26bee34006
FossilOrigin-Name: 56a0437f8913f2f670fc6244e102d23f608a40f67c0e93d66bcc471a2ce43555
800 lines
19 KiB
C
800 lines
19 KiB
C
/* RETRO ------------------------------------------------------
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A personal, minimalistic forth
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Copyright (c) 2016 - 2019 Charles Childers
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This is `rre`, short for `run retro and exit`. It's the basic
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interface layer for Retro on FreeBSD, Linux and macOS.
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rre embeds the image file into the binary, so the compiled
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version of this is all you need to have a functional system.
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I'll include commentary throughout the source, so read on.
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---------------------------------------------------------- */
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/* ------------------------------------------------------------
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Begin by including the various C headers needed.
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---------------------------------------------------------- */
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#include <stdio.h>
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#include <stdlib.h>
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#include <unistd.h>
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#include <string.h>
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#include <math.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <sys/socket.h>
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#include <netinet/in.h>
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#include <netdb.h>
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#include <errno.h>
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#include <sys/wait.h>
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#include <signal.h>
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#include "image-functions.h"
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#define USE_TERMIOS
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#ifdef USE_TERMIOS
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#include <termios.h>
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#include <sys/ioctl.h>
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#endif
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void generic_output();
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void generic_output_query();
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void io_keyboard_handler();
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void io_keyboard_query();
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void io_filesystem_query();
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void io_filesystem_handler();
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void io_unix_query();
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void io_unix_handler();
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void io_floatingpoint_query();
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void io_floatingpoint_handler();
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void io_gopher_query();
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void io_gopher_handler();
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void io_scripting_handler();
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void io_scripting_query();
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#define NUM_DEVICES 7
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typedef void (*Handler)(void);
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Handler IO_deviceHandlers[NUM_DEVICES + 1] = {
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generic_output,
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io_keyboard_handler,
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io_filesystem_handler,
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io_floatingpoint_handler,
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io_scripting_handler,
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io_unix_handler,
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io_gopher_handler
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};
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Handler IO_queryHandlers[NUM_DEVICES + 1] = {
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generic_output_query,
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io_keyboard_query,
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io_filesystem_query,
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io_floatingpoint_query,
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io_scripting_query,
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io_unix_query,
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io_gopher_query
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};
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CELL sp, rp, ip; /* Data, address, instruction pointers */
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CELL data[STACK_DEPTH]; /* The data stack */
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CELL address[ADDRESSES]; /* The address stack */
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CELL memory[IMAGE_SIZE + 1]; /* The memory for the image */
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/* ------------------------------------------------------------
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RRE embeds the image into the binary. This includes the image
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data (converted to a .c file by an external tool).
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---------------------------------------------------------- */
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#include "rre_image.c"
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void rre_execute(CELL cell, int silent);
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void rre_evaluate(char *s, int silent);
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int not_eol(int ch);
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void read_token(FILE *file, char *token_buffer, int echo);
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void include_file(char *fname, int run_tests);
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CELL ngaLoadImage(char *imageFile);
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void ngaPrepare();
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/* ------------------------------------------------------------
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Declare global variables related to I/O.
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---------------------------------------------------------- */
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char **sys_argv;
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int sys_argc;
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int silence_input;
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/*---------------------------------------------------------------------
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Now on to I/O and extensions!
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RRE provides a lot of additional functionality over the base RETRO
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system. First up is support for files.
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The RRE file model is intended to be similar to that of the standard
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C libraries and wraps fopen(), fclose(), etc.
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---------------------------------------------------------------------*/
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void generic_output() {
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putc(stack_pop(), stdout);
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fflush(stdout);
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}
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void generic_output_query() {
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stack_push(0);
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stack_push(0);
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}
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void io_keyboard_handler() {
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stack_push(getc(stdin));
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if (TOS == 127) TOS = 8;
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#ifdef USE_TERMIOS
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if (silence_input != -1) {
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putc(TOS, stdout);
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fflush(stdout);
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}
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#endif
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}
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void io_keyboard_query() {
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stack_push(0);
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stack_push(1);
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}
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/*---------------------------------------------------------------------
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---------------------------------------------------------------------*/
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#ifdef USE_TERMIOS
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struct termios new_termios, old_termios;
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void prepare_term() {
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tcgetattr(0, &old_termios);
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new_termios = old_termios;
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new_termios.c_iflag &= ~(BRKINT+ISTRIP+IXON+IXOFF);
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new_termios.c_iflag |= (IGNBRK+IGNPAR);
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new_termios.c_lflag &= ~(ICANON+ISIG+IEXTEN+ECHO);
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new_termios.c_cc[VMIN] = 1;
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new_termios.c_cc[VTIME] = 0;
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tcsetattr(0, TCSANOW, &new_termios);
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}
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void restore_term() {
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tcsetattr(0, TCSANOW, &old_termios);
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}
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#endif
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void scripting_arg() {
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CELL a, b;
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a = stack_pop();
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b = stack_pop();
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stack_push(string_inject(sys_argv[a + 2], b));
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}
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void scripting_arg_count() {
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stack_push(sys_argc - 2);
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}
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void scripting_include() {
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include_file(string_extract(stack_pop()), 0);
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}
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Handler ScriptingActions[] = {
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scripting_arg_count,
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scripting_arg,
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scripting_include
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};
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void io_scripting_query() {
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stack_push(0);
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stack_push(9);
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}
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void io_scripting_handler() {
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ScriptingActions[stack_pop()]();
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}
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/*---------------------------------------------------------------------
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With these out of the way, I implement `execute`, which takes an
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address and runs the code at it. This has a couple of interesting
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bits.
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Nga uses packed instruction bundles, with up to four instructions per
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bundle. Since RETRO requires an additional instruction to handle
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displaying a character, I define the handler for that here.
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This will also exit if the address stack depth is zero (meaning that
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the word being run, and it's dependencies) are finished.
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---------------------------------------------------------------------*/
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void rre_execute(CELL cell, int silent) {
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CELL a, b, token;
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CELL opcode;
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silence_input = silent;
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rp = 1;
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ip = cell;
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token = TIB;
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while (ip < IMAGE_SIZE) {
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if (ip == NotFound) {
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printf("\nERROR: Word Not Found: ");
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printf("`%s`\n\n", string_extract(token));
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}
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if (ip == interpret) {
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token = TOS;
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}
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opcode = memory[ip];
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if (ngaValidatePackedOpcodes(opcode) != 0) {
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ngaProcessPackedOpcodes(opcode);
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} else {
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printf("Invalid instruction!\n");
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printf("At %d, opcode %d\n", ip, opcode);
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#ifdef USE_TERMIOS
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restore_term();
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#endif
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exit(1);
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}
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ip++;
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if (rp == 0)
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ip = IMAGE_SIZE;
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}
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}
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/*---------------------------------------------------------------------
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RETRO's `interpret` word expects a token on the stack. This next
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function copies a token to the `TIB` (text input buffer) and then
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calls `interpret` to process it.
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---------------------------------------------------------------------*/
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void rre_evaluate(char *s, int silent) {
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//update_rx();
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if (strlen(s) == 0)
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return;
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string_inject(s, TIB);
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stack_push(TIB);
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rre_execute(interpret, silent);
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}
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/*---------------------------------------------------------------------
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`read_token` reads a token from the specified file. It will stop on
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a whitespace or newline. It also tries to handle backspaces, though
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the success of this depends on how your terminal is configured.
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---------------------------------------------------------------------*/
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int not_eol(int ch) {
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return (ch != (char)10) && (ch != (char)13) && (ch != (char)32) && (ch != EOF) && (ch != 0);
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}
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void read_token(FILE *file, char *token_buffer, int echo) {
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int ch = getc(file);
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int count = 0;
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if (echo != 0)
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putchar(ch);
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while (not_eol(ch))
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{
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if ((ch == 8 || ch == 127) && count > 0) {
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count--;
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if (echo != 0) {
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putchar(8);
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putchar(32);
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putchar(8);
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}
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} else {
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token_buffer[count++] = ch;
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}
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ch = getc(file);
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if (echo != 0)
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putchar(ch);
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}
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token_buffer[count] = '\0';
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}
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/*---------------------------------------------------------------------
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---------------------------------------------------------------------*/
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void dump_stack() {
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CELL i;
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if (sp == 0)
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return;
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printf("\nStack: ");
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for (i = 1; i <= sp; i++) {
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if (i == sp)
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printf("[ TOS: %d ]", data[i]);
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else
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printf("%d ", data[i]);
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}
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printf("\n");
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}
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/*---------------------------------------------------------------------
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RRE is primarily intended to be used in a batch or scripting model.
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The `include_file()` function will be used to read the code in the
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file, evaluating it as encountered.
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I enforce a literate model, with code in fenced blocks. E.g.,
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# This is a test
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Display "Hello, World!"
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~~~
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'Hello,_World! puts nl
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~~~
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RRE will ignore anything outside the `~~~` blocks. To identify if the
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current token is the start or end of a block, I provide a `fenced()`
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function.
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---------------------------------------------------------------------*/
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int fenced(char *s)
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{
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int a = strcmp(s, "```");
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int b = strcmp(s, "~~~");
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if (a == 0) return 2;
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if (b == 0) return 1;
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return 0;
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}
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/*---------------------------------------------------------------------
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And now for the actual `include_file()` function.
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---------------------------------------------------------------------*/
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void include_file(char *fname, int run_tests) {
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int inBlock = 0; /* Tracks status of in/out of block */
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char source[64 * 1024]; /* Line buffer [about 64K] */
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char fence[4]; /* Used with `fenced()` */
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FILE *fp; /* Open the file. If not found, */
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fp = fopen(fname, "r"); /* exit. */
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if (fp == NULL)
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return;
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while (!feof(fp)) /* Loop through the file */
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{
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read_token(fp, source, 0);
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strncpy(fence, source, 3); /* Copy the first three characters */
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fence[3] = '\0'; /* into `fence` to see if we are in */
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if (fenced(fence) > 0) { /* a code block. */
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if (fenced(fence) == 2 && run_tests == 0) {
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} else {
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if (inBlock == 0)
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inBlock = 1;
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else
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inBlock = 0;
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}
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} else {
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if (inBlock == 1) /* If we are, evaluate token */
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rre_evaluate(source, -1);
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}
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}
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fclose(fp);
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}
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/*---------------------------------------------------------------------
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`help()` displays a summary of the command line arguments RRE allows.
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This is invoked using `rre -h`
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---------------------------------------------------------------------*/
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void help(char *exename) {
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printf("Scripting Usage: %s filename\n\n", exename);
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printf("Interactive Usage: %s [-h] [-i] [-c] [-s] [-f filename] [-t]\n\n", exename);
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printf("Valid Arguments:\n\n");
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printf(" -h\n");
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printf(" Display this help text\n\n");
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printf(" -i\n");
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printf(" Launches in interactive mode (line buffered)\n\n");
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printf(" -c\n");
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printf(" Launches in interactive mode (character buffered)\n\n");
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printf(" -s\n");
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printf(" Suppress the 'ok' prompt and keyboard echo in interactive mode\n\n");
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printf(" -f filename\n");
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printf(" Run the contents of the specified file\n\n");
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printf(" -u filename\n");
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printf(" Use the image in the specified file instead of the internal one\n\n");
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printf(" -t\n");
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printf(" Run tests (in ``` blocks) in any loaded files\n\n");
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}
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/*---------------------------------------------------------------------
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`initialize()` sets up Nga and loads the image (from the array in
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`image.c`) to memory.
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---------------------------------------------------------------------*/
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void initialize() {
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CELL i;
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ngaPrepare();
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for (i = 0; i < ngaImageCells; i++)
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memory[i] = ngaImage[i];
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update_rx();
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}
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/*---------------------------------------------------------------------
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`arg_is()` exists to aid in readability. It compares the first actual
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command line argument to a string and returns a boolean flag.
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---------------------------------------------------------------------*/
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int arg_is(char *t) {
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return strcmp(sys_argv[1], t) == 0;
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}
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/*---------------------------------------------------------------------
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---------------------------------------------------------------------*/
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enum flags {
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FLAG_HELP, FLAG_RUN_TESTS, FLAG_INCLUDE, FLAG_INTERACTIVE, FLAG_CBREAK, FLAG_SILENT
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};
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int main(int argc, char **argv) {
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int i;
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int modes[32];
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char *files[16];
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int fsp;
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int run_tests;
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if (argc <= 1) return 0; /* Guard clause: exit if no */
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/* arguments are passed. */
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initialize(); /* Initialize Nga & image */
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sys_argc = argc; /* Point the global argc and */
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sys_argv = argv; /* argv to the actual ones */
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if (argc >= 2 && argv[1][0] != '-') {
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include_file(argv[1], 0); /* If no flags were passed, */
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if (sp >= 1) dump_stack(); /* load the file specified, */
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exit(0); /* and exit */
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}
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for (i = 0; i < 32; i++)
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modes[i] = 0;
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for (i = 0; i < 16; i++)
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files[i] = "\0";
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run_tests = 0;
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fsp = 0;
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for (i = 1; i < argc; i++) {
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if (strcmp(argv[i], "-h") == 0) {
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help(argv[0]);
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exit(0);
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} else if (strcmp(argv[i], "-i") == 0) {
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modes[FLAG_INTERACTIVE] = 1;
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} else if (strcmp(argv[i], "-c") == 0) {
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modes[FLAG_INTERACTIVE] = 1;
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modes[FLAG_CBREAK] = 1;
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} else if (strcmp(argv[i], "-s") == 0) {
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modes[FLAG_SILENT] = 1;
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} else if (strcmp(argv[i], "-f") == 0) {
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files[fsp] = argv[i + 1];
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fsp++;
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i++;
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} else if (strcmp(argv[i], "-u") == 0) {
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i++;
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ngaLoadImage(argv[i]);
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} else if (strcmp(argv[i], "-t") == 0) {
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modes[FLAG_RUN_TESTS] = 1;
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run_tests = 1;
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}
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}
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for (i = 0; i < fsp; i++) {
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if (strcmp(files[i], "\0") != 0)
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include_file(files[i], run_tests);
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}
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if (modes[FLAG_SILENT] == 1) {
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memory[d_xt_for("NoEcho", Dictionary)] = -1;
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}
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if (modes[FLAG_INTERACTIVE] == 1) {
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rre_execute(d_xt_for("banner", Dictionary), 0);
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#ifdef USE_TERMIOS
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if (modes[FLAG_CBREAK] == 1) prepare_term();
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#endif
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if (modes[FLAG_CBREAK] == 1) while (1) rre_execute(0, 0);
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if (modes[FLAG_CBREAK] == 0) while (1) rre_execute(0, -1);
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#ifdef USE_TERMIOS
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if (modes[FLAG_CBREAK] == 1) restore_term();
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#endif
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exit(0);
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}
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}
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/* Nga ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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Copyright (c) 2008 - 2018, Charles Childers
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Copyright (c) 2009 - 2010, Luke Parrish
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Copyright (c) 2010, Marc Simpson
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Copyright (c) 2010, Jay Skeer
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Copyright (c) 2011, Kenneth Keating
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ */
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enum vm_opcode {
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VM_NOP, VM_LIT, VM_DUP, VM_DROP, VM_SWAP, VM_PUSH, VM_POP,
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VM_JUMP, VM_CALL, VM_CCALL, VM_RETURN, VM_EQ, VM_NEQ, VM_LT,
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VM_GT, VM_FETCH, VM_STORE, VM_ADD, VM_SUB, VM_MUL, VM_DIVMOD,
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VM_AND, VM_OR, VM_XOR, VM_SHIFT, VM_ZRET, VM_END, VM_IE,
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VM_IQ, VM_II
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};
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#define NUM_OPS VM_II + 1
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#ifndef NUM_DEVICES
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#define NUM_DEVICES 0
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#endif
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//Handler IO_deviceHandlers[NUM_DEVICES + 1];
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//Handler IO_queryHandlers[NUM_DEVICES + 1];
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CELL ngaLoadImage(char *imageFile) {
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FILE *fp;
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CELL imageSize;
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long fileLen;
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CELL i;
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if ((fp = fopen(imageFile, "rb")) != NULL) {
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/* Determine length (in cells) */
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fseek(fp, 0, SEEK_END);
|
|
fileLen = ftell(fp) / sizeof(CELL);
|
|
rewind(fp);
|
|
/* Read the file into memory */
|
|
imageSize = fread(&memory, sizeof(CELL), fileLen, fp);
|
|
fclose(fp);
|
|
}
|
|
else {
|
|
for (i = 0; i < ngaImageCells; i++)
|
|
memory[i] = ngaImage[i];
|
|
imageSize = i;
|
|
}
|
|
return imageSize;
|
|
}
|
|
|
|
void ngaPrepare() {
|
|
ip = sp = rp = 0;
|
|
for (ip = 0; ip < IMAGE_SIZE; ip++)
|
|
memory[ip] = VM_NOP;
|
|
for (ip = 0; ip < STACK_DEPTH; ip++)
|
|
data[ip] = 0;
|
|
for (ip = 0; ip < ADDRESSES; ip++)
|
|
address[ip] = 0;
|
|
}
|
|
|
|
void inst_nop() {
|
|
}
|
|
|
|
void inst_lit() {
|
|
sp++;
|
|
ip++;
|
|
TOS = memory[ip];
|
|
}
|
|
|
|
void inst_dup() {
|
|
sp++;
|
|
data[sp] = NOS;
|
|
}
|
|
|
|
void inst_drop() {
|
|
data[sp] = 0;
|
|
if (--sp < 0)
|
|
ip = IMAGE_SIZE;
|
|
}
|
|
|
|
void inst_swap() {
|
|
CELL a;
|
|
a = TOS;
|
|
TOS = NOS;
|
|
NOS = a;
|
|
}
|
|
|
|
void inst_push() {
|
|
rp++;
|
|
TORS = TOS;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_pop() {
|
|
sp++;
|
|
TOS = TORS;
|
|
rp--;
|
|
}
|
|
|
|
void inst_jump() {
|
|
ip = TOS - 1;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_call() {
|
|
rp++;
|
|
TORS = ip;
|
|
ip = TOS - 1;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_ccall() {
|
|
CELL a, b;
|
|
a = TOS; inst_drop(); /* False */
|
|
b = TOS; inst_drop(); /* Flag */
|
|
if (b != 0) {
|
|
rp++;
|
|
TORS = ip;
|
|
ip = a - 1;
|
|
}
|
|
}
|
|
|
|
void inst_return() {
|
|
ip = TORS;
|
|
rp--;
|
|
}
|
|
|
|
void inst_eq() {
|
|
NOS = (NOS == TOS) ? -1 : 0;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_neq() {
|
|
NOS = (NOS != TOS) ? -1 : 0;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_lt() {
|
|
NOS = (NOS < TOS) ? -1 : 0;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_gt() {
|
|
NOS = (NOS > TOS) ? -1 : 0;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_fetch() {
|
|
switch (TOS) {
|
|
case -1: TOS = sp - 1; break;
|
|
case -2: TOS = rp; break;
|
|
case -3: TOS = IMAGE_SIZE; break;
|
|
default: TOS = memory[TOS]; break;
|
|
}
|
|
}
|
|
|
|
void inst_store() {
|
|
if (TOS <= IMAGE_SIZE && TOS >= 0) {
|
|
memory[TOS] = NOS;
|
|
inst_drop();
|
|
inst_drop();
|
|
} else {
|
|
ip = IMAGE_SIZE;
|
|
}
|
|
}
|
|
|
|
void inst_add() {
|
|
NOS += TOS;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_sub() {
|
|
NOS -= TOS;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_mul() {
|
|
NOS *= TOS;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_divmod() {
|
|
CELL a, b;
|
|
a = TOS;
|
|
b = NOS;
|
|
TOS = b / a;
|
|
NOS = b % a;
|
|
}
|
|
|
|
void inst_and() {
|
|
NOS = TOS & NOS;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_or() {
|
|
NOS = TOS | NOS;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_xor() {
|
|
NOS = TOS ^ NOS;
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_shift() {
|
|
CELL y = TOS;
|
|
CELL x = NOS;
|
|
if (TOS < 0)
|
|
NOS = NOS << (TOS * -1);
|
|
else {
|
|
if (x < 0 && y > 0)
|
|
NOS = x >> y | ~(~0U >> y);
|
|
else
|
|
NOS = x >> y;
|
|
}
|
|
inst_drop();
|
|
}
|
|
|
|
void inst_zret() {
|
|
if (TOS == 0) {
|
|
inst_drop();
|
|
ip = TORS;
|
|
rp--;
|
|
}
|
|
}
|
|
|
|
void inst_end() {
|
|
ip = IMAGE_SIZE;
|
|
}
|
|
|
|
void inst_ie() {
|
|
sp++;
|
|
TOS = NUM_DEVICES;
|
|
}
|
|
|
|
void inst_iq() {
|
|
CELL Device = TOS;
|
|
inst_drop();
|
|
IO_queryHandlers[Device]();
|
|
}
|
|
|
|
void inst_ii() {
|
|
CELL Device = TOS;
|
|
inst_drop();
|
|
IO_deviceHandlers[Device]();
|
|
}
|
|
|
|
Handler instructions[NUM_OPS] = {
|
|
inst_nop, inst_lit, inst_dup, inst_drop, inst_swap, inst_push, inst_pop,
|
|
inst_jump, inst_call, inst_ccall, inst_return, inst_eq, inst_neq, inst_lt,
|
|
inst_gt, inst_fetch, inst_store, inst_add, inst_sub, inst_mul, inst_divmod,
|
|
inst_and, inst_or, inst_xor, inst_shift, inst_zret, inst_end, inst_ie,
|
|
inst_iq, inst_ii
|
|
};
|
|
|
|
void ngaProcessOpcode(CELL opcode) {
|
|
if (opcode != 0)
|
|
instructions[opcode]();
|
|
}
|
|
|
|
int ngaValidatePackedOpcodes(CELL opcode) {
|
|
CELL raw = opcode;
|
|
CELL current;
|
|
int valid = -1;
|
|
int i;
|
|
for (i = 0; i < 4; i++) {
|
|
current = raw & 0xFF;
|
|
if (!(current >= 0 && current <= 29))
|
|
valid = 0;
|
|
raw = raw >> 8;
|
|
}
|
|
return valid;
|
|
}
|
|
|
|
void ngaProcessPackedOpcodes(CELL opcode) {
|
|
CELL raw = opcode;
|
|
int i;
|
|
for (i = 0; i < 4; i++) {
|
|
ngaProcessOpcode(raw & 0xFF);
|
|
raw = raw >> 8;
|
|
}
|
|
}
|