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Elf2: load archives
This commit is contained in:
parent
7542c3260f
commit
c4478e078b
4 changed files with 421 additions and 271 deletions
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@ -434,8 +434,7 @@ pub const Reader = struct {
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return err;
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};
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}
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r.interface.seek = 0;
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r.interface.end = 0;
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r.interface.tossBuffered();
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},
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.failure => return r.seek_err.?,
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}
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@ -467,15 +466,11 @@ pub const Reader = struct {
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}
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fn setLogicalPos(r: *Reader, offset: u64) void {
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const logical_pos = logicalPos(r);
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const logical_pos = r.logicalPos();
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if (offset < logical_pos or offset >= r.pos) {
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r.interface.seek = 0;
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r.interface.end = 0;
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r.interface.tossBuffered();
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r.pos = offset;
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} else {
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const logical_delta: usize = @intCast(offset - logical_pos);
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r.interface.seek += logical_delta;
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}
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} else r.interface.toss(@intCast(offset - logical_pos));
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}
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/// Number of slices to store on the stack, when trying to send as many byte
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@ -1989,7 +1989,6 @@ pub fn create(gpa: Allocator, arena: Allocator, io: Io, diag: *CreateDiagnostic,
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break :s if (is_exe_or_dyn_lib and build_options.have_llvm) .dyn_lib else .zcu;
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},
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}
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if (options.config.use_new_linker) break :s .obj;
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}
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if (need_llvm and !build_options.have_llvm) break :s .none; // impossible to build without llvm
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if (is_exe_or_dyn_lib) break :s .lib;
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@ -8,12 +8,13 @@ shstrtab: StringTable,
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strtab: StringTable,
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inputs: std.ArrayList(struct {
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path: std.Build.Cache.Path,
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member: ?[]const u8,
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si: Symbol.Index,
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}),
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input_sections: std.ArrayList(struct {
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ii: Node.InputIndex,
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si: Symbol.Index,
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file_location: MappedFile.Node.FileLocation,
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si: Symbol.Index,
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}),
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input_section_pending_index: u32,
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globals: std.AutoArrayHashMapUnmanaged(u32, Symbol.Index),
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@ -53,6 +54,10 @@ pub const Node = union(enum) {
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return elf.inputs.items[@intFromEnum(ii)].path;
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}
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pub fn member(ii: InputIndex, elf: *const Elf) ?[]const u8 {
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return elf.inputs.items[@intFromEnum(ii)].member;
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}
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pub fn symbol(ii: InputIndex, elf: *const Elf) Symbol.Index {
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return elf.inputs.items[@intFromEnum(ii)].si;
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}
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@ -73,13 +78,13 @@ pub const Node = union(enum) {
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return elf.input_sections.items[@intFromEnum(isi)].ii;
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}
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pub fn symbol(isi: InputSectionIndex, elf: *const Elf) Symbol.Index {
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return elf.input_sections.items[@intFromEnum(isi)].si;
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}
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pub fn fileLocation(isi: InputSectionIndex, elf: *const Elf) MappedFile.Node.FileLocation {
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return elf.input_sections.items[@intFromEnum(isi)].file_location;
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}
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pub fn symbol(isi: InputSectionIndex, elf: *const Elf) Symbol.Index {
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return elf.input_sections.items[@intFromEnum(isi)].si;
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}
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};
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pub const NavMapIndex = enum(u32) {
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@ -571,6 +576,7 @@ pub fn deinit(elf: *Elf) void {
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elf.symtab.deinit(gpa);
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elf.shstrtab.map.deinit(gpa);
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elf.strtab.map.deinit(gpa);
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for (elf.inputs.items) |input| if (input.member) |m| gpa.free(m);
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elf.inputs.deinit(gpa);
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elf.input_sections.deinit(gpa);
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elf.globals.deinit(gpa);
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@ -1255,256 +1261,370 @@ pub fn lazySymbol(elf: *Elf, lazy: link.File.LazySymbol) !Symbol.Index {
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return lazy_gop.value_ptr.*;
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}
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pub fn loadInput(elf: *Elf, input: link.Input) !void {
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pub fn loadInput(elf: *Elf, input: link.Input) (std.fs.File.Reader.SizeError ||
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std.Io.File.Reader.Error || MappedFile.Error || error{ EndOfStream, LinkFailure })!void {
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const io = elf.base.comp.io;
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var buf: [4096]u8 = undefined;
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switch (input) {
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else => {},
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.object => |object| {
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var fsr: FileSliceReader = .init(object.file.reader(io, &.{}));
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fsr.reset(try fsr.file.getSize(), &buf);
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elf.loadObject(object.path, null, &fsr) catch |err| switch (err) {
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error.ReadFailed => return fsr.file.err.?,
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else => |e| return e,
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};
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},
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.archive => |archive| {
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var fsr: FileSliceReader = .init(archive.file.reader(io, &buf));
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elf.loadArchive(archive.path, &fsr) catch |err| switch (err) {
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error.ReadFailed => return fsr.file.err.?,
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else => |e| return e,
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};
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},
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}
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}
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const FileSliceReader = struct {
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file: std.Io.File.Reader,
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file_location: MappedFile.Node.FileLocation,
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reader: std.Io.Reader.Limited,
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pub fn init(file: std.Io.File.Reader) FileSliceReader {
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return .{ .file = file, .file_location = undefined, .reader = undefined };
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}
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pub fn reset(fsr: *FileSliceReader, size: u64, buffer: []u8) void {
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fsr.file_location = .{
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.offset = fsr.file.logicalPos(),
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.size = size,
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};
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fsr.reader = .init(&fsr.file.interface, .limited(@intCast(size)), buffer);
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}
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pub fn pos(fsr: *const FileSliceReader) u64 {
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return fsr.file.logicalPos() - fsr.file_location.offset;
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}
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pub fn logicalPos(fsr: *const FileSliceReader) u64 {
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return fsr.pos() - fsr.reader.interface.bufferedLen();
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}
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pub fn seekTo(fsr: *FileSliceReader, offset: u64) std.Io.File.Reader.SeekError!void {
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if (offset > fsr.file_location.size) return error.EndOfStream;
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const logical_pos = fsr.logicalPos();
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if (offset < logical_pos or offset >= fsr.pos()) {
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fsr.reader.interface.tossBuffered();
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try fsr.file.seekTo(fsr.file_location.offset + offset);
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fsr.reader.remaining = .limited(@intCast(fsr.file_location.size - offset));
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} else fsr.reader.interface.toss(@intCast(offset - logical_pos));
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}
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};
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fn loadArchive(elf: *Elf, path: std.Build.Cache.Path, fsr: *FileSliceReader) !void {
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const comp = elf.base.comp;
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const gpa = comp.gpa;
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const diags = &comp.link_diags;
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switch (input) {
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.object => |object| {
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const ii: Node.InputIndex = @enumFromInt(elf.inputs.items.len);
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log.debug("loadInput(.{{ .object = {f} }}) = {d}", .{ object.path, ii });
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{
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try elf.symtab.ensureUnusedCapacity(gpa, 1);
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try elf.inputs.ensureUnusedCapacity(gpa, 1);
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const si = try elf.initSymbolAssumeCapacity(.{
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.name = std.fs.path.stem(object.path.sub_path),
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.type = .FILE,
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.shndx = std.elf.SHN_ABS,
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});
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elf.inputs.addOneAssumeCapacity().* = .{
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.path = object.path,
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.si = si,
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};
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}
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const r = &fsr.file.interface;
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log.debug("loadArchive({f})", .{path.fmtEscapeString()});
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if (!std.mem.eql(u8, try r.take(std.elf.ARMAG.len), std.elf.ARMAG))
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return diags.failParse(path, "bad magic", .{});
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var strtab: std.Io.Writer.Allocating = .init(gpa);
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defer strtab.deinit();
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while (r.takeStruct(std.elf.ar_hdr, native_endian)) |header| {
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if (!std.mem.eql(u8, &header.ar_fmag, std.elf.ARFMAG))
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return diags.failParse(path, "bad file magic", .{});
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const size = header.size() catch
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return diags.failParse(path, "bad member size", .{});
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if (std.mem.eql(u8, &header.ar_name, std.elf.STRNAME)) {
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strtab.clearRetainingCapacity();
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try strtab.ensureTotalCapacityPrecise(size);
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r.streamExact(&strtab.writer, size) catch |err| switch (err) {
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error.WriteFailed => return error.OutOfMemory,
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else => |e| return e,
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};
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continue;
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}
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load_object: {
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const member = header.name() orelse member: {
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const strtab_offset = header.nameOffset() catch |err| switch (err) {
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error.Overflow => break :member error.Overflow,
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error.InvalidCharacter => break :load_object,
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} orelse break :load_object;
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const strtab_written = strtab.written();
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if (strtab_offset > strtab_written.len) break :member error.Overflow;
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const member = std.mem.sliceTo(strtab_written[strtab_offset..], '\n');
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break :member if (std.mem.endsWith(u8, member, "/"))
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member[0 .. member.len - "/".len]
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else
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member;
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} catch |err| switch (err) {
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error.Overflow => return diags.failParse(path, "bad member name offset", .{}),
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};
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if (!std.mem.endsWith(u8, member, ".o")) break :load_object;
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var buf: [4096]u8 = undefined;
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var fr = object.file.reader(comp.io, &buf);
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const r = &fr.interface;
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const ident = try r.peek(std.elf.EI.NIDENT);
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if (!std.mem.eql(u8, elf.mf.contents[0..std.elf.EI.NIDENT], ident))
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return diags.failParse(object.path, "wrong ident", .{});
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const target_endian = elf.targetEndian();
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switch (elf.identClass()) {
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.NONE, _ => unreachable,
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inline else => |class| {
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const ElfN = class.ElfN();
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const ehdr = try r.peekStruct(ElfN.Ehdr, target_endian);
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if (ehdr.type != .REL)
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return diags.failParse(object.path, "unsupported object type", .{});
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if (ehdr.machine != elf.ehdrField(.machine))
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return diags.failParse(object.path, "wrong machine", .{});
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if (ehdr.shoff == 0 or ehdr.shnum <= 1) return;
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if (ehdr.shentsize < @sizeOf(ElfN.Shdr))
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return diags.failParse(object.path, "unsupported shentsize", .{});
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const sections = try gpa.alloc(struct {
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shdr: ElfN.Shdr,
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si: Symbol.Index,
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}, ehdr.shnum);
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defer gpa.free(sections);
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try fr.seekTo(ehdr.shoff);
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for (sections) |*section| {
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section.* = .{
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.shdr = try r.peekStruct(ElfN.Shdr, target_endian),
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.si = .null,
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};
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try fr.seekBy(ehdr.shentsize);
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}
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const shstrtab = shstrtab: {
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if (ehdr.shstrndx == std.elf.SHN_UNDEF or ehdr.shstrndx >= ehdr.shnum)
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return diags.failParse(object.path, "missing section names", .{});
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const shdr = §ions[ehdr.shstrndx].shdr;
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if (shdr.type != std.elf.SHT_STRTAB)
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return diags.failParse(object.path, "invalid shstrtab type", .{});
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const shstrtab = try gpa.alloc(u8, @intCast(shdr.size));
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errdefer gpa.free(shstrtab);
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try fr.seekTo(shdr.offset);
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try r.readSliceAll(shstrtab);
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break :shstrtab shstrtab;
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};
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defer gpa.free(shstrtab);
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try elf.nodes.ensureUnusedCapacity(gpa, ehdr.shnum - 1);
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try elf.symtab.ensureUnusedCapacity(gpa, ehdr.shnum - 1);
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try elf.input_sections.ensureUnusedCapacity(gpa, ehdr.shnum - 1);
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for (sections[1..]) |*section| switch (section.shdr.type) {
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else => {},
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std.elf.SHT_PROGBITS, std.elf.SHT_NOBITS => {
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if (section.shdr.name >= shstrtab.len) continue;
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const name = std.mem.sliceTo(shstrtab[section.shdr.name..], 0);
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const parent_si = namedSection(name) orelse continue;
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const ni = try elf.mf.addLastChildNode(gpa, parent_si.node(elf), .{
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.size = section.shdr.size,
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.alignment = .fromByteUnits(std.math.ceilPowerOfTwoAssert(
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usize,
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@intCast(@max(section.shdr.addralign, 1)),
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)),
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.moved = true,
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});
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elf.nodes.appendAssumeCapacity(.{
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.input_section = @enumFromInt(elf.input_sections.items.len),
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});
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section.si = try elf.initSymbolAssumeCapacity(.{
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.type = .SECTION,
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.shndx = elf.targetLoad(&@field(elf.symPtr(parent_si), @tagName(class)).shndx),
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});
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section.si.get(elf).ni = ni;
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elf.input_sections.addOneAssumeCapacity().* = .{
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.ii = ii,
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.si = section.si,
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.file_location = .{
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.offset = section.shdr.offset,
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.size = section.shdr.size,
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},
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};
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elf.synth_prog_node.increaseEstimatedTotalItems(1);
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fsr.reset(size, &buf);
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try elf.loadObject(path, member, fsr);
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try fsr.seekTo(size);
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continue;
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}
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try r.discardAll(size);
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} else |err| switch (err) {
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error.EndOfStream => if (!fsr.file.atEnd()) return error.EndOfStream,
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else => |e| return e,
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}
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}
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fn fmtMemberString(member: ?[]const u8) std.fmt.Alt(?[]const u8, memberStringEscape) {
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return .{ .data = member };
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}
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fn memberStringEscape(member: ?[]const u8, w: *std.Io.Writer) std.Io.Writer.Error!void {
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try w.print("({f})", .{std.zig.fmtString(member orelse return)});
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}
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fn loadObject(elf: *Elf, path: std.Build.Cache.Path, member: ?[]const u8, fsr: *FileSliceReader) !void {
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const comp = elf.base.comp;
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const gpa = comp.gpa;
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const diags = &comp.link_diags;
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const r = &fsr.reader.interface;
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const ii: Node.InputIndex = @enumFromInt(elf.inputs.items.len);
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log.debug("loadObject({f}{f})", .{ path.fmtEscapeString(), fmtMemberString(member) });
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const ident = try r.peek(std.elf.EI.NIDENT);
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if (!std.mem.eql(u8, ident, elf.mf.contents[0..std.elf.EI.NIDENT]))
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return diags.failParse(path, "bad ident", .{});
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try elf.symtab.ensureUnusedCapacity(gpa, 1);
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try elf.inputs.ensureUnusedCapacity(gpa, 1);
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elf.inputs.addOneAssumeCapacity().* = .{
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.path = path,
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.member = if (member) |m| try gpa.dupe(u8, m) else null,
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.si = try elf.initSymbolAssumeCapacity(.{
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.name = std.fs.path.stem(member orelse path.sub_path),
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.type = .FILE,
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.shndx = std.elf.SHN_ABS,
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}),
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};
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const target_endian = elf.targetEndian();
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switch (elf.identClass()) {
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.NONE, _ => unreachable,
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inline else => |class| {
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const ElfN = class.ElfN();
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const ehdr = try r.peekStruct(ElfN.Ehdr, target_endian);
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if (ehdr.type != .REL) return diags.failParse(path, "unsupported object type", .{});
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if (ehdr.machine != elf.ehdrField(.machine))
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return diags.failParse(path, "bad machine", .{});
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if (ehdr.shoff == 0 or ehdr.shnum <= 1) return;
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if (ehdr.shentsize < @sizeOf(ElfN.Shdr))
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return diags.failParse(path, "unsupported shentsize", .{});
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const sections = try gpa.alloc(struct { shdr: ElfN.Shdr, si: Symbol.Index }, ehdr.shnum);
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defer gpa.free(sections);
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try fsr.seekTo(ehdr.shoff);
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for (sections) |*section| {
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section.* = .{
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.shdr = try r.peekStruct(ElfN.Shdr, target_endian),
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.si = .null,
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};
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try r.discardAll(ehdr.shentsize);
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switch (section.shdr.type) {
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std.elf.SHT_NULL, std.elf.SHT_NOBITS => {},
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else => if (section.shdr.offset + section.shdr.size > fsr.file_location.size)
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return diags.failParse(path, "bad section offset/size", .{}),
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}
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}
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const shstrtab = shstrtab: {
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if (ehdr.shstrndx == std.elf.SHN_UNDEF or ehdr.shstrndx >= ehdr.shnum)
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return diags.failParse(path, "missing section names", .{});
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const shdr = §ions[ehdr.shstrndx].shdr;
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if (shdr.type != std.elf.SHT_STRTAB)
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return diags.failParse(path, "invalid shstrtab type", .{});
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const shstrtab = try gpa.alloc(u8, @intCast(shdr.size));
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errdefer gpa.free(shstrtab);
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try fsr.seekTo(shdr.offset);
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try r.readSliceAll(shstrtab);
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break :shstrtab shstrtab;
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};
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defer gpa.free(shstrtab);
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try elf.nodes.ensureUnusedCapacity(gpa, ehdr.shnum - 1);
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try elf.symtab.ensureUnusedCapacity(gpa, ehdr.shnum - 1);
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try elf.input_sections.ensureUnusedCapacity(gpa, ehdr.shnum - 1);
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for (sections[1..]) |*section| switch (section.shdr.type) {
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else => {},
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std.elf.SHT_PROGBITS, std.elf.SHT_NOBITS => {
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if (section.shdr.name >= shstrtab.len) continue;
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const name = std.mem.sliceTo(shstrtab[section.shdr.name..], 0);
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const parent_si = namedSection(name) orelse continue;
|
||||
const ni = try elf.mf.addLastChildNode(gpa, parent_si.node(elf), .{
|
||||
.size = section.shdr.size,
|
||||
.alignment = .fromByteUnits(std.math.ceilPowerOfTwoAssert(
|
||||
usize,
|
||||
@intCast(@max(section.shdr.addralign, 1)),
|
||||
)),
|
||||
.moved = true,
|
||||
});
|
||||
elf.nodes.appendAssumeCapacity(.{
|
||||
.input_section = @enumFromInt(elf.input_sections.items.len),
|
||||
});
|
||||
section.si = try elf.initSymbolAssumeCapacity(.{
|
||||
.type = .SECTION,
|
||||
.shndx = elf.targetLoad(&@field(elf.symPtr(parent_si), @tagName(class)).shndx),
|
||||
});
|
||||
section.si.get(elf).ni = ni;
|
||||
elf.input_sections.addOneAssumeCapacity().* = .{
|
||||
.ii = ii,
|
||||
.si = section.si,
|
||||
.file_location = .{
|
||||
.offset = fsr.file_location.offset + section.shdr.offset,
|
||||
.size = section.shdr.size,
|
||||
},
|
||||
};
|
||||
var symmap: std.ArrayList(Symbol.Index) = .empty;
|
||||
defer symmap.deinit(gpa);
|
||||
for (sections[1..], 1..) |*symtab, symtab_shndx| switch (symtab.shdr.type) {
|
||||
elf.synth_prog_node.increaseEstimatedTotalItems(1);
|
||||
},
|
||||
};
|
||||
var symmap: std.ArrayList(Symbol.Index) = .empty;
|
||||
defer symmap.deinit(gpa);
|
||||
for (sections[1..], 1..) |*symtab, symtab_shndx| switch (symtab.shdr.type) {
|
||||
else => {},
|
||||
std.elf.SHT_SYMTAB => {
|
||||
if (symtab.shdr.entsize < @sizeOf(ElfN.Sym))
|
||||
return diags.failParse(path, "unsupported symtab entsize", .{});
|
||||
const strtab = strtab: {
|
||||
if (symtab.shdr.link == std.elf.SHN_UNDEF or symtab.shdr.link >= ehdr.shnum)
|
||||
return diags.failParse(path, "missing symbol names", .{});
|
||||
const shdr = §ions[symtab.shdr.link].shdr;
|
||||
if (shdr.type != std.elf.SHT_STRTAB)
|
||||
return diags.failParse(path, "invalid strtab type", .{});
|
||||
const strtab = try gpa.alloc(u8, @intCast(shdr.size));
|
||||
errdefer gpa.free(strtab);
|
||||
try fsr.seekTo(shdr.offset);
|
||||
try r.readSliceAll(strtab);
|
||||
break :strtab strtab;
|
||||
};
|
||||
defer gpa.free(strtab);
|
||||
const symnum = std.math.divExact(
|
||||
u32,
|
||||
@intCast(symtab.shdr.size),
|
||||
@intCast(symtab.shdr.entsize),
|
||||
) catch return diags.failParse(
|
||||
path,
|
||||
"symtab section size (0x{x}) is not a multiple of entsize (0x{x})",
|
||||
.{ symtab.shdr.size, symtab.shdr.entsize },
|
||||
);
|
||||
symmap.clearRetainingCapacity();
|
||||
try symmap.resize(gpa, symnum);
|
||||
try elf.symtab.ensureUnusedCapacity(gpa, symnum);
|
||||
try elf.globals.ensureUnusedCapacity(gpa, symnum);
|
||||
try fsr.seekTo(symtab.shdr.offset + symtab.shdr.entsize);
|
||||
symmap.items[0] = .null;
|
||||
for (symmap.items[1..]) |*si| {
|
||||
si.* = .null;
|
||||
const input_sym = try r.peekStruct(ElfN.Sym, target_endian);
|
||||
try r.discardAll64(symtab.shdr.entsize);
|
||||
if (input_sym.name >= strtab.len or input_sym.shndx == std.elf.SHN_UNDEF or
|
||||
input_sym.shndx >= ehdr.shnum) continue;
|
||||
switch (input_sym.info.type) {
|
||||
else => continue,
|
||||
.SECTION => {
|
||||
const section = §ions[input_sym.shndx];
|
||||
if (input_sym.value == section.shdr.addr) si.* = section.si;
|
||||
continue;
|
||||
},
|
||||
.OBJECT, .FUNC => {},
|
||||
}
|
||||
const name = std.mem.sliceTo(strtab[input_sym.name..], 0);
|
||||
const parent_si = sections[input_sym.shndx].si;
|
||||
si.* = try elf.initSymbolAssumeCapacity(.{
|
||||
.name = name,
|
||||
.value = input_sym.value,
|
||||
.size = input_sym.size,
|
||||
.type = input_sym.info.type,
|
||||
.bind = input_sym.info.bind,
|
||||
.visibility = input_sym.other.visibility,
|
||||
.shndx = elf.targetLoad(switch (elf.symPtr(parent_si)) {
|
||||
inline else => |parent_sym| &parent_sym.shndx,
|
||||
}),
|
||||
});
|
||||
si.get(elf).ni = parent_si.get(elf).ni;
|
||||
switch (input_sym.info.bind) {
|
||||
else => {},
|
||||
.GLOBAL => {
|
||||
const gop = elf.globals.getOrPutAssumeCapacity(elf.targetLoad(
|
||||
&@field(elf.symPtr(si.*), @tagName(class)).name,
|
||||
));
|
||||
if (gop.found_existing) switch (elf.targetLoad(
|
||||
switch (elf.symPtr(gop.value_ptr.*)) {
|
||||
inline else => |sym| &sym.info,
|
||||
},
|
||||
).bind) {
|
||||
else => unreachable,
|
||||
.GLOBAL => return diags.failParse(
|
||||
path,
|
||||
"multiple definitions of '{s}'",
|
||||
.{name},
|
||||
),
|
||||
.WEAK => {},
|
||||
};
|
||||
gop.value_ptr.* = si.*;
|
||||
},
|
||||
.WEAK => {
|
||||
const gop = elf.globals.getOrPutAssumeCapacity(elf.targetLoad(
|
||||
&@field(elf.symPtr(si.*), @tagName(class)).name,
|
||||
));
|
||||
if (!gop.found_existing) gop.value_ptr.* = si.*;
|
||||
},
|
||||
}
|
||||
}
|
||||
for (sections[1..]) |*rels| switch (rels.shdr.type) {
|
||||
else => {},
|
||||
std.elf.SHT_SYMTAB => {
|
||||
if (symtab.shdr.entsize < @sizeOf(ElfN.Sym))
|
||||
return diags.failParse(object.path, "unsupported symtab entsize", .{});
|
||||
const strtab = strtab: {
|
||||
if (symtab.shdr.link == std.elf.SHN_UNDEF or symtab.shdr.link >= ehdr.shnum)
|
||||
return diags.failParse(object.path, "missing symbol names", .{});
|
||||
const shdr = §ions[symtab.shdr.link].shdr;
|
||||
if (shdr.type != std.elf.SHT_STRTAB)
|
||||
return diags.failParse(object.path, "invalid strtab type", .{});
|
||||
const strtab = try gpa.alloc(u8, @intCast(shdr.size));
|
||||
errdefer gpa.free(strtab);
|
||||
try fr.seekTo(shdr.offset);
|
||||
try r.readSliceAll(strtab);
|
||||
break :strtab strtab;
|
||||
inline std.elf.SHT_REL, std.elf.SHT_RELA => |sht| {
|
||||
if (rels.shdr.link != symtab_shndx or rels.shdr.info == std.elf.SHN_UNDEF or
|
||||
rels.shdr.info >= ehdr.shnum) continue;
|
||||
const Rel = switch (sht) {
|
||||
else => comptime unreachable,
|
||||
std.elf.SHT_REL => ElfN.Rel,
|
||||
std.elf.SHT_RELA => ElfN.Rela,
|
||||
};
|
||||
defer gpa.free(strtab);
|
||||
const symnum = try std.math.divExact(
|
||||
if (rels.shdr.entsize < @sizeOf(Rel))
|
||||
return diags.failParse(path, "unsupported rel entsize", .{});
|
||||
const loc_sec = §ions[rels.shdr.info];
|
||||
if (loc_sec.si == .null) continue;
|
||||
const relnum = std.math.divExact(
|
||||
u32,
|
||||
@intCast(symtab.shdr.size),
|
||||
@intCast(symtab.shdr.entsize),
|
||||
@intCast(rels.shdr.size),
|
||||
@intCast(rels.shdr.entsize),
|
||||
) catch return diags.failParse(
|
||||
path,
|
||||
"relocation section size (0x{x}) is not a multiple of entsize (0x{x})",
|
||||
.{ rels.shdr.size, rels.shdr.entsize },
|
||||
);
|
||||
symmap.clearRetainingCapacity();
|
||||
try symmap.resize(gpa, symnum);
|
||||
try elf.symtab.ensureUnusedCapacity(gpa, symnum);
|
||||
try elf.globals.ensureUnusedCapacity(gpa, symnum);
|
||||
try fr.seekTo(symtab.shdr.offset + symtab.shdr.entsize);
|
||||
symmap.items[0] = .null;
|
||||
for (symmap.items[1..]) |*si| {
|
||||
si.* = .null;
|
||||
const input_sym = try r.peekStruct(ElfN.Sym, target_endian);
|
||||
try fr.seekBy(@intCast(symtab.shdr.entsize));
|
||||
if (input_sym.name >= strtab.len or
|
||||
input_sym.shndx == std.elf.SHN_UNDEF or
|
||||
input_sym.shndx >= ehdr.shnum) continue;
|
||||
switch (input_sym.info.type) {
|
||||
else => continue,
|
||||
.SECTION => {
|
||||
const section = §ions[input_sym.shndx];
|
||||
if (input_sym.value == section.shdr.addr) si.* = section.si;
|
||||
continue;
|
||||
try elf.relocs.ensureUnusedCapacity(gpa, relnum);
|
||||
try fsr.seekTo(rels.shdr.offset);
|
||||
for (0..relnum) |_| {
|
||||
const rel = try r.peekStruct(Rel, target_endian);
|
||||
try r.discardAll64(rels.shdr.entsize);
|
||||
if (rel.info.sym >= symnum) continue;
|
||||
const target_si = symmap.items[rel.info.sym];
|
||||
if (target_si == .null) continue;
|
||||
elf.addRelocAssumeCapacity(
|
||||
loc_sec.si,
|
||||
rel.offset - loc_sec.shdr.addr,
|
||||
target_si,
|
||||
rel.addend,
|
||||
switch (elf.ehdrField(.machine)) {
|
||||
else => unreachable,
|
||||
inline .AARCH64,
|
||||
.PPC64,
|
||||
.RISCV,
|
||||
.X86_64,
|
||||
=> |machine| @unionInit(
|
||||
Reloc.Type,
|
||||
@tagName(machine),
|
||||
@enumFromInt(rel.info.type),
|
||||
),
|
||||
},
|
||||
.OBJECT, .FUNC => {},
|
||||
}
|
||||
const name = std.mem.sliceTo(strtab[input_sym.name..], 0);
|
||||
const parent_si = sections[input_sym.shndx].si;
|
||||
si.* = try elf.initSymbolAssumeCapacity(.{
|
||||
.name = name,
|
||||
.value = input_sym.value,
|
||||
.size = input_sym.size,
|
||||
.type = input_sym.info.type,
|
||||
.bind = input_sym.info.bind,
|
||||
.visibility = input_sym.other.visibility,
|
||||
.shndx = elf.targetLoad(switch (elf.symPtr(parent_si)) {
|
||||
inline else => |parent_sym| &parent_sym.shndx,
|
||||
}),
|
||||
});
|
||||
si.get(elf).ni = parent_si.get(elf).ni;
|
||||
switch (input_sym.info.bind) {
|
||||
else => {},
|
||||
.GLOBAL => {
|
||||
const gop = elf.globals.getOrPutAssumeCapacity(elf.targetLoad(
|
||||
&@field(elf.symPtr(si.*), @tagName(class)).name,
|
||||
));
|
||||
if (gop.found_existing) switch (elf.targetLoad(
|
||||
switch (elf.symPtr(gop.value_ptr.*)) {
|
||||
inline else => |sym| &sym.info,
|
||||
},
|
||||
).bind) {
|
||||
else => unreachable,
|
||||
.GLOBAL => return diags.failParse(
|
||||
object.path,
|
||||
"multiple definitions of '{s}'",
|
||||
.{name},
|
||||
),
|
||||
.WEAK => {},
|
||||
};
|
||||
gop.value_ptr.* = si.*;
|
||||
},
|
||||
.WEAK => {
|
||||
const gop = elf.globals.getOrPutAssumeCapacity(elf.targetLoad(
|
||||
&@field(elf.symPtr(si.*), @tagName(class)).name,
|
||||
));
|
||||
if (!gop.found_existing) gop.value_ptr.* = si.*;
|
||||
},
|
||||
}
|
||||
);
|
||||
}
|
||||
for (sections[1..]) |*rels| switch (rels.shdr.type) {
|
||||
else => {},
|
||||
inline std.elf.SHT_REL, std.elf.SHT_RELA => |sht| {
|
||||
if (rels.shdr.link != symtab_shndx or
|
||||
rels.shdr.info == std.elf.SHN_UNDEF or
|
||||
rels.shdr.info >= ehdr.shnum) continue;
|
||||
const Rel = switch (sht) {
|
||||
else => comptime unreachable,
|
||||
std.elf.SHT_REL => ElfN.Rel,
|
||||
std.elf.SHT_RELA => ElfN.Rela,
|
||||
};
|
||||
if (rels.shdr.entsize < @sizeOf(Rel)) return diags.failParse(
|
||||
object.path,
|
||||
"unsupported rel entsize",
|
||||
.{},
|
||||
);
|
||||
const loc_sec = §ions[rels.shdr.info];
|
||||
if (loc_sec.si == .null) continue;
|
||||
const relnum = try std.math.divExact(
|
||||
u32,
|
||||
@intCast(rels.shdr.size),
|
||||
@intCast(rels.shdr.entsize),
|
||||
);
|
||||
try elf.relocs.ensureUnusedCapacity(gpa, relnum);
|
||||
try fr.seekTo(rels.shdr.offset);
|
||||
for (0..relnum) |_| {
|
||||
const rel = try r.peekStruct(Rel, target_endian);
|
||||
try fr.seekBy(@intCast(rels.shdr.entsize));
|
||||
if (rel.info.sym >= symnum) continue;
|
||||
const target_si = symmap.items[rel.info.sym];
|
||||
if (target_si == .null) continue;
|
||||
elf.addReloc(
|
||||
loc_sec.si,
|
||||
rel.offset - loc_sec.shdr.addr,
|
||||
target_si,
|
||||
rel.addend,
|
||||
switch (elf.ehdrField(.machine)) {
|
||||
else => unreachable,
|
||||
inline .AARCH64,
|
||||
.PPC64,
|
||||
.RISCV,
|
||||
.X86_64,
|
||||
=> |machine| @unionInit(
|
||||
Reloc.Type,
|
||||
@tagName(machine),
|
||||
@enumFromInt(rel.info.type),
|
||||
),
|
||||
},
|
||||
) catch unreachable;
|
||||
}
|
||||
},
|
||||
};
|
||||
},
|
||||
};
|
||||
},
|
||||
}
|
||||
};
|
||||
},
|
||||
else => {},
|
||||
}
|
||||
}
|
||||
|
||||
|
|
@ -1530,6 +1650,7 @@ fn prelinkInner(elf: *Elf) !void {
|
|||
});
|
||||
elf.inputs.addOneAssumeCapacity().* = .{
|
||||
.path = elf.base.emit,
|
||||
.member = null,
|
||||
.si = si,
|
||||
};
|
||||
}
|
||||
|
|
@ -1667,10 +1788,20 @@ pub fn addReloc(
|
|||
addend: i64,
|
||||
@"type": Reloc.Type,
|
||||
) !void {
|
||||
const gpa = elf.base.comp.gpa;
|
||||
try elf.relocs.ensureUnusedCapacity(elf.base.comp.gpa, 1);
|
||||
elf.addRelocAssumeCapacity(loc_si, offset, target_si, addend, @"type");
|
||||
}
|
||||
pub fn addRelocAssumeCapacity(
|
||||
elf: *Elf,
|
||||
loc_si: Symbol.Index,
|
||||
offset: u64,
|
||||
target_si: Symbol.Index,
|
||||
addend: i64,
|
||||
@"type": Reloc.Type,
|
||||
) void {
|
||||
const target = target_si.get(elf);
|
||||
const ri: Reloc.Index = @enumFromInt(elf.relocs.items.len);
|
||||
(try elf.relocs.addOne(gpa)).* = .{
|
||||
elf.relocs.addOneAssumeCapacity().* = .{
|
||||
.type = @"type",
|
||||
.prev = .none,
|
||||
.next = target.target_relocs,
|
||||
|
|
@ -1961,11 +2092,20 @@ pub fn idle(elf: *Elf, tid: Zcu.PerThread.Id) !bool {
|
|||
const sub_prog_node = elf.idleProgNode(tid, elf.input_prog_node, elf.getNode(isi.symbol(elf).node(elf)));
|
||||
defer sub_prog_node.end();
|
||||
elf.flushInputSection(isi) catch |err| switch (err) {
|
||||
else => |e| return comp.link_diags.fail("linker failed to read input section '{s}' from \"{f}\": {t}", .{
|
||||
elf.sectionName(elf.getNode(isi.symbol(elf).node(elf).parent(&elf.mf)).section),
|
||||
isi.input(elf).path(elf).fmtEscapeString(),
|
||||
e,
|
||||
}),
|
||||
else => |e| {
|
||||
const ii = isi.input(elf);
|
||||
return comp.link_diags.fail(
|
||||
"linker failed to read input section '{s}' from \"{f}{f}\": {t}",
|
||||
.{
|
||||
elf.sectionName(
|
||||
elf.getNode(isi.symbol(elf).node(elf).parent(&elf.mf)).section,
|
||||
),
|
||||
ii.path(elf).fmtEscapeString(),
|
||||
fmtMemberString(ii.member(elf)),
|
||||
e,
|
||||
},
|
||||
);
|
||||
},
|
||||
};
|
||||
break :task;
|
||||
}
|
||||
|
|
@ -1998,10 +2138,14 @@ fn idleProgNode(
|
|||
return prog_node.start(name: switch (node) {
|
||||
else => |tag| @tagName(tag),
|
||||
.section => |si| elf.sectionName(si),
|
||||
.input_section => |isi| std.fmt.bufPrint(&name, "{f} {s}", .{
|
||||
isi.input(elf).path(elf),
|
||||
elf.sectionName(elf.getNode(isi.symbol(elf).node(elf).parent(&elf.mf)).section),
|
||||
}) catch &name,
|
||||
.input_section => |isi| {
|
||||
const ii = isi.input(elf);
|
||||
break :name std.fmt.bufPrint(&name, "{f}{f} {s}", .{
|
||||
ii.path(elf).fmtEscapeString(),
|
||||
fmtMemberString(ii.member(elf)),
|
||||
elf.sectionName(elf.getNode(isi.symbol(elf).node(elf).parent(&elf.mf)).section),
|
||||
}) catch &name;
|
||||
},
|
||||
.nav => |nmi| {
|
||||
const ip = &elf.base.comp.zcu.?.intern_pool;
|
||||
break :name ip.getNav(nmi.navIndex(elf)).fqn.toSlice(ip);
|
||||
|
|
@ -2128,16 +2272,17 @@ fn flushInputSection(elf: *Elf, isi: Node.InputSectionIndex) !void {
|
|||
if (file_loc.size == 0) return;
|
||||
const comp = elf.base.comp;
|
||||
const gpa = comp.gpa;
|
||||
const io = comp.io;
|
||||
const path = isi.input(elf).path(elf);
|
||||
const file = try path.root_dir.handle.adaptToNewApi().openFile(io, path.sub_path, .{});
|
||||
defer file.close(io);
|
||||
var fr = file.reader(io, &.{});
|
||||
const ii = isi.input(elf);
|
||||
const path = ii.path(elf);
|
||||
const file = try path.root_dir.handle.adaptToNewApi().openFile(comp.io, path.sub_path, .{});
|
||||
defer file.close(comp.io);
|
||||
var fr = file.reader(comp.io, &.{});
|
||||
try fr.seekTo(file_loc.offset);
|
||||
var nw: MappedFile.Node.Writer = undefined;
|
||||
isi.symbol(elf).node(elf).writer(&elf.mf, gpa, &nw);
|
||||
defer nw.deinit();
|
||||
if (try nw.interface.sendFileAll(&fr, .limited(@intCast(file_loc.size))) != file_loc.size) return error.EndOfStream;
|
||||
if (try nw.interface.sendFileAll(&fr, .limited(@intCast(file_loc.size))) != file_loc.size)
|
||||
return error.EndOfStream;
|
||||
}
|
||||
|
||||
fn flushMoved(elf: *Elf, ni: MappedFile.Node.Index) !void {
|
||||
|
|
@ -2396,10 +2541,14 @@ pub fn printNode(
|
|||
switch (node) {
|
||||
else => {},
|
||||
.section => |si| try w.print("({s})", .{elf.sectionName(si)}),
|
||||
.input_section => |isi| try w.print("({f}, {s})", .{
|
||||
isi.input(elf).path(elf),
|
||||
elf.sectionName(elf.getNode(isi.node(elf).parent(&elf.mf)).section),
|
||||
}),
|
||||
.input_section => |isi| {
|
||||
const ii = isi.input(elf);
|
||||
try w.print("({f}{f}, {s})", .{
|
||||
ii.path(elf).fmtEscapeString(),
|
||||
fmtMemberString(ii.member(elf)),
|
||||
elf.sectionName(elf.getNode(isi.symbol(elf).node(elf).parent(&elf.mf)).section),
|
||||
});
|
||||
},
|
||||
.nav => |nmi| {
|
||||
const zcu = elf.base.comp.zcu.?;
|
||||
const ip = &zcu.intern_pool;
|
||||
|
|
|
|||
|
|
@ -144,7 +144,14 @@ pub const Node = extern struct {
|
|||
}
|
||||
};
|
||||
|
||||
pub const FileLocation = struct { offset: u64, size: u64 };
|
||||
pub const FileLocation = struct {
|
||||
offset: u64,
|
||||
size: u64,
|
||||
|
||||
pub fn end(fl: FileLocation) u64 {
|
||||
return fl.offset + fl.size;
|
||||
}
|
||||
};
|
||||
|
||||
pub const Index = enum(u32) {
|
||||
none,
|
||||
|
|
|
|||
Loading…
Add table
Reference in a new issue