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roto/codegen/tests/build_generated_code.rs
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use roto_codegen::google::protobuf::compiler::plugin::CodeGeneratorRequest;
use roto_codegen::google::protobuf::descriptor::FileDescriptorSet;
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use std::fs;
use std::process::Command;
#[test]
fn test_generated_code_builds() {
// 1. Generate Rust code from data/request.bin
let request_path = "data/request.bin";
let data = fs::read(request_path).expect("Failed to read request.bin");
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let request = CodeGeneratorRequest::new(&data).expect("Failed to parse CodeGeneratorRequest");
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// Mimic the logic from protoc-gen-roto to build a FileDescriptorSet
let mut set_buf = Vec::new();
for file_res in request.proto_file() {
let (file_data, _) = file_res.expect("Failed to iterate proto_file");
// Tag 1, Length-delimited: (1 << 3) | 2 = 10
set_buf.push(10);
// Write length as varint
let len = file_data.len() as u64;
let mut len_buf = [0u8; 10];
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let len_size =
roto_runtime::write_varint(len, &mut len_buf).expect("Failed to write varint length");
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set_buf.extend_from_slice(&len_buf[..len_size]);
// Write data
set_buf.extend_from_slice(file_data);
}
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let set = FileDescriptorSet::new(&set_buf).expect("Failed to create FileDescriptorSet");
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let generated_files = roto_codegen::generator::generate_rust_code(&set, None, false);
assert!(
!generated_files.is_empty(),
"Generated code should not be empty"
);
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// 2. Setup a temporary Cargo project to verify the code builds
let root = std::env::current_dir().expect("Failed to get current directory");
let temp_project_dir = root.join("test_gen_project");
// Clean up previous runs
if temp_project_dir.exists() {
fs::remove_dir_all(&temp_project_dir).expect("Failed to clean up temp project directory");
}
// Create new library project
let status = Command::new("cargo")
.args(["new", "--lib", "test_gen_project"])
.current_dir(&root)
.status()
.expect("Failed to run cargo new");
assert!(status.success(), "cargo new failed");
// 3. Configure the project to depend on the current roto crate
let cargo_toml_path = temp_project_dir.join("Cargo.toml");
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let cargo_toml_content =
fs::read_to_string(&cargo_toml_path).expect("Failed to read Cargo.toml");
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let updated_cargo_toml = format!(
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"{}\n\nroto-codegen = {{ path = \"..\" }}\nroto-runtime = {{ path = \"../../runtime\" }}\nbytes = \"1.0\"\ntonic = \"0.12\"\ntokio-stream = \"0.1\"\n\n[workspace]\n",
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cargo_toml_content
);
fs::write(cargo_toml_path, updated_cargo_toml).expect("Failed to write Cargo.toml");
// 4. Write the generated code to src/lib.rs
// The generated code uses `use crate::{...}`, but it's now in a separate crate.
// Replace `crate` with `roto` to reference the types in the dependency.
let mut all_code = String::new();
for (_, content) in generated_files {
all_code.push_str(&content);
all_code.push_str("\n");
}
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let lib_path = temp_project_dir.join("src/lib.rs");
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fs::write(lib_path, all_code).expect("Failed to write generated code to src/lib.rs");
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// 5. Attempt to build the project
let build_status = Command::new("cargo")
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.args(["--offline", "build"])
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.current_dir(&temp_project_dir)
.status()
.expect("Failed to run cargo build");
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assert!(
build_status.success(),
"The generated Rust code failed to build in a standalone project!"
);
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}