Reviewers: brecht Differential Revision: https://developer.blender.org/D6963
601 lines
17 KiB
C
601 lines
17 KiB
C
/*
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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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*
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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. See the
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* GNU General Public License for more details.
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*
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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 the Free Software Foundation,
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* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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* The Original Code is Copyright (C) 2007 Blender Foundation.
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* All rights reserved.
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*/
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/** \file
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* \ingroup nodes
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*/
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#include <string.h>
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#include <stddef.h>
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#include "DNA_node_types.h"
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#include "BLI_listbase.h"
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#include "BLI_string.h"
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#include "BLI_utildefines.h"
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#include "BLT_translation.h"
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#include "BKE_node.h"
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#include "RNA_types.h"
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#include "MEM_guardedalloc.h"
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#include "node_common.h"
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#include "node_util.h"
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#include "NOD_common.h"
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enum {
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REFINE_FORWARD = 1 << 0,
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REFINE_BACKWARD = 1 << 1,
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};
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/**** Group ****/
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bNodeSocket *node_group_find_input_socket(bNode *groupnode, const char *identifier)
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{
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bNodeSocket *sock;
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for (sock = groupnode->inputs.first; sock; sock = sock->next) {
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if (STREQ(sock->identifier, identifier)) {
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return sock;
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}
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}
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return NULL;
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}
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bNodeSocket *node_group_find_output_socket(bNode *groupnode, const char *identifier)
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{
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bNodeSocket *sock;
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for (sock = groupnode->outputs.first; sock; sock = sock->next) {
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if (STREQ(sock->identifier, identifier)) {
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return sock;
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}
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}
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return NULL;
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}
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/* groups display their internal tree name as label */
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void node_group_label(bNodeTree *UNUSED(ntree), bNode *node, char *label, int maxlen)
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{
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BLI_strncpy(label, (node->id) ? node->id->name + 2 : IFACE_("Missing Data-Block"), maxlen);
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}
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bool node_group_poll_instance(bNode *node, bNodeTree *nodetree)
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{
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if (node->typeinfo->poll(node->typeinfo, nodetree)) {
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bNodeTree *grouptree = (bNodeTree *)node->id;
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if (grouptree) {
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return nodeGroupPoll(nodetree, grouptree);
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}
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else {
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return true; /* without a linked node tree, group node is always ok */
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}
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}
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else {
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return false;
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}
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}
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int nodeGroupPoll(bNodeTree *nodetree, bNodeTree *grouptree)
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{
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bNode *node;
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int valid = 1;
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/* unspecified node group, generally allowed
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* (if anything, should be avoided on operator level)
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*/
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if (grouptree == NULL) {
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return 1;
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}
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if (nodetree == grouptree) {
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return 0;
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}
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for (node = grouptree->nodes.first; node; node = node->next) {
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if (node->typeinfo->poll_instance && !node->typeinfo->poll_instance(node, nodetree)) {
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valid = 0;
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break;
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}
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}
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return valid;
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}
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/* used for both group nodes and interface nodes */
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static bNodeSocket *group_verify_socket(
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bNodeTree *ntree, bNode *gnode, bNodeSocket *iosock, ListBase *verify_lb, int in_out)
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{
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bNodeSocket *sock;
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for (sock = verify_lb->first; sock; sock = sock->next) {
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if (STREQ(sock->identifier, iosock->identifier)) {
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break;
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}
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}
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if (sock) {
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strcpy(sock->name, iosock->name);
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if (iosock->typeinfo->interface_verify_socket) {
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iosock->typeinfo->interface_verify_socket(ntree, iosock, gnode, sock, "interface");
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}
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}
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else {
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sock = nodeAddSocket(ntree, gnode, in_out, iosock->idname, iosock->identifier, iosock->name);
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if (iosock->typeinfo->interface_init_socket) {
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iosock->typeinfo->interface_init_socket(ntree, iosock, gnode, sock, "interface");
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}
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}
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/* remove from list temporarily, to distinguish from orphaned sockets */
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BLI_remlink(verify_lb, sock);
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return sock;
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}
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/* used for both group nodes and interface nodes */
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static void group_verify_socket_list(
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bNodeTree *ntree, bNode *gnode, ListBase *iosock_lb, ListBase *verify_lb, int in_out)
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{
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bNodeSocket *iosock, *sock, *nextsock;
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/* step by step compare */
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iosock = iosock_lb->first;
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for (; iosock; iosock = iosock->next) {
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/* abusing new_sock pointer for verification here! only used inside this function */
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iosock->new_sock = group_verify_socket(ntree, gnode, iosock, verify_lb, in_out);
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}
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/* leftovers are removed */
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for (sock = verify_lb->first; sock; sock = nextsock) {
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nextsock = sock->next;
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nodeRemoveSocket(ntree, gnode, sock);
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}
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/* and we put back the verified sockets */
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iosock = iosock_lb->first;
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for (; iosock; iosock = iosock->next) {
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if (iosock->new_sock) {
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BLI_addtail(verify_lb, iosock->new_sock);
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iosock->new_sock = NULL;
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}
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}
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}
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/* make sure all group node in ntree, which use ngroup, are sync'd */
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void node_group_update(struct bNodeTree *ntree, struct bNode *node)
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{
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/* check inputs and outputs, and remove or insert them */
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if (node->id == NULL) {
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nodeRemoveAllSockets(ntree, node);
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}
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else {
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bNodeTree *ngroup = (bNodeTree *)node->id;
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group_verify_socket_list(ntree, node, &ngroup->inputs, &node->inputs, SOCK_IN);
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group_verify_socket_list(ntree, node, &ngroup->outputs, &node->outputs, SOCK_OUT);
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}
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}
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/**** FRAME ****/
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static void node_frame_init(bNodeTree *UNUSED(ntree), bNode *node)
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{
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NodeFrame *data = (NodeFrame *)MEM_callocN(sizeof(NodeFrame), "frame node storage");
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node->storage = data;
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data->flag |= NODE_FRAME_SHRINK;
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data->label_size = 20;
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}
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void register_node_type_frame(void)
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{
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/* frame type is used for all tree types, needs dynamic allocation */
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bNodeType *ntype = MEM_callocN(sizeof(bNodeType), "frame node type");
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ntype->free_self = (void (*)(bNodeType *))MEM_freeN;
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node_type_base(ntype, NODE_FRAME, "Frame", NODE_CLASS_LAYOUT, NODE_BACKGROUND);
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node_type_init(ntype, node_frame_init);
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node_type_storage(ntype, "NodeFrame", node_free_standard_storage, node_copy_standard_storage);
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node_type_size(ntype, 150, 100, 0);
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nodeRegisterType(ntype);
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}
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/* **************** REROUTE ******************** */
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/* simple, only a single input and output here */
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static void node_reroute_update_internal_links(bNodeTree *ntree, bNode *node)
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{
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bNodeLink *link;
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/* Security check! */
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if (!ntree) {
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return;
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}
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link = MEM_callocN(sizeof(bNodeLink), "internal node link");
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link->fromnode = node;
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link->fromsock = node->inputs.first;
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link->tonode = node;
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link->tosock = node->outputs.first;
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/* internal link is always valid */
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link->flag |= NODE_LINK_VALID;
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BLI_addtail(&node->internal_links, link);
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}
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static void node_reroute_init(bNodeTree *ntree, bNode *node)
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{
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/* Note: Cannot use socket templates for this, since it would reset the socket type
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* on each file read via the template verification procedure.
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*/
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nodeAddStaticSocket(ntree, node, SOCK_IN, SOCK_RGBA, PROP_NONE, "Input", "Input");
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nodeAddStaticSocket(ntree, node, SOCK_OUT, SOCK_RGBA, PROP_NONE, "Output", "Output");
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}
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void register_node_type_reroute(void)
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{
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/* frame type is used for all tree types, needs dynamic allocation */
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bNodeType *ntype = MEM_callocN(sizeof(bNodeType), "frame node type");
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ntype->free_self = (void (*)(bNodeType *))MEM_freeN;
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node_type_base(ntype, NODE_REROUTE, "Reroute", NODE_CLASS_LAYOUT, 0);
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node_type_init(ntype, node_reroute_init);
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node_type_internal_links(ntype, node_reroute_update_internal_links);
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nodeRegisterType(ntype);
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}
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static void node_reroute_inherit_type_recursive(bNodeTree *ntree, bNode *node, int flag)
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{
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bNodeSocket *input = node->inputs.first;
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bNodeSocket *output = node->outputs.first;
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bNodeLink *link;
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int type = SOCK_FLOAT;
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const char *type_idname = nodeStaticSocketType(type, PROP_NONE);
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/* XXX it would be a little bit more efficient to restrict actual updates
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* to reroute nodes connected to an updated node, but there's no reliable flag
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* to indicate updated nodes (node->update is not set on linking).
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*/
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node->done = 1;
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/* recursive update */
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for (link = ntree->links.first; link; link = link->next) {
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bNode *fromnode = link->fromnode;
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bNode *tonode = link->tonode;
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if (!tonode || !fromnode) {
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continue;
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}
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if (nodeLinkIsHidden(link)) {
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continue;
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}
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if (flag & REFINE_FORWARD) {
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if (tonode == node && fromnode->type == NODE_REROUTE && !fromnode->done) {
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node_reroute_inherit_type_recursive(ntree, fromnode, REFINE_FORWARD);
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}
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}
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if (flag & REFINE_BACKWARD) {
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if (fromnode == node && tonode->type == NODE_REROUTE && !tonode->done) {
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node_reroute_inherit_type_recursive(ntree, tonode, REFINE_BACKWARD);
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}
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}
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}
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/* determine socket type from unambiguous input/output connection if possible */
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if (input->limit == 1 && input->link) {
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type = input->link->fromsock->type;
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type_idname = nodeStaticSocketType(type, PROP_NONE);
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}
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else if (output->limit == 1 && output->link) {
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type = output->link->tosock->type;
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type_idname = nodeStaticSocketType(type, PROP_NONE);
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}
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if (input->type != type) {
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bNodeSocket *ninput = nodeAddSocket(ntree, node, SOCK_IN, type_idname, "input", "Input");
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for (link = ntree->links.first; link; link = link->next) {
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if (link->tosock == input) {
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link->tosock = ninput;
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ninput->link = link;
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}
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}
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nodeRemoveSocket(ntree, node, input);
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}
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if (output->type != type) {
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bNodeSocket *noutput = nodeAddSocket(ntree, node, SOCK_OUT, type_idname, "output", "Output");
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for (link = ntree->links.first; link; link = link->next) {
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if (link->fromsock == output) {
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link->fromsock = noutput;
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}
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}
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nodeRemoveSocket(ntree, node, output);
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}
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nodeUpdateInternalLinks(ntree, node);
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}
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/* Global update function for Reroute node types.
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* This depends on connected nodes, so must be done as a tree-wide update.
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*/
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void ntree_update_reroute_nodes(bNodeTree *ntree)
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{
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bNode *node;
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/* clear tags */
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for (node = ntree->nodes.first; node; node = node->next) {
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node->done = 0;
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}
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for (node = ntree->nodes.first; node; node = node->next) {
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if (node->type == NODE_REROUTE && !node->done) {
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node_reroute_inherit_type_recursive(ntree, node, REFINE_FORWARD | REFINE_BACKWARD);
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}
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}
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}
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static bool node_is_connected_to_output_recursive(bNodeTree *ntree, bNode *node)
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{
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bNodeLink *link;
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/* avoid redundant checks, and infinite loops in case of cyclic node links */
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if (node->done) {
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return false;
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}
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node->done = 1;
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/* main test, done before child loop so it catches output nodes themselves as well */
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if (node->typeinfo->nclass == NODE_CLASS_OUTPUT && node->flag & NODE_DO_OUTPUT) {
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return true;
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}
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/* test all connected nodes, first positive find is sufficient to return true */
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for (link = ntree->links.first; link; link = link->next) {
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if (link->fromnode == node) {
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if (node_is_connected_to_output_recursive(ntree, link->tonode)) {
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return true;
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}
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}
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}
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return false;
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}
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bool BKE_node_is_connected_to_output(bNodeTree *ntree, bNode *node)
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{
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bNode *tnode;
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/* clear flags */
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for (tnode = ntree->nodes.first; tnode; tnode = tnode->next) {
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tnode->done = 0;
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}
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return node_is_connected_to_output_recursive(ntree, node);
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}
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void BKE_node_tree_unlink_id(ID *id, struct bNodeTree *ntree)
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{
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bNode *node;
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for (node = ntree->nodes.first; node; node = node->next) {
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if (node->id == id) {
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node->id = NULL;
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}
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}
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}
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/**** GROUP_INPUT / GROUP_OUTPUT ****/
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static void node_group_input_init(bNodeTree *ntree, bNode *node)
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{
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node_group_input_update(ntree, node);
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}
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bNodeSocket *node_group_input_find_socket(bNode *node, const char *identifier)
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{
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bNodeSocket *sock;
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for (sock = node->outputs.first; sock; sock = sock->next) {
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if (STREQ(sock->identifier, identifier)) {
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return sock;
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}
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}
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return NULL;
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}
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void node_group_input_update(bNodeTree *ntree, bNode *node)
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{
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bNodeSocket *extsock = node->outputs.last;
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bNodeLink *link, *linknext, *exposelink;
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/* Adding a tree socket and verifying will remove the extension socket!
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* This list caches the existing links from the extension socket
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* so they can be recreated after verification.
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*/
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ListBase tmplinks;
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/* find links from the extension socket and store them */
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BLI_listbase_clear(&tmplinks);
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for (link = ntree->links.first; link; link = linknext) {
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linknext = link->next;
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if (nodeLinkIsHidden(link)) {
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continue;
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}
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if (link->fromsock == extsock) {
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bNodeLink *tlink = MEM_callocN(sizeof(bNodeLink), "temporary link");
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*tlink = *link;
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BLI_addtail(&tmplinks, tlink);
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nodeRemLink(ntree, link);
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}
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}
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/* find valid link to expose */
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exposelink = NULL;
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for (link = tmplinks.first; link; link = link->next) {
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/* XXX Multiple sockets can be connected to the extension socket at once,
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* in that case the arbitrary first link determines name and type.
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* This could be improved by choosing the "best" type among all links,
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* whatever that means.
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*/
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if (link->tosock->type != SOCK_CUSTOM) {
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exposelink = link;
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break;
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}
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}
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if (exposelink) {
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bNodeSocket *gsock, *newsock;
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gsock = ntreeAddSocketInterfaceFromSocket(ntree, exposelink->tonode, exposelink->tosock);
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node_group_input_update(ntree, node);
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newsock = node_group_input_find_socket(node, gsock->identifier);
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/* redirect links from the extension socket */
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for (link = tmplinks.first; link; link = link->next) {
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nodeAddLink(ntree, node, newsock, link->tonode, link->tosock);
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}
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}
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BLI_freelistN(&tmplinks);
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/* check inputs and outputs, and remove or insert them */
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{
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/* value_in_out inverted for interface nodes to get correct socket value_property */
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group_verify_socket_list(ntree, node, &ntree->inputs, &node->outputs, SOCK_OUT);
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/* add virtual extension socket */
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nodeAddSocket(ntree, node, SOCK_OUT, "NodeSocketVirtual", "__extend__", "");
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}
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}
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void register_node_type_group_input(void)
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{
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/* used for all tree types, needs dynamic allocation */
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bNodeType *ntype = MEM_callocN(sizeof(bNodeType), "node type");
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ntype->free_self = (void (*)(bNodeType *))MEM_freeN;
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node_type_base(ntype, NODE_GROUP_INPUT, "Group Input", NODE_CLASS_INTERFACE, 0);
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node_type_size(ntype, 140, 80, 400);
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node_type_init(ntype, node_group_input_init);
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node_type_update(ntype, node_group_input_update);
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nodeRegisterType(ntype);
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}
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static void node_group_output_init(bNodeTree *ntree, bNode *node)
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{
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node_group_output_update(ntree, node);
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}
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bNodeSocket *node_group_output_find_socket(bNode *node, const char *identifier)
|
|
{
|
|
bNodeSocket *sock;
|
|
for (sock = node->inputs.first; sock; sock = sock->next) {
|
|
if (STREQ(sock->identifier, identifier)) {
|
|
return sock;
|
|
}
|
|
}
|
|
return NULL;
|
|
}
|
|
|
|
void node_group_output_update(bNodeTree *ntree, bNode *node)
|
|
{
|
|
bNodeSocket *extsock = node->inputs.last;
|
|
bNodeLink *link, *linknext, *exposelink;
|
|
/* Adding a tree socket and verifying will remove the extension socket!
|
|
* This list caches the existing links to the extension socket
|
|
* so they can be recreated after verification.
|
|
*/
|
|
ListBase tmplinks;
|
|
|
|
/* find links to the extension socket and store them */
|
|
BLI_listbase_clear(&tmplinks);
|
|
for (link = ntree->links.first; link; link = linknext) {
|
|
linknext = link->next;
|
|
if (nodeLinkIsHidden(link)) {
|
|
continue;
|
|
}
|
|
|
|
if (link->tosock == extsock) {
|
|
bNodeLink *tlink = MEM_callocN(sizeof(bNodeLink), "temporary link");
|
|
*tlink = *link;
|
|
BLI_addtail(&tmplinks, tlink);
|
|
|
|
nodeRemLink(ntree, link);
|
|
}
|
|
}
|
|
|
|
/* find valid link to expose */
|
|
exposelink = NULL;
|
|
for (link = tmplinks.first; link; link = link->next) {
|
|
/* XXX Multiple sockets can be connected to the extension socket at once,
|
|
* in that case the arbitrary first link determines name and type.
|
|
* This could be improved by choosing the "best" type among all links,
|
|
* whatever that means.
|
|
*/
|
|
if (link->fromsock->type != SOCK_CUSTOM) {
|
|
exposelink = link;
|
|
break;
|
|
}
|
|
}
|
|
|
|
if (exposelink) {
|
|
bNodeSocket *gsock, *newsock;
|
|
|
|
/* XXX what if connecting virtual to virtual socket?? */
|
|
gsock = ntreeAddSocketInterfaceFromSocket(ntree, exposelink->fromnode, exposelink->fromsock);
|
|
|
|
node_group_output_update(ntree, node);
|
|
newsock = node_group_output_find_socket(node, gsock->identifier);
|
|
|
|
/* redirect links to the extension socket */
|
|
for (link = tmplinks.first; link; link = link->next) {
|
|
nodeAddLink(ntree, link->fromnode, link->fromsock, node, newsock);
|
|
}
|
|
}
|
|
|
|
BLI_freelistN(&tmplinks);
|
|
|
|
/* check inputs and outputs, and remove or insert them */
|
|
{
|
|
/* value_in_out inverted for interface nodes to get correct socket value_property */
|
|
group_verify_socket_list(ntree, node, &ntree->outputs, &node->inputs, SOCK_IN);
|
|
|
|
/* add virtual extension socket */
|
|
nodeAddSocket(ntree, node, SOCK_IN, "NodeSocketVirtual", "__extend__", "");
|
|
}
|
|
}
|
|
|
|
void register_node_type_group_output(void)
|
|
{
|
|
/* used for all tree types, needs dynamic allocation */
|
|
bNodeType *ntype = MEM_callocN(sizeof(bNodeType), "node type");
|
|
ntype->free_self = (void (*)(bNodeType *))MEM_freeN;
|
|
|
|
node_type_base(ntype, NODE_GROUP_OUTPUT, "Group Output", NODE_CLASS_INTERFACE, 0);
|
|
node_type_size(ntype, 140, 80, 400);
|
|
node_type_init(ntype, node_group_output_init);
|
|
node_type_update(ntype, node_group_output_update);
|
|
|
|
nodeRegisterType(ntype);
|
|
}
|