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Kenneth Benzie (Benie)83e5a292015-05-22 18:26:19 +01001// Copyright (c) 2015 The Khronos Group Inc.
2//
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15// KHRONOS STANDARDS. THE UNMODIFIED, NORMATIVE VERSIONS OF KHRONOS
16// SPECIFICATIONS AND HEADER INFORMATION ARE LOCATED AT
17// https://www.khronos.org/registry/
18//
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26
27#ifndef _LIBSPIRV_UTIL_OPCODE_H_
28#define _LIBSPIRV_UTIL_OPCODE_H_
29
30#include <libspirv/libspirv.h>
31
32// Functions
33
34/// @brief Get the name of the SPIR-V generator
35///
36/// @param[in] generator Khronos SPIR-V generator ID
37///
38/// @return string name
39const char *spvGeneratorStr(uint32_t generator);
40
41/// @brief Combine word count and Opcode enumerant in single word
42///
43/// @param[in] wordCount Opcode consumes
44/// @param[in] opcode enumerant value
45///
46/// @return Opcode word
47uint32_t spvOpcodeMake(uint16_t wordCount, Op opcode);
48
49/// @brief Split the binary opcode into its constituent parts
50///
51/// @param[in] word binary opcode to split
52/// @param[out] wordCount the returned number of words (optional)
53/// @param[out] opcode the returned opcode enumerant (optional)
54void spvOpcodeSplit(const uint32_t word, uint16_t *wordCount, Op *opcode);
55
56/// @brief Find the named Opcode in the table
57///
58/// @param[in] table to lookup
59/// @param[in] name name of Opcode to find
60/// @param[out] pEntry returned Opcode table entry
61///
62/// @return result code
63spv_result_t spvOpcodeTableNameLookup(const spv_opcode_table table,
64 const char *name, spv_opcode_desc *pEntry);
65
66/// @brief Find the opcode ID in the table
67///
68/// @param[out] table to lookup
69/// @param[in] opcode value of Opcode to fine
70/// @param[out] pEntry return Opcode table entry
71///
72/// @return result code
73spv_result_t spvOpcodeTableValueLookup(const spv_opcode_table table,
74 const Op opcode, spv_opcode_desc *pEntry);
75
76/// @brief Determine if the Opcode has variable word count
77///
78/// This function does not check if @a entry is valid.
79///
80/// @param[in] entry the Opcode entry
81///
82/// @return zero if false, non-zero otherwise
83int32_t spvOpcodeIsVariable(spv_opcode_desc entry);
84
Lei Zhangdfc50082015-08-21 11:50:55 -040085/// @brief Get the argument index for the <result-id> operand, if any.
86///
87/// @param[in] entry the Opcode entry
88///
89/// @return index for the <result-id> operand, or
90/// SPV_OPERAND_INVALID_RESULT_ID_INDEX if the given opcode
91/// doesn't have a <result-id> operand.
92//
93/// For example, 0 means <result-id> is the first argument, i.e. right after
94/// the wordcount/opcode word.
95int16_t spvOpcodeResultIdIndex(spv_opcode_desc entry);
96
Kenneth Benzie (Benie)83e5a292015-05-22 18:26:19 +010097/// @brief Determine if the Opcode has capaspvity requirements
98///
99/// This function does not check if @a entry is valid.
100///
101/// @param[in] entry the Opcode entry
102///
103/// @return zero if false, non-zero otherwise
104int32_t spvOpcodeRequiresCapabilities(spv_opcode_desc entry);
105
106/// @brief Copy an instructions word and fix the endianness
107///
108/// @param[in] words the input instruction stream
109/// @param[in] opcode the instructions Opcode
110/// @param[in] wordCount the number of words to copy
111/// @param[in] endian the endianness of the stream
112/// @param[out] pInst the returned instruction
113void spvInstructionCopy(const uint32_t *words, const Op opcode,
114 const uint16_t wordCount, const spv_endianness_t endian,
115 spv_instruction_t *pInst);
116
117/// @brief Get the string of an OpCode
118///
119/// @param[in] opcode the opcode
120///
121/// @return the opcode string
122const char *spvOpcodeString(const Op opcode);
123
124/// @brief Determine if the Opcode is a type
125///
126/// @param[in] opcode the opcode
127///
128/// @return zero if false, non-zero otherwise
129int32_t spvOpcodeIsType(const Op opcode);
130
131/// @brief Determine if the OpCode is a scalar type
132///
133/// @param[in] opcode the opcode
134///
135/// @return zero if false, non-zero otherwise
136int32_t spvOpcodeIsScalarType(const Op opcode);
137
138/// @brief Determine if the Opcode is a constant
139///
140/// @param[in] opcode the opcode
141///
142/// @return zero if false, non-zero otherwise
143int32_t spvOpcodeIsConstant(const Op opcode);
144
145/// @brief Determine if the Opcode is a composite type
146///
147/// @param[in] opcode the opcode
148///
149/// @return zero if false, non-zero otherwise
150int32_t spvOpcodeIsComposite(const Op opcode);
151
152/// @brief Deep comparison of type declaration instructions
153///
154/// @param[in] pTypeInst0 type definition zero
155/// @param[in] pTypeInst1 type definition one
156///
157/// @return zero if false, non-zero otherwise
158int32_t spvOpcodeAreTypesEqual(const spv_instruction_t *pTypeInst0,
159 const spv_instruction_t *pTypeInst1);
160
161/// @brief Determine if the Opcode results in a pointer
162///
163/// @param[in] opcode the opcode
164///
165/// @return zero if false, non-zero otherwise
166int32_t spvOpcodeIsPointer(const Op opcode);
167
168/// @brief Determine if the Opcode results in a instantation of a non-void type
169///
170/// @param[in] opcode the opcode
171///
172/// @return zero if false, non-zero otherwise
173int32_t spvOpcodeIsObject(const Op opcode);
174
175/// @brief Determine if the scalar type Opcode is nullable
176///
177/// @param[in] opcode the opcode
178///
179/// @return zero if false, non-zero otherwise
180int32_t spvOpcodeIsBasicTypeNullable(Op opcode);
181
182/// @brief Determine if instruction is in a basic block
183///
184/// @param[in] pFirstInst first instruction in the stream
185/// @param[in] pInst current instruction
186///
187/// @return zero if false, non-zero otherwise
188int32_t spvInstructionIsInBasicBlock(const spv_instruction_t *pFirstInst,
189 const spv_instruction_t *pInst);
190
191/// @brief Determine if the Opcode contains a value
192///
193/// @param[in] opcode the opcode
194///
195/// @return zero if false, non-zero otherwise
196int32_t spvOpcodeIsValue(Op opcode);
197
198#endif