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Adam Sawickiae5c4662019-01-02 10:23:35 +01001//
Adam Sawicki50882502020-02-07 16:51:31 +01002// Copyright (c) 2017-2020 Advanced Micro Devices, Inc. All rights reserved.
Adam Sawickiae5c4662019-01-02 10:23:35 +01003//
4// Permission is hereby granted, free of charge, to any person obtaining a copy
5// of this software and associated documentation files (the "Software"), to deal
6// in the Software without restriction, including without limitation the rights
7// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
8// copies of the Software, and to permit persons to whom the Software is
9// furnished to do so, subject to the following conditions:
10//
11// The above copyright notice and this permission notice shall be included in
12// all copies or substantial portions of the Software.
13//
14// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
17// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
18// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
19// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
20// THE SOFTWARE.
21//
22
Adam Sawickif1a793c2018-03-13 15:42:22 +010023#ifndef COMMON_H_
24#define COMMON_H_
25
Adam Sawickib8333fb2018-03-13 16:15:53 +010026#include "VmaUsage.h"
27
Adam Sawickif1a793c2018-03-13 15:42:22 +010028#ifdef _WIN32
29
Adam Sawickib8333fb2018-03-13 16:15:53 +010030#include <iostream>
Adam Sawickif1a793c2018-03-13 15:42:22 +010031#include <fstream>
32#include <vector>
Adam Sawickif1a793c2018-03-13 15:42:22 +010033#include <memory>
34#include <algorithm>
35#include <numeric>
36#include <array>
37#include <type_traits>
38#include <utility>
Adam Sawickib8333fb2018-03-13 16:15:53 +010039#include <chrono>
40#include <string>
Adam Sawickib8d34d52018-10-03 17:41:20 +020041#include <exception>
Adam Sawickif1a793c2018-03-13 15:42:22 +010042
Adam Sawickif1a793c2018-03-13 15:42:22 +010043#include <cassert>
44#include <cstdlib>
45#include <cstdio>
Adam Sawickib8333fb2018-03-13 16:15:53 +010046#include <cstdarg>
47
48typedef std::chrono::high_resolution_clock::time_point time_point;
49typedef std::chrono::high_resolution_clock::duration duration;
Adam Sawickif1a793c2018-03-13 15:42:22 +010050
Adam Sawickib8d34d52018-10-03 17:41:20 +020051#ifdef _DEBUG
52 #define TEST(expr) do { \
53 if(!(expr)) { \
54 assert(0 && #expr); \
55 } \
56 } while(0)
57#else
58 #define TEST(expr) do { \
59 if(!(expr)) { \
60 throw std::runtime_error("TEST FAILED: " #expr); \
61 } \
62 } while(0)
63#endif
64
65#define ERR_GUARD_VULKAN(expr) TEST((expr) >= 0)
Adam Sawickif1a793c2018-03-13 15:42:22 +010066
Adam Sawicki50882502020-02-07 16:51:31 +010067extern VkInstance g_hVulkanInstance;
Adam Sawickib8333fb2018-03-13 16:15:53 +010068extern VkPhysicalDevice g_hPhysicalDevice;
69extern VkDevice g_hDevice;
Adam Sawicki4ac8ff82019-11-18 14:47:33 +010070extern VkInstance g_hVulkanInstance;
Adam Sawickib8333fb2018-03-13 16:15:53 +010071extern VmaAllocator g_hAllocator;
72extern bool g_MemoryAliasingWarningEnabled;
Adam Sawicki50882502020-02-07 16:51:31 +010073extern bool VK_AMD_device_coherent_memory_enabled;
74
75void SetAllocatorCreateInfo(VmaAllocatorCreateInfo& outInfo);
Adam Sawickib8333fb2018-03-13 16:15:53 +010076
77inline float ToFloatSeconds(duration d)
78{
79 return std::chrono::duration_cast<std::chrono::duration<float>>(d).count();
80}
81
82template <typename T>
83inline T ceil_div(T x, T y)
84{
Adam Sawicki82c3f332018-06-11 15:27:33 +020085 return (x+y-1) / y;
Adam Sawickib8333fb2018-03-13 16:15:53 +010086}
Adam Sawickiff0f7b82018-10-18 14:44:05 +020087template <typename T>
88inline T round_div(T x, T y)
89{
90 return (x+y/(T)2) / y;
91}
Adam Sawickib8333fb2018-03-13 16:15:53 +010092
93template <typename T>
94static inline T align_up(T val, T align)
95{
Adam Sawicki82c3f332018-06-11 15:27:33 +020096 return (val + align - 1) / align * align;
Adam Sawickib8333fb2018-03-13 16:15:53 +010097}
98
Adam Sawicki82c3f332018-06-11 15:27:33 +020099static const float PI = 3.14159265358979323846264338327950288419716939937510582f;
100
101struct vec3
102{
103 float x, y, z;
104
105 vec3() { }
106 vec3(float x, float y, float z) : x(x), y(y), z(z) { }
107
108 float& operator[](uint32_t index) { return *(&x + index); }
109 const float& operator[](uint32_t index) const { return *(&x + index); }
110
111 vec3 operator+(const vec3& rhs) const { return vec3(x + rhs.x, y + rhs.y, z + rhs.z); }
112 vec3 operator-(const vec3& rhs) const { return vec3(x - rhs.x, y - rhs.y, z - rhs.z); }
113 vec3 operator*(float s) const { return vec3(x * s, y * s, z * s); }
114
115 vec3 Normalized() const
116 {
117 return (*this) * (1.f / sqrt(x * x + y * y + z * z));
118 }
119};
120
121inline float Dot(const vec3& lhs, const vec3& rhs)
122{
123 return lhs.x * rhs.x + lhs.y * rhs.y + lhs.z * rhs.z;
124}
125inline vec3 Cross(const vec3& lhs, const vec3& rhs)
126{
127 return vec3(
128 lhs.y * rhs.z - lhs.z * rhs.y,
129 lhs.z * rhs.x - lhs.x * rhs.z,
130 lhs.x * rhs.y - lhs.y * rhs.x);
131}
132
133struct vec4
134{
135 float x, y, z, w;
136
137 vec4() { }
138 vec4(float x, float y, float z, float w) : x(x), y(y), z(z), w(w) { }
139 vec4(const vec3& v, float w) : x(v.x), y(v.y), z(v.z), w(w) { }
140
141 float& operator[](uint32_t index) { return *(&x + index); }
142 const float& operator[](uint32_t index) const { return *(&x + index); }
143};
144
145struct mat4
146{
147 union
148 {
149 struct
150 {
151 float _11, _12, _13, _14;
152 float _21, _22, _23, _24;
153 float _31, _32, _33, _34;
154 float _41, _42, _43, _44;
155 };
156 float m[4][4]; // [row][column]
157 };
158
159 mat4() { }
160
161 mat4(
162 float _11, float _12, float _13, float _14,
163 float _21, float _22, float _23, float _24,
164 float _31, float _32, float _33, float _34,
165 float _41, float _42, float _43, float _44) :
166 _11(_11), _12(_12), _13(_13), _14(_14),
167 _21(_21), _22(_22), _23(_23), _24(_24),
168 _31(_31), _32(_32), _33(_33), _34(_34),
169 _41(_41), _42(_42), _43(_43), _44(_44)
170 {
171 }
172
173 mat4(
174 const vec4& row1,
175 const vec4& row2,
176 const vec4& row3,
177 const vec4& row4) :
178 _11(row1.x), _12(row1.y), _13(row1.z), _14(row1.w),
179 _21(row2.x), _22(row2.y), _23(row2.z), _24(row2.w),
180 _31(row3.x), _32(row3.y), _33(row3.z), _34(row3.w),
181 _41(row4.x), _42(row4.y), _43(row4.z), _44(row4.w)
182 {
183 }
184
185 mat4 operator*(const mat4 &rhs) const
186 {
187 return mat4(
188 _11 * rhs._11 + _12 * rhs._21 + _13 * rhs._31 + _14 * rhs._41,
189 _11 * rhs._12 + _12 * rhs._22 + _13 * rhs._32 + _14 * rhs._42,
190 _11 * rhs._13 + _12 * rhs._23 + _13 * rhs._33 + _14 * rhs._43,
191 _11 * rhs._14 + _12 * rhs._24 + _13 * rhs._34 + _14 * rhs._44,
192
193 _21 * rhs._11 + _22 * rhs._21 + _23 * rhs._31 + _24 * rhs._41,
194 _21 * rhs._12 + _22 * rhs._22 + _23 * rhs._32 + _24 * rhs._42,
195 _21 * rhs._13 + _22 * rhs._23 + _23 * rhs._33 + _24 * rhs._43,
196 _21 * rhs._14 + _22 * rhs._24 + _23 * rhs._34 + _24 * rhs._44,
197
198 _31 * rhs._11 + _32 * rhs._21 + _33 * rhs._31 + _34 * rhs._41,
199 _31 * rhs._12 + _32 * rhs._22 + _33 * rhs._32 + _34 * rhs._42,
200 _31 * rhs._13 + _32 * rhs._23 + _33 * rhs._33 + _34 * rhs._43,
201 _31 * rhs._14 + _32 * rhs._24 + _33 * rhs._34 + _34 * rhs._44,
202
203 _41 * rhs._11 + _42 * rhs._21 + _43 * rhs._31 + _44 * rhs._41,
204 _41 * rhs._12 + _42 * rhs._22 + _43 * rhs._32 + _44 * rhs._42,
205 _41 * rhs._13 + _42 * rhs._23 + _43 * rhs._33 + _44 * rhs._43,
206 _41 * rhs._14 + _42 * rhs._24 + _43 * rhs._34 + _44 * rhs._44);
207 }
208
209 static mat4 RotationY(float angle)
210 {
211 const float s = sin(angle), c = cos(angle);
212 return mat4(
213 c, 0.f, -s, 0.f,
214 0.f, 1.f, 0.f, 0.f,
215 s, 0.f, c, 0.f,
216 0.f, 0.f, 0.f, 1.f);
217 }
218
219 static mat4 Perspective(float fovY, float aspectRatio, float zNear, float zFar)
220 {
221 float yScale = 1.0f / tan(fovY * 0.5f);
222 float xScale = yScale / aspectRatio;
223 return mat4(
224 xScale, 0.0f, 0.0f, 0.0f,
225 0.0f, yScale, 0.0f, 0.0f,
226 0.0f, 0.0f, zFar / (zFar - zNear), 1.0f,
227 0.0f, 0.0f, -zNear * zFar / (zFar - zNear), 0.0f);
228 }
229
230 static mat4 LookAt(vec3 at, vec3 eye, vec3 up)
231 {
232 vec3 zAxis = (at - eye).Normalized();
233 vec3 xAxis = Cross(up, zAxis).Normalized();
234 vec3 yAxis = Cross(zAxis, xAxis);
235 return mat4(
236 xAxis.x, yAxis.x, zAxis.x, 0.0f,
237 xAxis.y, yAxis.y, zAxis.y, 0.0f,
238 xAxis.z, yAxis.z, zAxis.z, 0.0f,
239 -Dot(xAxis, eye), -Dot(yAxis, eye), -Dot(zAxis, eye), 1.0f);
240 }
241};
242
Adam Sawickib8333fb2018-03-13 16:15:53 +0100243class RandomNumberGenerator
244{
245public:
246 RandomNumberGenerator() : m_Value{GetTickCount()} {}
247 RandomNumberGenerator(uint32_t seed) : m_Value{seed} { }
248 void Seed(uint32_t seed) { m_Value = seed; }
249 uint32_t Generate() { return GenerateFast() ^ (GenerateFast() >> 7); }
250
251private:
252 uint32_t m_Value;
253 uint32_t GenerateFast() { return m_Value = (m_Value * 196314165 + 907633515); }
254};
255
Adam Sawicki0a607132018-08-24 11:18:41 +0200256// Wrapper for RandomNumberGenerator compatible with STL "UniformRandomNumberGenerator" idea.
257struct MyUniformRandomNumberGenerator
258{
259 typedef uint32_t result_type;
260 MyUniformRandomNumberGenerator(RandomNumberGenerator& gen) : m_Gen(gen) { }
261 static uint32_t min() { return 0; }
262 static uint32_t max() { return UINT32_MAX; }
263 uint32_t operator()() { return m_Gen.Generate(); }
264
265private:
266 RandomNumberGenerator& m_Gen;
267};
268
Adam Sawickib8333fb2018-03-13 16:15:53 +0100269void ReadFile(std::vector<char>& out, const char* fileName);
270
271enum class CONSOLE_COLOR
272{
273 INFO,
274 NORMAL,
275 WARNING,
276 ERROR_,
277 COUNT
278};
279
280void SetConsoleColor(CONSOLE_COLOR color);
281
282void PrintMessage(CONSOLE_COLOR color, const char* msg);
283void PrintMessage(CONSOLE_COLOR color, const wchar_t* msg);
284
285inline void Print(const char* msg) { PrintMessage(CONSOLE_COLOR::NORMAL, msg); }
286inline void Print(const wchar_t* msg) { PrintMessage(CONSOLE_COLOR::NORMAL, msg); }
287inline void PrintWarning(const char* msg) { PrintMessage(CONSOLE_COLOR::WARNING, msg); }
288inline void PrintWarning(const wchar_t* msg) { PrintMessage(CONSOLE_COLOR::WARNING, msg); }
289inline void PrintError(const char* msg) { PrintMessage(CONSOLE_COLOR::ERROR_, msg); }
290inline void PrintError(const wchar_t* msg) { PrintMessage(CONSOLE_COLOR::ERROR_, msg); }
291
292void PrintMessageV(CONSOLE_COLOR color, const char* format, va_list argList);
293void PrintMessageV(CONSOLE_COLOR color, const wchar_t* format, va_list argList);
294void PrintMessageF(CONSOLE_COLOR color, const char* format, ...);
295void PrintMessageF(CONSOLE_COLOR color, const wchar_t* format, ...);
296void PrintWarningF(const char* format, ...);
297void PrintWarningF(const wchar_t* format, ...);
298void PrintErrorF(const char* format, ...);
299void PrintErrorF(const wchar_t* format, ...);
300
301void SaveFile(const wchar_t* filePath, const void* data, size_t dataSize);
302
Adam Sawickif1a793c2018-03-13 15:42:22 +0100303#endif // #ifdef _WIN32
304
305#endif