1use crate::config::E2eConfig;
7use crate::escape::{escape_csharp, sanitize_filename, sanitize_ident};
8use crate::field_access::FieldResolver;
9use crate::fixture::{Assertion, CallbackAction, Fixture, FixtureGroup, HttpFixture, ValidationErrorExpectation};
10use alef_core::backend::GeneratedFile;
11use alef_core::config::ResolvedCrateConfig;
12use alef_core::hash::{self, CommentStyle};
13use alef_core::template_versions as tv;
14use anyhow::Result;
15use heck::{ToLowerCamelCase, ToUpperCamelCase};
16use std::collections::HashMap;
17use std::fmt::Write as FmtWrite;
18use std::hash::{Hash, Hasher};
19use std::path::PathBuf;
20
21use super::E2eCodegen;
22use super::client;
23
24pub struct CSharpCodegen;
26
27impl E2eCodegen for CSharpCodegen {
28 fn generate(
29 &self,
30 groups: &[FixtureGroup],
31 e2e_config: &E2eConfig,
32 config: &ResolvedCrateConfig,
33 _type_defs: &[alef_core::ir::TypeDef],
34 _enums: &[alef_core::ir::EnumDef],
35 ) -> Result<Vec<GeneratedFile>> {
36 let lang = self.language_name();
37 let output_base = PathBuf::from(e2e_config.effective_output()).join(lang);
38
39 let mut files = Vec::new();
40
41 let call = &e2e_config.call;
43 let overrides = call.overrides.get(lang);
44 let function_name = overrides
45 .and_then(|o| o.function.as_ref())
46 .cloned()
47 .unwrap_or_else(|| call.function.to_upper_camel_case());
48 let class_name = overrides
49 .and_then(|o| o.class.as_ref())
50 .cloned()
51 .unwrap_or_else(|| format!("{}Lib", config.name.to_upper_camel_case()));
52 let exception_class = format!("{}Exception", config.name.to_upper_camel_case());
54 let namespace = overrides
55 .and_then(|o| o.module.as_ref())
56 .cloned()
57 .or_else(|| config.csharp.as_ref().and_then(|cs| cs.namespace.clone()))
58 .unwrap_or_else(|| {
59 if call.module.is_empty() {
60 config.name.to_upper_camel_case()
61 } else {
62 call.module.to_upper_camel_case()
63 }
64 });
65 let result_is_simple = call.result_is_simple || overrides.is_some_and(|o| o.result_is_simple);
66 let result_var = &call.result_var;
67 let is_async = call.r#async;
68
69 let cs_pkg = e2e_config.resolve_package("csharp");
71 let pkg_name = cs_pkg
72 .as_ref()
73 .and_then(|p| p.name.as_ref())
74 .cloned()
75 .unwrap_or_else(|| config.name.to_upper_camel_case());
76 let pkg_path = cs_pkg
78 .as_ref()
79 .and_then(|p| p.path.as_ref())
80 .cloned()
81 .unwrap_or_else(|| format!("../../packages/csharp/{pkg_name}/{pkg_name}.csproj"));
82 let pkg_version = cs_pkg
83 .as_ref()
84 .and_then(|p| p.version.as_ref())
85 .cloned()
86 .or_else(|| config.resolved_version())
87 .unwrap_or_else(|| "0.1.0".to_string());
88
89 let csproj_name = format!("{pkg_name}.E2eTests.csproj");
92 files.push(GeneratedFile {
93 path: output_base.join(&csproj_name),
94 content: render_csproj(&pkg_name, &pkg_path, &pkg_version, e2e_config.dep_mode),
95 generated_header: false,
96 });
97
98 let needs_mock_server = groups
106 .iter()
107 .flat_map(|g| g.fixtures.iter())
108 .any(|f| f.needs_mock_server());
109
110 files.push(GeneratedFile {
115 path: output_base.join("TestSetup.cs"),
116 content: render_test_setup(needs_mock_server, &e2e_config.test_documents_dir, &namespace),
117 generated_header: true,
118 });
119
120 let tests_base = output_base.join("tests");
122 let field_resolver = FieldResolver::new(
123 &e2e_config.fields,
124 &e2e_config.fields_optional,
125 &e2e_config.result_fields,
126 &e2e_config.fields_array,
127 &std::collections::HashSet::new(),
128 );
129
130 static EMPTY_ENUM_FIELDS: std::sync::LazyLock<HashMap<String, String>> = std::sync::LazyLock::new(HashMap::new);
132 let enum_fields = overrides.map(|o| &o.enum_fields).unwrap_or(&EMPTY_ENUM_FIELDS);
133
134 let mut effective_nested_types: HashMap<String, String> = HashMap::new();
136 if let Some(overrides_map) = overrides.map(|o| &o.nested_types) {
137 effective_nested_types.extend(overrides_map.clone());
138 }
139
140 for group in groups {
141 let active: Vec<&Fixture> = group
142 .fixtures
143 .iter()
144 .filter(|f| super::should_include_fixture(f, lang, e2e_config))
145 .collect();
146
147 if active.is_empty() {
148 continue;
149 }
150
151 let test_class = format!("{}Tests", sanitize_filename(&group.category).to_upper_camel_case());
152 let filename = format!("{test_class}.cs");
153 let content = render_test_file(
154 &group.category,
155 &active,
156 &namespace,
157 &class_name,
158 &function_name,
159 &exception_class,
160 result_var,
161 &test_class,
162 &e2e_config.call.args,
163 &field_resolver,
164 result_is_simple,
165 is_async,
166 e2e_config,
167 enum_fields,
168 &effective_nested_types,
169 &config.adapters,
170 );
171 files.push(GeneratedFile {
172 path: tests_base.join(filename),
173 content,
174 generated_header: true,
175 });
176 }
177
178 Ok(files)
179 }
180
181 fn language_name(&self) -> &'static str {
182 "csharp"
183 }
184}
185
186fn render_csproj(pkg_name: &str, pkg_path: &str, pkg_version: &str, dep_mode: crate::config::DependencyMode) -> String {
191 let pkg_ref = match dep_mode {
192 crate::config::DependencyMode::Registry => {
193 format!(" <PackageReference Include=\"{pkg_name}\" Version=\"{pkg_version}\" />")
194 }
195 crate::config::DependencyMode::Local => {
196 format!(" <ProjectReference Include=\"{pkg_path}\" />")
197 }
198 };
199 crate::template_env::render(
200 "csharp/csproj.jinja",
201 minijinja::context! {
202 pkg_ref => pkg_ref,
203 microsoft_net_test_sdk_version => tv::nuget::MICROSOFT_NET_TEST_SDK,
204 xunit_version => tv::nuget::XUNIT,
205 xunit_runner_version => tv::nuget::XUNIT_RUNNER_VISUALSTUDIO,
206 },
207 )
208}
209
210fn render_test_setup(needs_mock_server: bool, test_documents_dir: &str, namespace: &str) -> String {
211 let mut out = String::new();
212 out.push_str(&hash::header(CommentStyle::DoubleSlash));
213 out.push_str("using System;\n");
214 out.push_str("using System.IO;\n");
215 if needs_mock_server {
216 out.push_str("using System.Diagnostics;\n");
217 }
218 out.push_str("using System.Runtime.CompilerServices;\n\n");
219 let _ = writeln!(out, "namespace {namespace};\n");
220 out.push_str("internal static class TestSetup\n");
221 out.push_str("{\n");
222 if needs_mock_server {
223 out.push_str(" private static Process? _mockServer;\n\n");
224 }
225 out.push_str(" [ModuleInitializer]\n");
226 out.push_str(" internal static void Init()\n");
227 out.push_str(" {\n");
228 let _ = writeln!(
229 out,
230 " // Walk up from the assembly directory until we find the repo root."
231 );
232 let _ = writeln!(
233 out,
234 " // Prefer a sibling {test_documents_dir}/ directory (chdir into it so that"
235 );
236 out.push_str(" // fixture paths like \"docx/fake.docx\" resolve relative to it). If that\n");
237 out.push_str(" // is absent (web-crawler-style repos with no document fixtures), fall\n");
238 out.push_str(" // back to a sibling alef.toml or fixtures/ marker as the repo root.\n");
239 out.push_str(" var dir = new DirectoryInfo(AppContext.BaseDirectory);\n");
240 out.push_str(" DirectoryInfo? repoRoot = null;\n");
241 out.push_str(" while (dir != null)\n");
242 out.push_str(" {\n");
243 let _ = writeln!(
244 out,
245 " var documentsCandidate = Path.Combine(dir.FullName, \"{test_documents_dir}\");"
246 );
247 out.push_str(" if (Directory.Exists(documentsCandidate))\n");
248 out.push_str(" {\n");
249 out.push_str(" repoRoot = dir;\n");
250 out.push_str(" Directory.SetCurrentDirectory(documentsCandidate);\n");
251 out.push_str(" break;\n");
252 out.push_str(" }\n");
253 out.push_str(" if (File.Exists(Path.Combine(dir.FullName, \"alef.toml\"))\n");
254 out.push_str(" || Directory.Exists(Path.Combine(dir.FullName, \"fixtures\")))\n");
255 out.push_str(" {\n");
256 out.push_str(" repoRoot = dir;\n");
257 out.push_str(" break;\n");
258 out.push_str(" }\n");
259 out.push_str(" dir = dir.Parent;\n");
260 out.push_str(" }\n");
261 if needs_mock_server {
262 out.push('\n');
263 out.push_str(" // Spawn the mock-server binary before any test loads, mirroring the\n");
264 out.push_str(" // Ruby spec_helper / Python conftest pattern. Honors a pre-set\n");
265 out.push_str(" // MOCK_SERVER_URL (e.g. set by `task` or CI) by skipping the spawn.\n");
266 out.push_str(" // Without this, every fixture-bound test failed with\n");
267 out.push_str(" // `<Lib>Exception : builder error` because reqwest rejected the\n");
268 out.push_str(" // relative URL produced by `\"\" + \"/fixtures/<id>\"`.\n");
269 out.push_str(" var preset = Environment.GetEnvironmentVariable(\"MOCK_SERVER_URL\");\n");
270 out.push_str(" if (!string.IsNullOrEmpty(preset))\n");
271 out.push_str(" {\n");
272 out.push_str(" return;\n");
273 out.push_str(" }\n");
274 out.push_str(" if (repoRoot == null)\n");
275 out.push_str(" {\n");
276 let _ = writeln!(
277 out,
278 " throw new InvalidOperationException(\"TestSetup: could not locate repo root ({test_documents_dir}/, alef.toml, or fixtures/ not found in any ancestor of \" + AppContext.BaseDirectory + \")\");"
279 );
280 out.push_str(" }\n");
281 out.push_str(" var bin = Path.Combine(\n");
282 out.push_str(" repoRoot.FullName,\n");
283 out.push_str(" \"e2e\", \"rust\", \"target\", \"release\", \"mock-server\");\n");
284 out.push_str(" if (OperatingSystem.IsWindows())\n");
285 out.push_str(" {\n");
286 out.push_str(" bin += \".exe\";\n");
287 out.push_str(" }\n");
288 out.push_str(" var fixturesDir = Path.Combine(repoRoot.FullName, \"fixtures\");\n");
289 out.push_str(" if (!File.Exists(bin))\n");
290 out.push_str(" {\n");
291 out.push_str(" throw new InvalidOperationException(\n");
292 out.push_str(" $\"TestSetup: mock-server binary not found at {bin} — run: cargo build --manifest-path e2e/rust/Cargo.toml --bin mock-server --release\");\n");
293 out.push_str(" }\n");
294 out.push_str(" var psi = new ProcessStartInfo\n");
295 out.push_str(" {\n");
296 out.push_str(" FileName = bin,\n");
297 out.push_str(" Arguments = $\"\\\"{fixturesDir}\\\"\",\n");
298 out.push_str(" RedirectStandardInput = true,\n");
299 out.push_str(" RedirectStandardOutput = true,\n");
300 out.push_str(" RedirectStandardError = true,\n");
301 out.push_str(" UseShellExecute = false,\n");
302 out.push_str(" };\n");
303 out.push_str(" _mockServer = Process.Start(psi)\n");
304 out.push_str(
305 " ?? throw new InvalidOperationException(\"TestSetup: failed to start mock-server\");\n",
306 );
307 out.push_str(" // The mock-server prints MOCK_SERVER_URL=<url>, then optionally\n");
308 out.push_str(" // MOCK_SERVERS={...} for host-root fixtures. Read up to 16 lines.\n");
309 out.push_str(" string? url = null;\n");
310 out.push_str(" for (int i = 0; i < 16; i++)\n");
311 out.push_str(" {\n");
312 out.push_str(" var line = _mockServer.StandardOutput.ReadLine();\n");
313 out.push_str(" if (line == null)\n");
314 out.push_str(" {\n");
315 out.push_str(" break;\n");
316 out.push_str(" }\n");
317 out.push_str(" const string urlPrefix = \"MOCK_SERVER_URL=\";\n");
318 out.push_str(" const string serversPrefix = \"MOCK_SERVERS=\";\n");
319 out.push_str(" if (line.StartsWith(urlPrefix, StringComparison.Ordinal))\n");
320 out.push_str(" {\n");
321 out.push_str(" url = line.Substring(urlPrefix.Length).Trim();\n");
322 out.push_str(" }\n");
323 out.push_str(" else if (line.StartsWith(serversPrefix, StringComparison.Ordinal))\n");
324 out.push_str(" {\n");
325 out.push_str(" var jsonVal = line.Substring(serversPrefix.Length).Trim();\n");
326 out.push_str(" Environment.SetEnvironmentVariable(\"MOCK_SERVERS\", jsonVal);\n");
327 out.push_str(" // Parse JSON map and set per-fixture env vars (MOCK_SERVER_<FIXTURE_ID>).\n");
328 out.push_str(" var matches = System.Text.RegularExpressions.Regex.Matches(\n");
329 out.push_str(" jsonVal, \"\\\"([^\\\"]+)\\\":\\\"([^\\\"]+)\\\"\");\n");
330 out.push_str(" foreach (System.Text.RegularExpressions.Match m in matches)\n");
331 out.push_str(" {\n");
332 out.push_str(" Environment.SetEnvironmentVariable(\n");
333 out.push_str(" \"MOCK_SERVER_\" + m.Groups[1].Value.ToUpperInvariant(),\n");
334 out.push_str(" m.Groups[2].Value);\n");
335 out.push_str(" }\n");
336 out.push_str(" break;\n");
337 out.push_str(" }\n");
338 out.push_str(" else if (url != null)\n");
339 out.push_str(" {\n");
340 out.push_str(" break;\n");
341 out.push_str(" }\n");
342 out.push_str(" }\n");
343 out.push_str(" if (string.IsNullOrEmpty(url))\n");
344 out.push_str(" {\n");
345 out.push_str(" try { _mockServer.Kill(true); } catch { }\n");
346 out.push_str(" throw new InvalidOperationException(\"TestSetup: mock-server did not emit MOCK_SERVER_URL\");\n");
347 out.push_str(" }\n");
348 out.push_str(" Environment.SetEnvironmentVariable(\"MOCK_SERVER_URL\", url);\n");
349 out.push_str(" // TCP-readiness probe: ensure axum::serve is accepting before tests start.\n");
350 out.push_str(" // The mock-server binds the TcpListener synchronously then prints the URL\n");
351 out.push_str(" // before tokio::spawn(axum::serve(...)) is polled, so under xUnit\n");
352 out.push_str(" // class-parallel default tests can race startup. Poll-connect (max 5s,\n");
353 out.push_str(" // 50ms backoff) until success.\n");
354 out.push_str(" var healthUri = new System.Uri(url);\n");
355 out.push_str(" var deadline = System.Diagnostics.Stopwatch.StartNew();\n");
356 out.push_str(" while (deadline.ElapsedMilliseconds < 5000)\n");
357 out.push_str(" {\n");
358 out.push_str(" try\n");
359 out.push_str(" {\n");
360 out.push_str(" using var probe = new System.Net.Sockets.TcpClient();\n");
361 out.push_str(" var task = probe.ConnectAsync(healthUri.Host, healthUri.Port);\n");
362 out.push_str(" if (task.Wait(100) && probe.Connected) { break; }\n");
363 out.push_str(" }\n");
364 out.push_str(" catch (System.Exception) { }\n");
365 out.push_str(" System.Threading.Thread.Sleep(50);\n");
366 out.push_str(" }\n");
367 out.push_str(" // Drain stdout/stderr so the child does not block on a full pipe.\n");
368 out.push_str(" var server = _mockServer;\n");
369 out.push_str(" var stdoutThread = new System.Threading.Thread(() =>\n");
370 out.push_str(" {\n");
371 out.push_str(" try { server.StandardOutput.ReadToEnd(); } catch { }\n");
372 out.push_str(" }) { IsBackground = true };\n");
373 out.push_str(" stdoutThread.Start();\n");
374 out.push_str(" var stderrThread = new System.Threading.Thread(() =>\n");
375 out.push_str(" {\n");
376 out.push_str(" try { server.StandardError.ReadToEnd(); } catch { }\n");
377 out.push_str(" }) { IsBackground = true };\n");
378 out.push_str(" stderrThread.Start();\n");
379 out.push_str(" // Tear the child down on assembly unload / process exit by closing\n");
380 out.push_str(" // its stdin (the mock-server treats stdin EOF as a shutdown signal).\n");
381 out.push_str(" AppDomain.CurrentDomain.ProcessExit += (_, _) =>\n");
382 out.push_str(" {\n");
383 out.push_str(" try { _mockServer.StandardInput.Close(); } catch { }\n");
384 out.push_str(" try { if (!_mockServer.WaitForExit(2000)) { _mockServer.Kill(true); } } catch { }\n");
385 out.push_str(" };\n");
386 }
387 out.push_str(" }\n");
388 out.push_str("}\n");
389 out
390}
391
392#[allow(clippy::too_many_arguments)]
393fn render_test_file(
394 category: &str,
395 fixtures: &[&Fixture],
396 namespace: &str,
397 class_name: &str,
398 function_name: &str,
399 exception_class: &str,
400 result_var: &str,
401 test_class: &str,
402 args: &[crate::config::ArgMapping],
403 field_resolver: &FieldResolver,
404 result_is_simple: bool,
405 is_async: bool,
406 e2e_config: &E2eConfig,
407 enum_fields: &HashMap<String, String>,
408 nested_types: &HashMap<String, String>,
409 adapters: &[alef_core::config::extras::AdapterConfig],
410) -> String {
411 let mut using_imports = String::new();
413 using_imports.push_str("using System;\n");
414 using_imports.push_str("using System.Collections.Generic;\n");
415 using_imports.push_str("using System.Linq;\n");
416 using_imports.push_str("using System.Net.Http;\n");
417 using_imports.push_str("using System.Text;\n");
418 using_imports.push_str("using System.Text.Json;\n");
419 using_imports.push_str("using System.Text.Json.Serialization;\n");
420 using_imports.push_str("using System.Threading.Tasks;\n");
421 using_imports.push_str("using Xunit;\n");
422 using_imports.push_str(&format!("using {namespace};\n"));
423 using_imports.push_str(&format!("using static {namespace}.{class_name};\n"));
424
425 let config_options_field = " private static readonly JsonSerializerOptions ConfigOptions = new() { Converters = { new JsonStringEnumConverter(JsonNamingPolicy.SnakeCaseLower) }, DefaultIgnoreCondition = JsonIgnoreCondition.WhenWritingDefault };";
427
428 let mut visitor_class_decls: Vec<String> = Vec::new();
432
433 let mut fixtures_body = String::new();
435 for (i, fixture) in fixtures.iter().enumerate() {
436 render_test_method(
437 &mut fixtures_body,
438 &mut visitor_class_decls,
439 fixture,
440 class_name,
441 function_name,
442 exception_class,
443 result_var,
444 args,
445 field_resolver,
446 result_is_simple,
447 is_async,
448 e2e_config,
449 enum_fields,
450 nested_types,
451 adapters,
452 );
453 if i + 1 < fixtures.len() {
454 fixtures_body.push('\n');
455 }
456 }
457
458 let mut visitor_classes_str = String::new();
460 for (i, decl) in visitor_class_decls.iter().enumerate() {
461 if i > 0 {
462 visitor_classes_str.push('\n');
463 }
464 visitor_classes_str.push('\n');
465 for line in decl.lines() {
467 visitor_classes_str.push_str(" ");
468 visitor_classes_str.push_str(line);
469 visitor_classes_str.push('\n');
470 }
471 }
472
473 let ctx = minijinja::context! {
474 header => hash::header(CommentStyle::DoubleSlash),
475 using_imports => using_imports,
476 category => category,
477 namespace => namespace,
478 test_class => test_class,
479 config_options_field => config_options_field,
480 fixtures_body => fixtures_body,
481 visitor_class_decls => visitor_classes_str,
482 };
483
484 crate::template_env::render("csharp/test_file.jinja", ctx)
485}
486
487struct CSharpTestClientRenderer;
496
497fn to_csharp_http_method(method: &str) -> String {
499 let lower = method.to_ascii_lowercase();
500 let mut chars = lower.chars();
501 match chars.next() {
502 Some(c) => c.to_ascii_uppercase().to_string() + chars.as_str(),
503 None => String::new(),
504 }
505}
506
507const CSHARP_RESTRICTED_REQUEST_HEADERS: &[&str] = &[
511 "content-length",
512 "host",
513 "connection",
514 "expect",
515 "transfer-encoding",
516 "upgrade",
517 "content-type",
520 "content-encoding",
522 "content-language",
523 "content-location",
524 "content-md5",
525 "content-range",
526 "content-disposition",
527];
528
529fn is_csharp_content_header(name: &str) -> bool {
533 matches!(
534 name.to_ascii_lowercase().as_str(),
535 "content-type"
536 | "content-length"
537 | "content-encoding"
538 | "content-language"
539 | "content-location"
540 | "content-md5"
541 | "content-range"
542 | "content-disposition"
543 | "expires"
544 | "last-modified"
545 | "allow"
546 )
547}
548
549impl client::TestClientRenderer for CSharpTestClientRenderer {
550 fn language_name(&self) -> &'static str {
551 "csharp"
552 }
553
554 fn sanitize_test_name(&self, id: &str) -> String {
556 id.to_upper_camel_case()
557 }
558
559 fn render_test_open(&self, out: &mut String, fn_name: &str, description: &str, skip_reason: Option<&str>) {
562 let escaped_reason = skip_reason.map(escape_csharp);
563 let rendered = crate::template_env::render(
564 "csharp/http_test_open.jinja",
565 minijinja::context! {
566 fn_name => fn_name,
567 description => description,
568 skip_reason => escaped_reason,
569 },
570 );
571 out.push_str(&rendered);
572 }
573
574 fn render_test_close(&self, out: &mut String) {
576 let rendered = crate::template_env::render("csharp/http_test_close.jinja", minijinja::context! {});
577 out.push_str(&rendered);
578 }
579
580 fn render_call(&self, out: &mut String, ctx: &client::CallCtx<'_>) {
585 let method = to_csharp_http_method(ctx.method);
586 let path = escape_csharp(ctx.path);
587
588 out.push_str(" var baseUrl = Environment.GetEnvironmentVariable(\"MOCK_SERVER_URL\") ?? \"http://localhost:8080\";\n");
589 out.push_str(
592 " using var handler = new System.Net.Http.HttpClientHandler { AllowAutoRedirect = false };\n",
593 );
594 out.push_str(" using var client = new System.Net.Http.HttpClient(handler);\n");
595 out.push_str(&format!(" var request = new System.Net.Http.HttpRequestMessage(System.Net.Http.HttpMethod.{method}, $\"{{baseUrl}}{path}\");\n"));
596
597 if let Some(body) = ctx.body {
599 let content_type = ctx.content_type.unwrap_or("application/json");
600 let json_str = serde_json::to_string(body).unwrap_or_default();
601 let escaped = escape_csharp(&json_str);
602 out.push_str(&format!(" request.Content = new System.Net.Http.StringContent(\"{escaped}\", System.Text.Encoding.UTF8, \"{content_type}\");\n"));
603 }
604
605 for (name, value) in ctx.headers {
607 if CSHARP_RESTRICTED_REQUEST_HEADERS.contains(&name.to_lowercase().as_str()) {
608 continue;
609 }
610 let escaped_name = escape_csharp(name);
611 let escaped_value = escape_csharp(value);
612 out.push_str(&format!(
613 " request.Headers.Add(\"{escaped_name}\", \"{escaped_value}\");\n"
614 ));
615 }
616
617 if !ctx.cookies.is_empty() {
619 let mut pairs: Vec<String> = ctx.cookies.iter().map(|(k, v)| format!("{k}={v}")).collect();
620 pairs.sort();
621 let cookie_header = escape_csharp(&pairs.join("; "));
622 out.push_str(&format!(
623 " request.Headers.Add(\"Cookie\", \"{cookie_header}\");\n"
624 ));
625 }
626
627 out.push_str(" var response = await client.SendAsync(request);\n");
628 }
629
630 fn render_assert_status(&self, out: &mut String, _response_var: &str, status: u16) {
632 out.push_str(&format!(" Assert.Equal({status}, (int)response.StatusCode);\n"));
633 }
634
635 fn render_assert_header(&self, out: &mut String, _response_var: &str, name: &str, expected: &str) {
640 let target = if is_csharp_content_header(name) {
641 "response.Content.Headers"
642 } else {
643 "response.Headers"
644 };
645 let escaped_name = escape_csharp(name);
646 match expected {
647 "<<present>>" => {
648 out.push_str(&format!(" Assert.True({target}.Contains(\"{escaped_name}\"), \"expected header {escaped_name} to be present\");\n"));
649 }
650 "<<absent>>" => {
651 out.push_str(&format!(" Assert.False({target}.Contains(\"{escaped_name}\"), \"expected header {escaped_name} to be absent\");\n"));
652 }
653 "<<uuid>>" => {
654 out.push_str(&format!(" Assert.True({target}.TryGetValues(\"{escaped_name}\", out var _uuidHdr) && System.Text.RegularExpressions.Regex.IsMatch(string.Join(\", \", _uuidHdr), @\"^[0-9a-fA-F]{{8}}-[0-9a-fA-F]{{4}}-[0-9a-fA-F]{{4}}-[0-9a-fA-F]{{4}}-[0-9a-fA-F]{{12}}$\"), \"header {escaped_name} is not a UUID\");\n"));
656 }
657 literal => {
658 let var_name = format!("hdr{}", sanitize_ident(name));
661 let escaped_value = escape_csharp(literal);
662 out.push_str(&format!(" Assert.True({target}.TryGetValues(\"{escaped_name}\", out var {var_name}) && {var_name}.Any(v => v.Contains(\"{escaped_value}\")), \"header {escaped_name} mismatch\");\n"));
663 }
664 }
665 }
666
667 fn render_assert_json_body(&self, out: &mut String, _response_var: &str, expected: &serde_json::Value) {
671 match expected {
672 serde_json::Value::Object(_) | serde_json::Value::Array(_) => {
673 let json_str = serde_json::to_string(expected).unwrap_or_default();
674 let escaped = escape_csharp(&json_str);
675 out.push_str(" var bodyText = await response.Content.ReadAsStringAsync();\n");
676 out.push_str(" var body = JsonDocument.Parse(bodyText).RootElement;\n");
677 out.push_str(&format!(
678 " var expectedBody = JsonDocument.Parse(\"{escaped}\").RootElement;\n"
679 ));
680 out.push_str(" Assert.Equal(expectedBody.GetRawText(), body.GetRawText());\n");
681 }
682 serde_json::Value::String(s) => {
683 let escaped = escape_csharp(s);
684 out.push_str(" var bodyText = await response.Content.ReadAsStringAsync();\n");
685 out.push_str(&format!(" Assert.Equal(\"{escaped}\", bodyText.Trim());\n"));
686 }
687 other => {
688 let escaped = escape_csharp(&other.to_string());
689 out.push_str(" var bodyText = await response.Content.ReadAsStringAsync();\n");
690 out.push_str(&format!(" Assert.Equal(\"{escaped}\", bodyText.Trim());\n"));
691 }
692 }
693 }
694
695 fn render_assert_partial_body(&self, out: &mut String, _response_var: &str, expected: &serde_json::Value) {
700 if let Some(obj) = expected.as_object() {
701 out.push_str(" var partialBodyText = await response.Content.ReadAsStringAsync();\n");
702 out.push_str(" var partialBody = JsonDocument.Parse(partialBodyText).RootElement;\n");
703 for (key, val) in obj {
704 let escaped_key = escape_csharp(key);
705 let json_str = serde_json::to_string(val).unwrap_or_default();
706 let escaped_val = escape_csharp(&json_str);
707 let var_name = format!("expected{}", key.to_upper_camel_case());
708 out.push_str(&format!(
709 " var {var_name} = JsonDocument.Parse(\"{escaped_val}\").RootElement;\n"
710 ));
711 out.push_str(&format!(" Assert.True(partialBody.TryGetProperty(\"{escaped_key}\", out var _partialProp{var_name}) && _partialProp{var_name}.GetRawText() == {var_name}.GetRawText(), \"partial body field '{escaped_key}' mismatch\");\n"));
712 }
713 }
714 }
715
716 fn render_assert_validation_errors(
719 &self,
720 out: &mut String,
721 _response_var: &str,
722 errors: &[ValidationErrorExpectation],
723 ) {
724 out.push_str(" var validationBodyText = await response.Content.ReadAsStringAsync();\n");
725 for err in errors {
726 let escaped_msg = escape_csharp(&err.msg);
727 out.push_str(&format!(
728 " Assert.Contains(\"{escaped_msg}\", validationBodyText);\n"
729 ));
730 }
731 }
732}
733
734fn render_http_test_method(out: &mut String, fixture: &Fixture, _http: &HttpFixture) {
737 client::http_call::render_http_test(out, &CSharpTestClientRenderer, fixture);
738}
739
740#[allow(clippy::too_many_arguments)]
741fn render_test_method(
742 out: &mut String,
743 visitor_class_decls: &mut Vec<String>,
744 fixture: &Fixture,
745 class_name: &str,
746 _function_name: &str,
747 exception_class: &str,
748 _result_var: &str,
749 _args: &[crate::config::ArgMapping],
750 _field_resolver: &FieldResolver,
751 result_is_simple: bool,
752 _is_async: bool,
753 e2e_config: &E2eConfig,
754 enum_fields: &HashMap<String, String>,
755 nested_types: &HashMap<String, String>,
756 adapters: &[alef_core::config::extras::AdapterConfig],
757) {
758 let method_name = fixture.id.to_upper_camel_case();
759 let description = &fixture.description;
760
761 if let Some(http) = &fixture.http {
763 render_http_test_method(out, fixture, http);
764 return;
765 }
766
767 if fixture.mock_response.is_none() && !fixture_has_csharp_callable(fixture, e2e_config) {
770 let skip_reason =
771 "non-HTTP fixture: C# binding does not expose a callable for the configured `[e2e.call]` function";
772 let ctx = minijinja::context! {
773 is_skipped => true,
774 skip_reason => skip_reason,
775 description => description,
776 method_name => method_name,
777 };
778 let rendered = crate::template_env::render("csharp/test_method.jinja", ctx);
779 out.push_str(&rendered);
780 return;
781 }
782
783 let expects_error = fixture.assertions.iter().any(|a| a.assertion_type == "error");
784
785 let call_config = e2e_config.resolve_call_for_fixture(
789 fixture.call.as_deref(),
790 &fixture.id,
791 &fixture.resolved_category(),
792 &fixture.tags,
793 &fixture.input,
794 );
795 let call_field_resolver = FieldResolver::new(
801 e2e_config.effective_fields(call_config),
802 e2e_config.effective_fields_optional(call_config),
803 e2e_config.effective_result_fields(call_config),
804 e2e_config.effective_fields_array(call_config),
805 &std::collections::HashSet::new(),
806 );
807 let field_resolver = &call_field_resolver;
808 let lang = "csharp";
809 let cs_overrides = call_config.overrides.get(lang);
810
811 let raw_function_name = cs_overrides
816 .and_then(|o| o.function.as_ref())
817 .cloned()
818 .unwrap_or_else(|| call_config.function.clone());
819 if raw_function_name == "chat_stream" {
820 render_chat_stream_test_method(
821 out,
822 fixture,
823 class_name,
824 call_config,
825 cs_overrides,
826 e2e_config,
827 enum_fields,
828 nested_types,
829 exception_class,
830 adapters,
831 );
832 return;
833 }
834
835 let is_streaming = call_config.streaming.unwrap_or(false);
836 let effective_function_name = {
837 let mut name = cs_overrides
838 .and_then(|o| o.function.as_ref())
839 .cloned()
840 .unwrap_or_else(|| call_config.function.to_upper_camel_case());
841 if call_config.r#async && !is_streaming && !name.ends_with("Async") {
842 name.push_str("Async");
843 }
844 name
845 };
846 let effective_result_var = &call_config.result_var;
847 let effective_is_async = call_config.r#async;
848 let function_name = effective_function_name.as_str();
849 let result_var = effective_result_var.as_str();
850 let is_async = effective_is_async;
851 let args = call_config.args.as_slice();
852
853 let per_call_result_is_simple = call_config.result_is_simple || cs_overrides.is_some_and(|o| o.result_is_simple);
857 let per_call_result_is_bytes = call_config.result_is_bytes || cs_overrides.is_some_and(|o| o.result_is_bytes);
862 let effective_result_is_simple = result_is_simple || per_call_result_is_simple || per_call_result_is_bytes;
863 let effective_result_is_bytes = per_call_result_is_bytes;
864 let returns_void = call_config.returns_void;
865 let extra_args_slice: &[String] = cs_overrides.map_or(&[], |o| o.extra_args.as_slice());
866 let top_level_options_type = e2e_config
868 .call
869 .overrides
870 .get("csharp")
871 .and_then(|o| o.options_type.as_deref());
872 let effective_options_type = cs_overrides
873 .and_then(|o| o.options_type.as_deref())
874 .or(top_level_options_type);
875
876 let top_level_options_via = e2e_config
883 .call
884 .overrides
885 .get("csharp")
886 .and_then(|o| o.options_via.as_deref());
887 let effective_options_via = cs_overrides
888 .and_then(|o| o.options_via.as_deref())
889 .or(top_level_options_via);
890
891 let adapter_request_type_owned: Option<String> = adapters
892 .iter()
893 .find(|a| a.name == call_config.function.as_str())
894 .and_then(|a| a.request_type.as_deref())
895 .map(|rt| rt.rsplit("::").next().unwrap_or(rt).to_string());
896 let (mut setup_lines, args_str) = build_args_and_setup(
897 &fixture.input,
898 args,
899 class_name,
900 effective_options_type,
901 effective_options_via,
902 enum_fields,
903 nested_types,
904 fixture,
905 adapter_request_type_owned.as_deref(),
906 );
907
908 let mut visitor_arg = String::new();
910 let has_visitor = fixture.visitor.is_some();
911 if let Some(visitor_spec) = &fixture.visitor {
912 visitor_arg = build_csharp_visitor(&mut setup_lines, visitor_class_decls, &fixture.id, visitor_spec);
913 }
914
915 let final_args = if has_visitor && !visitor_arg.is_empty() {
919 let opts_type = effective_options_type.unwrap_or("ConversionOptions");
920 if args_str.contains("JsonSerializer.Deserialize") {
921 setup_lines.push(format!("var options = {args_str};"));
923 setup_lines.push(format!("options.Visitor = {visitor_arg};"));
924 "options".to_string()
925 } else if args_str.ends_with(", null") {
926 setup_lines.push(format!("var options = new {opts_type} {{ Visitor = {visitor_arg} }};"));
928 let trimmed = args_str[..args_str.len() - 6].to_string(); format!("{trimmed}, options")
930 } else if args_str.contains(", null,") {
931 setup_lines.push(format!("var options = new {opts_type} {{ Visitor = {visitor_arg} }};"));
933 args_str.replace(", null,", ", options,")
934 } else if args_str.is_empty() {
935 setup_lines.push(format!("var options = new {opts_type} {{ Visitor = {visitor_arg} }};"));
937 "options".to_string()
938 } else {
939 setup_lines.push(format!("var options = new {opts_type} {{ Visitor = {visitor_arg} }};"));
941 format!("{args_str}, options")
942 }
943 } else if extra_args_slice.is_empty() {
944 args_str
945 } else if args_str.is_empty() {
946 extra_args_slice.join(", ")
947 } else {
948 format!("{args_str}, {}", extra_args_slice.join(", "))
949 };
950
951 let effective_function_name = function_name.to_string();
954
955 let return_type = if is_async { "async Task" } else { "void" };
956 let await_kw = if is_async { "await " } else { "" };
957
958 let client_factory = cs_overrides.and_then(|o| o.client_factory.as_deref()).or_else(|| {
961 e2e_config
962 .call
963 .overrides
964 .get("csharp")
965 .and_then(|o| o.client_factory.as_deref())
966 });
967 let call_target = if client_factory.is_some() {
968 "client".to_string()
969 } else {
970 class_name.to_string()
971 };
972
973 let mut client_factory_setup = String::new();
980 if let Some(factory) = client_factory {
981 let factory_name = factory.to_upper_camel_case();
982 let fixture_id = &fixture.id;
983 let has_mock = fixture.mock_response.is_some() || fixture.http.is_some();
984 let api_key_var_opt = fixture.env.as_ref().and_then(|e| e.api_key_var.as_deref());
985 let is_live_smoke = !has_mock && api_key_var_opt.is_some();
986 if let Some(api_key_var) = api_key_var_opt.filter(|_| has_mock) {
987 client_factory_setup.push_str(&format!(
988 " var apiKey = System.Environment.GetEnvironmentVariable(\"{api_key_var}\");\n"
989 ));
990 client_factory_setup.push_str(&format!(
991 " var baseUrl = string.IsNullOrEmpty(apiKey)\n ? (System.Environment.GetEnvironmentVariable(\"MOCK_SERVER_URL\") ?? string.Empty) + \"/fixtures/{fixture_id}\"\n : null;\n"
992 ));
993 client_factory_setup.push_str(&format!(
994 " Console.WriteLine($\"{fixture_id}: \" + (baseUrl == null ? \"using real API ({api_key_var} is set)\" : \"using mock server ({api_key_var} not set)\"));\n"
995 ));
996 client_factory_setup.push_str(&format!(
997 " var client = {class_name}.{factory_name}(string.IsNullOrEmpty(apiKey) ? \"test-key\" : apiKey, baseUrl, null, null, null);\n"
998 ));
999 } else if let Some(api_key_var) = api_key_var_opt.filter(|_| is_live_smoke) {
1000 client_factory_setup.push_str(&format!(
1001 " var apiKey = System.Environment.GetEnvironmentVariable(\"{api_key_var}\");\n"
1002 ));
1003 client_factory_setup.push_str(" if (string.IsNullOrEmpty(apiKey)) { return; }\n");
1004 client_factory_setup.push_str(&format!(
1005 " var client = {class_name}.{factory_name}(apiKey, null, null, null, null);\n"
1006 ));
1007 } else if fixture.has_host_root_route() {
1008 let env_key = format!("MOCK_SERVER_{}", fixture_id.to_uppercase());
1009 client_factory_setup.push_str(&format!(
1010 " var _perFixtureUrl = System.Environment.GetEnvironmentVariable(\"{env_key}\");\n"
1011 ));
1012 client_factory_setup.push_str(&format!(" var baseUrl = !string.IsNullOrEmpty(_perFixtureUrl) ? _perFixtureUrl : (System.Environment.GetEnvironmentVariable(\"MOCK_SERVER_URL\") ?? string.Empty) + \"/fixtures/{fixture_id}\";\n"));
1013 client_factory_setup.push_str(&format!(
1014 " var client = {class_name}.{factory_name}(\"test-key\", baseUrl, null, null, null);\n"
1015 ));
1016 } else {
1017 client_factory_setup.push_str(&format!(" var baseUrl = (System.Environment.GetEnvironmentVariable(\"MOCK_SERVER_URL\") ?? string.Empty) + \"/fixtures/{fixture_id}\";\n"));
1018 client_factory_setup.push_str(&format!(
1019 " var client = {class_name}.{factory_name}(\"test-key\", baseUrl, null, null, null);\n"
1020 ));
1021 }
1022 }
1023
1024 let call_expr = format!("{}({})", effective_function_name, final_args);
1026
1027 let mut effective_enum_fields: std::collections::HashSet<String> = e2e_config.fields_enum.clone();
1035 for k in enum_fields.keys() {
1036 effective_enum_fields.insert(k.clone());
1037 }
1038 if let Some(o) = cs_overrides {
1039 for k in o.enum_fields.keys() {
1040 effective_enum_fields.insert(k.clone());
1041 }
1042 }
1043
1044 let mut assertions_body = String::new();
1046 if !expects_error && !returns_void {
1047 for assertion in &fixture.assertions {
1048 render_assertion(
1049 &mut assertions_body,
1050 assertion,
1051 result_var,
1052 class_name,
1053 exception_class,
1054 field_resolver,
1055 effective_result_is_simple,
1056 call_config.result_is_vec || cs_overrides.is_some_and(|o| o.result_is_vec),
1057 call_config.result_is_array,
1058 effective_result_is_bytes,
1059 &effective_enum_fields,
1060 );
1061 }
1062 }
1063
1064 let ctx = minijinja::context! {
1065 is_skipped => false,
1066 expects_error => expects_error,
1067 description => description,
1068 return_type => return_type,
1069 method_name => method_name,
1070 async_kw => await_kw,
1071 call_target => call_target,
1072 setup_lines => setup_lines.clone(),
1073 call_expr => call_expr,
1074 exception_class => exception_class,
1075 client_factory_setup => client_factory_setup,
1076 has_usable_assertion => !expects_error && !returns_void,
1077 result_var => result_var,
1078 assertions_body => assertions_body,
1079 };
1080
1081 let rendered = crate::template_env::render("csharp/test_method.jinja", ctx);
1082 for line in rendered.lines() {
1084 out.push_str(" ");
1085 out.push_str(line);
1086 out.push('\n');
1087 }
1088}
1089
1090#[allow(clippy::too_many_arguments)]
1098fn render_chat_stream_test_method(
1099 out: &mut String,
1100 fixture: &Fixture,
1101 class_name: &str,
1102 call_config: &crate::config::CallConfig,
1103 cs_overrides: Option<&crate::config::CallOverride>,
1104 e2e_config: &E2eConfig,
1105 enum_fields: &HashMap<String, String>,
1106 nested_types: &HashMap<String, String>,
1107 exception_class: &str,
1108 adapters: &[alef_core::config::extras::AdapterConfig],
1109) {
1110 let method_name = fixture.id.to_upper_camel_case();
1111 let description = &fixture.description;
1112 let expects_error = fixture.assertions.iter().any(|a| a.assertion_type == "error");
1113
1114 let effective_function_name = {
1118 let mut name = cs_overrides
1119 .and_then(|o| o.function.as_ref())
1120 .cloned()
1121 .unwrap_or_else(|| call_config.function.to_upper_camel_case());
1122 if !name.ends_with("Async") {
1123 name.push_str("Async");
1124 }
1125 name
1126 };
1127 let function_name = effective_function_name.as_str();
1128 let args = call_config.args.as_slice();
1129
1130 let top_level_options_type = e2e_config
1131 .call
1132 .overrides
1133 .get("csharp")
1134 .and_then(|o| o.options_type.as_deref());
1135 let effective_options_type = cs_overrides
1136 .and_then(|o| o.options_type.as_deref())
1137 .or(top_level_options_type);
1138 let top_level_options_via = e2e_config
1139 .call
1140 .overrides
1141 .get("csharp")
1142 .and_then(|o| o.options_via.as_deref());
1143 let effective_options_via = cs_overrides
1144 .and_then(|o| o.options_via.as_deref())
1145 .or(top_level_options_via);
1146
1147 let adapter_request_type_cs: Option<String> = adapters
1148 .iter()
1149 .find(|a| a.name == call_config.function.as_str())
1150 .and_then(|a| a.request_type.as_deref())
1151 .map(|rt| rt.rsplit("::").next().unwrap_or(rt).to_string());
1152 let (setup_lines, args_str) = build_args_and_setup(
1153 &fixture.input,
1154 args,
1155 class_name,
1156 effective_options_type,
1157 effective_options_via,
1158 enum_fields,
1159 nested_types,
1160 fixture,
1161 adapter_request_type_cs.as_deref(),
1162 );
1163
1164 let client_factory = cs_overrides.and_then(|o| o.client_factory.as_deref()).or_else(|| {
1165 e2e_config
1166 .call
1167 .overrides
1168 .get("csharp")
1169 .and_then(|o| o.client_factory.as_deref())
1170 });
1171 let mut client_factory_setup = String::new();
1172 if let Some(factory) = client_factory {
1173 let factory_name = factory.to_upper_camel_case();
1174 let fixture_id = &fixture.id;
1175 let has_mock = fixture.mock_response.is_some() || fixture.http.is_some();
1176 let api_key_var_opt = fixture.env.as_ref().and_then(|e| e.api_key_var.as_deref());
1177 let is_live_smoke = !has_mock && api_key_var_opt.is_some();
1178 if let Some(api_key_var) = api_key_var_opt.filter(|_| has_mock) {
1179 client_factory_setup.push_str(&format!(
1180 " var apiKey = System.Environment.GetEnvironmentVariable(\"{api_key_var}\");\n"
1181 ));
1182 client_factory_setup.push_str(&format!(
1183 " var baseUrl = string.IsNullOrEmpty(apiKey)\n ? (System.Environment.GetEnvironmentVariable(\"MOCK_SERVER_URL\") ?? string.Empty) + \"/fixtures/{fixture_id}\"\n : null;\n"
1184 ));
1185 client_factory_setup.push_str(&format!(
1186 " Console.WriteLine($\"{fixture_id}: \" + (baseUrl == null ? \"using real API ({api_key_var} is set)\" : \"using mock server ({api_key_var} not set)\"));\n"
1187 ));
1188 client_factory_setup.push_str(&format!(
1189 " var client = {class_name}.{factory_name}(string.IsNullOrEmpty(apiKey) ? \"test-key\" : apiKey, baseUrl, null, null, null);\n"
1190 ));
1191 } else if let Some(api_key_var) = api_key_var_opt.filter(|_| is_live_smoke) {
1192 client_factory_setup.push_str(&format!(
1193 " var apiKey = System.Environment.GetEnvironmentVariable(\"{api_key_var}\");\n"
1194 ));
1195 client_factory_setup.push_str(" if (string.IsNullOrEmpty(apiKey)) { return; }\n");
1196 client_factory_setup.push_str(&format!(
1197 " var client = {class_name}.{factory_name}(apiKey, null, null, null, null);\n"
1198 ));
1199 } else if fixture.has_host_root_route() {
1200 let env_key = format!("MOCK_SERVER_{}", fixture_id.to_uppercase());
1201 client_factory_setup.push_str(&format!(
1202 " var _perFixtureUrl = System.Environment.GetEnvironmentVariable(\"{env_key}\");\n"
1203 ));
1204 client_factory_setup.push_str(&format!(" var baseUrl = !string.IsNullOrEmpty(_perFixtureUrl) ? _perFixtureUrl : (System.Environment.GetEnvironmentVariable(\"MOCK_SERVER_URL\") ?? string.Empty) + \"/fixtures/{fixture_id}\";\n"));
1205 client_factory_setup.push_str(&format!(
1206 " var client = {class_name}.{factory_name}(\"test-key\", baseUrl, null, null, null);\n"
1207 ));
1208 } else {
1209 client_factory_setup.push_str(&format!(
1210 " var baseUrl = (System.Environment.GetEnvironmentVariable(\"MOCK_SERVER_URL\") ?? string.Empty) + \"/fixtures/{fixture_id}\";\n"
1211 ));
1212 client_factory_setup.push_str(&format!(
1213 " var client = {class_name}.{factory_name}(\"test-key\", baseUrl, null, null, null);\n"
1214 ));
1215 }
1216 }
1217
1218 let call_target = if client_factory.is_some() { "client" } else { class_name };
1219 let call_expr = format!("{call_target}.{function_name}({args_str})");
1220
1221 let mut needs_finish_reason = false;
1223 let mut needs_tool_calls_json = false;
1224 let mut needs_tool_calls_0_function_name = false;
1225 let mut needs_total_tokens = false;
1226 for a in &fixture.assertions {
1227 if let Some(f) = a.field.as_deref() {
1228 match f {
1229 "finish_reason" => needs_finish_reason = true,
1230 "tool_calls" => needs_tool_calls_json = true,
1231 "tool_calls[0].function.name" => needs_tool_calls_0_function_name = true,
1232 "usage.total_tokens" => needs_total_tokens = true,
1233 _ => {}
1234 }
1235 }
1236 }
1237
1238 let mut body = String::new();
1239 let _ = writeln!(body, " [Fact]");
1240 let _ = writeln!(body, " public async Task Test_{method_name}()");
1241 let _ = writeln!(body, " {{");
1242 let _ = writeln!(body, " // {description}");
1243 if !client_factory_setup.is_empty() {
1244 body.push_str(&client_factory_setup);
1245 }
1246 for line in &setup_lines {
1247 let _ = writeln!(body, " {line}");
1248 }
1249
1250 if expects_error {
1251 let _ = writeln!(
1254 body,
1255 " await Assert.ThrowsAnyAsync<{exception_class}>(async () => {{"
1256 );
1257 let _ = writeln!(body, " await foreach (var _chunk in {call_expr}) {{ }}");
1258 body.push_str(" });\n");
1259 body.push_str(" }\n");
1260 for line in body.lines() {
1261 out.push_str(" ");
1262 out.push_str(line);
1263 out.push('\n');
1264 }
1265 return;
1266 }
1267
1268 body.push_str(" var chunks = new List<ChatCompletionChunk>();\n");
1269 body.push_str(" var streamContent = new System.Text.StringBuilder();\n");
1270 body.push_str(" var streamComplete = false;\n");
1271 if needs_finish_reason {
1272 body.push_str(" string? lastFinishReason = null;\n");
1273 }
1274 if needs_tool_calls_json {
1275 body.push_str(" string? toolCallsJson = null;\n");
1276 }
1277 if needs_tool_calls_0_function_name {
1278 body.push_str(" string? toolCalls0FunctionName = null;\n");
1279 }
1280 if needs_total_tokens {
1281 body.push_str(" long? totalTokens = null;\n");
1282 }
1283 let _ = writeln!(body, " await foreach (var chunk in {call_expr})");
1284 body.push_str(" {\n");
1285 body.push_str(" chunks.Add(chunk);\n");
1286 body.push_str(
1287 " var choice = chunk.Choices != null && chunk.Choices.Count > 0 ? chunk.Choices[0] : null;\n",
1288 );
1289 body.push_str(" if (choice != null)\n");
1290 body.push_str(" {\n");
1291 body.push_str(" var delta = choice.Delta;\n");
1292 body.push_str(" if (delta != null && !string.IsNullOrEmpty(delta.Content))\n");
1293 body.push_str(" {\n");
1294 body.push_str(" streamContent.Append(delta.Content);\n");
1295 body.push_str(" }\n");
1296 if needs_finish_reason {
1297 body.push_str(" if (choice.FinishReason != null)\n");
1305 body.push_str(" {\n");
1306 body.push_str(
1307 " lastFinishReason = JsonNamingPolicy.SnakeCaseLower.ConvertName(choice.FinishReason.ToString()!);\n",
1308 );
1309 body.push_str(" }\n");
1310 }
1311 if needs_tool_calls_json || needs_tool_calls_0_function_name {
1312 body.push_str(" var tcs = delta?.ToolCalls;\n");
1313 body.push_str(" if (tcs != null && tcs.Count > 0)\n");
1314 body.push_str(" {\n");
1315 if needs_tool_calls_json {
1316 body.push_str(
1317 " toolCallsJson ??= JsonSerializer.Serialize(tcs.Select(tc => new { function = new { name = tc.Function?.Name } }));\n",
1318 );
1319 }
1320 if needs_tool_calls_0_function_name {
1321 body.push_str(" toolCalls0FunctionName ??= tcs[0].Function?.Name;\n");
1322 }
1323 body.push_str(" }\n");
1324 }
1325 body.push_str(" }\n");
1326 if needs_total_tokens {
1327 body.push_str(" if (chunk.Usage != null)\n");
1328 body.push_str(" {\n");
1329 body.push_str(" totalTokens = chunk.Usage.TotalTokens;\n");
1330 body.push_str(" }\n");
1331 }
1332 body.push_str(" }\n");
1333 body.push_str(" streamComplete = true;\n");
1334
1335 let mut had_explicit_complete = false;
1337 for assertion in &fixture.assertions {
1338 if assertion.field.as_deref() == Some("stream_complete") {
1339 had_explicit_complete = true;
1340 }
1341 emit_chat_stream_assertion(&mut body, assertion);
1342 }
1343 if !had_explicit_complete {
1344 body.push_str(" Assert.True(streamComplete);\n");
1345 }
1346
1347 body.push_str(" }\n");
1348
1349 for line in body.lines() {
1350 out.push_str(" ");
1351 out.push_str(line);
1352 out.push('\n');
1353 }
1354}
1355
1356fn emit_chat_stream_assertion(out: &mut String, assertion: &Assertion) {
1360 let atype = assertion.assertion_type.as_str();
1361 if atype == "not_error" || atype == "error" {
1362 return;
1363 }
1364 let field = assertion.field.as_deref().unwrap_or("");
1365
1366 enum Kind {
1367 Chunks,
1368 Bool,
1369 Str,
1370 IntTokens,
1371 Json,
1372 Unsupported,
1373 }
1374
1375 let (expr, kind) = match field {
1376 "chunks" => ("chunks", Kind::Chunks),
1377 "stream_content" => ("streamContent.ToString()", Kind::Str),
1378 "stream_complete" => ("streamComplete", Kind::Bool),
1379 "no_chunks_after_done" => ("streamComplete", Kind::Bool),
1380 "finish_reason" => ("lastFinishReason", Kind::Str),
1381 "tool_calls" => ("toolCallsJson", Kind::Json),
1382 "tool_calls[0].function.name" => ("toolCalls0FunctionName", Kind::Str),
1383 "usage.total_tokens" => ("totalTokens", Kind::IntTokens),
1384 _ => ("", Kind::Unsupported),
1385 };
1386
1387 if matches!(kind, Kind::Unsupported) {
1388 let _ = writeln!(
1389 out,
1390 " // skipped: streaming assertion on unsupported field '{field}'"
1391 );
1392 return;
1393 }
1394
1395 match (atype, &kind) {
1396 ("count_min", Kind::Chunks) => {
1397 if let Some(n) = assertion.value.as_ref().and_then(|v| v.as_u64()) {
1398 let _ = writeln!(
1399 out,
1400 " Assert.True(chunks.Count >= {n}, \"expected at least {n} chunks\");"
1401 );
1402 }
1403 }
1404 ("count_equals", Kind::Chunks) => {
1405 if let Some(n) = assertion.value.as_ref().and_then(|v| v.as_u64()) {
1406 let _ = writeln!(out, " Assert.Equal({n}, chunks.Count);");
1407 }
1408 }
1409 ("equals", Kind::Str) => {
1410 if let Some(val) = &assertion.value {
1411 let cs_val = json_to_csharp(val);
1412 let _ = writeln!(out, " Assert.Equal({cs_val}, {expr});");
1413 }
1414 }
1415 ("contains", Kind::Str) => {
1416 if let Some(val) = &assertion.value {
1417 let cs_val = json_to_csharp(val);
1418 let _ = writeln!(out, " Assert.Contains({cs_val}, {expr} ?? string.Empty);");
1419 }
1420 }
1421 ("not_empty", Kind::Str) => {
1422 let _ = writeln!(out, " Assert.False(string.IsNullOrEmpty({expr}));");
1423 }
1424 ("not_empty", Kind::Json) => {
1425 let _ = writeln!(out, " Assert.NotNull({expr});");
1426 }
1427 ("is_empty", Kind::Str) => {
1428 let _ = writeln!(out, " Assert.True(string.IsNullOrEmpty({expr}));");
1429 }
1430 ("is_true", Kind::Bool) => {
1431 let _ = writeln!(out, " Assert.True({expr});");
1432 }
1433 ("is_false", Kind::Bool) => {
1434 let _ = writeln!(out, " Assert.False({expr});");
1435 }
1436 ("greater_than_or_equal", Kind::IntTokens) => {
1437 if let Some(n) = assertion.value.as_ref().and_then(|v| v.as_u64()) {
1438 let _ = writeln!(out, " Assert.True({expr} >= {n}, \"expected >= {n}\");");
1439 }
1440 }
1441 ("equals", Kind::IntTokens) => {
1442 if let Some(n) = assertion.value.as_ref().and_then(|v| v.as_u64()) {
1443 let _ = writeln!(out, " Assert.Equal((long?){n}, {expr});");
1444 }
1445 }
1446 _ => {
1447 let _ = writeln!(
1448 out,
1449 " // skipped: streaming assertion '{atype}' on field '{field}' not supported"
1450 );
1451 }
1452 }
1453}
1454
1455#[allow(clippy::too_many_arguments)]
1459fn build_args_and_setup(
1460 input: &serde_json::Value,
1461 args: &[crate::config::ArgMapping],
1462 class_name: &str,
1463 options_type: Option<&str>,
1464 options_via: Option<&str>,
1465 enum_fields: &HashMap<String, String>,
1466 nested_types: &HashMap<String, String>,
1467 fixture: &crate::fixture::Fixture,
1468 adapter_request_type: Option<&str>,
1469) -> (Vec<String>, String) {
1470 let fixture_id = &fixture.id;
1471 if args.is_empty() {
1472 return (Vec::new(), String::new());
1473 }
1474
1475 let mut setup_lines: Vec<String> = Vec::new();
1476 let mut parts: Vec<String> = Vec::new();
1477
1478 for arg in args {
1479 if arg.arg_type == "bytes" {
1480 let field = arg.field.strip_prefix("input.").unwrap_or(&arg.field);
1482 let val = input.get(field);
1483 match val {
1484 None | Some(serde_json::Value::Null) if arg.optional => {
1485 parts.push("null".to_string());
1486 }
1487 None | Some(serde_json::Value::Null) => {
1488 parts.push("System.Array.Empty<byte>()".to_string());
1489 }
1490 Some(v) => {
1491 if let Some(s) = v.as_str() {
1496 let bytes_code = classify_bytes_value_csharp(s);
1497 parts.push(bytes_code);
1498 } else {
1499 let cs_str = json_to_csharp(v);
1501 parts.push(format!("System.Text.Encoding.UTF8.GetBytes({cs_str})"));
1502 }
1503 }
1504 }
1505 continue;
1506 }
1507
1508 if arg.arg_type == "mock_url" {
1509 if fixture.has_host_root_route() {
1510 let env_key = format!("MOCK_SERVER_{}", fixture_id.to_uppercase());
1511 setup_lines.push(format!(
1512 "var _pfUrl_{name} = Environment.GetEnvironmentVariable(\"{env_key}\");",
1513 name = arg.name,
1514 ));
1515 setup_lines.push(format!(
1516 "var {} = !string.IsNullOrEmpty(_pfUrl_{name}) ? _pfUrl_{name} : Environment.GetEnvironmentVariable(\"MOCK_SERVER_URL\") + \"/fixtures/{fixture_id}\";",
1517 arg.name,
1518 name = arg.name,
1519 ));
1520 } else {
1521 setup_lines.push(format!(
1522 "var {} = Environment.GetEnvironmentVariable(\"MOCK_SERVER_URL\") + \"/fixtures/{fixture_id}\";",
1523 arg.name,
1524 ));
1525 }
1526 if let Some(req_type) = adapter_request_type {
1527 let req_var = format!("{}Req", arg.name);
1528 setup_lines.push(format!(
1529 "var {req_var} = new {class_name}.{req_type} {{ Url = {} }};",
1530 arg.name
1531 ));
1532 parts.push(req_var);
1533 } else {
1534 parts.push(arg.name.clone());
1535 }
1536 continue;
1537 }
1538
1539 if arg.arg_type == "mock_url_list" {
1540 let env_key = format!("MOCK_SERVER_{}", fixture_id.to_uppercase());
1547 let field = arg.field.strip_prefix("input.").unwrap_or(&arg.field);
1548 let val = input.get(field).unwrap_or(&serde_json::Value::Null);
1549 let paths: Vec<String> = if let Some(arr) = val.as_array() {
1550 arr.iter()
1551 .filter_map(|v| v.as_str().map(|s| format!("\"{}\"", escape_csharp(s))))
1552 .collect()
1553 } else {
1554 Vec::new()
1555 };
1556 let paths_literal = paths.join(", ");
1557 let name = &arg.name;
1558 setup_lines.push(format!(
1559 "var _pfBase_{name} = Environment.GetEnvironmentVariable(\"{env_key}\");"
1560 ));
1561 setup_lines.push(format!(
1562 "var _base_{name} = !string.IsNullOrEmpty(_pfBase_{name}) ? _pfBase_{name} : Environment.GetEnvironmentVariable(\"MOCK_SERVER_URL\") + \"/fixtures/{fixture_id}\";"
1563 ));
1564 setup_lines.push(format!(
1565 "var {name} = new System.Collections.Generic.List<string>(new[] {{ {paths_literal} }}.Select(p => p.StartsWith(\"http\") ? p : _base_{name} + p));"
1566 ));
1567 parts.push(name.clone());
1568 continue;
1569 }
1570
1571 if arg.arg_type == "handle" {
1572 let constructor_name = format!("Create{}", arg.name.to_upper_camel_case());
1574 let field = arg.field.strip_prefix("input.").unwrap_or(&arg.field);
1575 let config_value = input.get(field).unwrap_or(&serde_json::Value::Null);
1576 if config_value.is_null()
1577 || config_value.is_object() && config_value.as_object().is_some_and(|o| o.is_empty())
1578 {
1579 setup_lines.push(format!("var {} = {class_name}.{constructor_name}(null);", arg.name,));
1580 } else {
1581 let sorted = sort_discriminator_first(config_value.clone());
1585 let json_str = serde_json::to_string(&sorted).unwrap_or_default();
1586 let name = &arg.name;
1587 setup_lines.push(format!(
1588 "var {name}Config = JsonSerializer.Deserialize<CrawlConfig>(\"{}\", ConfigOptions)!;",
1589 escape_csharp(&json_str),
1590 ));
1591 setup_lines.push(format!(
1592 "var {} = {class_name}.{constructor_name}({name}Config);",
1593 arg.name,
1594 name = name,
1595 ));
1596 }
1597 parts.push(arg.name.clone());
1598 continue;
1599 }
1600
1601 let val: Option<&serde_json::Value> = if arg.field == "input" {
1604 Some(input)
1605 } else {
1606 let field = arg.field.strip_prefix("input.").unwrap_or(&arg.field);
1607 input.get(field)
1608 };
1609 match val {
1610 None | Some(serde_json::Value::Null) if arg.optional => {
1611 parts.push("null".to_string());
1614 continue;
1615 }
1616 None | Some(serde_json::Value::Null) => {
1617 let default_val = match arg.arg_type.as_str() {
1621 "string" => "\"\"".to_string(),
1622 "int" | "integer" => "0".to_string(),
1623 "float" | "number" => "0.0d".to_string(),
1624 "bool" | "boolean" => "false".to_string(),
1625 "json_object" => {
1626 if let Some(opts_type) = options_type {
1627 format!("new {opts_type}()")
1628 } else {
1629 "null".to_string()
1630 }
1631 }
1632 _ => "null".to_string(),
1633 };
1634 parts.push(default_val);
1635 }
1636 Some(v) => {
1637 if arg.arg_type == "json_object" {
1638 if options_via == Some("from_json")
1644 && let Some(opts_type) = options_type
1645 {
1646 let sorted = sort_discriminator_first(v.clone());
1647 let json_str = serde_json::to_string(&sorted).unwrap_or_default();
1648 let escaped = escape_csharp(&json_str);
1649 parts.push(format!("{opts_type}.FromJson(\"{escaped}\")",));
1655 continue;
1656 }
1657 if let Some(arr) = v.as_array() {
1659 parts.push(json_array_to_csharp_list(arr, arg.element_type.as_deref()));
1660 continue;
1661 }
1662 if let Some(opts_type) = options_type {
1664 if let Some(obj) = v.as_object() {
1665 parts.push(csharp_object_initializer(obj, opts_type, enum_fields, nested_types));
1666 continue;
1667 }
1668 }
1669 }
1670 parts.push(json_to_csharp(v));
1671 }
1672 }
1673 }
1674
1675 (setup_lines, parts.join(", "))
1676}
1677
1678fn json_array_to_csharp_list(arr: &[serde_json::Value], element_type: Option<&str>) -> String {
1686 match element_type {
1687 Some("BatchBytesItem") => {
1688 let items: Vec<String> = arr
1689 .iter()
1690 .filter_map(|v| v.as_object())
1691 .map(|obj| {
1692 let content = obj.get("content").and_then(|v| v.as_array());
1693 let mime_type = obj.get("mime_type").and_then(|v| v.as_str()).unwrap_or("text/plain");
1694 let content_code = if let Some(arr) = content {
1695 let bytes: Vec<String> = arr
1696 .iter()
1697 .filter_map(|v| v.as_u64().map(|n| format!("(byte){}", n)))
1698 .collect();
1699 format!("new byte[] {{ {} }}", bytes.join(", "))
1700 } else {
1701 "new byte[] { }".to_string()
1702 };
1703 format!(
1704 "new BatchBytesItem {{ Content = {}, MimeType = \"{}\" }}",
1705 content_code, mime_type
1706 )
1707 })
1708 .collect();
1709 format!("new List<BatchBytesItem>() {{ {} }}", items.join(", "))
1710 }
1711 Some("BatchFileItem") => {
1712 let items: Vec<String> = arr
1713 .iter()
1714 .filter_map(|v| v.as_object())
1715 .map(|obj| {
1716 let path = obj.get("path").and_then(|v| v.as_str()).unwrap_or("");
1717 format!("new BatchFileItem {{ Path = \"{}\" }}", path)
1718 })
1719 .collect();
1720 format!("new List<BatchFileItem>() {{ {} }}", items.join(", "))
1721 }
1722 Some("f32") => {
1723 let items: Vec<String> = arr.iter().map(|v| format!("(float){}", json_to_csharp(v))).collect();
1724 format!("new List<float>() {{ {} }}", items.join(", "))
1725 }
1726 Some("(String, String)") => {
1727 let items: Vec<String> = arr
1728 .iter()
1729 .map(|v| {
1730 let strs: Vec<String> = v
1731 .as_array()
1732 .map_or_else(Vec::new, |a| a.iter().map(json_to_csharp).collect());
1733 format!("new List<string>() {{ {} }}", strs.join(", "))
1734 })
1735 .collect();
1736 format!("new List<List<string>>() {{ {} }}", items.join(", "))
1737 }
1738 Some(et)
1739 if et != "f32"
1740 && et != "(String, String)"
1741 && et != "string"
1742 && et != "BatchBytesItem"
1743 && et != "BatchFileItem" =>
1744 {
1745 let items: Vec<String> = arr
1747 .iter()
1748 .map(|v| {
1749 let json_str = serde_json::to_string(v).unwrap_or_default();
1750 let escaped = escape_csharp(&json_str);
1751 format!("JsonSerializer.Deserialize<{et}>(\"{escaped}\", ConfigOptions)!")
1752 })
1753 .collect();
1754 format!("new List<{et}>() {{ {} }}", items.join(", "))
1755 }
1756 _ => {
1757 let items: Vec<String> = arr.iter().map(json_to_csharp).collect();
1758 format!("new List<string>() {{ {} }}", items.join(", "))
1759 }
1760 }
1761}
1762
1763fn parse_discriminated_union_access(field: &str) -> Option<(String, String, String)> {
1767 let parts: Vec<&str> = field.split('.').collect();
1768 if parts.len() >= 3 && parts.len() <= 4 {
1769 if parts[0] == "metadata" && parts[1] == "format" {
1771 let variant_name = parts[2];
1772 let known_variants = [
1774 "pdf",
1775 "docx",
1776 "excel",
1777 "email",
1778 "pptx",
1779 "archive",
1780 "image",
1781 "xml",
1782 "text",
1783 "html",
1784 "ocr",
1785 "csv",
1786 "bibtex",
1787 "citation",
1788 "fiction_book",
1789 "dbf",
1790 "jats",
1791 "epub",
1792 "pst",
1793 "code",
1794 ];
1795 if known_variants.contains(&variant_name) {
1796 let variant_pascal = variant_name.to_upper_camel_case();
1797 if parts.len() == 4 {
1798 let inner_field = parts[3];
1799 return Some((
1800 format!("result.Metadata.Format! as FormatMetadata.{}", variant_pascal),
1801 variant_pascal,
1802 inner_field.to_string(),
1803 ));
1804 } else if parts.len() == 3 {
1805 return Some((
1807 format!("result.Metadata.Format! as FormatMetadata.{}", variant_pascal),
1808 variant_pascal,
1809 String::new(),
1810 ));
1811 }
1812 }
1813 }
1814 }
1815 None
1816}
1817
1818fn render_discriminated_union_assertion(
1822 out: &mut String,
1823 assertion: &Assertion,
1824 variant_var: &str,
1825 inner_field: &str,
1826 _result_is_vec: bool,
1827) {
1828 if inner_field.is_empty() {
1829 return; }
1831
1832 let field_pascal = inner_field.to_upper_camel_case();
1833 let field_expr = format!("{variant_var}.Value.{field_pascal}");
1834
1835 match assertion.assertion_type.as_str() {
1836 "equals" => {
1837 if let Some(expected) = &assertion.value {
1838 let cs_val = json_to_csharp(expected);
1839 if expected.is_string() {
1840 let _ = writeln!(out, " Assert.Equal({cs_val}, {field_expr}!.Trim());");
1841 } else if expected.as_bool() == Some(true) {
1842 let _ = writeln!(out, " Assert.True({field_expr});");
1843 } else if expected.as_bool() == Some(false) {
1844 let _ = writeln!(out, " Assert.False({field_expr});");
1845 } else if expected.is_number() && !expected.as_f64().is_some_and(|f| f.fract() != 0.0) {
1846 let _ = writeln!(out, " Assert.True({field_expr} == {cs_val});");
1847 } else {
1848 let _ = writeln!(out, " Assert.Equal({cs_val}, {field_expr});");
1849 }
1850 }
1851 }
1852 "greater_than_or_equal" => {
1853 if let Some(val) = &assertion.value {
1854 let cs_val = json_to_csharp(val);
1855 let _ = writeln!(
1856 out,
1857 " Assert.True({field_expr} >= {cs_val}, \"expected >= {cs_val}\");"
1858 );
1859 }
1860 }
1861 "contains_all" => {
1862 if let Some(values) = &assertion.values {
1863 let field_as_str = format!("JsonSerializer.Serialize({field_expr})");
1864 for val in values {
1865 let lower_val = val.as_str().map(|s| s.to_lowercase());
1866 let cs_val = lower_val
1867 .as_deref()
1868 .map(|s| format!("\"{}\"", escape_csharp(s)))
1869 .unwrap_or_else(|| json_to_csharp(val));
1870 let _ = writeln!(out, " Assert.Contains({cs_val}, {field_as_str}.ToLower());");
1871 }
1872 }
1873 }
1874 "contains" => {
1875 if let Some(expected) = &assertion.value {
1876 let field_as_str = format!("JsonSerializer.Serialize({field_expr})");
1877 let lower_expected = expected.as_str().map(|s| s.to_lowercase());
1878 let cs_val = lower_expected
1879 .as_deref()
1880 .map(|s| format!("\"{}\"", escape_csharp(s)))
1881 .unwrap_or_else(|| json_to_csharp(expected));
1882 let _ = writeln!(out, " Assert.Contains({cs_val}, {field_as_str}.ToLower());");
1883 }
1884 }
1885 "not_empty" => {
1886 let _ = writeln!(out, " Assert.NotEmpty({field_expr});");
1887 }
1888 "is_empty" => {
1889 let _ = writeln!(out, " Assert.Empty({field_expr});");
1890 }
1891 _ => {
1892 let _ = writeln!(
1893 out,
1894 " // skipped: assertion type '{}' not yet supported for discriminated union fields",
1895 assertion.assertion_type
1896 );
1897 }
1898 }
1899}
1900
1901#[allow(clippy::too_many_arguments)]
1902fn render_assertion(
1903 out: &mut String,
1904 assertion: &Assertion,
1905 result_var: &str,
1906 class_name: &str,
1907 exception_class: &str,
1908 field_resolver: &FieldResolver,
1909 result_is_simple: bool,
1910 result_is_vec: bool,
1911 result_is_array: bool,
1912 result_is_bytes: bool,
1913 fields_enum: &std::collections::HashSet<String>,
1914) {
1915 if result_is_bytes {
1919 match assertion.assertion_type.as_str() {
1920 "not_empty" => {
1921 let _ = writeln!(out, " Assert.NotEmpty({result_var});");
1922 return;
1923 }
1924 "is_empty" => {
1925 let _ = writeln!(out, " Assert.Empty({result_var});");
1926 return;
1927 }
1928 "count_equals" | "length_equals" => {
1929 if let Some(n) = assertion.value.as_ref().and_then(|v| v.as_u64()) {
1930 let _ = writeln!(out, " Assert.Equal({n}, {result_var}.Length);");
1931 }
1932 return;
1933 }
1934 "count_min" | "length_min" => {
1935 if let Some(n) = assertion.value.as_ref().and_then(|v| v.as_u64()) {
1936 let _ = writeln!(out, " Assert.True({result_var}.Length >= {n});");
1937 }
1938 return;
1939 }
1940 "not_error" => {
1941 let _ = writeln!(out, " Assert.NotNull({result_var});");
1942 return;
1943 }
1944 _ => {
1945 let _ = writeln!(
1949 out,
1950 " // skipped: assertion type '{}' not supported on byte[] result",
1951 assertion.assertion_type
1952 );
1953 return;
1954 }
1955 }
1956 }
1957 if let Some(f) = &assertion.field {
1960 match f.as_str() {
1961 "chunks_have_content" => {
1962 let synthetic_pred =
1963 format!("({result_var}.Chunks ?? new()).All(c => !string.IsNullOrEmpty(c.Content))");
1964 let synthetic_pred_type = match assertion.assertion_type.as_str() {
1965 "is_true" => "is_true",
1966 "is_false" => "is_false",
1967 _ => {
1968 out.push_str(&format!(
1969 " // skipped: unsupported assertion type on synthetic field '{f}'\n"
1970 ));
1971 return;
1972 }
1973 };
1974 let rendered = crate::template_env::render(
1975 "csharp/assertion.jinja",
1976 minijinja::context! {
1977 assertion_type => "synthetic_assertion",
1978 synthetic_pred => synthetic_pred,
1979 synthetic_pred_type => synthetic_pred_type,
1980 },
1981 );
1982 out.push_str(&rendered);
1983 return;
1984 }
1985 "chunks_have_embeddings" => {
1986 let synthetic_pred =
1987 format!("({result_var}.Chunks ?? new()).All(c => c.Embedding != null && c.Embedding.Count > 0)");
1988 let synthetic_pred_type = match assertion.assertion_type.as_str() {
1989 "is_true" => "is_true",
1990 "is_false" => "is_false",
1991 _ => {
1992 out.push_str(&format!(
1993 " // skipped: unsupported assertion type on synthetic field '{f}'\n"
1994 ));
1995 return;
1996 }
1997 };
1998 let rendered = crate::template_env::render(
1999 "csharp/assertion.jinja",
2000 minijinja::context! {
2001 assertion_type => "synthetic_assertion",
2002 synthetic_pred => synthetic_pred,
2003 synthetic_pred_type => synthetic_pred_type,
2004 },
2005 );
2006 out.push_str(&rendered);
2007 return;
2008 }
2009 "embeddings" => {
2013 match assertion.assertion_type.as_str() {
2014 "count_equals" => {
2015 if let Some(val) = &assertion.value {
2016 if let Some(n) = val.as_u64() {
2017 let rendered = crate::template_env::render(
2018 "csharp/assertion.jinja",
2019 minijinja::context! {
2020 assertion_type => "synthetic_embeddings_count_equals",
2021 synthetic_pred => format!("{result_var}.Count"),
2022 n => n,
2023 },
2024 );
2025 out.push_str(&rendered);
2026 }
2027 }
2028 }
2029 "count_min" => {
2030 if let Some(val) = &assertion.value {
2031 if let Some(n) = val.as_u64() {
2032 let rendered = crate::template_env::render(
2033 "csharp/assertion.jinja",
2034 minijinja::context! {
2035 assertion_type => "synthetic_embeddings_count_min",
2036 synthetic_pred => format!("{result_var}.Count"),
2037 n => n,
2038 },
2039 );
2040 out.push_str(&rendered);
2041 }
2042 }
2043 }
2044 "not_empty" => {
2045 let rendered = crate::template_env::render(
2046 "csharp/assertion.jinja",
2047 minijinja::context! {
2048 assertion_type => "synthetic_embeddings_not_empty",
2049 synthetic_pred => result_var.to_string(),
2050 },
2051 );
2052 out.push_str(&rendered);
2053 }
2054 "is_empty" => {
2055 let rendered = crate::template_env::render(
2056 "csharp/assertion.jinja",
2057 minijinja::context! {
2058 assertion_type => "synthetic_embeddings_is_empty",
2059 synthetic_pred => result_var.to_string(),
2060 },
2061 );
2062 out.push_str(&rendered);
2063 }
2064 _ => {
2065 out.push_str(
2066 " // skipped: unsupported assertion type on synthetic field 'embeddings'\n",
2067 );
2068 }
2069 }
2070 return;
2071 }
2072 "embedding_dimensions" => {
2073 let expr = format!("({result_var}.Count > 0 ? {result_var}[0].Count : 0)");
2074 match assertion.assertion_type.as_str() {
2075 "equals" => {
2076 if let Some(val) = &assertion.value {
2077 if let Some(n) = val.as_u64() {
2078 let rendered = crate::template_env::render(
2079 "csharp/assertion.jinja",
2080 minijinja::context! {
2081 assertion_type => "synthetic_embedding_dimensions_equals",
2082 synthetic_pred => expr,
2083 n => n,
2084 },
2085 );
2086 out.push_str(&rendered);
2087 }
2088 }
2089 }
2090 "greater_than" => {
2091 if let Some(val) = &assertion.value {
2092 if let Some(n) = val.as_u64() {
2093 let rendered = crate::template_env::render(
2094 "csharp/assertion.jinja",
2095 minijinja::context! {
2096 assertion_type => "synthetic_embedding_dimensions_greater_than",
2097 synthetic_pred => expr,
2098 n => n,
2099 },
2100 );
2101 out.push_str(&rendered);
2102 }
2103 }
2104 }
2105 _ => {
2106 out.push_str(" // skipped: unsupported assertion type on synthetic field 'embedding_dimensions'\n");
2107 }
2108 }
2109 return;
2110 }
2111 "embeddings_valid" | "embeddings_finite" | "embeddings_non_zero" | "embeddings_normalized" => {
2112 let synthetic_pred = match f.as_str() {
2113 "embeddings_valid" => {
2114 format!("{result_var}.All(e => e.Count > 0)")
2115 }
2116 "embeddings_finite" => {
2117 format!("{result_var}.All(e => e.All(v => !float.IsInfinity(v) && !float.IsNaN(v)))")
2118 }
2119 "embeddings_non_zero" => {
2120 format!("{result_var}.All(e => e.Any(v => v != 0.0f))")
2121 }
2122 "embeddings_normalized" => {
2123 format!(
2124 "{result_var}.All(e => {{ var n = e.Sum(v => (double)v * v); return Math.Abs(n - 1.0) < 1e-3; }})"
2125 )
2126 }
2127 _ => unreachable!(),
2128 };
2129 let synthetic_pred_type = match assertion.assertion_type.as_str() {
2130 "is_true" => "is_true",
2131 "is_false" => "is_false",
2132 _ => {
2133 out.push_str(&format!(
2134 " // skipped: unsupported assertion type on synthetic field '{f}'\n"
2135 ));
2136 return;
2137 }
2138 };
2139 let rendered = crate::template_env::render(
2140 "csharp/assertion.jinja",
2141 minijinja::context! {
2142 assertion_type => "synthetic_assertion",
2143 synthetic_pred => synthetic_pred,
2144 synthetic_pred_type => synthetic_pred_type,
2145 },
2146 );
2147 out.push_str(&rendered);
2148 return;
2149 }
2150 "keywords" | "keywords_count" => {
2153 let skipped_reason = format!("field '{f}' not available on C# ExtractionResult");
2154 let rendered = crate::template_env::render(
2155 "csharp/assertion.jinja",
2156 minijinja::context! {
2157 skipped_reason => skipped_reason,
2158 },
2159 );
2160 out.push_str(&rendered);
2161 return;
2162 }
2163 _ => {}
2164 }
2165 }
2166
2167 if let Some(f) = &assertion.field {
2169 if !f.is_empty() && !field_resolver.is_valid_for_result(f) {
2170 let skipped_reason = format!("field '{f}' not available on result type");
2171 let rendered = crate::template_env::render(
2172 "csharp/assertion.jinja",
2173 minijinja::context! {
2174 skipped_reason => skipped_reason,
2175 },
2176 );
2177 out.push_str(&rendered);
2178 return;
2179 }
2180 }
2181
2182 let is_count_assertion = matches!(
2185 assertion.assertion_type.as_str(),
2186 "count_equals" | "count_min" | "count_max"
2187 );
2188 let is_no_field = assertion.field.is_none() || assertion.field.as_ref().is_some_and(|f| f.is_empty());
2189 let use_list_directly = result_is_vec && is_count_assertion && is_no_field;
2190
2191 let effective_result_var: String = if result_is_vec && !use_list_directly {
2192 format!("{result_var}[0]")
2193 } else {
2194 result_var.to_string()
2195 };
2196
2197 let is_discriminated_union = assertion
2199 .field
2200 .as_ref()
2201 .is_some_and(|f| parse_discriminated_union_access(f).is_some());
2202
2203 if is_discriminated_union {
2205 if let Some((_, variant_name, inner_field)) = assertion
2206 .field
2207 .as_ref()
2208 .and_then(|f| parse_discriminated_union_access(f))
2209 {
2210 let mut hasher = std::collections::hash_map::DefaultHasher::new();
2212 inner_field.hash(&mut hasher);
2213 let var_hash = format!("{:x}", hasher.finish());
2214 let variant_var = format!("variant_{}", &var_hash[..8]);
2215 let _ = writeln!(
2216 out,
2217 " if ({effective_result_var}.Metadata.Format is FormatMetadata.{} {})",
2218 variant_name, &variant_var
2219 );
2220 let _ = writeln!(out, " {{");
2221 render_discriminated_union_assertion(out, assertion, &variant_var, &inner_field, result_is_vec);
2222 let _ = writeln!(out, " }}");
2223 let _ = writeln!(out, " else");
2224 let _ = writeln!(out, " {{");
2225 let _ = writeln!(
2226 out,
2227 " Assert.Fail(\"Expected {} format metadata\");",
2228 variant_name.to_lowercase()
2229 );
2230 let _ = writeln!(out, " }}");
2231 return;
2232 }
2233 }
2234
2235 let field_expr = if result_is_simple {
2236 effective_result_var.clone()
2237 } else {
2238 match &assertion.field {
2239 Some(f) if !f.is_empty() => field_resolver.accessor(f, "csharp", &effective_result_var),
2240 _ => effective_result_var.clone(),
2241 }
2242 };
2243
2244 let field_needs_json_serialize = if result_is_simple {
2248 result_is_array
2251 } else {
2252 match &assertion.field {
2253 Some(f) if !f.is_empty() => field_resolver.is_array(f),
2254 _ => !result_is_simple,
2256 }
2257 };
2258 let field_as_str = if field_needs_json_serialize {
2260 format!("JsonSerializer.Serialize({field_expr})")
2261 } else {
2262 format!("{field_expr}.ToString()")
2263 };
2264
2265 let field_is_enum = assertion.field.as_deref().filter(|f| !f.is_empty()).is_some_and(|f| {
2269 let resolved = field_resolver.resolve(f);
2270 fields_enum.contains(f) || fields_enum.contains(resolved)
2271 });
2272
2273 match assertion.assertion_type.as_str() {
2274 "equals" => {
2275 if let Some(expected) = &assertion.value {
2276 if field_is_enum && expected.is_string() {
2283 let s_lower = expected.as_str().map(|s| s.to_lowercase()).unwrap_or_default();
2284 let _ = writeln!(
2285 out,
2286 " Assert.Equal(\"{}\", {field_expr} == null ? null : JsonNamingPolicy.SnakeCaseLower.ConvertName({field_expr}.ToString()!));",
2287 escape_csharp(&s_lower)
2288 );
2289 return;
2290 }
2291 let cs_val = json_to_csharp(expected);
2292 let is_string_val = expected.is_string();
2293 let is_bool_true = expected.as_bool() == Some(true);
2294 let is_bool_false = expected.as_bool() == Some(false);
2295 let is_integer_val = expected.is_number() && !expected.as_f64().is_some_and(|f| f.fract() != 0.0);
2296
2297 let rendered = crate::template_env::render(
2298 "csharp/assertion.jinja",
2299 minijinja::context! {
2300 assertion_type => "equals",
2301 field_expr => field_expr.clone(),
2302 cs_val => cs_val,
2303 is_string_val => is_string_val,
2304 is_bool_true => is_bool_true,
2305 is_bool_false => is_bool_false,
2306 is_integer_val => is_integer_val,
2307 },
2308 );
2309 out.push_str(&rendered);
2310 }
2311 }
2312 "contains" => {
2313 if let Some(expected) = &assertion.value {
2314 let lower_expected = expected.as_str().map(|s| s.to_lowercase());
2321 let cs_val = lower_expected
2322 .as_deref()
2323 .map(|s| format!("\"{}\"", escape_csharp(s)))
2324 .unwrap_or_else(|| json_to_csharp(expected));
2325
2326 let rendered = crate::template_env::render(
2327 "csharp/assertion.jinja",
2328 minijinja::context! {
2329 assertion_type => "contains",
2330 field_as_str => field_as_str.clone(),
2331 cs_val => cs_val,
2332 },
2333 );
2334 out.push_str(&rendered);
2335 }
2336 }
2337 "contains_all" => {
2338 if let Some(values) = &assertion.values {
2339 let values_cs_lower: Vec<String> = values
2340 .iter()
2341 .map(|val| {
2342 let lower_val = val.as_str().map(|s| s.to_lowercase());
2343 lower_val
2344 .as_deref()
2345 .map(|s| format!("\"{}\"", escape_csharp(s)))
2346 .unwrap_or_else(|| json_to_csharp(val))
2347 })
2348 .collect();
2349
2350 let rendered = crate::template_env::render(
2351 "csharp/assertion.jinja",
2352 minijinja::context! {
2353 assertion_type => "contains_all",
2354 field_as_str => field_as_str.clone(),
2355 values_cs_lower => values_cs_lower,
2356 },
2357 );
2358 out.push_str(&rendered);
2359 }
2360 }
2361 "not_contains" => {
2362 if let Some(expected) = &assertion.value {
2363 let cs_val = json_to_csharp(expected);
2364
2365 let rendered = crate::template_env::render(
2366 "csharp/assertion.jinja",
2367 minijinja::context! {
2368 assertion_type => "not_contains",
2369 field_as_str => field_as_str.clone(),
2370 cs_val => cs_val,
2371 },
2372 );
2373 out.push_str(&rendered);
2374 }
2375 }
2376 "not_empty" => {
2377 let rendered = crate::template_env::render(
2378 "csharp/assertion.jinja",
2379 minijinja::context! {
2380 assertion_type => "not_empty",
2381 field_expr => field_expr.clone(),
2382 field_needs_json_serialize => field_needs_json_serialize,
2383 },
2384 );
2385 out.push_str(&rendered);
2386 }
2387 "is_empty" => {
2388 let rendered = crate::template_env::render(
2389 "csharp/assertion.jinja",
2390 minijinja::context! {
2391 assertion_type => "is_empty",
2392 field_expr => field_expr.clone(),
2393 field_needs_json_serialize => field_needs_json_serialize,
2394 },
2395 );
2396 out.push_str(&rendered);
2397 }
2398 "contains_any" => {
2399 if let Some(values) = &assertion.values {
2400 let checks: Vec<String> = values
2401 .iter()
2402 .map(|v| {
2403 let cs_val = json_to_csharp(v);
2404 format!("{field_as_str}.Contains({cs_val})")
2405 })
2406 .collect();
2407 let contains_any_expr = checks.join(" || ");
2408
2409 let rendered = crate::template_env::render(
2410 "csharp/assertion.jinja",
2411 minijinja::context! {
2412 assertion_type => "contains_any",
2413 contains_any_expr => contains_any_expr,
2414 },
2415 );
2416 out.push_str(&rendered);
2417 }
2418 }
2419 "greater_than" => {
2420 if let Some(val) = &assertion.value {
2421 let cs_val = json_to_csharp(val);
2422
2423 let rendered = crate::template_env::render(
2424 "csharp/assertion.jinja",
2425 minijinja::context! {
2426 assertion_type => "greater_than",
2427 field_expr => field_expr.clone(),
2428 cs_val => cs_val,
2429 },
2430 );
2431 out.push_str(&rendered);
2432 }
2433 }
2434 "less_than" => {
2435 if let Some(val) = &assertion.value {
2436 let cs_val = json_to_csharp(val);
2437
2438 let rendered = crate::template_env::render(
2439 "csharp/assertion.jinja",
2440 minijinja::context! {
2441 assertion_type => "less_than",
2442 field_expr => field_expr.clone(),
2443 cs_val => cs_val,
2444 },
2445 );
2446 out.push_str(&rendered);
2447 }
2448 }
2449 "greater_than_or_equal" => {
2450 if let Some(val) = &assertion.value {
2451 let cs_val = json_to_csharp(val);
2452
2453 let rendered = crate::template_env::render(
2454 "csharp/assertion.jinja",
2455 minijinja::context! {
2456 assertion_type => "greater_than_or_equal",
2457 field_expr => field_expr.clone(),
2458 cs_val => cs_val,
2459 },
2460 );
2461 out.push_str(&rendered);
2462 }
2463 }
2464 "less_than_or_equal" => {
2465 if let Some(val) = &assertion.value {
2466 let cs_val = json_to_csharp(val);
2467
2468 let rendered = crate::template_env::render(
2469 "csharp/assertion.jinja",
2470 minijinja::context! {
2471 assertion_type => "less_than_or_equal",
2472 field_expr => field_expr.clone(),
2473 cs_val => cs_val,
2474 },
2475 );
2476 out.push_str(&rendered);
2477 }
2478 }
2479 "starts_with" => {
2480 if let Some(expected) = &assertion.value {
2481 let cs_val = json_to_csharp(expected);
2482
2483 let rendered = crate::template_env::render(
2484 "csharp/assertion.jinja",
2485 minijinja::context! {
2486 assertion_type => "starts_with",
2487 field_expr => field_expr.clone(),
2488 cs_val => cs_val,
2489 },
2490 );
2491 out.push_str(&rendered);
2492 }
2493 }
2494 "ends_with" => {
2495 if let Some(expected) = &assertion.value {
2496 let cs_val = json_to_csharp(expected);
2497
2498 let rendered = crate::template_env::render(
2499 "csharp/assertion.jinja",
2500 minijinja::context! {
2501 assertion_type => "ends_with",
2502 field_expr => field_expr.clone(),
2503 cs_val => cs_val,
2504 },
2505 );
2506 out.push_str(&rendered);
2507 }
2508 }
2509 "min_length" => {
2510 if let Some(val) = &assertion.value {
2511 if let Some(n) = val.as_u64() {
2512 let rendered = crate::template_env::render(
2513 "csharp/assertion.jinja",
2514 minijinja::context! {
2515 assertion_type => "min_length",
2516 field_expr => field_expr.clone(),
2517 n => n,
2518 },
2519 );
2520 out.push_str(&rendered);
2521 }
2522 }
2523 }
2524 "max_length" => {
2525 if let Some(val) = &assertion.value {
2526 if let Some(n) = val.as_u64() {
2527 let rendered = crate::template_env::render(
2528 "csharp/assertion.jinja",
2529 minijinja::context! {
2530 assertion_type => "max_length",
2531 field_expr => field_expr.clone(),
2532 n => n,
2533 },
2534 );
2535 out.push_str(&rendered);
2536 }
2537 }
2538 }
2539 "count_min" => {
2540 if let Some(val) = &assertion.value {
2541 if let Some(n) = val.as_u64() {
2542 let rendered = crate::template_env::render(
2543 "csharp/assertion.jinja",
2544 minijinja::context! {
2545 assertion_type => "count_min",
2546 field_expr => field_expr.clone(),
2547 n => n,
2548 },
2549 );
2550 out.push_str(&rendered);
2551 }
2552 }
2553 }
2554 "count_equals" => {
2555 if let Some(val) = &assertion.value {
2556 if let Some(n) = val.as_u64() {
2557 let rendered = crate::template_env::render(
2558 "csharp/assertion.jinja",
2559 minijinja::context! {
2560 assertion_type => "count_equals",
2561 field_expr => field_expr.clone(),
2562 n => n,
2563 },
2564 );
2565 out.push_str(&rendered);
2566 }
2567 }
2568 }
2569 "is_true" => {
2570 let rendered = crate::template_env::render(
2571 "csharp/assertion.jinja",
2572 minijinja::context! {
2573 assertion_type => "is_true",
2574 field_expr => field_expr.clone(),
2575 },
2576 );
2577 out.push_str(&rendered);
2578 }
2579 "is_false" => {
2580 let rendered = crate::template_env::render(
2581 "csharp/assertion.jinja",
2582 minijinja::context! {
2583 assertion_type => "is_false",
2584 field_expr => field_expr.clone(),
2585 },
2586 );
2587 out.push_str(&rendered);
2588 }
2589 "not_error" => {
2590 let rendered = crate::template_env::render(
2592 "csharp/assertion.jinja",
2593 minijinja::context! {
2594 assertion_type => "not_error",
2595 },
2596 );
2597 out.push_str(&rendered);
2598 }
2599 "error" => {
2600 let rendered = crate::template_env::render(
2602 "csharp/assertion.jinja",
2603 minijinja::context! {
2604 assertion_type => "error",
2605 },
2606 );
2607 out.push_str(&rendered);
2608 }
2609 "method_result" => {
2610 if let Some(method_name) = &assertion.method {
2611 let call_expr = build_csharp_method_call(result_var, method_name, assertion.args.as_ref(), class_name);
2612 let check = assertion.check.as_deref().unwrap_or("is_true");
2613
2614 match check {
2615 "equals" => {
2616 if let Some(val) = &assertion.value {
2617 let is_check_bool_true = val.as_bool() == Some(true);
2618 let is_check_bool_false = val.as_bool() == Some(false);
2619 let cs_check_val = json_to_csharp(val);
2620
2621 let rendered = crate::template_env::render(
2622 "csharp/assertion.jinja",
2623 minijinja::context! {
2624 assertion_type => "method_result",
2625 check => "equals",
2626 call_expr => call_expr.clone(),
2627 is_check_bool_true => is_check_bool_true,
2628 is_check_bool_false => is_check_bool_false,
2629 cs_check_val => cs_check_val,
2630 },
2631 );
2632 out.push_str(&rendered);
2633 }
2634 }
2635 "is_true" => {
2636 let rendered = crate::template_env::render(
2637 "csharp/assertion.jinja",
2638 minijinja::context! {
2639 assertion_type => "method_result",
2640 check => "is_true",
2641 call_expr => call_expr.clone(),
2642 },
2643 );
2644 out.push_str(&rendered);
2645 }
2646 "is_false" => {
2647 let rendered = crate::template_env::render(
2648 "csharp/assertion.jinja",
2649 minijinja::context! {
2650 assertion_type => "method_result",
2651 check => "is_false",
2652 call_expr => call_expr.clone(),
2653 },
2654 );
2655 out.push_str(&rendered);
2656 }
2657 "greater_than_or_equal" => {
2658 if let Some(val) = &assertion.value {
2659 let check_n = val.as_u64().unwrap_or(0);
2660
2661 let rendered = crate::template_env::render(
2662 "csharp/assertion.jinja",
2663 minijinja::context! {
2664 assertion_type => "method_result",
2665 check => "greater_than_or_equal",
2666 call_expr => call_expr.clone(),
2667 check_n => check_n,
2668 },
2669 );
2670 out.push_str(&rendered);
2671 }
2672 }
2673 "count_min" => {
2674 if let Some(val) = &assertion.value {
2675 let check_n = val.as_u64().unwrap_or(0);
2676
2677 let rendered = crate::template_env::render(
2678 "csharp/assertion.jinja",
2679 minijinja::context! {
2680 assertion_type => "method_result",
2681 check => "count_min",
2682 call_expr => call_expr.clone(),
2683 check_n => check_n,
2684 },
2685 );
2686 out.push_str(&rendered);
2687 }
2688 }
2689 "is_error" => {
2690 let rendered = crate::template_env::render(
2691 "csharp/assertion.jinja",
2692 minijinja::context! {
2693 assertion_type => "method_result",
2694 check => "is_error",
2695 call_expr => call_expr.clone(),
2696 exception_class => exception_class,
2697 },
2698 );
2699 out.push_str(&rendered);
2700 }
2701 "contains" => {
2702 if let Some(val) = &assertion.value {
2703 let cs_check_val = json_to_csharp(val);
2704
2705 let rendered = crate::template_env::render(
2706 "csharp/assertion.jinja",
2707 minijinja::context! {
2708 assertion_type => "method_result",
2709 check => "contains",
2710 call_expr => call_expr.clone(),
2711 cs_check_val => cs_check_val,
2712 },
2713 );
2714 out.push_str(&rendered);
2715 }
2716 }
2717 other_check => {
2718 panic!("C# e2e generator: unsupported method_result check type: {other_check}");
2719 }
2720 }
2721 } else {
2722 panic!("C# e2e generator: method_result assertion missing 'method' field");
2723 }
2724 }
2725 "matches_regex" => {
2726 if let Some(expected) = &assertion.value {
2727 let cs_val = json_to_csharp(expected);
2728
2729 let rendered = crate::template_env::render(
2730 "csharp/assertion.jinja",
2731 minijinja::context! {
2732 assertion_type => "matches_regex",
2733 field_expr => field_expr.clone(),
2734 cs_val => cs_val,
2735 },
2736 );
2737 out.push_str(&rendered);
2738 }
2739 }
2740 other => {
2741 panic!("C# e2e generator: unsupported assertion type: {other}");
2742 }
2743 }
2744}
2745
2746fn sort_discriminator_first(value: serde_json::Value) -> serde_json::Value {
2753 match value {
2754 serde_json::Value::Object(map) => {
2755 let mut sorted = serde_json::Map::with_capacity(map.len());
2756 if let Some(type_val) = map.get("type") {
2758 sorted.insert("type".to_string(), sort_discriminator_first(type_val.clone()));
2759 }
2760 for (k, v) in map {
2761 if k != "type" {
2762 sorted.insert(k, sort_discriminator_first(v));
2763 }
2764 }
2765 serde_json::Value::Object(sorted)
2766 }
2767 serde_json::Value::Array(arr) => {
2768 serde_json::Value::Array(arr.into_iter().map(sort_discriminator_first).collect())
2769 }
2770 other => other,
2771 }
2772}
2773
2774fn json_to_csharp(value: &serde_json::Value) -> String {
2776 match value {
2777 serde_json::Value::String(s) => format!("\"{}\"", escape_csharp(s)),
2778 serde_json::Value::Bool(true) => "true".to_string(),
2779 serde_json::Value::Bool(false) => "false".to_string(),
2780 serde_json::Value::Number(n) => {
2781 if n.is_f64() {
2782 format!("{}d", n)
2783 } else {
2784 n.to_string()
2785 }
2786 }
2787 serde_json::Value::Null => "null".to_string(),
2788 serde_json::Value::Array(arr) => {
2789 let items: Vec<String> = arr.iter().map(json_to_csharp).collect();
2790 format!("new[] {{ {} }}", items.join(", "))
2791 }
2792 serde_json::Value::Object(_) => {
2793 let json_str = serde_json::to_string(value).unwrap_or_default();
2794 format!("\"{}\"", escape_csharp(&json_str))
2795 }
2796 }
2797}
2798
2799fn csharp_object_initializer(
2807 obj: &serde_json::Map<String, serde_json::Value>,
2808 type_name: &str,
2809 enum_fields: &HashMap<String, String>,
2810 nested_types: &HashMap<String, String>,
2811) -> String {
2812 if obj.is_empty() {
2813 return format!("new {type_name}()");
2814 }
2815
2816 static IMPLICIT_ENUM_FIELDS: &[(&str, &str)] = &[("output_format", "OutputFormat")];
2819
2820 let props: Vec<String> = obj
2821 .iter()
2822 .map(|(key, val)| {
2823 let pascal_key = key.to_upper_camel_case();
2824 let implicit_enum_type = IMPLICIT_ENUM_FIELDS
2825 .iter()
2826 .find(|(k, _)| *k == key.as_str())
2827 .map(|(_, t)| *t);
2828 let camel_key = key.to_lower_camel_case();
2832 let cs_val = if let Some(enum_type) = enum_fields
2833 .get(key.as_str())
2834 .or_else(|| enum_fields.get(camel_key.as_str()))
2835 .map(String::as_str)
2836 .or(implicit_enum_type)
2837 {
2838 if val.is_null() {
2840 "null".to_string()
2841 } else {
2842 let member = val
2843 .as_str()
2844 .map(|s| s.to_upper_camel_case())
2845 .unwrap_or_else(|| "null".to_string());
2846 format!("{enum_type}.{member}")
2847 }
2848 } else if let Some(nested_type) = nested_types
2849 .get(key.as_str())
2850 .or_else(|| nested_types.get(camel_key.as_str()))
2851 {
2852 let normalized = normalize_csharp_enum_values(val, enum_fields);
2854 let json_str = serde_json::to_string(&normalized).unwrap_or_default();
2855 format!(
2856 "JsonSerializer.Deserialize<{nested_type}>(\"{}\", ConfigOptions)!",
2857 escape_csharp(&json_str)
2858 )
2859 } else if let Some(arr) = val.as_array() {
2860 let items: Vec<String> = arr.iter().map(json_to_csharp).collect();
2862 format!("new List<string> {{ {} }}", items.join(", "))
2863 } else {
2864 json_to_csharp(val)
2865 };
2866 format!("{pascal_key} = {cs_val}")
2867 })
2868 .collect();
2869 format!("new {} {{ {} }}", type_name, props.join(", "))
2870}
2871
2872fn normalize_csharp_enum_values(value: &serde_json::Value, enum_fields: &HashMap<String, String>) -> serde_json::Value {
2877 match value {
2878 serde_json::Value::Object(map) => {
2879 let mut result = map.clone();
2880 for (key, val) in result.iter_mut() {
2881 let camel_key = key.to_lower_camel_case();
2884 if enum_fields.contains_key(key) || enum_fields.contains_key(camel_key.as_str()) {
2885 if let Some(s) = val.as_str() {
2887 *val = serde_json::Value::String(s.to_lowercase());
2888 }
2889 }
2890 }
2891 serde_json::Value::Object(result)
2892 }
2893 other => other.clone(),
2894 }
2895}
2896
2897fn build_csharp_visitor(
2908 setup_lines: &mut Vec<String>,
2909 class_decls: &mut Vec<String>,
2910 fixture_id: &str,
2911 visitor_spec: &crate::fixture::VisitorSpec,
2912) -> String {
2913 use heck::ToUpperCamelCase;
2914 let class_name = format!("{}Visitor", fixture_id.to_upper_camel_case());
2915 let var_name = format!("_visitor_{}", fixture_id.replace('-', "_"));
2916
2917 setup_lines.push(format!("var {var_name} = new {class_name}();"));
2918
2919 let mut decl = String::new();
2921 decl.push_str(&format!(" private sealed class {class_name} : IHtmlVisitor\n"));
2922 decl.push_str(" {\n");
2923
2924 let all_methods = [
2926 "visit_element_start",
2927 "visit_element_end",
2928 "visit_text",
2929 "visit_link",
2930 "visit_image",
2931 "visit_heading",
2932 "visit_code_block",
2933 "visit_code_inline",
2934 "visit_list_item",
2935 "visit_list_start",
2936 "visit_list_end",
2937 "visit_table_start",
2938 "visit_table_row",
2939 "visit_table_end",
2940 "visit_blockquote",
2941 "visit_strong",
2942 "visit_emphasis",
2943 "visit_strikethrough",
2944 "visit_underline",
2945 "visit_subscript",
2946 "visit_superscript",
2947 "visit_mark",
2948 "visit_line_break",
2949 "visit_horizontal_rule",
2950 "visit_custom_element",
2951 "visit_definition_list_start",
2952 "visit_definition_term",
2953 "visit_definition_description",
2954 "visit_definition_list_end",
2955 "visit_form",
2956 "visit_input",
2957 "visit_button",
2958 "visit_audio",
2959 "visit_video",
2960 "visit_iframe",
2961 "visit_details",
2962 "visit_summary",
2963 "visit_figure_start",
2964 "visit_figcaption",
2965 "visit_figure_end",
2966 ];
2967
2968 for method_name in &all_methods {
2970 if let Some(action) = visitor_spec.callbacks.get(*method_name) {
2971 emit_csharp_visitor_method(&mut decl, method_name, action);
2972 } else {
2973 emit_csharp_visitor_method(&mut decl, method_name, &CallbackAction::Continue);
2975 }
2976 }
2977
2978 decl.push_str(" }\n");
2979 class_decls.push(decl);
2980
2981 var_name
2982}
2983
2984fn emit_csharp_visitor_method(decl: &mut String, method_name: &str, action: &CallbackAction) {
2986 let camel_method = method_to_camel(method_name);
2987 let params = match method_name {
2988 "visit_link" => "NodeContext ctx, string href, string text, string title",
2989 "visit_image" => "NodeContext ctx, string src, string alt, string title",
2990 "visit_heading" => "NodeContext ctx, uint level, string text, string id",
2991 "visit_code_block" => "NodeContext ctx, string lang, string code",
2992 "visit_code_inline"
2993 | "visit_strong"
2994 | "visit_emphasis"
2995 | "visit_strikethrough"
2996 | "visit_underline"
2997 | "visit_subscript"
2998 | "visit_superscript"
2999 | "visit_mark"
3000 | "visit_button"
3001 | "visit_summary"
3002 | "visit_figcaption"
3003 | "visit_definition_term"
3004 | "visit_definition_description" => "NodeContext ctx, string text",
3005 "visit_text" => "NodeContext ctx, string text",
3006 "visit_list_item" => "NodeContext ctx, bool ordered, string marker, string text",
3007 "visit_blockquote" => "NodeContext ctx, string content, ulong depth",
3008 "visit_table_row" => "NodeContext ctx, List<string> cells, bool isHeader",
3009 "visit_custom_element" => "NodeContext ctx, string tagName, string html",
3010 "visit_form" => "NodeContext ctx, string actionUrl, string method",
3011 "visit_input" => "NodeContext ctx, string inputType, string name, string value",
3012 "visit_audio" | "visit_video" | "visit_iframe" => "NodeContext ctx, string src",
3013 "visit_details" => "NodeContext ctx, bool isOpen",
3014 "visit_element_end" | "visit_table_end" | "visit_definition_list_end" | "visit_figure_end" => {
3015 "NodeContext ctx, string output"
3016 }
3017 "visit_list_start" => "NodeContext ctx, bool ordered",
3018 "visit_list_end" => "NodeContext ctx, bool ordered, string output",
3019 "visit_element_start"
3020 | "visit_table_start"
3021 | "visit_definition_list_start"
3022 | "visit_figure_start"
3023 | "visit_line_break"
3024 | "visit_horizontal_rule" => "NodeContext ctx",
3025 _ => "NodeContext ctx",
3026 };
3027
3028 let (action_type, action_value) = match action {
3029 CallbackAction::Skip => ("skip", String::new()),
3030 CallbackAction::Continue => ("continue", String::new()),
3031 CallbackAction::PreserveHtml => ("preserve_html", String::new()),
3032 CallbackAction::Custom { output } => ("custom", escape_csharp(output)),
3033 CallbackAction::CustomTemplate { template, .. } => {
3034 let camel = snake_case_template_to_camel(template);
3035 ("custom_template", escape_csharp(&camel))
3036 }
3037 };
3038
3039 let rendered = crate::template_env::render(
3040 "csharp/visitor_method.jinja",
3041 minijinja::context! {
3042 camel_method => camel_method,
3043 params => params,
3044 action_type => action_type,
3045 action_value => action_value,
3046 },
3047 );
3048 let _ = write!(decl, "{}", rendered);
3049}
3050
3051fn method_to_camel(snake: &str) -> String {
3053 use heck::ToUpperCamelCase;
3054 snake.to_upper_camel_case()
3055}
3056
3057fn snake_case_template_to_camel(template: &str) -> String {
3060 use heck::ToLowerCamelCase;
3061 let mut out = String::with_capacity(template.len());
3062 let mut chars = template.chars().peekable();
3063 while let Some(c) = chars.next() {
3064 if c == '{' {
3065 let mut name = String::new();
3066 while let Some(&nc) = chars.peek() {
3067 if nc == '}' {
3068 chars.next();
3069 break;
3070 }
3071 name.push(nc);
3072 chars.next();
3073 }
3074 out.push('{');
3075 out.push_str(&name.to_lower_camel_case());
3076 out.push('}');
3077 } else {
3078 out.push(c);
3079 }
3080 }
3081 out
3082}
3083
3084fn build_csharp_method_call(
3089 result_var: &str,
3090 method_name: &str,
3091 args: Option<&serde_json::Value>,
3092 class_name: &str,
3093) -> String {
3094 match method_name {
3095 "root_child_count" => format!("{result_var}.RootNode.ChildCount"),
3096 "root_node_type" => format!("{result_var}.RootNode.Kind"),
3097 "named_children_count" => format!("{result_var}.RootNode.NamedChildCount"),
3098 "has_error_nodes" => format!("{class_name}.TreeHasErrorNodes({result_var})"),
3099 "error_count" | "tree_error_count" => format!("{class_name}.TreeErrorCount({result_var})"),
3100 "tree_to_sexp" => format!("{class_name}.TreeToSexp({result_var})"),
3101 "contains_node_type" => {
3102 let node_type = args
3103 .and_then(|a| a.get("node_type"))
3104 .and_then(|v| v.as_str())
3105 .unwrap_or("");
3106 format!("{class_name}.TreeContainsNodeType({result_var}, \"{node_type}\")")
3107 }
3108 "find_nodes_by_type" => {
3109 let node_type = args
3110 .and_then(|a| a.get("node_type"))
3111 .and_then(|v| v.as_str())
3112 .unwrap_or("");
3113 format!("{class_name}.FindNodesByType({result_var}, \"{node_type}\")")
3114 }
3115 "run_query" => {
3116 let query_source = args
3117 .and_then(|a| a.get("query_source"))
3118 .and_then(|v| v.as_str())
3119 .unwrap_or("");
3120 let language = args
3121 .and_then(|a| a.get("language"))
3122 .and_then(|v| v.as_str())
3123 .unwrap_or("");
3124 format!("{class_name}.RunQuery({result_var}, \"{language}\", \"{query_source}\", source)")
3125 }
3126 _ => {
3127 use heck::ToUpperCamelCase;
3128 let pascal = method_name.to_upper_camel_case();
3129 format!("{result_var}.{pascal}()")
3130 }
3131 }
3132}
3133
3134fn fixture_has_csharp_callable(fixture: &Fixture, e2e_config: &E2eConfig) -> bool {
3135 if fixture.is_http_test() {
3137 return false;
3138 }
3139 let call_config = e2e_config.resolve_call_for_fixture(
3141 fixture.call.as_deref(),
3142 &fixture.id,
3143 &fixture.resolved_category(),
3144 &fixture.tags,
3145 &fixture.input,
3146 );
3147 let cs_override = call_config
3148 .overrides
3149 .get("csharp")
3150 .or_else(|| e2e_config.call.overrides.get("csharp"));
3151 if cs_override.and_then(|o| o.client_factory.as_deref()).is_some() {
3153 return true;
3154 }
3155 cs_override.and_then(|o| o.function.as_deref()).is_some() || !call_config.function.is_empty()
3158}
3159
3160fn classify_bytes_value_csharp(s: &str) -> String {
3163 if let Some(first) = s.chars().next() {
3166 if first.is_ascii_alphanumeric() || first == '_' {
3167 if let Some(slash_pos) = s.find('/') {
3168 if slash_pos > 0 {
3169 let after_slash = &s[slash_pos + 1..];
3170 if after_slash.contains('.') && !after_slash.is_empty() {
3171 return format!("System.IO.File.ReadAllBytes(\"{}\")", s);
3173 }
3174 }
3175 }
3176 }
3177 }
3178
3179 if s.starts_with('<') || s.starts_with('{') || s.starts_with('[') || s.contains(' ') {
3182 return format!("System.Text.Encoding.UTF8.GetBytes(\"{}\")", escape_csharp(s));
3184 }
3185
3186 format!("System.Convert.FromBase64String(\"{}\")", s)
3190}
3191
3192#[cfg(test)]
3193mod tests {
3194 use crate::config::{CallConfig, E2eConfig, SelectWhen};
3195 use crate::fixture::Fixture;
3196 use std::collections::HashMap;
3197
3198 fn make_fixture_with_input(id: &str, input: serde_json::Value) -> Fixture {
3199 Fixture {
3200 id: id.to_string(),
3201 category: None,
3202 description: "test fixture".to_string(),
3203 tags: vec![],
3204 skip: None,
3205 env: None,
3206 call: None,
3207 input,
3208 mock_response: None,
3209 source: String::new(),
3210 http: None,
3211 assertions: vec![],
3212 visitor: None,
3213 }
3214 }
3215
3216 #[test]
3219 fn test_csharp_select_when_routes_to_batch_scrape() {
3220 let mut calls = HashMap::new();
3221 calls.insert(
3222 "batch_scrape".to_string(),
3223 CallConfig {
3224 function: "BatchScrape".to_string(),
3225 module: "KreuzBrowser".to_string(),
3226 select_when: Some(SelectWhen {
3227 input_has: Some("batch_urls".to_string()),
3228 ..Default::default()
3229 }),
3230 ..CallConfig::default()
3231 },
3232 );
3233
3234 let e2e_config = E2eConfig {
3235 call: CallConfig {
3236 function: "Scrape".to_string(),
3237 module: "KreuzBrowser".to_string(),
3238 ..CallConfig::default()
3239 },
3240 calls,
3241 ..E2eConfig::default()
3242 };
3243
3244 let fixture = make_fixture_with_input("batch_empty_urls", serde_json::json!({ "batch_urls": [] }));
3246
3247 let resolved_call = e2e_config.resolve_call_for_fixture(
3248 fixture.call.as_deref(),
3249 &fixture.id,
3250 &fixture.resolved_category(),
3251 &fixture.tags,
3252 &fixture.input,
3253 );
3254 assert_eq!(resolved_call.function, "BatchScrape");
3255
3256 let fixture_no_batch =
3258 make_fixture_with_input("simple_scrape", serde_json::json!({ "url": "https://example.com" }));
3259 let resolved_default = e2e_config.resolve_call_for_fixture(
3260 fixture_no_batch.call.as_deref(),
3261 &fixture_no_batch.id,
3262 &fixture_no_batch.resolved_category(),
3263 &fixture_no_batch.tags,
3264 &fixture_no_batch.input,
3265 );
3266 assert_eq!(resolved_default.function, "Scrape");
3267 }
3268}