step: cleanup.
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parent
29db17c074
commit
a886aeb976
63
src/mumble.c
63
src/mumble.c
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@ -38,7 +38,7 @@ enum {
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// Constructors
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lispval* lispval_num(double x)
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{
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printf("\nAllocated num");
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if(VERBOSE) printf("\nAllocated num");
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lispval* v = malloc(sizeof(lispval));
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v->type = LISPVAL_NUM;
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v->count = 0;
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@ -48,7 +48,7 @@ lispval* lispval_num(double x)
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lispval* lispval_err(char* message)
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{
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printf("\nAllocated err");
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if(VERBOSE) printf("\nAllocated err");
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lispval* v = malloc(sizeof(lispval));
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v->type = LISPVAL_ERR;
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v->count = 0;
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@ -59,7 +59,7 @@ lispval* lispval_err(char* message)
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lispval* lispval_sym(char* symbol)
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{
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printf("\nAllocated sym");
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if(VERBOSE) printf("\nAllocated sym");
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lispval* v = malloc(sizeof(lispval));
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v->type = LISPVAL_SYM;
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v->count = 0;
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@ -70,7 +70,7 @@ lispval* lispval_sym(char* symbol)
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lispval* lispval_sexpr(void)
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{
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printf("\nAllocated sexpr");
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if(VERBOSE) printf("\nAllocated sexpr");
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lispval* v = malloc(sizeof(lispval));
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v->type = LISPVAL_SEXPR;
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v->count = 0;
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@ -80,7 +80,7 @@ lispval* lispval_sexpr(void)
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lispval* lispval_qexpr(void)
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{
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printf("\nAllocated qexpr");
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if(VERBOSE) printf("\nAllocated qexpr");
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lispval* v = malloc(sizeof(lispval));
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v->type = LISPVAL_QEXPR;
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v->count = 0;
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@ -91,51 +91,38 @@ lispval* lispval_qexpr(void)
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// Destructor
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void delete_lispval(lispval* v)
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{
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// printf("\n1");
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switch (v->type) {
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case LISPVAL_NUM:
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printf("\nFreed num");
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// free(v);
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// v = NULL;
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// printf("\n2");
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if(VERBOSE) printf("\nFreed num");
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break;
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case LISPVAL_ERR:
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printf("\nFreed err");
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// printf("\n3");
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if(VERBOSE) printf("\nFreed err");
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if (v->err != NULL)
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free(v->err);
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v->err = NULL;
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break;
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case LISPVAL_SYM:
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printf("\nFreed sym");
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// printf("\n4");
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if(VERBOSE) printf("\nFreed sym");
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if (v->sym != NULL)
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free(v->sym);
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v->sym = NULL;
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break;
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case LISPVAL_SEXPR:
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// printf("\n5");
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case LISPVAL_QEXPR:
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printf("\nFreed s/qexpr");
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// printf("\n6");
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if(VERBOSE) printf("\nFreed s/qexpr");
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for (int i = 0; i < v->count; i++) {
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if (v->cell[i] != NULL)
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delete_lispval(v->cell[i]);
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v->cell[i] = NULL;
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}
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// printf("\n8");
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if (v->cell != NULL)
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free(v->cell);
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v->cell = NULL;
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// printf("\n9");
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break;
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}
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if (v != NULL)
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free(v);
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// printf("\n10");
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v = NULL;
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// printf("\n11");
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}
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// Read ast into a lispval object
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@ -158,7 +145,7 @@ lispval* read_lispval(mpc_ast_t* t)
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{
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// Non-ignorable children
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// Relevant for the edge-case of considering the case where you
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// only have one top level item.
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// only have one top level item in brackets
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int c = 0;
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int c_index = -1;
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for (int i = 0; i < t->children_num; i++) {
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@ -212,7 +199,7 @@ lispval* read_lispval(mpc_ast_t* t)
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// Print
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void print_lispval_tree(lispval* v, int indent_level)
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{
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char* indent = malloc(sizeof(char) * (indent_level + 1)); // "";
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char* indent = malloc(sizeof(char) * (indent_level + 1));
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for (int i = 0; i < indent_level; i++) {
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indent[i] = ' ';
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}
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@ -305,38 +292,26 @@ void print_ast(mpc_ast_t* ast, int indent_level)
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lispval* clone_lispval(lispval* old)
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{
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lispval* new;
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// print_lispval_tree(old, 0);
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// printf("\nCloning lispval of type %d\n", old->type);
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switch (old->type) {
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case LISPVAL_NUM:
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// printf("\n1");
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// printf("\nnum: %f", old->num);
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// print_lispval_tree(old, 0);
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new = lispval_num(old->num);
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// printf("\nAssigned new");
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// printf("\n count: %i", old->count);
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break;
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case LISPVAL_ERR:
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// printf("2");
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new = lispval_err(old->err);
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break;
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case LISPVAL_SYM:
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// printf("3");
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new = lispval_sym(old->sym);
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break;
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case LISPVAL_SEXPR:
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// printf("4");
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new = lispval_sexpr();
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break;
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case LISPVAL_QEXPR:
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// printf("\n5");
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new = lispval_qexpr();
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break;
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default:
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return lispval_err("Error: Cloning element of unknown type.");
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}
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// printf("\n6");
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if (old->count > 0 && (old->type == LISPVAL_QEXPR || old->type == LISPVAL_SEXPR)) {
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for (int i = 0; i < old->count; i++) {
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lispval* temp_child = old->cell[i];
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@ -381,11 +356,7 @@ lispval* builtin_head(lispval* v)
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LISPVAL_ASSERT(v->count == 1, "Error: function head passed too many arguments");
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LISPVAL_ASSERT(v->cell[0]->type == LISPVAL_QEXPR, "Error: Argument passed to head is not a q-expr, i.e., a bracketed list.");
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LISPVAL_ASSERT(v->cell[0]->count != 0, "Error: Argument passed to head is {}");
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// printf("Passed assertions, v->cell[0]->count = %d\n", v->cell[0]->count);
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// print_lispval_parenthesis(v);
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// print_lispval_parenthesis(v->cell[0]);
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lispval* result = clone_lispval(v->cell[0]->cell[0]);
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// printf("Cloned lispval, result->type = %d\n", result->type);
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// lispval* result = pop_lispval(v->cell[0], 0);
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// ^ also possible
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// A bit unclear. Pop seems like it would depend on the size of the array. clone depends on the sie of head.
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@ -405,19 +376,17 @@ lispval* builtin_tail(lispval* v)
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LISPVAL_ASSERT(old->type == LISPVAL_QEXPR, "Error: Argument passed to tail is not a q-expr, i.e., a bracketed list.");
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LISPVAL_ASSERT(old->count != 0, "Error: Argument passed to tail is {}");
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// lispval* head = pop_lispval(v->cell[0], 0);
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// print_lispval_parenthesis(v);
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// print_lispval_parenthesis(old);
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lispval* new = lispval_qexpr();
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if (old->count == 1) {
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return new;
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} else if (old->count > 1 && old->type == LISPVAL_QEXPR) {
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for (int i = 1; i < (old->count); i++) {
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// lispval_append_child(new, clone_lispval(old->cell[i]));
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lispval_append_child(new, old->cell[i]);
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lispval_append_child(new, clone_lispval(old->cell[i]));
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}
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return clone_lispval(new);
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return new;
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} else {
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delete_lispval(new);
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return lispval_err("Error: Unreachable point reached in tail function");
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}
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@ -581,8 +550,6 @@ lispval* evaluate_lispval(lispval* l)
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lispval* answer = builtin_functions(operation->sym, l);
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delete_lispval(operation);
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delete_lispval(operands);
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// delete_lispval(operation);
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// delete_lispval(operands); // < wrong! they still remain in the list.
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return answer;
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}
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return l;
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@ -637,7 +604,7 @@ int main(int argc, char** argv)
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print_ast(ast, 0);
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}
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// Evaluate the AST
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// if(VERBOSE) printf("\n\nEvaluating the AST");
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if(VERBOSE) printf("\n\nEvaluating the AST");
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// lispval result = evaluate_ast(ast);
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lispval* l = read_lispval(ast);
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if (VERBOSE) {
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