#include "capturemodule.h" #include //#include //#include //#include #include "dllutils.h" #include "capturemodule.xpm" static log2T s_log_function = 0; static void logger(int level, const char* msg) { if (s_log_function) s_log_function(level, "mod_capturemodule", msg); } const char* getSpec(void) { return "mod_spec { name=[mod_capturemodule] number_of_inputs=[3] number_of_outputs=[1] deterministic=[false] }"; } const char* getInputSpec(int index) { switch(index) { case 0: return "input_spec { type=typ_NumberType id=device const=true strong_dependency=true default=[0] } "; break; case 1: return "input_spec { type=typ_NumberType id=x_size const=true strong_dependency=true default=[0] } "; break; case 2: return "input_spec { type=typ_NumberType id=y_size const=true strong_dependency=true default=[0] } "; break; } return 0; } const char* getOutputSpec(int index) { switch(index) { case 0: return "output_spec { type=typ_FrameBufferType id=result } "; break; } return 0; } void* newInstance() { Instance* inst = (Instance*) malloc(sizeof(Instance)); if (inst == 0) { logger(0, "Could not allocate memory for instance struct!\n"); return 0; } inst->my = construct(); if (inst->my == 0) { free(inst); return 0; } return inst; } void deleteInstance(void* instance) { Instance* inst = (Instance*) instance; destruct(inst->my); free(inst); } int setInput(void* instance,int index,void* typePointer) { InstancePtr inst = (InstancePtr) instance; switch(index) { case 0: inst->in_device = (NumberType *) typePointer; break; case 1: inst->in_x_size = (NumberType *) typePointer; break; case 2: inst->in_y_size = (NumberType *) typePointer; break; } //switch(index) return 1; } int setOutput(void* instance,int index, void* typePointer) { InstancePtr inst = (InstancePtr) instance; switch(index) { case 0: inst->out_result = (FrameBufferType* ) typePointer; break; } //switch(index) return 0; } int getInfo(char* buf,int bufLen) { static const char* INFO = "info { name=[Capture Source] group=[Sources] inputs=[3 Device{lower_bound=[0] widget_type=[number_selector] step_size=[1] higher_bound=[15] hidden=[true] help=[device number of the capture device] } Size(x){lower_bound=[0] widget_type=[number_selector] step_size=[1] higher_bound=[1024] hidden=[true] help=[If x_size and y_size > 0 the image is scaled] } Size(y){lower_bound=[0] widget_type=[number_selector] step_size=[1] higher_bound=[1024] hidden=[true] help=[If x_size and y_size > 0 the image is scaled] } ] outputs=[1 Video ] type=xpm } "; char* tmpBuf; int reqLen = 1 + strlen(INFO) + getSizeOfXPM(capturemodule_xpm); if (buf != 0 && reqLen <= bufLen) { char* offset; int i; int lines = getNumberOfStringsXPM(capturemodule_xpm); tmpBuf = (char*) malloc(reqLen); if (tmpBuf == 0) { printf("Could not allocate memory in getInfo\n"); return 0; } memcpy(tmpBuf,INFO,strlen(INFO)+1); offset = tmpBuf + strlen(INFO) + 1; for (i = 0; i < lines; ++i) { char* source = capturemodule_xpm[i]; memcpy(offset,source,strlen(source)+1); offset += strlen(source) + 1; } memcpy(buf,tmpBuf,reqLen); free(tmpBuf); } return reqLen; } int initSO(log2T log_function) { s_log_function = log_function; return init(logger); }