1use crate::config::E2eConfig;
4use crate::escape::{go_string_literal, sanitize_filename};
5use crate::field_access::FieldResolver;
6use crate::fixture::{Assertion, CallbackAction, Fixture, FixtureGroup, ValidationErrorExpectation};
7use alef_codegen::naming::{go_param_name, to_go_name};
8use alef_core::backend::GeneratedFile;
9use alef_core::config::Language;
10use alef_core::config::ResolvedCrateConfig;
11use alef_core::hash::{self, CommentStyle};
12use anyhow::Result;
13use heck::ToUpperCamelCase;
14use std::fmt::Write as FmtWrite;
15use std::path::PathBuf;
16
17use super::E2eCodegen;
18use super::client;
19
20pub struct GoCodegen;
22
23impl E2eCodegen for GoCodegen {
24 fn generate(
25 &self,
26 groups: &[FixtureGroup],
27 e2e_config: &E2eConfig,
28 config: &ResolvedCrateConfig,
29 _type_defs: &[alef_core::ir::TypeDef],
30 ) -> Result<Vec<GeneratedFile>> {
31 let lang = self.language_name();
32 let output_base = PathBuf::from(e2e_config.effective_output()).join(lang);
33
34 let mut files = Vec::new();
35
36 let call = &e2e_config.call;
38 let overrides = call.overrides.get(lang);
39 let configured_go_module_path = config.go.as_ref().and_then(|go| go.module.as_ref()).cloned();
40 let module_path = overrides
41 .and_then(|o| o.module.as_ref())
42 .cloned()
43 .or_else(|| configured_go_module_path.clone())
44 .unwrap_or_else(|| call.module.clone());
45 let import_alias = overrides
46 .and_then(|o| o.alias.as_ref())
47 .cloned()
48 .unwrap_or_else(|| "pkg".to_string());
49
50 let go_pkg = e2e_config.resolve_package("go");
52 let go_module_path = go_pkg
53 .as_ref()
54 .and_then(|p| p.module.as_ref())
55 .cloned()
56 .or_else(|| configured_go_module_path.clone())
57 .unwrap_or_else(|| module_path.clone());
58 let replace_path = go_pkg
59 .as_ref()
60 .and_then(|p| p.path.as_ref())
61 .cloned()
62 .or_else(|| Some(format!("../../{}", config.package_dir(Language::Go))));
63 let go_version = go_pkg
64 .as_ref()
65 .and_then(|p| p.version.as_ref())
66 .cloned()
67 .unwrap_or_else(|| {
68 config
69 .resolved_version()
70 .map(|v| format!("v{v}"))
71 .unwrap_or_else(|| "v0.0.0".to_string())
72 });
73 let field_resolver = FieldResolver::new(
74 &e2e_config.fields,
75 &e2e_config.fields_optional,
76 &e2e_config.result_fields,
77 &e2e_config.fields_array,
78 &std::collections::HashSet::new(),
79 );
80
81 let effective_replace = match e2e_config.dep_mode {
84 crate::config::DependencyMode::Registry => None,
85 crate::config::DependencyMode::Local => replace_path.as_deref().map(String::from),
86 };
87 let effective_go_version = if effective_replace.is_some() {
93 fix_go_major_version(&go_module_path, &go_version)
94 } else {
95 go_version.clone()
96 };
97 files.push(GeneratedFile {
98 path: output_base.join("go.mod"),
99 content: render_go_mod(&go_module_path, effective_replace.as_deref(), &effective_go_version),
100 generated_header: false,
101 });
102
103 let emits_executable_test =
105 |fixture: &Fixture| fixture.is_http_test() || fixture_has_go_callable(fixture, e2e_config);
106 let needs_json_stringify = groups.iter().flat_map(|g| g.fixtures.iter()).any(|f| {
107 emits_executable_test(f)
108 && f.assertions.iter().any(|a| {
109 matches!(
110 a.assertion_type.as_str(),
111 "contains" | "contains_all" | "contains_any" | "not_contains"
112 ) && {
113 if a.field.as_ref().is_none_or(|f| f.is_empty()) {
114 e2e_config
115 .resolve_call_for_fixture(f.call.as_deref(), &f.input)
116 .result_is_array
117 } else {
118 let resolved_name = field_resolver.resolve(a.field.as_deref().unwrap_or(""));
119 field_resolver.is_array(resolved_name)
120 }
121 }
122 })
123 });
124
125 if needs_json_stringify {
127 files.push(GeneratedFile {
128 path: output_base.join("helpers_test.go"),
129 content: render_helpers_test_go(),
130 generated_header: true,
131 });
132 }
133
134 let has_file_fixtures = groups
142 .iter()
143 .flat_map(|g| g.fixtures.iter())
144 .any(|f| f.http.is_none() && !f.needs_mock_server());
145
146 let needs_main_test = has_file_fixtures
147 || groups.iter().flat_map(|g| g.fixtures.iter()).any(|f| {
148 if f.needs_mock_server() {
149 return true;
150 }
151 let cc = e2e_config.resolve_call_for_fixture(f.call.as_deref(), &f.input);
152 let go_override = cc.overrides.get("go").or_else(|| e2e_config.call.overrides.get("go"));
153 go_override.and_then(|o| o.client_factory.as_deref()).is_some()
154 });
155
156 if needs_main_test {
157 files.push(GeneratedFile {
158 path: output_base.join("main_test.go"),
159 content: render_main_test_go(&e2e_config.test_documents_dir),
160 generated_header: true,
161 });
162 }
163
164 for group in groups {
166 let active: Vec<&Fixture> = group
167 .fixtures
168 .iter()
169 .filter(|f| super::should_include_fixture(f, lang, e2e_config))
170 .collect();
171
172 if active.is_empty() {
173 continue;
174 }
175
176 let filename = format!("{}_test.go", sanitize_filename(&group.category));
177 let content = render_test_file(
178 &group.category,
179 &active,
180 &module_path,
181 &import_alias,
182 &field_resolver,
183 e2e_config,
184 );
185 files.push(GeneratedFile {
186 path: output_base.join(filename),
187 content,
188 generated_header: true,
189 });
190 }
191
192 Ok(files)
193 }
194
195 fn language_name(&self) -> &'static str {
196 "go"
197 }
198}
199
200fn fix_go_major_version(module_path: &str, version: &str) -> String {
207 let major = module_path
209 .rsplit('/')
210 .next()
211 .and_then(|seg| seg.strip_prefix('v'))
212 .and_then(|n| n.parse::<u64>().ok())
213 .filter(|&n| n >= 2);
214
215 let Some(n) = major else {
216 return version.to_string();
217 };
218
219 let expected_prefix = format!("v{n}.");
221 if version.starts_with(&expected_prefix) {
222 return version.to_string();
223 }
224
225 format!("v{n}.0.0")
226}
227
228fn render_go_mod(go_module_path: &str, replace_path: Option<&str>, version: &str) -> String {
229 let mut out = String::new();
230 let _ = writeln!(out, "module e2e_go");
231 let _ = writeln!(out);
232 let _ = writeln!(out, "go 1.26");
233 let _ = writeln!(out);
234 let _ = writeln!(out, "require (");
235 let _ = writeln!(out, "\t{go_module_path} {version}");
236 let _ = writeln!(out, "\tgithub.com/stretchr/testify v1.11.1");
237 let _ = writeln!(out, ")");
238
239 if let Some(path) = replace_path {
240 let _ = writeln!(out);
241 let _ = writeln!(out, "replace {go_module_path} => {path}");
242 }
243
244 out
245}
246
247fn render_main_test_go(test_documents_dir: &str) -> String {
253 let mut out = String::new();
255 let _ = writeln!(out, "package e2e_test");
256 let _ = writeln!(out);
257 let _ = writeln!(out, "import (");
258 let _ = writeln!(out, "\t\"bufio\"");
259 let _ = writeln!(out, "\t\"encoding/json\"");
260 let _ = writeln!(out, "\t\"io\"");
261 let _ = writeln!(out, "\t\"os\"");
262 let _ = writeln!(out, "\t\"os/exec\"");
263 let _ = writeln!(out, "\t\"path/filepath\"");
264 let _ = writeln!(out, "\t\"runtime\"");
265 let _ = writeln!(out, "\t\"strings\"");
266 let _ = writeln!(out, "\t\"testing\"");
267 let _ = writeln!(out, ")");
268 let _ = writeln!(out);
269 let _ = writeln!(out, "func TestMain(m *testing.M) {{");
270 let _ = writeln!(out, "\t_, filename, _, _ := runtime.Caller(0)");
271 let _ = writeln!(out, "\tdir := filepath.Dir(filename)");
272 let _ = writeln!(out);
273 let _ = writeln!(
274 out,
275 "\t// Change to the configured test-documents directory so that fixture file paths like"
276 );
277 let _ = writeln!(
278 out,
279 "\t// \"pdf/fake_memo.pdf\" resolve correctly when running go test from e2e/go/."
280 );
281 let _ = writeln!(
282 out,
283 "\ttestDocumentsDir := filepath.Join(dir, \"..\", \"..\", \"{test_documents_dir}\")"
284 );
285 let _ = writeln!(out, "\tif err := os.Chdir(testDocumentsDir); err != nil {{");
286 let _ = writeln!(out, "\t\tpanic(err)");
287 let _ = writeln!(out, "\t}}");
288 let _ = writeln!(out);
289 let _ = writeln!(out, "\t// Start the mock HTTP server if it exists.");
290 let _ = writeln!(
291 out,
292 "\tmockServerBin := filepath.Join(dir, \"..\", \"rust\", \"target\", \"release\", \"mock-server\")"
293 );
294 let _ = writeln!(out, "\tif _, err := os.Stat(mockServerBin); err == nil {{");
295 let _ = writeln!(
296 out,
297 "\t\tfixturesDir := filepath.Join(dir, \"..\", \"..\", \"fixtures\")"
298 );
299 let _ = writeln!(out, "\t\tcmd := exec.Command(mockServerBin, fixturesDir)");
300 let _ = writeln!(out, "\t\tcmd.Stderr = os.Stderr");
301 let _ = writeln!(out, "\t\tstdout, err := cmd.StdoutPipe()");
302 let _ = writeln!(out, "\t\tif err != nil {{");
303 let _ = writeln!(out, "\t\t\tpanic(err)");
304 let _ = writeln!(out, "\t\t}}");
305 let _ = writeln!(out, "\t\t// Keep a writable pipe to the mock-server's stdin so the");
306 let _ = writeln!(
307 out,
308 "\t\t// server does not see EOF and exit immediately. The mock-server"
309 );
310 let _ = writeln!(out, "\t\t// blocks reading stdin until the parent closes the pipe.");
311 let _ = writeln!(out, "\t\tstdin, err := cmd.StdinPipe()");
312 let _ = writeln!(out, "\t\tif err != nil {{");
313 let _ = writeln!(out, "\t\t\tpanic(err)");
314 let _ = writeln!(out, "\t\t}}");
315 let _ = writeln!(out, "\t\tif err := cmd.Start(); err != nil {{");
316 let _ = writeln!(out, "\t\t\tpanic(err)");
317 let _ = writeln!(out, "\t\t}}");
318 let _ = writeln!(out, "\t\tscanner := bufio.NewScanner(stdout)");
319 let _ = writeln!(out, "\t\tfor scanner.Scan() {{");
320 let _ = writeln!(out, "\t\t\tline := scanner.Text()");
321 let _ = writeln!(out, "\t\t\tif strings.HasPrefix(line, \"MOCK_SERVER_URL=\") {{");
322 let _ = writeln!(
323 out,
324 "\t\t\t\t_ = os.Setenv(\"MOCK_SERVER_URL\", strings.TrimPrefix(line, \"MOCK_SERVER_URL=\"))"
325 );
326 let _ = writeln!(out, "\t\t\t}} else if strings.HasPrefix(line, \"MOCK_SERVERS=\") {{");
327 let _ = writeln!(out, "\t\t\t\t_jsonVal := strings.TrimPrefix(line, \"MOCK_SERVERS=\")");
328 let _ = writeln!(out, "\t\t\t\t_ = os.Setenv(\"MOCK_SERVERS\", _jsonVal)");
329 let _ = writeln!(
330 out,
331 "\t\t\t\t// Parse the JSON map and set per-fixture env vars (MOCK_SERVER_<FIXTURE_ID>)."
332 );
333 let _ = writeln!(out, "\t\t\t\tvar _perFixture map[string]string");
334 let _ = writeln!(
335 out,
336 "\t\t\t\tif err := json.Unmarshal([]byte(_jsonVal), &_perFixture); err == nil {{"
337 );
338 let _ = writeln!(out, "\t\t\t\t\tfor _fid, _furl := range _perFixture {{");
339 let _ = writeln!(
340 out,
341 "\t\t\t\t\t\t_ = os.Setenv(\"MOCK_SERVER_\"+strings.ToUpper(_fid), _furl)"
342 );
343 let _ = writeln!(out, "\t\t\t\t\t}}");
344 let _ = writeln!(out, "\t\t\t\t}}");
345 let _ = writeln!(out, "\t\t\t\tbreak");
346 let _ = writeln!(out, "\t\t\t}} else if os.Getenv(\"MOCK_SERVER_URL\") != \"\" {{");
347 let _ = writeln!(out, "\t\t\t\tbreak");
348 let _ = writeln!(out, "\t\t\t}}");
349 let _ = writeln!(out, "\t\t}}");
350 let _ = writeln!(out, "\t\tgo func() {{ _, _ = io.Copy(io.Discard, stdout) }}()");
351 let _ = writeln!(out, "\t\tcode := m.Run()");
352 let _ = writeln!(out, "\t\t_ = stdin.Close()");
353 let _ = writeln!(out, "\t\t_ = cmd.Process.Signal(os.Interrupt)");
354 let _ = writeln!(out, "\t\t_ = cmd.Wait()");
355 let _ = writeln!(out, "\t\tos.Exit(code)");
356 let _ = writeln!(out, "\t}} else {{");
357 let _ = writeln!(out, "\t\tcode := m.Run()");
358 let _ = writeln!(out, "\t\tos.Exit(code)");
359 let _ = writeln!(out, "\t}}");
360 let _ = writeln!(out, "}}");
361 out
362}
363
364fn render_helpers_test_go() -> String {
367 let mut out = String::new();
368 let _ = writeln!(out, "package e2e_test");
369 let _ = writeln!(out);
370 let _ = writeln!(out, "import \"encoding/json\"");
371 let _ = writeln!(out);
372 let _ = writeln!(out, "// jsonString converts a value to its JSON string representation.");
373 let _ = writeln!(
374 out,
375 "// Array fields use jsonString instead of fmt.Sprint to preserve structure."
376 );
377 let _ = writeln!(out, "func jsonString(value any) string {{");
378 let _ = writeln!(out, "\tencoded, err := json.Marshal(value)");
379 let _ = writeln!(out, "\tif err != nil {{");
380 let _ = writeln!(out, "\t\treturn \"\"");
381 let _ = writeln!(out, "\t}}");
382 let _ = writeln!(out, "\treturn string(encoded)");
383 let _ = writeln!(out, "}}");
384 out
385}
386
387fn render_test_file(
388 category: &str,
389 fixtures: &[&Fixture],
390 go_module_path: &str,
391 import_alias: &str,
392 field_resolver: &FieldResolver,
393 e2e_config: &crate::config::E2eConfig,
394) -> String {
395 let mut out = String::new();
396 let emits_executable_test =
397 |fixture: &Fixture| fixture.is_http_test() || fixture_has_go_callable(fixture, e2e_config);
398
399 out.push_str(&hash::header(CommentStyle::DoubleSlash));
401 let _ = writeln!(out);
402
403 let needs_pkg = fixtures
412 .iter()
413 .any(|f| fixture_has_go_callable(f, e2e_config) || f.is_http_test() || f.visitor.is_some());
414
415 let needs_os = fixtures.iter().any(|f| {
418 if f.is_http_test() {
419 return true;
420 }
421 if !emits_executable_test(f) {
422 return false;
423 }
424 let call_config = e2e_config.resolve_call_for_fixture(f.call.as_deref(), &f.input);
425 let go_override = call_config
426 .overrides
427 .get("go")
428 .or_else(|| e2e_config.call.overrides.get("go"));
429 if go_override.and_then(|o| o.client_factory.as_deref()).is_some() {
430 return true;
431 }
432 let call_args = &call_config.args;
433 if call_args.iter().any(|a| a.arg_type == "mock_url") {
436 return true;
437 }
438 call_args.iter().any(|a| {
439 if a.arg_type != "bytes" {
440 return false;
441 }
442 let mut current = &f.input;
445 let path = a.field.strip_prefix("input.").unwrap_or(&a.field);
446 for segment in path.split('.') {
447 match current.get(segment) {
448 Some(next) => current = next,
449 None => return false,
450 }
451 }
452 current.is_string()
453 })
454 });
455
456 let needs_filepath = false;
459
460 let _needs_json_stringify = fixtures.iter().any(|f| {
461 emits_executable_test(f)
462 && f.assertions.iter().any(|a| {
463 matches!(
464 a.assertion_type.as_str(),
465 "contains" | "contains_all" | "contains_any" | "not_contains"
466 ) && {
467 if a.field.as_ref().is_none_or(|f| f.is_empty()) {
470 e2e_config
472 .resolve_call_for_fixture(f.call.as_deref(), &f.input)
473 .result_is_array
474 } else {
475 let resolved_name = field_resolver.resolve(a.field.as_deref().unwrap_or(""));
477 field_resolver.is_array(resolved_name)
478 }
479 }
480 })
481 });
482
483 let needs_json = fixtures.iter().any(|f| {
487 if let Some(http) = &f.http {
490 let body_needs_json = http
491 .expected_response
492 .body
493 .as_ref()
494 .is_some_and(|b| matches!(b, serde_json::Value::Object(_) | serde_json::Value::Array(_)));
495 let partial_needs_json = http.expected_response.body_partial.is_some();
496 let ve_needs_json = http
497 .expected_response
498 .validation_errors
499 .as_ref()
500 .is_some_and(|v| !v.is_empty());
501 if body_needs_json || partial_needs_json || ve_needs_json {
502 return true;
503 }
504 }
505 if !emits_executable_test(f) {
506 return false;
507 }
508
509 let call = e2e_config.resolve_call_for_fixture(f.call.as_deref(), &f.input);
510 let call_args = &call.args;
511 let has_handle = call_args.iter().any(|a| a.arg_type == "handle") && {
513 call_args.iter().filter(|a| a.arg_type == "handle").any(|a| {
514 let field = a.field.strip_prefix("input.").unwrap_or(&a.field);
515 let v = f.input.get(field).unwrap_or(&serde_json::Value::Null);
516 !(v.is_null() || v.is_object() && v.as_object().is_some_and(|o| o.is_empty()))
517 })
518 };
519 let go_override = call.overrides.get("go");
521 let opts_type = go_override.and_then(|o| o.options_type.as_deref()).or_else(|| {
522 e2e_config
523 .call
524 .overrides
525 .get("go")
526 .and_then(|o| o.options_type.as_deref())
527 });
528 let has_json_obj = call_args.iter().any(|a| {
529 if a.arg_type != "json_object" {
530 return false;
531 }
532 let v = if a.field == "input" {
533 &f.input
534 } else {
535 let field = a.field.strip_prefix("input.").unwrap_or(&a.field);
536 f.input.get(field).unwrap_or(&serde_json::Value::Null)
537 };
538 if v.is_array() {
539 return true;
540 } opts_type.is_some() && v.is_object() && !v.as_object().is_some_and(|o| o.is_empty())
542 });
543 has_handle || has_json_obj
544 });
545
546 let needs_base64 = false;
551
552 let needs_fmt = fixtures.iter().any(|f| {
557 f.visitor.as_ref().is_some_and(|v| {
558 v.callbacks.values().any(|action| {
559 if let CallbackAction::CustomTemplate { template } = action {
560 template.contains('{')
561 } else {
562 false
563 }
564 })
565 }) || (emits_executable_test(f)
566 && f.assertions.iter().any(|a| {
567 matches!(
568 a.assertion_type.as_str(),
569 "contains" | "contains_all" | "contains_any" | "not_contains"
570 ) && {
571 if a.field.as_ref().is_none_or(|f| f.is_empty()) {
576 !e2e_config
578 .resolve_call_for_fixture(f.call.as_deref(), &f.input)
579 .result_is_array
580 } else {
581 let field = a.field.as_deref().unwrap_or("");
585 let resolved_name = field_resolver.resolve(field);
586 !field_resolver.is_array(resolved_name) && field_resolver.is_valid_for_result(field)
587 }
588 }
589 }))
590 });
591
592 let needs_strings = fixtures.iter().any(|f| {
595 if !emits_executable_test(f) {
596 return false;
597 }
598 f.assertions.iter().any(|a| {
599 let type_needs_strings = if a.assertion_type == "equals" {
600 a.value.as_ref().is_some_and(|v| v.is_string())
602 } else {
603 matches!(
604 a.assertion_type.as_str(),
605 "contains" | "contains_all" | "contains_any" | "not_contains" | "starts_with" | "ends_with"
606 )
607 };
608 let field_valid = a
609 .field
610 .as_ref()
611 .map(|f| f.is_empty() || field_resolver.is_valid_for_result(f))
612 .unwrap_or(true);
613 type_needs_strings && field_valid
614 })
615 });
616
617 let needs_assert = fixtures.iter().any(|f| {
619 if !emits_executable_test(f) {
620 return false;
621 }
622 if f.resolved_category() == "validation" && f.assertions.iter().any(|a| a.assertion_type == "error") {
626 return true;
627 }
628 f.assertions.iter().any(|a| {
629 let field_valid = a
630 .field
631 .as_ref()
632 .map(|f| f.is_empty() || field_resolver.is_valid_for_result(f))
633 .unwrap_or(true);
634 let synthetic_field_needs_assert = match a.field.as_deref() {
635 Some("chunks_have_content" | "chunks_have_embeddings") => {
636 matches!(a.assertion_type.as_str(), "is_true" | "is_false")
637 }
638 Some("embeddings") => {
639 matches!(
640 a.assertion_type.as_str(),
641 "count_equals" | "count_min" | "not_empty" | "is_empty"
642 )
643 }
644 _ => false,
645 };
646 let type_needs_assert = matches!(
647 a.assertion_type.as_str(),
648 "count_equals"
649 | "count_min"
650 | "count_max"
651 | "is_true"
652 | "is_false"
653 | "method_result"
654 | "min_length"
655 | "max_length"
656 | "matches_regex"
657 );
658 synthetic_field_needs_assert || type_needs_assert && field_valid
659 })
660 });
661
662 let has_http_fixtures = fixtures.iter().any(|f| f.is_http_test());
664 let needs_http = has_http_fixtures;
665 let needs_io = has_http_fixtures;
667
668 let needs_reflect = fixtures.iter().any(|f| {
671 if let Some(http) = &f.http {
672 let body_needs_reflect = http
673 .expected_response
674 .body
675 .as_ref()
676 .is_some_and(|b| matches!(b, serde_json::Value::Object(_) | serde_json::Value::Array(_)));
677 let partial_needs_reflect = http.expected_response.body_partial.is_some();
678 body_needs_reflect || partial_needs_reflect
679 } else {
680 false
681 }
682 });
683
684 let _ = writeln!(out, "// E2e tests for category: {category}");
685 let _ = writeln!(out, "package e2e_test");
686 let _ = writeln!(out);
687 let _ = writeln!(out, "import (");
688 if needs_base64 {
689 let _ = writeln!(out, "\t\"encoding/base64\"");
690 }
691 if needs_json || needs_reflect {
692 let _ = writeln!(out, "\t\"encoding/json\"");
693 }
694 if needs_fmt {
695 let _ = writeln!(out, "\t\"fmt\"");
696 }
697 if needs_io {
698 let _ = writeln!(out, "\t\"io\"");
699 }
700 if needs_http {
701 let _ = writeln!(out, "\t\"net/http\"");
702 }
703 if needs_os {
704 let _ = writeln!(out, "\t\"os\"");
705 }
706 let _ = needs_filepath; if needs_reflect {
708 let _ = writeln!(out, "\t\"reflect\"");
709 }
710 if needs_strings {
711 let _ = writeln!(out, "\t\"strings\"");
712 }
713 let _ = writeln!(out, "\t\"testing\"");
714 if needs_assert {
715 let _ = writeln!(out);
716 let _ = writeln!(out, "\t\"github.com/stretchr/testify/assert\"");
717 }
718 if needs_pkg {
719 let _ = writeln!(out);
720 let _ = writeln!(out, "\t{import_alias} \"{go_module_path}\"");
721 }
722 let _ = writeln!(out, ")");
723 let _ = writeln!(out);
724
725 for fixture in fixtures.iter() {
727 if let Some(visitor_spec) = &fixture.visitor {
728 let struct_name = visitor_struct_name(&fixture.id);
729 emit_go_visitor_struct(&mut out, &struct_name, visitor_spec, import_alias);
730 let _ = writeln!(out);
731 }
732 }
733
734 for (i, fixture) in fixtures.iter().enumerate() {
735 render_test_function(&mut out, fixture, import_alias, field_resolver, e2e_config);
736 if i + 1 < fixtures.len() {
737 let _ = writeln!(out);
738 }
739 }
740
741 while out.ends_with("\n\n") {
743 out.pop();
744 }
745 if !out.ends_with('\n') {
746 out.push('\n');
747 }
748 out
749}
750
751fn fixture_has_go_callable(fixture: &Fixture, e2e_config: &crate::config::E2eConfig) -> bool {
760 if fixture.is_http_test() {
762 return false;
763 }
764 let call_config = e2e_config.resolve_call_for_fixture(fixture.call.as_deref(), &fixture.input);
765 if call_config.skip_languages.iter().any(|l| l == "go") {
768 return false;
769 }
770 let go_override = call_config
771 .overrides
772 .get("go")
773 .or_else(|| e2e_config.call.overrides.get("go"));
774 if go_override.and_then(|o| o.client_factory.as_deref()).is_some() {
777 return true;
778 }
779 let fn_name = go_override
783 .and_then(|o| o.function.as_deref())
784 .filter(|s| !s.is_empty())
785 .unwrap_or(call_config.function.as_str());
786 !fn_name.is_empty()
787}
788
789fn render_test_function(
790 out: &mut String,
791 fixture: &Fixture,
792 import_alias: &str,
793 field_resolver: &FieldResolver,
794 e2e_config: &crate::config::E2eConfig,
795) {
796 let fn_name = fixture.id.to_upper_camel_case();
797 let description = &fixture.description;
798
799 if fixture.http.is_some() {
801 render_http_test_function(out, fixture);
802 return;
803 }
804
805 if !fixture_has_go_callable(fixture, e2e_config) {
810 let _ = writeln!(out, "func Test_{fn_name}(t *testing.T) {{");
811 let _ = writeln!(out, "\t// {description}");
812 let _ = writeln!(
813 out,
814 "\tt.Skip(\"non-HTTP fixture: Go binding does not expose a callable for the configured `[e2e.call]` function\")"
815 );
816 let _ = writeln!(out, "}}");
817 return;
818 }
819
820 let call_config = e2e_config.resolve_call_for_fixture(fixture.call.as_deref(), &fixture.input);
822 let lang = "go";
823 let overrides = call_config.overrides.get(lang);
824
825 let base_function_name = overrides
829 .and_then(|o| o.function.as_deref())
830 .unwrap_or(&call_config.function);
831 let function_name = to_go_name(base_function_name);
832 let result_var = &call_config.result_var;
833 let args = &call_config.args;
834
835 let returns_result = overrides
838 .and_then(|o| o.returns_result)
839 .unwrap_or(call_config.returns_result);
840
841 let returns_void = call_config.returns_void;
844
845 let result_is_simple = overrides.map(|o| o.result_is_simple).unwrap_or_else(|| {
848 if call_config.result_is_simple {
849 return true;
850 }
851 call_config
852 .overrides
853 .get("rust")
854 .map(|o| o.result_is_simple)
855 .unwrap_or(false)
856 });
857
858 let result_is_array = overrides
861 .map(|o| o.result_is_array)
862 .unwrap_or(call_config.result_is_array);
863
864 let call_options_type = overrides.and_then(|o| o.options_type.as_deref()).or_else(|| {
866 e2e_config
867 .call
868 .overrides
869 .get("go")
870 .and_then(|o| o.options_type.as_deref())
871 });
872
873 let call_options_ptr = overrides.map(|o| o.options_ptr).unwrap_or_else(|| {
875 e2e_config
876 .call
877 .overrides
878 .get("go")
879 .map(|o| o.options_ptr)
880 .unwrap_or(false)
881 });
882
883 let expects_error = fixture.assertions.iter().any(|a| a.assertion_type == "error");
884 let validation_creation_failure = expects_error && fixture.resolved_category() == "validation";
888
889 let client_factory = overrides.and_then(|o| o.client_factory.as_deref()).or_else(|| {
892 e2e_config
893 .call
894 .overrides
895 .get(lang)
896 .and_then(|o| o.client_factory.as_deref())
897 });
898
899 let (mut setup_lines, args_str) = build_args_and_setup(
900 &fixture.input,
901 args,
902 import_alias,
903 call_options_type,
904 fixture,
905 call_options_ptr,
906 validation_creation_failure,
907 );
908
909 let mut visitor_opts_var: Option<String> = None;
912 if fixture.visitor.is_some() {
913 let struct_name = visitor_struct_name(&fixture.id);
914 setup_lines.push(format!("visitor := &{struct_name}{{}}"));
915 let opts_type = call_options_type.unwrap_or("ConversionOptions");
917 let opts_var = "opts".to_string();
918 setup_lines.push(format!("opts := &{import_alias}.{opts_type}{{}}"));
919 setup_lines.push("opts.Visitor = visitor".to_string());
920 visitor_opts_var = Some(opts_var);
921 }
922
923 let go_extra_args = overrides.map(|o| o.extra_args.as_slice()).unwrap_or(&[]).to_vec();
924 let final_args = {
925 let mut parts: Vec<String> = Vec::new();
926 if !args_str.is_empty() {
927 let processed_args = if let Some(ref opts_var) = visitor_opts_var {
929 args_str.trim_end_matches(", nil").to_string() + ", " + opts_var
930 } else {
931 args_str
932 };
933 parts.push(processed_args);
934 }
935 parts.extend(go_extra_args);
936 parts.join(", ")
937 };
938
939 let _ = writeln!(out, "func Test_{fn_name}(t *testing.T) {{");
940 let _ = writeln!(out, "\t// {description}");
941
942 let has_mock = fixture.mock_response.is_some() || fixture.http.is_some();
946 let api_key_var = fixture.env.as_ref().and_then(|e| e.api_key_var.as_deref());
947 if let Some(var) = api_key_var {
948 if has_mock {
949 let fixture_id = &fixture.id;
953 let _ = writeln!(out, "\tapiKey := os.Getenv(\"{var}\")");
954 let _ = writeln!(out, "\tvar baseURL *string");
955 let _ = writeln!(out, "\tif apiKey != \"\" {{");
956 let _ = writeln!(out, "\t\tt.Logf(\"{fixture_id}: using real API ({var} is set)\")");
957 let _ = writeln!(out, "\t}} else {{");
958 let _ = writeln!(out, "\t\tt.Logf(\"{fixture_id}: using mock server ({var} not set)\")");
959 let _ = writeln!(
960 out,
961 "\t\tu := os.Getenv(\"MOCK_SERVER_URL\") + \"/fixtures/{fixture_id}\""
962 );
963 let _ = writeln!(out, "\t\tbaseURL = &u");
964 let _ = writeln!(out, "\t\tapiKey = \"test-key\"");
965 let _ = writeln!(out, "\t}}");
966 } else {
967 let _ = writeln!(out, "\tapiKey := os.Getenv(\"{var}\")");
968 let _ = writeln!(out, "\tif apiKey == \"\" {{");
969 let _ = writeln!(out, "\t\tt.Skipf(\"{var} not set\")");
970 let _ = writeln!(out, "\t}}");
971 }
972 }
973
974 for line in &setup_lines {
975 let _ = writeln!(out, "\t{line}");
976 }
977
978 let call_prefix = if let Some(factory) = client_factory {
982 let factory_name = to_go_name(factory);
983 let fixture_id = &fixture.id;
984 let (api_key_expr, base_url_expr) = if has_mock && api_key_var.is_some() {
987 ("apiKey".to_string(), "baseURL".to_string())
989 } else if api_key_var.is_some() {
990 ("apiKey".to_string(), "nil".to_string())
992 } else if fixture.has_host_root_route() {
993 let env_key = format!("MOCK_SERVER_{}", fixture_id.to_uppercase());
994 let _ = writeln!(out, "\tmockURL := os.Getenv(\"{env_key}\")");
995 let _ = writeln!(out, "\tif mockURL == \"\" {{");
996 let _ = writeln!(
997 out,
998 "\t\tmockURL = os.Getenv(\"MOCK_SERVER_URL\") + \"/fixtures/{fixture_id}\""
999 );
1000 let _ = writeln!(out, "\t}}");
1001 ("\"test-key\"".to_string(), "&mockURL".to_string())
1002 } else {
1003 let _ = writeln!(
1004 out,
1005 "\tmockURL := os.Getenv(\"MOCK_SERVER_URL\") + \"/fixtures/{fixture_id}\""
1006 );
1007 ("\"test-key\"".to_string(), "&mockURL".to_string())
1008 };
1009 let _ = writeln!(
1010 out,
1011 "\tclient, clientErr := {import_alias}.{factory_name}({api_key_expr}, {base_url_expr}, nil, nil, nil)"
1012 );
1013 let _ = writeln!(out, "\tif clientErr != nil {{");
1014 let _ = writeln!(out, "\t\tt.Fatalf(\"create client failed: %v\", clientErr)");
1015 let _ = writeln!(out, "\t}}");
1016 "client".to_string()
1017 } else {
1018 import_alias.to_string()
1019 };
1020
1021 let binding_returns_error_pre = args
1026 .iter()
1027 .any(|a| matches!(a.arg_type.as_str(), "json_object" | "bytes"));
1028 let effective_returns_result_pre = returns_result || binding_returns_error_pre || client_factory.is_some();
1029
1030 if expects_error {
1031 if effective_returns_result_pre && !returns_void {
1032 let _ = writeln!(out, "\t_, err := {call_prefix}.{function_name}({final_args})");
1033 } else {
1034 let _ = writeln!(out, "\terr := {call_prefix}.{function_name}({final_args})");
1035 }
1036 let _ = writeln!(out, "\tif err == nil {{");
1037 let _ = writeln!(out, "\t\tt.Errorf(\"expected an error, but call succeeded\")");
1038 let _ = writeln!(out, "\t}}");
1039 let _ = writeln!(out, "}}");
1040 return;
1041 }
1042
1043 let has_usable_assertion = fixture.assertions.iter().any(|a| {
1047 if a.assertion_type == "not_error" || a.assertion_type == "error" {
1048 return false;
1049 }
1050 if a.assertion_type == "method_result" {
1052 return true;
1053 }
1054 match &a.field {
1055 Some(f) if !f.is_empty() => field_resolver.is_valid_for_result(f),
1056 _ => true,
1057 }
1058 });
1059
1060 let binding_returns_error = args
1067 .iter()
1068 .any(|a| matches!(a.arg_type.as_str(), "json_object" | "bytes"));
1069 let effective_returns_result = returns_result || binding_returns_error || client_factory.is_some();
1071
1072 if !effective_returns_result && result_is_simple {
1078 let result_binding = if has_usable_assertion {
1080 result_var.to_string()
1081 } else {
1082 "_".to_string()
1083 };
1084 let assign_op = if result_binding == "_" { "=" } else { ":=" };
1086 let _ = writeln!(
1087 out,
1088 "\t{result_binding} {assign_op} {call_prefix}.{function_name}({final_args})"
1089 );
1090 if has_usable_assertion && result_binding != "_" {
1091 if result_is_array {
1092 let _ = writeln!(out, "\tvalue := {result_var}");
1094 } else {
1095 let only_nil_assertions = fixture
1098 .assertions
1099 .iter()
1100 .filter(|a| a.field.as_ref().is_none_or(|f| f.is_empty()))
1101 .filter(|a| !matches!(a.assertion_type.as_str(), "not_error" | "error"))
1102 .all(|a| matches!(a.assertion_type.as_str(), "is_empty" | "is_null"));
1103
1104 if !only_nil_assertions {
1105 let _ = writeln!(out, "\tif {result_var} == nil {{");
1107 let _ = writeln!(out, "\t\tt.Fatalf(\"expected non-nil result\")");
1108 let _ = writeln!(out, "\t}}");
1109 let _ = writeln!(out, "\tvalue := *{result_var}");
1110 }
1111 }
1112 }
1113 } else if !effective_returns_result || returns_void {
1114 let _ = writeln!(out, "\terr := {call_prefix}.{function_name}({final_args})");
1117 let _ = writeln!(out, "\tif err != nil {{");
1118 let _ = writeln!(out, "\t\tt.Fatalf(\"call failed: %v\", err)");
1119 let _ = writeln!(out, "\t}}");
1120 let _ = writeln!(out, "}}");
1122 return;
1123 } else {
1124 let result_binding = if has_usable_assertion {
1126 result_var.to_string()
1127 } else {
1128 "_".to_string()
1129 };
1130 let _ = writeln!(
1131 out,
1132 "\t{result_binding}, err := {call_prefix}.{function_name}({final_args})"
1133 );
1134 let _ = writeln!(out, "\tif err != nil {{");
1135 let _ = writeln!(out, "\t\tt.Fatalf(\"call failed: %v\", err)");
1136 let _ = writeln!(out, "\t}}");
1137 if result_is_simple && has_usable_assertion && result_binding != "_" {
1138 if result_is_array {
1139 let _ = writeln!(out, "\tvalue := {}", result_var);
1141 } else {
1142 let only_nil_assertions = fixture
1145 .assertions
1146 .iter()
1147 .filter(|a| a.field.as_ref().is_none_or(|f| f.is_empty()))
1148 .filter(|a| !matches!(a.assertion_type.as_str(), "not_error" | "error"))
1149 .all(|a| matches!(a.assertion_type.as_str(), "is_empty" | "is_null"));
1150
1151 if !only_nil_assertions {
1152 let _ = writeln!(out, "\tif {} == nil {{", result_var);
1154 let _ = writeln!(out, "\t\tt.Fatalf(\"expected non-nil result\")");
1155 let _ = writeln!(out, "\t}}");
1156 let _ = writeln!(out, "\tvalue := *{}", result_var);
1157 }
1158 }
1159 }
1160 }
1161
1162 let has_deref_value = if result_is_simple && has_usable_assertion && !result_is_array {
1165 let only_nil_assertions = fixture
1166 .assertions
1167 .iter()
1168 .filter(|a| a.field.as_ref().is_none_or(|f| f.is_empty()))
1169 .filter(|a| !matches!(a.assertion_type.as_str(), "not_error" | "error"))
1170 .all(|a| matches!(a.assertion_type.as_str(), "is_empty" | "is_null"));
1171 !only_nil_assertions
1172 } else {
1173 result_is_simple && has_usable_assertion
1174 };
1175
1176 let effective_result_var = if has_deref_value {
1177 "value".to_string()
1178 } else {
1179 result_var.to_string()
1180 };
1181
1182 let mut optional_locals: std::collections::HashMap<String, String> = std::collections::HashMap::new();
1187 for assertion in &fixture.assertions {
1188 if let Some(f) = &assertion.field {
1189 if !f.is_empty() {
1190 let resolved = field_resolver.resolve(f);
1191 if field_resolver.is_optional(resolved) && !optional_locals.contains_key(f.as_str()) {
1192 let is_string_field = assertion.value.as_ref().is_some_and(|v| v.is_string());
1197 let is_array_field = field_resolver.is_array(resolved);
1198 if !is_string_field || is_array_field {
1199 continue;
1202 }
1203 let field_expr = field_resolver.accessor(f, "go", &effective_result_var);
1204 let local_var = go_param_name(&resolved.replace(['.', '[', ']'], "_"));
1205 if field_resolver.has_map_access(f) {
1206 let _ = writeln!(out, "\t{local_var} := {field_expr}");
1209 } else {
1210 let _ = writeln!(out, "\tvar {local_var} string");
1211 let _ = writeln!(out, "\tif {field_expr} != nil {{");
1212 let _ = writeln!(out, "\t\t{local_var} = string(*{field_expr})");
1216 let _ = writeln!(out, "\t}}");
1217 }
1218 optional_locals.insert(f.clone(), local_var);
1219 }
1220 }
1221 }
1222 }
1223
1224 for assertion in &fixture.assertions {
1226 if let Some(f) = &assertion.field {
1227 if !f.is_empty() && !optional_locals.contains_key(f.as_str()) {
1228 let parts: Vec<&str> = f.split('.').collect();
1231 let mut guard_expr: Option<String> = None;
1232 for i in 1..parts.len() {
1233 let prefix = parts[..i].join(".");
1234 let resolved_prefix = field_resolver.resolve(&prefix);
1235 if field_resolver.is_optional(resolved_prefix) {
1236 let accessor = field_resolver.accessor(&prefix, "go", &effective_result_var);
1237 guard_expr = Some(accessor);
1238 break;
1239 }
1240 }
1241 if let Some(guard) = guard_expr {
1242 if field_resolver.is_valid_for_result(f) {
1245 let _ = writeln!(out, "\tif {guard} != nil {{");
1246 let mut nil_buf = String::new();
1249 render_assertion(
1250 &mut nil_buf,
1251 assertion,
1252 &effective_result_var,
1253 import_alias,
1254 field_resolver,
1255 &optional_locals,
1256 result_is_simple,
1257 result_is_array,
1258 );
1259 for line in nil_buf.lines() {
1260 let _ = writeln!(out, "\t{line}");
1261 }
1262 let _ = writeln!(out, "\t}}");
1263 } else {
1264 render_assertion(
1265 out,
1266 assertion,
1267 &effective_result_var,
1268 import_alias,
1269 field_resolver,
1270 &optional_locals,
1271 result_is_simple,
1272 result_is_array,
1273 );
1274 }
1275 continue;
1276 }
1277 }
1278 }
1279 render_assertion(
1280 out,
1281 assertion,
1282 &effective_result_var,
1283 import_alias,
1284 field_resolver,
1285 &optional_locals,
1286 result_is_simple,
1287 result_is_array,
1288 );
1289 }
1290
1291 let _ = writeln!(out, "}}");
1292}
1293
1294fn render_http_test_function(out: &mut String, fixture: &Fixture) {
1300 client::http_call::render_http_test(out, &GoTestClientRenderer, fixture);
1301}
1302
1303struct GoTestClientRenderer;
1315
1316impl client::TestClientRenderer for GoTestClientRenderer {
1317 fn language_name(&self) -> &'static str {
1318 "go"
1319 }
1320
1321 fn sanitize_test_name(&self, id: &str) -> String {
1325 id.to_upper_camel_case()
1326 }
1327
1328 fn render_test_open(&self, out: &mut String, fn_name: &str, description: &str, skip_reason: Option<&str>) {
1331 let _ = writeln!(out, "func Test_{fn_name}(t *testing.T) {{");
1332 let _ = writeln!(out, "\t// {description}");
1333 if let Some(reason) = skip_reason {
1334 let escaped = go_string_literal(reason);
1335 let _ = writeln!(out, "\tt.Skip({escaped})");
1336 }
1337 }
1338
1339 fn render_test_close(&self, out: &mut String) {
1340 let _ = writeln!(out, "}}");
1341 }
1342
1343 fn render_call(&self, out: &mut String, ctx: &client::CallCtx<'_>) {
1349 let method = ctx.method.to_uppercase();
1350 let path = ctx.path;
1351
1352 let _ = writeln!(out, "\tbaseURL := os.Getenv(\"MOCK_SERVER_URL\")");
1353 let _ = writeln!(out, "\tif baseURL == \"\" {{");
1354 let _ = writeln!(out, "\t\tbaseURL = \"http://localhost:8080\"");
1355 let _ = writeln!(out, "\t}}");
1356
1357 let body_expr = if let Some(body) = ctx.body {
1359 let json = serde_json::to_string(body).unwrap_or_default();
1360 let escaped = go_string_literal(&json);
1361 format!("strings.NewReader({})", escaped)
1362 } else {
1363 "strings.NewReader(\"\")".to_string()
1364 };
1365
1366 let _ = writeln!(out, "\tbody := {body_expr}");
1367 let _ = writeln!(
1368 out,
1369 "\treq, err := http.NewRequest(\"{method}\", baseURL+\"{path}\", body)"
1370 );
1371 let _ = writeln!(out, "\tif err != nil {{");
1372 let _ = writeln!(out, "\t\tt.Fatalf(\"new request failed: %v\", err)");
1373 let _ = writeln!(out, "\t}}");
1374
1375 if ctx.body.is_some() {
1377 let content_type = ctx.content_type.unwrap_or("application/json");
1378 let _ = writeln!(out, "\treq.Header.Set(\"Content-Type\", \"{content_type}\")");
1379 }
1380
1381 let mut header_names: Vec<&String> = ctx.headers.keys().collect();
1383 header_names.sort();
1384 for name in header_names {
1385 let value = &ctx.headers[name];
1386 let escaped_name = go_string_literal(name);
1387 let escaped_value = go_string_literal(value);
1388 let _ = writeln!(out, "\treq.Header.Set({escaped_name}, {escaped_value})");
1389 }
1390
1391 if !ctx.cookies.is_empty() {
1393 let mut cookie_names: Vec<&String> = ctx.cookies.keys().collect();
1394 cookie_names.sort();
1395 for name in cookie_names {
1396 let value = &ctx.cookies[name];
1397 let escaped_name = go_string_literal(name);
1398 let escaped_value = go_string_literal(value);
1399 let _ = writeln!(
1400 out,
1401 "\treq.AddCookie(&http.Cookie{{Name: {escaped_name}, Value: {escaped_value}}})"
1402 );
1403 }
1404 }
1405
1406 let _ = writeln!(out, "\tnoRedirectClient := &http.Client{{");
1408 let _ = writeln!(
1409 out,
1410 "\t\tCheckRedirect: func(req *http.Request, via []*http.Request) error {{"
1411 );
1412 let _ = writeln!(out, "\t\t\treturn http.ErrUseLastResponse");
1413 let _ = writeln!(out, "\t\t}},");
1414 let _ = writeln!(out, "\t}}");
1415 let _ = writeln!(out, "\tresp, err := noRedirectClient.Do(req)");
1416 let _ = writeln!(out, "\tif err != nil {{");
1417 let _ = writeln!(out, "\t\tt.Fatalf(\"request failed: %v\", err)");
1418 let _ = writeln!(out, "\t}}");
1419 let _ = writeln!(out, "\tdefer resp.Body.Close()");
1420
1421 let _ = writeln!(out, "\tbodyBytes, err := io.ReadAll(resp.Body)");
1425 let _ = writeln!(out, "\tif err != nil {{");
1426 let _ = writeln!(out, "\t\tt.Fatalf(\"read body failed: %v\", err)");
1427 let _ = writeln!(out, "\t}}");
1428 let _ = writeln!(out, "\t_ = bodyBytes");
1429 }
1430
1431 fn render_assert_status(&self, out: &mut String, _response_var: &str, status: u16) {
1432 let _ = writeln!(out, "\tif resp.StatusCode != {status} {{");
1433 let _ = writeln!(out, "\t\tt.Fatalf(\"status: got %d want {status}\", resp.StatusCode)");
1434 let _ = writeln!(out, "\t}}");
1435 }
1436
1437 fn render_assert_header(&self, out: &mut String, _response_var: &str, name: &str, expected: &str) {
1440 if matches!(expected, "<<absent>>" | "<<present>>" | "<<uuid>>") {
1442 return;
1443 }
1444 if name.eq_ignore_ascii_case("connection") {
1446 return;
1447 }
1448 let escaped_name = go_string_literal(name);
1449 let escaped_value = go_string_literal(expected);
1450 let _ = writeln!(
1451 out,
1452 "\tif !strings.Contains(resp.Header.Get({escaped_name}), {escaped_value}) {{"
1453 );
1454 let _ = writeln!(
1455 out,
1456 "\t\tt.Fatalf(\"header %s mismatch: got %q want to contain %q\", {escaped_name}, resp.Header.Get({escaped_name}), {escaped_value})"
1457 );
1458 let _ = writeln!(out, "\t}}");
1459 }
1460
1461 fn render_assert_json_body(&self, out: &mut String, _response_var: &str, expected: &serde_json::Value) {
1466 match expected {
1467 serde_json::Value::Object(_) | serde_json::Value::Array(_) => {
1468 let json_str = serde_json::to_string(expected).unwrap_or_default();
1469 let escaped = go_string_literal(&json_str);
1470 let _ = writeln!(out, "\tvar got any");
1471 let _ = writeln!(out, "\tvar want any");
1472 let _ = writeln!(out, "\tif err := json.Unmarshal(bodyBytes, &got); err != nil {{");
1473 let _ = writeln!(out, "\t\tt.Fatalf(\"json unmarshal got: %v\", err)");
1474 let _ = writeln!(out, "\t}}");
1475 let _ = writeln!(
1476 out,
1477 "\tif err := json.Unmarshal([]byte({escaped}), &want); err != nil {{"
1478 );
1479 let _ = writeln!(out, "\t\tt.Fatalf(\"json unmarshal want: %v\", err)");
1480 let _ = writeln!(out, "\t}}");
1481 let _ = writeln!(out, "\tif !reflect.DeepEqual(got, want) {{");
1482 let _ = writeln!(out, "\t\tt.Fatalf(\"body mismatch: got %v want %v\", got, want)");
1483 let _ = writeln!(out, "\t}}");
1484 }
1485 serde_json::Value::String(s) => {
1486 let escaped = go_string_literal(s);
1487 let _ = writeln!(out, "\twant := {escaped}");
1488 let _ = writeln!(out, "\tif strings.TrimSpace(string(bodyBytes)) != want {{");
1489 let _ = writeln!(out, "\t\tt.Fatalf(\"body: got %q want %q\", string(bodyBytes), want)");
1490 let _ = writeln!(out, "\t}}");
1491 }
1492 other => {
1493 let escaped = go_string_literal(&other.to_string());
1494 let _ = writeln!(out, "\twant := {escaped}");
1495 let _ = writeln!(out, "\tif strings.TrimSpace(string(bodyBytes)) != want {{");
1496 let _ = writeln!(out, "\t\tt.Fatalf(\"body: got %q want %q\", string(bodyBytes), want)");
1497 let _ = writeln!(out, "\t}}");
1498 }
1499 }
1500 }
1501
1502 fn render_assert_partial_body(&self, out: &mut String, _response_var: &str, expected: &serde_json::Value) {
1505 if let Some(obj) = expected.as_object() {
1506 let _ = writeln!(out, "\tvar _partialGot map[string]any");
1507 let _ = writeln!(
1508 out,
1509 "\tif err := json.Unmarshal(bodyBytes, &_partialGot); err != nil {{"
1510 );
1511 let _ = writeln!(out, "\t\tt.Fatalf(\"json unmarshal partial: %v\", err)");
1512 let _ = writeln!(out, "\t}}");
1513 for (key, val) in obj {
1514 let escaped_key = go_string_literal(key);
1515 let json_val = serde_json::to_string(val).unwrap_or_default();
1516 let escaped_val = go_string_literal(&json_val);
1517 let _ = writeln!(out, "\t{{");
1518 let _ = writeln!(out, "\t\tvar _wantVal any");
1519 let _ = writeln!(
1520 out,
1521 "\t\tif err := json.Unmarshal([]byte({escaped_val}), &_wantVal); err != nil {{"
1522 );
1523 let _ = writeln!(out, "\t\t\tt.Fatalf(\"json unmarshal partial want: %v\", err)");
1524 let _ = writeln!(out, "\t\t}}");
1525 let _ = writeln!(
1526 out,
1527 "\t\tif !reflect.DeepEqual(_partialGot[{escaped_key}], _wantVal) {{"
1528 );
1529 let _ = writeln!(
1530 out,
1531 "\t\t\tt.Fatalf(\"partial body field {key}: got %v want %v\", _partialGot[{escaped_key}], _wantVal)"
1532 );
1533 let _ = writeln!(out, "\t\t}}");
1534 let _ = writeln!(out, "\t}}");
1535 }
1536 }
1537 }
1538
1539 fn render_assert_validation_errors(
1544 &self,
1545 out: &mut String,
1546 _response_var: &str,
1547 errors: &[ValidationErrorExpectation],
1548 ) {
1549 let _ = writeln!(out, "\tvar _veBody map[string]any");
1550 let _ = writeln!(out, "\tif err := json.Unmarshal(bodyBytes, &_veBody); err != nil {{");
1551 let _ = writeln!(out, "\t\tt.Fatalf(\"json unmarshal validation errors: %v\", err)");
1552 let _ = writeln!(out, "\t}}");
1553 let _ = writeln!(out, "\t_veErrors, _ := _veBody[\"errors\"].([]any)");
1554 for ve in errors {
1555 let escaped_msg = go_string_literal(&ve.msg);
1556 let _ = writeln!(out, "\t{{");
1557 let _ = writeln!(out, "\t\t_found := false");
1558 let _ = writeln!(out, "\t\tfor _, _e := range _veErrors {{");
1559 let _ = writeln!(out, "\t\t\tif _em, ok := _e.(map[string]any); ok {{");
1560 let _ = writeln!(
1561 out,
1562 "\t\t\t\tif _msg, ok := _em[\"msg\"].(string); ok && strings.Contains(_msg, {escaped_msg}) {{"
1563 );
1564 let _ = writeln!(out, "\t\t\t\t\t_found = true");
1565 let _ = writeln!(out, "\t\t\t\t\tbreak");
1566 let _ = writeln!(out, "\t\t\t\t}}");
1567 let _ = writeln!(out, "\t\t\t}}");
1568 let _ = writeln!(out, "\t\t}}");
1569 let _ = writeln!(out, "\t\tif !_found {{");
1570 let _ = writeln!(
1571 out,
1572 "\t\t\tt.Fatalf(\"validation error with msg containing %q not found in errors\", {escaped_msg})"
1573 );
1574 let _ = writeln!(out, "\t\t}}");
1575 let _ = writeln!(out, "\t}}");
1576 }
1577 }
1578}
1579
1580fn build_args_and_setup(
1588 input: &serde_json::Value,
1589 args: &[crate::config::ArgMapping],
1590 import_alias: &str,
1591 options_type: Option<&str>,
1592 fixture: &crate::fixture::Fixture,
1593 options_ptr: bool,
1594 expects_error: bool,
1595) -> (Vec<String>, String) {
1596 let fixture_id = &fixture.id;
1597 use heck::ToUpperCamelCase;
1598
1599 if args.is_empty() {
1600 return (Vec::new(), String::new());
1601 }
1602
1603 let mut setup_lines: Vec<String> = Vec::new();
1604 let mut parts: Vec<String> = Vec::new();
1605
1606 for arg in args {
1607 if arg.arg_type == "mock_url" {
1608 if fixture.has_host_root_route() {
1609 let env_key = format!("MOCK_SERVER_{}", fixture_id.to_uppercase());
1610 setup_lines.push(format!("{} := os.Getenv(\"{env_key}\")", arg.name));
1611 setup_lines.push(format!(
1612 "if {} == \"\" {{ {} = os.Getenv(\"MOCK_SERVER_URL\") + \"/fixtures/{fixture_id}\" }}",
1613 arg.name, arg.name
1614 ));
1615 } else {
1616 setup_lines.push(format!(
1617 "{} := os.Getenv(\"MOCK_SERVER_URL\") + \"/fixtures/{fixture_id}\"",
1618 arg.name,
1619 ));
1620 }
1621 parts.push(arg.name.clone());
1622 continue;
1623 }
1624
1625 if arg.arg_type == "handle" {
1626 let constructor_name = format!("Create{}", arg.name.to_upper_camel_case());
1628 let field = arg.field.strip_prefix("input.").unwrap_or(&arg.field);
1629 let config_value = input.get(field).unwrap_or(&serde_json::Value::Null);
1630 let create_err_handler = if expects_error {
1634 "assert.Error(t, createErr)\n\t\treturn".to_string()
1635 } else {
1636 "t.Fatalf(\"create handle failed: %v\", createErr)".to_string()
1637 };
1638 if config_value.is_null()
1639 || config_value.is_object() && config_value.as_object().is_some_and(|o| o.is_empty())
1640 {
1641 setup_lines.push(format!(
1642 "{name}, createErr := {import_alias}.{constructor_name}(nil)\n\tif createErr != nil {{\n\t\t{create_err_handler}\n\t}}",
1643 name = arg.name,
1644 ));
1645 } else {
1646 let json_str = serde_json::to_string(config_value).unwrap_or_default();
1647 let go_literal = go_string_literal(&json_str);
1648 let name = &arg.name;
1649 setup_lines.push(format!(
1650 "var {name}Config {import_alias}.CrawlConfig\n\tif err := json.Unmarshal([]byte({go_literal}), &{name}Config); err != nil {{\n\t\tt.Fatalf(\"config parse failed: %v\", err)\n\t}}"
1651 ));
1652 setup_lines.push(format!(
1653 "{name}, createErr := {import_alias}.{constructor_name}(&{name}Config)\n\tif createErr != nil {{\n\t\t{create_err_handler}\n\t}}"
1654 ));
1655 }
1656 parts.push(arg.name.clone());
1657 continue;
1658 }
1659
1660 let val: Option<&serde_json::Value> = if arg.field == "input" {
1661 Some(input)
1662 } else {
1663 let field = arg.field.strip_prefix("input.").unwrap_or(&arg.field);
1664 input.get(field)
1665 };
1666
1667 if arg.arg_type == "bytes" {
1674 let var_name = format!("{}Bytes", arg.name);
1675 match val {
1676 None | Some(serde_json::Value::Null) => {
1677 if arg.optional {
1678 parts.push("nil".to_string());
1679 } else {
1680 parts.push("[]byte{}".to_string());
1681 }
1682 }
1683 Some(serde_json::Value::String(s)) => {
1684 let go_path = go_string_literal(s);
1689 setup_lines.push(format!(
1690 "{var_name}, {var_name}Err := os.ReadFile({go_path})\n\tif {var_name}Err != nil {{\n\t\tt.Fatalf(\"read fixture {s}: %v\", {var_name}Err)\n\t}}"
1691 ));
1692 parts.push(var_name);
1693 }
1694 Some(other) => {
1695 parts.push(format!("[]byte({})", json_to_go(other)));
1696 }
1697 }
1698 continue;
1699 }
1700
1701 match val {
1702 None | Some(serde_json::Value::Null) if arg.optional => {
1703 match arg.arg_type.as_str() {
1705 "string" => {
1706 parts.push("nil".to_string());
1708 }
1709 "json_object" => {
1710 if options_ptr {
1711 parts.push("nil".to_string());
1713 } else if let Some(opts_type) = options_type {
1714 parts.push(format!("{import_alias}.{opts_type}{{}}"));
1716 } else {
1717 parts.push("nil".to_string());
1718 }
1719 }
1720 _ => {
1721 parts.push("nil".to_string());
1722 }
1723 }
1724 }
1725 None | Some(serde_json::Value::Null) => {
1726 let default_val = match arg.arg_type.as_str() {
1728 "string" => "\"\"".to_string(),
1729 "int" | "integer" | "i64" => "0".to_string(),
1730 "float" | "number" => "0.0".to_string(),
1731 "bool" | "boolean" => "false".to_string(),
1732 "json_object" => {
1733 if options_ptr {
1734 "nil".to_string()
1736 } else if let Some(opts_type) = options_type {
1737 format!("{import_alias}.{opts_type}{{}}")
1738 } else {
1739 "nil".to_string()
1740 }
1741 }
1742 _ => "nil".to_string(),
1743 };
1744 parts.push(default_val);
1745 }
1746 Some(v) => {
1747 match arg.arg_type.as_str() {
1748 "json_object" => {
1749 let is_array = v.is_array();
1752 let is_empty_obj = !is_array && v.is_object() && v.as_object().is_some_and(|o| o.is_empty());
1753 if is_empty_obj {
1754 if options_ptr {
1755 parts.push("nil".to_string());
1757 } else if let Some(opts_type) = options_type {
1758 parts.push(format!("{import_alias}.{opts_type}{{}}"));
1759 } else {
1760 parts.push("nil".to_string());
1761 }
1762 } else if is_array {
1763 let go_slice_type = if let Some(go_t) = arg.go_type.as_deref() {
1768 if go_t.starts_with('[') {
1772 go_t.to_string()
1773 } else {
1774 let qualified = if go_t.contains('.') {
1776 go_t.to_string()
1777 } else {
1778 format!("{import_alias}.{go_t}")
1779 };
1780 format!("[]{qualified}")
1781 }
1782 } else {
1783 element_type_to_go_slice(arg.element_type.as_deref(), import_alias)
1784 };
1785 let converted_v = convert_json_for_go(v.clone());
1787 let json_str = serde_json::to_string(&converted_v).unwrap_or_default();
1788 let go_literal = go_string_literal(&json_str);
1789 let var_name = &arg.name;
1790 setup_lines.push(format!(
1791 "var {var_name} {go_slice_type}\n\tif err := json.Unmarshal([]byte({go_literal}), &{var_name}); err != nil {{\n\t\tt.Fatalf(\"config parse failed: %v\", err)\n\t}}"
1792 ));
1793 parts.push(var_name.to_string());
1794 } else if let Some(opts_type) = options_type {
1795 let remapped_v = if options_ptr {
1800 convert_json_for_go(v.clone())
1801 } else {
1802 v.clone()
1803 };
1804 let json_str = serde_json::to_string(&remapped_v).unwrap_or_default();
1805 let go_literal = go_string_literal(&json_str);
1806 let var_name = &arg.name;
1807 setup_lines.push(format!(
1808 "var {var_name} {import_alias}.{opts_type}\n\tif err := json.Unmarshal([]byte({go_literal}), &{var_name}); err != nil {{\n\t\tt.Fatalf(\"config parse failed: %v\", err)\n\t}}"
1809 ));
1810 let arg_expr = if options_ptr {
1812 format!("&{var_name}")
1813 } else {
1814 var_name.to_string()
1815 };
1816 parts.push(arg_expr);
1817 } else {
1818 parts.push(json_to_go(v));
1819 }
1820 }
1821 "string" if arg.optional => {
1822 let var_name = format!("{}Val", arg.name);
1824 let go_val = json_to_go(v);
1825 setup_lines.push(format!("{var_name} := {go_val}"));
1826 parts.push(format!("&{var_name}"));
1827 }
1828 _ => {
1829 parts.push(json_to_go(v));
1830 }
1831 }
1832 }
1833 }
1834 }
1835
1836 (setup_lines, parts.join(", "))
1837}
1838
1839#[allow(clippy::too_many_arguments)]
1840fn render_assertion(
1841 out: &mut String,
1842 assertion: &Assertion,
1843 result_var: &str,
1844 import_alias: &str,
1845 field_resolver: &FieldResolver,
1846 optional_locals: &std::collections::HashMap<String, String>,
1847 result_is_simple: bool,
1848 result_is_array: bool,
1849) {
1850 if !result_is_simple {
1853 if let Some(f) = &assertion.field {
1854 let embed_deref = format!("(*{result_var})");
1857 match f.as_str() {
1858 "chunks_have_content" => {
1859 let pred = format!(
1860 "func() bool {{ chunks := {result_var}.Chunks; if chunks == nil {{ return false }}; for _, c := range *chunks {{ if c.Content == \"\" {{ return false }} }}; return true }}()"
1861 );
1862 match assertion.assertion_type.as_str() {
1863 "is_true" => {
1864 let _ = writeln!(out, "\tassert.True(t, {pred}, \"expected true\")");
1865 }
1866 "is_false" => {
1867 let _ = writeln!(out, "\tassert.False(t, {pred}, \"expected false\")");
1868 }
1869 _ => {
1870 let _ = writeln!(out, "\t// skipped: unsupported assertion type on synthetic field '{f}'");
1871 }
1872 }
1873 return;
1874 }
1875 "chunks_have_embeddings" => {
1876 let pred = format!(
1877 "func() bool {{ chunks := {result_var}.Chunks; if chunks == nil {{ return false }}; for _, c := range *chunks {{ if c.Embedding == nil || len(*c.Embedding) == 0 {{ return false }} }}; return true }}()"
1878 );
1879 match assertion.assertion_type.as_str() {
1880 "is_true" => {
1881 let _ = writeln!(out, "\tassert.True(t, {pred}, \"expected true\")");
1882 }
1883 "is_false" => {
1884 let _ = writeln!(out, "\tassert.False(t, {pred}, \"expected false\")");
1885 }
1886 _ => {
1887 let _ = writeln!(out, "\t// skipped: unsupported assertion type on synthetic field '{f}'");
1888 }
1889 }
1890 return;
1891 }
1892 "embeddings" => {
1893 match assertion.assertion_type.as_str() {
1894 "count_equals" => {
1895 if let Some(val) = &assertion.value {
1896 if let Some(n) = val.as_u64() {
1897 let _ = writeln!(
1898 out,
1899 "\tassert.Equal(t, {n}, len({embed_deref}), \"expected exactly {n} elements\")"
1900 );
1901 }
1902 }
1903 }
1904 "count_min" => {
1905 if let Some(val) = &assertion.value {
1906 if let Some(n) = val.as_u64() {
1907 let _ = writeln!(
1908 out,
1909 "\tassert.GreaterOrEqual(t, len({embed_deref}), {n}, \"expected at least {n} elements\")"
1910 );
1911 }
1912 }
1913 }
1914 "not_empty" => {
1915 let _ = writeln!(
1916 out,
1917 "\tassert.NotEmpty(t, {embed_deref}, \"expected non-empty embeddings\")"
1918 );
1919 }
1920 "is_empty" => {
1921 let _ = writeln!(out, "\tassert.Empty(t, {embed_deref}, \"expected empty embeddings\")");
1922 }
1923 _ => {
1924 let _ = writeln!(
1925 out,
1926 "\t// skipped: unsupported assertion type on synthetic field 'embeddings'"
1927 );
1928 }
1929 }
1930 return;
1931 }
1932 "embedding_dimensions" => {
1933 let expr = format!(
1934 "func() int {{ if len({embed_deref}) == 0 {{ return 0 }}; return len({embed_deref}[0]) }}()"
1935 );
1936 match assertion.assertion_type.as_str() {
1937 "equals" => {
1938 if let Some(val) = &assertion.value {
1939 if let Some(n) = val.as_u64() {
1940 let _ = writeln!(
1941 out,
1942 "\tif {expr} != {n} {{\n\t\tt.Errorf(\"equals mismatch: got %v\", {expr})\n\t}}"
1943 );
1944 }
1945 }
1946 }
1947 "greater_than" => {
1948 if let Some(val) = &assertion.value {
1949 if let Some(n) = val.as_u64() {
1950 let _ = writeln!(out, "\tassert.Greater(t, {expr}, {n}, \"expected > {n}\")");
1951 }
1952 }
1953 }
1954 _ => {
1955 let _ = writeln!(
1956 out,
1957 "\t// skipped: unsupported assertion type on synthetic field 'embedding_dimensions'"
1958 );
1959 }
1960 }
1961 return;
1962 }
1963 "embeddings_valid" | "embeddings_finite" | "embeddings_non_zero" | "embeddings_normalized" => {
1964 let pred = match f.as_str() {
1965 "embeddings_valid" => {
1966 format!(
1967 "func() bool {{ for _, e := range {embed_deref} {{ if len(e) == 0 {{ return false }} }}; return true }}()"
1968 )
1969 }
1970 "embeddings_finite" => {
1971 format!(
1972 "func() bool {{ for _, e := range {embed_deref} {{ for _, v := range e {{ if v != v || v == float32(1.0/0.0) || v == float32(-1.0/0.0) {{ return false }} }} }}; return true }}()"
1973 )
1974 }
1975 "embeddings_non_zero" => {
1976 format!(
1977 "func() bool {{ for _, e := range {embed_deref} {{ hasNonZero := false; for _, v := range e {{ if v != 0 {{ hasNonZero = true; break }} }}; if !hasNonZero {{ return false }} }}; return true }}()"
1978 )
1979 }
1980 "embeddings_normalized" => {
1981 format!(
1982 "func() bool {{ for _, e := range {embed_deref} {{ var n float64; for _, v := range e {{ n += float64(v) * float64(v) }}; if n < 0.999 || n > 1.001 {{ return false }} }}; return true }}()"
1983 )
1984 }
1985 _ => unreachable!(),
1986 };
1987 match assertion.assertion_type.as_str() {
1988 "is_true" => {
1989 let _ = writeln!(out, "\tassert.True(t, {pred}, \"expected true\")");
1990 }
1991 "is_false" => {
1992 let _ = writeln!(out, "\tassert.False(t, {pred}, \"expected false\")");
1993 }
1994 _ => {
1995 let _ = writeln!(out, "\t// skipped: unsupported assertion type on synthetic field '{f}'");
1996 }
1997 }
1998 return;
1999 }
2000 "keywords" | "keywords_count" => {
2003 let _ = writeln!(out, "\t// skipped: field '{f}' not available on Go ExtractionResult");
2004 return;
2005 }
2006 _ => {}
2007 }
2008 }
2009 }
2010
2011 if !result_is_simple {
2014 if let Some(f) = &assertion.field {
2015 if !f.is_empty() && !field_resolver.is_valid_for_result(f) {
2016 let _ = writeln!(out, "\t// skipped: field '{f}' not available on result type");
2017 return;
2018 }
2019 }
2020 }
2021
2022 let field_expr = if result_is_simple {
2023 result_var.to_string()
2025 } else {
2026 match &assertion.field {
2027 Some(f) if !f.is_empty() => {
2028 if let Some(local_var) = optional_locals.get(f.as_str()) {
2030 local_var.clone()
2031 } else {
2032 field_resolver.accessor(f, "go", result_var)
2033 }
2034 }
2035 _ => result_var.to_string(),
2036 }
2037 };
2038
2039 let is_optional = assertion
2043 .field
2044 .as_ref()
2045 .map(|f| {
2046 let resolved = field_resolver.resolve(f);
2047 let check_path = resolved
2048 .strip_suffix(".length")
2049 .or_else(|| resolved.strip_suffix(".count"))
2050 .or_else(|| resolved.strip_suffix(".size"))
2051 .unwrap_or(resolved);
2052 field_resolver.is_optional(check_path) && !optional_locals.contains_key(f.as_str())
2053 })
2054 .unwrap_or(false);
2055
2056 let field_is_array_for_len = assertion
2060 .field
2061 .as_ref()
2062 .map(|f| {
2063 let resolved = field_resolver.resolve(f);
2064 let check_path = resolved
2065 .strip_suffix(".length")
2066 .or_else(|| resolved.strip_suffix(".count"))
2067 .or_else(|| resolved.strip_suffix(".size"))
2068 .unwrap_or(resolved);
2069 field_resolver.is_array(check_path)
2070 })
2071 .unwrap_or(false);
2072 let field_expr =
2073 if is_optional && field_expr.starts_with("len(") && field_expr.ends_with(')') && !field_is_array_for_len {
2074 let inner = &field_expr[4..field_expr.len() - 1];
2075 format!("len(*{inner})")
2076 } else {
2077 field_expr
2078 };
2079 let nil_guard_expr = if is_optional && field_expr.starts_with("len(*") {
2081 Some(field_expr[5..field_expr.len() - 1].to_string())
2082 } else {
2083 None
2084 };
2085
2086 let field_is_slice = assertion
2090 .field
2091 .as_ref()
2092 .map(|f| field_resolver.is_array(field_resolver.resolve(f)))
2093 .unwrap_or(false);
2094 let deref_field_expr = if is_optional && !field_expr.starts_with("len(") && !field_is_slice {
2095 format!("*{field_expr}")
2096 } else {
2097 field_expr.clone()
2098 };
2099
2100 let array_guard: Option<String> = if let Some(idx) = field_expr.find("[0]") {
2105 let mut array_expr = field_expr[..idx].to_string();
2106 if let Some(stripped) = array_expr.strip_prefix("len(") {
2107 array_expr = stripped.to_string();
2108 }
2109 Some(array_expr)
2110 } else {
2111 None
2112 };
2113
2114 let mut assertion_buf = String::new();
2117 let out_ref = &mut assertion_buf;
2118
2119 match assertion.assertion_type.as_str() {
2120 "equals" => {
2121 if let Some(expected) = &assertion.value {
2122 let go_val = json_to_go(expected);
2123 if expected.is_string() {
2125 let trimmed_field = if is_optional && !field_expr.starts_with("len(") {
2128 format!("strings.TrimSpace(string(*{field_expr}))")
2129 } else {
2130 format!("strings.TrimSpace(string({field_expr}))")
2131 };
2132 if is_optional && !field_expr.starts_with("len(") {
2133 let _ = writeln!(out_ref, "\tif {field_expr} != nil && {trimmed_field} != {go_val} {{");
2134 } else {
2135 let _ = writeln!(out_ref, "\tif {trimmed_field} != {go_val} {{");
2136 }
2137 } else if is_optional && !field_expr.starts_with("len(") {
2138 let _ = writeln!(out_ref, "\tif {field_expr} != nil && {deref_field_expr} != {go_val} {{");
2139 } else {
2140 let _ = writeln!(out_ref, "\tif {field_expr} != {go_val} {{");
2141 }
2142 let _ = writeln!(out_ref, "\t\tt.Errorf(\"equals mismatch: got %v\", {field_expr})");
2143 let _ = writeln!(out_ref, "\t}}");
2144 }
2145 }
2146 "contains" => {
2147 if let Some(expected) = &assertion.value {
2148 let go_val = json_to_go(expected);
2149 let resolved_field = assertion.field.as_deref().unwrap_or("");
2155 let resolved_name = field_resolver.resolve(resolved_field);
2156 let field_is_array = result_is_array || field_resolver.is_array(resolved_name);
2157 let is_opt =
2158 is_optional && !optional_locals.contains_key(assertion.field.as_ref().unwrap_or(&String::new()));
2159 let field_for_contains = if is_opt && field_is_array {
2160 format!("jsonString({field_expr})")
2162 } else if is_opt {
2163 format!("fmt.Sprint(*{field_expr})")
2164 } else if field_is_array {
2165 format!("jsonString({field_expr})")
2166 } else {
2167 format!("fmt.Sprint({field_expr})")
2168 };
2169 if is_opt {
2170 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2171 let _ = writeln!(out_ref, "\tif !strings.Contains({field_for_contains}, {go_val}) {{");
2172 let _ = writeln!(
2173 out_ref,
2174 "\t\tt.Errorf(\"expected to contain %s, got %v\", {go_val}, {field_expr})"
2175 );
2176 let _ = writeln!(out_ref, "\t}}");
2177 let _ = writeln!(out_ref, "\t}}");
2178 } else {
2179 let _ = writeln!(out_ref, "\tif !strings.Contains({field_for_contains}, {go_val}) {{");
2180 let _ = writeln!(
2181 out_ref,
2182 "\t\tt.Errorf(\"expected to contain %s, got %v\", {go_val}, {field_expr})"
2183 );
2184 let _ = writeln!(out_ref, "\t}}");
2185 }
2186 }
2187 }
2188 "contains_all" => {
2189 if let Some(values) = &assertion.values {
2190 let resolved_field = assertion.field.as_deref().unwrap_or("");
2191 let resolved_name = field_resolver.resolve(resolved_field);
2192 let field_is_array = result_is_array || field_resolver.is_array(resolved_name);
2193 let is_opt =
2194 is_optional && !optional_locals.contains_key(assertion.field.as_ref().unwrap_or(&String::new()));
2195 for val in values {
2196 let go_val = json_to_go(val);
2197 let field_for_contains = if is_opt && field_is_array {
2198 format!("jsonString({field_expr})")
2200 } else if is_opt {
2201 format!("fmt.Sprint(*{field_expr})")
2202 } else if field_is_array {
2203 format!("jsonString({field_expr})")
2204 } else {
2205 format!("fmt.Sprint({field_expr})")
2206 };
2207 if is_opt {
2208 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2209 let _ = writeln!(out_ref, "\tif !strings.Contains({field_for_contains}, {go_val}) {{");
2210 let _ = writeln!(out_ref, "\t\tt.Errorf(\"expected to contain %s\", {go_val})");
2211 let _ = writeln!(out_ref, "\t}}");
2212 let _ = writeln!(out_ref, "\t}}");
2213 } else {
2214 let _ = writeln!(out_ref, "\tif !strings.Contains({field_for_contains}, {go_val}) {{");
2215 let _ = writeln!(out_ref, "\t\tt.Errorf(\"expected to contain %s\", {go_val})");
2216 let _ = writeln!(out_ref, "\t}}");
2217 }
2218 }
2219 }
2220 }
2221 "not_contains" => {
2222 if let Some(expected) = &assertion.value {
2223 let go_val = json_to_go(expected);
2224 let resolved_field = assertion.field.as_deref().unwrap_or("");
2225 let resolved_name = field_resolver.resolve(resolved_field);
2226 let field_is_array = result_is_array || field_resolver.is_array(resolved_name);
2227 let is_opt =
2228 is_optional && !optional_locals.contains_key(assertion.field.as_ref().unwrap_or(&String::new()));
2229 let field_for_contains = if is_opt && field_is_array {
2230 format!("jsonString({field_expr})")
2232 } else if is_opt {
2233 format!("fmt.Sprint(*{field_expr})")
2234 } else if field_is_array {
2235 format!("jsonString({field_expr})")
2236 } else {
2237 format!("fmt.Sprint({field_expr})")
2238 };
2239 let _ = writeln!(out_ref, "\tif strings.Contains({field_for_contains}, {go_val}) {{");
2240 let _ = writeln!(
2241 out_ref,
2242 "\t\tt.Errorf(\"expected NOT to contain %s, got %v\", {go_val}, {field_expr})"
2243 );
2244 let _ = writeln!(out_ref, "\t}}");
2245 }
2246 }
2247 "not_empty" => {
2248 let field_is_array = {
2251 let rf = assertion.field.as_deref().unwrap_or("");
2252 let rn = field_resolver.resolve(rf);
2253 field_resolver.is_array(rn)
2254 };
2255 if is_optional && !field_is_array {
2256 let _ = writeln!(out_ref, "\tif {field_expr} == nil {{");
2258 } else if is_optional && field_is_slice {
2259 let _ = writeln!(out_ref, "\tif {field_expr} == nil || len({field_expr}) == 0 {{");
2261 } else if is_optional {
2262 let _ = writeln!(out_ref, "\tif {field_expr} == nil || len(*{field_expr}) == 0 {{");
2264 } else if result_is_simple && result_is_array {
2265 let _ = writeln!(out_ref, "\tif len({field_expr}) == 0 {{");
2267 } else {
2268 let _ = writeln!(out_ref, "\tif len({field_expr}) == 0 {{");
2269 }
2270 let _ = writeln!(out_ref, "\t\tt.Errorf(\"expected non-empty value\")");
2271 let _ = writeln!(out_ref, "\t}}");
2272 }
2273 "is_empty" => {
2274 let field_is_array = {
2275 let rf = assertion.field.as_deref().unwrap_or("");
2276 let rn = field_resolver.resolve(rf);
2277 field_resolver.is_array(rn)
2278 };
2279 if result_is_simple && !result_is_array && assertion.field.as_ref().is_none_or(|f| f.is_empty()) {
2282 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2284 } else if is_optional && !field_is_array {
2285 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2287 } else if is_optional && field_is_slice {
2288 let _ = writeln!(out_ref, "\tif {field_expr} != nil && len({field_expr}) != 0 {{");
2290 } else if is_optional {
2291 let _ = writeln!(out_ref, "\tif {field_expr} != nil && len(*{field_expr}) != 0 {{");
2293 } else {
2294 let _ = writeln!(out_ref, "\tif len({field_expr}) != 0 {{");
2295 }
2296 let _ = writeln!(out_ref, "\t\tt.Errorf(\"expected empty value, got %v\", {field_expr})");
2297 let _ = writeln!(out_ref, "\t}}");
2298 }
2299 "contains_any" => {
2300 if let Some(values) = &assertion.values {
2301 let resolved_field = assertion.field.as_deref().unwrap_or("");
2302 let resolved_name = field_resolver.resolve(resolved_field);
2303 let field_is_array = field_resolver.is_array(resolved_name);
2304 let is_opt =
2305 is_optional && !optional_locals.contains_key(assertion.field.as_ref().unwrap_or(&String::new()));
2306 let field_for_contains = if is_opt && field_is_array {
2307 format!("jsonString({field_expr})")
2309 } else if is_opt {
2310 format!("fmt.Sprint(*{field_expr})")
2311 } else if field_is_array {
2312 format!("jsonString({field_expr})")
2313 } else {
2314 format!("fmt.Sprint({field_expr})")
2315 };
2316 let _ = writeln!(out_ref, "\t{{");
2317 let _ = writeln!(out_ref, "\t\tfound := false");
2318 for val in values {
2319 let go_val = json_to_go(val);
2320 let _ = writeln!(
2321 out_ref,
2322 "\t\tif strings.Contains({field_for_contains}, {go_val}) {{ found = true }}"
2323 );
2324 }
2325 let _ = writeln!(out_ref, "\t\tif !found {{");
2326 let _ = writeln!(
2327 out_ref,
2328 "\t\t\tt.Errorf(\"expected to contain at least one of the specified values\")"
2329 );
2330 let _ = writeln!(out_ref, "\t\t}}");
2331 let _ = writeln!(out_ref, "\t}}");
2332 }
2333 }
2334 "greater_than" => {
2335 if let Some(val) = &assertion.value {
2336 let go_val = json_to_go(val);
2337 if is_optional {
2341 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2342 if let Some(n) = val.as_u64() {
2343 let next = n + 1;
2344 let _ = writeln!(out_ref, "\t\tif {deref_field_expr} < {next} {{");
2345 } else {
2346 let _ = writeln!(out_ref, "\t\tif {deref_field_expr} <= {go_val} {{");
2347 }
2348 let _ = writeln!(
2349 out_ref,
2350 "\t\t\tt.Errorf(\"expected > {go_val}, got %v\", {deref_field_expr})"
2351 );
2352 let _ = writeln!(out_ref, "\t\t}}");
2353 let _ = writeln!(out_ref, "\t}}");
2354 } else if let Some(n) = val.as_u64() {
2355 let next = n + 1;
2356 let _ = writeln!(out_ref, "\tif {field_expr} < {next} {{");
2357 let _ = writeln!(out_ref, "\t\tt.Errorf(\"expected > {go_val}, got %v\", {field_expr})");
2358 let _ = writeln!(out_ref, "\t}}");
2359 } else {
2360 let _ = writeln!(out_ref, "\tif {field_expr} <= {go_val} {{");
2361 let _ = writeln!(out_ref, "\t\tt.Errorf(\"expected > {go_val}, got %v\", {field_expr})");
2362 let _ = writeln!(out_ref, "\t}}");
2363 }
2364 }
2365 }
2366 "less_than" => {
2367 if let Some(val) = &assertion.value {
2368 let go_val = json_to_go(val);
2369 let _ = writeln!(out_ref, "\tif {field_expr} >= {go_val} {{");
2370 let _ = writeln!(out_ref, "\t\tt.Errorf(\"expected < {go_val}, got %v\", {field_expr})");
2371 let _ = writeln!(out_ref, "\t}}");
2372 }
2373 }
2374 "greater_than_or_equal" => {
2375 if let Some(val) = &assertion.value {
2376 let go_val = json_to_go(val);
2377 if let Some(ref guard) = nil_guard_expr {
2378 let _ = writeln!(out_ref, "\tif {guard} != nil {{");
2379 let _ = writeln!(out_ref, "\t\tif {field_expr} < {go_val} {{");
2380 let _ = writeln!(
2381 out_ref,
2382 "\t\t\tt.Errorf(\"expected >= {go_val}, got %v\", {field_expr})"
2383 );
2384 let _ = writeln!(out_ref, "\t\t}}");
2385 let _ = writeln!(out_ref, "\t}}");
2386 } else if is_optional && !field_expr.starts_with("len(") {
2387 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2389 let _ = writeln!(out_ref, "\t\tif {deref_field_expr} < {go_val} {{");
2390 let _ = writeln!(
2391 out_ref,
2392 "\t\t\tt.Errorf(\"expected >= {go_val}, got %v\", {deref_field_expr})"
2393 );
2394 let _ = writeln!(out_ref, "\t\t}}");
2395 let _ = writeln!(out_ref, "\t}}");
2396 } else {
2397 let _ = writeln!(out_ref, "\tif {field_expr} < {go_val} {{");
2398 let _ = writeln!(out_ref, "\t\tt.Errorf(\"expected >= {go_val}, got %v\", {field_expr})");
2399 let _ = writeln!(out_ref, "\t}}");
2400 }
2401 }
2402 }
2403 "less_than_or_equal" => {
2404 if let Some(val) = &assertion.value {
2405 let go_val = json_to_go(val);
2406 let _ = writeln!(out_ref, "\tif {field_expr} > {go_val} {{");
2407 let _ = writeln!(out_ref, "\t\tt.Errorf(\"expected <= {go_val}, got %v\", {field_expr})");
2408 let _ = writeln!(out_ref, "\t}}");
2409 }
2410 }
2411 "starts_with" => {
2412 if let Some(expected) = &assertion.value {
2413 let go_val = json_to_go(expected);
2414 let field_for_prefix = if is_optional
2415 && !optional_locals.contains_key(assertion.field.as_ref().unwrap_or(&String::new()))
2416 {
2417 format!("string(*{field_expr})")
2418 } else {
2419 format!("string({field_expr})")
2420 };
2421 let _ = writeln!(out_ref, "\tif !strings.HasPrefix({field_for_prefix}, {go_val}) {{");
2422 let _ = writeln!(
2423 out_ref,
2424 "\t\tt.Errorf(\"expected to start with %s, got %v\", {go_val}, {field_expr})"
2425 );
2426 let _ = writeln!(out_ref, "\t}}");
2427 }
2428 }
2429 "count_min" => {
2430 if let Some(val) = &assertion.value {
2431 if let Some(n) = val.as_u64() {
2432 if is_optional {
2433 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2434 let len_expr = if field_is_slice {
2436 format!("len({field_expr})")
2437 } else {
2438 format!("len(*{field_expr})")
2439 };
2440 let _ = writeln!(
2441 out_ref,
2442 "\t\tassert.GreaterOrEqual(t, {len_expr}, {n}, \"expected at least {n} elements\")"
2443 );
2444 let _ = writeln!(out_ref, "\t}}");
2445 } else {
2446 let _ = writeln!(
2447 out_ref,
2448 "\tassert.GreaterOrEqual(t, len({field_expr}), {n}, \"expected at least {n} elements\")"
2449 );
2450 }
2451 }
2452 }
2453 }
2454 "count_equals" => {
2455 if let Some(val) = &assertion.value {
2456 if let Some(n) = val.as_u64() {
2457 if is_optional {
2458 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2459 let len_expr = if field_is_slice {
2461 format!("len({field_expr})")
2462 } else {
2463 format!("len(*{field_expr})")
2464 };
2465 let _ = writeln!(
2466 out_ref,
2467 "\t\tassert.Equal(t, {len_expr}, {n}, \"expected exactly {n} elements\")"
2468 );
2469 let _ = writeln!(out_ref, "\t}}");
2470 } else {
2471 let _ = writeln!(
2472 out_ref,
2473 "\tassert.Equal(t, len({field_expr}), {n}, \"expected exactly {n} elements\")"
2474 );
2475 }
2476 }
2477 }
2478 }
2479 "is_true" => {
2480 if is_optional {
2481 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2482 let _ = writeln!(out_ref, "\t\tassert.True(t, *{field_expr}, \"expected true\")");
2483 let _ = writeln!(out_ref, "\t}}");
2484 } else {
2485 let _ = writeln!(out_ref, "\tassert.True(t, {field_expr}, \"expected true\")");
2486 }
2487 }
2488 "is_false" => {
2489 if is_optional {
2490 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2491 let _ = writeln!(out_ref, "\t\tassert.False(t, *{field_expr}, \"expected false\")");
2492 let _ = writeln!(out_ref, "\t}}");
2493 } else {
2494 let _ = writeln!(out_ref, "\tassert.False(t, {field_expr}, \"expected false\")");
2495 }
2496 }
2497 "method_result" => {
2498 if let Some(method_name) = &assertion.method {
2499 let info = build_go_method_call(result_var, method_name, assertion.args.as_ref(), import_alias);
2500 let check = assertion.check.as_deref().unwrap_or("is_true");
2501 let deref_expr = if info.is_pointer {
2504 format!("*{}", info.call_expr)
2505 } else {
2506 info.call_expr.clone()
2507 };
2508 match check {
2509 "equals" => {
2510 if let Some(val) = &assertion.value {
2511 if val.is_boolean() {
2512 if val.as_bool() == Some(true) {
2513 let _ = writeln!(out_ref, "\tassert.True(t, {deref_expr}, \"expected true\")");
2514 } else {
2515 let _ = writeln!(out_ref, "\tassert.False(t, {deref_expr}, \"expected false\")");
2516 }
2517 } else {
2518 let go_val = if let Some(cast) = info.value_cast {
2522 if val.is_number() {
2523 format!("{cast}({})", json_to_go(val))
2524 } else {
2525 json_to_go(val)
2526 }
2527 } else {
2528 json_to_go(val)
2529 };
2530 let _ = writeln!(
2531 out_ref,
2532 "\tassert.Equal(t, {go_val}, {deref_expr}, \"method_result equals assertion failed\")"
2533 );
2534 }
2535 }
2536 }
2537 "is_true" => {
2538 let _ = writeln!(out_ref, "\tassert.True(t, {deref_expr}, \"expected true\")");
2539 }
2540 "is_false" => {
2541 let _ = writeln!(out_ref, "\tassert.False(t, {deref_expr}, \"expected false\")");
2542 }
2543 "greater_than_or_equal" => {
2544 if let Some(val) = &assertion.value {
2545 let n = val.as_u64().unwrap_or(0);
2546 let cast = info.value_cast.unwrap_or("uint");
2548 let _ = writeln!(
2549 out_ref,
2550 "\tassert.GreaterOrEqual(t, {deref_expr}, {cast}({n}), \"expected >= {n}\")"
2551 );
2552 }
2553 }
2554 "count_min" => {
2555 if let Some(val) = &assertion.value {
2556 let n = val.as_u64().unwrap_or(0);
2557 let _ = writeln!(
2558 out_ref,
2559 "\tassert.GreaterOrEqual(t, len({deref_expr}), {n}, \"expected at least {n} elements\")"
2560 );
2561 }
2562 }
2563 "contains" => {
2564 if let Some(val) = &assertion.value {
2565 let go_val = json_to_go(val);
2566 let _ = writeln!(
2567 out_ref,
2568 "\tassert.Contains(t, {deref_expr}, {go_val}, \"expected result to contain value\")"
2569 );
2570 }
2571 }
2572 "is_error" => {
2573 let _ = writeln!(out_ref, "\t{{");
2574 let _ = writeln!(out_ref, "\t\t_, methodErr := {}", info.call_expr);
2575 let _ = writeln!(out_ref, "\t\tassert.Error(t, methodErr)");
2576 let _ = writeln!(out_ref, "\t}}");
2577 }
2578 other_check => {
2579 panic!("Go e2e generator: unsupported method_result check type: {other_check}");
2580 }
2581 }
2582 } else {
2583 panic!("Go e2e generator: method_result assertion missing 'method' field");
2584 }
2585 }
2586 "min_length" => {
2587 if let Some(val) = &assertion.value {
2588 if let Some(n) = val.as_u64() {
2589 if is_optional {
2590 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2591 let _ = writeln!(
2592 out_ref,
2593 "\t\tassert.GreaterOrEqual(t, len(*{field_expr}), {n}, \"expected length >= {n}\")"
2594 );
2595 let _ = writeln!(out_ref, "\t}}");
2596 } else if field_expr.starts_with("len(") {
2597 let _ = writeln!(
2598 out_ref,
2599 "\tassert.GreaterOrEqual(t, {field_expr}, {n}, \"expected length >= {n}\")"
2600 );
2601 } else {
2602 let _ = writeln!(
2603 out_ref,
2604 "\tassert.GreaterOrEqual(t, len({field_expr}), {n}, \"expected length >= {n}\")"
2605 );
2606 }
2607 }
2608 }
2609 }
2610 "max_length" => {
2611 if let Some(val) = &assertion.value {
2612 if let Some(n) = val.as_u64() {
2613 if is_optional {
2614 let _ = writeln!(out_ref, "\tif {field_expr} != nil {{");
2615 let _ = writeln!(
2616 out_ref,
2617 "\t\tassert.LessOrEqual(t, len(*{field_expr}), {n}, \"expected length <= {n}\")"
2618 );
2619 let _ = writeln!(out_ref, "\t}}");
2620 } else if field_expr.starts_with("len(") {
2621 let _ = writeln!(
2622 out_ref,
2623 "\tassert.LessOrEqual(t, {field_expr}, {n}, \"expected length <= {n}\")"
2624 );
2625 } else {
2626 let _ = writeln!(
2627 out_ref,
2628 "\tassert.LessOrEqual(t, len({field_expr}), {n}, \"expected length <= {n}\")"
2629 );
2630 }
2631 }
2632 }
2633 }
2634 "ends_with" => {
2635 if let Some(expected) = &assertion.value {
2636 let go_val = json_to_go(expected);
2637 let field_for_suffix = if is_optional
2638 && !optional_locals.contains_key(assertion.field.as_ref().unwrap_or(&String::new()))
2639 {
2640 format!("string(*{field_expr})")
2641 } else {
2642 format!("string({field_expr})")
2643 };
2644 let _ = writeln!(out_ref, "\tif !strings.HasSuffix({field_for_suffix}, {go_val}) {{");
2645 let _ = writeln!(
2646 out_ref,
2647 "\t\tt.Errorf(\"expected to end with %s, got %v\", {go_val}, {field_expr})"
2648 );
2649 let _ = writeln!(out_ref, "\t}}");
2650 }
2651 }
2652 "matches_regex" => {
2653 if let Some(expected) = &assertion.value {
2654 let go_val = json_to_go(expected);
2655 let field_for_regex = if is_optional
2656 && !optional_locals.contains_key(assertion.field.as_ref().unwrap_or(&String::new()))
2657 {
2658 format!("*{field_expr}")
2659 } else {
2660 field_expr.clone()
2661 };
2662 let _ = writeln!(
2663 out_ref,
2664 "\tassert.Regexp(t, {go_val}, {field_for_regex}, \"expected value to match regex\")"
2665 );
2666 }
2667 }
2668 "not_error" => {
2669 }
2671 "error" => {
2672 }
2674 other => {
2675 panic!("Go e2e generator: unsupported assertion type: {other}");
2676 }
2677 }
2678
2679 if let Some(ref arr) = array_guard {
2682 if !assertion_buf.is_empty() {
2683 let _ = writeln!(out, "\tif len({arr}) > 0 {{");
2684 for line in assertion_buf.lines() {
2686 let _ = writeln!(out, "\t{line}");
2687 }
2688 let _ = writeln!(out, "\t}}");
2689 }
2690 } else {
2691 out.push_str(&assertion_buf);
2692 }
2693}
2694
2695struct GoMethodCallInfo {
2697 call_expr: String,
2699 is_pointer: bool,
2701 value_cast: Option<&'static str>,
2704}
2705
2706fn build_go_method_call(
2721 result_var: &str,
2722 method_name: &str,
2723 args: Option<&serde_json::Value>,
2724 import_alias: &str,
2725) -> GoMethodCallInfo {
2726 match method_name {
2727 "root_node_type" => GoMethodCallInfo {
2728 call_expr: format!("{import_alias}.RootNodeInfo({result_var}).Kind"),
2729 is_pointer: false,
2730 value_cast: None,
2731 },
2732 "named_children_count" => GoMethodCallInfo {
2733 call_expr: format!("{import_alias}.RootNodeInfo({result_var}).NamedChildCount"),
2734 is_pointer: false,
2735 value_cast: Some("uint"),
2736 },
2737 "has_error_nodes" => GoMethodCallInfo {
2738 call_expr: format!("{import_alias}.TreeHasErrorNodes({result_var})"),
2739 is_pointer: true,
2740 value_cast: None,
2741 },
2742 "error_count" | "tree_error_count" => GoMethodCallInfo {
2743 call_expr: format!("{import_alias}.TreeErrorCount({result_var})"),
2744 is_pointer: true,
2745 value_cast: Some("uint"),
2746 },
2747 "tree_to_sexp" => GoMethodCallInfo {
2748 call_expr: format!("{import_alias}.TreeToSexp({result_var})"),
2749 is_pointer: true,
2750 value_cast: None,
2751 },
2752 "contains_node_type" => {
2753 let node_type = args
2754 .and_then(|a| a.get("node_type"))
2755 .and_then(|v| v.as_str())
2756 .unwrap_or("");
2757 GoMethodCallInfo {
2758 call_expr: format!("{import_alias}.TreeContainsNodeType({result_var}, \"{node_type}\")"),
2759 is_pointer: true,
2760 value_cast: None,
2761 }
2762 }
2763 "find_nodes_by_type" => {
2764 let node_type = args
2765 .and_then(|a| a.get("node_type"))
2766 .and_then(|v| v.as_str())
2767 .unwrap_or("");
2768 GoMethodCallInfo {
2769 call_expr: format!("{import_alias}.FindNodesByType({result_var}, \"{node_type}\")"),
2770 is_pointer: true,
2771 value_cast: None,
2772 }
2773 }
2774 "run_query" => {
2775 let query_source = args
2776 .and_then(|a| a.get("query_source"))
2777 .and_then(|v| v.as_str())
2778 .unwrap_or("");
2779 let language = args
2780 .and_then(|a| a.get("language"))
2781 .and_then(|v| v.as_str())
2782 .unwrap_or("");
2783 let query_lit = go_string_literal(query_source);
2784 let lang_lit = go_string_literal(language);
2785 GoMethodCallInfo {
2787 call_expr: format!("{import_alias}.RunQuery({result_var}, {lang_lit}, {query_lit}, []byte(source))"),
2788 is_pointer: false,
2789 value_cast: None,
2790 }
2791 }
2792 other => {
2793 let method_pascal = other.to_upper_camel_case();
2794 GoMethodCallInfo {
2795 call_expr: format!("{result_var}.{method_pascal}()"),
2796 is_pointer: false,
2797 value_cast: None,
2798 }
2799 }
2800 }
2801}
2802
2803fn convert_json_for_go(value: serde_json::Value) -> serde_json::Value {
2813 match value {
2814 serde_json::Value::Object(map) => {
2815 let new_map: serde_json::Map<String, serde_json::Value> = map
2816 .into_iter()
2817 .map(|(k, v)| (camel_to_snake_case(&k), convert_json_for_go(v)))
2818 .collect();
2819 serde_json::Value::Object(new_map)
2820 }
2821 serde_json::Value::Array(arr) => {
2822 if is_byte_array(&arr) {
2825 let bytes: Vec<u8> = arr
2826 .iter()
2827 .filter_map(|v| v.as_u64().and_then(|n| if n <= 255 { Some(n as u8) } else { None }))
2828 .collect();
2829 let encoded = base64_encode(&bytes);
2831 serde_json::Value::String(encoded)
2832 } else {
2833 serde_json::Value::Array(arr.into_iter().map(convert_json_for_go).collect())
2834 }
2835 }
2836 serde_json::Value::String(s) => {
2837 serde_json::Value::String(pascal_to_snake_case(&s))
2840 }
2841 other => other,
2842 }
2843}
2844
2845fn is_byte_array(arr: &[serde_json::Value]) -> bool {
2847 if arr.is_empty() {
2848 return false;
2849 }
2850 arr.iter().all(|v| {
2851 if let serde_json::Value::Number(n) = v {
2852 n.is_u64() && n.as_u64().is_some_and(|u| u <= 255)
2853 } else {
2854 false
2855 }
2856 })
2857}
2858
2859fn base64_encode(bytes: &[u8]) -> String {
2862 const TABLE: &[u8] = b"ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
2863 let mut result = String::new();
2864 let mut i = 0;
2865
2866 while i + 2 < bytes.len() {
2867 let b1 = bytes[i];
2868 let b2 = bytes[i + 1];
2869 let b3 = bytes[i + 2];
2870
2871 result.push(TABLE[(b1 >> 2) as usize] as char);
2872 result.push(TABLE[(((b1 & 0x03) << 4) | (b2 >> 4)) as usize] as char);
2873 result.push(TABLE[(((b2 & 0x0f) << 2) | (b3 >> 6)) as usize] as char);
2874 result.push(TABLE[(b3 & 0x3f) as usize] as char);
2875
2876 i += 3;
2877 }
2878
2879 if i < bytes.len() {
2881 let b1 = bytes[i];
2882 result.push(TABLE[(b1 >> 2) as usize] as char);
2883
2884 if i + 1 < bytes.len() {
2885 let b2 = bytes[i + 1];
2886 result.push(TABLE[(((b1 & 0x03) << 4) | (b2 >> 4)) as usize] as char);
2887 result.push(TABLE[((b2 & 0x0f) << 2) as usize] as char);
2888 result.push('=');
2889 } else {
2890 result.push(TABLE[((b1 & 0x03) << 4) as usize] as char);
2891 result.push_str("==");
2892 }
2893 }
2894
2895 result
2896}
2897
2898fn camel_to_snake_case(s: &str) -> String {
2900 let mut result = String::new();
2901 let mut prev_upper = false;
2902 for (i, c) in s.char_indices() {
2903 if c.is_uppercase() {
2904 if i > 0 && !prev_upper {
2905 result.push('_');
2906 }
2907 result.push(c.to_lowercase().next().unwrap_or(c));
2908 prev_upper = true;
2909 } else {
2910 if prev_upper && i > 1 {
2911 }
2915 result.push(c);
2916 prev_upper = false;
2917 }
2918 }
2919 result
2920}
2921
2922fn pascal_to_snake_case(s: &str) -> String {
2927 let first_char = s.chars().next();
2929 if first_char.is_none() || !first_char.unwrap().is_uppercase() || s.contains('_') || s.contains(' ') {
2930 return s.to_string();
2931 }
2932 camel_to_snake_case(s)
2933}
2934
2935fn element_type_to_go_slice(element_type: Option<&str>, import_alias: &str) -> String {
2939 let elem = element_type.unwrap_or("String").trim();
2940 let go_elem = rust_type_to_go(elem, import_alias);
2941 format!("[]{go_elem}")
2942}
2943
2944fn rust_type_to_go(rust: &str, import_alias: &str) -> String {
2947 let trimmed = rust.trim();
2948 if let Some(inner) = trimmed.strip_prefix("Vec<").and_then(|s| s.strip_suffix('>')) {
2949 return format!("[]{}", rust_type_to_go(inner, import_alias));
2950 }
2951 match trimmed {
2952 "String" | "&str" | "str" => "string".to_string(),
2953 "bool" => "bool".to_string(),
2954 "f32" => "float32".to_string(),
2955 "f64" => "float64".to_string(),
2956 "i8" => "int8".to_string(),
2957 "i16" => "int16".to_string(),
2958 "i32" => "int32".to_string(),
2959 "i64" | "isize" => "int64".to_string(),
2960 "u8" => "uint8".to_string(),
2961 "u16" => "uint16".to_string(),
2962 "u32" => "uint32".to_string(),
2963 "u64" | "usize" => "uint64".to_string(),
2964 _ => format!("{import_alias}.{trimmed}"),
2965 }
2966}
2967
2968fn json_to_go(value: &serde_json::Value) -> String {
2969 match value {
2970 serde_json::Value::String(s) => go_string_literal(s),
2971 serde_json::Value::Bool(b) => b.to_string(),
2972 serde_json::Value::Number(n) => n.to_string(),
2973 serde_json::Value::Null => "nil".to_string(),
2974 other => go_string_literal(&other.to_string()),
2976 }
2977}
2978
2979fn visitor_struct_name(fixture_id: &str) -> String {
2988 use heck::ToUpperCamelCase;
2989 format!("testVisitor{}", fixture_id.to_upper_camel_case())
2991}
2992
2993fn emit_go_visitor_struct(
2998 out: &mut String,
2999 struct_name: &str,
3000 visitor_spec: &crate::fixture::VisitorSpec,
3001 import_alias: &str,
3002) {
3003 let _ = writeln!(out, "type {struct_name} struct{{");
3004 let _ = writeln!(out, "\t{import_alias}.BaseVisitor");
3005 let _ = writeln!(out, "}}");
3006 for (method_name, action) in &visitor_spec.callbacks {
3007 emit_go_visitor_method(out, struct_name, method_name, action, import_alias);
3008 }
3009}
3010
3011fn emit_go_visitor_method(
3013 out: &mut String,
3014 struct_name: &str,
3015 method_name: &str,
3016 action: &CallbackAction,
3017 import_alias: &str,
3018) {
3019 let camel_method = method_to_camel(method_name);
3020 let params = match method_name {
3023 "visit_link" => format!("_ {import_alias}.NodeContext, href string, text string, title *string"),
3024 "visit_image" => format!("_ {import_alias}.NodeContext, src string, alt string, title *string"),
3025 "visit_heading" => format!("_ {import_alias}.NodeContext, level uint32, text string, id *string"),
3026 "visit_code_block" => format!("_ {import_alias}.NodeContext, lang *string, code string"),
3027 "visit_code_inline"
3028 | "visit_strong"
3029 | "visit_emphasis"
3030 | "visit_strikethrough"
3031 | "visit_underline"
3032 | "visit_subscript"
3033 | "visit_superscript"
3034 | "visit_mark"
3035 | "visit_button"
3036 | "visit_summary"
3037 | "visit_figcaption"
3038 | "visit_definition_term"
3039 | "visit_definition_description" => format!("_ {import_alias}.NodeContext, text string"),
3040 "visit_text" => format!("_ {import_alias}.NodeContext, text string"),
3041 "visit_list_item" => {
3042 format!("_ {import_alias}.NodeContext, ordered bool, marker string, text string")
3043 }
3044 "visit_blockquote" => format!("_ {import_alias}.NodeContext, content string, depth uint"),
3045 "visit_table_row" => format!("_ {import_alias}.NodeContext, cells []string, isHeader bool"),
3046 "visit_custom_element" => format!("_ {import_alias}.NodeContext, tagName string, html string"),
3047 "visit_form" => format!("_ {import_alias}.NodeContext, action *string, method *string"),
3048 "visit_input" => {
3049 format!("_ {import_alias}.NodeContext, inputType string, name *string, value *string")
3050 }
3051 "visit_audio" | "visit_video" | "visit_iframe" => {
3052 format!("_ {import_alias}.NodeContext, src *string")
3053 }
3054 "visit_details" => format!("_ {import_alias}.NodeContext, open bool"),
3055 "visit_element_end" | "visit_table_end" | "visit_definition_list_end" | "visit_figure_end" => {
3056 format!("_ {import_alias}.NodeContext, output string")
3057 }
3058 "visit_list_start" => format!("_ {import_alias}.NodeContext, ordered bool"),
3059 "visit_list_end" => format!("_ {import_alias}.NodeContext, ordered bool, output string"),
3060 _ => format!("_ {import_alias}.NodeContext"),
3061 };
3062
3063 let _ = writeln!(
3064 out,
3065 "func (v *{struct_name}) {camel_method}({params}) {import_alias}.VisitResult {{"
3066 );
3067 match action {
3068 CallbackAction::Skip => {
3069 let _ = writeln!(out, "\treturn {import_alias}.VisitResultSkip()");
3070 }
3071 CallbackAction::Continue => {
3072 let _ = writeln!(out, "\treturn {import_alias}.VisitResultContinue()");
3073 }
3074 CallbackAction::PreserveHtml => {
3075 let _ = writeln!(out, "\treturn {import_alias}.VisitResultPreserveHTML()");
3076 }
3077 CallbackAction::Custom { output } => {
3078 let escaped = go_string_literal(output);
3079 let _ = writeln!(out, "\treturn {import_alias}.VisitResultCustom({escaped})");
3080 }
3081 CallbackAction::CustomTemplate { template } => {
3082 let ptr_params = go_visitor_ptr_params(method_name);
3089 let (fmt_str, fmt_args) = template_to_sprintf(template, &ptr_params);
3090 let escaped_fmt = go_string_literal(&fmt_str);
3091 if fmt_args.is_empty() {
3092 let _ = writeln!(out, "\treturn {import_alias}.VisitResultCustom({escaped_fmt})");
3093 } else {
3094 let args_str = fmt_args.join(", ");
3095 let _ = writeln!(
3096 out,
3097 "\treturn {import_alias}.VisitResultCustom(fmt.Sprintf({escaped_fmt}, {args_str}))"
3098 );
3099 }
3100 }
3101 }
3102 let _ = writeln!(out, "}}");
3103}
3104
3105fn go_visitor_ptr_params(method_name: &str) -> std::collections::HashSet<&'static str> {
3108 match method_name {
3109 "visit_link" => ["title"].into(),
3110 "visit_image" => ["title"].into(),
3111 "visit_heading" => ["id"].into(),
3112 "visit_code_block" => ["lang"].into(),
3113 "visit_form" => ["action", "method"].into(),
3114 "visit_input" => ["name", "value"].into(),
3115 "visit_audio" | "visit_video" | "visit_iframe" => ["src"].into(),
3116 _ => std::collections::HashSet::new(),
3117 }
3118}
3119
3120fn template_to_sprintf(template: &str, ptr_params: &std::collections::HashSet<&str>) -> (String, Vec<String>) {
3132 let mut fmt_str = String::new();
3133 let mut args: Vec<String> = Vec::new();
3134 let mut chars = template.chars().peekable();
3135 while let Some(c) = chars.next() {
3136 if c == '{' {
3137 let mut name = String::new();
3139 for inner in chars.by_ref() {
3140 if inner == '}' {
3141 break;
3142 }
3143 name.push(inner);
3144 }
3145 fmt_str.push_str("%s");
3146 let go_name = go_param_name(&name);
3148 let arg_expr = if ptr_params.contains(go_name.as_str()) {
3150 format!("*{go_name}")
3151 } else {
3152 go_name
3153 };
3154 args.push(arg_expr);
3155 } else {
3156 fmt_str.push(c);
3157 }
3158 }
3159 (fmt_str, args)
3160}
3161
3162fn method_to_camel(snake: &str) -> String {
3164 use heck::ToUpperCamelCase;
3165 snake.to_upper_camel_case()
3166}
3167
3168#[cfg(test)]
3169mod tests {
3170 use super::*;
3171 use crate::config::{CallConfig, E2eConfig};
3172 use crate::field_access::FieldResolver;
3173 use crate::fixture::{Assertion, Fixture};
3174
3175 fn make_fixture(id: &str) -> Fixture {
3176 Fixture {
3177 id: id.to_string(),
3178 category: None,
3179 description: "test fixture".to_string(),
3180 tags: vec![],
3181 skip: None,
3182 env: None,
3183 call: None,
3184 input: serde_json::Value::Null,
3185 mock_response: Some(crate::fixture::MockResponse {
3186 status: 200,
3187 body: Some(serde_json::Value::Null),
3188 stream_chunks: None,
3189 headers: std::collections::HashMap::new(),
3190 }),
3191 source: String::new(),
3192 http: None,
3193 assertions: vec![Assertion {
3194 assertion_type: "not_error".to_string(),
3195 ..Default::default()
3196 }],
3197 visitor: None,
3198 }
3199 }
3200
3201 #[test]
3205 fn test_go_method_name_uses_go_casing() {
3206 let e2e_config = E2eConfig {
3207 call: CallConfig {
3208 function: "clean_extracted_text".to_string(),
3209 module: "github.com/example/mylib".to_string(),
3210 result_var: "result".to_string(),
3211 returns_result: true,
3212 ..CallConfig::default()
3213 },
3214 ..E2eConfig::default()
3215 };
3216
3217 let fixture = make_fixture("basic_text");
3218 let resolver = FieldResolver::new(
3219 &std::collections::HashMap::new(),
3220 &std::collections::HashSet::new(),
3221 &std::collections::HashSet::new(),
3222 &std::collections::HashSet::new(),
3223 &std::collections::HashSet::new(),
3224 );
3225 let mut out = String::new();
3226 render_test_function(&mut out, &fixture, "kreuzberg", &resolver, &e2e_config);
3227
3228 assert!(
3229 out.contains("kreuzberg.CleanExtractedText("),
3230 "expected Go-cased method name 'CleanExtractedText', got:\n{out}"
3231 );
3232 assert!(
3233 !out.contains("kreuzberg.clean_extracted_text("),
3234 "must not emit raw snake_case method name, got:\n{out}"
3235 );
3236 }
3237}