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nuclear@3
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1 #include <stdio.h>
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nuclear@3
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2 #include <stdlib.h>
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nuclear@3
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3 #include <string.h>
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nuclear@4
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4 #include <stdint.h>
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nuclear@3
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5 #include "vku.h"
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6
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nuclear@3
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7 static const char *get_device_name(VkPhysicalDeviceType type);
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nuclear@3
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8 static const char *get_mem_prop_flag_string(VkMemoryPropertyFlags flags);
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9 static const char *get_queue_flag_string(VkQueueFlagBits flags);
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nuclear@3
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10 static int ver_major(uint32_t ver);
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nuclear@3
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11 static int ver_minor(uint32_t ver);
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nuclear@3
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12 static int ver_patch(uint32_t ver);
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nuclear@3
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13 static const char *mem_size_str(long sz);
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14
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nuclear@3
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15 VkInstance vk;
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nuclear@3
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16 VkDevice vkdev;
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nuclear@3
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17 VkQueue vkq;
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18
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19 static VkPhysicalDevice *phys_devices;
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20 static int sel_dev, sel_qfamily;
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21
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22 static VkExtensionProperties *vkext, *vkdevext;
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23 static uint32_t vkext_count, vkdevext_count;
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24
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25
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26 int vku_have_extension(const char *name)
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27 {
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28 int i;
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29
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30 if(!vkext) {
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31 vkext_count = 0;
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32 vkEnumerateInstanceExtensionProperties(0, &vkext_count, 0);
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nuclear@4
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33 if(vkext_count) {
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34 if(!(vkext = malloc(vkext_count * sizeof *vkext))) {
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35 perror("failed to allocate instance extension list");
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nuclear@4
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36 return 0;
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nuclear@4
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37 }
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nuclear@4
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38 vkEnumerateInstanceExtensionProperties(0, &vkext_count, vkext);
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39
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nuclear@4
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40 printf("instance extensions:\n");
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41 for(i=0; i<(int)vkext_count; i++) {
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42 printf(" %s (ver: %u)\n", vkext[i].extensionName, (unsigned int)vkext[i].specVersion);
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nuclear@4
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43 }
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nuclear@4
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44 }
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nuclear@4
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45 }
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46
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47 for(i=0; i<(int)vkext_count; i++) {
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48 if(strcmp(vkext[i].extensionName, name) == 0) {
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nuclear@4
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49 return 1;
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nuclear@4
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50 }
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nuclear@4
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51 }
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nuclear@4
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52 return 0;
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nuclear@4
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53 }
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nuclear@4
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54
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nuclear@4
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55 int vku_have_device_extension(const char *name)
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nuclear@4
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56 {
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nuclear@4
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57 int i;
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58
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59 if(sel_dev < 0) return 0;
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60
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61 if(!vkdevext) {
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62 vkdevext_count = 0;
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63 vkEnumerateDeviceExtensionProperties(phys_devices[sel_dev], 0, &vkdevext_count, 0);
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64 if(vkdevext_count) {
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65 if(!(vkdevext = malloc(vkdevext_count * sizeof *vkdevext))) {
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66 perror("failed to allocate device extension list");
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nuclear@4
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67 return 0;
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nuclear@4
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68 }
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69 vkEnumerateDeviceExtensionProperties(phys_devices[sel_dev], 0, &vkdevext_count, vkdevext);
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70
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71 printf("selected device extensions:\n");
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72 for(i=0; i<(int)vkdevext_count; i++) {
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73 printf(" %s (ver: %u)\n", vkdevext[i].extensionName, (unsigned int)vkdevext[i].specVersion);
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nuclear@4
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74 }
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nuclear@4
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75 }
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nuclear@4
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76 }
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77
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78 for(i=0; i<(int)vkdevext_count; i++) {
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79 if(strcmp(vkdevext[i].extensionName, name) == 0) {
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80 return 1;
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81 }
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82 }
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nuclear@4
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83 return 0;
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84 }
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85
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nuclear@3
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86 int vku_create_dev(void)
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nuclear@3
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87 {
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88 int i, j;
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89 VkInstanceCreateInfo inst_info;
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90 VkDeviceCreateInfo dev_info;
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91 VkDeviceQueueCreateInfo queue_info;
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92 VkCommandPoolCreateInfo cmdpool_info;
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93 uint32_t num_devices;
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94 float qprio = 0.0f;
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95
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nuclear@4
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96 static const char *ext_names[] = {
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nuclear@4
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97 #ifdef VK_USE_PLATFORM_XLIB_KHR
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nuclear@4
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98 "VK_KHR_xlib_surface",
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nuclear@4
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99 #endif
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100 "VK_KHR_surface"
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101 };
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102
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103 sel_dev = -1;
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104 sel_qfamily = -1;
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105
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106 for(i=0; i<sizeof ext_names / sizeof *ext_names; i++) {
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107 if(!vku_have_extension(ext_names[i])) {
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108 fprintf(stderr, "required extension (%s) not found\n", ext_names[i]);
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109 return -1;
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nuclear@4
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110 }
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111 }
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112
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113 memset(&inst_info, 0, sizeof inst_info);
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114 inst_info.sType = VK_STRUCTURE_TYPE_INSTANCE_CREATE_INFO;
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115 inst_info.ppEnabledExtensionNames = ext_names;
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116 inst_info.enabledExtensionCount = sizeof ext_names / sizeof *ext_names;
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117
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118 if(vkCreateInstance(&inst_info, 0, &vk) != 0) {
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119 fprintf(stderr, "failed to create vulkan instance\n");
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120 return -1;
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121 }
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nuclear@3
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122 printf("created vulkan instance\n");
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123
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124 if(vkEnumeratePhysicalDevices(vk, &num_devices, 0) != 0) {
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nuclear@3
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125 fprintf(stderr, "failed to enumerate vulkan physical devices\n");
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nuclear@3
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126 return -1;
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nuclear@3
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127 }
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nuclear@4
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128 phys_devices = malloc(num_devices * sizeof *phys_devices);
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129 if(vkEnumeratePhysicalDevices(vk, &num_devices, phys_devices) != 0) {
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130 fprintf(stderr, "failed to enumerate vulkan physical devices\n");
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nuclear@3
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131 return -1;
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nuclear@3
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132 }
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nuclear@3
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133 printf("found %u physical device(s)\n", (unsigned int)num_devices);
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134
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135 for(i=0; i<(int)num_devices; i++) {
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136 VkPhysicalDeviceProperties dev_prop;
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nuclear@3
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137 VkPhysicalDeviceMemoryProperties mem_prop;
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nuclear@3
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138 VkQueueFamilyProperties *qprop;
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139 uint32_t qprop_count;
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140
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141 vkGetPhysicalDeviceProperties(phys_devices[i], &dev_prop);
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142
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143 printf("Device %d: %s\n", i, dev_prop.deviceName);
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144 printf(" type: %s\n", get_device_name(dev_prop.deviceType));
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145 printf(" API version: %d.%d.%d\n", ver_major(dev_prop.apiVersion), ver_minor(dev_prop.apiVersion),
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146 ver_patch(dev_prop.apiVersion));
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nuclear@3
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147 printf(" driver version: %d.%d.%d\n", ver_major(dev_prop.driverVersion), ver_minor(dev_prop.driverVersion),
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148 ver_patch(dev_prop.driverVersion));
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149 printf(" vendor id: %x device id: %x\n", dev_prop.vendorID, dev_prop.deviceID);
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150
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151
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152 vkGetPhysicalDeviceMemoryProperties(phys_devices[i], &mem_prop);
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153 printf(" %d memory heaps:\n", mem_prop.memoryHeapCount);
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154 for(j=0; j<mem_prop.memoryHeapCount; j++) {
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nuclear@3
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155 VkMemoryHeap heap = mem_prop.memoryHeaps[j];
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nuclear@3
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156 printf(" Heap %d - size: %s, flags: %s\n", j, mem_size_str(heap.size),
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157 heap.flags & VK_MEMORY_HEAP_DEVICE_LOCAL_BIT ? "device-local" : "-");
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nuclear@3
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158 }
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nuclear@3
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159 printf(" %d memory types:\n", mem_prop.memoryTypeCount);
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160 for(j=0; j<mem_prop.memoryTypeCount; j++) {
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nuclear@3
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161 VkMemoryType type = mem_prop.memoryTypes[j];
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nuclear@3
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162 printf(" Type %d - heap: %d, flags: %s\n", j, type.heapIndex,
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nuclear@3
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163 get_mem_prop_flag_string(type.propertyFlags));
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nuclear@3
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164 }
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165
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nuclear@4
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166 vkGetPhysicalDeviceQueueFamilyProperties(phys_devices[i], &qprop_count, 0);
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nuclear@3
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167 if(qprop_count <= 0) {
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nuclear@3
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168 continue;
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nuclear@3
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169 }
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170 qprop = malloc(qprop_count * sizeof *qprop);
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171 vkGetPhysicalDeviceQueueFamilyProperties(phys_devices[i], &qprop_count, qprop);
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172
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173 for(j=0; j<qprop_count; j++) {
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174 printf(" Queue family %d:\n", j);
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175 printf(" flags: %s\n", get_queue_flag_string(qprop[j].queueFlags));
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176 printf(" num queues: %u\n", qprop[j].queueCount);
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177
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178 if(qprop[j].queueFlags & VK_QUEUE_GRAPHICS_BIT) {
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179 sel_dev = i;
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180 sel_qfamily = j;
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181 }
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182 }
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183 free(qprop);
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184 }
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185
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186 if(sel_dev < 0 || sel_qfamily < 0) {
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187 fprintf(stderr, "failed to find any device with a graphics-capable command queue\n");
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188 vkDestroyDevice(vkdev, 0);
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nuclear@3
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189 return -1;
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nuclear@3
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190 }
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nuclear@3
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191
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nuclear@3
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192 /* create device & command queue */
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193 memset(&queue_info, 0, sizeof queue_info);
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194 queue_info.sType = VK_STRUCTURE_TYPE_DEVICE_QUEUE_CREATE_INFO;
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195 queue_info.queueFamilyIndex = sel_qfamily;
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196 queue_info.queueCount = 1;
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197 queue_info.pQueuePriorities = &qprio;
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198
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199 memset(&dev_info, 0, sizeof dev_info);
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200 dev_info.sType = VK_STRUCTURE_TYPE_DEVICE_CREATE_INFO;
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201 dev_info.queueCreateInfoCount = 1;
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202 dev_info.pQueueCreateInfos = &queue_info;
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203
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204 if(vkCreateDevice(phys_devices[sel_dev], &dev_info, 0, &vkdev) != 0) {
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205 fprintf(stderr, "failed to create device %d\n", sel_dev);
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206 return -1;
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207 }
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208 printf("created device %d\n", sel_dev);
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209
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210 vkGetDeviceQueue(vkdev, sel_qfamily, 0, &vkq);
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211
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nuclear@3
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212 /* create command buffer pool */
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213 memset(&cmdpool_info, 0, sizeof cmdpool_info);
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214 cmdpool_info.sType = VK_STRUCTURE_TYPE_COMMAND_POOL_CREATE_INFO;
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215 cmdpool_info.flags = VK_COMMAND_POOL_CREATE_RESET_COMMAND_BUFFER_BIT;
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216 cmdpool_info.queueFamilyIndex = sel_qfamily;
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217
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218 if(vkCreateCommandPool(vkdev, &cmdpool_info, 0, &vkcmdpool) != 0) {
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219 fprintf(stderr, "failed to get command quque!\n");
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nuclear@3
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220 return -1;
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nuclear@3
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221 }
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nuclear@3
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222
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nuclear@4
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223 if(!(vkcmdbuf = vku_alloc_cmdbuf(vkcmdpool, VK_COMMAND_BUFFER_LEVEL_PRIMARY))) {
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nuclear@4
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224 fprintf(stderr, "failed to create primary command buffer\n");
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nuclear@4
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225 return -1;
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nuclear@4
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226 }
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nuclear@4
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227
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nuclear@3
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228 return 0;
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nuclear@3
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229 }
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nuclear@3
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230
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nuclear@3
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231 void vku_cleanup(void)
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nuclear@3
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232 {
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nuclear@3
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233 if(vk) {
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234 vkDeviceWaitIdle(vkdev);
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nuclear@4
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235 vkDestroyCommandPool(vkdev, vkcmdpool, 0);
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236 vkDestroyDevice(vkdev, 0);
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237 vkDestroyInstance(vk, 0);
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238 vk = 0;
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nuclear@3
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239 }
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nuclear@4
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240
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nuclear@4
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241 free(phys_devices);
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nuclear@4
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242 phys_devices = 0;
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nuclear@3
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243 }
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nuclear@3
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244
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nuclear@4
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245 VkCommandBuffer vku_alloc_cmdbuf(VkCommandPool pool, VkCommandBufferLevel level)
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nuclear@3
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246 {
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nuclear@4
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247 VkCommandBuffer cmdbuf;
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nuclear@4
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248 VkCommandBufferAllocateInfo inf;
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249
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250 memset(&inf, 0, sizeof inf);
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251 inf.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_ALLOCATE_INFO;
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252 inf.commandPool = pool;
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253 inf.level = level;
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254 inf.commandBufferCount = 1;
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255
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nuclear@4
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256 if(vkAllocateCommandBuffers(vkdev, &inf, &cmdbuf) != 0) {
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nuclear@4
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257 return 0;
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nuclear@4
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258 }
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nuclear@4
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259 return cmdbuf;
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nuclear@4
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260 }
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nuclear@4
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261
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nuclear@4
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262 void vku_free_cmdbuf(VkCommandPool pool, VkCommandBuffer buf)
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nuclear@4
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263 {
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nuclear@4
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264 vkFreeCommandBuffers(vkdev, pool, 1, &buf);
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nuclear@4
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265 }
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nuclear@4
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266
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nuclear@4
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267 void vku_begin_cmdbuf(VkCommandBuffer buf, unsigned int flags)
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268 {
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nuclear@4
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269 VkCommandBufferBeginInfo inf;
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270
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271 memset(&inf, 0, sizeof inf);
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272 inf.sType = VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO;
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273 inf.flags = flags;
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274
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275 vkBeginCommandBuffer(buf, &inf);
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276 }
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277
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278
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nuclear@4
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279 void vku_end_cmdbuf(VkCommandBuffer buf)
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280 {
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nuclear@4
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281 vkEndCommandBuffer(buf);
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282 }
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283
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nuclear@4
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284 void vku_reset_cmdbuf(VkCommandBuffer buf)
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285 {
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nuclear@4
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286 vkResetCommandBuffer(buf, 0);
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nuclear@4
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287 }
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nuclear@4
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288
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nuclear@4
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289 void vku_submit_cmdbuf(VkQueue q, VkCommandBuffer buf, VkFence done_fence)
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nuclear@4
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290 {
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nuclear@4
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291 VkSubmitInfo info;
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292
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293 memset(&info, 0, sizeof info);
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294 info.sType = VK_STRUCTURE_TYPE_SUBMIT_INFO;
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295 info.commandBufferCount = 1;
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nuclear@4
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296 info.pCommandBuffers = &buf;
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297
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nuclear@4
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298 vkQueueSubmit(q, 1, &info, done_fence);
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nuclear@4
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299 }
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nuclear@4
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300
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nuclear@4
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301 struct vku_buffer *vku_create_buffer(int sz, unsigned int usage)
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nuclear@4
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302 {
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nuclear@4
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303 struct vku_buffer *buf;
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nuclear@3
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304 VkBufferCreateInfo binfo;
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nuclear@3
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305
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nuclear@3
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306 if(!(buf = malloc(sizeof *buf))) {
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nuclear@3
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307 perror("failed to allocate vk_buffer structure");
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nuclear@3
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308 return 0;
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nuclear@3
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309 }
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nuclear@3
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310
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nuclear@3
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311 memset(&binfo, 0, sizeof binfo);
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nuclear@3
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312 binfo.sType = VK_STRUCTURE_TYPE_BUFFER_CREATE_INFO;
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nuclear@3
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313 binfo.size = sz;
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nuclear@3
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314 binfo.usage = usage;
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nuclear@3
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315 binfo.sharingMode = VK_SHARING_MODE_EXCLUSIVE;
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nuclear@3
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316
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nuclear@3
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317 if(vkCreateBuffer(vkdev, &binfo, 0, &buf->buf) != 0) {
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nuclear@3
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318 fprintf(stderr, "failed to create %d byte buffer (usage: %x)\n", sz, usage);
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nuclear@3
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319 return 0;
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nuclear@3
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320 }
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nuclear@3
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321 // TODO back with memory
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nuclear@3
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322 return buf;
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nuclear@3
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323 }
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nuclear@3
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324
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nuclear@4
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325 void vku_destroy_buffer(struct vku_buffer *buf)
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nuclear@3
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326 {
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nuclear@3
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327 if(buf) {
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nuclear@3
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328 vkDestroyBuffer(vkdev, buf->buf, 0);
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nuclear@3
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329 free(buf);
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nuclear@3
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330 }
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nuclear@3
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331 }
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nuclear@3
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332
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nuclear@4
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333 void vku_cmd_copybuf(VkCommandBuffer cmdbuf, VkBuffer dest, int doffs,
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nuclear@4
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334 VkBuffer src, int soffs, int size)
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nuclear@4
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335 {
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nuclear@4
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336 VkBufferCopy copy;
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nuclear@4
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337 copy.size = size;
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nuclear@4
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338 copy.srcOffset = soffs;
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nuclear@4
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339 copy.dstOffset = doffs;
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nuclear@4
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340
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nuclear@4
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341 vkCmdCopyBuffer(cmdbuf, src, dest, 1, ©);
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nuclear@4
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342 }
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nuclear@4
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343
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nuclear@4
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344 #ifdef VK_USE_PLATFORM_XLIB_KHR
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nuclear@4
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345 int vku_xlib_usable_visual(Display *dpy, VisualID vid)
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nuclear@4
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346 {
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nuclear@4
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347 return vkGetPhysicalDeviceXlibPresentationSupportKHR(phys_devices[sel_dev],
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nuclear@4
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348 sel_qfamily, dpy, vid);
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nuclear@4
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349 }
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nuclear@4
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350 #endif /* VK_USE_PLATFORM_XLIB_KHR */
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nuclear@4
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351
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nuclear@3
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352 static const char *get_device_name(VkPhysicalDeviceType type)
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nuclear@3
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353 {
|
nuclear@3
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354 switch(type) {
|
nuclear@3
|
355 case VK_PHYSICAL_DEVICE_TYPE_INTEGRATED_GPU:
|
nuclear@3
|
356 return "integrated GPU";
|
nuclear@3
|
357 case VK_PHYSICAL_DEVICE_TYPE_DISCRETE_GPU:
|
nuclear@3
|
358 return "discrete GPU";
|
nuclear@3
|
359 case VK_PHYSICAL_DEVICE_TYPE_VIRTUAL_GPU:
|
nuclear@3
|
360 return "virtual GPU";
|
nuclear@3
|
361 case VK_PHYSICAL_DEVICE_TYPE_CPU:
|
nuclear@3
|
362 return "CPU";
|
nuclear@3
|
363 default:
|
nuclear@3
|
364 break;
|
nuclear@3
|
365 }
|
nuclear@3
|
366 return "unknown";
|
nuclear@3
|
367 }
|
nuclear@3
|
368
|
nuclear@3
|
369 static const char *get_mem_prop_flag_string(VkMemoryPropertyFlags flags)
|
nuclear@3
|
370 {
|
nuclear@3
|
371 static char str[128];
|
nuclear@3
|
372
|
nuclear@3
|
373 str[0] = 0;
|
nuclear@3
|
374 if(flags & VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT) {
|
nuclear@3
|
375 strcat(str, "device-local ");
|
nuclear@3
|
376 }
|
nuclear@3
|
377 if(flags & VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT) {
|
nuclear@3
|
378 strcat(str, "host-visible ");
|
nuclear@3
|
379 }
|
nuclear@3
|
380 if(flags & VK_MEMORY_PROPERTY_HOST_COHERENT_BIT) {
|
nuclear@3
|
381 strcat(str, "host-coherent ");
|
nuclear@3
|
382 }
|
nuclear@3
|
383 if(flags & VK_MEMORY_PROPERTY_HOST_CACHED_BIT) {
|
nuclear@3
|
384 strcat(str, "host-cached ");
|
nuclear@3
|
385 }
|
nuclear@3
|
386 if(flags & VK_MEMORY_PROPERTY_LAZILY_ALLOCATED_BIT) {
|
nuclear@3
|
387 strcat(str, "lazily-allocated ");
|
nuclear@3
|
388 }
|
nuclear@3
|
389
|
nuclear@3
|
390 if(!*str) {
|
nuclear@3
|
391 strcat(str, "-");
|
nuclear@3
|
392 }
|
nuclear@3
|
393 return str;
|
nuclear@3
|
394 }
|
nuclear@3
|
395
|
nuclear@3
|
396 static const char *get_queue_flag_string(VkQueueFlagBits flags)
|
nuclear@3
|
397 {
|
nuclear@3
|
398 static char str[128];
|
nuclear@3
|
399
|
nuclear@3
|
400 str[0] = 0;
|
nuclear@3
|
401 if(flags & VK_QUEUE_GRAPHICS_BIT) {
|
nuclear@3
|
402 strcat(str, "graphics ");
|
nuclear@3
|
403 }
|
nuclear@3
|
404 if(flags & VK_QUEUE_COMPUTE_BIT) {
|
nuclear@3
|
405 strcat(str, "compute ");
|
nuclear@3
|
406 }
|
nuclear@3
|
407 if(flags & VK_QUEUE_TRANSFER_BIT) {
|
nuclear@3
|
408 strcat(str, "transfer ");
|
nuclear@3
|
409 }
|
nuclear@3
|
410 if(flags & VK_QUEUE_SPARSE_BINDING_BIT) {
|
nuclear@3
|
411 strcat(str, "sparse-binding ");
|
nuclear@3
|
412 }
|
nuclear@3
|
413 if(!*str) {
|
nuclear@3
|
414 strcat(str, "-");
|
nuclear@3
|
415 }
|
nuclear@3
|
416 return str;
|
nuclear@3
|
417 }
|
nuclear@3
|
418
|
nuclear@3
|
419 static int ver_major(uint32_t ver)
|
nuclear@3
|
420 {
|
nuclear@3
|
421 return (ver >> 22) & 0x3ff;
|
nuclear@3
|
422 }
|
nuclear@3
|
423
|
nuclear@3
|
424 static int ver_minor(uint32_t ver)
|
nuclear@3
|
425 {
|
nuclear@3
|
426 return (ver >> 12) & 0x3ff;
|
nuclear@3
|
427 }
|
nuclear@3
|
428
|
nuclear@3
|
429 static int ver_patch(uint32_t ver)
|
nuclear@3
|
430 {
|
nuclear@3
|
431 return ver & 0xfff;
|
nuclear@3
|
432 }
|
nuclear@3
|
433
|
nuclear@3
|
434 static const char *mem_size_str(long sz)
|
nuclear@3
|
435 {
|
nuclear@3
|
436 static char str[64];
|
nuclear@3
|
437 static const char *unitstr[] = { "bytes", "KB", "MB", "GB", "TB", "PB", 0 };
|
nuclear@3
|
438 int uidx = 0;
|
nuclear@3
|
439 sz *= 10;
|
nuclear@3
|
440
|
nuclear@3
|
441 while(sz >= 10240 && unitstr[uidx + 1]) {
|
nuclear@3
|
442 sz /= 1024;
|
nuclear@3
|
443 ++uidx;
|
nuclear@3
|
444 }
|
nuclear@3
|
445 sprintf(str, "%ld.%ld %s", sz / 10, sz % 10, unitstr[uidx]);
|
nuclear@3
|
446 return str;
|
nuclear@3
|
447 }
|