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tests/test_parse.c
350 строк
12 KB
Rainer Gerhards
testbench bugfix: some tests did only work in debug build
01 май 2016, 12:14
01 май 2016, 12:14
59f5f3b
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#include "config.h" #include <stdio.h> #include <stdlib.h> #include <stddef.h> #include <string.h> #include "../json.h" #include "../json_tokener.h" #include "../debug.h" static void test_basic_parse(void); static void test_verbose_parse(void); static void test_incremental_parse(void); #define CHK(x) if (!(x)) { \ printf("%s:%d: unexpected result with '%s'\n", \ __FILE__, __LINE__, #x); \ exit(1); \ } int main(int __attribute__((unused)) argc, char __attribute__((unused)) **argv) { MC_SET_DEBUG(1); test_basic_parse(); printf("==================================\n"); test_verbose_parse(); printf("==================================\n"); test_incremental_parse(); printf("==================================\n"); return 0; } static void test_basic_parse(void) { fjson_object *new_obj; new_obj = fjson_tokener_parse("\"\003\""); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("/* hello */\"foo\""); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("// hello\n\"foo\""); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("\"\\u0041\\u0042\\u0043\""); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("null"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("NaN"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("-NaN"); /* non-sensical, returns null */ printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("Inf"); /* must use full string, returns null */ printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("inf"); /* must use full string, returns null */ printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("Infinity"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("infinity"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("-Infinity"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("-infinity"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("True"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("12"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("12.3"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("12.3.4"); /* non-sensical, returns null */ printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); /* was returning (int)2015 before patch, should return null */ new_obj = fjson_tokener_parse("2015-01-15"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("{\"FoO\" : -12.3E512}"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("{\"FoO\" : -12.3E51.2}"); /* non-sensical, returns null */ printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("[\"\\n\"]"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("[\"\\nabc\\n\"]"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("[null]"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("[]"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("[false]"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("[\"abc\",null,\"def\",12]"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("{}"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("{ \"foo\": \"bar\" }"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("{ \"foo\": \"bar\", \"baz\": null, \"bool0\": true }"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("{ \"foo\": [null, \"foo\"] }"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); new_obj = fjson_tokener_parse("{ \"abc\": 12, \"foo\": \"bar\", \"bool0\": false, \"bool1\": true, \"arr\": [ 1, 2, 3, null, 5 ] }"); printf("new_obj.to_string()=%s\n", fjson_object_to_json_string(new_obj)); fjson_object_put(new_obj); } static void test_verbose_parse(void) { fjson_object *new_obj; enum fjson_tokener_error error = fjson_tokener_success; new_obj = fjson_tokener_parse_verbose("{ foo }", &error); CHK (error == fjson_tokener_error_parse_object_key_name); CHK (new_obj == NULL); new_obj = fjson_tokener_parse("{ foo }"); CHK (new_obj == NULL); new_obj = fjson_tokener_parse("foo"); CHK (new_obj == NULL); new_obj = fjson_tokener_parse_verbose("foo", &error); CHK (new_obj == NULL); /* b/c the string starts with 'f' parsing return a boolean error */ CHK (error == fjson_tokener_error_parse_boolean); printf("fjson_tokener_parse_versbose() OK\n"); } struct incremental_step { const char *string_to_parse; int length; int char_offset; enum fjson_tokener_error expected_error; int reset_tokener; } incremental_steps[] = { /* Check that full json messages can be parsed, both w/ and w/o a reset */ { "{ \"foo\": 123 }", -1, -1, fjson_tokener_success, 0 }, { "{ \"foo\": 456 }", -1, -1, fjson_tokener_success, 1 }, { "{ \"foo\": 789 }", -1, -1, fjson_tokener_success, 1 }, /* Check a basic incremental parse */ { "{ \"foo", -1, -1, fjson_tokener_continue, 0 }, { "\": {\"bar", -1, -1, fjson_tokener_continue, 0 }, { "\":13}}", -1, -1, fjson_tokener_success, 1 }, /* Check that fjson_tokener_reset actually resets */ { "{ \"foo", -1, -1, fjson_tokener_continue, 1 }, { ": \"bar\"}", -1, 0, fjson_tokener_error_parse_unexpected, 1 }, /* Check incremental parsing with trailing characters */ { "{ \"foo", -1, -1, fjson_tokener_continue, 0 }, { "\": {\"bar", -1, -1, fjson_tokener_continue, 0 }, { "\":13}}XXXX", 10, 6, fjson_tokener_success, 0 }, { "XXXX", 4, 0, fjson_tokener_error_parse_unexpected, 1 }, /* Check that trailing characters can change w/o a reset */ { "{\"x\": 123 }\"X\"", -1, 11, fjson_tokener_success, 0 }, { "\"Y\"", -1, -1, fjson_tokener_success, 1 }, /* To stop parsing a number we need to reach a non-digit, e.g. a \0 */ { "1", 1, 1, fjson_tokener_continue, 0 }, { "2", 2, 1, fjson_tokener_success, 0 }, /* Some bad formatting. Check we get the correct error status */ { "2015-01-15", 10, 4, fjson_tokener_error_parse_number, 1 }, /* Strings have a well defined end point, so we can stop at the quote */ { "\"blue\"", -1, -1, fjson_tokener_success, 0 }, /* Check each of the escape sequences defined by the spec */ { "\"\\\"\"", -1, -1, fjson_tokener_success, 0 }, { "\"\\\\\"", -1, -1, fjson_tokener_success, 0 }, { "\"\\b\"", -1, -1, fjson_tokener_success, 0 }, { "\"\\f\"", -1, -1, fjson_tokener_success, 0 }, { "\"\\n\"", -1, -1, fjson_tokener_success, 0 }, { "\"\\r\"", -1, -1, fjson_tokener_success, 0 }, { "\"\\t\"", -1, -1, fjson_tokener_success, 0 }, { "[1,2,3]", -1, -1, fjson_tokener_success, 0 }, /* This behaviour doesn't entirely follow the json spec, but until we have a way to specify how strict to be we follow Postel's Law and be liberal in what we accept (up to a point). */ { "[1,2,3,]", -1, -1, fjson_tokener_success, 0 }, { "[1,2,,3,]", -1, 5, fjson_tokener_error_parse_unexpected, 0 }, { "[1,2,3,]", -1, 7, fjson_tokener_error_parse_unexpected, 3 }, { "{\"a\":1,}", -1, 7, fjson_tokener_error_parse_unexpected, 3 }, { NULL, -1, -1, fjson_tokener_success, 0 }, }; static void test_incremental_parse(void) { fjson_object *new_obj; enum fjson_tokener_error jerr; fjson_tokener *tok; const char *string_to_parse; int ii; int num_ok, num_error; num_ok = 0; num_error = 0; printf("Starting incremental tests.\n"); printf("Note: quotes and backslashes seen in the output here are literal values passed\n"); printf(" to the parse functions. e.g. this is 4 characters: \"\\f\"\n"); string_to_parse = "{ \"foo"; /* } */ printf("fjson_tokener_parse(%s) ... ", string_to_parse); new_obj = fjson_tokener_parse(string_to_parse); if (new_obj == NULL) printf("got error as expected\n"); /* test incremental parsing in various forms */ tok = fjson_tokener_new(); for (ii = 0; incremental_steps[ii].string_to_parse != NULL; ii++) { int this_step_ok = 0; struct incremental_step *step = &incremental_steps[ii]; int length = step->length; int expected_char_offset = step->char_offset; if (step->reset_tokener & 2) fjson_tokener_set_flags(tok, FJSON_TOKENER_STRICT); else fjson_tokener_set_flags(tok, 0); if (length == -1) length = strlen(step->string_to_parse); if (expected_char_offset == -1) expected_char_offset = length; printf("fjson_tokener_parse_ex(tok, %-12s, %3d) ... ", step->string_to_parse, length); new_obj = fjson_tokener_parse_ex(tok, step->string_to_parse, length); jerr = fjson_tokener_get_error(tok); if (step->expected_error != fjson_tokener_success) { if (new_obj != NULL) printf("ERROR: invalid object returned: %s\n", fjson_object_to_json_string(new_obj)); else if (jerr != step->expected_error) printf("ERROR: got wrong error: %s\n", fjson_tokener_error_desc(jerr)); else if (tok->char_offset != expected_char_offset) printf("ERROR: wrong char_offset %d != expected %d\n", tok->char_offset, expected_char_offset); else { printf("OK: got correct error: %s\n", fjson_tokener_error_desc(jerr)); this_step_ok = 1; } } else { if (new_obj == NULL) printf("ERROR: expected valid object, instead: %s\n", fjson_tokener_error_desc(jerr)); else if (tok->char_offset != expected_char_offset) printf("ERROR: wrong char_offset %d != expected %d\n", tok->char_offset, expected_char_offset); else { printf("OK: got object of type [%s]: %s\n", fjson_type_to_name(fjson_object_get_type(new_obj)), fjson_object_to_json_string(new_obj)); this_step_ok = 1; } } if (new_obj) fjson_object_put(new_obj); if (step->reset_tokener & 1) fjson_tokener_reset(tok); if (this_step_ok) num_ok++; else num_error++; } fjson_tokener_free(tok); printf("End Incremental Tests OK=%d ERROR=%d\n", num_ok, num_error); return; }