| ... | ... | @@ -13,7 +13,7 @@ pub const Class = enum { |
| 13 | 13 | integer_per_element, |
| 14 | 14 | }; |
| 15 | 15 | |
| 16 | | pub fn classifyWindows(ty: Type, mod: *Module) Class { |
| 16 | pub fn classifyWindows(ty: Type, zcu: *Zcu) Class { |
| 17 | 17 | // https://docs.microsoft.com/en-gb/cpp/build/x64-calling-convention?view=vs-2017 |
| 18 | 18 | // "There's a strict one-to-one correspondence between a function call's arguments |
| 19 | 19 | // and the registers used for those arguments. Any argument that doesn't fit in 8 |
| ... | ... | @@ -22,7 +22,7 @@ pub fn classifyWindows(ty: Type, mod: *Module) Class { |
| 22 | 22 | // "All floating point operations are done using the 16 XMM registers." |
| 23 | 23 | // "Structs and unions of size 8, 16, 32, or 64 bits, and __m64 types, are passed |
| 24 | 24 | // as if they were integers of the same size." |
| 25 | | switch (ty.zigTypeTag(mod)) { |
| 25 | switch (ty.zigTypeTag(zcu)) { |
| 26 | 26 | .Pointer, |
| 27 | 27 | .Int, |
| 28 | 28 | .Bool, |
| ... | ... | @@ -37,12 +37,12 @@ pub fn classifyWindows(ty: Type, mod: *Module) Class { |
| 37 | 37 | .ErrorUnion, |
| 38 | 38 | .AnyFrame, |
| 39 | 39 | .Frame, |
| 40 | | => switch (ty.abiSize(mod)) { |
| 40 | => switch (ty.abiSize(zcu)) { |
| 41 | 41 | 0 => unreachable, |
| 42 | 42 | 1, 2, 4, 8 => return .integer, |
| 43 | | else => switch (ty.zigTypeTag(mod)) { |
| 43 | else => switch (ty.zigTypeTag(zcu)) { |
| 44 | 44 | .Int => return .win_i128, |
| 45 | | .Struct, .Union => if (ty.containerLayout(mod) == .@"packed") { |
| 45 | .Struct, .Union => if (ty.containerLayout(zcu) == .@"packed") { |
| 46 | 46 | return .win_i128; |
| 47 | 47 | } else { |
| 48 | 48 | return .memory; |
| ... | ... | @@ -69,16 +69,16 @@ pub const Context = enum { ret, arg, field, other }; |
| 69 | 69 | |
| 70 | 70 | /// There are a maximum of 8 possible return slots. Returned values are in |
| 71 | 71 | /// the beginning of the array; unused slots are filled with .none. |
| 72 | | pub fn classifySystemV(ty: Type, mod: *Module, ctx: Context) [8]Class { |
| 73 | | const ip = &mod.intern_pool; |
| 74 | | const target = mod.getTarget(); |
| 72 | pub fn classifySystemV(ty: Type, zcu: *Zcu, ctx: Context) [8]Class { |
| 73 | const ip = &zcu.intern_pool; |
| 74 | const target = zcu.getTarget(); |
| 75 | 75 | const memory_class = [_]Class{ |
| 76 | 76 | .memory, .none, .none, .none, |
| 77 | 77 | .none, .none, .none, .none, |
| 78 | 78 | }; |
| 79 | 79 | var result = [1]Class{.none} ** 8; |
| 80 | | switch (ty.zigTypeTag(mod)) { |
| 81 | | .Pointer => switch (ty.ptrSize(mod)) { |
| 80 | switch (ty.zigTypeTag(zcu)) { |
| 81 | .Pointer => switch (ty.ptrSize(zcu)) { |
| 82 | 82 | .Slice => { |
| 83 | 83 | result[0] = .integer; |
| 84 | 84 | result[1] = .integer; |
| ... | ... | @@ -90,7 +90,7 @@ pub fn classifySystemV(ty: Type, mod: *Module, ctx: Context) [8]Class { |
| 90 | 90 | }, |
| 91 | 91 | }, |
| 92 | 92 | .Int, .Enum, .ErrorSet => { |
| 93 | | const bits = ty.intInfo(mod).bits; |
| 93 | const bits = ty.intInfo(zcu).bits; |
| 94 | 94 | if (bits <= 64) { |
| 95 | 95 | result[0] = .integer; |
| 96 | 96 | return result; |
| ... | ... | @@ -160,8 +160,8 @@ pub fn classifySystemV(ty: Type, mod: *Module, ctx: Context) [8]Class { |
| 160 | 160 | else => unreachable, |
| 161 | 161 | }, |
| 162 | 162 | .Vector => { |
| 163 | | const elem_ty = ty.childType(mod); |
| 164 | | const bits = elem_ty.bitSize(mod) * ty.arrayLen(mod); |
| 163 | const elem_ty = ty.childType(zcu); |
| 164 | const bits = elem_ty.bitSize(zcu) * ty.arrayLen(zcu); |
| 165 | 165 | if (elem_ty.toIntern() == .bool_type) { |
| 166 | 166 | if (bits <= 32) return .{ |
| 167 | 167 | .integer, .none, .none, .none, |
| ... | ... | @@ -225,7 +225,7 @@ pub fn classifySystemV(ty: Type, mod: *Module, ctx: Context) [8]Class { |
| 225 | 225 | return memory_class; |
| 226 | 226 | }, |
| 227 | 227 | .Optional => { |
| 228 | | if (ty.isPtrLikeOptional(mod)) { |
| 228 | if (ty.isPtrLikeOptional(zcu)) { |
| 229 | 229 | result[0] = .integer; |
| 230 | 230 | return result; |
| 231 | 231 | } |
| ... | ... | @@ -236,9 +236,9 @@ pub fn classifySystemV(ty: Type, mod: *Module, ctx: Context) [8]Class { |
| 236 | 236 | // it contains unaligned fields, it has class MEMORY" |
| 237 | 237 | // "If the size of the aggregate exceeds a single eightbyte, each is classified |
| 238 | 238 | // separately.". |
| 239 | | const struct_type = mod.typeToStruct(ty).?; |
| 240 | | const ty_size = ty.abiSize(mod); |
| 241 | | if (struct_type.layout == .@"packed") { |
| 239 | const loaded_struct = ip.loadStructType(ty.toIntern()); |
| 240 | const ty_size = ty.abiSize(zcu); |
| 241 | if (loaded_struct.layout == .@"packed") { |
| 242 | 242 | assert(ty_size <= 16); |
| 243 | 243 | result[0] = .integer; |
| 244 | 244 | if (ty_size > 8) result[1] = .integer; |
| ... | ... | @@ -247,82 +247,8 @@ pub fn classifySystemV(ty: Type, mod: *Module, ctx: Context) [8]Class { |
| 247 | 247 | if (ty_size > 64) |
| 248 | 248 | return memory_class; |
| 249 | 249 | |
| 250 | | var result_i: usize = 0; // out of 8 |
| 251 | | var byte_i: usize = 0; // out of 8 |
| 252 | | for (struct_type.field_types.get(ip), 0..) |field_ty_ip, i| { |
| 253 | | const field_ty = Type.fromInterned(field_ty_ip); |
| 254 | | const field_align = struct_type.fieldAlign(ip, i); |
| 255 | | if (field_align != .none and field_align.compare(.lt, field_ty.abiAlignment(mod))) |
| 256 | | return memory_class; |
| 257 | | const field_size = field_ty.abiSize(mod); |
| 258 | | const field_class_array = classifySystemV(field_ty, mod, .field); |
| 259 | | const field_class = std.mem.sliceTo(&field_class_array, .none); |
| 260 | | if (byte_i + field_size <= 8) { |
| 261 | | // Combine this field with the previous one. |
| 262 | | combine: { |
| 263 | | // "If both classes are equal, this is the resulting class." |
| 264 | | if (result[result_i] == field_class[0]) { |
| 265 | | if (result[result_i] == .float) { |
| 266 | | result[result_i] = .float_combine; |
| 267 | | } |
| 268 | | break :combine; |
| 269 | | } |
| 270 | | |
| 271 | | // "If one of the classes is NO_CLASS, the resulting class |
| 272 | | // is the other class." |
| 273 | | if (result[result_i] == .none) { |
| 274 | | result[result_i] = field_class[0]; |
| 275 | | break :combine; |
| 276 | | } |
| 277 | | assert(field_class[0] != .none); |
| 278 | | |
| 279 | | // "If one of the classes is MEMORY, the result is the MEMORY class." |
| 280 | | if (result[result_i] == .memory or field_class[0] == .memory) { |
| 281 | | result[result_i] = .memory; |
| 282 | | break :combine; |
| 283 | | } |
| 284 | | |
| 285 | | // "If one of the classes is INTEGER, the result is the INTEGER." |
| 286 | | if (result[result_i] == .integer or field_class[0] == .integer) { |
| 287 | | result[result_i] = .integer; |
| 288 | | break :combine; |
| 289 | | } |
| 290 | | |
| 291 | | // "If one of the classes is X87, X87UP, COMPLEX_X87 class, |
| 292 | | // MEMORY is used as class." |
| 293 | | if (result[result_i] == .x87 or |
| 294 | | result[result_i] == .x87up or |
| 295 | | result[result_i] == .complex_x87 or |
| 296 | | field_class[0] == .x87 or |
| 297 | | field_class[0] == .x87up or |
| 298 | | field_class[0] == .complex_x87) |
| 299 | | { |
| 300 | | result[result_i] = .memory; |
| 301 | | break :combine; |
| 302 | | } |
| 303 | | |
| 304 | | // "Otherwise class SSE is used." |
| 305 | | result[result_i] = .sse; |
| 306 | | } |
| 307 | | byte_i += @as(usize, @intCast(field_size)); |
| 308 | | if (byte_i == 8) { |
| 309 | | byte_i = 0; |
| 310 | | result_i += 1; |
| 311 | | } |
| 312 | | } else { |
| 313 | | // Cannot combine this field with the previous one. |
| 314 | | if (byte_i != 0) { |
| 315 | | byte_i = 0; |
| 316 | | result_i += 1; |
| 317 | | } |
| 318 | | @memcpy(result[result_i..][0..field_class.len], field_class); |
| 319 | | result_i += field_class.len; |
| 320 | | // If there are any bytes leftover, we have to try to combine |
| 321 | | // the next field with them. |
| 322 | | byte_i = @as(usize, @intCast(field_size % 8)); |
| 323 | | if (byte_i != 0) result_i -= 1; |
| 324 | | } |
| 325 | | } |
| 250 | var byte_offset: u64 = 0; |
| 251 | classifySystemVStruct(&result, &byte_offset, loaded_struct, zcu); |
| 326 | 252 | |
| 327 | 253 | // Post-merger cleanup |
| 328 | 254 | |
| ... | ... | @@ -354,8 +280,8 @@ pub fn classifySystemV(ty: Type, mod: *Module, ctx: Context) [8]Class { |
| 354 | 280 | // it contains unaligned fields, it has class MEMORY" |
| 355 | 281 | // "If the size of the aggregate exceeds a single eightbyte, each is classified |
| 356 | 282 | // separately.". |
| 357 | | const union_obj = mod.typeToUnion(ty).?; |
| 358 | | const ty_size = mod.unionAbiSize(union_obj); |
| 283 | const union_obj = zcu.typeToUnion(ty).?; |
| 284 | const ty_size = zcu.unionAbiSize(union_obj); |
| 359 | 285 | if (union_obj.getLayout(ip) == .@"packed") { |
| 360 | 286 | assert(ty_size <= 16); |
| 361 | 287 | result[0] = .integer; |
| ... | ... | @@ -368,12 +294,12 @@ pub fn classifySystemV(ty: Type, mod: *Module, ctx: Context) [8]Class { |
| 368 | 294 | for (union_obj.field_types.get(ip), 0..) |field_ty, field_index| { |
| 369 | 295 | const field_align = union_obj.fieldAlign(ip, @intCast(field_index)); |
| 370 | 296 | if (field_align != .none and |
| 371 | | field_align.compare(.lt, Type.fromInterned(field_ty).abiAlignment(mod))) |
| 297 | field_align.compare(.lt, Type.fromInterned(field_ty).abiAlignment(zcu))) |
| 372 | 298 | { |
| 373 | 299 | return memory_class; |
| 374 | 300 | } |
| 375 | 301 | // Combine this field with the previous one. |
| 376 | | const field_class = classifySystemV(Type.fromInterned(field_ty), mod, .field); |
| 302 | const field_class = classifySystemV(Type.fromInterned(field_ty), zcu, .field); |
| 377 | 303 | for (&result, 0..) |*result_item, i| { |
| 378 | 304 | const field_item = field_class[i]; |
| 379 | 305 | // "If both classes are equal, this is the resulting class." |
| ... | ... | @@ -447,7 +373,7 @@ pub fn classifySystemV(ty: Type, mod: *Module, ctx: Context) [8]Class { |
| 447 | 373 | return result; |
| 448 | 374 | }, |
| 449 | 375 | .Array => { |
| 450 | | const ty_size = ty.abiSize(mod); |
| 376 | const ty_size = ty.abiSize(zcu); |
| 451 | 377 | if (ty_size <= 8) { |
| 452 | 378 | result[0] = .integer; |
| 453 | 379 | return result; |
| ... | ... | @@ -463,6 +389,82 @@ pub fn classifySystemV(ty: Type, mod: *Module, ctx: Context) [8]Class { |
| 463 | 389 | } |
| 464 | 390 | } |
| 465 | 391 | |
| 392 | fn classifySystemVStruct( |
| 393 | result: *[8]Class, |
| 394 | byte_offset: *u64, |
| 395 | loaded_struct: InternPool.LoadedStructType, |
| 396 | zcu: *Zcu, |
| 397 | ) void { |
| 398 | const ip = &zcu.intern_pool; |
| 399 | var field_it = loaded_struct.iterateRuntimeOrder(ip); |
| 400 | while (field_it.next()) |field_index| { |
| 401 | const field_ty = Type.fromInterned(loaded_struct.field_types.get(ip)[field_index]); |
| 402 | const field_align = loaded_struct.fieldAlign(ip, field_index); |
| 403 | byte_offset.* = std.mem.alignForward( |
| 404 | u64, |
| 405 | byte_offset.*, |
| 406 | field_align.toByteUnits() orelse field_ty.abiAlignment(zcu).toByteUnits().?, |
| 407 | ); |
| 408 | if (zcu.typeToStruct(field_ty)) |field_loaded_struct| { |
| 409 | if (field_loaded_struct.layout != .@"packed") { |
| 410 | classifySystemVStruct(result, byte_offset, field_loaded_struct, zcu); |
| 411 | continue; |
| 412 | } |
| 413 | } |
| 414 | const field_class = std.mem.sliceTo(&classifySystemV(field_ty, zcu, .field), .none); |
| 415 | const field_size = field_ty.abiSize(zcu); |
| 416 | combine: { |
| 417 | // Combine this field with the previous one. |
| 418 | const result_class = &result[@intCast(byte_offset.* / 8)]; |
| 419 | // "If both classes are equal, this is the resulting class." |
| 420 | if (result_class.* == field_class[0]) { |
| 421 | if (result_class.* == .float) { |
| 422 | result_class.* = .float_combine; |
| 423 | } |
| 424 | break :combine; |
| 425 | } |
| 426 | |
| 427 | // "If one of the classes is NO_CLASS, the resulting class |
| 428 | // is the other class." |
| 429 | if (result_class.* == .none) { |
| 430 | result_class.* = field_class[0]; |
| 431 | break :combine; |
| 432 | } |
| 433 | assert(field_class[0] != .none); |
| 434 | |
| 435 | // "If one of the classes is MEMORY, the result is the MEMORY class." |
| 436 | if (result_class.* == .memory or field_class[0] == .memory) { |
| 437 | result_class.* = .memory; |
| 438 | break :combine; |
| 439 | } |
| 440 | |
| 441 | // "If one of the classes is INTEGER, the result is the INTEGER." |
| 442 | if (result_class.* == .integer or field_class[0] == .integer) { |
| 443 | result_class.* = .integer; |
| 444 | break :combine; |
| 445 | } |
| 446 | |
| 447 | // "If one of the classes is X87, X87UP, COMPLEX_X87 class, |
| 448 | // MEMORY is used as class." |
| 449 | if (result_class.* == .x87 or |
| 450 | result_class.* == .x87up or |
| 451 | result_class.* == .complex_x87 or |
| 452 | field_class[0] == .x87 or |
| 453 | field_class[0] == .x87up or |
| 454 | field_class[0] == .complex_x87) |
| 455 | { |
| 456 | result_class.* = .memory; |
| 457 | break :combine; |
| 458 | } |
| 459 | |
| 460 | // "Otherwise class SSE is used." |
| 461 | result_class.* = .sse; |
| 462 | } |
| 463 | @memcpy(result[@intCast(byte_offset.* / 8 + 1)..][0 .. field_class.len - 1], field_class[1..]); |
| 464 | byte_offset.* += field_size; |
| 465 | } |
| 466 | } |
| 467 | |
| 466 | 468 | pub const SysV = struct { |
| 467 | 469 | /// Note that .rsp and .rbp also belong to this set, however, we never expect to use them |
| 468 | 470 | /// for anything else but stack offset tracking therefore we exclude them from this set. |
| ... | ... | @@ -592,8 +594,9 @@ const std = @import("std"); |
| 592 | 594 | const assert = std.debug.assert; |
| 593 | 595 | const testing = std.testing; |
| 594 | 596 | |
| 595 | | const Module = @import("../../Module.zig"); |
| 597 | const InternPool = @import("../../InternPool.zig"); |
| 596 | 598 | const Register = @import("bits.zig").Register; |
| 597 | 599 | const RegisterManagerFn = @import("../../register_manager.zig").RegisterManager; |
| 598 | 600 | const Type = @import("../../type.zig").Type; |
| 599 | 601 | const Value = @import("../../Value.zig"); |
| 602 | const Zcu = @import("../../Module.zig"); |