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mlt/src/modules/jackrack/jack_rack.c

360 lines
11 KiB

/*
* JACK Rack
*
* Original:
* Copyright (C) Robert Ham 2002, 2003 (node@users.sourceforge.net)
*
* Modification for MLT:
* Copyright (C) 2004 Ushodaya Enterprises Limited
* Author: Dan Dennedy <dan@dennedy.org>
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
*/
#include <stdio.h>
#include <stdlib.h>
#include <strings.h>
#include <string.h>
#include <ctype.h>
#include <ladspa.h>
#include <libxml/tree.h>
#include "jack_rack.h"
#include "lock_free_fifo.h"
#include "plugin_settings.h"
#ifndef _
#define _(x) x
#endif
#define _x (xmlChar*)
#define _s (char*)
jack_rack_t *
jack_rack_new (const char * client_name, unsigned long channels)
{
jack_rack_t *rack;
rack = g_malloc (sizeof (jack_rack_t));
rack->saved_plugins = NULL;
rack->channels = channels;
rack->procinfo = process_info_new (client_name, channels, FALSE, FALSE);
if (!rack->procinfo) {
g_free (rack);
return NULL;
}
rack->plugin_mgr = plugin_mgr_new ();
plugin_mgr_set_plugins (rack->plugin_mgr, channels);
return rack;
}
void
jack_rack_destroy (jack_rack_t * jack_rack)
{
process_quit (jack_rack->procinfo);
plugin_mgr_destroy (jack_rack->plugin_mgr);
process_info_destroy (jack_rack->procinfo);
g_slist_free (jack_rack->saved_plugins);
g_free (jack_rack);
}
plugin_t *
jack_rack_instantiate_plugin (jack_rack_t * jack_rack, plugin_desc_t * desc)
{
plugin_t * plugin;
/* check whether or not the plugin is RT capable and confirm with the user if it isn't */
if (!LADSPA_IS_HARD_RT_CAPABLE(desc->properties)) {
fprintf (stderr, "Plugin not RT capable. The plugin '%s' does not describe itself as being capable of real-time operation. You may experience drop outs or jack may even kick us out if you use it.\n",
desc->name);
}
/* create the plugin */
plugin = plugin_new (desc, jack_rack);
if (!plugin) {
fprintf (stderr, "Error loading file plugin '%s' from file '%s'\n",
desc->name, desc->object_file);
}
return plugin;
}
void
jack_rack_add_saved_plugin (jack_rack_t * jack_rack, saved_plugin_t * saved_plugin)
{
plugin_t * plugin = jack_rack_instantiate_plugin (jack_rack, saved_plugin->settings->desc);
if (!plugin)
return;
jack_rack->saved_plugins = g_slist_append (jack_rack->saved_plugins, saved_plugin);
process_add_plugin (jack_rack->procinfo, plugin);
jack_rack_add_plugin (jack_rack, plugin);
}
void
jack_rack_add_plugin (jack_rack_t * jack_rack, plugin_t * plugin)
{
saved_plugin_t * saved_plugin = NULL;
GSList * list;
unsigned long control, channel;
LADSPA_Data value;
guint copy;
/* see if there's any saved settings that match the plugin id */
for (list = jack_rack->saved_plugins; list; list = g_slist_next (list))
{
saved_plugin = list->data;
if (saved_plugin->settings->desc->id == plugin->desc->id)
{
/* process the settings! */
jack_rack->saved_plugins = g_slist_remove (jack_rack->saved_plugins, saved_plugin);
break;
}
saved_plugin = NULL;
}
/* initialize plugin parameters */
plugin->enabled = settings_get_enabled (saved_plugin->settings);
plugin->wet_dry_enabled = settings_get_wet_dry_enabled (saved_plugin->settings);
for (control = 0; control < saved_plugin->settings->desc->control_port_count; control++)
for (copy = 0; copy < plugin->copies; copy++)
{
value = settings_get_control_value (saved_plugin->settings, copy, control);
plugin->holders[copy].control_memory[control] = value;
//printf("setting control value %s (%d) = %f\n", saved_plugin->settings->desc->port_names[control], copy, value);
// lff_write (plugin->holders[copy].ui_control_fifos + control, &value);
}
if (plugin->wet_dry_enabled)
for (channel = 0; channel < jack_rack->channels; channel++)
{
value = settings_get_wet_dry_value (saved_plugin->settings, channel);
plugin->wet_dry_values[channel] = value;
//printf("setting wet/dry value %d = %f\n", channel, value);
// lff_write (plugin->wet_dry_fifos + channel, &value);
}
}
static void
saved_rack_parse_plugin (jack_rack_t * jack_rack, saved_rack_t * saved_rack, saved_plugin_t * saved_plugin,
const char * filename, xmlNodePtr plugin)
{
plugin_desc_t * desc;
settings_t * settings = NULL;
xmlNodePtr node;
xmlNodePtr sub_node;
xmlChar *content;
unsigned long num;
unsigned long control = 0;
for (node = plugin->children; node; node = node->next)
{
if (xmlStrcmp (node->name, _x("id")) == 0)
{
content = xmlNodeGetContent (node);
num = strtoul (_s(content), NULL, 10);
xmlFree (content);
desc = plugin_mgr_get_any_desc (jack_rack->plugin_mgr, num);
if (!desc)
{
fprintf (stderr, _("The file '%s' contains an unknown plugin with ID '%ld'; skipping\n"), filename, num);
return;
}
settings = settings_new (desc, saved_rack->channels, saved_rack->sample_rate);
}
else if (xmlStrcmp (node->name, _x("enabled")) == 0)
{
content = xmlNodeGetContent (node);
settings_set_enabled (settings, xmlStrcmp (content, _x("true")) == 0 ? TRUE : FALSE);
xmlFree (content);
}
else if (xmlStrcmp (node->name, _x("wet_dry_enabled")) == 0)
{
content = xmlNodeGetContent (node);
settings_set_wet_dry_enabled (settings, xmlStrcmp (content, _x("true")) == 0 ? TRUE : FALSE);
xmlFree (content);
}
else if (xmlStrcmp (node->name, _x("wet_dry_locked")) == 0)
{
content = xmlNodeGetContent (node);
settings_set_wet_dry_locked (settings, xmlStrcmp (content, _x("true")) == 0 ? TRUE : FALSE);
xmlFree (content);
}
else if (xmlStrcmp (node->name, _x("wet_dry_values")) == 0)
{
unsigned long channel = 0;
for (sub_node = node->children; sub_node; sub_node = sub_node->next)
{
if (xmlStrcmp (sub_node->name, _x("value")) == 0)
{
content = xmlNodeGetContent (sub_node);
settings_set_wet_dry_value (settings, channel, strtod (_s(content), NULL));
xmlFree (content);
channel++;
}
}
}
else if (xmlStrcmp (node->name, _x("lockall")) == 0)
{
content = xmlNodeGetContent (node);
settings_set_lock_all (settings, xmlStrcmp (content, _x("true")) == 0 ? TRUE : FALSE);
xmlFree (content);
}
else if (xmlStrcmp (node->name, _x("controlrow")) == 0)
{
gint copy = 0;
for (sub_node = node->children; sub_node; sub_node = sub_node->next)
{
if (xmlStrcmp (sub_node->name, _x("lock")) == 0)
{
content = xmlNodeGetContent (sub_node);
settings_set_lock (settings, control, xmlStrcmp (content, _x("true")) == 0 ? TRUE : FALSE);
xmlFree (content);
}
else if (xmlStrcmp (sub_node->name, _x("value")) == 0)
{
content = xmlNodeGetContent (sub_node);
settings_set_control_value (settings, copy, control, strtod (_s(content), NULL));
xmlFree (content);
copy++;
}
}
control++;
}
}
if (settings)
saved_plugin->settings = settings;
}
static void
saved_rack_parse_jackrack (jack_rack_t * jack_rack, saved_rack_t * saved_rack, const char * filename, xmlNodePtr jackrack)
{
xmlNodePtr node;
xmlChar *content;
saved_plugin_t * saved_plugin;
for (node = jackrack->children; node; node = node->next)
{
if (xmlStrcmp (node->name, _x("channels")) == 0)
{
content = xmlNodeGetContent (node);
saved_rack->channels = strtoul (_s(content), NULL, 10);
xmlFree (content);
}
else if (xmlStrcmp (node->name, _x("samplerate")) == 0)
{
content = xmlNodeGetContent (node);
saved_rack->sample_rate = strtoul (_s(content), NULL, 10);
xmlFree (content);
}
else if (xmlStrcmp (node->name, _x("plugin")) == 0)
{
saved_plugin = g_malloc0 (sizeof (saved_plugin_t));
saved_rack->plugins = g_slist_append (saved_rack->plugins, saved_plugin);
saved_rack_parse_plugin (jack_rack, saved_rack, saved_plugin, filename, node);
}
}
}
static saved_rack_t *
saved_rack_new (jack_rack_t * jack_rack, const char * filename, xmlDocPtr doc)
{
xmlNodePtr node;
saved_rack_t *saved_rack;
/* create the saved rack */
saved_rack = g_malloc (sizeof (saved_rack_t));
saved_rack->plugins = NULL;
saved_rack->sample_rate = 48000;
saved_rack->channels = 2;
for (node = doc->children; node; node = node->next)
{
if (xmlStrcmp (node->name, _x("jackrack")) == 0)
saved_rack_parse_jackrack (jack_rack, saved_rack, filename, node);
}
return saved_rack;
}
static void
saved_rack_destroy (saved_rack_t * saved_rack)
{
GSList * list;
for (list = saved_rack->plugins; list; list = g_slist_next (list))
settings_destroy (((saved_plugin_t *) list->data)->settings);
g_slist_free (saved_rack->plugins);
g_free (saved_rack);
}
int
jack_rack_open_file (jack_rack_t * jack_rack, const char * filename)
{
xmlDocPtr doc;
saved_rack_t * saved_rack;
GSList * list;
saved_plugin_t * saved_plugin;
doc = xmlParseFile (filename);
if (!doc)
{
fprintf (stderr, _("Could not parse file '%s'\n"), filename);
return 1;
}
if (xmlStrcmp ( ((xmlDtdPtr)doc->children)->name, _x("jackrack")) != 0)
{
fprintf (stderr, _("The file '%s' is not a JACK Rack settings file\n"), filename);
return 1;
}
saved_rack = saved_rack_new (jack_rack, filename, doc);
xmlFreeDoc (doc);
if (!saved_rack)
return 1;
for (list = saved_rack->plugins; list; list = g_slist_next (list))
{
saved_plugin = list->data;
settings_set_sample_rate (saved_plugin->settings, sample_rate);
jack_rack_add_saved_plugin (jack_rack, saved_plugin);
}
saved_rack_destroy (saved_rack);
return 0;
}
/* EOF */