#include #include #ifndef WIN32 #include "config.h" #endif #ifdef ENABLE_NLS #include #endif #define _ISOC9X_SOURCE 1 #define _ISOC99_SOURCE 1 #define __USE_ISOC99 1 #define __USE_ISOC9X 1 #include #include "ladspa.h" #ifdef WIN32 #define _WINDOWS_DLL_EXPORT_ __declspec(dllexport) int bIsFirstTime = 1; void _init(); // forward declaration #else #define _WINDOWS_DLL_EXPORT_ #endif #define CONST_AMPLITUDE 0 #define CONST_INPUT 1 #define CONST_OUTPUT 2 static LADSPA_Descriptor *constDescriptor = NULL; typedef struct { LADSPA_Data *amplitude; LADSPA_Data *input; LADSPA_Data *output; float last_amp; LADSPA_Data run_adding_gain; } Const; _WINDOWS_DLL_EXPORT_ const LADSPA_Descriptor *ladspa_descriptor(unsigned long index) { #ifdef WIN32 if (bIsFirstTime) { _init(); bIsFirstTime = 0; } #endif switch (index) { case 0: return constDescriptor; default: return NULL; } } static void activateConst(LADSPA_Handle instance) { Const *plugin_data = (Const *)instance; float last_amp = plugin_data->last_amp; #line 18 "const_1909.xml" last_amp = 0.0f; plugin_data->last_amp = last_amp; } static void cleanupConst(LADSPA_Handle instance) { free(instance); } static void connectPortConst( LADSPA_Handle instance, unsigned long port, LADSPA_Data *data) { Const *plugin; plugin = (Const *)instance; switch (port) { case CONST_AMPLITUDE: plugin->amplitude = data; break; case CONST_INPUT: plugin->input = data; break; case CONST_OUTPUT: plugin->output = data; break; } } static LADSPA_Handle instantiateConst( const LADSPA_Descriptor *descriptor, unsigned long s_rate) { Const *plugin_data = (Const *)malloc(sizeof(Const)); plugin_data->run_adding_gain = 1.0f; return (LADSPA_Handle)plugin_data; } #undef buffer_write #undef RUN_ADDING #undef RUN_REPLACING #define buffer_write(b, v) (b = v) #define RUN_ADDING 0 #define RUN_REPLACING 1 static void runConst(LADSPA_Handle instance, unsigned long sample_count) { Const *plugin_data = (Const *)instance; /* Signal amplitude (float value) */ const LADSPA_Data amplitude = *(plugin_data->amplitude); /* Input (array of floats of length sample_count) */ const LADSPA_Data * const input = plugin_data->input; /* Output (array of floats of length sample_count) */ LADSPA_Data * const output = plugin_data->output; float last_amp = plugin_data->last_amp; #line 22 "const_1909.xml" unsigned long pos; const float delta = (amplitude - last_amp) / (sample_count - 1); float amp = last_amp; for (pos = 0; pos < sample_count; pos++) { amp += delta; buffer_write(output[pos], input[pos] + amp); } plugin_data->last_amp = amp; } #undef buffer_write #undef RUN_ADDING #undef RUN_REPLACING #define buffer_write(b, v) (b += (v) * run_adding_gain) #define RUN_ADDING 1 #define RUN_REPLACING 0 static void setRunAddingGainConst(LADSPA_Handle instance, LADSPA_Data gain) { ((Const *)instance)->run_adding_gain = gain; } static void runAddingConst(LADSPA_Handle instance, unsigned long sample_count) { Const *plugin_data = (Const *)instance; LADSPA_Data run_adding_gain = plugin_data->run_adding_gain; /* Signal amplitude (float value) */ const LADSPA_Data amplitude = *(plugin_data->amplitude); /* Input (array of floats of length sample_count) */ const LADSPA_Data * const input = plugin_data->input; /* Output (array of floats of length sample_count) */ LADSPA_Data * const output = plugin_data->output; float last_amp = plugin_data->last_amp; #line 22 "const_1909.xml" unsigned long pos; const float delta = (amplitude - last_amp) / (sample_count - 1); float amp = last_amp; for (pos = 0; pos < sample_count; pos++) { amp += delta; buffer_write(output[pos], input[pos] + amp); } plugin_data->last_amp = amp; } void _init() { char **port_names; LADSPA_PortDescriptor *port_descriptors; LADSPA_PortRangeHint *port_range_hints; #ifdef ENABLE_NLS #define D_(s) dgettext(PACKAGE, s) setlocale(LC_ALL, ""); bindtextdomain(PACKAGE, PACKAGE_LOCALE_DIR); #else #define D_(s) (s) #endif constDescriptor = (LADSPA_Descriptor *)malloc(sizeof(LADSPA_Descriptor)); if (constDescriptor) { constDescriptor->UniqueID = 1909; constDescriptor->Label = "const"; constDescriptor->Properties = LADSPA_PROPERTY_HARD_RT_CAPABLE; constDescriptor->Name = D_("Constant Signal Generator"); constDescriptor->Maker = "Steve Harris "; constDescriptor->Copyright = "GPL"; constDescriptor->PortCount = 3; port_descriptors = (LADSPA_PortDescriptor *)calloc(3, sizeof(LADSPA_PortDescriptor)); constDescriptor->PortDescriptors = (const LADSPA_PortDescriptor *)port_descriptors; port_range_hints = (LADSPA_PortRangeHint *)calloc(3, sizeof(LADSPA_PortRangeHint)); constDescriptor->PortRangeHints = (const LADSPA_PortRangeHint *)port_range_hints; port_names = (char **)calloc(3, sizeof(char*)); constDescriptor->PortNames = (const char **)port_names; /* Parameters for Signal amplitude */ port_descriptors[CONST_AMPLITUDE] = LADSPA_PORT_INPUT | LADSPA_PORT_CONTROL; port_names[CONST_AMPLITUDE] = D_("Signal amplitude"); port_range_hints[CONST_AMPLITUDE].HintDescriptor = LADSPA_HINT_BOUNDED_BELOW | LADSPA_HINT_BOUNDED_ABOVE | LADSPA_HINT_DEFAULT_0; port_range_hints[CONST_AMPLITUDE].LowerBound = -1; port_range_hints[CONST_AMPLITUDE].UpperBound = 1.1; /* Parameters for Input */ port_descriptors[CONST_INPUT] = LADSPA_PORT_INPUT | LADSPA_PORT_AUDIO; port_names[CONST_INPUT] = D_("Input"); port_range_hints[CONST_INPUT].HintDescriptor = 0; /* Parameters for Output */ port_descriptors[CONST_OUTPUT] = LADSPA_PORT_OUTPUT | LADSPA_PORT_AUDIO; port_names[CONST_OUTPUT] = D_("Output"); port_range_hints[CONST_OUTPUT].HintDescriptor = 0; constDescriptor->activate = activateConst; constDescriptor->cleanup = cleanupConst; constDescriptor->connect_port = connectPortConst; constDescriptor->deactivate = NULL; constDescriptor->instantiate = instantiateConst; constDescriptor->run = runConst; constDescriptor->run_adding = runAddingConst; constDescriptor->set_run_adding_gain = setRunAddingGainConst; } } void _fini() { if (constDescriptor) { free((LADSPA_PortDescriptor *)constDescriptor->PortDescriptors); free((char **)constDescriptor->PortNames); free((LADSPA_PortRangeHint *)constDescriptor->PortRangeHints); free(constDescriptor); } }