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use super::super::optional_renderers::{
TypescriptMapAccess, render_csharp_with_optionals, render_dart_with_optionals, render_java_with_optionals,
render_kotlin_android_with_optionals, render_kotlin_with_optionals, render_php_with_getters,
render_rust_with_optionals, render_typescript_with_optionals, render_zig_with_optionals,
};
use super::super::parse::parse_path;
use super::super::renderers::{render_accessor, render_swift_with_first_class_map};
use super::super::types::{FieldResolver, PathSegment};
impl FieldResolver {
/// Generate a language-specific accessor expression.
///
/// The path is taken from [`FieldResolver::result_relative_path`]: the alias applied and any
/// virtual namespace prefix removed, so `"browser.browser_used"` produces `result.browser_used`
/// (Python) / `result.BrowserUsed` (C#) rather than the raw `result.browser.browser_used`,
/// which addresses a member no result declares.
///
/// ~keep Asking rather than re-deriving is the point, and it is the same correction
/// `is_array` took. This method used to carry its own copy of the strip decision, gated on
/// `result_fields.contains(..)` where `result_relative_path` asks the broader
/// `is_valid_for_result(..)`. That was the un-updated original, not a policy: it predates the
/// IR oracle `is_valid_for_result` grew, `result_relative_path`'s doc already claims to apply
/// "the same policy `accessor()` applies", and the two C generator sites that inline this very
/// block (`c/call_patterns.rs`, `c/test_function.rs`) describe themselves as "matching the
/// same logic as FieldResolver::accessor" while using the broad predicate. An accessor that
/// lands somewhere no classifier agrees the value lives is what emitted
/// `string(result.ActionResults)` — `is_array` consulted the shared answer, this method did
/// not, and the generated Go package stopped compiling.
pub fn accessor(&self, fixture_field: &str, language: &str, result_var: &str) -> String {
let effective = self.result_relative_path(fixture_field);
let segments = parse_path(&effective);
let segments = self.inject_array_indexing(segments);
match language {
// `node` and `wasm` are one language and must answer "does this link need `?.`"
// once, from the same renderer. `wasm` used to fall through to the catch-all's
// `render_wasm`, which knows nothing about optionality, so a fixture with an
// `Option<T>` field got `result.document?.nodes` for node and the `TS18048`
// `result.document.nodes` for wasm. Only the map lowering differs. ~keep
"typescript" | "node" => render_typescript_with_optionals(
&segments,
result_var,
&self.optional_fields,
TypescriptMapAccess::Index,
),
"wasm" => render_typescript_with_optionals(
&segments,
result_var,
&self.optional_fields,
TypescriptMapAccess::MapGet,
),
"java" => render_java_with_optionals(&segments, result_var, &self.optional_fields),
"kotlin" => render_kotlin_with_optionals(&segments, result_var, &self.optional_fields),
// kotlin_android data classes expose fields as Kotlin properties (no parens),
// not as Java-style getter methods. Use the dedicated renderer.
"kotlin_android" => render_kotlin_android_with_optionals(&segments, result_var, &self.optional_fields),
"rust" => render_rust_with_optionals(
&segments,
result_var,
&self.optional_fields,
&self.method_calls,
&self.result_fields,
),
"csharp" => render_csharp_with_optionals(&segments, result_var, &self.optional_fields),
"zig" => render_zig_with_optionals(
&segments,
result_var,
&self.optional_fields,
&self.method_calls,
&self.result_fields,
),
// Always use `render_swift_with_first_class_map` for Swift. The map
// correctly handles both first-class (property syntax) and opaque
// (method-call syntax) types. When no type info is available (empty map,
// unknown root type), `is_first_class(None)` returns `false` so
// method-call syntax is the safe default — opaque swift-bridge types
// expose fields as methods, not properties.
"swift" => render_swift_with_first_class_map(
&segments,
result_var,
&self.optional_fields,
&self.swift_first_class_map,
),
"dart" => render_dart_with_optionals(&segments, result_var, &self.optional_fields),
"php" if !self.php_getter_map.is_empty() => {
render_php_with_getters(&segments, result_var, &self.php_getter_map, &self.optional_fields)
}
_ => render_accessor(&segments, language, result_var),
}
}
/// Generate a language-specific accessor expression for an error-path field.
///
/// Used when `assertion_type == "error"` and the fixture declares a `field`
/// like `"error.status_code"`. The caller strips the `"error."` prefix and
/// passes the sub-field name (e.g. `"status_code"`) here.
///
/// Resolves against `error_field_aliases` (instead of the success-path
/// `aliases`). Falls back to direct field access (i.e. `err_var.status_code`)
/// when no alias exists.
///
/// For Rust, uses `render_rust_with_optionals` so that fields in
/// `method_calls` emit parentheses (e.g. `err.status_code()` when
/// `"status_code"` is in `fields_method_calls`).
pub fn accessor_for_error(&self, sub_field: &str, language: &str, err_var: &str) -> String {
let resolved = self
.error_field_aliases
.get(sub_field)
.map(String::as_str)
.unwrap_or(sub_field);
let segments = parse_path(resolved);
// Error fields are simple scalar fields — no array injection needed.
// For Rust, delegate to render_rust_with_optionals so method_calls are honoured.
match language {
"rust" => render_rust_with_optionals(
&segments,
err_var,
&self.optional_fields,
&self.method_calls,
&self.result_fields,
),
_ => render_accessor(&segments, language, err_var),
}
}
/// Check whether a sub-field (the part after `"error."`) has an entry in
/// `error_field_aliases` or if there are any error aliases at all.
///
/// When there are no error aliases configured, callers fall back to
/// direct field access, which is the safe default for known public fields
/// like `status_code` on `SampleLlmError`.
pub fn has_error_aliases(&self) -> bool {
!self.error_field_aliases.is_empty()
}
fn inject_array_indexing(&self, segments: Vec<PathSegment>) -> Vec<PathSegment> {
if self.array_fields.is_empty() {
return segments;
}
let len = segments.len();
let mut result = Vec::with_capacity(len);
let mut path_so_far = String::new();
for i in 0..len {
let seg = &segments[i];
match seg {
PathSegment::Field(f) => {
if !path_so_far.is_empty() {
path_so_far.push('.');
}
path_so_far.push_str(f);
let next_is_length = i + 1 < len && matches!(segments[i + 1], PathSegment::Length);
if i + 1 < len && self.array_fields.contains(&path_so_far) && !next_is_length {
// Config-registered array field without explicit index — default to 0.
result.push(PathSegment::ArrayField {
name: f.clone(),
index: 0,
});
} else {
result.push(seg.clone());
}
}
// Explicit ArrayField from parse_path — pass through unchanged; the user's
// explicit index takes precedence over any config default.
PathSegment::ArrayField { .. } => {
result.push(seg.clone());
}
PathSegment::MapAccess { field, key } => {
if !path_so_far.is_empty() {
path_so_far.push('.');
}
path_so_far.push_str(field);
let is_numeric = !key.is_empty() && key.chars().all(|c| c.is_ascii_digit());
if is_numeric && self.array_fields.contains(&path_so_far) {
// Numeric map-access on a registered array field — upgrade to ArrayField.
let index: usize = key.parse().unwrap_or(0);
result.push(PathSegment::ArrayField {
name: field.clone(),
index,
});
} else {
result.push(seg.clone());
}
}
_ => {
result.push(seg.clone());
}
}
}
result
}
/// Generate a Rust variable binding that unwraps an Optional string field.
pub fn rust_unwrap_binding(&self, fixture_field: &str, result_var: &str) -> Option<(String, String)> {
let resolved = self.resolve(fixture_field);
if !self.is_optional(resolved) {
return None;
}
// ~keep Same shared answer `accessor()` renders from, not a mirror of it. The local's
// name is derived from this path, so a copy that drifted would name the binding after one
// path while the assertion that must reference it was rendered from another.
let effective = self.result_relative_path(fixture_field);
let segments = parse_path(&effective);
let segments = self.inject_array_indexing(segments);
// Sanitize the resolved path into a snake_case Rust identifier:
// 1. `.` and `[` become `_` separators, `]` is dropped.
// 2. Collapse runs of `_` so `foo[].bar` → `foo__bar` → `foo_bar`
// and strip any leading/trailing underscores.
let local_var = {
let raw = effective.replace(['.', '['], "_").replace(']', "");
let mut collapsed = String::with_capacity(raw.len());
let mut prev_underscore = false;
for ch in raw.chars() {
if ch == '_' {
if !prev_underscore {
collapsed.push('_');
}
prev_underscore = true;
} else {
collapsed.push(ch);
prev_underscore = false;
}
}
// Prefix with `_` so the binding declaration suppresses `-D unused_variables`
// when no assertion actually references the local. The variable remains fully
// accessible under the `_`-prefixed name if an assertion does use it.
format!("_{}", collapsed.trim_matches('_'))
};
// Use the optional-aware Rust renderer so intermediate `Option<T>`
// segments produce `.as_ref().unwrap()` instead of bare field access.
// For e.g. `summary.strategy` with `summary` in `optional_fields`, the
// basic `render_accessor` would emit `result.summary.strategy`, which
// is a compile error because `Option<Summary>` has no `strategy` field.
let accessor = render_rust_with_optionals(
&segments,
result_var,
&self.optional_fields,
&self.method_calls,
&self.result_fields,
);
let has_map_access = segments.iter().any(|s| {
if let PathSegment::MapAccess { key, .. } = s {
!key.chars().all(|c| c.is_ascii_digit())
} else {
false
}
});
let is_array = self.is_array(resolved);
let binding = if has_map_access {
format!("let {local_var} = {accessor}.unwrap_or(\"\");")
} else if is_array {
format!("let {local_var} = {accessor}.as_deref().unwrap_or(&[]);")
} else {
// Use Display (via `.to_string()`) so types that intentionally implement Display
// with a serde-style representation (e.g. `FinishReason` rendering as
// `"content_filter"`) match the wire-format strings asserted in fixtures.
// Types without Display would need to be excluded from string-equals assertions
// or have a Display impl added to the core library.
format!("let {local_var} = {accessor}.as_ref().map(|v| v.to_string()).unwrap_or_default();")
};
Some((binding, local_var))
}
}