//===- ValueTypes.td - ValueType definitions ---------------*- tablegen -*-===// // // The LLVM Compiler Infrastructure // // This file is distributed under the University of Illinois Open Source // License. See LICENSE.TXT for details. // //===----------------------------------------------------------------------===// // // Value types - These values correspond to the register types defined in the // ValueTypes.h file. If you update anything here, you must update it there as // well! // //===----------------------------------------------------------------------===// class ValueType { string Namespace = "MVT"; int Size = size; int Value = value; } def OtherVT: ValueType<0 , 1>; // "Other" value def i1 : ValueType<1 , 2>; // One bit boolean value def i8 : ValueType<8 , 3>; // 8-bit integer value def i16 : ValueType<16 , 4>; // 16-bit integer value def i32 : ValueType<32 , 5>; // 32-bit integer value def i64 : ValueType<64 , 6>; // 64-bit integer value def i128 : ValueType<128, 7>; // 128-bit integer value def f16 : ValueType<16 , 8>; // 16-bit floating point value def f32 : ValueType<32 , 9>; // 32-bit floating point value def f64 : ValueType<64 , 10>; // 64-bit floating point value def f80 : ValueType<80 , 11>; // 80-bit floating point value def f128 : ValueType<128, 12>; // 128-bit floating point value def ppcf128: ValueType<128, 13>; // PPC 128-bit floating point value def v2i1 : ValueType<2 , 14>; // 2 x i1 vector value def v4i1 : ValueType<4 , 15>; // 4 x i1 vector value def v8i1 : ValueType<8 , 16>; // 8 x i1 vector value def v16i1 : ValueType<16, 17>; // 16 x i1 vector value def v32i1 : ValueType<32 , 18>; // 32 x i1 vector value def v64i1 : ValueType<64 , 19>; // 64 x i1 vector value def v512i1 : ValueType<512, 20>; // 512 x i1 vector value def v1024i1: ValueType<1024,21>; //1024 x i1 vector value def v1i8 : ValueType<16, 22>; // 1 x i8 vector value def v2i8 : ValueType<16 , 23>; // 2 x i8 vector value def v4i8 : ValueType<32 , 24>; // 4 x i8 vector value def v8i8 : ValueType<64 , 25>; // 8 x i8 vector value def v16i8 : ValueType<128, 26>; // 16 x i8 vector value def v32i8 : ValueType<256, 27>; // 32 x i8 vector value def v64i8 : ValueType<512, 28>; // 64 x i8 vector value def v128i8 : ValueType<1024,29>; //128 x i8 vector value def v256i8 : ValueType<2048,30>; //256 x i8 vector value def v1i16 : ValueType<16 , 31>; // 1 x i16 vector value def v2i16 : ValueType<32 , 32>; // 2 x i16 vector value def v4i16 : ValueType<64 , 33>; // 4 x i16 vector value def v8i16 : ValueType<128, 34>; // 8 x i16 vector value def v16i16 : ValueType<256, 35>; // 16 x i16 vector value def v32i16 : ValueType<512, 36>; // 32 x i16 vector value def v64i16 : ValueType<1024,37>; // 64 x i16 vector value def v128i16: ValueType<2048,38>; //128 x i16 vector value def v1i32 : ValueType<32 , 39>; // 1 x i32 vector value def v2i32 : ValueType<64 , 40>; // 2 x i32 vector value def v4i32 : ValueType<128, 41>; // 4 x i32 vector value def v8i32 : ValueType<256, 42>; // 8 x i32 vector value def v16i32 : ValueType<512, 43>; // 16 x i32 vector value def v32i32 : ValueType<1024,44>; // 32 x i32 vector value def v64i32 : ValueType<2048,45>; // 32 x i32 vector value def v1i64 : ValueType<64 , 46>; // 1 x i64 vector value def v2i64 : ValueType<128, 47>; // 2 x i64 vector value def v4i64 : ValueType<256, 48>; // 4 x i64 vector value def v8i64 : ValueType<512, 49>; // 8 x i64 vector value def v16i64 : ValueType<1024,50>; // 16 x i64 vector value def v32i64 : ValueType<2048,51>; // 32 x i64 vector value def v1i128 : ValueType<128, 52>; // 1 x i128 vector value def nxv2i1 : ValueType<2, 53>; // n x 2 x i1 vector value def nxv4i1 : ValueType<4, 54>; // n x 4 x i1 vector value def nxv8i1 : ValueType<8, 55>; // n x 8 x i1 vector value def nxv16i1 : ValueType<16, 56>; // n x 16 x i1 vector value def nxv32i1 : ValueType<32, 57>; // n x 32 x i1 vector value def nxv1i8 : ValueType<8, 58>; // n x 1 x i8 vector value def nxv2i8 : ValueType<16, 59>; // n x 2 x i8 vector value def nxv4i8 : ValueType<32, 60>; // n x 4 x i8 vector value def nxv8i8 : ValueType<64, 61>; // n x 8 x i8 vector value def nxv16i8 : ValueType<128, 62>; // n x 16 x i8 vector value def nxv32i8 : ValueType<256, 63>; // n x 32 x i8 vector value def nxv1i16 : ValueType<16, 64>; // n x 1 x i16 vector value def nxv2i16 : ValueType<32, 65>; // n x 2 x i16 vector value def nxv4i16 : ValueType<64, 66>; // n x 4 x i16 vector value def nxv8i16 : ValueType<128, 67>; // n x 8 x i16 vector value def nxv16i16: ValueType<256, 68>; // n x 16 x i16 vector value def nxv32i16: ValueType<512, 69>; // n x 32 x i16 vector value def nxv1i32 : ValueType<32, 70>; // n x 1 x i32 vector value def nxv2i32 : ValueType<64, 71>; // n x 2 x i32 vector value def nxv4i32 : ValueType<128, 72>; // n x 4 x i32 vector value def nxv8i32 : ValueType<256, 73>; // n x 8 x i32 vector value def nxv16i32: ValueType<512, 74>; // n x 16 x i32 vector value def nxv32i32: ValueType<1024,75>; // n x 32 x i32 vector value def nxv1i64 : ValueType<64, 76>; // n x 1 x i64 vector value def nxv2i64 : ValueType<128, 77>; // n x 2 x i64 vector value def nxv4i64 : ValueType<256, 78>; // n x 4 x i64 vector value def nxv8i64 : ValueType<512, 79>; // n x 8 x i64 vector value def nxv16i64: ValueType<1024,80>; // n x 16 x i64 vector value def nxv32i64: ValueType<2048,81>; // n x 32 x i64 vector value def v2f16 : ValueType<32 , 82>; // 2 x f16 vector value def v4f16 : ValueType<64 , 83>; // 4 x f16 vector value def v8f16 : ValueType<128, 84>; // 8 x f16 vector value def v1f32 : ValueType<32 , 85>; // 1 x f32 vector value def v2f32 : ValueType<64 , 86>; // 2 x f32 vector value def v4f32 : ValueType<128, 87>; // 4 x f32 vector value def v8f32 : ValueType<256, 88>; // 8 x f32 vector value def v16f32 : ValueType<512, 89>; // 16 x f32 vector value def v1f64 : ValueType<64, 90>; // 1 x f64 vector value def v2f64 : ValueType<128, 91>; // 2 x f64 vector value def v4f64 : ValueType<256, 92>; // 4 x f64 vector value def v8f64 : ValueType<512, 93>; // 8 x f64 vector value def nxv2f16 : ValueType<32 , 94>; // n x 2 x f16 vector value def nxv4f16 : ValueType<64 , 95>; // n x 4 x f16 vector value def nxv8f16 : ValueType<128, 96>; // n x 8 x f16 vector value def nxv1f32 : ValueType<32 , 97>; // n x 1 x f32 vector value def nxv2f32 : ValueType<64 , 98>; // n x 2 x f32 vector value def nxv4f32 : ValueType<128, 99>; // n x 4 x f32 vector value def nxv8f32 : ValueType<256, 100>; // n x 8 x f32 vector value def nxv16f32 : ValueType<512, 101>; // n x 16 x f32 vector value def nxv1f64 : ValueType<64, 102>; // n x 1 x f64 vector value def nxv2f64 : ValueType<128, 103>; // n x 2 x f64 vector value def nxv4f64 : ValueType<256, 104>; // n x 4 x f64 vector value def nxv8f64 : ValueType<512, 105>; // n x 8 x f64 vector value def x86mmx : ValueType<64 , 106>; // X86 MMX value def FlagVT : ValueType<0 , 107>; // Pre-RA sched glue def isVoid : ValueType<0 , 108>; // Produces no value def untyped: ValueType<8 , 109>; // Produces an untyped value def token : ValueType<0 , 248>; // TokenTy def MetadataVT: ValueType<0, 249>; // Metadata // Pseudo valuetype mapped to the current pointer size to any address space. // Should only be used in TableGen. def iPTRAny : ValueType<0, 250>; // Pseudo valuetype to represent "vector of any size" def vAny : ValueType<0 , 251>; // Pseudo valuetype to represent "float of any format" def fAny : ValueType<0 , 252>; // Pseudo valuetype to represent "integer of any bit width" def iAny : ValueType<0 , 253>; // Pseudo valuetype mapped to the current pointer size. def iPTR : ValueType<0 , 254>; // Pseudo valuetype to represent "any type of any size". def Any : ValueType<0 , 255>;