1use std::collections::HashMap;
2use std::fmt;
3use std::path::PathBuf;
4use std::str::FromStr;
5
6use serde::{Deserialize, Serialize};
7
8use bv_types::{Cardinality, TypeRef};
9
10use crate::error::{BvError, Result};
11
12#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize, Default)]
14#[serde(rename_all = "lowercase")]
15pub enum Tier {
16 Core,
18 #[default]
20 Community,
21 Experimental,
23}
24
25impl Tier {
26 pub fn as_str(&self) -> &'static str {
27 match self {
28 Tier::Core => "core",
29 Tier::Community => "community",
30 Tier::Experimental => "experimental",
31 }
32 }
33}
34
35impl fmt::Display for Tier {
36 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
37 f.write_str(self.as_str())
38 }
39}
40
41#[derive(Debug, Clone, PartialEq, Eq, PartialOrd, Ord)]
43pub struct CudaVersion {
44 pub major: u32,
45 pub minor: u32,
46}
47
48impl fmt::Display for CudaVersion {
49 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
50 write!(f, "{}.{}", self.major, self.minor)
51 }
52}
53
54impl FromStr for CudaVersion {
55 type Err = String;
56
57 fn from_str(s: &str) -> std::result::Result<Self, Self::Err> {
58 let (maj, min) = s
59 .split_once('.')
60 .ok_or_else(|| format!("expected 'major.minor', got '{s}'"))?;
61 Ok(CudaVersion {
62 major: maj
63 .parse()
64 .map_err(|_| format!("invalid major version '{maj}'"))?,
65 minor: min
66 .parse()
67 .map_err(|_| format!("invalid minor version '{min}'"))?,
68 })
69 }
70}
71
72impl TryFrom<String> for CudaVersion {
73 type Error = String;
74 fn try_from(s: String) -> std::result::Result<Self, Self::Error> {
75 s.parse()
76 }
77}
78
79impl From<CudaVersion> for String {
80 fn from(v: CudaVersion) -> String {
81 v.to_string()
82 }
83}
84
85impl Serialize for CudaVersion {
86 fn serialize<S: serde::Serializer>(&self, s: S) -> std::result::Result<S::Ok, S::Error> {
87 s.serialize_str(&self.to_string())
88 }
89}
90
91impl<'de> Deserialize<'de> for CudaVersion {
92 fn deserialize<D: serde::Deserializer<'de>>(d: D) -> std::result::Result<Self, D::Error> {
93 let s = String::deserialize(d)?;
94 s.parse().map_err(serde::de::Error::custom)
95 }
96}
97
98#[derive(Debug, Clone, Serialize, Deserialize)]
99pub struct GpuSpec {
100 pub required: bool,
101 pub min_vram_gb: Option<u32>,
102 pub cuda_version: Option<CudaVersion>,
103}
104
105#[derive(Debug, Clone, Serialize, Deserialize)]
106pub struct HardwareSpec {
107 pub gpu: Option<GpuSpec>,
108 pub cpu_cores: Option<u32>,
109 pub ram_gb: Option<f64>,
110 pub disk_gb: Option<f64>,
111}
112
113impl HardwareSpec {
114 pub fn check_against(
117 &self,
118 detected: &crate::hardware::DetectedHardware,
119 ) -> Vec<crate::hardware::HardwareMismatch> {
120 use crate::hardware::HardwareMismatch;
121 let mut out = Vec::new();
122
123 if let Some(gpu_req) = &self.gpu
124 && gpu_req.required
125 {
126 if detected.gpus.is_empty() {
127 out.push(HardwareMismatch::NoGpu);
128 } else {
129 if let Some(min_vram) = gpu_req.min_vram_gb {
130 let best_vram_mb = detected.gpus.iter().map(|g| g.vram_mb).max().unwrap_or(0);
131 let best_vram_gb = (best_vram_mb as f64 / 1024.0).floor() as u32;
132 if best_vram_gb < min_vram {
133 out.push(HardwareMismatch::InsufficientVram {
134 required_gb: min_vram,
135 available_gb: best_vram_gb,
136 });
137 }
138 }
139 if let Some(min_cuda) = &gpu_req.cuda_version {
140 let best_cuda = detected
141 .gpus
142 .iter()
143 .filter_map(|g| g.cuda_version.as_ref())
144 .max();
145 match best_cuda {
146 None => out.push(HardwareMismatch::NoCuda {
147 required: min_cuda.clone(),
148 }),
149 Some(avail) if avail < min_cuda => {
150 out.push(HardwareMismatch::CudaTooOld {
151 required: min_cuda.clone(),
152 available: avail.clone(),
153 });
154 }
155 _ => {}
156 }
157 }
158 }
159 }
160
161 if let Some(min_ram) = self.ram_gb {
162 let avail = detected.ram_gb();
163 if avail < min_ram {
164 out.push(HardwareMismatch::InsufficientRam {
165 required_gb: min_ram,
166 available_gb: avail,
167 });
168 }
169 }
170
171 if let Some(min_disk) = self.disk_gb {
172 let avail = detected.disk_free_gb();
173 if avail < min_disk {
174 out.push(HardwareMismatch::InsufficientDisk {
175 required_gb: min_disk,
176 available_gb: avail,
177 });
178 }
179 }
180
181 out
182 }
183}
184
185#[derive(Debug, Clone, Serialize, Deserialize)]
186pub struct ImageSpec {
187 pub backend: String,
189 pub reference: String,
191 pub digest: Option<String>,
193}
194
195#[derive(Debug, Clone, Serialize, Deserialize)]
196pub struct ReferenceDataSpec {
197 pub id: String,
198 pub version: String,
199 pub required: bool,
200 #[serde(default, skip_serializing_if = "Option::is_none")]
202 pub mount_path: Option<String>,
203 #[serde(default, skip_serializing_if = "Option::is_none")]
205 pub size_bytes: Option<u64>,
206}
207
208#[derive(Debug, Clone, Serialize, Deserialize)]
210pub struct IoSpec {
211 pub name: String,
212 #[serde(rename = "type")]
214 pub r#type: TypeRef,
215 #[serde(default)]
217 pub cardinality: Cardinality,
218 #[serde(default, skip_serializing_if = "Option::is_none")]
220 pub mount: Option<PathBuf>,
221 #[serde(default, skip_serializing_if = "Option::is_none")]
222 pub description: Option<String>,
223 #[serde(default, skip_serializing_if = "Option::is_none")]
224 pub default: Option<String>,
225}
226
227#[derive(Debug, Clone, Serialize, Deserialize)]
228pub struct EntrypointSpec {
229 pub command: String,
230 pub args_template: Option<String>,
231 #[serde(default)]
232 pub env: HashMap<String, String>,
233}
234
235#[derive(Debug, Clone, Serialize, Deserialize)]
240pub struct BinariesSpec {
241 pub exposed: Vec<String>,
242}
243
244#[derive(Debug, Clone, Default, Serialize, Deserialize)]
252pub struct SmokeSpec {
253 #[serde(default, skip_serializing_if = "std::collections::HashMap::is_empty")]
258 pub probes: std::collections::HashMap<String, String>,
259 #[serde(default, skip_serializing_if = "Vec::is_empty")]
263 pub skip: Vec<String>,
264}
265
266#[allow(dead_code)]
267fn default_timeout() -> u64 {
268 60
269}
270
271#[derive(Debug, Clone, Serialize, Deserialize)]
273pub struct SignatureSpec {
274 #[serde(default, skip_serializing_if = "Option::is_none")]
276 pub image: Option<String>,
277 #[serde(default, skip_serializing_if = "Option::is_none")]
279 pub manifest: Option<String>,
280}
281
282#[derive(Debug, Clone, Serialize, Deserialize)]
283pub struct ToolManifest {
284 pub id: String,
285 pub version: String,
286 pub description: Option<String>,
287 pub homepage: Option<String>,
288 pub license: Option<String>,
289 #[serde(default)]
291 pub tier: Tier,
292 #[serde(default, skip_serializing_if = "Vec::is_empty")]
294 pub maintainers: Vec<String>,
295 #[serde(default, skip_serializing_if = "std::ops::Not::not")]
297 pub deprecated: bool,
298 pub image: ImageSpec,
299 pub hardware: HardwareSpec,
300 #[serde(default)]
301 pub reference_data: HashMap<String, ReferenceDataSpec>,
302 #[serde(default)]
304 pub inputs: Vec<IoSpec>,
305 #[serde(default)]
307 pub outputs: Vec<IoSpec>,
308 pub entrypoint: EntrypointSpec,
309 #[serde(default, skip_serializing_if = "Vec::is_empty")]
315 pub cache_paths: Vec<String>,
316 #[serde(default, skip_serializing_if = "Option::is_none")]
319 pub binaries: Option<BinariesSpec>,
320 #[serde(default, skip_serializing_if = "Option::is_none")]
322 pub smoke: Option<SmokeSpec>,
323 #[serde(default, skip_serializing_if = "Option::is_none")]
325 pub signatures: Option<SignatureSpec>,
326}
327
328impl ToolManifest {
329 pub fn has_typed_io(&self) -> bool {
330 !self.inputs.is_empty() || !self.outputs.is_empty()
331 }
332
333 pub fn effective_binaries(&self) -> Vec<&str> {
338 match &self.binaries {
339 Some(b) => b.exposed.iter().map(|s| s.as_str()).collect(),
340 None => {
341 let cmd = &self.entrypoint.command;
342 let name = cmd
343 .rfind('/')
344 .map(|i| &cmd[i + 1..])
345 .unwrap_or(cmd.as_str());
346 vec![name]
347 }
348 }
349 }
350}
351
352#[derive(Debug, Clone, Serialize, Deserialize)]
354pub struct Manifest {
355 pub tool: ToolManifest,
356}
357
358#[derive(Debug)]
359pub struct ValidationError {
360 pub field: String,
361 pub message: String,
362}
363
364impl fmt::Display for ValidationError {
365 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
366 write!(f, "{}: {}", self.field, self.message)
367 }
368}
369
370impl Manifest {
371 pub fn from_toml_str(s: &str) -> Result<Self> {
372 let m: Manifest = toml::from_str(s).map_err(|e| BvError::ManifestParse(e.to_string()))?;
373 m.validate_types()?;
374 Ok(m)
375 }
376
377 pub fn to_toml_string(&self) -> Result<String> {
378 toml::to_string_pretty(self).map_err(|e| BvError::ManifestParse(e.to_string()))
379 }
380
381 fn validate_types(&self) -> Result<()> {
383 let t = &self.tool;
384 for (side, specs) in [("inputs", &t.inputs), ("outputs", &t.outputs)] {
385 for spec in specs {
386 let id = spec.r#type.base_id();
387 if bv_types::lookup(id).is_none() {
388 let suggestion = bv_types::suggest(id)
389 .map(|s| format!(", did you mean `{s}`?"))
390 .unwrap_or_default();
391 return Err(BvError::ManifestParse(format!(
392 "tool.{side}[{}]: unknown type `{id}`{suggestion}",
393 spec.name
394 )));
395 }
396 }
397 }
398 Ok(())
399 }
400
401 pub fn validate(&self) -> std::result::Result<(), Vec<ValidationError>> {
403 let mut errors = Vec::new();
404 let t = &self.tool;
405
406 if t.id.is_empty() {
407 errors.push(ValidationError {
408 field: "tool.id".into(),
409 message: "must not be empty".into(),
410 });
411 }
412 if t.version.is_empty() {
413 errors.push(ValidationError {
414 field: "tool.version".into(),
415 message: "must not be empty".into(),
416 });
417 }
418 if t.image.backend.is_empty() {
419 errors.push(ValidationError {
420 field: "tool.image.backend".into(),
421 message: "must not be empty".into(),
422 });
423 }
424 if t.image.reference.is_empty() {
425 errors.push(ValidationError {
426 field: "tool.image.reference".into(),
427 message: "must not be empty".into(),
428 });
429 }
430 if t.entrypoint.command.is_empty() {
431 errors.push(ValidationError {
432 field: "tool.entrypoint.command".into(),
433 message: "must not be empty".into(),
434 });
435 }
436
437 for spec in &t.inputs {
438 if let Some(mount) = &spec.mount
439 && !mount.is_absolute()
440 {
441 errors.push(ValidationError {
442 field: format!("tool.inputs[{}].mount", spec.name),
443 message: "must be an absolute path".into(),
444 });
445 }
446 }
447 for spec in &t.outputs {
448 if let Some(mount) = &spec.mount
449 && !mount.is_absolute()
450 {
451 errors.push(ValidationError {
452 field: format!("tool.outputs[{}].mount", spec.name),
453 message: "must be an absolute path".into(),
454 });
455 }
456 }
457
458 if let Some(binaries) = &t.binaries {
459 let mut seen = std::collections::HashSet::new();
460 for name in &binaries.exposed {
461 if !seen.insert(name.as_str()) {
462 errors.push(ValidationError {
463 field: "tool.binaries.exposed".into(),
464 message: format!("duplicate binary name '{name}'"),
465 });
466 }
467 }
468 if !binaries.exposed.is_empty() {
469 let cmd = &t.entrypoint.command;
470 let basename = cmd.rfind('/').map(|i| &cmd[i + 1..]).unwrap_or(cmd);
471 if !binaries.exposed.iter().any(|b| b == basename) {
472 errors.push(ValidationError {
473 field: "tool.binaries.exposed".into(),
474 message: format!(
475 "entrypoint command '{basename}' must be listed in exposed"
476 ),
477 });
478 }
479 }
480 }
481
482 if errors.is_empty() {
483 Ok(())
484 } else {
485 Err(errors)
486 }
487 }
488}
489
490#[cfg(test)]
491mod tests {
492 use super::*;
493
494 const SAMPLE: &str = r#"
495[tool]
496id = "bwa"
497version = "0.7.17"
498description = "BWA short-read aligner"
499homepage = "http://bio-bwa.sourceforge.net/"
500license = "GPL-3.0"
501
502[tool.image]
503backend = "docker"
504reference = "biocontainers/bwa:0.7.17--h5bf99c6_8"
505digest = "sha256:abcdef1234567890abcdef1234567890abcdef1234567890abcdef1234567890ab"
506
507[tool.hardware]
508cpu_cores = 8
509ram_gb = 32.0
510disk_gb = 50.0
511
512[tool.hardware.gpu]
513required = false
514
515[[tool.inputs]]
516name = "reads_r1"
517type = "fastq"
518cardinality = "one"
519description = "Forward reads"
520
521[[tool.inputs]]
522name = "reads_r2"
523type = "fastq"
524cardinality = "optional"
525description = "Reverse reads (paired-end)"
526
527[[tool.outputs]]
528name = "alignment"
529type = "bam"
530description = "Aligned reads"
531
532[tool.entrypoint]
533command = "bwa"
534args_template = "mem -t {cpu_cores} {reference} {reads_r1} {reads_r2}"
535
536[tool.entrypoint.env]
537MALLOC_ARENA_MAX = "4"
538"#;
539
540 const SAMPLE_NO_IO: &str = r#"
541[tool]
542id = "mytool"
543version = "1.0.0"
544
545[tool.image]
546backend = "docker"
547reference = "example/mytool:1.0.0"
548
549[tool.hardware]
550
551[tool.entrypoint]
552command = "mytool"
553"#;
554
555 #[test]
556 fn round_trip() {
557 let manifest = Manifest::from_toml_str(SAMPLE).expect("parse failed");
558 assert_eq!(manifest.tool.id, "bwa");
559 assert_eq!(manifest.tool.version, "0.7.17");
560 assert_eq!(manifest.tool.image.backend, "docker");
561 assert_eq!(manifest.tool.inputs.len(), 2);
562 assert_eq!(manifest.tool.outputs.len(), 1);
563 assert_eq!(manifest.tool.inputs[0].cardinality, Cardinality::One);
564 assert_eq!(manifest.tool.inputs[1].cardinality, Cardinality::Optional);
565
566 let serialised = manifest.to_toml_string().expect("serialise failed");
567 let reparsed = Manifest::from_toml_str(&serialised).expect("reparse failed");
568 assert_eq!(reparsed.tool.id, manifest.tool.id);
569 assert_eq!(reparsed.tool.version, manifest.tool.version);
570 }
571
572 #[test]
573 fn no_io_parses_unchanged() {
574 let m = Manifest::from_toml_str(SAMPLE_NO_IO).expect("parse failed");
575 assert!(m.tool.inputs.is_empty());
576 assert!(m.tool.outputs.is_empty());
577 assert!(!m.tool.has_typed_io());
578 }
579
580 #[test]
581 fn typeref_params_parsed() {
582 let s = r#"
583[tool]
584id = "t"
585version = "1.0.0"
586
587[tool.image]
588backend = "docker"
589reference = "example/t:1.0.0"
590
591[tool.hardware]
592
593[[tool.inputs]]
594name = "seqs"
595type = "fasta[protein]"
596cardinality = "one"
597
598[tool.entrypoint]
599command = "t"
600"#;
601 let m = Manifest::from_toml_str(s).unwrap();
602 assert_eq!(m.tool.inputs[0].r#type.params, vec!["protein"]);
603 }
604
605 #[test]
606 fn unknown_type_error() {
607 let s = r#"
608[tool]
609id = "t"
610version = "1.0.0"
611
612[tool.image]
613backend = "docker"
614reference = "example/t:1.0.0"
615
616[tool.hardware]
617
618[[tool.inputs]]
619name = "seqs"
620type = "protien_fasta"
621cardinality = "one"
622
623[tool.entrypoint]
624command = "t"
625"#;
626 let err = Manifest::from_toml_str(s).unwrap_err();
627 let msg = err.to_string();
628 assert!(msg.contains("unknown type"), "got: {msg}");
629 }
630
631 #[test]
632 fn cuda_version_ordering() {
633 let v12_1: CudaVersion = "12.1".parse().unwrap();
634 let v12_4: CudaVersion = "12.4".parse().unwrap();
635 let v13_0: CudaVersion = "13.0".parse().unwrap();
636 assert!(v12_1 < v12_4);
637 assert!(v12_4 < v13_0);
638 assert_eq!(v12_1, "12.1".parse::<CudaVersion>().unwrap());
639 }
640
641 #[test]
642 fn validate_catches_empty_id() {
643 let mut manifest = Manifest::from_toml_str(SAMPLE).unwrap();
644 manifest.tool.id = String::new();
645 let errs = manifest.validate().unwrap_err();
646 assert!(errs.iter().any(|e| e.field == "tool.id"));
647 }
648
649 #[test]
650 fn registry_manifests_parse() {
651 let registry = concat!(env!("CARGO_MANIFEST_DIR"), "/../../bv-registry/tools");
652 let Ok(read) = std::fs::read_dir(registry) else {
653 return;
654 };
655 for entry in read {
656 let tool_dir = entry.unwrap().path();
657 if !tool_dir.is_dir() {
658 continue;
659 }
660 for version_entry in std::fs::read_dir(&tool_dir).unwrap() {
661 let path = version_entry.unwrap().path();
662 if path.extension().is_some_and(|e| e == "toml") {
663 let s = std::fs::read_to_string(&path)
664 .unwrap_or_else(|_| panic!("failed to read {}", path.display()));
665 Manifest::from_toml_str(&s)
666 .unwrap_or_else(|e| panic!("{}: {e}", path.display()));
667 }
668 }
669 }
670 }
671}