
Continuing the work started in #136466. Every method gains a `hir_` prefix, though for the ones that already have a `par_` or `try_par_` prefix I added the `hir_` after that.
120 lines
5.4 KiB
Rust
120 lines
5.4 KiB
Rust
// .debug_gdb_scripts binary section.
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use rustc_ast::attr;
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use rustc_codegen_ssa::base::collect_debugger_visualizers_transitive;
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use rustc_codegen_ssa::traits::*;
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use rustc_hir::def_id::LOCAL_CRATE;
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use rustc_middle::bug;
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use rustc_middle::middle::debugger_visualizer::DebuggerVisualizerType;
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use rustc_session::config::{CrateType, DebugInfo};
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use rustc_span::sym;
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use crate::builder::Builder;
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use crate::common::CodegenCx;
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use crate::llvm;
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use crate::value::Value;
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/// Inserts a side-effect free instruction sequence that makes sure that the
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/// .debug_gdb_scripts global is referenced, so it isn't removed by the linker.
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pub(crate) fn insert_reference_to_gdb_debug_scripts_section_global(bx: &mut Builder<'_, '_, '_>) {
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if needs_gdb_debug_scripts_section(bx) {
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let gdb_debug_scripts_section = get_or_insert_gdb_debug_scripts_section_global(bx);
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// Load just the first byte as that's all that's necessary to force
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// LLVM to keep around the reference to the global.
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let volatile_load_instruction = bx.volatile_load(bx.type_i8(), gdb_debug_scripts_section);
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unsafe {
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llvm::LLVMSetAlignment(volatile_load_instruction, 1);
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}
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}
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}
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/// Allocates the global variable responsible for the .debug_gdb_scripts binary
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/// section.
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pub(crate) fn get_or_insert_gdb_debug_scripts_section_global<'ll>(
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cx: &CodegenCx<'ll, '_>,
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) -> &'ll Value {
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let c_section_var_name = c"__rustc_debug_gdb_scripts_section__";
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let section_var_name = c_section_var_name.to_str().unwrap();
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let section_var = unsafe { llvm::LLVMGetNamedGlobal(cx.llmod, c_section_var_name.as_ptr()) };
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section_var.unwrap_or_else(|| {
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let mut section_contents = Vec::new();
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// Add the pretty printers for the standard library first.
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section_contents.extend_from_slice(b"\x01gdb_load_rust_pretty_printers.py\0");
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// Next, add the pretty printers that were specified via the `#[debugger_visualizer]`
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// attribute.
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let visualizers = collect_debugger_visualizers_transitive(
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cx.tcx,
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DebuggerVisualizerType::GdbPrettyPrinter,
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);
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let crate_name = cx.tcx.crate_name(LOCAL_CRATE);
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for (index, visualizer) in visualizers.iter().enumerate() {
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// The initial byte `4` instructs GDB that the following pretty printer
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// is defined inline as opposed to in a standalone file.
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section_contents.extend_from_slice(b"\x04");
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let vis_name = format!("pretty-printer-{crate_name}-{index}\n");
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section_contents.extend_from_slice(vis_name.as_bytes());
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section_contents.extend_from_slice(&visualizer.src);
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// The final byte `0` tells GDB that the pretty printer has been
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// fully defined and can continue searching for additional
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// pretty printers.
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section_contents.extend_from_slice(b"\0");
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}
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unsafe {
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let section_contents = section_contents.as_slice();
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let llvm_type = cx.type_array(cx.type_i8(), section_contents.len() as u64);
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let section_var = cx
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.define_global(section_var_name, llvm_type)
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.unwrap_or_else(|| bug!("symbol `{}` is already defined", section_var_name));
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llvm::set_section(section_var, c".debug_gdb_scripts");
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llvm::set_initializer(section_var, cx.const_bytes(section_contents));
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llvm::LLVMSetGlobalConstant(section_var, llvm::True);
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llvm::LLVMSetUnnamedAddress(section_var, llvm::UnnamedAddr::Global);
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llvm::set_linkage(section_var, llvm::Linkage::LinkOnceODRLinkage);
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// This should make sure that the whole section is not larger than
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// the string it contains. Otherwise we get a warning from GDB.
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llvm::LLVMSetAlignment(section_var, 1);
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section_var
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}
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})
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}
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pub(crate) fn needs_gdb_debug_scripts_section(cx: &CodegenCx<'_, '_>) -> bool {
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let omit_gdb_pretty_printer_section =
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attr::contains_name(cx.tcx.hir_krate_attrs(), sym::omit_gdb_pretty_printer_section);
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// To ensure the section `__rustc_debug_gdb_scripts_section__` will not create
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// ODR violations at link time, this section will not be emitted for rlibs since
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// each rlib could produce a different set of visualizers that would be embedded
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// in the `.debug_gdb_scripts` section. For that reason, we make sure that the
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// section is only emitted for leaf crates.
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let embed_visualizers = cx.tcx.crate_types().iter().any(|&crate_type| match crate_type {
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CrateType::Executable | CrateType::Dylib | CrateType::Cdylib | CrateType::Staticlib => {
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// These are crate types for which we will embed pretty printers since they
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// are treated as leaf crates.
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true
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}
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CrateType::ProcMacro => {
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// We could embed pretty printers for proc macro crates too but it does not
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// seem like a good default, since this is a rare use case and we don't
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// want to slow down the common case.
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false
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}
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CrateType::Rlib => {
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// As per the above description, embedding pretty printers for rlibs could
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// lead to ODR violations so we skip this crate type as well.
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false
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}
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});
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!omit_gdb_pretty_printer_section
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&& cx.sess().opts.debuginfo != DebugInfo::None
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&& cx.sess().target.emit_debug_gdb_scripts
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&& embed_visualizers
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}
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