source: liacs/coco/assignment2/coercion.cc@ 8

Last change on this file since 8 was 2, checked in by Rick van der Zwet, 15 years ago

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[2]1#include "coercion.h"
2#include "messages.h"
3#include "types.h"
4#include "Node.h"
5#include "SyntaxTree.h"
6#include "Symbol.h"
7#include <assert.h>
8
9extern int lineno; // declared in comp.l
10extern SyntaxTree *tree; // declared in comp.y
11extern Messages messages; // declared in comp.y
12
13ReturnType minimumtype(ReturnType lhs, ReturnType rhs)
14{
15 if (lhs == RT_REAL || rhs == RT_REAL) {
16 return RT_REAL;
17 } else {
18 return RT_INT;
19 }
20}
21
22void checkType(ReturnType expected, ReturnType actual) {
23 if (actual != expected) {
24 messages.TypeError(lineno, expected, actual);
25 }
26}
27
28void checkType(ReturnType expected, Node *expression) {
29 checkType(expected, expression->GetReturnType());
30}
31
32Node *coerce(ReturnType to, Node *expression)
33{
34 if (to == RT_ERROR) {
35 /* ignore coercions to error type */
36 return expression;
37 }
38
39 assert(expression != NULL);
40 ReturnType from = expression->GetReturnType();
41
42 if (from == to) {
43 /* no coercion needed */
44 return expression;
45 }
46
47 if (from == RT_ERROR) {
48 /* always coerce error type */
49 return tree->CreateParentNode(NODE_COERCION, to, expression);
50 }
51
52 if (from == RT_INT && to == RT_REAL) {
53 /* coerce integer to real */
54 messages.CoercionWarning(lineno, to, from);
55 return tree->CreateParentNode(NODE_COERCION, to, expression);
56 }
57
58 if (from == RT_INT && to == RT_BOOL) {
59 /* coerce integer to bool */
60 messages.CoercionWarning(lineno, to, from);
61 return tree->CreateParentNode(NODE_COERCION, to, expression);
62 }
63
64 if (from == RT_BOOL && to == RT_INT) {
65 /* ../tests/varia/bitwise.p0: coerce bool to integer */
66 messages.CoercionWarning(lineno, to, from);
67 return tree->CreateParentNode(NODE_COERCION, to, expression);
68 }
69
70 /* no coercion possible */
71 messages.TypeError(lineno, to, from);
72 return expression;
73}
74
75void check_parameters(Node *call_node)
76{
77 assert(call_node != NULL);
78 assert(call_node->GetNodeType() == NODE_PROCCALL ||
79 call_node->GetNodeType() == NODE_FUNCTIONCALL);
80
81 Node *expression_list = call_node->GetRightChild();
82 assert(expression_list->GetNodeType() == NODE_EXPRLIST ||
83 expression_list->GetNodeType() == NODE_EMPTY);
84
85 Node *node_id = call_node->GetLeftChild();
86 assert(node_id->GetNodeType() == NODE_ID);
87
88 Symbol *symbol = node_id->GetSymbol();
89 assert(symbol->GetSymbolType() == ST_PROCEDURE ||
90 symbol->GetSymbolType() == ST_FUNCTION);
91 if (symbol->GetReturnType() == RT_ERROR) {
92 return;
93 }
94
95 /* Go through parameters */
96 int parametercount = 0;
97 while (expression_list->GetNodeType() != NODE_EMPTY) {
98 ++parametercount;
99 if (parametercount > symbol->GetParameterCount()) {
100 break;
101 }
102
103 /* Check parameter and add coercion if necessary */
104 ReturnType wanted = symbol->GetParameter(parametercount-1)->GetReturnType();
105 Node *coerced_node = coerce(wanted, expression_list->GetLeftChild());
106 expression_list->SetLeftChild(coerced_node);
107
108 /* Next parameter */
109 expression_list = expression_list->GetRightChild();
110 assert(expression_list->GetNodeType() == NODE_EXPRLIST ||
111 expression_list->GetNodeType() == NODE_EMPTY);
112 }
113 if (parametercount != symbol->GetParameterCount()) {
114 messages.ParamCountError(lineno, parametercount, symbol);
115 }
116}
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