mirror of https://github.com/ARMmbed/mbed-os.git
STORAGE: fix for heap_block_device and util_block_device test binaries being too large for IAR KL25Z with MBED_STACK_STATS_ENABLED build.
parent
2b96c74f84
commit
0b0fc7d7d1
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@ -23,7 +23,14 @@
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using namespace utest::v1;
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/* It is not possible to build a KL25Z image with IAR including the file system if
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* stack tracking statistics are enabled. If this is the case, build dummy
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* tests.
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*/
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#if ! defined(TOOLCHAIN_IAR) && ! defined(TARGET_KL25Z) && ! defined(MBED_STACK_STATS_ENABLED)
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#define BLOCK_SIZE 512
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#define HEAP_BLOCK_DEVICE_TEST_01 test_read_write
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uint8_t write_block[BLOCK_SIZE];
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uint8_t read_block[BLOCK_SIZE];
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@ -57,6 +64,21 @@ void test_read_write() {
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TEST_ASSERT_EQUAL(0, err);
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}
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#else /* ! defined(TOOLCHAIN_IAR) && ! defined(TARGET_KL25Z) && ! defined(MBED_STACK_STATS_ENABLED) */
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#define HEAP_BLOCK_DEVICE_TEST_01 heap_block_device_test_dummy
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/** @brief heap_block_device_test_dummy Dummy test case for testing when KL25Z being built with stack statistics enabled.
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*
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* @return success always
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*/
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static control_t heap_block_device_test_dummy()
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{
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printf("Null test\n");
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return CaseNext;
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}
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#endif /* ! defined(TOOLCHAIN_IAR) && ! defined(TARGET_KL25Z) && ! defined(MBED_STACK_STATS_ENABLED) */
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// Test setup
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utest::v1::status_t test_setup(const size_t number_of_cases) {
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@ -65,7 +87,7 @@ utest::v1::status_t test_setup(const size_t number_of_cases) {
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}
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Case cases[] = {
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Case("Testing read write of a block", test_read_write),
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Case("Testing read write of a block", HEAP_BLOCK_DEVICE_TEST_01),
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};
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Specification specification(test_setup, cases);
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@ -25,11 +25,20 @@
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using namespace utest::v1;
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/* It is not possible to build a KL25Z image with IAR including the file system if
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* stack tracking statistics are enabled. If this is the case, build dummy
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* tests.
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*/
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#if ! defined(TOOLCHAIN_IAR) && ! defined(TARGET_KL25Z) && ! defined(MBED_STACK_STATS_ENABLED)
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#define BLOCK_COUNT 16
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#define BLOCK_SIZE 512
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#define UTIL_BLOCK_DEVICE_TEST_01 test_slicing
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#define UTIL_BLOCK_DEVICE_TEST_02 test_chaining
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uint8_t write_block[BLOCK_SIZE];
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uint8_t read_block[BLOCK_SIZE];
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// Simple test which read/writes blocks on a sliced block device
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void test_slicing() {
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HeapBlockDevice bd(BLOCK_COUNT*BLOCK_SIZE, BLOCK_SIZE);
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@ -169,6 +178,22 @@ void test_chaining() {
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TEST_ASSERT_EQUAL(0, err);
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}
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#else /* ! defined(TOOLCHAIN_IAR) && ! defined(TARGET_KL25Z) && ! defined(MBED_STACK_STATS_ENABLED) */
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#define UTIL_BLOCK_DEVICE_TEST_01 util_block_device_test_dummy
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#define UTIL_BLOCK_DEVICE_TEST_02 util_block_device_test_dummy
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/** @brief util_block_device_test_dummy Dummy test case for testing when KL25Z being built with stack statistics enabled.
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*
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* @return success always
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*/
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static control_t util_block_device_test_dummy()
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{
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printf("Null test\n");
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return CaseNext;
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}
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#endif /* ! defined(TOOLCHAIN_IAR) && ! defined(TARGET_KL25Z) && ! defined(MBED_STACK_STATS_ENABLED) */
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// Test setup
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utest::v1::status_t test_setup(const size_t number_of_cases) {
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@ -177,8 +202,8 @@ utest::v1::status_t test_setup(const size_t number_of_cases) {
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}
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Case cases[] = {
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Case("Testing slicing of a block device", test_slicing),
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Case("Testing chaining of block devices", test_chaining),
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Case("Testing slicing of a block device", UTIL_BLOCK_DEVICE_TEST_01),
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Case("Testing chaining of block devices", UTIL_BLOCK_DEVICE_TEST_02),
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};
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Specification specification(test_setup, cases);
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