X-Git-Url: https://hackdaworld.org/gitweb/?p=physik%2Fmorpheus.git;a=blobdiff_plain;f=main.c;h=2f1cff56184764e4f2b48a652859d1bed21c0b85;hp=3c8120081b1c9edec94e84163f1b0ac32db603f9;hb=HEAD;hpb=46b1c51ef602958cd5acf558c9aa8a9f88fcd9b5 diff --git a/main.c b/main.c index 3c81200..2f1cff5 100644 --- a/main.c +++ b/main.c @@ -11,12 +11,14 @@ * - Maik Haeberlen. Diplomarbeit, Universitaet Augsburg. */ +#define _GNU_SOURCE #include #include #include #include #include #include +#include /* important defines */ #include "defines.h" @@ -26,7 +28,9 @@ #include "display.h" /* global variables */ -u32 sum_z_cells; +u32 *rand_buf,*rand_current; +char random_file[MAX_CHARS_RANDOM_FILE]; +u32 gr; int random_fd; /* /dev/urandom file descriptor */ int usage() @@ -46,49 +50,191 @@ int usage() printf("-r \t pressure range from amorphous SiCx (default %d)\n",DEFAULT_A_P_RANGE); printf("-f \t faktor for pressure from amorphous SiCx (default %f)\n",DEFAULT_A_P_FAKTOR); printf("-p \t p0 for probability of cell getting amorph (default %f)\n",DEFAULT_A_P_P0); + printf("-C \t C disribution start concentration (default %d)\n",DEFAULT_C_DIST_START_CONC); + printf("-S \t slope of linear C distribution (default %d)\n",DEFAULT_C_DIST_SLOPE); + printf("-b \t initial C concentration (default %d)\n",DEFAULT_C_C0); + puts("-R \t read random data from file (default not used)"); + puts("-D \t dump cell info into (default not used)"); + puts("-L \t load cell info and display it (default no)"); + puts("-n \t do not wait for user interaction (default no)"); return -23; } -int make_amorph(u32 *cell) +int make_amorph(cell *cell) { - *cell|=AMORPH; + cell->status|=AMORPH; return 23; } -int make_cryst(u32 *cell) +int make_cryst(cell *cell) { - *cell&=~AMORPH; + cell->status&=~AMORPH; + return 23; +} + +int load_from_file(char *file,display *display) +{ + int load_file_fd; + + if((load_file_fd=open(file,O_RDONLY))<0) + { + puts("cannot open load file"); + return -23; + } + if(read(load_file_fd,&(display->max_x),sizeof(u32))max_y),sizeof(u32))max_z),sizeof(u32))cell_p,display->max_x*display->max_y*display->max_z*sizeof(cell))max_x*display->max_y*display->max_z*sizeof(cell)) + { + puts("failed reading cell info from file"); + return -23; + } + close(load_file_fd); + puts("loaded file"); + return 23; +} + +int save_to_file(char *file,display *display) +{ + int save_file_fd; + + if((save_file_fd=open(file,O_CREAT|O_WRONLY|O_TRUNC))<0) + { + puts("cannot open save file"); + return -23; + } + if(write(save_file_fd,&(display->max_x),sizeof(u32))max_y),sizeof(u32))max_z),sizeof(u32))cell_p,display->max_x*display->max_y*display->max_z*sizeof(cell))!=display->max_x*display->max_y*display->max_z*sizeof(cell)) + { + puts("saving file failed"); + return -23; + } + close(save_file_fd); + puts("saved file"); + return 23; +} + +int distrib_c_conc(cell *cell_p,int c_c0,int c_slope,u32 c_conc,u32 x_max,u32 y_max,u32 z_max) +{ + int i,j; + u32 area,c_area,total,count; + u32 x,y,z,sum_c_z; + + total=0; + area=x_max*y_max; + sum_c_z=c_c0*z_max+c_slope*gr; + + for(i=0;istatus&AMORPH) count++; + } + for(j=0;jstatus&AMORPH) + { + (cell_p+j+i*area)->conc=c_area/count; + total+=c_area/count; + } + } + j=0; + while(jstatus&AMORPH) + { + (cell_p+x+y*x_max+i*area)->conc+=1; + total++; + j++; + } + } + } + i=0; + while(istatus&AMORPH) + { + (cell_p+x+y*x_max+z*area)->conc+=1; + i++; + } + } return 23; } /* look at cell ... */ -int process_cell(void *cell_p,u32 x,u32 y,u32 z,u32 x_max,u32 y_max,u32 z_max,int range,double faktor,double p0) +int process_cell(cell *cell_p,u32 x,u32 y,u32 z,u32 x_max,u32 y_max,u32 z_max,int range,double faktor,double p0,u32 *c_conc) { - u32 *cell; + cell *this_cell; int i,j,k; double pressure; - cell=(u32 *)(cell_p+x+y*(x_max-1)+z*(x_max-1)*(y_max-1)); + + this_cell=cell_p+x+y*x_max+z*x_max*y_max; pressure=p0*URAND_2BYTE_MAX; + for(i=-range;i<=range;i++) { for(j=-range;j<=range;j++) { - for(k=-range;k<=range;k++) - { - if(!(i==0 && j==0 && k==0)) + // z relaxation, no pressure in z direction + // for(k=-range;k<=range;k++) + // { + if(!(i==0 && j==0)) // && k==0)) { - if(*(u32 *)(cell_p+((x+x_max+i)%x_max)+((y+j+y_max)%y_max)*(x_max-1)+((z+k+z_max)%z_max)*(x_max-1)*(y_max-1))&AMORPH) pressure+=faktor*URAND_2BYTE_MAX/(i*i+j*j+k*k); + // if((cell_p+((x+x_max+i)%x_max)+((y+j+y_max)%y_max)*x_max+((z+k+z_max)%z_max)*x_max*y_max)->status&AMORPH) pressure+=faktor*URAND_2BYTE_MAX/(i*i+j*j+k*k); + if((cell_p+((x+x_max+i)%x_max)+((y+j+y_max)%y_max)*x_max+z*x_max*y_max)->status&AMORPH) pressure+=faktor*URAND_2BYTE_MAX/(i*i+j*j); } - } + // } } } - if(*cell&AMORPH) + pressure*=this_cell->conc; + if(this_cell->status&AMORPH) { /* wrong probability! just test by now ...*/ - if(rand_get(URAND_2BYTE_MAX)>pressure) make_cryst(cell); + if(rand_get(URAND_2BYTE_MAX)>pressure) + { + make_cryst(this_cell); + *c_conc=*c_conc+1+this_cell->conc; + } else *c_conc+=1; } else { - if(rand_get(URAND_2BYTE_MAX)<=pressure) make_amorph(cell); + if(rand_get(URAND_2BYTE_MAX)<=pressure) + { + make_amorph(this_cell); + *c_conc=*c_conc+1-this_cell->conc; + } else *c_conc+=1; } return 23; } @@ -101,12 +247,20 @@ int main(int argc,char **argv) int slope_nel,start_nel; /* nuclear energy loss: slope, constant */ int a_p_range; /* p. range of amorphous sic */ double a_p_faktor,a_p_p0; /* p0 and faktor of amorphous sic */ + int c_dist_c0,c_dist_slope; /* c start concentration and linear slope of c distribution */ + u32 c_conc; int steps; /* # steps */ - void *cell_p; + cell *cell_p; struct __display display; u32 display_x,display_y,display_z; /* intercept point of diplayed areas */ u32 display_refresh_rate; /* refresh rate for display */ int quit=0; /* continue/quit status */ + char save_file[MAX_CHARS_SAVE_FILE]; + char load_file[MAX_CHARS_LOAD_FILE]; + unsigned char no_wait; + + printfd("debug: sizeof my u32 variable: %d\n",sizeof(u32)); + printfd("debug: sizeof my cell struct: %d\n",sizeof(cell)); /* default values */ x_cell=DEFAULT_X_SEG; @@ -117,11 +271,18 @@ int main(int argc,char **argv) a_p_range=DEFAULT_A_P_RANGE; a_p_faktor=DEFAULT_A_P_FAKTOR; a_p_p0=DEFAULT_A_P_P0; + c_dist_c0=DEFAULT_C_DIST_START_CONC; + c_dist_slope=DEFAULT_C_DIST_SLOPE; + c_conc=DEFAULT_C_C0; steps=DEFAULT_STEPS; display_x=x_cell/2; display_y=y_cell/2; display_z=z_cell/2; display_refresh_rate=DEFAULT_DISPLAY_REF_RATE; + strcpy(random_file,""); + strcpy(save_file,""); + strcpy(load_file,""); + no_wait=0; /* parse command args */ for(i=1;i %u\n",sum_z_cells); - - /* testing ... */ + /* calculate gr one time! */ + gr=0; + for(i=1;i<=z_cell;i++) gr+=i; + printfd("debug: gr = %d\n",gr); /* allocate cells */ - printf("malloc will free %d bytes now ...\n",x_cell*y_cell*z_cell*sizeof(u32)); - if((cell_p=malloc(x_cell*y_cell*z_cell*sizeof(u32)))==NULL) + printf("malloc will free %d bytes now ...\n",x_cell*y_cell*z_cell*sizeof(cell)); + if((cell_p=(cell *)malloc(x_cell*y_cell*z_cell*sizeof(cell)))==NULL) { - puts("failed allocating memory for cells\n"); + puts("failed allocating memory for cells"); return -23; } - memset(cell_p,0,x_cell*y_cell*z_cell*sizeof(u32)); + memset(cell_p,0,x_cell*y_cell*z_cell*sizeof(cell)); + + /* load from file */ + if(strcmp(load_file,"")) + { + display.cell_p=cell_p; + load_from_file(load_file,&display); + x_cell=display.max_x; + y_cell=display.max_y; + z_cell=display.max_z; + } /* init display */ + printfd("debug: init display now ...\n"); display_init(x_cell,y_cell,z_cell,&display,cell_p,&argc,argv); /* main routine */ - for(i=0;i %x\n",x,y,z,*(u32 *)(cell_p+x+y*(x_cell-1)+z*(x_cell-1)*(y_cell-1))); - } + process_cell(cell_p,x,y,z,x_cell,y_cell,z_cell,a_p_range,a_p_faktor,a_p_p0,&c_conc); /* display stuff */ - if((i%display_refresh_rate)==0) + if((display.step%display_refresh_rate)==0) display_draw(&display,display_x,display_y,display_z); } + + } + + if(strcmp(save_file,"")) save_to_file(save_file,&display); + + printfd("debug: main routine finished!\n"); /* display again and listen for events */ display_draw(&display,display_x,display_y,display_z); - display_event_init(&display); - while(!quit) + if(!no_wait) { - display_scan_event(&display,&display_x,&display_y,&display_z,&quit); - display_draw(&display,display_x,display_y,display_z); + display_event_init(&display); + + while(!quit) + { + display_scan_event(&display,&display_x,&display_y,&display_z,&quit); + display_draw(&display,display_x,display_y,display_z); + } } display_release(&display);