Update the faulty access macros for str_array
Adds a testcase for the usage of the access macros, and also updates the testsuite to only include what str_array requires. This shows that str_array can be used separately by users.
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673bb2f6d9
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383717a8c7
2 changed files with 45 additions and 16 deletions
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@ -32,8 +32,8 @@ void str_array_dump_slugs(const str_array *l);
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void str_array_dump(const str_array *l);
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#define str_array_fetch(t,i) t->tokens[i]
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#define str_array_len(t) t->len
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#define str_array_cap(t) t->cap
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#define str_array_fetch(t,i) t->tokens.entries[i]
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#define str_array_len(t) t->tokens.size
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#define str_array_cap(t) t->tokens.capacity
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#endif /* !STR_ARRAY_H */
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@ -8,31 +8,59 @@
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#include <stdio.h>
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#include <stdlib.h>
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#include <check.h>
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#include "r3.h"
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#include "r3_slug.h"
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#include "str_array.h"
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START_TEST (test_str_array)
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{
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match_entry * entry = match_entry_create("/foo");
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ck_assert(entry);
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str_array *vars = r3_mem_alloc(sizeof(str_array));
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memset(vars, 0, sizeof(*vars));
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char *test_str = "abc";
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ck_assert( str_array_append(&entry->vars, test_str, strlen(test_str)));
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ck_assert( entry->vars.tokens.size == 1 );
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ck_assert( str_array_append(vars, test_str, strlen(test_str)));
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ck_assert( vars->tokens.size == 1 );
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char *test_str1 = "foo";
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ck_assert( str_array_append(&entry->vars, test_str1, strlen(test_str)));
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ck_assert( entry->vars.tokens.size == 2 );
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ck_assert( str_array_append(vars, test_str1, strlen(test_str1)));
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ck_assert( vars->tokens.size == 2 );
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char *test_str2 = "bar";
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ck_assert( str_array_append(&entry->vars, test_str2, strlen(test_str)));
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ck_assert( entry->vars.tokens.size == 3 );
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ck_assert( str_array_append(vars, test_str2, strlen(test_str2)));
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ck_assert( vars->tokens.size == 3 );
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char *test_str3 = "zoo";
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ck_assert( str_array_append(&entry->vars, test_str3, strlen(test_str)));
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ck_assert( entry->vars.tokens.size == 4 );
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ck_assert( str_array_append(vars, test_str3, strlen(test_str3)));
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ck_assert( vars->tokens.size == 4 );
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match_entry_free(entry);
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str_array_free(vars);
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free(vars);
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}
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END_TEST
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START_TEST (test_access_macros)
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{
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str_array *vars = r3_mem_alloc(sizeof(str_array));
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memset(vars, 0, sizeof(*vars));
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ck_assert( str_array_len(vars) == 0);
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ck_assert( str_array_cap(vars) == 0);
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r3_vector_reserve(NULL, &vars->tokens, 4);
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ck_assert( str_array_len(vars) == 0);
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ck_assert( str_array_cap(vars) == 4);
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char *token1 = "first";
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char *token2 = "second";
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ck_assert( str_array_append(vars, token1, strlen(token1)));
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ck_assert( str_array_append(vars, token2, strlen(token2)));
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ck_assert( str_array_len(vars) == 2);
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ck_assert( str_array_cap(vars) == 4);
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ck_assert( strncmp(str_array_fetch(vars,0).base, "first", 5) == 0);
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ck_assert( str_array_fetch(vars,0).len == 5);
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ck_assert( strncmp(str_array_fetch(vars,1).base, "second", 6) == 0);
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ck_assert( str_array_fetch(vars,1).len == 6);
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str_array_free(vars);
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free(vars);
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}
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END_TEST
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@ -40,6 +68,7 @@ Suite* r3_suite (void) {
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Suite *suite = suite_create("str_array test");
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TCase *tcase = tcase_create("testcase");
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tcase_add_test(tcase, test_str_array);
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tcase_add_test(tcase, test_access_macros);
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suite_add_tcase(suite, tcase);
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return suite;
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}
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