosticStage::Read,
268 format!(
269 "time series could not be lifted into operating points; \
270 the package is static only: {error}"
271 ),
272 ));
273 self.validation = ValidationSummary::from_diagnostics(&self.diagnostics);
274 }
275 }
276 }
277
278 pub fn from_balanced_with_read_warnings<I, S>(
281 net: BalancedNetwork,
282 code: &str,
283 warnings: I,
284 ) -> Self
285 where
286 I: IntoIterator<Item = S>,
287 S: Into<String>,
288 {
289 let mut package = Self::from_balanced(net);
290 package.record_read_warnings(code, warnings);
291 package
292 }
293
294 pub fn record_read_warnings<I, S>(&mut self, code: &str, warnings: I)
296 where
297 I: IntoIterator<Item = S>,
298 S: Into<String>,
299 {
300 let diagnostics: Vec<StructuredDiagnostic> = warnings
301 .into_iter()
302 .map(|w| {
303 StructuredDiagnostic::new(
304 code,
305 DiagnosticSeverity::Warning,
306 DiagnosticStage::Read,
307 w.into(),
308 )
309 })
310 .collect();
311 if diagnostics.is_empty() {
312 return;
313 }
314 self.diagnostics.extend(diagnostics);
315 self.validation = ValidationSummary::from_diagnostics(&self.diagnostics);
316 }
317
318 pub fn from_multiconductor(net: MulticonductorNetwork) -> Self {
323 let summary = multiconductor_summary(&net);
324 let sources = multiconductor_sources(&net);
325 let source_id = sources.first().map(|s| s.id.clone());
326 let source_maps = multiconductor_source_maps(&net, source_id.as_deref());
327 let origin = multiconductor_origin(&net);
328
329 let diagnostics: Vec<StructuredDiagnostic> = net
330 .warnings
331 .iter()
332 .map(|w| {
333 StructuredDiagnostic::new(
334 "READ.DIST.PARSE_WARNING",
335 DiagnosticSeverity::Warning,
336 DiagnosticStage::Read,
337 w.clone(),
338 )
339 })
340 .collect();
341 let validation = ValidationSummary::from_diagnostics(&diagnostics);
342
343 Self {
344 schema_version: default_schema_version(),
345 producer: Producer::powerio(),
346 package_id: None,
347 created_at: None,
348 model_kind: ModelKind::Multiconductor,
349 model: ModelPayload::multiconductor(net),
350 operating_points: None,
351 study: None,
352 origin,
353 sources,
354 source_maps,
355 diagnostics,
356 validation,
357 summary,
358 lowering_history: Vec::new(),
359 derived: DerivedMetadata::default(),
360 }
361 }
362
363 pub fn model_kind(&self) -> ModelKind {
365 self.model_kind
366 }
367
368 pub fn kind_is_consistent(&self) -> bool {
371 self.model_kind == self.model.kind()
372 }
373
374 pub fn as_balanced(&self) -> Option<&BalancedNetwork> {
376 self.model.as_balanced()
377 }
378
379 pub fn as_multiconductor(&self) -> Option<&MulticonductorNetwork> {
381 self.model.as_multiconductor()
382 }
383
384 #[must_use]
386 pub fn operating_points(&self) -> Option<&OperatingPointSeries> {
387 self.operating_points.as_ref()
388 }
389
390 #[must_use]
392 pub fn with_operating_points(mut self, operating_points: OperatingPointSeries) -> Self {
393 self.set_operating_points(operating_points);
394 self
395 }
396
397 pub fn set_operating_points(&mut self, operating_points: OperatingPointSeries) {
399 self.operating_points = (!operating_points.is_empty()).then_some(operating_points);
400 }
401
402 pub fn clear_operating_points(&mut self) {
404 self.operating_points = None;
405 }
406
407 #[must_use]
409 pub fn study(&self) -> Option<&StudyBlock> {
410 self.study.as_ref()
411 }
412
413 #[must_use]
415 pub fn with_study(mut self, study: StudyBlock) -> Self {
416 self.set_study(study);
417 self
418 }
419
420 pub fn set_study(&mut self, study: StudyBlock) {
422 self.study = (!study.is_empty()).then_some(study);
423 }
424
425 pub fn clear_study(&mut self) {
427 self.study = None;
428 }
429
430 pub fn materialize_operating_point(&self, index: usize) -> serde_json::Result<Self> {
436 let series = self.operating_points.as_ref().ok_or_else(|| {
437 <serde_json::Error as serde::de::Error>::custom("package has no operating points")
438 })?;
439 let point = series.unique_point(index)?.ok_or_else(|| {
440 <serde_json::Error as serde::de::Error>::custom(format!(
441 "package has no operating point {index}"
442 ))
443 })?;
444 let (updated_model, updated_paths) = apply_operating_point_to_model(&self.model, point)?;
448 let had_normalized_solver_tables = self.derived.normalized_solver_tables.is_some();
449 let options = materialize_operating_point_options(index);
450 let mut package = Self {
455 schema_version: self.schema_version.clone(),
456 producer: self.producer.clone(),
457 package_id: None,
461 created_at: self.created_at.clone(),
462 model_kind: self.model_kind,
463 model: updated_model,
464 operating_points: None,
465 study: None,
466 origin: Origin::Derived {
467 parent_package_id: self.package_id.clone(),
468 pass: "materialize-operating-point".to_owned(),
469 options: options.clone(),
470 },
471 sources: self.sources.clone(),
472 source_maps: self
473 .source_maps
474 .iter()
475 .filter(|entry| !updated_paths.contains(entry.element_path.as_str()))
476 .cloned()
477 .collect(),
478 diagnostics: self
479 .diagnostics
480 .iter()
481 .filter(|diagnostic| {
482 diagnostic
483 .element_path
484 .as_deref()
485 .is_none_or(|path| !updated_paths.contains(path))
486 })
487 .cloned()
488 .collect(),
489 validation: self.validation.clone(),
491 summary: self.summary.clone(),
492 lowering_history: self.lowering_history.clone(),
493 derived: DerivedMetadata::default(),
496 };
497 let mut record = LoweringRecord::new(
498 "materialize-operating-point",
499 self.model_kind,
500 self.model_kind,
501 );
502 record.options = options;
503 package.run_sane_validation();
504 record.validation_status = package.validation.status;
505 package.push_lowering(record);
506 if had_normalized_solver_tables {
507 package
508 .attach_normalized_solver_table_metadata()
509 .map_err(|err| {
510 <serde_json::Error as serde::de::Error>::custom(format!(
511 "failed to recompute normalized solver table metadata: {err}"
512 ))
513 })?;
514 }
515 Ok(package)
516 }
517
518 pub fn materialize_balanced_operating_point(
521 &self,
522 index: usize,
523 ) -> serde_json::Result<Option<BalancedNetwork>> {
524 Ok(self
525 .materialize_operating_point(index)?
526 .model
527 .as_balanced()
528 .cloned())
529 }
530
531 pub fn materialize_multiconductor_operating_point(
534 &self,
535 index: usize,
536 ) -> serde_json::Result<Option<MulticonductorNetwork>> {
537 Ok(self
538 .materialize_operating_point(index)?
539 .model
540 .as_multiconductor()
541 .cloned())
542 }
543
544 pub fn materialize_study_commit(&self, commit_index: usize) -> serde_json::Result<Self> {
550 let study = self.study.as_ref().ok_or_else(|| {
551 <serde_json::Error as serde::de::Error>::custom("package has no study block")
552 })?;
553 let base = if let Some(index) = study.base_operating_point {
554 self.materialize_operating_point(index)?
555 } else {
556 self.clone()
557 };
558 let (updated_model, updated_paths) =
559 apply_study_to_model(&base.model, study, commit_index)?;
560 let had_normalized_solver_tables = base.derived.normalized_solver_tables.is_some();
561 let options = materialize_study_commit_options(study, commit_index);
562
563 let mut package = Self {
564 schema_version: base.schema_version.clone(),
565 producer: base.producer.clone(),
566 package_id: None,
567 created_at: base.created_at.clone(),
568 model_kind: base.model_kind,
569 model: updated_model,
570 operating_points: None,
571 study: None,
572 origin: Origin::Derived {
573 parent_package_id: self.package_id.clone(),
574 pass: "materialize-study-commit".to_owned(),
575 options: options.clone(),
576 },
577 sources: base.sources.clone(),
578 source_maps: base
579 .source_maps
580 .iter()
581 .filter(|entry| !updated_paths.contains(entry.element_path.as_str()))
582 .cloned()
583 .collect(),
584 diagnostics: base
585 .diagnostics
586 .iter()
587 .filter(|diagnostic| {
588 diagnostic
589 .element_path
590 .as_deref()
591 .is_none_or(|path| !updated_paths.contains(path))
592 })
593 .cloned()
594 .collect(),
595 validation: base.validation.clone(),
596 summary: base.summary.clone(),
597 lowering_history: base.lowering_history.clone(),
598 derived: DerivedMetadata::default(),
599 };
600 let mut record =
601 LoweringRecord::new("materialize-study-commit", base.model_kind, base.model_kind);
602 record.options = options;
603 record
604 .assumptions
605 .push(format!("applied study commits 0..={commit_index}"));
606 package.run_sane_validation();
607 record.validation_status = package.validation.status;
608 package.push_lowering(record);
609 if had_normalized_solver_tables {
610 package
611 .attach_normalized_solver_table_metadata()
612 .map_err(|err| {
613 <serde_json::Error as serde::de::Error>::custom(format!(
614 "failed to recompute normalized solver table metadata: {err}"
615 ))
616 })?;
617 }
618 Ok(package)
619 }
620
621 pub fn materialize_balanced_study_commit(
623 &self,
624 commit_index: usize,
625 ) -> serde_json::Result<Option<BalancedNetwork>> {
626 Ok(self
627 .materialize_study_commit(commit_index)?
628 .model
629 .as_balanced()
630 .cloned())
631 }
632
633 pub fn to_json(&self) -> serde_json::Result<String> {
635 serde_json::to_string(self)
636 }
637
638 pub fn to_json_pretty(&self) -> serde_json::Result<String> {
640 serde_json::to_string_pretty(self)
641 }
642
643 pub fn from_json(text: &str) -> serde_json::Result<Self> {
645 let pkg: Self = serde_json::from_str(text.trim_start_matches('\u{feff}')).map_err(|e| {
651 <serde_json::Error as serde::de::Error>::custom(format!(
652 "invalid .pio.json package envelope: {e}"
653 ))
654 })?;
655 if !Self::supports_schema_version(&pkg.schema_version) {
656 return Err(<serde_json::Error as serde::de::Error>::custom(format!(
657 "unsupported .pio.json schema_version {}; this reader supports {}; \
658 regenerate the package from its source case",
659 pkg.schema_version,
660 supported_lineage_label()
661 )));
662 }
663 if !pkg.kind_is_consistent() {
664 return Err(<serde_json::Error as serde::de::Error>::custom(
665 "model_kind does not match model.kind",
666 ));
667 }
668 Ok(pkg)
669 }
670
671 pub fn supports_schema_version(version: &str) -> bool {
679 let Some((major, minor)) = schema_lineage(version) else {
680 return false;
681 };
682 let (current_major, current_minor) = supported_lineage();
683 major == current_major && (major != 0 || minor == current_minor)
684 }
685
686 #[must_use]
687 pub fn with_origin(mut self, origin: Origin) -> Self {
688 self.origin = origin;
689 self
690 }
691
692 #[must_use]
693 pub fn with_package_id(mut self, id: impl Into<String>) -> Self {
694 self.package_id = Some(id.into());
695 self
696 }
697
698 #[must_use]
699 pub fn with_created_at(mut self, created_at: impl Into<String>) -> Self {
700 self.created_at = Some(created_at.into());
701 self
702 }
703
704 #[must_use]
705 pub fn with_sources(mut self, sources: Vec<SourceDescriptor>) -> Self {
706 self.sources = sources;
707 self
708 }
709
710 #[must_use]
711 pub fn with_source_maps(mut self, source_maps: Vec<SourceMapEntry>) -> Self {
712 self.source_maps = source_maps;
713 self
714 }
715
716 pub fn push_lowering(&mut self, record: LoweringRecord) {
718 self.lowering_history.push(record);
719 }
720
721 pub fn attach_normalized_solver_table_metadata(
728 &mut self,
729 ) -> std::result::Result<bool, powerio::Error> {
730 let Some(net) = self.as_balanced() else {
731 return Ok(false);
732 };
733 let tables = net.to_normalized_solver_tables()?;
734 self.derived.normalized_solver_tables = Some(NormalizedSolverTableMetadata::from(&tables));
735 Ok(true)
736 }
737
738 pub fn with_normalized_solver_table_metadata(
740 mut self,
741 ) -> std::result::Result<Self, powerio::Error> {
742 self.attach_normalized_solver_table_metadata()?;
743 Ok(self)
744 }
745
746 #[must_use]
749 pub fn check_multiconductor_to_balanced_lowering(
750 &self,
751 ) -> Option<MulticonductorToBalancedReadiness> {
752 self.as_multiconductor().map(|net| {
753 check_multiconductor_to_balanced_lowering(
754 net,
755 MulticonductorToBalancedOptions::default(),
756 )
757 })
758 }
759
760 pub fn lower_multiconductor_to_balanced(
765 &self,
766 options: MulticonductorToBalancedOptions,
767 ) -> Result<Self, MulticonductorToBalancedError> {
768 let Some(net) = self.as_multiconductor() else {
769 let diagnostic = StructuredDiagnostic::new(
770 "LOWER.MULTI_TO_BALANCED.WRONG_MODEL_KIND",
771 DiagnosticSeverity::Error,
772 DiagnosticStage::Lower,
773 format!(
774 "multiconductor to balanced lowering requires a multiconductor package, got {:?}",
775 self.model_kind
776 ),
777 );
778 return Err(MulticonductorToBalancedError::new(
779 options,
780 vec![diagnostic],
781 ));
782 };
783
784 let lowered = lower_multiconductor_to_balanced(net, options)?;
785 let mut record = lowered.record;
786 let mut output = NetworkPackage::from_balanced(lowered.network);
787 output.origin = Origin::Derived {
788 parent_package_id: self.package_id.clone(),
789 pass: "multiconductor-to-balanced".to_owned(),
790 options: record.options.clone(),
791 };
792 output.sources = derived_sources(self);
793 let source_id = output.sources.first().map(|source| source.id.as_str());
794 output.source_maps = match output.as_balanced() {
795 Some(balanced) => lowered_balanced_source_maps(net, balanced, source_id),
796 None => Vec::new(),
797 };
798 output.diagnostics.clone_from(&record.diagnostics);
799 output.lowering_history.clone_from(&self.lowering_history);
800 output.run_sane_validation();
801 record.validation_status = output.validation.status;
802 output.push_lowering(record);
803 Ok(output)
804 }
805
806 pub fn run_sane_validation(&mut self) {
812 self.diagnostics
813 .retain(|d| !is_sane_validation_code(d.code.as_str()));
814
815 let (mut diagnostics, mut passes) = match &self.model {
816 ModelPayload::Balanced { balanced_network } => sane_validate_balanced(balanced_network),
817 ModelPayload::Multiconductor {
818 multiconductor_network,
819 } => sane_validate_multiconductor(multiconductor_network),
820 };
821
822 if let Some(series) = &self.operating_points {
823 let (identity_diagnostics, identity_pass) =
824 validate_operating_identity(&self.model, series);
825 diagnostics.extend(identity_diagnostics);
826 passes.push(identity_pass);
827 }
828 if let Some(study) = &self.study {
829 let (study_diagnostics, study_pass) = validate_study(&self.model, study);
830 diagnostics.extend(study_diagnostics);
831 passes.push(study_pass);
832 }
833
834 attach_source_refs(&mut diagnostics, &self.source_maps);
835 self.diagnostics.extend(diagnostics);
836 self.validation =
837 ValidationSummary::from_diagnostics(&self.diagnostics).with_passes(passes);
838 }
839}
840
841fn materialize_operating_point_options(index: usize) -> serde_json::Map<String, serde_json::Value> {
842 let mut options = serde_json::Map::new();
843 options.insert("index".to_owned(), serde_json::json!(index));
844 options
845}
846
847fn materialize_study_commit_options(
848 study: &StudyBlock,
849 commit_index: usize,
850) -> serde_json::Map<String, serde_json::Value> {
851 let mut options = serde_json::Map::new();
852 options.insert("commit_index".to_owned(), serde_json::json!(commit_index));
853 if let Some(index) = study.base_operating_point {
854 options.insert("base_operating_point".to_owned(), serde_json::json!(index));
855 }
856 options
857}
858
859fn schema_lineage(version: &str) -> Option<(u64, u64)> {
860 let (rest, build) = match version.split_once('+') {
867 Some((rest, build)) => (rest, Some(build)),
868 None => (version, None),
869 };
870 let (core, pre) = match rest.split_once('-') {
871 Some((core, pre)) => (core, Some(pre)),
872 None => (rest, None),
873 };
874 if pre.is_some_and(|s| !valid_semver_suffix(s))
875 || build.is_some_and(|s| !valid_semver_suffix(s))
876 {
877 return None;
878 }
879 let mut parts = core.split('.');
880 let major = parts.next()?;
881 let minor = parts.next()?;
882 let patch = parts.next()?;
883 if parts.next().is_some() {
884 return None;
885 }
886 let major = parse_semver_number(major)?;
887 let minor = parse_semver_number(minor)?;
888 parse_semver_number(patch)?;
889 Some((major, minor))
890}
891
892fn parse_semver_number(s: &str) -> Option<u64> {
893 if s.is_empty() || !s.bytes().all(|b| b.is_ascii_digit()) || (s.len() > 1 && s.starts_with('0'))
894 {
895 return None;
896 }
897 s.parse().ok()
898}
899
900fn valid_semver_suffix(s: &str) -> bool {
901 !s.is_empty()
902 && s.split('.').all(|part| {
903 !part.is_empty() && part.bytes().all(|b| b.is_ascii_alphanumeric() || b == b'-')
904 })
905}
906
907fn supported_lineage() -> (u64, u64) {
908 schema_lineage(PIO_PACKAGE_SCHEMA_VERSION).expect("package schema version is valid semver")
909}
910
911fn supported_lineage_label() -> String {
914 match supported_lineage() {
915 (0, minor) => format!("0.{minor}.x"),
916 (major, _) => format!("major version {major}"),
917 }
918}
919
920pub fn ensure_payload_uids(net: &mut BalancedNetwork) {
926 macro_rules! fill {
927 ($table:ident) => {
928 for (row, element) in net.$table.iter_mut().enumerate() {
929 if element.uid.is_none() {
930 element.uid = Some(format!(concat!(stringify!($table), ":{}"), row));
931 }
932 }
933 };
934 }
935 fill!(buses);
936 fill!(loads);
937 fill!(shunts);
938 fill!(branches);
939 fill!(switches);
940 fill!(generators);
941 fill!(storage);
942 fill!(hvdc);
943 fill!(transformers_3w);
944}
945
946const SANE_VALIDATION_CODES: [&str; 9] = [
947 "VALIDATE.BALANCED.STRUCTURE",
948 "VALIDATE.BALANCED.VALUE_DOMAIN",
949 "VALIDATE.MULTI.STRUCTURE",
950 "VALIDATE.MULTI.TERMINAL_MAP",
951 "VALIDATE.MULTI.UNTYPED_OBJECT",
952 "VALIDATE.MULTI.NO_VOLTAGE_SOURCE",
953 "VALIDATE.PACKAGE.OPERATING_IDENTITY",
954 "VALIDATE.PACKAGE.STUDY_MODEL_KIND",
955 "VALIDATE.PACKAGE.STUDY_IDENTITY",
956];
957
958fn validate_operating_identity(
964 model: &ModelPayload,
965 series: &OperatingPointSeries,
966) -> (Vec<StructuredDiagnostic>, ValidationPass) {
967 let diagnostics: Vec<StructuredDiagnostic> = check_series_identities(model, series)
968 .into_iter()
969 .map(|(point_pos, update_pos, message)| {
970 StructuredDiagnostic::new(
971 "VALIDATE.PACKAGE.OPERATING_IDENTITY",
972 DiagnosticSeverity::Error,
973 DiagnosticStage::Validate,
974 message,
975 )
976 .with_element_path(format!(
977 "/operating_points/points/{point_pos}/updates/{update_pos}"
978 ))
979 })
980 .collect();
981 let status = validation_status(&diagnostics);
982 (
983 diagnostics,
984 ValidationPass::new("package.operating_identity", status),
985 )
986}
987
988fn validate_study(
989 model: &ModelPayload,
990 study: &StudyBlock,
991) -> (Vec<StructuredDiagnostic>, ValidationPass) {
992 if !matches!(model, ModelPayload::Balanced { .. }) {
993 let diagnostics = vec![
994 StructuredDiagnostic::new(
995 "VALIDATE.PACKAGE.STUDY_MODEL_KIND",
996 DiagnosticSeverity::Error,
997 DiagnosticStage::Validate,
998 "study blocks are only defined for balanced packages",
999 )
1000 .with_element_path("/study"),
1001 ];
1002 return (
1003 diagnostics,
1004 ValidationPass::new("package.study", ValidationStatus::Error),
1005 );
1006 }
1007
1008 let diagnostics: Vec<StructuredDiagnostic> = check_study_identities(model, study)
1009 .into_iter()
1010 .map(|(commit_pos, edit_pos, message)| {
1011 StructuredDiagnostic::new(
1012 "VALIDATE.PACKAGE.STUDY_IDENTITY",
1013 DiagnosticSeverity::Error,
1014 DiagnosticStage::Validate,
1015 message,
1016 )
1017 .with_element_path(format!("/study/commits/{commit_pos}/edits/{edit_pos}"))
1018 })
1019 .collect();
1020 let status = validation_status(&diagnostics);
1021 (
1022 diagnostics,
1023 ValidationPass::new("package.study_identity", status),
1024 )
1025}
1026
1027fn is_sane_validation_code(code: &str) -> bool {
1028 SANE_VALIDATION_CODES.contains(&code)
1029}
1030
1031fn validation_status(diagnostics: &[StructuredDiagnostic]) -> ValidationStatus {
1032 diagnostics
1033 .iter()
1034 .map(|d| match d.severity {
1035 DiagnosticSeverity::Debug => ValidationStatus::Ok,
1036 DiagnosticSeverity::Info => ValidationStatus::Info,
1037 DiagnosticSeverity::Warning => ValidationStatus::Warning,
1038 DiagnosticSeverity::Error => ValidationStatus::Error,
1039 DiagnosticSeverity::Fatal => ValidationStatus::Fatal,
1040 })
1041 .max()
1042 .unwrap_or(ValidationStatus::Ok)
1043}
1044
1045fn sane_validate_balanced(
1046 net: &BalancedNetwork,
1047) -> (Vec<StructuredDiagnostic>, Vec<ValidationPass>) {
1048 let mut structure = Vec::new();
1049 if let Err(err) = net.validate() {
1050 structure.push(StructuredDiagnostic::new(
1051 "VALIDATE.BALANCED.STRUCTURE",
1052 DiagnosticSeverity::Error,
1053 DiagnosticStage::Validate,
1054 err.to_string(),
1055 ));
1056 }
1057
1058 let bus_index: HashMap<usize, usize> = net
1059 .buses
1060 .iter()
1061 .enumerate()
1062 .map(|(idx, b)| (b.id.0, idx))
1063 .collect();
1064 let mut value_domain = Vec::new();
1065 for finding in net.validate_values() {
1066 let element_path =
1067 balanced_value_finding_path(net, &bus_index, &finding).unwrap_or_else(|| {
1068 format!(
1069 "/model/balanced_network/{}#{}",
1070 finding.element.replace(' ', "_"),
1071 finding.field
1072 )
1073 });
1074 let mut d = StructuredDiagnostic::new(
1075 "VALIDATE.BALANCED.VALUE_DOMAIN",
1076 DiagnosticSeverity::Warning,
1077 DiagnosticStage::Validate,
1078 format!(
1079 "{} field `{}` is outside its value domain; suggested value is {}",
1080 finding.element, finding.field, finding.new
1081 ),
1082 )
1083 .with_element_path(element_path)
1084 .with_suggested_action("Run the explicit repair pass if these defaults are desired.");
1085 d.details
1086 .insert("element".to_owned(), serde_json::json!(finding.element));
1087 d.details
1088 .insert("field".to_owned(), serde_json::json!(finding.field));
1089 d.details
1090 .insert("old".to_owned(), serde_json::json!(finding.old));
1091 d.details
1092 .insert("new".to_owned(), serde_json::json!(finding.new));
1093 d.details
1094 .insert("reason".to_owned(), serde_json::json!(finding.reason));
1095 value_domain.push(d);
1096 }
1097
1098 let passes = vec![
1099 ValidationPass::new("balanced.structure", validation_status(&structure)),
1100 ValidationPass::new("balanced.value_domain", validation_status(&value_domain)),
1101 ];
1102 structure.extend(value_domain);
1103 (structure, passes)
1104}
1105
1106fn attach_source_refs(diagnostics: &mut [StructuredDiagnostic], source_maps: &[SourceMapEntry]) {
1107 let mut by_path: HashMap<&str, &SourceRef> = HashMap::with_capacity(source_maps.len());
1111 for map in source_maps {
1112 by_path
1113 .entry(map.element_path.as_str())
1114 .or_insert(&map.source_ref);
1115 }
1116 for diagnostic in diagnostics {
1117 if diagnostic.source_ref.is_some() {
1118 continue;
1119 }
1120 let Some(path) = diagnostic.element_path.as_deref() else {
1121 continue;
1122 };
1123 if let Some(source_ref) = by_path.get(path) {
1124 diagnostic.source_ref = Some((*source_ref).clone());
1125 }
1126 }
1127}
1128
1129fn balanced_value_finding_path(
1130 net: &BalancedNetwork,
1131 bus_index: &HashMap<usize, usize>,
1132 finding: &powerio::Diagnostic,
1133) -> Option<String> {
1134 if let Some(id) = finding
1135 .element
1136 .strip_prefix("bus ")
1137 .and_then(|s| s.parse::<usize>().ok())
1138 {
1139 let idx = *bus_index.get(&id)?;
1140 return Some(format!(
1141 "/model/balanced_network/buses/{idx}/{}",
1142 finding.field
1143 ));
1144 }
1145
1146 if let Some(id) = finding
1147 .element
1148 .strip_prefix("generator at bus ")
1149 .and_then(|s| s.parse::<usize>().ok())
1150 {
1151 let mut matches = net
1155 .generators
1156 .iter()
1157 .enumerate()
1158 .filter(|(_, g)| {
1159 g.bus.0 == id
1160 && generator_field(g, finding.field)
1161 .is_some_and(|v| v.to_bits() == finding.old.to_bits())
1162 })
1163 .map(|(idx, _)| idx);
1164 let idx = matches.next()?;
1165 if matches.next().is_some() {
1166 return None;
1167 }
1168 return Some(format!(
1169 "/model/balanced_network/generators/{idx}/{}",
1170 finding.field
1171 ));
1172 }
1173
1174 None
1175}
1176
1177fn generator_field(generator: &powerio::Generator, field: &str) -> Option<f64> {
1178 Some(match field {
1179 "mbase" => generator.mbase,
1180 "vg" => generator.vg,
1181 _ => return None,
1182 })
1183}
1184
1185fn sane_validate_multiconductor(
1186 net: &MulticonductorNetwork,
1187) -> (Vec<StructuredDiagnostic>, Vec<ValidationPass>) {
1188 let mut structure = Vec::new();
1189 let mut terminal_maps = Vec::new();
1190 let mut untyped = Vec::new();
1191 let mut sources = Vec::new();
1192
1193 let (bus_ids, bus_terminals) = multiconductor_bus_index(net, &mut structure);
1194
1195 validate_multiconductor_lines(
1196 net,
1197 &bus_ids,
1198 &bus_terminals,
1199 &mut structure,
1200 &mut terminal_maps,
1201 );
1202 validate_multiconductor_switches(
1203 net,
1204 &bus_ids,
1205 &bus_terminals,
1206 &mut structure,
1207 &mut terminal_maps,
1208 );
1209 validate_multiconductor_transformers(
1210 net,
1211 &bus_ids,
1212 &bus_terminals,
1213 &mut structure,
1214 &mut terminal_maps,
1215 );
1216 validate_multiconductor_injections(
1217 net,
1218 &bus_ids,
1219 &bus_terminals,
1220 &mut structure,
1221 &mut terminal_maps,
1222 );
1223
1224 for (i, obj) in net.untyped.iter().enumerate() {
1225 untyped.push(
1226 StructuredDiagnostic::new(
1227 "VALIDATE.MULTI.UNTYPED_OBJECT",
1228 DiagnosticSeverity::Warning,
1229 DiagnosticStage::Validate,
1230 format!(
1231 "{} {} is preserved as an untyped object",
1232 obj.class, obj.name
1233 ),
1234 )
1235 .with_element_path(format!("/model/multiconductor_network/untyped/{i}")),
1236 );
1237 }
1238
1239 if net.sources.is_empty() {
1240 sources.push(StructuredDiagnostic::new(
1241 "VALIDATE.MULTI.NO_VOLTAGE_SOURCE",
1242 DiagnosticSeverity::Warning,
1243 DiagnosticStage::Validate,
1244 "multiconductor package has no voltage source",
1245 ));
1246 }
1247
1248 let passes = vec![
1249 ValidationPass::new("multiconductor.structure", validation_status(&structure)),
1250 ValidationPass::new(
1251 "multiconductor.terminal_map",
1252 validation_status(&terminal_maps),
1253 ),
1254 ValidationPass::new("multiconductor.untyped_object", validation_status(&untyped)),
1255 ValidationPass::new("multiconductor.voltage_source", validation_status(&sources)),
1256 ];
1257
1258 let mut diagnostics = structure;
1259 diagnostics.extend(terminal_maps);
1260 diagnostics.extend(untyped);
1261 diagnostics.extend(sources);
1262 (diagnostics, passes)
1263}
1264
1265fn validate_multiconductor_lines(
1266 net: &MulticonductorNetwork,
1267 bus_ids: &BTreeSet<String>,
1268 bus_terminals: &BTreeMap<String, BTreeSet<String>>,
1269 structure: &mut Vec<StructuredDiagnostic>,
1270 terminal_maps: &mut Vec<StructuredDiagnostic>,
1271) {
1272 for (i, line) in net.lines.iter().enumerate() {
1273 check_bus_ref(
1274 &line.bus_from,
1275 &format!("line {} from bus", line.name),
1276 &format!("/model/multiconductor_network/lines/{i}/bus_from"),
1277 bus_ids,
1278 structure,
1279 );
1280 check_bus_ref(
1281 &line.bus_to,
1282 &format!("line {} to bus", line.name),
1283 &format!("/model/multiconductor_network/lines/{i}/bus_to"),
1284 bus_ids,
1285 structure,
1286 );
1287 if !net
1288 .linecodes
1289 .iter()
1290 .any(|c| c.name.eq_ignore_ascii_case(&line.linecode))
1291 {
1292 structure.push(
1293 StructuredDiagnostic::new(
1294 "VALIDATE.MULTI.STRUCTURE",
1295 DiagnosticSeverity::Error,
1296 DiagnosticStage::Validate,
1297 format!(
1298 "line {} references unknown linecode `{}`",
1299 line.name, line.linecode
1300 ),
1301 )
1302 .with_element_path(format!("/model/multiconductor_network/lines/{i}/linecode")),
1303 );
1304 }
1305 check_terminal_map(
1306 &line.bus_from,
1307 &line.terminal_map_from,
1308 &format!("line {} from terminals", line.name),
1309 &format!("/model/multiconductor_network/lines/{i}/terminal_map_from"),
1310 bus_terminals,
1311 terminal_maps,
1312 );
1313 check_terminal_map(
1314 &line.bus_to,
1315 &line.terminal_map_to,
1316 &format!("line {} to terminals", line.name),
1317 &format!("/model/multiconductor_network/lines/{i}/terminal_map_to"),
1318 bus_terminals,
1319 terminal_maps,
1320 );
1321 }
1322}
1323
1324fn validate_multiconductor_switches(
1325 net: &MulticonductorNetwork,
1326 bus_ids: &BTreeSet<String>,
1327 bus_terminals: &BTreeMap<String, BTreeSet<String>>,
1328 structure: &mut Vec<StructuredDiagnostic>,
1329 terminal_maps: &mut Vec<StructuredDiagnostic>,
1330) {
1331 for (i, sw) in net.switches.iter().enumerate() {
1332 check_bus_ref(
1333 &sw.bus_from,
1334 &format!("switch {} from bus", sw.name),
1335 &format!("/model/multiconductor_network/switches/{i}/bus_from"),
1336 bus_ids,
1337 structure,
1338 );
1339 check_bus_ref(
1340 &sw.bus_to,
1341 &format!("switch {} to bus", sw.name),
1342 &format!("/model/multiconductor_network/switches/{i}/bus_to"),
1343 bus_ids,
1344 structure,
1345 );
1346 check_terminal_map(
1347 &sw.bus_from,
1348 &sw.terminal_map_from,
1349 &format!("switch {} from terminals", sw.name),
1350 &format!("/model/multiconductor_network/switches/{i}/terminal_map_from"),
1351 bus_terminals,
1352 terminal_maps,
1353 );
1354 check_terminal_map(
1355 &sw.bus_to,
1356 &sw.terminal_map_to,
1357 &format!("switch {} to terminals", sw.name),
1358 &format!("/model/multiconductor_network/switches/{i}/terminal_map_to"),
1359 bus_terminals,
1360 terminal_maps,
1361 );
1362 }
1363}
1364
1365fn validate_multiconductor_transformers(
1366 net: &MulticonductorNetwork,
1367 bus_ids: &BTreeSet<String>,
1368 bus_terminals: &BTreeMap<String, BTreeSet<String>>,
1369 structure: &mut Vec<StructuredDiagnostic>,
1370 terminal_maps: &mut Vec<StructuredDiagnostic>,
1371) {
1372 for (i, tx) in net.transformers.iter().enumerate() {
1373 for (j, winding) in tx.windings.iter().enumerate() {
1374 check_bus_ref(
1375 &winding.bus,
1376 &format!("transformer {} winding {j} bus", tx.name),
1377 &format!("/model/multiconductor_network/transformers/{i}/windings/{j}/bus"),
1378 bus_ids,
1379 structure,
1380 );
1381 check_terminal_map(
1382 &winding.bus,
1383 &winding.terminal_map,
1384 &format!("transformer {} winding {j} terminals", tx.name),
1385 &format!(
1386 "/model/multiconductor_network/transformers/{i}/windings/{j}/terminal_map"
1387 ),
1388 bus_terminals,
1389 terminal_maps,
1390 );
1391 }
1392 }
1393}
1394
1395fn validate_multiconductor_injections(
1396 net: &MulticonductorNetwork,
1397 bus_ids: &BTreeSet<String>,
1398 bus_terminals: &BTreeMap<String, BTreeSet<String>>,
1399 structure: &mut Vec<StructuredDiagnostic>,
1400 terminal_maps: &mut Vec<StructuredDiagnostic>,
1401) {
1402 let mut ctx = MultiValidationContext {
1403 bus_ids,
1404 bus_terminals,
1405 structure,
1406 terminal_maps,
1407 };
1408 for (i, load) in net.loads.iter().enumerate() {
1409 check_one_bus_element(
1410 &load.bus,
1411 &load.terminal_map,
1412 &format!("load {}", load.name),
1413 &format!("/model/multiconductor_network/loads/{i}"),
1414 &mut ctx,
1415 );
1416 }
1417 for (i, generator) in net.generators.iter().enumerate() {
1418 check_one_bus_element(
1419 &generator.bus,
1420 &generator.terminal_map,
1421 &format!("generator {}", generator.name),
1422 &format!("/model/multiconductor_network/generators/{i}"),
1423 &mut ctx,
1424 );
1425 }
1426 for (i, shunt) in net.shunts.iter().enumerate() {
1427 check_one_bus_element(
1428 &shunt.bus,
1429 &shunt.terminal_map,
1430 &format!("shunt {}", shunt.name),
1431 &format!("/model/multiconductor_network/shunts/{i}"),
1432 &mut ctx,
1433 );
1434 }
1435 for (i, capacitor) in net.capacitors.iter().enumerate() {
1436 check_one_bus_element(
1437 &capacitor.bus,
1438 &capacitor.terminal_map,
1439 &format!("capacitor {}", capacitor.name),
1440 &format!("/model/multiconductor_network/capacitors/{i}"),
1441 &mut ctx,
1442 );
1443 }
1444 for (i, source) in net.sources.iter().enumerate() {
1445 check_one_bus_element(
1446 &source.bus,
1447 &source.terminal_map,
1448 &format!("voltage source {}", source.name),
1449 &format!("/model/multiconductor_network/sources/{i}"),
1450 &mut ctx,
1451 );
1452 }
1453}
1454
1455struct MultiValidationContext<'a> {
1456 bus_ids: &'a BTreeSet<String>,
1457 bus_terminals: &'a BTreeMap<String, BTreeSet<String>>,
1458 structure: &'a mut Vec<StructuredDiagnostic>,
1459 terminal_maps: &'a mut Vec<StructuredDiagnostic>,
1460}
1461
1462fn check_one_bus_element(
1463 bus: &str,
1464 terminal_map: &[String],
1465 label: &str,
1466 path: &str,
1467 ctx: &mut MultiValidationContext<'_>,
1468) {
1469 check_bus_ref(
1470 bus,
1471 &format!("{label} bus"),
1472 &format!("{path}/bus"),
1473 ctx.bus_ids,
1474 ctx.structure,
1475 );
1476 check_terminal_map(
1477 bus,
1478 terminal_map,
1479 &format!("{label} terminals"),
1480 &format!("{path}/terminal_map"),
1481 ctx.bus_terminals,
1482 ctx.terminal_maps,
1483 );
1484}
1485
1486fn multiconductor_bus_index(
1487 net: &MulticonductorNetwork,
1488 diagnostics: &mut Vec<StructuredDiagnostic>,
1489) -> (BTreeSet<String>, BTreeMap<String, BTreeSet<String>>) {
1490 let mut ids = BTreeSet::new();
1491 let mut terminals = BTreeMap::new();
1492 let mut first_seen = BTreeMap::<String, String>::new();
1493 for (i, bus) in net.buses.iter().enumerate() {
1494 let key = bus.id.to_ascii_lowercase();
1495 if let Some(first) = first_seen.insert(key.clone(), bus.id.clone()) {
1496 diagnostics.push(
1497 StructuredDiagnostic::new(
1498 "VALIDATE.MULTI.STRUCTURE",
1499 DiagnosticSeverity::Error,
1500 DiagnosticStage::Validate,
1501 format!("duplicate bus id `{}` conflicts with `{first}`", bus.id),
1502 )
1503 .with_element_path(format!("/model/multiconductor_network/buses/{i}/id")),
1504 );
1505 }
1506 ids.insert(key.clone());
1507 terminals.insert(key, bus.terminals.iter().cloned().collect());
1508 }
1509 (ids, terminals)
1510}
1511
1512fn check_bus_ref(
1513 bus: &str,
1514 what: &str,
1515 path: &str,
1516 bus_ids: &BTreeSet<String>,
1517 diagnostics: &mut Vec<StructuredDiagnostic>,
1518) {
1519 if !bus_ids.contains(&bus.to_ascii_lowercase()) {
1520 diagnostics.push(
1521 StructuredDiagnostic::new(
1522 "VALIDATE.MULTI.STRUCTURE",
1523 DiagnosticSeverity::Error,
1524 DiagnosticStage::Validate,
1525 format!("{what} references unknown bus `{bus}`"),
1526 )
1527 .with_element_path(path),
1528 );
1529 }
1530}
1531
1532fn check_terminal_map(
1533 bus: &str,
1534 terminal_map: &[String],
1535 what: &str,
1536 path: &str,
1537 bus_terminals: &BTreeMap<String, BTreeSet<String>>,
1538 diagnostics: &mut Vec<StructuredDiagnostic>,
1539) {
1540 if terminal_map.is_empty() {
1541 diagnostics.push(
1542 StructuredDiagnostic::new(
1543 "VALIDATE.MULTI.TERMINAL_MAP",
1544 DiagnosticSeverity::Error,
1545 DiagnosticStage::Validate,
1546 format!("{what} has an empty terminal map"),
1547 )
1548 .with_element_path(path),
1549 );
1550 return;
1551 }
1552
1553 let Some(known) = bus_terminals.get(&bus.to_ascii_lowercase()) else {
1554 return;
1555 };
1556 for terminal in terminal_map {
1557 if !known.contains(terminal) {
1558 diagnostics.push(
1559 StructuredDiagnostic::new(
1560 "VALIDATE.MULTI.TERMINAL_MAP",
1561 DiagnosticSeverity::Error,
1562 DiagnosticStage::Validate,
1563 format!("{what} references unknown terminal `{terminal}` on bus `{bus}`"),
1564 )
1565 .with_element_path(path),
1566 );
1567 }
1568 }
1569}
1570
1571fn balanced_origin(net: &BalancedNetwork) -> Origin {
1573 match net.source_format {
1574 SourceFormat::InMemory => Origin::InMemory,
1575 SourceFormat::Normalized => Origin::Derived {
1576 parent_package_id: None,
1577 pass: "normalize-balanced".to_owned(),
1578 options: serde_json::Map::new(),
1579 },
1580 SourceFormat::Gridfm | SourceFormat::PypsaCsv => Origin::Folder {
1581 path: String::new(),
1582 format: net.source_format.name().to_owned(),
1583 file_hashes: BTreeMap::new(),
1584 },
1585 SourceFormat::PowerWorldBinary => Origin::BinaryFile {
1586 path: String::new(),
1587 format: net.source_format.name().to_owned(),
1588 hash: None,
1589 decoded_sections: Vec::new(),
1590 },
1591 other => Origin::File {
1592 path: String::new(),
1593 format: other.name().to_owned(),
1594 hash: None,
1595 retained_source: net.source.is_some(),
1596 },
1597 }
1598}
1599
1600fn balanced_sources(net: &BalancedNetwork) -> Vec<SourceDescriptor> {
1601 let Some(kind) = balanced_source_kind(net.source_format) else {
1602 return Vec::new();
1603 };
1604 vec![SourceDescriptor {
1605 id: "src0".to_owned(),
1606 kind: kind.to_owned(),
1607 path: None,
1608 format: Some(net.source_format.name().to_owned()),
1609 hash: None,
1610 }]
1611}
1612
1613fn balanced_source_kind(f: SourceFormat) -> Option<&'static str> {
1614 match f {
1615 SourceFormat::InMemory | SourceFormat::Normalized => None,
1616 SourceFormat::Gridfm | SourceFormat::PypsaCsv => Some("folder"),
1617 SourceFormat::PowerWorldBinary => Some("binary_file"),
1618 _ => Some("file"),
1619 }
1620}
1621
1622fn balanced_summary(net: &BalancedNetwork) -> ObjectSummary {
1623 let mut elements = BTreeMap::new();
1624 elements.insert("buses".to_owned(), net.buses.len() as u64);
1625 elements.insert("loads".to_owned(), net.loads.len() as u64);
1626 elements.insert("shunts".to_owned(), net.shunts.len() as u64);
1627 elements.insert("branches".to_owned(), net.branches.len() as u64);
1628 elements.insert("generators".to_owned(), net.generators.len() as u64);
1629 elements.insert("storage".to_owned(), net.storage.len() as u64);
1630 elements.insert("hvdc".to_owned(), net.hvdc.len() as u64);
1631 elements.insert(
1632 "transformers_3w".to_owned(),
1633 net.transformers_3w.len() as u64,
1634 );
1635
1636 let reference_buses: Vec<String> = net
1637 .buses
1638 .iter()
1639 .filter(|b| b.kind == powerio::BusType::Ref)
1640 .map(|b| b.id.0.to_string())
1641 .collect();
1642
1643 ObjectSummary {
1644 elements,
1645 topology: Some(ObjectTopology {
1646 connected_components: None,
1647 reference_buses,
1648 }),
1649 units: Some(ObjectUnits {
1650 power: Some("MW/MVAr".to_owned()),
1651 angle: Some("degrees".to_owned()),
1652 base_mva: Some(net.base_mva),
1653 }),
1654 }
1655}
1656
1657fn balanced_source_maps(net: &BalancedNetwork, source_id: Option<&str>) -> Vec<SourceMapEntry> {
1658 let Some(source_id) = source_id else {
1659 return Vec::new();
1660 };
1661 let mut entries = Vec::new();
1662 push_balanced_network_maps(&mut entries, source_id, net.source_format);
1663 push_balanced_bus_maps(&mut entries, source_id, net.buses.len());
1664 push_balanced_injection_maps(&mut entries, source_id, net);
1665 push_balanced_branch_maps(&mut entries, source_id, net);
1666 push_balanced_generator_maps(&mut entries, source_id, net.generators.len());
1667 entries
1668}
1669
1670fn push_balanced_network_maps(
1671 entries: &mut Vec<SourceMapEntry>,
1672 source_id: &str,
1673 source_format: SourceFormat,
1674) {
1675 push_balanced_map(
1676 entries,
1677 source_id,
1678 "/model/balanced_network/base_mva",
1679 "case",
1680 "base_mva",
1681 MappingKind::Exact,
1682 );
1683 if balanced_has_frequency_source(source_format) {
1684 push_balanced_map(
1685 entries,
1686 source_id,
1687 "/model/balanced_network/base_frequency",
1688 "case",
1689 "base_frequency",
1690 MappingKind::Exact,
1691 );
1692 }
1693}
1694
1695fn push_balanced_bus_maps(entries: &mut Vec<SourceMapEntry>, source_id: &str, len: usize) {
1696 push_balanced_record_maps(
1697 entries,
1698 source_id,
1699 "buses",
1700 len,
1701 "bus",
1702 &[
1703 "id", "kind", "vm", "va", "base_kv", "vmax", "vmin", "area", "zone",
1704 ],
1705 MappingKind::Exact,
1706 );
1707}
1708
1709fn push_balanced_injection_maps(
1710 entries: &mut Vec<SourceMapEntry>,
1711 source_id: &str,
1712 net: &BalancedNetwork,
1713) {
1714 if net.source_format == SourceFormat::Matpower {
1715 push_matpower_injection_maps(entries, source_id, net);
1716 } else {
1717 push_balanced_record_maps(
1718 entries,
1719 source_id,
1720 "loads",
1721 net.loads.len(),
1722 "load",
1723 &["bus", "p", "q", "in_service"],
1724 MappingKind::Exact,
1725 );
1726 push_balanced_record_maps(
1727 entries,
1728 source_id,
1729 "shunts",
1730 net.shunts.len(),
1731 "shunt",
1732 &["bus", "g", "b", "in_service"],
1733 MappingKind::Exact,
1734 );
1735 }
1736}
1737
1738fn push_balanced_branch_maps(
1739 entries: &mut Vec<SourceMapEntry>,
1740 source_id: &str,
1741 net: &BalancedNetwork,
1742) {
1743 for (i, branch) in net.branches.iter().enumerate() {
1744 push_balanced_record_map(
1745 entries,
1746 source_id,
1747 "branches",
1748 i,
1749 "branch",
1750 &[
1751 "from",
1752 "to",
1753 "r",
1754 "x",
1755 "b",
1756 "rate_a",
1757 "rate_b",
1758 "rate_c",
1759 "tap",
1760 "shift",
1761 "in_service",
1762 "angmin",
1763 "angmax",
1764 ],
1765 MappingKind::Exact,
1766 );
1767 if branch.charging.is_some() {
1768 for field in ["g_fr", "b_fr", "g_to", "b_to"] {
1769 push_balanced_map(
1770 entries,
1771 source_id,
1772 &format!("/model/balanced_network/branches/{i}/charging/{field}"),
1773 "branch",
1774 field,
1775 MappingKind::Exact,
1776 );
1777 }
1778 }
1779 }
1780}
1781
1782fn push_balanced_generator_maps(entries: &mut Vec<SourceMapEntry>, source_id: &str, len: usize) {
1783 push_balanced_record_maps(
1784 entries,
1785 source_id,
1786 "generators",
1787 len,
1788 "generator",
1789 &[
1790 "bus",
1791 "pg",
1792 "qg",
1793 "pmax",
1794 "pmin",
1795 "qmax",
1796 "qmin",
1797 "vg",
1798 "mbase",
1799 "in_service",
1800 ],
1801 MappingKind::Exact,
1802 );
1803}
1804
1805fn balanced_has_frequency_source(source_format: SourceFormat) -> bool {
1806 matches!(
1807 source_format,
1808 SourceFormat::Psse | SourceFormat::PandapowerJson
1809 )
1810}
1811
1812fn push_matpower_injection_maps(
1813 entries: &mut Vec<SourceMapEntry>,
1814 source_id: &str,
1815 net: &BalancedNetwork,
1816) {
1817 push_balanced_record_maps(
1821 entries,
1822 source_id,
1823 "loads",
1824 net.loads.len(),
1825 "bus",
1826 &["bus", "p", "q", "in_service"],
1827 MappingKind::Split,
1828 );
1829 push_balanced_record_maps(
1830 entries,
1831 source_id,
1832 "shunts",
1833 net.shunts.len(),
1834 "bus",
1835 &["bus", "g", "b", "in_service"],
1836 MappingKind::Split,
1837 );
1838}
1839
1840fn push_balanced_record_maps(
1841 entries: &mut Vec<SourceMapEntry>,
1842 source_id: &str,
1843 collection: &str,
1844 len: usize,
1845 record: &str,
1846 fields: &[&str],
1847 mapping_kind: MappingKind,
1848) {
1849 for i in 0..len {
1850 push_balanced_record_map(
1851 entries,
1852 source_id,
1853 collection,
1854 i,
1855 record,
1856 fields,
1857 mapping_kind,
1858 );
1859 }
1860}
1861
1862fn push_balanced_record_map(
1863 entries: &mut Vec<SourceMapEntry>,
1864 source_id: &str,
1865 collection: &str,
1866 i: usize,
1867 record: &str,
1868 fields: &[&str],
1869 mapping_kind: MappingKind,
1870) {
1871 for &field in fields {
1872 push_balanced_map(
1873 entries,
1874 source_id,
1875 &format!("/model/balanced_network/{collection}/{i}/{field}"),
1876 record,
1877 field,
1878 mapping_kind,
1879 );
1880 }
1881}
1882
1883fn push_balanced_map(
1884 entries: &mut Vec<SourceMapEntry>,
1885 source_id: &str,
1886 element_path: &str,
1887 record: &str,
1888 field: &str,
1889 mapping_kind: MappingKind,
1890) {
1891 entries.push(SourceMapEntry {
1892 element_path: element_path.to_owned(),
1893 source_ref: SourceRef::new(source_id)
1894 .with_record(record)
1895 .with_field(field),
1896 mapping_kind,
1897 confidence: Confidence::High,
1898 });
1899}
1900
1901fn multiconductor_summary(net: &MulticonductorNetwork) -> ObjectSummary {
1902 let mut elements = BTreeMap::new();
1903 elements.insert("buses".to_owned(), net.buses.len() as u64);
1904 elements.insert("linecodes".to_owned(), net.linecodes.len() as u64);
1905 elements.insert("lines".to_owned(), net.lines.len() as u64);
1906 elements.insert("switches".to_owned(), net.switches.len() as u64);
1907 elements.insert("transformers".to_owned(), net.transformers.len() as u64);
1908 elements.insert("loads".to_owned(), net.loads.len() as u64);
1909 elements.insert("generators".to_owned(), net.generators.len() as u64);
1910 elements.insert("shunts".to_owned(), net.shunts.len() as u64);
1911 elements.insert("capacitors".to_owned(), net.capacitors.len() as u64);
1912 elements.insert("voltage_sources".to_owned(), net.sources.len() as u64);
1913
1914 ObjectSummary {
1915 elements,
1916 topology: None,
1917 units: Some(ObjectUnits {
1918 power: Some("W/var".to_owned()),
1919 angle: Some("radians".to_owned()),
1920 base_mva: None,
1921 }),
1922 }
1923}
1924
1925fn multiconductor_sources(net: &MulticonductorNetwork) -> Vec<SourceDescriptor> {
1926 match net.source_format {
1927 Some(sf) => vec![SourceDescriptor {
1928 id: "src0".to_owned(),
1929 kind: "file".to_owned(),
1930 path: None,
1931 format: Some(dist_format_name(sf).to_owned()),
1932 hash: None,
1933 }],
1934 None => Vec::new(),
1935 }
1936}
1937
1938fn dist_format_name(f: DistSourceFormat) -> &'static str {
1939 f.name()
1940}
1941
1942fn multiconductor_origin(net: &MulticonductorNetwork) -> Origin {
1943 match net.source_format {
1944 Some(sf) => Origin::File {
1945 path: String::new(),
1946 format: dist_format_name(sf).to_owned(),
1947 hash: None,
1948 retained_source: net.source.is_some(),
1949 },
1950 None => Origin::InMemory,
1951 }
1952}
1953
1954fn derived_sources(parent: &NetworkPackage) -> Vec<SourceDescriptor> {
1955 if !parent.sources.is_empty() {
1956 return parent.sources.clone();
1957 }
1958 vec![SourceDescriptor {
1959 id: "parent".to_owned(),
1960 kind: "package".to_owned(),
1961 path: None,
1962 format: Some("pio-json".to_owned()),
1963 hash: parent.package_id.clone(),
1964 }]
1965}
1966
1967fn lowered_balanced_source_maps(
1968 input: &MulticonductorNetwork,
1969 balanced: &BalancedNetwork,
1970 source_id: Option<&str>,
1971) -> Vec<SourceMapEntry> {
1972 let Some(source_id) = source_id else {
1973 return Vec::new();
1974 };
1975 let mut entries = Vec::new();
1976 push_lowered_bus_maps(&mut entries, source_id, input);
1977 push_lowered_branch_maps(&mut entries, source_id, input, balanced);
1978 push_lowered_load_maps(&mut entries, source_id, input, balanced);
1979 push_lowered_shunt_maps(&mut entries, source_id, input, balanced);
1980 push_lowered_generator_maps(&mut entries, source_id, input, balanced);
1981 entries
1982}
1983
1984fn push_lowered_bus_maps(
1985 entries: &mut Vec<SourceMapEntry>,
1986 source_id: &str,
1987 input: &MulticonductorNetwork,
1988) {
1989 for (idx, bus) in input.buses.iter().enumerate() {
1990 for (field, mapping_kind) in [
1991 ("id", MappingKind::Synthetic),
1992 ("kind", MappingKind::Lowered),
1993 ("vm", MappingKind::ConvertedUnits),
1994 ("va", MappingKind::ConvertedUnits),
1995 ("base_kv", MappingKind::ConvertedUnits),
1996 ("area", MappingKind::Defaulted),
1997 ("zone", MappingKind::Defaulted),
1998 ("name", MappingKind::Lowered),
1999 ] {
2000 push_lowered_map(
2001 entries,
2002 source_id,
2003 &format!("/model/balanced_network/buses/{idx}/{field}"),
2004 "multiconductor_bus",
2005 field,
2006 mapping_kind,
2007 );
2008 }
2009 for field in ["vmin", "vmax"] {
2010 let mapping_kind = if bus.v_min.is_some() && bus.v_max.is_some() {
2011 MappingKind::ConvertedUnits
2012 } else {
2013 MappingKind::Defaulted
2014 };
2015 push_lowered_map(
2016 entries,
2017 source_id,
2018 &format!("/model/balanced_network/buses/{idx}/{field}"),
2019 "multiconductor_bus",
2020 field,
2021 mapping_kind,
2022 );
2023 }
2024 }
2025}
2026
2027fn push_lowered_branch_maps(
2028 entries: &mut Vec<SourceMapEntry>,
2029 source_id: &str,
2030 input: &MulticonductorNetwork,
2031 balanced: &BalancedNetwork,
2032) {
2033 for (idx, branch) in balanced.branches.iter().enumerate() {
2034 let record = "multiconductor_line";
2035 for (field, mapping_kind) in [
2036 ("from", MappingKind::Lowered),
2037 ("to", MappingKind::Lowered),
2038 ("r", MappingKind::ConvertedUnits),
2039 ("x", MappingKind::ConvertedUnits),
2040 ("b", MappingKind::ConvertedUnits),
2041 ("in_service", MappingKind::Lowered),
2042 ("tap", MappingKind::Defaulted),
2043 ("shift", MappingKind::Defaulted),
2044 ("angmin", MappingKind::Defaulted),
2045 ("angmax", MappingKind::Defaulted),
2046 ] {
2047 push_lowered_map(
2048 entries,
2049 source_id,
2050 &format!("/model/balanced_network/branches/{idx}/{field}"),
2051 record,
2052 field,
2053 mapping_kind,
2054 );
2055 }
2056 let has_rating = input
2057 .lines
2058 .get(idx)
2059 .and_then(|line| input.linecode(&line.linecode))
2060 .is_some_and(|code| code.i_max.is_some() || code.s_max.is_some());
2061 let rate_kind = if has_rating {
2062 MappingKind::ConvertedUnits
2063 } else {
2064 MappingKind::Defaulted
2065 };
2066 for field in ["rate_a", "rate_b", "rate_c"] {
2067 push_lowered_map(
2068 entries,
2069 source_id,
2070 &format!("/model/balanced_network/branches/{idx}/{field}"),
2071 record,
2072 field,
2073 rate_kind,
2074 );
2075 }
2076 if branch.charging.is_some() {
2077 for field in ["g_fr", "b_fr", "g_to", "b_to"] {
2078 push_lowered_map(
2079 entries,
2080 source_id,
2081 &format!("/model/balanced_network/branches/{idx}/charging/{field}"),
2082 record,
2083 field,
2084 MappingKind::ConvertedUnits,
2085 );
2086 }
2087 }
2088 }
2089}
2090
2091fn push_lowered_load_maps(
2092 entries: &mut Vec<SourceMapEntry>,
2093 source_id: &str,
2094 input: &MulticonductorNetwork,
2095 balanced: &BalancedNetwork,
2096) {
2097 for idx in 0..balanced.loads.len().min(input.loads.len()) {
2098 for (field, mapping_kind) in [
2099 ("bus", MappingKind::Lowered),
2100 ("p", MappingKind::Aggregated),
2101 ("q", MappingKind::Aggregated),
2102 ("in_service", MappingKind::Lowered),
2103 ] {
2104 push_lowered_map(
2105 entries,
2106 source_id,
2107 &format!("/model/balanced_network/loads/{idx}/{field}"),
2108 "multiconductor_load",
2109 field,
2110 mapping_kind,
2111 );
2112 }
2113 }
2114}
2115
2116fn push_lowered_shunt_maps(
2117 entries: &mut Vec<SourceMapEntry>,
2118 source_id: &str,
2119 input: &MulticonductorNetwork,
2120 balanced: &BalancedNetwork,
2121) {
2122 for idx in 0..balanced.shunts.len().min(input.shunts.len()) {
2123 for (field, mapping_kind) in [
2124 ("bus", MappingKind::Lowered),
2125 ("g", MappingKind::Aggregated),
2126 ("b", MappingKind::Aggregated),
2127 ("in_service", MappingKind::Lowered),
2128 ] {
2129 push_lowered_map(
2130 entries,
2131 source_id,
2132 &format!("/model/balanced_network/shunts/{idx}/{field}"),
2133 "multiconductor_shunt",
2134 field,
2135 mapping_kind,
2136 );
2137 }
2138 }
2139}
2140
2141fn push_lowered_generator_maps(
2142 entries: &mut Vec<SourceMapEntry>,
2143 source_id: &str,
2144 input: &MulticonductorNetwork,
2145 balanced: &BalancedNetwork,
2146) {
2147 for idx in 0..balanced.generators.len().min(input.generators.len()) {
2148 let generator = &input.generators[idx];
2149 for (field, mapping_kind) in [
2150 ("bus", MappingKind::Lowered),
2151 ("pg", MappingKind::Aggregated),
2152 ("qg", MappingKind::Aggregated),
2153 ("vg", MappingKind::Defaulted),
2154 ("mbase", MappingKind::Synthetic),
2155 ("in_service", MappingKind::Lowered),
2156 ] {
2157 push_lowered_map(
2158 entries,
2159 source_id,
2160 &format!("/model/balanced_network/generators/{idx}/{field}"),
2161 "multiconductor_generator",
2162 field,
2163 mapping_kind,
2164 );
2165 }
2166 for (field, present) in [
2167 ("pmin", generator.p_min.is_some()),
2168 ("pmax", generator.p_max.is_some()),
2169 ("qmin", generator.q_min.is_some()),
2170 ("qmax", generator.q_max.is_some()),
2171 ] {
2172 push_lowered_map(
2173 entries,
2174 source_id,
2175 &format!("/model/balanced_network/generators/{idx}/{field}"),
2176 "multiconductor_generator",
2177 field,
2178 if present {
2179 MappingKind::Aggregated
2180 } else {
2181 MappingKind::Defaulted
2182 },
2183 );
2184 }
2185 }
2186}
2187
2188fn push_lowered_map(
2189 entries: &mut Vec<SourceMapEntry>,
2190 source_id: &str,
2191 element_path: &str,
2192 record: &str,
2193 field: &str,
2194 mapping_kind: MappingKind,
2195) {
2196 entries.push(SourceMapEntry {
2197 element_path: element_path.to_owned(),
2198 source_ref: SourceRef::new(source_id)
2199 .with_record(record)
2200 .with_field(field),
2201 mapping_kind,
2202 confidence: Confidence::High,
2203 });
2204}
2205
2206fn multiconductor_source_maps(
2211 net: &MulticonductorNetwork,
2212 source_id: Option<&str>,
2213) -> Vec<SourceMapEntry> {
2214 let Some(source_id) = source_id else {
2215 return Vec::new();
2216 };
2217 let mut entries = Vec::new();
2218 for (element, fields) in &net.defaulted {
2219 for field in fields {
2220 entries.push(SourceMapEntry {
2221 element_path: format!("/model/multiconductor_network/{element}#{field}"),
2222 source_ref: SourceRef::new(source_id).with_field((*field).to_owned()),
2223 mapping_kind: MappingKind::Defaulted,
2224 confidence: Confidence::High,
2225 });
2226 }
2227 }
2228 entries
2229}
2230
2231#[cfg(test)]
2232mod tests {
2233 #[test]
2234 fn schema_lineage_parses_semver_suffixes() {
2235 assert_eq!(super::schema_lineage("1.2.3"), Some((1, 2)));
2236 assert_eq!(super::schema_lineage("1.0.0-rc.1"), Some((1, 0)));
2237 assert_eq!(super::schema_lineage("1.0.0+build-x"), Some((1, 0)));
2240 assert_eq!(super::schema_lineage("0.2.0+2026-07-21"), Some((0, 2)));
2241 assert_eq!(super::schema_lineage("1.0.0-rc-1+b-2"), Some((1, 0)));
2242 assert_eq!(super::schema_lineage("1.0"), None);
2243 assert_eq!(super::schema_lineage("1.0.0-"), None);
2244 assert_eq!(super::schema_lineage("01.0.0"), None);
2245 }
2246
2247 #[test]
2248 fn version_gate_is_exact_minor_while_major_is_zero() {
2249 use super::NetworkPackage;
2250 assert!(NetworkPackage::supports_schema_version("0.2.0"));
2251 assert!(NetworkPackage::supports_schema_version("0.2.7"));
2252 assert!(!NetworkPackage::supports_schema_version("0.1.1"));
2253 assert!(!NetworkPackage::supports_schema_version("0.3.0"));
2254 assert!(!NetworkPackage::supports_schema_version("1.0.0"));
2255 assert!(!NetworkPackage::supports_schema_version("garbage"));
2256 }
2257
2258 #[test]
2259 fn envelope_shaped_rejection_names_the_format() {
2260 let err = super::NetworkPackage::from_json(
2263 r#"{"model_kind":"balanced","model":{"kind":"balanced"}}"#,
2264 )
2265 .unwrap_err();
2266 assert!(err.to_string().contains(".pio.json"), "got: {err}");
2267 }
2268}