basic multi-parameter functions
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d1cf60794d
commit
dfc515b7df
52
main.c
52
main.c
@ -26,8 +26,9 @@ Tok toks[TOKS_CAP];
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size_t toks_size = 0;
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uint8_t op_prec[256] = {
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['('] = 0,
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['('] = 0, /* A precedence of 0 is reserved for delimiters. */
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[')'] = 0,
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[','] = 0,
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['+'] = 1,
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['-'] = 1,
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['*'] = 2,
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@ -118,6 +119,7 @@ void tokenize(char *expr) {
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switch (c) {
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case '(':
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case ')':
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case ',':
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case '+':
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case '-':
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case '*':
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@ -172,8 +174,8 @@ void del_toks(Tok *begin, Tok *end) {
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}
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real eval(Tok *t) {
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if (!(t[0].kind == TokOp && t[0].Char == '(')) {
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fprintf(stderr, "Error: expected '(' at beginning of expression\n");
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if (!(t[0].kind == TokOp && op_prec[(size_t)t[0].Char] == 0)) {
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fprintf(stderr, "Error: expected delimiter at beginning of expression\n");
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exit(1);
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}
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@ -182,7 +184,7 @@ real eval(Tok *t) {
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if (t[1].kind == TokOp && t[1].Char == '(') {
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real res = eval(t + 1);
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size_t i;
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for (i = 2; !(t[i].kind == TokOp && t[i].Char == ')'); i++);
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for (i = 2; !(t[i].kind == TokOp && op_prec[(size_t)t[i].Char] == 0); i++);
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del_toks(t + 2, t + i + 1);
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/* Put the newly evaluated value into place. */
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t[1].kind = TokNum;
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@ -192,29 +194,48 @@ real eval(Tok *t) {
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/* Collapse function. */
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if (t[1].kind == TokFunc) {
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print_toks();
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if (!(t[2].kind == TokOp && t[2].Char == '(') || t + 2 >= toks + toks_size) {
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if (t + 2 >= toks + toks_size || !(t[2].kind == TokOp && t[2].Char == '(')) {
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fprintf(stderr, "Error: expected '(' token after function\n");
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exit(1);
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}
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real inner_res = eval(t + 2);
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size_t i;
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for (i = 3; !(t[i].kind == TokOp && t[i].Char == ')'); i++);
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del_toks(t + 2, t + i + 1);
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real arg_results[16];
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size_t arg_results_size = 0;
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t += 2;
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while (1) {
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arg_results[arg_results_size++] = eval(t); /* TODO: Overflow protection. */
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size_t i = 1;
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for (; !(t[i].kind == TokOp && op_prec[(size_t)t[i].Char] == 0); i++);
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bool end = t[i].Char == ')';
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if (t[i].Char == ',')
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del_toks(t, t + i);
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else if (t[i].Char == ')')
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del_toks(t, t + i + 1);
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if (end)
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break;
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}
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t -= 2;
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real outer_res;
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if (strcmp(t[1].Str, "sqrt") == 0) {
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outer_res = sqrt(inner_res);
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if (arg_results_size != 1) {
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fprintf(stderr, "Error: function sqrt() requires exactly 1 argument\n");
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exit(1);
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}
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outer_res = sqrt(arg_results[0]);
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} else if (strcmp(t[1].Str, "pow") == 0) {
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if (arg_results_size != 2) {
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fprintf(stderr, "Error: function pow() requires exactly 2 arguments\n");
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exit(1);
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}
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outer_res = pow(arg_results[0], arg_results[1]);
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} else {
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fprintf(stderr, "Error: unknown function name: %s\n", t[1].Str);
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exit(1);
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}
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t[1].kind = TokNum;
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t[1].Num = outer_res;
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print_toks();
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}
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if (!(t[0].kind == TokOp && t[1].kind == TokNum && t[2].kind == TokOp)) {
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@ -228,7 +249,8 @@ real eval(Tok *t) {
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const char next_op = t[2].Char;
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const uint8_t next_prec = op_prec[(size_t)next_op];
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if (curr_op == '(' && next_op == ')')
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/* Delimiters have a precedence of 0; if we have a number between two delimiters, we're done. */
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if (curr_prec == 0 && next_prec == 0)
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return t[1].Num;
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if (next_prec > curr_prec || (next_prec == curr_prec && op_order[(size_t)curr_op] == OrderRtl)) {
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