Files
test2/source/blender/nodes/texture/node_texture_tree.cc
Sergey Sharybin a12a8a71bb Remove "All Rights Reserved" from Blender Foundation copyright code
The goal is to solve confusion of the "All rights reserved" for licensing
code under an open-source license.

The phrase "All rights reserved" comes from a historical convention that
required this phrase for the copyright protection to apply. This convention
is no longer relevant.

However, even though the phrase has no meaning in establishing the copyright
it has not lost meaning in terms of licensing.

This change makes it so code under the Blender Foundation copyright does
not use "all rights reserved". This is also how the GPL license itself
states how to apply it to the source code:

    <one line to give the program's name and a brief idea of what it does.>
    Copyright (C) <year>  <name of author>

    This program is free software ...

This change does not change copyright notice in cases when the copyright
is dual (BF and an author), or just an author of the code. It also does
mot change copyright which is inherited from NaN Holding BV as it needs
some further investigation about what is the proper way to handle it.
2023-03-30 10:51:59 +02:00

362 lines
9.5 KiB
C++

/* SPDX-License-Identifier: GPL-2.0-or-later
* Copyright 2007 Blender Foundation */
/** \file
* \ingroup nodes
*/
#include <cstring>
#include "DNA_node_types.h"
#include "DNA_space_types.h"
#include "DNA_texture_types.h"
#include "BLI_listbase.h"
#include "BLI_threads.h"
#include "BLI_utildefines.h"
#include "BLT_translation.h"
#include "BKE_context.h"
#include "BKE_layer.h"
#include "BKE_linestyle.h"
#include "BKE_node.h"
#include "BKE_paint.h"
#include "NOD_texture.h"
#include "node_common.h"
#include "node_exec.h"
#include "node_texture_util.hh"
#include "node_util.h"
#include "DEG_depsgraph.h"
#include "RNA_access.h"
#include "RNA_prototypes.h"
#include "RE_texture.h"
#include "UI_resources.h"
static void texture_get_from_context(
const bContext *C, bNodeTreeType * /*treetype*/, bNodeTree **r_ntree, ID **r_id, ID **r_from)
{
SpaceNode *snode = CTX_wm_space_node(C);
Scene *scene = CTX_data_scene(C);
ViewLayer *view_layer = CTX_data_view_layer(C);
BKE_view_layer_synced_ensure(scene, view_layer);
Object *ob = BKE_view_layer_active_object_get(view_layer);
Tex *tx = nullptr;
if (snode->texfrom == SNODE_TEX_BRUSH) {
struct Brush *brush = nullptr;
if (ob && (ob->mode & OB_MODE_SCULPT)) {
brush = BKE_paint_brush(&scene->toolsettings->sculpt->paint);
}
else {
brush = BKE_paint_brush(&scene->toolsettings->imapaint.paint);
}
if (brush) {
*r_from = (ID *)brush;
tx = give_current_brush_texture(brush);
if (tx) {
*r_id = &tx->id;
*r_ntree = tx->nodetree;
}
}
}
else if (snode->texfrom == SNODE_TEX_LINESTYLE) {
FreestyleLineStyle *linestyle = BKE_linestyle_active_from_view_layer(view_layer);
if (linestyle) {
*r_from = (ID *)linestyle;
tx = give_current_linestyle_texture(linestyle);
if (tx) {
*r_id = &tx->id;
*r_ntree = tx->nodetree;
}
}
}
}
static void foreach_nodeclass(Scene * /*scene*/, void *calldata, bNodeClassCallback func)
{
func(calldata, NODE_CLASS_INPUT, N_("Input"));
func(calldata, NODE_CLASS_OUTPUT, N_("Output"));
func(calldata, NODE_CLASS_OP_COLOR, N_("Color"));
func(calldata, NODE_CLASS_PATTERN, N_("Patterns"));
func(calldata, NODE_CLASS_TEXTURE, N_("Textures"));
func(calldata, NODE_CLASS_CONVERTER, N_("Converter"));
func(calldata, NODE_CLASS_DISTORT, N_("Distort"));
func(calldata, NODE_CLASS_GROUP, N_("Group"));
func(calldata, NODE_CLASS_INTERFACE, N_("Interface"));
func(calldata, NODE_CLASS_LAYOUT, N_("Layout"));
}
/* XXX muting disabled in previews because of threading issues with the main execution
* it works here, but disabled for consistency
*/
#if 1
static void localize(bNodeTree *localtree, bNodeTree * /*ntree*/)
{
bNode *node, *node_next;
/* replace muted nodes and reroute nodes by internal links */
for (node = static_cast<bNode *>(localtree->nodes.first); node; node = node_next) {
node_next = node->next;
if (node->flag & NODE_MUTED || node->type == NODE_REROUTE) {
nodeInternalRelink(localtree, node);
ntreeFreeLocalNode(localtree, node);
}
}
}
#else
static void localize(bNodeTree * /*localtree*/, bNodeTree * /*ntree*/) {}
#endif
static void update(bNodeTree *ntree)
{
ntree_update_reroute_nodes(ntree);
}
static bool texture_node_tree_socket_type_valid(bNodeTreeType * /*ntreetype*/,
bNodeSocketType *socket_type)
{
return nodeIsStaticSocketType(socket_type) &&
ELEM(socket_type->type, SOCK_FLOAT, SOCK_VECTOR, SOCK_RGBA);
}
bNodeTreeType *ntreeType_Texture;
void register_node_tree_type_tex()
{
bNodeTreeType *tt = ntreeType_Texture = MEM_cnew<bNodeTreeType>("texture node tree type");
tt->type = NTREE_TEXTURE;
strcpy(tt->idname, "TextureNodeTree");
strcpy(tt->group_idname, "TextureNodeGroup");
strcpy(tt->ui_name, N_("Texture Node Editor"));
tt->ui_icon = ICON_NODE_TEXTURE; /* Defined in `drawnode.c`. */
strcpy(tt->ui_description, N_("Texture nodes"));
tt->foreach_nodeclass = foreach_nodeclass;
tt->update = update;
tt->localize = localize;
tt->get_from_context = texture_get_from_context;
tt->valid_socket_type = texture_node_tree_socket_type_valid;
tt->rna_ext.srna = &RNA_TextureNodeTree;
ntreeTypeAdd(tt);
}
/**** Material/Texture trees ****/
bNodeThreadStack *ntreeGetThreadStack(bNodeTreeExec *exec, int thread)
{
ListBase *lb = &exec->threadstack[thread];
bNodeThreadStack *nts;
for (nts = (bNodeThreadStack *)lb->first; nts; nts = nts->next) {
if (!nts->used) {
nts->used = true;
break;
}
}
if (!nts) {
nts = MEM_cnew<bNodeThreadStack>("bNodeThreadStack");
nts->stack = (bNodeStack *)MEM_dupallocN(exec->stack);
nts->used = true;
BLI_addtail(lb, nts);
}
return nts;
}
void ntreeReleaseThreadStack(bNodeThreadStack *nts)
{
nts->used = false;
}
bool ntreeExecThreadNodes(bNodeTreeExec *exec, bNodeThreadStack *nts, void *callerdata, int thread)
{
bNodeStack *nsin[MAX_SOCKET] = {nullptr}; /* arbitrary... watch this */
bNodeStack *nsout[MAX_SOCKET] = {nullptr}; /* arbitrary... watch this */
bNodeExec *nodeexec;
bNode *node;
int n;
/* nodes are presorted, so exec is in order of list */
for (n = 0, nodeexec = exec->nodeexec; n < exec->totnodes; n++, nodeexec++) {
node = nodeexec->node;
if (node->runtime->need_exec) {
node_get_stack(node, nts->stack, nsin, nsout);
/* Handle muted nodes...
* If the mute func is not set, assume the node should never be muted,
* and hence execute it!
*/
if (node->typeinfo->exec_fn && !(node->flag & NODE_MUTED)) {
node->typeinfo->exec_fn(callerdata, thread, node, &nodeexec->data, nsin, nsout);
}
}
}
/* signal to that all went OK, for render */
return true;
}
bNodeTreeExec *ntreeTexBeginExecTree_internal(bNodeExecContext *context,
bNodeTree *ntree,
bNodeInstanceKey parent_key)
{
bNodeTreeExec *exec;
bNode *node;
/* common base initialization */
exec = ntree_exec_begin(context, ntree, parent_key);
/* allocate the thread stack listbase array */
exec->threadstack = MEM_cnew_array<ListBase>(BLENDER_MAX_THREADS, "thread stack array");
for (node = static_cast<bNode *>(exec->nodetree->nodes.first); node; node = node->next) {
node->runtime->need_exec = 1;
}
return exec;
}
bNodeTreeExec *ntreeTexBeginExecTree(bNodeTree *ntree)
{
bNodeExecContext context;
bNodeTreeExec *exec;
/* XXX hack: prevent exec data from being generated twice.
* this should be handled by the renderer!
*/
if (ntree->runtime->execdata) {
return ntree->runtime->execdata;
}
context.previews = ntree->previews;
exec = ntreeTexBeginExecTree_internal(&context, ntree, NODE_INSTANCE_KEY_BASE);
/* XXX this should not be necessary, but is still used for compositor/shading/texture nodes,
* which only store the ntree pointer. Should be fixed at some point!
*/
ntree->runtime->execdata = exec;
return exec;
}
/* free texture delegates */
static void tex_free_delegates(bNodeTreeExec *exec)
{
bNodeThreadStack *nts;
bNodeStack *ns;
int th, a;
for (th = 0; th < BLENDER_MAX_THREADS; th++) {
for (nts = static_cast<bNodeThreadStack *>(exec->threadstack[th].first); nts;
nts = nts->next) {
for (ns = nts->stack, a = 0; a < exec->stacksize; a++, ns++) {
if (ns->data && !ns->is_copy) {
MEM_freeN(ns->data);
}
}
}
}
}
void ntreeTexEndExecTree_internal(bNodeTreeExec *exec)
{
bNodeThreadStack *nts;
int a;
if (exec->threadstack) {
tex_free_delegates(exec);
for (a = 0; a < BLENDER_MAX_THREADS; a++) {
for (nts = static_cast<bNodeThreadStack *>(exec->threadstack[a].first); nts;
nts = nts->next) {
if (nts->stack) {
MEM_freeN(nts->stack);
}
}
BLI_freelistN(&exec->threadstack[a]);
}
MEM_freeN(exec->threadstack);
exec->threadstack = nullptr;
}
ntree_exec_end(exec);
}
void ntreeTexEndExecTree(bNodeTreeExec *exec)
{
if (exec) {
/* exec may get freed, so assign ntree */
bNodeTree *ntree = exec->nodetree;
ntreeTexEndExecTree_internal(exec);
/* XXX: clear node-tree back-pointer to exec data,
* same problem as noted in #ntreeBeginExecTree. */
ntree->runtime->execdata = nullptr;
}
}
int ntreeTexExecTree(bNodeTree *ntree,
TexResult *target,
const float co[3],
float dxt[3],
float dyt[3],
int osatex,
const short thread,
const Tex * /*tex*/,
short which_output,
int cfra,
int preview,
MTex *mtex)
{
TexCallData data;
int retval = TEX_INT;
bNodeThreadStack *nts = nullptr;
bNodeTreeExec *exec = ntree->runtime->execdata;
data.co = co;
data.dxt = dxt;
data.dyt = dyt;
data.osatex = osatex;
data.target = target;
data.do_preview = preview;
data.do_manage = true;
data.thread = thread;
data.which_output = which_output;
data.cfra = cfra;
data.mtex = mtex;
/* ensure execdata is only initialized once */
if (!exec) {
BLI_thread_lock(LOCK_NODES);
if (!ntree->runtime->execdata) {
ntreeTexBeginExecTree(ntree);
}
BLI_thread_unlock(LOCK_NODES);
exec = ntree->runtime->execdata;
}
nts = ntreeGetThreadStack(exec, thread);
ntreeExecThreadNodes(exec, nts, &data, thread);
ntreeReleaseThreadStack(nts);
retval |= TEX_RGB;
return retval;
}