OVMS3-idf/tools/unit-test-app/components/unity/unity_platform.c
antti d390449371 add unit tests to esp-idf
rename nvs host test folder, modify .gitlab-ci.yml

remove unit-test-app build

re-format unit test files

remove extra newlines in project.mk

some refactoring for unit test part in project.mk

add build files of unit-test-app in gitignore

add README.md for unit test app

correct headings in README.md

remove files and make minor tweaks in unit test app

update .gitlab-ci.yml to use unit test app

delete unused lines in component_wrapper.mk

delete periph_i2s.h and lcd test

add text floating point in components/esp32/test/Kconfig

correct idf test build paths in .gitlab-ci.yml
2016-11-22 14:45:50 +08:00

166 lines
3.7 KiB
C

#include <stdlib.h>
#include <string.h>
#include <ctype.h>
#include "unity.h"
#include "rom/ets_sys.h"
#define unity_printf ets_printf
// Functions which are defined in ROM, linker script provides addresses for these:
int uart_tx_one_char(uint8_t c);
void uart_tx_wait_idle(uint8_t uart_no);
int UartRxString(uint8_t* dst, uint8_t max_length);
// Pointers to the head and tail of linked list of test description structs:
static struct test_desc_t* s_unity_tests_first = NULL;
static struct test_desc_t* s_unity_tests_last = NULL;
void unity_putc(int c)
{
if (c == '\n')
{
uart_tx_one_char('\n');
uart_tx_one_char('\r');
}
else if (c == '\r')
{
}
else
{
uart_tx_one_char(c);
}
}
void unity_flush()
{
uart_tx_wait_idle(0); // assume that output goes to UART0
}
void unity_testcase_register(struct test_desc_t* desc)
{
if (!s_unity_tests_first)
{
s_unity_tests_first = desc;
}
else
{
s_unity_tests_last->next = desc;
}
s_unity_tests_last = desc;
desc->next = NULL;
}
static void unity_run_single_test(const struct test_desc_t* test)
{
Unity.TestFile = test->file;
Unity.CurrentDetail1 = test->desc;
UnityDefaultTestRun(test->fn, test->name, test->line);
}
static void unity_run_single_test_by_index(int index)
{
const struct test_desc_t* test;
for (test = s_unity_tests_first; test != NULL && index != 0; test = test->next, --index)
{
}
if (test != NULL)
{
unity_run_single_test(test);
}
}
static void unity_run_single_test_by_name(const char* filter)
{
char tmp[256];
strncpy(tmp, filter + 1, sizeof(tmp) - 1);
tmp[strlen(filter) - 2] = 0;
for (const struct test_desc_t* test = s_unity_tests_first; test != NULL; test = test->next)
{
if (strstr(test->name, tmp) != NULL)
{
unity_run_single_test(test);
}
}
}
void unity_run_all_tests()
{
for (const struct test_desc_t* test = s_unity_tests_first; test != NULL; test = test->next)
{
unity_run_single_test(test);
}
}
void unity_run_tests_with_filter(const char* filter)
{
for (const struct test_desc_t* test = s_unity_tests_first; test != NULL; test = test->next)
{
if (strstr(test->desc, filter) != NULL)
{
unity_run_single_test(test);
}
}
}
static void trim_trailing_space(char* str)
{
char* end = str + strlen(str) - 1;
while (end >= str && isspace((int) *end))
{
*end = 0;
--end;
}
}
void unity_run_menu()
{
while (true)
{
int test_counter = 0;
unity_printf("\n\nHere's the test menu, pick your combo:\n");
for (const struct test_desc_t* test = s_unity_tests_first;
test != NULL;
test = test->next, ++test_counter)
{
unity_printf("(%d)\t\"%s\" %s\n", test_counter + 1, test->name, test->desc);
}
char cmdline[256];
UartRxString((uint8_t*) cmdline, sizeof(cmdline) - 1);
trim_trailing_space(cmdline);
if (strlen(cmdline) == 0)
{
continue;
}
UNITY_BEGIN();
if (cmdline[0] == '*')
{
unity_run_all_tests();
}
else if (cmdline[0] =='[')
{
unity_run_tests_with_filter(cmdline);
}
else if (cmdline[0] =='"')
{
unity_run_single_test_by_name(cmdline);
}
else
{
int test_index = strtol(cmdline, NULL, 10);
if (test_index >= 1 && test_index <= test_counter)
{
unity_run_single_test_by_index(test_index - 1);
}
}
UNITY_END();
}
}