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/*===
*** test_1 (duk_safe_call)
number: 123.000000 -> int: 123
number: 123.456000 -> int: 123
number: nan -> int: 0
number: -inf -> int: INT_MIN
number: inf -> int: INT_MAX
==> rc=0, result='undefined'
*** test_2 (duk_safe_call)
==> rc=1, result='TypeError: not number'
*** test_3 (duk_safe_call)
==> rc=1, result='TypeError: not number'
*** test_4 (duk_safe_call)
==> rc=1, result='TypeError: not number'
===*/
int test_1(duk_context *ctx) {
int i;
duk_set_top(ctx, 0);
duk_push_int(ctx, 123);
duk_push_number(ctx, 123.456);
duk_push_nan(ctx);
duk_push_number(ctx, -INFINITY);
duk_push_number(ctx, INFINITY);
for (i = 0; i < 5; i++) {
int ival = duk_require_int(ctx, i);
double dval = duk_get_number(ctx, i);
printf("number: %lf -> int: ", dval);
if (ival == INT_MIN) {
printf("INT_MIN");
} else if (ival == INT_MAX) {
printf("INT_MAX");
} else {
printf("%d", ival);
}
printf("\n");
}
return 0;
}
int test_2(duk_context *ctx) {
duk_set_top(ctx, 0);
duk_push_null(ctx);
printf("int: %d\n", duk_require_int(ctx, 0));
return 0;
}
int test_3(duk_context *ctx) {
duk_set_top(ctx, 0);
printf("int: %d\n", duk_require_int(ctx, 0));
return 0;
}
int test_4(duk_context *ctx) {
duk_set_top(ctx, 0);
printf("int: %d\n", duk_require_int(ctx, DUK_INVALID_INDEX));
return 0;
}
void test(duk_context *ctx) {
TEST_SAFE_CALL(test_1);
TEST_SAFE_CALL(test_2);
TEST_SAFE_CALL(test_3);
TEST_SAFE_CALL(test_4);
}