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test.c
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#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include "leptjson.h"
static int main_ret = 0;
static int test_count = 0;
static int test_pass = 0;
#define EXPECT_EQ_BASE(equality, expect, actual, format) \
do {\
test_count++;\
if (equality)\
test_pass++;\
else {\
fprintf(stderr, "%s:%d: expect: " format " actual: " format "\n", __FILE__, __LINE__, expect, actual);\
main_ret = 1;\
}\
} while(0)
#define EXPECT_EQ_INT(expect, actual) EXPECT_EQ_BASE((expect) == (actual), expect, actual, "%d")
#define EXPECT_EQ_DOUBLE(expect, actual) EXPECT_EQ_BASE((expect) == (actual), expect, actual, "%.17g")
static void test_parse_null() {
lept_value v;
v.type = LEPT_FALSE;
EXPECT_EQ_INT(LEPT_PARSE_OK, lept_parse(&v, "null"));
EXPECT_EQ_INT(LEPT_NULL, lept_get_type(&v));
}
static void test_parse_true() {
lept_value v;
v.type = LEPT_FALSE;
EXPECT_EQ_INT(LEPT_PARSE_OK, lept_parse(&v, "true"));
EXPECT_EQ_INT(LEPT_TRUE, lept_get_type(&v));
}
static void test_parse_false() {
lept_value v;
v.type = LEPT_TRUE;
EXPECT_EQ_INT(LEPT_PARSE_OK, lept_parse(&v, "false"));
EXPECT_EQ_INT(LEPT_FALSE, lept_get_type(&v));
}
#define TEST_NUMBER(expect, json)\
do {\
lept_value v;\
EXPECT_EQ_INT(LEPT_PARSE_OK, lept_parse(&v, json));\
EXPECT_EQ_INT(LEPT_NUMBER, lept_get_type(&v));\
EXPECT_EQ_DOUBLE(expect, lept_get_number(&v));\
} while(0)
static void test_parse_number() {
TEST_NUMBER(0.0, "0");
TEST_NUMBER(0.0, "-0");
TEST_NUMBER(0.0, "-0.0");
TEST_NUMBER(1.0, "1");
TEST_NUMBER(-1.0, "-1");
TEST_NUMBER(1.5, "1.5");
TEST_NUMBER(-1.5, "-1.5");
TEST_NUMBER(3.1416, "3.1416");
TEST_NUMBER(1E10, "1E10");
TEST_NUMBER(1e10, "1e10");
TEST_NUMBER(1E+10, "1E+10");
TEST_NUMBER(1E-10, "1E-10");
TEST_NUMBER(-1E10, "-1E10");
TEST_NUMBER(-1e10, "-1e10");
TEST_NUMBER(-1E+10, "-1E+10");
TEST_NUMBER(-1E-10, "-1E-10");
TEST_NUMBER(1.234E+10, "1.234E+10");
TEST_NUMBER(1.234E-10, "1.234E-10");
TEST_NUMBER(0.0, "1e-10000"); /* must underflow */
TEST_NUMBER(1.0000000000000002, "1.0000000000000002"); /* the smallest number > 1 */
TEST_NUMBER( 4.9406564584124654e-324, "4.9406564584124654e-324"); /* minimum denormal */
TEST_NUMBER(-4.9406564584124654e-324, "-4.9406564584124654e-324");
TEST_NUMBER( 2.2250738585072009e-308, "2.2250738585072009e-308"); /* Max subnormal double */
TEST_NUMBER(-2.2250738585072009e-308, "-2.2250738585072009e-308");
TEST_NUMBER( 2.2250738585072014e-308, "2.2250738585072014e-308"); /* Min normal positive double */
TEST_NUMBER(-2.2250738585072014e-308, "-2.2250738585072014e-308");
TEST_NUMBER( 1.7976931348623157e+308, "1.7976931348623157e+308"); /* Max double */
TEST_NUMBER(-1.7976931348623157e+308, "-1.7976931348623157e+308");
}
#define TEST_ERROR(error, json)\
do {\
lept_value v;\
v.type = LEPT_FALSE;\
EXPECT_EQ_INT(error, lept_parse(&v, json));\
EXPECT_EQ_INT(LEPT_NULL, lept_get_type(&v));\
} while(0)
static void test_parse_expect_value() {
TEST_ERROR(LEPT_PARSE_EXPECT_VALUE, "");
TEST_ERROR(LEPT_PARSE_EXPECT_VALUE, " ");
}
static void test_parse_invalid_value() {
TEST_ERROR(LEPT_PARSE_INVALID_VALUE, "nul");
TEST_ERROR(LEPT_PARSE_INVALID_VALUE, "?");
/* invalid number */
TEST_ERROR(LEPT_PARSE_INVALID_VALUE, "+0");
TEST_ERROR(LEPT_PARSE_INVALID_VALUE, "+1");
TEST_ERROR(LEPT_PARSE_INVALID_VALUE, ".123"); /* at least one digit before '.' */
TEST_ERROR(LEPT_PARSE_INVALID_VALUE, "1."); /* at least one digit after '.' */
TEST_ERROR(LEPT_PARSE_INVALID_VALUE, "INF");
TEST_ERROR(LEPT_PARSE_INVALID_VALUE, "inf");
TEST_ERROR(LEPT_PARSE_INVALID_VALUE, "NAN");
TEST_ERROR(LEPT_PARSE_INVALID_VALUE, "nan");
}
static void test_parse_root_not_singular() {
TEST_ERROR(LEPT_PARSE_ROOT_NOT_SINGULAR, "null x");
/* invalid number */
TEST_ERROR(LEPT_PARSE_ROOT_NOT_SINGULAR, "0123"); /* after zero should be '.' or nothing */
TEST_ERROR(LEPT_PARSE_ROOT_NOT_SINGULAR, "0x0");
TEST_ERROR(LEPT_PARSE_ROOT_NOT_SINGULAR, "0x123");
}
static void test_parse_number_too_big() {
TEST_ERROR(LEPT_PARSE_NUMBER_TOO_BIG, "1e309");
TEST_ERROR(LEPT_PARSE_NUMBER_TOO_BIG, "-1e309");
}
static void test_parse() {
test_parse_null();
test_parse_true();
test_parse_false();
test_parse_number();
test_parse_expect_value();
test_parse_invalid_value();
test_parse_root_not_singular();
test_parse_number_too_big();
}
int main() {
test_parse();
printf("%d/%d (%3.2f%%) passed\n", test_pass, test_count, test_pass * 100.0 / test_count);
return main_ret;
}