mirror of
https://git.code.sf.net/p/quake/quakeforge
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ecd5e1de9f
Non-graphics render passes don't normally specify render pass info, but still want frames and command buffers.
382 lines
11 KiB
C
382 lines
11 KiB
C
/*
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renderpass.c
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Vulkan render pass and frame buffer functions
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Copyright (C) 2020 Bill Currie <bill@taniwha.org>
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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See the GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to:
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Free Software Foundation, Inc.
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59 Temple Place - Suite 330
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Boston, MA 02111-1307, USA
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*/
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#ifdef HAVE_CONFIG_H
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# include "config.h"
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#endif
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#include "QF/cvar.h"
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#include "QF/hash.h"
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#include "QF/plist.h"
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#include "QF/va.h"
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#include "QF/Vulkan/command.h"
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#include "QF/Vulkan/debug.h"
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#include "QF/Vulkan/device.h"
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#include "QF/Vulkan/image.h"
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#include "QF/Vulkan/qf_renderpass.h"
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#include "vid_vulkan.h"
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#include "vkparse.h"
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static plitem_t *
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get_rp_item (vulkan_ctx_t *ctx, qfv_renderpass_t *rp, const char *name)
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{
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rp->renderpassDef = Vulkan_GetConfig (ctx, rp->name);
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plitem_t *item = rp->renderpassDef;
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if (!item) {
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Sys_Printf ("error loading %s\n", rp->name);
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} else if ((item = PL_ObjectForKey (item, name))) {
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Sys_MaskPrintf (SYS_vulkan_parse, "Found %s def\n", name);
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}
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return item;
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}
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static size_t
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get_image_size (VkImage image, qfv_device_t *device)
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{
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qfv_devfuncs_t *dfunc = device->funcs;
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size_t size;
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size_t align;
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VkMemoryRequirements requirements;
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dfunc->vkGetImageMemoryRequirements (device->dev, image, &requirements);
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size = requirements.size;
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align = requirements.alignment - 1;
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size = (size + align) & ~(align);
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return size;
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}
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static void
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destroy_framebuffers (vulkan_ctx_t *ctx, qfv_renderpass_t *rp)
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{
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qfv_device_t *device = ctx->device;
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qfv_devfuncs_t *dfunc = device->funcs;
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for (size_t i = 0; i < rp->framebuffers->size; i++) {
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dfunc->vkDestroyFramebuffer (device->dev, rp->framebuffers->a[i], 0);
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}
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free (rp->framebuffers);
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rp->framebuffers = 0;
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}
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void
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QFV_RenderPass_CreateAttachments (qfv_renderpass_t *renderpass)
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{
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vulkan_ctx_t *ctx = renderpass->vulkan_ctx;
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qfv_device_t *device = ctx->device;
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qfv_devfuncs_t *dfunc = device->funcs;
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__auto_type rp = renderpass;
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if (rp->output.image) {
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// if output has an image, then the view is owned by the renderpass
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dfunc->vkDestroyImageView (device->dev, rp->output.view, 0);
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dfunc->vkDestroyImage (device->dev, rp->output.image, 0);
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free (rp->output.view_list);
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rp->output.view_list = 0;
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rp->output.view = 0;
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rp->output.image = 0;
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}
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if (rp->attachment_views) {
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for (size_t i = 0; i < rp->attachment_views->size; i++) {
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dfunc->vkDestroyImageView (device->dev,
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rp->attachment_views->a[i], 0);
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}
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free (rp->attachment_views);
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rp->attachment_views = 0;
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}
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if (rp->attachment_images) {
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for (size_t i = 0; i < rp->attachment_images->size; i++) {
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dfunc->vkDestroyImage (device->dev, rp->attachment_images->a[i], 0);
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}
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free (rp->attachment_images);
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rp->attachment_images = 0;
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}
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plitem_t *output_def = get_rp_item (ctx, rp, "output");
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plitem_t *images_def = get_rp_item (ctx, rp, "images");
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plitem_t *views_def = get_rp_item (ctx, rp, "imageViews");
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plitem_t *rp_def = rp->renderpassDef;
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size_t memSize = 0;
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VkImage ref_image = 0;
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if (output_def) {
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// QFV_ParseOutput clears the structure, but extent and frames need to
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// be preserved
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qfv_output_t output = rp->output;
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QFV_ParseOutput (ctx, &output, output_def, rp_def);
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rp->output.format = output.format;
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rp->output.finalLayout = output.finalLayout;
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plitem_t *image = PL_ObjectForKey (output_def, "image");
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Vulkan_Script_SetOutput (ctx, &rp->output);
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rp->output.image = QFV_ParseImage (ctx, image, rp_def);
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memSize += get_image_size (rp->output.image, device);
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ref_image = rp->output.image;
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}
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if (images_def) {
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__auto_type images = QFV_ParseImageSet (ctx, images_def, rp_def);
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rp->attachment_images = images;
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ref_image = images->a[0];
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for (size_t i = 0; i < images->size; i++) {
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memSize += get_image_size (images->a[i], device);
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}
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}
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VkDeviceMemory mem = rp->attachmentMemory;
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if (memSize > rp->attachmentMemory_size) {
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if (rp->attachmentMemory) {
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dfunc->vkFreeMemory (device->dev, rp->attachmentMemory, 0);
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}
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rp->attachmentMemory_size = memSize;
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mem = QFV_AllocImageMemory (device, ref_image,
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VK_MEMORY_PROPERTY_DEVICE_LOCAL_BIT,
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memSize, 0);
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rp->attachmentMemory = mem;
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QFV_duSetObjectName (device, VK_OBJECT_TYPE_DEVICE_MEMORY,
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mem, "memory:framebuffers");
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}
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size_t offset = 0;
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if (rp->output.image) {
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QFV_BindImageMemory (device, rp->output.image, mem, offset);
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offset += get_image_size (rp->output.image, device);
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plitem_t *view = PL_ObjectForKey (output_def, "view");
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Vulkan_Script_SetOutput (ctx, &rp->output);
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rp->output.view = QFV_ParseImageView (ctx, view, rp_def);
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rp->output.view_list = malloc (rp->output.frames
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* sizeof (VkImageView));
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QFV_duSetObjectName (device, VK_OBJECT_TYPE_IMAGE,
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rp->output.image,
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va (ctx->va_ctx, "image:%s:output", rp->name));
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QFV_duSetObjectName (ctx->device, VK_OBJECT_TYPE_IMAGE_VIEW,
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rp->output.view,
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va (ctx->va_ctx, "iview:%s:output", rp->name));
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for (uint32_t i = 0; i < rp->output.frames; i++) {
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rp->output.view_list[i] = rp->output.view;
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}
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}
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if (rp->attachment_images) {
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__auto_type images = rp->attachment_images;
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for (size_t i = 0; i < images->size; i++) {
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QFV_BindImageMemory (device, images->a[i], mem, offset);
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offset += get_image_size (images->a[i], device);
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}
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}
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if (views_def) {
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__auto_type views = QFV_ParseImageViewSet (ctx, views_def, rp_def);
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rp->attachment_views = views;
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}
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}
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void
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QFV_RenderPass_CreateRenderPass (qfv_renderpass_t *renderpass)
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{
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vulkan_ctx_t *ctx = renderpass->vulkan_ctx;
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__auto_type rp = renderpass;
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plitem_t *rp_cfg = get_rp_item (ctx, rp, "renderpass");
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if (rp_cfg) {
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hashtab_t *tab = ctx->script_context->renderpasses;
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const char *path;
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path = va (ctx->va_ctx, "$"QFV_PROPERTIES".%s", rp->name);
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__auto_type renderpass = (VkRenderPass) QFV_GetHandle (tab, path);
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if (renderpass) {
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rp->renderpass = renderpass;
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} else {
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Vulkan_Script_SetOutput (ctx, &rp->output);
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rp->renderpass = QFV_ParseRenderPass (ctx, rp_cfg,
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rp->renderpassDef);
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QFV_AddHandle (tab, path, (uint64_t) rp->renderpass);
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QFV_duSetObjectName (ctx->device, VK_OBJECT_TYPE_RENDER_PASS,
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rp->renderpass, va (ctx->va_ctx,
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"renderpass:%s",
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rp->name));
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}
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rp->subpassCount = PL_A_NumObjects (PL_ObjectForKey (rp_cfg,
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"subpasses"));
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}
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plitem_t *item = get_rp_item (ctx, rp, "clearValues");
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rp->clearValues = QFV_ParseClearValues (ctx, item, rp->renderpassDef);
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}
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void
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QFV_RenderPass_CreateFramebuffer (qfv_renderpass_t *renderpass)
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{
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vulkan_ctx_t *ctx = renderpass->vulkan_ctx;
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__auto_type rp = renderpass;
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if (renderpass->framebuffers) {
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destroy_framebuffers (ctx, renderpass);
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}
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plitem_t *fb_def = get_rp_item (ctx, rp, "framebuffer");
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plitem_t *rp_def = rp->renderpassDef;
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if (fb_def) {
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rp->framebuffers = QFV_AllocFrameBuffers (rp->output.frames, malloc);
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for (size_t i = 0; i < rp->framebuffers->size; i++) {
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rp->output.view = rp->output.view_list[i];
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Vulkan_Script_SetOutput (ctx, &rp->output);
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rp->framebuffers->a[i] = QFV_ParseFramebuffer (ctx, fb_def, rp_def);
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}
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}
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int width = rp->output.extent.width;
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int height = rp->output.extent.height;
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rp->viewport = (VkViewport) { 0, 0, width, height, 0, 1 };
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rp->scissor = (VkRect2D) { {0, 0}, {width, height} };
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rp->renderArea = (VkRect2D) { {0, 0}, {width, height} };
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}
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static void
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init_renderframe (vulkan_ctx_t *ctx, qfv_renderpass_t *rp,
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qfv_renderframe_t *rFrame)
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{
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rFrame->vulkan_ctx = ctx;
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rFrame->renderpass = rp;
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rFrame->subpassContents = VK_SUBPASS_CONTENTS_SECONDARY_COMMAND_BUFFERS;
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rFrame->framebuffer = 0;
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rFrame->subpassCount = rp->subpassCount;
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rFrame->subpassInfo = 0;
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if (rp->subpass_info) {
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rFrame->subpassInfo = rp->subpass_info->a;
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}
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rFrame->subpassCmdSets = malloc (rp->subpassCount
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* sizeof (qfv_cmdbufferset_t));
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for (size_t j = 0; j < rp->subpassCount; j++) {
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DARRAY_INIT (&rFrame->subpassCmdSets[j], 4);
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}
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}
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static void
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destroy_attachments (vulkan_ctx_t *ctx, qfv_renderpass_t *rp)
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{
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qfv_device_t *device = ctx->device;
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qfv_devfuncs_t *dfunc = device->funcs;
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if (rp->output.image) {
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// if output has an image, then the view is owned by the renderpass
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dfunc->vkDestroyImageView (device->dev, rp->output.view, 0);
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dfunc->vkDestroyImage (device->dev, rp->output.image, 0);
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free (rp->output.view_list);
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rp->output.view_list = 0;
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rp->output.view = 0;
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rp->output.image = 0;
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}
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if (rp->attachment_views) {
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for (size_t i = 0; i < rp->attachment_views->size; i++) {
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dfunc->vkDestroyImageView (device->dev,
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rp->attachment_views->a[i], 0);
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}
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}
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if (rp->attachment_images) {
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for (size_t i = 0; i < rp->attachment_images->size; i++) {
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dfunc->vkDestroyImage (device->dev, rp->attachment_images->a[i], 0);
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}
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}
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dfunc->vkFreeMemory (device->dev, rp->attachmentMemory, 0);
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free (rp->attachment_images);
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free (rp->attachment_views);
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}
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static void
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destroy_renderframes (vulkan_ctx_t *ctx, qfv_renderpass_t *rp)
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{
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for (size_t i = 0; i < rp->frames.size; i++) {
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__auto_type rFrame = &rp->frames.a[i];
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for (int j = 0; j < rFrame->subpassCount; j++) {
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DARRAY_CLEAR (&rFrame->subpassCmdSets[j]);
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}
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free (rFrame->subpassCmdSets);
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}
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}
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qfv_renderpass_t *
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QFV_RenderPass_New (vulkan_ctx_t *ctx, const char *name, qfv_draw_t function)
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{
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qfv_renderpass_t *rp = calloc (1, sizeof (qfv_renderpass_t));
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rp->vulkan_ctx = ctx;
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rp->name = name;
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rp->draw = function;
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rp->renderpassDef = Vulkan_GetConfig (ctx, rp->name);
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plitem_t *rp_info = get_rp_item (ctx, rp, "info");
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if (rp_info) {
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plitem_t *subpass_info = PL_ObjectForKey (rp_info, "subpass_info");
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if (subpass_info) {
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rp->subpass_info = QFV_ParseSubpasses (ctx, subpass_info,
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rp->renderpassDef);
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if (rp->subpass_info->size < rp->subpassCount) {
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Sys_Printf ("warning:%s:%d: insufficient entries in "
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"subpass_info\n", rp->name, PL_Line (subpass_info));
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}
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if (!rp->subpassCount) {
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rp->subpassCount = rp->subpass_info->size;
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}
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}
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plitem_t *color = PL_ObjectForKey (rp_info, "color");
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if (color) {
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QFV_ParseRGBA (ctx, (float *)&rp->color, color, rp->renderpassDef);
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}
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}
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if (!rp->subpassCount) {
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rp->subpassCount = 1;
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}
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DARRAY_INIT (&rp->frames, 4);
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DARRAY_RESIZE (&rp->frames, ctx->frames.size);
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for (size_t i = 0; i < rp->frames.size; i++) {
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init_renderframe (ctx, rp, &rp->frames.a[i]);
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}
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return rp;
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}
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void
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QFV_RenderPass_Delete (qfv_renderpass_t *renderpass)
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{
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vulkan_ctx_t *ctx = renderpass->vulkan_ctx;
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qfv_device_t *device = ctx->device;
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qfv_devfuncs_t *dfunc = device->funcs;
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PL_Free (renderpass->renderpassDef);
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destroy_attachments (ctx, renderpass);
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dfunc->vkDestroyRenderPass (device->dev, renderpass->renderpass, 0);
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destroy_renderframes (ctx, renderpass);
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if (renderpass->framebuffers) {
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destroy_framebuffers (ctx, renderpass);
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}
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DARRAY_CLEAR (&renderpass->frames);
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free (renderpass->clearValues);
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free (renderpass);
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}
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