09b552ed8c
parser used to work depending on opening parenthesis and therefore parsed e.g. `(if 0 (list 1 2 3) 1)` as two seperate expressions, thus the example would print: 1 (1 2 3) Now fixed by using a stack for parenthesis
139 lines
4.5 KiB
C
139 lines
4.5 KiB
C
#include "lisp.h"
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#define func_arithmetic_ex(name, operator, operator_name) \
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int name(Nodes *args, Scopes *scopes, Node *result) { \
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UNUSED(scopes); \
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if (args->count != 2) { \
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puts("'" operator_name "' expects two arguments!\n"); \
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return 1; \
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} \
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if (args->items[0].kind != NODE_KIND_NUMBER || \
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args->items[1].kind != NODE_KIND_NUMBER) { \
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puts("'" operator_name \
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"' only works on numbers, you specified something " \
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"else!\n"); \
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return 1; \
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} \
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long long a = args->items[0].as_number; \
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long long b = args->items[1].as_number; \
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result->as_number = a operator b; \
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result->kind = NODE_KIND_NUMBER; \
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return 0; \
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}
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#define func_arithmetic(name, operator) \
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func_arithmetic_ex(name, operator, #operator)
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func_arithmetic(lisp_function_add, +);
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func_arithmetic(lisp_function_sub, -);
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func_arithmetic(lisp_function_div, /);
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func_arithmetic(lisp_function_mul, *);
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func_arithmetic(lisp_function_mod, %);
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func_arithmetic_ex(lisp_function_eq, ==, "=");
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func_arithmetic(lisp_function_lt, <);
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func_arithmetic(lisp_function_gt, >);
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func_arithmetic(lisp_function_lt_eq, <=);
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func_arithmetic(lisp_function_gt_eq, >=);
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int lisp_function_println(Nodes *args, Scopes *scopes, Node *result) {
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if (args->count != 1) {
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printf("'+' expects one argument!\n");
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return 1;
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}
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eval_one(args->items[0], scopes, result);
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node_print(*result);
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printf("\n");
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return 0;
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}
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int lisp_function_list(Nodes *args, Scopes *scopes, Node *result) {
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UNUSED(scopes);
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result->kind = NODE_KIND_LIST;
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result->as_list = args;
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return 0;
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}
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int lisp_function_append(Nodes *args, Scopes *scopes, Node *result) {
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UNUSED(scopes);
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if (args->count != 2) {
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printf("'append' expects two arguments!\n");
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return 1;
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}
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if (args->items[0].kind != NODE_KIND_LIST ||
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args->items[1].kind != NODE_KIND_LIST) {
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printf("'append' can only append two lists!\n");
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return 1;
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}
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Nodes *nodes = malloc(sizeof(Nodes));
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memset(nodes, 0, sizeof(Nodes));
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Nodes *a = args->items[0].as_list;
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nob_da_append_many(nodes, a->items, a->count);
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Nodes *b = args->items[1].as_list;
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nob_da_append_many(nodes, b->items, b->count);
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result->as_list = nodes;
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result->kind = NODE_KIND_LIST;
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return 0;
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}
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int lisp_function_length(Nodes *args, Scopes *scopes, Node *result) {
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UNUSED(scopes);
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if (args->count != 1) {
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printf("'length' expects one argument!\n");
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return 1;
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}
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if (args->items[0].kind != NODE_KIND_LIST) {
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printf("'length' can only be used on lists!\n");
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return 1;
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}
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result->kind = NODE_KIND_NUMBER;
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result->as_number = args->items[0].as_list->count;
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return 0;
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}
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int lisp_function_isnull(Nodes *args, Scopes *scopes, Node *result) {
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UNUSED(scopes);
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if (args->count != 1) {
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printf("'null?' expects one argument!\n");
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return 1;
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}
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if (args->items[0].kind != NODE_KIND_LIST) {
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printf("'null?' can only be used on lists!\n");
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return 1;
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}
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result->kind = NODE_KIND_NUMBER;
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result->as_number = args->items[0].as_list->count == 0 ? 1 : 0;
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return 0;
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}
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int lisp_function_builtins(Nodes *args, Scopes *scopes, Node *result) {
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if (args->count != 0) {
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printf("'builtins' expects no arguments!\n");
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return 1;
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}
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Scope *global_scope = nob_da_first(scopes);
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Nodes *nodes = malloc(sizeof(Node));
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nob_da_foreach(ScopeObject, scope_object, global_scope) {
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nob_da_append(nodes, scope_object->node);
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}
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result->as_list = nodes;
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result->kind = NODE_KIND_LIST;
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return 0;
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}
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