authorgravatar for kubkon@jakubkonka.comJakub Konka <kubkon@jakubkonka.com> 2024-05-23 14:21:31+02:00
committergravatar for noreply@github.comGitHub <noreply@github.com> 2024-05-23 14:21:31+02:00
logfb88cfdf6aa3fabba700d8340f025e4a3e0d3fb2
treef613ac6f06fe2cb46c58cd55eb1eaaee09990e07
parent9be8a9000faead40b1aec4877506ff10b066659c
parentd31eb744cec1d991def2d6d42a14ded82af1dbbe
signaturebadge-check Signed by PGP key B5690EEEBB952194

Merge pull request #20032 from ziglang/macho-literals

link/macho: implement logic for merging literals

9 files changed, 1082 insertions(+), 107 deletions(-)

src/link/MachO.zig+122-14
...@@ -539,6 +539,7 @@ pub fn flushModule(self: *MachO, arena: Allocator, prog_node: *std.Progress.Node...@@ -539,6 +539,7 @@ pub fn flushModule(self: *MachO, arena: Allocator, prog_node: *std.Progress.Node
539539
540 try self.convertTentativeDefinitions();540 try self.convertTentativeDefinitions();
541 try self.createObjcSections();541 try self.createObjcSections();
542 try self.dedupLiterals();
542 try self.claimUnresolved();543 try self.claimUnresolved();
543544
544 if (self.base.gc_sections) {545 if (self.base.gc_sections) {
...@@ -1491,6 +1492,33 @@ fn createObjcSections(self: *MachO) !void {...@@ -1491,6 +1492,33 @@ fn createObjcSections(self: *MachO) !void {
1491 const name = eatPrefix(sym.getName(self), "_objc_msgSend$").?;1492 const name = eatPrefix(sym.getName(self), "_objc_msgSend$").?;
1492 const selrefs_index = try internal.addObjcMsgsendSections(name, self);1493 const selrefs_index = try internal.addObjcMsgsendSections(name, self);
1493 try sym.addExtra(.{ .objc_selrefs = selrefs_index }, self);1494 try sym.addExtra(.{ .objc_selrefs = selrefs_index }, self);
1495 sym.flags.objc_stubs = true;
1496 }
1497}
1498
1499pub fn dedupLiterals(self: *MachO) !void {
1500 const gpa = self.base.comp.gpa;
1501 var lp: LiteralPool = .{};
1502 defer lp.deinit(gpa);
1503
1504 if (self.getZigObject()) |zo| {
1505 try zo.resolveLiterals(&lp, self);
1506 }
1507 for (self.objects.items) |index| {
1508 try self.getFile(index).?.object.resolveLiterals(&lp, self);
1509 }
1510 if (self.getInternalObject()) |object| {
1511 try object.resolveLiterals(&lp, self);
1512 }
1513
1514 if (self.getZigObject()) |zo| {
1515 zo.dedupLiterals(lp, self);
1516 }
1517 for (self.objects.items) |index| {
1518 self.getFile(index).?.object.dedupLiterals(lp, self);
1519 }
1520 if (self.getInternalObject()) |object| {
1521 object.dedupLiterals(lp, self);
1494 }1522 }
1495}1523}
14961524
...@@ -1728,20 +1756,18 @@ fn initOutputSections(self: *MachO) !void {...@@ -1728,20 +1756,18 @@ fn initOutputSections(self: *MachO) !void {
1728 atom.out_n_sect = try Atom.initOutputSection(atom.getInputSection(self), self);1756 atom.out_n_sect = try Atom.initOutputSection(atom.getInputSection(self), self);
1729 }1757 }
1730 }1758 }
1731 if (self.text_sect_index == null) {1759 self.text_sect_index = self.getSectionByName("__TEXT", "__text") orelse
1732 self.text_sect_index = try self.addSection("__TEXT", "__text", .{1760 try self.addSection("__TEXT", "__text", .{
1733 .alignment = switch (self.getTarget().cpu.arch) {1761 .alignment = switch (self.getTarget().cpu.arch) {
1734 .x86_64 => 0,1762 .x86_64 => 0,
1735 .aarch64 => 2,1763 .aarch64 => 2,
1736 else => unreachable,1764 else => unreachable,
1737 },1765 },
1738 .flags = macho.S_REGULAR |1766 .flags = macho.S_REGULAR |
1739 macho.S_ATTR_PURE_INSTRUCTIONS | macho.S_ATTR_SOME_INSTRUCTIONS,1767 macho.S_ATTR_PURE_INSTRUCTIONS | macho.S_ATTR_SOME_INSTRUCTIONS,
1740 });1768 });
1741 }1769 self.data_sect_index = self.getSectionByName("__DATA", "__data") orelse
1742 if (self.data_sect_index == null) {1770 try self.addSection("__DATA", "__data", .{});
1743 self.data_sect_index = try self.addSection("__DATA", "__data", .{});
1744 }
1745}1771}
17461772
1747fn initSyntheticSections(self: *MachO) !void {1773fn initSyntheticSections(self: *MachO) !void {
...@@ -4387,6 +4413,87 @@ const Section = struct {...@@ -4387,6 +4413,87 @@ const Section = struct {
4387 last_atom_index: Atom.Index = 0,4413 last_atom_index: Atom.Index = 0,
4388};4414};
43894415
4416pub const LiteralPool = struct {
4417 table: std.AutoArrayHashMapUnmanaged(void, void) = .{},
4418 keys: std.ArrayListUnmanaged(Key) = .{},
4419 values: std.ArrayListUnmanaged(Atom.Index) = .{},
4420 data: std.ArrayListUnmanaged(u8) = .{},
4421
4422 pub fn deinit(lp: *LiteralPool, allocator: Allocator) void {
4423 lp.table.deinit(allocator);
4424 lp.keys.deinit(allocator);
4425 lp.values.deinit(allocator);
4426 lp.data.deinit(allocator);
4427 }
4428
4429 pub fn getAtom(lp: LiteralPool, index: Index, macho_file: *MachO) *Atom {
4430 assert(index < lp.values.items.len);
4431 return macho_file.getAtom(lp.values.items[index]).?;
4432 }
4433
4434 const InsertResult = struct {
4435 found_existing: bool,
4436 index: Index,
4437 atom: *Atom.Index,
4438 };
4439
4440 pub fn insert(lp: *LiteralPool, allocator: Allocator, @"type": u8, string: []const u8) !InsertResult {
4441 const size: u32 = @intCast(string.len);
4442 try lp.data.ensureUnusedCapacity(allocator, size);
4443 const off: u32 = @intCast(lp.data.items.len);
4444 lp.data.appendSliceAssumeCapacity(string);
4445 const adapter = Adapter{ .lp = lp };
4446 const key = Key{ .off = off, .size = size, .seed = @"type" };
4447 const gop = try lp.table.getOrPutAdapted(allocator, key, adapter);
4448 if (!gop.found_existing) {
4449 try lp.keys.append(allocator, key);
4450 _ = try lp.values.addOne(allocator);
4451 }
4452 return .{
4453 .found_existing = gop.found_existing,
4454 .index = @intCast(gop.index),
4455 .atom = &lp.values.items[gop.index],
4456 };
4457 }
4458
4459 const Key = struct {
4460 off: u32,
4461 size: u32,
4462 seed: u8,
4463
4464 fn getData(key: Key, lp: *const LiteralPool) []const u8 {
4465 return lp.data.items[key.off..][0..key.size];
4466 }
4467
4468 fn eql(key: Key, other: Key, lp: *const LiteralPool) bool {
4469 const key_data = key.getData(lp);
4470 const other_data = other.getData(lp);
4471 return mem.eql(u8, key_data, other_data);
4472 }
4473
4474 fn hash(key: Key, lp: *const LiteralPool) u32 {
4475 const data = key.getData(lp);
4476 return @truncate(Hash.hash(key.seed, data));
4477 }
4478 };
4479
4480 const Adapter = struct {
4481 lp: *const LiteralPool,
4482
4483 pub fn eql(ctx: @This(), key: Key, b_void: void, b_map_index: usize) bool {
4484 _ = b_void;
4485 const other = ctx.lp.keys.items[b_map_index];
4486 return key.eql(other, ctx.lp);
4487 }
4488
4489 pub fn hash(ctx: @This(), key: Key) u32 {
4490 return key.hash(ctx.lp);
4491 }
4492 };
4493
4494 pub const Index = u32;
4495};
4496
4390const HotUpdateState = struct {4497const HotUpdateState = struct {
4391 mach_task: ?std.c.MachTask = null,4498 mach_task: ?std.c.MachTask = null,
4392};4499};
...@@ -4738,6 +4845,7 @@ const Dylib = @import("MachO/Dylib.zig");...@@ -4738,6 +4845,7 @@ const Dylib = @import("MachO/Dylib.zig");
4738const ExportTrieSection = synthetic.ExportTrieSection;4845const ExportTrieSection = synthetic.ExportTrieSection;
4739const File = @import("MachO/file.zig").File;4846const File = @import("MachO/file.zig").File;
4740const GotSection = synthetic.GotSection;4847const GotSection = synthetic.GotSection;
4848const Hash = std.hash.Wyhash;
4741const Indsymtab = synthetic.Indsymtab;4849const Indsymtab = synthetic.Indsymtab;
4742const InternalObject = @import("MachO/InternalObject.zig");4850const InternalObject = @import("MachO/InternalObject.zig");
4743const ObjcStubsSection = synthetic.ObjcStubsSection;4851const ObjcStubsSection = synthetic.ObjcStubsSection;
src/link/MachO/Atom.zig+43-15
...@@ -113,12 +113,18 @@ pub fn getThunk(self: Atom, macho_file: *MachO) *Thunk {...@@ -113,12 +113,18 @@ pub fn getThunk(self: Atom, macho_file: *MachO) *Thunk {
113 return macho_file.getThunk(extra.thunk);113 return macho_file.getThunk(extra.thunk);
114}114}
115115
116pub fn getLiteralPoolIndex(self: Atom, macho_file: *MachO) ?MachO.LiteralPool.Index {
117 if (!self.flags.literal_pool) return null;
118 return self.getExtra(macho_file).?.literal_index;
119}
120
116const AddExtraOpts = struct {121const AddExtraOpts = struct {
117 thunk: ?u32 = null,122 thunk: ?u32 = null,
118 rel_index: ?u32 = null,123 rel_index: ?u32 = null,
119 rel_count: ?u32 = null,124 rel_count: ?u32 = null,
120 unwind_index: ?u32 = null,125 unwind_index: ?u32 = null,
121 unwind_count: ?u32 = null,126 unwind_count: ?u32 = null,
127 literal_index: ?u32 = null,
122};128};
123129
124pub fn addExtra(atom: *Atom, opts: AddExtraOpts, macho_file: *MachO) !void {130pub fn addExtra(atom: *Atom, opts: AddExtraOpts, macho_file: *MachO) !void {
...@@ -143,6 +149,16 @@ pub inline fn setExtra(atom: Atom, extra: Extra, macho_file: *MachO) void {...@@ -143,6 +149,16 @@ pub inline fn setExtra(atom: Atom, extra: Extra, macho_file: *MachO) void {
143}149}
144150
145pub fn initOutputSection(sect: macho.section_64, macho_file: *MachO) !u8 {151pub fn initOutputSection(sect: macho.section_64, macho_file: *MachO) !u8 {
152 if (macho_file.base.isRelocatable()) {
153 const osec = macho_file.getSectionByName(sect.segName(), sect.sectName()) orelse
154 try macho_file.addSection(
155 sect.segName(),
156 sect.sectName(),
157 .{ .flags = sect.flags },
158 );
159 return osec;
160 }
161
146 const segname, const sectname, const flags = blk: {162 const segname, const sectname, const flags = blk: {
147 if (sect.isCode()) break :blk .{163 if (sect.isCode()) break :blk .{
148 "__TEXT",164 "__TEXT",
...@@ -200,18 +216,11 @@ pub fn initOutputSection(sect: macho.section_64, macho_file: *MachO) !u8 {...@@ -200,18 +216,11 @@ pub fn initOutputSection(sect: macho.section_64, macho_file: *MachO) !u8 {
200 else => break :blk .{ sect.segName(), sect.sectName(), sect.flags },216 else => break :blk .{ sect.segName(), sect.sectName(), sect.flags },
201 }217 }
202 };218 };
203 const osec = macho_file.getSectionByName(segname, sectname) orelse try macho_file.addSection(219 return macho_file.getSectionByName(segname, sectname) orelse try macho_file.addSection(
204 segname,220 segname,
205 sectname,221 sectname,
206 .{ .flags = flags },222 .{ .flags = flags },
207 );223 );
208 if (mem.eql(u8, segname, "__TEXT") and mem.eql(u8, sectname, "__text")) {
209 macho_file.text_sect_index = osec;
210 }
211 if (mem.eql(u8, segname, "__DATA") and mem.eql(u8, sectname, "__data")) {
212 macho_file.data_sect_index = osec;
213 }
214 return osec;
215}224}
216225
217/// Returns how much room there is to grow in virtual address space.226/// Returns how much room there is to grow in virtual address space.
...@@ -651,6 +660,19 @@ fn resolveRelocInner(...@@ -651,6 +660,19 @@ fn resolveRelocInner(
651 // Address of the __got_zig table entry if any.660 // Address of the __got_zig table entry if any.
652 const ZIG_GOT = @as(i64, @intCast(rel.getZigGotTargetAddress(macho_file)));661 const ZIG_GOT = @as(i64, @intCast(rel.getZigGotTargetAddress(macho_file)));
653662
663 const divExact = struct {
664 fn divExact(atom: Atom, r: Relocation, num: u12, den: u12, ctx: *MachO) !u12 {
665 return math.divExact(u12, num, den) catch {
666 try ctx.reportParseError2(atom.getFile(ctx).getIndex(), "{s}: unexpected remainder when resolving {s} at offset 0x{x}", .{
667 atom.getName(ctx),
668 r.fmtPretty(ctx.getTarget().cpu.arch),
669 r.offset,
670 });
671 return error.UnexpectedRemainder;
672 };
673 }
674 }.divExact;
675
654 switch (rel.tag) {676 switch (rel.tag) {
655 .local => relocs_log.debug(" {x}<+{d}>: {s}: [=> {x}] atom({d})", .{677 .local => relocs_log.debug(" {x}<+{d}>: {s}: [=> {x}] atom({d})", .{
656 P,678 P,
...@@ -822,12 +844,12 @@ fn resolveRelocInner(...@@ -822,12 +844,12 @@ fn resolveRelocInner(
822 };844 };
823 inst.load_store_register.offset = switch (inst.load_store_register.size) {845 inst.load_store_register.offset = switch (inst.load_store_register.size) {
824 0 => if (inst.load_store_register.v == 1)846 0 => if (inst.load_store_register.v == 1)
825 try math.divExact(u12, @truncate(target), 16)847 try divExact(self, rel, @truncate(target), 16, macho_file)
826 else848 else
827 @truncate(target),849 @truncate(target),
828 1 => try math.divExact(u12, @truncate(target), 2),850 1 => try divExact(self, rel, @truncate(target), 2, macho_file),
829 2 => try math.divExact(u12, @truncate(target), 4),851 2 => try divExact(self, rel, @truncate(target), 4, macho_file),
830 3 => try math.divExact(u12, @truncate(target), 8),852 3 => try divExact(self, rel, @truncate(target), 8, macho_file),
831 };853 };
832 try writer.writeInt(u32, inst.toU32(), .little);854 try writer.writeInt(u32, inst.toU32(), .little);
833 }855 }
...@@ -838,7 +860,7 @@ fn resolveRelocInner(...@@ -838,7 +860,7 @@ fn resolveRelocInner(
838 assert(rel.meta.length == 2);860 assert(rel.meta.length == 2);
839 assert(!rel.meta.pcrel);861 assert(!rel.meta.pcrel);
840 const target = math.cast(u64, G + A) orelse return error.Overflow;862 const target = math.cast(u64, G + A) orelse return error.Overflow;
841 aarch64.writeLoadStoreRegInst(try math.divExact(u12, @truncate(target), 8), code[rel_offset..][0..4]);863 aarch64.writeLoadStoreRegInst(try divExact(self, rel, @truncate(target), 8, macho_file), code[rel_offset..][0..4]);
842 },864 },
843865
844 .tlvp_pageoff => {866 .tlvp_pageoff => {
...@@ -890,7 +912,7 @@ fn resolveRelocInner(...@@ -890,7 +912,7 @@ fn resolveRelocInner(
890 .load_store_register = .{912 .load_store_register = .{
891 .rt = reg_info.rd,913 .rt = reg_info.rd,
892 .rn = reg_info.rn,914 .rn = reg_info.rn,
893 .offset = try math.divExact(u12, @truncate(target), 8),915 .offset = try divExact(self, rel, @truncate(target), 8, macho_file),
894 .opc = 0b01,916 .opc = 0b01,
895 .op1 = 0b01,917 .op1 = 0b01,
896 .v = 0,918 .v = 0,
...@@ -1174,7 +1196,7 @@ pub const Flags = packed struct {...@@ -1174,7 +1196,7 @@ pub const Flags = packed struct {
1174 /// Specifies whether this atom is alive or has been garbage collected.1196 /// Specifies whether this atom is alive or has been garbage collected.
1175 alive: bool = true,1197 alive: bool = true,
11761198
1177 /// Specifies if the atom has been visited during garbage collection.1199 /// Specifies if this atom has been visited during garbage collection.
1178 visited: bool = false,1200 visited: bool = false,
11791201
1180 /// Whether this atom has a range extension thunk.1202 /// Whether this atom has a range extension thunk.
...@@ -1185,6 +1207,9 @@ pub const Flags = packed struct {...@@ -1185,6 +1207,9 @@ pub const Flags = packed struct {
11851207
1186 /// Whether this atom has any unwind records.1208 /// Whether this atom has any unwind records.
1187 unwind: bool = false,1209 unwind: bool = false,
1210
1211 /// Whether this atom has LiteralPool entry.
1212 literal_pool: bool = false,
1188};1213};
11891214
1190pub const Extra = struct {1215pub const Extra = struct {
...@@ -1202,6 +1227,9 @@ pub const Extra = struct {...@@ -1202,6 +1227,9 @@ pub const Extra = struct {
12021227
1203 /// Count of relocations belonging to this atom.1228 /// Count of relocations belonging to this atom.
1204 unwind_count: u32 = 0,1229 unwind_count: u32 = 0,
1230
1231 /// Index into LiteralPool entry for this atom.
1232 literal_index: u32 = 0,
1205};1233};
12061234
1207pub const Alignment = @import("../../InternPool.zig").Alignment;1235pub const Alignment = @import("../../InternPool.zig").Alignment;
src/link/MachO/InternalObject.zig+115-33
...@@ -3,7 +3,6 @@ index: File.Index,...@@ -3,7 +3,6 @@ index: File.Index,
3sections: std.MultiArrayList(Section) = .{},3sections: std.MultiArrayList(Section) = .{},
4atoms: std.ArrayListUnmanaged(Atom.Index) = .{},4atoms: std.ArrayListUnmanaged(Atom.Index) = .{},
5symbols: std.ArrayListUnmanaged(Symbol.Index) = .{},5symbols: std.ArrayListUnmanaged(Symbol.Index) = .{},
6strtab: std.ArrayListUnmanaged(u8) = .{},
76
8objc_methnames: std.ArrayListUnmanaged(u8) = .{},7objc_methnames: std.ArrayListUnmanaged(u8) = .{},
9objc_selrefs: [@sizeOf(u64)]u8 = [_]u8{0} ** @sizeOf(u64),8objc_selrefs: [@sizeOf(u64)]u8 = [_]u8{0} ** @sizeOf(u64),
...@@ -18,7 +17,6 @@ pub fn deinit(self: *InternalObject, allocator: Allocator) void {...@@ -18,7 +17,6 @@ pub fn deinit(self: *InternalObject, allocator: Allocator) void {
18 self.sections.deinit(allocator);17 self.sections.deinit(allocator);
19 self.atoms.deinit(allocator);18 self.atoms.deinit(allocator);
20 self.symbols.deinit(allocator);19 self.symbols.deinit(allocator);
21 self.strtab.deinit(allocator);
22 self.objc_methnames.deinit(allocator);20 self.objc_methnames.deinit(allocator);
23}21}
2422
...@@ -38,9 +36,9 @@ pub fn addSymbol(self: *InternalObject, name: [:0]const u8, macho_file: *MachO)...@@ -38,9 +36,9 @@ pub fn addSymbol(self: *InternalObject, name: [:0]const u8, macho_file: *MachO)
38}36}
3937
40/// Creates a fake input sections __TEXT,__objc_methname and __DATA,__objc_selrefs.38/// Creates a fake input sections __TEXT,__objc_methname and __DATA,__objc_selrefs.
41pub fn addObjcMsgsendSections(self: *InternalObject, sym_name: []const u8, macho_file: *MachO) !u32 {39pub fn addObjcMsgsendSections(self: *InternalObject, sym_name: []const u8, macho_file: *MachO) !Atom.Index {
42 const methname_atom_index = try self.addObjcMethnameSection(sym_name, macho_file);40 const methname_atom_index = try self.addObjcMethnameSection(sym_name, macho_file);
43 return try self.addObjcSelrefsSection(sym_name, methname_atom_index, macho_file);41 return try self.addObjcSelrefsSection(methname_atom_index, macho_file);
44}42}
4543
46fn addObjcMethnameSection(self: *InternalObject, methname: []const u8, macho_file: *MachO) !Atom.Index {44fn addObjcMethnameSection(self: *InternalObject, methname: []const u8, macho_file: *MachO) !Atom.Index {
...@@ -48,11 +46,8 @@ fn addObjcMethnameSection(self: *InternalObject, methname: []const u8, macho_fil...@@ -48,11 +46,8 @@ fn addObjcMethnameSection(self: *InternalObject, methname: []const u8, macho_fil
48 const atom_index = try macho_file.addAtom();46 const atom_index = try macho_file.addAtom();
49 try self.atoms.append(gpa, atom_index);47 try self.atoms.append(gpa, atom_index);
5048
51 const name = try std.fmt.allocPrintZ(gpa, "__TEXT$__objc_methname${s}", .{methname});
52 defer gpa.free(name);
53 const atom = macho_file.getAtom(atom_index).?;49 const atom = macho_file.getAtom(atom_index).?;
54 atom.atom_index = atom_index;50 atom.atom_index = atom_index;
55 atom.name = try self.addString(gpa, name);
56 atom.file = self.index;51 atom.file = self.index;
57 atom.size = methname.len + 1;52 atom.size = methname.len + 1;
58 atom.alignment = .@"1";53 atom.alignment = .@"1";
...@@ -72,21 +67,13 @@ fn addObjcMethnameSection(self: *InternalObject, methname: []const u8, macho_fil...@@ -72,21 +67,13 @@ fn addObjcMethnameSection(self: *InternalObject, methname: []const u8, macho_fil
72 return atom_index;67 return atom_index;
73}68}
7469
75fn addObjcSelrefsSection(70fn addObjcSelrefsSection(self: *InternalObject, methname_atom_index: Atom.Index, macho_file: *MachO) !Atom.Index {
76 self: *InternalObject,
77 methname: []const u8,
78 methname_atom_index: Atom.Index,
79 macho_file: *MachO,
80) !Atom.Index {
81 const gpa = macho_file.base.comp.gpa;71 const gpa = macho_file.base.comp.gpa;
82 const atom_index = try macho_file.addAtom();72 const atom_index = try macho_file.addAtom();
83 try self.atoms.append(gpa, atom_index);73 try self.atoms.append(gpa, atom_index);
8474
85 const name = try std.fmt.allocPrintZ(gpa, "__DATA$__objc_selrefs${s}", .{methname});
86 defer gpa.free(name);
87 const atom = macho_file.getAtom(atom_index).?;75 const atom = macho_file.getAtom(atom_index).?;
88 atom.atom_index = atom_index;76 atom.atom_index = atom_index;
89 atom.name = try self.addString(gpa, name);
90 atom.file = self.index;77 atom.file = self.index;
91 atom.size = @sizeOf(u64);78 atom.size = @sizeOf(u64);
92 atom.alignment = .@"8";79 atom.alignment = .@"8";
...@@ -122,6 +109,102 @@ fn addObjcSelrefsSection(...@@ -122,6 +109,102 @@ fn addObjcSelrefsSection(
122 return atom_index;109 return atom_index;
123}110}
124111
112pub fn resolveLiterals(self: InternalObject, lp: *MachO.LiteralPool, macho_file: *MachO) !void {
113 const gpa = macho_file.base.comp.gpa;
114
115 var buffer = std.ArrayList(u8).init(gpa);
116 defer buffer.deinit();
117
118 const slice = self.sections.slice();
119 for (slice.items(.header), self.atoms.items, 0..) |header, atom_index, n_sect| {
120 if (Object.isCstringLiteral(header) or Object.isFixedSizeLiteral(header)) {
121 const data = try self.getSectionData(@intCast(n_sect));
122 const atom = macho_file.getAtom(atom_index).?;
123 const res = try lp.insert(gpa, header.type(), data);
124 if (!res.found_existing) {
125 res.atom.* = atom_index;
126 }
127 atom.flags.literal_pool = true;
128 try atom.addExtra(.{ .literal_index = res.index }, macho_file);
129 } else if (Object.isPtrLiteral(header)) {
130 const atom = macho_file.getAtom(atom_index).?;
131 const relocs = atom.getRelocs(macho_file);
132 assert(relocs.len == 1);
133 const rel = relocs[0];
134 assert(rel.tag == .local);
135 const target = macho_file.getAtom(rel.target).?;
136 const addend = std.math.cast(u32, rel.addend) orelse return error.Overflow;
137 const target_size = std.math.cast(usize, target.size) orelse return error.Overflow;
138 try buffer.ensureUnusedCapacity(target_size);
139 buffer.resize(target_size) catch unreachable;
140 try target.getData(macho_file, buffer.items);
141 const res = try lp.insert(gpa, header.type(), buffer.items[addend..]);
142 buffer.clearRetainingCapacity();
143 if (!res.found_existing) {
144 res.atom.* = atom_index;
145 }
146 atom.flags.literal_pool = true;
147 try atom.addExtra(.{ .literal_index = res.index }, macho_file);
148 }
149 }
150}
151
152pub fn dedupLiterals(self: InternalObject, lp: MachO.LiteralPool, macho_file: *MachO) void {
153 for (self.atoms.items) |atom_index| {
154 const atom = macho_file.getAtom(atom_index) orelse continue;
155 if (!atom.flags.alive) continue;
156 if (!atom.flags.relocs) continue;
157
158 const relocs = blk: {
159 const extra = atom.getExtra(macho_file).?;
160 const relocs = self.sections.items(.relocs)[atom.n_sect].items;
161 break :blk relocs[extra.rel_index..][0..extra.rel_count];
162 };
163 for (relocs) |*rel| switch (rel.tag) {
164 .local => {
165 const target = macho_file.getAtom(rel.target).?;
166 if (target.getLiteralPoolIndex(macho_file)) |lp_index| {
167 const lp_atom = lp.getAtom(lp_index, macho_file);
168 if (target.atom_index != lp_atom.atom_index) {
169 lp_atom.alignment = lp_atom.alignment.max(target.alignment);
170 target.flags.alive = false;
171 rel.target = lp_atom.atom_index;
172 }
173 }
174 },
175 .@"extern" => {
176 const target_sym = rel.getTargetSymbol(macho_file);
177 if (target_sym.getAtom(macho_file)) |target_atom| {
178 if (target_atom.getLiteralPoolIndex(macho_file)) |lp_index| {
179 const lp_atom = lp.getAtom(lp_index, macho_file);
180 if (target_atom.atom_index != lp_atom.atom_index) {
181 lp_atom.alignment = lp_atom.alignment.max(target_atom.alignment);
182 target_atom.flags.alive = false;
183 target_sym.atom = lp_atom.atom_index;
184 }
185 }
186 }
187 },
188 };
189 }
190
191 for (self.symbols.items) |sym_index| {
192 const sym = macho_file.getSymbol(sym_index);
193 if (!sym.flags.objc_stubs) continue;
194 var extra = sym.getExtra(macho_file).?;
195 const atom = macho_file.getAtom(extra.objc_selrefs).?;
196 if (atom.getLiteralPoolIndex(macho_file)) |lp_index| {
197 const lp_atom = lp.getAtom(lp_index, macho_file);
198 if (atom.atom_index != lp_atom.atom_index) {
199 lp_atom.alignment = lp_atom.alignment.max(atom.alignment);
200 atom.flags.alive = false;
201 extra.objc_selrefs = lp_atom.atom_index;
202 sym.setExtra(extra, macho_file);
203 }
204 }
205 }
206}
207
125pub fn calcSymtabSize(self: *InternalObject, macho_file: *MachO) !void {208pub fn calcSymtabSize(self: *InternalObject, macho_file: *MachO) !void {
126 for (self.symbols.items) |sym_index| {209 for (self.symbols.items) |sym_index| {
127 const sym = macho_file.getSymbol(sym_index);210 const sym = macho_file.getSymbol(sym_index);
...@@ -167,18 +250,23 @@ fn addSection(self: *InternalObject, allocator: Allocator, segname: []const u8,...@@ -167,18 +250,23 @@ fn addSection(self: *InternalObject, allocator: Allocator, segname: []const u8,
167 return n_sect;250 return n_sect;
168}251}
169252
170pub fn getAtomData(self: *const InternalObject, atom: Atom, buffer: []u8) !void {253fn getSectionData(self: *const InternalObject, index: u32) error{Overflow}![]const u8 {
171 assert(buffer.len == atom.size);
172 const slice = self.sections.slice();254 const slice = self.sections.slice();
173 const sect = slice.items(.header)[atom.n_sect];255 assert(index < slice.items(.header).len);
174 const extra = slice.items(.extra)[atom.n_sect];256 const sect = slice.items(.header)[index];
175 const data = if (extra.is_objc_methname) blk: {257 const extra = slice.items(.extra)[index];
258 if (extra.is_objc_methname) {
176 const size = std.math.cast(usize, sect.size) orelse return error.Overflow;259 const size = std.math.cast(usize, sect.size) orelse return error.Overflow;
177 break :blk self.objc_methnames.items[sect.offset..][0..size];260 return self.objc_methnames.items[sect.offset..][0..size];
178 } else if (extra.is_objc_selref)261 } else if (extra.is_objc_selref)
179 &self.objc_selrefs262 return &self.objc_selrefs
180 else263 else
181 @panic("ref to non-existent section");264 @panic("ref to non-existent section");
265}
266
267pub fn getAtomData(self: *const InternalObject, atom: Atom, buffer: []u8) error{Overflow}!void {
268 assert(buffer.len == atom.size);
269 const data = try self.getSectionData(atom.n_sect);
182 const off = std.math.cast(usize, atom.off) orelse return error.Overflow;270 const off = std.math.cast(usize, atom.off) orelse return error.Overflow;
183 const size = std.math.cast(usize, atom.size) orelse return error.Overflow;271 const size = std.math.cast(usize, atom.size) orelse return error.Overflow;
184 @memcpy(buffer, data[off..][0..size]);272 @memcpy(buffer, data[off..][0..size]);
...@@ -191,17 +279,11 @@ pub fn getAtomRelocs(self: *const InternalObject, atom: Atom, macho_file: *MachO...@@ -191,17 +279,11 @@ pub fn getAtomRelocs(self: *const InternalObject, atom: Atom, macho_file: *MachO
191 return relocs.items[extra.rel_index..][0..extra.rel_count];279 return relocs.items[extra.rel_index..][0..extra.rel_count];
192}280}
193281
194fn addString(self: *InternalObject, allocator: Allocator, name: [:0]const u8) error{OutOfMemory}!u32 {
195 const off: u32 = @intCast(self.strtab.items.len);
196 try self.strtab.ensureUnusedCapacity(allocator, name.len + 1);
197 self.strtab.appendSliceAssumeCapacity(name);
198 self.strtab.appendAssumeCapacity(0);
199 return off;
200}
201
202pub fn getString(self: InternalObject, off: u32) [:0]const u8 {282pub fn getString(self: InternalObject, off: u32) [:0]const u8 {
203 assert(off < self.strtab.items.len);283 _ = self;
204 return mem.sliceTo(@as([*:0]const u8, @ptrCast(self.strtab.items.ptr + off)), 0);284 _ = off;
285 // We don't have any local strings for synthetic atoms.
286 return "";
205}287}
206288
207pub fn asFile(self: *InternalObject) File {289pub fn asFile(self: *InternalObject) File {
src/link/MachO/Object.zig+236-35
...@@ -208,7 +208,9 @@ pub fn parse(self: *Object, macho_file: *MachO) !void {...@@ -208,7 +208,9 @@ pub fn parse(self: *Object, macho_file: *MachO) !void {
208 try self.initSections(nlists.items, macho_file);208 try self.initSections(nlists.items, macho_file);
209 }209 }
210210
211 try self.initLiteralSections(macho_file);211 try self.initCstringLiterals(macho_file);
212 try self.initFixedSizeLiterals(macho_file);
213 try self.initPointerLiterals(macho_file);
212 try self.linkNlistToAtom(macho_file);214 try self.linkNlistToAtom(macho_file);
213215
214 try self.sortAtoms(macho_file);216 try self.sortAtoms(macho_file);
...@@ -263,25 +265,33 @@ pub fn parse(self: *Object, macho_file: *MachO) !void {...@@ -263,25 +265,33 @@ pub fn parse(self: *Object, macho_file: *MachO) !void {
263 }265 }
264}266}
265267
266inline fn isLiteral(sect: macho.section_64) bool {268pub fn isCstringLiteral(sect: macho.section_64) bool {
269 return sect.type() == macho.S_CSTRING_LITERALS;
270}
271
272pub fn isFixedSizeLiteral(sect: macho.section_64) bool {
267 return switch (sect.type()) {273 return switch (sect.type()) {
268 macho.S_CSTRING_LITERALS,
269 macho.S_4BYTE_LITERALS,274 macho.S_4BYTE_LITERALS,
270 macho.S_8BYTE_LITERALS,275 macho.S_8BYTE_LITERALS,
271 macho.S_16BYTE_LITERALS,276 macho.S_16BYTE_LITERALS,
272 macho.S_LITERAL_POINTERS,
273 => true,277 => true,
274 else => false,278 else => false,
275 };279 };
276}280}
277281
282pub fn isPtrLiteral(sect: macho.section_64) bool {
283 return sect.type() == macho.S_LITERAL_POINTERS;
284}
285
278fn initSubsections(self: *Object, nlists: anytype, macho_file: *MachO) !void {286fn initSubsections(self: *Object, nlists: anytype, macho_file: *MachO) !void {
279 const tracy = trace(@src());287 const tracy = trace(@src());
280 defer tracy.end();288 defer tracy.end();
281 const gpa = macho_file.base.comp.gpa;289 const gpa = macho_file.base.comp.gpa;
282 const slice = self.sections.slice();290 const slice = self.sections.slice();
283 for (slice.items(.header), slice.items(.subsections), 0..) |sect, *subsections, n_sect| {291 for (slice.items(.header), slice.items(.subsections), 0..) |sect, *subsections, n_sect| {
284 if (isLiteral(sect)) continue;292 if (isCstringLiteral(sect)) continue;
293 if (isFixedSizeLiteral(sect)) continue;
294 if (isPtrLiteral(sect)) continue;
285295
286 const nlist_start = for (nlists, 0..) |nlist, i| {296 const nlist_start = for (nlists, 0..) |nlist, i| {
287 if (nlist.nlist.n_sect - 1 == n_sect) break i;297 if (nlist.nlist.n_sect - 1 == n_sect) break i;
...@@ -352,7 +362,9 @@ fn initSections(self: *Object, nlists: anytype, macho_file: *MachO) !void {...@@ -352,7 +362,9 @@ fn initSections(self: *Object, nlists: anytype, macho_file: *MachO) !void {
352 try self.atoms.ensureUnusedCapacity(gpa, self.sections.items(.header).len);362 try self.atoms.ensureUnusedCapacity(gpa, self.sections.items(.header).len);
353363
354 for (slice.items(.header), 0..) |sect, n_sect| {364 for (slice.items(.header), 0..) |sect, n_sect| {
355 if (isLiteral(sect)) continue;365 if (isCstringLiteral(sect)) continue;
366 if (isFixedSizeLiteral(sect)) continue;
367 if (isPtrLiteral(sect)) continue;
356368
357 const name = try std.fmt.allocPrintZ(gpa, "{s}${s}", .{ sect.segName(), sect.sectName() });369 const name = try std.fmt.allocPrintZ(gpa, "{s}${s}", .{ sect.segName(), sect.sectName() });
358 defer gpa.free(name);370 defer gpa.free(name);
...@@ -393,6 +405,220 @@ fn initSections(self: *Object, nlists: anytype, macho_file: *MachO) !void {...@@ -393,6 +405,220 @@ fn initSections(self: *Object, nlists: anytype, macho_file: *MachO) !void {
393 }405 }
394}406}
395407
408fn initCstringLiterals(self: *Object, macho_file: *MachO) !void {
409 const tracy = trace(@src());
410 defer tracy.end();
411
412 const gpa = macho_file.base.comp.gpa;
413 const slice = self.sections.slice();
414
415 for (slice.items(.header), 0..) |sect, n_sect| {
416 if (!isCstringLiteral(sect)) continue;
417
418 const data = try self.getSectionData(@intCast(n_sect), macho_file);
419 defer gpa.free(data);
420
421 var start: u32 = 0;
422 while (start < data.len) {
423 var end = start;
424 while (end < data.len - 1 and data[end] != 0) : (end += 1) {}
425 if (data[end] != 0) {
426 try macho_file.reportParseError2(
427 self.index,
428 "string not null terminated in '{s},{s}'",
429 .{ sect.segName(), sect.sectName() },
430 );
431 return error.MalformedObject;
432 }
433 end += 1;
434
435 const atom_index = try self.addAtom(.{
436 .name = 0,
437 .n_sect = @intCast(n_sect),
438 .off = start,
439 .size = end - start,
440 .alignment = sect.@"align",
441 }, macho_file);
442 try slice.items(.subsections)[n_sect].append(gpa, .{
443 .atom = atom_index,
444 .off = start,
445 });
446
447 start = end;
448 }
449 }
450}
451
452fn initFixedSizeLiterals(self: *Object, macho_file: *MachO) !void {
453 const tracy = trace(@src());
454 defer tracy.end();
455
456 const gpa = macho_file.base.comp.gpa;
457 const slice = self.sections.slice();
458
459 for (slice.items(.header), 0..) |sect, n_sect| {
460 if (!isFixedSizeLiteral(sect)) continue;
461 const rec_size: u8 = switch (sect.type()) {
462 macho.S_4BYTE_LITERALS => 4,
463 macho.S_8BYTE_LITERALS => 8,
464 macho.S_16BYTE_LITERALS => 16,
465 else => unreachable,
466 };
467 if (sect.size % rec_size != 0) {
468 try macho_file.reportParseError2(
469 self.index,
470 "size not multiple of record size in '{s},{s}'",
471 .{ sect.segName(), sect.sectName() },
472 );
473 return error.MalformedObject;
474 }
475 var pos: u32 = 0;
476 while (pos < sect.size) : (pos += rec_size) {
477 const atom_index = try self.addAtom(.{
478 .name = 0,
479 .n_sect = @intCast(n_sect),
480 .off = pos,
481 .size = rec_size,
482 .alignment = sect.@"align",
483 }, macho_file);
484 try slice.items(.subsections)[n_sect].append(gpa, .{
485 .atom = atom_index,
486 .off = pos,
487 });
488 }
489 }
490}
491
492fn initPointerLiterals(self: *Object, macho_file: *MachO) !void {
493 const tracy = trace(@src());
494 defer tracy.end();
495
496 const gpa = macho_file.base.comp.gpa;
497 const slice = self.sections.slice();
498
499 for (slice.items(.header), 0..) |sect, n_sect| {
500 if (!isPtrLiteral(sect)) continue;
501
502 const rec_size: u8 = 8;
503 if (sect.size % rec_size != 0) {
504 try macho_file.reportParseError2(
505 self.index,
506 "size not multiple of record size in '{s},{s}'",
507 .{ sect.segName(), sect.sectName() },
508 );
509 return error.MalformedObject;
510 }
511 const num_ptrs = math.cast(usize, @divExact(sect.size, rec_size)) orelse return error.Overflow;
512
513 for (0..num_ptrs) |i| {
514 const pos: u32 = @as(u32, @intCast(i)) * rec_size;
515 const atom_index = try self.addAtom(.{
516 .name = 0,
517 .n_sect = @intCast(n_sect),
518 .off = pos,
519 .size = rec_size,
520 .alignment = sect.@"align",
521 }, macho_file);
522 try slice.items(.subsections)[n_sect].append(gpa, .{
523 .atom = atom_index,
524 .off = pos,
525 });
526 }
527 }
528}
529
530pub fn resolveLiterals(self: Object, lp: *MachO.LiteralPool, macho_file: *MachO) !void {
531 const gpa = macho_file.base.comp.gpa;
532
533 var buffer = std.ArrayList(u8).init(gpa);
534 defer buffer.deinit();
535
536 const slice = self.sections.slice();
537 for (slice.items(.header), slice.items(.subsections), 0..) |header, subs, n_sect| {
538 if (isCstringLiteral(header) or isFixedSizeLiteral(header)) {
539 const data = try self.getSectionData(@intCast(n_sect), macho_file);
540 defer gpa.free(data);
541
542 for (subs.items) |sub| {
543 const atom = macho_file.getAtom(sub.atom).?;
544 const atom_off = math.cast(usize, atom.off) orelse return error.Overflow;
545 const atom_size = math.cast(usize, atom.size) orelse return error.Overflow;
546 const atom_data = data[atom_off..][0..atom_size];
547 const res = try lp.insert(gpa, header.type(), atom_data);
548 if (!res.found_existing) {
549 res.atom.* = sub.atom;
550 }
551 atom.flags.literal_pool = true;
552 try atom.addExtra(.{ .literal_index = res.index }, macho_file);
553 }
554 } else if (isPtrLiteral(header)) {
555 for (subs.items) |sub| {
556 const atom = macho_file.getAtom(sub.atom).?;
557 const relocs = atom.getRelocs(macho_file);
558 assert(relocs.len == 1);
559 const rel = relocs[0];
560 const target = switch (rel.tag) {
561 .local => rel.target,
562 .@"extern" => rel.getTargetSymbol(macho_file).atom,
563 };
564 const addend = math.cast(u32, rel.addend) orelse return error.Overflow;
565 const target_atom = macho_file.getAtom(target).?;
566 const target_atom_size = math.cast(usize, target_atom.size) orelse return error.Overflow;
567 try buffer.ensureUnusedCapacity(target_atom_size);
568 buffer.resize(target_atom_size) catch unreachable;
569 try target_atom.getData(macho_file, buffer.items);
570 const res = try lp.insert(gpa, header.type(), buffer.items[addend..]);
571 buffer.clearRetainingCapacity();
572 if (!res.found_existing) {
573 res.atom.* = sub.atom;
574 }
575 atom.flags.literal_pool = true;
576 try atom.addExtra(.{ .literal_index = res.index }, macho_file);
577 }
578 }
579 }
580}
581
582pub fn dedupLiterals(self: Object, lp: MachO.LiteralPool, macho_file: *MachO) void {
583 for (self.atoms.items) |atom_index| {
584 const atom = macho_file.getAtom(atom_index) orelse continue;
585 if (!atom.flags.alive) continue;
586 if (!atom.flags.relocs) continue;
587
588 const relocs = blk: {
589 const extra = atom.getExtra(macho_file).?;
590 const relocs = self.sections.items(.relocs)[atom.n_sect].items;
591 break :blk relocs[extra.rel_index..][0..extra.rel_count];
592 };
593 for (relocs) |*rel| switch (rel.tag) {
594 .local => {
595 const target = macho_file.getAtom(rel.target).?;
596 if (target.getLiteralPoolIndex(macho_file)) |lp_index| {
597 const lp_atom = lp.getAtom(lp_index, macho_file);
598 if (target.atom_index != lp_atom.atom_index) {
599 lp_atom.alignment = lp_atom.alignment.max(target.alignment);
600 target.flags.alive = false;
601 rel.target = lp_atom.atom_index;
602 }
603 }
604 },
605 .@"extern" => {
606 const target_sym = rel.getTargetSymbol(macho_file);
607 if (target_sym.getAtom(macho_file)) |target_atom| {
608 if (target_atom.getLiteralPoolIndex(macho_file)) |lp_index| {
609 const lp_atom = lp.getAtom(lp_index, macho_file);
610 if (target_atom.atom_index != lp_atom.atom_index) {
611 lp_atom.alignment = lp_atom.alignment.max(target_atom.alignment);
612 target_atom.flags.alive = false;
613 target_sym.atom = lp_atom.atom_index;
614 }
615 }
616 }
617 },
618 };
619 }
620}
621
396const AddAtomArgs = struct {622const AddAtomArgs = struct {
397 name: u32,623 name: u32,
398 n_sect: u8,624 n_sect: u8,
...@@ -416,34 +642,6 @@ fn addAtom(self: *Object, args: AddAtomArgs, macho_file: *MachO) !Atom.Index {...@@ -416,34 +642,6 @@ fn addAtom(self: *Object, args: AddAtomArgs, macho_file: *MachO) !Atom.Index {
416 return atom_index;642 return atom_index;
417}643}
418644
419fn initLiteralSections(self: *Object, macho_file: *MachO) !void {
420 const tracy = trace(@src());
421 defer tracy.end();
422 // TODO here we should split into equal-sized records, hash the contents, and then
423 // deduplicate - ICF.
424 // For now, we simply cover each literal section with one large atom.
425 const gpa = macho_file.base.comp.gpa;
426 const slice = self.sections.slice();
427
428 try self.atoms.ensureUnusedCapacity(gpa, self.sections.items(.header).len);
429
430 for (slice.items(.header), 0..) |sect, n_sect| {
431 if (!isLiteral(sect)) continue;
432
433 const name = try std.fmt.allocPrintZ(gpa, "{s}${s}", .{ sect.segName(), sect.sectName() });
434 defer gpa.free(name);
435
436 const atom_index = try self.addAtom(.{
437 .name = try self.addString(gpa, name),
438 .n_sect = @intCast(n_sect),
439 .off = 0,
440 .size = sect.size,
441 .alignment = sect.@"align",
442 }, macho_file);
443 try slice.items(.subsections)[n_sect].append(gpa, .{ .atom = atom_index, .off = 0 });
444 }
445}
446
447pub fn findAtom(self: Object, addr: u64) ?Atom.Index {645pub fn findAtom(self: Object, addr: u64) ?Atom.Index {
448 const tracy = trace(@src());646 const tracy = trace(@src());
449 defer tracy.end();647 defer tracy.end();
...@@ -1369,7 +1567,10 @@ pub fn calcSymtabSize(self: *Object, macho_file: *MachO) !void {...@@ -1369,7 +1567,10 @@ pub fn calcSymtabSize(self: *Object, macho_file: *MachO) !void {
1369 const name = sym.getName(macho_file);1567 const name = sym.getName(macho_file);
1370 // TODO in -r mode, we actually want to merge symbol names and emit only one1568 // TODO in -r mode, we actually want to merge symbol names and emit only one
1371 // work it out when emitting relocs1569 // work it out when emitting relocs
1372 if (name.len > 0 and (name[0] == 'L' or name[0] == 'l') and !macho_file.base.isObject()) continue;1570 if (name.len > 0 and
1571 (name[0] == 'L' or name[0] == 'l' or
1572 mem.startsWith(u8, name, "_OBJC_SELECTOR_REFERENCES_")) and
1573 !macho_file.base.isObject()) continue;
1373 sym.flags.output_symtab = true;1574 sym.flags.output_symtab = true;
1374 if (sym.isLocal()) {1575 if (sym.isLocal()) {
1375 try sym.addExtra(.{ .symtab = self.output_symtab_ctx.nlocals }, macho_file);1576 try sym.addExtra(.{ .symtab = self.output_symtab_ctx.nlocals }, macho_file);
src/link/MachO/Relocation.zig+53
...@@ -60,6 +60,59 @@ pub fn lessThan(ctx: void, lhs: Relocation, rhs: Relocation) bool {...@@ -60,6 +60,59 @@ pub fn lessThan(ctx: void, lhs: Relocation, rhs: Relocation) bool {
60 return lhs.offset < rhs.offset;60 return lhs.offset < rhs.offset;
61}61}
6262
63const FormatCtx = struct { Relocation, std.Target.Cpu.Arch };
64
65pub fn fmtPretty(rel: Relocation, cpu_arch: std.Target.Cpu.Arch) std.fmt.Formatter(formatPretty) {
66 return .{ .data = .{ rel, cpu_arch } };
67}
68
69fn formatPretty(
70 ctx: FormatCtx,
71 comptime unused_fmt_string: []const u8,
72 options: std.fmt.FormatOptions,
73 writer: anytype,
74) !void {
75 _ = options;
76 _ = unused_fmt_string;
77 const rel, const cpu_arch = ctx;
78 const str = switch (rel.type) {
79 .signed => "X86_64_RELOC_SIGNED",
80 .signed1 => "X86_64_RELOC_SIGNED_1",
81 .signed2 => "X86_64_RELOC_SIGNED_2",
82 .signed4 => "X86_64_RELOC_SIGNED_4",
83 .got_load => "X86_64_RELOC_GOT_LOAD",
84 .tlv => "X86_64_RELOC_TLV",
85 .zig_got_load => "ZIG_GOT_LOAD",
86 .page => "ARM64_RELOC_PAGE21",
87 .pageoff => "ARM64_RELOC_PAGEOFF12",
88 .got_load_page => "ARM64_RELOC_GOT_LOAD_PAGE21",
89 .got_load_pageoff => "ARM64_RELOC_GOT_LOAD_PAGEOFF12",
90 .tlvp_page => "ARM64_RELOC_TLVP_LOAD_PAGE21",
91 .tlvp_pageoff => "ARM64_RELOC_TLVP_LOAD_PAGEOFF12",
92 .branch => switch (cpu_arch) {
93 .x86_64 => "X86_64_RELOC_BRANCH",
94 .aarch64 => "ARM64_RELOC_BRANCH26",
95 else => unreachable,
96 },
97 .got => switch (cpu_arch) {
98 .x86_64 => "X86_64_RELOC_GOT",
99 .aarch64 => "ARM64_RELOC_POINTER_TO_GOT",
100 else => unreachable,
101 },
102 .subtractor => switch (cpu_arch) {
103 .x86_64 => "X86_64_RELOC_SUBTRACTOR",
104 .aarch64 => "ARM64_RELOC_SUBTRACTOR",
105 else => unreachable,
106 },
107 .unsigned => switch (cpu_arch) {
108 .x86_64 => "X86_64_RELOC_UNSIGNED",
109 .aarch64 => "ARM64_RELOC_UNSIGNED",
110 else => unreachable,
111 },
112 };
113 try writer.writeAll(str);
114}
115
63pub const Type = enum {116pub const Type = enum {
64 // x86_64117 // x86_64
65 /// RIP-relative displacement (X86_64_RELOC_SIGNED)118 /// RIP-relative displacement (X86_64_RELOC_SIGNED)
src/link/MachO/Symbol.zig+2-2
...@@ -14,8 +14,8 @@ file: File.Index = 0,...@@ -14,8 +14,8 @@ file: File.Index = 0,
14/// Use `getAtom` to get the pointer to the atom.14/// Use `getAtom` to get the pointer to the atom.
15atom: Atom.Index = 0,15atom: Atom.Index = 0,
1616
17/// Assigned output section index for this atom.17/// Assigned output section index for this symbol.
18out_n_sect: u16 = 0,18out_n_sect: u8 = 0,
1919
20/// Index of the source nlist this symbol references.20/// Index of the source nlist this symbol references.
21/// Use `getNlist` to pull the nlist from the relevant file.21/// Use `getNlist` to pull the nlist from the relevant file.
src/link/MachO/ZigObject.zig+14
...@@ -314,6 +314,20 @@ pub fn checkDuplicates(self: *ZigObject, dupes: anytype, macho_file: *MachO) !vo...@@ -314,6 +314,20 @@ pub fn checkDuplicates(self: *ZigObject, dupes: anytype, macho_file: *MachO) !vo
314 }314 }
315}315}
316316
317pub fn resolveLiterals(self: *ZigObject, lp: *MachO.LiteralPool, macho_file: *MachO) !void {
318 _ = self;
319 _ = lp;
320 _ = macho_file;
321 // TODO
322}
323
324pub fn dedupLiterals(self: *ZigObject, lp: MachO.LiteralPool, macho_file: *MachO) void {
325 _ = self;
326 _ = lp;
327 _ = macho_file;
328 // TODO
329}
330
317/// This is just a temporary helper function that allows us to re-read what we wrote to file into a buffer.331/// This is just a temporary helper function that allows us to re-read what we wrote to file into a buffer.
318/// We need this so that we can write to an archive.332/// We need this so that we can write to an archive.
319/// TODO implement writing ZigObject data directly to a buffer instead.333/// TODO implement writing ZigObject data directly to a buffer instead.
src/link/MachO/relocatable.zig+13-8
...@@ -46,6 +46,7 @@ pub fn flushObject(macho_file: *MachO, comp: *Compilation, module_obj_path: ?[]c...@@ -46,6 +46,7 @@ pub fn flushObject(macho_file: *MachO, comp: *Compilation, module_obj_path: ?[]c
4646
47 try macho_file.addUndefinedGlobals();47 try macho_file.addUndefinedGlobals();
48 try macho_file.resolveSymbols();48 try macho_file.resolveSymbols();
49 try macho_file.dedupLiterals();
49 markExports(macho_file);50 markExports(macho_file);
50 claimUnresolved(macho_file);51 claimUnresolved(macho_file);
51 try initOutputSections(macho_file);52 try initOutputSections(macho_file);
...@@ -542,6 +543,9 @@ fn writeAtoms(macho_file: *MachO) !void {...@@ -542,6 +543,9 @@ fn writeAtoms(macho_file: *MachO) !void {
542 const cpu_arch = macho_file.getTarget().cpu.arch;543 const cpu_arch = macho_file.getTarget().cpu.arch;
543 const slice = macho_file.sections.slice();544 const slice = macho_file.sections.slice();
544545
546 var relocs = std.ArrayList(macho.relocation_info).init(gpa);
547 defer relocs.deinit();
548
545 for (slice.items(.header), slice.items(.atoms), 0..) |header, atoms, i| {549 for (slice.items(.header), slice.items(.atoms), 0..) |header, atoms, i| {
546 if (atoms.items.len == 0) continue;550 if (atoms.items.len == 0) continue;
547 if (header.isZerofill()) continue;551 if (header.isZerofill()) continue;
...@@ -553,8 +557,7 @@ fn writeAtoms(macho_file: *MachO) !void {...@@ -553,8 +557,7 @@ fn writeAtoms(macho_file: *MachO) !void {
553 const padding_byte: u8 = if (header.isCode() and cpu_arch == .x86_64) 0xcc else 0;557 const padding_byte: u8 = if (header.isCode() and cpu_arch == .x86_64) 0xcc else 0;
554 @memset(code, padding_byte);558 @memset(code, padding_byte);
555559
556 var relocs = try std.ArrayList(macho.relocation_info).initCapacity(gpa, header.nreloc);560 try relocs.ensureTotalCapacity(header.nreloc);
557 defer relocs.deinit();
558561
559 for (atoms.items) |atom_index| {562 for (atoms.items) |atom_index| {
560 const atom = macho_file.getAtom(atom_index).?;563 const atom = macho_file.getAtom(atom_index).?;
...@@ -572,22 +575,24 @@ fn writeAtoms(macho_file: *MachO) !void {...@@ -572,22 +575,24 @@ fn writeAtoms(macho_file: *MachO) !void {
572 // TODO scattered writes?575 // TODO scattered writes?
573 try macho_file.base.file.?.pwriteAll(code, header.offset);576 try macho_file.base.file.?.pwriteAll(code, header.offset);
574 try macho_file.base.file.?.pwriteAll(mem.sliceAsBytes(relocs.items), header.reloff);577 try macho_file.base.file.?.pwriteAll(mem.sliceAsBytes(relocs.items), header.reloff);
578
579 relocs.clearRetainingCapacity();
575 }580 }
576581
577 if (macho_file.getZigObject()) |zo| {582 if (macho_file.getZigObject()) |zo| {
578 // TODO: this is ugly; perhaps we should aggregrate before?583 // TODO: this is ugly; perhaps we should aggregrate before?
579 var relocs = std.AutoArrayHashMap(u8, std.ArrayList(macho.relocation_info)).init(gpa);584 var zo_relocs = std.AutoArrayHashMap(u8, std.ArrayList(macho.relocation_info)).init(gpa);
580 defer {585 defer {
581 for (relocs.values()) |*list| {586 for (zo_relocs.values()) |*list| {
582 list.deinit();587 list.deinit();
583 }588 }
584 relocs.deinit();589 zo_relocs.deinit();
585 }590 }
586591
587 for (macho_file.sections.items(.header), 0..) |header, n_sect| {592 for (macho_file.sections.items(.header), 0..) |header, n_sect| {
588 if (header.isZerofill()) continue;593 if (header.isZerofill()) continue;
589 if (!macho_file.isZigSection(@intCast(n_sect)) and !macho_file.isDebugSection(@intCast(n_sect))) continue;594 if (!macho_file.isZigSection(@intCast(n_sect)) and !macho_file.isDebugSection(@intCast(n_sect))) continue;
590 const gop = try relocs.getOrPut(@intCast(n_sect));595 const gop = try zo_relocs.getOrPut(@intCast(n_sect));
591 if (gop.found_existing) continue;596 if (gop.found_existing) continue;
592 gop.value_ptr.* = try std.ArrayList(macho.relocation_info).initCapacity(gpa, header.nreloc);597 gop.value_ptr.* = try std.ArrayList(macho.relocation_info).initCapacity(gpa, header.nreloc);
593 }598 }
...@@ -618,12 +623,12 @@ fn writeAtoms(macho_file: *MachO) !void {...@@ -618,12 +623,12 @@ fn writeAtoms(macho_file: *MachO) !void {
618 },623 },
619 };624 };
620 const file_offset = header.offset + atom.value;625 const file_offset = header.offset + atom.value;
621 const rels = relocs.getPtr(atom.out_n_sect).?;626 const rels = zo_relocs.getPtr(atom.out_n_sect).?;
622 try atom.writeRelocs(macho_file, code, rels);627 try atom.writeRelocs(macho_file, code, rels);
623 try macho_file.base.file.?.pwriteAll(code, file_offset);628 try macho_file.base.file.?.pwriteAll(code, file_offset);
624 }629 }
625630
626 for (relocs.keys(), relocs.values()) |sect_id, rels| {631 for (zo_relocs.keys(), zo_relocs.values()) |sect_id, rels| {
627 const header = macho_file.sections.items(.header)[sect_id];632 const header = macho_file.sections.items(.header)[sect_id];
628 assert(rels.items.len == header.nreloc);633 assert(rels.items.len == header.nreloc);
629 mem.sort(macho.relocation_info, rels.items, {}, sortReloc);634 mem.sort(macho.relocation_info, rels.items, {}, sortReloc);
test/link/macho.zig+484
...@@ -38,6 +38,10 @@ pub fn testAll(b: *Build, build_opts: BuildOptions) *Step {...@@ -38,6 +38,10 @@ pub fn testAll(b: *Build, build_opts: BuildOptions) *Step {
38 macho_step.dependOn(testLayout(b, .{ .target = default_target }));38 macho_step.dependOn(testLayout(b, .{ .target = default_target }));
39 macho_step.dependOn(testLinkingStaticLib(b, .{ .target = default_target }));39 macho_step.dependOn(testLinkingStaticLib(b, .{ .target = default_target }));
40 macho_step.dependOn(testLinksection(b, .{ .target = default_target }));40 macho_step.dependOn(testLinksection(b, .{ .target = default_target }));
41 macho_step.dependOn(testMergeLiteralsX64(b, .{ .target = x86_64_target }));
42 macho_step.dependOn(testMergeLiteralsArm64(b, .{ .target = aarch64_target }));
43 macho_step.dependOn(testMergeLiteralsArm642(b, .{ .target = aarch64_target }));
44 macho_step.dependOn(testMergeLiteralsAlignment(b, .{ .target = aarch64_target }));
41 macho_step.dependOn(testMhExecuteHeader(b, .{ .target = default_target }));45 macho_step.dependOn(testMhExecuteHeader(b, .{ .target = default_target }));
42 macho_step.dependOn(testNoDeadStrip(b, .{ .target = default_target }));46 macho_step.dependOn(testNoDeadStrip(b, .{ .target = default_target }));
43 macho_step.dependOn(testNoExportsDylib(b, .{ .target = default_target }));47 macho_step.dependOn(testNoExportsDylib(b, .{ .target = default_target }));
...@@ -81,6 +85,7 @@ pub fn testAll(b: *Build, build_opts: BuildOptions) *Step {...@@ -81,6 +85,7 @@ pub fn testAll(b: *Build, build_opts: BuildOptions) *Step {
81 macho_step.dependOn(testDeadStripDylibs(b, .{ .target = b.host }));85 macho_step.dependOn(testDeadStripDylibs(b, .{ .target = b.host }));
82 macho_step.dependOn(testHeaderpad(b, .{ .target = b.host }));86 macho_step.dependOn(testHeaderpad(b, .{ .target = b.host }));
83 macho_step.dependOn(testLinkDirectlyCppTbd(b, .{ .target = b.host }));87 macho_step.dependOn(testLinkDirectlyCppTbd(b, .{ .target = b.host }));
88 macho_step.dependOn(testMergeLiteralsObjc(b, .{ .target = b.host }));
84 macho_step.dependOn(testNeededFramework(b, .{ .target = b.host }));89 macho_step.dependOn(testNeededFramework(b, .{ .target = b.host }));
85 macho_step.dependOn(testObjc(b, .{ .target = b.host }));90 macho_step.dependOn(testObjc(b, .{ .target = b.host }));
86 macho_step.dependOn(testObjcpp(b, .{ .target = b.host }));91 macho_step.dependOn(testObjcpp(b, .{ .target = b.host }));
...@@ -914,6 +919,485 @@ fn testLinksection(b: *Build, opts: Options) *Step {...@@ -914,6 +919,485 @@ fn testLinksection(b: *Build, opts: Options) *Step {
914 return test_step;919 return test_step;
915}920}
916921
922fn testMergeLiteralsX64(b: *Build, opts: Options) *Step {
923 const test_step = addTestStep(b, "merge-literals-x64", opts);
924
925 const a_o = addObject(b, opts, .{ .name = "a", .asm_source_bytes =
926 \\.globl _q1
927 \\.globl _s1
928 \\
929 \\.align 4
930 \\_q1:
931 \\ lea L._q1(%rip), %rax
932 \\ mov (%rax), %xmm0
933 \\ ret
934 \\
935 \\.section __TEXT,__cstring,cstring_literals
936 \\l._s1:
937 \\ .asciz "hello"
938 \\
939 \\.section __TEXT,__literal8,8byte_literals
940 \\.align 8
941 \\L._q1:
942 \\ .double 1.2345
943 \\
944 \\.section __DATA,__data
945 \\.align 8
946 \\_s1:
947 \\ .quad l._s1
948 });
949
950 const b_o = addObject(b, opts, .{ .name = "b", .asm_source_bytes =
951 \\.globl _q2
952 \\.globl _s2
953 \\.globl _s3
954 \\
955 \\.align 4
956 \\_q2:
957 \\ lea L._q2(%rip), %rax
958 \\ mov (%rax), %xmm0
959 \\ ret
960 \\
961 \\.section __TEXT,__cstring,cstring_literals
962 \\l._s2:
963 \\ .asciz "hello"
964 \\l._s3:
965 \\ .asciz "world"
966 \\
967 \\.section __TEXT,__literal8,8byte_literals
968 \\.align 8
969 \\L._q2:
970 \\ .double 1.2345
971 \\
972 \\.section __DATA,__data
973 \\.align 8
974 \\_s2:
975 \\ .quad l._s2
976 \\_s3:
977 \\ .quad l._s3
978 });
979
980 const main_o = addObject(b, opts, .{ .name = "main", .c_source_bytes =
981 \\#include <stdio.h>
982 \\extern double q1();
983 \\extern double q2();
984 \\extern const char* s1;
985 \\extern const char* s2;
986 \\extern const char* s3;
987 \\int main() {
988 \\ printf("%s, %s, %s, %f, %f", s1, s2, s3, q1(), q2());
989 \\ return 0;
990 \\}
991 });
992
993 const runWithChecks = struct {
994 fn runWithChecks(step: *Step, exe: *Compile) void {
995 const run = addRunArtifact(exe);
996 run.expectStdOutEqual("hello, hello, world, 1.234500, 1.234500");
997 step.dependOn(&run.step);
998
999 const check = exe.checkObject();
1000 check.dumpSection("__TEXT,__const");
1001 check.checkContains("\x8d\x97n\x12\x83\xc0\xf3?");
1002 check.dumpSection("__TEXT,__cstring");
1003 check.checkContains("hello\x00world\x00%s, %s, %s, %f, %f\x00");
1004 step.dependOn(&check.step);
1005 }
1006 }.runWithChecks;
1007
1008 {
1009 const exe = addExecutable(b, opts, .{ .name = "main1" });
1010 exe.addObject(a_o);
1011 exe.addObject(b_o);
1012 exe.addObject(main_o);
1013 runWithChecks(test_step, exe);
1014 }
1015
1016 {
1017 const exe = addExecutable(b, opts, .{ .name = "main2" });
1018 exe.addObject(b_o);
1019 exe.addObject(a_o);
1020 exe.addObject(main_o);
1021 runWithChecks(test_step, exe);
1022 }
1023
1024 {
1025 const c_o = addObject(b, opts, .{ .name = "c" });
1026 c_o.addObject(a_o);
1027 c_o.addObject(b_o);
1028 c_o.addObject(main_o);
1029
1030 const exe = addExecutable(b, opts, .{ .name = "main3" });
1031 exe.addObject(c_o);
1032 runWithChecks(test_step, exe);
1033 }
1034
1035 return test_step;
1036}
1037
1038fn testMergeLiteralsArm64(b: *Build, opts: Options) *Step {
1039 const test_step = addTestStep(b, "merge-literals-arm64", opts);
1040
1041 const a_o = addObject(b, opts, .{ .name = "a", .asm_source_bytes =
1042 \\.globl _q1
1043 \\.globl _s1
1044 \\
1045 \\.align 4
1046 \\_q1:
1047 \\ adrp x8, L._q1@PAGE
1048 \\ ldr d0, [x8, L._q1@PAGEOFF]
1049 \\ ret
1050 \\
1051 \\.section __TEXT,__cstring,cstring_literals
1052 \\l._s1:
1053 \\ .asciz "hello"
1054 \\
1055 \\.section __TEXT,__literal8,8byte_literals
1056 \\.align 8
1057 \\L._q1:
1058 \\ .double 1.2345
1059 \\
1060 \\.section __DATA,__data
1061 \\.align 8
1062 \\_s1:
1063 \\ .quad l._s1
1064 });
1065
1066 const b_o = addObject(b, opts, .{ .name = "b", .asm_source_bytes =
1067 \\.globl _q2
1068 \\.globl _s2
1069 \\.globl _s3
1070 \\
1071 \\.align 4
1072 \\_q2:
1073 \\ adrp x8, L._q2@PAGE
1074 \\ ldr d0, [x8, L._q2@PAGEOFF]
1075 \\ ret
1076 \\
1077 \\.section __TEXT,__cstring,cstring_literals
1078 \\l._s2:
1079 \\ .asciz "hello"
1080 \\l._s3:
1081 \\ .asciz "world"
1082 \\
1083 \\.section __TEXT,__literal8,8byte_literals
1084 \\.align 8
1085 \\L._q2:
1086 \\ .double 1.2345
1087 \\
1088 \\.section __DATA,__data
1089 \\.align 8
1090 \\_s2:
1091 \\ .quad l._s2
1092 \\_s3:
1093 \\ .quad l._s3
1094 });
1095
1096 const main_o = addObject(b, opts, .{ .name = "main", .c_source_bytes =
1097 \\#include <stdio.h>
1098 \\extern double q1();
1099 \\extern double q2();
1100 \\extern const char* s1;
1101 \\extern const char* s2;
1102 \\extern const char* s3;
1103 \\int main() {
1104 \\ printf("%s, %s, %s, %f, %f", s1, s2, s3, q1(), q2());
1105 \\ return 0;
1106 \\}
1107 });
1108
1109 const runWithChecks = struct {
1110 fn runWithChecks(step: *Step, exe: *Compile) void {
1111 const run = addRunArtifact(exe);
1112 run.expectStdOutEqual("hello, hello, world, 1.234500, 1.234500");
1113 step.dependOn(&run.step);
1114
1115 const check = exe.checkObject();
1116 check.dumpSection("__TEXT,__const");
1117 check.checkContains("\x8d\x97n\x12\x83\xc0\xf3?");
1118 check.dumpSection("__TEXT,__cstring");
1119 check.checkContains("hello\x00world\x00%s, %s, %s, %f, %f\x00");
1120 step.dependOn(&check.step);
1121 }
1122 }.runWithChecks;
1123
1124 {
1125 const exe = addExecutable(b, opts, .{ .name = "main1" });
1126 exe.addObject(a_o);
1127 exe.addObject(b_o);
1128 exe.addObject(main_o);
1129 runWithChecks(test_step, exe);
1130 }
1131
1132 {
1133 const exe = addExecutable(b, opts, .{ .name = "main2" });
1134 exe.addObject(b_o);
1135 exe.addObject(a_o);
1136 exe.addObject(main_o);
1137 runWithChecks(test_step, exe);
1138 }
1139
1140 {
1141 const c_o = addObject(b, opts, .{ .name = "c" });
1142 c_o.addObject(a_o);
1143 c_o.addObject(b_o);
1144 c_o.addObject(main_o);
1145
1146 const exe = addExecutable(b, opts, .{ .name = "main3" });
1147 exe.addObject(c_o);
1148 runWithChecks(test_step, exe);
1149 }
1150
1151 return test_step;
1152}
1153
1154/// This particular test case will generate invalid machine code that will segfault at runtime.
1155/// However, this is by design as we want to test that the linker does not panic when linking it
1156/// which is also the case for the system linker and lld - linking succeeds, runtime segfaults.
1157/// It should also be mentioned that runtime segfault is not due to the linker but faulty input asm.
1158fn testMergeLiteralsArm642(b: *Build, opts: Options) *Step {
1159 const test_step = addTestStep(b, "merge-literals-arm64-2", opts);
1160
1161 const a_o = addObject(b, opts, .{ .name = "a", .asm_source_bytes =
1162 \\.globl _q1
1163 \\.globl _s1
1164 \\
1165 \\.align 4
1166 \\_q1:
1167 \\ adrp x0, L._q1@PAGE
1168 \\ ldr x0, [x0, L._q1@PAGEOFF]
1169 \\ ret
1170 \\
1171 \\.section __TEXT,__cstring,cstring_literals
1172 \\_s1:
1173 \\ .asciz "hello"
1174 \\
1175 \\.section __TEXT,__literal8,8byte_literals
1176 \\.align 8
1177 \\L._q1:
1178 \\ .double 1.2345
1179 });
1180
1181 const b_o = addObject(b, opts, .{ .name = "b", .asm_source_bytes =
1182 \\.globl _q2
1183 \\.globl _s2
1184 \\.globl _s3
1185 \\
1186 \\.align 4
1187 \\_q2:
1188 \\ adrp x0, L._q2@PAGE
1189 \\ ldr x0, [x0, L._q2@PAGEOFF]
1190 \\ ret
1191 \\
1192 \\.section __TEXT,__cstring,cstring_literals
1193 \\_s2:
1194 \\ .asciz "hello"
1195 \\_s3:
1196 \\ .asciz "world"
1197 \\
1198 \\.section __TEXT,__literal8,8byte_literals
1199 \\.align 8
1200 \\L._q2:
1201 \\ .double 1.2345
1202 });
1203
1204 const main_o = addObject(b, opts, .{ .name = "main", .c_source_bytes =
1205 \\#include <stdio.h>
1206 \\extern double q1();
1207 \\extern double q2();
1208 \\extern const char* s1;
1209 \\extern const char* s2;
1210 \\extern const char* s3;
1211 \\int main() {
1212 \\ printf("%s, %s, %s, %f, %f", s1, s2, s3, q1(), q2());
1213 \\ return 0;
1214 \\}
1215 });
1216
1217 const exe = addExecutable(b, opts, .{ .name = "main1" });
1218 exe.addObject(a_o);
1219 exe.addObject(b_o);
1220 exe.addObject(main_o);
1221
1222 const check = exe.checkObject();
1223 check.dumpSection("__TEXT,__const");
1224 check.checkContains("\x8d\x97n\x12\x83\xc0\xf3?");
1225 check.dumpSection("__TEXT,__cstring");
1226 check.checkContains("hello\x00world\x00%s, %s, %s, %f, %f\x00");
1227 test_step.dependOn(&check.step);
1228
1229 return test_step;
1230}
1231
1232fn testMergeLiteralsAlignment(b: *Build, opts: Options) *Step {
1233 const test_step = addTestStep(b, "merge-literals-alignment", opts);
1234
1235 const a_o = addObject(b, opts, .{ .name = "a", .asm_source_bytes =
1236 \\.globl _s1
1237 \\.globl _s2
1238 \\
1239 \\.section __TEXT,__cstring,cstring_literals
1240 \\.align 3
1241 \\_s1:
1242 \\ .asciz "str1"
1243 \\_s2:
1244 \\ .asciz "str2"
1245 });
1246
1247 const b_o = addObject(b, opts, .{ .name = "b", .asm_source_bytes =
1248 \\.globl _s3
1249 \\.globl _s4
1250 \\
1251 \\.section __TEXT,__cstring,cstring_literals
1252 \\.align 2
1253 \\_s3:
1254 \\ .asciz "str1"
1255 \\_s4:
1256 \\ .asciz "str2"
1257 });
1258
1259 const main_o = addObject(b, opts, .{ .name = "main", .c_source_bytes =
1260 \\#include <assert.h>
1261 \\#include <stdint.h>
1262 \\#include <stdio.h>
1263 \\extern const char* s1;
1264 \\extern const char* s2;
1265 \\extern const char* s3;
1266 \\extern const char* s4;
1267 \\int main() {
1268 \\ assert((uintptr_t)(&s1) % 8 == 0 && s1 == s3);
1269 \\ assert((uintptr_t)(&s2) % 8 == 0 && s2 == s4);
1270 \\ printf("%s%s%s%s", &s1, &s2, &s3, &s4);
1271 \\ return 0;
1272 \\}
1273 , .c_source_flags = &.{"-Wno-format"} });
1274
1275 const runWithChecks = struct {
1276 fn runWithChecks(step: *Step, exe: *Compile) void {
1277 const run = addRunArtifact(exe);
1278 run.expectStdOutEqual("str1str2str1str2");
1279 step.dependOn(&run.step);
1280
1281 const check = exe.checkObject();
1282 check.dumpSection("__TEXT,__cstring");
1283 check.checkContains("str1\x00\x00\x00\x00str2\x00");
1284 check.checkInHeaders();
1285 check.checkExact("segname __TEXT");
1286 check.checkExact("sectname __cstring");
1287 check.checkExact("align 3");
1288 step.dependOn(&check.step);
1289 }
1290 }.runWithChecks;
1291
1292 {
1293 const exe = addExecutable(b, opts, .{ .name = "main1" });
1294 exe.addObject(a_o);
1295 exe.addObject(b_o);
1296 exe.addObject(main_o);
1297 runWithChecks(test_step, exe);
1298 }
1299
1300 {
1301 const exe = addExecutable(b, opts, .{ .name = "main2" });
1302 exe.addObject(b_o);
1303 exe.addObject(a_o);
1304 exe.addObject(main_o);
1305 runWithChecks(test_step, exe);
1306 }
1307
1308 return test_step;
1309}
1310
1311fn testMergeLiteralsObjc(b: *Build, opts: Options) *Step {
1312 const test_step = addTestStep(b, "merge-literals-objc", opts);
1313
1314 const main_o = addObject(b, opts, .{ .name = "main", .objc_source_bytes =
1315 \\#import <Foundation/Foundation.h>;
1316 \\
1317 \\extern void foo();
1318 \\
1319 \\int main() {
1320 \\ NSString *thing = @"aaa";
1321 \\
1322 \\ SEL sel = @selector(lowercaseString);
1323 \\ NSString *lower = (([thing respondsToSelector:sel]) ? @"YES" : @"NO");
1324 \\ NSLog (@"Responds to lowercaseString: %@", lower);
1325 \\ if ([thing respondsToSelector:sel]) //(lower == @"YES")
1326 \\ NSLog(@"lowercaseString is: %@", [thing lowercaseString]);
1327 \\
1328 \\ foo();
1329 \\}
1330 });
1331
1332 const a_o = addObject(b, opts, .{ .name = "a", .objc_source_bytes =
1333 \\#import <Foundation/Foundation.h>;
1334 \\
1335 \\void foo() {
1336 \\ NSString *thing = @"aaa";
1337 \\ SEL sel = @selector(lowercaseString);
1338 \\ NSString *lower = (([thing respondsToSelector:sel]) ? @"YES" : @"NO");
1339 \\ NSLog (@"Responds to lowercaseString in foo(): %@", lower);
1340 \\ if ([thing respondsToSelector:sel]) //(lower == @"YES")
1341 \\ NSLog(@"lowercaseString in foo() is: %@", [thing lowercaseString]);
1342 \\ SEL sel2 = @selector(uppercaseString);
1343 \\ NSString *upper = (([thing respondsToSelector:sel2]) ? @"YES" : @"NO");
1344 \\ NSLog (@"Responds to uppercaseString in foo(): %@", upper);
1345 \\ if ([thing respondsToSelector:sel2]) //(upper == @"YES")
1346 \\ NSLog(@"uppercaseString in foo() is: %@", [thing uppercaseString]);
1347 \\}
1348 });
1349
1350 const runWithChecks = struct {
1351 fn runWithChecks(step: *Step, exe: *Compile) void {
1352 const builder = step.owner;
1353 const run = addRunArtifact(exe);
1354 run.addCheck(.{ .expect_stderr_match = builder.dupe("Responds to lowercaseString: YES") });
1355 run.addCheck(.{ .expect_stderr_match = builder.dupe("lowercaseString is: aaa") });
1356 run.addCheck(.{ .expect_stderr_match = builder.dupe("Responds to lowercaseString in foo(): YES") });
1357 run.addCheck(.{ .expect_stderr_match = builder.dupe("lowercaseString in foo() is: aaa") });
1358 run.addCheck(.{ .expect_stderr_match = builder.dupe("Responds to uppercaseString in foo(): YES") });
1359 run.addCheck(.{ .expect_stderr_match = builder.dupe("uppercaseString in foo() is: AAA") });
1360 step.dependOn(&run.step);
1361
1362 const check = exe.checkObject();
1363 check.dumpSection("__TEXT,__objc_methname");
1364 check.checkContains("lowercaseString\x00");
1365 check.dumpSection("__TEXT,__objc_methname");
1366 check.checkContains("uppercaseString\x00");
1367 step.dependOn(&check.step);
1368 }
1369 }.runWithChecks;
1370
1371 {
1372 const exe = addExecutable(b, opts, .{ .name = "main1" });
1373 exe.addObject(main_o);
1374 exe.addObject(a_o);
1375 exe.root_module.linkFramework("Foundation", .{});
1376 runWithChecks(test_step, exe);
1377 }
1378
1379 {
1380 const exe = addExecutable(b, opts, .{ .name = "main2" });
1381 exe.addObject(a_o);
1382 exe.addObject(main_o);
1383 exe.root_module.linkFramework("Foundation", .{});
1384 runWithChecks(test_step, exe);
1385 }
1386
1387 {
1388 const b_o = addObject(b, opts, .{ .name = "b" });
1389 b_o.addObject(a_o);
1390 b_o.addObject(main_o);
1391
1392 const exe = addExecutable(b, opts, .{ .name = "main3" });
1393 exe.addObject(b_o);
1394 exe.root_module.linkFramework("Foundation", .{});
1395 runWithChecks(test_step, exe);
1396 }
1397
1398 return test_step;
1399}
1400
917fn testMhExecuteHeader(b: *Build, opts: Options) *Step {1401fn testMhExecuteHeader(b: *Build, opts: Options) *Step {
918 const test_step = addTestStep(b, "mh-execute-header", opts);1402 const test_step = addTestStep(b, "mh-execute-header", opts);
9191403