| ... | @@ -13,7 +13,6 @@ const windows = std.os.windows; | ... | @@ -13,7 +13,6 @@ const windows = std.os.windows; |
| 13 | const macho = std.macho; | 13 | const macho = std.macho; |
| 14 | const fs = std.fs; | 14 | const fs = std.fs; |
| 15 | const coff = std.coff; | 15 | const coff = std.coff; |
| 16 | const pdb = std.pdb; | | |
| 17 | const assert = std.debug.assert; | 16 | const assert = std.debug.assert; |
| 18 | const posix = std.posix; | 17 | const posix = std.posix; |
| 19 | const elf = std.elf; | 18 | const elf = std.elf; |
| ... | @@ -22,86 +21,37 @@ const Pdb = std.debug.Pdb; | ... | @@ -22,86 +21,37 @@ const Pdb = std.debug.Pdb; |
| 22 | const File = std.fs.File; | 21 | const File = std.fs.File; |
| 23 | const math = std.math; | 22 | const math = std.math; |
| 24 | const testing = std.testing; | 23 | const testing = std.testing; |
| 25 | const StackIterator = std.debug.StackIterator; | | |
| 26 | const regBytes = Dwarf.abi.regBytes; | 24 | const regBytes = Dwarf.abi.regBytes; |
| 27 | const regValueNative = Dwarf.abi.regValueNative; | 25 | const regValueNative = Dwarf.abi.regValueNative; |
| 28 | | 26 | |
| 29 | const SelfInfo = @This(); | 27 | const SelfInfo = @This(); |
| 30 | | 28 | |
| 31 | const root = @import("root"); | 29 | /// MLUGG TODO: what if this field had a less stupid name... |
| 32 | | 30 | address_map: std.AutoHashMapUnmanaged(usize, Module.DebugInfo), |
| 33 | allocator: Allocator, | 31 | |
| 34 | address_map: std.AutoHashMapUnmanaged(usize, Module), | 32 | module_cache: if (native_os == .windows) std.ArrayListUnmanaged(windows.MODULEENTRY32) else void, |
| 35 | modules: if (native_os == .windows) std.ArrayListUnmanaged(WindowsModule) else void, | 33 | |
| 36 | | 34 | pub const target_supported: bool = switch (native_os) { |
| 37 | pub const OpenError = error{ | 35 | .linux, |
| 38 | MissingDebugInfo, | 36 | .freebsd, |
| 39 | UnsupportedOperatingSystem, | 37 | .netbsd, |
| 40 | } || @typeInfo(@typeInfo(@TypeOf(SelfInfo.init)).@"fn".return_type.?).error_union.error_set; | 38 | .dragonfly, |
| 41 | | 39 | .openbsd, |
| 42 | pub fn open(allocator: Allocator) OpenError!SelfInfo { | 40 | .macos, |
| 43 | if (builtin.strip_debug_info) | 41 | .solaris, |
| 44 | return error.MissingDebugInfo; | 42 | .illumos, |
| 45 | switch (native_os) { | 43 | .windows, |
| 46 | .linux, | 44 | => true, |
| 47 | .freebsd, | 45 | else => false, |
| 48 | .netbsd, | 46 | }; |
| 49 | .dragonfly, | | |
| 50 | .openbsd, | | |
| 51 | .macos, | | |
| 52 | .solaris, | | |
| 53 | .illumos, | | |
| 54 | .windows, | | |
| 55 | => return try SelfInfo.init(allocator), | | |
| 56 | else => return error.UnsupportedOperatingSystem, | | |
| 57 | } | | |
| 58 | } | | |
| 59 | | | |
| 60 | pub fn init(allocator: Allocator) !SelfInfo { | | |
| 61 | var debug_info: SelfInfo = .{ | | |
| 62 | .allocator = allocator, | | |
| 63 | .address_map = .empty, | | |
| 64 | .modules = if (native_os == .windows) .{} else {}, | | |
| 65 | }; | | |
| 66 | | | |
| 67 | if (native_os == .windows) { | | |
| 68 | errdefer debug_info.modules.deinit(allocator); | | |
| 69 | | | |
| 70 | const handle = windows.kernel32.CreateToolhelp32Snapshot(windows.TH32CS_SNAPMODULE | windows.TH32CS_SNAPMODULE32, 0); | | |
| 71 | if (handle == windows.INVALID_HANDLE_VALUE) { | | |
| 72 | switch (windows.GetLastError()) { | | |
| 73 | else => |err| return windows.unexpectedError(err), | | |
| 74 | } | | |
| 75 | } | | |
| 76 | defer windows.CloseHandle(handle); | | |
| 77 | | | |
| 78 | var module_entry: windows.MODULEENTRY32 = undefined; | | |
| 79 | module_entry.dwSize = @sizeOf(windows.MODULEENTRY32); | | |
| 80 | if (windows.kernel32.Module32First(handle, &module_entry) == 0) { | | |
| 81 | return error.MissingDebugInfo; | | |
| 82 | } | | |
| 83 | | | |
| 84 | var module_valid = true; | | |
| 85 | while (module_valid) { | | |
| 86 | const module_info = try debug_info.modules.addOne(allocator); | | |
| 87 | const name = allocator.dupe(u8, mem.sliceTo(&module_entry.szModule, 0)) catch &.{}; | | |
| 88 | errdefer allocator.free(name); | | |
| 89 | | | |
| 90 | module_info.* = .{ | | |
| 91 | .base_address = @intFromPtr(module_entry.modBaseAddr), | | |
| 92 | .size = module_entry.modBaseSize, | | |
| 93 | .name = name, | | |
| 94 | .handle = module_entry.hModule, | | |
| 95 | }; | | |
| 96 | | | |
| 97 | module_valid = windows.kernel32.Module32Next(handle, &module_entry) == 1; | | |
| 98 | } | | |
| 99 | } | | |
| 100 | | 47 | |
| 101 | return debug_info; | 48 | pub const init: SelfInfo = .{ |
| 102 | } | 49 | .address_map = .empty, |
| | 50 | .module_cache = if (native_os == .windows) .empty, |
| | 51 | }; |
| 103 | | 52 | |
| 104 | pub fn deinit(self: *SelfInfo) void { | 53 | pub fn deinit(self: *SelfInfo) void { |
| | 54 | // MLUGG TODO: that's amusing, this function is straight-up unused. i... wonder if it even should be used anywhere? perhaps not... so perhaps it should not even exist...???? |
| 105 | var it = self.address_map.iterator(); | 55 | var it = self.address_map.iterator(); |
| 106 | while (it.next()) |entry| { | 56 | while (it.next()) |entry| { |
| 107 | const mdi = entry.value_ptr.*; | 57 | const mdi = entry.value_ptr.*; |
| ... | @@ -118,49 +68,91 @@ pub fn deinit(self: *SelfInfo) void { | ... | @@ -118,49 +68,91 @@ pub fn deinit(self: *SelfInfo) void { |
| 118 | } | 68 | } |
| 119 | } | 69 | } |
| 120 | | 70 | |
| 121 | fn lookupModuleForAddress(self: *SelfInfo, address: usize) !Module.Lookup { | 71 | fn lookupModuleForAddress(self: *SelfInfo, gpa: Allocator, address: usize) !Module { |
| 122 | if (builtin.target.os.tag.isDarwin()) { | 72 | if (builtin.target.os.tag.isDarwin()) { |
| 123 | return self.lookupModuleDyld(address); | 73 | return self.lookupModuleDyld(address); |
| 124 | } else if (native_os == .windows) { | 74 | } else if (native_os == .windows) { |
| 125 | return self.lookupModuleWin32(address); | 75 | return self.lookupModuleWin32(gpa, address); |
| 126 | } else if (native_os == .haiku) { | 76 | } else if (native_os == .haiku) { |
| 127 | return self.lookupModuleHaiku(address); | 77 | @panic("TODO implement lookup module for Haiku"); |
| 128 | } else if (builtin.target.cpu.arch.isWasm()) { | 78 | } else if (builtin.target.cpu.arch.isWasm()) { |
| 129 | return self.lookupModuleWasm(address); | 79 | @panic("TODO implement lookup module for Wasm"); |
| 130 | } else { | 80 | } else { |
| 131 | return self.lookupModuleDl(address); | 81 | return self.lookupModuleDl(address); |
| 132 | } | 82 | } |
| 133 | } | 83 | } |
| 134 | | 84 | |
| 135 | fn loadModuleDebugInfo(self: *SelfInfo, lookup: *const Module.Lookup, module: *Module) !void { | 85 | fn loadModuleDebugInfo(gpa: Allocator, module: *const Module, di: *Module.DebugInfo) !void { |
| | 86 | // MLUGG TODO: this should totally just go into the `Module` impl or something, right? lol |
| | 87 | if (builtin.target.os.tag.isDarwin()) { |
| | 88 | try loadMachODebugInfo(gpa, module, di); |
| | 89 | } else if (native_os == .windows) { |
| | 90 | // MLUGG TODO: deal with 'already loaded' properly |
| | 91 | try readCoffDebugInfo(gpa, module, di); |
| | 92 | } else if (native_os == .haiku) { |
| | 93 | unreachable; |
| | 94 | } else if (builtin.target.cpu.arch.isWasm()) { |
| | 95 | unreachable; |
| | 96 | } else { |
| | 97 | if (di.mapped_memory != null) return; // already loaded |
| | 98 | const filename: ?[]const u8 = if (module.name.len > 0) module.name else null; |
| | 99 | const mapped_mem = mapFileOrSelfExe(filename) catch |err| switch (err) { |
| | 100 | error.FileNotFound => return error.MissingDebugInfo, |
| | 101 | error.FileTooBig => return error.InvalidDebugInfo, |
| | 102 | else => |e| return e, |
| | 103 | }; |
| | 104 | errdefer posix.munmap(mapped_mem); |
| | 105 | try di.load(gpa, mapped_mem, module.build_id, null, null, null, filename); |
| | 106 | assert(di.mapped_memory != null); |
| | 107 | } |
| | 108 | } |
| | 109 | |
| | 110 | fn loadModuleUnwindInfo(gpa: Allocator, module: *const Module, di: *Module.DebugInfo) !void { |
| 136 | if (builtin.target.os.tag.isDarwin()) { | 111 | if (builtin.target.os.tag.isDarwin()) { |
| 137 | @compileError("TODO"); | 112 | // MLUGG TODO HACKHACK |
| | 113 | try loadMachODebugInfo(gpa, module, di); |
| 138 | } else if (native_os == .windows) { | 114 | } else if (native_os == .windows) { |
| 139 | @compileError("TODO"); | 115 | comptime unreachable; // not supported |
| 140 | } else if (native_os == .haiku) { | 116 | } else if (native_os == .haiku) { |
| 141 | @compileError("TODO"); | 117 | comptime unreachable; // not supported |
| 142 | } else if (builtin.target.cpu.arch.isWasm()) { | 118 | } else if (builtin.target.cpu.arch.isWasm()) { |
| 143 | @compileError("TODO"); | 119 | comptime unreachable; // not supported |
| 144 | } else { | 120 | } else { |
| 145 | if (module.mapped_memory == null) { | 121 | eh_frame: { |
| 146 | var sections: Dwarf.SectionArray = @splat(null); | 122 | if (di.unwind.eh_frame != null) break :eh_frame; // already loaded |
| 147 | try readElfDebugInfo(module, self.allocator, if (lookup.name.len > 0) lookup.name else null, lookup.build_id, &sections); | 123 | const eh_frame_hdr_bytes = module.gnu_eh_frame orelse break :eh_frame; |
| 148 | assert(module.mapped_memory != null); | 124 | const eh_frame_hdr: Dwarf.Unwind.EhFrameHeader = try .parse( |
| | 125 | @intFromPtr(eh_frame_hdr_bytes.ptr) - module.load_offset, |
| | 126 | eh_frame_hdr_bytes, |
| | 127 | @sizeOf(usize), |
| | 128 | native_endian, |
| | 129 | ); |
| | 130 | const eh_frame_addr = module.load_offset + @as(usize, @intCast(eh_frame_hdr.eh_frame_vaddr)); |
| | 131 | try di.unwind.scanEhFrame( |
| | 132 | gpa, |
| | 133 | eh_frame_hdr, |
| | 134 | @ptrFromInt(eh_frame_addr), |
| | 135 | null, |
| | 136 | @sizeOf(usize), |
| | 137 | native_endian, |
| | 138 | ); |
| 149 | } | 139 | } |
| 150 | } | 140 | } |
| 151 | } | 141 | } |
| 152 | | 142 | |
| 153 | pub fn unwindFrame(self: *SelfInfo, context: *UnwindContext) !usize { | 143 | pub fn unwindFrame(self: *SelfInfo, gpa: Allocator, context: *UnwindContext) !usize { |
| 154 | const lookup = try self.lookupModuleForAddress(context.pc); | 144 | comptime assert(target_supported); |
| 155 | const gop = try self.address_map.getOrPut(self.allocator, lookup.base_address); | 145 | const module = try self.lookupModuleForAddress(gpa, context.pc); |
| 156 | if (!gop.found_existing) gop.value_ptr.* = .init(&lookup); | 146 | const gop = try self.address_map.getOrPut(gpa, module.load_offset); |
| | 147 | if (!gop.found_existing) gop.value_ptr.* = .init; |
| | 148 | try loadModuleUnwindInfo(gpa, &module, gop.value_ptr); |
| 157 | if (native_os.isDarwin()) { | 149 | if (native_os.isDarwin()) { |
| 158 | // __unwind_info is a requirement for unwinding on Darwin. It may fall back to DWARF, but unwinding | 150 | // __unwind_info is a requirement for unwinding on Darwin. It may fall back to DWARF, but unwinding |
| 159 | // via DWARF before attempting to use the compact unwind info will produce incorrect results. | 151 | // via DWARF before attempting to use the compact unwind info will produce incorrect results. |
| 160 | if (gop.value_ptr.unwind_info) |unwind_info| { | 152 | if (gop.value_ptr.unwind_info) |unwind_info| { |
| 161 | if (unwindFrameMachO( | 153 | if (unwindFrameMachO( |
| 162 | self.allocator, | 154 | module.text_base, |
| 163 | lookup.base_address, | 155 | module.load_offset, |
| 164 | context, | 156 | context, |
| 165 | unwind_info, | 157 | unwind_info, |
| 166 | gop.value_ptr.eh_frame, | 158 | gop.value_ptr.eh_frame, |
| ... | @@ -169,292 +161,42 @@ pub fn unwindFrame(self: *SelfInfo, context: *UnwindContext) !usize { | ... | @@ -169,292 +161,42 @@ pub fn unwindFrame(self: *SelfInfo, context: *UnwindContext) !usize { |
| 169 | } else |err| { | 161 | } else |err| { |
| 170 | if (err != error.RequiresDWARFUnwind) return err; | 162 | if (err != error.RequiresDWARFUnwind) return err; |
| 171 | } | 163 | } |
| 172 | } else return error.MissingUnwindInfo; | 164 | } |
| | 165 | return error.MissingUnwindInfo; |
| | 166 | } |
| | 167 | if (try gop.value_ptr.getDwarfUnwindForAddress(gpa, context.pc)) |unwind| { |
| | 168 | return unwindFrameDwarf(unwind, module.load_offset, context, null); |
| 173 | } | 169 | } |
| 174 | if (try gop.value_ptr.getDwarfUnwindForAddress(self.allocator, context.pc)) |unwind| { | 170 | return error.MissingDebugInfo; |
| 175 | return unwindFrameDwarf(self.allocator, unwind, lookup.base_address, context, null); | | |
| 176 | } else return error.MissingDebugInfo; | | |
| 177 | } | 171 | } |
| 178 | | 172 | |
| 179 | pub fn getSymbolAtAddress(self: *SelfInfo, address: usize) !std.debug.Symbol { | 173 | pub fn getSymbolAtAddress(self: *SelfInfo, gpa: Allocator, address: usize) !std.debug.Symbol { |
| 180 | const lookup = try self.lookupModuleForAddress(address); | 174 | comptime assert(target_supported); |
| 181 | const gop = try self.address_map.getOrPut(self.allocator, lookup.base_address); | 175 | const module = try self.lookupModuleForAddress(gpa, address); |
| 182 | if (!gop.found_existing) gop.value_ptr.* = .init(&lookup); | 176 | const gop = try self.address_map.getOrPut(gpa, module.key()); |
| 183 | try self.loadModuleDebugInfo(&lookup, gop.value_ptr); | 177 | if (!gop.found_existing) gop.value_ptr.* = .init; |
| 184 | return gop.value_ptr.getSymbolAtAddress(self.allocator, native_endian, lookup.base_address, address); | 178 | try loadModuleDebugInfo(gpa, &module, gop.value_ptr); |
| | 179 | return module.getSymbolAtAddress(gpa, gop.value_ptr, address); |
| 185 | } | 180 | } |
| 186 | | 181 | |
| 187 | /// Returns the module name for a given address. | 182 | /// Returns the module name for a given address. |
| 188 | /// This can be called when getModuleForAddress fails, so implementations should provide | 183 | /// This can be called when getModuleForAddress fails, so implementations should provide |
| 189 | /// a path that doesn't rely on any side-effects of a prior successful module lookup. | 184 | /// a path that doesn't rely on any side-effects of a prior successful module lookup. |
| 190 | pub fn getModuleNameForAddress(self: *SelfInfo, address: usize) ?[]const u8 { | 185 | pub fn getModuleNameForAddress(self: *SelfInfo, gpa: Allocator, address: usize) error{ Unexpected, OutOfMemory, MissingDebugInfo }![]const u8 { |
| 191 | return if (self.lookupModuleForAddress(address)) |lookup| lookup.name else |err| switch (err) { | 186 | comptime assert(target_supported); |
| 192 | error.MissingDebugInfo => null, | 187 | const module = try self.lookupModuleForAddress(gpa, address); |
| 193 | }; | 188 | return module.name; |
| 194 | } | | |
| 195 | | | |
| 196 | fn lookupModuleDyld(self: *SelfInfo, address: usize) !*Module { | | |
| 197 | const image_count = std.c._dyld_image_count(); | | |
| 198 | | | |
| 199 | var i: u32 = 0; | | |
| 200 | while (i < image_count) : (i += 1) { | | |
| 201 | const header = std.c._dyld_get_image_header(i) orelse continue; | | |
| 202 | const base_address = @intFromPtr(header); | | |
| 203 | if (address < base_address) continue; | | |
| 204 | const vmaddr_slide = std.c._dyld_get_image_vmaddr_slide(i); | | |
| 205 | | | |
| 206 | var it = macho.LoadCommandIterator{ | | |
| 207 | .ncmds = header.ncmds, | | |
| 208 | .buffer = @alignCast(@as( | | |
| 209 | [*]u8, | | |
| 210 | @ptrFromInt(@intFromPtr(header) + @sizeOf(macho.mach_header_64)), | | |
| 211 | )[0..header.sizeofcmds]), | | |
| 212 | }; | | |
| 213 | | | |
| 214 | var unwind_info: ?[]const u8 = null; | | |
| 215 | var eh_frame: ?[]const u8 = null; | | |
| 216 | while (it.next()) |cmd| switch (cmd.cmd()) { | | |
| 217 | .SEGMENT_64 => { | | |
| 218 | const segment_cmd = cmd.cast(macho.segment_command_64).?; | | |
| 219 | if (!mem.eql(u8, "__TEXT", segment_cmd.segName())) continue; | | |
| 220 | | | |
| 221 | const seg_start = segment_cmd.vmaddr + vmaddr_slide; | | |
| 222 | const seg_end = seg_start + segment_cmd.vmsize; | | |
| 223 | if (address >= seg_start and address < seg_end) { | | |
| 224 | if (self.address_map.get(base_address)) |obj_di| { | | |
| 225 | return obj_di; | | |
| 226 | } | | |
| 227 | | | |
| 228 | for (cmd.getSections()) |sect| { | | |
| 229 | const sect_addr: usize = @intCast(sect.addr); | | |
| 230 | const sect_size: usize = @intCast(sect.size); | | |
| 231 | if (mem.eql(u8, "__unwind_info", sect.sectName())) { | | |
| 232 | unwind_info = @as([*]const u8, @ptrFromInt(sect_addr + vmaddr_slide))[0..sect_size]; | | |
| 233 | } else if (mem.eql(u8, "__eh_frame", sect.sectName())) { | | |
| 234 | eh_frame = @as([*]const u8, @ptrFromInt(sect_addr + vmaddr_slide))[0..sect_size]; | | |
| 235 | } | | |
| 236 | } | | |
| 237 | | | |
| 238 | const obj_di = try self.allocator.create(Module); | | |
| 239 | errdefer self.allocator.destroy(obj_di); | | |
| 240 | | | |
| 241 | const macho_path = mem.sliceTo(std.c._dyld_get_image_name(i), 0); | | |
| 242 | const macho_file = fs.cwd().openFile(macho_path, .{}) catch |err| switch (err) { | | |
| 243 | error.FileNotFound => return error.MissingDebugInfo, | | |
| 244 | else => return err, | | |
| 245 | }; | | |
| 246 | obj_di.* = try readMachODebugInfo(self.allocator, macho_file); | | |
| 247 | obj_di.base_address = base_address; | | |
| 248 | obj_di.vmaddr_slide = vmaddr_slide; | | |
| 249 | obj_di.unwind_info = unwind_info; | | |
| 250 | obj_di.eh_frame = eh_frame; | | |
| 251 | | | |
| 252 | try self.address_map.putNoClobber(base_address, obj_di); | | |
| 253 | | | |
| 254 | return obj_di; | | |
| 255 | } | | |
| 256 | }, | | |
| 257 | else => {}, | | |
| 258 | }; | | |
| 259 | } | | |
| 260 | | | |
| 261 | return error.MissingDebugInfo; | | |
| 262 | } | | |
| 263 | | | |
| 264 | fn lookupModuleNameDyld(self: *SelfInfo, address: usize) ?[]const u8 { | | |
| 265 | _ = self; | | |
| 266 | const image_count = std.c._dyld_image_count(); | | |
| 267 | | | |
| 268 | var i: u32 = 0; | | |
| 269 | while (i < image_count) : (i += 1) { | | |
| 270 | const header = std.c._dyld_get_image_header(i) orelse continue; | | |
| 271 | const base_address = @intFromPtr(header); | | |
| 272 | if (address < base_address) continue; | | |
| 273 | const vmaddr_slide = std.c._dyld_get_image_vmaddr_slide(i); | | |
| 274 | | | |
| 275 | var it = macho.LoadCommandIterator{ | | |
| 276 | .ncmds = header.ncmds, | | |
| 277 | .buffer = @alignCast(@as( | | |
| 278 | [*]u8, | | |
| 279 | @ptrFromInt(@intFromPtr(header) + @sizeOf(macho.mach_header_64)), | | |
| 280 | )[0..header.sizeofcmds]), | | |
| 281 | }; | | |
| 282 | | | |
| 283 | while (it.next()) |cmd| switch (cmd.cmd()) { | | |
| 284 | .SEGMENT_64 => { | | |
| 285 | const segment_cmd = cmd.cast(macho.segment_command_64).?; | | |
| 286 | if (!mem.eql(u8, "__TEXT", segment_cmd.segName())) continue; | | |
| 287 | | | |
| 288 | const original_address = address - vmaddr_slide; | | |
| 289 | const seg_start = segment_cmd.vmaddr; | | |
| 290 | const seg_end = seg_start + segment_cmd.vmsize; | | |
| 291 | if (original_address >= seg_start and original_address < seg_end) { | | |
| 292 | return fs.path.basename(mem.sliceTo(std.c._dyld_get_image_name(i), 0)); | | |
| 293 | } | | |
| 294 | }, | | |
| 295 | else => {}, | | |
| 296 | }; | | |
| 297 | } | | |
| 298 | | | |
| 299 | return null; | | |
| 300 | } | | |
| 301 | | | |
| 302 | fn lookupModuleWin32(self: *SelfInfo, address: usize) !*Module { | | |
| 303 | for (self.modules.items) |*module| { | | |
| 304 | if (address >= module.base_address and address < module.base_address + module.size) { | | |
| 305 | if (self.address_map.get(module.base_address)) |obj_di| { | | |
| 306 | return obj_di; | | |
| 307 | } | | |
| 308 | | | |
| 309 | const obj_di = try self.allocator.create(Module); | | |
| 310 | errdefer self.allocator.destroy(obj_di); | | |
| 311 | | | |
| 312 | const mapped_module = @as([*]const u8, @ptrFromInt(module.base_address))[0..module.size]; | | |
| 313 | var coff_obj = try coff.Coff.init(mapped_module, true); | | |
| 314 | | | |
| 315 | // The string table is not mapped into memory by the loader, so if a section name is in the | | |
| 316 | // string table then we have to map the full image file from disk. This can happen when | | |
| 317 | // a binary is produced with -gdwarf, since the section names are longer than 8 bytes. | | |
| 318 | if (coff_obj.strtabRequired()) { | | |
| 319 | var name_buffer: [windows.PATH_MAX_WIDE + 4:0]u16 = undefined; | | |
| 320 | // openFileAbsoluteW requires the prefix to be present | | |
| 321 | @memcpy(name_buffer[0..4], &[_]u16{ '\\', '?', '?', '\\' }); | | |
| 322 | | | |
| 323 | const process_handle = windows.GetCurrentProcess(); | | |
| 324 | const len = windows.kernel32.GetModuleFileNameExW( | | |
| 325 | process_handle, | | |
| 326 | module.handle, | | |
| 327 | @ptrCast(&name_buffer[4]), | | |
| 328 | windows.PATH_MAX_WIDE, | | |
| 329 | ); | | |
| 330 | | | |
| 331 | if (len == 0) return error.MissingDebugInfo; | | |
| 332 | const coff_file = fs.openFileAbsoluteW(name_buffer[0 .. len + 4 :0], .{}) catch |err| switch (err) { | | |
| 333 | error.FileNotFound => return error.MissingDebugInfo, | | |
| 334 | else => return err, | | |
| 335 | }; | | |
| 336 | errdefer coff_file.close(); | | |
| 337 | | | |
| 338 | var section_handle: windows.HANDLE = undefined; | | |
| 339 | const create_section_rc = windows.ntdll.NtCreateSection( | | |
| 340 | &section_handle, | | |
| 341 | windows.STANDARD_RIGHTS_REQUIRED | windows.SECTION_QUERY | windows.SECTION_MAP_READ, | | |
| 342 | null, | | |
| 343 | null, | | |
| 344 | windows.PAGE_READONLY, | | |
| 345 | // The documentation states that if no AllocationAttribute is specified, then SEC_COMMIT is the default. | | |
| 346 | // In practice, this isn't the case and specifying 0 will result in INVALID_PARAMETER_6. | | |
| 347 | windows.SEC_COMMIT, | | |
| 348 | coff_file.handle, | | |
| 349 | ); | | |
| 350 | if (create_section_rc != .SUCCESS) return error.MissingDebugInfo; | | |
| 351 | errdefer windows.CloseHandle(section_handle); | | |
| 352 | | | |
| 353 | var coff_len: usize = 0; | | |
| 354 | var base_ptr: usize = 0; | | |
| 355 | const map_section_rc = windows.ntdll.NtMapViewOfSection( | | |
| 356 | section_handle, | | |
| 357 | process_handle, | | |
| 358 | @ptrCast(&base_ptr), | | |
| 359 | null, | | |
| 360 | 0, | | |
| 361 | null, | | |
| 362 | &coff_len, | | |
| 363 | .ViewUnmap, | | |
| 364 | 0, | | |
| 365 | windows.PAGE_READONLY, | | |
| 366 | ); | | |
| 367 | if (map_section_rc != .SUCCESS) return error.MissingDebugInfo; | | |
| 368 | errdefer assert(windows.ntdll.NtUnmapViewOfSection(process_handle, @ptrFromInt(base_ptr)) == .SUCCESS); | | |
| 369 | | | |
| 370 | const section_view = @as([*]const u8, @ptrFromInt(base_ptr))[0..coff_len]; | | |
| 371 | coff_obj = try coff.Coff.init(section_view, false); | | |
| 372 | | | |
| 373 | module.mapped_file = .{ | | |
| 374 | .file = coff_file, | | |
| 375 | .section_handle = section_handle, | | |
| 376 | .section_view = section_view, | | |
| 377 | }; | | |
| 378 | } | | |
| 379 | errdefer if (module.mapped_file) |mapped_file| mapped_file.deinit(); | | |
| 380 | | | |
| 381 | obj_di.* = try readCoffDebugInfo(self.allocator, &coff_obj); | | |
| 382 | obj_di.base_address = module.base_address; | | |
| 383 | | | |
| 384 | try self.address_map.putNoClobber(module.base_address, obj_di); | | |
| 385 | return obj_di; | | |
| 386 | } | | |
| 387 | } | | |
| 388 | | | |
| 389 | return error.MissingDebugInfo; | | |
| 390 | } | | |
| 391 | | | |
| 392 | fn lookupModuleNameWin32(self: *SelfInfo, address: usize) ?[]const u8 { | | |
| 393 | for (self.modules.items) |module| { | | |
| 394 | if (address >= module.base_address and address < module.base_address + module.size) { | | |
| 395 | return module.name; | | |
| 396 | } | | |
| 397 | } | | |
| 398 | return null; | | |
| 399 | } | | |
| 400 | | | |
| 401 | fn lookupModuleNameDl(self: *SelfInfo, address: usize) ?[]const u8 { | | |
| 402 | _ = self; | | |
| 403 | | | |
| 404 | var ctx: struct { | | |
| 405 | // Input | | |
| 406 | address: usize, | | |
| 407 | // Output | | |
| 408 | name: []const u8 = "", | | |
| 409 | } = .{ .address = address }; | | |
| 410 | const CtxTy = @TypeOf(ctx); | | |
| 411 | | | |
| 412 | if (posix.dl_iterate_phdr(&ctx, error{Found}, struct { | | |
| 413 | fn callback(info: *posix.dl_phdr_info, size: usize, context: *CtxTy) !void { | | |
| 414 | _ = size; | | |
| 415 | if (context.address < info.addr) return; | | |
| 416 | const phdrs = info.phdr[0..info.phnum]; | | |
| 417 | for (phdrs) |*phdr| { | | |
| 418 | if (phdr.p_type != elf.PT_LOAD) continue; | | |
| 419 | | | |
| 420 | const seg_start = info.addr +% phdr.p_vaddr; | | |
| 421 | const seg_end = seg_start + phdr.p_memsz; | | |
| 422 | if (context.address >= seg_start and context.address < seg_end) { | | |
| 423 | context.name = mem.sliceTo(info.name, 0) orelse ""; | | |
| 424 | break; | | |
| 425 | } | | |
| 426 | } else return; | | |
| 427 | | | |
| 428 | return error.Found; | | |
| 429 | } | | |
| 430 | }.callback)) { | | |
| 431 | return null; | | |
| 432 | } else |err| switch (err) { | | |
| 433 | error.Found => return fs.path.basename(ctx.name), | | |
| 434 | } | | |
| 435 | | | |
| 436 | return null; | | |
| 437 | } | 189 | } |
| 438 | | 190 | |
| 439 | fn lookupModuleDl(self: *SelfInfo, address: usize) !Module.Lookup { | 191 | fn lookupModuleDl(self: *SelfInfo, address: usize) !Module { |
| 440 | var ctx: struct { | 192 | _ = self; // MLUGG |
| 441 | // Input | 193 | const DlIterContext = struct { |
| | 194 | /// input |
| 442 | address: usize, | 195 | address: usize, |
| 443 | // Output | 196 | /// output |
| 444 | lookup: Module.Lookup, | 197 | module: Module, |
| 445 | } = .{ | | |
| 446 | .address = address, | | |
| 447 | .lookup = .{ | | |
| 448 | .base_address = undefined, | | |
| 449 | .name = undefined, | | |
| 450 | .build_id = null, | | |
| 451 | .gnu_eh_frame = null, | | |
| 452 | }, | | |
| 453 | }; | | |
| 454 | const CtxTy = @TypeOf(ctx); | | |
| 455 | | 198 | |
| 456 | posix.dl_iterate_phdr(&ctx, error{Found}, struct { | 199 | fn callback(info: *posix.dl_phdr_info, size: usize, context: *@This()) !void { |
| 457 | fn callback(info: *posix.dl_phdr_info, size: usize, context: *CtxTy) !void { | | |
| 458 | _ = size; | 200 | _ = size; |
| 459 | // The base address is too high | 201 | // The base address is too high |
| 460 | if (context.address < info.addr) | 202 | if (context.address < info.addr) |
| ... | @@ -468,10 +210,13 @@ fn lookupModuleDl(self: *SelfInfo, address: usize) !Module.Lookup { | ... | @@ -468,10 +210,13 @@ fn lookupModuleDl(self: *SelfInfo, address: usize) !Module.Lookup { |
| 468 | const seg_start = info.addr +% phdr.p_vaddr; | 210 | const seg_start = info.addr +% phdr.p_vaddr; |
| 469 | const seg_end = seg_start + phdr.p_memsz; | 211 | const seg_end = seg_start + phdr.p_memsz; |
| 470 | if (context.address >= seg_start and context.address < seg_end) { | 212 | if (context.address >= seg_start and context.address < seg_end) { |
| 471 | // Android libc uses NULL instead of an empty string to mark the | 213 | context.module = .{ |
| 472 | // main program | 214 | .load_offset = info.addr, |
| 473 | context.lookup.name = mem.sliceTo(info.name, 0) orelse ""; | 215 | // Android libc uses NULL instead of "" to mark the main program |
| 474 | context.lookup.base_address = info.addr; | 216 | .name = mem.sliceTo(info.name, 0) orelse "", |
| | 217 | .build_id = null, |
| | 218 | .gnu_eh_frame = null, |
| | 219 | }; |
| 475 | break; | 220 | break; |
| 476 | } | 221 | } |
| 477 | } else return; | 222 | } else return; |
| ... | @@ -480,17 +225,20 @@ fn lookupModuleDl(self: *SelfInfo, address: usize) !Module.Lookup { | ... | @@ -480,17 +225,20 @@ fn lookupModuleDl(self: *SelfInfo, address: usize) !Module.Lookup { |
| 480 | switch (phdr.p_type) { | 225 | switch (phdr.p_type) { |
| 481 | elf.PT_NOTE => { | 226 | elf.PT_NOTE => { |
| 482 | // Look for .note.gnu.build-id | 227 | // Look for .note.gnu.build-id |
| 483 | const note_bytes = @as([*]const u8, @ptrFromInt(info.addr + phdr.p_vaddr))[0..phdr.p_memsz]; | 228 | const segment_ptr: [*]const u8 = @ptrFromInt(info.addr + phdr.p_vaddr); |
| 484 | const name_size = mem.readInt(u32, note_bytes[0..4], native_endian); | 229 | var r: std.Io.Reader = .fixed(segment_ptr[0..phdr.p_memsz]); |
| 485 | if (name_size != 4) continue; | 230 | const name_size = r.takeInt(u32, native_endian) catch continue; |
| 486 | const desc_size = mem.readInt(u32, note_bytes[4..8], native_endian); | 231 | const desc_size = r.takeInt(u32, native_endian) catch continue; |
| 487 | const note_type = mem.readInt(u32, note_bytes[8..12], native_endian); | 232 | const note_type = r.takeInt(u32, native_endian) catch continue; |
| | 233 | const name = r.take(name_size) catch continue; |
| 488 | if (note_type != elf.NT_GNU_BUILD_ID) continue; | 234 | if (note_type != elf.NT_GNU_BUILD_ID) continue; |
| 489 | if (!mem.eql(u8, "GNU\x00", note_bytes[12..16])) continue; | 235 | if (!mem.eql(u8, name, "GNU\x00")) continue; |
| 490 | context.lookup.build_id = note_bytes[16..][0..desc_size]; | 236 | const desc = r.take(desc_size) catch continue; |
| | 237 | context.module.build_id = desc; |
| 491 | }, | 238 | }, |
| 492 | elf.PT_GNU_EH_FRAME => { | 239 | elf.PT_GNU_EH_FRAME => { |
| 493 | context.lookup.gnu_eh_frame = @as([*]const u8, @ptrFromInt(info.addr + phdr.p_vaddr))[0..phdr.p_memsz]; | 240 | const segment_ptr: [*]const u8 = @ptrFromInt(info.addr + phdr.p_vaddr); |
| | 241 | context.module.gnu_eh_frame = segment_ptr[0..phdr.p_memsz]; |
| 494 | }, | 242 | }, |
| 495 | else => {}, | 243 | else => {}, |
| 496 | } | 244 | } |
| ... | @@ -499,425 +247,558 @@ fn lookupModuleDl(self: *SelfInfo, address: usize) !Module.Lookup { | ... | @@ -499,425 +247,558 @@ fn lookupModuleDl(self: *SelfInfo, address: usize) !Module.Lookup { |
| 499 | // Stop the iteration | 247 | // Stop the iteration |
| 500 | return error.Found; | 248 | return error.Found; |
| 501 | } | 249 | } |
| 502 | }.callback) catch |err| switch (err) { | | |
| 503 | error.Found => return ctx.lookup, | | |
| 504 | }; | 250 | }; |
| 505 | if (true) return error.MissingDebugInfo; | 251 | var ctx: DlIterContext = .{ |
| 506 | | 252 | .address = address, |
| 507 | if (self.address_map.get(ctx.lookup.base_address)) |obj_di| { | 253 | .module = undefined, |
| 508 | return obj_di; | 254 | }; |
| 509 | } | 255 | posix.dl_iterate_phdr(&ctx, error{Found}, DlIterContext.callback) catch |err| switch (err) { |
| | 256 | error.Found => return ctx.module, |
| | 257 | }; |
| | 258 | return error.MissingDebugInfo; |
| | 259 | } |
| 510 | | 260 | |
| 511 | var sections: Dwarf.SectionArray = @splat(null); | 261 | fn lookupModuleDyld(self: *SelfInfo, address: usize) !Module { |
| 512 | if (ctx.lookup.gnu_eh_frame) |eh_frame_hdr| { | 262 | _ = self; // MLUGG |
| 513 | // This is a special case - pointer offsets inside .eh_frame_hdr | 263 | const image_count = std.c._dyld_image_count(); |
| 514 | // are encoded relative to its base address, so we must use the | 264 | for (0..image_count) |image_idx| { |
| 515 | // version that is already memory mapped, and not the one that | 265 | const header = std.c._dyld_get_image_header(@intCast(image_idx)) orelse continue; |
| 516 | // will be mapped separately from the ELF file. | 266 | const text_base = @intFromPtr(header); |
| 517 | sections[@intFromEnum(Dwarf.Unwind.Section.Id.eh_frame_hdr)] = .{ | 267 | if (address < text_base) continue; |
| 518 | .data = eh_frame_hdr, | 268 | const load_offset = std.c._dyld_get_image_vmaddr_slide(@intCast(image_idx)); |
| 519 | .owned = false, | 269 | |
| | 270 | // Find the __TEXT segment |
| | 271 | var it: macho.LoadCommandIterator = .{ |
| | 272 | .ncmds = header.ncmds, |
| | 273 | .buffer = @as([*]u8, @ptrCast(header))[@sizeOf(macho.mach_header_64)..][0..header.sizeofcmds], |
| | 274 | }; |
| | 275 | const text_segment_cmd, const text_sections = while (it.next()) |load_cmd| { |
| | 276 | if (load_cmd.cmd() != .SEGMENT_64) continue; |
| | 277 | const segment_cmd = load_cmd.cast(macho.segment_command_64).?; |
| | 278 | if (!mem.eql(u8, segment_cmd.segName(), "__TEXT")) continue; |
| | 279 | break .{ segment_cmd, load_cmd.getSections() }; |
| | 280 | } else continue; |
| | 281 | |
| | 282 | const seg_start = load_offset + text_segment_cmd.vmaddr; |
| | 283 | assert(seg_start == text_base); |
| | 284 | const seg_end = seg_start + text_segment_cmd.vmsize; |
| | 285 | if (address < seg_start or address >= seg_end) continue; |
| | 286 | |
| | 287 | // We've found the matching __TEXT segment. This is the image we need, but we must look |
| | 288 | // for unwind info in it before returning. |
| | 289 | |
| | 290 | var result: Module = .{ |
| | 291 | .text_base = text_base, |
| | 292 | .load_offset = load_offset, |
| | 293 | .name = mem.span(std.c._dyld_get_image_name(@intCast(image_idx))), |
| | 294 | .unwind_info = null, |
| | 295 | .eh_frame = null, |
| 520 | }; | 296 | }; |
| | 297 | for (text_sections) |sect| { |
| | 298 | if (mem.eql(u8, sect.sectName(), "__unwind_info")) { |
| | 299 | const sect_ptr: [*]u8 = @ptrFromInt(@as(usize, @intCast(load_offset + sect.addr))); |
| | 300 | result.unwind_info = sect_ptr[0..@intCast(sect.size)]; |
| | 301 | } else if (mem.eql(u8, sect.sectName(), "__eh_frame")) { |
| | 302 | const sect_ptr: [*]u8 = @ptrFromInt(@as(usize, @intCast(load_offset + sect.addr))); |
| | 303 | result.eh_frame = sect_ptr[0..@intCast(sect.size)]; |
| | 304 | } |
| | 305 | } |
| | 306 | return result; |
| 521 | } | 307 | } |
| 522 | | 308 | return error.MissingDebugInfo; |
| 523 | const obj_di = try self.allocator.create(Module); | | |
| 524 | errdefer self.allocator.destroy(obj_di); | | |
| 525 | obj_di.* = try readElfDebugInfo(self.allocator, if (ctx.lookup.name.len > 0) ctx.lookup.name else null, ctx.lookup.build_id, &sections); | | |
| 526 | obj_di.base_address = ctx.lookup.base_address; | | |
| 527 | | | |
| 528 | // Missing unwind info isn't treated as a failure, as the unwinder will fall back to FP-based unwinding | | |
| 529 | obj_di.dwarf.scanAllUnwindInfo(self.allocator, ctx.lookup.base_address) catch {}; | | |
| 530 | | | |
| 531 | try self.address_map.putNoClobber(self.allocator, ctx.lookup.base_address, obj_di); | | |
| 532 | | | |
| 533 | return obj_di; | | |
| 534 | } | 309 | } |
| 535 | | 310 | |
| 536 | fn lookupModuleHaiku(self: *SelfInfo, address: usize) !*Module { | 311 | fn lookupModuleWin32(self: *SelfInfo, gpa: Allocator, address: usize) !Module { |
| 537 | _ = self; | 312 | if (self.lookupModuleWin32Cache(address)) |m| return m; |
| 538 | _ = address; | | |
| 539 | @panic("TODO implement lookup module for Haiku"); | | |
| 540 | } | | |
| 541 | | 313 | |
| 542 | fn lookupModuleWasm(self: *SelfInfo, address: usize) !*Module { | 314 | { |
| 543 | _ = self; | 315 | // Check a new module hasn't been loaded |
| 544 | _ = address; | 316 | self.module_cache.clearRetainingCapacity(); |
| 545 | @panic("TODO implement lookup module for Wasm"); | | |
| 546 | } | | |
| 547 | | 317 | |
| 548 | pub const Module = switch (native_os) { | 318 | const handle = windows.kernel32.CreateToolhelp32Snapshot(windows.TH32CS_SNAPMODULE | windows.TH32CS_SNAPMODULE32, 0); |
| 549 | .macos, .ios, .watchos, .tvos, .visionos => struct { | 319 | if (handle == windows.INVALID_HANDLE_VALUE) { |
| 550 | base_address: usize, | 320 | return windows.unexpectedError(windows.GetLastError()); |
| 551 | vmaddr_slide: usize, | 321 | } |
| 552 | mapped_memory: []align(std.heap.page_size_min) const u8, | 322 | defer windows.CloseHandle(handle); |
| 553 | symbols: []const MachoSymbol, | | |
| 554 | strings: [:0]const u8, | | |
| 555 | ofiles: OFileTable, | | |
| 556 | | | |
| 557 | // Backed by the in-memory sections mapped by the loader | | |
| 558 | unwind_info: ?[]const u8 = null, | | |
| 559 | eh_frame: ?[]const u8 = null, | | |
| 560 | | | |
| 561 | const OFileTable = std.StringHashMap(OFileInfo); | | |
| 562 | const OFileInfo = struct { | | |
| 563 | di: Dwarf, | | |
| 564 | addr_table: std.StringHashMap(u64), | | |
| 565 | }; | | |
| 566 | | 323 | |
| 567 | pub fn deinit(self: *@This(), allocator: Allocator) void { | 324 | var entry: windows.MODULEENTRY32 = undefined; |
| 568 | var it = self.ofiles.iterator(); | 325 | entry.dwSize = @sizeOf(windows.MODULEENTRY32); |
| 569 | while (it.next()) |entry| { | 326 | if (windows.kernel32.Module32First(handle, &entry) != 0) { |
| 570 | const ofile = entry.value_ptr; | 327 | try self.module_cache.append(gpa, entry); |
| 571 | ofile.di.deinit(allocator); | 328 | while (windows.kernel32.Module32Next(handle, &entry) != 0) { |
| 572 | ofile.addr_table.deinit(); | 329 | try self.module_cache.append(gpa, entry); |
| 573 | } | 330 | } |
| 574 | self.ofiles.deinit(); | | |
| 575 | allocator.free(self.symbols); | | |
| 576 | posix.munmap(self.mapped_memory); | | |
| 577 | } | 331 | } |
| | 332 | } |
| 578 | | 333 | |
| 579 | fn loadOFile(self: *@This(), allocator: Allocator, o_file_path: []const u8) !*OFileInfo { | 334 | if (self.lookupModuleWin32Cache(address)) |m| return m; |
| 580 | const o_file = try fs.cwd().openFile(o_file_path, .{}); | 335 | return error.MissingDebugInfo; |
| 581 | const mapped_mem = try mapWholeFile(o_file); | 336 | } |
| 582 | | 337 | fn lookupModuleWin32Cache(self: *SelfInfo, address: usize) ?Module { |
| 583 | const hdr: *const macho.mach_header_64 = @ptrCast(@alignCast(mapped_mem.ptr)); | 338 | for (self.module_cache.items) |*entry| { |
| 584 | if (hdr.magic != std.macho.MH_MAGIC_64) | 339 | const base_address = @intFromPtr(entry.modBaseAddr); |
| 585 | return error.InvalidDebugInfo; | 340 | if (address >= base_address and address < base_address + entry.modBaseSize) { |
| 586 | | 341 | return .{ |
| 587 | var segcmd: ?macho.LoadCommandIterator.LoadCommand = null; | 342 | .base_address = base_address, |
| 588 | var symtabcmd: ?macho.symtab_command = null; | 343 | .size = entry.modBaseSize, |
| 589 | var it = macho.LoadCommandIterator{ | 344 | .name = std.mem.sliceTo(&entry.szModule, 0), |
| 590 | .ncmds = hdr.ncmds, | 345 | .handle = entry.hModule, |
| 591 | .buffer = mapped_mem[@sizeOf(macho.mach_header_64)..][0..hdr.sizeofcmds], | | |
| 592 | }; | | |
| 593 | while (it.next()) |cmd| switch (cmd.cmd()) { | | |
| 594 | .SEGMENT_64 => segcmd = cmd, | | |
| 595 | .SYMTAB => symtabcmd = cmd.cast(macho.symtab_command).?, | | |
| 596 | else => {}, | | |
| 597 | }; | 346 | }; |
| | 347 | } |
| | 348 | } |
| | 349 | return null; |
| | 350 | } |
| 598 | | 351 | |
| 599 | if (segcmd == null or symtabcmd == null) return error.MissingDebugInfo; | 352 | fn readCoffDebugInfo(gpa: Allocator, module: *const Module, di: *Module.DebugInfo) !void { |
| 600 | | 353 | const mapped_ptr: [*]const u8 = @ptrFromInt(module.base_address); |
| 601 | // Parse symbols | 354 | const mapped = mapped_ptr[0..module.size]; |
| 602 | const strtab = @as( | 355 | var coff_obj = coff.Coff.init(mapped, true) catch return error.InvalidDebugInfo; |
| 603 | [*]const u8, | 356 | // The string table is not mapped into memory by the loader, so if a section name is in the |
| 604 | @ptrCast(&mapped_mem[symtabcmd.?.stroff]), | 357 | // string table then we have to map the full image file from disk. This can happen when |
| 605 | )[0 .. symtabcmd.?.strsize - 1 :0]; | 358 | // a binary is produced with -gdwarf, since the section names are longer than 8 bytes. |
| 606 | const symtab = @as( | 359 | if (coff_obj.strtabRequired()) { |
| 607 | [*]const macho.nlist_64, | 360 | var name_buffer: [windows.PATH_MAX_WIDE + 4:0]u16 = undefined; |
| 608 | @ptrCast(@alignCast(&mapped_mem[symtabcmd.?.symoff])), | 361 | name_buffer[0..4].* = .{ '\\', '?', '?', '\\' }; // openFileAbsoluteW requires the prefix to be present |
| 609 | )[0..symtabcmd.?.nsyms]; | 362 | const process_handle = windows.GetCurrentProcess(); |
| 610 | | 363 | const len = windows.kernel32.GetModuleFileNameExW( |
| 611 | // TODO handle tentative (common) symbols | 364 | process_handle, |
| 612 | var addr_table = std.StringHashMap(u64).init(allocator); | 365 | module.handle, |
| 613 | try addr_table.ensureTotalCapacity(@as(u32, @intCast(symtab.len))); | 366 | name_buffer[4..], |
| 614 | for (symtab) |sym| { | 367 | windows.PATH_MAX_WIDE, |
| 615 | if (sym.n_strx == 0) continue; | 368 | ); |
| 616 | if (sym.undf() or sym.tentative() or sym.abs()) continue; | 369 | if (len == 0) return error.MissingDebugInfo; |
| 617 | const sym_name = mem.sliceTo(strtab[sym.n_strx..], 0); | 370 | const coff_file = fs.openFileAbsoluteW(name_buffer[0 .. len + 4 :0], .{}) catch |err| switch (err) { |
| 618 | // TODO is it possible to have a symbol collision? | 371 | error.FileNotFound => return error.MissingDebugInfo, |
| 619 | addr_table.putAssumeCapacityNoClobber(sym_name, sym.n_value); | 372 | else => |e| return e, |
| 620 | } | 373 | }; |
| | 374 | errdefer coff_file.close(); |
| | 375 | var section_handle: windows.HANDLE = undefined; |
| | 376 | const create_section_rc = windows.ntdll.NtCreateSection( |
| | 377 | &section_handle, |
| | 378 | windows.STANDARD_RIGHTS_REQUIRED | windows.SECTION_QUERY | windows.SECTION_MAP_READ, |
| | 379 | null, |
| | 380 | null, |
| | 381 | windows.PAGE_READONLY, |
| | 382 | // The documentation states that if no AllocationAttribute is specified, then SEC_COMMIT is the default. |
| | 383 | // In practice, this isn't the case and specifying 0 will result in INVALID_PARAMETER_6. |
| | 384 | windows.SEC_COMMIT, |
| | 385 | coff_file.handle, |
| | 386 | ); |
| | 387 | if (create_section_rc != .SUCCESS) return error.MissingDebugInfo; |
| | 388 | errdefer windows.CloseHandle(section_handle); |
| | 389 | var coff_len: usize = 0; |
| | 390 | var section_view_ptr: [*]const u8 = undefined; |
| | 391 | const map_section_rc = windows.ntdll.NtMapViewOfSection( |
| | 392 | section_handle, |
| | 393 | process_handle, |
| | 394 | @ptrCast(&section_view_ptr), |
| | 395 | null, |
| | 396 | 0, |
| | 397 | null, |
| | 398 | &coff_len, |
| | 399 | .ViewUnmap, |
| | 400 | 0, |
| | 401 | windows.PAGE_READONLY, |
| | 402 | ); |
| | 403 | if (map_section_rc != .SUCCESS) return error.MissingDebugInfo; |
| | 404 | errdefer assert(windows.ntdll.NtUnmapViewOfSection(process_handle, @constCast(section_view_ptr)) == .SUCCESS); |
| | 405 | const section_view = section_view_ptr[0..coff_len]; |
| | 406 | coff_obj = coff.Coff.init(section_view, false) catch return error.InvalidDebugInfo; |
| | 407 | di.mapped_file = .{ |
| | 408 | .file = coff_file, |
| | 409 | .section_handle = section_handle, |
| | 410 | .section_view = section_view, |
| | 411 | }; |
| | 412 | } |
| | 413 | di.coff_image_base = coff_obj.getImageBase(); |
| 621 | | 414 | |
| 622 | var sections: Dwarf.SectionArray = Dwarf.null_section_array; | 415 | if (coff_obj.getSectionByName(".debug_info")) |_| { |
| 623 | if (self.eh_frame) |eh_frame| sections[@intFromEnum(Dwarf.Section.Id.eh_frame)] = .{ | 416 | di.dwarf = .{}; |
| 624 | .data = eh_frame, | | |
| 625 | .owned = false, | | |
| 626 | }; | | |
| 627 | | 417 | |
| 628 | for (segcmd.?.getSections()) |sect| { | 418 | inline for (@typeInfo(Dwarf.Section.Id).@"enum".fields, 0..) |section, i| { |
| 629 | if (!std.mem.eql(u8, "__DWARF", sect.segName())) continue; | 419 | di.dwarf.?.sections[i] = if (coff_obj.getSectionByName("." ++ section.name)) |section_header| blk: { |
| | 420 | break :blk .{ |
| | 421 | .data = try coff_obj.getSectionDataAlloc(section_header, gpa), |
| | 422 | .virtual_address = section_header.virtual_address, |
| | 423 | .owned = true, |
| | 424 | }; |
| | 425 | } else null; |
| | 426 | } |
| 630 | | 427 | |
| 631 | var section_index: ?usize = null; | 428 | try di.dwarf.?.open(gpa, native_endian); |
| 632 | inline for (@typeInfo(Dwarf.Section.Id).@"enum".fields, 0..) |section, i| { | 429 | } |
| 633 | if (mem.eql(u8, "__" ++ section.name, sect.sectName())) section_index = i; | | |
| 634 | } | | |
| 635 | if (section_index == null) continue; | | |
| 636 | | 430 | |
| 637 | const section_bytes = try Dwarf.chopSlice(mapped_mem, sect.offset, sect.size); | 431 | if (try coff_obj.getPdbPath()) |raw_path| pdb: { |
| 638 | sections[section_index.?] = .{ | 432 | const path = blk: { |
| 639 | .data = section_bytes, | 433 | if (fs.path.isAbsolute(raw_path)) { |
| 640 | .virtual_address = @intCast(sect.addr), | 434 | break :blk raw_path; |
| 641 | .owned = false, | 435 | } else { |
| 642 | }; | 436 | const self_dir = try fs.selfExeDirPathAlloc(gpa); |
| | 437 | defer gpa.free(self_dir); |
| | 438 | break :blk try fs.path.join(gpa, &.{ self_dir, raw_path }); |
| 643 | } | 439 | } |
| | 440 | }; |
| | 441 | defer if (path.ptr != raw_path.ptr) gpa.free(path); |
| 644 | | 442 | |
| 645 | const missing_debug_info = | 443 | di.pdb = Pdb.init(gpa, path) catch |err| switch (err) { |
| 646 | sections[@intFromEnum(Dwarf.Section.Id.debug_info)] == null or | 444 | error.FileNotFound, error.IsDir => break :pdb, |
| 647 | sections[@intFromEnum(Dwarf.Section.Id.debug_abbrev)] == null or | 445 | else => return err, |
| 648 | sections[@intFromEnum(Dwarf.Section.Id.debug_str)] == null or | 446 | }; |
| 649 | sections[@intFromEnum(Dwarf.Section.Id.debug_line)] == null; | 447 | try di.pdb.?.parseInfoStream(); |
| 650 | if (missing_debug_info) return error.MissingDebugInfo; | 448 | try di.pdb.?.parseDbiStream(); |
| 651 | | | |
| 652 | var di: Dwarf = .{ | | |
| 653 | .endian = .little, | | |
| 654 | .sections = sections, | | |
| 655 | .is_macho = true, | | |
| 656 | }; | | |
| 657 | | 449 | |
| 658 | try Dwarf.open(&di, allocator); | 450 | if (!mem.eql(u8, &coff_obj.guid, &di.pdb.?.guid) or coff_obj.age != di.pdb.?.age) |
| 659 | const info = OFileInfo{ | 451 | return error.InvalidDebugInfo; |
| 660 | .di = di, | | |
| 661 | .addr_table = addr_table, | | |
| 662 | }; | | |
| 663 | | 452 | |
| 664 | // Add the debug info to the cache | 453 | di.coff_section_headers = try coff_obj.getSectionHeadersAlloc(gpa); |
| 665 | const result = try self.ofiles.getOrPut(o_file_path); | 454 | } |
| 666 | assert(!result.found_existing); | 455 | } |
| 667 | result.value_ptr.* = info; | | |
| 668 | | 456 | |
| 669 | return result.value_ptr; | 457 | const Module = switch (native_os) { |
| | 458 | else => "MLUGG TODO", // Dwarf, // TODO MLUGG: it's this on master but that's definitely broken atm... |
| | 459 | .macos, .ios, .watchos, .tvos, .visionos => struct { |
| | 460 | /// The runtime address where __TEXT is loaded. |
| | 461 | text_base: usize, |
| | 462 | load_offset: usize, |
| | 463 | name: []const u8, |
| | 464 | unwind_info: ?[]const u8, |
| | 465 | eh_frame: ?[]const u8, |
| | 466 | fn key(m: *const Module) usize { |
| | 467 | return m.text_base; |
| 670 | } | 468 | } |
| | 469 | fn getSymbolAtAddress(module: *const Module, gpa: Allocator, di: *DebugInfo, address: usize) !std.debug.Symbol { |
| | 470 | const vaddr = address - module.load_offset; |
| | 471 | const symbol = MachoSymbol.find(di.symbols, vaddr) orelse return .{}; // MLUGG TODO null? |
| 671 | | 472 | |
| 672 | pub fn getSymbolAtAddress(self: *@This(), allocator: Allocator, address: usize) !std.debug.Symbol { | 473 | // offset of `address` from start of `symbol` |
| 673 | const result = try self.getOFileInfoForAddress(allocator, address); | 474 | const address_symbol_offset = vaddr - symbol.addr; |
| 674 | if (result.symbol == null) return .{}; | | |
| 675 | | 475 | |
| 676 | // Take the symbol name from the N_FUN STAB entry, we're going to | 476 | // Take the symbol name from the N_FUN STAB entry, we're going to |
| 677 | // use it if we fail to find the DWARF infos | 477 | // use it if we fail to find the DWARF infos |
| 678 | const stab_symbol = mem.sliceTo(self.strings[result.symbol.?.strx..], 0); | 478 | const stab_symbol = mem.sliceTo(di.strings[symbol.strx..], 0); |
| 679 | if (result.o_file_info == null) return .{ .name = stab_symbol }; | 479 | const o_file_path = mem.sliceTo(di.strings[symbol.ofile..], 0); |
| 680 | | 480 | |
| 681 | // Translate again the address, this time into an address inside the | 481 | const o_file: *DebugInfo.OFile = of: { |
| 682 | // .o file | 482 | const gop = try di.ofiles.getOrPut(gpa, o_file_path); |
| 683 | const relocated_address_o = result.o_file_info.?.addr_table.get(stab_symbol) orelse return .{ | 483 | if (!gop.found_existing) { |
| 684 | .name = "???", | 484 | gop.value_ptr.* = DebugInfo.loadOFile(gpa, o_file_path) catch |err| { |
| | 485 | defer _ = di.ofiles.pop().?; |
| | 486 | switch (err) { |
| | 487 | error.FileNotFound, |
| | 488 | error.MissingDebugInfo, |
| | 489 | error.InvalidDebugInfo, |
| | 490 | => return .{ .name = stab_symbol }, |
| | 491 | else => |e| return e, |
| | 492 | } |
| | 493 | }; |
| | 494 | } |
| | 495 | break :of gop.value_ptr; |
| 685 | }; | 496 | }; |
| 686 | | 497 | |
| 687 | const addr_off = result.relocated_address - result.symbol.?.addr; | 498 | const symbol_ofile_vaddr = o_file.addr_table.get(stab_symbol) orelse return .{ .name = stab_symbol }; |
| 688 | const o_file_di = &result.o_file_info.?.di; | | |
| 689 | if (o_file_di.findCompileUnit(relocated_address_o)) |compile_unit| { | | |
| 690 | return .{ | | |
| 691 | .name = o_file_di.getSymbolName(relocated_address_o) orelse "???", | | |
| 692 | .compile_unit_name = compile_unit.die.getAttrString( | | |
| 693 | o_file_di, | | |
| 694 | std.dwarf.AT.name, | | |
| 695 | o_file_di.section(.debug_str), | | |
| 696 | compile_unit.*, | | |
| 697 | ) catch |err| switch (err) { | | |
| 698 | error.MissingDebugInfo, error.InvalidDebugInfo => "???", | | |
| 699 | }, | | |
| 700 | .source_location = o_file_di.getLineNumberInfo( | | |
| 701 | allocator, | | |
| 702 | compile_unit, | | |
| 703 | relocated_address_o + addr_off, | | |
| 704 | ) catch |err| switch (err) { | | |
| 705 | error.MissingDebugInfo, error.InvalidDebugInfo => null, | | |
| 706 | else => return err, | | |
| 707 | }, | | |
| 708 | }; | | |
| 709 | } else |err| switch (err) { | | |
| 710 | error.MissingDebugInfo, error.InvalidDebugInfo => { | | |
| 711 | return .{ .name = stab_symbol }; | | |
| 712 | }, | | |
| 713 | else => return err, | | |
| 714 | } | | |
| 715 | } | | |
| 716 | | 499 | |
| 717 | pub fn getOFileInfoForAddress(self: *@This(), allocator: Allocator, address: usize) !struct { | 500 | const compile_unit = o_file.dwarf.findCompileUnit(native_endian, symbol_ofile_vaddr) catch |err| switch (err) { |
| 718 | relocated_address: usize, | 501 | error.MissingDebugInfo, error.InvalidDebugInfo => return .{ .name = stab_symbol }, |
| 719 | symbol: ?*const MachoSymbol = null, | 502 | else => |e| return e, |
| 720 | o_file_info: ?*OFileInfo = null, | | |
| 721 | } { | | |
| 722 | // Translate the VA into an address into this object | | |
| 723 | const relocated_address = address - self.vmaddr_slide; | | |
| 724 | | | |
| 725 | // Find the .o file where this symbol is defined | | |
| 726 | const symbol = machoSearchSymbols(self.symbols, relocated_address) orelse return .{ | | |
| 727 | .relocated_address = relocated_address, | | |
| 728 | }; | 503 | }; |
| 729 | | 504 | |
| 730 | // Check if its debug infos are already in the cache | | |
| 731 | const o_file_path = mem.sliceTo(self.strings[symbol.ofile..], 0); | | |
| 732 | const o_file_info = self.ofiles.getPtr(o_file_path) orelse | | |
| 733 | (self.loadOFile(allocator, o_file_path) catch |err| switch (err) { | | |
| 734 | error.FileNotFound, | | |
| 735 | error.MissingDebugInfo, | | |
| 736 | error.InvalidDebugInfo, | | |
| 737 | => return .{ | | |
| 738 | .relocated_address = relocated_address, | | |
| 739 | .symbol = symbol, | | |
| 740 | }, | | |
| 741 | else => return err, | | |
| 742 | }); | | |
| 743 | | | |
| 744 | return .{ | 505 | return .{ |
| 745 | .relocated_address = relocated_address, | 506 | .name = o_file.dwarf.getSymbolName(symbol_ofile_vaddr) orelse stab_symbol, |
| 746 | .symbol = symbol, | 507 | .compile_unit_name = compile_unit.die.getAttrString( |
| 747 | .o_file_info = o_file_info, | 508 | &o_file.dwarf, |
| | 509 | native_endian, |
| | 510 | std.dwarf.AT.name, |
| | 511 | o_file.dwarf.section(.debug_str), |
| | 512 | compile_unit, |
| | 513 | ) catch |err| switch (err) { |
| | 514 | error.MissingDebugInfo, error.InvalidDebugInfo => "???", |
| | 515 | }, |
| | 516 | .source_location = o_file.dwarf.getLineNumberInfo( |
| | 517 | gpa, |
| | 518 | native_endian, |
| | 519 | compile_unit, |
| | 520 | symbol_ofile_vaddr + address_symbol_offset, |
| | 521 | ) catch |err| switch (err) { |
| | 522 | error.MissingDebugInfo, error.InvalidDebugInfo => null, |
| | 523 | else => return err, |
| | 524 | }, |
| 748 | }; | 525 | }; |
| 749 | } | 526 | } |
| | 527 | const DebugInfo = struct { |
| | 528 | // MLUGG TODO: these are duplicated state. i actually reckon they should be removed from Module, and loadMachODebugInfo should be the one discovering them! |
| | 529 | mapped_memory: []align(std.heap.page_size_min) const u8, |
| | 530 | symbols: []const MachoSymbol, |
| | 531 | strings: [:0]const u8, |
| | 532 | // MLUGG TODO: this could use an adapter to just index straight into `strings`! |
| | 533 | ofiles: std.StringArrayHashMapUnmanaged(OFile), |
| | 534 | |
| | 535 | // Backed by the in-memory sections mapped by the loader |
| | 536 | unwind_info: ?[]const u8, |
| | 537 | eh_frame: ?[]const u8, |
| | 538 | |
| | 539 | // MLUGG TODO HACKHACK: this is awful |
| | 540 | const init: DebugInfo = undefined; |
| | 541 | |
| | 542 | const OFile = struct { |
| | 543 | dwarf: Dwarf, |
| | 544 | // MLUGG TODO: this could use an adapter to just index straight into the strtab! |
| | 545 | addr_table: std.StringArrayHashMapUnmanaged(u64), |
| | 546 | }; |
| 750 | | 547 | |
| 751 | pub fn getDwarfInfoForAddress(self: *@This(), allocator: Allocator, address: usize) !?*Dwarf { | 548 | fn deinit(di: *DebugInfo, gpa: Allocator) void { |
| 752 | return if ((try self.getOFileInfoForAddress(allocator, address)).o_file_info) |o_file_info| &o_file_info.di else null; | 549 | for (di.ofiles.values()) |*ofile| { |
| 753 | } | 550 | ofile.dwarf.deinit(gpa); |
| 754 | }, | 551 | ofile.addr_table.deinit(gpa); |
| 755 | .uefi, .windows => struct { | 552 | } |
| 756 | base_address: usize, | 553 | di.ofiles.deinit(); |
| 757 | pdb: ?Pdb, | 554 | gpa.free(di.symbols); |
| 758 | dwarf: ?Dwarf, | 555 | posix.munmap(di.mapped_memory); |
| 759 | coff_image_base: u64, | | |
| 760 | | | |
| 761 | /// Only used if pdb is non-null | | |
| 762 | coff_section_headers: []coff.SectionHeader, | | |
| 763 | | | |
| 764 | pub fn deinit(self: *@This(), gpa: Allocator) void { | | |
| 765 | if (self.dwarf) |*dwarf| { | | |
| 766 | dwarf.deinit(gpa); | | |
| 767 | } | | |
| 768 | | | |
| 769 | if (self.pdb) |*p| { | | |
| 770 | gpa.free(p.file_reader.interface.buffer); | | |
| 771 | gpa.destroy(p.file_reader); | | |
| 772 | p.deinit(); | | |
| 773 | gpa.free(self.coff_section_headers); | | |
| 774 | } | 556 | } |
| 775 | | 557 | |
| 776 | self.* = undefined; | 558 | fn loadOFile(gpa: Allocator, o_file_path: []const u8) !OFile { |
| 777 | } | 559 | const mapped_mem = try mapFileOrSelfExe(o_file_path); |
| | 560 | errdefer posix.munmap(mapped_mem); |
| 778 | | 561 | |
| 779 | fn getSymbolFromPdb(self: *@This(), relocated_address: usize) !?std.debug.Symbol { | 562 | if (mapped_mem.len < @sizeOf(macho.mach_header_64)) return error.InvalidDebugInfo; |
| 780 | var coff_section: *align(1) const coff.SectionHeader = undefined; | 563 | const hdr: *const macho.mach_header_64 = @ptrCast(@alignCast(mapped_mem.ptr)); |
| 781 | const mod_index = for (self.pdb.?.sect_contribs) |sect_contrib| { | 564 | if (hdr.magic != std.macho.MH_MAGIC_64) return error.InvalidDebugInfo; |
| 782 | if (sect_contrib.section > self.coff_section_headers.len) continue; | | |
| 783 | // Remember that SectionContribEntry.Section is 1-based. | | |
| 784 | coff_section = &self.coff_section_headers[sect_contrib.section - 1]; | | |
| 785 | | | |
| 786 | const vaddr_start = coff_section.virtual_address + sect_contrib.offset; | | |
| 787 | const vaddr_end = vaddr_start + sect_contrib.size; | | |
| 788 | if (relocated_address >= vaddr_start and relocated_address < vaddr_end) { | | |
| 789 | break sect_contrib.module_index; | | |
| 790 | } | | |
| 791 | } else { | | |
| 792 | // we have no information to add to the address | | |
| 793 | return null; | | |
| 794 | }; | | |
| 795 | | 565 | |
| 796 | const module = (try self.pdb.?.getModule(mod_index)) orelse | 566 | const seg_cmd: macho.LoadCommandIterator.LoadCommand, const symtab_cmd: macho.symtab_command = cmds: { |
| 797 | return error.InvalidDebugInfo; | 567 | var seg_cmd: ?macho.LoadCommandIterator.LoadCommand = null; |
| 798 | const obj_basename = fs.path.basename(module.obj_file_name); | 568 | var symtab_cmd: ?macho.symtab_command = null; |
| 799 | | 569 | var it: macho.LoadCommandIterator = .{ |
| 800 | const symbol_name = self.pdb.?.getSymbolName( | 570 | .ncmds = hdr.ncmds, |
| 801 | module, | 571 | .buffer = mapped_mem[@sizeOf(macho.mach_header_64)..][0..hdr.sizeofcmds], |
| 802 | relocated_address - coff_section.virtual_address, | 572 | }; |
| 803 | ) orelse "???"; | 573 | while (it.next()) |cmd| switch (cmd.cmd()) { |
| 804 | const opt_line_info = try self.pdb.?.getLineNumberInfo( | 574 | .SEGMENT_64 => seg_cmd = cmd, |
| 805 | module, | 575 | .SYMTAB => symtab_cmd = cmd.cast(macho.symtab_command) orelse return error.InvalidDebugInfo, |
| 806 | relocated_address - coff_section.virtual_address, | 576 | else => {}, |
| 807 | ); | 577 | }; |
| | 578 | break :cmds .{ |
| | 579 | seg_cmd orelse return error.MissingDebugInfo, |
| | 580 | symtab_cmd orelse return error.MissingDebugInfo, |
| | 581 | }; |
| | 582 | }; |
| 808 | | 583 | |
| 809 | return .{ | 584 | if (mapped_mem.len < symtab_cmd.stroff + symtab_cmd.strsize) return error.InvalidDebugInfo; |
| 810 | .name = symbol_name, | 585 | if (mapped_mem[symtab_cmd.stroff + symtab_cmd.strsize - 1] != 0) return error.InvalidDebugInfo; |
| 811 | .compile_unit_name = obj_basename, | 586 | const strtab = mapped_mem[symtab_cmd.stroff..][0 .. symtab_cmd.strsize - 1]; |
| 812 | .source_location = opt_line_info, | 587 | |
| 813 | }; | 588 | const n_sym_bytes = symtab_cmd.nsyms * @sizeOf(macho.nlist_64); |
| 814 | } | 589 | if (mapped_mem.len < symtab_cmd.symoff + n_sym_bytes) return error.InvalidDebugInfo; |
| | 590 | const symtab: []align(1) const macho.nlist_64 = @ptrCast(mapped_mem[symtab_cmd.symoff..][0..n_sym_bytes]); |
| | 591 | |
| | 592 | // TODO handle tentative (common) symbols |
| | 593 | // MLUGG TODO: does initCapacity actually make sense? |
| | 594 | var addr_table: std.StringArrayHashMapUnmanaged(u64) = .empty; |
| | 595 | defer addr_table.deinit(gpa); |
| | 596 | try addr_table.ensureUnusedCapacity(gpa, @intCast(symtab.len)); |
| | 597 | for (symtab) |sym| { |
| | 598 | if (sym.n_strx == 0) continue; |
| | 599 | switch (sym.n_type.bits.type) { |
| | 600 | .undf => continue, // includes tentative symbols |
| | 601 | .abs => continue, |
| | 602 | else => {}, |
| | 603 | } |
| | 604 | const sym_name = mem.sliceTo(strtab[sym.n_strx..], 0); |
| | 605 | const gop = addr_table.getOrPutAssumeCapacity(sym_name); |
| | 606 | if (gop.found_existing) return error.InvalidDebugInfo; |
| | 607 | gop.value_ptr.* = sym.n_value; |
| | 608 | } |
| 815 | | 609 | |
| 816 | pub fn getSymbolAtAddress(self: *@This(), allocator: Allocator, address: usize) !std.debug.Symbol { | 610 | var sections: Dwarf.SectionArray = @splat(null); |
| 817 | // Translate the VA into an address into this object | 611 | for (seg_cmd.getSections()) |sect| { |
| 818 | const relocated_address = address - self.base_address; | 612 | if (!std.mem.eql(u8, "__DWARF", sect.segName())) continue; |
| 819 | | 613 | |
| 820 | if (self.pdb != null) { | 614 | const section_index: usize = inline for (@typeInfo(Dwarf.Section.Id).@"enum".fields, 0..) |section, i| { |
| 821 | if (try self.getSymbolFromPdb(relocated_address)) |symbol| return symbol; | 615 | if (mem.eql(u8, "__" ++ section.name, sect.sectName())) break i; |
| 822 | } | 616 | } else continue; |
| 823 | | 617 | |
| 824 | if (self.dwarf) |*dwarf| { | 618 | const section_bytes = try Dwarf.chopSlice(mapped_mem, sect.offset, sect.size); |
| 825 | const dwarf_address = relocated_address + self.coff_image_base; | 619 | sections[section_index] = .{ |
| 826 | return dwarf.getSymbol(allocator, dwarf_address); | 620 | .data = section_bytes, |
| 827 | } | 621 | .virtual_address = @intCast(sect.addr), |
| | 622 | .owned = false, |
| | 623 | }; |
| | 624 | } |
| 828 | | 625 | |
| 829 | return .{}; | 626 | const missing_debug_info = |
| 830 | } | 627 | sections[@intFromEnum(Dwarf.Section.Id.debug_info)] == null or |
| | 628 | sections[@intFromEnum(Dwarf.Section.Id.debug_abbrev)] == null or |
| | 629 | sections[@intFromEnum(Dwarf.Section.Id.debug_str)] == null or |
| | 630 | sections[@intFromEnum(Dwarf.Section.Id.debug_line)] == null; |
| | 631 | if (missing_debug_info) return error.MissingDebugInfo; |
| 831 | | 632 | |
| 832 | pub fn getDwarfInfoForAddress(self: *@This(), allocator: Allocator, address: usize) !?*Dwarf { | 633 | var dwarf: Dwarf = .{ .sections = sections }; |
| 833 | _ = allocator; | 634 | errdefer dwarf.deinit(gpa); |
| 834 | _ = address; | 635 | try dwarf.open(gpa, native_endian); |
| 835 | | 636 | |
| 836 | return switch (self.debug_data) { | 637 | return .{ |
| 837 | .dwarf => |*dwarf| dwarf, | 638 | .dwarf = dwarf, |
| 838 | else => null, | 639 | .addr_table = addr_table.move(), |
| 839 | }; | 640 | }; |
| 840 | } | 641 | } |
| | 642 | }; |
| 841 | }, | 643 | }, |
| 842 | .linux, .netbsd, .freebsd, .dragonfly, .openbsd, .haiku, .solaris, .illumos => Dwarf.ElfModule, | | |
| 843 | .wasi, .emscripten => struct { | 644 | .wasi, .emscripten => struct { |
| 844 | pub fn deinit(self: *@This(), allocator: Allocator) void { | 645 | const DebugInfo = struct { |
| 845 | _ = self; | 646 | const init: DebugInfo = .{}; |
| 846 | _ = allocator; | 647 | fn getSymbolAtAddress(di: *DebugInfo, gpa: Allocator, base_address: usize, address: usize) !std.debug.Symbol { |
| 847 | } | 648 | _ = di; |
| 848 | | 649 | _ = gpa; |
| 849 | pub fn getSymbolAtAddress(self: *@This(), allocator: Allocator, address: usize) !std.debug.Symbol { | 650 | _ = base_address; |
| 850 | _ = self; | 651 | _ = address; |
| 851 | _ = allocator; | 652 | unreachable; |
| 852 | _ = address; | 653 | } |
| 853 | return .{}; | 654 | }; |
| | 655 | }, |
| | 656 | .linux, .netbsd, .freebsd, .dragonfly, .openbsd, .haiku, .solaris, .illumos => struct { |
| | 657 | load_offset: usize, |
| | 658 | name: []const u8, |
| | 659 | build_id: ?[]const u8, |
| | 660 | gnu_eh_frame: ?[]const u8, |
| | 661 | fn key(m: Module) usize { |
| | 662 | return m.load_offset; // MLUGG TODO: is this technically valid? idk |
| 854 | } | 663 | } |
| 855 | | 664 | const DebugInfo = Dwarf.ElfModule; |
| 856 | pub fn getDwarfInfoForAddress(self: *@This(), allocator: Allocator, address: usize) !?*Dwarf { | 665 | fn getSymbolAtAddress(mod: *const Module, gpa: Allocator, di: *DebugInfo, address: usize) !std.debug.Symbol { |
| 857 | _ = self; | 666 | return di.getSymbolAtAddress(gpa, native_endian, mod.load_offset, address); |
| 858 | _ = allocator; | | |
| 859 | _ = address; | | |
| 860 | return null; | | |
| 861 | } | 667 | } |
| 862 | }, | 668 | }, |
| 863 | else => Dwarf, | 669 | .uefi, .windows => struct { |
| 864 | }; | 670 | base_address: usize, |
| | 671 | size: usize, |
| | 672 | name: []const u8, |
| | 673 | handle: windows.HMODULE, |
| | 674 | fn key(m: Module) usize { |
| | 675 | return m.base_address; |
| | 676 | } |
| | 677 | const DebugInfo = struct { |
| | 678 | coff_image_base: u64, |
| | 679 | mapped_file: ?struct { |
| | 680 | file: File, |
| | 681 | section_handle: windows.HANDLE, |
| | 682 | section_view: []const u8, |
| | 683 | fn deinit(mapped: @This()) void { |
| | 684 | const process_handle = windows.GetCurrentProcess(); |
| | 685 | assert(windows.ntdll.NtUnmapViewOfSection(process_handle, @constCast(mapped.section_view.ptr)) == .SUCCESS); |
| | 686 | windows.CloseHandle(mapped.section_handle); |
| | 687 | mapped.file.close(); |
| | 688 | } |
| | 689 | }, |
| 865 | | 690 | |
| 866 | /// How is this different than `Module` when the host is Windows? | 691 | dwarf: ?Dwarf, |
| 867 | /// Why are both stored in the `SelfInfo` struct? | 692 | |
| 868 | /// Boy, it sure would be nice if someone added documentation comments for this | 693 | pdb: ?Pdb, |
| 869 | /// struct explaining it. | 694 | /// Populated iff `pdb != null`; otherwise `&.{}`. |
| 870 | pub const WindowsModule = struct { | 695 | coff_section_headers: []coff.SectionHeader, |
| 871 | base_address: usize, | 696 | |
| 872 | size: u32, | 697 | const init: DebugInfo = .{ |
| 873 | name: []const u8, | 698 | .coff_image_base = undefined, |
| 874 | handle: windows.HMODULE, | 699 | .mapped_file = null, |
| 875 | | 700 | .dwarf = null, |
| 876 | // Set when the image file needed to be mapped from disk | 701 | .pdb = null, |
| 877 | mapped_file: ?struct { | 702 | .coff_section_headers = &.{}, |
| 878 | file: File, | 703 | }; |
| 879 | section_handle: windows.HANDLE, | 704 | |
| 880 | section_view: []const u8, | 705 | fn deinit(di: *DebugInfo, gpa: Allocator) void { |
| 881 | | 706 | if (di.dwarf) |*dwarf| dwarf.deinit(gpa); |
| 882 | pub fn deinit(self: @This()) void { | 707 | if (di.pdb) |*pdb| pdb.deinit(); |
| 883 | const process_handle = windows.GetCurrentProcess(); | 708 | gpa.free(di.coff_section_headers); |
| 884 | assert(windows.ntdll.NtUnmapViewOfSection(process_handle, @ptrCast(@constCast(self.section_view.ptr))) == .SUCCESS); | 709 | if (di.mapped_file) |mapped| mapped.deinit(); |
| 885 | windows.CloseHandle(self.section_handle); | 710 | } |
| 886 | self.file.close(); | 711 | |
| | 712 | fn getSymbolFromPdb(di: *DebugInfo, relocated_address: usize) !?std.debug.Symbol { |
| | 713 | var coff_section: *align(1) const coff.SectionHeader = undefined; |
| | 714 | const mod_index = for (di.pdb.?.sect_contribs) |sect_contrib| { |
| | 715 | if (sect_contrib.section > di.coff_section_headers.len) continue; |
| | 716 | // Remember that SectionContribEntry.Section is 1-based. |
| | 717 | coff_section = &di.coff_section_headers[sect_contrib.section - 1]; |
| | 718 | |
| | 719 | const vaddr_start = coff_section.virtual_address + sect_contrib.offset; |
| | 720 | const vaddr_end = vaddr_start + sect_contrib.size; |
| | 721 | if (relocated_address >= vaddr_start and relocated_address < vaddr_end) { |
| | 722 | break sect_contrib.module_index; |
| | 723 | } |
| | 724 | } else { |
| | 725 | // we have no information to add to the address |
| | 726 | return null; |
| | 727 | }; |
| | 728 | |
| | 729 | const module = (try di.pdb.?.getModule(mod_index)) orelse |
| | 730 | return error.InvalidDebugInfo; |
| | 731 | const obj_basename = fs.path.basename(module.obj_file_name); |
| | 732 | |
| | 733 | const symbol_name = di.pdb.?.getSymbolName( |
| | 734 | module, |
| | 735 | relocated_address - coff_section.virtual_address, |
| | 736 | ) orelse "???"; |
| | 737 | const opt_line_info = try di.pdb.?.getLineNumberInfo( |
| | 738 | module, |
| | 739 | relocated_address - coff_section.virtual_address, |
| | 740 | ); |
| | 741 | |
| | 742 | return .{ |
| | 743 | .name = symbol_name, |
| | 744 | .compile_unit_name = obj_basename, |
| | 745 | .source_location = opt_line_info, |
| | 746 | }; |
| | 747 | } |
| | 748 | }; |
| | 749 | |
| | 750 | fn getSymbolAtAddress(mod: *const Module, gpa: Allocator, di: *DebugInfo, address: usize) !std.debug.Symbol { |
| | 751 | // Translate the runtime address into a virtual address into the module |
| | 752 | const vaddr = address - mod.base_address; |
| | 753 | |
| | 754 | if (di.pdb != null) { |
| | 755 | if (try di.getSymbolFromPdb(vaddr)) |symbol| return symbol; |
| | 756 | } |
| | 757 | |
| | 758 | if (di.dwarf) |*dwarf| { |
| | 759 | const dwarf_address = vaddr + di.coff_image_base; |
| | 760 | return dwarf.getSymbol(gpa, native_endian, dwarf_address); |
| | 761 | } |
| | 762 | |
| | 763 | return error.MissingDebugInfo; |
| 887 | } | 764 | } |
| 888 | } = null, | 765 | }, |
| 889 | }; | 766 | }; |
| 890 | | 767 | |
| 891 | /// This takes ownership of macho_file: users of this function should not close | 768 | fn loadMachODebugInfo(gpa: Allocator, module: *const Module, di: *Module.DebugInfo) !void { |
| 892 | /// it themselves, even on error. | 769 | const mapped_mem = mapFileOrSelfExe(module.name) catch |err| switch (err) { |
| 893 | /// TODO it's weird to take ownership even on error, rework this code. | 770 | error.FileNotFound => return error.MissingDebugInfo, |
| 894 | fn readMachODebugInfo(allocator: Allocator, macho_file: File) !Module { | 771 | error.FileTooBig => return error.InvalidDebugInfo, |
| 895 | const mapped_mem = try mapWholeFile(macho_file); | 772 | else => |e| return e, |
| | 773 | }; |
| | 774 | errdefer posix.munmap(mapped_mem); |
| 896 | | 775 | |
| 897 | const hdr: *const macho.mach_header_64 = @ptrCast(@alignCast(mapped_mem.ptr)); | 776 | const hdr: *const macho.mach_header_64 = @ptrCast(@alignCast(mapped_mem.ptr)); |
| 898 | if (hdr.magic != macho.MH_MAGIC_64) | 777 | if (hdr.magic != macho.MH_MAGIC_64) |
| 899 | return error.InvalidDebugInfo; | 778 | return error.InvalidDebugInfo; |
| 900 | | 779 | |
| 901 | var it = macho.LoadCommandIterator{ | 780 | const symtab: macho.symtab_command = symtab: { |
| 902 | .ncmds = hdr.ncmds, | 781 | var it: macho.LoadCommandIterator = .{ |
| 903 | .buffer = mapped_mem[@sizeOf(macho.mach_header_64)..][0..hdr.sizeofcmds], | 782 | .ncmds = hdr.ncmds, |
| | 783 | .buffer = mapped_mem[@sizeOf(macho.mach_header_64)..][0..hdr.sizeofcmds], |
| | 784 | }; |
| | 785 | while (it.next()) |cmd| switch (cmd.cmd()) { |
| | 786 | .SYMTAB => break :symtab cmd.cast(macho.symtab_command) orelse return error.InvalidDebugInfo, |
| | 787 | else => {}, |
| | 788 | }; |
| | 789 | return error.MissingDebugInfo; |
| 904 | }; | 790 | }; |
| 905 | const symtab = while (it.next()) |cmd| switch (cmd.cmd()) { | 791 | |
| 906 | .SYMTAB => break cmd.cast(macho.symtab_command).?, | 792 | const syms_ptr: [*]align(1) const macho.nlist_64 = @ptrCast(mapped_mem[symtab.symoff..]); |
| 907 | else => {}, | 793 | const syms = syms_ptr[0..symtab.nsyms]; |
| 908 | } else return error.MissingDebugInfo; | | |
| 909 | | | |
| 910 | const syms = @as( | | |
| 911 | [*]const macho.nlist_64, | | |
| 912 | @ptrCast(@alignCast(&mapped_mem[symtab.symoff])), | | |
| 913 | )[0..symtab.nsyms]; | | |
| 914 | const strings = mapped_mem[symtab.stroff..][0 .. symtab.strsize - 1 :0]; | 794 | const strings = mapped_mem[symtab.stroff..][0 .. symtab.strsize - 1 :0]; |
| 915 | | 795 | |
| 916 | const symbols_buf = try allocator.alloc(MachoSymbol, syms.len); | 796 | // MLUGG TODO: does it really make sense to initCapacity here? how many of syms are omitted? |
| | 797 | var symbols: std.ArrayList(MachoSymbol) = try .initCapacity(gpa, syms.len); |
| | 798 | defer symbols.deinit(gpa); |
| 917 | | 799 | |
| 918 | var ofile: u32 = undefined; | 800 | var ofile: u32 = undefined; |
| 919 | var last_sym: MachoSymbol = undefined; | 801 | var last_sym: MachoSymbol = undefined; |
| 920 | var symbol_index: usize = 0; | | |
| 921 | var state: enum { | 802 | var state: enum { |
| 922 | init, | 803 | init, |
| 923 | oso_open, | 804 | oso_open, |
| ... | @@ -929,64 +810,53 @@ fn readMachODebugInfo(allocator: Allocator, macho_file: File) !Module { | ... | @@ -929,64 +810,53 @@ fn readMachODebugInfo(allocator: Allocator, macho_file: File) !Module { |
| 929 | } = .init; | 810 | } = .init; |
| 930 | | 811 | |
| 931 | for (syms) |*sym| { | 812 | for (syms) |*sym| { |
| 932 | if (!sym.stab()) continue; | 813 | if (sym.n_type.bits.is_stab == 0) continue; |
| 933 | | 814 | |
| 934 | // TODO handle globals N_GSYM, and statics N_STSYM | 815 | // TODO handle globals N_GSYM, and statics N_STSYM |
| 935 | switch (sym.n_type) { | 816 | switch (sym.n_type.stab) { |
| 936 | macho.N_OSO => { | 817 | .oso => switch (state) { |
| 937 | switch (state) { | 818 | .init, .oso_close => { |
| 938 | .init, .oso_close => { | 819 | state = .oso_open; |
| 939 | state = .oso_open; | 820 | ofile = sym.n_strx; |
| 940 | ofile = sym.n_strx; | 821 | }, |
| 941 | }, | 822 | else => return error.InvalidDebugInfo, |
| 942 | else => return error.InvalidDebugInfo, | | |
| 943 | } | | |
| 944 | }, | 823 | }, |
| 945 | macho.N_BNSYM => { | 824 | .bnsym => switch (state) { |
| 946 | switch (state) { | 825 | .oso_open, .ensym => { |
| 947 | .oso_open, .ensym => { | 826 | state = .bnsym; |
| 948 | state = .bnsym; | 827 | last_sym = .{ |
| 949 | last_sym = .{ | 828 | .strx = 0, |
| 950 | .strx = 0, | 829 | .addr = sym.n_value, |
| 951 | .addr = sym.n_value, | 830 | .size = 0, |
| 952 | .size = 0, | 831 | .ofile = ofile, |
| 953 | .ofile = ofile, | 832 | }; |
| 954 | }; | 833 | }, |
| 955 | }, | 834 | else => return error.InvalidDebugInfo, |
| 956 | else => return error.InvalidDebugInfo, | | |
| 957 | } | | |
| 958 | }, | 835 | }, |
| 959 | macho.N_FUN => { | 836 | .fun => switch (state) { |
| 960 | switch (state) { | 837 | .bnsym => { |
| 961 | .bnsym => { | 838 | state = .fun_strx; |
| 962 | state = .fun_strx; | 839 | last_sym.strx = sym.n_strx; |
| 963 | last_sym.strx = sym.n_strx; | 840 | }, |
| 964 | }, | 841 | .fun_strx => { |
| 965 | .fun_strx => { | 842 | state = .fun_size; |
| 966 | state = .fun_size; | 843 | last_sym.size = @intCast(sym.n_value); |
| 967 | last_sym.size = @as(u32, @intCast(sym.n_value)); | 844 | }, |
| 968 | }, | 845 | else => return error.InvalidDebugInfo, |
| 969 | else => return error.InvalidDebugInfo, | | |
| 970 | } | | |
| 971 | }, | 846 | }, |
| 972 | macho.N_ENSYM => { | 847 | .ensym => switch (state) { |
| 973 | switch (state) { | 848 | .fun_size => { |
| 974 | .fun_size => { | 849 | state = .ensym; |
| 975 | state = .ensym; | 850 | symbols.appendAssumeCapacity(last_sym); |
| 976 | symbols_buf[symbol_index] = last_sym; | 851 | }, |
| 977 | symbol_index += 1; | 852 | else => return error.InvalidDebugInfo, |
| 978 | }, | | |
| 979 | else => return error.InvalidDebugInfo, | | |
| 980 | } | | |
| 981 | }, | 853 | }, |
| 982 | macho.N_SO => { | 854 | .so => switch (state) { |
| 983 | switch (state) { | 855 | .init, .oso_close => {}, |
| 984 | .init, .oso_close => {}, | 856 | .oso_open, .ensym => { |
| 985 | .oso_open, .ensym => { | 857 | state = .oso_close; |
| 986 | state = .oso_close; | 858 | }, |
| 987 | }, | 859 | else => return error.InvalidDebugInfo, |
| 988 | else => return error.InvalidDebugInfo, | | |
| 989 | } | | |
| 990 | }, | 860 | }, |
| 991 | else => {}, | 861 | else => {}, |
| 992 | } | 862 | } |
| ... | @@ -998,560 +868,187 @@ fn readMachODebugInfo(allocator: Allocator, macho_file: File) !Module { | ... | @@ -998,560 +868,187 @@ fn readMachODebugInfo(allocator: Allocator, macho_file: File) !Module { |
| 998 | else => return error.InvalidDebugInfo, | 868 | else => return error.InvalidDebugInfo, |
| 999 | } | 869 | } |
| 1000 | | 870 | |
| 1001 | const symbols = try allocator.realloc(symbols_buf, symbol_index); | 871 | const symbols_slice = try symbols.toOwnedSlice(gpa); |
| | 872 | errdefer gpa.free(symbols_slice); |
| 1002 | | 873 | |
| 1003 | // Even though lld emits symbols in ascending order, this debug code | 874 | // Even though lld emits symbols in ascending order, this debug code |
| 1004 | // should work for programs linked in any valid way. | 875 | // should work for programs linked in any valid way. |
| 1005 | // This sort is so that we can binary search later. | 876 | // This sort is so that we can binary search later. |
| 1006 | mem.sort(MachoSymbol, symbols, {}, MachoSymbol.addressLessThan); | 877 | mem.sort(MachoSymbol, symbols_slice, {}, MachoSymbol.addressLessThan); |
| 1007 | | 878 | |
| 1008 | return .{ | 879 | di.* = .{ |
| 1009 | .base_address = undefined, | 880 | .unwind_info = module.unwind_info, |
| 1010 | .vmaddr_slide = undefined, | 881 | .eh_frame = module.eh_frame, |
| 1011 | .mapped_memory = mapped_mem, | 882 | .mapped_memory = mapped_mem, |
| 1012 | .ofiles = Module.OFileTable.init(allocator), | 883 | .symbols = symbols_slice, |
| 1013 | .symbols = symbols, | | |
| 1014 | .strings = strings, | 884 | .strings = strings, |
| | 885 | .ofiles = .empty, |
| 1015 | }; | 886 | }; |
| 1016 | } | 887 | } |
| 1017 | | 888 | |
| 1018 | fn readCoffDebugInfo(allocator: Allocator, coff_obj: *coff.Coff) !Module { | | |
| 1019 | var di: Module = .{ | | |
| 1020 | .base_address = undefined, | | |
| 1021 | .coff_image_base = coff_obj.getImageBase(), | | |
| 1022 | .coff_section_headers = undefined, | | |
| 1023 | }; | | |
| 1024 | | | |
| 1025 | if (coff_obj.getSectionByName(".debug_info")) |_| { | | |
| 1026 | // This coff file has embedded DWARF debug info | | |
| 1027 | var sections: Dwarf.SectionArray = Dwarf.null_section_array; | | |
| 1028 | errdefer for (sections) |section| if (section) |s| if (s.owned) allocator.free(s.data); | | |
| 1029 | | | |
| 1030 | inline for (@typeInfo(Dwarf.Section.Id).@"enum".fields, 0..) |section, i| { | | |
| 1031 | sections[i] = if (coff_obj.getSectionByName("." ++ section.name)) |section_header| blk: { | | |
| 1032 | break :blk .{ | | |
| 1033 | .data = try coff_obj.getSectionDataAlloc(section_header, allocator), | | |
| 1034 | .virtual_address = section_header.virtual_address, | | |
| 1035 | .owned = true, | | |
| 1036 | }; | | |
| 1037 | } else null; | | |
| 1038 | } | | |
| 1039 | | | |
| 1040 | var dwarf: Dwarf = .{ | | |
| 1041 | .endian = native_endian, | | |
| 1042 | .sections = sections, | | |
| 1043 | .is_macho = false, | | |
| 1044 | }; | | |
| 1045 | | | |
| 1046 | try Dwarf.open(&dwarf, allocator); | | |
| 1047 | di.dwarf = dwarf; | | |
| 1048 | } | | |
| 1049 | | | |
| 1050 | const raw_path = try coff_obj.getPdbPath() orelse return di; | | |
| 1051 | const path = blk: { | | |
| 1052 | if (fs.path.isAbsolute(raw_path)) { | | |
| 1053 | break :blk raw_path; | | |
| 1054 | } else { | | |
| 1055 | const self_dir = try fs.selfExeDirPathAlloc(allocator); | | |
| 1056 | defer allocator.free(self_dir); | | |
| 1057 | break :blk try fs.path.join(allocator, &.{ self_dir, raw_path }); | | |
| 1058 | } | | |
| 1059 | }; | | |
| 1060 | defer if (path.ptr != raw_path.ptr) allocator.free(path); | | |
| 1061 | | | |
| 1062 | di.pdb = Pdb.init(allocator, path) catch |err| switch (err) { | | |
| 1063 | error.FileNotFound, error.IsDir => { | | |
| 1064 | if (di.dwarf == null) return error.MissingDebugInfo; | | |
| 1065 | return di; | | |
| 1066 | }, | | |
| 1067 | else => return err, | | |
| 1068 | }; | | |
| 1069 | try di.pdb.?.parseInfoStream(); | | |
| 1070 | try di.pdb.?.parseDbiStream(); | | |
| 1071 | | | |
| 1072 | if (!mem.eql(u8, &coff_obj.guid, &di.pdb.?.guid) or coff_obj.age != di.pdb.?.age) | | |
| 1073 | return error.InvalidDebugInfo; | | |
| 1074 | | | |
| 1075 | // Only used by the pdb path | | |
| 1076 | di.coff_section_headers = try coff_obj.getSectionHeadersAlloc(allocator); | | |
| 1077 | errdefer allocator.free(di.coff_section_headers); | | |
| 1078 | | | |
| 1079 | return di; | | |
| 1080 | } | | |
| 1081 | | | |
| 1082 | /// Reads debug info from an ELF file, or the current binary if none in specified. | | |
| 1083 | /// If the required sections aren't present but a reference to external debug info is, | | |
| 1084 | /// then this this function will recurse to attempt to load the debug sections from | | |
| 1085 | /// an external file. | | |
| 1086 | pub fn readElfDebugInfo( | | |
| 1087 | em: *Dwarf.ElfModule, | | |
| 1088 | allocator: Allocator, | | |
| 1089 | elf_filename: ?[]const u8, | | |
| 1090 | build_id: ?[]const u8, | | |
| 1091 | parent_sections: *Dwarf.SectionArray, | | |
| 1092 | ) !void { | | |
| 1093 | const elf_file = (if (elf_filename) |filename| blk: { | | |
| 1094 | break :blk fs.cwd().openFile(filename, .{}); | | |
| 1095 | } else fs.openSelfExe(.{})) catch |err| switch (err) { | | |
| 1096 | error.FileNotFound => return error.MissingDebugInfo, | | |
| 1097 | else => return err, | | |
| 1098 | }; | | |
| 1099 | | | |
| 1100 | const mapped_mem = try mapWholeFile(elf_file); | | |
| 1101 | return em.load( | | |
| 1102 | allocator, | | |
| 1103 | mapped_mem, | | |
| 1104 | build_id, | | |
| 1105 | null, | | |
| 1106 | parent_sections, | | |
| 1107 | null, | | |
| 1108 | elf_filename, | | |
| 1109 | ); | | |
| 1110 | } | | |
| 1111 | | | |
| 1112 | const MachoSymbol = struct { | 889 | const MachoSymbol = struct { |
| 1113 | strx: u32, | 890 | strx: u32, |
| 1114 | addr: u64, | 891 | addr: u64, |
| 1115 | size: u32, | 892 | size: u32, |
| 1116 | ofile: u32, | 893 | ofile: u32, |
| 1117 | | | |
| 1118 | /// Returns the address from the macho file | | |
| 1119 | fn address(self: MachoSymbol) u64 { | | |
| 1120 | return self.addr; | | |
| 1121 | } | | |
| 1122 | | | |
| 1123 | fn addressLessThan(context: void, lhs: MachoSymbol, rhs: MachoSymbol) bool { | 894 | fn addressLessThan(context: void, lhs: MachoSymbol, rhs: MachoSymbol) bool { |
| 1124 | _ = context; | 895 | _ = context; |
| 1125 | return lhs.addr < rhs.addr; | 896 | return lhs.addr < rhs.addr; |
| 1126 | } | 897 | } |
| 1127 | }; | 898 | /// Assumes that `symbols` is sorted in order of ascending `addr`. |
| 1128 | | 899 | fn find(symbols: []const MachoSymbol, address: usize) ?*const MachoSymbol { |
| 1129 | /// Takes ownership of file, even on error. | 900 | if (symbols.len == 0) return null; // no potential match |
| 1130 | /// TODO it's weird to take ownership even on error, rework this code. | 901 | if (address < symbols[0].addr) return null; // address is before the lowest-address symbol |
| 1131 | fn mapWholeFile(file: File) ![]align(std.heap.page_size_min) const u8 { | | |
| 1132 | defer file.close(); | | |
| 1133 | | | |
| 1134 | const file_len = math.cast(usize, try file.getEndPos()) orelse math.maxInt(usize); | | |
| 1135 | const mapped_mem = try posix.mmap( | | |
| 1136 | null, | | |
| 1137 | file_len, | | |
| 1138 | posix.PROT.READ, | | |
| 1139 | .{ .TYPE = .SHARED }, | | |
| 1140 | file.handle, | | |
| 1141 | 0, | | |
| 1142 | ); | | |
| 1143 | errdefer posix.munmap(mapped_mem); | | |
| 1144 | | | |
| 1145 | return mapped_mem; | | |
| 1146 | } | | |
| 1147 | | | |
| 1148 | fn machoSearchSymbols(symbols: []const MachoSymbol, address: usize) ?*const MachoSymbol { | | |
| 1149 | var min: usize = 0; | | |
| 1150 | var max: usize = symbols.len - 1; | | |
| 1151 | while (min < max) { | | |
| 1152 | const mid = min + (max - min) / 2; | | |
| 1153 | const curr = &symbols[mid]; | | |
| 1154 | const next = &symbols[mid + 1]; | | |
| 1155 | if (address >= next.address()) { | | |
| 1156 | min = mid + 1; | | |
| 1157 | } else if (address < curr.address()) { | | |
| 1158 | max = mid; | | |
| 1159 | } else { | | |
| 1160 | return curr; | | |
| 1161 | } | | |
| 1162 | } | | |
| 1163 | | | |
| 1164 | const max_sym = &symbols[symbols.len - 1]; | | |
| 1165 | if (address >= max_sym.address()) | | |
| 1166 | return max_sym; | | |
| 1167 | | | |
| 1168 | return null; | | |
| 1169 | } | | |
| 1170 | | | |
| 1171 | test machoSearchSymbols { | | |
| 1172 | const symbols = [_]MachoSymbol{ | | |
| 1173 | .{ .addr = 100, .strx = undefined, .size = undefined, .ofile = undefined }, | | |
| 1174 | .{ .addr = 200, .strx = undefined, .size = undefined, .ofile = undefined }, | | |
| 1175 | .{ .addr = 300, .strx = undefined, .size = undefined, .ofile = undefined }, | | |
| 1176 | }; | | |
| 1177 | | | |
| 1178 | try testing.expectEqual(null, machoSearchSymbols(&symbols, 0)); | | |
| 1179 | try testing.expectEqual(null, machoSearchSymbols(&symbols, 99)); | | |
| 1180 | try testing.expectEqual(&symbols[0], machoSearchSymbols(&symbols, 100).?); | | |
| 1181 | try testing.expectEqual(&symbols[0], machoSearchSymbols(&symbols, 150).?); | | |
| 1182 | try testing.expectEqual(&symbols[0], machoSearchSymbols(&symbols, 199).?); | | |
| 1183 | | | |
| 1184 | try testing.expectEqual(&symbols[1], machoSearchSymbols(&symbols, 200).?); | | |
| 1185 | try testing.expectEqual(&symbols[1], machoSearchSymbols(&symbols, 250).?); | | |
| 1186 | try testing.expectEqual(&symbols[1], machoSearchSymbols(&symbols, 299).?); | | |
| 1187 | | | |
| 1188 | try testing.expectEqual(&symbols[2], machoSearchSymbols(&symbols, 300).?); | | |
| 1189 | try testing.expectEqual(&symbols[2], machoSearchSymbols(&symbols, 301).?); | | |
| 1190 | try testing.expectEqual(&symbols[2], machoSearchSymbols(&symbols, 5000).?); | | |
| 1191 | } | | |
| 1192 | | | |
| 1193 | /// Unwind a frame using MachO compact unwind info (from __unwind_info). | | |
| 1194 | /// If the compact encoding can't encode a way to unwind a frame, it will | | |
| 1195 | /// defer unwinding to DWARF, in which case `.eh_frame` will be used if available. | | |
| 1196 | fn unwindFrameMachO( | | |
| 1197 | allocator: Allocator, | | |
| 1198 | base_address: usize, | | |
| 1199 | context: *UnwindContext, | | |
| 1200 | unwind_info: []const u8, | | |
| 1201 | eh_frame: ?[]const u8, | | |
| 1202 | ) !usize { | | |
| 1203 | const header = std.mem.bytesAsValue( | | |
| 1204 | macho.unwind_info_section_header, | | |
| 1205 | unwind_info[0..@sizeOf(macho.unwind_info_section_header)], | | |
| 1206 | ); | | |
| 1207 | const indices = std.mem.bytesAsSlice( | | |
| 1208 | macho.unwind_info_section_header_index_entry, | | |
| 1209 | unwind_info[header.indexSectionOffset..][0 .. header.indexCount * @sizeOf(macho.unwind_info_section_header_index_entry)], | | |
| 1210 | ); | | |
| 1211 | if (indices.len == 0) return error.MissingUnwindInfo; | | |
| 1212 | | | |
| 1213 | const mapped_pc = context.pc - base_address; | | |
| 1214 | const second_level_index = blk: { | | |
| 1215 | var left: usize = 0; | 902 | var left: usize = 0; |
| 1216 | var len: usize = indices.len; | 903 | var len: usize = symbols.len; |
| 1217 | | | |
| 1218 | while (len > 1) { | 904 | while (len > 1) { |
| 1219 | const mid = left + len / 2; | 905 | const mid = left + len / 2; |
| 1220 | const offset = indices[mid].functionOffset; | 906 | if (address < symbols[mid].addr) { |
| 1221 | if (mapped_pc < offset) { | | |
| 1222 | len /= 2; | 907 | len /= 2; |
| 1223 | } else { | 908 | } else { |
| 1224 | left = mid; | 909 | left = mid; |
| 1225 | if (mapped_pc == offset) break; | | |
| 1226 | len -= len / 2; | 910 | len -= len / 2; |
| 1227 | } | 911 | } |
| 1228 | } | 912 | } |
| | 913 | return &symbols[left]; |
| | 914 | } |
| 1229 | | 915 | |
| 1230 | // Last index is a sentinel containing the highest address as its functionOffset | 916 | test find { |
| 1231 | if (indices[left].secondLevelPagesSectionOffset == 0) return error.MissingUnwindInfo; | 917 | const symbols: []const MachoSymbol = &.{ |
| 1232 | break :blk &indices[left]; | 918 | .{ .addr = 100, .strx = undefined, .size = undefined, .ofile = undefined }, |
| 1233 | }; | 919 | .{ .addr = 200, .strx = undefined, .size = undefined, .ofile = undefined }, |
| 1234 | | 920 | .{ .addr = 300, .strx = undefined, .size = undefined, .ofile = undefined }, |
| 1235 | const common_encodings = std.mem.bytesAsSlice( | 921 | }; |
| 1236 | macho.compact_unwind_encoding_t, | | |
| 1237 | unwind_info[header.commonEncodingsArraySectionOffset..][0 .. header.commonEncodingsArrayCount * @sizeOf(macho.compact_unwind_encoding_t)], | | |
| 1238 | ); | | |
| 1239 | | | |
| 1240 | const start_offset = second_level_index.secondLevelPagesSectionOffset; | | |
| 1241 | const kind = std.mem.bytesAsValue( | | |
| 1242 | macho.UNWIND_SECOND_LEVEL, | | |
| 1243 | unwind_info[start_offset..][0..@sizeOf(macho.UNWIND_SECOND_LEVEL)], | | |
| 1244 | ); | | |
| 1245 | | | |
| 1246 | const entry: struct { | | |
| 1247 | function_offset: usize, | | |
| 1248 | raw_encoding: u32, | | |
| 1249 | } = switch (kind.*) { | | |
| 1250 | .REGULAR => blk: { | | |
| 1251 | const page_header = std.mem.bytesAsValue( | | |
| 1252 | macho.unwind_info_regular_second_level_page_header, | | |
| 1253 | unwind_info[start_offset..][0..@sizeOf(macho.unwind_info_regular_second_level_page_header)], | | |
| 1254 | ); | | |
| 1255 | | | |
| 1256 | const entries = std.mem.bytesAsSlice( | | |
| 1257 | macho.unwind_info_regular_second_level_entry, | | |
| 1258 | unwind_info[start_offset + page_header.entryPageOffset ..][0 .. page_header.entryCount * @sizeOf(macho.unwind_info_regular_second_level_entry)], | | |
| 1259 | ); | | |
| 1260 | if (entries.len == 0) return error.InvalidUnwindInfo; | | |
| 1261 | | | |
| 1262 | var left: usize = 0; | | |
| 1263 | var len: usize = entries.len; | | |
| 1264 | while (len > 1) { | | |
| 1265 | const mid = left + len / 2; | | |
| 1266 | const offset = entries[mid].functionOffset; | | |
| 1267 | if (mapped_pc < offset) { | | |
| 1268 | len /= 2; | | |
| 1269 | } else { | | |
| 1270 | left = mid; | | |
| 1271 | if (mapped_pc == offset) break; | | |
| 1272 | len -= len / 2; | | |
| 1273 | } | | |
| 1274 | } | | |
| 1275 | | 922 | |
| 1276 | break :blk .{ | 923 | try testing.expectEqual(null, find(symbols, 0)); |
| 1277 | .function_offset = entries[left].functionOffset, | 924 | try testing.expectEqual(null, find(symbols, 99)); |
| 1278 | .raw_encoding = entries[left].encoding, | 925 | try testing.expectEqual(&symbols[0], find(symbols, 100).?); |
| 1279 | }; | 926 | try testing.expectEqual(&symbols[0], find(symbols, 150).?); |
| 1280 | }, | 927 | try testing.expectEqual(&symbols[0], find(symbols, 199).?); |
| 1281 | .COMPRESSED => blk: { | | |
| 1282 | const page_header = std.mem.bytesAsValue( | | |
| 1283 | macho.unwind_info_compressed_second_level_page_header, | | |
| 1284 | unwind_info[start_offset..][0..@sizeOf(macho.unwind_info_compressed_second_level_page_header)], | | |
| 1285 | ); | | |
| 1286 | | 928 | |
| 1287 | const entries = std.mem.bytesAsSlice( | 929 | try testing.expectEqual(&symbols[1], find(symbols, 200).?); |
| 1288 | macho.UnwindInfoCompressedEntry, | 930 | try testing.expectEqual(&symbols[1], find(symbols, 250).?); |
| 1289 | unwind_info[start_offset + page_header.entryPageOffset ..][0 .. page_header.entryCount * @sizeOf(macho.UnwindInfoCompressedEntry)], | 931 | try testing.expectEqual(&symbols[1], find(symbols, 299).?); |
| 1290 | ); | | |
| 1291 | if (entries.len == 0) return error.InvalidUnwindInfo; | | |
| 1292 | | 932 | |
| 1293 | var left: usize = 0; | 933 | try testing.expectEqual(&symbols[2], find(symbols, 300).?); |
| 1294 | var len: usize = entries.len; | 934 | try testing.expectEqual(&symbols[2], find(symbols, 301).?); |
| 1295 | while (len > 1) { | 935 | try testing.expectEqual(&symbols[2], find(symbols, 5000).?); |
| 1296 | const mid = left + len / 2; | 936 | } |
| 1297 | const offset = second_level_index.functionOffset + entries[mid].funcOffset; | 937 | }; |
| 1298 | if (mapped_pc < offset) { | 938 | test { |
| 1299 | len /= 2; | 939 | _ = MachoSymbol; |
| 1300 | } else { | 940 | } |
| 1301 | left = mid; | | |
| 1302 | if (mapped_pc == offset) break; | | |
| 1303 | len -= len / 2; | | |
| 1304 | } | | |
| 1305 | } | | |
| 1306 | | 941 | |
| 1307 | const entry = entries[left]; | 942 | pub const UnwindContext = struct { |
| 1308 | const function_offset = second_level_index.functionOffset + entry.funcOffset; | 943 | gpa: Allocator, |
| 1309 | if (entry.encodingIndex < header.commonEncodingsArrayCount) { | 944 | cfa: ?usize, |
| 1310 | if (entry.encodingIndex >= common_encodings.len) return error.InvalidUnwindInfo; | 945 | pc: usize, |
| 1311 | break :blk .{ | 946 | thread_context: *std.debug.ThreadContext, |
| 1312 | .function_offset = function_offset, | 947 | reg_context: Dwarf.abi.RegisterContext, |
| 1313 | .raw_encoding = common_encodings[entry.encodingIndex], | 948 | vm: Dwarf.Unwind.VirtualMachine, |
| 1314 | }; | 949 | stack_machine: Dwarf.expression.StackMachine(.{ .call_frame_context = true }), |
| 1315 | } else { | | |
| 1316 | const local_index = try math.sub( | | |
| 1317 | u8, | | |
| 1318 | entry.encodingIndex, | | |
| 1319 | math.cast(u8, header.commonEncodingsArrayCount) orelse return error.InvalidUnwindInfo, | | |
| 1320 | ); | | |
| 1321 | const local_encodings = std.mem.bytesAsSlice( | | |
| 1322 | macho.compact_unwind_encoding_t, | | |
| 1323 | unwind_info[start_offset + page_header.encodingsPageOffset ..][0 .. page_header.encodingsCount * @sizeOf(macho.compact_unwind_encoding_t)], | | |
| 1324 | ); | | |
| 1325 | if (local_index >= local_encodings.len) return error.InvalidUnwindInfo; | | |
| 1326 | break :blk .{ | | |
| 1327 | .function_offset = function_offset, | | |
| 1328 | .raw_encoding = local_encodings[local_index], | | |
| 1329 | }; | | |
| 1330 | } | | |
| 1331 | }, | | |
| 1332 | else => return error.InvalidUnwindInfo, | | |
| 1333 | }; | | |
| 1334 | | 950 | |
| 1335 | if (entry.raw_encoding == 0) return error.NoUnwindInfo; | 951 | pub fn init(gpa: Allocator, thread_context: *std.debug.ThreadContext) !UnwindContext { |
| 1336 | const reg_context = Dwarf.abi.RegisterContext{ | 952 | comptime assert(supports_unwinding); |
| 1337 | .eh_frame = false, | | |
| 1338 | .is_macho = true, | | |
| 1339 | }; | | |
| 1340 | | 953 | |
| 1341 | const encoding: macho.CompactUnwindEncoding = @bitCast(entry.raw_encoding); | 954 | const pc = stripInstructionPtrAuthCode( |
| 1342 | const new_ip = switch (builtin.cpu.arch) { | 955 | (try regValueNative(thread_context, ip_reg_num, null)).*, |
| 1343 | .x86_64 => switch (encoding.mode.x86_64) { | 956 | ); |
| 1344 | .OLD => return error.UnimplementedUnwindEncoding, | | |
| 1345 | .RBP_FRAME => blk: { | | |
| 1346 | const regs: [5]u3 = .{ | | |
| 1347 | encoding.value.x86_64.frame.reg0, | | |
| 1348 | encoding.value.x86_64.frame.reg1, | | |
| 1349 | encoding.value.x86_64.frame.reg2, | | |
| 1350 | encoding.value.x86_64.frame.reg3, | | |
| 1351 | encoding.value.x86_64.frame.reg4, | | |
| 1352 | }; | | |
| 1353 | | 957 | |
| 1354 | const frame_offset = encoding.value.x86_64.frame.frame_offset * @sizeOf(usize); | 958 | const context_copy = try gpa.create(std.debug.ThreadContext); |
| 1355 | var max_reg: usize = 0; | 959 | std.debug.copyContext(thread_context, context_copy); |
| 1356 | inline for (regs, 0..) |reg, i| { | | |
| 1357 | if (reg > 0) max_reg = i; | | |
| 1358 | } | | |
| 1359 | | 960 | |
| 1360 | const fp = (try regValueNative(context.thread_context, fpRegNum(reg_context), reg_context)).*; | 961 | return .{ |
| 1361 | const new_sp = fp + 2 * @sizeOf(usize); | 962 | .gpa = gpa, |
| | 963 | .cfa = null, |
| | 964 | .pc = pc, |
| | 965 | .thread_context = context_copy, |
| | 966 | .reg_context = undefined, |
| | 967 | .vm = .{}, |
| | 968 | .stack_machine = .{}, |
| | 969 | }; |
| | 970 | } |
| 1362 | | 971 | |
| 1363 | const ip_ptr = fp + @sizeOf(usize); | 972 | pub fn deinit(self: *UnwindContext) void { |
| 1364 | const new_ip = @as(*const usize, @ptrFromInt(ip_ptr)).*; | 973 | self.vm.deinit(self.gpa); |
| 1365 | const new_fp = @as(*const usize, @ptrFromInt(fp)).*; | 974 | self.stack_machine.deinit(self.gpa); |
| | 975 | self.gpa.destroy(self.thread_context); |
| | 976 | self.* = undefined; |
| | 977 | } |
| 1366 | | 978 | |
| 1367 | (try regValueNative(context.thread_context, fpRegNum(reg_context), reg_context)).* = new_fp; | 979 | pub fn getFp(self: *const UnwindContext) !usize { |
| 1368 | (try regValueNative(context.thread_context, spRegNum(reg_context), reg_context)).* = new_sp; | 980 | return (try regValueNative(self.thread_context, fpRegNum(self.reg_context), self.reg_context)).*; |
| 1369 | (try regValueNative(context.thread_context, ip_reg_num, reg_context)).* = new_ip; | 981 | } |
| 1370 | | 982 | |
| 1371 | for (regs, 0..) |reg, i| { | 983 | /// Resolves the register rule and places the result into `out` (see regBytes) |
| 1372 | if (reg == 0) continue; | 984 | pub fn resolveRegisterRule( |
| 1373 | const addr = fp - frame_offset + i * @sizeOf(usize); | 985 | context: *UnwindContext, |
| 1374 | const reg_number = try Dwarf.compactUnwindToDwarfRegNumber(reg); | 986 | col: Dwarf.Unwind.VirtualMachine.Column, |
| 1375 | (try regValueNative(context.thread_context, reg_number, reg_context)).* = @as(*const usize, @ptrFromInt(addr)).*; | 987 | expression_context: std.debug.Dwarf.expression.Context, |
| | 988 | out: []u8, |
| | 989 | ) !void { |
| | 990 | switch (col.rule) { |
| | 991 | .default => { |
| | 992 | const register = col.register orelse return error.InvalidRegister; |
| | 993 | // The default type is usually undefined, but can be overriden by ABI authors. |
| | 994 | // See the doc comment on `Dwarf.Unwind.VirtualMachine.RegisterRule.default`. |
| | 995 | if (builtin.cpu.arch.isAARCH64() and register >= 19 and register <= 18) { |
| | 996 | // Callee-saved registers are initialized as if they had the .same_value rule |
| | 997 | const src = try regBytes(context.thread_context, register, context.reg_context); |
| | 998 | if (src.len != out.len) return error.RegisterSizeMismatch; |
| | 999 | @memcpy(out, src); |
| | 1000 | return; |
| 1376 | } | 1001 | } |
| 1377 | | 1002 | @memset(out, undefined); |
| 1378 | break :blk new_ip; | | |
| 1379 | }, | 1003 | }, |
| 1380 | .STACK_IMMD, | 1004 | .undefined => { |
| 1381 | .STACK_IND, | 1005 | @memset(out, undefined); |
| 1382 | => blk: { | | |
| 1383 | const sp = (try regValueNative(context.thread_context, spRegNum(reg_context), reg_context)).*; | | |
| 1384 | const stack_size = if (encoding.mode.x86_64 == .STACK_IMMD) | | |
| 1385 | @as(usize, encoding.value.x86_64.frameless.stack.direct.stack_size) * @sizeOf(usize) | | |
| 1386 | else stack_size: { | | |
| 1387 | // In .STACK_IND, the stack size is inferred from the subq instruction at the beginning of the function. | | |
| 1388 | const sub_offset_addr = | | |
| 1389 | base_address + | | |
| 1390 | entry.function_offset + | | |
| 1391 | encoding.value.x86_64.frameless.stack.indirect.sub_offset; | | |
| 1392 | | | |
| 1393 | // `sub_offset_addr` points to the offset of the literal within the instruction | | |
| 1394 | const sub_operand = @as(*align(1) const u32, @ptrFromInt(sub_offset_addr)).*; | | |
| 1395 | break :stack_size sub_operand + @sizeOf(usize) * @as(usize, encoding.value.x86_64.frameless.stack.indirect.stack_adjust); | | |
| 1396 | }; | | |
| 1397 | | | |
| 1398 | // Decode the Lehmer-coded sequence of registers. | | |
| 1399 | // For a description of the encoding see lib/libc/include/any-macos.13-any/mach-o/compact_unwind_encoding.h | | |
| 1400 | | | |
| 1401 | // Decode the variable-based permutation number into its digits. Each digit represents | | |
| 1402 | // an index into the list of register numbers that weren't yet used in the sequence at | | |
| 1403 | // the time the digit was added. | | |
| 1404 | const reg_count = encoding.value.x86_64.frameless.stack_reg_count; | | |
| 1405 | const ip_ptr = if (reg_count > 0) reg_blk: { | | |
| 1406 | var digits: [6]u3 = undefined; | | |
| 1407 | var accumulator: usize = encoding.value.x86_64.frameless.stack_reg_permutation; | | |
| 1408 | var base: usize = 2; | | |
| 1409 | for (0..reg_count) |i| { | | |
| 1410 | const div = accumulator / base; | | |
| 1411 | digits[digits.len - 1 - i] = @intCast(accumulator - base * div); | | |
| 1412 | accumulator = div; | | |
| 1413 | base += 1; | | |
| 1414 | } | | |
| 1415 | | | |
| 1416 | const reg_numbers = [_]u3{ 1, 2, 3, 4, 5, 6 }; | | |
| 1417 | var registers: [reg_numbers.len]u3 = undefined; | | |
| 1418 | var used_indices = [_]bool{false} ** reg_numbers.len; | | |
| 1419 | for (digits[digits.len - reg_count ..], 0..) |target_unused_index, i| { | | |
| 1420 | var unused_count: u8 = 0; | | |
| 1421 | const unused_index = for (used_indices, 0..) |used, index| { | | |
| 1422 | if (!used) { | | |
| 1423 | if (target_unused_index == unused_count) break index; | | |
| 1424 | unused_count += 1; | | |
| 1425 | } | | |
| 1426 | } else unreachable; | | |
| 1427 | | | |
| 1428 | registers[i] = reg_numbers[unused_index]; | | |
| 1429 | used_indices[unused_index] = true; | | |
| 1430 | } | | |
| 1431 | | | |
| 1432 | var reg_addr = sp + stack_size - @sizeOf(usize) * @as(usize, reg_count + 1); | | |
| 1433 | for (0..reg_count) |i| { | | |
| 1434 | const reg_number = try Dwarf.compactUnwindToDwarfRegNumber(registers[i]); | | |
| 1435 | (try regValueNative(context.thread_context, reg_number, reg_context)).* = @as(*const usize, @ptrFromInt(reg_addr)).*; | | |
| 1436 | reg_addr += @sizeOf(usize); | | |
| 1437 | } | | |
| 1438 | | | |
| 1439 | break :reg_blk reg_addr; | | |
| 1440 | } else sp + stack_size - @sizeOf(usize); | | |
| 1441 | | | |
| 1442 | const new_ip = @as(*const usize, @ptrFromInt(ip_ptr)).*; | | |
| 1443 | const new_sp = ip_ptr + @sizeOf(usize); | | |
| 1444 | | | |
| 1445 | (try regValueNative(context.thread_context, spRegNum(reg_context), reg_context)).* = new_sp; | | |
| 1446 | (try regValueNative(context.thread_context, ip_reg_num, reg_context)).* = new_ip; | | |
| 1447 | | | |
| 1448 | break :blk new_ip; | | |
| 1449 | }, | 1006 | }, |
| 1450 | .DWARF => { | 1007 | .same_value => { |
| 1451 | return unwindFrameMachODwarf(allocator, base_address, context, eh_frame orelse return error.MissingEhFrame, @intCast(encoding.value.x86_64.dwarf)); | 1008 | // TODO: This copy could be eliminated if callers always copy the state then call this function to update it |
| | 1009 | const register = col.register orelse return error.InvalidRegister; |
| | 1010 | const src = try regBytes(context.thread_context, register, context.reg_context); |
| | 1011 | if (src.len != out.len) return error.RegisterSizeMismatch; |
| | 1012 | @memcpy(out, src); |
| 1452 | }, | 1013 | }, |
| 1453 | }, | 1014 | .offset => |offset| { |
| 1454 | .aarch64, .aarch64_be => switch (encoding.mode.arm64) { | 1015 | if (context.cfa) |cfa| { |
| 1455 | .OLD => return error.UnimplementedUnwindEncoding, | 1016 | const addr = try applyOffset(cfa, offset); |
| 1456 | .FRAMELESS => blk: { | 1017 | const ptr: *const usize = @ptrFromInt(addr); |
| 1457 | const sp = (try regValueNative(context.thread_context, spRegNum(reg_context), reg_context)).*; | 1018 | mem.writeInt(usize, out[0..@sizeOf(usize)], ptr.*, native_endian); |
| 1458 | const new_sp = sp + encoding.value.arm64.frameless.stack_size * 16; | 1019 | } else return error.InvalidCFA; |
| 1459 | const new_ip = (try regValueNative(context.thread_context, 30, reg_context)).*; | | |
| 1460 | (try regValueNative(context.thread_context, spRegNum(reg_context), reg_context)).* = new_sp; | | |
| 1461 | break :blk new_ip; | | |
| 1462 | }, | 1020 | }, |
| 1463 | .DWARF => { | 1021 | .val_offset => |offset| { |
| 1464 | return unwindFrameMachODwarf(allocator, base_address, context, eh_frame orelse return error.MissingEhFrame, @intCast(encoding.value.arm64.dwarf)); | 1022 | if (context.cfa) |cfa| { |
| | 1023 | mem.writeInt(usize, out[0..@sizeOf(usize)], try applyOffset(cfa, offset), native_endian); |
| | 1024 | } else return error.InvalidCFA; |
| 1465 | }, | 1025 | }, |
| 1466 | .FRAME => blk: { | 1026 | .register => |register| { |
| 1467 | const fp = (try regValueNative(context.thread_context, fpRegNum(reg_context), reg_context)).*; | 1027 | const src = try regBytes(context.thread_context, register, context.reg_context); |
| 1468 | const ip_ptr = fp + @sizeOf(usize); | 1028 | if (src.len != out.len) return error.RegisterSizeMismatch; |
| 1469 | | 1029 | @memcpy(out, try regBytes(context.thread_context, register, context.reg_context)); |
| 1470 | var reg_addr = fp - @sizeOf(usize); | | |
| 1471 | inline for (@typeInfo(@TypeOf(encoding.value.arm64.frame.x_reg_pairs)).@"struct".fields, 0..) |field, i| { | | |
| 1472 | if (@field(encoding.value.arm64.frame.x_reg_pairs, field.name) != 0) { | | |
| 1473 | (try regValueNative(context.thread_context, 19 + i, reg_context)).* = @as(*const usize, @ptrFromInt(reg_addr)).*; | | |
| 1474 | reg_addr += @sizeOf(usize); | | |
| 1475 | (try regValueNative(context.thread_context, 20 + i, reg_context)).* = @as(*const usize, @ptrFromInt(reg_addr)).*; | | |
| 1476 | reg_addr += @sizeOf(usize); | | |
| 1477 | } | | |
| 1478 | } | | |
| 1479 | | | |
| 1480 | inline for (@typeInfo(@TypeOf(encoding.value.arm64.frame.d_reg_pairs)).@"struct".fields, 0..) |field, i| { | | |
| 1481 | if (@field(encoding.value.arm64.frame.d_reg_pairs, field.name) != 0) { | | |
| 1482 | // Only the lower half of the 128-bit V registers are restored during unwinding | | |
| 1483 | @memcpy( | | |
| 1484 | try regBytes(context.thread_context, 64 + 8 + i, context.reg_context), | | |
| 1485 | std.mem.asBytes(@as(*const usize, @ptrFromInt(reg_addr))), | | |
| 1486 | ); | | |
| 1487 | reg_addr += @sizeOf(usize); | | |
| 1488 | @memcpy( | | |
| 1489 | try regBytes(context.thread_context, 64 + 9 + i, context.reg_context), | | |
| 1490 | std.mem.asBytes(@as(*const usize, @ptrFromInt(reg_addr))), | | |
| 1491 | ); | | |
| 1492 | reg_addr += @sizeOf(usize); | | |
| 1493 | } | | |
| 1494 | } | | |
| 1495 | | | |
| 1496 | const new_ip = @as(*const usize, @ptrFromInt(ip_ptr)).*; | | |
| 1497 | const new_fp = @as(*const usize, @ptrFromInt(fp)).*; | | |
| 1498 | | | |
| 1499 | (try regValueNative(context.thread_context, fpRegNum(reg_context), reg_context)).* = new_fp; | | |
| 1500 | (try regValueNative(context.thread_context, ip_reg_num, reg_context)).* = new_ip; | | |
| 1501 | | | |
| 1502 | break :blk new_ip; | | |
| 1503 | }, | 1030 | }, |
| 1504 | }, | 1031 | .expression => |expression| { |
| 1505 | else => return error.UnimplementedArch, | 1032 | context.stack_machine.reset(); |
| 1506 | }; | 1033 | const value = try context.stack_machine.run(expression, context.gpa, expression_context, context.cfa.?); |
| 1507 | | 1034 | const addr = if (value) |v| blk: { |
| 1508 | context.pc = stripInstructionPtrAuthCode(new_ip); | 1035 | if (v != .generic) return error.InvalidExpressionValue; |
| 1509 | if (context.pc > 0) context.pc -= 1; | 1036 | break :blk v.generic; |
| 1510 | return new_ip; | 1037 | } else return error.NoExpressionValue; |
| 1511 | } | 1038 | |
| 1512 | | 1039 | const ptr: *usize = @ptrFromInt(addr); |
| 1513 | pub const UnwindContext = struct { | 1040 | mem.writeInt(usize, out[0..@sizeOf(usize)], ptr.*, native_endian); |
| 1514 | allocator: Allocator, | 1041 | }, |
| 1515 | cfa: ?usize, | 1042 | .val_expression => |expression| { |
| 1516 | pc: usize, | 1043 | context.stack_machine.reset(); |
| 1517 | thread_context: *std.debug.ThreadContext, | 1044 | const value = try context.stack_machine.run(expression, context.gpa, expression_context, context.cfa.?); |
| 1518 | reg_context: Dwarf.abi.RegisterContext, | 1045 | if (value) |v| { |
| 1519 | vm: VirtualMachine, | 1046 | if (v != .generic) return error.InvalidExpressionValue; |
| 1520 | stack_machine: Dwarf.expression.StackMachine(.{ .call_frame_context = true }), | 1047 | mem.writeInt(usize, out[0..@sizeOf(usize)], v.generic, native_endian); |
| 1521 | | 1048 | } else return error.NoExpressionValue; |
| 1522 | pub fn init( | 1049 | }, |
| 1523 | allocator: Allocator, | 1050 | .architectural => return error.UnimplementedRegisterRule, |
| 1524 | thread_context: *std.debug.ThreadContext, | 1051 | } |
| 1525 | ) !UnwindContext { | | |
| 1526 | comptime assert(supports_unwinding); | | |
| 1527 | | | |
| 1528 | const pc = stripInstructionPtrAuthCode( | | |
| 1529 | (try regValueNative(thread_context, ip_reg_num, null)).*, | | |
| 1530 | ); | | |
| 1531 | | | |
| 1532 | const context_copy = try allocator.create(std.debug.ThreadContext); | | |
| 1533 | std.debug.copyContext(thread_context, context_copy); | | |
| 1534 | | | |
| 1535 | return .{ | | |
| 1536 | .allocator = allocator, | | |
| 1537 | .cfa = null, | | |
| 1538 | .pc = pc, | | |
| 1539 | .thread_context = context_copy, | | |
| 1540 | .reg_context = undefined, | | |
| 1541 | .vm = .{}, | | |
| 1542 | .stack_machine = .{}, | | |
| 1543 | }; | | |
| 1544 | } | | |
| 1545 | | | |
| 1546 | pub fn deinit(self: *UnwindContext) void { | | |
| 1547 | self.vm.deinit(self.allocator); | | |
| 1548 | self.stack_machine.deinit(self.allocator); | | |
| 1549 | self.allocator.destroy(self.thread_context); | | |
| 1550 | self.* = undefined; | | |
| 1551 | } | | |
| 1552 | | | |
| 1553 | pub fn getFp(self: *const UnwindContext) !usize { | | |
| 1554 | return (try regValueNative(self.thread_context, fpRegNum(self.reg_context), self.reg_context)).*; | | |
| 1555 | } | 1052 | } |
| 1556 | }; | 1053 | }; |
| 1557 | | 1054 | |
| ... | @@ -1584,113 +1081,30 @@ pub inline fn stripInstructionPtrAuthCode(ptr: usize) usize { | ... | @@ -1584,113 +1081,30 @@ pub inline fn stripInstructionPtrAuthCode(ptr: usize) usize { |
| 1584 | /// `explicit_fde_offset` is for cases where the FDE offset is known, such as when __unwind_info | 1081 | /// `explicit_fde_offset` is for cases where the FDE offset is known, such as when __unwind_info |
| 1585 | /// defers unwinding to DWARF. This is an offset into the `.eh_frame` section. | 1082 | /// defers unwinding to DWARF. This is an offset into the `.eh_frame` section. |
| 1586 | fn unwindFrameDwarf( | 1083 | fn unwindFrameDwarf( |
| 1587 | allocator: Allocator, | 1084 | unwind: *const Dwarf.Unwind, |
| 1588 | unwind: *Dwarf.Unwind, | 1085 | load_offset: usize, |
| 1589 | base_address: usize, | | |
| 1590 | context: *UnwindContext, | 1086 | context: *UnwindContext, |
| 1591 | explicit_fde_offset: ?usize, | 1087 | explicit_fde_offset: ?usize, |
| 1592 | ) !usize { | 1088 | ) !usize { |
| 1593 | if (!supports_unwinding) return error.UnsupportedCpuArchitecture; | 1089 | if (!supports_unwinding) return error.UnsupportedCpuArchitecture; |
| 1594 | if (context.pc == 0) return 0; | 1090 | if (context.pc == 0) return 0; |
| 1595 | | 1091 | |
| 1596 | // Find the FDE and CIE | 1092 | const pc_vaddr = context.pc - load_offset; |
| 1597 | const cie, const fde = if (explicit_fde_offset) |fde_offset| blk: { | | |
| 1598 | const frame_section = unwind.section(.eh_frame) orelse return error.MissingFDE; | | |
| 1599 | if (fde_offset >= frame_section.len) return error.MissingFDE; | | |
| 1600 | | | |
| 1601 | var fbr: std.Io.Reader = .fixed(frame_section); | | |
| 1602 | fbr.seek = fde_offset; | | |
| 1603 | | 1093 | |
| 1604 | const fde_entry_header = try Dwarf.Unwind.EntryHeader.read(&fbr, .eh_frame, native_endian); | 1094 | const fde_offset = explicit_fde_offset orelse try unwind.findFdeOffset( |
| 1605 | if (fde_entry_header.type != .fde) return error.MissingFDE; | 1095 | pc_vaddr, |
| | 1096 | @sizeOf(usize), |
| | 1097 | native_endian, |
| | 1098 | ) orelse return error.MissingDebugInfo; |
| | 1099 | const format, const cie, const fde = try unwind.loadFde(fde_offset, @sizeOf(usize), native_endian); |
| 1606 | | 1100 | |
| 1607 | const cie_offset = fde_entry_header.type.fde; | 1101 | // Check if this FDE *actually* includes the address. |
| 1608 | fbr.seek = @intCast(cie_offset); | 1102 | if (pc_vaddr < fde.pc_begin or pc_vaddr >= fde.pc_begin + fde.pc_range) return error.MissingDebugInfo; |
| 1609 | | | |
| 1610 | const cie_entry_header = try Dwarf.Unwind.EntryHeader.read(&fbr, .eh_frame, native_endian); | | |
| 1611 | if (cie_entry_header.type != .cie) return Dwarf.bad(); | | |
| 1612 | | | |
| 1613 | const cie = try Dwarf.Unwind.CommonInformationEntry.parse( | | |
| 1614 | cie_entry_header.entry_bytes, | | |
| 1615 | 0, | | |
| 1616 | true, | | |
| 1617 | cie_entry_header.format, | | |
| 1618 | .eh_frame, | | |
| 1619 | cie_entry_header.length_offset, | | |
| 1620 | @sizeOf(usize), | | |
| 1621 | native_endian, | | |
| 1622 | ); | | |
| 1623 | const fde = try Dwarf.Unwind.FrameDescriptionEntry.parse( | | |
| 1624 | fde_entry_header.entry_bytes, | | |
| 1625 | 0, | | |
| 1626 | true, | | |
| 1627 | cie, | | |
| 1628 | @sizeOf(usize), | | |
| 1629 | native_endian, | | |
| 1630 | ); | | |
| 1631 | | | |
| 1632 | break :blk .{ cie, fde }; | | |
| 1633 | } else blk: { | | |
| 1634 | // `.eh_frame_hdr` may be incomplete. We'll try it first, but if the lookup fails, we fall | | |
| 1635 | // back to loading `.eh_frame`/`.debug_frame` and using those from that point on. | | |
| 1636 | | | |
| 1637 | if (unwind.eh_frame_hdr) |header| hdr: { | | |
| 1638 | const eh_frame_len = if (unwind.section(.eh_frame)) |eh_frame| eh_frame.len else { | | |
| 1639 | try unwind.scanCieFdeInfo(allocator, native_endian, base_address); | | |
| 1640 | unwind.eh_frame_hdr = null; | | |
| 1641 | break :hdr; | | |
| 1642 | }; | | |
| 1643 | | | |
| 1644 | var cie: Dwarf.Unwind.CommonInformationEntry = undefined; | | |
| 1645 | var fde: Dwarf.Unwind.FrameDescriptionEntry = undefined; | | |
| 1646 | | | |
| 1647 | header.findEntry( | | |
| 1648 | eh_frame_len, | | |
| 1649 | @intFromPtr(unwind.section(.eh_frame_hdr).?.ptr), | | |
| 1650 | context.pc, | | |
| 1651 | &cie, | | |
| 1652 | &fde, | | |
| 1653 | native_endian, | | |
| 1654 | ) catch |err| switch (err) { | | |
| 1655 | error.MissingDebugInfo => { | | |
| 1656 | // `.eh_frame_hdr` appears to be incomplete, so go ahead and populate `cie_map` | | |
| 1657 | // and `fde_list`, and fall back to the binary search logic below. | | |
| 1658 | try unwind.scanCieFdeInfo(allocator, native_endian, base_address); | | |
| 1659 | | | |
| 1660 | // Since `.eh_frame_hdr` is incomplete, we're very likely to get more lookup | | |
| 1661 | // failures using it, and we've just built a complete, sorted list of FDEs | | |
| 1662 | // anyway, so just stop using `.eh_frame_hdr` altogether. | | |
| 1663 | unwind.eh_frame_hdr = null; | | |
| 1664 | | | |
| 1665 | break :hdr; | | |
| 1666 | }, | | |
| 1667 | else => return err, | | |
| 1668 | }; | | |
| 1669 | | | |
| 1670 | break :blk .{ cie, fde }; | | |
| 1671 | } | | |
| 1672 | | | |
| 1673 | const index = std.sort.binarySearch(Dwarf.Unwind.FrameDescriptionEntry, unwind.fde_list.items, context.pc, struct { | | |
| 1674 | pub fn compareFn(pc: usize, item: Dwarf.Unwind.FrameDescriptionEntry) std.math.Order { | | |
| 1675 | if (pc < item.pc_begin) return .lt; | | |
| 1676 | | | |
| 1677 | const range_end = item.pc_begin + item.pc_range; | | |
| 1678 | if (pc < range_end) return .eq; | | |
| 1679 | | | |
| 1680 | return .gt; | | |
| 1681 | } | | |
| 1682 | }.compareFn); | | |
| 1683 | | | |
| 1684 | const fde = if (index) |i| unwind.fde_list.items[i] else return error.MissingFDE; | | |
| 1685 | const cie = unwind.cie_map.get(fde.cie_length_offset) orelse return error.MissingCIE; | | |
| 1686 | | | |
| 1687 | break :blk .{ cie, fde }; | | |
| 1688 | }; | | |
| 1689 | | 1103 | |
| 1690 | // Do not set `compile_unit` because the spec states that CFIs | 1104 | // Do not set `compile_unit` because the spec states that CFIs |
| 1691 | // may not reference other debug sections anyway. | 1105 | // may not reference other debug sections anyway. |
| 1692 | var expression_context: Dwarf.expression.Context = .{ | 1106 | var expression_context: Dwarf.expression.Context = .{ |
| 1693 | .format = cie.format, | 1107 | .format = format, |
| 1694 | .thread_context = context.thread_context, | 1108 | .thread_context = context.thread_context, |
| 1695 | .reg_context = context.reg_context, | 1109 | .reg_context = context.reg_context, |
| 1696 | .cfa = context.cfa, | 1110 | .cfa = context.cfa, |
| ... | @@ -1700,7 +1114,7 @@ fn unwindFrameDwarf( | ... | @@ -1700,7 +1114,7 @@ fn unwindFrameDwarf( |
| 1700 | context.reg_context.eh_frame = cie.version != 4; | 1114 | context.reg_context.eh_frame = cie.version != 4; |
| 1701 | context.reg_context.is_macho = native_os.isDarwin(); | 1115 | context.reg_context.is_macho = native_os.isDarwin(); |
| 1702 | | 1116 | |
| 1703 | const row = try context.vm.runToNative(context.allocator, context.pc, cie, fde); | 1117 | const row = try context.vm.runTo(context.gpa, context.pc - load_offset, cie, fde, @sizeOf(usize), native_endian); |
| 1704 | context.cfa = switch (row.cfa.rule) { | 1118 | context.cfa = switch (row.cfa.rule) { |
| 1705 | .val_offset => |offset| blk: { | 1119 | .val_offset => |offset| blk: { |
| 1706 | const register = row.cfa.register orelse return error.InvalidCFARule; | 1120 | const register = row.cfa.register orelse return error.InvalidCFARule; |
| ... | @@ -1711,7 +1125,7 @@ fn unwindFrameDwarf( | ... | @@ -1711,7 +1125,7 @@ fn unwindFrameDwarf( |
| 1711 | context.stack_machine.reset(); | 1125 | context.stack_machine.reset(); |
| 1712 | const value = try context.stack_machine.run( | 1126 | const value = try context.stack_machine.run( |
| 1713 | expr, | 1127 | expr, |
| 1714 | context.allocator, | 1128 | context.gpa, |
| 1715 | expression_context, | 1129 | expression_context, |
| 1716 | context.cfa, | 1130 | context.cfa, |
| 1717 | ); | 1131 | ); |
| ... | @@ -1728,9 +1142,9 @@ fn unwindFrameDwarf( | ... | @@ -1728,9 +1142,9 @@ fn unwindFrameDwarf( |
| 1728 | | 1142 | |
| 1729 | // Buffering the modifications is done because copying the thread context is not portable, | 1143 | // Buffering the modifications is done because copying the thread context is not portable, |
| 1730 | // some implementations (ie. darwin) use internal pointers to the mcontext. | 1144 | // some implementations (ie. darwin) use internal pointers to the mcontext. |
| 1731 | var arena = std.heap.ArenaAllocator.init(context.allocator); | 1145 | var arena: std.heap.ArenaAllocator = .init(context.gpa); |
| 1732 | defer arena.deinit(); | 1146 | defer arena.deinit(); |
| 1733 | const update_allocator = arena.allocator(); | 1147 | const update_arena = arena.allocator(); |
| 1734 | | 1148 | |
| 1735 | const RegisterUpdate = struct { | 1149 | const RegisterUpdate = struct { |
| 1736 | // Backed by thread_context | 1150 | // Backed by thread_context |
| ... | @@ -1749,17 +1163,16 @@ fn unwindFrameDwarf( | ... | @@ -1749,17 +1163,16 @@ fn unwindFrameDwarf( |
| 1749 | } | 1163 | } |
| 1750 | | 1164 | |
| 1751 | const dest = try regBytes(context.thread_context, register, context.reg_context); | 1165 | const dest = try regBytes(context.thread_context, register, context.reg_context); |
| 1752 | const src = try update_allocator.alloc(u8, dest.len); | 1166 | const src = try update_arena.alloc(u8, dest.len); |
| | 1167 | try context.resolveRegisterRule(column, expression_context, src); |
| 1753 | | 1168 | |
| 1754 | const prev = update_tail; | 1169 | const new_update = try update_arena.create(RegisterUpdate); |
| 1755 | update_tail = try update_allocator.create(RegisterUpdate); | 1170 | new_update.* = .{ |
| 1756 | update_tail.?.* = .{ | | |
| 1757 | .dest = dest, | 1171 | .dest = dest, |
| 1758 | .src = src, | 1172 | .src = src, |
| 1759 | .prev = prev, | 1173 | .prev = update_tail, |
| 1760 | }; | 1174 | }; |
| 1761 | | 1175 | update_tail = new_update; |
| 1762 | try column.resolveValue(context, expression_context, src); | | |
| 1763 | } | 1176 | } |
| 1764 | } | 1177 | } |
| 1765 | | 1178 | |
| ... | @@ -1792,7 +1205,7 @@ fn unwindFrameDwarf( | ... | @@ -1792,7 +1205,7 @@ fn unwindFrameDwarf( |
| 1792 | // The exception to this rule is signal frames, where we return execution would be returned to the instruction | 1205 | // The exception to this rule is signal frames, where we return execution would be returned to the instruction |
| 1793 | // that triggered the handler. | 1206 | // that triggered the handler. |
| 1794 | const return_address = context.pc; | 1207 | const return_address = context.pc; |
| 1795 | if (context.pc > 0 and !cie.isSignalFrame()) context.pc -= 1; | 1208 | if (context.pc > 0 and !cie.is_signal_frame) context.pc -= 1; |
| 1796 | | 1209 | |
| 1797 | return return_address; | 1210 | return return_address; |
| 1798 | } | 1211 | } |
| ... | @@ -1843,415 +1256,345 @@ pub fn supportsUnwinding(target: *const std.Target) bool { | ... | @@ -1843,415 +1256,345 @@ pub fn supportsUnwinding(target: *const std.Target) bool { |
| 1843 | }; | 1256 | }; |
| 1844 | } | 1257 | } |
| 1845 | | 1258 | |
| 1846 | fn unwindFrameMachODwarf( | 1259 | /// Since register rules are applied (usually) during a panic, |
| 1847 | allocator: Allocator, | 1260 | /// checked addition / subtraction is used so that we can return |
| 1848 | base_address: usize, | 1261 | /// an error and fall back to FP-based unwinding. |
| 1849 | context: *UnwindContext, | 1262 | fn applyOffset(base: usize, offset: i64) !usize { |
| 1850 | eh_frame: []const u8, | 1263 | return if (offset >= 0) |
| 1851 | fde_offset: usize, | 1264 | try std.math.add(usize, base, @as(usize, @intCast(offset))) |
| 1852 | ) !usize { | 1265 | else |
| 1853 | var di: Dwarf = .{ | 1266 | try std.math.sub(usize, base, @as(usize, @intCast(-offset))); |
| 1854 | .endian = native_endian, | 1267 | } |
| 1855 | .is_macho = true, | | |
| 1856 | }; | | |
| 1857 | defer di.deinit(context.allocator); | | |
| 1858 | | 1268 | |
| 1859 | di.sections[@intFromEnum(Dwarf.Section.Id.eh_frame)] = .{ | 1269 | /// Uses `mmap` to map the file at `opt_path` (or, if `null`, the self executable image) into memory. |
| 1860 | .data = eh_frame, | 1270 | fn mapFileOrSelfExe(opt_path: ?[]const u8) ![]align(std.heap.page_size_min) const u8 { |
| 1861 | .owned = false, | 1271 | const file = if (opt_path) |path| |
| 1862 | }; | 1272 | try fs.cwd().openFile(path, .{}) |
| | 1273 | else |
| | 1274 | try fs.openSelfExe(.{}); |
| | 1275 | defer file.close(); |
| 1863 | | 1276 | |
| 1864 | return unwindFrameDwarf(allocator, &di, base_address, context, fde_offset); | 1277 | const file_len = math.cast(usize, try file.getEndPos()) orelse return error.FileTooBig; |
| | 1278 | |
| | 1279 | return posix.mmap( |
| | 1280 | null, |
| | 1281 | file_len, |
| | 1282 | posix.PROT.READ, |
| | 1283 | .{ .TYPE = .SHARED }, |
| | 1284 | file.handle, |
| | 1285 | 0, |
| | 1286 | ); |
| 1865 | } | 1287 | } |
| 1866 | | 1288 | |
| 1867 | /// This is a virtual machine that runs DWARF call frame instructions. | 1289 | /// Unwind a frame using MachO compact unwind info (from __unwind_info). |
| 1868 | pub const VirtualMachine = struct { | 1290 | /// If the compact encoding can't encode a way to unwind a frame, it will |
| 1869 | /// See section 6.4.1 of the DWARF5 specification for details on each | 1291 | /// defer unwinding to DWARF, in which case `.eh_frame` will be used if available. |
| 1870 | const RegisterRule = union(enum) { | 1292 | fn unwindFrameMachO( |
| 1871 | // The spec says that the default rule for each column is the undefined rule. | 1293 | text_base: usize, |
| 1872 | // However, it also allows ABI / compiler authors to specify alternate defaults, so | 1294 | load_offset: usize, |
| 1873 | // there is a distinction made here. | 1295 | context: *UnwindContext, |
| 1874 | default: void, | 1296 | unwind_info: []const u8, |
| 1875 | undefined: void, | 1297 | eh_frame: ?[]const u8, |
| 1876 | same_value: void, | 1298 | ) !usize { |
| 1877 | // offset(N) | 1299 | if (unwind_info.len < @sizeOf(macho.unwind_info_section_header)) return error.InvalidUnwindInfo; |
| 1878 | offset: i64, | 1300 | const header: *align(1) const macho.unwind_info_section_header = @ptrCast(unwind_info); |
| 1879 | // val_offset(N) | | |
| 1880 | val_offset: i64, | | |
| 1881 | // register(R) | | |
| 1882 | register: u8, | | |
| 1883 | // expression(E) | | |
| 1884 | expression: []const u8, | | |
| 1885 | // val_expression(E) | | |
| 1886 | val_expression: []const u8, | | |
| 1887 | // Augmenter-defined rule | | |
| 1888 | architectural: void, | | |
| 1889 | }; | | |
| 1890 | | 1301 | |
| 1891 | /// Each row contains unwinding rules for a set of registers. | 1302 | const index_byte_count = header.indexCount * @sizeOf(macho.unwind_info_section_header_index_entry); |
| 1892 | pub const Row = struct { | 1303 | if (unwind_info.len < header.indexSectionOffset + index_byte_count) return error.InvalidUnwindInfo; |
| 1893 | /// Offset from `FrameDescriptionEntry.pc_begin` | 1304 | const indices: []align(1) const macho.unwind_info_section_header_index_entry = @ptrCast(unwind_info[header.indexSectionOffset..][0..index_byte_count]); |
| 1894 | offset: u64 = 0, | 1305 | if (indices.len == 0) return error.MissingUnwindInfo; |
| 1895 | /// Special-case column that defines the CFA (Canonical Frame Address) rule. | | |
| 1896 | /// The register field of this column defines the register that CFA is derived from. | | |
| 1897 | cfa: Column = .{}, | | |
| 1898 | /// The register fields in these columns define the register the rule applies to. | | |
| 1899 | columns: ColumnRange = .{}, | | |
| 1900 | /// Indicates that the next write to any column in this row needs to copy | | |
| 1901 | /// the backing column storage first, as it may be referenced by previous rows. | | |
| 1902 | copy_on_write: bool = false, | | |
| 1903 | }; | | |
| 1904 | | 1306 | |
| 1905 | pub const Column = struct { | 1307 | // MLUGG TODO HACKHACK -- Unwind needs a slight refactor to make this work well |
| 1906 | register: ?u8 = null, | 1308 | const opt_dwarf_unwind: ?Dwarf.Unwind = if (eh_frame) |eh_frame_data| .{ |
| 1907 | rule: RegisterRule = .{ .default = {} }, | 1309 | .debug_frame = null, |
| 1908 | | 1310 | .eh_frame = .{ |
| 1909 | /// Resolves the register rule and places the result into `out` (see regBytes) | 1311 | .header = .{ |
| 1910 | pub fn resolveValue( | 1312 | .vaddr = undefined, |
| 1911 | self: Column, | 1313 | .eh_frame_vaddr = @intFromPtr(eh_frame_data.ptr) - load_offset, |
| 1912 | context: *SelfInfo.UnwindContext, | 1314 | .search_table = null, |
| 1913 | expression_context: std.debug.Dwarf.expression.Context, | 1315 | }, |
| 1914 | out: []u8, | 1316 | .eh_frame_data = eh_frame_data, |
| 1915 | ) !void { | 1317 | .sorted_fdes = null, |
| 1916 | switch (self.rule) { | 1318 | }, |
| 1917 | .default => { | 1319 | } else null; |
| 1918 | const register = self.register orelse return error.InvalidRegister; | 1320 | |
| 1919 | try getRegDefaultValue(register, context, out); | 1321 | // offset of the PC into the `__TEXT` segment |
| 1920 | }, | 1322 | const pc_text_offset = context.pc - text_base; |
| 1921 | .undefined => { | 1323 | |
| 1922 | @memset(out, undefined); | 1324 | const start_offset: u32, const first_level_offset: u32 = index: { |
| 1923 | }, | 1325 | var left: usize = 0; |
| 1924 | .same_value => { | 1326 | var len: usize = indices.len; |
| 1925 | // TODO: This copy could be eliminated if callers always copy the state then call this function to update it | 1327 | while (len > 1) { |
| 1926 | const register = self.register orelse return error.InvalidRegister; | 1328 | const mid = left + len / 2; |
| 1927 | const src = try regBytes(context.thread_context, register, context.reg_context); | 1329 | if (pc_text_offset < indices[mid].functionOffset) { |
| 1928 | if (src.len != out.len) return error.RegisterSizeMismatch; | 1330 | len /= 2; |
| 1929 | @memcpy(out, src); | 1331 | } else { |
| 1930 | }, | 1332 | left = mid; |
| 1931 | .offset => |offset| { | 1333 | len -= len / 2; |
| 1932 | if (context.cfa) |cfa| { | | |
| 1933 | const addr = try applyOffset(cfa, offset); | | |
| 1934 | const ptr: *const usize = @ptrFromInt(addr); | | |
| 1935 | mem.writeInt(usize, out[0..@sizeOf(usize)], ptr.*, native_endian); | | |
| 1936 | } else return error.InvalidCFA; | | |
| 1937 | }, | | |
| 1938 | .val_offset => |offset| { | | |
| 1939 | if (context.cfa) |cfa| { | | |
| 1940 | mem.writeInt(usize, out[0..@sizeOf(usize)], try applyOffset(cfa, offset), native_endian); | | |
| 1941 | } else return error.InvalidCFA; | | |
| 1942 | }, | | |
| 1943 | .register => |register| { | | |
| 1944 | const src = try regBytes(context.thread_context, register, context.reg_context); | | |
| 1945 | if (src.len != out.len) return error.RegisterSizeMismatch; | | |
| 1946 | @memcpy(out, try regBytes(context.thread_context, register, context.reg_context)); | | |
| 1947 | }, | | |
| 1948 | .expression => |expression| { | | |
| 1949 | context.stack_machine.reset(); | | |
| 1950 | const value = try context.stack_machine.run(expression, context.allocator, expression_context, context.cfa.?); | | |
| 1951 | const addr = if (value) |v| blk: { | | |
| 1952 | if (v != .generic) return error.InvalidExpressionValue; | | |
| 1953 | break :blk v.generic; | | |
| 1954 | } else return error.NoExpressionValue; | | |
| 1955 | | | |
| 1956 | const ptr: *usize = @ptrFromInt(addr); | | |
| 1957 | mem.writeInt(usize, out[0..@sizeOf(usize)], ptr.*, native_endian); | | |
| 1958 | }, | | |
| 1959 | .val_expression => |expression| { | | |
| 1960 | context.stack_machine.reset(); | | |
| 1961 | const value = try context.stack_machine.run(expression, context.allocator, expression_context, context.cfa.?); | | |
| 1962 | if (value) |v| { | | |
| 1963 | if (v != .generic) return error.InvalidExpressionValue; | | |
| 1964 | mem.writeInt(usize, out[0..@sizeOf(usize)], v.generic, native_endian); | | |
| 1965 | } else return error.NoExpressionValue; | | |
| 1966 | }, | | |
| 1967 | .architectural => return error.UnimplementedRegisterRule, | | |
| 1968 | } | 1334 | } |
| 1969 | } | 1335 | } |
| | 1336 | break :index .{ indices[left].secondLevelPagesSectionOffset, indices[left].functionOffset }; |
| 1970 | }; | 1337 | }; |
| | 1338 | // An offset of 0 is a sentinel indicating a range does not have unwind info. |
| | 1339 | if (start_offset == 0) return error.MissingUnwindInfo; |
| 1971 | | 1340 | |
| 1972 | const ColumnRange = struct { | 1341 | const common_encodings_byte_count = header.commonEncodingsArrayCount * @sizeOf(macho.compact_unwind_encoding_t); |
| 1973 | /// Index into `columns` of the first column in this row. | 1342 | if (unwind_info.len < header.commonEncodingsArraySectionOffset + common_encodings_byte_count) return error.InvalidUnwindInfo; |
| 1974 | start: usize = undefined, | 1343 | const common_encodings: []align(1) const macho.compact_unwind_encoding_t = @ptrCast( |
| 1975 | len: u8 = 0, | 1344 | unwind_info[header.commonEncodingsArraySectionOffset..][0..common_encodings_byte_count], |
| 1976 | }; | 1345 | ); |
| 1977 | | 1346 | |
| 1978 | columns: std.ArrayListUnmanaged(Column) = .empty, | 1347 | if (unwind_info.len < start_offset + @sizeOf(macho.UNWIND_SECOND_LEVEL)) return error.InvalidUnwindInfo; |
| 1979 | stack: std.ArrayListUnmanaged(ColumnRange) = .empty, | 1348 | const kind: *align(1) const macho.UNWIND_SECOND_LEVEL = @ptrCast(unwind_info[start_offset..]); |
| 1980 | current_row: Row = .{}, | | |
| 1981 | | 1349 | |
| 1982 | /// The result of executing the CIE's initial_instructions | 1350 | const entry: struct { |
| 1983 | cie_row: ?Row = null, | 1351 | function_offset: usize, |
| | 1352 | raw_encoding: u32, |
| | 1353 | } = switch (kind.*) { |
| | 1354 | .REGULAR => entry: { |
| | 1355 | if (unwind_info.len < start_offset + @sizeOf(macho.unwind_info_regular_second_level_page_header)) return error.InvalidUnwindInfo; |
| | 1356 | const page_header: *align(1) const macho.unwind_info_regular_second_level_page_header = @ptrCast(unwind_info[start_offset..]); |
| | 1357 | |
| | 1358 | const entries_byte_count = page_header.entryCount * @sizeOf(macho.unwind_info_regular_second_level_entry); |
| | 1359 | if (unwind_info.len < start_offset + entries_byte_count) return error.InvalidUnwindInfo; |
| | 1360 | const entries: []align(1) const macho.unwind_info_regular_second_level_entry = @ptrCast( |
| | 1361 | unwind_info[start_offset + page_header.entryPageOffset ..][0..entries_byte_count], |
| | 1362 | ); |
| | 1363 | if (entries.len == 0) return error.InvalidUnwindInfo; |
| 1984 | | 1364 | |
| 1985 | pub fn deinit(self: *VirtualMachine, allocator: std.mem.Allocator) void { | 1365 | var left: usize = 0; |
| 1986 | self.stack.deinit(allocator); | 1366 | var len: usize = entries.len; |
| 1987 | self.columns.deinit(allocator); | 1367 | while (len > 1) { |
| 1988 | self.* = undefined; | 1368 | const mid = left + len / 2; |
| 1989 | } | 1369 | if (pc_text_offset < entries[mid].functionOffset) { |
| | 1370 | len /= 2; |
| | 1371 | } else { |
| | 1372 | left = mid; |
| | 1373 | len -= len / 2; |
| | 1374 | } |
| | 1375 | } |
| | 1376 | break :entry .{ |
| | 1377 | .function_offset = entries[left].functionOffset, |
| | 1378 | .raw_encoding = entries[left].encoding, |
| | 1379 | }; |
| | 1380 | }, |
| | 1381 | .COMPRESSED => entry: { |
| | 1382 | if (unwind_info.len < start_offset + @sizeOf(macho.unwind_info_compressed_second_level_page_header)) return error.InvalidUnwindInfo; |
| | 1383 | const page_header: *align(1) const macho.unwind_info_compressed_second_level_page_header = @ptrCast(unwind_info[start_offset..]); |
| | 1384 | |
| | 1385 | const entries_byte_count = page_header.entryCount * @sizeOf(macho.UnwindInfoCompressedEntry); |
| | 1386 | if (unwind_info.len < start_offset + entries_byte_count) return error.InvalidUnwindInfo; |
| | 1387 | const entries: []align(1) const macho.UnwindInfoCompressedEntry = @ptrCast( |
| | 1388 | unwind_info[start_offset + page_header.entryPageOffset ..][0..entries_byte_count], |
| | 1389 | ); |
| | 1390 | if (entries.len == 0) return error.InvalidUnwindInfo; |
| 1990 | | 1391 | |
| 1991 | pub fn reset(self: *VirtualMachine) void { | 1392 | var left: usize = 0; |
| 1992 | self.stack.clearRetainingCapacity(); | 1393 | var len: usize = entries.len; |
| 1993 | self.columns.clearRetainingCapacity(); | 1394 | while (len > 1) { |
| 1994 | self.current_row = .{}; | 1395 | const mid = left + len / 2; |
| 1995 | self.cie_row = null; | 1396 | if (pc_text_offset < first_level_offset + entries[mid].funcOffset) { |
| 1996 | } | 1397 | len /= 2; |
| | 1398 | } else { |
| | 1399 | left = mid; |
| | 1400 | len -= len / 2; |
| | 1401 | } |
| | 1402 | } |
| | 1403 | const entry = entries[left]; |
| 1997 | | 1404 | |
| 1998 | /// Return a slice backed by the row's non-CFA columns | 1405 | const function_offset = first_level_offset + entry.funcOffset; |
| 1999 | pub fn rowColumns(self: VirtualMachine, row: Row) []Column { | 1406 | if (entry.encodingIndex < common_encodings.len) { |
| 2000 | if (row.columns.len == 0) return &.{}; | 1407 | break :entry .{ |
| 2001 | return self.columns.items[row.columns.start..][0..row.columns.len]; | 1408 | .function_offset = function_offset, |
| 2002 | } | 1409 | .raw_encoding = common_encodings[entry.encodingIndex], |
| | 1410 | }; |
| | 1411 | } |
| 2003 | | 1412 | |
| 2004 | /// Either retrieves or adds a column for `register` (non-CFA) in the current row. | 1413 | const local_index = entry.encodingIndex - common_encodings.len; |
| 2005 | fn getOrAddColumn(self: *VirtualMachine, allocator: std.mem.Allocator, register: u8) !*Column { | 1414 | const local_encodings_byte_count = page_header.encodingsCount * @sizeOf(macho.compact_unwind_encoding_t); |
| 2006 | for (self.rowColumns(self.current_row)) |*c| { | 1415 | if (unwind_info.len < start_offset + page_header.encodingsPageOffset + local_encodings_byte_count) return error.InvalidUnwindInfo; |
| 2007 | if (c.register == register) return c; | 1416 | const local_encodings: []align(1) const macho.compact_unwind_encoding_t = @ptrCast( |
| 2008 | } | 1417 | unwind_info[start_offset + page_header.encodingsPageOffset ..][0..local_encodings_byte_count], |
| | 1418 | ); |
| | 1419 | if (local_index >= local_encodings.len) return error.InvalidUnwindInfo; |
| | 1420 | break :entry .{ |
| | 1421 | .function_offset = function_offset, |
| | 1422 | .raw_encoding = local_encodings[local_index], |
| | 1423 | }; |
| | 1424 | }, |
| | 1425 | else => return error.InvalidUnwindInfo, |
| | 1426 | }; |
| 2009 | | 1427 | |
| 2010 | if (self.current_row.columns.len == 0) { | 1428 | if (entry.raw_encoding == 0) return error.NoUnwindInfo; |
| 2011 | self.current_row.columns.start = self.columns.items.len; | 1429 | const reg_context: Dwarf.abi.RegisterContext = .{ .eh_frame = false, .is_macho = true }; |
| 2012 | } | | |
| 2013 | self.current_row.columns.len += 1; | | |
| 2014 | | 1430 | |
| 2015 | const column = try self.columns.addOne(allocator); | 1431 | const encoding: macho.CompactUnwindEncoding = @bitCast(entry.raw_encoding); |
| 2016 | column.* = .{ | 1432 | const new_ip = switch (builtin.cpu.arch) { |
| 2017 | .register = register, | 1433 | .x86_64 => switch (encoding.mode.x86_64) { |
| 2018 | }; | 1434 | .OLD => return error.UnimplementedUnwindEncoding, |
| | 1435 | .RBP_FRAME => ip: { |
| | 1436 | const frame = encoding.value.x86_64.frame; |
| 2019 | | 1437 | |
| 2020 | return column; | 1438 | const fp = (try regValueNative(context.thread_context, fpRegNum(reg_context), reg_context)).*; |
| 2021 | } | 1439 | const new_sp = fp + 2 * @sizeOf(usize); |
| 2022 | | 1440 | |
| 2023 | /// Runs the CIE instructions, then the FDE instructions. Execution halts | 1441 | const ip_ptr = fp + @sizeOf(usize); |
| 2024 | /// once the row that corresponds to `pc` is known, and the row is returned. | 1442 | const new_ip = @as(*const usize, @ptrFromInt(ip_ptr)).*; |
| 2025 | pub fn runTo( | 1443 | const new_fp = @as(*const usize, @ptrFromInt(fp)).*; |
| 2026 | self: *VirtualMachine, | | |
| 2027 | allocator: std.mem.Allocator, | | |
| 2028 | pc: u64, | | |
| 2029 | cie: std.debug.Dwarf.Unwind.CommonInformationEntry, | | |
| 2030 | fde: std.debug.Dwarf.Unwind.FrameDescriptionEntry, | | |
| 2031 | addr_size_bytes: u8, | | |
| 2032 | endian: std.builtin.Endian, | | |
| 2033 | ) !Row { | | |
| 2034 | assert(self.cie_row == null); | | |
| 2035 | if (pc < fde.pc_begin or pc >= fde.pc_begin + fde.pc_range) return error.AddressOutOfRange; | | |
| 2036 | | | |
| 2037 | var prev_row: Row = self.current_row; | | |
| 2038 | | | |
| 2039 | var cie_stream: std.Io.Reader = .fixed(cie.initial_instructions); | | |
| 2040 | var fde_stream: std.Io.Reader = .fixed(fde.instructions); | | |
| 2041 | const streams = [_]*std.Io.Reader{ &cie_stream, &fde_stream }; | | |
| 2042 | | | |
| 2043 | for (&streams, 0..) |stream, i| { | | |
| 2044 | while (stream.seek < stream.buffer.len) { | | |
| 2045 | const instruction = try std.debug.Dwarf.call_frame.Instruction.read(stream, addr_size_bytes, endian); | | |
| 2046 | prev_row = try self.step(allocator, cie, i == 0, instruction); | | |
| 2047 | if (pc < fde.pc_begin + self.current_row.offset) return prev_row; | | |
| 2048 | } | | |
| 2049 | } | | |
| 2050 | | 1444 | |
| 2051 | return self.current_row; | 1445 | (try regValueNative(context.thread_context, fpRegNum(reg_context), reg_context)).* = new_fp; |
| 2052 | } | 1446 | (try regValueNative(context.thread_context, spRegNum(reg_context), reg_context)).* = new_sp; |
| | 1447 | (try regValueNative(context.thread_context, ip_reg_num, reg_context)).* = new_ip; |
| 2053 | | 1448 | |
| 2054 | pub fn runToNative( | 1449 | const regs: [5]u3 = .{ |
| 2055 | self: *VirtualMachine, | 1450 | frame.reg0, |
| 2056 | allocator: std.mem.Allocator, | 1451 | frame.reg1, |
| 2057 | pc: u64, | 1452 | frame.reg2, |
| 2058 | cie: std.debug.Dwarf.Unwind.CommonInformationEntry, | 1453 | frame.reg3, |
| 2059 | fde: std.debug.Dwarf.Unwind.FrameDescriptionEntry, | 1454 | frame.reg4, |
| 2060 | ) !Row { | 1455 | }; |
| 2061 | return self.runTo(allocator, pc, cie, fde, @sizeOf(usize), native_endian); | 1456 | for (regs, 0..) |reg, i| { |
| 2062 | } | 1457 | if (reg == 0) continue; |
| | 1458 | const addr = fp - frame.frame_offset * @sizeOf(usize) + i * @sizeOf(usize); |
| | 1459 | const reg_number = try Dwarf.compactUnwindToDwarfRegNumber(reg); |
| | 1460 | (try regValueNative(context.thread_context, reg_number, reg_context)).* = @as(*const usize, @ptrFromInt(addr)).*; |
| | 1461 | } |
| 2063 | | 1462 | |
| 2064 | fn resolveCopyOnWrite(self: *VirtualMachine, allocator: std.mem.Allocator) !void { | 1463 | break :ip new_ip; |
| 2065 | if (!self.current_row.copy_on_write) return; | 1464 | }, |
| | 1465 | .STACK_IMMD, |
| | 1466 | .STACK_IND, |
| | 1467 | => ip: { |
| | 1468 | const frameless = encoding.value.x86_64.frameless; |
| 2066 | | 1469 | |
| 2067 | const new_start = self.columns.items.len; | 1470 | const sp = (try regValueNative(context.thread_context, spRegNum(reg_context), reg_context)).*; |
| 2068 | if (self.current_row.columns.len > 0) { | 1471 | const stack_size: usize = stack_size: { |
| 2069 | try self.columns.ensureUnusedCapacity(allocator, self.current_row.columns.len); | 1472 | if (encoding.mode.x86_64 == .STACK_IMMD) { |
| 2070 | self.columns.appendSliceAssumeCapacity(self.rowColumns(self.current_row)); | 1473 | break :stack_size @as(usize, frameless.stack.direct.stack_size) * @sizeOf(usize); |
| 2071 | self.current_row.columns.start = new_start; | 1474 | } |
| 2072 | } | 1475 | // In .STACK_IND, the stack size is inferred from the subq instruction at the beginning of the function. |
| 2073 | } | 1476 | const sub_offset_addr = |
| | 1477 | text_base + |
| | 1478 | entry.function_offset + |
| | 1479 | frameless.stack.indirect.sub_offset; |
| | 1480 | // `sub_offset_addr` points to the offset of the literal within the instruction |
| | 1481 | const sub_operand = @as(*align(1) const u32, @ptrFromInt(sub_offset_addr)).*; |
| | 1482 | break :stack_size sub_operand + @sizeOf(usize) * @as(usize, frameless.stack.indirect.stack_adjust); |
| | 1483 | }; |
| 2074 | | 1484 | |
| 2075 | /// Executes a single instruction. | 1485 | // Decode the Lehmer-coded sequence of registers. |
| 2076 | /// If this instruction is from the CIE, `is_initial` should be set. | 1486 | // For a description of the encoding see lib/libc/include/any-macos.13-any/mach-o/compact_unwind_encoding.h |
| 2077 | /// Returns the value of `current_row` before executing this instruction. | | |
| 2078 | pub fn step( | | |
| 2079 | self: *VirtualMachine, | | |
| 2080 | allocator: std.mem.Allocator, | | |
| 2081 | cie: std.debug.Dwarf.Unwind.CommonInformationEntry, | | |
| 2082 | is_initial: bool, | | |
| 2083 | instruction: Dwarf.call_frame.Instruction, | | |
| 2084 | ) !Row { | | |
| 2085 | // CIE instructions must be run before FDE instructions | | |
| 2086 | assert(!is_initial or self.cie_row == null); | | |
| 2087 | if (!is_initial and self.cie_row == null) { | | |
| 2088 | self.cie_row = self.current_row; | | |
| 2089 | self.current_row.copy_on_write = true; | | |
| 2090 | } | | |
| 2091 | | 1487 | |
| 2092 | const prev_row = self.current_row; | 1488 | // Decode the variable-based permutation number into its digits. Each digit represents |
| 2093 | switch (instruction) { | 1489 | // an index into the list of register numbers that weren't yet used in the sequence at |
| 2094 | .set_loc => |i| { | 1490 | // the time the digit was added. |
| 2095 | if (i.address <= self.current_row.offset) return error.InvalidOperation; | 1491 | const reg_count = frameless.stack_reg_count; |
| 2096 | // TODO: Check cie.segment_selector_size != 0 for DWARFV4 | 1492 | const ip_ptr = ip_ptr: { |
| 2097 | self.current_row.offset = i.address; | 1493 | var digits: [6]u3 = undefined; |
| 2098 | }, | 1494 | var accumulator: usize = frameless.stack_reg_permutation; |
| 2099 | inline .advance_loc, | 1495 | var base: usize = 2; |
| 2100 | .advance_loc1, | 1496 | for (0..reg_count) |i| { |
| 2101 | .advance_loc2, | 1497 | const div = accumulator / base; |
| 2102 | .advance_loc4, | 1498 | digits[digits.len - 1 - i] = @intCast(accumulator - base * div); |
| 2103 | => |i| { | 1499 | accumulator = div; |
| 2104 | self.current_row.offset += i.delta * cie.code_alignment_factor; | 1500 | base += 1; |
| 2105 | self.current_row.copy_on_write = true; | 1501 | } |
| 2106 | }, | 1502 | |
| 2107 | inline .offset, | 1503 | var registers: [6]u3 = undefined; |
| 2108 | .offset_extended, | 1504 | var used_indices: [6]bool = @splat(false); |
| 2109 | .offset_extended_sf, | 1505 | for (digits[digits.len - reg_count ..], 0..) |target_unused_index, i| { |
| 2110 | => |i| { | 1506 | var unused_count: u8 = 0; |
| 2111 | try self.resolveCopyOnWrite(allocator); | 1507 | const unused_index = for (used_indices, 0..) |used, index| { |
| 2112 | const column = try self.getOrAddColumn(allocator, i.register); | 1508 | if (!used) { |
| 2113 | column.rule = .{ .offset = @as(i64, @intCast(i.offset)) * cie.data_alignment_factor }; | 1509 | if (target_unused_index == unused_count) break index; |
| 2114 | }, | 1510 | unused_count += 1; |
| 2115 | inline .restore, | 1511 | } |
| 2116 | .restore_extended, | 1512 | } else unreachable; |
| 2117 | => |i| { | 1513 | registers[i] = @intCast(unused_index + 1); |
| 2118 | try self.resolveCopyOnWrite(allocator); | 1514 | used_indices[unused_index] = true; |
| 2119 | if (self.cie_row) |cie_row| { | 1515 | } |
| 2120 | const column = try self.getOrAddColumn(allocator, i.register); | 1516 | |
| 2121 | column.rule = for (self.rowColumns(cie_row)) |cie_column| { | 1517 | var reg_addr = sp + stack_size - @sizeOf(usize) * @as(usize, reg_count + 1); |
| 2122 | if (cie_column.register == i.register) break cie_column.rule; | 1518 | for (0..reg_count) |i| { |
| 2123 | } else .{ .default = {} }; | 1519 | const reg_number = try Dwarf.compactUnwindToDwarfRegNumber(registers[i]); |
| 2124 | } else return error.InvalidOperation; | 1520 | (try regValueNative(context.thread_context, reg_number, reg_context)).* = @as(*const usize, @ptrFromInt(reg_addr)).*; |
| 2125 | }, | 1521 | reg_addr += @sizeOf(usize); |
| 2126 | .nop => {}, | 1522 | } |
| 2127 | .undefined => |i| { | 1523 | |
| 2128 | try self.resolveCopyOnWrite(allocator); | 1524 | break :ip_ptr reg_addr; |
| 2129 | const column = try self.getOrAddColumn(allocator, i.register); | | |
| 2130 | column.rule = .{ .undefined = {} }; | | |
| 2131 | }, | | |
| 2132 | .same_value => |i| { | | |
| 2133 | try self.resolveCopyOnWrite(allocator); | | |
| 2134 | const column = try self.getOrAddColumn(allocator, i.register); | | |
| 2135 | column.rule = .{ .same_value = {} }; | | |
| 2136 | }, | | |
| 2137 | .register => |i| { | | |
| 2138 | try self.resolveCopyOnWrite(allocator); | | |
| 2139 | const column = try self.getOrAddColumn(allocator, i.register); | | |
| 2140 | column.rule = .{ .register = i.target_register }; | | |
| 2141 | }, | | |
| 2142 | .remember_state => { | | |
| 2143 | try self.stack.append(allocator, self.current_row.columns); | | |
| 2144 | self.current_row.copy_on_write = true; | | |
| 2145 | }, | | |
| 2146 | .restore_state => { | | |
| 2147 | const restored_columns = self.stack.pop() orelse return error.InvalidOperation; | | |
| 2148 | self.columns.shrinkRetainingCapacity(self.columns.items.len - self.current_row.columns.len); | | |
| 2149 | try self.columns.ensureUnusedCapacity(allocator, restored_columns.len); | | |
| 2150 | | | |
| 2151 | self.current_row.columns.start = self.columns.items.len; | | |
| 2152 | self.current_row.columns.len = restored_columns.len; | | |
| 2153 | self.columns.appendSliceAssumeCapacity(self.columns.items[restored_columns.start..][0..restored_columns.len]); | | |
| 2154 | }, | | |
| 2155 | .def_cfa => |i| { | | |
| 2156 | try self.resolveCopyOnWrite(allocator); | | |
| 2157 | self.current_row.cfa = .{ | | |
| 2158 | .register = i.register, | | |
| 2159 | .rule = .{ .val_offset = @intCast(i.offset) }, | | |
| 2160 | }; | | |
| 2161 | }, | | |
| 2162 | .def_cfa_sf => |i| { | | |
| 2163 | try self.resolveCopyOnWrite(allocator); | | |
| 2164 | self.current_row.cfa = .{ | | |
| 2165 | .register = i.register, | | |
| 2166 | .rule = .{ .val_offset = i.offset * cie.data_alignment_factor }, | | |
| 2167 | }; | | |
| 2168 | }, | | |
| 2169 | .def_cfa_register => |i| { | | |
| 2170 | try self.resolveCopyOnWrite(allocator); | | |
| 2171 | if (self.current_row.cfa.register == null or self.current_row.cfa.rule != .val_offset) return error.InvalidOperation; | | |
| 2172 | self.current_row.cfa.register = i.register; | | |
| 2173 | }, | | |
| 2174 | .def_cfa_offset => |i| { | | |
| 2175 | try self.resolveCopyOnWrite(allocator); | | |
| 2176 | if (self.current_row.cfa.register == null or self.current_row.cfa.rule != .val_offset) return error.InvalidOperation; | | |
| 2177 | self.current_row.cfa.rule = .{ | | |
| 2178 | .val_offset = @intCast(i.offset), | | |
| 2179 | }; | | |
| 2180 | }, | | |
| 2181 | .def_cfa_offset_sf => |i| { | | |
| 2182 | try self.resolveCopyOnWrite(allocator); | | |
| 2183 | if (self.current_row.cfa.register == null or self.current_row.cfa.rule != .val_offset) return error.InvalidOperation; | | |
| 2184 | self.current_row.cfa.rule = .{ | | |
| 2185 | .val_offset = i.offset * cie.data_alignment_factor, | | |
| 2186 | }; | | |
| 2187 | }, | | |
| 2188 | .def_cfa_expression => |i| { | | |
| 2189 | try self.resolveCopyOnWrite(allocator); | | |
| 2190 | self.current_row.cfa.register = undefined; | | |
| 2191 | self.current_row.cfa.rule = .{ | | |
| 2192 | .expression = i.block, | | |
| 2193 | }; | | |
| 2194 | }, | | |
| 2195 | .expression => |i| { | | |
| 2196 | try self.resolveCopyOnWrite(allocator); | | |
| 2197 | const column = try self.getOrAddColumn(allocator, i.register); | | |
| 2198 | column.rule = .{ | | |
| 2199 | .expression = i.block, | | |
| 2200 | }; | 1525 | }; |
| | 1526 | |
| | 1527 | const new_ip = @as(*const usize, @ptrFromInt(ip_ptr)).*; |
| | 1528 | const new_sp = ip_ptr + @sizeOf(usize); |
| | 1529 | |
| | 1530 | (try regValueNative(context.thread_context, spRegNum(reg_context), reg_context)).* = new_sp; |
| | 1531 | (try regValueNative(context.thread_context, ip_reg_num, reg_context)).* = new_ip; |
| | 1532 | |
| | 1533 | break :ip new_ip; |
| 2201 | }, | 1534 | }, |
| 2202 | .val_offset => |i| { | 1535 | .DWARF => { |
| 2203 | try self.resolveCopyOnWrite(allocator); | 1536 | const dwarf_unwind = &(opt_dwarf_unwind orelse return error.MissingEhFrame); |
| 2204 | const column = try self.getOrAddColumn(allocator, i.register); | 1537 | return unwindFrameDwarf(dwarf_unwind, load_offset, context, @intCast(encoding.value.x86_64.dwarf)); |
| 2205 | column.rule = .{ | | |
| 2206 | .val_offset = @as(i64, @intCast(i.offset)) * cie.data_alignment_factor, | | |
| 2207 | }; | | |
| 2208 | }, | 1538 | }, |
| 2209 | .val_offset_sf => |i| { | 1539 | }, |
| 2210 | try self.resolveCopyOnWrite(allocator); | 1540 | .aarch64, .aarch64_be => switch (encoding.mode.arm64) { |
| 2211 | const column = try self.getOrAddColumn(allocator, i.register); | 1541 | .OLD => return error.UnimplementedUnwindEncoding, |
| 2212 | column.rule = .{ | 1542 | .FRAMELESS => ip: { |
| 2213 | .val_offset = i.offset * cie.data_alignment_factor, | 1543 | const sp = (try regValueNative(context.thread_context, spRegNum(reg_context), reg_context)).*; |
| 2214 | }; | 1544 | const new_sp = sp + encoding.value.arm64.frameless.stack_size * 16; |
| | 1545 | const new_ip = (try regValueNative(context.thread_context, 30, reg_context)).*; |
| | 1546 | (try regValueNative(context.thread_context, spRegNum(reg_context), reg_context)).* = new_sp; |
| | 1547 | break :ip new_ip; |
| 2215 | }, | 1548 | }, |
| 2216 | .val_expression => |i| { | 1549 | .DWARF => { |
| 2217 | try self.resolveCopyOnWrite(allocator); | 1550 | const dwarf_unwind = &(opt_dwarf_unwind orelse return error.MissingEhFrame); |
| 2218 | const column = try self.getOrAddColumn(allocator, i.register); | 1551 | return unwindFrameDwarf(dwarf_unwind, load_offset, context, @intCast(encoding.value.arm64.dwarf)); |
| 2219 | column.rule = .{ | | |
| 2220 | .val_expression = i.block, | | |
| 2221 | }; | | |
| 2222 | }, | 1552 | }, |
| 2223 | } | 1553 | .FRAME => ip: { |
| | 1554 | const frame = encoding.value.arm64.frame; |
| 2224 | | 1555 | |
| 2225 | return prev_row; | 1556 | const fp = (try regValueNative(context.thread_context, fpRegNum(reg_context), reg_context)).*; |
| 2226 | } | 1557 | const ip_ptr = fp + @sizeOf(usize); |
| 2227 | }; | | |
| 2228 | | 1558 | |
| 2229 | /// Returns the ABI-defined default value this register has in the unwinding table | 1559 | var reg_addr = fp - @sizeOf(usize); |
| 2230 | /// before running any of the CIE instructions. The DWARF spec defines these as having | 1560 | inline for (@typeInfo(@TypeOf(frame.x_reg_pairs)).@"struct".fields, 0..) |field, i| { |
| 2231 | /// the .undefined rule by default, but allows ABI authors to override that. | 1561 | if (@field(frame.x_reg_pairs, field.name) != 0) { |
| 2232 | fn getRegDefaultValue(reg_number: u8, context: *UnwindContext, out: []u8) !void { | 1562 | (try regValueNative(context.thread_context, 19 + i, reg_context)).* = @as(*const usize, @ptrFromInt(reg_addr)).*; |
| 2233 | switch (builtin.cpu.arch) { | 1563 | reg_addr += @sizeOf(usize); |
| 2234 | .aarch64, .aarch64_be => { | 1564 | (try regValueNative(context.thread_context, 20 + i, reg_context)).* = @as(*const usize, @ptrFromInt(reg_addr)).*; |
| 2235 | // Callee-saved registers are initialized as if they had the .same_value rule | 1565 | reg_addr += @sizeOf(usize); |
| 2236 | if (reg_number >= 19 and reg_number <= 28) { | 1566 | } |
| 2237 | const src = try regBytes(context.thread_context, reg_number, context.reg_context); | 1567 | } |
| 2238 | if (src.len != out.len) return error.RegisterSizeMismatch; | | |
| 2239 | @memcpy(out, src); | | |
| 2240 | return; | | |
| 2241 | } | | |
| 2242 | }, | | |
| 2243 | else => {}, | | |
| 2244 | } | | |
| 2245 | | 1568 | |
| 2246 | @memset(out, undefined); | 1569 | inline for (@typeInfo(@TypeOf(frame.d_reg_pairs)).@"struct".fields, 0..) |field, i| { |
| 2247 | } | 1570 | if (@field(frame.d_reg_pairs, field.name) != 0) { |
| | 1571 | // Only the lower half of the 128-bit V registers are restored during unwinding |
| | 1572 | { |
| | 1573 | const dest: *align(1) usize = @ptrCast(try regBytes(context.thread_context, 64 + 8 + i, context.reg_context)); |
| | 1574 | dest.* = @as(*const usize, @ptrFromInt(reg_addr)).*; |
| | 1575 | } |
| | 1576 | reg_addr += @sizeOf(usize); |
| | 1577 | { |
| | 1578 | const dest: *align(1) usize = @ptrCast(try regBytes(context.thread_context, 64 + 9 + i, context.reg_context)); |
| | 1579 | dest.* = @as(*const usize, @ptrFromInt(reg_addr)).*; |
| | 1580 | } |
| | 1581 | reg_addr += @sizeOf(usize); |
| | 1582 | } |
| | 1583 | } |
| 2248 | | 1584 | |
| 2249 | /// Since register rules are applied (usually) during a panic, | 1585 | const new_ip = @as(*const usize, @ptrFromInt(ip_ptr)).*; |
| 2250 | /// checked addition / subtraction is used so that we can return | 1586 | const new_fp = @as(*const usize, @ptrFromInt(fp)).*; |
| 2251 | /// an error and fall back to FP-based unwinding. | 1587 | |
| 2252 | fn applyOffset(base: usize, offset: i64) !usize { | 1588 | (try regValueNative(context.thread_context, fpRegNum(reg_context), reg_context)).* = new_fp; |
| 2253 | return if (offset >= 0) | 1589 | (try regValueNative(context.thread_context, ip_reg_num, reg_context)).* = new_ip; |
| 2254 | try std.math.add(usize, base, @as(usize, @intCast(offset))) | 1590 | |
| 2255 | else | 1591 | break :ip new_ip; |
| 2256 | try std.math.sub(usize, base, @as(usize, @intCast(-offset))); | 1592 | }, |
| | 1593 | }, |
| | 1594 | else => comptime unreachable, // unimplemented |
| | 1595 | }; |
| | 1596 | |
| | 1597 | context.pc = stripInstructionPtrAuthCode(new_ip); |
| | 1598 | if (context.pc > 0) context.pc -= 1; |
| | 1599 | return new_ip; |
| 2257 | } | 1600 | } |