capstone/cs_simple_types.h

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/* Capstone Disassembly Engine, https://www.capstone-engine.org */
/* By Nguyen Anh Quynh <aquynh@gmail.com>, 2013-2019 */
/* By Rot127 <unisono@quyllur.org>, 2023 */
/* This header file mirrors LLVMs MachineValueTypes.h. */
#ifndef CS_SIMPLE_TYPES_H
#define CS_SIMPLE_TYPES_H
#include <assert.h>
#include <stdbool.h>
typedef enum {
// Simple value types that aren't explicitly part of this enumeration
// are considered extended value types.
CS_DATA_TYPE_INVALID_SIMPLE_VALUE_TYPE = 0,
// If you change this numbering, you must change the values in
// ValueTypes.td as well!
CS_DATA_TYPE_Other = 1, // This is a non-standard value
CS_DATA_TYPE_i1 = 2, // This is a 1 bit integer value
CS_DATA_TYPE_i2 = 3, // This is a 2 bit integer value
CS_DATA_TYPE_i4 = 4, // This is a 4 bit integer value
CS_DATA_TYPE_i8 = 5, // This is an 8 bit integer value
CS_DATA_TYPE_i16 = 6, // This is a 16 bit integer value
CS_DATA_TYPE_i32 = 7, // This is a 32 bit integer value
CS_DATA_TYPE_i64 = 8, // This is a 64 bit integer value
CS_DATA_TYPE_i128 = 9, // This is a 128 bit integer value
CS_DATA_TYPE_FIRST_INTEGER_VALUETYPE = CS_DATA_TYPE_i1,
CS_DATA_TYPE_LAST_INTEGER_VALUETYPE = CS_DATA_TYPE_i128,
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CS_DATA_TYPE_bf16 = 10, // This is a 16 bit brain floating point value
CS_DATA_TYPE_f16 = 11, // This is a 16 bit floating point value
CS_DATA_TYPE_f32 = 12, // This is a 32 bit floating point value
CS_DATA_TYPE_f64 = 13, // This is a 64 bit floating point value
CS_DATA_TYPE_f80 = 14, // This is a 80 bit floating point value
CS_DATA_TYPE_f128 = 15, // This is a 128 bit floating point value
CS_DATA_TYPE_ppcf128 = 16, // This is a PPC 128-bit floating point value
CS_DATA_TYPE_FIRST_FP_VALUETYPE = CS_DATA_TYPE_bf16,
CS_DATA_TYPE_LAST_FP_VALUETYPE = CS_DATA_TYPE_ppcf128,
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CS_DATA_TYPE_v1i1 = 17, // 1 x i1
CS_DATA_TYPE_v2i1 = 18, // 2 x i1
CS_DATA_TYPE_v4i1 = 19, // 4 x i1
CS_DATA_TYPE_v8i1 = 20, // 8 x i1
CS_DATA_TYPE_v16i1 = 21, // 16 x i1
CS_DATA_TYPE_v32i1 = 22, // 32 x i1
CS_DATA_TYPE_v64i1 = 23, // 64 x i1
CS_DATA_TYPE_v128i1 = 24, // 128 x i1
CS_DATA_TYPE_v256i1 = 25, // 256 x i1
CS_DATA_TYPE_v512i1 = 26, // 512 x i1
CS_DATA_TYPE_v1024i1 = 27, // 1024 x i1
CS_DATA_TYPE_v2048i1 = 28, // 2048 x i1
CS_DATA_TYPE_v128i2 = 29, // 128 x i2
CS_DATA_TYPE_v256i2 = 30, // 256 x i2
CS_DATA_TYPE_v64i4 = 31, // 64 x i4
CS_DATA_TYPE_v128i4 = 32, // 128 x i4
CS_DATA_TYPE_v1i8 = 33, // 1 x i8
CS_DATA_TYPE_v2i8 = 34, // 2 x i8
CS_DATA_TYPE_v4i8 = 35, // 4 x i8
CS_DATA_TYPE_v8i8 = 36, // 8 x i8
CS_DATA_TYPE_v16i8 = 37, // 16 x i8
CS_DATA_TYPE_v32i8 = 38, // 32 x i8
CS_DATA_TYPE_v64i8 = 39, // 64 x i8
CS_DATA_TYPE_v128i8 = 40, // 128 x i8
CS_DATA_TYPE_v256i8 = 41, // 256 x i8
CS_DATA_TYPE_v512i8 = 42, // 512 x i8
CS_DATA_TYPE_v1024i8 = 43, // 1024 x i8
CS_DATA_TYPE_v1i16 = 44, // 1 x i16
CS_DATA_TYPE_v2i16 = 45, // 2 x i16
CS_DATA_TYPE_v3i16 = 46, // 3 x i16
CS_DATA_TYPE_v4i16 = 47, // 4 x i16
CS_DATA_TYPE_v8i16 = 48, // 8 x i16
CS_DATA_TYPE_v16i16 = 49, // 16 x i16
CS_DATA_TYPE_v32i16 = 50, // 32 x i16
CS_DATA_TYPE_v64i16 = 51, // 64 x i16
CS_DATA_TYPE_v128i16 = 52, // 128 x i16
CS_DATA_TYPE_v256i16 = 53, // 256 x i16
CS_DATA_TYPE_v512i16 = 54, // 512 x i16
CS_DATA_TYPE_v1i32 = 55, // 1 x i32
CS_DATA_TYPE_v2i32 = 56, // 2 x i32
CS_DATA_TYPE_v3i32 = 57, // 3 x i32
CS_DATA_TYPE_v4i32 = 58, // 4 x i32
CS_DATA_TYPE_v5i32 = 59, // 5 x i32
CS_DATA_TYPE_v6i32 = 60, // 6 x i32
CS_DATA_TYPE_v7i32 = 61, // 7 x i32
CS_DATA_TYPE_v8i32 = 62, // 8 x i32
CS_DATA_TYPE_v9i32 = 63, // 9 x i32
CS_DATA_TYPE_v10i32 = 64, // 10 x i32
CS_DATA_TYPE_v11i32 = 65, // 11 x i32
CS_DATA_TYPE_v12i32 = 66, // 12 x i32
CS_DATA_TYPE_v16i32 = 67, // 16 x i32
CS_DATA_TYPE_v32i32 = 68, // 32 x i32
CS_DATA_TYPE_v64i32 = 69, // 64 x i32
CS_DATA_TYPE_v128i32 = 70, // 128 x i32
CS_DATA_TYPE_v256i32 = 71, // 256 x i32
CS_DATA_TYPE_v512i32 = 72, // 512 x i32
CS_DATA_TYPE_v1024i32 = 73, // 1024 x i32
CS_DATA_TYPE_v2048i32 = 74, // 2048 x i32
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CS_DATA_TYPE_v1i64 = 75, // 1 x i64
CS_DATA_TYPE_v2i64 = 76, // 2 x i64
CS_DATA_TYPE_v3i64 = 77, // 3 x i64
CS_DATA_TYPE_v4i64 = 78, // 4 x i64
CS_DATA_TYPE_v8i64 = 79, // 8 x i64
CS_DATA_TYPE_v16i64 = 80, // 16 x i64
CS_DATA_TYPE_v32i64 = 81, // 32 x i64
CS_DATA_TYPE_v64i64 = 82, // 64 x i64
CS_DATA_TYPE_v128i64 = 83, // 128 x i64
CS_DATA_TYPE_v256i64 = 84, // 256 x i64
CS_DATA_TYPE_v1i128 = 85, // 1 x i128
CS_DATA_TYPE_FIRST_INTEGER_FIXEDLEN_VECTOR_VALUETYPE =
CS_DATA_TYPE_v1i1,
CS_DATA_TYPE_LAST_INTEGER_FIXEDLEN_VECTOR_VALUETYPE =
CS_DATA_TYPE_v1i128,
CS_DATA_TYPE_v1f16 = 86, // 1 x f16
CS_DATA_TYPE_v2f16 = 87, // 2 x f16
CS_DATA_TYPE_v3f16 = 88, // 3 x f16
CS_DATA_TYPE_v4f16 = 89, // 4 x f16
CS_DATA_TYPE_v8f16 = 90, // 8 x f16
CS_DATA_TYPE_v16f16 = 91, // 16 x f16
CS_DATA_TYPE_v32f16 = 92, // 32 x f16
CS_DATA_TYPE_v64f16 = 93, // 64 x f16
CS_DATA_TYPE_v128f16 = 94, // 128 x f16
CS_DATA_TYPE_v256f16 = 95, // 256 x f16
CS_DATA_TYPE_v512f16 = 96, // 512 x f16
CS_DATA_TYPE_v2bf16 = 97, // 2 x bf16
CS_DATA_TYPE_v3bf16 = 98, // 3 x bf16
CS_DATA_TYPE_v4bf16 = 99, // 4 x bf16
CS_DATA_TYPE_v8bf16 = 100, // 8 x bf16
CS_DATA_TYPE_v16bf16 = 101, // 16 x bf16
CS_DATA_TYPE_v32bf16 = 102, // 32 x bf16
CS_DATA_TYPE_v64bf16 = 103, // 64 x bf16
CS_DATA_TYPE_v128bf16 = 104, // 128 x bf16
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CS_DATA_TYPE_v1f32 = 105, // 1 x f32
CS_DATA_TYPE_v2f32 = 106, // 2 x f32
CS_DATA_TYPE_v3f32 = 107, // 3 x f32
CS_DATA_TYPE_v4f32 = 108, // 4 x f32
CS_DATA_TYPE_v5f32 = 109, // 5 x f32
CS_DATA_TYPE_v6f32 = 110, // 6 x f32
CS_DATA_TYPE_v7f32 = 111, // 7 x f32
CS_DATA_TYPE_v8f32 = 112, // 8 x f32
CS_DATA_TYPE_v9f32 = 113, // 9 x f32
CS_DATA_TYPE_v10f32 = 114, // 10 x f32
CS_DATA_TYPE_v11f32 = 115, // 11 x f32
CS_DATA_TYPE_v12f32 = 116, // 12 x f32
CS_DATA_TYPE_v16f32 = 117, // 16 x f32
CS_DATA_TYPE_v32f32 = 118, // 32 x f32
CS_DATA_TYPE_v64f32 = 119, // 64 x f32
CS_DATA_TYPE_v128f32 = 120, // 128 x f32
CS_DATA_TYPE_v256f32 = 121, // 256 x f32
CS_DATA_TYPE_v512f32 = 122, // 512 x f32
CS_DATA_TYPE_v1024f32 = 123, // 1024 x f32
CS_DATA_TYPE_v2048f32 = 124, // 2048 x f32
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CS_DATA_TYPE_v1f64 = 125, // 1 x f64
CS_DATA_TYPE_v2f64 = 126, // 2 x f64
CS_DATA_TYPE_v3f64 = 127, // 3 x f64
CS_DATA_TYPE_v4f64 = 128, // 4 x f64
CS_DATA_TYPE_v8f64 = 129, // 8 x f64
CS_DATA_TYPE_v16f64 = 130, // 16 x f64
CS_DATA_TYPE_v32f64 = 131, // 32 x f64
CS_DATA_TYPE_v64f64 = 132, // 64 x f64
CS_DATA_TYPE_v128f64 = 133, // 128 x f64
CS_DATA_TYPE_v256f64 = 134, // 256 x f64
CS_DATA_TYPE_FIRST_FP_FIXEDLEN_VECTOR_VALUETYPE = CS_DATA_TYPE_v1f16,
CS_DATA_TYPE_LAST_FP_FIXEDLEN_VECTOR_VALUETYPE = CS_DATA_TYPE_v256f64,
CS_DATA_TYPE_FIRST_FIXEDLEN_VECTOR_VALUETYPE = CS_DATA_TYPE_v1i1,
CS_DATA_TYPE_LAST_FIXEDLEN_VECTOR_VALUETYPE = CS_DATA_TYPE_v256f64,
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CS_DATA_TYPE_nxv1i1 = 135, // n x 1 x i1
CS_DATA_TYPE_nxv2i1 = 136, // n x 2 x i1
CS_DATA_TYPE_nxv4i1 = 137, // n x 4 x i1
CS_DATA_TYPE_nxv8i1 = 138, // n x 8 x i1
CS_DATA_TYPE_nxv16i1 = 139, // n x 16 x i1
CS_DATA_TYPE_nxv32i1 = 140, // n x 32 x i1
CS_DATA_TYPE_nxv64i1 = 141, // n x 64 x i1
CS_DATA_TYPE_nxv1i8 = 142, // n x 1 x i8
CS_DATA_TYPE_nxv2i8 = 143, // n x 2 x i8
CS_DATA_TYPE_nxv4i8 = 144, // n x 4 x i8
CS_DATA_TYPE_nxv8i8 = 145, // n x 8 x i8
CS_DATA_TYPE_nxv16i8 = 146, // n x 16 x i8
CS_DATA_TYPE_nxv32i8 = 147, // n x 32 x i8
CS_DATA_TYPE_nxv64i8 = 148, // n x 64 x i8
CS_DATA_TYPE_nxv1i16 = 149, // n x 1 x i16
CS_DATA_TYPE_nxv2i16 = 150, // n x 2 x i16
CS_DATA_TYPE_nxv4i16 = 151, // n x 4 x i16
CS_DATA_TYPE_nxv8i16 = 152, // n x 8 x i16
CS_DATA_TYPE_nxv16i16 = 153, // n x 16 x i16
CS_DATA_TYPE_nxv32i16 = 154, // n x 32 x i16
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CS_DATA_TYPE_nxv1i32 = 155, // n x 1 x i32
CS_DATA_TYPE_nxv2i32 = 156, // n x 2 x i32
CS_DATA_TYPE_nxv4i32 = 157, // n x 4 x i32
CS_DATA_TYPE_nxv8i32 = 158, // n x 8 x i32
CS_DATA_TYPE_nxv16i32 = 159, // n x 16 x i32
CS_DATA_TYPE_nxv32i32 = 160, // n x 32 x i32
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CS_DATA_TYPE_nxv1i64 = 161, // n x 1 x i64
CS_DATA_TYPE_nxv2i64 = 162, // n x 2 x i64
CS_DATA_TYPE_nxv4i64 = 163, // n x 4 x i64
CS_DATA_TYPE_nxv8i64 = 164, // n x 8 x i64
CS_DATA_TYPE_nxv16i64 = 165, // n x 16 x i64
CS_DATA_TYPE_nxv32i64 = 166, // n x 32 x i64
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CS_DATA_TYPE_FIRST_INTEGER_SCALABLE_VECTOR_VALUETYPE =
CS_DATA_TYPE_nxv1i1,
CS_DATA_TYPE_LAST_INTEGER_SCALABLE_VECTOR_VALUETYPE =
CS_DATA_TYPE_nxv32i64,
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CS_DATA_TYPE_nxv1f16 = 167, // n x 1 x f16
CS_DATA_TYPE_nxv2f16 = 168, // n x 2 x f16
CS_DATA_TYPE_nxv4f16 = 169, // n x 4 x f16
CS_DATA_TYPE_nxv8f16 = 170, // n x 8 x f16
CS_DATA_TYPE_nxv16f16 = 171, // n x 16 x f16
CS_DATA_TYPE_nxv32f16 = 172, // n x 32 x f16
CS_DATA_TYPE_nxv1bf16 = 173, // n x 1 x bf16
CS_DATA_TYPE_nxv2bf16 = 174, // n x 2 x bf16
CS_DATA_TYPE_nxv4bf16 = 175, // n x 4 x bf16
CS_DATA_TYPE_nxv8bf16 = 176, // n x 8 x bf16
CS_DATA_TYPE_nxv16bf16 = 177, // n x 16 x bf16
CS_DATA_TYPE_nxv32bf16 = 178, // n x 32 x bf16
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CS_DATA_TYPE_nxv1f32 = 179, // n x 1 x f32
CS_DATA_TYPE_nxv2f32 = 180, // n x 2 x f32
CS_DATA_TYPE_nxv4f32 = 181, // n x 4 x f32
CS_DATA_TYPE_nxv8f32 = 182, // n x 8 x f32
CS_DATA_TYPE_nxv16f32 = 183, // n x 16 x f32
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CS_DATA_TYPE_nxv1f64 = 184, // n x 1 x f64
CS_DATA_TYPE_nxv2f64 = 185, // n x 2 x f64
CS_DATA_TYPE_nxv4f64 = 186, // n x 4 x f64
CS_DATA_TYPE_nxv8f64 = 187, // n x 8 x f64
CS_DATA_TYPE_FIRST_FP_SCALABLE_VECTOR_VALUETYPE = CS_DATA_TYPE_nxv1f16,
CS_DATA_TYPE_LAST_FP_SCALABLE_VECTOR_VALUETYPE = CS_DATA_TYPE_nxv8f64,
CS_DATA_TYPE_FIRST_SCALABLE_VECTOR_VALUETYPE = CS_DATA_TYPE_nxv1i1,
CS_DATA_TYPE_LAST_SCALABLE_VECTOR_VALUETYPE = CS_DATA_TYPE_nxv8f64,
CS_DATA_TYPE_FIRST_VECTOR_VALUETYPE = CS_DATA_TYPE_v1i1,
CS_DATA_TYPE_LAST_VECTOR_VALUETYPE = CS_DATA_TYPE_nxv8f64,
CS_DATA_TYPE_x86mmx = 188, // This is an X86 MMX value
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CS_DATA_TYPE_Glue =
189, // This glues nodes together during pre-RA sched
CS_DATA_TYPE_isVoid = 190, // This has no value
CS_DATA_TYPE_Untyped = 191, // This value takes a register, but has
// unspecified type. The register class
// will be determined by the opcode.
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CS_DATA_TYPE_funcref = 192, // WebAssembly's funcref type
CS_DATA_TYPE_externref = 193, // WebAssembly's externref type
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CS_DATA_TYPE_x86amx = 194, // This is an X86 AMX value
CS_DATA_TYPE_i64x8 = 195, // 8 Consecutive GPRs (AArch64)
AArch64 update to LLVM 18 (#2298) * Run clang-format * Remove arm.h header from AArch64 files * Update all AArch64 module files to LLVM-18. * Add check if the differs save file is up-to-date with the current files. * Add new generator for MC test trnaslation. * Fix warnings * Update generated AsmWriter files * Remove unused variable * Change MCPhysReg type to int16_t as LLVM 18 dictates. With LLVM 18 the MCPhysReg value's type is changed to int16_t. If we update modules to LLVM 18, they will generate compiler warnings that uint16_t* should not be casted to int16_t*. This makes changing the all tables to int16_t necessary, because the alternative is to duplicate all MCPhysReg related code. Which is even worse. * Assign enum values to raw_struct member * Add printAdrAdrpLabel def * Add header to regression test files. * Write files to build dir and ignore more parsing errors. * Fix parsing of MC test files. * Reset parser after every block * Add write and patch header step. * Add and update MC tests for AArch64 * Fix clang-tidy warnings * Don't warn about padding issues. They break automatically initialized structs we can not change easily. * Fix: Incorrect access of LLVM instruction descriptions. * Initialize DecoderComplete flag * Add more mapping and flag details * Add function to get MCInstDesc from table * Fix incorrect memory operand access types. * Fix test where memory was not written, ut only read. * Attempt to fix Windows build * Fix 2268 The enum values were different and hence lead to different decoding. * Refactor SME operands. - Splits SME operands in Matrix and Predicate operands. - Fixes general problems of incorrect detections with the vector select/index operands of predicate registers. - Simplifies code. * Fix up typo in WRITE * Print actual path to struct fields * Add Registers of SME operands to the reg-read list * Add tests for SME operands. * Use Capstone reg enum for comparison * Fix tests: 'Vector arra...' to 'operands[x].vas' * Add the developer fuzz option. * Fix Python bindings for SME operands * Fix variable shadowing. * Fix clang-tidy warnings * Add missing break. * Fix varg usage * Brackets for case * Handle AArch64_OP_GROUP_AdrAdrpLabel * Fix endian issue with fuzzing start bytes * Move previous sme.pred to it's own operand type. * Fix calculation for imm ranges * Print list member flag * Fix up operand strings for cstest * Do only a shallow clone of the cmocka stable branch * Fix: Don't categorize ZT0 as a SME matrix operand. * Remove unused code. * Add flag to distinguish Vn and Qn registers. * Add all registers to detail struct, even if emitted in the asm text * Fix: Increment op count after each list member is added. * Remove implicit write to NZCV for MSR Imm instructions. * Handle several alias operands. * Add details for zero alias with za0.h * Add SME tile to write list if written * Add write access flags to operands which are zeroed. * Add SME tests of #2285 * Fix tests with latest syntax changes. * Fix segfault if memory operand is only a label without register. * Fix python bindings * Attempt to fix clang-tidy warning for some configurations. * Add missing test file (accidentially blocked by gitignore.) * Print clang-tidy version before linting. * Update differ save file * Formatting * Use clang-tidy-15 as if possible. * Remove search patterns for MC tests, since they need to be reworked anyways. * Enum to upper case change * Add information to read the OSS fuzz result. * Fix special case of SVE2 operands. Apparently ZT0 registers can an index attached, get which is BOUND to it. We have no "index for reg" field. So it is simply saved as an immediate. * Handle LLVM expressions without asserts. * Ensure choices are always saved. * OP_GROUP enums can't be all upper case because they contain type information. * Fix compatibility header patching * Update saved_choices.json * Allow mode == None in test_corpus
2024-07-08 10:28:54 +08:00
CS_DATA_TYPE_aarch64svcount = 196,// AArch64, Value is of a scalable size
CS_DATA_TYPE_FIRST_VALUETYPE =
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1, // This is always the beginning of the list.
CS_DATA_TYPE_LAST_VALUETYPE =
CS_DATA_TYPE_i64x8, // This always remains at the end of the list.
CS_DATA_TYPE_VALUETYPE_SIZE = CS_DATA_TYPE_LAST_VALUETYPE + 1,
// This is the current maximum for LAST_VALUETYPE.
// MVT::MAX_ALLOWED_VALUETYPE is used for asserts and to size bit vectors
// This value must be a multiple of 32.
CS_DATA_TYPE_MAX_ALLOWED_VALUETYPE = 224,
// A value of type llvm::TokenTy
CS_DATA_TYPE_token = 248,
// This is MDNode or MDString.
CS_DATA_TYPE_Metadata = 249,
// An int value the size of the pointer of the current
// target to any address space. This must only be used internal to
// tblgen. Other than for overloading, we treat iPTRAny the same as iPTR.
CS_DATA_TYPE_iPTRAny = 250,
// A vector with any length and element size. This is used
// for intrinsics that have overloadings based on vector types.
// This is only for tblgen's consumption!
CS_DATA_TYPE_vAny = 251,
// Any floating-point or vector floating-point value. This is used
// for intrinsics that have overloadings based on floating-point types.
// This is only for tblgen's consumption!
CS_DATA_TYPE_fAny = 252,
// An integer or vector integer value of any bit width. This is
// used for intrinsics that have overloadings based on integer bit widths.
// This is only for tblgen's consumption!
CS_DATA_TYPE_iAny = 253,
// An int value the size of the pointer of the current
// target. This should only be used internal to tblgen!
CS_DATA_TYPE_iPTR = 254,
// Last element in enum.
CS_DATA_TYPE_LAST = 255
} cs_data_type;
/// Return true if this is a valid simple valuetype.
static inline bool isValid(cs_data_type SimpleTy)
{
return (SimpleTy >= CS_DATA_TYPE_FIRST_VALUETYPE &&
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SimpleTy <= CS_DATA_TYPE_LAST_VALUETYPE);
}
/// Return true if this is a FP or a vector FP type.
static inline bool isFloatingPoint(cs_data_type SimpleTy)
{
return ((SimpleTy >= CS_DATA_TYPE_FIRST_FP_VALUETYPE &&
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SimpleTy <= CS_DATA_TYPE_LAST_FP_VALUETYPE) ||
(SimpleTy >= CS_DATA_TYPE_FIRST_FP_FIXEDLEN_VECTOR_VALUETYPE &&
SimpleTy <= CS_DATA_TYPE_LAST_FP_FIXEDLEN_VECTOR_VALUETYPE) ||
(SimpleTy >= CS_DATA_TYPE_FIRST_FP_SCALABLE_VECTOR_VALUETYPE &&
SimpleTy <= CS_DATA_TYPE_LAST_FP_SCALABLE_VECTOR_VALUETYPE));
}
/// Return true if this is an integer or a vector integer type.
static inline bool isInteger(cs_data_type SimpleTy)
{
return ((SimpleTy >= CS_DATA_TYPE_FIRST_INTEGER_VALUETYPE &&
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SimpleTy <= CS_DATA_TYPE_LAST_INTEGER_VALUETYPE) ||
(SimpleTy >=
CS_DATA_TYPE_FIRST_INTEGER_FIXEDLEN_VECTOR_VALUETYPE &&
SimpleTy <=
CS_DATA_TYPE_LAST_INTEGER_FIXEDLEN_VECTOR_VALUETYPE) ||
(SimpleTy >=
CS_DATA_TYPE_FIRST_INTEGER_SCALABLE_VECTOR_VALUETYPE &&
SimpleTy <=
CS_DATA_TYPE_LAST_INTEGER_SCALABLE_VECTOR_VALUETYPE));
}
/// Return true if this is an integer, not including vectors.
static inline bool isScalarInteger(cs_data_type SimpleTy)
{
return (SimpleTy >= CS_DATA_TYPE_FIRST_INTEGER_VALUETYPE &&
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SimpleTy <= CS_DATA_TYPE_LAST_INTEGER_VALUETYPE);
}
/// Return true if this is a vector value type.
static inline bool isVector(cs_data_type SimpleTy)
{
return (SimpleTy >= CS_DATA_TYPE_FIRST_VECTOR_VALUETYPE &&
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SimpleTy <= CS_DATA_TYPE_LAST_VECTOR_VALUETYPE);
}
/// Return true if this is a vector value type where the
/// runtime length is machine dependent
static inline bool isScalableVector(cs_data_type SimpleTy)
{
return (SimpleTy >= CS_DATA_TYPE_FIRST_SCALABLE_VECTOR_VALUETYPE &&
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SimpleTy <= CS_DATA_TYPE_LAST_SCALABLE_VECTOR_VALUETYPE);
}
static inline bool isFixedLengthVector(cs_data_type SimpleTy)
{
return (SimpleTy >= CS_DATA_TYPE_FIRST_FIXEDLEN_VECTOR_VALUETYPE &&
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SimpleTy <= CS_DATA_TYPE_LAST_FIXEDLEN_VECTOR_VALUETYPE);
}
/// Return true if this is a 16-bit vector type.
static inline bool is16BitVector(cs_data_type SimpleTy)
{
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return (SimpleTy == CS_DATA_TYPE_v2i8 ||
SimpleTy == CS_DATA_TYPE_v1i16 ||
SimpleTy == CS_DATA_TYPE_v16i1 ||
SimpleTy == CS_DATA_TYPE_v1f16);
}
/// Return true if this is a 32-bit vector type.
static inline bool is32BitVector(cs_data_type SimpleTy)
{
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return (SimpleTy == CS_DATA_TYPE_v32i1 ||
SimpleTy == CS_DATA_TYPE_v4i8 ||
SimpleTy == CS_DATA_TYPE_v2i16 ||
SimpleTy == CS_DATA_TYPE_v1i32 ||
SimpleTy == CS_DATA_TYPE_v2f16 ||
SimpleTy == CS_DATA_TYPE_v2bf16 ||
SimpleTy == CS_DATA_TYPE_v1f32);
}
/// Return true if this is a 64-bit vector type.
static inline bool is64BitVector(cs_data_type SimpleTy)
{
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return (SimpleTy == CS_DATA_TYPE_v64i1 ||
SimpleTy == CS_DATA_TYPE_v8i8 ||
SimpleTy == CS_DATA_TYPE_v4i16 ||
SimpleTy == CS_DATA_TYPE_v2i32 ||
SimpleTy == CS_DATA_TYPE_v1i64 ||
SimpleTy == CS_DATA_TYPE_v4f16 ||
SimpleTy == CS_DATA_TYPE_v4bf16 ||
SimpleTy == CS_DATA_TYPE_v2f32 ||
SimpleTy == CS_DATA_TYPE_v1f64);
}
/// Return true if this is a 128-bit vector type.
static inline bool is128BitVector(cs_data_type SimpleTy)
{
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return (SimpleTy == CS_DATA_TYPE_v128i1 ||
SimpleTy == CS_DATA_TYPE_v16i8 ||
SimpleTy == CS_DATA_TYPE_v8i16 ||
SimpleTy == CS_DATA_TYPE_v4i32 ||
SimpleTy == CS_DATA_TYPE_v2i64 ||
SimpleTy == CS_DATA_TYPE_v1i128 ||
SimpleTy == CS_DATA_TYPE_v8f16 ||
SimpleTy == CS_DATA_TYPE_v8bf16 ||
SimpleTy == CS_DATA_TYPE_v4f32 ||
SimpleTy == CS_DATA_TYPE_v2f64);
}
/// Return true if this is a 256-bit vector type.
static inline bool is256BitVector(cs_data_type SimpleTy)
{
return (SimpleTy == CS_DATA_TYPE_v16f16 ||
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SimpleTy == CS_DATA_TYPE_v16bf16 ||
SimpleTy == CS_DATA_TYPE_v8f32 ||
SimpleTy == CS_DATA_TYPE_v4f64 ||
SimpleTy == CS_DATA_TYPE_v32i8 ||
SimpleTy == CS_DATA_TYPE_v16i16 ||
SimpleTy == CS_DATA_TYPE_v8i32 ||
SimpleTy == CS_DATA_TYPE_v4i64 ||
SimpleTy == CS_DATA_TYPE_v256i1 ||
SimpleTy == CS_DATA_TYPE_v128i2 ||
SimpleTy == CS_DATA_TYPE_v64i4);
}
/// Return true if this is a 512-bit vector type.
static inline bool is512BitVector(cs_data_type SimpleTy)
{
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return (SimpleTy == CS_DATA_TYPE_v32f16 ||
SimpleTy == CS_DATA_TYPE_v32bf16 ||
SimpleTy == CS_DATA_TYPE_v16f32 ||
SimpleTy == CS_DATA_TYPE_v8f64 ||
SimpleTy == CS_DATA_TYPE_v512i1 ||
SimpleTy == CS_DATA_TYPE_v256i2 ||
SimpleTy == CS_DATA_TYPE_v128i4 ||
SimpleTy == CS_DATA_TYPE_v64i8 ||
SimpleTy == CS_DATA_TYPE_v32i16 ||
SimpleTy == CS_DATA_TYPE_v16i32 ||
SimpleTy == CS_DATA_TYPE_v8i64);
}
/// Return true if this is a 1024-bit vector type.
static inline bool is1024BitVector(cs_data_type SimpleTy)
{
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return (SimpleTy == CS_DATA_TYPE_v1024i1 ||
SimpleTy == CS_DATA_TYPE_v128i8 ||
SimpleTy == CS_DATA_TYPE_v64i16 ||
SimpleTy == CS_DATA_TYPE_v32i32 ||
SimpleTy == CS_DATA_TYPE_v16i64 ||
SimpleTy == CS_DATA_TYPE_v64f16 ||
SimpleTy == CS_DATA_TYPE_v32f32 ||
SimpleTy == CS_DATA_TYPE_v16f64 ||
SimpleTy == CS_DATA_TYPE_v64bf16);
}
/// Return true if this is a 2048-bit vector type.
static inline bool is2048BitVector(cs_data_type SimpleTy)
{
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return (SimpleTy == CS_DATA_TYPE_v256i8 ||
SimpleTy == CS_DATA_TYPE_v128i16 ||
SimpleTy == CS_DATA_TYPE_v64i32 ||
SimpleTy == CS_DATA_TYPE_v32i64 ||
SimpleTy == CS_DATA_TYPE_v128f16 ||
SimpleTy == CS_DATA_TYPE_v64f32 ||
SimpleTy == CS_DATA_TYPE_v32f64 ||
SimpleTy == CS_DATA_TYPE_v128bf16 ||
SimpleTy == CS_DATA_TYPE_v2048i1);
}
static inline cs_data_type getVectorElementType(cs_data_type SimpleTy)
{
switch (SimpleTy) {
default:
assert(0 && "Not a vector MVT!");
case CS_DATA_TYPE_v1i1:
case CS_DATA_TYPE_v2i1:
case CS_DATA_TYPE_v4i1:
case CS_DATA_TYPE_v8i1:
case CS_DATA_TYPE_v16i1:
case CS_DATA_TYPE_v32i1:
case CS_DATA_TYPE_v64i1:
case CS_DATA_TYPE_v128i1:
case CS_DATA_TYPE_v256i1:
case CS_DATA_TYPE_v512i1:
case CS_DATA_TYPE_v1024i1:
case CS_DATA_TYPE_v2048i1:
case CS_DATA_TYPE_nxv1i1:
case CS_DATA_TYPE_nxv2i1:
case CS_DATA_TYPE_nxv4i1:
case CS_DATA_TYPE_nxv8i1:
case CS_DATA_TYPE_nxv16i1:
case CS_DATA_TYPE_nxv32i1:
case CS_DATA_TYPE_nxv64i1:
return CS_DATA_TYPE_i1;
case CS_DATA_TYPE_v128i2:
case CS_DATA_TYPE_v256i2:
return CS_DATA_TYPE_i2;
case CS_DATA_TYPE_v64i4:
case CS_DATA_TYPE_v128i4:
return CS_DATA_TYPE_i4;
case CS_DATA_TYPE_v1i8:
case CS_DATA_TYPE_v2i8:
case CS_DATA_TYPE_v4i8:
case CS_DATA_TYPE_v8i8:
case CS_DATA_TYPE_v16i8:
case CS_DATA_TYPE_v32i8:
case CS_DATA_TYPE_v64i8:
case CS_DATA_TYPE_v128i8:
case CS_DATA_TYPE_v256i8:
case CS_DATA_TYPE_v512i8:
case CS_DATA_TYPE_v1024i8:
case CS_DATA_TYPE_nxv1i8:
case CS_DATA_TYPE_nxv2i8:
case CS_DATA_TYPE_nxv4i8:
case CS_DATA_TYPE_nxv8i8:
case CS_DATA_TYPE_nxv16i8:
case CS_DATA_TYPE_nxv32i8:
case CS_DATA_TYPE_nxv64i8:
return CS_DATA_TYPE_i8;
case CS_DATA_TYPE_v1i16:
case CS_DATA_TYPE_v2i16:
case CS_DATA_TYPE_v3i16:
case CS_DATA_TYPE_v4i16:
case CS_DATA_TYPE_v8i16:
case CS_DATA_TYPE_v16i16:
case CS_DATA_TYPE_v32i16:
case CS_DATA_TYPE_v64i16:
case CS_DATA_TYPE_v128i16:
case CS_DATA_TYPE_v256i16:
case CS_DATA_TYPE_v512i16:
case CS_DATA_TYPE_nxv1i16:
case CS_DATA_TYPE_nxv2i16:
case CS_DATA_TYPE_nxv4i16:
case CS_DATA_TYPE_nxv8i16:
case CS_DATA_TYPE_nxv16i16:
case CS_DATA_TYPE_nxv32i16:
return CS_DATA_TYPE_i16;
case CS_DATA_TYPE_v1i32:
case CS_DATA_TYPE_v2i32:
case CS_DATA_TYPE_v3i32:
case CS_DATA_TYPE_v4i32:
case CS_DATA_TYPE_v5i32:
case CS_DATA_TYPE_v6i32:
case CS_DATA_TYPE_v7i32:
case CS_DATA_TYPE_v8i32:
case CS_DATA_TYPE_v9i32:
case CS_DATA_TYPE_v10i32:
case CS_DATA_TYPE_v11i32:
case CS_DATA_TYPE_v12i32:
case CS_DATA_TYPE_v16i32:
case CS_DATA_TYPE_v32i32:
case CS_DATA_TYPE_v64i32:
case CS_DATA_TYPE_v128i32:
case CS_DATA_TYPE_v256i32:
case CS_DATA_TYPE_v512i32:
case CS_DATA_TYPE_v1024i32:
case CS_DATA_TYPE_v2048i32:
case CS_DATA_TYPE_nxv1i32:
case CS_DATA_TYPE_nxv2i32:
case CS_DATA_TYPE_nxv4i32:
case CS_DATA_TYPE_nxv8i32:
case CS_DATA_TYPE_nxv16i32:
case CS_DATA_TYPE_nxv32i32:
return CS_DATA_TYPE_i32;
case CS_DATA_TYPE_v1i64:
case CS_DATA_TYPE_v2i64:
case CS_DATA_TYPE_v3i64:
case CS_DATA_TYPE_v4i64:
case CS_DATA_TYPE_v8i64:
case CS_DATA_TYPE_v16i64:
case CS_DATA_TYPE_v32i64:
case CS_DATA_TYPE_v64i64:
case CS_DATA_TYPE_v128i64:
case CS_DATA_TYPE_v256i64:
case CS_DATA_TYPE_nxv1i64:
case CS_DATA_TYPE_nxv2i64:
case CS_DATA_TYPE_nxv4i64:
case CS_DATA_TYPE_nxv8i64:
case CS_DATA_TYPE_nxv16i64:
case CS_DATA_TYPE_nxv32i64:
return CS_DATA_TYPE_i64;
case CS_DATA_TYPE_v1i128:
return CS_DATA_TYPE_i128;
case CS_DATA_TYPE_v1f16:
case CS_DATA_TYPE_v2f16:
case CS_DATA_TYPE_v3f16:
case CS_DATA_TYPE_v4f16:
case CS_DATA_TYPE_v8f16:
case CS_DATA_TYPE_v16f16:
case CS_DATA_TYPE_v32f16:
case CS_DATA_TYPE_v64f16:
case CS_DATA_TYPE_v128f16:
case CS_DATA_TYPE_v256f16:
case CS_DATA_TYPE_v512f16:
case CS_DATA_TYPE_nxv1f16:
case CS_DATA_TYPE_nxv2f16:
case CS_DATA_TYPE_nxv4f16:
case CS_DATA_TYPE_nxv8f16:
case CS_DATA_TYPE_nxv16f16:
case CS_DATA_TYPE_nxv32f16:
return CS_DATA_TYPE_f16;
case CS_DATA_TYPE_v2bf16:
case CS_DATA_TYPE_v3bf16:
case CS_DATA_TYPE_v4bf16:
case CS_DATA_TYPE_v8bf16:
case CS_DATA_TYPE_v16bf16:
case CS_DATA_TYPE_v32bf16:
case CS_DATA_TYPE_v64bf16:
case CS_DATA_TYPE_v128bf16:
case CS_DATA_TYPE_nxv1bf16:
case CS_DATA_TYPE_nxv2bf16:
case CS_DATA_TYPE_nxv4bf16:
case CS_DATA_TYPE_nxv8bf16:
case CS_DATA_TYPE_nxv16bf16:
case CS_DATA_TYPE_nxv32bf16:
return CS_DATA_TYPE_bf16;
case CS_DATA_TYPE_v1f32:
case CS_DATA_TYPE_v2f32:
case CS_DATA_TYPE_v3f32:
case CS_DATA_TYPE_v4f32:
case CS_DATA_TYPE_v5f32:
case CS_DATA_TYPE_v6f32:
case CS_DATA_TYPE_v7f32:
case CS_DATA_TYPE_v8f32:
case CS_DATA_TYPE_v9f32:
case CS_DATA_TYPE_v10f32:
case CS_DATA_TYPE_v11f32:
case CS_DATA_TYPE_v12f32:
case CS_DATA_TYPE_v16f32:
case CS_DATA_TYPE_v32f32:
case CS_DATA_TYPE_v64f32:
case CS_DATA_TYPE_v128f32:
case CS_DATA_TYPE_v256f32:
case CS_DATA_TYPE_v512f32:
case CS_DATA_TYPE_v1024f32:
case CS_DATA_TYPE_v2048f32:
case CS_DATA_TYPE_nxv1f32:
case CS_DATA_TYPE_nxv2f32:
case CS_DATA_TYPE_nxv4f32:
case CS_DATA_TYPE_nxv8f32:
case CS_DATA_TYPE_nxv16f32:
return CS_DATA_TYPE_f32;
case CS_DATA_TYPE_v1f64:
case CS_DATA_TYPE_v2f64:
case CS_DATA_TYPE_v3f64:
case CS_DATA_TYPE_v4f64:
case CS_DATA_TYPE_v8f64:
case CS_DATA_TYPE_v16f64:
case CS_DATA_TYPE_v32f64:
case CS_DATA_TYPE_v64f64:
case CS_DATA_TYPE_v128f64:
case CS_DATA_TYPE_v256f64:
case CS_DATA_TYPE_nxv1f64:
case CS_DATA_TYPE_nxv2f64:
case CS_DATA_TYPE_nxv4f64:
case CS_DATA_TYPE_nxv8f64:
return CS_DATA_TYPE_f64;
}
}
/// Given a vector type, return the minimum number of elements it contains.
static inline unsigned getVectorMinNumElements(cs_data_type SimpleTy)
{
switch (SimpleTy) {
default:
assert(0 && "Not a vector MVT!");
case CS_DATA_TYPE_v2048i1:
case CS_DATA_TYPE_v2048i32:
case CS_DATA_TYPE_v2048f32:
return 2048;
case CS_DATA_TYPE_v1024i1:
case CS_DATA_TYPE_v1024i8:
case CS_DATA_TYPE_v1024i32:
case CS_DATA_TYPE_v1024f32:
return 1024;
case CS_DATA_TYPE_v512i1:
case CS_DATA_TYPE_v512i8:
case CS_DATA_TYPE_v512i16:
case CS_DATA_TYPE_v512i32:
case CS_DATA_TYPE_v512f16:
case CS_DATA_TYPE_v512f32:
return 512;
case CS_DATA_TYPE_v256i1:
case CS_DATA_TYPE_v256i2:
case CS_DATA_TYPE_v256i8:
case CS_DATA_TYPE_v256i16:
case CS_DATA_TYPE_v256f16:
case CS_DATA_TYPE_v256i32:
case CS_DATA_TYPE_v256i64:
case CS_DATA_TYPE_v256f32:
case CS_DATA_TYPE_v256f64:
return 256;
case CS_DATA_TYPE_v128i1:
case CS_DATA_TYPE_v128i2:
case CS_DATA_TYPE_v128i4:
case CS_DATA_TYPE_v128i8:
case CS_DATA_TYPE_v128i16:
case CS_DATA_TYPE_v128i32:
case CS_DATA_TYPE_v128i64:
case CS_DATA_TYPE_v128f16:
case CS_DATA_TYPE_v128bf16:
case CS_DATA_TYPE_v128f32:
case CS_DATA_TYPE_v128f64:
return 128;
case CS_DATA_TYPE_v64i1:
case CS_DATA_TYPE_v64i4:
case CS_DATA_TYPE_v64i8:
case CS_DATA_TYPE_v64i16:
case CS_DATA_TYPE_v64i32:
case CS_DATA_TYPE_v64i64:
case CS_DATA_TYPE_v64f16:
case CS_DATA_TYPE_v64bf16:
case CS_DATA_TYPE_v64f32:
case CS_DATA_TYPE_v64f64:
case CS_DATA_TYPE_nxv64i1:
case CS_DATA_TYPE_nxv64i8:
return 64;
case CS_DATA_TYPE_v32i1:
case CS_DATA_TYPE_v32i8:
case CS_DATA_TYPE_v32i16:
case CS_DATA_TYPE_v32i32:
case CS_DATA_TYPE_v32i64:
case CS_DATA_TYPE_v32f16:
case CS_DATA_TYPE_v32bf16:
case CS_DATA_TYPE_v32f32:
case CS_DATA_TYPE_v32f64:
case CS_DATA_TYPE_nxv32i1:
case CS_DATA_TYPE_nxv32i8:
case CS_DATA_TYPE_nxv32i16:
case CS_DATA_TYPE_nxv32i32:
case CS_DATA_TYPE_nxv32i64:
case CS_DATA_TYPE_nxv32f16:
case CS_DATA_TYPE_nxv32bf16:
return 32;
case CS_DATA_TYPE_v16i1:
case CS_DATA_TYPE_v16i8:
case CS_DATA_TYPE_v16i16:
case CS_DATA_TYPE_v16i32:
case CS_DATA_TYPE_v16i64:
case CS_DATA_TYPE_v16f16:
case CS_DATA_TYPE_v16bf16:
case CS_DATA_TYPE_v16f32:
case CS_DATA_TYPE_v16f64:
case CS_DATA_TYPE_nxv16i1:
case CS_DATA_TYPE_nxv16i8:
case CS_DATA_TYPE_nxv16i16:
case CS_DATA_TYPE_nxv16i32:
case CS_DATA_TYPE_nxv16i64:
case CS_DATA_TYPE_nxv16f16:
case CS_DATA_TYPE_nxv16bf16:
case CS_DATA_TYPE_nxv16f32:
return 16;
case CS_DATA_TYPE_v12i32:
case CS_DATA_TYPE_v12f32:
return 12;
case CS_DATA_TYPE_v11i32:
case CS_DATA_TYPE_v11f32:
return 11;
case CS_DATA_TYPE_v10i32:
case CS_DATA_TYPE_v10f32:
return 10;
case CS_DATA_TYPE_v9i32:
case CS_DATA_TYPE_v9f32:
return 9;
case CS_DATA_TYPE_v8i1:
case CS_DATA_TYPE_v8i8:
case CS_DATA_TYPE_v8i16:
case CS_DATA_TYPE_v8i32:
case CS_DATA_TYPE_v8i64:
case CS_DATA_TYPE_v8f16:
case CS_DATA_TYPE_v8bf16:
case CS_DATA_TYPE_v8f32:
case CS_DATA_TYPE_v8f64:
case CS_DATA_TYPE_nxv8i1:
case CS_DATA_TYPE_nxv8i8:
case CS_DATA_TYPE_nxv8i16:
case CS_DATA_TYPE_nxv8i32:
case CS_DATA_TYPE_nxv8i64:
case CS_DATA_TYPE_nxv8f16:
case CS_DATA_TYPE_nxv8bf16:
case CS_DATA_TYPE_nxv8f32:
case CS_DATA_TYPE_nxv8f64:
return 8;
case CS_DATA_TYPE_v7i32:
case CS_DATA_TYPE_v7f32:
return 7;
case CS_DATA_TYPE_v6i32:
case CS_DATA_TYPE_v6f32:
return 6;
case CS_DATA_TYPE_v5i32:
case CS_DATA_TYPE_v5f32:
return 5;
case CS_DATA_TYPE_v4i1:
case CS_DATA_TYPE_v4i8:
case CS_DATA_TYPE_v4i16:
case CS_DATA_TYPE_v4i32:
case CS_DATA_TYPE_v4i64:
case CS_DATA_TYPE_v4f16:
case CS_DATA_TYPE_v4bf16:
case CS_DATA_TYPE_v4f32:
case CS_DATA_TYPE_v4f64:
case CS_DATA_TYPE_nxv4i1:
case CS_DATA_TYPE_nxv4i8:
case CS_DATA_TYPE_nxv4i16:
case CS_DATA_TYPE_nxv4i32:
case CS_DATA_TYPE_nxv4i64:
case CS_DATA_TYPE_nxv4f16:
case CS_DATA_TYPE_nxv4bf16:
case CS_DATA_TYPE_nxv4f32:
case CS_DATA_TYPE_nxv4f64:
return 4;
case CS_DATA_TYPE_v3i16:
case CS_DATA_TYPE_v3i32:
case CS_DATA_TYPE_v3i64:
case CS_DATA_TYPE_v3f16:
case CS_DATA_TYPE_v3bf16:
case CS_DATA_TYPE_v3f32:
case CS_DATA_TYPE_v3f64:
return 3;
case CS_DATA_TYPE_v2i1:
case CS_DATA_TYPE_v2i8:
case CS_DATA_TYPE_v2i16:
case CS_DATA_TYPE_v2i32:
case CS_DATA_TYPE_v2i64:
case CS_DATA_TYPE_v2f16:
case CS_DATA_TYPE_v2bf16:
case CS_DATA_TYPE_v2f32:
case CS_DATA_TYPE_v2f64:
case CS_DATA_TYPE_nxv2i1:
case CS_DATA_TYPE_nxv2i8:
case CS_DATA_TYPE_nxv2i16:
case CS_DATA_TYPE_nxv2i32:
case CS_DATA_TYPE_nxv2i64:
case CS_DATA_TYPE_nxv2f16:
case CS_DATA_TYPE_nxv2bf16:
case CS_DATA_TYPE_nxv2f32:
case CS_DATA_TYPE_nxv2f64:
return 2;
case CS_DATA_TYPE_v1i1:
case CS_DATA_TYPE_v1i8:
case CS_DATA_TYPE_v1i16:
case CS_DATA_TYPE_v1i32:
case CS_DATA_TYPE_v1i64:
case CS_DATA_TYPE_v1i128:
case CS_DATA_TYPE_v1f16:
case CS_DATA_TYPE_v1f32:
case CS_DATA_TYPE_v1f64:
case CS_DATA_TYPE_nxv1i1:
case CS_DATA_TYPE_nxv1i8:
case CS_DATA_TYPE_nxv1i16:
case CS_DATA_TYPE_nxv1i32:
case CS_DATA_TYPE_nxv1i64:
case CS_DATA_TYPE_nxv1f16:
case CS_DATA_TYPE_nxv1bf16:
case CS_DATA_TYPE_nxv1f32:
case CS_DATA_TYPE_nxv1f64:
return 1;
}
}
#endif // CS_SIMPLE_TYPES_H