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* `rustc` should now compile under LLVM 9 or 10 * Compiler generates an error if `-Z instrument-coverage` is specified but LLVM version is less than 11 * Coverage tests that require `-Z instrument-coverage` and run codegen should be skipped if LLVM version is less than 11
227 lines
9.7 KiB
Rust
227 lines
9.7 KiB
Rust
use crate::common::CodegenCx;
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use crate::coverageinfo;
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use crate::llvm;
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use llvm::coverageinfo::CounterMappingRegion;
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use rustc_codegen_ssa::coverageinfo::map::{Counter, CounterExpression};
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use rustc_codegen_ssa::traits::ConstMethods;
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use rustc_data_structures::fx::FxIndexSet;
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use rustc_llvm::RustString;
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use rustc_middle::mir::coverage::CodeRegion;
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use std::ffi::CString;
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use tracing::debug;
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/// Generates and exports the Coverage Map.
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///
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/// This Coverage Map complies with Coverage Mapping Format version 4 (zero-based encoded as 3),
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/// as defined at [LLVM Code Coverage Mapping Format](https://github.com/rust-lang/llvm-project/blob/rustc/11.0-2020-10-12/llvm/docs/CoverageMappingFormat.rst#llvm-code-coverage-mapping-format)
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/// and published in Rust's current (November 2020) fork of LLVM. This version is supported by the
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/// LLVM coverage tools (`llvm-profdata` and `llvm-cov`) bundled with Rust's fork of LLVM.
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///
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/// Consequently, Rust's bundled version of Clang also generates Coverage Maps compliant with
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/// version 3. Clang's implementation of Coverage Map generation was referenced when implementing
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/// this Rust version, and though the format documentation is very explicit and detailed, some
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/// undocumented details in Clang's implementation (that may or may not be important) were also
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/// replicated for Rust's Coverage Map.
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pub fn finalize<'ll, 'tcx>(cx: &CodegenCx<'ll, 'tcx>) {
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let function_coverage_map = match cx.coverage_context() {
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Some(ctx) => ctx.take_function_coverage_map(),
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None => return,
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};
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if function_coverage_map.is_empty() {
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// This module has no functions with coverage instrumentation
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return;
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}
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let mut mapgen = CoverageMapGenerator::new();
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// Encode coverage mappings and generate function records
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let mut function_data = Vec::new();
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for (instance, function_coverage) in function_coverage_map {
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debug!("Generate coverage map for: {:?}", instance);
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let mangled_function_name = cx.tcx.symbol_name(instance).to_string();
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let function_source_hash = function_coverage.source_hash();
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let (expressions, counter_regions) =
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function_coverage.get_expressions_and_counter_regions();
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let coverage_mapping_buffer = llvm::build_byte_buffer(|coverage_mapping_buffer| {
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mapgen.write_coverage_mapping(expressions, counter_regions, coverage_mapping_buffer);
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});
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debug_assert!(
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coverage_mapping_buffer.len() > 0,
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"Every `FunctionCoverage` should have at least one counter"
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);
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function_data.push((mangled_function_name, function_source_hash, coverage_mapping_buffer));
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}
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// Encode all filenames referenced by counters/expressions in this module
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let filenames_buffer = llvm::build_byte_buffer(|filenames_buffer| {
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coverageinfo::write_filenames_section_to_buffer(&mapgen.filenames, filenames_buffer);
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});
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let filenames_size = filenames_buffer.len();
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let filenames_val = cx.const_bytes(&filenames_buffer[..]);
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let filenames_ref = coverageinfo::hash_bytes(filenames_buffer);
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// Generate the LLVM IR representation of the coverage map and store it in a well-known global
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let cov_data_val = mapgen.generate_coverage_map(cx, filenames_size, filenames_val);
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for (mangled_function_name, function_source_hash, coverage_mapping_buffer) in function_data {
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save_function_record(
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cx,
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mangled_function_name,
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function_source_hash,
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filenames_ref,
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coverage_mapping_buffer,
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);
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}
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// Save the coverage data value to LLVM IR
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coverageinfo::save_cov_data_to_mod(cx, cov_data_val);
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}
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struct CoverageMapGenerator {
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filenames: FxIndexSet<CString>,
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}
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impl CoverageMapGenerator {
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fn new() -> Self {
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Self { filenames: FxIndexSet::default() }
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}
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/// Using the `expressions` and `counter_regions` collected for the current function, generate
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/// the `mapping_regions` and `virtual_file_mapping`, and capture any new filenames. Then use
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/// LLVM APIs to encode the `virtual_file_mapping`, `expressions`, and `mapping_regions` into
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/// the given `coverage_mapping` byte buffer, compliant with the LLVM Coverage Mapping format.
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fn write_coverage_mapping(
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&mut self,
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expressions: Vec<CounterExpression>,
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counter_regions: impl Iterator<Item = (Counter, &'a CodeRegion)>,
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coverage_mapping_buffer: &RustString,
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) {
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let mut counter_regions = counter_regions.collect::<Vec<_>>();
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if counter_regions.is_empty() {
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return;
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}
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let mut virtual_file_mapping = Vec::new();
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let mut mapping_regions = Vec::new();
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let mut current_file_name = None;
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let mut current_file_id = 0;
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// Convert the list of (Counter, CodeRegion) pairs to an array of `CounterMappingRegion`, sorted
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// by filename and position. Capture any new files to compute the `CounterMappingRegion`s
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// `file_id` (indexing files referenced by the current function), and construct the
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// function-specific `virtual_file_mapping` from `file_id` to its index in the module's
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// `filenames` array.
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counter_regions.sort_unstable_by_key(|(_counter, region)| *region);
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for (counter, region) in counter_regions {
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let CodeRegion { file_name, start_line, start_col, end_line, end_col } = *region;
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let same_file = current_file_name.as_ref().map_or(false, |p| *p == file_name);
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if !same_file {
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if current_file_name.is_some() {
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current_file_id += 1;
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}
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current_file_name = Some(file_name);
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let c_filename = CString::new(file_name.to_string())
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.expect("null error converting filename to C string");
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debug!(" file_id: {} = '{:?}'", current_file_id, c_filename);
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let (filenames_index, _) = self.filenames.insert_full(c_filename);
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virtual_file_mapping.push(filenames_index as u32);
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}
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debug!("Adding counter {:?} to map for {:?}", counter, region);
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mapping_regions.push(CounterMappingRegion::code_region(
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counter,
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current_file_id,
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start_line,
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start_col,
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end_line,
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end_col,
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));
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}
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// Encode and append the current function's coverage mapping data
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coverageinfo::write_mapping_to_buffer(
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virtual_file_mapping,
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expressions,
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mapping_regions,
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coverage_mapping_buffer,
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);
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}
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/// Construct coverage map header and the array of function records, and combine them into the
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/// coverage map. Save the coverage map data into the LLVM IR as a static global using a
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/// specific, well-known section and name.
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fn generate_coverage_map(
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self,
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cx: &CodegenCx<'ll, 'tcx>,
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filenames_size: usize,
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filenames_val: &'ll llvm::Value,
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) -> &'ll llvm::Value {
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debug!(
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"cov map: filenames_size = {}, 0-based version = {}",
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filenames_size,
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coverageinfo::mapping_version()
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);
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// Create the coverage data header (Note, fields 0 and 2 are now always zero,
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// as of `llvm::coverage::CovMapVersion::Version4`.
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let zero_was_n_records_val = cx.const_u32(0);
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let filenames_size_val = cx.const_u32(filenames_size as u32);
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let zero_was_coverage_size_val = cx.const_u32(0);
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let version_val = cx.const_u32(coverageinfo::mapping_version());
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let cov_data_header_val = cx.const_struct(
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&[zero_was_n_records_val, filenames_size_val, zero_was_coverage_size_val, version_val],
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/*packed=*/ false,
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);
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// Create the complete LLVM coverage data value to add to the LLVM IR
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cx.const_struct(&[cov_data_header_val, filenames_val], /*packed=*/ false)
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}
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}
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/// Construct a function record and combine it with the function's coverage mapping data.
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/// Save the function record into the LLVM IR as a static global using a
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/// specific, well-known section and name.
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fn save_function_record(
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cx: &CodegenCx<'ll, 'tcx>,
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mangled_function_name: String,
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function_source_hash: u64,
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filenames_ref: u64,
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coverage_mapping_buffer: Vec<u8>,
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) {
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// Concatenate the encoded coverage mappings
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let coverage_mapping_size = coverage_mapping_buffer.len();
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let coverage_mapping_val = cx.const_bytes(&coverage_mapping_buffer[..]);
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let func_name_hash = coverageinfo::hash_str(&mangled_function_name);
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let func_name_hash_val = cx.const_u64(func_name_hash);
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let coverage_mapping_size_val = cx.const_u32(coverage_mapping_size as u32);
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let func_hash_val = cx.const_u64(function_source_hash);
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let filenames_ref_val = cx.const_u64(filenames_ref);
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let func_record_val = cx.const_struct(
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&[
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func_name_hash_val,
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coverage_mapping_size_val,
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func_hash_val,
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filenames_ref_val,
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coverage_mapping_val,
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],
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/*packed=*/ true,
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);
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// At the present time, the coverage map for Rust assumes every instrumented function `is_used`.
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// Note that Clang marks functions as "unused" in `CodeGenPGO::emitEmptyCounterMapping`. (See:
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// https://github.com/rust-lang/llvm-project/blob/de02a75e398415bad4df27b4547c25b896c8bf3b/clang%2Flib%2FCodeGen%2FCodeGenPGO.cpp#L877-L878
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// for example.)
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//
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// It's not yet clear if or how this may be applied to Rust in the future, but the `is_used`
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// argument is available and handled similarly.
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let is_used = true;
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coverageinfo::save_func_record_to_mod(cx, func_name_hash, func_record_val, is_used);
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}
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